Changeset 11 in TRACY3
- Timestamp:
- Oct 21, 2013, 10:40:43 AM (11 years ago)
- Location:
- trunk
- Files:
-
- 30 edited
Legend:
- Unmodified
- Added
- Removed
-
trunk/README
r3 r11 27 27 For compilation of TracyIII 28 28 In root directory of TracyIII, run the command: 29 ./make_for_gcc.sh opt 29 ./make_for_gcc.sh opt 30 31 or run the command to trigger the debug mode: 32 ./make_for_gcc.sh debug 33 34 35 30 36 31 37 An executable file is generated in directory TracyIII/tracy/tracy/bin: -
trunk/lattice/example/soleil/cod.out
r3 r11 1 # TRACY III -- cod.out -- Mon Jun 18 15:59:50 20121 # TRACY III -- cod.out -- Tue Jun 18 10:28:58 2013 2 2 # name s code betax nux betay nuy xcod ycod dSx dSy dipx dipy 3 3 # [m] [m] [m] [mm] [mm] [mm] [mm] [mrad] [mrad] 4 4 # 5 0 begin 0.00 0.0 1 0.901 0.000 7.995 0.000 0.0000.000 0.000 0.000 -0.000 0.0006 1 debut 0.00 0.0 1 0.901 0.000 7.995 0.000 0.0000.000 0.000 0.000 -0.000 0.0007 2 sd1a 0.90 0.0 1 0.973 0.013 8.096 0.018 0.000 0.000 0.000 0.000 -0.000 0.0008 3 ssep 0.90 0.0 1 0.973 0.013 8.096 0.018 0.000 0.000 0.000 0.000 -0.000 0.0009 4 sep 1.10 0.0 11. 010 0.016 8.146 0.022 0.0000.000 0.000 0.000 -0.000 0.00010 5 sep 1.30 0.0 11. 053 0.019 8.206 0.026 0.0000.000 0.000 0.000 -0.000 0.00011 6 sep 1.50 0.0 11. 104 0.022 8.276 0.030 0.0000.000 0.000 0.000 -0.000 0.00012 7 esep 1.50 0.0 11. 104 0.022 8.276 0.030 0.0000.000 0.000 0.000 -0.000 0.00013 8 sd1c 5.20 0.0 1 3.369 0.071 11.376 0.092 0.000 0.000 0.000 0.000 -0.000 0.00014 9 ehu600 5.20 0.0 1 3.369 0.071 11.376 0.092 0.000 0.000 0.000 0.000 -0.000 0.00015 10 sd1d 5.69 0.0 1 3.856 0.077 12.042 0.098 0.0000.000 0.000 0.000 -0.000 0.00016 11 bpm 5.69 2.0 1 3.856 0.077 12.042 0.098 0.0000.000 0.000 0.000 -0.000 0.00017 12 sdb1i 5.98 0.0 1 4.167 0.080 12.467 0.102 0.0000.000 0.000 0.000 -0.000 0.00018 13 gs 5.98 0.0 1 4.167 0.080 12.467 0.102 0.0000.000 0.000 0.000 -0.000 0.00019 14 q1 6.34 -1.0 1 6.677 0.084 11.316 0.107 0.0000.000 0.000 0.000 -0.000 0.00020 15 sd2 6.63 0.0 2 0.820 0.086 9.231 0.111 0.0000.000 0.000 0.000 -0.000 0.00021 16 sx1 6.79 1.5 2 3.306 0.087 8.178 0.114 0.0000.000 0.000 0.000 -0.000 0.00022 17 qt 6.79 0.0 2 3.306 0.087 8.178 0.114 0.0000.000 0.000 0.000 -0.000 0.00023 18 hcm 6.79 0.0 2 3.306 0.087 8.178 0.114 0.0000.000 0.000 0.000 0.000 0.00024 19 vcm 6.79 0.0 2 3.306 0.087 8.178 0.114 0.0000.000 0.000 0.000 -0.000 -0.00025 20 sd3 6.89 0.0 2 4.965 0.088 7.544 0.116 0.0000.000 0.000 0.000 -0.000 0.00026 21 q2 7.39 1.0 2 3.157 0.091 7.436 0.128 0.000 0.000 0.000 0.000 -0.000 0.00027 22 sdb2 7.56 0.0 19.503 0.092 8.403 0.131 0.0000.000 0.000 0.000 -0.000 0.00028 23 bpm 7.56 2.0 19.503 0.092 8.403 0.131 0.0000.000 0.000 0.000 -0.000 0.00029 24 sd14a 7.94 0.0 1 2.276 0.096 10.887 0.137 0.0000.000 0.000 0.000 -0.000 0.00030 25 q3 8.30 -1.0 7.783 0.102 12.496 0.142 0.000 0.000 0.000 0.000 -0.000 0.00031 26 sd5 8.40 0.0 6.905 0.104 12.675 0.144 0.000 0.000 0.000 0.000 -0.000 0.00032 27 sx2 8.56 -1.5 5.615 0.109 12.967 0.146 0.0000.000 0.000 0.000 -0.000 0.00033 28 hcm 8.56 0.0 5.615 0.109 12.967 0.146 0.0000.000 0.000 0.000 0.000 0.00034 29 vcm 8.56 0.0 5.615 0.109 12.967 0.146 0.0000.000 0.000 0.000 -0.000 -0.00035 30 ge 8.56 0.0 5.615 0.109 12.967 0.146 0.0000.000 0.000 0.000 -0.000 0.00036 31 sd6 9.27 0.0 1. 596 0.147 14.353 0.154 0.0000.000 0.000 0.000 -0.000 0.00037 32 dip 9.27 0.0 1. 596 0.147 14.353 0.154 0.0000.000 0.000 0.000 0.000 0.00038 33 bend0 10.32 0.5 0. 756 0.446 16.150 0.165 0.0000.000 0.000 0.000 -0.000 0.00039 34 sd7 10.74 0.0 2.1 21 0.500 16.708 0.169 0.0000.000 0.000 0.000 -0.000 0.00040 35 gs 10.74 0.0 2.1 21 0.500 16.708 0.169 0.0000.000 0.000 0.000 -0.000 0.00041 36 q4 11.10 -1.0 4. 636 0.519 14.573 0.173 0.0000.000 0.000 0.000 -0.000 0.00042 37 sd8 11.20 0.0 5. 724 0.522 13.346 0.174 0.0000.000 0.000 0.000 -0.000 0.00043 38 sx3 11.36 -1.5 7.713 0.526 11.495 0.176 0.0000.000 0.000 0.000 -0.000 0.00044 39 hcm 11.36 0.0 7.713 0.526 11.495 0.176 0.0000.000 0.000 0.000 0.000 0.00045 40 vcm 11.36 0.0 7.713 0.526 11.495 0.176 0.0000.000 0.000 0.000 -0.000 -0.00046 41 sdb3 11.53 0.0 10. 191 0.529 9.665 0.178 0.0000.000 0.000 0.000 -0.000 0.00047 42 bpm 11.53 2.0 10. 191 0.529 9.665 0.178 0.0000.000 0.000 0.000 -0.000 0.00048 43 sd9a 11.74 0.0 1 3.589 0.532 7.705 0.182 0.0000.000 0.000 0.000 -0.000 0.00049 44 q5 12.10 1.0 1 7.053 0.535 6.164 0.191 0.0000.000 0.000 0.000 -0.000 0.00050 45 sd12 12.47 0.0 1 7.044 0.539 6.134 0.200 0.0000.000 0.000 0.000 -0.000 0.00051 46 sx4 12.63 1.5 1 7.045 0.540 6.135 0.204 0.0000.000 0.000 0.000 -0.000 0.00052 47 qt 12.63 0.0 1 7.045 0.540 6.135 0.204 0.0000.000 0.000 0.000 -0.000 0.00053 48 hcm 12.63 0.0 1 7.045 0.540 6.135 0.204 0.0000.000 0.000 0.000 0.000 0.00054 49 vcm 12.63 0.0 1 7.045 0.540 6.135 0.204 0.0000.000 0.000 0.000 -0.000 -0.00055 50 sdb4 12.83 0.0 1 7.051 0.542 6.147 0.210 0.0000.000 0.000 0.000 -0.000 0.00056 51 bpm 12.83 2.0 1 7.051 0.542 6.147 0.210 0.0000.000 0.000 0.000 -0.000 0.00057 52 sd10a 13.00 0.0 1 7.059 0.544 6.168 0.214 0.0000.000 0.000 0.000 -0.000 0.00058 53 q5 13.36 1.0 1 3.597 0.547 7.715 0.223 0.0000.000 0.000 0.000 -0.000 0.00059 54 sd91 13.61 0.0 9.487 0.551 10.165 0.227 0.0000.000 0.000 0.000 -0.000 0.00060 55 bpm 13.61 2.0 9.487 0.551 10.165 0.227 0.0000.000 0.000 0.000 -0.000 0.00061 56 sdb5 13.74 0.0 7.721 0.553 11.515 0.229 0.0000.000 0.000 0.000 -0.000 0.00062 57 sx3 13.90 -1.5 5.731 0.557 13.370 0.231 0.0000.000 0.000 0.000 -0.000 0.00063 58 hcm 13.90 0.0 5.731 0.557 13.370 0.231 0.0000.000 0.000 0.000 0.000 0.00064 59 vcm 13.90 0.0 5.731 0.557 13.370 0.231 0.0000.000 0.000 0.000 -0.000 -0.00065 60 sd8 14.00 0.0 4.643 0.560 14.601 0.232 0.0000.000 0.000 0.000 -0.000 0.00066 61 q4 14.36 -1.0 2. 127 0.579 16.743 0.236 0.0000.000 0.000 0.000 -0.000 0.00067 62 ge 14.36 0.0 2. 127 0.579 16.743 0.236 0.0000.000 0.000 0.000 -0.000 0.00068 63 sd7 14.78 0.0 0. 760 0.632 16.187 0.240 0.0000.000 0.000 0.000 -0.000 0.00069 64 dip 14.78 0.0 0. 760 0.632 16.187 0.240 0.0000.000 0.000 0.000 0.000 0.00070 65 bend0 15.83 0.5 1. 587 0.932 14.404 0.251 0.000 0.000 0.000 0.000 -0.000 0.00071 66 sd7 16.25 0.0 3. 618 0.960 13.568 0.256 0.0000.000 0.000 0.000 -0.000 0.00072 67 gs 16.25 0.0 3. 618 0.960 13.568 0.256 0.0000.000 0.000 0.000 -0.000 0.00073 68 q6 16.61 -1.0 6. 840 0.972 11.251 0.260 0.000 0.000 0.000 0.000 -0.000 0.00074 69 sd5 16.71 0.0 8.165 0.974 10.240 0.262 0.0000.000 0.000 0.000 -0.000 0.00075 70 sx5 16.87 -1.5 10.537 0.977 8.723 0.264 0.0000.000 0.000 0.000 -0.000 0.00076 71 hcm 16.87 0.0 10.537 0.977 8.723 0.264 0.0000.000 0.000 0.000 0.000 0.00077 72 vcm 16.87 0.0 10.537 0.977 8.723 0.264 0.0000.000 0.000 0.000 -0.000 -0.00078 73 sd41 17.04 0.0 1 3.432 0.979 7.234 0.268 0.0000.000 0.000 0.000 -0.000 0.00079 74 bpm 17.04 2.0 1 3.432 0.979 7.234 0.268 0.0000.000 0.000 0.000 -0.000 0.00080 75 sdb6 17.16 0.0 1 5.658 0.980 6.284 0.271 0.0000.000 0.000 0.000 -0.000 0.00081 76 q7 17.66 1.0 1 6.766 0.985 5.598 0.285 0.0000.000 0.000 0.000 -0.000 0.00082 77 sd3 17.76 0.0 1 5.213 0.986 6.059 0.288 0.0000.000 0.000 0.000 -0.000 0.00083 78 sx6 17.92 1.5 12. 930 0.988 6.826 0.292 0.0000.000 0.000 0.000 -0.000 0.00084 79 hcm 17.92 0.0 12. 930 0.988 6.826 0.292 0.0000.000 0.000 0.000 0.000 0.00085 80 vcm 17.92 0.0 12. 930 0.988 6.826 0.292 0.0000.000 0.000 0.000 -0.000 -0.00086 81 sd2 18.21 0.0 9.274 0.992 8.352 0.298 0.0000.000 0.000 0.000 -0.000 0.00087 82 q8 18.57 -1.0 7.046 0.999 8.655 0.304 0.0000.000 0.000 0.000 -0.000 0.00088 83 ge 18.57 0.0 7.046 0.999 8.655 0.304 0.0000.000 0.000 0.000 -0.000 0.00089 84 sdc12 18.89 0.0 6. 540 1.007 7.430 0.311 0.0000.000 0.000 0.000 -0.000 0.00090 85 bpm 18.89 2.0 6. 540 1.007 7.430 0.311 0.0000.000 0.000 0.000 -0.000 0.00091 86 sd13k 19.28 0.0 5.9 90 1.017 6.097 0.320 0.0000.000 0.000 0.000 -0.000 0.00092 87 ssdm 19.28 0.0 5.9 90 1.017 6.097 0.320 0.0000.000 0.000 0.000 -0.000 0.00093 88 sd13i 19.48 0.0 5.7 37 1.022 5.485 0.326 0.0000.000 0.000 0.000 -0.000 0.00094 89 sd13i 19.68 0.0 5. 503 1.028 4.918 0.332 0.0000.000 0.000 0.000 -0.000 0.00095 90 sd13i 19.88 0.0 5. 289 1.034 4.398 0.339 0.0000.000 0.000 0.000 -0.000 0.00096 91 sd13i 20.08 0.0 5. 093 1.040 3.924 0.346 0.0000.000 0.000 0.000 -0.000 0.00097 92 sd13i 20.28 0.0 4.916 1.046 3.497 0.355 0.0000.000 0.000 0.000 -0.000 0.00098 93 sd13i 20.48 0.0 4.759 1.053 3.115 0.364 0.0000.000 0.000 0.000 -0.000 0.00099 94 sd13i 20.68 0.0 4.621 1.060 2.780 0.375 0.0000.000 0.000 0.000 -0.000 0.000100 95 sd13i 20.88 0.0 4. 502 1.067 2.492 0.387 0.0000.000 0.000 0.000 -0.000 0.000101 96 sd13i 21.08 0.0 4. 402 1.074 2.249 0.401 0.0000.000 0.000 0.000 -0.000 0.000102 97 sd13i 21.28 0.0 4. 321 1.081 2.053 0.416 0.0000.000 0.000 0.000 -0.000 0.000103 98 sd13i 21.48 0.0 4. 259 1.088 1.903 0.432 0.0000.000 0.000 0.000 -0.000 0.000104 99 sd13i 21.68 0.0 4. 216 1.096 1.799 0.449 0.0000.000 0.000 0.000 -0.000 0.000105 100 sd13i 21.88 0.0 4. 192 1.104 1.742 0.467 0.0000.000 0.000 0.000 -0.000 0.000106 101 sd13j 22.03 0.0 4. 187 1.109 1.729 0.481 0.0000.000 0.000 0.000 -0.000 0.000107 102 sd13j 22.18 0.0 4. 193 1.115 1.742 0.495 0.0000.000 0.000 0.000 -0.000 0.000108 103 sd13i 22.38 0.0 4. 217 1.123 1.801 0.513 0.0000.000 0.000 0.000 -0.000 0.000109 104 sd13i 22.58 0.0 4.260 1.130 1.905 0.530 0.0000.000 0.000 0.000 -0.000 0.000110 105 sd13i 22.78 0.0 4.322 1.137 2.056 0.546 0.0000.000 0.000 0.000 -0.000 0.000111 106 sd13i 22.98 0.0 4.404 1.145 2.253 0.561 0.0000.000 0.000 0.000 -0.000 0.000112 107 sd13i 23.18 0.0 4.504 1.152 2.496 0.574 0.0000.000 0.000 0.000 -0.000 0.000113 108 sd13i 23.38 0.0 4.624 1.159 2.786 0.586 0.0000.000 0.000 0.000 -0.000 0.000114 109 sd13i 23.58 0.0 4.763 1.166 3.122 0.597 0.0000.000 0.000 0.000 -0.000 0.000115 110 sd13i 23.78 0.0 4.921 1.172 3.504 0.607 0.0000.000 0.000 0.000 -0.000 0.000116 111 sd13i 23.98 0.0 5.098 1.179 3.932 0.615 0.0000.000 0.000 0.000 -0.000 0.000117 112 sd13i 24.18 0.0 5.294 1.185 4.407 0.623 0.0000.000 0.000 0.000 -0.000 0.000118 113 sd13i 24.38 0.0 5.509 1.191 4.928 0.630 0.0000.000 0.000 0.000 -0.000 0.000119 114 sd13i 24.58 0.0 5.743 1.196 5.495 0.636 0.000 0.000 0.000 0.000 -0.000 0.000120 115 sd13i 24.78 0.0 5.997 1.202 6.108 0.641 0.000 0.000 0.000 0.000 -0.000 0.000121 116 esdm 24.78 0.0 5.997 1.202 6.108 0.641 0.000 0.000 0.000 0.000 -0.000 0.000122 117 eesdm 24.78 0.0 5.997 1.202 6.108 0.641 0.000 0.000 0.000 0.000 -0.000 0.000123 118 sd13k 25.17 0.0 6.548 1.212 7.443 0.651 0.0000.000 0.000 0.000 -0.000 0.000124 119 bpm 25.17 2.0 6.548 1.212 7.443 0.651 0.0000.000 0.000 0.000 -0.000 0.000125 120 sdc13 25.49 0.0 7. 054 1.219 8.667 0.657 0.0000.000 0.000 0.000 -0.000 0.000126 121 gs 25.49 0.0 7. 054 1.219 8.667 0.657 0.0000.000 0.000 0.000 -0.000 0.000127 122 q8 25.85 -1.0 9.284 1.226 8.363 0.664 0.0000.000 0.000 0.000 -0.000 0.000128 123 sd2 26.14 0.0 1 2.944 1.231 6.834 0.670 0.0000.000 0.000 0.000 -0.000 0.000129 124 sx8 26.30 1.5 1 5.230 1.232 6.066 0.674 0.0000.000 0.000 0.000 -0.000 0.000130 125 qt 26.30 0.0 1 5.230 1.232 6.066 0.674 0.0000.000 0.000 0.000 -0.000 0.000131 126 hcm 26.30 0.0 1 5.230 1.232 6.066 0.674 0.0000.000 0.000 0.000 0.000 0.000132 127 vcm 26.30 0.0 1 5.230 1.232 6.066 0.674 0.0000.000 0.000 0.000 -0.000 -0.000133 128 sd3 26.40 0.0 1 6.785 1.234 5.604 0.676 0.000 0.000 0.000 0.000 -0.000 0.000134 129 q7 26.90 1.0 1 5.675 1.238 6.289 0.691 0.0000.000 0.000 0.000 -0.000 0.000135 130 sdb7 27.07 0.0 1 2.618 1.240 7.633 0.695 0.0000.000 0.000 0.000 -0.000 0.000136 131 bpm 27.07 2.0 1 2.618 1.240 7.633 0.695 0.0000.000 0.000 0.000 -0.000 0.000137 132 sd42 27.19 0.0 1 0.549 1.242 8.729 0.697 0.0000.000 0.000 0.000 -0.000 0.000138 133 sx7 27.35 -1.5 8. 174 1.244 10.246 0.700 0.0000.000 0.000 0.000 -0.000 0.000139 134 hcm 27.35 0.0 8. 174 1.244 10.246 0.700 0.0000.000 0.000 0.000 0.000 0.000140 135 vcm 27.35 0.0 8. 174 1.244 10.246 0.700 0.0000.000 0.000 0.000 -0.000 -0.000141 136 sd5 27.45 0.0 6.847 1.246 11.258 0.701 0.0000.000 0.000 0.000 -0.000 0.000142 137 q6 27.81 -1.0 3. 622 1.258 13.575 0.706 0.0000.000 0.000 0.000 -0.000 0.000143 138 ge 27.81 0.0 3. 622 1.258 13.575 0.706 0.0000.000 0.000 0.000 -0.000 0.000144 139 sd7 28.23 0.0 1.5 88 1.286 14.410 0.711 0.0000.000 0.000 0.000 -0.000 0.000145 140 dip 28.23 0.0 1.5 88 1.286 14.410 0.711 0.0000.000 0.000 0.000 0.000 0.000146 141 bend0 29.28 0.5 0. 760 1.586 16.200 0.722 0.0000.000 0.000 0.000 -0.000 0.000147 142 sd7 29.70 0.0 2. 130 1.640 16.754 0.726 0.0000.000 0.000 0.000 -0.000 0.000148 143 gs 29.70 0.0 2. 130 1.640 16.754 0.726 0.0000.000 0.000 0.000 -0.000 0.000149 144 q9 30.06 -1.0 4.768 1.658 14.116 0.729 0.000 0.000 0.000 0.000 -0.000 0.000150 145 sd8 30.16 0.0 5.951 1.661 12.655 0.730 0.0000.000 0.000 0.000 -0.000 0.000151 146 sx9 30.32 -1.5 8.127 1.665 10.485 0.733 0.0000.000 0.000 0.000 -0.000 0.000152 147 hcm 30.32 0.0 8.127 1.665 10.485 0.733 0.0000.000 0.000 0.000 0.000 0.000153 148 vcm 30.32 0.0 8.127 1.665 10.485 0.733 0.0000.000 0.000 0.000 -0.000 -0.000154 149 sdb8 30.50 0.0 1 0.852 1.668 8.384 0.736 0.0000.000 0.000 0.000 -0.000 0.000155 150 bpm 30.50 2.0 1 0.852 1.668 8.384 0.736 0.0000.000 0.000 0.000 -0.000 0.000156 151 sd9a 30.70 0.0 1 4.606 1.670 6.203 0.740 0.0000.000 0.000 0.000 -0.000 0.000157 152 q10 31.06 1.0 18.419 1.674 4.185 0.752 0.0000.000 0.000 0.000 -0.000 0.000158 153 sd8 31.16 0.0 18.397 1.675 3.971 0.756 0.0000.000 0.000 0.000 -0.000 0.000159 154 sx10 31.32 1.5 18.363 1.676 3.650 0.762 0.0000.000 0.000 0.000 -0.000 0.000160 155 qt 31.32 0.0 18.363 1.676 3.650 0.762 0.0000.000 0.000 0.000 -0.000 0.000161 156 hcm 31.32 0.0 18.363 1.676 3.650 0.762 0.0000.000 0.000 0.000 0.000 0.000162 157 vcm 31.32 0.0 18.363 1.676 3.650 0.762 0.0000.000 0.000 0.000 -0.000 -0.000163 158 ge 31.32 0.0 18.363 1.676 3.650 0.762 0.0000.000 0.000 0.000 -0.000 0.000164 159 sdc44 31.66 0.0 18.302 1.679 3.058 0.779 0.0000.000 0.000 0.000 -0.000 0.000165 160 bpm 31.66 2.0 18.302 1.679 3.058 0.779 0.0000.000 0.000 0.000 -0.000 0.000166 161 sdac4 32.25 0.0 18.227 1.684 2.325 0.814 0.0000.000 0.000 0.000 -0.000 0.000167 162 ssdac 32.25 0.0 18.227 1.684 2.325 0.814 0.0000.000 0.000 0.000 -0.000 0.000168 163 sdac2 32.45 0.0 18.210 1.686 2.157 0.828 0.0000.000 0.000 0.000 -0.000 0.000169 164 sdac2 32.65 0.0 18.198 1.688 2.031 0.843 0.0000.000 0.000 0.000 -0.000 0.000170 165 sdac2 32.85 0.0 18.189 1.689 1.947 0.859 0.0000.000 0.000 0.000 -0.000 0.000171 166 sdac2 33.05 0.0 18.185 1.691 1.905 0.876 0.0000.000 0.000 0.000 -0.000 0.000172 167 sdac2 33.25 0.0 18.186 1.693 1.905 0.893 0.0000.000 0.000 0.000 -0.000 0.000173 168 sdac2 33.45 0.0 18.191 1.695 1.947 0.909 0.0000.000 0.000 0.000 -0.000 0.000174 169 sdac2 33.65 0.0 18.200 1.696 2.032 0.925 0.0000.000 0.000 0.000 -0.000 0.000175 170 sdac2 33.85 0.0 18.214 1.698 2.158 0.940 0.000 0.000 0.000 0.000 -0.000 0.000176 171 sdac2 34.05 0.0 18.232 1.700 2.327 0.955 0.0000.000 0.000 0.000 -0.000 0.000177 172 esdac 34.05 0.0 18.232 1.700 2.327 0.955 0.0000.000 0.000 0.000 -0.000 0.000178 173 sdac4 34.63 0.0 18.310 1.705 3.061 0.990 0.0000.000 0.000 0.000 -0.000 0.000179 174 bpm 34.63 2.0 18.310 1.705 3.061 0.990 0.0000.000 0.000 0.000 -0.000 0.000180 175 sdc45 34.97 0.0 18.373 1.708 3.655 1.006 0.0000.000 0.000 0.000 -0.000 0.000181 176 gs 34.97 0.0 18.373 1.708 3.655 1.006 0.0000.000 0.000 0.000 -0.000 0.000182 177 sx10 35.13 1.5 18.407 1.709 3.977 1.013 0.0000.000 0.000 0.000 -0.000 0.000183 178 hcm 35.13 0.0 18.407 1.709 3.977 1.013 0.0000.000 0.000 0.000 0.000 0.000184 179 vcm 35.13 0.0 18.407 1.709 3.977 1.013 0.0000.000 0.000 0.000 -0.000 -0.000185 180 sd8 35.23 0.0 18.430 1.710 4.191 1.017 0.0000.000 0.000 0.000 -0.000 0.000186 181 q10 35.59 1.0 1 4.617 1.713 6.212 1.028 0.000 0.000 0.000 0.000 -0.000 0.000187 182 sd91 35.84 0.0 1 0.076 1.717 8.947 1.034 0.0000.000 0.000 0.000 -0.000 0.000188 183 bpm 35.84 2.0 1 0.076 1.717 8.947 1.034 0.0000.000 0.000 0.000 -0.000 0.000189 184 sd42 35.97 0.0 8.134 1.719 10.500 1.036 0.0000.000 0.000 0.000 -0.000 0.000190 185 sx9 36.13 -1.5 5.957 1.723 12.673 1.038 0.0000.000 0.000 0.000 -0.000 0.000191 186 hcm 36.13 0.0 5.957 1.723 12.673 1.038 0.0000.000 0.000 0.000 0.000 0.000192 187 vcm 36.13 0.0 5.957 1.723 12.673 1.038 0.0000.000 0.000 0.000 -0.000 -0.000193 188 sd8 36.23 0.0 4.773 1.726 14.136 1.039 0.0000.000 0.000 0.000 -0.000 0.000194 189 q9 36.59 -1.0 2. 133 1.744 16.776 1.043 0.0000.000 0.000 0.000 -0.000 0.000195 190 ge 36.59 0.0 2. 133 1.744 16.776 1.043 0.0000.000 0.000 0.000 -0.000 0.000196 191 sd7 37.01 0.0 0.7 62 1.798 16.221 1.047 0.0000.000 0.000 0.000 -0.000 0.000197 192 dip 37.01 0.0 0.7 62 1.798 16.221 1.047 0.0000.000 0.000 0.000 0.000 0.000198 193 bend0 38.06 0.5 1. 585 2.097 14.436 1.058 0.0000.000 0.000 0.000 -0.000 0.000199 194 sd7 38.48 0.0 3.617 2.126 13.599 1.062 0.0000.000 0.000 0.000 -0.000 0.000200 195 gs 38.48 0.0 3.617 2.126 13.599 1.062 0.0000.000 0.000 0.000 -0.000 0.000201 196 q6 38.84 -1.0 6.840 2.137 11.277 1.067 0.0000.000 0.000 0.000 -0.000 0.000202 197 sd5 38.94 0.0 8.166 2.139 10.264 1.068 0.0000.000 0.000 0.000 -0.000 0.000203 198 sx7 39.10 -1.5 1 0.539 2.142 8.744 1.071 0.0000.000 0.000 0.000 -0.000 0.000204 199 hcm 39.10 0.0 1 0.539 2.142 8.744 1.071 0.0000.000 0.000 0.000 0.000 0.000205 200 vcm 39.10 0.0 1 0.539 2.142 8.744 1.071 0.0000.000 0.000 0.000 -0.000 -0.000206 201 sd41 39.27 0.0 1 3.435 2.144 7.251 1.075 0.0000.000 0.000 0.000 -0.000 0.000207 202 bpm 39.27 2.0 1 3.435 2.144 7.251 1.075 0.0000.000 0.000 0.000 -0.000 0.000208 203 sdb9 39.39 0.0 1 5.662 2.146 6.299 1.077 0.0000.000 0.000 0.000 -0.000 0.000209 204 q7 39.89 1.0 1 6.773 2.150 5.612 1.092 0.0000.000 0.000 0.000 -0.000 0.000210 205 sd3 39.99 0.0 1 5.220 2.151 6.074 1.095 0.0000.000 0.000 0.000 -0.000 0.000211 206 sx8 40.15 1.5 1 2.936 2.153 6.843 1.099 0.0000.000 0.000 0.000 -0.000 0.000212 207 qt 40.15 0.0 1 2.936 2.153 6.843 1.099 0.0000.000 0.000 0.000 -0.000 0.000213 208 hcm 40.15 0.0 1 2.936 2.153 6.843 1.099 0.0000.000 0.000 0.000 0.000 0.000214 209 vcm 40.15 0.0 1 2.936 2.153 6.843 1.099 0.0000.000 0.000 0.000 -0.000 -0.000215 210 sd2 40.44 0.0 9.280 2.157 8.373 1.105 0.0000.000 0.000 0.000 -0.000 0.000216 211 q8 40.80 -1.0 7.052 2.165 8.677 1.111 0.000 0.000 0.000 0.000 -0.000 0.000217 212 ge 40.80 0.0 7.052 2.165 8.677 1.111 0.000 0.000 0.000 0.000 -0.000 0.000218 213 sd87 41.12 0.0 6.547 2.172 7.448 1.118 0.0000.000 0.000 0.000 -0.000 0.000219 214 bpm 41.12 2.0 6.547 2.172 7.448 1.118 0.0000.000 0.000 0.000 -0.000 0.000220 215 sd13a 44.26 0.0 4. 198 2.274 1.726 1.288 0.0000.000 0.000 0.000 -0.000 0.000221 216 sd13a 47.40 0.0 6.550 2.377 7.440 1.458 0.0000.000 0.000 0.000 -0.000 0.000222 217 bpm 47.40 2.0 6.550 2.377 7.440 1.458 0.0000.000 0.000 0.000 -0.000 0.000223 218 sd86 47.72 0.0 7.054 2.384 8.666 1.464 0.0000.000 0.000 0.000 -0.000 0.000224 219 gs 47.72 0.0 7.054 2.384 8.666 1.464 0.0000.000 0.000 0.000 -0.000 0.000225 220 q8 48.08 -1.0 9.283 2.392 8.363 1.471 0.0000.000 0.000 0.000 -0.000 0.000226 221 sd2 48.37 0.0 1 2.940 2.396 6.835 1.477 0.0000.000 0.000 0.000 -0.000 0.000227 222 sx8 48.53 1.5 1 5.225 2.398 6.068 1.481 0.0000.000 0.000 0.000 -0.000 0.000228 223 hcm 48.53 0.0 1 5.225 2.398 6.068 1.481 0.0000.000 0.000 0.000 0.000 0.000229 224 vcm 48.53 0.0 1 5.225 2.398 6.068 1.481 0.0000.000 0.000 0.000 -0.000 -0.000230 225 sd3 48.64 0.0 1 6.779 2.399 5.607 1.483 0.0000.000 0.000 0.000 -0.000 0.000231 226 q7 49.13 1.0 1 5.667 2.403 6.294 1.498 0.0000.000 0.000 0.000 -0.000 0.000232 227 sdb10 49.30 0.0 1 2.612 2.405 7.640 1.502 0.0000.000 0.000 0.000 -0.000 0.000233 228 bpm 49.30 2.0 1 2.612 2.405 7.640 1.502 0.0000.000 0.000 0.000 -0.000 0.000234 229 sd42 49.42 0.0 10.543 2.407 8.738 1.504 0.0000.000 0.000 0.000 -0.000 0.000235 230 sx7 49.58 -1.5 8.169 2.409 10.258 1.507 0.0000.000 0.000 0.000 -0.000 0.000236 231 hcm 49.58 0.0 8.169 2.409 10.258 1.507 0.0000.000 0.000 0.000 0.000 0.000237 232 vcm 49.58 0.0 8.169 2.409 10.258 1.507 0.0000.000 0.000 0.000 -0.000 -0.000238 233 sd5 49.68 0.0 6. 842 2.411 11.271 1.508 0.0000.000 0.000 0.000 -0.000 0.000239 234 q6 50.04 -1.0 3. 618 2.423 13.592 1.513 0.0000.000 0.000 0.000 -0.000 0.000240 235 ge 50.04 0.0 3. 618 2.423 13.592 1.513 0.0000.000 0.000 0.000 -0.000 0.000241 236 sd7 50.46 0.0 1. 586 2.451 14.430 1.518 0.0000.000 0.000 0.000 -0.000 0.000242 237 dip 50.46 0.0 1. 586 2.451 14.430 1.518 0.0000.000 0.000 0.000 0.000 0.000243 238 bend0 51.52 0.5 0.7 62 2.751 16.227 1.529 0.0000.000 0.000 0.000 -0.000 0.000244 239 sd7 51.94 0.0 2.134 2.805 16.783 1.533 0.0000.000 0.000 0.000 -0.000 0.000245 240 gs 51.94 0.0 2.134 2.805 16.783 1.533 0.0000.000 0.000 0.000 -0.000 0.000246 241 q9 52.30 -1.0 4. 777 2.823 14.142 1.536 0.0000.000 0.000 0.000 -0.000 0.000247 242 sd8 52.40 0.0 5. 962 2.826 12.679 1.537 0.0000.000 0.000 0.000 -0.000 0.000248 243 sx9 52.56 -1.5 8.141 2.830 10.505 1.540 0.0000.000 0.000 0.000 -0.000 0.000249 244 hcm 52.56 0.0 8.141 2.830 10.505 1.540 0.0000.000 0.000 0.000 0.000 0.000250 245 vcm 52.56 0.0 8.141 2.830 10.505 1.540 0.0000.000 0.000 0.000 -0.000 -0.000251 246 sdb11 52.73 0.0 10.868 2.833 8.402 1.542 0.0000.000 0.000 0.000 -0.000 0.000252 247 bpm 52.73 2.0 10.868 2.833 8.402 1.542 0.0000.000 0.000 0.000 -0.000 0.000253 248 sd92 52.93 0.0 1 4.629 2.835 6.216 1.547 0.000 0.000 0.000 0.000 -0.000 0.000254 249 q10 53.29 1.0 1 8.445 2.839 4.194 1.559 0.0000.000 0.000 0.000 -0.000 0.000255 250 sd8 53.39 0.0 1 8.423 2.840 3.980 1.563 0.0000.000 0.000 0.000 -0.000 0.000256 251 sx10 53.55 1.5 1 8.389 2.841 3.659 1.569 0.0000.000 0.000 0.000 -0.000 0.000257 252 hcm 53.55 0.0 1 8.389 2.841 3.659 1.569 0.0000.000 0.000 0.000 0.000 0.000258 253 vcm 53.55 0.0 1 8.389 2.841 3.659 1.569 0.0000.000 0.000 0.000 -0.000 -0.000259 254 ge 53.55 0.0 1 8.389 2.841 3.659 1.569 0.0000.000 0.000 0.000 -0.000 0.000260 255 sd89 53.89 0.0 1 8.326 2.844 3.065 1.585 0.0000.000 0.000 0.000 -0.000 0.000261 256 bpm 53.89 2.0 1 8.326 2.844 3.065 1.585 0.0000.000 0.000 0.000 -0.000 0.000262 257 sdac1 55.38 0.0 1 8.202 2.857 1.901 1.691 0.0000.000 0.000 0.000 -0.000 0.000263 258 sdac1 56.86 0.0 1 8.320 2.870 3.055 1.796 0.0000.000 0.000 0.000 -0.000 0.000264 259 bpm 56.86 2.0 1 8.320 2.870 3.055 1.796 0.0000.000 0.000 0.000 -0.000 0.000265 260 sd88 57.20 0.0 1 8.382 2.873 3.647 1.813 0.0000.000 0.000 0.000 -0.000 0.000266 261 gs 57.20 0.0 1 8.382 2.873 3.647 1.813 0.0000.000 0.000 0.000 -0.000 0.000267 262 sx10 57.36 1.5 1 8.415 2.874 3.967 1.819 0.000 0.000 0.000 0.000 -0.000 0.000268 263 qt 57.36 0.0 1 8.415 2.874 3.967 1.819 0.000 0.000 0.000 0.000 -0.000 0.000269 264 hcm 57.36 0.0 1 8.415 2.874 3.967 1.819 0.000 0.000 0.000 0.000 0.000 0.000270 265 vcm 57.36 0.0 1 8.415 2.874 3.967 1.819 0.000 0.000 0.000 0.000 -0.000 -0.000271 266 sd8 57.46 0.0 1 8.437 2.875 4.181 1.823 0.0000.000 0.000 0.000 -0.000 0.000272 267 q10 57.82 1.0 1 4.621 2.878 6.196 1.835 0.0000.000 0.000 0.000 -0.000 0.000273 268 sd93 58.07 0.0 10.076 2.882 8.925 1.840 0.0000.000 0.000 0.000 -0.000 0.000274 269 bpm 58.07 2.0 10.076 2.882 8.925 1.840 0.0000.000 0.000 0.000 -0.000 0.000275 270 sdb12 58.20 0.0 8.136 2.884 10.473 1.842 0.0000.000 0.000 0.000 -0.000 0.000276 271 sx9 58.36 -1.5 5. 957 2.888 12.641 1.845 0.0000.000 0.000 0.000 -0.000 0.000277 272 hcm 58.36 0.0 5. 957 2.888 12.641 1.845 0.0000.000 0.000 0.000 0.000 0.000278 273 vcm 58.36 0.0 5. 957 2.888 12.641 1.845 0.0000.000 0.000 0.000 -0.000 -0.000279 274 sd8 58.46 0.0 4. 773 2.891 14.100 1.846 0.0000.000 0.000 0.000 -0.000 0.000280 275 q9 58.82 -1.0 2.132 2.909 16.734 1.849 0.0000.000 0.000 0.000 -0.000 0.000281 276 ge 58.82 0.0 2.132 2.909 16.734 1.849 0.0000.000 0.000 0.000 -0.000 0.000282 277 sd7 59.24 0.0 0. 760 2.963 16.180 1.854 0.0000.000 0.000 0.000 -0.000 0.000283 278 dip 59.24 0.0 0. 760 2.963 16.180 1.854 0.0000.000 0.000 0.000 0.000 0.000284 279 bend0 60.29 0.5 1. 589 3.263 14.401 1.865 0.0000.000 0.000 0.000 -0.000 0.000285 280 sd7 60.71 0.0 3. 625 3.291 13.567 1.869 0.000 0.000 0.000 0.000 -0.000 0.000286 281 gs 60.71 0.0 3. 625 3.291 13.567 1.869 0.000 0.000 0.000 0.000 -0.000 0.000287 282 q6 61.07 -1.0 6. 854 3.302 11.251 1.874 0.0000.000 0.000 0.000 -0.000 0.000288 283 sd5 61.17 0.0 8.182 3.305 10.240 1.875 0.000 0.000 0.000 0.000 -0.000 0.000289 284 sx7 61.33 -1.5 10.559 3.307 8.725 1.878 0.0000.000 0.000 0.000 -0.000 0.000290 285 hcm 61.33 0.0 10.559 3.307 8.725 1.878 0.0000.000 0.000 0.000 0.000 0.000291 286 vcm 61.33 0.0 10.559 3.307 8.725 1.878 0.0000.000 0.000 0.000 -0.000 -0.000292 287 sd41 61.50 0.0 1 3.461 3.310 7.236 1.881 0.0000.000 0.000 0.000 -0.000 0.000293 288 bpm 61.50 2.0 1 3.461 3.310 7.236 1.881 0.0000.000 0.000 0.000 -0.000 0.000294 289 sdb13 61.62 0.0 1 5.691 3.311 6.286 1.884 0.000 0.000 0.000 0.000 -0.000 0.000295 290 q7 62.12 1.0 1 6.804 3.315 5.602 1.899 0.0000.000 0.000 0.000 -0.000 0.000296 291 sd3 62.22 0.0 1 5.247 3.316 6.063 1.902 0.0000.000 0.000 0.000 -0.000 0.000297 292 sx8 62.38 1.5 12. 959 3.318 6.831 1.906 0.0000.000 0.000 0.000 -0.000 0.000298 293 hcm 62.38 0.0 12. 959 3.318 6.831 1.906 0.0000.000 0.000 0.000 0.000 0.000299 294 vcm 62.38 0.0 12. 959 3.318 6.831 1.906 0.0000.000 0.000 0.000 -0.000 -0.000300 295 sd2 62.67 0.0 9.296 3.322 8.360 1.912 0.0000.000 0.000 0.000 -0.000 0.000301 296 q8 63.03 -1.0 7.063 3.330 8.664 1.918 0.000 0.000 0.000 0.000 -0.000 0.000302 297 ge 63.03 0.0 7.063 3.330 8.664 1.918 0.000 0.000 0.000 0.000 -0.000 0.000303 298 sd87 63.35 0.0 6.556 3.337 7.439 1.925 0.0000.000 0.000 0.000 -0.000 0.000304 299 bpm 63.35 2.0 6.556 3.337 7.439 1.925 0.0000.000 0.000 0.000 -0.000 0.000305 300 sd13a 66.49 0.0 4.192 3.439 1.730 2.094 0.0000.000 0.000 0.000 -0.000 0.000306 301 sd13a 69.64 0.0 6. 536 3.542 7.429 2.264 0.0000.000 0.000 0.000 -0.000 0.000307 302 bpm 69.64 2.0 6. 536 3.542 7.429 2.264 0.0000.000 0.000 0.000 -0.000 0.000308 303 sd85 69.96 0.0 7. 040 3.549 8.651 2.271 0.0000.000 0.000 0.000 -0.000 0.000309 304 gs 69.96 0.0 7. 040 3.549 8.651 2.271 0.0000.000 0.000 0.000 -0.000 0.000310 305 q8 70.32 -1.0 9.265 3.557 8.348 2.277 0.0000.000 0.000 0.000 -0.000 0.000311 306 sd2 70.61 0.0 1 2.916 3.561 6.822 2.283 0.0000.000 0.000 0.000 -0.000 0.000312 307 sx6 70.77 1.5 1 5.197 3.563 6.055 2.287 0.0000.000 0.000 0.000 -0.000 0.000313 308 hcm 70.77 0.0 1 5.197 3.563 6.055 2.287 0.0000.000 0.000 0.000 0.000 0.000314 309 vcm 70.77 0.0 1 5.197 3.563 6.055 2.287 0.0000.000 0.000 0.000 -0.000 -0.000315 310 sd3 70.87 0.0 1 6.748 3.564 5.595 2.290 0.0000.000 0.000 0.000 -0.000 0.000316 311 q7 71.36 1.0 1 5.639 3.568 6.280 2.305 0.0000.000 0.000 0.000 -0.000 0.000317 312 sdb14 71.53 0.0 1 2.591 3.570 7.621 2.308 0.0000.000 0.000 0.000 -0.000 0.000318 313 bpm 71.53 2.0 1 2.591 3.570 7.621 2.308 0.0000.000 0.000 0.000 -0.000 0.000319 314 sd43 71.66 0.0 1 0.524 3.572 8.718 2.311 0.0000.000 0.000 0.000 -0.000 0.000320 315 sx5 71.82 -1.5 8.155 3.575 10.233 2.313 0.0000.000 0.000 0.000 -0.000 0.000321 316 hcm 71.82 0.0 8.155 3.575 10.233 2.313 0.0000.000 0.000 0.000 0.000 0.000322 317 vcm 71.82 0.0 8.155 3.575 10.233 2.313 0.0000.000 0.000 0.000 -0.000 -0.000323 318 sd5 71.92 0.0 6.831 3.577 11.243 2.315 0.0000.000 0.000 0.000 -0.000 0.000324 319 q6 72.28 -1.0 3.613 3.589 13.559 2.320 0.0000.000 0.000 0.000 -0.000 0.000325 320 ge 72.28 0.0 3.613 3.589 13.559 2.320 0.0000.000 0.000 0.000 -0.000 0.000326 321 sd7 72.70 0.0 1. 584 3.617 14.394 2.324 0.0000.000 0.000 0.000 -0.000 0.000327 322 dip 72.70 0.0 1. 584 3.617 14.394 2.324 0.0000.000 0.000 0.000 0.000 0.000328 323 bend0 73.75 0.5 0. 761 3.916 16.186 2.335 0.0000.000 0.000 0.000 -0.000 0.000329 324 sd7 74.17 0.0 2.130 3.970 16.741 2.339 0.0000.000 0.000 0.000 -0.000 0.000330 325 gs 74.17 0.0 2.130 3.970 16.741 2.339 0.0000.000 0.000 0.000 -0.000 0.000331 326 q4 74.53 -1.0 4. 647 3.989 14.599 2.343 0.0000.000 0.000 0.000 -0.000 0.000332 327 sd8 74.63 0.0 5. 736 3.992 13.368 2.344 0.0000.000 0.000 0.000 -0.000 0.000333 328 sx3 74.79 -1.5 7. 728 3.995 11.513 2.346 0.0000.000 0.000 0.000 -0.000 0.000334 329 hcm 74.79 0.0 7. 728 3.995 11.513 2.346 0.0000.000 0.000 0.000 0.000 0.000335 330 vcm 74.79 0.0 7. 728 3.995 11.513 2.346 0.0000.000 0.000 0.000 -0.000 -0.000336 331 sdb15 74.96 0.0 10.207 3.999 9.678 2.349 0.0000.000 0.000 0.000 -0.000 0.000337 332 bpm 74.96 2.0 10.207 3.999 9.678 2.349 0.0000.000 0.000 0.000 -0.000 0.000338 333 sd9a 75.16 0.0 1 3.606 4.001 7.713 2.352 0.0000.000 0.000 0.000 -0.000 0.000339 334 q5 75.52 1.0 1 7.069 4.005 6.167 2.361 0.0000.000 0.000 0.000 -0.000 0.000340 335 sd10 75.89 0.0 1 7.054 4.008 6.133 2.371 0.0000.000 0.000 0.000 -0.000 0.000341 336 sx4 76.05 1.5 1 7.052 4.010 6.132 2.375 0.000 0.000 0.000 0.000 -0.000 0.000342 337 qt 76.05 0.0 1 7.052 4.010 6.132 2.375 0.000 0.000 0.000 0.000 -0.000 0.000343 338 hcm 76.05 0.0 1 7.052 4.010 6.132 2.375 0.000 0.000 0.000 0.000 0.000 0.000344 339 vcm 76.05 0.0 1 7.052 4.010 6.132 2.375 0.000 0.000 0.000 0.000 -0.000 -0.000345 340 sdb4 76.25 0.0 1 7.055 4.012 6.143 2.380 0.0000.000 0.000 0.000 -0.000 0.000346 341 bpm 76.25 2.0 1 7.055 4.012 6.143 2.380 0.0000.000 0.000 0.000 -0.000 0.000347 342 sd10a 76.42 0.0 1 7.061 4.013 6.162 2.384 0.0000.000 0.000 0.000 -0.000 0.000348 343 q5 76.78 1.0 13. 594 4.017 7.702 2.393 0.0000.000 0.000 0.000 -0.000 0.000349 344 sd93 77.04 0.0 9. 481 4.021 10.146 2.398 0.000 0.000 0.000 0.000 -0.000 0.000350 345 bpm 77.04 2.0 9. 481 4.021 10.146 2.398 0.000 0.000 0.000 0.000 -0.000 0.000351 346 sdb17 77.16 0.0 7. 714 4.023 11.493 2.399 0.0000.000 0.000 0.000 -0.000 0.000352 347 sx3 77.32 -1.5 5. 724 4.027 13.342 2.401 0.0000.000 0.000 0.000 -0.000 0.000353 348 hcm 77.32 0.0 5. 724 4.027 13.342 2.401 0.0000.000 0.000 0.000 0.000 0.000354 349 vcm 77.32 0.0 5. 724 4.027 13.342 2.401 0.0000.000 0.000 0.000 -0.000 -0.000355 350 sd8 77.42 0.0 4.6 35 4.030 14.569 2.403 0.0000.000 0.000 0.000 -0.000 0.000356 351 q4 77.78 -1.0 2.1 20 4.049 16.703 2.406 0.0000.000 0.000 0.000 -0.000 0.000357 352 ge 77.78 0.0 2.1 20 4.049 16.703 2.406 0.0000.000 0.000 0.000 -0.000 0.000358 353 sd7 78.20 0.0 0. 754 4.102 16.144 2.410 0.0000.000 0.000 0.000 -0.000 0.000359 354 dip 78.20 0.0 0. 754 4.102 16.144 2.410 0.0000.000 0.000 0.000 0.000 0.000360 355 bend0 79.25 0.5 1. 600 4.402 14.356 2.421 0.000 0.000 0.000 0.000 -0.000 0.000361 356 sd6 79.96 0.0 5.627 4.440 12.971 2.430 0.0000.000 0.000 0.000 -0.000 0.000362 357 gs 79.96 0.0 5.627 4.440 12.971 2.430 0.0000.000 0.000 0.000 -0.000 0.000363 358 sx2 80.12 -1.5 6.920 4.444 12.678 2.432 0.0000.000 0.000 0.000 -0.000 0.000364 359 hcm 80.12 0.0 6.920 4.444 12.678 2.432 0.0000.000 0.000 0.000 0.000 0.000365 360 vcm 80.12 0.0 6.920 4.444 12.678 2.432 0.0000.000 0.000 0.000 -0.000 -0.000366 361 sd5 80.22 0.0 7.800 4.447 12.499 2.433 0.0000.000 0.000 0.000 -0.000 0.000367 362 q3 80.58 -1.0 1 2.302 4.452 10.890 2.438 0.0000.000 0.000 0.000 -0.000 0.000368 363 sd141 81.02 0.0 20.541 4.457 8.127 2.445 0.0000.000 0.000 0.000 -0.000 0.000369 364 bpm 81.02 2.0 20.541 4.457 8.127 2.445 0.0000.000 0.000 0.000 -0.000 0.000370 365 sdb18 81.14 0.0 2 3.205 4.458 7.438 2.447 0.0000.000 0.000 0.000 -0.000 0.000371 366 q2 81.63 1.0 2 5.015 4.461 7.546 2.459 0.000 0.000 0.000 0.000 -0.000 0.000372 367 sd3 81.73 0.0 2 3.353 4.461 8.180 2.461 0.0000.000 0.000 0.000 -0.000 0.000373 368 sx1 81.89 1.5 20.861 4.463 9.233 2.464 0.0000.000 0.000 0.000 -0.000 0.000374 369 qt 81.89 0.0 20.861 4.463 9.233 2.464 0.0000.000 0.000 0.000 -0.000 0.000375 370 hcm 81.89 0.0 20.861 4.463 9.233 2.464 0.0000.000 0.000 0.000 0.000 0.000376 371 vcm 81.89 0.0 20.861 4.463 9.233 2.464 0.0000.000 0.000 0.000 -0.000 -0.000377 372 sd2 82.18 0.0 1 6.709 4.465 11.319 2.468 0.0000.000 0.000 0.000 -0.000 0.000378 373 q1 82.54 -1.0 1 4.194 4.469 12.470 2.473 0.0000.000 0.000 0.000 -0.000 0.000379 374 ge 82.54 0.0 1 4.194 4.469 12.470 2.473 0.0000.000 0.000 0.000 -0.000 0.000380 375 sdc12 82.86 0.0 1 3.851 4.472 12.003 2.477 0.0000.000 0.000 0.000 -0.000 0.000381 376 bpm 82.86 2.0 1 3.851 4.472 12.003 2.477 0.0000.000 0.000 0.000 -0.000 0.000382 377 sd1e 88.52 0.0 1 0.901 4.549 7.995 2.575 0.000 0.000 0.000 0.000 -0.000 0.000383 378 sd1e 94.18 0.0 1 3.827 4.625 11.998 2.673 0.0000.000 0.000 0.000 -0.000 0.000384 379 bpm 94.18 2.0 1 3.827 4.625 11.998 2.673 0.0000.000 0.000 0.000 -0.000 0.000385 380 sdb1 94.50 0.0 1 4.169 4.629 12.465 2.677 0.0000.000 0.000 0.000 -0.000 0.000386 381 gs 94.50 0.0 1 4.169 4.629 12.465 2.677 0.0000.000 0.000 0.000 -0.000 0.000387 382 q1 94.86 -1.0 1 6.679 4.632 11.314 2.682 0.0000.000 0.000 0.000 -0.000 0.000388 383 sd2 95.15 0.0 2 0.823 4.635 9.229 2.687 0.0000.000 0.000 0.000 -0.000 0.000389 384 sx1 95.31 1.5 2 3.310 4.636 8.177 2.689 0.0000.000 0.000 0.000 -0.000 0.000390 385 qt 95.31 0.0 2 3.310 4.636 8.177 2.689 0.0000.000 0.000 0.000 -0.000 0.000391 386 hcm 95.31 0.0 2 3.310 4.636 8.177 2.689 0.0000.000 0.000 0.000 0.000 0.000392 387 vcm 95.31 0.0 2 3.310 4.636 8.177 2.689 0.0000.000 0.000 0.000 -0.000 -0.000393 388 sd3 95.41 0.0 2 4.968 4.637 7.542 2.692 0.0000.000 0.000 0.000 -0.000 0.000394 389 q2 95.91 1.0 2 3.161 4.640 7.435 2.703 0.000 0.000 0.000 0.000 -0.000 0.000395 390 sdb7 96.08 0.0 19.504 4.641 8.402 2.706 0.0000.000 0.000 0.000 -0.000 0.000396 391 bpm 96.08 2.0 19.504 4.641 8.402 2.706 0.0000.000 0.000 0.000 -0.000 0.000397 392 sd14a 96.46 0.0 1 2.276 4.645 10.886 2.713 0.0000.000 0.000 0.000 -0.000 0.000398 393 q3 96.82 -1.0 7.783 4.651 12.495 2.717 0.000 0.000 0.000 0.000 -0.000 0.000399 394 sd5 96.92 0.0 6.905 4.653 12.674 2.719 0.000 0.000 0.000 0.000 -0.000 0.000400 395 sx2 97.08 -1.5 5.614 4.657 12.966 2.721 0.0000.000 0.000 0.000 -0.000 0.000401 396 hcm 97.08 0.0 5.614 4.657 12.966 2.721 0.0000.000 0.000 0.000 0.000 0.000402 397 vcm 97.08 0.0 5.614 4.657 12.966 2.721 0.0000.000 0.000 0.000 -0.000 -0.000403 398 ge 97.08 0.0 5.614 4.657 12.966 2.721 0.0000.000 0.000 0.000 -0.000 0.000404 399 sd6 97.79 0.0 1. 596 4.695 14.351 2.729 0.0000.000 0.000 0.000 -0.000 0.000405 400 dip 97.79 0.0 1. 596 4.695 14.351 2.729 0.0000.000 0.000 0.000 0.000 0.000406 401 bend0 98.85 0.5 0. 756 4.995 16.148 2.740 0.0000.000 0.000 0.000 -0.000 0.000407 402 sd7 99.27 0.0 2.1 22 5.049 16.706 2.744 0.0000.000 0.000 0.000 -0.000 0.000408 403 gs 99.27 0.0 2.1 22 5.049 16.706 2.744 0.0000.000 0.000 0.000 -0.000 0.000409 404 q4 99.63 -1.0 4. 638 5.068 14.572 2.748 0.0000.000 0.000 0.000 -0.000 0.000410 405 sd8 99.73 0.0 5. 726 5.071 13.345 2.749 0.0000.000 0.000 0.000 -0.000 0.000411 406 sx3 99.89 -1.5 7.716 5.074 11.494 2.751 0.0000.000 0.000 0.000 -0.000 0.000412 407 hcm 99.89 0.0 7.716 5.074 11.494 2.751 0.0000.000 0.000 0.000 0.000 0.000413 408 vcm 99.89 0.0 7.716 5.074 11.494 2.751 0.0000.000 0.000 0.000 -0.000 -0.000414 409 sdb3 100.06 0.0 10. 195 5.078 9.664 2.753 0.0000.000 0.000 0.000 -0.000 0.000415 410 bpm 100.06 2.0 10. 195 5.078 9.664 2.753 0.0000.000 0.000 0.000 -0.000 0.000416 411 sd9a 100.26 0.0 1 3.594 5.080 7.704 2.757 0.0000.000 0.000 0.000 -0.000 0.000417 412 q5 100.62 1.0 1 7.059 5.084 6.163 2.766 0.0000.000 0.000 0.000 -0.000 0.000418 413 sd12 100.99 0.0 1 7.050 5.087 6.133 2.775 0.0000.000 0.000 0.000 -0.000 0.000419 414 sx4 101.15 1.5 1 7.051 5.089 6.134 2.780 0.0000.000 0.000 0.000 -0.000 0.000420 415 qt 101.15 0.0 1 7.051 5.089 6.134 2.780 0.0000.000 0.000 0.000 -0.000 0.000421 416 hcm 101.15 0.0 1 7.051 5.089 6.134 2.780 0.0000.000 0.000 0.000 0.000 0.000422 417 vcm 101.15 0.0 1 7.051 5.089 6.134 2.780 0.0000.000 0.000 0.000 -0.000 -0.000423 418 sdb4 101.35 0.0 1 7.056 5.091 6.147 2.785 0.0000.000 0.000 0.000 -0.000 0.000424 419 bpm 101.35 2.0 1 7.056 5.091 6.147 2.785 0.0000.000 0.000 0.000 -0.000 0.000425 420 sd10a 101.52 0.0 1 7.064 5.092 6.168 2.789 0.0000.000 0.000 0.000 -0.000 0.000426 421 q5 101.88 1.0 1 3.601 5.096 7.714 2.798 0.0000.000 0.000 0.000 -0.000 0.000427 422 sd91 102.13 0.0 9.490 5.100 10.164 2.802 0.0000.000 0.000 0.000 -0.000 0.000428 423 bpm 102.13 2.0 9.490 5.100 10.164 2.802 0.0000.000 0.000 0.000 -0.000 0.000429 424 sdb5 102.26 0.0 7.723 5.102 11.514 2.804 0.0000.000 0.000 0.000 -0.000 0.000430 425 sx3 102.42 -1.5 5.733 5.106 13.369 2.806 0.0000.000 0.000 0.000 -0.000 0.000431 426 hcm 102.42 0.0 5.733 5.106 13.369 2.806 0.0000.000 0.000 0.000 0.000 0.000432 427 vcm 102.42 0.0 5.733 5.106 13.369 2.806 0.0000.000 0.000 0.000 -0.000 -0.000433 428 sd8 102.52 0.0 4.644 5.109 14.600 2.807 0.0000.000 0.000 0.000 -0.000 0.000434 429 q4 102.88 -1.0 2. 128 5.128 16.742 2.811 0.0000.000 0.000 0.000 -0.000 0.000435 430 ge 102.88 0.0 2. 128 5.128 16.742 2.811 0.0000.000 0.000 0.000 -0.000 0.000436 431 sd7 103.30 0.0 0. 760 5.181 16.186 2.815 0.0000.000 0.000 0.000 -0.000 0.000437 432 dip 103.30 0.0 0. 760 5.181 16.186 2.815 0.0000.000 0.000 0.000 0.000 0.000438 433 bend0 104.35 0.5 1. 588 5.481 14.403 2.826 0.000 0.000 0.000 0.000 -0.000 0.000439 434 sd7 104.77 0.0 3. 620 5.509 13.567 2.831 0.0000.000 0.000 0.000 -0.000 0.000440 435 gs 104.77 0.0 3. 620 5.509 13.567 2.831 0.0000.000 0.000 0.000 -0.000 0.000441 436 q6 105.13 -1.0 6. 843 5.521 11.250 2.835 0.000 0.000 0.000 0.000 -0.000 0.000442 437 sd5 105.23 0.0 8.169 5.523 10.239 2.837 0.0000.000 0.000 0.000 -0.000 0.000443 438 sx5 105.39 -1.5 10.542 5.525 8.723 2.839 0.0000.000 0.000 0.000 -0.000 0.000444 439 hcm 105.39 0.0 10.542 5.525 8.723 2.839 0.0000.000 0.000 0.000 0.000 0.000445 440 vcm 105.39 0.0 10.542 5.525 8.723 2.839 0.0000.000 0.000 0.000 -0.000 -0.000446 441 sd41 105.56 0.0 1 3.439 5.528 7.234 2.843 0.0000.000 0.000 0.000 -0.000 0.000447 442 bpm 105.56 2.0 1 3.439 5.528 7.234 2.843 0.0000.000 0.000 0.000 -0.000 0.000448 443 sdb6 105.68 0.0 1 5.665 5.529 6.284 2.846 0.0000.000 0.000 0.000 -0.000 0.000449 444 q7 106.18 1.0 1 6.774 5.534 5.598 2.860 0.0000.000 0.000 0.000 -0.000 0.000450 445 sd3 106.28 0.0 1 5.221 5.535 6.059 2.863 0.0000.000 0.000 0.000 -0.000 0.000451 446 sx6 106.44 1.5 12. 936 5.536 6.826 2.867 0.0000.000 0.000 0.000 -0.000 0.000452 447 hcm 106.44 0.0 12. 936 5.536 6.826 2.867 0.0000.000 0.000 0.000 0.000 0.000453 448 vcm 106.44 0.0 12. 936 5.536 6.826 2.867 0.0000.000 0.000 0.000 -0.000 -0.000454 449 sd2 106.73 0.0 9.278 5.541 8.352 2.873 0.0000.000 0.000 0.000 -0.000 0.000455 450 q8 107.09 -1.0 7.049 5.548 8.655 2.880 0.0000.000 0.000 0.000 -0.000 0.000456 451 ge 107.09 0.0 7.049 5.548 8.655 2.880 0.0000.000 0.000 0.000 -0.000 0.000457 452 sdc12 107.41 0.0 6. 543 5.555 7.430 2.886 0.0000.000 0.000 0.000 -0.000 0.000458 453 bpm 107.41 2.0 6. 543 5.555 7.430 2.886 0.0000.000 0.000 0.000 -0.000 0.000459 454 sd13k 107.80 0.0 5.9 92 5.565 6.097 2.895 0.0000.000 0.000 0.000 -0.000 0.000460 455 ssdm 107.80 0.0 5.9 92 5.565 6.097 2.895 0.0000.000 0.000 0.000 -0.000 0.000461 456 sd13i 108.00 0.0 5.7 39 5.571 5.485 2.901 0.0000.000 0.000 0.000 -0.000 0.000462 457 sd13i 108.20 0.0 5. 505 5.576 4.918 2.907 0.0000.000 0.000 0.000 -0.000 0.000463 458 sd13i 108.40 0.0 5. 290 5.582 4.398 2.914 0.0000.000 0.000 0.000 -0.000 0.000464 459 sd13i 108.60 0.0 5. 095 5.588 3.925 2.921 0.0000.000 0.000 0.000 -0.000 0.000465 460 sd13i 108.80 0.0 4.918 5.595 3.497 2.930 0.0000.000 0.000 0.000 -0.000 0.000466 461 sd13i 109.00 0.0 4.760 5.601 3.116 2.940 0.0000.000 0.000 0.000 -0.000 0.000467 462 sd13i 109.20 0.0 4.622 5.608 2.781 2.950 0.0000.000 0.000 0.000 -0.000 0.000468 463 sd13i 109.40 0.0 4. 503 5.615 2.492 2.963 0.0000.000 0.000 0.000 -0.000 0.000469 464 sd13i 109.60 0.0 4. 402 5.622 2.249 2.976 0.0000.000 0.000 0.000 -0.000 0.000470 465 sd13i 109.80 0.0 4. 321 5.630 2.053 2.991 0.0000.000 0.000 0.000 -0.000 0.000471 466 sd13i 110.00 0.0 4. 259 5.637 1.903 3.007 0.0000.000 0.000 0.000 -0.000 0.000472 467 sd13i 110.20 0.0 4. 216 5.645 1.799 3.024 0.0000.000 0.000 0.000 -0.000 0.000473 468 sd13i 110.40 0.0 4. 192 5.652 1.742 3.042 0.0000.000 0.000 0.000 -0.000 0.000474 469 sd13j 110.55 0.0 4. 187 5.658 1.729 3.056 0.0000.000 0.000 0.000 -0.000 0.000475 470 sd13j 110.70 0.0 4. 192 5.664 1.742 3.070 0.0000.000 0.000 0.000 -0.000 0.000476 471 sd13i 110.90 0.0 4. 216 5.671 1.801 3.088 0.0000.000 0.000 0.000 -0.000 0.000477 472 sd13i 111.10 0.0 4.259 5.679 1.905 3.105 0.0000.000 0.000 0.000 -0.000 0.000478 473 sd13i 111.30 0.0 4.322 5.686 2.056 3.121 0.0000.000 0.000 0.000 -0.000 0.000479 474 sd13i 111.50 0.0 4.403 5.693 2.253 3.136 0.0000.000 0.000 0.000 -0.000 0.000480 475 sd13i 111.70 0.0 4.503 5.701 2.496 3.149 0.0000.000 0.000 0.000 -0.000 0.000481 476 sd13i 111.90 0.0 4.623 5.708 2.786 3.161 0.0000.000 0.000 0.000 -0.000 0.000482 477 sd13i 112.10 0.0 4.761 5.714 3.121 3.172 0.0000.000 0.000 0.000 -0.000 0.000483 478 sd13i 112.30 0.0 4.919 5.721 3.504 3.182 0.0000.000 0.000 0.000 -0.000 0.000484 479 sd13i 112.50 0.0 5.096 5.727 3.932 3.190 0.0000.000 0.000 0.000 -0.000 0.000485 480 sd13i 112.70 0.0 5.292 5.733 4.406 3.198 0.0000.000 0.000 0.000 -0.000 0.000486 481 sd13i 112.90 0.0 5.507 5.739 4.927 3.2050.000 0.000 0.000 0.000 -0.000 0.000487 482 sd13i 113.10 0.0 5.741 5.745 5.494 3.211 0.000 0.000 0.000 0.000 -0.000 0.000488 483 sd13i 113.30 0.0 5.994 5.750 6.108 3.217 0.000 0.000 0.000 0.000 -0.000 0.000489 484 esdm 113.30 0.0 5.994 5.750 6.108 3.217 0.000 0.000 0.000 0.000 -0.000 0.000490 485 eesdm 113.30 0.0 5.994 5.750 6.108 3.217 0.000 0.000 0.000 0.000 -0.000 0.000491 486 sd13k 113.69 0.0 6.545 5.760 7.442 3.226 0.0000.000 0.000 0.000 -0.000 0.000492 487 bpm 113.69 2.0 6.545 5.760 7.442 3.226 0.0000.000 0.000 0.000 -0.000 0.000493 488 sd87 114.02 0.0 7. 051 5.768 8.668 3.232 0.0000.000 0.000 0.000 -0.000 0.000494 489 gs 114.02 0.0 7. 051 5.768 8.668 3.232 0.0000.000 0.000 0.000 -0.000 0.000495 490 q8 114.38 -1.0 9.281 5.775 8.364 3.239 0.0000.000 0.000 0.000 -0.000 0.000496 491 sd2 114.67 0.0 1 2.939 5.779 6.835 3.245 0.0000.000 0.000 0.000 -0.000 0.000497 492 sx8 114.83 1.5 1 5.225 5.781 6.066 3.249 0.0000.000 0.000 0.000 -0.000 0.000498 493 qt 114.83 0.0 1 5.225 5.781 6.066 3.249 0.0000.000 0.000 0.000 -0.000 0.000499 494 hcm 114.83 0.0 1 5.225 5.781 6.066 3.249 0.0000.000 0.000 0.000 0.000 0.000500 495 vcm 114.83 0.0 1 5.225 5.781 6.066 3.249 0.0000.000 0.000 0.000 -0.000 -0.000501 496 sd3 114.93 0.0 1 6.779 5.782 5.605 3.251 0.000 0.000 0.000 0.000 -0.000 0.000502 497 q7 115.42 1.0 1 5.669 5.787 6.289 3.266 0.0000.000 0.000 0.000 -0.000 0.000503 498 sdb7 115.59 0.0 1 2.614 5.789 7.633 3.270 0.0000.000 0.000 0.000 -0.000 0.000504 499 bpm 115.59 2.0 1 2.614 5.789 7.633 3.270 0.0000.000 0.000 0.000 -0.000 0.000505 500 sd42 115.72 0.0 1 0.545 5.790 8.730 3.272 0.0000.000 0.000 0.000 -0.000 0.000506 501 sx7 115.88 -1.5 8. 171 5.793 10.246 3.275 0.0000.000 0.000 0.000 -0.000 0.000507 502 hcm 115.88 0.0 8. 171 5.793 10.246 3.275 0.0000.000 0.000 0.000 0.000 0.000508 503 vcm 115.88 0.0 8. 171 5.793 10.246 3.275 0.0000.000 0.000 0.000 -0.000 -0.000509 504 sd5 115.98 0.0 6.845 5.795 11.258 3.276 0.0000.000 0.000 0.000 -0.000 0.000510 505 q6 116.34 -1.0 3. 621 5.807 13.575 3.281 0.0000.000 0.000 0.000 -0.000 0.000511 506 ge 116.34 0.0 3. 621 5.807 13.575 3.281 0.0000.000 0.000 0.000 -0.000 0.000512 507 sd7 116.76 0.0 1.5 88 5.835 14.410 3.286 0.0000.000 0.000 0.000 -0.000 0.000513 508 dip 116.76 0.0 1.5 88 5.835 14.410 3.286 0.0000.000 0.000 0.000 0.000 0.000514 509 bend0 117.81 0.5 0. 760 6.135 16.199 3.297 0.0000.000 0.000 0.000 -0.000 0.000515 510 sd7 118.23 0.0 2. 129 6.188 16.753 3.301 0.0000.000 0.000 0.000 -0.000 0.000516 511 gs 118.23 0.0 2. 129 6.188 16.753 3.301 0.0000.000 0.000 0.000 -0.000 0.000517 512 q9 118.59 -1.0 4.767 6.207 14.115 3.304 0.000 0.000 0.000 0.000 -0.000 0.000518 513 sd8 118.69 0.0 5.950 6.210 12.655 3.306 0.0000.000 0.000 0.000 -0.000 0.000519 514 sx9 118.85 -1.5 8.125 6.214 10.484 3.308 0.0000.000 0.000 0.000 -0.000 0.000520 515 hcm 118.85 0.0 8.125 6.214 10.484 3.308 0.0000.000 0.000 0.000 0.000 0.000521 516 vcm 118.85 0.0 8.125 6.214 10.484 3.308 0.0000.000 0.000 0.000 -0.000 -0.000522 517 sdb8 119.02 0.0 1 0.849 6.216 8.383 3.311 0.0000.000 0.000 0.000 -0.000 0.000523 518 bpm 119.02 2.0 1 0.849 6.216 8.383 3.311 0.0000.000 0.000 0.000 -0.000 0.000524 519 sd9a 119.22 0.0 1 4.602 6.219 6.202 3.315 0.0000.000 0.000 0.000 -0.000 0.000525 520 q10 119.58 1.0 18.413 6.222 4.184 3.327 0.0000.000 0.000 0.000 -0.000 0.000526 521 sd8 119.68 0.0 18.391 6.223 3.970 3.331 0.0000.000 0.000 0.000 -0.000 0.000527 522 sx10 119.84 1.5 18.358 6.225 3.650 3.337 0.0000.000 0.000 0.000 -0.000 0.000528 523 qt 119.84 0.0 18.358 6.225 3.650 3.337 0.0000.000 0.000 0.000 -0.000 0.000529 524 hcm 119.84 0.0 18.358 6.225 3.650 3.337 0.0000.000 0.000 0.000 0.000 0.000530 525 vcm 119.84 0.0 18.358 6.225 3.650 3.337 0.0000.000 0.000 0.000 -0.000 -0.000531 526 ge 119.84 0.0 18.358 6.225 3.650 3.337 0.0000.000 0.000 0.000 -0.000 0.000532 527 sdc44 120.18 0.0 18.297 6.228 3.057 3.354 0.0000.000 0.000 0.000 -0.000 0.000533 528 bpm 120.18 2.0 18.297 6.228 3.057 3.354 0.0000.000 0.000 0.000 -0.000 0.000534 529 sdac4 120.77 0.0 18.222 6.233 2.324 3.389 0.0000.000 0.000 0.000 -0.000 0.000535 530 ssdac 120.77 0.0 18.222 6.233 2.324 3.389 0.0000.000 0.000 0.000 -0.000 0.000536 531 sdac2 120.97 0.0 18.204 6.234 2.156 3.403 0.0000.000 0.000 0.000 -0.000 0.000537 532 sdac2 121.17 0.0 18.192 6.236 2.030 3.418 0.0000.000 0.000 0.000 -0.000 0.000538 533 sdac2 121.37 0.0 18.183 6.238 1.946 3.434 0.0000.000 0.000 0.000 -0.000 0.000539 534 sdac2 121.57 0.0 18.179 6.240 1.904 3.451 0.0000.000 0.000 0.000 -0.000 0.000540 535 sdac2 121.77 0.0 18.180 6.241 1.905 3.468 0.0000.000 0.000 0.000 -0.000 0.000541 536 sdac2 121.97 0.0 18.185 6.243 1.947 3.484 0.0000.000 0.000 0.000 -0.000 0.000542 537 sdac2 122.17 0.0 18.194 6.245 2.032 3.500 0.0000.000 0.000 0.000 -0.000 0.000543 538 sdac2 122.37 0.0 18.208 6.247 2.158 3.516 0.000 0.000 0.000 0.000 -0.000 0.000544 539 sdac2 122.57 0.0 18.226 6.248 2.327 3.530 0.0000.000 0.000 0.000 -0.000 0.000545 540 esdac 122.57 0.0 18.226 6.248 2.327 3.530 0.0000.000 0.000 0.000 -0.000 0.000546 541 sdac4 123.15 0.0 18.304 6.254 3.061 3.565 0.0000.000 0.000 0.000 -0.000 0.000547 542 bpm 123.15 2.0 18.304 6.254 3.061 3.565 0.0000.000 0.000 0.000 -0.000 0.000548 543 sdc45 123.49 0.0 18.367 6.256 3.656 3.581 0.0000.000 0.000 0.000 -0.000 0.000549 544 gs 123.49 0.0 18.367 6.256 3.656 3.581 0.0000.000 0.000 0.000 -0.000 0.000550 545 sx10 123.65 1.5 18.401 6.258 3.977 3.588 0.0000.000 0.000 0.000 -0.000 0.000551 546 hcm 123.65 0.0 18.401 6.258 3.977 3.588 0.0000.000 0.000 0.000 0.000 0.000552 547 vcm 123.65 0.0 18.401 6.258 3.977 3.588 0.0000.000 0.000 0.000 -0.000 -0.000553 548 sd8 123.75 0.0 18.423 6.259 4.192 3.592 0.0000.000 0.000 0.000 -0.000 0.000554 549 q10 124.11 1.0 1 4.611 6.262 6.213 3.603 0.000 0.000 0.000 0.000 -0.000 0.000555 550 sd91 124.37 0.0 1 0.072 6.265 8.949 3.609 0.0000.000 0.000 0.000 -0.000 0.000556 551 bpm 124.37 2.0 1 0.072 6.265 8.949 3.609 0.0000.000 0.000 0.000 -0.000 0.000557 552 sd42 124.49 0.0 8.131 6.268 10.502 3.611 0.0000.000 0.000 0.000 -0.000 0.000558 553 sx9 124.65 -1.5 5.955 6.271 12.676 3.613 0.0000.000 0.000 0.000 -0.000 0.000559 554 hcm 124.65 0.0 5.955 6.271 12.676 3.613 0.0000.000 0.000 0.000 0.000 0.000560 555 vcm 124.65 0.0 5.955 6.271 12.676 3.613 0.0000.000 0.000 0.000 -0.000 -0.000561 556 sd8 124.75 0.0 4.771 6.274 14.139 3.614 0.0000.000 0.000 0.000 -0.000 0.000562 557 q9 125.11 -1.0 2. 132 6.293 16.780 3.618 0.0000.000 0.000 0.000 -0.000 0.000563 558 ge 125.11 0.0 2. 132 6.293 16.780 3.618 0.0000.000 0.000 0.000 -0.000 0.000564 559 sd7 125.53 0.0 0.7 62 6.346 16.224 3.622 0.0000.000 0.000 0.000 -0.000 0.000565 560 dip 125.53 0.0 0.7 62 6.346 16.224 3.622 0.0000.000 0.000 0.000 0.000 0.000566 561 bend0 126.58 0.5 1. 585 6.646 14.440 3.633 0.0000.000 0.000 0.000 -0.000 0.000567 562 sd7 127.00 0.0 3.617 6.674 13.602 3.638 0.0000.000 0.000 0.000 -0.000 0.000568 563 gs 127.00 0.0 3.617 6.674 13.602 3.638 0.0000.000 0.000 0.000 -0.000 0.000569 564 q6 127.36 -1.0 6.839 6.686 11.280 3.642 0.0000.000 0.000 0.000 -0.000 0.000570 565 sd5 127.46 0.0 8.164 6.688 10.266 3.644 0.0000.000 0.000 0.000 -0.000 0.000571 566 sx7 127.62 -1.5 1 0.537 6.691 8.746 3.646 0.0000.000 0.000 0.000 -0.000 0.000572 567 hcm 127.62 0.0 1 0.537 6.691 8.746 3.646 0.0000.000 0.000 0.000 0.000 0.000573 568 vcm 127.62 0.0 1 0.537 6.691 8.746 3.646 0.0000.000 0.000 0.000 -0.000 -0.000574 569 sd41 127.80 0.0 1 3.433 6.693 7.253 3.650 0.0000.000 0.000 0.000 -0.000 0.000575 570 bpm 127.80 2.0 1 3.433 6.693 7.253 3.650 0.0000.000 0.000 0.000 -0.000 0.000576 571 sdb9 127.91 0.0 1 5.658 6.694 6.301 3.653 0.0000.000 0.000 0.000 -0.000 0.000577 572 q7 128.41 1.0 1 6.769 6.699 5.614 3.667 0.0000.000 0.000 0.000 -0.000 0.000578 573 sd3 128.51 0.0 1 5.216 6.700 6.076 3.670 0.0000.000 0.000 0.000 -0.000 0.000579 574 sx8 128.67 1.5 1 2.933 6.702 6.845 3.674 0.0000.000 0.000 0.000 -0.000 0.000580 575 qt 128.67 0.0 1 2.933 6.702 6.845 3.674 0.0000.000 0.000 0.000 -0.000 0.000581 576 hcm 128.67 0.0 1 2.933 6.702 6.845 3.674 0.0000.000 0.000 0.000 0.000 0.000582 577 vcm 128.67 0.0 1 2.933 6.702 6.845 3.674 0.0000.000 0.000 0.000 -0.000 -0.000583 578 sd2 128.96 0.0 9.277 6.706 8.375 3.680 0.0000.000 0.000 0.000 -0.000 0.000584 579 q8 129.32 -1.0 7.050 6.713 8.679 3.686 0.000 0.000 0.000 0.000 -0.000 0.000585 580 ge 129.32 0.0 7.050 6.713 8.679 3.686 0.000 0.000 0.000 0.000 -0.000 0.000586 581 sd87 129.64 0.0 6.545 6.721 7.450 3.693 0.0000.000 0.000 0.000 -0.000 0.000587 582 bpm 129.64 2.0 6.545 6.721 7.450 3.693 0.0000.000 0.000 0.000 -0.000 0.000588 583 sd13a 132.79 0.0 4. 196 6.823 1.725 3.863 0.0000.000 0.000 0.000 -0.000 0.000589 584 sd13a 135.93 0.0 6.551 6.925 7.440 4.033 0.0000.000 0.000 0.000 -0.000 0.000590 585 bpm 135.93 2.0 6.551 6.925 7.440 4.033 0.0000.000 0.000 0.000 -0.000 0.000591 586 sd87 136.25 0.0 7.056 6.933 8.668 4.039 0.0000.000 0.000 0.000 -0.000 0.000592 587 gs 136.25 0.0 7.056 6.933 8.668 4.039 0.0000.000 0.000 0.000 -0.000 0.000593 588 q8 136.61 -1.0 9.286 6.940 8.366 4.046 0.0000.000 0.000 0.000 -0.000 0.000594 589 sd2 136.90 0.0 1 2.945 6.944 6.837 4.052 0.0000.000 0.000 0.000 -0.000 0.000595 590 sx8 137.06 1.5 1 5.230 6.946 6.069 4.056 0.0000.000 0.000 0.000 -0.000 0.000596 591 hcm 137.06 0.0 1 5.230 6.946 6.069 4.056 0.0000.000 0.000 0.000 0.000 0.000597 592 vcm 137.06 0.0 1 5.230 6.946 6.069 4.056 0.0000.000 0.000 0.000 -0.000 -0.000598 593 sd3 137.16 0.0 1 6.785 6.947 5.608 4.058 0.0000.000 0.000 0.000 -0.000 0.000599 594 q7 137.66 1.0 1 5.673 6.952 6.296 4.073 0.0000.000 0.000 0.000 -0.000 0.000600 595 sdb10 137.82 0.0 1 2.616 6.954 7.642 4.077 0.0000.000 0.000 0.000 -0.000 0.000601 596 bpm 137.82 2.0 1 2.616 6.954 7.642 4.077 0.0000.000 0.000 0.000 -0.000 0.000602 597 sd42 137.95 0.0 10.546 6.955 8.741 4.079 0.0000.000 0.000 0.000 -0.000 0.000603 598 sx7 138.11 -1.5 8.172 6.958 10.260 4.082 0.0000.000 0.000 0.000 -0.000 0.000604 599 hcm 138.11 0.0 8.172 6.958 10.260 4.082 0.0000.000 0.000 0.000 0.000 0.000605 600 vcm 138.11 0.0 8.172 6.958 10.260 4.082 0.0000.000 0.000 0.000 -0.000 -0.000606 601 sd5 138.21 0.0 6. 845 6.960 11.274 4.083 0.0000.000 0.000 0.000 -0.000 0.000607 602 q6 138.57 -1.0 3. 620 6.972 13.596 4.088 0.0000.000 0.000 0.000 -0.000 0.000608 603 ge 138.57 0.0 3. 620 6.972 13.596 4.088 0.0000.000 0.000 0.000 -0.000 0.000609 604 sd7 138.99 0.0 1. 586 7.000 14.434 4.093 0.0000.000 0.000 0.000 -0.000 0.000610 605 dip 138.99 0.0 1. 586 7.000 14.434 4.093 0.0000.000 0.000 0.000 0.000 0.000611 606 bend0 140.04 0.5 0.7 62 7.300 16.231 4.104 0.0000.000 0.000 0.000 -0.000 0.000612 607 sd7 140.46 0.0 2.134 7.353 16.787 4.108 0.0000.000 0.000 0.000 -0.000 0.000613 608 gs 140.46 0.0 2.134 7.353 16.787 4.108 0.0000.000 0.000 0.000 -0.000 0.000614 609 q9 140.82 -1.0 4. 776 7.372 14.146 4.111 0.0000.000 0.000 0.000 -0.000 0.000615 610 sd8 140.92 0.0 5. 962 7.375 12.682 4.113 0.0000.000 0.000 0.000 -0.000 0.000616 611 sx9 141.08 -1.5 8.141 7.379 10.507 4.115 0.0000.000 0.000 0.000 -0.000 0.000617 612 hcm 141.08 0.0 8.141 7.379 10.507 4.115 0.0000.000 0.000 0.000 0.000 0.000618 613 vcm 141.08 0.0 8.141 7.379 10.507 4.115 0.0000.000 0.000 0.000 -0.000 -0.000619 614 sdb11 141.25 0.0 10.868 7.382 8.404 4.118 0.0000.000 0.000 0.000 -0.000 0.000620 615 bpm 141.25 2.0 10.868 7.382 8.404 4.118 0.0000.000 0.000 0.000 -0.000 0.000621 616 sd92 141.46 0.0 1 4.629 7.384 6.217 4.122 0.000 0.000 0.000 0.000 -0.000 0.000622 617 q10 141.82 1.0 1 8.446 7.388 4.195 4.134 0.0000.000 0.000 0.000 -0.000 0.000623 618 sd8 141.92 0.0 1 8.424 7.388 3.981 4.138 0.0000.000 0.000 0.000 -0.000 0.000624 619 sx10 142.08 1.5 1 8.390 7.390 3.659 4.144 0.0000.000 0.000 0.000 -0.000 0.000625 620 hcm 142.08 0.0 1 8.390 7.390 3.659 4.144 0.0000.000 0.000 0.000 0.000 0.000626 621 vcm 142.08 0.0 1 8.390 7.390 3.659 4.144 0.0000.000 0.000 0.000 -0.000 -0.000627 622 ge 142.08 0.0 1 8.390 7.390 3.659 4.144 0.0000.000 0.000 0.000 -0.000 0.000628 623 sd89 142.42 0.0 1 8.328 7.393 3.066 4.161 0.0000.000 0.000 0.000 -0.000 0.000629 624 bpm 142.42 2.0 1 8.328 7.393 3.066 4.161 0.0000.000 0.000 0.000 -0.000 0.000630 625 sdac1 143.90 0.0 1 8.205 7.406 1.901 4.266 0.0000.000 0.000 0.000 -0.000 0.000631 626 sdac1 145.39 0.0 1 8.324 7.419 3.054 4.372 0.0000.000 0.000 0.000 -0.000 0.000632 627 bpm 145.39 2.0 1 8.324 7.419 3.054 4.372 0.0000.000 0.000 0.000 -0.000 0.000633 628 sd88 145.73 0.0 1 8.386 7.422 3.647 4.388 0.0000.000 0.000 0.000 -0.000 0.000634 629 gs 145.73 0.0 1 8.386 7.422 3.647 4.388 0.0000.000 0.000 0.000 -0.000 0.000635 630 sx10 145.89 1.5 1 8.419 7.423 3.967 4.395 0.000 0.000 0.000 0.000 -0.000 0.000636 631 qt 145.89 0.0 1 8.419 7.423 3.967 4.395 0.000 0.000 0.000 0.000 -0.000 0.000637 632 hcm 145.89 0.0 1 8.419 7.423 3.967 4.395 0.000 0.000 0.000 0.000 0.000 0.000638 633 vcm 145.89 0.0 1 8.419 7.423 3.967 4.395 0.000 0.000 0.000 0.000 -0.000 -0.000639 634 sd8 145.99 0.0 1 8.441 7.424 4.180 4.398 0.0000.000 0.000 0.000 -0.000 0.000640 635 q10 146.35 1.0 1 4.624 7.427 6.196 4.410 0.0000.000 0.000 0.000 -0.000 0.000641 636 sd93 146.60 0.0 10.079 7.430 8.925 4.416 0.0000.000 0.000 0.000 -0.000 0.000642 637 bpm 146.60 2.0 10.079 7.430 8.925 4.416 0.0000.000 0.000 0.000 -0.000 0.000643 638 sdb12 146.72 0.0 8.138 7.433 10.472 4.418 0.0000.000 0.000 0.000 -0.000 0.000644 639 sx9 146.88 -1.5 5. 959 7.436 12.640 4.420 0.0000.000 0.000 0.000 -0.000 0.000645 640 hcm 146.88 0.0 5. 959 7.436 12.640 4.420 0.0000.000 0.000 0.000 0.000 0.000646 641 vcm 146.88 0.0 5. 959 7.436 12.640 4.420 0.0000.000 0.000 0.000 -0.000 -0.000647 642 sd8 146.98 0.0 4. 774 7.439 14.099 4.421 0.0000.000 0.000 0.000 -0.000 0.000648 643 q9 147.34 -1.0 2.132 7.458 16.733 4.425 0.0000.000 0.000 0.000 -0.000 0.000649 644 ge 147.34 0.0 2.132 7.458 16.733 4.425 0.0000.000 0.000 0.000 -0.000 0.000650 645 sd7 147.76 0.0 0. 761 7.511 16.180 4.429 0.0000.000 0.000 0.000 -0.000 0.000651 646 dip 147.76 0.0 0. 761 7.511 16.180 4.429 0.0000.000 0.000 0.000 0.000 0.000652 647 bend0 148.82 0.5 1. 588 7.811 14.401 4.440 0.0000.000 0.000 0.000 -0.000 0.000653 648 sd7 149.24 0.0 3. 624 7.839 13.567 4.444 0.000 0.000 0.000 0.000 -0.000 0.000654 649 gs 149.24 0.0 3. 624 7.839 13.567 4.444 0.000 0.000 0.000 0.000 -0.000 0.000655 650 q6 149.60 -1.0 6. 853 7.851 11.251 4.449 0.0000.000 0.000 0.000 -0.000 0.000656 651 sd5 149.70 0.0 8.181 7.853 10.241 4.450 0.000 0.000 0.000 0.000 -0.000 0.000657 652 sx7 149.86 -1.5 10.558 7.856 8.725 4.453 0.0000.000 0.000 0.000 -0.000 0.000658 653 hcm 149.86 0.0 10.558 7.856 8.725 4.453 0.0000.000 0.000 0.000 0.000 0.000659 654 vcm 149.86 0.0 10.558 7.856 8.725 4.453 0.0000.000 0.000 0.000 -0.000 -0.000660 655 sd41 150.03 0.0 1 3.460 7.858 7.236 4.457 0.0000.000 0.000 0.000 -0.000 0.000661 656 bpm 150.03 2.0 1 3.460 7.858 7.236 4.457 0.0000.000 0.000 0.000 -0.000 0.000662 657 sdb13 150.15 0.0 1 5.690 7.860 6.286 4.459 0.000 0.000 0.000 0.000 -0.000 0.000663 658 q7 150.64 1.0 1 6.802 7.864 5.602 4.474 0.0000.000 0.000 0.000 -0.000 0.000664 659 sd3 150.75 0.0 1 5.246 7.865 6.064 4.477 0.0000.000 0.000 0.000 -0.000 0.000665 660 sx8 150.91 1.5 12. 958 7.867 6.832 4.481 0.0000.000 0.000 0.000 -0.000 0.000666 661 hcm 150.91 0.0 12. 958 7.867 6.832 4.481 0.0000.000 0.000 0.000 0.000 0.000667 662 vcm 150.91 0.0 12. 958 7.867 6.832 4.481 0.0000.000 0.000 0.000 -0.000 -0.000668 663 sd2 151.20 0.0 9.295 7.871 8.361 4.487 0.0000.000 0.000 0.000 -0.000 0.000669 664 q8 151.56 -1.0 7.063 7.878 8.666 4.493 0.000 0.000 0.000 0.000 -0.000 0.000670 665 ge 151.56 0.0 7.063 7.878 8.666 4.493 0.000 0.000 0.000 0.000 -0.000 0.000671 666 sd87 151.88 0.0 6.557 7.886 7.440 4.500 0.0000.000 0.000 0.000 -0.000 0.000672 667 bpm 151.88 2.0 6.557 7.886 7.440 4.500 0.0000.000 0.000 0.000 -0.000 0.000673 668 sd13a 155.02 0.0 4.194 7.988 1.730 4.669 0.0000.000 0.000 0.000 -0.000 0.000674 669 sd13a 158.16 0.0 6. 537 8.091 7.427 4.839 0.0000.000 0.000 0.000 -0.000 0.000675 670 bpm 158.16 2.0 6. 537 8.091 7.427 4.839 0.0000.000 0.000 0.000 -0.000 0.000676 671 sd87 158.48 0.0 7. 042 8.098 8.651 4.846 0.0000.000 0.000 0.000 -0.000 0.000677 672 gs 158.48 0.0 7. 042 8.098 8.651 4.846 0.0000.000 0.000 0.000 -0.000 0.000678 673 q8 158.84 -1.0 9.267 8.105 8.348 4.852 0.0000.000 0.000 0.000 -0.000 0.000679 674 sd2 159.13 0.0 1 2.919 8.110 6.822 4.858 0.0000.000 0.000 0.000 -0.000 0.000680 675 sx6 159.29 1.5 1 5.200 8.111 6.055 4.862 0.0000.000 0.000 0.000 -0.000 0.000681 676 hcm 159.29 0.0 1 5.200 8.111 6.055 4.862 0.0000.000 0.000 0.000 0.000 0.000682 677 vcm 159.29 0.0 1 5.200 8.111 6.055 4.862 0.0000.000 0.000 0.000 -0.000 -0.000683 678 sd3 159.39 0.0 1 6.751 8.113 5.595 4.865 0.0000.000 0.000 0.000 -0.000 0.000684 679 q7 159.89 1.0 1 5.642 8.117 6.280 4.880 0.0000.000 0.000 0.000 -0.000 0.000685 680 sdb14 160.06 0.0 1 2.593 8.119 7.621 4.884 0.0000.000 0.000 0.000 -0.000 0.000686 681 bpm 160.06 2.0 1 2.593 8.119 7.621 4.884 0.0000.000 0.000 0.000 -0.000 0.000687 682 sd43 160.18 0.0 1 0.526 8.121 8.717 4.886 0.0000.000 0.000 0.000 -0.000 0.000688 683 sx5 160.34 -1.5 8.156 8.123 10.233 4.889 0.0000.000 0.000 0.000 -0.000 0.000689 684 hcm 160.34 0.0 8.156 8.123 10.233 4.889 0.0000.000 0.000 0.000 0.000 0.000690 685 vcm 160.34 0.0 8.156 8.123 10.233 4.889 0.0000.000 0.000 0.000 -0.000 -0.000691 686 sd5 160.44 0.0 6.832 8.125 11.243 4.890 0.0000.000 0.000 0.000 -0.000 0.000692 687 q6 160.80 -1.0 3.613 8.137 13.558 4.895 0.0000.000 0.000 0.000 -0.000 0.000693 688 ge 160.80 0.0 3.613 8.137 13.558 4.895 0.0000.000 0.000 0.000 -0.000 0.000694 689 sd7 161.22 0.0 1. 584 8.165 14.394 4.899 0.0000.000 0.000 0.000 -0.000 0.000695 690 dip 161.22 0.0 1. 584 8.165 14.394 4.899 0.0000.000 0.000 0.000 0.000 0.000696 691 bend0 162.27 0.5 0. 762 8.465 16.185 4.910 0.0000.000 0.000 0.000 -0.000 0.000697 692 sd7 162.69 0.0 2.131 8.519 16.740 4.915 0.0000.000 0.000 0.000 -0.000 0.000698 693 gs 162.69 0.0 2.131 8.519 16.740 4.915 0.0000.000 0.000 0.000 -0.000 0.000699 694 q4 163.05 -1.0 4. 649 8.537 14.598 4.918 0.0000.000 0.000 0.000 -0.000 0.000700 695 sd8 163.15 0.0 5. 739 8.540 13.367 4.919 0.000 0.000 0.000 0.000 -0.000 0.000701 696 sx3 163.31 -1.5 7. 731 8.544 11.512 4.921 0.0000.000 0.000 0.000 -0.000 0.000702 697 hcm 163.31 0.0 7. 731 8.544 11.512 4.921 0.0000.000 0.000 0.000 0.000 0.000703 698 vcm 163.31 0.0 7. 731 8.544 11.512 4.921 0.0000.000 0.000 0.000 -0.000 -0.000704 699 sdb15 163.48 0.0 10.211 8.547 9.677 4.924 0.0000.000 0.000 0.000 -0.000 0.000705 700 bpm 163.48 2.0 10.211 8.547 9.677 4.924 0.0000.000 0.000 0.000 -0.000 0.000706 701 sd9a 163.69 0.0 1 3.612 8.550 7.713 4.928 0.0000.000 0.000 0.000 -0.000 0.000707 702 q5 164.05 1.0 1 7.077 8.554 6.167 4.936 0.0000.000 0.000 0.000 -0.000 0.000708 703 sd10 164.42 0.0 1 7.061 8.557 6.133 4.946 0.000 0.000 0.000 0.000 -0.000 0.000709 704 sx4 164.58 1.5 1 7.060 8.559 6.132 4.950 0.000 0.000 0.000 0.000 -0.000 0.000710 705 qt 164.58 0.0 1 7.060 8.559 6.132 4.950 0.000 0.000 0.000 0.000 -0.000 0.000711 706 hcm 164.58 0.0 1 7.060 8.559 6.132 4.950 0.000 0.000 0.000 0.000 0.000 0.000712 707 vcm 164.58 0.0 1 7.060 8.559 6.132 4.950 0.000 0.000 0.000 0.000 -0.000 -0.000713 708 sdb4 164.78 0.0 1 7.062 8.560 6.142 4.955 0.0000.000 0.000 0.000 -0.000 0.000714 709 bpm 164.78 2.0 1 7.062 8.560 6.142 4.955 0.0000.000 0.000 0.000 -0.000 0.000715 710 sd10a 164.95 0.0 1 7.068 8.562 6.162 4.960 0.0000.000 0.000 0.000 -0.000 0.000716 711 q5 165.31 1.0 13. 599 8.566 7.701 4.968 0.0000.000 0.000 0.000 -0.000 0.000717 712 sd93 165.56 0.0 9. 484 8.569 10.145 4.973 0.000 0.000 0.000 0.000 -0.000 0.000718 713 bpm 165.56 2.0 9. 484 8.569 10.145 4.973 0.000 0.000 0.000 0.000 -0.000 0.000719 714 sdb17 165.69 0.0 7. 717 8.572 11.492 4.975 0.0000.000 0.000 0.000 -0.000 0.000720 715 sx3 165.85 -1.5 5. 726 8.575 13.341 4.977 0.0000.000 0.000 0.000 -0.000 0.000721 716 hcm 165.85 0.0 5. 726 8.575 13.341 4.977 0.0000.000 0.000 0.000 0.000 0.000722 717 vcm 165.85 0.0 5. 726 8.575 13.341 4.977 0.0000.000 0.000 0.000 -0.000 -0.000723 718 sd8 165.95 0.0 4.6 37 8.578 14.568 4.978 0.0000.000 0.000 0.000 -0.000 0.000724 719 q4 166.31 -1.0 2.1 21 8.597 16.701 4.981 0.0000.000 0.000 0.000 -0.000 0.000725 720 ge 166.31 0.0 2.1 21 8.597 16.701 4.981 0.0000.000 0.000 0.000 -0.000 0.000726 721 sd7 166.73 0.0 0. 754 8.651 16.143 4.985 0.0000.000 0.000 0.000 -0.000 0.000727 722 dip 166.73 0.0 0. 754 8.651 16.143 4.985 0.0000.000 0.000 0.000 0.000 0.000728 723 bend0 167.78 0.5 1. 600 8.951 14.355 4.996 0.000 0.000 0.000 0.000 -0.000 0.000729 724 sd6 168.49 0.0 5.630 8.989 12.970 5.005 0.0000.000 0.000 0.000 -0.000 0.000730 725 gs 168.49 0.0 5.630 8.989 12.970 5.005 0.0000.000 0.000 0.000 -0.000 0.000731 726 sx2 168.65 -1.5 6.923 8.993 12.677 5.007 0.0000.000 0.000 0.000 -0.000 0.000732 727 hcm 168.65 0.0 6.923 8.993 12.677 5.007 0.0000.000 0.000 0.000 0.000 0.000733 728 vcm 168.65 0.0 6.923 8.993 12.677 5.007 0.0000.000 0.000 0.000 -0.000 -0.000734 729 sd5 168.75 0.0 7.803 8.995 12.498 5.008 0.0000.000 0.000 0.000 -0.000 0.000735 730 q3 169.11 -1.0 1 2.308 9.001 10.889 5.013 0.0000.000 0.000 0.000 -0.000 0.000736 731 sd141 169.54 0.0 20.551 9.005 8.126 5.020 0.0000.000 0.000 0.000 -0.000 0.000737 732 bpm 169.54 2.0 20.551 9.005 8.126 5.020 0.0000.000 0.000 0.000 -0.000 0.000738 733 sdb18 169.66 0.0 2 3.216 9.006 7.438 5.023 0.0000.000 0.000 0.000 -0.000 0.000739 734 q2 170.16 1.0 2 5.027 9.009 7.545 5.034 0.000 0.000 0.000 0.000 -0.000 0.000740 735 sd3 170.26 0.0 2 3.364 9.010 8.179 5.036 0.0000.000 0.000 0.000 -0.000 0.000741 736 sx1 170.42 1.5 20.871 9.011 9.233 5.039 0.0000.000 0.000 0.000 -0.000 0.000742 737 qt 170.42 0.0 20.871 9.011 9.233 5.039 0.0000.000 0.000 0.000 -0.000 0.000743 738 hcm 170.42 0.0 20.871 9.011 9.233 5.039 0.0000.000 0.000 0.000 0.000 0.000744 739 vcm 170.42 0.0 20.871 9.011 9.233 5.039 0.0000.000 0.000 0.000 -0.000 -0.000745 740 sd2 170.71 0.0 1 6.717 9.014 11.318 5.043 0.0000.000 0.000 0.000 -0.000 0.000746 741 q1 171.07 -1.0 1 4.201 9.018 12.469 5.048 0.0000.000 0.000 0.000 -0.000 0.000747 742 ge 171.07 0.0 1 4.201 9.018 12.469 5.048 0.0000.000 0.000 0.000 -0.000 0.000748 743 sdc12 171.39 0.0 1 3.857 9.021 12.002 5.052 0.0000.000 0.000 0.000 -0.000 0.000749 744 bpm 171.39 2.0 1 3.857 9.021 12.002 5.052 0.0000.000 0.000 0.000 -0.000 0.000750 745 sd1e 177.05 0.0 1 0.904 9.097 7.995 5.150 0.0000.000 0.000 0.000 -0.000 0.000751 746 sd1e 182.71 0.0 1 3.825 9.174 11.999 5.248 0.0000.000 0.000 0.000 -0.000 0.000752 747 bpm 182.71 2.0 1 3.825 9.174 11.999 5.248 0.0000.000 0.000 0.000 -0.000 0.000753 748 sdb1 183.03 0.0 1 4.167 9.177 12.466 5.252 0.0000.000 0.000 0.000 -0.000 0.000754 749 gs 183.03 0.0 1 4.167 9.177 12.466 5.252 0.0000.000 0.000 0.000 -0.000 0.000755 750 q1 183.39 -1.0 1 6.676 9.181 11.315 5.257 0.0000.000 0.000 0.000 -0.000 0.000756 751 sd2 183.68 0.0 2 0.819 9.183 9.230 5.262 0.0000.000 0.000 0.000 -0.000 0.000757 752 sx1 183.84 1.5 2 3.305 9.185 8.177 5.265 0.0000.000 0.000 0.000 -0.000 0.000758 753 qt 183.84 0.0 2 3.305 9.185 8.177 5.265 0.0000.000 0.000 0.000 -0.000 0.000759 754 hcm 183.84 0.0 2 3.305 9.185 8.177 5.265 0.0000.000 0.000 0.000 0.000 0.000760 755 vcm 183.84 0.0 2 3.305 9.185 8.177 5.265 0.0000.000 0.000 0.000 -0.000 -0.000761 756 sd3 183.94 0.0 2 4.963 9.185 7.543 5.267 0.0000.000 0.000 0.000 -0.000 0.000762 757 q2 184.44 1.0 2 3.156 9.188 7.436 5.278 0.000 0.000 0.000 0.000 -0.000 0.000763 758 sdb2 184.60 0.0 19.502 9.190 8.402 5.281 0.0000.000 0.000 0.000 -0.000 0.000764 759 bpm 184.60 2.0 19.502 9.190 8.402 5.281 0.0000.000 0.000 0.000 -0.000 0.000765 760 sd14a 184.99 0.0 1 2.275 9.194 10.886 5.288 0.0000.000 0.000 0.000 -0.000 0.000766 761 q3 185.35 -1.0 7.782 9.200 12.495 5.293 0.000 0.000 0.000 0.000 -0.000 0.000767 762 sd5 185.45 0.0 6.904 9.202 12.674 5.294 0.000 0.000 0.000 0.000 -0.000 0.000768 763 sx2 185.61 -1.5 5.614 9.206 12.966 5.296 0.0000.000 0.000 0.000 -0.000 0.000769 764 hcm 185.61 0.0 5.614 9.206 12.966 5.296 0.0000.000 0.000 0.000 0.000 0.000770 765 vcm 185.61 0.0 5.614 9.206 12.966 5.296 0.0000.000 0.000 0.000 -0.000 -0.000771 766 ge 185.61 0.0 5.614 9.206 12.966 5.296 0.0000.000 0.000 0.000 -0.000 0.000772 767 sd6 186.32 0.0 1. 596 9.244 14.352 5.304 0.0000.000 0.000 0.000 -0.000 0.000773 768 dip 186.32 0.0 1. 596 9.244 14.352 5.304 0.0000.000 0.000 0.000 0.000 0.000774 769 bend0 187.37 0.5 0. 756 9.544 16.148 5.315 0.0000.000 0.000 0.000 -0.000 0.000775 770 sd7 187.79 0.0 2.1 22 9.597 16.706 5.319 0.0000.000 0.000 0.000 -0.000 0.000776 771 gs 187.79 0.0 2.1 22 9.597 16.706 5.319 0.0000.000 0.000 0.000 -0.000 0.000777 772 q4 188.15 -1.0 4. 637 9.616 14.572 5.323 0.0000.000 0.000 0.000 -0.000 0.000778 773 sd8 188.25 0.0 5. 725 9.619 13.345 5.324 0.0000.000 0.000 0.000 -0.000 0.000779 774 sx3 188.41 -1.5 7.715 9.623 11.495 5.326 0.0000.000 0.000 0.000 -0.000 0.000780 775 hcm 188.41 0.0 7.715 9.623 11.495 5.326 0.0000.000 0.000 0.000 0.000 0.000781 776 vcm 188.41 0.0 7.715 9.623 11.495 5.326 0.0000.000 0.000 0.000 -0.000 -0.000782 777 sdb3 188.58 0.0 10. 193 9.626 9.664 5.329 0.0000.000 0.000 0.000 -0.000 0.000783 778 bpm 188.58 2.0 10. 193 9.626 9.664 5.329 0.0000.000 0.000 0.000 -0.000 0.000784 779 sd9a 188.79 0.0 1 3.591 9.629 7.704 5.332 0.0000.000 0.000 0.000 -0.000 0.000785 780 q5 189.15 1.0 1 7.056 9.633 6.163 5.341 0.0000.000 0.000 0.000 -0.000 0.000786 781 sd12 189.52 0.0 1 7.047 9.636 6.133 5.351 0.0000.000 0.000 0.000 -0.000 0.000787 782 sx4 189.68 1.5 1 7.048 9.638 6.134 5.355 0.0000.000 0.000 0.000 -0.000 0.000788 783 qt 189.68 0.0 1 7.048 9.638 6.134 5.355 0.0000.000 0.000 0.000 -0.000 0.000789 784 hcm 189.68 0.0 1 7.048 9.638 6.134 5.355 0.0000.000 0.000 0.000 0.000 0.000790 785 vcm 189.68 0.0 1 7.048 9.638 6.134 5.355 0.0000.000 0.000 0.000 -0.000 -0.000791 786 sdb4 189.87 0.0 1 7.053 9.639 6.147 5.360 0.0000.000 0.000 0.000 -0.000 0.000792 787 bpm 189.87 2.0 1 7.053 9.639 6.147 5.360 0.0000.000 0.000 0.000 -0.000 0.000793 788 sd10a 190.05 0.0 1 7.061 9.641 6.168 5.364 0.0000.000 0.000 0.000 -0.000 0.000794 789 q5 190.41 1.0 1 3.599 9.645 7.714 5.373 0.0000.000 0.000 0.000 -0.000 0.000795 790 sd91 190.66 0.0 9.488 9.648 10.165 5.377 0.0000.000 0.000 0.000 -0.000 0.000796 791 bpm 190.66 2.0 9.488 9.648 10.165 5.377 0.0000.000 0.000 0.000 -0.000 0.000797 792 sdb5 190.78 0.0 7.722 9.650 11.515 5.379 0.0000.000 0.000 0.000 -0.000 0.000798 793 sx3 190.94 -1.5 5.732 9.654 13.370 5.381 0.0000.000 0.000 0.000 -0.000 0.000799 794 hcm 190.94 0.0 5.732 9.654 13.370 5.381 0.0000.000 0.000 0.000 0.000 0.000800 795 vcm 190.94 0.0 5.732 9.654 13.370 5.381 0.0000.000 0.000 0.000 -0.000 -0.000801 796 sd8 191.04 0.0 4.643 9.657 14.601 5.382 0.0000.000 0.000 0.000 -0.000 0.000802 797 q4 191.40 -1.0 2. 127 9.676 16.742 5.386 0.0000.000 0.000 0.000 -0.000 0.000803 798 ge 191.40 0.0 2. 127 9.676 16.742 5.386 0.0000.000 0.000 0.000 -0.000 0.000804 799 sd7 191.82 0.0 0. 760 9.730 16.187 5.390 0.0000.000 0.000 0.000 -0.000 0.000805 800 dip 191.82 0.0 0. 760 9.730 16.187 5.390 0.0000.000 0.000 0.000 0.000 0.000806 801 bend0 192.87 0.5 1. 588 10.029 14.404 5.401 0.000 0.000 0.000 0.000 -0.000 0.000807 802 sd7 193.29 0.0 3. 620 10.057 13.567 5.406 0.0000.000 0.000 0.000 -0.000 0.000808 803 gs 193.29 0.0 3. 620 10.057 13.567 5.406 0.0000.000 0.000 0.000 -0.000 0.000809 804 q6 193.66 -1.0 6. 842 10.069 11.250 5.410 0.000 0.000 0.000 0.000 -0.000 0.000810 805 sd5 193.75 0.0 8.168 10.071 10.239 5.412 0.0000.000 0.000 0.000 -0.000 0.000811 806 sx5 193.91 -1.5 10.541 10.074 8.723 5.415 0.0000.000 0.000 0.000 -0.000 0.000812 807 hcm 193.91 0.0 10.541 10.074 8.723 5.415 0.0000.000 0.000 0.000 0.000 0.000813 808 vcm 193.91 0.0 10.541 10.074 8.723 5.415 0.0000.000 0.000 0.000 -0.000 -0.000814 809 sd41 194.09 0.0 1 3.437 10.076 7.234 5.418 0.0000.000 0.000 0.000 -0.000 0.000815 810 bpm 194.09 2.0 1 3.437 10.076 7.234 5.418 0.0000.000 0.000 0.000 -0.000 0.000816 811 sdb6 194.21 0.0 1 5.663 10.078 6.284 5.421 0.0000.000 0.000 0.000 -0.000 0.000817 812 q7 194.70 1.0 1 6.772 10.082 5.598 5.435 0.0000.000 0.000 0.000 -0.000 0.000818 813 sd3 194.80 0.0 1 5.218 10.083 6.059 5.438 0.0000.000 0.000 0.000 -0.000 0.000819 814 sx6 194.96 1.5 12. 934 10.085 6.826 5.442 0.0000.000 0.000 0.000 -0.000 0.000820 815 hcm 194.96 0.0 12. 934 10.085 6.826 5.442 0.0000.000 0.000 0.000 0.000 0.000821 816 vcm 194.96 0.0 12. 934 10.085 6.826 5.442 0.0000.000 0.000 0.000 -0.000 -0.000822 817 sd2 195.25 0.0 9.277 10.089 8.353 5.448 0.0000.000 0.000 0.000 -0.000 0.000823 818 q8 195.62 -1.0 7.048 10.097 8.656 5.455 0.0000.000 0.000 0.000 -0.000 0.000824 819 ge 195.62 0.0 7.048 10.097 8.656 5.455 0.0000.000 0.000 0.000 -0.000 0.000825 820 sdc12 195.94 0.0 6. 542 10.104 7.431 5.461 0.0000.000 0.000 0.000 -0.000 0.000826 821 bpm 195.94 2.0 6. 542 10.104 7.431 5.461 0.0000.000 0.000 0.000 -0.000 0.000827 822 sd13k 196.33 0.0 5.9 91 10.114 6.098 5.470 0.0000.000 0.000 0.000 -0.000 0.000828 823 ssdm 196.33 0.0 5.9 91 10.114 6.098 5.470 0.0000.000 0.000 0.000 -0.000 0.000829 824 sd13i 196.53 0.0 5.7 38 10.119 5.485 5.476 0.0000.000 0.000 0.000 -0.000 0.000830 825 sd13i 196.73 0.0 5. 504 10.125 4.919 5.482 0.0000.000 0.000 0.000 -0.000 0.000831 826 sd13i 196.93 0.0 5. 289 10.131 4.398 5.489 0.0000.000 0.000 0.000 -0.000 0.000832 827 sd13i 197.13 0.0 5. 094 10.137 3.925 5.496 0.0000.000 0.000 0.000 -0.000 0.000833 828 sd13i 197.33 0.0 4.917 10.144 3.497 5.505 0.0000.000 0.000 0.000 -0.000 0.000834 829 sd13i 197.53 0.0 4.760 10.150 3.116 5.515 0.0000.000 0.000 0.000 -0.000 0.000835 830 sd13i 197.73 0.0 4.621 10.157 2.781 5.526 0.0000.000 0.000 0.000 -0.000 0.000836 831 sd13i 197.93 0.0 4. 502 10.164 2.492 5.538 0.0000.000 0.000 0.000 -0.000 0.000837 832 sd13i 198.13 0.0 4. 402 10.171 2.249 5.551 0.0000.000 0.000 0.000 -0.000 0.000838 833 sd13i 198.33 0.0 4. 321 10.178 2.053 5.566 0.0000.000 0.000 0.000 -0.000 0.000839 834 sd13i 198.53 0.0 4. 259 10.186 1.903 5.582 0.0000.000 0.000 0.000 -0.000 0.000840 835 sd13i 198.73 0.0 4. 216 10.193 1.799 5.599 0.0000.000 0.000 0.000 -0.000 0.000841 836 sd13i 198.93 0.0 4. 192 10.201 1.742 5.617 0.0000.000 0.000 0.000 -0.000 0.000842 837 sd13j 199.08 0.0 4. 187 10.207 1.729 5.631 0.0000.000 0.000 0.000 -0.000 0.000843 838 sd13j 199.23 0.0 4. 192 10.212 1.742 5.645 0.0000.000 0.000 0.000 -0.000 0.000844 839 sd13i 199.43 0.0 4. 216 10.220 1.801 5.663 0.0000.000 0.000 0.000 -0.000 0.000845 840 sd13i 199.63 0.0 4.259 10.227 1.905 5.680 0.0000.000 0.000 0.000 -0.000 0.000846 841 sd13i 199.83 0.0 4.321 10.235 2.056 5.696 0.0000.000 0.000 0.000 -0.000 0.000847 842 sd13i 200.03 0.0 4.403 10.242 2.253 5.711 0.0000.000 0.000 0.000 -0.000 0.000848 843 sd13i 200.23 0.0 4.503 10.249 2.496 5.724 0.0000.000 0.000 0.000 -0.000 0.000849 844 sd13i 200.43 0.0 4.623 10.256 2.786 5.737 0.0000.000 0.000 0.000 -0.000 0.000850 845 sd13i 200.63 0.0 4.761 10.263 3.121 5.747 0.0000.000 0.000 0.000 -0.000 0.000851 846 sd13i 200.83 0.0 4.919 10.270 3.504 5.757 0.0000.000 0.000 0.000 -0.000 0.000852 847 sd13i 201.03 0.0 5.096 10.276 3.932 5.766 0.0000.000 0.000 0.000 -0.000 0.000853 848 sd13i 201.23 0.0 5.292 10.282 4.406 5.773 0.0000.000 0.000 0.000 -0.000 0.000854 849 sd13i 201.43 0.0 5.507 10.288 4.927 5.7800.000 0.000 0.000 0.000 -0.000 0.000855 850 sd13i 201.63 0.0 5.741 10.294 5.494 5.786 0.000 0.000 0.000 0.000 -0.000 0.000856 851 sd13i 201.83 0.0 5.995 10.299 6.108 5.792 0.000 0.000 0.000 0.000 -0.000 0.000857 852 esdm 201.83 0.0 5.995 10.299 6.108 5.792 0.000 0.000 0.000 0.000 -0.000 0.000858 853 eesdm 201.83 0.0 5.995 10.299 6.108 5.792 0.000 0.000 0.000 0.000 -0.000 0.000859 854 sd13k 202.22 0.0 6.546 10.309 7.442 5.801 0.0000.000 0.000 0.000 -0.000 0.000860 855 bpm 202.22 2.0 6.546 10.309 7.442 5.801 0.0000.000 0.000 0.000 -0.000 0.000861 856 sd87 202.54 0.0 7. 052 10.316 8.669 5.807 0.0000.000 0.000 0.000 -0.000 0.000862 857 gs 202.54 0.0 7. 052 10.316 8.669 5.807 0.0000.000 0.000 0.000 -0.000 0.000863 858 q8 202.90 -1.0 9.282 10.324 8.364 5.814 0.0000.000 0.000 0.000 -0.000 0.000864 859 sd2 203.19 0.0 1 2.941 10.328 6.835 5.820 0.0000.000 0.000 0.000 -0.000 0.000865 860 sx8 203.35 1.5 1 5.227 10.330 6.066 5.824 0.0000.000 0.000 0.000 -0.000 0.000866 861 qt 203.35 0.0 1 5.227 10.330 6.066 5.824 0.0000.000 0.000 0.000 -0.000 0.000867 862 hcm 203.35 0.0 1 5.227 10.330 6.066 5.824 0.0000.000 0.000 0.000 0.000 0.000868 863 vcm 203.35 0.0 1 5.227 10.330 6.066 5.824 0.0000.000 0.000 0.000 -0.000 -0.000869 864 sd3 203.45 0.0 1 6.781 10.331 5.605 5.827 0.000 0.000 0.000 0.000 -0.000 0.000870 865 q7 203.95 1.0 1 5.672 10.335 6.289 5.841 0.0000.000 0.000 0.000 -0.000 0.000871 866 sdb7 204.11 0.0 1 2.616 10.337 7.633 5.845 0.0000.000 0.000 0.000 -0.000 0.000872 867 bpm 204.11 2.0 1 2.616 10.337 7.633 5.845 0.0000.000 0.000 0.000 -0.000 0.000873 868 sd42 204.24 0.0 1 0.547 10.339 8.730 5.847 0.0000.000 0.000 0.000 -0.000 0.000874 869 sx7 204.40 -1.5 8. 173 10.342 10.247 5.850 0.0000.000 0.000 0.000 -0.000 0.000875 870 hcm 204.40 0.0 8. 173 10.342 10.247 5.850 0.0000.000 0.000 0.000 0.000 0.000876 871 vcm 204.40 0.0 8. 173 10.342 10.247 5.850 0.0000.000 0.000 0.000 -0.000 -0.000877 872 sd5 204.50 0.0 6.846 10.344 11.258 5.852 0.0000.000 0.000 0.000 -0.000 0.000878 873 q6 204.86 -1.0 3. 622 10.356 13.575 5.856 0.0000.000 0.000 0.000 -0.000 0.000879 874 ge 204.86 0.0 3. 622 10.356 13.575 5.856 0.0000.000 0.000 0.000 -0.000 0.000880 875 sd7 205.28 0.0 1.5 88 10.384 14.410 5.861 0.0000.000 0.000 0.000 -0.000 0.000881 876 dip 205.28 0.0 1.5 88 10.384 14.410 5.861 0.0000.000 0.000 0.000 0.000 0.000882 877 bend0 206.33 0.5 0. 760 10.683 16.199 5.872 0.0000.000 0.000 0.000 -0.000 0.000883 878 sd7 206.75 0.0 2. 129 10.737 16.753 5.876 0.0000.000 0.000 0.000 -0.000 0.000884 879 gs 206.75 0.0 2. 129 10.737 16.753 5.876 0.0000.000 0.000 0.000 -0.000 0.000885 880 q9 207.11 -1.0 4.767 10.756 14.116 5.880 0.000 0.000 0.000 0.000 -0.000 0.000886 881 sd8 207.21 0.0 5.950 10.759 12.655 5.881 0.0000.000 0.000 0.000 -0.000 0.000887 882 sx9 207.37 -1.5 8.125 10.762 10.484 5.883 0.0000.000 0.000 0.000 -0.000 0.000888 883 hcm 207.37 0.0 8.125 10.762 10.484 5.883 0.0000.000 0.000 0.000 0.000 0.000889 884 vcm 207.37 0.0 8.125 10.762 10.484 5.883 0.0000.000 0.000 0.000 -0.000 -0.000890 885 sdb8 207.54 0.0 1 0.850 10.765 8.384 5.886 0.0000.000 0.000 0.000 -0.000 0.000891 886 bpm 207.54 2.0 1 0.850 10.765 8.384 5.886 0.0000.000 0.000 0.000 -0.000 0.000892 887 sd9a 207.75 0.0 1 4.603 10.768 6.203 5.890 0.0000.000 0.000 0.000 -0.000 0.000893 888 q10 208.11 1.0 18.414 10.771 4.184 5.902 0.0000.000 0.000 0.000 -0.000 0.000894 889 sd8 208.21 0.0 18.392 10.772 3.971 5.906 0.0000.000 0.000 0.000 -0.000 0.000895 890 sx10 208.37 1.5 18.359 10.773 3.650 5.913 0.0000.000 0.000 0.000 -0.000 0.000896 891 qt 208.37 0.0 18.359 10.773 3.650 5.913 0.0000.000 0.000 0.000 -0.000 0.000897 892 hcm 208.37 0.0 18.359 10.773 3.650 5.913 0.0000.000 0.000 0.000 0.000 0.000898 893 vcm 208.37 0.0 18.359 10.773 3.650 5.913 0.0000.000 0.000 0.000 -0.000 -0.000899 894 ge 208.37 0.0 18.359 10.773 3.650 5.913 0.0000.000 0.000 0.000 -0.000 0.000900 895 sdc44 208.71 0.0 18.298 10.776 3.057 5.929 0.0000.000 0.000 0.000 -0.000 0.000901 896 bpm 208.71 2.0 18.298 10.776 3.057 5.929 0.0000.000 0.000 0.000 -0.000 0.000902 897 sdac4 209.29 0.0 18.223 10.781 2.324 5.964 0.0000.000 0.000 0.000 -0.000 0.000903 898 ssdac 209.29 0.0 18.223 10.781 2.324 5.964 0.0000.000 0.000 0.000 -0.000 0.000904 899 sdac2 209.49 0.0 18.206 10.783 2.156 5.978 0.0000.000 0.000 0.000 -0.000 0.000905 900 sdac2 209.69 0.0 18.193 10.785 2.030 5.994 0.0000.000 0.000 0.000 -0.000 0.000906 901 sdac2 209.89 0.0 18.185 10.787 1.946 6.010 0.0000.000 0.000 0.000 -0.000 0.000907 902 sdac2 210.09 0.0 18.181 10.788 1.904 6.026 0.0000.000 0.000 0.000 -0.000 0.000908 903 sdac2 210.29 0.0 18.182 10.790 1.905 6.043 0.0000.000 0.000 0.000 -0.000 0.000909 904 sdac2 210.49 0.0 18.186 10.792 1.947 6.059 0.0000.000 0.000 0.000 -0.000 0.000910 905 sdac2 210.69 0.0 18.196 10.794 2.031 6.075 0.0000.000 0.000 0.000 -0.000 0.000911 906 sdac2 210.89 0.0 18.210 10.795 2.158 6.091 0.000 0.000 0.000 0.000 -0.000 0.000912 907 sdac2 211.09 0.0 18.228 10.797 2.327 6.105 0.0000.000 0.000 0.000 -0.000 0.000913 908 esdac 211.09 0.0 18.228 10.797 2.327 6.105 0.0000.000 0.000 0.000 -0.000 0.000914 909 sdac4 211.68 0.0 18.306 10.802 3.061 6.140 0.0000.000 0.000 0.000 -0.000 0.000915 910 bpm 211.68 2.0 18.306 10.802 3.061 6.140 0.0000.000 0.000 0.000 -0.000 0.000916 911 sdc45 212.02 0.0 18.369 10.805 3.656 6.156 0.0000.000 0.000 0.000 -0.000 0.000917 912 gs 212.02 0.0 18.369 10.805 3.656 6.156 0.0000.000 0.000 0.000 -0.000 0.000918 913 sx10 212.18 1.5 18.403 10.807 3.977 6.163 0.0000.000 0.000 0.000 -0.000 0.000919 914 hcm 212.18 0.0 18.403 10.807 3.977 6.163 0.0000.000 0.000 0.000 0.000 0.000920 915 vcm 212.18 0.0 18.403 10.807 3.977 6.163 0.0000.000 0.000 0.000 -0.000 -0.000921 916 sd8 212.28 0.0 18.425 10.807 4.191 6.167 0.0000.000 0.000 0.000 -0.000 0.000922 917 q10 212.64 1.0 1 4.613 10.811 6.213 6.179 0.000 0.000 0.000 0.000 -0.000 0.000923 918 sd91 212.89 0.0 1 0.073 10.814 8.949 6.184 0.0000.000 0.000 0.000 -0.000 0.000924 919 bpm 212.89 2.0 1 0.073 10.814 8.949 6.184 0.0000.000 0.000 0.000 -0.000 0.000925 920 sd42 213.01 0.0 8.132 10.816 10.502 6.186 0.0000.000 0.000 0.000 -0.000 0.000926 921 sx9 213.17 -1.5 5.955 10.820 12.675 6.188 0.0000.000 0.000 0.000 -0.000 0.000927 922 hcm 213.17 0.0 5.955 10.820 12.675 6.188 0.0000.000 0.000 0.000 0.000 0.000928 923 vcm 213.17 0.0 5.955 10.820 12.675 6.188 0.0000.000 0.000 0.000 -0.000 -0.000929 924 sd8 213.27 0.0 4.772 10.823 14.138 6.189 0.0000.000 0.000 0.000 -0.000 0.000930 925 q9 213.64 -1.0 2. 132 10.842 16.779 6.193 0.0000.000 0.000 0.000 -0.000 0.000931 926 ge 213.64 0.0 2. 132 10.842 16.779 6.193 0.0000.000 0.000 0.000 -0.000 0.000932 927 sd7 214.05 0.0 0.7 62 10.895 16.224 6.197 0.0000.000 0.000 0.000 -0.000 0.000933 928 dip 214.05 0.0 0.7 62 10.895 16.224 6.197 0.0000.000 0.000 0.000 0.000 0.000934 929 bend0 215.11 0.5 1. 585 11.195 14.439 6.208 0.0000.000 0.000 0.000 -0.000 0.000935 930 sd7 215.53 0.0 3.616 11.223 13.602 6.213 0.0000.000 0.000 0.000 -0.000 0.000936 931 gs 215.53 0.0 3.616 11.223 13.602 6.213 0.0000.000 0.000 0.000 -0.000 0.000937 932 q6 215.89 -1.0 6.839 11.235 11.280 6.217 0.0000.000 0.000 0.000 -0.000 0.000938 933 sd5 215.99 0.0 8.164 11.237 10.266 6.219 0.0000.000 0.000 0.000 -0.000 0.000939 934 sx7 216.15 -1.5 1 0.537 11.240 8.746 6.221 0.0000.000 0.000 0.000 -0.000 0.000940 935 hcm 216.15 0.0 1 0.537 11.240 8.746 6.221 0.0000.000 0.000 0.000 0.000 0.000941 936 vcm 216.15 0.0 1 0.537 11.240 8.746 6.221 0.0000.000 0.000 0.000 -0.000 -0.000942 937 sd41 216.32 0.0 1 3.432 11.242 7.253 6.225 0.0000.000 0.000 0.000 -0.000 0.000943 938 bpm 216.32 2.0 1 3.432 11.242 7.253 6.225 0.0000.000 0.000 0.000 -0.000 0.000944 939 sdb9 216.44 0.0 1 5.658 11.243 6.301 6.228 0.0000.000 0.000 0.000 -0.000 0.000945 940 q7 216.94 1.0 1 6.769 11.248 5.614 6.242 0.0000.000 0.000 0.000 -0.000 0.000946 941 sd3 217.04 0.0 1 5.216 11.249 6.075 6.245 0.0000.000 0.000 0.000 -0.000 0.000947 942 sx8 217.20 1.5 1 2.933 11.250 6.845 6.249 0.0000.000 0.000 0.000 -0.000 0.000948 943 qt 217.20 0.0 1 2.933 11.250 6.845 6.249 0.0000.000 0.000 0.000 -0.000 0.000949 944 hcm 217.20 0.0 1 2.933 11.250 6.845 6.249 0.0000.000 0.000 0.000 0.000 0.000950 945 vcm 217.20 0.0 1 2.933 11.250 6.845 6.249 0.0000.000 0.000 0.000 -0.000 -0.000951 946 sd2 217.49 0.0 9.278 11.255 8.375 6.255 0.0000.000 0.000 0.000 -0.000 0.000952 947 q8 217.85 -1.0 7.050 11.262 8.679 6.261 0.000 0.000 0.000 0.000 -0.000 0.000953 948 ge 217.85 0.0 7.050 11.262 8.679 6.261 0.000 0.000 0.000 0.000 -0.000 0.000954 949 sd87 218.17 0.0 6.546 11.269 7.450 6.268 0.0000.000 0.000 0.000 -0.000 0.000955 950 bpm 218.17 2.0 6.546 11.269 7.450 6.268 0.0000.000 0.000 0.000 -0.000 0.000956 951 sd13a 221.31 0.0 4. 197 11.372 1.725 6.438 0.0000.000 0.000 0.000 -0.000 0.000957 952 sd13a 224.45 0.0 6.551 11.474 7.440 6.608 0.0000.000 0.000 0.000 -0.000 0.000958 953 bpm 224.45 2.0 6.551 11.474 7.440 6.608 0.0000.000 0.000 0.000 -0.000 0.000959 954 sd87 224.77 0.0 7.057 11.482 8.668 6.614 0.0000.000 0.000 0.000 -0.000 0.000960 955 gs 224.77 0.0 7.057 11.482 8.668 6.614 0.0000.000 0.000 0.000 -0.000 0.000961 956 q8 225.13 -1.0 9.286 11.489 8.365 6.621 0.0000.000 0.000 0.000 -0.000 0.000962 957 sd2 225.42 0.0 1 2.945 11.493 6.837 6.627 0.0000.000 0.000 0.000 -0.000 0.000963 958 sx8 225.58 1.5 1 5.230 11.495 6.069 6.631 0.0000.000 0.000 0.000 -0.000 0.000964 959 hcm 225.58 0.0 1 5.230 11.495 6.069 6.631 0.0000.000 0.000 0.000 0.000 0.000965 960 vcm 225.58 0.0 1 5.230 11.495 6.069 6.631 0.0000.000 0.000 0.000 -0.000 -0.000966 961 sd3 225.68 0.0 1 6.785 11.496 5.608 6.634 0.0000.000 0.000 0.000 -0.000 0.000967 962 q7 226.18 1.0 1 5.673 11.500 6.296 6.648 0.0000.000 0.000 0.000 -0.000 0.000968 963 sdb10 226.35 0.0 1 2.616 11.502 7.642 6.652 0.0000.000 0.000 0.000 -0.000 0.000969 964 bpm 226.35 2.0 1 2.616 11.502 7.642 6.652 0.0000.000 0.000 0.000 -0.000 0.000970 965 sd42 226.47 0.0 10.546 11.504 8.740 6.654 0.0000.000 0.000 0.000 -0.000 0.000971 966 sx7 226.63 -1.5 8.171 11.507 10.260 6.657 0.0000.000 0.000 0.000 -0.000 0.000972 967 hcm 226.63 0.0 8.171 11.507 10.260 6.657 0.0000.000 0.000 0.000 0.000 0.000973 968 vcm 226.63 0.0 8.171 11.507 10.260 6.657 0.0000.000 0.000 0.000 -0.000 -0.000974 969 sd5 226.73 0.0 6. 845 11.509 11.273 6.659 0.0000.000 0.000 0.000 -0.000 0.000975 970 q6 227.09 -1.0 3. 619 11.521 13.595 6.663 0.0000.000 0.000 0.000 -0.000 0.000976 971 ge 227.09 0.0 3. 619 11.521 13.595 6.663 0.0000.000 0.000 0.000 -0.000 0.000977 972 sd7 227.51 0.0 1. 586 11.549 14.433 6.668 0.0000.000 0.000 0.000 -0.000 0.000978 973 dip 227.51 0.0 1. 586 11.549 14.433 6.668 0.0000.000 0.000 0.000 0.000 0.000979 974 bend0 228.56 0.5 0.7 62 11.849 16.230 6.679 0.0000.000 0.000 0.000 -0.000 0.000980 975 sd7 228.98 0.0 2.134 11.902 16.787 6.683 0.0000.000 0.000 0.000 -0.000 0.000981 976 gs 228.98 0.0 2.134 11.902 16.787 6.683 0.0000.000 0.000 0.000 -0.000 0.000982 977 q9 229.34 -1.0 4. 777 11.921 14.145 6.686 0.0000.000 0.000 0.000 -0.000 0.000983 978 sd8 229.44 0.0 5. 962 11.924 12.681 6.688 0.0000.000 0.000 0.000 -0.000 0.000984 979 sx9 229.60 -1.5 8.142 11.927 10.507 6.690 0.0000.000 0.000 0.000 -0.000 0.000985 980 hcm 229.60 0.0 8.142 11.927 10.507 6.690 0.0000.000 0.000 0.000 0.000 0.000986 981 vcm 229.60 0.0 8.142 11.927 10.507 6.690 0.0000.000 0.000 0.000 -0.000 -0.000987 982 sdb11 229.78 0.0 10.870 11.930 8.403 6.693 0.0000.000 0.000 0.000 -0.000 0.000988 983 bpm 229.78 2.0 10.870 11.930 8.403 6.693 0.0000.000 0.000 0.000 -0.000 0.000989 984 sd92 229.98 0.0 1 4.631 11.933 6.217 6.697 0.000 0.000 0.000 0.000 -0.000 0.000990 985 q10 230.34 1.0 1 8.449 11.936 4.195 6.709 0.0000.000 0.000 0.000 -0.000 0.000991 986 sd8 230.44 0.0 1 8.426 11.937 3.981 6.713 0.0000.000 0.000 0.000 -0.000 0.000992 987 sx10 230.60 1.5 1 8.392 11.938 3.659 6.720 0.0000.000 0.000 0.000 -0.000 0.000993 988 hcm 230.60 0.0 1 8.392 11.938 3.659 6.720 0.0000.000 0.000 0.000 0.000 0.000994 989 vcm 230.60 0.0 1 8.392 11.938 3.659 6.720 0.0000.000 0.000 0.000 -0.000 -0.000995 990 ge 230.60 0.0 1 8.392 11.938 3.659 6.720 0.0000.000 0.000 0.000 -0.000 0.000996 991 sd89 230.94 0.0 1 8.330 11.941 3.065 6.736 0.0000.000 0.000 0.000 -0.000 0.000997 992 bpm 230.94 2.0 1 8.330 11.941 3.065 6.736 0.0000.000 0.000 0.000 -0.000 0.000998 993 sdac1 232.43 0.0 1 8.207 11.954 1.901 6.841 0.0000.000 0.000 0.000 -0.000 0.000999 994 sdac1 233.91 0.0 1 8.326 11.967 3.054 6.947 0.0000.000 0.000 0.000 -0.000 0.0001000 995 bpm 233.91 2.0 1 8.326 11.967 3.054 6.947 0.0000.000 0.000 0.000 -0.000 0.0001001 996 sd88 234.25 0.0 1 8.387 11.970 3.647 6.963 0.0000.000 0.000 0.000 -0.000 0.0001002 997 gs 234.25 0.0 1 8.387 11.970 3.647 6.963 0.0000.000 0.000 0.000 -0.000 0.0001003 998 sx10 234.41 1.5 1 8.420 11.972 3.967 6.970 0.000 0.000 0.000 0.000 -0.000 0.0001004 999 qt 234.41 0.0 1 8.420 11.972 3.967 6.970 0.000 0.000 0.000 0.000 -0.000 0.0001005 1000 hcm 234.41 0.0 1 8.420 11.972 3.967 6.970 0.000 0.000 0.000 0.000 0.000 0.0001006 1001 vcm 234.41 0.0 1 8.420 11.972 3.967 6.970 0.000 0.000 0.000 0.000 -0.000 -0.0001007 1002 sd8 234.51 0.0 1 8.442 11.972 4.180 6.974 0.0000.000 0.000 0.000 -0.000 0.0001008 1003 q10 234.87 1.0 1 4.625 11.976 6.196 6.985 0.0000.000 0.000 0.000 -0.000 0.0001009 1004 sd93 235.12 0.0 10.080 11.979 8.925 6.991 0.0000.000 0.000 0.000 -0.000 0.0001010 1005 bpm 235.12 2.0 10.080 11.979 8.925 6.991 0.0000.000 0.000 0.000 -0.000 0.0001011 1006 sdb12 235.25 0.0 8.138 11.981 10.472 6.993 0.0000.000 0.000 0.000 -0.000 0.0001012 1007 sx9 235.41 -1.5 5. 959 11.985 12.640 6.995 0.0000.000 0.000 0.000 -0.000 0.0001013 1008 hcm 235.41 0.0 5. 959 11.985 12.640 6.995 0.0000.000 0.000 0.000 0.000 0.0001014 1009 vcm 235.41 0.0 5. 959 11.985 12.640 6.995 0.0000.000 0.000 0.000 -0.000 -0.0001015 1010 sd8 235.51 0.0 4. 774 11.988 14.099 6.996 0.0000.000 0.000 0.000 -0.000 0.0001016 1011 q9 235.87 -1.0 2.132 12.007 16.733 7.000 0.0000.000 0.000 0.000 -0.000 0.0001017 1012 ge 235.87 0.0 2.132 12.007 16.733 7.000 0.0000.000 0.000 0.000 -0.000 0.0001018 1013 sd7 236.29 0.0 0. 761 12.060 16.180 7.004 0.0000.000 0.000 0.000 -0.000 0.0001019 1014 dip 236.29 0.0 0. 761 12.060 16.180 7.004 0.0000.000 0.000 0.000 0.000 0.0001020 1015 bend0 237.34 0.5 1. 588 12.360 14.401 7.015 0.0000.000 0.000 0.000 -0.000 0.0001021 1016 sd7 237.76 0.0 3. 625 12.388 13.567 7.020 0.0000.000 0.000 0.000 -0.000 0.0001022 1017 gs 237.76 0.0 3. 625 12.388 13.567 7.020 0.0000.000 0.000 0.000 -0.000 0.0001023 1018 q6 238.12 -1.0 6. 854 12.400 11.251 7.024 0.0000.000 0.000 0.000 -0.000 0.0001024 1019 sd5 238.22 0.0 8.182 12.402 10.241 7.026 0.000 0.000 0.000 0.000 -0.000 0.0001025 1020 sx7 238.38 -1.5 10.560 12.405 8.725 7.028 0.0000.000 0.000 0.000 -0.000 0.0001026 1021 hcm 238.38 0.0 10.560 12.405 8.725 7.028 0.0000.000 0.000 0.000 0.000 0.0001027 1022 vcm 238.38 0.0 10.560 12.405 8.725 7.028 0.0000.000 0.000 0.000 -0.000 -0.0001028 1023 sd41 238.55 0.0 1 3.462 12.407 7.236 7.032 0.0000.000 0.000 0.000 -0.000 0.0001029 1024 bpm 238.55 2.0 1 3.462 12.407 7.236 7.032 0.0000.000 0.000 0.000 -0.000 0.0001030 1025 sdb13 238.67 0.0 1 5.692 12.408 6.286 7.035 0.000 0.000 0.000 0.000 -0.000 0.0001031 1026 q7 239.17 1.0 1 6.805 12.413 5.602 7.049 0.0000.000 0.000 0.000 -0.000 0.0001032 1027 sd3 239.27 0.0 1 5.249 12.414 6.064 7.052 0.0000.000 0.000 0.000 -0.000 0.0001033 1028 sx8 239.43 1.5 12. 960 12.416 6.832 7.056 0.0000.000 0.000 0.000 -0.000 0.0001034 1029 hcm 239.43 0.0 12. 960 12.416 6.832 7.056 0.0000.000 0.000 0.000 0.000 0.0001035 1030 vcm 239.43 0.0 12. 960 12.416 6.832 7.056 0.0000.000 0.000 0.000 -0.000 -0.0001036 1031 sd2 239.72 0.0 9.297 12.420 8.361 7.062 0.0000.000 0.000 0.000 -0.000 0.0001037 1032 q8 240.08 -1.0 7.064 12.427 8.666 7.068 0.000 0.000 0.000 0.000 -0.000 0.0001038 1033 ge 240.08 0.0 7.064 12.427 8.666 7.068 0.000 0.000 0.000 0.000 -0.000 0.0001039 1034 sd87 240.40 0.0 6.557 12.435 7.440 7.075 0.0000.000 0.000 0.000 -0.000 0.0001040 1035 bpm 240.40 2.0 6.557 12.435 7.440 7.075 0.0000.000 0.000 0.000 -0.000 0.0001041 1036 sd13a 243.54 0.0 4.194 12.537 1.730 7.245 0.0000.000 0.000 0.000 -0.000 0.0001042 1037 sd13a 246.68 0.0 6. 536 12.639 7.427 7.415 0.0000.000 0.000 0.000 -0.000 0.0001043 1038 bpm 246.68 2.0 6. 536 12.639 7.427 7.415 0.0000.000 0.000 0.000 -0.000 0.0001044 1039 sd87 247.00 0.0 7. 041 12.647 8.652 7.421 0.0000.000 0.000 0.000 -0.000 0.0001045 1040 gs 247.00 0.0 7. 041 12.647 8.652 7.421 0.0000.000 0.000 0.000 -0.000 0.0001046 1041 q8 247.36 -1.0 9.266 12.654 8.349 7.427 0.0000.000 0.000 0.000 -0.000 0.0001047 1042 sd2 247.65 0.0 1 2.917 12.658 6.822 7.434 0.0000.000 0.000 0.000 -0.000 0.0001048 1043 sx6 247.81 1.5 1 5.198 12.660 6.056 7.438 0.0000.000 0.000 0.000 -0.000 0.0001049 1044 hcm 247.81 0.0 1 5.198 12.660 6.056 7.438 0.0000.000 0.000 0.000 0.000 0.0001050 1045 vcm 247.81 0.0 1 5.198 12.660 6.056 7.438 0.0000.000 0.000 0.000 -0.000 -0.0001051 1046 sd3 247.92 0.0 1 6.749 12.661 5.595 7.440 0.0000.000 0.000 0.000 -0.000 0.0001052 1047 q7 248.41 1.0 1 5.640 12.666 6.280 7.455 0.0000.000 0.000 0.000 -0.000 0.0001053 1048 sdb14 248.58 0.0 1 2.592 12.668 7.621 7.459 0.0000.000 0.000 0.000 -0.000 0.0001054 1049 bpm 248.58 2.0 1 2.592 12.668 7.621 7.459 0.0000.000 0.000 0.000 -0.000 0.0001055 1050 sd43 248.70 0.0 1 0.525 12.669 8.718 7.461 0.0000.000 0.000 0.000 -0.000 0.0001056 1051 sx5 248.86 -1.5 8.155 12.672 10.233 7.464 0.0000.000 0.000 0.000 -0.000 0.0001057 1052 hcm 248.86 0.0 8.155 12.672 10.233 7.464 0.0000.000 0.000 0.000 0.000 0.0001058 1053 vcm 248.86 0.0 8.155 12.672 10.233 7.464 0.0000.000 0.000 0.000 -0.000 -0.0001059 1054 sd5 248.96 0.0 6.831 12.674 11.243 7.465 0.0000.000 0.000 0.000 -0.000 0.0001060 1055 q6 249.32 -1.0 3.613 12.686 13.559 7.470 0.0000.000 0.000 0.000 -0.000 0.0001061 1056 ge 249.32 0.0 3.613 12.686 13.559 7.470 0.0000.000 0.000 0.000 -0.000 0.0001062 1057 sd7 249.74 0.0 1. 584 12.714 14.394 7.475 0.0000.000 0.000 0.000 -0.000 0.0001063 1058 dip 249.74 0.0 1. 584 12.714 14.394 7.475 0.0000.000 0.000 0.000 0.000 0.0001064 1059 bend0 250.80 0.5 0. 762 13.014 16.185 7.486 0.0000.000 0.000 0.000 -0.000 0.0001065 1060 sd7 251.22 0.0 2.131 13.067 16.740 7.490 0.0000.000 0.000 0.000 -0.000 0.0001066 1061 gs 251.22 0.0 2.131 13.067 16.740 7.490 0.0000.000 0.000 0.000 -0.000 0.0001067 1062 q4 251.58 -1.0 4. 649 13.086 14.598 7.493 0.0000.000 0.000 0.000 -0.000 0.0001068 1063 sd8 251.68 0.0 5. 738 13.089 13.368 7.494 0.0000.000 0.000 0.000 -0.000 0.0001069 1064 sx3 251.84 -1.5 7. 730 13.093 11.513 7.496 0.0000.000 0.000 0.000 -0.000 0.0001070 1065 hcm 251.84 0.0 7. 730 13.093 11.513 7.496 0.0000.000 0.000 0.000 0.000 0.0001071 1066 vcm 251.84 0.0 7. 730 13.093 11.513 7.496 0.0000.000 0.000 0.000 -0.000 -0.0001072 1067 sdb15 252.01 0.0 10.210 13.096 9.677 7.499 0.0000.000 0.000 0.000 -0.000 0.0001073 1068 bpm 252.01 2.0 10.210 13.096 9.677 7.499 0.0000.000 0.000 0.000 -0.000 0.0001074 1069 sd9a 252.21 0.0 1 3.610 13.099 7.713 7.503 0.0000.000 0.000 0.000 -0.000 0.0001075 1070 q5 252.57 1.0 1 7.074 13.102 6.167 7.511 0.0000.000 0.000 0.000 -0.000 0.0001076 1071 sd10 252.94 0.0 1 7.058 13.106 6.133 7.521 0.0000.000 0.000 0.000 -0.000 0.0001077 1072 sx4 253.10 1.5 1 7.057 13.107 6.132 7.525 0.000 0.000 0.000 0.000 -0.000 0.0001078 1073 qt 253.10 0.0 1 7.057 13.107 6.132 7.525 0.000 0.000 0.000 0.000 -0.000 0.0001079 1074 hcm 253.10 0.0 1 7.057 13.107 6.132 7.525 0.000 0.000 0.000 0.000 0.000 0.0001080 1075 vcm 253.10 0.0 1 7.057 13.107 6.132 7.525 0.000 0.000 0.000 0.000 -0.000 -0.0001081 1076 sdb4 253.30 0.0 1 7.059 13.109 6.142 7.530 0.0000.000 0.000 0.000 -0.000 0.0001082 1077 bpm 253.30 2.0 1 7.059 13.109 6.142 7.530 0.0000.000 0.000 0.000 -0.000 0.0001083 1078 sd10a 253.47 0.0 1 7.065 13.111 6.162 7.535 0.0000.000 0.000 0.000 -0.000 0.0001084 1079 q5 253.83 1.0 13. 597 13.114 7.701 7.543 0.0000.000 0.000 0.000 -0.000 0.0001085 1080 sd93 254.08 0.0 9. 483 13.118 10.145 7.548 0.000 0.000 0.000 0.000 -0.000 0.0001086 1081 bpm 254.08 2.0 9. 483 13.118 10.145 7.548 0.000 0.000 0.000 0.000 -0.000 0.0001087 1082 sdb17 254.21 0.0 7. 716 13.120 11.491 7.550 0.0000.000 0.000 0.000 -0.000 0.0001088 1083 sx3 254.37 -1.5 5. 725 13.124 13.341 7.552 0.0000.000 0.000 0.000 -0.000 0.0001089 1084 hcm 254.37 0.0 5. 725 13.124 13.341 7.552 0.0000.000 0.000 0.000 0.000 0.0001090 1085 vcm 254.37 0.0 5. 725 13.124 13.341 7.552 0.0000.000 0.000 0.000 -0.000 -0.0001091 1086 sd8 254.47 0.0 4.6 36 13.127 14.568 7.553 0.0000.000 0.000 0.000 -0.000 0.0001092 1087 q4 254.83 -1.0 2.1 20 13.146 16.701 7.557 0.0000.000 0.000 0.000 -0.000 0.0001093 1088 ge 254.83 0.0 2.1 20 13.146 16.701 7.557 0.0000.000 0.000 0.000 -0.000 0.0001094 1089 sd7 255.25 0.0 0. 754 13.200 16.143 7.561 0.0000.000 0.000 0.000 -0.000 0.0001095 1090 dip 255.25 0.0 0. 754 13.200 16.143 7.561 0.0000.000 0.000 0.000 0.000 0.0001096 1091 bend0 256.30 0.5 1. 600 13.500 14.355 7.572 0.000 0.000 0.000 0.000 -0.000 0.0001097 1092 sd6 257.01 0.0 5.629 13.538 12.969 7.580 0.000 0.000 0.000 0.000 -0.000 0.0001098 1093 gs 257.01 0.0 5.629 13.538 12.969 7.580 0.000 0.000 0.000 0.000 -0.000 0.0001099 1094 sx2 257.17 -1.5 6.923 13.542 12.677 7.582 0.0000.000 0.000 0.000 -0.000 0.0001100 1095 hcm 257.17 0.0 6.923 13.542 12.677 7.582 0.0000.000 0.000 0.000 0.000 0.0001101 1096 vcm 257.17 0.0 6.923 13.542 12.677 7.582 0.0000.000 0.000 0.000 -0.000 -0.0001102 1097 sd5 257.27 0.0 7.802 13.544 12.498 7.583 0.0000.000 0.000 0.000 -0.000 0.0001103 1098 q3 257.63 -1.0 1 2.306 13.550 10.888 7.588 0.0000.000 0.000 0.000 -0.000 0.0001104 1099 sd141 258.06 0.0 20.548 13.554 8.126 7.595 0.0000.000 0.000 0.000 -0.000 0.0001105 1100 bpm 258.06 2.0 20.548 13.554 8.126 7.595 0.0000.000 0.000 0.000 -0.000 0.0001106 1101 sdb18 258.18 0.0 2 3.213 13.555 7.437 7.598 0.0000.000 0.000 0.000 -0.000 0.0001107 1102 q2 258.68 1.0 2 5.023 13.558 7.545 7.609 0.0000.000 0.000 0.000 -0.000 0.0001108 1103 sd3 258.78 0.0 2 3.361 13.559 8.179 7.611 0.0000.000 0.000 0.000 -0.000 0.0001109 1104 sx1 258.94 1.5 20.868 13.560 9.232 7.614 0.0000.000 0.000 0.000 -0.000 0.0001110 1105 qt 258.94 0.0 20.868 13.560 9.232 7.614 0.0000.000 0.000 0.000 -0.000 0.0001111 1106 hcm 258.94 0.0 20.868 13.560 9.232 7.614 0.0000.000 0.000 0.000 0.000 0.0001112 1107 vcm 258.94 0.0 20.868 13.560 9.232 7.614 0.0000.000 0.000 0.000 -0.000 -0.0001113 1108 sd2 259.23 0.0 1 6.715 13.562 11.318 7.619 0.0000.000 0.000 0.000 -0.000 0.0001114 1109 q1 259.59 -1.0 1 4.199 13.566 12.469 7.623 0.0000.000 0.000 0.000 -0.000 0.0001115 1110 ge 259.59 0.0 1 4.199 13.566 12.469 7.623 0.0000.000 0.000 0.000 -0.000 0.0001116 1111 sdc12 259.91 0.0 1 3.855 13.570 12.002 7.627 0.0000.000 0.000 0.000 -0.000 0.0001117 1112 bpm 259.91 2.0 1 3.855 13.570 12.002 7.627 0.0000.000 0.000 0.000 -0.000 0.0001118 1113 sd1e 265.57 0.0 1 0.903 13.646 7.995 7.725 0.000 0.000 0.000 0.000 -0.000 0.0001119 1114 sd1e 271.23 0.0 1 3.824 13.722 11.999 7.823 0.0000.000 0.000 0.000 -0.000 0.0001120 1115 bpm 271.23 2.0 1 3.824 13.722 11.999 7.823 0.0000.000 0.000 0.000 -0.000 0.0001121 1116 sdb1 271.55 0.0 1 4.166 13.726 12.466 7.828 0.0000.000 0.000 0.000 -0.000 0.0001122 1117 gs 271.55 0.0 1 4.166 13.726 12.466 7.828 0.0000.000 0.000 0.000 -0.000 0.0001123 1118 q1 271.91 -1.0 1 6.676 13.730 11.315 7.832 0.0000.000 0.000 0.000 -0.000 0.0001124 1119 sd2 272.20 0.0 2 0.818 13.732 9.230 7.837 0.0000.000 0.000 0.000 -0.000 0.0001125 1120 sx1 272.36 1.5 2 3.304 13.733 8.177 7.840 0.0000.000 0.000 0.000 -0.000 0.0001126 1121 qt 272.36 0.0 2 3.304 13.733 8.177 7.840 0.0000.000 0.000 0.000 -0.000 0.0001127 1122 hcm 272.36 0.0 2 3.304 13.733 8.177 7.840 0.0000.000 0.000 0.000 0.000 0.0001128 1123 vcm 272.36 0.0 2 3.304 13.733 8.177 7.840 0.0000.000 0.000 0.000 -0.000 -0.0001129 1124 sd3 272.46 0.0 2 4.962 13.734 7.543 7.842 0.0000.000 0.000 0.000 -0.000 0.0001130 1125 q2 272.96 1.0 2 3.155 13.737 7.436 7.853 0.000 0.000 0.000 0.000 -0.000 0.0001131 1126 sdb2 273.13 0.0 19.501 13.738 8.402 7.857 0.0000.000 0.000 0.000 -0.000 0.0001132 1127 bpm 273.13 2.0 19.501 13.738 8.402 7.857 0.0000.000 0.000 0.000 -0.000 0.0001133 1128 sd14a 273.51 0.0 1 2.275 13.742 10.886 7.863 0.0000.000 0.000 0.000 -0.000 0.0001134 1129 q3 273.87 -1.0 7.782 13.748 12.495 7.868 0.000 0.000 0.000 0.000 -0.000 0.0001135 1130 sd5 273.97 0.0 6.904 13.750 12.674 7.869 0.000 0.000 0.000 0.000 -0.000 0.0001136 1131 sx2 274.13 -1.5 5.614 13.754 12.967 7.871 0.0000.000 0.000 0.000 -0.000 0.0001137 1132 hcm 274.13 0.0 5.614 13.754 12.967 7.871 0.0000.000 0.000 0.000 0.000 0.0001138 1133 vcm 274.13 0.0 5.614 13.754 12.967 7.871 0.0000.000 0.000 0.000 -0.000 -0.0001139 1134 ge 274.13 0.0 5.614 13.754 12.967 7.871 0.0000.000 0.000 0.000 -0.000 0.0001140 1135 sd6 274.84 0.0 1. 596 13.793 14.352 7.879 0.0000.000 0.000 0.000 -0.000 0.0001141 1136 dip 274.84 0.0 1. 596 13.793 14.352 7.879 0.0000.000 0.000 0.000 0.000 0.0001142 1137 bend0 275.89 0.5 0. 756 14.092 16.149 7.890 0.0000.000 0.000 0.000 -0.000 0.0001143 1138 sd7 276.31 0.0 2.1 22 14.146 16.707 7.894 0.0000.000 0.000 0.000 -0.000 0.0001144 1139 gs 276.31 0.0 2.1 22 14.146 16.707 7.894 0.0000.000 0.000 0.000 -0.000 0.0001145 1140 q4 276.67 -1.0 4. 636 14.165 14.573 7.898 0.0000.000 0.000 0.000 -0.000 0.0001146 1141 sd8 276.77 0.0 5. 724 14.168 13.345 7.899 0.0000.000 0.000 0.000 -0.000 0.0001147 1142 sx3 276.93 -1.5 7.714 14.172 11.495 7.901 0.0000.000 0.000 0.000 -0.000 0.0001148 1143 hcm 276.93 0.0 7.714 14.172 11.495 7.901 0.0000.000 0.000 0.000 0.000 0.0001149 1144 vcm 276.93 0.0 7.714 14.172 11.495 7.901 0.0000.000 0.000 0.000 -0.000 -0.0001150 1145 sdb3 277.11 0.0 10. 192 14.175 9.664 7.904 0.0000.000 0.000 0.000 -0.000 0.0001151 1146 bpm 277.11 2.0 10. 192 14.175 9.664 7.904 0.0000.000 0.000 0.000 -0.000 0.0001152 1147 sd9a 277.31 0.0 1 3.589 14.178 7.704 7.908 0.0000.000 0.000 0.000 -0.000 0.0001153 1148 q5 277.67 1.0 1 7.054 14.181 6.164 7.916 0.0000.000 0.000 0.000 -0.000 0.0001154 1149 sd12 278.04 0.0 1 7.045 14.185 6.134 7.926 0.0000.000 0.000 0.000 -0.000 0.0001155 1150 sx4 278.20 1.5 1 7.046 14.186 6.134 7.930 0.0000.000 0.000 0.000 -0.000 0.0001156 1151 qt 278.20 0.0 1 7.046 14.186 6.134 7.930 0.0000.000 0.000 0.000 -0.000 0.0001157 1152 hcm 278.20 0.0 1 7.046 14.186 6.134 7.930 0.0000.000 0.000 0.000 0.000 0.0001158 1153 vcm 278.20 0.0 1 7.046 14.186 6.134 7.930 0.0000.000 0.000 0.000 -0.000 -0.0001159 1154 sdb4 278.40 0.0 1 7.051 14.188 6.147 7.935 0.0000.000 0.000 0.000 -0.000 0.0001160 1155 bpm 278.40 2.0 1 7.051 14.188 6.147 7.935 0.0000.000 0.000 0.000 -0.000 0.0001161 1156 sd10a 278.57 0.0 1 7.059 14.190 6.168 7.939 0.0000.000 0.000 0.000 -0.000 0.0001162 1157 q5 278.93 1.0 1 3.597 14.193 7.714 7.948 0.0000.000 0.000 0.000 -0.000 0.0001163 1158 sd91 279.18 0.0 9.487 14.197 10.165 7.953 0.0000.000 0.000 0.000 -0.000 0.0001164 1159 bpm 279.18 2.0 9.487 14.197 10.165 7.953 0.0000.000 0.000 0.000 -0.000 0.0001165 1160 sdb5 279.31 0.0 7.721 14.199 11.515 7.954 0.0000.000 0.000 0.000 -0.000 0.0001166 1161 sx3 279.47 -1.5 5.731 14.203 13.370 7.956 0.0000.000 0.000 0.000 -0.000 0.0001167 1162 hcm 279.47 0.0 5.731 14.203 13.370 7.956 0.0000.000 0.000 0.000 0.000 0.0001168 1163 vcm 279.47 0.0 5.731 14.203 13.370 7.956 0.0000.000 0.000 0.000 -0.000 -0.0001169 1164 sd8 279.57 0.0 4.643 14.206 14.601 7.958 0.0000.000 0.000 0.000 -0.000 0.0001170 1165 q4 279.93 -1.0 2. 127 14.225 16.743 7.961 0.0000.000 0.000 0.000 -0.000 0.0001171 1166 ge 279.93 0.0 2. 127 14.225 16.743 7.961 0.0000.000 0.000 0.000 -0.000 0.0001172 1167 sd7 280.35 0.0 0. 760 14.278 16.187 7.965 0.0000.000 0.000 0.000 -0.000 0.0001173 1168 dip 280.35 0.0 0. 760 14.278 16.187 7.965 0.0000.000 0.000 0.000 0.000 0.0001174 1169 bend0 281.40 0.5 1. 587 14.578 14.404 7.976 0.000 0.000 0.000 0.000 -0.000 0.0001175 1170 sd7 281.82 0.0 3. 619 14.606 13.568 7.981 0.0000.000 0.000 0.000 -0.000 0.0001176 1171 gs 281.82 0.0 3. 619 14.606 13.568 7.981 0.0000.000 0.000 0.000 -0.000 0.0001177 1172 q6 282.18 -1.0 6. 841 14.618 11.251 7.986 0.000 0.000 0.000 0.000 -0.000 0.0001178 1173 sd5 282.28 0.0 8.166 14.620 10.240 7.987 0.0000.000 0.000 0.000 -0.000 0.0001179 1174 sx5 282.44 -1.5 10.539 14.623 8.723 7.990 0.0000.000 0.000 0.000 -0.000 0.0001180 1175 hcm 282.44 0.0 10.539 14.623 8.723 7.990 0.0000.000 0.000 0.000 0.000 0.0001181 1176 vcm 282.44 0.0 10.539 14.623 8.723 7.990 0.0000.000 0.000 0.000 -0.000 -0.0001182 1177 sd41 282.61 0.0 1 3.434 14.625 7.234 7.993 0.0000.000 0.000 0.000 -0.000 0.0001183 1178 bpm 282.61 2.0 1 3.434 14.625 7.234 7.993 0.0000.000 0.000 0.000 -0.000 0.0001184 1179 sdb6 282.73 0.0 1 5.660 14.626 6.284 7.996 0.0000.000 0.000 0.000 -0.000 0.0001185 1180 q7 283.23 1.0 1 6.769 14.631 5.598 8.011 0.0000.000 0.000 0.000 -0.000 0.0001186 1181 sd3 283.33 0.0 1 5.215 14.632 6.059 8.013 0.0000.000 0.000 0.000 -0.000 0.0001187 1182 sx6 283.49 1.5 12. 931 14.634 6.826 8.017 0.0000.000 0.000 0.000 -0.000 0.0001188 1183 hcm 283.49 0.0 12. 931 14.634 6.826 8.017 0.0000.000 0.000 0.000 0.000 0.0001189 1184 vcm 283.49 0.0 12. 931 14.634 6.826 8.017 0.0000.000 0.000 0.000 -0.000 -0.0001190 1185 sd2 283.78 0.0 9.275 14.638 8.353 8.023 0.0000.000 0.000 0.000 -0.000 0.0001191 1186 q8 284.14 -1.0 7.047 14.645 8.656 8.030 0.0000.000 0.000 0.000 -0.000 0.0001192 1187 ge 284.14 0.0 7.047 14.645 8.656 8.030 0.0000.000 0.000 0.000 -0.000 0.0001193 1188 sdc12 284.46 0.0 6. 541 14.653 7.431 8.036 0.0000.000 0.000 0.000 -0.000 0.0001194 1189 bpm 284.46 2.0 6. 541 14.653 7.431 8.036 0.0000.000 0.000 0.000 -0.000 0.0001195 1190 sd13k 284.85 0.0 5.9 90 14.663 6.098 8.046 0.0000.000 0.000 0.000 -0.000 0.0001196 1191 ssdm 284.85 0.0 5.9 90 14.663 6.098 8.046 0.0000.000 0.000 0.000 -0.000 0.0001197 1192 sd13i 285.05 0.0 5.7 37 14.668 5.485 8.051 0.0000.000 0.000 0.000 -0.000 0.0001198 1193 sd13i 285.25 0.0 5. 504 14.674 4.919 8.057 0.0000.000 0.000 0.000 -0.000 0.0001199 1194 sd13i 285.45 0.0 5. 289 14.680 4.398 8.064 0.0000.000 0.000 0.000 -0.000 0.0001200 1195 sd13i 285.65 0.0 5. 093 14.686 3.925 8.072 0.0000.000 0.000 0.000 -0.000 0.0001201 1196 sd13i 285.85 0.0 4.916 14.692 3.497 8.080 0.0000.000 0.000 0.000 -0.000 0.0001202 1197 sd13i 286.05 0.0 4.759 14.699 3.116 8.090 0.0000.000 0.000 0.000 -0.000 0.0001203 1198 sd13i 286.25 0.0 4.621 14.706 2.781 8.101 0.0000.000 0.000 0.000 -0.000 0.0001204 1199 sd13i 286.45 0.0 4. 501 14.713 2.492 8.113 0.0000.000 0.000 0.000 -0.000 0.0001205 1200 sd13i 286.65 0.0 4. 401 14.720 2.249 8.126 0.0000.000 0.000 0.000 -0.000 0.0001206 1201 sd13i 286.85 0.0 4. 320 14.727 2.053 8.141 0.0000.000 0.000 0.000 -0.000 0.0001207 1202 sd13i 287.05 0.0 4. 258 14.734 1.903 8.157 0.0000.000 0.000 0.000 -0.000 0.0001208 1203 sd13i 287.25 0.0 4. 216 14.742 1.799 8.175 0.0000.000 0.000 0.000 -0.000 0.0001209 1204 sd13i 287.45 0.0 4. 192 14.749 1.742 8.193 0.0000.000 0.000 0.000 -0.000 0.0001210 1205 sd13j 287.60 0.0 4. 187 14.755 1.729 8.206 0.0000.000 0.000 0.000 -0.000 0.0001211 1206 sd13j 287.75 0.0 4. 192 14.761 1.742 8.220 0.0000.000 0.000 0.000 -0.000 0.0001212 1207 sd13i 287.95 0.0 4. 216 14.768 1.801 8.238 0.0000.000 0.000 0.000 -0.000 0.0001213 1208 sd13i 288.15 0.0 4.259 14.776 1.905 8.255 0.0000.000 0.000 0.000 -0.000 0.0001214 1209 sd13i 288.35 0.0 4.322 14.783 2.056 8.271 0.0000.000 0.000 0.000 -0.000 0.0001215 1210 sd13i 288.55 0.0 4.403 14.791 2.253 8.286 0.0000.000 0.000 0.000 -0.000 0.0001216 1211 sd13i 288.75 0.0 4.504 14.798 2.496 8.300 0.0000.000 0.000 0.000 -0.000 0.0001217 1212 sd13i 288.95 0.0 4.623 14.805 2.786 8.312 0.0000.000 0.000 0.000 -0.000 0.0001218 1213 sd13i 289.15 0.0 4.762 14.812 3.121 8.323 0.0000.000 0.000 0.000 -0.000 0.0001219 1214 sd13i 289.35 0.0 4.920 14.818 3.504 8.332 0.0000.000 0.000 0.000 -0.000 0.0001220 1215 sd13i 289.55 0.0 5.097 14.825 3.932 8.341 0.0000.000 0.000 0.000 -0.000 0.0001221 1216 sd13i 289.75 0.0 5.293 14.831 4.407 8.348 0.0000.000 0.000 0.000 -0.000 0.0001222 1217 sd13i 289.95 0.0 5.508 14.837 4.927 8.3550.000 0.000 0.000 0.000 -0.000 0.0001223 1218 sd13i 290.15 0.0 5.742 14.842 5.495 8.361 0.000 0.000 0.000 0.000 -0.000 0.0001224 1219 sd13i 290.35 0.0 5.996 14.848 6.108 8.367 0.000 0.000 0.000 0.000 -0.000 0.0001225 1220 esdm 290.35 0.0 5.996 14.848 6.108 8.367 0.000 0.000 0.000 0.000 -0.000 0.0001226 1221 eesdm 290.35 0.0 5.996 14.848 6.108 8.367 0.000 0.000 0.000 0.000 -0.000 0.0001227 1222 sd13k 290.74 0.0 6.547 14.858 7.443 8.376 0.0000.000 0.000 0.000 -0.000 0.0001228 1223 bpm 290.74 2.0 6.547 14.858 7.443 8.376 0.0000.000 0.000 0.000 -0.000 0.0001229 1224 sd87 291.06 0.0 7. 053 14.865 8.669 8.382 0.0000.000 0.000 0.000 -0.000 0.0001230 1225 gs 291.06 0.0 7. 053 14.865 8.669 8.382 0.0000.000 0.000 0.000 -0.000 0.0001231 1226 q8 291.42 -1.0 9.284 14.872 8.365 8.389 0.0000.000 0.000 0.000 -0.000 0.0001232 1227 sd2 291.71 0.0 1 2.943 14.877 6.835 8.395 0.0000.000 0.000 0.000 -0.000 0.0001233 1228 sx8 291.87 1.5 1 5.230 14.878 6.067 8.399 0.0000.000 0.000 0.000 -0.000 0.0001234 1229 qt 291.87 0.0 1 5.230 14.878 6.067 8.399 0.0000.000 0.000 0.000 -0.000 0.0001235 1230 hcm 291.87 0.0 1 5.230 14.878 6.067 8.399 0.0000.000 0.000 0.000 0.000 0.0001236 1231 vcm 291.87 0.0 1 5.230 14.878 6.067 8.399 0.0000.000 0.000 0.000 -0.000 -0.0001237 1232 sd3 291.98 0.0 1 6.784 14.880 5.605 8.402 0.000 0.000 0.000 0.000 -0.000 0.0001238 1233 q7 292.47 1.0 1 5.675 14.884 6.290 8.416 0.0000.000 0.000 0.000 -0.000 0.0001239 1234 sdb7 292.64 0.0 1 2.618 14.886 7.633 8.420 0.0000.000 0.000 0.000 -0.000 0.0001240 1235 bpm 292.64 2.0 1 2.618 14.886 7.633 8.420 0.0000.000 0.000 0.000 -0.000 0.0001241 1236 sd42 292.76 0.0 1 0.549 14.888 8.730 8.423 0.0000.000 0.000 0.000 -0.000 0.0001242 1237 sx7 292.92 -1.5 8. 174 14.890 10.247 8.425 0.0000.000 0.000 0.000 -0.000 0.0001243 1238 hcm 292.92 0.0 8. 174 14.890 10.247 8.425 0.0000.000 0.000 0.000 0.000 0.0001244 1239 vcm 292.92 0.0 8. 174 14.890 10.247 8.425 0.0000.000 0.000 0.000 -0.000 -0.0001245 1240 sd5 293.02 0.0 6.847 14.892 11.258 8.427 0.0000.000 0.000 0.000 -0.000 0.0001246 1241 q6 293.38 -1.0 3. 622 14.904 13.576 8.431 0.0000.000 0.000 0.000 -0.000 0.0001247 1242 ge 293.38 0.0 3. 622 14.904 13.576 8.431 0.0000.000 0.000 0.000 -0.000 0.0001248 1243 sd7 293.80 0.0 1.5 88 14.932 14.411 8.436 0.0000.000 0.000 0.000 -0.000 0.0001249 1244 dip 293.80 0.0 1.5 88 14.932 14.411 8.436 0.0000.000 0.000 0.000 0.000 0.0001250 1245 bend0 294.86 0.5 0. 760 15.232 16.200 8.447 0.0000.000 0.000 0.000 -0.000 0.0001251 1246 sd7 295.28 0.0 2. 129 15.286 16.754 8.451 0.0000.000 0.000 0.000 -0.000 0.0001252 1247 gs 295.28 0.0 2. 129 15.286 16.754 8.451 0.0000.000 0.000 0.000 -0.000 0.0001253 1248 q9 295.64 -1.0 4.767 15.304 14.116 8.455 0.000 0.000 0.000 0.000 -0.000 0.0001254 1249 sd8 295.74 0.0 5.951 15.307 12.655 8.456 0.0000.000 0.000 0.000 -0.000 0.0001255 1250 sx9 295.90 -1.5 8.126 15.311 10.485 8.458 0.0000.000 0.000 0.000 -0.000 0.0001256 1251 hcm 295.90 0.0 8.126 15.311 10.485 8.458 0.0000.000 0.000 0.000 0.000 0.0001257 1252 vcm 295.90 0.0 8.126 15.311 10.485 8.458 0.0000.000 0.000 0.000 -0.000 -0.0001258 1253 sdb8 296.07 0.0 1 0.851 15.314 8.384 8.461 0.0000.000 0.000 0.000 -0.000 0.0001259 1254 bpm 296.07 2.0 1 0.851 15.314 8.384 8.461 0.0000.000 0.000 0.000 -0.000 0.0001260 1255 sd9a 296.27 0.0 1 4.605 15.316 6.203 8.466 0.0000.000 0.000 0.000 -0.000 0.0001261 1256 q10 296.63 1.0 18.417 15.320 4.185 8.477 0.0000.000 0.000 0.000 -0.000 0.0001262 1257 sd8 296.73 0.0 18.395 15.321 3.971 8.481 0.0000.000 0.000 0.000 -0.000 0.0001263 1258 sx10 296.89 1.5 18.362 15.322 3.650 8.488 0.0000.000 0.000 0.000 -0.000 0.0001264 1259 qt 296.89 0.0 18.362 15.322 3.650 8.488 0.0000.000 0.000 0.000 -0.000 0.0001265 1260 hcm 296.89 0.0 18.362 15.322 3.650 8.488 0.0000.000 0.000 0.000 0.000 0.0001266 1261 vcm 296.89 0.0 18.362 15.322 3.650 8.488 0.0000.000 0.000 0.000 -0.000 -0.0001267 1262 ge 296.89 0.0 18.362 15.322 3.650 8.488 0.0000.000 0.000 0.000 -0.000 0.0001268 1263 sdc44 297.23 0.0 18.301 15.325 3.057 8.504 0.0000.000 0.000 0.000 -0.000 0.0001269 1264 bpm 297.23 2.0 18.301 15.325 3.057 8.504 0.0000.000 0.000 0.000 -0.000 0.0001270 1265 sdac4 297.82 0.0 18.226 15.330 2.324 8.539 0.0000.000 0.000 0.000 -0.000 0.0001271 1266 ssdac 297.82 0.0 18.226 15.330 2.324 8.539 0.0000.000 0.000 0.000 -0.000 0.0001272 1267 sdac2 298.02 0.0 18.209 15.332 2.156 8.553 0.0000.000 0.000 0.000 -0.000 0.0001273 1268 sdac2 298.22 0.0 18.196 15.334 2.030 8.569 0.0000.000 0.000 0.000 -0.000 0.0001274 1269 sdac2 298.42 0.0 18.188 15.335 1.946 8.585 0.0000.000 0.000 0.000 -0.000 0.0001275 1270 sdac2 298.62 0.0 18.184 15.337 1.904 8.601 0.0000.000 0.000 0.000 -0.000 0.0001276 1271 sdac2 298.82 0.0 18.185 15.339 1.905 8.618 0.0000.000 0.000 0.000 -0.000 0.0001277 1272 sdac2 299.02 0.0 18.189 15.341 1.947 8.635 0.0000.000 0.000 0.000 -0.000 0.0001278 1273 sdac2 299.22 0.0 18.199 15.342 2.031 8.651 0.0000.000 0.000 0.000 -0.000 0.0001279 1274 sdac2 299.42 0.0 18.213 15.344 2.158 8.666 0.000 0.000 0.000 0.000 -0.000 0.0001280 1275 sdac2 299.62 0.0 18.231 15.346 2.327 8.680 0.0000.000 0.000 0.000 -0.000 0.0001281 1276 esdac 299.62 0.0 18.231 15.346 2.327 8.680 0.0000.000 0.000 0.000 -0.000 0.0001282 1277 sdac4 300.20 0.0 18.309 15.351 3.061 8.715 0.0000.000 0.000 0.000 -0.000 0.0001283 1278 bpm 300.20 2.0 18.309 15.351 3.061 8.715 0.0000.000 0.000 0.000 -0.000 0.0001284 1279 sdc45 300.54 0.0 18.372 15.354 3.656 8.731 0.0000.000 0.000 0.000 -0.000 0.0001285 1280 gs 300.54 0.0 18.372 15.354 3.656 8.731 0.0000.000 0.000 0.000 -0.000 0.0001286 1281 sx10 300.70 1.5 18.406 15.355 3.977 8.738 0.0000.000 0.000 0.000 -0.000 0.0001287 1282 hcm 300.70 0.0 18.406 15.355 3.977 8.738 0.0000.000 0.000 0.000 0.000 0.0001288 1283 vcm 300.70 0.0 18.406 15.355 3.977 8.738 0.0000.000 0.000 0.000 -0.000 -0.0001289 1284 sd8 300.80 0.0 18.429 15.356 4.191 8.742 0.0000.000 0.000 0.000 -0.000 0.0001290 1285 q10 301.16 1.0 1 4.616 15.359 6.212 8.754 0.000 0.000 0.000 0.000 -0.000 0.0001291 1286 sd91 301.41 0.0 1 0.075 15.363 8.948 8.759 0.0000.000 0.000 0.000 -0.000 0.0001292 1287 bpm 301.41 2.0 1 0.075 15.363 8.948 8.759 0.0000.000 0.000 0.000 -0.000 0.0001293 1288 sd42 301.54 0.0 8.134 15.365 10.501 8.761 0.0000.000 0.000 0.000 -0.000 0.0001294 1289 sx9 301.70 -1.5 5.957 15.369 12.675 8.763 0.0000.000 0.000 0.000 -0.000 0.0001295 1290 hcm 301.70 0.0 5.957 15.369 12.675 8.763 0.0000.000 0.000 0.000 0.000 0.0001296 1291 vcm 301.70 0.0 5.957 15.369 12.675 8.763 0.0000.000 0.000 0.000 -0.000 -0.0001297 1292 sd8 301.80 0.0 4.773 15.372 14.138 8.765 0.0000.000 0.000 0.000 -0.000 0.0001298 1293 q9 302.16 -1.0 2. 133 15.390 16.779 8.768 0.0000.000 0.000 0.000 -0.000 0.0001299 1294 ge 302.16 0.0 2. 133 15.390 16.779 8.768 0.0000.000 0.000 0.000 -0.000 0.0001300 1295 sd7 302.58 0.0 0.7 62 15.444 16.224 8.772 0.0000.000 0.000 0.000 -0.000 0.0001301 1296 dip 302.58 0.0 0.7 62 15.444 16.224 8.772 0.0000.000 0.000 0.000 0.000 0.0001302 1297 bend0 303.63 0.5 1. 585 15.743 14.439 8.783 0.0000.000 0.000 0.000 -0.000 0.0001303 1298 sd7 304.05 0.0 3.616 15.772 13.602 8.788 0.0000.000 0.000 0.000 -0.000 0.0001304 1299 gs 304.05 0.0 3.616 15.772 13.602 8.788 0.0000.000 0.000 0.000 -0.000 0.0001305 1300 q6 304.41 -1.0 6.839 15.783 11.280 8.792 0.0000.000 0.000 0.000 -0.000 0.0001306 1301 sd5 304.51 0.0 8.165 15.785 10.266 8.794 0.0000.000 0.000 0.000 -0.000 0.0001307 1302 sx7 304.67 -1.5 1 0.538 15.788 8.746 8.797 0.0000.000 0.000 0.000 -0.000 0.0001308 1303 hcm 304.67 0.0 1 0.538 15.788 8.746 8.797 0.0000.000 0.000 0.000 0.000 0.0001309 1304 vcm 304.67 0.0 1 0.538 15.788 8.746 8.797 0.0000.000 0.000 0.000 -0.000 -0.0001310 1305 sd41 304.84 0.0 1 3.434 15.790 7.253 8.800 0.0000.000 0.000 0.000 -0.000 0.0001311 1306 bpm 304.84 2.0 1 3.434 15.790 7.253 8.800 0.0000.000 0.000 0.000 -0.000 0.0001312 1307 sdb9 304.96 0.0 1 5.660 15.792 6.301 8.803 0.0000.000 0.000 0.000 -0.000 0.0001313 1308 q7 305.46 1.0 1 6.771 15.796 5.614 8.817 0.0000.000 0.000 0.000 -0.000 0.0001314 1309 sd3 305.56 0.0 1 5.218 15.797 6.076 8.820 0.0000.000 0.000 0.000 -0.000 0.0001315 1310 sx8 305.72 1.5 1 2.934 15.799 6.845 8.824 0.0000.000 0.000 0.000 -0.000 0.0001316 1311 qt 305.72 0.0 1 2.934 15.799 6.845 8.824 0.0000.000 0.000 0.000 -0.000 0.0001317 1312 hcm 305.72 0.0 1 2.934 15.799 6.845 8.824 0.0000.000 0.000 0.000 0.000 0.0001318 1313 vcm 305.72 0.0 1 2.934 15.799 6.845 8.824 0.0000.000 0.000 0.000 -0.000 -0.0001319 1314 sd2 306.01 0.0 9.279 15.803 8.375 8.830 0.0000.000 0.000 0.000 -0.000 0.0001320 1315 q8 306.37 -1.0 7.051 15.811 8.679 8.837 0.000 0.000 0.000 0.000 -0.000 0.0001321 1316 ge 306.37 0.0 7.051 15.811 8.679 8.837 0.000 0.000 0.000 0.000 -0.000 0.0001322 1317 sd87 306.69 0.0 6.546 15.818 7.450 8.843 0.0000.000 0.000 0.000 -0.000 0.0001323 1318 bpm 306.69 2.0 6.546 15.818 7.450 8.843 0.0000.000 0.000 0.000 -0.000 0.0001324 1319 sd13a 309.83 0.0 4. 198 15.920 1.726 9.013 0.0000.000 0.000 0.000 -0.000 0.0001325 1320 sd13a 312.98 0.0 6.551 16.023 7.440 9.183 0.0000.000 0.000 0.000 -0.000 0.0001326 1321 bpm 312.98 2.0 6.551 16.023 7.440 9.183 0.0000.000 0.000 0.000 -0.000 0.0001327 1322 sd87 313.30 0.0 7.056 16.030 8.667 9.189 0.0000.000 0.000 0.000 -0.000 0.0001328 1323 gs 313.30 0.0 7.056 16.030 8.667 9.189 0.0000.000 0.000 0.000 -0.000 0.0001329 1324 q8 313.66 -1.0 9.285 16.037 8.365 9.196 0.0000.000 0.000 0.000 -0.000 0.0001330 1325 sd2 313.95 0.0 1 2.944 16.042 6.837 9.202 0.0000.000 0.000 0.000 -0.000 0.0001331 1326 sx8 314.11 1.5 1 5.229 16.044 6.069 9.206 0.0000.000 0.000 0.000 -0.000 0.0001332 1327 hcm 314.11 0.0 1 5.229 16.044 6.069 9.206 0.0000.000 0.000 0.000 0.000 0.0001333 1328 vcm 314.11 0.0 1 5.229 16.044 6.069 9.206 0.0000.000 0.000 0.000 -0.000 -0.0001334 1329 sd3 314.21 0.0 1 6.783 16.045 5.608 9.209 0.0000.000 0.000 0.000 -0.000 0.0001335 1330 q7 314.70 1.0 1 5.671 16.049 6.296 9.223 0.0000.000 0.000 0.000 -0.000 0.0001336 1331 sdb10 314.87 0.0 1 2.615 16.051 7.642 9.227 0.0000.000 0.000 0.000 -0.000 0.0001337 1332 bpm 314.87 2.0 1 2.615 16.051 7.642 9.227 0.0000.000 0.000 0.000 -0.000 0.0001338 1333 sd42 315.00 0.0 10.545 16.053 8.740 9.230 0.0000.000 0.000 0.000 -0.000 0.0001339 1334 sx7 315.16 -1.5 8.170 16.055 10.260 9.232 0.0000.000 0.000 0.000 -0.000 0.0001340 1335 hcm 315.16 0.0 8.170 16.055 10.260 9.232 0.0000.000 0.000 0.000 0.000 0.0001341 1336 vcm 315.16 0.0 8.170 16.055 10.260 9.232 0.0000.000 0.000 0.000 -0.000 -0.0001342 1337 sd5 315.26 0.0 6. 844 16.057 11.273 9.234 0.0000.000 0.000 0.000 -0.000 0.0001343 1338 q6 315.62 -1.0 3. 619 16.069 13.595 9.238 0.0000.000 0.000 0.000 -0.000 0.0001344 1339 ge 315.62 0.0 3. 619 16.069 13.595 9.238 0.0000.000 0.000 0.000 -0.000 0.0001345 1340 sd7 316.04 0.0 1. 586 16.097 14.433 9.243 0.0000.000 0.000 0.000 -0.000 0.0001346 1341 dip 316.04 0.0 1. 586 16.097 14.433 9.243 0.0000.000 0.000 0.000 0.000 0.0001347 1342 bend0 317.09 0.5 0.7 62 16.397 16.230 9.254 0.0000.000 0.000 0.000 -0.000 0.0001348 1343 sd7 317.51 0.0 2.134 16.451 16.786 9.258 0.0000.000 0.000 0.000 -0.000 0.0001349 1344 gs 317.51 0.0 2.134 16.451 16.786 9.258 0.0000.000 0.000 0.000 -0.000 0.0001350 1345 q9 317.87 -1.0 4. 777 16.469 14.145 9.262 0.0000.000 0.000 0.000 -0.000 0.0001351 1346 sd8 317.97 0.0 5. 963 16.472 12.681 9.263 0.0000.000 0.000 0.000 -0.000 0.0001352 1347 sx9 318.13 -1.5 8.143 16.476 10.507 9.265 0.0000.000 0.000 0.000 -0.000 0.0001353 1348 hcm 318.13 0.0 8.143 16.476 10.507 9.265 0.0000.000 0.000 0.000 0.000 0.0001354 1349 vcm 318.13 0.0 8.143 16.476 10.507 9.265 0.0000.000 0.000 0.000 -0.000 -0.0001355 1350 sdb11 318.30 0.0 10.870 16.479 8.403 9.268 0.0000.000 0.000 0.000 -0.000 0.0001356 1351 bpm 318.30 2.0 10.870 16.479 8.403 9.268 0.0000.000 0.000 0.000 -0.000 0.0001357 1352 sd92 318.51 0.0 1 4.632 16.481 6.217 9.272 0.000 0.000 0.000 0.000 -0.000 0.0001358 1353 q10 318.87 1.0 1 8.449 16.485 4.195 9.284 0.0000.000 0.000 0.000 -0.000 0.0001359 1354 sd8 318.97 0.0 1 8.427 16.486 3.981 9.288 0.0000.000 0.000 0.000 -0.000 0.0001360 1355 sx10 319.13 1.5 1 8.393 16.487 3.659 9.295 0.0000.000 0.000 0.000 -0.000 0.0001361 1356 hcm 319.13 0.0 1 8.393 16.487 3.659 9.295 0.0000.000 0.000 0.000 0.000 0.0001362 1357 vcm 319.13 0.0 1 8.393 16.487 3.659 9.295 0.0000.000 0.000 0.000 -0.000 -0.0001363 1358 ge 319.13 0.0 1 8.393 16.487 3.659 9.295 0.0000.000 0.000 0.000 -0.000 0.0001364 1359 sd89 319.47 0.0 1 8.330 16.490 3.066 9.311 0.0000.000 0.000 0.000 -0.000 0.0001365 1360 bpm 319.47 2.0 1 8.330 16.490 3.066 9.311 0.0000.000 0.000 0.000 -0.000 0.0001366 1361 sdac1 320.95 0.0 1 8.207 16.503 1.901 9.416 0.0000.000 0.000 0.000 -0.000 0.0001367 1362 sdac1 322.43 0.0 1 8.325 16.516 3.054 9.522 0.0000.000 0.000 0.000 -0.000 0.0001368 1363 bpm 322.43 2.0 1 8.325 16.516 3.054 9.522 0.0000.000 0.000 0.000 -0.000 0.0001369 1364 sd88 322.78 0.0 1 8.386 16.519 3.647 9.538 0.0000.000 0.000 0.000 -0.000 0.0001370 1365 gs 322.78 0.0 1 8.386 16.519 3.647 9.538 0.0000.000 0.000 0.000 -0.000 0.0001371 1366 sx10 322.94 1.5 1 8.419 16.520 3.967 9.545 0.000 0.000 0.000 0.000 -0.000 0.0001372 1367 qt 322.94 0.0 1 8.419 16.520 3.967 9.545 0.000 0.000 0.000 0.000 -0.000 0.0001373 1368 hcm 322.94 0.0 1 8.419 16.520 3.967 9.545 0.000 0.000 0.000 0.000 0.000 0.0001374 1369 vcm 322.94 0.0 1 8.419 16.520 3.967 9.545 0.000 0.000 0.000 0.000 -0.000 -0.0001375 1370 sd8 323.04 0.0 1 8.442 16.521 4.180 9.549 0.0000.000 0.000 0.000 -0.000 0.0001376 1371 q10 323.40 1.0 1 4.624 16.524 6.196 9.561 0.0000.000 0.000 0.000 -0.000 0.0001377 1372 sd93 323.65 0.0 10.079 16.528 8.925 9.566 0.0000.000 0.000 0.000 -0.000 0.0001378 1373 bpm 323.65 2.0 10.079 16.528 8.925 9.566 0.0000.000 0.000 0.000 -0.000 0.0001379 1374 sdb12 323.77 0.0 8.138 16.530 10.472 9.568 0.0000.000 0.000 0.000 -0.000 0.0001380 1375 sx9 323.93 -1.5 5. 959 16.534 12.640 9.570 0.0000.000 0.000 0.000 -0.000 0.0001381 1376 hcm 323.93 0.0 5. 959 16.534 12.640 9.570 0.0000.000 0.000 0.000 0.000 0.0001382 1377 vcm 323.93 0.0 5. 959 16.534 12.640 9.570 0.0000.000 0.000 0.000 -0.000 -0.0001383 1378 sd8 324.03 0.0 4. 774 16.537 14.099 9.571 0.0000.000 0.000 0.000 -0.000 0.0001384 1379 q9 324.39 -1.0 2.132 16.555 16.733 9.575 0.0000.000 0.000 0.000 -0.000 0.0001385 1380 ge 324.39 0.0 2.132 16.555 16.733 9.575 0.0000.000 0.000 0.000 -0.000 0.0001386 1381 sd7 324.81 0.0 0. 760 16.609 16.179 9.579 0.0000.000 0.000 0.000 -0.000 0.0001387 1382 dip 324.81 0.0 0. 760 16.609 16.179 9.579 0.0000.000 0.000 0.000 0.000 0.0001388 1383 bend0 325.86 0.5 1. 589 16.909 14.401 9.590 0.0000.000 0.000 0.000 -0.000 0.0001389 1384 sd7 326.28 0.0 3. 625 16.937 13.567 9.595 0.000 0.000 0.000 0.000 -0.000 0.0001390 1385 gs 326.28 0.0 3. 625 16.937 13.567 9.595 0.000 0.000 0.000 0.000 -0.000 0.0001391 1386 q6 326.64 -1.0 6. 855 16.948 11.251 9.599 0.0000.000 0.000 0.000 -0.000 0.0001392 1387 sd5 326.74 0.0 8.183 16.951 10.240 9.601 0.000 0.000 0.000 0.000 -0.000 0.0001393 1388 sx7 326.90 -1.5 10.561 16.953 8.725 9.604 0.0000.000 0.000 0.000 -0.000 0.0001394 1389 hcm 326.90 0.0 10.561 16.953 8.725 9.604 0.0000.000 0.000 0.000 0.000 0.0001395 1390 vcm 326.90 0.0 10.561 16.953 8.725 9.604 0.0000.000 0.000 0.000 -0.000 -0.0001396 1391 sd41 327.08 0.0 1 3.463 16.956 7.236 9.607 0.0000.000 0.000 0.000 -0.000 0.0001397 1392 bpm 327.08 2.0 1 3.463 16.956 7.236 9.607 0.0000.000 0.000 0.000 -0.000 0.0001398 1393 sdb13 327.20 0.0 1 5.694 16.957 6.286 9.610 0.000 0.000 0.000 0.000 -0.000 0.0001399 1394 q7 327.69 1.0 1 6.807 16.961 5.602 9.624 0.0000.000 0.000 0.000 -0.000 0.0001400 1395 sd3 327.79 0.0 1 5.250 16.962 6.063 9.627 0.0000.000 0.000 0.000 -0.000 0.0001401 1396 sx8 327.95 1.5 12. 961 16.964 6.832 9.631 0.0000.000 0.000 0.000 -0.000 0.0001402 1397 hcm 327.95 0.0 12. 961 16.964 6.832 9.631 0.0000.000 0.000 0.000 0.000 0.0001403 1398 vcm 327.95 0.0 12. 961 16.964 6.832 9.631 0.0000.000 0.000 0.000 -0.000 -0.0001404 1399 sd2 328.24 0.0 9.297 16.968 8.361 9.637 0.0000.000 0.000 0.000 -0.000 0.0001405 1400 q8 328.60 -1.0 7.064 16.976 8.665 9.644 0.000 0.000 0.000 0.000 -0.000 0.0001406 1401 ge 328.60 0.0 7.064 16.976 8.665 9.644 0.000 0.000 0.000 0.000 -0.000 0.0001407 1402 sd87 328.93 0.0 6.558 16.983 7.440 9.650 0.0000.000 0.000 0.000 -0.000 0.0001408 1403 bpm 328.93 2.0 6.558 16.983 7.440 9.650 0.0000.000 0.000 0.000 -0.000 0.0001409 1404 sd13a 332.07 0.0 4.193 17.085 1.730 9.820 0.0000.000 0.000 0.000 -0.000 0.0001410 1405 sd13a 335.21 0.0 6. 535 17.188 7.428 9.990 0.0000.000 0.000 0.000 -0.000 0.0001411 1406 bpm 335.21 2.0 6. 535 17.188 7.428 9.990 0.0000.000 0.000 0.000 -0.000 0.0001412 1407 sd87 335.53 0.0 7. 040 17.195 8.652 9.996 0.0000.000 0.000 0.000 -0.000 0.0001413 1408 gs 335.53 0.0 7. 040 17.195 8.652 9.996 0.0000.000 0.000 0.000 -0.000 0.0001414 1409 q8 335.89 -1.0 9.265 17.203 8.349 10.003 0.0000.000 0.000 0.000 -0.000 0.0001415 1410 sd2 336.18 0.0 1 2.915 17.207 6.822 10.009 0.0000.000 0.000 0.000 -0.000 0.0001416 1411 sx6 336.34 1.5 1 5.196 17.209 6.056 10.013 0.0000.000 0.000 0.000 -0.000 0.0001417 1412 hcm 336.34 0.0 1 5.196 17.209 6.056 10.013 0.0000.000 0.000 0.000 0.000 0.0001418 1413 vcm 336.34 0.0 1 5.196 17.209 6.056 10.013 0.0000.000 0.000 0.000 -0.000 -0.0001419 1414 sd3 336.44 0.0 1 6.747 17.210 5.595 10.016 0.0000.000 0.000 0.000 -0.000 0.0001420 1415 q7 336.94 1.0 1 5.639 17.214 6.280 10.030 0.0000.000 0.000 0.000 -0.000 0.0001421 1416 sdb14 337.10 0.0 1 2.591 17.216 7.621 10.034 0.0000.000 0.000 0.000 -0.000 0.0001422 1417 bpm 337.10 2.0 1 2.591 17.216 7.621 10.034 0.0000.000 0.000 0.000 -0.000 0.0001423 1418 sd43 337.23 0.0 1 0.524 17.218 8.718 10.036 0.0000.000 0.000 0.000 -0.000 0.0001424 1419 sx5 337.39 -1.5 8.154 17.221 10.233 10.039 0.0000.000 0.000 0.000 -0.000 0.0001425 1420 hcm 337.39 0.0 8.154 17.221 10.233 10.039 0.0000.000 0.000 0.000 0.000 0.0001426 1421 vcm 337.39 0.0 8.154 17.221 10.233 10.039 0.0000.000 0.000 0.000 -0.000 -0.0001427 1422 sd5 337.49 0.0 6.831 17.223 11.243 10.040 0.0000.000 0.000 0.000 -0.000 0.0001428 1423 q6 337.85 -1.0 3.613 17.235 13.558 10.045 0.0000.000 0.000 0.000 -0.000 0.0001429 1424 ge 337.85 0.0 3.613 17.235 13.558 10.045 0.0000.000 0.000 0.000 -0.000 0.0001430 1425 sd7 338.27 0.0 1. 584 17.263 14.394 10.050 0.0000.000 0.000 0.000 -0.000 0.0001431 1426 dip 338.27 0.0 1. 584 17.263 14.394 10.050 0.0000.000 0.000 0.000 0.000 0.0001432 1427 bend0 339.32 0.5 0. 761 17.562 16.185 10.061 0.0000.000 0.000 0.000 -0.000 0.0001433 1428 sd7 339.74 0.0 2.130 17.616 16.740 10.065 0.0000.000 0.000 0.000 -0.000 0.0001434 1429 gs 339.74 0.0 2.130 17.616 16.740 10.065 0.0000.000 0.000 0.000 -0.000 0.0001435 1430 q4 340.10 -1.0 4. 648 17.635 14.598 10.068 0.0000.000 0.000 0.000 -0.000 0.0001436 1431 sd8 340.20 0.0 5. 737 17.638 13.367 10.070 0.000 0.000 0.000 0.000 -0.000 0.0001437 1432 sx3 340.36 -1.5 7. 728 17.641 11.512 10.072 0.0000.000 0.000 0.000 -0.000 0.0001438 1433 hcm 340.36 0.0 7. 728 17.641 11.512 10.072 0.0000.000 0.000 0.000 0.000 0.0001439 1434 vcm 340.36 0.0 7. 728 17.641 11.512 10.072 0.0000.000 0.000 0.000 -0.000 -0.0001440 1435 sdb15 340.53 0.0 10.208 17.645 9.677 10.074 0.0000.000 0.000 0.000 -0.000 0.0001441 1436 bpm 340.53 2.0 10.208 17.645 9.677 10.074 0.0000.000 0.000 0.000 -0.000 0.0001442 1437 sd9a 340.74 0.0 1 3.607 17.647 7.713 10.078 0.0000.000 0.000 0.000 -0.000 0.0001443 1438 q5 341.10 1.0 1 7.071 17.651 6.167 10.087 0.0000.000 0.000 0.000 -0.000 0.0001444 1439 sd10 341.47 0.0 1 7.056 17.654 6.133 10.096 0.0000.000 0.000 0.000 -0.000 0.0001445 1440 sx4 341.63 1.5 1 7.054 17.656 6.132 10.100 0.000 0.000 0.000 0.000 -0.000 0.0001446 1441 qt 341.63 0.0 1 7.054 17.656 6.132 10.100 0.000 0.000 0.000 0.000 -0.000 0.0001447 1442 hcm 341.63 0.0 1 7.054 17.656 6.132 10.100 0.000 0.000 0.000 0.000 0.000 0.0001448 1443 vcm 341.63 0.0 1 7.054 17.656 6.132 10.100 0.000 0.000 0.000 0.000 -0.000 -0.0001449 1444 sdb4 341.83 0.0 1 7.056 17.658 6.142 10.105 0.0000.000 0.000 0.000 -0.000 0.0001450 1445 bpm 341.83 2.0 1 7.056 17.658 6.142 10.105 0.0000.000 0.000 0.000 -0.000 0.0001451 1446 sd10a 342.00 0.0 1 7.062 17.659 6.161 10.110 0.0000.000 0.000 0.000 -0.000 0.0001452 1447 q5 342.36 1.0 13. 595 17.663 7.701 10.119 0.0000.000 0.000 0.000 -0.000 0.0001453 1448 sd93 342.61 0.0 9. 481 17.667 10.145 10.123 0.000 0.000 0.000 0.000 -0.000 0.0001454 1449 bpm 342.61 2.0 9. 481 17.667 10.145 10.123 0.000 0.000 0.000 0.000 -0.000 0.0001455 1450 sdb17 342.73 0.0 7. 714 17.669 11.491 10.125 0.0000.000 0.000 0.000 -0.000 0.0001456 1451 sx3 342.89 -1.5 5. 724 17.673 13.341 10.127 0.0000.000 0.000 0.000 -0.000 0.0001457 1452 hcm 342.89 0.0 5. 724 17.673 13.341 10.127 0.0000.000 0.000 0.000 0.000 0.0001458 1453 vcm 342.89 0.0 5. 724 17.673 13.341 10.127 0.0000.000 0.000 0.000 -0.000 -0.0001459 1454 sd8 342.99 0.0 4.6 35 17.676 14.568 10.128 0.0000.000 0.000 0.000 -0.000 0.0001460 1455 q4 343.35 -1.0 2.1 20 17.695 16.701 10.132 0.0000.000 0.000 0.000 -0.000 0.0001461 1456 ge 343.35 0.0 2.1 20 17.695 16.701 10.132 0.0000.000 0.000 0.000 -0.000 0.0001462 1457 sd7 343.77 0.0 0. 754 17.748 16.142 10.136 0.0000.000 0.000 0.000 -0.000 0.0001463 1458 dip 343.77 0.0 0. 754 17.748 16.142 10.136 0.0000.000 0.000 0.000 0.000 0.0001464 1459 bend0 344.83 0.5 1. 600 18.048 14.354 10.147 0.000 0.000 0.000 0.000 -0.000 0.0001465 1460 sd6 345.54 0.0 5.628 18.086 12.969 10.155 0.0000.000 0.000 0.000 -0.000 0.0001466 1461 gs 345.54 0.0 5.628 18.086 12.969 10.155 0.0000.000 0.000 0.000 -0.000 0.0001467 1462 sx2 345.70 -1.5 6.922 18.090 12.676 10.157 0.0000.000 0.000 0.000 -0.000 0.0001468 1463 hcm 345.70 0.0 6.922 18.090 12.676 10.157 0.0000.000 0.000 0.000 0.000 0.0001469 1464 vcm 345.70 0.0 6.922 18.090 12.676 10.157 0.0000.000 0.000 0.000 -0.000 -0.0001470 1465 sd5 345.80 0.0 7.801 18.093 12.498 10.158 0.0000.000 0.000 0.000 -0.000 0.0001471 1466 q3 346.16 -1.0 1 2.304 18.098 10.888 10.163 0.0000.000 0.000 0.000 -0.000 0.0001472 1467 sd141 346.59 0.0 20.544 18.103 8.125 10.170 0.0000.000 0.000 0.000 -0.000 0.0001473 1468 bpm 346.59 2.0 20.544 18.103 8.125 10.170 0.0000.000 0.000 0.000 -0.000 0.0001474 1469 sdb18 346.71 0.0 2 3.209 18.104 7.437 10.173 0.0000.000 0.000 0.000 -0.000 0.0001475 1470 q2 347.20 1.0 2 5.019 18.107 7.545 10.184 0.000 0.000 0.000 0.000 -0.000 0.0001476 1471 sd3 347.31 0.0 2 3.357 18.107 8.179 10.186 0.0000.000 0.000 0.000 -0.000 0.0001477 1472 sx1 347.47 1.5 20.864 18.109 9.232 10.189 0.0000.000 0.000 0.000 -0.000 0.0001478 1473 qt 347.47 0.0 20.864 18.109 9.232 10.189 0.0000.000 0.000 0.000 -0.000 0.0001479 1474 hcm 347.47 0.0 20.864 18.109 9.232 10.189 0.0000.000 0.000 0.000 0.000 0.0001480 1475 vcm 347.47 0.0 20.864 18.109 9.232 10.189 0.0000.000 0.000 0.000 -0.000 -0.0001481 1476 sd2 347.76 0.0 1 6.712 18.111 11.317 10.194 0.0000.000 0.000 0.000 -0.000 0.0001482 1477 q1 348.12 -1.0 1 4.196 18.115 12.468 10.198 0.0000.000 0.000 0.000 -0.000 0.0001483 1478 ge 348.12 0.0 1 4.196 18.115 12.468 10.198 0.0000.000 0.000 0.000 -0.000 0.0001484 1479 sdc12 348.44 0.0 1 3.853 18.118 12.001 10.203 0.0000.000 0.000 0.000 -0.000 0.0001485 1480 bpm 348.44 2.0 1 3.853 18.118 12.001 10.203 0.0000.000 0.000 0.000 -0.000 0.0001486 1481 sd1e 354.10 0.0 1 0.901 18.195 7.995 10.301 0.0000.000 0.000 0.000 -0.000 0.0001487 1482 cav 354.10 0.0 1 0.901 18.195 7.995 10.301 0.0000.000 0.000 0.000 -0.000 0.0001488 1483 fin 354.10 0.0 1 0.901 18.195 7.995 10.301 0.0000.000 0.000 0.000 -0.000 0.0005 0 begin 0.00 0.0 11.050 0.000 8.179 0.000 -0.049 0.000 0.000 0.000 -0.000 0.000 6 1 debut 0.00 0.0 11.050 0.000 8.179 0.000 -0.049 0.000 0.000 0.000 -0.000 0.000 7 2 sd1a 0.90 0.0 11.410 0.013 8.606 0.017 -0.120 0.000 0.000 0.000 -0.000 0.000 8 3 ssep 0.90 0.0 11.410 0.013 8.606 0.017 -0.120 0.000 0.000 0.000 -0.000 0.000 9 4 sep 1.10 0.0 11.510 0.016 8.729 0.021 -0.136 0.000 0.000 0.000 -0.000 0.000 10 5 sep 1.30 0.0 11.618 0.018 8.862 0.024 -0.152 0.000 0.000 0.000 -0.000 0.000 11 6 sep 1.50 0.0 11.734 0.021 9.005 0.028 -0.168 0.000 0.000 0.000 -0.000 0.000 12 7 esep 1.50 0.0 11.734 0.021 9.005 0.028 -0.168 0.000 0.000 0.000 -0.000 0.000 13 8 sd1c 5.20 0.0 15.204 0.066 13.471 0.082 -0.460 0.000 0.000 0.000 -0.000 0.000 14 9 ehu600 5.20 0.0 15.204 0.066 13.471 0.082 -0.460 0.000 0.000 0.000 -0.000 0.000 15 10 sd1d 5.69 0.0 15.853 0.071 14.320 0.088 -0.498 0.000 0.000 0.000 -0.000 0.000 16 11 bpm 5.69 2.0 15.853 0.071 14.320 0.088 -0.498 0.000 0.000 0.000 -0.000 0.000 17 12 sdb1i 5.98 0.0 16.260 0.074 14.854 0.091 -0.521 0.000 0.000 0.000 -0.000 0.000 18 13 gs 5.98 0.0 16.260 0.074 14.854 0.091 -0.521 0.000 0.000 0.000 -0.000 0.000 19 14 q1 6.34 -1.0 19.206 0.077 13.509 0.095 -0.587 0.000 0.000 0.000 -0.000 0.000 20 15 sd2 6.63 0.0 24.026 0.079 11.035 0.099 -0.671 0.000 0.000 0.000 -0.000 0.000 21 16 sx1 6.79 1.5 26.931 0.080 9.778 0.101 -0.718 0.000 0.000 0.000 -0.000 0.000 22 17 qt 6.79 0.0 26.931 0.080 9.778 0.101 -0.718 0.000 0.000 0.000 -0.000 0.000 23 18 hcm 6.79 0.0 26.931 0.080 9.778 0.101 -0.718 0.000 0.000 0.000 0.000 0.000 24 19 vcm 6.79 0.0 26.931 0.080 9.778 0.101 -0.718 0.000 0.000 0.000 -0.000 -0.000 25 20 sd3 6.89 0.0 28.875 0.081 9.018 0.103 -0.748 0.000 0.000 0.000 -0.000 0.000 26 21 q2 7.39 1.0 26.900 0.083 8.864 0.113 -0.740 0.000 0.000 0.000 -0.000 0.000 27 22 sdb2 7.56 0.0 22.693 0.084 10.001 0.115 -0.687 0.000 0.000 0.000 -0.000 0.000 28 23 bpm 7.56 2.0 22.693 0.084 10.001 0.115 -0.687 0.000 0.000 0.000 -0.000 0.000 29 24 sd14a 7.94 0.0 14.357 0.088 12.912 0.121 -0.563 0.000 0.000 0.000 -0.000 0.000 30 25 q3 8.30 -1.0 9.167 0.093 14.772 0.125 -0.470 0.000 0.000 0.000 -0.000 0.000 31 26 sd5 8.40 0.0 8.152 0.095 14.970 0.126 -0.450 0.000 0.000 0.000 -0.000 0.000 32 27 sx2 8.56 -1.5 6.652 0.098 15.300 0.128 -0.418 0.000 0.000 0.000 -0.000 0.000 33 28 hcm 8.56 0.0 6.652 0.098 15.300 0.128 -0.418 0.000 0.000 0.000 0.000 0.000 34 29 vcm 8.56 0.0 6.652 0.098 15.300 0.128 -0.418 0.000 0.000 0.000 -0.000 -0.000 35 30 ge 8.56 0.0 6.652 0.098 15.300 0.128 -0.418 0.000 0.000 0.000 -0.000 0.000 36 31 sd6 9.27 0.0 1.909 0.130 16.889 0.135 -0.275 0.000 0.000 0.000 -0.000 0.000 37 32 dip 9.27 0.0 1.909 0.130 16.889 0.135 -0.275 0.000 0.000 0.000 0.000 0.000 38 33 bend0 10.32 0.5 0.669 0.442 18.893 0.144 -0.869 0.000 0.000 0.000 -0.000 0.000 39 34 sd7 10.74 0.0 2.101 0.499 19.491 0.148 -0.799 0.000 0.000 0.000 -0.000 0.000 40 35 gs 10.74 0.0 2.101 0.499 19.491 0.148 -0.799 0.000 0.000 0.000 -0.000 0.000 41 36 q4 11.10 -1.0 4.785 0.518 16.954 0.151 -0.804 0.000 0.000 0.000 -0.000 0.000 42 37 sd8 11.20 0.0 5.947 0.521 15.511 0.152 -0.823 0.000 0.000 0.000 -0.000 0.000 43 38 sx3 11.36 -1.5 8.075 0.525 13.345 0.153 -0.854 0.000 0.000 0.000 -0.000 0.000 44 39 hcm 11.36 0.0 8.075 0.525 13.345 0.153 -0.854 0.000 0.000 0.000 0.000 0.000 45 40 vcm 11.36 0.0 8.075 0.525 13.345 0.153 -0.854 0.000 0.000 0.000 -0.000 -0.000 46 41 sdb3 11.53 0.0 10.728 0.528 11.210 0.156 -0.887 0.000 0.000 0.000 -0.000 0.000 47 42 bpm 11.53 2.0 10.728 0.528 11.210 0.156 -0.887 0.000 0.000 0.000 -0.000 0.000 48 43 sd9a 11.74 0.0 14.374 0.530 8.922 0.159 -0.926 0.000 0.000 0.000 -0.000 0.000 49 44 q5 12.10 1.0 18.152 0.534 7.105 0.166 -0.893 0.000 0.000 0.000 -0.000 0.000 50 45 sd12 12.47 0.0 18.248 0.537 7.023 0.175 -0.754 0.000 0.000 0.000 -0.000 0.000 51 46 sx4 12.63 1.5 18.309 0.538 6.993 0.178 -0.695 0.000 0.000 0.000 -0.000 0.000 52 47 qt 12.63 0.0 18.309 0.538 6.993 0.178 -0.695 0.000 0.000 0.000 -0.000 0.000 53 48 hcm 12.63 0.0 18.309 0.538 6.993 0.178 -0.695 0.000 0.000 0.000 0.000 0.000 54 49 vcm 12.63 0.0 18.309 0.538 6.993 0.178 -0.695 0.000 0.000 0.000 -0.000 -0.000 55 50 sdb4 12.83 0.0 18.408 0.540 6.960 0.183 -0.621 0.000 0.000 0.000 -0.000 0.000 56 51 bpm 12.83 2.0 18.408 0.540 6.960 0.183 -0.621 0.000 0.000 0.000 -0.000 0.000 57 52 sd10a 13.00 0.0 18.498 0.541 6.940 0.187 -0.557 0.000 0.000 0.000 -0.000 0.000 58 53 q5 13.36 1.0 14.889 0.545 8.565 0.195 -0.367 0.000 0.000 0.000 -0.000 0.000 59 54 sd91 13.61 0.0 10.485 0.548 11.202 0.199 -0.202 0.000 0.000 0.000 -0.000 0.000 60 55 bpm 13.61 2.0 10.485 0.548 11.202 0.199 -0.202 0.000 0.000 0.000 -0.000 0.000 61 56 sdb5 13.74 0.0 8.584 0.550 12.651 0.200 -0.119 0.000 0.000 0.000 -0.000 0.000 62 57 sx3 13.90 -1.5 6.433 0.553 14.638 0.202 -0.013 0.000 0.000 0.000 -0.000 0.000 63 58 hcm 13.90 0.0 6.433 0.553 14.638 0.202 -0.013 0.000 0.000 0.000 0.000 0.000 64 59 vcm 13.90 0.0 6.433 0.553 14.638 0.202 -0.013 0.000 0.000 0.000 -0.000 -0.000 65 60 sd8 14.00 0.0 5.250 0.556 15.954 0.203 0.053 0.000 0.000 0.000 -0.000 0.000 66 61 q4 14.36 -1.0 2.507 0.572 18.182 0.206 0.301 0.000 0.000 0.000 -0.000 0.000 67 62 ge 14.36 0.0 2.507 0.572 18.182 0.206 0.301 0.000 0.000 0.000 -0.000 0.000 68 63 sd7 14.78 0.0 0.958 0.616 17.451 0.210 0.612 0.000 0.000 0.000 -0.000 0.000 69 64 dip 14.78 0.0 0.958 0.616 17.451 0.210 0.612 0.000 0.000 0.000 0.000 0.000 70 65 bend0 15.83 0.5 1.289 0.921 15.204 0.221 0.580 0.000 0.000 0.000 -0.000 0.000 71 66 sd7 16.25 0.0 3.103 0.954 14.187 0.225 0.874 0.000 0.000 0.000 -0.000 0.000 72 67 gs 16.25 0.0 3.103 0.954 14.187 0.225 0.874 0.000 0.000 0.000 -0.000 0.000 73 68 q6 16.61 -1.0 6.041 0.968 11.658 0.229 1.190 0.000 0.000 0.000 -0.000 0.000 74 69 sd5 16.71 0.0 7.252 0.970 10.578 0.231 1.297 0.000 0.000 0.000 -0.000 0.000 75 70 sx5 16.87 -1.5 9.441 0.973 8.947 0.233 1.469 0.000 0.000 0.000 -0.000 0.000 76 71 hcm 16.87 0.0 9.441 0.973 8.947 0.233 1.469 0.000 0.000 0.000 0.000 0.000 77 72 vcm 16.87 0.0 9.441 0.973 8.947 0.233 1.469 0.000 0.000 0.000 -0.000 -0.000 78 73 sd41 17.04 0.0 12.144 0.976 7.336 0.237 1.655 0.000 0.000 0.000 -0.000 0.000 79 74 bpm 17.04 2.0 12.144 0.976 7.336 0.237 1.655 0.000 0.000 0.000 -0.000 0.000 80 75 sdb6 17.16 0.0 14.229 0.977 6.313 0.240 1.784 0.000 0.000 0.000 -0.000 0.000 81 76 q7 17.66 1.0 15.509 0.982 5.358 0.254 1.836 0.000 0.000 0.000 -0.000 0.000 82 77 sd3 17.76 0.0 14.129 0.983 5.745 0.257 1.746 0.000 0.000 0.000 -0.000 0.000 83 78 sx6 17.92 1.5 12.073 0.985 6.398 0.262 1.605 0.000 0.000 0.000 -0.000 0.000 84 79 hcm 17.92 0.0 12.073 0.985 6.398 0.262 1.605 0.000 0.000 0.000 0.000 0.000 85 80 vcm 17.92 0.0 12.073 0.985 6.398 0.262 1.605 0.000 0.000 0.000 -0.000 -0.000 86 81 sd2 18.21 0.0 8.736 0.990 7.714 0.268 1.348 0.000 0.000 0.000 -0.000 0.000 87 82 q8 18.57 -1.0 6.741 0.997 7.872 0.275 1.156 0.000 0.000 0.000 -0.000 0.000 88 83 ge 18.57 0.0 6.741 0.997 7.872 0.275 1.156 0.000 0.000 0.000 -0.000 0.000 89 84 sdc12 18.89 0.0 6.360 1.005 6.661 0.282 1.092 0.000 0.000 0.000 -0.000 0.000 90 85 bpm 18.89 2.0 6.360 1.005 6.661 0.282 1.092 0.000 0.000 0.000 -0.000 0.000 91 86 sd13k 19.28 0.0 5.953 1.015 5.359 0.293 1.014 0.000 0.000 0.000 -0.000 0.000 92 87 ssdm 19.28 0.0 5.953 1.015 5.359 0.293 1.014 0.000 0.000 0.000 -0.000 0.000 93 88 sd13i 19.48 0.0 5.769 1.021 4.769 0.299 0.974 0.000 0.000 0.000 -0.000 0.000 94 89 sd13i 19.68 0.0 5.602 1.026 4.228 0.306 0.934 0.000 0.000 0.000 -0.000 0.000 95 90 sd13i 19.88 0.0 5.452 1.032 3.738 0.314 0.895 0.000 0.000 0.000 -0.000 0.000 96 91 sd13i 20.08 0.0 5.318 1.038 3.299 0.323 0.855 0.000 0.000 0.000 -0.000 0.000 97 92 sd13i 20.28 0.0 5.200 1.044 2.909 0.333 0.815 0.000 0.000 0.000 -0.000 0.000 98 93 sd13i 20.48 0.0 5.099 1.050 2.570 0.345 0.775 0.000 0.000 0.000 -0.000 0.000 99 94 sd13i 20.68 0.0 5.015 1.057 2.281 0.358 0.735 0.000 0.000 0.000 -0.000 0.000 100 95 sd13i 20.88 0.0 4.947 1.063 2.043 0.373 0.696 0.000 0.000 0.000 -0.000 0.000 101 96 sd13i 21.08 0.0 4.895 1.070 1.855 0.389 0.656 0.000 0.000 0.000 -0.000 0.000 102 97 sd13i 21.28 0.0 4.860 1.076 1.717 0.407 0.616 0.000 0.000 0.000 -0.000 0.000 103 98 sd13i 21.48 0.0 4.842 1.083 1.629 0.426 0.576 0.000 0.000 0.000 -0.000 0.000 104 99 sd13i 21.68 0.0 4.840 1.089 1.592 0.446 0.537 0.000 0.000 0.000 -0.000 0.000 105 100 sd13i 21.88 0.0 4.855 1.096 1.605 0.466 0.497 0.000 0.000 0.000 -0.000 0.000 106 101 sd13j 22.03 0.0 4.877 1.101 1.648 0.481 0.467 0.000 0.000 0.000 -0.000 0.000 107 102 sd13j 22.18 0.0 4.908 1.106 1.719 0.495 0.437 0.000 0.000 0.000 -0.000 0.000 108 103 sd13i 22.38 0.0 4.964 1.112 1.857 0.513 0.397 0.000 0.000 0.000 -0.000 0.000 109 104 sd13i 22.58 0.0 5.037 1.118 2.047 0.529 0.358 0.000 0.000 0.000 -0.000 0.000 110 105 sd13i 22.78 0.0 5.126 1.125 2.286 0.544 0.318 0.000 0.000 0.000 -0.000 0.000 111 106 sd13i 22.98 0.0 5.232 1.131 2.576 0.557 0.278 0.000 0.000 0.000 -0.000 0.000 112 107 sd13i 23.18 0.0 5.354 1.137 2.916 0.569 0.238 0.000 0.000 0.000 -0.000 0.000 113 108 sd13i 23.38 0.0 5.493 1.143 3.306 0.579 0.198 0.000 0.000 0.000 -0.000 0.000 114 109 sd13i 23.58 0.0 5.648 1.148 3.747 0.588 0.159 0.000 0.000 0.000 -0.000 0.000 115 110 sd13i 23.78 0.0 5.820 1.154 4.237 0.596 0.119 0.000 0.000 0.000 -0.000 0.000 116 111 sd13i 23.98 0.0 6.008 1.159 4.779 0.603 0.079 0.000 0.000 0.000 -0.000 0.000 117 112 sd13i 24.18 0.0 6.213 1.165 5.370 0.609 0.039 0.000 0.000 0.000 -0.000 0.000 118 113 sd13i 24.38 0.0 6.434 1.170 6.012 0.615 -0.001 0.000 0.000 0.000 -0.000 0.000 119 114 sd13i 24.58 0.0 6.672 1.174 6.704 0.620 -0.040 0.000 0.000 0.000 -0.000 0.000 120 115 sd13i 24.78 0.0 6.927 1.179 7.447 0.625 -0.080 0.000 0.000 0.000 -0.000 0.000 121 116 esdm 24.78 0.0 6.927 1.179 7.447 0.625 -0.080 0.000 0.000 0.000 -0.000 0.000 122 117 eesdm 24.78 0.0 6.927 1.179 7.447 0.625 -0.080 0.000 0.000 0.000 -0.000 0.000 123 118 sd13k 25.17 0.0 7.472 1.188 9.045 0.632 -0.158 0.000 0.000 0.000 -0.000 0.000 124 119 bpm 25.17 2.0 7.472 1.188 9.045 0.632 -0.158 0.000 0.000 0.000 -0.000 0.000 125 120 sdc13 25.49 0.0 7.966 1.194 10.497 0.637 -0.222 0.000 0.000 0.000 -0.000 0.000 126 121 gs 25.49 0.0 7.966 1.194 10.497 0.637 -0.222 0.000 0.000 0.000 -0.000 0.000 127 122 q8 25.85 -1.0 10.370 1.201 10.083 0.643 -0.318 0.000 0.000 0.000 -0.000 0.000 128 123 sd2 26.14 0.0 14.359 1.205 8.196 0.648 -0.419 0.000 0.000 0.000 -0.000 0.000 129 124 sx8 26.30 1.5 16.854 1.206 7.242 0.651 -0.475 0.000 0.000 0.000 -0.000 0.000 130 125 qt 26.30 0.0 16.854 1.206 7.242 0.651 -0.475 0.000 0.000 0.000 -0.000 0.000 131 126 hcm 26.30 0.0 16.854 1.206 7.242 0.651 -0.475 0.000 0.000 0.000 0.000 0.000 132 127 vcm 26.30 0.0 16.854 1.206 7.242 0.651 -0.475 0.000 0.000 0.000 -0.000 -0.000 133 128 sd3 26.40 0.0 18.555 1.207 6.666 0.654 -0.510 0.000 0.000 0.000 -0.000 0.000 134 129 q7 26.90 1.0 17.246 1.211 7.312 0.666 -0.543 0.000 0.000 0.000 -0.000 0.000 135 130 sdb7 27.07 0.0 13.854 1.213 8.814 0.669 -0.506 0.000 0.000 0.000 -0.000 0.000 136 131 bpm 27.07 2.0 13.854 1.213 8.814 0.669 -0.506 0.000 0.000 0.000 -0.000 0.000 137 132 sd42 27.19 0.0 11.559 1.215 10.035 0.671 -0.479 0.000 0.000 0.000 -0.000 0.000 138 133 sx7 27.35 -1.5 8.921 1.217 11.727 0.674 -0.443 0.000 0.000 0.000 -0.000 0.000 139 134 hcm 27.35 0.0 8.921 1.217 11.727 0.674 -0.443 0.000 0.000 0.000 0.000 0.000 140 135 vcm 27.35 0.0 8.921 1.217 11.727 0.674 -0.443 0.000 0.000 0.000 -0.000 -0.000 141 136 sd5 27.45 0.0 7.446 1.219 12.858 0.675 -0.421 0.000 0.000 0.000 -0.000 0.000 142 137 q6 27.81 -1.0 3.855 1.230 15.404 0.679 -0.367 0.000 0.000 0.000 -0.000 0.000 143 138 ge 27.81 0.0 3.855 1.230 15.404 0.679 -0.367 0.000 0.000 0.000 -0.000 0.000 144 139 sd7 28.23 0.0 1.597 1.257 16.232 0.683 -0.333 0.000 0.000 0.000 -0.000 0.000 145 140 dip 28.23 0.0 1.597 1.257 16.232 0.683 -0.333 0.000 0.000 0.000 0.000 0.000 146 141 bend0 29.28 0.5 0.855 1.580 17.917 0.693 -1.053 0.000 0.000 0.000 -0.000 0.000 147 142 sd7 29.70 0.0 2.518 1.627 18.395 0.697 -1.034 0.000 0.000 0.000 -0.000 0.000 148 143 gs 29.70 0.0 2.518 1.627 18.395 0.697 -1.034 0.000 0.000 0.000 -0.000 0.000 149 144 q9 30.06 -1.0 5.653 1.642 15.396 0.700 -1.120 0.000 0.000 0.000 -0.000 0.000 150 145 sd8 30.16 0.0 7.053 1.645 13.772 0.701 -1.173 0.000 0.000 0.000 -0.000 0.000 151 146 sx9 30.32 -1.5 9.616 1.648 11.376 0.703 -1.258 0.000 0.000 0.000 -0.000 0.000 152 147 hcm 30.32 0.0 9.616 1.648 11.376 0.703 -1.258 0.000 0.000 0.000 0.000 0.000 153 148 vcm 30.32 0.0 9.616 1.648 11.376 0.703 -1.258 0.000 0.000 0.000 -0.000 -0.000 154 149 sdb8 30.50 0.0 12.805 1.650 9.075 0.706 -1.349 0.000 0.000 0.000 -0.000 0.000 155 150 bpm 30.50 2.0 12.805 1.650 9.075 0.706 -1.349 0.000 0.000 0.000 -0.000 0.000 156 151 sd9a 30.70 0.0 17.190 1.653 6.687 0.710 -1.456 0.000 0.000 0.000 -0.000 0.000 157 152 q10 31.06 1.0 21.600 1.655 4.461 0.721 -1.476 0.000 0.000 0.000 -0.000 0.000 158 153 sd8 31.16 0.0 21.554 1.656 4.215 0.725 -1.434 0.000 0.000 0.000 -0.000 0.000 159 154 sx10 31.32 1.5 21.500 1.657 3.843 0.731 -1.368 0.000 0.000 0.000 -0.000 0.000 160 155 qt 31.32 0.0 21.500 1.657 3.843 0.731 -1.368 0.000 0.000 0.000 -0.000 0.000 161 156 hcm 31.32 0.0 21.500 1.657 3.843 0.731 -1.368 0.000 0.000 0.000 0.000 0.000 162 157 vcm 31.32 0.0 21.500 1.657 3.843 0.731 -1.368 0.000 0.000 0.000 -0.000 -0.000 163 158 ge 31.32 0.0 21.500 1.657 3.843 0.731 -1.368 0.000 0.000 0.000 -0.000 0.000 164 159 sdc44 31.66 0.0 21.434 1.660 3.144 0.746 -1.226 0.000 0.000 0.000 -0.000 0.000 165 160 bpm 31.66 2.0 21.434 1.660 3.144 0.746 -1.226 0.000 0.000 0.000 -0.000 0.000 166 161 sdac4 32.25 0.0 21.345 1.664 2.264 0.782 -0.984 0.000 0.000 0.000 -0.000 0.000 167 162 ssdac 32.25 0.0 21.345 1.664 2.264 0.782 -0.984 0.000 0.000 0.000 -0.000 0.000 168 163 sdac2 32.45 0.0 21.322 1.666 2.055 0.796 -0.901 0.000 0.000 0.000 -0.000 0.000 169 164 sdac2 32.65 0.0 21.303 1.667 1.894 0.813 -0.818 0.000 0.000 0.000 -0.000 0.000 170 165 sdac2 32.85 0.0 21.287 1.669 1.779 0.830 -0.735 0.000 0.000 0.000 -0.000 0.000 171 166 sdac2 33.05 0.0 21.276 1.670 1.712 0.848 -0.652 0.000 0.000 0.000 -0.000 0.000 172 167 sdac2 33.25 0.0 21.268 1.672 1.693 0.867 -0.569 0.000 0.000 0.000 -0.000 0.000 173 168 sdac2 33.45 0.0 21.264 1.673 1.720 0.886 -0.486 0.000 0.000 0.000 -0.000 0.000 174 169 sdac2 33.65 0.0 21.263 1.675 1.795 0.904 -0.403 0.000 0.000 0.000 -0.000 0.000 175 170 sdac2 33.85 0.0 21.267 1.676 1.917 0.921 -0.320 0.000 0.000 0.000 -0.000 0.000 176 171 sdac2 34.05 0.0 21.274 1.678 2.087 0.937 -0.237 0.000 0.000 0.000 -0.000 0.000 177 172 esdac 34.05 0.0 21.274 1.678 2.087 0.937 -0.237 0.000 0.000 0.000 -0.000 0.000 178 173 sdac4 34.63 0.0 21.316 1.682 2.852 0.975 0.006 0.000 0.000 0.000 -0.000 0.000 179 174 bpm 34.63 2.0 21.316 1.682 2.852 0.975 0.006 0.000 0.000 0.000 -0.000 0.000 180 175 sdc45 34.97 0.0 21.356 1.685 3.486 0.993 0.147 0.000 0.000 0.000 -0.000 0.000 181 176 gs 34.97 0.0 21.356 1.685 3.486 0.993 0.147 0.000 0.000 0.000 -0.000 0.000 182 177 sx10 35.13 1.5 21.376 1.686 3.830 1.000 0.214 0.000 0.000 0.000 -0.000 0.000 183 178 hcm 35.13 0.0 21.376 1.686 3.830 1.000 0.214 0.000 0.000 0.000 0.000 0.000 184 179 vcm 35.13 0.0 21.376 1.686 3.830 1.000 0.214 0.000 0.000 0.000 -0.000 -0.000 185 180 sd8 35.23 0.0 21.388 1.686 4.061 1.004 0.255 0.000 0.000 0.000 -0.000 0.000 186 181 q10 35.59 1.0 16.917 1.689 6.132 1.016 0.370 0.000 0.000 0.000 -0.000 0.000 187 182 sd91 35.84 0.0 11.628 1.692 8.909 1.021 0.424 0.000 0.000 0.000 -0.000 0.000 188 183 bpm 35.84 2.0 11.628 1.692 8.909 1.021 0.424 0.000 0.000 0.000 -0.000 0.000 189 184 sd42 35.97 0.0 9.368 1.694 10.490 1.023 0.451 0.000 0.000 0.000 -0.000 0.000 190 185 sx9 36.13 -1.5 6.839 1.697 12.700 1.025 0.485 0.000 0.000 0.000 -0.000 0.000 191 186 hcm 36.13 0.0 6.839 1.697 12.700 1.025 0.485 0.000 0.000 0.000 0.000 0.000 192 187 vcm 36.13 0.0 6.839 1.697 12.700 1.025 0.485 0.000 0.000 0.000 -0.000 -0.000 193 188 sd8 36.23 0.0 5.467 1.700 14.185 1.026 0.506 0.000 0.000 0.000 -0.000 0.000 194 189 q9 36.59 -1.0 2.398 1.716 16.906 1.030 0.636 0.000 0.000 0.000 -0.000 0.000 195 190 ge 36.59 0.0 2.398 1.716 16.906 1.030 0.636 0.000 0.000 0.000 -0.000 0.000 196 191 sd7 37.01 0.0 0.789 1.766 16.423 1.034 0.854 0.000 0.000 0.000 -0.000 0.000 197 192 dip 37.01 0.0 0.789 1.766 16.423 1.034 0.854 0.000 0.000 0.000 0.000 0.000 198 193 bend0 38.06 0.5 1.721 2.088 14.793 1.045 0.593 0.000 0.000 0.000 -0.000 0.000 199 194 sd7 38.48 0.0 4.078 2.113 14.008 1.049 0.795 0.000 0.000 0.000 -0.000 0.000 200 195 gs 38.48 0.0 4.078 2.113 14.008 1.049 0.795 0.000 0.000 0.000 -0.000 0.000 201 196 q6 38.84 -1.0 7.803 2.124 11.673 1.054 1.024 0.000 0.000 0.000 -0.000 0.000 202 197 sd5 38.94 0.0 9.332 2.126 10.641 1.055 1.105 0.000 0.000 0.000 -0.000 0.000 203 198 sx7 39.10 -1.5 12.093 2.128 9.073 1.058 1.235 0.000 0.000 0.000 -0.000 0.000 204 199 hcm 39.10 0.0 12.093 2.128 9.073 1.058 1.235 0.000 0.000 0.000 0.000 0.000 205 200 vcm 39.10 0.0 12.093 2.128 9.073 1.058 1.235 0.000 0.000 0.000 -0.000 -0.000 206 201 sd41 39.27 0.0 15.492 2.130 7.515 1.061 1.375 0.000 0.000 0.000 -0.000 0.000 207 202 bpm 39.27 2.0 15.492 2.130 7.515 1.061 1.375 0.000 0.000 0.000 -0.000 0.000 208 203 sdb9 39.39 0.0 18.110 2.131 6.521 1.064 1.472 0.000 0.000 0.000 -0.000 0.000 209 204 q7 39.89 1.0 19.573 2.135 5.774 1.078 1.481 0.000 0.000 0.000 -0.000 0.000 210 205 sd3 39.99 0.0 17.797 2.136 6.241 1.081 1.401 0.000 0.000 0.000 -0.000 0.000 211 206 sx8 40.15 1.5 15.150 2.137 7.030 1.084 1.275 0.000 0.000 0.000 -0.000 0.000 212 207 qt 40.15 0.0 15.150 2.137 7.030 1.084 1.275 0.000 0.000 0.000 -0.000 0.000 213 208 hcm 40.15 0.0 15.150 2.137 7.030 1.084 1.275 0.000 0.000 0.000 0.000 0.000 214 209 vcm 40.15 0.0 15.150 2.137 7.030 1.084 1.275 0.000 0.000 0.000 -0.000 -0.000 215 210 sd2 40.44 0.0 10.864 2.141 8.623 1.090 1.047 0.000 0.000 0.000 -0.000 0.000 216 211 q8 40.80 -1.0 8.242 2.147 8.957 1.097 0.860 0.000 0.000 0.000 -0.000 0.000 217 212 ge 40.80 0.0 8.242 2.147 8.957 1.097 0.860 0.000 0.000 0.000 -0.000 0.000 218 213 sd87 41.12 0.0 7.631 2.154 7.706 1.103 0.775 0.000 0.000 0.000 -0.000 0.000 219 214 bpm 41.12 2.0 7.631 2.154 7.706 1.103 0.775 0.000 0.000 0.000 -0.000 0.000 220 215 sd13a 44.26 0.0 4.260 2.247 1.736 1.267 -0.059 0.000 0.000 0.000 -0.000 0.000 221 216 sd13a 47.40 0.0 5.639 2.357 7.159 1.442 -0.892 0.000 0.000 0.000 -0.000 0.000 222 217 bpm 47.40 2.0 5.639 2.357 7.159 1.442 -0.892 0.000 0.000 0.000 -0.000 0.000 223 218 sd86 47.72 0.0 6.047 2.366 8.352 1.449 -0.977 0.000 0.000 0.000 -0.000 0.000 224 219 gs 47.72 0.0 6.047 2.366 8.352 1.449 -0.977 0.000 0.000 0.000 -0.000 0.000 225 220 q8 48.08 -1.0 7.935 2.375 8.077 1.456 -1.176 0.000 0.000 0.000 -0.000 0.000 226 221 sd2 48.37 0.0 11.052 2.380 6.615 1.462 -1.425 0.000 0.000 0.000 -0.000 0.000 227 222 sx8 48.53 1.5 13.025 2.382 5.869 1.466 -1.563 0.000 0.000 0.000 -0.000 0.000 228 223 hcm 48.53 0.0 13.025 2.382 5.869 1.466 -1.563 0.000 0.000 0.000 0.000 0.000 229 224 vcm 48.53 0.0 13.025 2.382 5.869 1.466 -1.563 0.000 0.000 0.000 -0.000 -0.000 230 225 sd3 48.64 0.0 14.386 2.383 5.413 1.469 -1.651 0.000 0.000 0.000 -0.000 0.000 231 226 q7 49.13 1.0 13.565 2.388 6.027 1.484 -1.639 0.000 0.000 0.000 -0.000 0.000 232 227 sdb10 49.30 0.0 10.967 2.390 7.301 1.488 -1.487 0.000 0.000 0.000 -0.000 0.000 233 228 bpm 49.30 2.0 10.967 2.390 7.301 1.488 -1.487 0.000 0.000 0.000 -0.000 0.000 234 229 sd42 49.42 0.0 9.205 2.392 8.341 1.491 -1.373 0.000 0.000 0.000 -0.000 0.000 235 230 sx7 49.58 -1.5 7.162 2.395 9.798 1.493 -1.226 0.000 0.000 0.000 -0.000 0.000 236 231 hcm 49.58 0.0 7.162 2.395 9.798 1.493 -1.226 0.000 0.000 0.000 0.000 0.000 237 232 vcm 49.58 0.0 7.162 2.395 9.798 1.493 -1.226 0.000 0.000 0.000 -0.000 -0.000 238 233 sd5 49.68 0.0 6.011 2.398 10.783 1.495 -1.135 0.000 0.000 0.000 -0.000 0.000 239 234 q6 50.04 -1.0 3.218 2.411 13.070 1.500 -0.871 0.000 0.000 0.000 -0.000 0.000 240 235 ge 50.04 0.0 3.218 2.411 13.070 1.500 -0.871 0.000 0.000 0.000 -0.000 0.000 241 236 sd7 50.46 0.0 1.468 2.442 13.951 1.505 -0.636 0.000 0.000 0.000 -0.000 0.000 242 237 dip 50.46 0.0 1.468 2.442 13.951 1.505 -0.636 0.000 0.000 0.000 0.000 0.000 243 238 bend0 51.52 0.5 0.771 2.721 15.891 1.516 -0.853 0.000 0.000 0.000 -0.000 0.000 244 239 sd7 51.94 0.0 1.963 2.776 16.516 1.520 -0.633 0.000 0.000 0.000 -0.000 0.000 245 240 gs 51.94 0.0 1.963 2.776 16.516 1.520 -0.633 0.000 0.000 0.000 -0.000 0.000 246 241 q9 52.30 -1.0 4.277 2.797 13.977 1.524 -0.501 0.000 0.000 0.000 -0.000 0.000 247 242 sd8 52.40 0.0 5.318 2.800 12.549 1.525 -0.479 0.000 0.000 0.000 -0.000 0.000 248 243 sx9 52.56 -1.5 7.228 2.804 10.430 1.527 -0.444 0.000 0.000 0.000 -0.000 0.000 249 244 hcm 52.56 0.0 7.228 2.804 10.430 1.527 -0.444 0.000 0.000 0.000 0.000 0.000 250 245 vcm 52.56 0.0 7.228 2.804 10.430 1.527 -0.444 0.000 0.000 0.000 -0.000 -0.000 251 246 sdb11 52.73 0.0 9.610 2.807 8.382 1.530 -0.406 0.000 0.000 0.000 -0.000 0.000 252 247 bpm 52.73 2.0 9.610 2.807 8.382 1.530 -0.406 0.000 0.000 0.000 -0.000 0.000 253 248 sd92 52.93 0.0 12.890 2.810 6.247 1.535 -0.360 0.000 0.000 0.000 -0.000 0.000 254 249 q10 53.29 1.0 16.184 2.814 4.295 1.546 -0.243 0.000 0.000 0.000 -0.000 0.000 255 250 sd8 53.39 0.0 16.148 2.815 4.101 1.550 -0.202 0.000 0.000 0.000 -0.000 0.000 256 251 sx10 53.55 1.5 16.093 2.817 3.808 1.556 -0.135 0.000 0.000 0.000 -0.000 0.000 257 252 hcm 53.55 0.0 16.093 2.817 3.808 1.556 -0.135 0.000 0.000 0.000 0.000 0.000 258 253 vcm 53.55 0.0 16.093 2.817 3.808 1.556 -0.135 0.000 0.000 0.000 -0.000 -0.000 259 254 ge 53.55 0.0 16.093 2.817 3.808 1.556 -0.135 0.000 0.000 0.000 -0.000 0.000 260 255 sd89 53.89 0.0 15.991 2.820 3.265 1.572 0.007 0.000 0.000 0.000 -0.000 0.000 261 256 bpm 53.89 2.0 15.991 2.820 3.265 1.572 0.007 0.000 0.000 0.000 -0.000 0.000 262 257 sdac1 55.38 0.0 15.720 2.835 2.153 1.666 0.624 0.000 0.000 0.000 -0.000 0.000 263 258 sdac1 56.86 0.0 15.730 2.850 3.090 1.764 1.242 0.000 0.000 0.000 -0.000 0.000 264 259 bpm 56.86 2.0 15.730 2.850 3.090 1.764 1.242 0.000 0.000 0.000 -0.000 0.000 265 260 sd88 57.20 0.0 15.772 2.853 3.594 1.780 1.384 0.000 0.000 0.000 -0.000 0.000 266 261 gs 57.20 0.0 15.772 2.853 3.594 1.780 1.384 0.000 0.000 0.000 -0.000 0.000 267 262 sx10 57.36 1.5 15.783 2.855 3.872 1.787 1.450 0.000 0.000 0.000 -0.000 0.000 268 263 qt 57.36 0.0 15.783 2.855 3.872 1.787 1.450 0.000 0.000 0.000 -0.000 0.000 269 264 hcm 57.36 0.0 15.783 2.855 3.872 1.787 1.450 0.000 0.000 0.000 0.000 0.000 270 265 vcm 57.36 0.0 15.783 2.855 3.872 1.787 1.450 0.000 0.000 0.000 -0.000 -0.000 271 266 sd8 57.46 0.0 15.783 2.856 4.059 1.791 1.491 0.000 0.000 0.000 -0.000 0.000 272 267 q10 57.82 1.0 12.460 2.860 5.926 1.803 1.467 0.000 0.000 0.000 -0.000 0.000 273 268 sd93 58.07 0.0 8.552 2.864 8.481 1.809 1.331 0.000 0.000 0.000 -0.000 0.000 274 269 bpm 58.07 2.0 8.552 2.864 8.481 1.809 1.331 0.000 0.000 0.000 -0.000 0.000 275 270 sdb12 58.20 0.0 6.887 2.866 9.927 1.811 1.263 0.000 0.000 0.000 -0.000 0.000 276 271 sx9 58.36 -1.5 5.030 2.871 11.936 1.813 1.177 0.000 0.000 0.000 -0.000 0.000 277 272 hcm 58.36 0.0 5.030 2.871 11.936 1.813 1.177 0.000 0.000 0.000 0.000 0.000 278 273 vcm 58.36 0.0 5.030 2.871 11.936 1.813 1.177 0.000 0.000 0.000 -0.000 -0.000 279 274 sd8 58.46 0.0 4.026 2.874 13.277 1.815 1.123 0.000 0.000 0.000 -0.000 0.000 280 275 q9 58.82 -1.0 1.800 2.896 15.629 1.818 1.035 0.000 0.000 0.000 -0.000 0.000 281 276 ge 58.82 0.0 1.800 2.896 15.629 1.818 1.035 0.000 0.000 0.000 -0.000 0.000 282 277 sd7 59.24 0.0 0.681 2.958 14.975 1.823 1.052 0.000 0.000 0.000 -0.000 0.000 283 278 dip 59.24 0.0 0.681 2.958 14.975 1.823 1.052 0.000 0.000 0.000 0.000 0.000 284 279 bend0 60.29 0.5 1.654 3.235 13.015 1.835 0.289 0.000 0.000 0.000 -0.000 0.000 285 280 sd7 60.71 0.0 3.552 3.262 12.143 1.840 0.290 0.000 0.000 0.000 -0.000 0.000 286 281 gs 60.71 0.0 3.552 3.262 12.143 1.840 0.290 0.000 0.000 0.000 -0.000 0.000 287 282 q6 61.07 -1.0 6.546 3.275 9.982 1.845 0.309 0.000 0.000 0.000 -0.000 0.000 288 283 sd5 61.17 0.0 7.779 3.277 9.059 1.847 0.320 0.000 0.000 0.000 -0.000 0.000 289 284 sx7 61.33 -1.5 9.985 3.280 7.676 1.850 0.338 0.000 0.000 0.000 -0.000 0.000 290 285 hcm 61.33 0.0 9.985 3.280 7.676 1.850 0.338 0.000 0.000 0.000 0.000 0.000 291 286 vcm 61.33 0.0 9.985 3.280 7.676 1.850 0.338 0.000 0.000 0.000 -0.000 -0.000 292 287 sd41 61.50 0.0 12.678 3.282 6.318 1.854 0.357 0.000 0.000 0.000 -0.000 0.000 293 288 bpm 61.50 2.0 12.678 3.282 6.318 1.854 0.357 0.000 0.000 0.000 -0.000 0.000 294 289 sdb13 61.62 0.0 14.745 3.284 5.456 1.857 0.370 0.000 0.000 0.000 -0.000 0.000 295 290 q7 62.12 1.0 15.672 3.288 4.731 1.874 0.329 0.000 0.000 0.000 -0.000 0.000 296 291 sd3 62.22 0.0 14.196 3.289 5.098 1.877 0.302 0.000 0.000 0.000 -0.000 0.000 297 292 sx8 62.38 1.5 12.025 3.291 5.711 1.882 0.259 0.000 0.000 0.000 -0.000 0.000 298 293 hcm 62.38 0.0 12.025 3.291 5.711 1.882 0.259 0.000 0.000 0.000 0.000 0.000 299 294 vcm 62.38 0.0 12.025 3.291 5.711 1.882 0.259 0.000 0.000 0.000 -0.000 -0.000 300 295 sd2 62.67 0.0 8.552 3.296 6.939 1.889 0.181 0.000 0.000 0.000 -0.000 0.000 301 296 q8 63.03 -1.0 6.405 3.304 7.147 1.897 0.100 0.000 0.000 0.000 -0.000 0.000 302 297 ge 63.03 0.0 6.405 3.304 7.147 1.897 0.100 0.000 0.000 0.000 -0.000 0.000 303 298 sd87 63.35 0.0 5.864 3.312 6.109 1.905 0.039 0.000 0.000 0.000 -0.000 0.000 304 299 bpm 63.35 2.0 5.864 3.312 6.109 1.905 0.039 0.000 0.000 0.000 -0.000 0.000 305 300 sd13a 66.49 0.0 3.603 3.432 1.892 2.093 -0.561 0.000 0.000 0.000 -0.000 0.000 306 301 sd13a 69.64 0.0 6.854 3.541 8.477 2.236 -1.161 0.000 0.000 0.000 -0.000 0.000 307 302 bpm 69.64 2.0 6.854 3.541 8.477 2.236 -1.161 0.000 0.000 0.000 -0.000 0.000 308 303 sd85 69.96 0.0 7.495 3.548 9.755 2.242 -1.222 0.000 0.000 0.000 -0.000 0.000 309 304 gs 69.96 0.0 7.495 3.548 9.755 2.242 -1.222 0.000 0.000 0.000 -0.000 0.000 310 305 q8 70.32 -1.0 10.006 3.555 9.292 2.247 -1.419 0.000 0.000 0.000 -0.000 0.000 311 306 sd2 70.61 0.0 14.059 3.559 7.497 2.253 -1.684 0.000 0.000 0.000 -0.000 0.000 312 307 sx6 70.77 1.5 16.625 3.560 6.585 2.257 -1.832 0.000 0.000 0.000 -0.000 0.000 313 308 hcm 70.77 0.0 16.625 3.560 6.585 2.257 -1.832 0.000 0.000 0.000 0.000 0.000 314 309 vcm 70.77 0.0 16.625 3.560 6.585 2.257 -1.832 0.000 0.000 0.000 -0.000 -0.000 315 310 sd3 70.87 0.0 18.393 3.561 6.031 2.259 -1.926 0.000 0.000 0.000 -0.000 0.000 316 311 q7 71.36 1.0 17.467 3.565 6.455 2.273 -1.874 0.000 0.000 0.000 -0.000 0.000 317 312 sdb14 71.53 0.0 14.161 3.567 7.733 2.277 -1.686 0.000 0.000 0.000 -0.000 0.000 318 313 bpm 71.53 2.0 14.161 3.567 7.733 2.277 -1.686 0.000 0.000 0.000 -0.000 0.000 319 314 sd43 71.66 0.0 11.911 3.569 8.772 2.279 -1.545 0.000 0.000 0.000 -0.000 0.000 320 315 sx5 71.82 -1.5 9.303 3.571 10.219 2.282 -1.364 0.000 0.000 0.000 -0.000 0.000 321 316 hcm 71.82 0.0 9.303 3.571 10.219 2.282 -1.364 0.000 0.000 0.000 0.000 0.000 322 317 vcm 71.82 0.0 9.303 3.571 10.219 2.282 -1.364 0.000 0.000 0.000 -0.000 -0.000 323 318 sd5 71.92 0.0 7.831 3.573 11.193 2.283 -1.251 0.000 0.000 0.000 -0.000 0.000 324 319 q6 72.28 -1.0 4.247 3.583 13.366 2.288 -0.916 0.000 0.000 0.000 -0.000 0.000 325 320 ge 72.28 0.0 4.247 3.583 13.366 2.288 -0.916 0.000 0.000 0.000 -0.000 0.000 326 321 sd7 72.70 0.0 1.950 3.606 14.044 2.293 -0.602 0.000 0.000 0.000 -0.000 0.000 327 322 dip 72.70 0.0 1.950 3.606 14.044 2.293 -0.602 0.000 0.000 0.000 0.000 0.000 328 323 bend0 73.75 0.5 0.605 3.899 15.423 2.304 -0.625 0.000 0.000 0.000 -0.000 0.000 329 324 sd7 74.17 0.0 1.825 3.965 15.817 2.309 -0.327 0.000 0.000 0.000 -0.000 0.000 330 325 gs 74.17 0.0 1.825 3.965 15.817 2.309 -0.327 0.000 0.000 0.000 -0.000 0.000 331 326 q4 74.53 -1.0 4.176 3.986 13.692 2.312 -0.091 0.000 0.000 0.000 -0.000 0.000 332 327 sd8 74.63 0.0 5.199 3.989 12.508 2.314 -0.029 0.000 0.000 0.000 -0.000 0.000 333 328 sx3 74.79 -1.5 7.079 3.994 10.727 2.316 0.069 0.000 0.000 0.000 -0.000 0.000 334 329 hcm 74.79 0.0 7.079 3.994 10.727 2.316 0.069 0.000 0.000 0.000 0.000 0.000 335 330 vcm 74.79 0.0 7.079 3.994 10.727 2.316 0.069 0.000 0.000 0.000 -0.000 -0.000 336 331 sdb15 74.96 0.0 9.432 3.997 8.970 2.319 0.175 0.000 0.000 0.000 -0.000 0.000 337 332 bpm 74.96 2.0 9.432 3.997 8.970 2.319 0.175 0.000 0.000 0.000 -0.000 0.000 338 333 sd9a 75.16 0.0 12.673 4.000 7.096 2.323 0.301 0.000 0.000 0.000 -0.000 0.000 339 334 q5 75.52 1.0 16.066 4.004 5.581 2.332 0.483 0.000 0.000 0.000 -0.000 0.000 340 335 sd10 75.89 0.0 16.214 4.008 5.457 2.343 0.621 0.000 0.000 0.000 -0.000 0.000 341 336 sx4 76.05 1.5 16.271 4.009 5.423 2.347 0.680 0.000 0.000 0.000 -0.000 0.000 342 337 qt 76.05 0.0 16.271 4.009 5.423 2.347 0.680 0.000 0.000 0.000 -0.000 0.000 343 338 hcm 76.05 0.0 16.271 4.009 5.423 2.347 0.680 0.000 0.000 0.000 0.000 0.000 344 339 vcm 76.05 0.0 16.271 4.009 5.423 2.347 0.680 0.000 0.000 0.000 -0.000 -0.000 345 340 sdb4 76.25 0.0 16.332 4.011 5.400 2.353 0.754 0.000 0.000 0.000 -0.000 0.000 346 341 bpm 76.25 2.0 16.332 4.011 5.400 2.353 0.754 0.000 0.000 0.000 -0.000 0.000 347 342 sd10a 76.42 0.0 16.388 4.013 5.391 2.358 0.818 0.000 0.000 0.000 -0.000 0.000 348 343 q5 76.78 1.0 13.151 4.016 6.686 2.368 0.858 0.000 0.000 0.000 -0.000 0.000 349 344 sd93 77.04 0.0 9.235 4.020 8.778 2.373 0.820 0.000 0.000 0.000 -0.000 0.000 350 345 bpm 77.04 2.0 9.235 4.020 8.778 2.373 0.820 0.000 0.000 0.000 -0.000 0.000 351 346 sdb17 77.16 0.0 7.549 4.022 9.930 2.376 0.802 0.000 0.000 0.000 -0.000 0.000 352 347 sx3 77.32 -1.5 5.647 4.026 11.508 2.378 0.778 0.000 0.000 0.000 -0.000 0.000 353 348 hcm 77.32 0.0 5.647 4.026 11.508 2.378 0.778 0.000 0.000 0.000 0.000 0.000 354 349 vcm 77.32 0.0 5.647 4.026 11.508 2.378 0.778 0.000 0.000 0.000 -0.000 -0.000 355 350 sd8 77.42 0.0 4.605 4.029 12.551 2.379 0.763 0.000 0.000 0.000 -0.000 0.000 356 351 q4 77.78 -1.0 2.196 4.048 14.335 2.383 0.771 0.000 0.000 0.000 -0.000 0.000 357 352 ge 77.78 0.0 2.196 4.048 14.335 2.383 0.771 0.000 0.000 0.000 -0.000 0.000 358 353 sd7 78.20 0.0 0.863 4.097 13.803 2.388 0.852 0.000 0.000 0.000 -0.000 0.000 359 354 dip 78.20 0.0 0.863 4.097 13.803 2.388 0.852 0.000 0.000 0.000 0.000 0.000 360 355 bend0 79.25 0.5 1.346 4.386 12.175 2.401 0.250 0.000 0.000 0.000 -0.000 0.000 361 356 sd6 79.96 0.0 4.767 4.431 10.962 2.411 0.361 0.000 0.000 0.000 -0.000 0.000 362 357 gs 79.96 0.0 4.767 4.431 10.962 2.411 0.361 0.000 0.000 0.000 -0.000 0.000 363 358 sx2 80.12 -1.5 5.886 4.436 10.704 2.413 0.386 0.000 0.000 0.000 -0.000 0.000 364 359 hcm 80.12 0.0 5.886 4.436 10.704 2.413 0.386 0.000 0.000 0.000 0.000 0.000 365 360 vcm 80.12 0.0 5.886 4.436 10.704 2.413 0.386 0.000 0.000 0.000 -0.000 -0.000 366 361 sd5 80.22 0.0 6.651 4.438 10.544 2.415 0.401 0.000 0.000 0.000 -0.000 0.000 367 362 q3 80.58 -1.0 10.571 4.445 9.159 2.421 0.475 0.000 0.000 0.000 -0.000 0.000 368 363 sd141 81.02 0.0 17.761 4.450 6.815 2.429 0.587 0.000 0.000 0.000 -0.000 0.000 369 364 bpm 81.02 2.0 17.761 4.450 6.815 2.429 0.587 0.000 0.000 0.000 -0.000 0.000 370 365 sdb18 81.14 0.0 20.091 4.451 6.234 2.432 0.618 0.000 0.000 0.000 -0.000 0.000 371 366 q2 81.63 1.0 21.762 4.455 6.323 2.446 0.620 0.000 0.000 0.000 -0.000 0.000 372 367 sd3 81.73 0.0 20.338 4.455 6.857 2.448 0.594 0.000 0.000 0.000 -0.000 0.000 373 368 sx1 81.89 1.5 18.196 4.457 7.749 2.452 0.554 0.000 0.000 0.000 -0.000 0.000 374 369 qt 81.89 0.0 18.196 4.457 7.749 2.452 0.554 0.000 0.000 0.000 -0.000 0.000 375 370 hcm 81.89 0.0 18.196 4.457 7.749 2.452 0.554 0.000 0.000 0.000 0.000 0.000 376 371 vcm 81.89 0.0 18.196 4.457 7.749 2.452 0.554 0.000 0.000 0.000 -0.000 -0.000 377 372 sd2 82.18 0.0 14.615 4.460 9.527 2.457 0.481 0.000 0.000 0.000 -0.000 0.000 378 373 q1 82.54 -1.0 12.472 4.464 10.534 2.463 0.422 0.000 0.000 0.000 -0.000 0.000 379 374 ge 82.54 0.0 12.472 4.464 10.534 2.463 0.422 0.000 0.000 0.000 -0.000 0.000 380 375 sdc12 82.86 0.0 12.227 4.468 10.179 2.467 0.397 0.000 0.000 0.000 -0.000 0.000 381 376 bpm 82.86 2.0 12.227 4.468 10.179 2.467 0.397 0.000 0.000 0.000 -0.000 0.000 382 377 sd1e 88.52 0.0 11.050 4.549 8.178 2.574 -0.050 0.000 0.000 0.000 -0.000 0.000 383 378 sd1e 94.18 0.0 15.814 4.619 14.263 2.662 -0.496 0.000 0.000 0.000 -0.000 0.000 384 379 bpm 94.18 2.0 15.814 4.619 14.263 2.662 -0.496 0.000 0.000 0.000 -0.000 0.000 385 380 sdb1 94.50 0.0 16.262 4.623 14.851 2.665 -0.521 0.000 0.000 0.000 -0.000 0.000 386 381 gs 94.50 0.0 16.262 4.623 14.851 2.665 -0.521 0.000 0.000 0.000 -0.000 0.000 387 382 q1 94.86 -1.0 19.209 4.626 13.506 2.669 -0.587 0.000 0.000 0.000 -0.000 0.000 388 383 sd2 95.15 0.0 24.030 4.628 11.033 2.673 -0.672 0.000 0.000 0.000 -0.000 0.000 389 384 sx1 95.31 1.5 26.935 4.629 9.777 2.675 -0.718 0.000 0.000 0.000 -0.000 0.000 390 385 qt 95.31 0.0 26.935 4.629 9.777 2.675 -0.718 0.000 0.000 0.000 -0.000 0.000 391 386 hcm 95.31 0.0 26.935 4.629 9.777 2.675 -0.718 0.000 0.000 0.000 0.000 0.000 392 387 vcm 95.31 0.0 26.935 4.629 9.777 2.675 -0.718 0.000 0.000 0.000 -0.000 -0.000 393 388 sd3 95.41 0.0 28.879 4.630 9.017 2.677 -0.748 0.000 0.000 0.000 -0.000 0.000 394 389 q2 95.91 1.0 26.904 4.632 8.862 2.687 -0.740 0.000 0.000 0.000 -0.000 0.000 395 390 sdb7 96.08 0.0 22.694 4.633 10.001 2.689 -0.687 0.000 0.000 0.000 -0.000 0.000 396 391 bpm 96.08 2.0 22.694 4.633 10.001 2.689 -0.687 0.000 0.000 0.000 -0.000 0.000 397 392 sd14a 96.46 0.0 14.358 4.637 12.911 2.695 -0.563 0.000 0.000 0.000 -0.000 0.000 398 393 q3 96.82 -1.0 9.167 4.642 14.771 2.699 -0.470 0.000 0.000 0.000 -0.000 0.000 399 394 sd5 96.92 0.0 8.152 4.644 14.969 2.700 -0.450 0.000 0.000 0.000 -0.000 0.000 400 395 sx2 97.08 -1.5 6.652 4.647 15.299 2.702 -0.418 0.000 0.000 0.000 -0.000 0.000 401 396 hcm 97.08 0.0 6.652 4.647 15.299 2.702 -0.418 0.000 0.000 0.000 0.000 0.000 402 397 vcm 97.08 0.0 6.652 4.647 15.299 2.702 -0.418 0.000 0.000 0.000 -0.000 -0.000 403 398 ge 97.08 0.0 6.652 4.647 15.299 2.702 -0.418 0.000 0.000 0.000 -0.000 0.000 404 399 sd6 97.79 0.0 1.909 4.679 16.888 2.709 -0.275 0.000 0.000 0.000 -0.000 0.000 405 400 dip 97.79 0.0 1.909 4.679 16.888 2.709 -0.275 0.000 0.000 0.000 0.000 0.000 406 401 bend0 98.85 0.5 0.670 4.991 18.893 2.718 -0.868 0.000 0.000 0.000 -0.000 0.000 407 402 sd7 99.27 0.0 2.102 5.048 19.490 2.722 -0.799 0.000 0.000 0.000 -0.000 0.000 408 403 gs 99.27 0.0 2.102 5.048 19.490 2.722 -0.799 0.000 0.000 0.000 -0.000 0.000 409 404 q4 99.63 -1.0 4.787 5.067 16.953 2.725 -0.804 0.000 0.000 0.000 -0.000 0.000 410 405 sd8 99.73 0.0 5.949 5.070 15.511 2.726 -0.823 0.000 0.000 0.000 -0.000 0.000 411 406 sx3 99.89 -1.5 8.078 5.074 13.344 2.727 -0.854 0.000 0.000 0.000 -0.000 0.000 412 407 hcm 99.89 0.0 8.078 5.074 13.344 2.727 -0.854 0.000 0.000 0.000 0.000 0.000 413 408 vcm 99.89 0.0 8.078 5.074 13.344 2.727 -0.854 0.000 0.000 0.000 -0.000 -0.000 414 409 sdb3 100.06 0.0 10.732 5.076 11.209 2.730 -0.887 0.000 0.000 0.000 -0.000 0.000 415 410 bpm 100.06 2.0 10.732 5.076 11.209 2.730 -0.887 0.000 0.000 0.000 -0.000 0.000 416 411 sd9a 100.26 0.0 14.379 5.079 8.922 2.733 -0.926 0.000 0.000 0.000 -0.000 0.000 417 412 q5 100.62 1.0 18.158 5.082 7.105 2.740 -0.893 0.000 0.000 0.000 -0.000 0.000 418 413 sd12 100.99 0.0 18.253 5.086 7.023 2.749 -0.754 0.000 0.000 0.000 -0.000 0.000 419 414 sx4 101.15 1.5 18.315 5.087 6.993 2.752 -0.694 0.000 0.000 0.000 -0.000 0.000 420 415 qt 101.15 0.0 18.315 5.087 6.993 2.752 -0.694 0.000 0.000 0.000 -0.000 0.000 421 416 hcm 101.15 0.0 18.315 5.087 6.993 2.752 -0.694 0.000 0.000 0.000 0.000 0.000 422 417 vcm 101.15 0.0 18.315 5.087 6.993 2.752 -0.694 0.000 0.000 0.000 -0.000 -0.000 423 418 sdb4 101.35 0.0 18.414 5.089 6.960 2.757 -0.621 0.000 0.000 0.000 -0.000 0.000 424 419 bpm 101.35 2.0 18.414 5.089 6.960 2.757 -0.621 0.000 0.000 0.000 -0.000 0.000 425 420 sd10a 101.52 0.0 18.504 5.090 6.940 2.761 -0.557 0.000 0.000 0.000 -0.000 0.000 426 421 q5 101.88 1.0 14.893 5.094 8.565 2.768 -0.367 0.000 0.000 0.000 -0.000 0.000 427 422 sd91 102.13 0.0 10.487 5.097 11.202 2.773 -0.201 0.000 0.000 0.000 -0.000 0.000 428 423 bpm 102.13 2.0 10.487 5.097 11.202 2.773 -0.201 0.000 0.000 0.000 -0.000 0.000 429 424 sdb5 102.26 0.0 8.586 5.099 12.651 2.774 -0.119 0.000 0.000 0.000 -0.000 0.000 430 425 sx3 102.42 -1.5 6.434 5.102 14.638 2.776 -0.013 0.000 0.000 0.000 -0.000 0.000 431 426 hcm 102.42 0.0 6.434 5.102 14.638 2.776 -0.013 0.000 0.000 0.000 0.000 0.000 432 427 vcm 102.42 0.0 6.434 5.102 14.638 2.776 -0.013 0.000 0.000 0.000 -0.000 -0.000 433 428 sd8 102.52 0.0 5.251 5.105 15.955 2.777 0.053 0.000 0.000 0.000 -0.000 0.000 434 429 q4 102.88 -1.0 2.507 5.121 18.183 2.780 0.301 0.000 0.000 0.000 -0.000 0.000 435 430 ge 102.88 0.0 2.507 5.121 18.183 2.780 0.301 0.000 0.000 0.000 -0.000 0.000 436 431 sd7 103.30 0.0 0.958 5.165 17.452 2.784 0.612 0.000 0.000 0.000 -0.000 0.000 437 432 dip 103.30 0.0 0.958 5.165 17.452 2.784 0.612 0.000 0.000 0.000 0.000 0.000 438 433 bend0 104.35 0.5 1.290 5.470 15.204 2.794 0.580 0.000 0.000 0.000 -0.000 0.000 439 434 sd7 104.77 0.0 3.104 5.503 14.188 2.799 0.874 0.000 0.000 0.000 -0.000 0.000 440 435 gs 104.77 0.0 3.104 5.503 14.188 2.799 0.874 0.000 0.000 0.000 -0.000 0.000 441 436 q6 105.13 -1.0 6.044 5.517 11.658 2.803 1.190 0.000 0.000 0.000 -0.000 0.000 442 437 sd5 105.23 0.0 7.255 5.519 10.579 2.805 1.297 0.000 0.000 0.000 -0.000 0.000 443 438 sx5 105.39 -1.5 9.446 5.522 8.948 2.807 1.469 0.000 0.000 0.000 -0.000 0.000 444 439 hcm 105.39 0.0 9.446 5.522 8.948 2.807 1.469 0.000 0.000 0.000 0.000 0.000 445 440 vcm 105.39 0.0 9.446 5.522 8.948 2.807 1.469 0.000 0.000 0.000 -0.000 -0.000 446 441 sd41 105.56 0.0 12.150 5.525 7.336 2.811 1.654 0.000 0.000 0.000 -0.000 0.000 447 442 bpm 105.56 2.0 12.150 5.525 7.336 2.811 1.654 0.000 0.000 0.000 -0.000 0.000 448 443 sdb6 105.68 0.0 14.237 5.526 6.313 2.814 1.784 0.000 0.000 0.000 -0.000 0.000 449 444 q7 106.18 1.0 15.517 5.531 5.358 2.828 1.836 0.000 0.000 0.000 -0.000 0.000 450 445 sd3 106.28 0.0 14.136 5.532 5.745 2.831 1.746 0.000 0.000 0.000 -0.000 0.000 451 446 sx6 106.44 1.5 12.079 5.534 6.398 2.836 1.605 0.000 0.000 0.000 -0.000 0.000 452 447 hcm 106.44 0.0 12.079 5.534 6.398 2.836 1.605 0.000 0.000 0.000 0.000 0.000 453 448 vcm 106.44 0.0 12.079 5.534 6.398 2.836 1.605 0.000 0.000 0.000 -0.000 -0.000 454 449 sd2 106.73 0.0 8.740 5.539 7.714 2.842 1.348 0.000 0.000 0.000 -0.000 0.000 455 450 q8 107.09 -1.0 6.745 5.546 7.872 2.849 1.155 0.000 0.000 0.000 -0.000 0.000 456 451 ge 107.09 0.0 6.745 5.546 7.872 2.849 1.155 0.000 0.000 0.000 -0.000 0.000 457 452 sdc12 107.41 0.0 6.363 5.554 6.662 2.856 1.092 0.000 0.000 0.000 -0.000 0.000 458 453 bpm 107.41 2.0 6.363 5.554 6.662 2.856 1.092 0.000 0.000 0.000 -0.000 0.000 459 454 sd13k 107.80 0.0 5.955 5.564 5.360 2.867 1.014 0.000 0.000 0.000 -0.000 0.000 460 455 ssdm 107.80 0.0 5.955 5.564 5.360 2.867 1.014 0.000 0.000 0.000 -0.000 0.000 461 456 sd13i 108.00 0.0 5.772 5.570 4.769 2.873 0.974 0.000 0.000 0.000 -0.000 0.000 462 457 sd13i 108.20 0.0 5.604 5.575 4.229 2.880 0.934 0.000 0.000 0.000 -0.000 0.000 463 458 sd13i 108.40 0.0 5.453 5.581 3.739 2.888 0.894 0.000 0.000 0.000 -0.000 0.000 464 459 sd13i 108.60 0.0 5.319 5.587 3.299 2.897 0.855 0.000 0.000 0.000 -0.000 0.000 465 460 sd13i 108.80 0.0 5.202 5.593 2.909 2.907 0.815 0.000 0.000 0.000 -0.000 0.000 466 461 sd13i 109.00 0.0 5.100 5.599 2.570 2.919 0.775 0.000 0.000 0.000 -0.000 0.000 467 462 sd13i 109.20 0.0 5.016 5.606 2.281 2.932 0.735 0.000 0.000 0.000 -0.000 0.000 468 463 sd13i 109.40 0.0 4.948 5.612 2.043 2.947 0.696 0.000 0.000 0.000 -0.000 0.000 469 464 sd13i 109.60 0.0 4.896 5.618 1.855 2.963 0.656 0.000 0.000 0.000 -0.000 0.000 470 465 sd13i 109.80 0.0 4.861 5.625 1.717 2.981 0.616 0.000 0.000 0.000 -0.000 0.000 471 466 sd13i 110.00 0.0 4.842 5.632 1.629 3.000 0.576 0.000 0.000 0.000 -0.000 0.000 472 467 sd13i 110.20 0.0 4.840 5.638 1.592 3.020 0.536 0.000 0.000 0.000 -0.000 0.000 473 468 sd13i 110.40 0.0 4.855 5.645 1.605 3.040 0.497 0.000 0.000 0.000 -0.000 0.000 474 469 sd13j 110.55 0.0 4.877 5.650 1.647 3.055 0.467 0.000 0.000 0.000 -0.000 0.000 475 470 sd13j 110.70 0.0 4.908 5.654 1.718 3.069 0.437 0.000 0.000 0.000 -0.000 0.000 476 471 sd13i 110.90 0.0 4.964 5.661 1.857 3.087 0.397 0.000 0.000 0.000 -0.000 0.000 477 472 sd13i 111.10 0.0 5.036 5.667 2.046 3.103 0.358 0.000 0.000 0.000 -0.000 0.000 478 473 sd13i 111.30 0.0 5.125 5.674 2.286 3.118 0.318 0.000 0.000 0.000 -0.000 0.000 479 474 sd13i 111.50 0.0 5.230 5.680 2.575 3.131 0.278 0.000 0.000 0.000 -0.000 0.000 480 475 sd13i 111.70 0.0 5.352 5.686 2.915 3.143 0.238 0.000 0.000 0.000 -0.000 0.000 481 476 sd13i 111.90 0.0 5.491 5.692 3.306 3.153 0.198 0.000 0.000 0.000 -0.000 0.000 482 477 sd13i 112.10 0.0 5.646 5.697 3.746 3.162 0.159 0.000 0.000 0.000 -0.000 0.000 483 478 sd13i 112.30 0.0 5.818 5.703 4.237 3.170 0.119 0.000 0.000 0.000 -0.000 0.000 484 479 sd13i 112.50 0.0 6.006 5.708 4.778 3.177 0.079 0.000 0.000 0.000 -0.000 0.000 485 480 sd13i 112.70 0.0 6.210 5.713 5.370 3.183 0.039 0.000 0.000 0.000 -0.000 0.000 486 481 sd13i 112.90 0.0 6.431 5.718 6.012 3.189 -0.000 0.000 0.000 0.000 -0.000 0.000 487 482 sd13i 113.10 0.0 6.669 5.723 6.704 3.194 -0.040 0.000 0.000 0.000 -0.000 0.000 488 483 sd13i 113.30 0.0 6.923 5.728 7.446 3.199 -0.080 0.000 0.000 0.000 -0.000 0.000 489 484 esdm 113.30 0.0 6.923 5.728 7.446 3.199 -0.080 0.000 0.000 0.000 -0.000 0.000 490 485 eesdm 113.30 0.0 6.923 5.728 7.446 3.199 -0.080 0.000 0.000 0.000 -0.000 0.000 491 486 sd13k 113.69 0.0 7.469 5.737 9.045 3.206 -0.158 0.000 0.000 0.000 -0.000 0.000 492 487 bpm 113.69 2.0 7.469 5.737 9.045 3.206 -0.158 0.000 0.000 0.000 -0.000 0.000 493 488 sd87 114.02 0.0 7.963 5.743 10.499 3.211 -0.222 0.000 0.000 0.000 -0.000 0.000 494 489 gs 114.02 0.0 7.963 5.743 10.499 3.211 -0.222 0.000 0.000 0.000 -0.000 0.000 495 490 q8 114.38 -1.0 10.366 5.750 10.085 3.217 -0.318 0.000 0.000 0.000 -0.000 0.000 496 491 sd2 114.67 0.0 14.354 5.754 8.198 3.222 -0.419 0.000 0.000 0.000 -0.000 0.000 497 492 sx8 114.83 1.5 16.847 5.755 7.243 3.225 -0.475 0.000 0.000 0.000 -0.000 0.000 498 493 qt 114.83 0.0 16.847 5.755 7.243 3.225 -0.475 0.000 0.000 0.000 -0.000 0.000 499 494 hcm 114.83 0.0 16.847 5.755 7.243 3.225 -0.475 0.000 0.000 0.000 0.000 0.000 500 495 vcm 114.83 0.0 16.847 5.755 7.243 3.225 -0.475 0.000 0.000 0.000 -0.000 -0.000 501 496 sd3 114.93 0.0 18.548 5.756 6.667 3.227 -0.510 0.000 0.000 0.000 -0.000 0.000 502 497 q7 115.42 1.0 17.239 5.760 7.313 3.240 -0.543 0.000 0.000 0.000 -0.000 0.000 503 498 sdb7 115.59 0.0 13.849 5.762 8.815 3.243 -0.506 0.000 0.000 0.000 -0.000 0.000 504 499 bpm 115.59 2.0 13.849 5.762 8.815 3.243 -0.506 0.000 0.000 0.000 -0.000 0.000 505 500 sd42 115.72 0.0 11.555 5.764 10.037 3.245 -0.479 0.000 0.000 0.000 -0.000 0.000 506 501 sx7 115.88 -1.5 8.918 5.766 11.729 3.248 -0.443 0.000 0.000 0.000 -0.000 0.000 507 502 hcm 115.88 0.0 8.918 5.766 11.729 3.248 -0.443 0.000 0.000 0.000 0.000 0.000 508 503 vcm 115.88 0.0 8.918 5.766 11.729 3.248 -0.443 0.000 0.000 0.000 -0.000 -0.000 509 504 sd5 115.98 0.0 7.443 5.768 12.860 3.249 -0.421 0.000 0.000 0.000 -0.000 0.000 510 505 q6 116.34 -1.0 3.853 5.779 15.405 3.253 -0.367 0.000 0.000 0.000 -0.000 0.000 511 506 ge 116.34 0.0 3.853 5.779 15.405 3.253 -0.367 0.000 0.000 0.000 -0.000 0.000 512 507 sd7 116.76 0.0 1.597 5.806 16.233 3.257 -0.333 0.000 0.000 0.000 -0.000 0.000 513 508 dip 116.76 0.0 1.597 5.806 16.233 3.257 -0.333 0.000 0.000 0.000 0.000 0.000 514 509 bend0 117.81 0.5 0.855 6.129 17.918 3.267 -1.053 0.000 0.000 0.000 -0.000 0.000 515 510 sd7 118.23 0.0 2.517 6.175 18.396 3.271 -1.034 0.000 0.000 0.000 -0.000 0.000 516 511 gs 118.23 0.0 2.517 6.175 18.396 3.271 -1.034 0.000 0.000 0.000 -0.000 0.000 517 512 q9 118.59 -1.0 5.651 6.191 15.397 3.274 -1.120 0.000 0.000 0.000 -0.000 0.000 518 513 sd8 118.69 0.0 7.052 6.194 13.772 3.275 -1.173 0.000 0.000 0.000 -0.000 0.000 519 514 sx9 118.85 -1.5 9.613 6.197 11.377 3.277 -1.258 0.000 0.000 0.000 -0.000 0.000 520 515 hcm 118.85 0.0 9.613 6.197 11.377 3.277 -1.258 0.000 0.000 0.000 0.000 0.000 521 516 vcm 118.85 0.0 9.613 6.197 11.377 3.277 -1.258 0.000 0.000 0.000 -0.000 -0.000 522 517 sdb8 119.02 0.0 12.802 6.199 9.075 3.280 -1.349 0.000 0.000 0.000 -0.000 0.000 523 518 bpm 119.02 2.0 12.802 6.199 9.075 3.280 -1.349 0.000 0.000 0.000 -0.000 0.000 524 519 sd9a 119.22 0.0 17.186 6.201 6.687 3.284 -1.456 0.000 0.000 0.000 -0.000 0.000 525 520 q10 119.58 1.0 21.594 6.204 4.461 3.295 -1.476 0.000 0.000 0.000 -0.000 0.000 526 521 sd8 119.68 0.0 21.548 6.205 4.215 3.298 -1.434 0.000 0.000 0.000 -0.000 0.000 527 522 sx10 119.84 1.5 21.494 6.206 3.843 3.305 -1.368 0.000 0.000 0.000 -0.000 0.000 528 523 qt 119.84 0.0 21.494 6.206 3.843 3.305 -1.368 0.000 0.000 0.000 -0.000 0.000 529 524 hcm 119.84 0.0 21.494 6.206 3.843 3.305 -1.368 0.000 0.000 0.000 0.000 0.000 530 525 vcm 119.84 0.0 21.494 6.206 3.843 3.305 -1.368 0.000 0.000 0.000 -0.000 -0.000 531 526 ge 119.84 0.0 21.494 6.206 3.843 3.305 -1.368 0.000 0.000 0.000 -0.000 0.000 532 527 sdc44 120.18 0.0 21.428 6.209 3.144 3.320 -1.226 0.000 0.000 0.000 -0.000 0.000 533 528 bpm 120.18 2.0 21.428 6.209 3.144 3.320 -1.226 0.000 0.000 0.000 -0.000 0.000 534 529 sdac4 120.77 0.0 21.339 6.213 2.263 3.356 -0.984 0.000 0.000 0.000 -0.000 0.000 535 530 ssdac 120.77 0.0 21.339 6.213 2.263 3.356 -0.984 0.000 0.000 0.000 -0.000 0.000 536 531 sdac2 120.97 0.0 21.316 6.215 2.055 3.370 -0.901 0.000 0.000 0.000 -0.000 0.000 537 532 sdac2 121.17 0.0 21.296 6.216 1.893 3.387 -0.818 0.000 0.000 0.000 -0.000 0.000 538 533 sdac2 121.37 0.0 21.281 6.218 1.779 3.404 -0.735 0.000 0.000 0.000 -0.000 0.000 539 534 sdac2 121.57 0.0 21.269 6.219 1.712 3.422 -0.652 0.000 0.000 0.000 -0.000 0.000 540 535 sdac2 121.77 0.0 21.261 6.221 1.692 3.441 -0.569 0.000 0.000 0.000 -0.000 0.000 541 536 sdac2 121.97 0.0 21.257 6.222 1.720 3.460 -0.486 0.000 0.000 0.000 -0.000 0.000 542 537 sdac2 122.17 0.0 21.256 6.224 1.795 3.478 -0.403 0.000 0.000 0.000 -0.000 0.000 543 538 sdac2 122.37 0.0 21.259 6.225 1.917 3.495 -0.320 0.000 0.000 0.000 -0.000 0.000 544 539 sdac2 122.57 0.0 21.266 6.227 2.087 3.511 -0.237 0.000 0.000 0.000 -0.000 0.000 545 540 esdac 122.57 0.0 21.266 6.227 2.087 3.511 -0.237 0.000 0.000 0.000 -0.000 0.000 546 541 sdac4 123.15 0.0 21.309 6.231 2.852 3.549 0.006 0.000 0.000 0.000 -0.000 0.000 547 542 bpm 123.15 2.0 21.309 6.231 2.852 3.549 0.006 0.000 0.000 0.000 -0.000 0.000 548 543 sdc45 123.49 0.0 21.348 6.234 3.486 3.567 0.147 0.000 0.000 0.000 -0.000 0.000 549 544 gs 123.49 0.0 21.348 6.234 3.486 3.567 0.147 0.000 0.000 0.000 -0.000 0.000 550 545 sx10 123.65 1.5 21.368 6.235 3.831 3.574 0.214 0.000 0.000 0.000 -0.000 0.000 551 546 hcm 123.65 0.0 21.368 6.235 3.831 3.574 0.214 0.000 0.000 0.000 0.000 0.000 552 547 vcm 123.65 0.0 21.368 6.235 3.831 3.574 0.214 0.000 0.000 0.000 -0.000 -0.000 553 548 sd8 123.75 0.0 21.380 6.235 4.062 3.578 0.255 0.000 0.000 0.000 -0.000 0.000 554 549 q10 124.11 1.0 16.910 6.238 6.133 3.590 0.370 0.000 0.000 0.000 -0.000 0.000 555 550 sd91 124.37 0.0 11.623 6.241 8.911 3.595 0.424 0.000 0.000 0.000 -0.000 0.000 556 551 bpm 124.37 2.0 11.623 6.241 8.911 3.595 0.424 0.000 0.000 0.000 -0.000 0.000 557 552 sd42 124.49 0.0 9.364 6.243 10.491 3.597 0.451 0.000 0.000 0.000 -0.000 0.000 558 553 sx9 124.65 -1.5 6.836 6.246 12.702 3.599 0.485 0.000 0.000 0.000 -0.000 0.000 559 554 hcm 124.65 0.0 6.836 6.246 12.702 3.599 0.485 0.000 0.000 0.000 0.000 0.000 560 555 vcm 124.65 0.0 6.836 6.246 12.702 3.599 0.485 0.000 0.000 0.000 -0.000 -0.000 561 556 sd8 124.75 0.0 5.465 6.249 14.188 3.600 0.506 0.000 0.000 0.000 -0.000 0.000 562 557 q9 125.11 -1.0 2.397 6.265 16.909 3.604 0.636 0.000 0.000 0.000 -0.000 0.000 563 558 ge 125.11 0.0 2.397 6.265 16.909 3.604 0.636 0.000 0.000 0.000 -0.000 0.000 564 559 sd7 125.53 0.0 0.788 6.315 16.426 3.608 0.854 0.000 0.000 0.000 -0.000 0.000 565 560 dip 125.53 0.0 0.788 6.315 16.426 3.608 0.854 0.000 0.000 0.000 0.000 0.000 566 561 bend0 126.58 0.5 1.721 6.637 14.796 3.619 0.593 0.000 0.000 0.000 -0.000 0.000 567 562 sd7 127.00 0.0 4.077 6.662 14.011 3.623 0.795 0.000 0.000 0.000 -0.000 0.000 568 563 gs 127.00 0.0 4.077 6.662 14.011 3.623 0.795 0.000 0.000 0.000 -0.000 0.000 569 564 q6 127.36 -1.0 7.802 6.673 11.676 3.628 1.024 0.000 0.000 0.000 -0.000 0.000 570 565 sd5 127.46 0.0 9.331 6.674 10.643 3.629 1.105 0.000 0.000 0.000 -0.000 0.000 571 566 sx7 127.62 -1.5 12.091 6.677 9.075 3.632 1.234 0.000 0.000 0.000 -0.000 0.000 572 567 hcm 127.62 0.0 12.091 6.677 9.075 3.632 1.234 0.000 0.000 0.000 0.000 0.000 573 568 vcm 127.62 0.0 12.091 6.677 9.075 3.632 1.234 0.000 0.000 0.000 -0.000 -0.000 574 569 sd41 127.80 0.0 15.490 6.679 7.517 3.635 1.375 0.000 0.000 0.000 -0.000 0.000 575 570 bpm 127.80 2.0 15.490 6.679 7.517 3.635 1.375 0.000 0.000 0.000 -0.000 0.000 576 571 sdb9 127.91 0.0 18.107 6.680 6.523 3.638 1.472 0.000 0.000 0.000 -0.000 0.000 577 572 q7 128.41 1.0 19.570 6.684 5.775 3.652 1.481 0.000 0.000 0.000 -0.000 0.000 578 573 sd3 128.51 0.0 17.793 6.685 6.242 3.655 1.401 0.000 0.000 0.000 -0.000 0.000 579 574 sx8 128.67 1.5 15.147 6.686 7.032 3.658 1.275 0.000 0.000 0.000 -0.000 0.000 580 575 qt 128.67 0.0 15.147 6.686 7.032 3.658 1.275 0.000 0.000 0.000 -0.000 0.000 581 576 hcm 128.67 0.0 15.147 6.686 7.032 3.658 1.275 0.000 0.000 0.000 0.000 0.000 582 577 vcm 128.67 0.0 15.147 6.686 7.032 3.658 1.275 0.000 0.000 0.000 -0.000 -0.000 583 578 sd2 128.96 0.0 10.861 6.690 8.625 3.664 1.046 0.000 0.000 0.000 -0.000 0.000 584 579 q8 129.32 -1.0 8.240 6.696 8.960 3.671 0.860 0.000 0.000 0.000 -0.000 0.000 585 580 ge 129.32 0.0 8.240 6.696 8.960 3.671 0.860 0.000 0.000 0.000 -0.000 0.000 586 581 sd87 129.64 0.0 7.628 6.703 7.708 3.677 0.775 0.000 0.000 0.000 -0.000 0.000 587 582 bpm 129.64 2.0 7.628 6.703 7.708 3.677 0.775 0.000 0.000 0.000 -0.000 0.000 588 583 sd13a 132.79 0.0 4.258 6.796 1.735 3.841 -0.059 0.000 0.000 0.000 -0.000 0.000 589 584 sd13a 135.93 0.0 5.639 6.906 7.159 4.016 -0.892 0.000 0.000 0.000 -0.000 0.000 590 585 bpm 135.93 2.0 5.639 6.906 7.159 4.016 -0.892 0.000 0.000 0.000 -0.000 0.000 591 586 sd87 136.25 0.0 6.048 6.915 8.354 4.023 -0.977 0.000 0.000 0.000 -0.000 0.000 592 587 gs 136.25 0.0 6.048 6.915 8.354 4.023 -0.977 0.000 0.000 0.000 -0.000 0.000 593 588 q8 136.61 -1.0 7.937 6.924 8.079 4.030 -1.176 0.000 0.000 0.000 -0.000 0.000 594 589 sd2 136.90 0.0 11.055 6.929 6.617 4.036 -1.424 0.000 0.000 0.000 -0.000 0.000 595 590 sx8 137.06 1.5 13.029 6.931 5.870 4.040 -1.562 0.000 0.000 0.000 -0.000 0.000 596 591 hcm 137.06 0.0 13.029 6.931 5.870 4.040 -1.562 0.000 0.000 0.000 0.000 0.000 597 592 vcm 137.06 0.0 13.029 6.931 5.870 4.040 -1.562 0.000 0.000 0.000 -0.000 -0.000 598 593 sd3 137.16 0.0 14.390 6.932 5.415 4.043 -1.651 0.000 0.000 0.000 -0.000 0.000 599 594 q7 137.66 1.0 13.570 6.937 6.028 4.058 -1.639 0.000 0.000 0.000 -0.000 0.000 600 595 sdb10 137.82 0.0 10.971 6.939 7.303 4.062 -1.487 0.000 0.000 0.000 -0.000 0.000 601 596 bpm 137.82 2.0 10.971 6.939 7.303 4.062 -1.487 0.000 0.000 0.000 -0.000 0.000 602 597 sd42 137.95 0.0 9.208 6.941 8.343 4.065 -1.373 0.000 0.000 0.000 -0.000 0.000 603 598 sx7 138.11 -1.5 7.164 6.944 9.800 4.067 -1.226 0.000 0.000 0.000 -0.000 0.000 604 599 hcm 138.11 0.0 7.164 6.944 9.800 4.067 -1.226 0.000 0.000 0.000 0.000 0.000 605 600 vcm 138.11 0.0 7.164 6.944 9.800 4.067 -1.226 0.000 0.000 0.000 -0.000 -0.000 606 601 sd5 138.21 0.0 6.013 6.947 10.785 4.069 -1.134 0.000 0.000 0.000 -0.000 0.000 607 602 q6 138.57 -1.0 3.220 6.960 13.073 4.074 -0.871 0.000 0.000 0.000 -0.000 0.000 608 603 ge 138.57 0.0 3.220 6.960 13.073 4.074 -0.871 0.000 0.000 0.000 -0.000 0.000 609 604 sd7 138.99 0.0 1.469 6.991 13.954 4.079 -0.635 0.000 0.000 0.000 -0.000 0.000 610 605 dip 138.99 0.0 1.469 6.991 13.954 4.079 -0.635 0.000 0.000 0.000 0.000 0.000 611 606 bend0 140.04 0.5 0.771 7.270 15.894 4.090 -0.853 0.000 0.000 0.000 -0.000 0.000 612 607 sd7 140.46 0.0 1.963 7.325 16.519 4.094 -0.633 0.000 0.000 0.000 -0.000 0.000 613 608 gs 140.46 0.0 1.963 7.325 16.519 4.094 -0.633 0.000 0.000 0.000 -0.000 0.000 614 609 q9 140.82 -1.0 4.277 7.346 13.980 4.098 -0.501 0.000 0.000 0.000 -0.000 0.000 615 610 sd8 140.92 0.0 5.318 7.349 12.552 4.099 -0.479 0.000 0.000 0.000 -0.000 0.000 616 611 sx9 141.08 -1.5 7.227 7.353 10.432 4.101 -0.444 0.000 0.000 0.000 -0.000 0.000 617 612 hcm 141.08 0.0 7.227 7.353 10.432 4.101 -0.444 0.000 0.000 0.000 0.000 0.000 618 613 vcm 141.08 0.0 7.227 7.353 10.432 4.101 -0.444 0.000 0.000 0.000 -0.000 -0.000 619 614 sdb11 141.25 0.0 9.609 7.356 8.383 4.104 -0.406 0.000 0.000 0.000 -0.000 0.000 620 615 bpm 141.25 2.0 9.609 7.356 8.383 4.104 -0.406 0.000 0.000 0.000 -0.000 0.000 621 616 sd92 141.46 0.0 12.889 7.359 6.248 4.109 -0.360 0.000 0.000 0.000 -0.000 0.000 622 617 q10 141.82 1.0 16.183 7.363 4.295 4.120 -0.243 0.000 0.000 0.000 -0.000 0.000 623 618 sd8 141.92 0.0 16.146 7.364 4.101 4.124 -0.202 0.000 0.000 0.000 -0.000 0.000 624 619 sx10 142.08 1.5 16.092 7.366 3.809 4.130 -0.135 0.000 0.000 0.000 -0.000 0.000 625 620 hcm 142.08 0.0 16.092 7.366 3.809 4.130 -0.135 0.000 0.000 0.000 0.000 0.000 626 621 vcm 142.08 0.0 16.092 7.366 3.809 4.130 -0.135 0.000 0.000 0.000 -0.000 -0.000 627 622 ge 142.08 0.0 16.092 7.366 3.809 4.130 -0.135 0.000 0.000 0.000 -0.000 0.000 628 623 sd89 142.42 0.0 15.991 7.369 3.265 4.146 0.006 0.000 0.000 0.000 -0.000 0.000 629 624 bpm 142.42 2.0 15.991 7.369 3.265 4.146 0.006 0.000 0.000 0.000 -0.000 0.000 630 625 sdac1 143.90 0.0 15.721 7.384 2.153 4.240 0.624 0.000 0.000 0.000 -0.000 0.000 631 626 sdac1 145.39 0.0 15.732 7.399 3.089 4.338 1.242 0.000 0.000 0.000 -0.000 0.000 632 627 bpm 145.39 2.0 15.732 7.399 3.089 4.338 1.242 0.000 0.000 0.000 -0.000 0.000 633 628 sd88 145.73 0.0 15.775 7.402 3.594 4.354 1.384 0.000 0.000 0.000 -0.000 0.000 634 629 gs 145.73 0.0 15.775 7.402 3.594 4.354 1.384 0.000 0.000 0.000 -0.000 0.000 635 630 sx10 145.89 1.5 15.786 7.404 3.871 4.361 1.450 0.000 0.000 0.000 -0.000 0.000 636 631 qt 145.89 0.0 15.786 7.404 3.871 4.361 1.450 0.000 0.000 0.000 -0.000 0.000 637 632 hcm 145.89 0.0 15.786 7.404 3.871 4.361 1.450 0.000 0.000 0.000 0.000 0.000 638 633 vcm 145.89 0.0 15.786 7.404 3.871 4.361 1.450 0.000 0.000 0.000 -0.000 -0.000 639 634 sd8 145.99 0.0 15.786 7.405 4.059 4.365 1.491 0.000 0.000 0.000 -0.000 0.000 640 635 q10 146.35 1.0 12.462 7.409 5.926 4.377 1.467 0.000 0.000 0.000 -0.000 0.000 641 636 sd93 146.60 0.0 8.554 7.413 8.480 4.383 1.331 0.000 0.000 0.000 -0.000 0.000 642 637 bpm 146.60 2.0 8.554 7.413 8.480 4.383 1.331 0.000 0.000 0.000 -0.000 0.000 643 638 sdb12 146.72 0.0 6.888 7.415 9.925 4.385 1.263 0.000 0.000 0.000 -0.000 0.000 644 639 sx9 146.88 -1.5 5.031 7.420 11.935 4.387 1.177 0.000 0.000 0.000 -0.000 0.000 645 640 hcm 146.88 0.0 5.031 7.420 11.935 4.387 1.177 0.000 0.000 0.000 0.000 0.000 646 641 vcm 146.88 0.0 5.031 7.420 11.935 4.387 1.177 0.000 0.000 0.000 -0.000 -0.000 647 642 sd8 146.98 0.0 4.027 7.423 13.276 4.389 1.123 0.000 0.000 0.000 -0.000 0.000 648 643 q9 147.34 -1.0 1.801 7.445 15.628 4.392 1.035 0.000 0.000 0.000 -0.000 0.000 649 644 ge 147.34 0.0 1.801 7.445 15.628 4.392 1.035 0.000 0.000 0.000 -0.000 0.000 650 645 sd7 147.76 0.0 0.682 7.507 14.974 4.397 1.052 0.000 0.000 0.000 -0.000 0.000 651 646 dip 147.76 0.0 0.682 7.507 14.974 4.397 1.052 0.000 0.000 0.000 0.000 0.000 652 647 bend0 148.82 0.5 1.653 7.784 13.015 4.409 0.289 0.000 0.000 0.000 -0.000 0.000 653 648 sd7 149.24 0.0 3.551 7.811 12.142 4.414 0.290 0.000 0.000 0.000 -0.000 0.000 654 649 gs 149.24 0.0 3.551 7.811 12.142 4.414 0.290 0.000 0.000 0.000 -0.000 0.000 655 650 q6 149.60 -1.0 6.544 7.824 9.981 4.419 0.309 0.000 0.000 0.000 -0.000 0.000 656 651 sd5 149.70 0.0 7.776 7.826 9.059 4.421 0.320 0.000 0.000 0.000 -0.000 0.000 657 652 sx7 149.86 -1.5 9.982 7.829 7.676 4.424 0.338 0.000 0.000 0.000 -0.000 0.000 658 653 hcm 149.86 0.0 9.982 7.829 7.676 4.424 0.338 0.000 0.000 0.000 0.000 0.000 659 654 vcm 149.86 0.0 9.982 7.829 7.676 4.424 0.338 0.000 0.000 0.000 -0.000 -0.000 660 655 sd41 150.03 0.0 12.675 7.831 6.318 4.428 0.357 0.000 0.000 0.000 -0.000 0.000 661 656 bpm 150.03 2.0 12.675 7.831 6.318 4.428 0.357 0.000 0.000 0.000 -0.000 0.000 662 657 sdb13 150.15 0.0 14.742 7.833 5.456 4.431 0.370 0.000 0.000 0.000 -0.000 0.000 663 658 q7 150.64 1.0 15.668 7.837 4.732 4.448 0.329 0.000 0.000 0.000 -0.000 0.000 664 659 sd3 150.75 0.0 14.193 7.838 5.098 4.451 0.302 0.000 0.000 0.000 -0.000 0.000 665 660 sx8 150.91 1.5 12.022 7.840 5.712 4.456 0.259 0.000 0.000 0.000 -0.000 0.000 666 661 hcm 150.91 0.0 12.022 7.840 5.712 4.456 0.259 0.000 0.000 0.000 0.000 0.000 667 662 vcm 150.91 0.0 12.022 7.840 5.712 4.456 0.259 0.000 0.000 0.000 -0.000 -0.000 668 663 sd2 151.20 0.0 8.550 7.845 6.940 4.463 0.181 0.000 0.000 0.000 -0.000 0.000 669 664 q8 151.56 -1.0 6.404 7.853 7.148 4.471 0.100 0.000 0.000 0.000 -0.000 0.000 670 665 ge 151.56 0.0 6.404 7.853 7.148 4.471 0.100 0.000 0.000 0.000 -0.000 0.000 671 666 sd87 151.88 0.0 5.863 7.861 6.110 4.479 0.039 0.000 0.000 0.000 -0.000 0.000 672 667 bpm 151.88 2.0 5.863 7.861 6.110 4.479 0.039 0.000 0.000 0.000 -0.000 0.000 673 668 sd13a 155.02 0.0 3.604 7.981 1.892 4.667 -0.561 0.000 0.000 0.000 -0.000 0.000 674 669 sd13a 158.16 0.0 6.855 8.090 8.475 4.810 -1.161 0.000 0.000 0.000 -0.000 0.000 675 670 bpm 158.16 2.0 6.855 8.090 8.475 4.810 -1.161 0.000 0.000 0.000 -0.000 0.000 676 671 sd87 158.48 0.0 7.498 8.097 9.755 4.816 -1.222 0.000 0.000 0.000 -0.000 0.000 677 672 gs 158.48 0.0 7.498 8.097 9.755 4.816 -1.222 0.000 0.000 0.000 -0.000 0.000 678 673 q8 158.84 -1.0 10.009 8.104 9.292 4.821 -1.418 0.000 0.000 0.000 -0.000 0.000 679 674 sd2 159.13 0.0 14.063 8.108 7.497 4.827 -1.684 0.000 0.000 0.000 -0.000 0.000 680 675 sx6 159.29 1.5 16.629 8.109 6.585 4.831 -1.832 0.000 0.000 0.000 -0.000 0.000 681 676 hcm 159.29 0.0 16.629 8.109 6.585 4.831 -1.832 0.000 0.000 0.000 0.000 0.000 682 677 vcm 159.29 0.0 16.629 8.109 6.585 4.831 -1.832 0.000 0.000 0.000 -0.000 -0.000 683 678 sd3 159.39 0.0 18.398 8.110 6.031 4.833 -1.926 0.000 0.000 0.000 -0.000 0.000 684 679 q7 159.89 1.0 17.471 8.114 6.455 4.847 -1.874 0.000 0.000 0.000 -0.000 0.000 685 680 sdb14 160.06 0.0 14.164 8.116 7.733 4.851 -1.686 0.000 0.000 0.000 -0.000 0.000 686 681 bpm 160.06 2.0 14.164 8.116 7.733 4.851 -1.686 0.000 0.000 0.000 -0.000 0.000 687 682 sd43 160.18 0.0 11.914 8.118 8.772 4.853 -1.545 0.000 0.000 0.000 -0.000 0.000 688 683 sx5 160.34 -1.5 9.305 8.120 10.219 4.856 -1.364 0.000 0.000 0.000 -0.000 0.000 689 684 hcm 160.34 0.0 9.305 8.120 10.219 4.856 -1.364 0.000 0.000 0.000 0.000 0.000 690 685 vcm 160.34 0.0 9.305 8.120 10.219 4.856 -1.364 0.000 0.000 0.000 -0.000 -0.000 691 686 sd5 160.44 0.0 7.832 8.122 11.192 4.857 -1.251 0.000 0.000 0.000 -0.000 0.000 692 687 q6 160.80 -1.0 4.247 8.132 13.365 4.862 -0.915 0.000 0.000 0.000 -0.000 0.000 693 688 ge 160.80 0.0 4.247 8.132 13.365 4.862 -0.915 0.000 0.000 0.000 -0.000 0.000 694 689 sd7 161.22 0.0 1.949 8.155 14.043 4.867 -0.602 0.000 0.000 0.000 -0.000 0.000 695 690 dip 161.22 0.0 1.949 8.155 14.043 4.867 -0.602 0.000 0.000 0.000 0.000 0.000 696 691 bend0 162.27 0.5 0.605 8.448 15.422 4.878 -0.625 0.000 0.000 0.000 -0.000 0.000 697 692 sd7 162.69 0.0 1.826 8.514 15.815 4.883 -0.327 0.000 0.000 0.000 -0.000 0.000 698 693 gs 162.69 0.0 1.826 8.514 15.815 4.883 -0.327 0.000 0.000 0.000 -0.000 0.000 699 694 q4 163.05 -1.0 4.179 8.535 13.690 4.886 -0.091 0.000 0.000 0.000 -0.000 0.000 700 695 sd8 163.15 0.0 5.202 8.538 12.507 4.888 -0.030 0.000 0.000 0.000 -0.000 0.000 701 696 sx3 163.31 -1.5 7.082 8.543 10.726 4.890 0.069 0.000 0.000 0.000 -0.000 0.000 702 697 hcm 163.31 0.0 7.082 8.543 10.726 4.890 0.069 0.000 0.000 0.000 0.000 0.000 703 698 vcm 163.31 0.0 7.082 8.543 10.726 4.890 0.069 0.000 0.000 0.000 -0.000 -0.000 704 699 sdb15 163.48 0.0 9.437 8.546 8.969 4.893 0.175 0.000 0.000 0.000 -0.000 0.000 705 700 bpm 163.48 2.0 9.437 8.546 8.969 4.893 0.175 0.000 0.000 0.000 -0.000 0.000 706 701 sd9a 163.69 0.0 12.679 8.549 7.095 4.897 0.301 0.000 0.000 0.000 -0.000 0.000 707 702 q5 164.05 1.0 16.074 8.553 5.580 4.906 0.483 0.000 0.000 0.000 -0.000 0.000 708 703 sd10 164.42 0.0 16.222 8.556 5.456 4.917 0.620 0.000 0.000 0.000 -0.000 0.000 709 704 sx4 164.58 1.5 16.279 8.558 5.422 4.921 0.680 0.000 0.000 0.000 -0.000 0.000 710 705 qt 164.58 0.0 16.279 8.558 5.422 4.921 0.680 0.000 0.000 0.000 -0.000 0.000 711 706 hcm 164.58 0.0 16.279 8.558 5.422 4.921 0.680 0.000 0.000 0.000 0.000 0.000 712 707 vcm 164.58 0.0 16.279 8.558 5.422 4.921 0.680 0.000 0.000 0.000 -0.000 -0.000 713 708 sdb4 164.78 0.0 16.340 8.560 5.399 4.927 0.753 0.000 0.000 0.000 -0.000 0.000 714 709 bpm 164.78 2.0 16.340 8.560 5.399 4.927 0.753 0.000 0.000 0.000 -0.000 0.000 715 710 sd10a 164.95 0.0 16.396 8.562 5.390 4.932 0.817 0.000 0.000 0.000 -0.000 0.000 716 711 q5 165.31 1.0 13.157 8.565 6.685 4.942 0.858 0.000 0.000 0.000 -0.000 0.000 717 712 sd93 165.56 0.0 9.239 8.569 8.776 4.947 0.820 0.000 0.000 0.000 -0.000 0.000 718 713 bpm 165.56 2.0 9.239 8.569 8.776 4.947 0.820 0.000 0.000 0.000 -0.000 0.000 719 714 sdb17 165.69 0.0 7.552 8.571 9.929 4.950 0.801 0.000 0.000 0.000 -0.000 0.000 720 715 sx3 165.85 -1.5 5.650 8.575 11.506 4.952 0.777 0.000 0.000 0.000 -0.000 0.000 721 716 hcm 165.85 0.0 5.650 8.575 11.506 4.952 0.777 0.000 0.000 0.000 0.000 0.000 722 717 vcm 165.85 0.0 5.650 8.575 11.506 4.952 0.777 0.000 0.000 0.000 -0.000 -0.000 723 718 sd8 165.95 0.0 4.607 8.578 12.549 4.953 0.763 0.000 0.000 0.000 -0.000 0.000 724 719 q4 166.31 -1.0 2.197 8.597 14.333 4.957 0.771 0.000 0.000 0.000 -0.000 0.000 725 720 ge 166.31 0.0 2.197 8.597 14.333 4.957 0.771 0.000 0.000 0.000 -0.000 0.000 726 721 sd7 166.73 0.0 0.863 8.646 13.801 4.962 0.852 0.000 0.000 0.000 -0.000 0.000 727 722 dip 166.73 0.0 0.863 8.646 13.801 4.962 0.852 0.000 0.000 0.000 0.000 0.000 728 723 bend0 167.78 0.5 1.347 8.935 12.173 4.975 0.250 0.000 0.000 0.000 -0.000 0.000 729 724 sd6 168.49 0.0 4.769 8.980 10.960 4.985 0.361 0.000 0.000 0.000 -0.000 0.000 730 725 gs 168.49 0.0 4.769 8.980 10.960 4.985 0.361 0.000 0.000 0.000 -0.000 0.000 731 726 sx2 168.65 -1.5 5.889 8.985 10.702 4.987 0.386 0.000 0.000 0.000 -0.000 0.000 732 727 hcm 168.65 0.0 5.889 8.985 10.702 4.987 0.386 0.000 0.000 0.000 0.000 0.000 733 728 vcm 168.65 0.0 5.889 8.985 10.702 4.987 0.386 0.000 0.000 0.000 -0.000 -0.000 734 729 sd5 168.75 0.0 6.654 8.987 10.542 4.989 0.401 0.000 0.000 0.000 -0.000 0.000 735 730 q3 169.11 -1.0 10.577 8.994 9.158 4.995 0.475 0.000 0.000 0.000 -0.000 0.000 736 731 sd141 169.54 0.0 17.771 8.999 6.814 5.003 0.587 0.000 0.000 0.000 -0.000 0.000 737 732 bpm 169.54 2.0 17.771 8.999 6.814 5.003 0.587 0.000 0.000 0.000 -0.000 0.000 738 733 sdb18 169.66 0.0 20.102 9.000 6.233 5.006 0.618 0.000 0.000 0.000 -0.000 0.000 739 734 q2 170.16 1.0 21.774 9.004 6.322 5.020 0.620 0.000 0.000 0.000 -0.000 0.000 740 735 sd3 170.26 0.0 20.349 9.004 6.857 5.022 0.594 0.000 0.000 0.000 -0.000 0.000 741 736 sx1 170.42 1.5 18.206 9.006 7.749 5.026 0.554 0.000 0.000 0.000 -0.000 0.000 742 737 qt 170.42 0.0 18.206 9.006 7.749 5.026 0.554 0.000 0.000 0.000 -0.000 0.000 743 738 hcm 170.42 0.0 18.206 9.006 7.749 5.026 0.554 0.000 0.000 0.000 0.000 0.000 744 739 vcm 170.42 0.0 18.206 9.006 7.749 5.026 0.554 0.000 0.000 0.000 -0.000 -0.000 745 740 sd2 170.71 0.0 14.623 9.009 9.526 5.031 0.481 0.000 0.000 0.000 -0.000 0.000 746 741 q1 171.07 -1.0 12.478 9.013 10.534 5.037 0.422 0.000 0.000 0.000 -0.000 0.000 747 742 ge 171.07 0.0 12.478 9.013 10.534 5.037 0.422 0.000 0.000 0.000 -0.000 0.000 748 743 sdc12 171.39 0.0 12.234 9.017 10.178 5.041 0.397 0.000 0.000 0.000 -0.000 0.000 749 744 bpm 171.39 2.0 12.234 9.017 10.178 5.041 0.397 0.000 0.000 0.000 -0.000 0.000 750 745 sd1e 177.05 0.0 11.053 9.098 8.179 5.148 -0.049 0.000 0.000 0.000 -0.000 0.000 751 746 sd1e 182.71 0.0 15.812 9.168 14.265 5.236 -0.496 0.000 0.000 0.000 -0.000 0.000 752 747 bpm 182.71 2.0 15.812 9.168 14.265 5.236 -0.496 0.000 0.000 0.000 -0.000 0.000 753 748 sdb1 183.03 0.0 16.260 9.171 14.853 5.239 -0.521 0.000 0.000 0.000 -0.000 0.000 754 749 gs 183.03 0.0 16.260 9.171 14.853 5.239 -0.521 0.000 0.000 0.000 -0.000 0.000 755 750 q1 183.39 -1.0 19.205 9.175 13.508 5.243 -0.587 0.000 0.000 0.000 -0.000 0.000 756 751 sd2 183.68 0.0 24.025 9.177 11.034 5.247 -0.671 0.000 0.000 0.000 -0.000 0.000 757 752 sx1 183.84 1.5 26.929 9.178 9.778 5.249 -0.718 0.000 0.000 0.000 -0.000 0.000 758 753 qt 183.84 0.0 26.929 9.178 9.778 5.249 -0.718 0.000 0.000 0.000 -0.000 0.000 759 754 hcm 183.84 0.0 26.929 9.178 9.778 5.249 -0.718 0.000 0.000 0.000 0.000 0.000 760 755 vcm 183.84 0.0 26.929 9.178 9.778 5.249 -0.718 0.000 0.000 0.000 -0.000 -0.000 761 756 sd3 183.94 0.0 28.873 9.179 9.018 5.251 -0.747 0.000 0.000 0.000 -0.000 0.000 762 757 q2 184.44 1.0 26.898 9.181 8.863 5.261 -0.740 0.000 0.000 0.000 -0.000 0.000 763 758 sdb2 184.60 0.0 22.691 9.182 10.001 5.263 -0.687 0.000 0.000 0.000 -0.000 0.000 764 759 bpm 184.60 2.0 22.691 9.182 10.001 5.263 -0.687 0.000 0.000 0.000 -0.000 0.000 765 760 sd14a 184.99 0.0 14.356 9.186 12.912 5.269 -0.563 0.000 0.000 0.000 -0.000 0.000 766 761 q3 185.35 -1.0 9.166 9.191 14.772 5.273 -0.470 0.000 0.000 0.000 -0.000 0.000 767 762 sd5 185.45 0.0 8.151 9.193 14.969 5.274 -0.450 0.000 0.000 0.000 -0.000 0.000 768 763 sx2 185.61 -1.5 6.651 9.196 15.300 5.276 -0.418 0.000 0.000 0.000 -0.000 0.000 769 764 hcm 185.61 0.0 6.651 9.196 15.300 5.276 -0.418 0.000 0.000 0.000 0.000 0.000 770 765 vcm 185.61 0.0 6.651 9.196 15.300 5.276 -0.418 0.000 0.000 0.000 -0.000 -0.000 771 766 ge 185.61 0.0 6.651 9.196 15.300 5.276 -0.418 0.000 0.000 0.000 -0.000 0.000 772 767 sd6 186.32 0.0 1.909 9.228 16.889 5.283 -0.275 0.000 0.000 0.000 -0.000 0.000 773 768 dip 186.32 0.0 1.909 9.228 16.889 5.283 -0.275 0.000 0.000 0.000 0.000 0.000 774 769 bend0 187.37 0.5 0.670 9.540 18.893 5.292 -0.869 0.000 0.000 0.000 -0.000 0.000 775 770 sd7 187.79 0.0 2.101 9.597 19.491 5.296 -0.799 0.000 0.000 0.000 -0.000 0.000 776 771 gs 187.79 0.0 2.101 9.597 19.491 5.296 -0.799 0.000 0.000 0.000 -0.000 0.000 777 772 q4 188.15 -1.0 4.786 9.616 16.954 5.299 -0.804 0.000 0.000 0.000 -0.000 0.000 778 773 sd8 188.25 0.0 5.948 9.619 15.511 5.300 -0.823 0.000 0.000 0.000 -0.000 0.000 779 774 sx3 188.41 -1.5 8.077 9.622 13.345 5.301 -0.854 0.000 0.000 0.000 -0.000 0.000 780 775 hcm 188.41 0.0 8.077 9.622 13.345 5.301 -0.854 0.000 0.000 0.000 0.000 0.000 781 776 vcm 188.41 0.0 8.077 9.622 13.345 5.301 -0.854 0.000 0.000 0.000 -0.000 -0.000 782 777 sdb3 188.58 0.0 10.730 9.625 11.210 5.304 -0.887 0.000 0.000 0.000 -0.000 0.000 783 778 bpm 188.58 2.0 10.730 9.625 11.210 5.304 -0.887 0.000 0.000 0.000 -0.000 0.000 784 779 sd9a 188.79 0.0 14.376 9.628 8.923 5.307 -0.926 0.000 0.000 0.000 -0.000 0.000 785 780 q5 189.15 1.0 18.155 9.631 7.106 5.314 -0.893 0.000 0.000 0.000 -0.000 0.000 786 781 sd12 189.52 0.0 18.250 9.635 7.023 5.323 -0.755 0.000 0.000 0.000 -0.000 0.000 787 782 sx4 189.68 1.5 18.312 9.636 6.993 5.326 -0.695 0.000 0.000 0.000 -0.000 0.000 788 783 qt 189.68 0.0 18.312 9.636 6.993 5.326 -0.695 0.000 0.000 0.000 -0.000 0.000 789 784 hcm 189.68 0.0 18.312 9.636 6.993 5.326 -0.695 0.000 0.000 0.000 0.000 0.000 790 785 vcm 189.68 0.0 18.312 9.636 6.993 5.326 -0.695 0.000 0.000 0.000 -0.000 -0.000 791 786 sdb4 189.87 0.0 18.411 9.638 6.960 5.331 -0.621 0.000 0.000 0.000 -0.000 0.000 792 787 bpm 189.87 2.0 18.411 9.638 6.960 5.331 -0.621 0.000 0.000 0.000 -0.000 0.000 793 788 sd10a 190.05 0.0 18.500 9.639 6.940 5.335 -0.557 0.000 0.000 0.000 -0.000 0.000 794 789 q5 190.41 1.0 14.890 9.643 8.565 5.342 -0.368 0.000 0.000 0.000 -0.000 0.000 795 790 sd91 190.66 0.0 10.485 9.646 11.203 5.347 -0.202 0.000 0.000 0.000 -0.000 0.000 796 791 bpm 190.66 2.0 10.485 9.646 11.203 5.347 -0.202 0.000 0.000 0.000 -0.000 0.000 797 792 sdb5 190.78 0.0 8.585 9.648 12.651 5.348 -0.119 0.000 0.000 0.000 -0.000 0.000 798 793 sx3 190.94 -1.5 6.433 9.651 14.639 5.350 -0.014 0.000 0.000 0.000 -0.000 0.000 799 794 hcm 190.94 0.0 6.433 9.651 14.639 5.350 -0.014 0.000 0.000 0.000 0.000 0.000 800 795 vcm 190.94 0.0 6.433 9.651 14.639 5.350 -0.014 0.000 0.000 0.000 -0.000 -0.000 801 796 sd8 191.04 0.0 5.251 9.654 15.955 5.351 0.052 0.000 0.000 0.000 -0.000 0.000 802 797 q4 191.40 -1.0 2.507 9.670 18.183 5.354 0.301 0.000 0.000 0.000 -0.000 0.000 803 798 ge 191.40 0.0 2.507 9.670 18.183 5.354 0.301 0.000 0.000 0.000 -0.000 0.000 804 799 sd7 191.82 0.0 0.958 9.714 17.452 5.358 0.612 0.000 0.000 0.000 -0.000 0.000 805 800 dip 191.82 0.0 0.958 9.714 17.452 5.358 0.612 0.000 0.000 0.000 0.000 0.000 806 801 bend0 192.87 0.5 1.290 10.019 15.205 5.368 0.580 0.000 0.000 0.000 -0.000 0.000 807 802 sd7 193.29 0.0 3.104 10.052 14.188 5.373 0.874 0.000 0.000 0.000 -0.000 0.000 808 803 gs 193.29 0.0 3.104 10.052 14.188 5.373 0.874 0.000 0.000 0.000 -0.000 0.000 809 804 q6 193.66 -1.0 6.043 10.066 11.658 5.377 1.190 0.000 0.000 0.000 -0.000 0.000 810 805 sd5 193.75 0.0 7.254 10.068 10.579 5.379 1.297 0.000 0.000 0.000 -0.000 0.000 811 806 sx5 193.91 -1.5 9.444 10.071 8.948 5.381 1.469 0.000 0.000 0.000 -0.000 0.000 812 807 hcm 193.91 0.0 9.444 10.071 8.948 5.381 1.469 0.000 0.000 0.000 0.000 0.000 813 808 vcm 193.91 0.0 9.444 10.071 8.948 5.381 1.469 0.000 0.000 0.000 -0.000 -0.000 814 809 sd41 194.09 0.0 12.148 10.074 7.336 5.385 1.655 0.000 0.000 0.000 -0.000 0.000 815 810 bpm 194.09 2.0 12.148 10.074 7.336 5.385 1.655 0.000 0.000 0.000 -0.000 0.000 816 811 sdb6 194.21 0.0 14.234 10.075 6.313 5.388 1.784 0.000 0.000 0.000 -0.000 0.000 817 812 q7 194.70 1.0 15.514 10.080 5.358 5.402 1.836 0.000 0.000 0.000 -0.000 0.000 818 813 sd3 194.80 0.0 14.134 10.081 5.745 5.405 1.747 0.000 0.000 0.000 -0.000 0.000 819 814 sx6 194.96 1.5 12.077 10.083 6.398 5.410 1.605 0.000 0.000 0.000 -0.000 0.000 820 815 hcm 194.96 0.0 12.077 10.083 6.398 5.410 1.605 0.000 0.000 0.000 0.000 0.000 821 816 vcm 194.96 0.0 12.077 10.083 6.398 5.410 1.605 0.000 0.000 0.000 -0.000 -0.000 822 817 sd2 195.25 0.0 8.738 10.088 7.714 5.416 1.348 0.000 0.000 0.000 -0.000 0.000 823 818 q8 195.62 -1.0 6.743 10.095 7.872 5.423 1.156 0.000 0.000 0.000 -0.000 0.000 824 819 ge 195.62 0.0 6.743 10.095 7.872 5.423 1.156 0.000 0.000 0.000 -0.000 0.000 825 820 sdc12 195.94 0.0 6.362 10.103 6.661 5.430 1.092 0.000 0.000 0.000 -0.000 0.000 826 821 bpm 195.94 2.0 6.362 10.103 6.661 5.430 1.092 0.000 0.000 0.000 -0.000 0.000 827 822 sd13k 196.33 0.0 5.954 10.113 5.360 5.441 1.014 0.000 0.000 0.000 -0.000 0.000 828 823 ssdm 196.33 0.0 5.954 10.113 5.360 5.441 1.014 0.000 0.000 0.000 -0.000 0.000 829 824 sd13i 196.53 0.0 5.770 10.119 4.769 5.447 0.974 0.000 0.000 0.000 -0.000 0.000 830 825 sd13i 196.73 0.0 5.603 10.124 4.229 5.454 0.934 0.000 0.000 0.000 -0.000 0.000 831 826 sd13i 196.93 0.0 5.452 10.130 3.739 5.462 0.895 0.000 0.000 0.000 -0.000 0.000 832 827 sd13i 197.13 0.0 5.318 10.136 3.299 5.471 0.855 0.000 0.000 0.000 -0.000 0.000 833 828 sd13i 197.33 0.0 5.201 10.142 2.909 5.481 0.815 0.000 0.000 0.000 -0.000 0.000 834 829 sd13i 197.53 0.0 5.099 10.148 2.570 5.493 0.775 0.000 0.000 0.000 -0.000 0.000 835 830 sd13i 197.73 0.0 5.015 10.155 2.281 5.506 0.736 0.000 0.000 0.000 -0.000 0.000 836 831 sd13i 197.93 0.0 4.947 10.161 2.043 5.521 0.696 0.000 0.000 0.000 -0.000 0.000 837 832 sd13i 198.13 0.0 4.895 10.167 1.855 5.537 0.656 0.000 0.000 0.000 -0.000 0.000 838 833 sd13i 198.33 0.0 4.860 10.174 1.717 5.555 0.616 0.000 0.000 0.000 -0.000 0.000 839 834 sd13i 198.53 0.0 4.842 10.180 1.629 5.574 0.576 0.000 0.000 0.000 -0.000 0.000 840 835 sd13i 198.73 0.0 4.840 10.187 1.592 5.594 0.537 0.000 0.000 0.000 -0.000 0.000 841 836 sd13i 198.93 0.0 4.854 10.194 1.605 5.614 0.497 0.000 0.000 0.000 -0.000 0.000 842 837 sd13j 199.08 0.0 4.876 10.199 1.647 5.629 0.467 0.000 0.000 0.000 -0.000 0.000 843 838 sd13j 199.23 0.0 4.907 10.203 1.719 5.643 0.437 0.000 0.000 0.000 -0.000 0.000 844 839 sd13i 199.43 0.0 4.963 10.210 1.857 5.661 0.397 0.000 0.000 0.000 -0.000 0.000 845 840 sd13i 199.63 0.0 5.036 10.216 2.046 5.677 0.358 0.000 0.000 0.000 -0.000 0.000 846 841 sd13i 199.83 0.0 5.125 10.222 2.286 5.692 0.318 0.000 0.000 0.000 -0.000 0.000 847 842 sd13i 200.03 0.0 5.230 10.229 2.575 5.705 0.278 0.000 0.000 0.000 -0.000 0.000 848 843 sd13i 200.23 0.0 5.352 10.235 2.915 5.717 0.238 0.000 0.000 0.000 -0.000 0.000 849 844 sd13i 200.43 0.0 5.491 10.241 3.306 5.727 0.198 0.000 0.000 0.000 -0.000 0.000 850 845 sd13i 200.63 0.0 5.646 10.246 3.746 5.736 0.159 0.000 0.000 0.000 -0.000 0.000 851 846 sd13i 200.83 0.0 5.818 10.252 4.237 5.744 0.119 0.000 0.000 0.000 -0.000 0.000 852 847 sd13i 201.03 0.0 6.006 10.257 4.779 5.751 0.079 0.000 0.000 0.000 -0.000 0.000 853 848 sd13i 201.23 0.0 6.211 10.262 5.370 5.757 0.039 0.000 0.000 0.000 -0.000 0.000 854 849 sd13i 201.43 0.0 6.432 10.267 6.012 5.763 -0.000 0.000 0.000 0.000 -0.000 0.000 855 850 sd13i 201.63 0.0 6.670 10.272 6.704 5.768 -0.040 0.000 0.000 0.000 -0.000 0.000 856 851 sd13i 201.83 0.0 6.924 10.277 7.446 5.773 -0.080 0.000 0.000 0.000 -0.000 0.000 857 852 esdm 201.83 0.0 6.924 10.277 7.446 5.773 -0.080 0.000 0.000 0.000 -0.000 0.000 858 853 eesdm 201.83 0.0 6.924 10.277 7.446 5.773 -0.080 0.000 0.000 0.000 -0.000 0.000 859 854 sd13k 202.22 0.0 7.470 10.286 9.045 5.780 -0.158 0.000 0.000 0.000 -0.000 0.000 860 855 bpm 202.22 2.0 7.470 10.286 9.045 5.780 -0.158 0.000 0.000 0.000 -0.000 0.000 861 856 sd87 202.54 0.0 7.964 10.292 10.500 5.785 -0.222 0.000 0.000 0.000 -0.000 0.000 862 857 gs 202.54 0.0 7.964 10.292 10.500 5.785 -0.222 0.000 0.000 0.000 -0.000 0.000 863 858 q8 202.90 -1.0 10.367 10.299 10.085 5.791 -0.318 0.000 0.000 0.000 -0.000 0.000 864 859 sd2 203.19 0.0 14.356 10.303 8.198 5.796 -0.419 0.000 0.000 0.000 -0.000 0.000 865 860 sx8 203.35 1.5 16.850 10.304 7.244 5.799 -0.475 0.000 0.000 0.000 -0.000 0.000 866 861 qt 203.35 0.0 16.850 10.304 7.244 5.799 -0.475 0.000 0.000 0.000 -0.000 0.000 867 862 hcm 203.35 0.0 16.850 10.304 7.244 5.799 -0.475 0.000 0.000 0.000 0.000 0.000 868 863 vcm 203.35 0.0 16.850 10.304 7.244 5.799 -0.475 0.000 0.000 0.000 -0.000 -0.000 869 864 sd3 203.45 0.0 18.550 10.305 6.667 5.801 -0.510 0.000 0.000 0.000 -0.000 0.000 870 865 q7 203.95 1.0 17.242 10.309 7.313 5.814 -0.543 0.000 0.000 0.000 -0.000 0.000 871 866 sdb7 204.11 0.0 13.851 10.311 8.815 5.817 -0.506 0.000 0.000 0.000 -0.000 0.000 872 867 bpm 204.11 2.0 13.851 10.311 8.815 5.817 -0.506 0.000 0.000 0.000 -0.000 0.000 873 868 sd42 204.24 0.0 11.557 10.312 10.037 5.819 -0.479 0.000 0.000 0.000 -0.000 0.000 874 869 sx7 204.40 -1.5 8.919 10.315 11.729 5.822 -0.443 0.000 0.000 0.000 -0.000 0.000 875 870 hcm 204.40 0.0 8.919 10.315 11.729 5.822 -0.443 0.000 0.000 0.000 0.000 0.000 876 871 vcm 204.40 0.0 8.919 10.315 11.729 5.822 -0.443 0.000 0.000 0.000 -0.000 -0.000 877 872 sd5 204.50 0.0 7.444 10.317 12.860 5.823 -0.421 0.000 0.000 0.000 -0.000 0.000 878 873 q6 204.86 -1.0 3.854 10.328 15.406 5.827 -0.367 0.000 0.000 0.000 -0.000 0.000 879 874 ge 204.86 0.0 3.854 10.328 15.406 5.827 -0.367 0.000 0.000 0.000 -0.000 0.000 880 875 sd7 205.28 0.0 1.597 10.355 16.234 5.831 -0.333 0.000 0.000 0.000 -0.000 0.000 881 876 dip 205.28 0.0 1.597 10.355 16.234 5.831 -0.333 0.000 0.000 0.000 0.000 0.000 882 877 bend0 206.33 0.5 0.855 10.678 17.919 5.841 -1.053 0.000 0.000 0.000 -0.000 0.000 883 878 sd7 206.75 0.0 2.517 10.724 18.397 5.845 -1.034 0.000 0.000 0.000 -0.000 0.000 884 879 gs 206.75 0.0 2.517 10.724 18.397 5.845 -1.034 0.000 0.000 0.000 -0.000 0.000 885 880 q9 207.11 -1.0 5.651 10.740 15.397 5.848 -1.120 0.000 0.000 0.000 -0.000 0.000 886 881 sd8 207.21 0.0 7.052 10.743 13.772 5.849 -1.173 0.000 0.000 0.000 -0.000 0.000 887 882 sx9 207.37 -1.5 9.613 10.746 11.377 5.851 -1.258 0.000 0.000 0.000 -0.000 0.000 888 883 hcm 207.37 0.0 9.613 10.746 11.377 5.851 -1.258 0.000 0.000 0.000 0.000 0.000 889 884 vcm 207.37 0.0 9.613 10.746 11.377 5.851 -1.258 0.000 0.000 0.000 -0.000 -0.000 890 885 sdb8 207.54 0.0 12.802 10.748 9.075 5.854 -1.349 0.000 0.000 0.000 -0.000 0.000 891 886 bpm 207.54 2.0 12.802 10.748 9.075 5.854 -1.349 0.000 0.000 0.000 -0.000 0.000 892 887 sd9a 207.75 0.0 17.186 10.750 6.687 5.858 -1.456 0.000 0.000 0.000 -0.000 0.000 893 888 q10 208.11 1.0 21.595 10.753 4.461 5.869 -1.476 0.000 0.000 0.000 -0.000 0.000 894 889 sd8 208.21 0.0 21.549 10.754 4.215 5.872 -1.434 0.000 0.000 0.000 -0.000 0.000 895 890 sx10 208.37 1.5 21.495 10.755 3.843 5.879 -1.368 0.000 0.000 0.000 -0.000 0.000 896 891 qt 208.37 0.0 21.495 10.755 3.843 5.879 -1.368 0.000 0.000 0.000 -0.000 0.000 897 892 hcm 208.37 0.0 21.495 10.755 3.843 5.879 -1.368 0.000 0.000 0.000 0.000 0.000 898 893 vcm 208.37 0.0 21.495 10.755 3.843 5.879 -1.368 0.000 0.000 0.000 -0.000 -0.000 899 894 ge 208.37 0.0 21.495 10.755 3.843 5.879 -1.368 0.000 0.000 0.000 -0.000 0.000 900 895 sdc44 208.71 0.0 21.429 10.758 3.144 5.894 -1.226 0.000 0.000 0.000 -0.000 0.000 901 896 bpm 208.71 2.0 21.429 10.758 3.144 5.894 -1.226 0.000 0.000 0.000 -0.000 0.000 902 897 sdac4 209.29 0.0 21.340 10.762 2.263 5.930 -0.984 0.000 0.000 0.000 -0.000 0.000 903 898 ssdac 209.29 0.0 21.340 10.762 2.263 5.930 -0.984 0.000 0.000 0.000 -0.000 0.000 904 899 sdac2 209.49 0.0 21.317 10.764 2.055 5.944 -0.901 0.000 0.000 0.000 -0.000 0.000 905 900 sdac2 209.69 0.0 21.298 10.765 1.893 5.961 -0.818 0.000 0.000 0.000 -0.000 0.000 906 901 sdac2 209.89 0.0 21.282 10.767 1.779 5.978 -0.735 0.000 0.000 0.000 -0.000 0.000 907 902 sdac2 210.09 0.0 21.270 10.768 1.712 5.996 -0.652 0.000 0.000 0.000 -0.000 0.000 908 903 sdac2 210.29 0.0 21.262 10.770 1.692 6.015 -0.569 0.000 0.000 0.000 -0.000 0.000 909 904 sdac2 210.49 0.0 21.258 10.771 1.720 6.034 -0.486 0.000 0.000 0.000 -0.000 0.000 910 905 sdac2 210.69 0.0 21.258 10.773 1.795 6.052 -0.403 0.000 0.000 0.000 -0.000 0.000 911 906 sdac2 210.89 0.0 21.261 10.774 1.917 6.069 -0.320 0.000 0.000 0.000 -0.000 0.000 912 907 sdac2 211.09 0.0 21.268 10.776 2.087 6.085 -0.237 0.000 0.000 0.000 -0.000 0.000 913 908 esdac 211.09 0.0 21.268 10.776 2.087 6.085 -0.237 0.000 0.000 0.000 -0.000 0.000 914 909 sdac4 211.68 0.0 21.311 10.780 2.852 6.123 0.006 0.000 0.000 0.000 -0.000 0.000 915 910 bpm 211.68 2.0 21.311 10.780 2.852 6.123 0.006 0.000 0.000 0.000 -0.000 0.000 916 911 sdc45 212.02 0.0 21.350 10.782 3.486 6.141 0.147 0.000 0.000 0.000 -0.000 0.000 917 912 gs 212.02 0.0 21.350 10.782 3.486 6.141 0.147 0.000 0.000 0.000 -0.000 0.000 918 913 sx10 212.18 1.5 21.370 10.784 3.831 6.148 0.214 0.000 0.000 0.000 -0.000 0.000 919 914 hcm 212.18 0.0 21.370 10.784 3.831 6.148 0.214 0.000 0.000 0.000 0.000 0.000 920 915 vcm 212.18 0.0 21.370 10.784 3.831 6.148 0.214 0.000 0.000 0.000 -0.000 -0.000 921 916 sd8 212.28 0.0 21.382 10.784 4.062 6.152 0.255 0.000 0.000 0.000 -0.000 0.000 922 917 q10 212.64 1.0 16.912 10.787 6.133 6.164 0.370 0.000 0.000 0.000 -0.000 0.000 923 918 sd91 212.89 0.0 11.625 10.790 8.911 6.169 0.424 0.000 0.000 0.000 -0.000 0.000 924 919 bpm 212.89 2.0 11.625 10.790 8.911 6.169 0.424 0.000 0.000 0.000 -0.000 0.000 925 920 sd42 213.01 0.0 9.365 10.792 10.492 6.171 0.451 0.000 0.000 0.000 -0.000 0.000 926 921 sx9 213.17 -1.5 6.837 10.795 12.703 6.173 0.485 0.000 0.000 0.000 -0.000 0.000 927 922 hcm 213.17 0.0 6.837 10.795 12.703 6.173 0.485 0.000 0.000 0.000 0.000 0.000 928 923 vcm 213.17 0.0 6.837 10.795 12.703 6.173 0.485 0.000 0.000 0.000 -0.000 -0.000 929 924 sd8 213.27 0.0 5.465 10.798 14.188 6.174 0.506 0.000 0.000 0.000 -0.000 0.000 930 925 q9 213.64 -1.0 2.397 10.814 16.909 6.178 0.636 0.000 0.000 0.000 -0.000 0.000 931 926 ge 213.64 0.0 2.397 10.814 16.909 6.178 0.636 0.000 0.000 0.000 -0.000 0.000 932 927 sd7 214.05 0.0 0.789 10.864 16.426 6.182 0.854 0.000 0.000 0.000 -0.000 0.000 933 928 dip 214.05 0.0 0.789 10.864 16.426 6.182 0.854 0.000 0.000 0.000 0.000 0.000 934 929 bend0 215.11 0.5 1.721 11.186 14.796 6.193 0.593 0.000 0.000 0.000 -0.000 0.000 935 930 sd7 215.53 0.0 4.077 11.211 14.011 6.197 0.795 0.000 0.000 0.000 -0.000 0.000 936 931 gs 215.53 0.0 4.077 11.211 14.011 6.197 0.795 0.000 0.000 0.000 -0.000 0.000 937 932 q6 215.89 -1.0 7.801 11.222 11.676 6.202 1.024 0.000 0.000 0.000 -0.000 0.000 938 933 sd5 215.99 0.0 9.331 11.223 10.644 6.203 1.105 0.000 0.000 0.000 -0.000 0.000 939 934 sx7 216.15 -1.5 12.090 11.226 9.076 6.206 1.235 0.000 0.000 0.000 -0.000 0.000 940 935 hcm 216.15 0.0 12.090 11.226 9.076 6.206 1.235 0.000 0.000 0.000 0.000 0.000 941 936 vcm 216.15 0.0 12.090 11.226 9.076 6.206 1.235 0.000 0.000 0.000 -0.000 -0.000 942 937 sd41 216.32 0.0 15.489 11.228 7.517 6.209 1.375 0.000 0.000 0.000 -0.000 0.000 943 938 bpm 216.32 2.0 15.489 11.228 7.517 6.209 1.375 0.000 0.000 0.000 -0.000 0.000 944 939 sdb9 216.44 0.0 18.106 11.229 6.523 6.212 1.472 0.000 0.000 0.000 -0.000 0.000 945 940 q7 216.94 1.0 19.569 11.233 5.776 6.226 1.481 0.000 0.000 0.000 -0.000 0.000 946 941 sd3 217.04 0.0 17.793 11.234 6.243 6.229 1.401 0.000 0.000 0.000 -0.000 0.000 947 942 sx8 217.20 1.5 15.147 11.235 7.032 6.232 1.275 0.000 0.000 0.000 -0.000 0.000 948 943 qt 217.20 0.0 15.147 11.235 7.032 6.232 1.275 0.000 0.000 0.000 -0.000 0.000 949 944 hcm 217.20 0.0 15.147 11.235 7.032 6.232 1.275 0.000 0.000 0.000 0.000 0.000 950 945 vcm 217.20 0.0 15.147 11.235 7.032 6.232 1.275 0.000 0.000 0.000 -0.000 -0.000 951 946 sd2 217.49 0.0 10.861 11.239 8.626 6.238 1.047 0.000 0.000 0.000 -0.000 0.000 952 947 q8 217.85 -1.0 8.240 11.245 8.960 6.245 0.860 0.000 0.000 0.000 -0.000 0.000 953 948 ge 217.85 0.0 8.240 11.245 8.960 6.245 0.860 0.000 0.000 0.000 -0.000 0.000 954 949 sd87 218.17 0.0 7.629 11.252 7.708 6.251 0.775 0.000 0.000 0.000 -0.000 0.000 955 950 bpm 218.17 2.0 7.629 11.252 7.708 6.251 0.775 0.000 0.000 0.000 -0.000 0.000 956 951 sd13a 221.31 0.0 4.259 11.344 1.735 6.415 -0.059 0.000 0.000 0.000 -0.000 0.000 957 952 sd13a 224.45 0.0 5.640 11.455 7.158 6.590 -0.892 0.000 0.000 0.000 -0.000 0.000 958 953 bpm 224.45 2.0 5.640 11.455 7.158 6.590 -0.892 0.000 0.000 0.000 -0.000 0.000 959 954 sd87 224.77 0.0 6.048 11.464 8.354 6.597 -0.977 0.000 0.000 0.000 -0.000 0.000 960 955 gs 224.77 0.0 6.048 11.464 8.354 6.597 -0.977 0.000 0.000 0.000 -0.000 0.000 961 956 q8 225.13 -1.0 7.938 11.472 8.079 6.604 -1.176 0.000 0.000 0.000 -0.000 0.000 962 957 sd2 225.42 0.0 11.056 11.477 6.617 6.610 -1.425 0.000 0.000 0.000 -0.000 0.000 963 958 sx8 225.58 1.5 13.029 11.480 5.870 6.614 -1.563 0.000 0.000 0.000 -0.000 0.000 964 959 hcm 225.58 0.0 13.029 11.480 5.870 6.614 -1.563 0.000 0.000 0.000 0.000 0.000 965 960 vcm 225.58 0.0 13.029 11.480 5.870 6.614 -1.563 0.000 0.000 0.000 -0.000 -0.000 966 961 sd3 225.68 0.0 14.390 11.481 5.415 6.617 -1.651 0.000 0.000 0.000 -0.000 0.000 967 962 q7 226.18 1.0 13.570 11.486 6.028 6.632 -1.639 0.000 0.000 0.000 -0.000 0.000 968 963 sdb10 226.35 0.0 10.971 11.488 7.303 6.636 -1.487 0.000 0.000 0.000 -0.000 0.000 969 964 bpm 226.35 2.0 10.971 11.488 7.303 6.636 -1.487 0.000 0.000 0.000 -0.000 0.000 970 965 sd42 226.47 0.0 9.208 11.490 8.343 6.639 -1.373 0.000 0.000 0.000 -0.000 0.000 971 966 sx7 226.63 -1.5 7.164 11.493 9.800 6.641 -1.227 0.000 0.000 0.000 -0.000 0.000 972 967 hcm 226.63 0.0 7.164 11.493 9.800 6.641 -1.227 0.000 0.000 0.000 0.000 0.000 973 968 vcm 226.63 0.0 7.164 11.493 9.800 6.641 -1.227 0.000 0.000 0.000 -0.000 -0.000 974 969 sd5 226.73 0.0 6.013 11.496 10.785 6.643 -1.135 0.000 0.000 0.000 -0.000 0.000 975 970 q6 227.09 -1.0 3.219 11.509 13.073 6.648 -0.871 0.000 0.000 0.000 -0.000 0.000 976 971 ge 227.09 0.0 3.219 11.509 13.073 6.648 -0.871 0.000 0.000 0.000 -0.000 0.000 977 972 sd7 227.51 0.0 1.468 11.540 13.954 6.653 -0.636 0.000 0.000 0.000 -0.000 0.000 978 973 dip 227.51 0.0 1.468 11.540 13.954 6.653 -0.636 0.000 0.000 0.000 0.000 0.000 979 974 bend0 228.56 0.5 0.771 11.819 15.894 6.664 -0.853 0.000 0.000 0.000 -0.000 0.000 980 975 sd7 228.98 0.0 1.963 11.874 16.519 6.668 -0.633 0.000 0.000 0.000 -0.000 0.000 981 976 gs 228.98 0.0 1.963 11.874 16.519 6.668 -0.633 0.000 0.000 0.000 -0.000 0.000 982 977 q9 229.34 -1.0 4.277 11.895 13.980 6.672 -0.501 0.000 0.000 0.000 -0.000 0.000 983 978 sd8 229.44 0.0 5.318 11.898 12.552 6.673 -0.479 0.000 0.000 0.000 -0.000 0.000 984 979 sx9 229.60 -1.5 7.228 11.902 10.432 6.675 -0.443 0.000 0.000 0.000 -0.000 0.000 985 980 hcm 229.60 0.0 7.228 11.902 10.432 6.675 -0.443 0.000 0.000 0.000 0.000 0.000 986 981 vcm 229.60 0.0 7.228 11.902 10.432 6.675 -0.443 0.000 0.000 0.000 -0.000 -0.000 987 982 sdb11 229.78 0.0 9.610 11.905 8.384 6.678 -0.405 0.000 0.000 0.000 -0.000 0.000 988 983 bpm 229.78 2.0 9.610 11.905 8.384 6.678 -0.405 0.000 0.000 0.000 -0.000 0.000 989 984 sd92 229.98 0.0 12.891 11.908 6.248 6.683 -0.360 0.000 0.000 0.000 -0.000 0.000 990 985 q10 230.34 1.0 16.186 11.912 4.296 6.694 -0.243 0.000 0.000 0.000 -0.000 0.000 991 986 sd8 230.44 0.0 16.149 11.913 4.101 6.698 -0.201 0.000 0.000 0.000 -0.000 0.000 992 987 sx10 230.60 1.5 16.094 11.915 3.809 6.704 -0.135 0.000 0.000 0.000 -0.000 0.000 993 988 hcm 230.60 0.0 16.094 11.915 3.809 6.704 -0.135 0.000 0.000 0.000 0.000 0.000 994 989 vcm 230.60 0.0 16.094 11.915 3.809 6.704 -0.135 0.000 0.000 0.000 -0.000 -0.000 995 990 ge 230.60 0.0 16.094 11.915 3.809 6.704 -0.135 0.000 0.000 0.000 -0.000 0.000 996 991 sd89 230.94 0.0 15.993 11.918 3.265 6.720 0.007 0.000 0.000 0.000 -0.000 0.000 997 992 bpm 230.94 2.0 15.993 11.918 3.265 6.720 0.007 0.000 0.000 0.000 -0.000 0.000 998 993 sdac1 232.43 0.0 15.723 11.933 2.153 6.814 0.624 0.000 0.000 0.000 -0.000 0.000 999 994 sdac1 233.91 0.0 15.734 11.948 3.089 6.912 1.242 0.000 0.000 0.000 -0.000 0.000 1000 995 bpm 233.91 2.0 15.734 11.948 3.089 6.912 1.242 0.000 0.000 0.000 -0.000 0.000 1001 996 sd88 234.25 0.0 15.776 11.951 3.594 6.928 1.384 0.000 0.000 0.000 -0.000 0.000 1002 997 gs 234.25 0.0 15.776 11.951 3.594 6.928 1.384 0.000 0.000 0.000 -0.000 0.000 1003 998 sx10 234.41 1.5 15.787 11.953 3.871 6.935 1.450 0.000 0.000 0.000 -0.000 0.000 1004 999 qt 234.41 0.0 15.787 11.953 3.871 6.935 1.450 0.000 0.000 0.000 -0.000 0.000 1005 1000 hcm 234.41 0.0 15.787 11.953 3.871 6.935 1.450 0.000 0.000 0.000 0.000 0.000 1006 1001 vcm 234.41 0.0 15.787 11.953 3.871 6.935 1.450 0.000 0.000 0.000 -0.000 -0.000 1007 1002 sd8 234.51 0.0 15.787 11.954 4.058 6.939 1.491 0.000 0.000 0.000 -0.000 0.000 1008 1003 q10 234.87 1.0 12.463 11.958 5.926 6.951 1.468 0.000 0.000 0.000 -0.000 0.000 1009 1004 sd93 235.12 0.0 8.554 11.962 8.479 6.957 1.331 0.000 0.000 0.000 -0.000 0.000 1010 1005 bpm 235.12 2.0 8.554 11.962 8.479 6.957 1.331 0.000 0.000 0.000 -0.000 0.000 1011 1006 sdb12 235.25 0.0 6.889 11.964 9.925 6.959 1.264 0.000 0.000 0.000 -0.000 0.000 1012 1007 sx9 235.41 -1.5 5.031 11.969 11.934 6.961 1.177 0.000 0.000 0.000 -0.000 0.000 1013 1008 hcm 235.41 0.0 5.031 11.969 11.934 6.961 1.177 0.000 0.000 0.000 0.000 0.000 1014 1009 vcm 235.41 0.0 5.031 11.969 11.934 6.961 1.177 0.000 0.000 0.000 -0.000 -0.000 1015 1010 sd8 235.51 0.0 4.027 11.972 13.276 6.963 1.124 0.000 0.000 0.000 -0.000 0.000 1016 1011 q9 235.87 -1.0 1.801 11.994 15.627 6.966 1.035 0.000 0.000 0.000 -0.000 0.000 1017 1012 ge 235.87 0.0 1.801 11.994 15.627 6.966 1.035 0.000 0.000 0.000 -0.000 0.000 1018 1013 sd7 236.29 0.0 0.682 12.056 14.974 6.971 1.052 0.000 0.000 0.000 -0.000 0.000 1019 1014 dip 236.29 0.0 0.682 12.056 14.974 6.971 1.052 0.000 0.000 0.000 0.000 0.000 1020 1015 bend0 237.34 0.5 1.654 12.333 13.014 6.983 0.289 0.000 0.000 0.000 -0.000 0.000 1021 1016 sd7 237.76 0.0 3.551 12.360 12.142 6.988 0.289 0.000 0.000 0.000 -0.000 0.000 1022 1017 gs 237.76 0.0 3.551 12.360 12.142 6.988 0.289 0.000 0.000 0.000 -0.000 0.000 1023 1018 q6 238.12 -1.0 6.545 12.373 9.981 6.993 0.309 0.000 0.000 0.000 -0.000 0.000 1024 1019 sd5 238.22 0.0 7.778 12.375 9.059 6.995 0.320 0.000 0.000 0.000 -0.000 0.000 1025 1020 sx7 238.38 -1.5 9.984 12.378 7.675 6.998 0.338 0.000 0.000 0.000 -0.000 0.000 1026 1021 hcm 238.38 0.0 9.984 12.378 7.675 6.998 0.338 0.000 0.000 0.000 0.000 0.000 1027 1022 vcm 238.38 0.0 9.984 12.378 7.675 6.998 0.338 0.000 0.000 0.000 -0.000 -0.000 1028 1023 sd41 238.55 0.0 12.677 12.380 6.318 7.002 0.357 0.000 0.000 0.000 -0.000 0.000 1029 1024 bpm 238.55 2.0 12.677 12.380 6.318 7.002 0.357 0.000 0.000 0.000 -0.000 0.000 1030 1025 sdb13 238.67 0.0 14.745 12.381 5.456 7.005 0.370 0.000 0.000 0.000 -0.000 0.000 1031 1026 q7 239.17 1.0 15.671 12.386 4.732 7.022 0.329 0.000 0.000 0.000 -0.000 0.000 1032 1027 sd3 239.27 0.0 14.196 12.387 5.098 7.025 0.302 0.000 0.000 0.000 -0.000 0.000 1033 1028 sx8 239.43 1.5 12.024 12.389 5.711 7.030 0.259 0.000 0.000 0.000 -0.000 0.000 1034 1029 hcm 239.43 0.0 12.024 12.389 5.711 7.030 0.259 0.000 0.000 0.000 0.000 0.000 1035 1030 vcm 239.43 0.0 12.024 12.389 5.711 7.030 0.259 0.000 0.000 0.000 -0.000 -0.000 1036 1031 sd2 239.72 0.0 8.552 12.394 6.940 7.037 0.181 0.000 0.000 0.000 -0.000 0.000 1037 1032 q8 240.08 -1.0 6.405 12.402 7.148 7.045 0.100 0.000 0.000 0.000 -0.000 0.000 1038 1033 ge 240.08 0.0 6.405 12.402 7.148 7.045 0.100 0.000 0.000 0.000 -0.000 0.000 1039 1034 sd87 240.40 0.0 5.864 12.410 6.109 7.053 0.038 0.000 0.000 0.000 -0.000 0.000 1040 1035 bpm 240.40 2.0 5.864 12.410 6.109 7.053 0.038 0.000 0.000 0.000 -0.000 0.000 1041 1036 sd13a 243.54 0.0 3.604 12.530 1.892 7.241 -0.561 0.000 0.000 0.000 -0.000 0.000 1042 1037 sd13a 246.68 0.0 6.854 12.639 8.475 7.384 -1.161 0.000 0.000 0.000 -0.000 0.000 1043 1038 bpm 246.68 2.0 6.854 12.639 8.475 7.384 -1.161 0.000 0.000 0.000 -0.000 0.000 1044 1039 sd87 247.00 0.0 7.496 12.646 9.755 7.390 -1.222 0.000 0.000 0.000 -0.000 0.000 1045 1040 gs 247.00 0.0 7.496 12.646 9.755 7.390 -1.222 0.000 0.000 0.000 -0.000 0.000 1046 1041 q8 247.36 -1.0 10.007 12.653 9.292 7.396 -1.419 0.000 0.000 0.000 -0.000 0.000 1047 1042 sd2 247.65 0.0 14.060 12.657 7.497 7.401 -1.684 0.000 0.000 0.000 -0.000 0.000 1048 1043 sx6 247.81 1.5 16.627 12.658 6.585 7.405 -1.832 0.000 0.000 0.000 -0.000 0.000 1049 1044 hcm 247.81 0.0 16.627 12.658 6.585 7.405 -1.832 0.000 0.000 0.000 0.000 0.000 1050 1045 vcm 247.81 0.0 16.627 12.658 6.585 7.405 -1.832 0.000 0.000 0.000 -0.000 -0.000 1051 1046 sd3 247.92 0.0 18.395 12.659 6.031 7.407 -1.926 0.000 0.000 0.000 -0.000 0.000 1052 1047 q7 248.41 1.0 17.468 12.663 6.455 7.421 -1.874 0.000 0.000 0.000 -0.000 0.000 1053 1048 sdb14 248.58 0.0 14.162 12.665 7.733 7.425 -1.686 0.000 0.000 0.000 -0.000 0.000 1054 1049 bpm 248.58 2.0 14.162 12.665 7.733 7.425 -1.686 0.000 0.000 0.000 -0.000 0.000 1055 1050 sd43 248.70 0.0 11.912 12.667 8.772 7.427 -1.545 0.000 0.000 0.000 -0.000 0.000 1056 1051 sx5 248.86 -1.5 9.303 12.669 10.219 7.430 -1.364 0.000 0.000 0.000 -0.000 0.000 1057 1052 hcm 248.86 0.0 9.303 12.669 10.219 7.430 -1.364 0.000 0.000 0.000 0.000 0.000 1058 1053 vcm 248.86 0.0 9.303 12.669 10.219 7.430 -1.364 0.000 0.000 0.000 -0.000 -0.000 1059 1054 sd5 248.96 0.0 7.831 12.671 11.192 7.431 -1.251 0.000 0.000 0.000 -0.000 0.000 1060 1055 q6 249.32 -1.0 4.247 12.681 13.365 7.436 -0.916 0.000 0.000 0.000 -0.000 0.000 1061 1056 ge 249.32 0.0 4.247 12.681 13.365 7.436 -0.916 0.000 0.000 0.000 -0.000 0.000 1062 1057 sd7 249.74 0.0 1.949 12.704 14.043 7.441 -0.602 0.000 0.000 0.000 -0.000 0.000 1063 1058 dip 249.74 0.0 1.949 12.704 14.043 7.441 -0.602 0.000 0.000 0.000 0.000 0.000 1064 1059 bend0 250.80 0.5 0.605 12.997 15.421 7.452 -0.625 0.000 0.000 0.000 -0.000 0.000 1065 1060 sd7 251.22 0.0 1.826 13.063 15.815 7.457 -0.327 0.000 0.000 0.000 -0.000 0.000 1066 1061 gs 251.22 0.0 1.826 13.063 15.815 7.457 -0.327 0.000 0.000 0.000 -0.000 0.000 1067 1062 q4 251.58 -1.0 4.178 13.084 13.690 7.460 -0.091 0.000 0.000 0.000 -0.000 0.000 1068 1063 sd8 251.68 0.0 5.201 13.087 12.506 7.462 -0.029 0.000 0.000 0.000 -0.000 0.000 1069 1064 sx3 251.84 -1.5 7.081 13.092 10.726 7.464 0.069 0.000 0.000 0.000 -0.000 0.000 1070 1065 hcm 251.84 0.0 7.081 13.092 10.726 7.464 0.069 0.000 0.000 0.000 0.000 0.000 1071 1066 vcm 251.84 0.0 7.081 13.092 10.726 7.464 0.069 0.000 0.000 0.000 -0.000 -0.000 1072 1067 sdb15 252.01 0.0 9.435 13.095 8.969 7.467 0.175 0.000 0.000 0.000 -0.000 0.000 1073 1068 bpm 252.01 2.0 9.435 13.095 8.969 7.467 0.175 0.000 0.000 0.000 -0.000 0.000 1074 1069 sd9a 252.21 0.0 12.677 13.098 7.095 7.471 0.301 0.000 0.000 0.000 -0.000 0.000 1075 1070 q5 252.57 1.0 16.071 13.102 5.580 7.480 0.483 0.000 0.000 0.000 -0.000 0.000 1076 1071 sd10 252.94 0.0 16.219 13.105 5.456 7.491 0.621 0.000 0.000 0.000 -0.000 0.000 1077 1072 sx4 253.10 1.5 16.276 13.107 5.422 7.495 0.680 0.000 0.000 0.000 -0.000 0.000 1078 1073 qt 253.10 0.0 16.276 13.107 5.422 7.495 0.680 0.000 0.000 0.000 -0.000 0.000 1079 1074 hcm 253.10 0.0 16.276 13.107 5.422 7.495 0.680 0.000 0.000 0.000 0.000 0.000 1080 1075 vcm 253.10 0.0 16.276 13.107 5.422 7.495 0.680 0.000 0.000 0.000 -0.000 -0.000 1081 1076 sdb4 253.30 0.0 16.336 13.109 5.399 7.501 0.754 0.000 0.000 0.000 -0.000 0.000 1082 1077 bpm 253.30 2.0 16.336 13.109 5.399 7.501 0.754 0.000 0.000 0.000 -0.000 0.000 1083 1078 sd10a 253.47 0.0 16.393 13.111 5.390 7.506 0.818 0.000 0.000 0.000 -0.000 0.000 1084 1079 q5 253.83 1.0 13.154 13.114 6.684 7.516 0.858 0.000 0.000 0.000 -0.000 0.000 1085 1080 sd93 254.08 0.0 9.238 13.118 8.776 7.521 0.820 0.000 0.000 0.000 -0.000 0.000 1086 1081 bpm 254.08 2.0 9.238 13.118 8.776 7.521 0.820 0.000 0.000 0.000 -0.000 0.000 1087 1082 sdb17 254.21 0.0 7.551 13.120 9.928 7.524 0.802 0.000 0.000 0.000 -0.000 0.000 1088 1083 sx3 254.37 -1.5 5.648 13.124 11.506 7.526 0.778 0.000 0.000 0.000 -0.000 0.000 1089 1084 hcm 254.37 0.0 5.648 13.124 11.506 7.526 0.778 0.000 0.000 0.000 0.000 0.000 1090 1085 vcm 254.37 0.0 5.648 13.124 11.506 7.526 0.778 0.000 0.000 0.000 -0.000 -0.000 1091 1086 sd8 254.47 0.0 4.606 13.127 12.548 7.527 0.763 0.000 0.000 0.000 -0.000 0.000 1092 1087 q4 254.83 -1.0 2.197 13.146 14.332 7.531 0.771 0.000 0.000 0.000 -0.000 0.000 1093 1088 ge 254.83 0.0 2.197 13.146 14.332 7.531 0.771 0.000 0.000 0.000 -0.000 0.000 1094 1089 sd7 255.25 0.0 0.863 13.195 13.801 7.536 0.852 0.000 0.000 0.000 -0.000 0.000 1095 1090 dip 255.25 0.0 0.863 13.195 13.801 7.536 0.852 0.000 0.000 0.000 0.000 0.000 1096 1091 bend0 256.30 0.5 1.347 13.483 12.173 7.549 0.250 0.000 0.000 0.000 -0.000 0.000 1097 1092 sd6 257.01 0.0 4.769 13.529 10.960 7.559 0.360 0.000 0.000 0.000 -0.000 0.000 1098 1093 gs 257.01 0.0 4.769 13.529 10.960 7.559 0.360 0.000 0.000 0.000 -0.000 0.000 1099 1094 sx2 257.17 -1.5 5.888 13.533 10.702 7.561 0.385 0.000 0.000 0.000 -0.000 0.000 1100 1095 hcm 257.17 0.0 5.888 13.533 10.702 7.561 0.385 0.000 0.000 0.000 0.000 0.000 1101 1096 vcm 257.17 0.0 5.888 13.533 10.702 7.561 0.385 0.000 0.000 0.000 -0.000 -0.000 1102 1097 sd5 257.27 0.0 6.653 13.536 10.542 7.563 0.401 0.000 0.000 0.000 -0.000 0.000 1103 1098 q3 257.63 -1.0 10.575 13.543 9.157 7.569 0.475 0.000 0.000 0.000 -0.000 0.000 1104 1099 sd141 258.06 0.0 17.769 13.548 6.814 7.577 0.587 0.000 0.000 0.000 -0.000 0.000 1105 1100 bpm 258.06 2.0 17.769 13.548 6.814 7.577 0.587 0.000 0.000 0.000 -0.000 0.000 1106 1101 sdb18 258.18 0.0 20.099 13.549 6.233 7.580 0.618 0.000 0.000 0.000 -0.000 0.000 1107 1102 q2 258.68 1.0 21.771 13.553 6.322 7.594 0.619 0.000 0.000 0.000 -0.000 0.000 1108 1103 sd3 258.78 0.0 20.347 13.553 6.857 7.596 0.594 0.000 0.000 0.000 -0.000 0.000 1109 1104 sx1 258.94 1.5 18.203 13.555 7.749 7.600 0.554 0.000 0.000 0.000 -0.000 0.000 1110 1105 qt 258.94 0.0 18.203 13.555 7.749 7.600 0.554 0.000 0.000 0.000 -0.000 0.000 1111 1106 hcm 258.94 0.0 18.203 13.555 7.749 7.600 0.554 0.000 0.000 0.000 0.000 0.000 1112 1107 vcm 258.94 0.0 18.203 13.555 7.749 7.600 0.554 0.000 0.000 0.000 -0.000 -0.000 1113 1108 sd2 259.23 0.0 14.621 13.557 9.526 7.605 0.481 0.000 0.000 0.000 -0.000 0.000 1114 1109 q1 259.59 -1.0 12.477 13.562 10.534 7.611 0.422 0.000 0.000 0.000 -0.000 0.000 1115 1110 ge 259.59 0.0 12.477 13.562 10.534 7.611 0.422 0.000 0.000 0.000 -0.000 0.000 1116 1111 sdc12 259.91 0.0 12.232 13.566 10.178 7.615 0.397 0.000 0.000 0.000 -0.000 0.000 1117 1112 bpm 259.91 2.0 12.232 13.566 10.178 7.615 0.397 0.000 0.000 0.000 -0.000 0.000 1118 1113 sd1e 265.57 0.0 11.051 13.647 8.179 7.722 -0.050 0.000 0.000 0.000 -0.000 0.000 1119 1114 sd1e 271.23 0.0 15.811 13.717 14.266 7.810 -0.496 0.000 0.000 0.000 -0.000 0.000 1120 1115 bpm 271.23 2.0 15.811 13.717 14.266 7.810 -0.496 0.000 0.000 0.000 -0.000 0.000 1121 1116 sdb1 271.55 0.0 16.259 13.720 14.853 7.813 -0.521 0.000 0.000 0.000 -0.000 0.000 1122 1117 gs 271.55 0.0 16.259 13.720 14.853 7.813 -0.521 0.000 0.000 0.000 -0.000 0.000 1123 1118 q1 271.91 -1.0 19.204 13.724 13.508 7.817 -0.587 0.000 0.000 0.000 -0.000 0.000 1124 1119 sd2 272.20 0.0 24.024 13.726 11.034 7.821 -0.671 0.000 0.000 0.000 -0.000 0.000 1125 1120 sx1 272.36 1.5 26.928 13.727 9.778 7.823 -0.718 0.000 0.000 0.000 -0.000 0.000 1126 1121 qt 272.36 0.0 26.928 13.727 9.778 7.823 -0.718 0.000 0.000 0.000 -0.000 0.000 1127 1122 hcm 272.36 0.0 26.928 13.727 9.778 7.823 -0.718 0.000 0.000 0.000 0.000 0.000 1128 1123 vcm 272.36 0.0 26.928 13.727 9.778 7.823 -0.718 0.000 0.000 0.000 -0.000 -0.000 1129 1124 sd3 272.46 0.0 28.872 13.727 9.018 7.825 -0.748 0.000 0.000 0.000 -0.000 0.000 1130 1125 q2 272.96 1.0 26.897 13.730 8.863 7.835 -0.740 0.000 0.000 0.000 -0.000 0.000 1131 1126 sdb2 273.13 0.0 22.691 13.731 10.001 7.837 -0.687 0.000 0.000 0.000 -0.000 0.000 1132 1127 bpm 273.13 2.0 22.691 13.731 10.001 7.837 -0.687 0.000 0.000 0.000 -0.000 0.000 1133 1128 sd14a 273.51 0.0 14.356 13.735 12.912 7.843 -0.563 0.000 0.000 0.000 -0.000 0.000 1134 1129 q3 273.87 -1.0 9.166 13.740 14.772 7.847 -0.470 0.000 0.000 0.000 -0.000 0.000 1135 1130 sd5 273.97 0.0 8.151 13.741 14.969 7.848 -0.450 0.000 0.000 0.000 -0.000 0.000 1136 1131 sx2 274.13 -1.5 6.652 13.745 15.300 7.850 -0.418 0.000 0.000 0.000 -0.000 0.000 1137 1132 hcm 274.13 0.0 6.652 13.745 15.300 7.850 -0.418 0.000 0.000 0.000 0.000 0.000 1138 1133 vcm 274.13 0.0 6.652 13.745 15.300 7.850 -0.418 0.000 0.000 0.000 -0.000 -0.000 1139 1134 ge 274.13 0.0 6.652 13.745 15.300 7.850 -0.418 0.000 0.000 0.000 -0.000 0.000 1140 1135 sd6 274.84 0.0 1.909 13.777 16.889 7.857 -0.275 0.000 0.000 0.000 -0.000 0.000 1141 1136 dip 274.84 0.0 1.909 13.777 16.889 7.857 -0.275 0.000 0.000 0.000 0.000 0.000 1142 1137 bend0 275.89 0.5 0.670 14.089 18.893 7.866 -0.868 0.000 0.000 0.000 -0.000 0.000 1143 1138 sd7 276.31 0.0 2.101 14.146 19.491 7.870 -0.799 0.000 0.000 0.000 -0.000 0.000 1144 1139 gs 276.31 0.0 2.101 14.146 19.491 7.870 -0.799 0.000 0.000 0.000 -0.000 0.000 1145 1140 q4 276.67 -1.0 4.785 14.165 16.954 7.873 -0.804 0.000 0.000 0.000 -0.000 0.000 1146 1141 sd8 276.77 0.0 5.947 14.168 15.511 7.874 -0.823 0.000 0.000 0.000 -0.000 0.000 1147 1142 sx3 276.93 -1.5 8.076 14.171 13.345 7.875 -0.854 0.000 0.000 0.000 -0.000 0.000 1148 1143 hcm 276.93 0.0 8.076 14.171 13.345 7.875 -0.854 0.000 0.000 0.000 0.000 0.000 1149 1144 vcm 276.93 0.0 8.076 14.171 13.345 7.875 -0.854 0.000 0.000 0.000 -0.000 -0.000 1150 1145 sdb3 277.11 0.0 10.728 14.174 11.210 7.878 -0.887 0.000 0.000 0.000 -0.000 0.000 1151 1146 bpm 277.11 2.0 10.728 14.174 11.210 7.878 -0.887 0.000 0.000 0.000 -0.000 0.000 1152 1147 sd9a 277.31 0.0 14.374 14.177 8.923 7.881 -0.926 0.000 0.000 0.000 -0.000 0.000 1153 1148 q5 277.67 1.0 18.152 14.180 7.106 7.888 -0.893 0.000 0.000 0.000 -0.000 0.000 1154 1149 sd12 278.04 0.0 18.248 14.184 7.023 7.897 -0.754 0.000 0.000 0.000 -0.000 0.000 1155 1150 sx4 278.20 1.5 18.310 14.185 6.993 7.900 -0.694 0.000 0.000 0.000 -0.000 0.000 1156 1151 qt 278.20 0.0 18.310 14.185 6.993 7.900 -0.694 0.000 0.000 0.000 -0.000 0.000 1157 1152 hcm 278.20 0.0 18.310 14.185 6.993 7.900 -0.694 0.000 0.000 0.000 0.000 0.000 1158 1153 vcm 278.20 0.0 18.310 14.185 6.993 7.900 -0.694 0.000 0.000 0.000 -0.000 -0.000 1159 1154 sdb4 278.40 0.0 18.408 14.187 6.960 7.905 -0.621 0.000 0.000 0.000 -0.000 0.000 1160 1155 bpm 278.40 2.0 18.408 14.187 6.960 7.905 -0.621 0.000 0.000 0.000 -0.000 0.000 1161 1156 sd10a 278.57 0.0 18.498 14.188 6.940 7.909 -0.557 0.000 0.000 0.000 -0.000 0.000 1162 1157 q5 278.93 1.0 14.888 14.192 8.565 7.916 -0.367 0.000 0.000 0.000 -0.000 0.000 1163 1158 sd91 279.18 0.0 10.484 14.195 11.202 7.921 -0.201 0.000 0.000 0.000 -0.000 0.000 1164 1159 bpm 279.18 2.0 10.484 14.195 11.202 7.921 -0.201 0.000 0.000 0.000 -0.000 0.000 1165 1160 sdb5 279.31 0.0 8.584 14.197 12.651 7.922 -0.119 0.000 0.000 0.000 -0.000 0.000 1166 1161 sx3 279.47 -1.5 6.433 14.200 14.638 7.924 -0.013 0.000 0.000 0.000 -0.000 0.000 1167 1162 hcm 279.47 0.0 6.433 14.200 14.638 7.924 -0.013 0.000 0.000 0.000 0.000 0.000 1168 1163 vcm 279.47 0.0 6.433 14.200 14.638 7.924 -0.013 0.000 0.000 0.000 -0.000 -0.000 1169 1164 sd8 279.57 0.0 5.250 14.203 15.955 7.925 0.053 0.000 0.000 0.000 -0.000 0.000 1170 1165 q4 279.93 -1.0 2.507 14.219 18.182 7.928 0.301 0.000 0.000 0.000 -0.000 0.000 1171 1166 ge 279.93 0.0 2.507 14.219 18.182 7.928 0.301 0.000 0.000 0.000 -0.000 0.000 1172 1167 sd7 280.35 0.0 0.958 14.263 17.452 7.932 0.612 0.000 0.000 0.000 -0.000 0.000 1173 1168 dip 280.35 0.0 0.958 14.263 17.452 7.932 0.612 0.000 0.000 0.000 0.000 0.000 1174 1169 bend0 281.40 0.5 1.290 14.567 15.204 7.942 0.580 0.000 0.000 0.000 -0.000 0.000 1175 1170 sd7 281.82 0.0 3.103 14.601 14.188 7.947 0.874 0.000 0.000 0.000 -0.000 0.000 1176 1171 gs 281.82 0.0 3.103 14.601 14.188 7.947 0.874 0.000 0.000 0.000 -0.000 0.000 1177 1172 q6 282.18 -1.0 6.042 14.615 11.658 7.951 1.190 0.000 0.000 0.000 -0.000 0.000 1178 1173 sd5 282.28 0.0 7.253 14.617 10.578 7.953 1.297 0.000 0.000 0.000 -0.000 0.000 1179 1174 sx5 282.44 -1.5 9.443 14.620 8.947 7.955 1.469 0.000 0.000 0.000 -0.000 0.000 1180 1175 hcm 282.44 0.0 9.443 14.620 8.947 7.955 1.469 0.000 0.000 0.000 0.000 0.000 1181 1176 vcm 282.44 0.0 9.443 14.620 8.947 7.955 1.469 0.000 0.000 0.000 -0.000 -0.000 1182 1177 sd41 282.61 0.0 12.146 14.623 7.336 7.959 1.654 0.000 0.000 0.000 -0.000 0.000 1183 1178 bpm 282.61 2.0 12.146 14.623 7.336 7.959 1.654 0.000 0.000 0.000 -0.000 0.000 1184 1179 sdb6 282.73 0.0 14.232 14.624 6.313 7.962 1.784 0.000 0.000 0.000 -0.000 0.000 1185 1180 q7 283.23 1.0 15.511 14.629 5.358 7.976 1.836 0.000 0.000 0.000 -0.000 0.000 1186 1181 sd3 283.33 0.0 14.131 14.630 5.745 7.979 1.746 0.000 0.000 0.000 -0.000 0.000 1187 1182 sx6 283.49 1.5 12.074 14.632 6.398 7.984 1.605 0.000 0.000 0.000 -0.000 0.000 1188 1183 hcm 283.49 0.0 12.074 14.632 6.398 7.984 1.605 0.000 0.000 0.000 0.000 0.000 1189 1184 vcm 283.49 0.0 12.074 14.632 6.398 7.984 1.605 0.000 0.000 0.000 -0.000 -0.000 1190 1185 sd2 283.78 0.0 8.737 14.637 7.714 7.990 1.348 0.000 0.000 0.000 -0.000 0.000 1191 1186 q8 284.14 -1.0 6.742 14.644 7.872 7.997 1.155 0.000 0.000 0.000 -0.000 0.000 1192 1187 ge 284.14 0.0 6.742 14.644 7.872 7.997 1.155 0.000 0.000 0.000 -0.000 0.000 1193 1188 sdc12 284.46 0.0 6.361 14.652 6.661 8.004 1.092 0.000 0.000 0.000 -0.000 0.000 1194 1189 bpm 284.46 2.0 6.361 14.652 6.661 8.004 1.092 0.000 0.000 0.000 -0.000 0.000 1195 1190 sd13k 284.85 0.0 5.953 14.662 5.360 8.015 1.014 0.000 0.000 0.000 -0.000 0.000 1196 1191 ssdm 284.85 0.0 5.953 14.662 5.360 8.015 1.014 0.000 0.000 0.000 -0.000 0.000 1197 1192 sd13i 285.05 0.0 5.770 14.668 4.769 8.021 0.974 0.000 0.000 0.000 -0.000 0.000 1198 1193 sd13i 285.25 0.0 5.602 14.673 4.228 8.028 0.934 0.000 0.000 0.000 -0.000 0.000 1199 1194 sd13i 285.45 0.0 5.452 14.679 3.738 8.036 0.894 0.000 0.000 0.000 -0.000 0.000 1200 1195 sd13i 285.65 0.0 5.318 14.685 3.299 8.045 0.855 0.000 0.000 0.000 -0.000 0.000 1201 1196 sd13i 285.85 0.0 5.200 14.691 2.909 8.055 0.815 0.000 0.000 0.000 -0.000 0.000 1202 1197 sd13i 286.05 0.0 5.099 14.697 2.570 8.067 0.775 0.000 0.000 0.000 -0.000 0.000 1203 1198 sd13i 286.25 0.0 5.014 14.703 2.281 8.080 0.735 0.000 0.000 0.000 -0.000 0.000 1204 1199 sd13i 286.45 0.0 4.946 14.710 2.043 8.095 0.696 0.000 0.000 0.000 -0.000 0.000 1205 1200 sd13i 286.65 0.0 4.895 14.716 1.855 8.111 0.656 0.000 0.000 0.000 -0.000 0.000 1206 1201 sd13i 286.85 0.0 4.860 14.723 1.717 8.129 0.616 0.000 0.000 0.000 -0.000 0.000 1207 1202 sd13i 287.05 0.0 4.842 14.729 1.629 8.148 0.576 0.000 0.000 0.000 -0.000 0.000 1208 1203 sd13i 287.25 0.0 4.840 14.736 1.592 8.168 0.537 0.000 0.000 0.000 -0.000 0.000 1209 1204 sd13i 287.45 0.0 4.854 14.743 1.605 8.188 0.497 0.000 0.000 0.000 -0.000 0.000 1210 1205 sd13j 287.60 0.0 4.876 14.747 1.647 8.203 0.467 0.000 0.000 0.000 -0.000 0.000 1211 1206 sd13j 287.75 0.0 4.907 14.752 1.719 8.217 0.437 0.000 0.000 0.000 -0.000 0.000 1212 1207 sd13i 287.95 0.0 4.963 14.759 1.857 8.235 0.397 0.000 0.000 0.000 -0.000 0.000 1213 1208 sd13i 288.15 0.0 5.036 14.765 2.046 8.251 0.358 0.000 0.000 0.000 -0.000 0.000 1214 1209 sd13i 288.35 0.0 5.125 14.771 2.286 8.266 0.318 0.000 0.000 0.000 -0.000 0.000 1215 1210 sd13i 288.55 0.0 5.231 14.778 2.576 8.279 0.278 0.000 0.000 0.000 -0.000 0.000 1216 1211 sd13i 288.75 0.0 5.353 14.784 2.916 8.291 0.238 0.000 0.000 0.000 -0.000 0.000 1217 1212 sd13i 288.95 0.0 5.491 14.789 3.306 8.301 0.199 0.000 0.000 0.000 -0.000 0.000 1218 1213 sd13i 289.15 0.0 5.647 14.795 3.746 8.310 0.159 0.000 0.000 0.000 -0.000 0.000 1219 1214 sd13i 289.35 0.0 5.818 14.801 4.237 8.318 0.119 0.000 0.000 0.000 -0.000 0.000 1220 1215 sd13i 289.55 0.0 6.007 14.806 4.779 8.325 0.079 0.000 0.000 0.000 -0.000 0.000 1221 1216 sd13i 289.75 0.0 6.212 14.811 5.370 8.331 0.039 0.000 0.000 0.000 -0.000 0.000 1222 1217 sd13i 289.95 0.0 6.433 14.816 6.012 8.337 -0.000 0.000 0.000 0.000 -0.000 0.000 1223 1218 sd13i 290.15 0.0 6.671 14.821 6.704 8.342 -0.040 0.000 0.000 0.000 -0.000 0.000 1224 1219 sd13i 290.35 0.0 6.925 14.826 7.447 8.347 -0.080 0.000 0.000 0.000 -0.000 0.000 1225 1220 esdm 290.35 0.0 6.925 14.826 7.447 8.347 -0.080 0.000 0.000 0.000 -0.000 0.000 1226 1221 eesdm 290.35 0.0 6.925 14.826 7.447 8.347 -0.080 0.000 0.000 0.000 -0.000 0.000 1227 1222 sd13k 290.74 0.0 7.471 14.835 9.045 8.354 -0.158 0.000 0.000 0.000 -0.000 0.000 1228 1223 bpm 290.74 2.0 7.471 14.835 9.045 8.354 -0.158 0.000 0.000 0.000 -0.000 0.000 1229 1224 sd87 291.06 0.0 7.966 14.841 10.500 8.359 -0.222 0.000 0.000 0.000 -0.000 0.000 1230 1225 gs 291.06 0.0 7.966 14.841 10.500 8.359 -0.222 0.000 0.000 0.000 -0.000 0.000 1231 1226 q8 291.42 -1.0 10.369 14.848 10.085 8.365 -0.318 0.000 0.000 0.000 -0.000 0.000 1232 1227 sd2 291.71 0.0 14.358 14.852 8.198 8.370 -0.419 0.000 0.000 0.000 -0.000 0.000 1233 1228 sx8 291.87 1.5 16.853 14.853 7.244 8.373 -0.475 0.000 0.000 0.000 -0.000 0.000 1234 1229 qt 291.87 0.0 16.853 14.853 7.244 8.373 -0.475 0.000 0.000 0.000 -0.000 0.000 1235 1230 hcm 291.87 0.0 16.853 14.853 7.244 8.373 -0.475 0.000 0.000 0.000 0.000 0.000 1236 1231 vcm 291.87 0.0 16.853 14.853 7.244 8.373 -0.475 0.000 0.000 0.000 -0.000 -0.000 1237 1232 sd3 291.98 0.0 18.554 14.854 6.667 8.375 -0.510 0.000 0.000 0.000 -0.000 0.000 1238 1233 q7 292.47 1.0 17.245 14.858 7.313 8.388 -0.543 0.000 0.000 0.000 -0.000 0.000 1239 1234 sdb7 292.64 0.0 13.853 14.860 8.815 8.391 -0.506 0.000 0.000 0.000 -0.000 0.000 1240 1235 bpm 292.64 2.0 13.853 14.860 8.815 8.391 -0.506 0.000 0.000 0.000 -0.000 0.000 1241 1236 sd42 292.76 0.0 11.559 14.861 10.037 8.393 -0.478 0.000 0.000 0.000 -0.000 0.000 1242 1237 sx7 292.92 -1.5 8.921 14.864 11.729 8.396 -0.443 0.000 0.000 0.000 -0.000 0.000 1243 1238 hcm 292.92 0.0 8.921 14.864 11.729 8.396 -0.443 0.000 0.000 0.000 0.000 0.000 1244 1239 vcm 292.92 0.0 8.921 14.864 11.729 8.396 -0.443 0.000 0.000 0.000 -0.000 -0.000 1245 1240 sd5 293.02 0.0 7.445 14.866 12.860 8.397 -0.421 0.000 0.000 0.000 -0.000 0.000 1246 1241 q6 293.38 -1.0 3.854 14.877 15.405 8.401 -0.367 0.000 0.000 0.000 -0.000 0.000 1247 1242 ge 293.38 0.0 3.854 14.877 15.405 8.401 -0.367 0.000 0.000 0.000 -0.000 0.000 1248 1243 sd7 293.80 0.0 1.597 14.904 16.233 8.405 -0.333 0.000 0.000 0.000 -0.000 0.000 1249 1244 dip 293.80 0.0 1.597 14.904 16.233 8.405 -0.333 0.000 0.000 0.000 0.000 0.000 1250 1245 bend0 294.86 0.5 0.855 15.227 17.918 8.415 -1.053 0.000 0.000 0.000 -0.000 0.000 1251 1246 sd7 295.28 0.0 2.517 15.273 18.396 8.419 -1.034 0.000 0.000 0.000 -0.000 0.000 1252 1247 gs 295.28 0.0 2.517 15.273 18.396 8.419 -1.034 0.000 0.000 0.000 -0.000 0.000 1253 1248 q9 295.64 -1.0 5.652 15.289 15.397 8.422 -1.120 0.000 0.000 0.000 -0.000 0.000 1254 1249 sd8 295.74 0.0 7.053 15.292 13.772 8.423 -1.173 0.000 0.000 0.000 -0.000 0.000 1255 1250 sx9 295.90 -1.5 9.615 15.295 11.376 8.425 -1.258 0.000 0.000 0.000 -0.000 0.000 1256 1251 hcm 295.90 0.0 9.615 15.295 11.376 8.425 -1.258 0.000 0.000 0.000 0.000 0.000 1257 1252 vcm 295.90 0.0 9.615 15.295 11.376 8.425 -1.258 0.000 0.000 0.000 -0.000 -0.000 1258 1253 sdb8 296.07 0.0 12.804 15.297 9.075 8.428 -1.349 0.000 0.000 0.000 -0.000 0.000 1259 1254 bpm 296.07 2.0 12.804 15.297 9.075 8.428 -1.349 0.000 0.000 0.000 -0.000 0.000 1260 1255 sd9a 296.27 0.0 17.188 15.299 6.687 8.432 -1.456 0.000 0.000 0.000 -0.000 0.000 1261 1256 q10 296.63 1.0 21.598 15.302 4.461 8.443 -1.476 0.000 0.000 0.000 -0.000 0.000 1262 1257 sd8 296.73 0.0 21.552 15.303 4.215 8.446 -1.434 0.000 0.000 0.000 -0.000 0.000 1263 1258 sx10 296.89 1.5 21.498 15.304 3.843 8.453 -1.368 0.000 0.000 0.000 -0.000 0.000 1264 1259 qt 296.89 0.0 21.498 15.304 3.843 8.453 -1.368 0.000 0.000 0.000 -0.000 0.000 1265 1260 hcm 296.89 0.0 21.498 15.304 3.843 8.453 -1.368 0.000 0.000 0.000 0.000 0.000 1266 1261 vcm 296.89 0.0 21.498 15.304 3.843 8.453 -1.368 0.000 0.000 0.000 -0.000 -0.000 1267 1262 ge 296.89 0.0 21.498 15.304 3.843 8.453 -1.368 0.000 0.000 0.000 -0.000 0.000 1268 1263 sdc44 297.23 0.0 21.432 15.307 3.144 8.468 -1.226 0.000 0.000 0.000 -0.000 0.000 1269 1264 bpm 297.23 2.0 21.432 15.307 3.144 8.468 -1.226 0.000 0.000 0.000 -0.000 0.000 1270 1265 sdac4 297.82 0.0 21.343 15.311 2.263 8.504 -0.984 0.000 0.000 0.000 -0.000 0.000 1271 1266 ssdac 297.82 0.0 21.343 15.311 2.263 8.504 -0.984 0.000 0.000 0.000 -0.000 0.000 1272 1267 sdac2 298.02 0.0 21.320 15.313 2.054 8.518 -0.901 0.000 0.000 0.000 -0.000 0.000 1273 1268 sdac2 298.22 0.0 21.301 15.314 1.893 8.535 -0.818 0.000 0.000 0.000 -0.000 0.000 1274 1269 sdac2 298.42 0.0 21.285 15.315 1.779 8.552 -0.735 0.000 0.000 0.000 -0.000 0.000 1275 1270 sdac2 298.62 0.0 21.274 15.317 1.712 8.570 -0.652 0.000 0.000 0.000 -0.000 0.000 1276 1271 sdac2 298.82 0.0 21.266 15.318 1.692 8.589 -0.569 0.000 0.000 0.000 -0.000 0.000 1277 1272 sdac2 299.02 0.0 21.262 15.320 1.720 8.608 -0.486 0.000 0.000 0.000 -0.000 0.000 1278 1273 sdac2 299.22 0.0 21.261 15.321 1.795 8.626 -0.403 0.000 0.000 0.000 -0.000 0.000 1279 1274 sdac2 299.42 0.0 21.265 15.323 1.917 8.643 -0.320 0.000 0.000 0.000 -0.000 0.000 1280 1275 sdac2 299.62 0.0 21.272 15.324 2.087 8.659 -0.237 0.000 0.000 0.000 -0.000 0.000 1281 1276 esdac 299.62 0.0 21.272 15.324 2.087 8.659 -0.237 0.000 0.000 0.000 -0.000 0.000 1282 1277 sdac4 300.20 0.0 21.314 15.329 2.853 8.697 0.006 0.000 0.000 0.000 -0.000 0.000 1283 1278 bpm 300.20 2.0 21.314 15.329 2.853 8.697 0.006 0.000 0.000 0.000 -0.000 0.000 1284 1279 sdc45 300.54 0.0 21.354 15.331 3.486 8.715 0.147 0.000 0.000 0.000 -0.000 0.000 1285 1280 gs 300.54 0.0 21.354 15.331 3.486 8.715 0.147 0.000 0.000 0.000 -0.000 0.000 1286 1281 sx10 300.70 1.5 21.374 15.333 3.831 8.722 0.214 0.000 0.000 0.000 -0.000 0.000 1287 1282 hcm 300.70 0.0 21.374 15.333 3.831 8.722 0.214 0.000 0.000 0.000 0.000 0.000 1288 1283 vcm 300.70 0.0 21.374 15.333 3.831 8.722 0.214 0.000 0.000 0.000 -0.000 -0.000 1289 1284 sd8 300.80 0.0 21.386 15.333 4.062 8.726 0.255 0.000 0.000 0.000 -0.000 0.000 1290 1285 q10 301.16 1.0 16.915 15.336 6.134 8.738 0.370 0.000 0.000 0.000 -0.000 0.000 1291 1286 sd91 301.41 0.0 11.627 15.339 8.911 8.743 0.424 0.000 0.000 0.000 -0.000 0.000 1292 1287 bpm 301.41 2.0 11.627 15.339 8.911 8.743 0.424 0.000 0.000 0.000 -0.000 0.000 1293 1288 sd42 301.54 0.0 9.367 15.341 10.492 8.745 0.451 0.000 0.000 0.000 -0.000 0.000 1294 1289 sx9 301.70 -1.5 6.839 15.344 12.703 8.747 0.485 0.000 0.000 0.000 -0.000 0.000 1295 1290 hcm 301.70 0.0 6.839 15.344 12.703 8.747 0.485 0.000 0.000 0.000 0.000 0.000 1296 1291 vcm 301.70 0.0 6.839 15.344 12.703 8.747 0.485 0.000 0.000 0.000 -0.000 -0.000 1297 1292 sd8 301.80 0.0 5.466 15.347 14.189 8.748 0.506 0.000 0.000 0.000 -0.000 0.000 1298 1293 q9 302.16 -1.0 2.398 15.363 16.910 8.752 0.636 0.000 0.000 0.000 -0.000 0.000 1299 1294 ge 302.16 0.0 2.398 15.363 16.910 8.752 0.636 0.000 0.000 0.000 -0.000 0.000 1300 1295 sd7 302.58 0.0 0.789 15.413 16.427 8.756 0.854 0.000 0.000 0.000 -0.000 0.000 1301 1296 dip 302.58 0.0 0.789 15.413 16.427 8.756 0.854 0.000 0.000 0.000 0.000 0.000 1302 1297 bend0 303.63 0.5 1.721 15.735 14.797 8.767 0.593 0.000 0.000 0.000 -0.000 0.000 1303 1298 sd7 304.05 0.0 4.077 15.760 14.012 8.771 0.795 0.000 0.000 0.000 -0.000 0.000 1304 1299 gs 304.05 0.0 4.077 15.760 14.012 8.771 0.795 0.000 0.000 0.000 -0.000 0.000 1305 1300 q6 304.41 -1.0 7.802 15.771 11.676 8.776 1.024 0.000 0.000 0.000 -0.000 0.000 1306 1301 sd5 304.51 0.0 9.331 15.772 10.644 8.777 1.105 0.000 0.000 0.000 -0.000 0.000 1307 1302 sx7 304.67 -1.5 12.091 15.775 9.076 8.780 1.235 0.000 0.000 0.000 -0.000 0.000 1308 1303 hcm 304.67 0.0 12.091 15.775 9.076 8.780 1.235 0.000 0.000 0.000 0.000 0.000 1309 1304 vcm 304.67 0.0 12.091 15.775 9.076 8.780 1.235 0.000 0.000 0.000 -0.000 -0.000 1310 1305 sd41 304.84 0.0 15.491 15.777 7.517 8.783 1.375 0.000 0.000 0.000 -0.000 0.000 1311 1306 bpm 304.84 2.0 15.491 15.777 7.517 8.783 1.375 0.000 0.000 0.000 -0.000 0.000 1312 1307 sdb9 304.96 0.0 18.108 15.778 6.523 8.786 1.472 0.000 0.000 0.000 -0.000 0.000 1313 1308 q7 305.46 1.0 19.571 15.782 5.776 8.800 1.481 0.000 0.000 0.000 -0.000 0.000 1314 1309 sd3 305.56 0.0 17.794 15.783 6.243 8.803 1.401 0.000 0.000 0.000 -0.000 0.000 1315 1310 sx8 305.72 1.5 15.149 15.784 7.032 8.806 1.275 0.000 0.000 0.000 -0.000 0.000 1316 1311 qt 305.72 0.0 15.149 15.784 7.032 8.806 1.275 0.000 0.000 0.000 -0.000 0.000 1317 1312 hcm 305.72 0.0 15.149 15.784 7.032 8.806 1.275 0.000 0.000 0.000 0.000 0.000 1318 1313 vcm 305.72 0.0 15.149 15.784 7.032 8.806 1.275 0.000 0.000 0.000 -0.000 -0.000 1319 1314 sd2 306.01 0.0 10.863 15.788 8.626 8.812 1.047 0.000 0.000 0.000 -0.000 0.000 1320 1315 q8 306.37 -1.0 8.241 15.794 8.960 8.819 0.860 0.000 0.000 0.000 -0.000 0.000 1321 1316 ge 306.37 0.0 8.241 15.794 8.960 8.819 0.860 0.000 0.000 0.000 -0.000 0.000 1322 1317 sd87 306.69 0.0 7.630 15.801 7.708 8.825 0.775 0.000 0.000 0.000 -0.000 0.000 1323 1318 bpm 306.69 2.0 7.630 15.801 7.708 8.825 0.775 0.000 0.000 0.000 -0.000 0.000 1324 1319 sd13a 309.83 0.0 4.260 15.893 1.735 8.989 -0.059 0.000 0.000 0.000 -0.000 0.000 1325 1320 sd13a 312.98 0.0 5.640 16.004 7.158 9.164 -0.892 0.000 0.000 0.000 -0.000 0.000 1326 1321 bpm 312.98 2.0 5.640 16.004 7.158 9.164 -0.892 0.000 0.000 0.000 -0.000 0.000 1327 1322 sd87 313.30 0.0 6.048 16.013 8.354 9.171 -0.977 0.000 0.000 0.000 -0.000 0.000 1328 1323 gs 313.30 0.0 6.048 16.013 8.354 9.171 -0.977 0.000 0.000 0.000 -0.000 0.000 1329 1324 q8 313.66 -1.0 7.937 16.021 8.079 9.178 -1.176 0.000 0.000 0.000 -0.000 0.000 1330 1325 sd2 313.95 0.0 11.055 16.026 6.617 9.184 -1.424 0.000 0.000 0.000 -0.000 0.000 1331 1326 sx8 314.11 1.5 13.028 16.028 5.870 9.188 -1.562 0.000 0.000 0.000 -0.000 0.000 1332 1327 hcm 314.11 0.0 13.028 16.028 5.870 9.188 -1.562 0.000 0.000 0.000 0.000 0.000 1333 1328 vcm 314.11 0.0 13.028 16.028 5.870 9.188 -1.562 0.000 0.000 0.000 -0.000 -0.000 1334 1329 sd3 314.21 0.0 14.389 16.030 5.415 9.191 -1.651 0.000 0.000 0.000 -0.000 0.000 1335 1330 q7 314.70 1.0 13.569 16.035 6.029 9.206 -1.639 0.000 0.000 0.000 -0.000 0.000 1336 1331 sdb10 314.87 0.0 10.970 16.037 7.303 9.210 -1.487 0.000 0.000 0.000 -0.000 0.000 1337 1332 bpm 314.87 2.0 10.970 16.037 7.303 9.210 -1.487 0.000 0.000 0.000 -0.000 0.000 1338 1333 sd42 315.00 0.0 9.207 16.039 8.343 9.213 -1.373 0.000 0.000 0.000 -0.000 0.000 1339 1334 sx7 315.16 -1.5 7.164 16.042 9.801 9.215 -1.226 0.000 0.000 0.000 -0.000 0.000 1340 1335 hcm 315.16 0.0 7.164 16.042 9.801 9.215 -1.226 0.000 0.000 0.000 0.000 0.000 1341 1336 vcm 315.16 0.0 7.164 16.042 9.801 9.215 -1.226 0.000 0.000 0.000 -0.000 -0.000 1342 1337 sd5 315.26 0.0 6.012 16.045 10.786 9.217 -1.134 0.000 0.000 0.000 -0.000 0.000 1343 1338 q6 315.62 -1.0 3.219 16.058 13.073 9.222 -0.871 0.000 0.000 0.000 -0.000 0.000 1344 1339 ge 315.62 0.0 3.219 16.058 13.073 9.222 -0.871 0.000 0.000 0.000 -0.000 0.000 1345 1340 sd7 316.04 0.0 1.468 16.089 13.955 9.227 -0.636 0.000 0.000 0.000 -0.000 0.000 1346 1341 dip 316.04 0.0 1.468 16.089 13.955 9.227 -0.636 0.000 0.000 0.000 0.000 0.000 1347 1342 bend0 317.09 0.5 0.771 16.368 15.895 9.238 -0.853 0.000 0.000 0.000 -0.000 0.000 1348 1343 sd7 317.51 0.0 1.964 16.423 16.520 9.242 -0.633 0.000 0.000 0.000 -0.000 0.000 1349 1344 gs 317.51 0.0 1.964 16.423 16.520 9.242 -0.633 0.000 0.000 0.000 -0.000 0.000 1350 1345 q9 317.87 -1.0 4.278 16.443 13.981 9.246 -0.501 0.000 0.000 0.000 -0.000 0.000 1351 1346 sd8 317.97 0.0 5.319 16.447 12.552 9.247 -0.479 0.000 0.000 0.000 -0.000 0.000 1352 1347 sx9 318.13 -1.5 7.229 16.451 10.433 9.249 -0.444 0.000 0.000 0.000 -0.000 0.000 1353 1348 hcm 318.13 0.0 7.229 16.451 10.433 9.249 -0.444 0.000 0.000 0.000 0.000 0.000 1354 1349 vcm 318.13 0.0 7.229 16.451 10.433 9.249 -0.444 0.000 0.000 0.000 -0.000 -0.000 1355 1350 sdb11 318.30 0.0 9.611 16.454 8.384 9.252 -0.406 0.000 0.000 0.000 -0.000 0.000 1356 1351 bpm 318.30 2.0 9.611 16.454 8.384 9.252 -0.406 0.000 0.000 0.000 -0.000 0.000 1357 1352 sd92 318.51 0.0 12.892 16.457 6.248 9.257 -0.360 0.000 0.000 0.000 -0.000 0.000 1358 1353 q10 318.87 1.0 16.187 16.461 4.296 9.268 -0.243 0.000 0.000 0.000 -0.000 0.000 1359 1354 sd8 318.97 0.0 16.150 16.462 4.101 9.272 -0.202 0.000 0.000 0.000 -0.000 0.000 1360 1355 sx10 319.13 1.5 16.096 16.463 3.809 9.278 -0.135 0.000 0.000 0.000 -0.000 0.000 1361 1356 hcm 319.13 0.0 16.096 16.463 3.809 9.278 -0.135 0.000 0.000 0.000 0.000 0.000 1362 1357 vcm 319.13 0.0 16.096 16.463 3.809 9.278 -0.135 0.000 0.000 0.000 -0.000 -0.000 1363 1358 ge 319.13 0.0 16.096 16.463 3.809 9.278 -0.135 0.000 0.000 0.000 -0.000 0.000 1364 1359 sd89 319.47 0.0 15.994 16.467 3.265 9.294 0.006 0.000 0.000 0.000 -0.000 0.000 1365 1360 bpm 319.47 2.0 15.994 16.467 3.265 9.294 0.006 0.000 0.000 0.000 -0.000 0.000 1366 1361 sdac1 320.95 0.0 15.723 16.482 2.153 9.388 0.624 0.000 0.000 0.000 -0.000 0.000 1367 1362 sdac1 322.43 0.0 15.734 16.497 3.089 9.486 1.242 0.000 0.000 0.000 -0.000 0.000 1368 1363 bpm 322.43 2.0 15.734 16.497 3.089 9.486 1.242 0.000 0.000 0.000 -0.000 0.000 1369 1364 sd88 322.78 0.0 15.776 16.500 3.594 9.502 1.384 0.000 0.000 0.000 -0.000 0.000 1370 1365 gs 322.78 0.0 15.776 16.500 3.594 9.502 1.384 0.000 0.000 0.000 -0.000 0.000 1371 1366 sx10 322.94 1.5 15.787 16.502 3.871 9.509 1.450 0.000 0.000 0.000 -0.000 0.000 1372 1367 qt 322.94 0.0 15.787 16.502 3.871 9.509 1.450 0.000 0.000 0.000 -0.000 0.000 1373 1368 hcm 322.94 0.0 15.787 16.502 3.871 9.509 1.450 0.000 0.000 0.000 0.000 0.000 1374 1369 vcm 322.94 0.0 15.787 16.502 3.871 9.509 1.450 0.000 0.000 0.000 -0.000 -0.000 1375 1370 sd8 323.04 0.0 15.787 16.503 4.058 9.513 1.491 0.000 0.000 0.000 -0.000 0.000 1376 1371 q10 323.40 1.0 12.462 16.507 5.925 9.525 1.467 0.000 0.000 0.000 -0.000 0.000 1377 1372 sd93 323.65 0.0 8.554 16.511 8.479 9.531 1.331 0.000 0.000 0.000 -0.000 0.000 1378 1373 bpm 323.65 2.0 8.554 16.511 8.479 9.531 1.331 0.000 0.000 0.000 -0.000 0.000 1379 1374 sdb12 323.77 0.0 6.888 16.513 9.925 9.533 1.263 0.000 0.000 0.000 -0.000 0.000 1380 1375 sx9 323.93 -1.5 5.031 16.518 11.934 9.535 1.177 0.000 0.000 0.000 -0.000 0.000 1381 1376 hcm 323.93 0.0 5.031 16.518 11.934 9.535 1.177 0.000 0.000 0.000 0.000 0.000 1382 1377 vcm 323.93 0.0 5.031 16.518 11.934 9.535 1.177 0.000 0.000 0.000 -0.000 -0.000 1383 1378 sd8 324.03 0.0 4.027 16.521 13.275 9.537 1.123 0.000 0.000 0.000 -0.000 0.000 1384 1379 q9 324.39 -1.0 1.800 16.543 15.627 9.540 1.035 0.000 0.000 0.000 -0.000 0.000 1385 1380 ge 324.39 0.0 1.800 16.543 15.627 9.540 1.035 0.000 0.000 0.000 -0.000 0.000 1386 1381 sd7 324.81 0.0 0.681 16.605 14.973 9.545 1.052 0.000 0.000 0.000 -0.000 0.000 1387 1382 dip 324.81 0.0 0.681 16.605 14.973 9.545 1.052 0.000 0.000 0.000 0.000 0.000 1388 1383 bend0 325.86 0.5 1.654 16.882 13.014 9.557 0.289 0.000 0.000 0.000 -0.000 0.000 1389 1384 sd7 326.28 0.0 3.552 16.909 12.142 9.562 0.290 0.000 0.000 0.000 -0.000 0.000 1390 1385 gs 326.28 0.0 3.552 16.909 12.142 9.562 0.290 0.000 0.000 0.000 -0.000 0.000 1391 1386 q6 326.64 -1.0 6.546 16.921 9.981 9.567 0.309 0.000 0.000 0.000 -0.000 0.000 1392 1387 sd5 326.74 0.0 7.779 16.924 9.059 9.569 0.320 0.000 0.000 0.000 -0.000 0.000 1393 1388 sx7 326.90 -1.5 9.986 16.927 7.675 9.572 0.338 0.000 0.000 0.000 -0.000 0.000 1394 1389 hcm 326.90 0.0 9.986 16.927 7.675 9.572 0.338 0.000 0.000 0.000 0.000 0.000 1395 1390 vcm 326.90 0.0 9.986 16.927 7.675 9.572 0.338 0.000 0.000 0.000 -0.000 -0.000 1396 1391 sd41 327.08 0.0 12.679 16.929 6.318 9.576 0.357 0.000 0.000 0.000 -0.000 0.000 1397 1392 bpm 327.08 2.0 12.679 16.929 6.318 9.576 0.357 0.000 0.000 0.000 -0.000 0.000 1398 1393 sdb13 327.20 0.0 14.746 16.930 5.456 9.579 0.370 0.000 0.000 0.000 -0.000 0.000 1399 1394 q7 327.69 1.0 15.673 16.935 4.731 9.596 0.329 0.000 0.000 0.000 -0.000 0.000 1400 1395 sd3 327.79 0.0 14.198 16.936 5.098 9.599 0.302 0.000 0.000 0.000 -0.000 0.000 1401 1396 sx8 327.95 1.5 12.026 16.938 5.711 9.604 0.259 0.000 0.000 0.000 -0.000 0.000 1402 1397 hcm 327.95 0.0 12.026 16.938 5.711 9.604 0.259 0.000 0.000 0.000 0.000 0.000 1403 1398 vcm 327.95 0.0 12.026 16.938 5.711 9.604 0.259 0.000 0.000 0.000 -0.000 -0.000 1404 1399 sd2 328.24 0.0 8.553 16.943 6.940 9.611 0.181 0.000 0.000 0.000 -0.000 0.000 1405 1400 q8 328.60 -1.0 6.406 16.951 7.148 9.619 0.100 0.000 0.000 0.000 -0.000 0.000 1406 1401 ge 328.60 0.0 6.406 16.951 7.148 9.619 0.100 0.000 0.000 0.000 -0.000 0.000 1407 1402 sd87 328.93 0.0 5.865 16.959 6.109 9.627 0.039 0.000 0.000 0.000 -0.000 0.000 1408 1403 bpm 328.93 2.0 5.865 16.959 6.109 9.627 0.039 0.000 0.000 0.000 -0.000 0.000 1409 1404 sd13a 332.07 0.0 3.603 17.079 1.892 9.815 -0.561 0.000 0.000 0.000 -0.000 0.000 1410 1405 sd13a 335.21 0.0 6.853 17.188 8.474 9.958 -1.161 0.000 0.000 0.000 -0.000 0.000 1411 1406 bpm 335.21 2.0 6.853 17.188 8.474 9.958 -1.161 0.000 0.000 0.000 -0.000 0.000 1412 1407 sd87 335.53 0.0 7.496 17.195 9.755 9.964 -1.222 0.000 0.000 0.000 -0.000 0.000 1413 1408 gs 335.53 0.0 7.496 17.195 9.755 9.964 -1.222 0.000 0.000 0.000 -0.000 0.000 1414 1409 q8 335.89 -1.0 10.006 17.202 9.292 9.970 -1.418 0.000 0.000 0.000 -0.000 0.000 1415 1410 sd2 336.18 0.0 14.059 17.206 7.497 9.975 -1.684 0.000 0.000 0.000 -0.000 0.000 1416 1411 sx6 336.34 1.5 16.625 17.207 6.585 9.979 -1.832 0.000 0.000 0.000 -0.000 0.000 1417 1412 hcm 336.34 0.0 16.625 17.207 6.585 9.979 -1.832 0.000 0.000 0.000 0.000 0.000 1418 1413 vcm 336.34 0.0 16.625 17.207 6.585 9.979 -1.832 0.000 0.000 0.000 -0.000 -0.000 1419 1414 sd3 336.44 0.0 18.393 17.208 6.031 9.981 -1.926 0.000 0.000 0.000 -0.000 0.000 1420 1415 q7 336.94 1.0 17.467 17.212 6.455 9.995 -1.874 0.000 0.000 0.000 -0.000 0.000 1421 1416 sdb14 337.10 0.0 14.161 17.214 7.732 9.999 -1.686 0.000 0.000 0.000 -0.000 0.000 1422 1417 bpm 337.10 2.0 14.161 17.214 7.732 9.999 -1.686 0.000 0.000 0.000 -0.000 0.000 1423 1418 sd43 337.23 0.0 11.911 17.215 8.771 10.001 -1.545 0.000 0.000 0.000 -0.000 0.000 1424 1419 sx5 337.39 -1.5 9.303 17.218 10.218 10.004 -1.364 0.000 0.000 0.000 -0.000 0.000 1425 1420 hcm 337.39 0.0 9.303 17.218 10.218 10.004 -1.364 0.000 0.000 0.000 0.000 0.000 1426 1421 vcm 337.39 0.0 9.303 17.218 10.218 10.004 -1.364 0.000 0.000 0.000 -0.000 -0.000 1427 1422 sd5 337.49 0.0 7.831 17.220 11.191 10.005 -1.251 0.000 0.000 0.000 -0.000 0.000 1428 1423 q6 337.85 -1.0 4.247 17.230 13.364 10.010 -0.916 0.000 0.000 0.000 -0.000 0.000 1429 1424 ge 337.85 0.0 4.247 17.230 13.364 10.010 -0.916 0.000 0.000 0.000 -0.000 0.000 1430 1425 sd7 338.27 0.0 1.949 17.253 14.042 10.015 -0.602 0.000 0.000 0.000 -0.000 0.000 1431 1426 dip 338.27 0.0 1.949 17.253 14.042 10.015 -0.602 0.000 0.000 0.000 0.000 0.000 1432 1427 bend0 339.32 0.5 0.605 17.546 15.421 10.026 -0.625 0.000 0.000 0.000 -0.000 0.000 1433 1428 sd7 339.74 0.0 1.825 17.612 15.814 10.031 -0.327 0.000 0.000 0.000 -0.000 0.000 1434 1429 gs 339.74 0.0 1.825 17.612 15.814 10.031 -0.327 0.000 0.000 0.000 -0.000 0.000 1435 1430 q4 340.10 -1.0 4.177 17.633 13.689 10.034 -0.091 0.000 0.000 0.000 -0.000 0.000 1436 1431 sd8 340.20 0.0 5.200 17.636 12.506 10.036 -0.030 0.000 0.000 0.000 -0.000 0.000 1437 1432 sx3 340.36 -1.5 7.080 17.641 10.726 10.038 0.069 0.000 0.000 0.000 -0.000 0.000 1438 1433 hcm 340.36 0.0 7.080 17.641 10.726 10.038 0.069 0.000 0.000 0.000 0.000 0.000 1439 1434 vcm 340.36 0.0 7.080 17.641 10.726 10.038 0.069 0.000 0.000 0.000 -0.000 -0.000 1440 1435 sdb15 340.53 0.0 9.433 17.644 8.969 10.041 0.175 0.000 0.000 0.000 -0.000 0.000 1441 1436 bpm 340.53 2.0 9.433 17.644 8.969 10.041 0.175 0.000 0.000 0.000 -0.000 0.000 1442 1437 sd9a 340.74 0.0 12.675 17.647 7.095 10.045 0.301 0.000 0.000 0.000 -0.000 0.000 1443 1438 q5 341.10 1.0 16.068 17.651 5.580 10.054 0.483 0.000 0.000 0.000 -0.000 0.000 1444 1439 sd10 341.47 0.0 16.216 17.654 5.456 10.065 0.621 0.000 0.000 0.000 -0.000 0.000 1445 1440 sx4 341.63 1.5 16.274 17.656 5.422 10.069 0.680 0.000 0.000 0.000 -0.000 0.000 1446 1441 qt 341.63 0.0 16.274 17.656 5.422 10.069 0.680 0.000 0.000 0.000 -0.000 0.000 1447 1442 hcm 341.63 0.0 16.274 17.656 5.422 10.069 0.680 0.000 0.000 0.000 0.000 0.000 1448 1443 vcm 341.63 0.0 16.274 17.656 5.422 10.069 0.680 0.000 0.000 0.000 -0.000 -0.000 1449 1444 sdb4 341.83 0.0 16.334 17.658 5.399 10.075 0.753 0.000 0.000 0.000 -0.000 0.000 1450 1445 bpm 341.83 2.0 16.334 17.658 5.399 10.075 0.753 0.000 0.000 0.000 -0.000 0.000 1451 1446 sd10a 342.00 0.0 16.390 17.660 5.390 10.080 0.817 0.000 0.000 0.000 -0.000 0.000 1452 1447 q5 342.36 1.0 13.152 17.663 6.684 10.090 0.858 0.000 0.000 0.000 -0.000 0.000 1453 1448 sd93 342.61 0.0 9.236 17.667 8.776 10.095 0.820 0.000 0.000 0.000 -0.000 0.000 1454 1449 bpm 342.61 2.0 9.236 17.667 8.776 10.095 0.820 0.000 0.000 0.000 -0.000 0.000 1455 1450 sdb17 342.73 0.0 7.550 17.669 9.928 10.098 0.801 0.000 0.000 0.000 -0.000 0.000 1456 1451 sx3 342.89 -1.5 5.648 17.673 11.506 10.100 0.778 0.000 0.000 0.000 -0.000 0.000 1457 1452 hcm 342.89 0.0 5.648 17.673 11.506 10.100 0.778 0.000 0.000 0.000 0.000 0.000 1458 1453 vcm 342.89 0.0 5.648 17.673 11.506 10.100 0.778 0.000 0.000 0.000 -0.000 -0.000 1459 1454 sd8 342.99 0.0 4.606 17.676 12.548 10.101 0.763 0.000 0.000 0.000 -0.000 0.000 1460 1455 q4 343.35 -1.0 2.197 17.695 14.332 10.105 0.771 0.000 0.000 0.000 -0.000 0.000 1461 1456 ge 343.35 0.0 2.197 17.695 14.332 10.105 0.771 0.000 0.000 0.000 -0.000 0.000 1462 1457 sd7 343.77 0.0 0.863 17.744 13.800 10.110 0.852 0.000 0.000 0.000 -0.000 0.000 1463 1458 dip 343.77 0.0 0.863 17.744 13.800 10.110 0.852 0.000 0.000 0.000 0.000 0.000 1464 1459 bend0 344.83 0.5 1.346 18.032 12.173 10.123 0.250 0.000 0.000 0.000 -0.000 0.000 1465 1460 sd6 345.54 0.0 4.768 18.078 10.960 10.133 0.361 0.000 0.000 0.000 -0.000 0.000 1466 1461 gs 345.54 0.0 4.768 18.078 10.960 10.133 0.361 0.000 0.000 0.000 -0.000 0.000 1467 1462 sx2 345.70 -1.5 5.887 18.082 10.702 10.135 0.386 0.000 0.000 0.000 -0.000 0.000 1468 1463 hcm 345.70 0.0 5.887 18.082 10.702 10.135 0.386 0.000 0.000 0.000 0.000 0.000 1469 1464 vcm 345.70 0.0 5.887 18.082 10.702 10.135 0.386 0.000 0.000 0.000 -0.000 -0.000 1470 1465 sd5 345.80 0.0 6.652 18.085 10.542 10.137 0.401 0.000 0.000 0.000 -0.000 0.000 1471 1466 q3 346.16 -1.0 10.573 18.092 9.157 10.143 0.475 0.000 0.000 0.000 -0.000 0.000 1472 1467 sd141 346.59 0.0 17.765 18.097 6.814 10.151 0.587 0.000 0.000 0.000 -0.000 0.000 1473 1468 bpm 346.59 2.0 17.765 18.097 6.814 10.151 0.587 0.000 0.000 0.000 -0.000 0.000 1474 1469 sdb18 346.71 0.0 20.096 18.098 6.233 10.154 0.618 0.000 0.000 0.000 -0.000 0.000 1475 1470 q2 347.20 1.0 21.767 18.101 6.322 10.168 0.620 0.000 0.000 0.000 -0.000 0.000 1476 1471 sd3 347.31 0.0 20.343 18.102 6.857 10.170 0.594 0.000 0.000 0.000 -0.000 0.000 1477 1472 sx1 347.47 1.5 18.200 18.104 7.749 10.174 0.554 0.000 0.000 0.000 -0.000 0.000 1478 1473 qt 347.47 0.0 18.200 18.104 7.749 10.174 0.554 0.000 0.000 0.000 -0.000 0.000 1479 1474 hcm 347.47 0.0 18.200 18.104 7.749 10.174 0.554 0.000 0.000 0.000 0.000 0.000 1480 1475 vcm 347.47 0.0 18.200 18.104 7.749 10.174 0.554 0.000 0.000 0.000 -0.000 -0.000 1481 1476 sd2 347.76 0.0 14.619 18.106 9.526 10.179 0.481 0.000 0.000 0.000 -0.000 0.000 1482 1477 q1 348.12 -1.0 12.474 18.111 10.534 10.185 0.422 0.000 0.000 0.000 -0.000 0.000 1483 1478 ge 348.12 0.0 12.474 18.111 10.534 10.185 0.422 0.000 0.000 0.000 -0.000 0.000 1484 1479 sdc12 348.44 0.0 12.229 18.115 10.178 10.189 0.397 0.000 0.000 0.000 -0.000 0.000 1485 1480 bpm 348.44 2.0 12.229 18.115 10.178 10.189 0.397 0.000 0.000 0.000 -0.000 0.000 1486 1481 sd1e 354.10 0.0 11.050 18.196 8.179 10.296 -0.049 0.000 0.000 0.000 -0.000 0.000 1487 1482 cav 354.10 0.0 11.050 18.196 8.179 10.296 -0.049 0.000 0.000 0.000 -0.000 0.000 1488 1483 fin 354.10 0.0 11.050 18.196 8.179 10.296 -0.049 0.000 0.000 0.000 -0.000 0.000 -
trunk/lattice/example/soleil/example_lattice.lat
r3 r11 100 100 LQL=0.4962; 101 101 102 Q1 : quadrupole, L=LQC,K= -1.073038, method=intmeth,N=Nq;103 Q2 : quadrupole, L=LQL,K= 1.603455, method=intmeth,N=Nq;104 Q3 : quadrupole, L=LQC,K= -0.649160, method=intmeth,N=Nq;105 Q4 : quadrupole, L=LQC,K= -1.259864, method=intmeth,N=Nq;106 Q5 : quadrupole, L=LQC,K= 1.696440, method=intmeth,N=Nq;107 Q6 : quadrupole, L=LQC,K= -1.007805, method=intmeth,N=Nq;108 Q7 : quadrupole, L=LQL,K= 2.084913, method=intmeth,N=Nq;109 Q8 : quadrupole, L=LQC,K= -1.551946, method=intmeth,N=Nq;110 Q9 : quadrupole, L=LQC,K= -1.510915, method=intmeth,N=Nq;111 Q10: quadrupole, L=LQC,K= 1.756880, method=intmeth,N=Nq;102 Q1 : quadrupole, L=LQC,K= -1.073038, FF1=1,FF2=1,method=intmeth,N=Nq; 103 Q2 : quadrupole, L=LQL,K= 1.603455, FF1=1,FF2=1,method=intmeth,N=Nq; 104 Q3 : quadrupole, L=LQC,K= -0.649160, FF1=1,FF2=1,method=intmeth,N=Nq; 105 Q4 : quadrupole, L=LQC,K= -1.259864, FF1=1,FF2=1,method=intmeth,N=Nq; 106 Q5 : quadrupole, L=LQC,K= 1.696440, FF1=1,FF2=1,method=intmeth,N=Nq; 107 Q6 : quadrupole, L=LQC,K= -1.007805, FF1=1,FF2=1,method=intmeth,N=Nq; 108 Q7 : quadrupole, L=LQL,K= 2.084913, FF1=1,FF2=1,method=intmeth,N=Nq; 109 Q8 : quadrupole, L=LQC,K= -1.551946, FF1=1,FF2=1,method=intmeth,N=Nq; 110 Q9 : quadrupole, L=LQC,K= -1.510915, FF1=1,FF2=1,method=intmeth,N=Nq; 111 Q10: quadrupole, L=LQC,K= 1.756880, FF1=1,FF2=1,method=intmeth,N=Nq; 112 112 113 113 {** bending **} … … 115 115 tracy_gap=beta_gap*2*0.724; 116 116 117 BEND0 : bending, L= 1.05243, T= 11.25, T1=5.5906, T2=5.67658, K=0.00204, N=4,118 method=intmeth,gap=tracy_gap ;117 BEND0 : bending, L= 1.05243, T= 11.25, T1=5.5906, T2=5.67658,H1 = 0.0, H2 = 0.0, K=0.00204, N=4, 118 method=intmeth,gap=tracy_gap, edge_effect1=1,edge_effect2=1; 119 119 120 120 {** Sextupole **} -
trunk/lattice/example/soleil/example_lattice.lax
r3 r11 100 100 LQL=0.4962; 101 101 102 Q1 : quadrupole, L=LQC,K= -1.073038, method=intmeth,N=Nq;103 Q2 : quadrupole, L=LQL,K= 1.603455, method=intmeth,N=Nq;104 Q3 : quadrupole, L=LQC,K= -0.649160, method=intmeth,N=Nq;105 Q4 : quadrupole, L=LQC,K= -1.259864, method=intmeth,N=Nq;106 Q5 : quadrupole, L=LQC,K= 1.696440, method=intmeth,N=Nq;107 Q6 : quadrupole, L=LQC,K= -1.007805, method=intmeth,N=Nq;108 Q7 : quadrupole, L=LQL,K= 2.084913, method=intmeth,N=Nq;109 Q8 : quadrupole, L=LQC,K= -1.551946, method=intmeth,N=Nq;110 Q9 : quadrupole, L=LQC,K= -1.510915, method=intmeth,N=Nq;111 Q10: quadrupole, L=LQC,K= 1.756880, method=intmeth,N=Nq;102 Q1 : quadrupole, L=LQC,K= -1.073038, FF1=1,FF2=1,method=intmeth,N=Nq; 103 Q2 : quadrupole, L=LQL,K= 1.603455, FF1=1,FF2=1,method=intmeth,N=Nq; 104 Q3 : quadrupole, L=LQC,K= -0.649160, FF1=1,FF2=1,method=intmeth,N=Nq; 105 Q4 : quadrupole, L=LQC,K= -1.259864, FF1=1,FF2=1,method=intmeth,N=Nq; 106 Q5 : quadrupole, L=LQC,K= 1.696440, FF1=1,FF2=1,method=intmeth,N=Nq; 107 Q6 : quadrupole, L=LQC,K= -1.007805, FF1=1,FF2=1,method=intmeth,N=Nq; 108 Q7 : quadrupole, L=LQL,K= 2.084913, FF1=1,FF2=1,method=intmeth,N=Nq; 109 Q8 : quadrupole, L=LQC,K= -1.551946, FF1=1,FF2=1,method=intmeth,N=Nq; 110 Q9 : quadrupole, L=LQC,K= -1.510915, FF1=1,FF2=1,method=intmeth,N=Nq; 111 Q10: quadrupole, L=LQC,K= 1.756880, FF1=1,FF2=1,method=intmeth,N=Nq; 112 112 113 113 {** bending **} … … 115 115 tracy_gap=beta_gap*2*0.724; 116 116 117 BEND0 : bending, L= 1.05243, T= 11.25, T1=5.5906, T2=5.67658, K=0.00204, N=4,118 method=intmeth,gap=tracy_gap ;117 BEND0 : bending, L= 1.05243, T= 11.25, T1=5.5906, T2=5.67658,H1 = 0.0, H2 = 0.0, K=0.00204, N=4, 118 method=intmeth,gap=tracy_gap, edge_effect1=1,edge_effect2=1; 119 119 120 120 {** Sextupole **} -
trunk/lattice/example/soleil/flat_file.dat
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trunk/lattice/example/soleil/linlat.out
r3 r11 1 # TRACY III -- linlat.out -- Mon Jun 18 15:59:49 20121 # TRACY III -- linlat.out -- Mon Jun 3 14:45:29 2013 2 2 # name s alphax betax nux etax etapx alphay betay nuy etay etapy 3 3 # [m] [m] [m] [m] [m] 4 4 # exit 5 1:debut 0.0000 0.00 1 10.901 0.000 0.221 0.000 0.000 7.9950.000 0.000e+00 0.000e+006 2:sd1a 0.9000 -0.08 1 10.973 0.013 0.221 0.000 -0.112 8.096 0.0180.000e+00 0.000e+007 3:ssep 0.9000 -0.08 1 10.973 0.013 0.221 0.000 -0.112 8.096 0.0180.000e+00 0.000e+008 4:sep 1.1000 -0.10 0 11.010 0.016 0.221 0.000 -0.138 8.146 0.0220.000e+00 0.000e+009 5:sep 1.3000 -0.1 18 11.053 0.019 0.221 0.000 -0.163 8.206 0.0260.000e+00 0.000e+0010 6:sep 1.5000 -0.1 36 11.104 0.022 0.221 0.000 -0.188 8.276 0.0300.000e+00 0.000e+0011 7:esep 1.5000 -0.1 36 11.104 0.022 0.221 0.000 -0.188 8.276 0.0300.000e+00 0.000e+0012 8:sd1c 5.2000 -0.4 76 13.369 0.071 0.221 0.000 -0.650 11.376 0.0920.000e+00 0.000e+0013 9:ehu600 5.2000 -0.4 76 13.369 0.071 0.221 0.000 -0.650 11.376 0.0920.000e+00 0.000e+0014 10:sd1d 5.6890 -0.5 21 13.856 0.077 0.221 0.000 -0.711 12.042 0.0980.000e+00 0.000e+0015 11:bpm 5.6890 -0.5 21 13.856 0.077 0.221 0.000 -0.711 12.042 0.0980.000e+00 0.000e+0016 12:sdb1i 5.9800 -0.5 47 14.167 0.080 0.221 0.000 -0.748 12.467 0.1020.000e+00 0.000e+0017 13:gs 5.9800 -0.5 47 14.167 0.080 0.221 0.000 -0.748 12.467 0.1020.000e+00 0.000e+0018 14:q1 6.3402 -6. 741 16.677 0.084 0.237 0.087 3.794 11.316 0.1070.000e+00 0.000e+0019 15:sd2 6.6301 -7. 549 20.820 0.086 0.262 0.087 3.399 9.231 0.1110.000e+00 0.000e+0020 16:sx1 6.7901 -7.9 94 23.306 0.087 0.276 0.087 3.182 8.178 0.1140.000e+00 0.000e+0021 17:qt 6.7901 -7.9 94 23.306 0.087 0.276 0.087 3.182 8.178 0.1140.000e+00 0.000e+0022 18:hcm 6.7901 -7.9 94 23.306 0.087 0.276 0.087 3.182 8.178 0.1140.000e+00 0.000e+0023 19:vcm 6.7901 -7.9 94 23.306 0.087 0.276 0.087 3.182 8.178 0.1140.000e+00 0.000e+0024 20:sd3 6.8920 -8.2 78 24.965 0.088 0.285 0.087 3.043 7.544 0.1160.000e+00 0.000e+0025 21:q2 7.3882 11. 428 23.157 0.091 0.271 -0.141 -2.799 7.436 0.128 0.000e+00 0.000e+0026 22:sdb2 7.5550 10. 480 19.503 0.092 0.247 -0.141 -2.997 8.403 0.131 0.000e+00 0.000e+0027 23:bpm 7.5550 10. 480 19.503 0.092 0.247 -0.141 -2.997 8.403 0.131 0.000e+00 0.000e+0028 24:sd14a 7.9400 8.2 92 12.276 0.096 0.193 -0.141 -3.454 10.887 0.1370.000e+00 0.000e+0029 25:q3 8.3002 4. 530 7.783 0.102 0.150 -0.101 -0.888 12.496 0.1420.000e+00 0.000e+0030 26:sd5 8.4001 4.2 54 6.905 0.104 0.140 -0.101 -0.902 12.675 0.1440.000e+00 0.000e+0031 27:sx2 8.5601 3. 812 5.615 0.109 0.123 -0.101 -0.925 12.967 0.1460.000e+00 0.000e+0032 28:hcm 8.5601 3. 812 5.615 0.109 0.123 -0.101 -0.925 12.967 0.1460.000e+00 0.000e+0033 29:vcm 8.5601 3. 812 5.615 0.109 0.123 -0.101 -0.925 12.967 0.1460.000e+00 0.000e+0034 30:ge 8.5601 3. 812 5.615 0.109 0.123 -0.101 -0.925 12.967 0.1460.000e+00 0.000e+0035 31:sd6 9.2701 1.8 48 1.596 0.147 0.051 -0.101 -1.027 14.353 0.1540.000e+00 0.000e+0036 32:dip 9.2701 1.8 48 1.596 0.147 0.051 -0.101 -1.027 14.353 0.1540.000e+00 0.000e+0037 33:bend0 10.3225 -1.0 45 0.756 0.446 0.048 0.095 -0.646 16.150 0.1650.000e+00 0.000e+0038 34:sd7 10.7424 -2. 207 2.121 0.500 0.088 0.095 -0.683 16.708 0.1690.000e+00 0.000e+0039 35:gs 10.7424 -2. 207 2.121 0.500 0.088 0.095 -0.683 16.708 0.1690.000e+00 0.000e+0040 36:q4 11.1026 -5.1 49 4.636 0.519 0.131 0.144 6.282 14.573 0.1730.000e+00 0.000e+0041 37:sd8 11.2025 -5.7 43 5.724 0.522 0.145 0.144 6.005 13.346 0.1740.000e+00 0.000e+0042 38:sx3 11.3625 -6.6 92 7.713 0.526 0.168 0.144 5.561 11.495 0.1760.000e+00 0.000e+0043 39:hcm 11.3625 -6.6 92 7.713 0.526 0.168 0.144 5.561 11.495 0.1760.000e+00 0.000e+0044 40:vcm 11.3625 -6.6 92 7.713 0.526 0.168 0.144 5.561 11.495 0.1760.000e+00 0.000e+0045 41:sdb3 11.5345 -7. 713 10.191 0.529 0.193 0.144 5.083 9.665 0.1780.000e+00 0.000e+0046 42:bpm 11.5345 -7. 713 10.191 0.529 0.193 0.144 5.083 9.665 0.1780.000e+00 0.000e+0047 43:sd9a 11.7387 -8. 925 13.589 0.532 0.223 0.144 4.516 7.705 0.1820.000e+00 0.000e+0048 44:q5 12.0989 0.023 1 7.053 0.535 0.249 -0.002 0.071 6.164 0.1910.000e+00 0.000e+0049 45:sd12 12.4688 0.001 1 7.044 0.539 0.248 -0.002 0.011 6.134 0.2000.000e+00 0.000e+0050 46:sx4 12.6288 -0.00 8 17.045 0.540 0.248 -0.002 -0.016 6.135 0.2040.000e+00 0.000e+0051 47:qt 12.6288 -0.00 8 17.045 0.540 0.248 -0.002 -0.016 6.135 0.2040.000e+00 0.000e+0052 48:hcm 12.6288 -0.00 8 17.045 0.540 0.248 -0.002 -0.016 6.135 0.2040.000e+00 0.000e+0053 49:vcm 12.6288 -0.00 8 17.045 0.540 0.248 -0.002 -0.016 6.135 0.2040.000e+00 0.000e+0054 50:sdb4 12.8264 -0.0 19 17.051 0.542 0.247 -0.002 -0.048 6.147 0.210 0.000e+00 0.000e+0055 51:bpm 12.8264 -0.0 19 17.051 0.542 0.247 -0.002 -0.048 6.147 0.210 0.000e+00 0.000e+0056 52:sd10a 12.9987 -0.030 1 7.059 0.544 0.247 -0.002 -0.076 6.168 0.2140.000e+00 0.000e+0057 53:q5 13.3589 8. 925 13.597 0.547 0.219 -0.147 -4.527 7.715 0.2230.000e+00 0.000e+0058 54:sd91 13.6102 7. 434 9.487 0.551 0.182 -0.147 -5.227 10.165 0.2270.000e+00 0.000e+0059 55:bpm 13.6102 7. 434 9.487 0.551 0.182 -0.147 -5.227 10.165 0.2270.000e+00 0.000e+0060 56:sdb5 13.7352 6.6 93 7.721 0.553 0.164 -0.147 -5.575 11.515 0.2290.000e+00 0.000e+0061 57:sx3 13.8952 5.7 44 5.731 0.557 0.140 -0.147 -6.021 13.370 0.2310.000e+00 0.000e+0062 58:hcm 13.8952 5.7 44 5.731 0.557 0.140 -0.147 -6.021 13.370 0.2310.000e+00 0.000e+0063 59:vcm 13.8952 5.7 44 5.731 0.557 0.140 -0.147 -6.021 13.370 0.2310.000e+00 0.000e+0064 60:sd8 13.9951 5.1 52 4.643 0.560 0.126 -0.147 -6.299 14.601 0.2320.000e+00 0.000e+0065 61:q4 14.3553 2. 208 2.127 0.579 0.081 -0.101 0.680 16.743 0.2360.000e+00 0.000e+0066 62:ge 14.3553 2. 208 2.127 0.579 0.081 -0.101 0.680 16.743 0.2360.000e+00 0.000e+0067 63:sd7 14.7752 1.04 8 0.760 0.632 0.039 -0.101 0.643 16.187 0.2400.000e+00 0.000e+0068 64:dip 14.7752 1.04 8 0.760 0.632 0.039 -0.101 0.643 16.187 0.2400.000e+00 0.000e+0069 65:bend0 15.8276 -1.8 39 1.587 0.932 0.036 0.096 1.026 14.404 0.2510.000e+00 0.000e+0070 66:sd7 16.2475 -2.9 99 3.618 0.960 0.077 0.096 0.966 13.568 0.256 0.000e+00 0.000e+0071 67:gs 16.2475 -2.9 99 3.618 0.960 0.077 0.096 0.966 13.568 0.256 0.000e+00 0.000e+0072 68:q6 16.6077 -6. 332 6.840 0.972 0.117 0.131 5.184 11.251 0.2600.000e+00 0.000e+0073 69:sd5 16.7076 -6. 932 8.165 0.974 0.130 0.131 4.937 10.240 0.2620.000e+00 0.000e+0074 70:sx5 16.8676 -7.8 94 10.537 0.977 0.151 0.131 4.540 8.723 0.2640.000e+00 0.000e+0075 71:hcm 16.8676 -7.8 94 10.537 0.977 0.151 0.131 4.540 8.723 0.2640.000e+00 0.000e+0076 72:vcm 16.8676 -7.8 94 10.537 0.977 0.151 0.131 4.540 8.723 0.2640.000e+00 0.000e+0077 73:sd41 17.0397 -8. 928 13.432 0.979 0.174 0.131 4.114 7.234 0.2680.000e+00 0.000e+0078 74:bpm 17.0397 -8. 928 13.432 0.979 0.174 0.131 4.114 7.234 0.2680.000e+00 0.000e+0079 75:sdb6 17.1595 -9. 647 15.658 0.980 0.189 0.131 3.817 6.284 0.2710.000e+00 0.000e+0080 76:q7 17.6557 7. 809 16.766 0.985 0.202 -0.081 -2.206 5.598 0.2850.000e+00 0.000e+0081 77:sd3 17.7576 7. 432 15.213 0.986 0.194 -0.081 -2.313 6.059 0.2880.000e+00 0.000e+0082 78:sx6 17.9176 6. 841 12.930 0.988 0.181 -0.081 -2.481 6.826 0.2920.000e+00 0.000e+0083 79:hcm 17.9176 6. 841 12.930 0.988 0.181 -0.081 -2.481 6.826 0.2920.000e+00 0.000e+0084 80:vcm 17.9176 6. 841 12.930 0.988 0.181 -0.081 -2.481 6.826 0.2920.000e+00 0.000e+0085 81:sd2 18.2075 5.7 69 9.274 0.992 0.158 -0.081 -2.785 8.352 0.2980.000e+00 0.000e+0086 82:q8 18.5677 0.8 26 7.046 0.999 0.144 0.002 2.001 8.655 0.3040.000e+00 0.000e+0087 83:ge 18.5677 0.8 26 7.046 0.999 0.144 0.002 2.001 8.655 0.3040.000e+00 0.000e+0088 84:sdc12 18.8886 0.75 0 6.540 1.007 0.144 0.002 1.816 7.430 0.3110.000e+00 0.000e+0089 85:bpm 18.8886 0.75 0 6.540 1.007 0.144 0.002 1.816 7.430 0.3110.000e+00 0.000e+0090 86:sd13k 19.2801 0.6 56 5.990 1.017 0.145 0.002 1.589 6.097 0.3200.000e+00 0.000e+0091 87:ssdm 19.2801 0.6 56 5.990 1.017 0.145 0.002 1.589 6.097 0.3200.000e+00 0.000e+0092 88:sd13i 19.4801 0.6 08 5.737 1.022 0.145 0.002 1.474 5.485 0.3260.000e+00 0.000e+0093 89:sd13i 19.6801 0.56 1 5.503 1.028 0.146 0.002 1.358 4.918 0.3320.000e+00 0.000e+0094 90:sd13i 19.8801 0.51 3 5.289 1.034 0.146 0.002 1.242 4.398 0.3390.000e+00 0.000e+0095 91:sd13i 20.0800 0.46 5 5.093 1.040 0.147 0.002 1.127 3.924 0.3460.000e+00 0.000e+0096 92:sd13i 20.2800 0.41 7 4.916 1.046 0.147 0.002 1.011 3.497 0.3550.000e+00 0.000e+0097 93:sd13i 20.4800 0.3 70 4.759 1.053 0.147 0.002 0.895 3.115 0.3640.000e+00 0.000e+0098 94:sd13i 20.6800 0.32 2 4.621 1.060 0.148 0.002 0.780 2.780 0.3750.000e+00 0.000e+0099 95:sd13i 20.8800 0.27 4 4.502 1.067 0.148 0.002 0.664 2.492 0.3870.000e+00 0.000e+00100 96:sd13i 21.0800 0.22 6 4.402 1.074 0.149 0.002 0.548 2.249 0.4010.000e+00 0.000e+00101 97:sd13i 21.2800 0.17 9 4.321 1.081 0.149 0.002 0.433 2.053 0.4160.000e+00 0.000e+00102 98:sd13i 21.4800 0.1 31 4.259 1.088 0.149 0.002 0.317 1.903 0.4320.000e+00 0.000e+00103 99:sd13i 21.6800 0.0 83 4.216 1.096 0.150 0.002 0.201 1.799 0.4490.000e+00 0.000e+00104 100:sd13i 21.8800 0.0 35 4.192 1.104 0.150 0.002 0.086 1.742 0.4670.000e+00 0.000e+00105 101:sd13j 22.0300 -0.0 01 4.187 1.109 0.151 0.002 -0.001 1.729 0.4810.000e+00 0.000e+00106 102:sd13j 22.1800 -0.0 36 4.193 1.115 0.151 0.002 -0.088 1.742 0.4950.000e+00 0.000e+00107 103:sd13i 22.3800 -0.0 84 4.217 1.123 0.151 0.002 -0.203 1.801 0.5130.000e+00 0.000e+00108 104:sd13i 22.5800 -0.1 32 4.260 1.130 0.152 0.002 -0.319 1.905 0.5300.000e+00 0.000e+00109 105:sd13i 22.7800 -0.1 80 4.322 1.137 0.152 0.002 -0.435 2.056 0.546 0.000e+00 0.000e+00110 106:sd13i 22.9800 -0.2 27 4.404 1.145 0.152 0.002 -0.550 2.253 0.5610.000e+00 0.000e+00111 107:sd13i 23.1800 -0.2 75 4.504 1.152 0.153 0.002 -0.666 2.496 0.5740.000e+00 0.000e+00112 108:sd13i 23.3800 -0.3 23 4.624 1.159 0.153 0.002 -0.782 2.786 0.5860.000e+00 0.000e+00113 109:sd13i 23.5800 -0.3 71 4.763 1.166 0.154 0.002 -0.897 3.122 0.5970.000e+00 0.000e+00114 110:sd13i 23.7800 -0.4 19 4.921 1.172 0.154 0.002 -1.013 3.504 0.607 0.000e+00 0.000e+00115 111:sd13i 23.9800 -0.4 66 5.098 1.179 0.154 0.002 -1.129 3.932 0.6150.000e+00 0.000e+00116 112:sd13i 24.1800 -0.5 14 5.294 1.185 0.155 0.002 -1.244 4.407 0.6230.000e+00 0.000e+00117 113:sd13i 24.3800 -0.5 62 5.509 1.191 0.155 0.002 -1.360 4.928 0.6300.000e+00 0.000e+00118 114:sd13i 24.5800 -0.6 10 5.743 1.196 0.156 0.002 -1.476 5.495 0.6360.000e+00 0.000e+00119 115:sd13i 24.7800 -0.6 57 5.997 1.202 0.156 0.002 -1.591 6.108 0.6410.000e+00 0.000e+00120 116:esdm 24.7800 -0.6 57 5.997 1.202 0.156 0.002 -1.591 6.108 0.6410.000e+00 0.000e+00121 117:eesdm 24.7800 -0.6 57 5.997 1.202 0.156 0.002 -1.591 6.108 0.6410.000e+00 0.000e+00122 118:sd13k 25.1715 -0.7 51 6.548 1.212 0.157 0.002 -1.818 7.443 0.6510.000e+00 0.000e+00123 119:bpm 25.1715 -0.7 51 6.548 1.212 0.157 0.002 -1.818 7.443 0.6510.000e+00 0.000e+00124 120:sdc13 25.4918 -0.8 27 7.054 1.219 0.157 0.002 -2.003 8.667 0.6570.000e+00 0.000e+00125 121:gs 25.4918 -0.8 27 7.054 1.219 0.157 0.002 -2.003 8.667 0.6570.000e+00 0.000e+00126 122:q8 25.8520 -5. 775 9.284 1.226 0.174 0.093 2.790 8.363 0.664 0.000e+00 0.000e+00127 123:sd2 26.1419 -6. 848 12.944 1.231 0.201 0.093 2.485 6.834 0.6700.000e+00 0.000e+00128 124:sx8 26.3019 -7. 440 15.230 1.232 0.216 0.093 2.317 6.066 0.6740.000e+00 0.000e+00129 125:qt 26.3019 -7. 440 15.230 1.232 0.216 0.093 2.317 6.066 0.6740.000e+00 0.000e+00130 126:hcm 26.3019 -7. 440 15.230 1.232 0.216 0.093 2.317 6.066 0.6740.000e+00 0.000e+00131 127:vcm 26.3019 -7. 440 15.230 1.232 0.216 0.093 2.317 6.066 0.6740.000e+00 0.000e+00132 128:sd3 26.4038 -7. 817 16.785 1.234 0.226 0.093 2.210 5.604 0.6760.000e+00 0.000e+00133 129:q7 26.9000 9. 658 15.675 1.238 0.213 -0.144 -3.819 6.289 0.6910.000e+00 0.000e+00134 130:sdb7 27.0669 8. 654 12.618 1.240 0.189 -0.144 -4.232 7.633 0.6950.000e+00 0.000e+00135 131:bpm 27.0669 8. 654 12.618 1.240 0.189 -0.144 -4.232 7.633 0.6950.000e+00 0.000e+00136 132:sd42 27.1919 7.9 02 10.549 1.242 0.171 -0.144 -4.542 8.729 0.6970.000e+00 0.000e+00137 133:sx7 27.3519 6.940 8.174 1.244 0.148 -0.144 -4.938 10.246 0.7000.000e+00 0.000e+00138 134:hcm 27.3519 6.940 8.174 1.244 0.148 -0.144 -4.938 10.246 0.7000.000e+00 0.000e+00139 135:vcm 27.3519 6.940 8.174 1.244 0.148 -0.144 -4.938 10.246 0.7000.000e+00 0.000e+00140 136:sd5 27.4518 6.3 39 6.847 1.246 0.133 -0.144 -5.186 11.258 0.7010.000e+00 0.000e+00141 137:q6 27.8120 3.0 02 3.622 1.258 0.089 -0.104 -0.965 13.575 0.7060.000e+00 0.000e+00142 138:ge 27.8120 3.0 02 3.622 1.258 0.089 -0.104 -0.965 13.575 0.7060.000e+00 0.000e+00143 139:sd7 28.2319 1.8 41 1.588 1.286 0.046 -0.104 -1.024 14.410 0.7110.000e+00 0.000e+00144 140:dip 28.2319 1.8 41 1.588 1.286 0.046 -0.104 -1.024 14.410 0.7110.000e+00 0.000e+00145 141:bend0 29.2844 -1.05 0 0.760 1.586 0.040 0.093 -0.642 16.200 0.7220.000e+00 0.000e+00146 142:sd7 29.7043 -2.2 12 2.130 1.640 0.079 0.093 -0.678 16.754 0.7260.000e+00 0.000e+00147 143:gs 29.7043 -2.2 12 2.130 1.640 0.079 0.093 -0.678 16.754 0.7260.000e+00 0.000e+00148 144:q9 30.0645 -5. 585 4.768 1.658 0.122 0.147 7.515 14.116 0.7290.000e+00 0.000e+00149 145:sd8 30.1644 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0.000e+001071 1067:sdb15 252.0090 -7. 719 10.210 13.096 0.189 0.147 5.095 9.677 7.4990.000e+00 0.000e+001072 1068:bpm 252.0090 -7. 719 10.210 13.096 0.189 0.147 5.095 9.677 7.4990.000e+00 0.000e+001073 1069:sd9a 252.2132 -8. 931 13.610 13.099 0.219 0.147 4.526 7.713 7.5030.000e+00 0.000e+001074 1070:q5 252.5734 0.03 1 17.074 13.102 0.247 0.002 0.076 6.167 7.5110.000e+00 0.000e+001075 1071:sd10 252.9433 0.0 10 17.058 13.106 0.248 0.002 0.016 6.133 7.5210.000e+00 0.000e+001076 1072:sx4 253.1033 0.000 17.057 13.107 0.248 0.002 -0.010 6.132 7.5250.000e+00 0.000e+001077 1073:qt 253.1033 0.000 17.057 13.107 0.248 0.002 -0.010 6.132 7.5250.000e+00 0.000e+001078 1074:hcm 253.1033 0.000 17.057 13.107 0.248 0.002 -0.010 6.132 7.5250.000e+00 0.000e+001079 1075:vcm 253.1033 0.000 17.057 13.107 0.248 0.002 -0.010 6.132 7.5250.000e+00 0.000e+001080 1076:sdb4 253.3009 -0.01 1 17.059 13.109 0.249 0.002 -0.042 6.142 7.5300.000e+00 0.000e+001081 1077:bpm 253.3009 -0.01 1 17.059 13.109 0.249 0.002 -0.042 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272.3619 -7.9 93 23.304 13.733 0.276 0.087 3.181 8.177 7.8400.000e+00 0.000e+001125 1121:qt 272.3619 -7.9 93 23.304 13.733 0.276 0.087 3.181 8.177 7.8400.000e+00 0.000e+001126 1122:hcm 272.3619 -7.9 93 23.304 13.733 0.276 0.087 3.181 8.177 7.8400.000e+00 0.000e+001127 1123:vcm 272.3619 -7.9 93 23.304 13.733 0.276 0.087 3.181 8.177 7.8400.000e+00 0.000e+001128 1124:sd3 272.4638 -8.2 77 24.962 13.734 0.285 0.087 3.043 7.543 7.8420.000e+00 0.000e+001129 1125:q2 272.9600 11. 427 23.155 13.737 0.271 -0.141 -2.799 7.436 7.8530.000e+00 0.000e+001130 1126:sdb2 273.1268 10. 479 19.501 13.738 0.247 -0.141 -2.997 8.402 7.8570.000e+00 0.000e+001131 1127:bpm 273.1268 10. 479 19.501 13.738 0.247 -0.141 -2.997 8.402 7.8570.000e+00 0.000e+001132 1128:sd14a 273.5118 8.2 91 12.275 13.742 0.193 -0.141 -3.454 10.886 7.8630.000e+00 0.000e+001133 1129:q3 273.8720 4. 530 7.782 13.748 0.150 -0.101 -0.888 12.495 7.868 0.000e+00 0.000e+001134 1130:sd5 273.9719 4.2 54 6.904 13.750 0.139 -0.101 -0.902 12.674 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0.000e+001156 1152:hcm 278.2007 -0.008 1 7.046 14.186 0.248 -0.002 -0.016 6.134 7.9300.000e+00 0.000e+001157 1153:vcm 278.2007 -0.008 1 7.046 14.186 0.248 -0.002 -0.016 6.134 7.9300.000e+00 0.000e+001158 1154:sdb4 278.3983 -0.0 19 17.051 14.188 0.247 -0.002 -0.048 6.147 7.9350.000e+00 0.000e+001159 1155:bpm 278.3983 -0.0 19 17.051 14.188 0.247 -0.002 -0.048 6.147 7.9350.000e+00 0.000e+001160 1156:sd10a 278.5706 -0.0 29 17.059 14.190 0.247 -0.002 -0.076 6.168 7.9390.000e+00 0.000e+001161 1157:q5 278.9308 8. 925 13.597 14.193 0.219 -0.147 -4.527 7.714 7.9480.000e+00 0.000e+001162 1158:sd91 279.1820 7. 435 9.487 14.197 0.182 -0.147 -5.227 10.165 7.953 0.000e+00 0.000e+001163 1159:bpm 279.1820 7. 435 9.487 14.197 0.182 -0.147 -5.227 10.165 7.953 0.000e+00 0.000e+001164 1160:sdb5 279.3070 6.6 93 7.721 14.199 0.164 -0.147 -5.575 11.515 7.9540.000e+00 0.000e+001165 1161:sx3 279.4670 5.7 44 5.731 14.203 0.140 -0.147 -6.021 13.370 7.9560.000e+00 0.000e+001166 1162:hcm 279.4670 5.7 44 5.731 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0.146 0.002 1.243 4.398 8.0640.000e+00 0.000e+001199 1195:sd13i 285.6519 0.46 5 5.093 14.686 0.146 0.002 1.127 3.925 8.0720.000e+00 0.000e+001200 1196:sd13i 285.8519 0.418 4. 916 14.692 0.147 0.002 1.011 3.497 8.0800.000e+00 0.000e+001201 1197:sd13i 286.0519 0.3 70 4.759 14.699 0.147 0.002 0.895 3.116 8.0900.000e+00 0.000e+001202 1198:sd13i 286.2519 0.32 2 4.621 14.706 0.148 0.002 0.780 2.781 8.1010.000e+00 0.000e+001203 1199:sd13i 286.4519 0.27 4 4.501 14.713 0.148 0.002 0.664 2.492 8.113 0.000e+00 0.000e+001204 1200:sd13i 286.6519 0.22 6 4.401 14.720 0.148 0.002 0.548 2.249 8.1260.000e+00 0.000e+001205 1201:sd13i 286.8519 0.17 9 4.320 14.727 0.149 0.002 0.433 2.053 8.1410.000e+00 0.000e+001206 1202:sd13i 287.0519 0.1 31 4.258 14.734 0.149 0.002 0.317 1.903 8.1570.000e+00 0.000e+001207 1203:sd13i 287.2519 0.0 83 4.216 14.742 0.150 0.002 0.201 1.799 8.1750.000e+00 0.000e+001208 1204:sd13i 287.4519 0.0 35 4.192 14.749 0.150 0.002 0.086 1.742 8.1930.000e+00 0.000e+001209 1205:sd13j 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775 9.284 14.872 0.174 0.093 2.790 8.365 8.3890.000e+00 0.000e+001231 1227:sd2 291.7143 -6. 848 12.943 14.877 0.201 0.093 2.486 6.835 8.3950.000e+00 0.000e+001232 1228:sx8 291.8743 -7. 440 15.230 14.878 0.216 0.093 2.318 6.067 8.3990.000e+00 0.000e+001233 1229:qt 291.8743 -7. 440 15.230 14.878 0.216 0.093 2.318 6.067 8.3990.000e+00 0.000e+001234 1230:hcm 291.8743 -7. 440 15.230 14.878 0.216 0.093 2.318 6.067 8.3990.000e+00 0.000e+001235 1231:vcm 291.8743 -7. 440 15.230 14.878 0.216 0.093 2.318 6.067 8.3990.000e+00 0.000e+001236 1232:sd3 291.9762 -7. 817 16.784 14.880 0.226 0.093 2.211 5.605 8.4020.000e+00 0.000e+001237 1233:q7 292.4724 9. 658 15.675 14.884 0.212 -0.144 -3.819 6.290 8.4160.000e+00 0.000e+001238 1234:sdb7 292.6393 8. 654 12.618 14.886 0.188 -0.144 -4.232 7.633 8.4200.000e+00 0.000e+001239 1235:bpm 292.6393 8. 654 12.618 14.886 0.188 -0.144 -4.232 7.633 8.4200.000e+00 0.000e+001240 1236:sd42 292.7643 7.9 02 10.549 14.888 0.171 -0.144 -4.542 8.730 8.423 0.000e+00 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438 9.481 17.667 0.186 -0.144 -5.211 10.145 10.1230.000e+00 0.000e+001454 1450:sdb17 342.7342 6.6 95 7.714 17.669 0.168 -0.144 -5.558 11.491 10.125 0.000e+00 0.000e+001455 1451:sx3 342.8942 5.7 45 5.724 17.673 0.145 -0.144 -6.002 13.341 10.1270.000e+00 0.000e+001456 1452:hcm 342.8942 5.7 45 5.724 17.673 0.145 -0.144 -6.002 13.341 10.1270.000e+00 0.000e+001457 1453:vcm 342.8942 5.7 45 5.724 17.673 0.145 -0.144 -6.002 13.341 10.1270.000e+00 0.000e+001458 1454:sd8 342.9941 5.1 51 4.635 17.676 0.131 -0.144 -6.279 14.568 10.1280.000e+00 0.000e+001459 1455:q4 343.3543 2. 208 2.120 17.695 0.088 -0.095 0.683 16.701 10.1320.000e+00 0.000e+001460 1456:ge 343.3543 2. 208 2.120 17.695 0.088 -0.095 0.683 16.701 10.1320.000e+00 0.000e+001461 1457:sd7 343.7742 1.0 44 0.754 17.748 0.048 -0.095 0.647 16.142 10.1360.000e+00 0.000e+001462 1458:dip 343.7742 1.0 44 0.754 17.748 0.048 -0.095 0.647 16.142 10.1360.000e+00 0.000e+001463 1459:bend0 344.8266 -1.8 53 1.600 18.048 0.051 0.101 1.027 14.354 10.147 0.000e+00 0.000e+001464 1460:sd6 345.5366 -3. 820 5.628 18.086 0.123 0.101 0.925 12.969 10.1550.000e+00 0.000e+001465 1461:gs 345.5366 -3. 820 5.628 18.086 0.123 0.101 0.925 12.969 10.1550.000e+00 0.000e+001466 1462:sx2 345.6966 -4.2 64 6.922 18.090 0.139 0.101 0.902 12.676 10.1570.000e+00 0.000e+001467 1463:hcm 345.6966 -4.2 64 6.922 18.090 0.139 0.101 0.902 12.676 10.1570.000e+00 0.000e+001468 1464:vcm 345.6966 -4.2 64 6.922 18.090 0.139 0.101 0.902 12.676 10.1570.000e+00 0.000e+001469 1465:sd5 345.7965 -4. 540 7.801 18.093 0.150 0.101 0.888 12.498 10.1580.000e+00 0.000e+001470 1466:q3 346.1567 -8. 310 12.304 18.098 0.193 0.141 3.455 10.888 10.1630.000e+00 0.000e+001471 1467:sd141 346.5886 -10. 769 20.544 18.103 0.254 0.141 2.942 8.125 10.1700.000e+00 0.000e+001472 1468:bpm 346.5886 -10. 769 20.544 18.103 0.254 0.141 2.942 8.125 10.1700.000e+00 0.000e+001473 1469:sdb18 346.7085 -11. 452 23.209 18.104 0.271 0.141 2.799 7.437 10.1730.000e+00 0.000e+001474 1470:q2 347.2047 8.2 97 25.019 18.107 0.285 -0.087 -3.043 7.545 10.184 0.000e+00 0.000e+001475 1471:sd3 347.3066 8.013 23.357 18.107 0.276 -0.087 -3.182 8.179 10.186 0.000e+00 0.000e+001476 1472:sx1 347.4666 7. 566 20.864 18.109 0.262 -0.087 -3.400 9.232 10.1890.000e+00 0.000e+001477 1473:qt 347.4666 7. 566 20.864 18.109 0.262 -0.087 -3.400 9.232 10.1890.000e+00 0.000e+001478 1474:hcm 347.4666 7. 566 20.864 18.109 0.262 -0.087 -3.400 9.232 10.1890.000e+00 0.000e+001479 1475:vcm 347.4666 7. 566 20.864 18.109 0.262 -0.087 -3.400 9.232 10.1890.000e+00 0.000e+001480 1476:sd2 347.7565 6. 757 16.712 18.111 0.237 -0.087 -3.794 11.317 10.1940.000e+00 0.000e+001481 1477:q1 348.1167 0.5 50 14.196 18.115 0.221 0.000 0.748 12.468 10.1980.000e+00 0.000e+001482 1478:ge 348.1167 0.5 50 14.196 18.115 0.221 0.000 0.748 12.468 10.1980.000e+00 0.000e+001483 1479:sdc12 348.4376 0.5 20 13.853 18.118 0.221 0.000 0.708 12.001 10.2030.000e+00 0.000e+001484 1480:bpm 348.4376 0.5 20 13.853 18.118 0.221 0.000 0.708 12.001 10.2030.000e+00 0.000e+001485 1481:sd1e 354.0965 0.00 1 10.901 18.195 0.221 0.000 0.000 7.995 10.3010.000e+00 0.000e+001486 1482:cav 354.0965 0.00 1 10.901 18.195 0.221 0.000 0.000 7.995 10.3010.000e+00 0.000e+001487 1483:fin 354.0965 0.00 1 10.901 18.195 0.221 0.000 0.000 7.995 10.3010.000e+00 0.000e+005 1:debut 0.0000 0.000 10.642 0.000 0.218 0.000 0.000 21.494 0.000 0.000e+00 0.000e+00 6 2:sd1a 0.9000 -0.084 10.718 0.013 0.218 0.000 -0.042 21.531 0.007 0.000e+00 0.000e+00 7 3:ssep 0.9000 -0.084 10.718 0.013 0.218 0.000 -0.042 21.531 0.007 0.000e+00 0.000e+00 8 4:sep 1.1000 -0.103 10.755 0.016 0.218 0.000 -0.051 21.550 0.008 0.000e+00 0.000e+00 9 5:sep 1.3000 -0.122 10.800 0.019 0.218 0.000 -0.060 21.572 0.010 0.000e+00 0.000e+00 10 6:sep 1.5000 -0.141 10.853 0.022 0.218 0.000 -0.070 21.598 0.011 0.000e+00 0.000e+00 11 7:esep 1.5000 -0.141 10.853 0.022 0.218 0.000 -0.070 21.598 0.011 0.000e+00 0.000e+00 12 8:sd1c 5.2000 -0.489 13.181 0.072 0.218 0.000 -0.242 22.751 0.038 0.000e+00 0.000e+00 13 9:ehu600 5.2000 -0.489 13.181 0.072 0.218 0.000 -0.242 22.751 0.038 0.000e+00 0.000e+00 14 10:sd1d 5.6890 -0.534 13.682 0.078 0.218 0.000 -0.265 22.999 0.041 0.000e+00 0.000e+00 15 11:bpm 5.6890 -0.534 13.682 0.078 0.218 0.000 -0.265 22.999 0.041 0.000e+00 0.000e+00 16 12:sdb1i 5.9800 -0.562 14.001 0.081 0.218 0.000 -0.278 23.157 0.043 0.000e+00 0.000e+00 17 13:gs 5.9800 -0.562 14.001 0.081 0.218 0.000 -0.278 23.157 0.043 0.000e+00 0.000e+00 18 14:q1 6.3402 -6.690 16.498 0.085 0.233 0.086 7.923 20.268 0.046 0.000e+00 0.000e+00 19 15:sd2 6.6301 -7.495 20.610 0.088 0.258 0.086 7.011 15.939 0.048 0.000e+00 0.000e+00 20 16:sx1 6.7901 -7.938 23.080 0.089 0.272 0.086 6.507 13.776 0.050 0.000e+00 0.000e+00 21 17:qt 6.7901 -7.938 23.080 0.089 0.272 0.086 6.507 13.776 0.050 0.000e+00 0.000e+00 22 18:hcm 6.7901 -7.938 23.080 0.089 0.272 0.086 6.507 13.776 0.050 0.000e+00 0.000e+00 23 19:vcm 6.7901 -7.938 23.080 0.089 0.272 0.086 6.507 13.776 0.050 0.000e+00 0.000e+00 24 20:sd3 6.8920 -8.221 24.726 0.090 0.281 0.086 6.187 12.482 0.051 0.000e+00 0.000e+00 25 21:q2 7.3882 11.306 22.956 0.093 0.267 -0.139 -3.016 11.088 0.058 0.000e+00 0.000e+00 26 22:sdb2 7.5550 10.370 19.341 0.094 0.244 -0.139 -3.167 12.119 0.061 0.000e+00 0.000e+00 27 23:bpm 7.5550 10.370 19.341 0.094 0.244 -0.139 -3.167 12.119 0.061 0.000e+00 0.000e+00 28 24:sd14a 7.9400 8.209 12.188 0.098 0.190 -0.139 -3.518 14.693 0.065 0.000e+00 0.000e+00 29 25:q3 8.3002 4.482 7.740 0.104 0.147 -0.100 -0.006 15.999 0.069 0.000e+00 0.000e+00 30 26:sd5 8.4001 4.210 6.872 0.106 0.137 -0.100 -0.012 16.001 0.070 0.000e+00 0.000e+00 31 27:sx2 8.5601 3.774 5.594 0.110 0.121 -0.100 -0.022 16.006 0.072 0.000e+00 0.000e+00 32 28:hcm 8.5601 3.774 5.594 0.110 0.121 -0.100 -0.022 16.006 0.072 0.000e+00 0.000e+00 33 29:vcm 8.5601 3.774 5.594 0.110 0.121 -0.100 -0.022 16.006 0.072 0.000e+00 0.000e+00 34 30:ge 8.5601 3.774 5.594 0.110 0.121 -0.100 -0.022 16.006 0.072 0.000e+00 0.000e+00 35 31:sd6 9.2701 1.839 1.609 0.148 0.050 -0.100 -0.066 16.069 0.079 0.000e+00 0.000e+00 36 32:dip 9.2701 1.839 1.609 0.148 0.050 -0.100 -0.066 16.069 0.079 0.000e+00 0.000e+00 37 33:bend0 10.3225 -1.038 0.754 0.449 0.048 0.095 -0.167 16.314 0.089 0.000e+00 0.000e+00 38 34:sd7 10.7424 -2.196 2.112 0.503 0.088 0.095 -0.193 16.465 0.093 0.000e+00 0.000e+00 39 35:gs 10.7424 -2.196 2.112 0.503 0.088 0.095 -0.193 16.465 0.093 0.000e+00 0.000e+00 40 36:q4 11.1026 -5.124 4.613 0.522 0.130 0.144 6.530 14.050 0.097 0.000e+00 0.000e+00 41 37:sd8 11.2025 -5.714 5.696 0.525 0.145 0.144 6.220 12.776 0.098 0.000e+00 0.000e+00 42 38:sx3 11.3625 -6.659 7.676 0.529 0.168 0.144 5.723 10.865 0.100 0.000e+00 0.000e+00 43 39:hcm 11.3625 -6.659 7.676 0.529 0.168 0.144 5.723 10.865 0.100 0.000e+00 0.000e+00 44 40:vcm 11.3625 -6.659 7.676 0.529 0.168 0.144 5.723 10.865 0.100 0.000e+00 0.000e+00 45 41:sdb3 11.5345 -7.676 10.141 0.532 0.193 0.144 5.188 8.989 0.103 0.000e+00 0.000e+00 46 42:bpm 11.5345 -7.676 10.141 0.532 0.193 0.144 5.188 8.989 0.103 0.000e+00 0.000e+00 47 43:sd9a 11.7387 -8.882 13.522 0.535 0.222 0.144 4.554 6.999 0.107 0.000e+00 0.000e+00 48 44:q5 12.0989 0.023 16.970 0.539 0.248 -0.002 0.487 5.306 0.117 0.000e+00 0.000e+00 49 45:sd12 12.4688 0.001 16.962 0.542 0.247 -0.002 0.401 4.977 0.128 0.000e+00 0.000e+00 50 46:sx4 12.6288 -0.009 16.963 0.544 0.247 -0.002 0.364 4.855 0.133 0.000e+00 0.000e+00 51 47:qt 12.6288 -0.009 16.963 0.544 0.247 -0.002 0.364 4.855 0.133 0.000e+00 0.000e+00 52 48:hcm 12.6288 -0.009 16.963 0.544 0.247 -0.002 0.364 4.855 0.133 0.000e+00 0.000e+00 53 49:vcm 12.6288 -0.009 16.963 0.544 0.247 -0.002 0.364 4.855 0.133 0.000e+00 0.000e+00 54 50:sdb4 12.8264 -0.020 16.968 0.546 0.246 -0.002 0.318 4.720 0.140 0.000e+00 0.000e+00 55 51:bpm 12.8264 -0.020 16.968 0.546 0.246 -0.002 0.318 4.720 0.140 0.000e+00 0.000e+00 56 52:sd10a 12.9987 -0.030 16.977 0.547 0.246 -0.002 0.278 4.617 0.146 0.000e+00 0.000e+00 57 53:q5 13.3589 8.881 13.533 0.551 0.219 -0.147 -2.942 5.512 0.158 0.000e+00 0.000e+00 58 54:sd91 13.6102 7.398 9.443 0.554 0.182 -0.147 -3.382 7.101 0.164 0.000e+00 0.000e+00 59 55:bpm 13.6102 7.398 9.443 0.554 0.182 -0.147 -3.382 7.101 0.164 0.000e+00 0.000e+00 60 56:sdb5 13.7352 6.660 7.685 0.557 0.163 -0.147 -3.601 7.974 0.167 0.000e+00 0.000e+00 61 57:sx3 13.8952 5.716 5.705 0.561 0.140 -0.147 -3.881 9.171 0.170 0.000e+00 0.000e+00 62 58:hcm 13.8952 5.716 5.705 0.561 0.140 -0.147 -3.881 9.171 0.170 0.000e+00 0.000e+00 63 59:vcm 13.8952 5.716 5.705 0.561 0.140 -0.147 -3.881 9.171 0.170 0.000e+00 0.000e+00 64 60:sd8 13.9951 5.126 4.622 0.564 0.125 -0.147 -4.056 9.964 0.171 0.000e+00 0.000e+00 65 61:q4 14.3553 2.197 2.119 0.582 0.081 -0.101 0.680 11.251 0.177 0.000e+00 0.000e+00 66 62:ge 14.3553 2.197 2.119 0.582 0.081 -0.101 0.680 11.251 0.177 0.000e+00 0.000e+00 67 63:sd7 14.7752 1.042 0.759 0.636 0.039 -0.101 0.625 10.704 0.183 0.000e+00 0.000e+00 68 64:dip 14.7752 1.042 0.759 0.636 0.039 -0.101 0.625 10.704 0.183 0.000e+00 0.000e+00 69 65:bend0 15.8276 -1.828 1.597 0.937 0.036 0.095 0.468 9.554 0.199 0.000e+00 0.000e+00 70 66:sd7 16.2475 -2.969 3.612 0.965 0.076 0.095 0.414 9.184 0.206 0.000e+00 0.000e+00 71 67:gs 16.2475 -2.969 3.612 0.965 0.076 0.095 0.414 9.184 0.206 0.000e+00 0.000e+00 72 68:q6 16.6077 -6.275 6.804 0.977 0.116 0.129 3.319 7.777 0.213 0.000e+00 0.000e+00 73 69:sd5 16.7076 -6.868 8.117 0.979 0.129 0.129 3.165 7.129 0.215 0.000e+00 0.000e+00 74 70:sx5 16.8676 -7.818 10.467 0.982 0.149 0.129 2.918 6.156 0.219 0.000e+00 0.000e+00 75 71:hcm 16.8676 -7.818 10.467 0.982 0.149 0.129 2.918 6.156 0.219 0.000e+00 0.000e+00 76 72:vcm 16.8676 -7.818 10.467 0.982 0.149 0.129 2.918 6.156 0.219 0.000e+00 0.000e+00 77 73:sd41 17.0397 -8.839 13.333 0.984 0.171 0.129 2.652 5.198 0.224 0.000e+00 0.000e+00 78 74:bpm 17.0397 -8.839 13.333 0.984 0.171 0.129 2.652 5.198 0.224 0.000e+00 0.000e+00 79 75:sdb6 17.1595 -9.550 15.536 0.985 0.187 0.129 2.467 4.584 0.228 0.000e+00 0.000e+00 80 76:q7 17.6557 7.761 16.616 0.990 0.200 -0.080 -2.135 4.443 0.247 0.000e+00 0.000e+00 81 77:sd3 17.7576 7.385 15.072 0.991 0.192 -0.080 -2.262 4.891 0.250 0.000e+00 0.000e+00 82 78:sx6 17.9176 6.796 12.803 0.993 0.179 -0.080 -2.462 5.647 0.255 0.000e+00 0.000e+00 83 79:hcm 17.9176 6.796 12.803 0.993 0.179 -0.080 -2.462 5.647 0.255 0.000e+00 0.000e+00 84 80:vcm 17.9176 6.796 12.803 0.993 0.179 -0.080 -2.462 5.647 0.255 0.000e+00 0.000e+00 85 81:sd2 18.2075 5.727 9.173 0.997 0.156 -0.080 -2.825 7.180 0.262 0.000e+00 0.000e+00 86 82:q8 18.5677 0.836 6.956 1.004 0.142 0.002 1.342 7.753 0.270 0.000e+00 0.000e+00 87 83:ge 18.5677 0.836 6.956 1.004 0.142 0.002 1.342 7.753 0.270 0.000e+00 0.000e+00 88 84:sdc12 18.8886 0.757 6.445 1.012 0.143 0.002 1.226 6.929 0.277 0.000e+00 0.000e+00 89 85:bpm 18.8886 0.757 6.445 1.012 0.143 0.002 1.226 6.929 0.277 0.000e+00 0.000e+00 90 86:sd13k 19.2801 0.662 5.889 1.022 0.143 0.002 1.085 6.024 0.286 0.000e+00 0.000e+00 91 87:ssdm 19.2801 0.662 5.889 1.022 0.143 0.002 1.085 6.024 0.286 0.000e+00 0.000e+00 92 88:sd13i 19.4801 0.613 5.634 1.028 0.144 0.002 1.012 5.605 0.292 0.000e+00 0.000e+00 93 89:sd13i 19.6801 0.564 5.399 1.033 0.144 0.002 0.940 5.214 0.298 0.000e+00 0.000e+00 94 90:sd13i 19.8801 0.515 5.183 1.040 0.145 0.002 0.868 4.853 0.304 0.000e+00 0.000e+00 95 91:sd13i 20.0800 0.466 4.987 1.046 0.145 0.002 0.796 4.520 0.311 0.000e+00 0.000e+00 96 92:sd13i 20.2800 0.418 4.810 1.052 0.146 0.002 0.723 4.216 0.318 0.000e+00 0.000e+00 97 93:sd13i 20.4800 0.369 4.653 1.059 0.146 0.002 0.651 3.941 0.326 0.000e+00 0.000e+00 98 94:sd13i 20.6800 0.320 4.515 1.066 0.146 0.002 0.579 3.695 0.334 0.000e+00 0.000e+00 99 95:sd13i 20.8800 0.271 4.397 1.073 0.147 0.002 0.507 3.478 0.343 0.000e+00 0.000e+00 100 96:sd13i 21.0800 0.222 4.298 1.080 0.147 0.002 0.434 3.290 0.353 0.000e+00 0.000e+00 101 97:sd13i 21.2800 0.173 4.219 1.088 0.148 0.002 0.362 3.131 0.363 0.000e+00 0.000e+00 102 98:sd13i 21.4800 0.125 4.160 1.096 0.148 0.002 0.290 3.000 0.373 0.000e+00 0.000e+00 103 99:sd13i 21.6800 0.076 4.119 1.103 0.148 0.002 0.218 2.899 0.384 0.000e+00 0.000e+00 104 100:sd13i 21.8800 0.027 4.099 1.111 0.149 0.002 0.145 2.826 0.395 0.000e+00 0.000e+00 105 101:sd13j 22.0300 -0.010 4.096 1.117 0.149 0.002 0.091 2.791 0.403 0.000e+00 0.000e+00 106 102:sd13j 22.1800 -0.046 4.105 1.123 0.149 0.002 0.037 2.772 0.412 0.000e+00 0.000e+00 107 103:sd13i 22.3800 -0.095 4.133 1.130 0.150 0.002 -0.035 2.771 0.424 0.000e+00 0.000e+00 108 104:sd13i 22.5800 -0.144 4.181 1.138 0.150 0.002 -0.108 2.800 0.435 0.000e+00 0.000e+00 109 105:sd13i 22.7800 -0.193 4.248 1.146 0.151 0.002 -0.180 2.857 0.446 0.000e+00 0.000e+00 110 106:sd13i 22.9800 -0.242 4.335 1.153 0.151 0.002 -0.252 2.944 0.457 0.000e+00 0.000e+00 111 107:sd13i 23.1800 -0.290 4.442 1.160 0.151 0.002 -0.324 3.059 0.468 0.000e+00 0.000e+00 112 108:sd13i 23.3800 -0.339 4.567 1.167 0.152 0.002 -0.397 3.203 0.478 0.000e+00 0.000e+00 113 109:sd13i 23.5800 -0.388 4.713 1.174 0.152 0.002 -0.469 3.376 0.488 0.000e+00 0.000e+00 114 110:sd13i 23.7800 -0.437 4.878 1.181 0.153 0.002 -0.541 3.578 0.497 0.000e+00 0.000e+00 115 111:sd13i 23.9800 -0.486 5.062 1.187 0.153 0.002 -0.613 3.809 0.506 0.000e+00 0.000e+00 116 112:sd13i 24.1800 -0.535 5.267 1.193 0.154 0.002 -0.686 4.069 0.514 0.000e+00 0.000e+00 117 113:sd13i 24.3800 -0.583 5.490 1.199 0.154 0.002 -0.758 4.358 0.521 0.000e+00 0.000e+00 118 114:sd13i 24.5800 -0.632 5.733 1.205 0.154 0.002 -0.830 4.676 0.528 0.000e+00 0.000e+00 119 115:sd13i 24.7800 -0.681 5.996 1.210 0.155 0.002 -0.902 5.022 0.535 0.000e+00 0.000e+00 120 116:esdm 24.7800 -0.681 5.996 1.210 0.155 0.002 -0.902 5.022 0.535 0.000e+00 0.000e+00 121 117:eesdm 24.7800 -0.681 5.996 1.210 0.155 0.002 -0.902 5.022 0.535 0.000e+00 0.000e+00 122 118:sd13k 25.1715 -0.777 6.567 1.220 0.156 0.002 -1.044 5.784 0.546 0.000e+00 0.000e+00 123 119:bpm 25.1715 -0.777 6.567 1.220 0.156 0.002 -1.044 5.784 0.546 0.000e+00 0.000e+00 124 120:sdc13 25.4918 -0.855 7.089 1.228 0.156 0.002 -1.160 6.490 0.555 0.000e+00 0.000e+00 125 121:gs 25.4918 -0.855 7.089 1.228 0.156 0.002 -1.160 6.490 0.555 0.000e+00 0.000e+00 126 122:q8 25.8520 -5.840 9.351 1.235 0.173 0.093 2.324 6.040 0.564 0.000e+00 0.000e+00 127 123:sd2 26.1419 -6.928 13.052 1.239 0.200 0.093 2.016 4.782 0.572 0.000e+00 0.000e+00 128 124:sx8 26.3019 -7.529 15.365 1.241 0.215 0.093 1.847 4.164 0.578 0.000e+00 0.000e+00 129 125:qt 26.3019 -7.529 15.365 1.241 0.215 0.093 1.847 4.164 0.578 0.000e+00 0.000e+00 130 126:hcm 26.3019 -7.529 15.365 1.241 0.215 0.093 1.847 4.164 0.578 0.000e+00 0.000e+00 131 127:vcm 26.3019 -7.529 15.365 1.241 0.215 0.093 1.847 4.164 0.578 0.000e+00 0.000e+00 132 128:sd3 26.4038 -7.911 16.939 1.242 0.224 0.093 1.739 3.798 0.582 0.000e+00 0.000e+00 133 129:q7 26.9000 9.737 15.838 1.246 0.211 -0.143 -2.292 4.034 0.604 0.000e+00 0.000e+00 134 130:sdb7 27.0669 8.727 12.756 1.248 0.187 -0.143 -2.551 4.842 0.610 0.000e+00 0.000e+00 135 131:bpm 27.0669 8.727 12.756 1.248 0.187 -0.143 -2.551 4.842 0.610 0.000e+00 0.000e+00 136 132:sd42 27.1919 7.971 10.669 1.250 0.169 -0.143 -2.745 5.504 0.614 0.000e+00 0.000e+00 137 133:sx7 27.3519 7.003 8.273 1.253 0.147 -0.143 -2.993 6.422 0.618 0.000e+00 0.000e+00 138 134:hcm 27.3519 7.003 8.273 1.253 0.147 -0.143 -2.993 6.422 0.618 0.000e+00 0.000e+00 139 135:vcm 27.3519 7.003 8.273 1.253 0.147 -0.143 -2.993 6.422 0.618 0.000e+00 0.000e+00 140 136:sd5 27.4518 6.399 6.934 1.255 0.132 -0.143 -3.148 7.036 0.620 0.000e+00 0.000e+00 141 137:q6 27.8120 3.030 3.678 1.266 0.089 -0.103 -0.534 8.423 0.628 0.000e+00 0.000e+00 142 138:ge 27.8120 3.030 3.678 1.266 0.089 -0.103 -0.534 8.423 0.628 0.000e+00 0.000e+00 143 139:sd7 28.2319 1.868 1.622 1.294 0.045 -0.103 -0.598 8.898 0.635 0.000e+00 0.000e+00 144 140:dip 28.2319 1.868 1.622 1.294 0.045 -0.103 -0.598 8.898 0.635 0.000e+00 0.000e+00 145 141:bend0 29.2844 -1.056 0.755 1.597 0.040 0.092 -0.780 10.347 0.653 0.000e+00 0.000e+00 146 142:sd7 29.7043 -2.232 2.136 1.651 0.079 0.092 -0.846 11.030 0.659 0.000e+00 0.000e+00 147 143:gs 29.7043 -2.232 2.136 1.651 0.079 0.092 -0.846 11.030 0.659 0.000e+00 0.000e+00 148 144:q9 30.0645 -5.632 4.797 1.669 0.121 0.146 4.664 9.557 0.665 0.000e+00 0.000e+00 149 145:sd8 30.1644 -6.313 5.990 1.672 0.135 0.146 4.426 8.649 0.666 0.000e+00 0.000e+00 150 146:sx9 30.3244 -7.405 8.185 1.676 0.159 0.146 4.045 7.294 0.670 0.000e+00 0.000e+00 151 147:hcm 30.3244 -7.405 8.185 1.676 0.159 0.146 4.045 7.294 0.670 0.000e+00 0.000e+00 152 148:vcm 30.3244 -7.405 8.185 1.676 0.159 0.146 4.045 7.294 0.670 0.000e+00 0.000e+00 153 149:sdb8 30.4964 -8.578 10.934 1.679 0.184 0.146 3.636 5.972 0.674 0.000e+00 0.000e+00 154 150:bpm 30.4964 -8.578 10.934 1.679 0.184 0.146 3.636 5.972 0.674 0.000e+00 0.000e+00 155 151:sd9a 30.7006 -9.971 14.722 1.682 0.214 0.146 3.150 4.587 0.680 0.000e+00 0.000e+00 156 152:q10 31.0608 0.103 18.573 1.685 0.240 -0.001 0.340 3.417 0.695 0.000e+00 0.000e+00 157 153:sd8 31.1607 0.098 18.553 1.686 0.240 -0.001 0.307 3.353 0.700 0.000e+00 0.000e+00 158 154:sx10 31.3207 0.089 18.523 1.687 0.240 -0.001 0.255 3.263 0.707 0.000e+00 0.000e+00 159 155:qt 31.3207 0.089 18.523 1.687 0.240 -0.001 0.255 3.263 0.707 0.000e+00 0.000e+00 160 156:hcm 31.3207 0.089 18.523 1.687 0.240 -0.001 0.255 3.263 0.707 0.000e+00 0.000e+00 161 157:vcm 31.3207 0.089 18.523 1.687 0.240 -0.001 0.255 3.263 0.707 0.000e+00 0.000e+00 162 158:ge 31.3207 0.089 18.523 1.687 0.240 -0.001 0.255 3.263 0.707 0.000e+00 0.000e+00 163 159:sdc44 31.6611 0.071 18.469 1.690 0.240 -0.001 0.144 3.127 0.724 0.000e+00 0.000e+00 164 160:bpm 31.6611 0.071 18.469 1.690 0.240 -0.001 0.144 3.127 0.724 0.000e+00 0.000e+00 165 161:sdac4 32.2454 0.039 18.405 1.695 0.240 -0.001 -0.047 3.070 0.755 0.000e+00 0.000e+00 166 162:ssdac 32.2454 0.039 18.405 1.695 0.240 -0.001 -0.047 3.070 0.755 0.000e+00 0.000e+00 167 163:sdac2 32.4454 0.028 18.391 1.697 0.239 -0.001 -0.112 3.102 0.765 0.000e+00 0.000e+00 168 164:sdac2 32.6454 0.017 18.382 1.699 0.239 -0.001 -0.177 3.159 0.775 0.000e+00 0.000e+00 169 165:sdac2 32.8454 0.006 18.378 1.700 0.239 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34.9706 -0.109 18.597 1.719 0.238 -0.001 -0.936 5.749 0.867 0.000e+00 0.000e+00 181 177:sx10 35.1306 -0.118 18.633 1.720 0.238 -0.001 -0.989 6.057 0.871 0.000e+00 0.000e+00 182 178:hcm 35.1306 -0.118 18.633 1.720 0.238 -0.001 -0.989 6.057 0.871 0.000e+00 0.000e+00 183 179:vcm 35.1306 -0.118 18.633 1.720 0.238 -0.001 -0.989 6.057 0.871 0.000e+00 0.000e+00 184 180:sd8 35.2305 -0.124 18.657 1.721 0.238 -0.001 -1.021 6.258 0.874 0.000e+00 0.000e+00 185 181:q10 35.5907 10.004 14.801 1.724 0.211 -0.145 -6.250 8.695 0.882 0.000e+00 0.000e+00 186 182:sd91 35.8420 8.288 10.205 1.727 0.175 -0.145 -7.407 12.126 0.886 0.000e+00 0.000e+00 187 183:bpm 35.8420 8.288 10.205 1.727 0.175 -0.145 -7.407 12.126 0.886 0.000e+00 0.000e+00 188 184:sd42 35.9670 7.435 8.239 1.730 0.156 -0.145 -7.983 14.050 0.887 0.000e+00 0.000e+00 189 185:sx9 36.1270 6.342 6.035 1.733 0.133 -0.145 -8.720 16.722 0.889 0.000e+00 0.000e+00 190 186:hcm 36.1270 6.342 6.035 1.733 0.133 -0.145 -8.720 16.722 0.889 0.000e+00 0.000e+00 191 187:vcm 36.1270 6.342 6.035 1.733 0.133 -0.145 -8.720 16.722 0.889 0.000e+00 0.000e+00 192 188:sd8 36.2269 5.660 4.836 1.736 0.119 -0.145 -9.181 18.511 0.890 0.000e+00 0.000e+00 193 189:q9 36.5871 2.243 2.162 1.754 0.076 -0.093 1.547 21.455 0.893 0.000e+00 0.000e+00 194 190:ge 36.5871 2.243 2.162 1.754 0.076 -0.093 1.547 21.455 0.893 0.000e+00 0.000e+00 195 191:sd7 37.0070 1.072 0.770 1.807 0.037 -0.093 1.480 20.184 0.896 0.000e+00 0.000e+00 196 192:dip 37.0070 1.072 0.770 1.807 0.037 -0.093 1.480 20.184 0.896 0.000e+00 0.000e+00 197 193:bend0 38.0594 -1.842 1.592 2.111 0.042 0.102 1.277 17.285 0.905 0.000e+00 0.000e+00 198 194:sd7 38.4793 -3.001 3.626 2.139 0.085 0.102 1.213 16.239 0.909 0.000e+00 0.000e+00 199 195:gs 38.4793 -3.001 3.626 2.139 0.085 0.102 1.213 16.239 0.909 0.000e+00 0.000e+00 200 196:q6 38.8395 -6.338 6.850 2.150 0.128 0.141 6.254 13.426 0.913 0.000e+00 0.000e+00 201 197:sd5 38.9394 -6.938 8.177 2.153 0.142 0.141 5.955 12.206 0.914 0.000e+00 0.000e+00 202 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48.0839 -5.773 9.273 2.406 0.170 0.089 3.044 9.550 1.331 0.000e+00 0.000e+00 225 221:sd2 48.3738 -6.846 12.931 2.410 0.196 0.089 2.733 7.875 1.337 0.000e+00 0.000e+00 226 222:sx8 48.5338 -7.438 15.216 2.412 0.210 0.089 2.561 7.028 1.340 0.000e+00 0.000e+00 227 223:hcm 48.5338 -7.438 15.216 2.412 0.210 0.089 2.561 7.028 1.340 0.000e+00 0.000e+00 228 224:vcm 48.5338 -7.438 15.216 2.412 0.210 0.089 2.561 7.028 1.340 0.000e+00 0.000e+00 229 225:sd3 48.6357 -7.815 16.770 2.413 0.219 0.089 2.451 6.518 1.343 0.000e+00 0.000e+00 230 226:q7 49.1319 9.648 15.665 2.417 0.206 -0.141 -4.605 7.435 1.355 0.000e+00 0.000e+00 231 227:sdb10 49.2988 8.645 12.612 2.419 0.182 -0.141 -5.104 9.056 1.358 0.000e+00 0.000e+00 232 228:bpm 49.2988 8.645 12.612 2.419 0.182 -0.141 -5.104 9.056 1.358 0.000e+00 0.000e+00 233 229:sd42 49.4238 7.895 10.545 2.421 0.165 -0.141 -5.477 10.378 1.360 0.000e+00 0.000e+00 234 230:sx7 49.5838 6.934 8.172 2.424 0.142 -0.141 -5.955 12.207 1.362 0.000e+00 0.000e+00 235 231:hcm 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52.3962 -6.339 6.033 2.843 0.133 0.145 8.721 16.722 1.387 0.000e+00 0.000e+00 247 243:sx9 52.5562 -7.432 8.236 2.847 0.156 0.145 7.983 14.050 1.389 0.000e+00 0.000e+00 248 244:hcm 52.5562 -7.432 8.236 2.847 0.156 0.145 7.983 14.050 1.389 0.000e+00 0.000e+00 249 245:vcm 52.5562 -7.432 8.236 2.847 0.156 0.145 7.983 14.050 1.389 0.000e+00 0.000e+00 250 246:sdb11 52.7281 -8.605 10.993 2.850 0.181 0.145 7.191 11.441 1.391 0.000e+00 0.000e+00 251 247:bpm 52.7281 -8.605 10.993 2.850 0.181 0.145 7.191 11.441 1.391 0.000e+00 0.000e+00 252 248:sd92 52.9324 -10.000 14.794 2.852 0.211 0.145 6.250 8.695 1.394 0.000e+00 0.000e+00 253 249:q10 53.2926 0.124 18.649 2.855 0.238 0.001 1.021 6.258 1.403 0.000e+00 0.000e+00 254 250:sd8 53.3925 0.118 18.625 2.856 0.238 0.001 0.989 6.057 1.405 0.000e+00 0.000e+00 255 251:sx10 53.5525 0.109 18.588 2.858 0.238 0.001 0.937 5.749 1.409 0.000e+00 0.000e+00 256 252:hcm 53.5525 0.109 18.588 2.858 0.238 0.001 0.937 5.749 1.409 0.000e+00 0.000e+00 257 253:vcm 53.5525 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10.473 5.558 0.149 0.129 2.917 6.156 2.495 0.000e+00 0.000e+00 445 441:sd41 105.5626 -8.845 13.341 5.560 0.171 0.129 2.651 5.197 2.500 0.000e+00 0.000e+00 446 442:bpm 105.5626 -8.845 13.341 5.560 0.171 0.129 2.651 5.197 2.500 0.000e+00 0.000e+00 447 443:sdb6 105.6824 -9.556 15.546 5.562 0.187 0.129 2.466 4.584 2.504 0.000e+00 0.000e+00 448 444:q7 106.1786 7.765 16.626 5.566 0.200 -0.080 -2.135 4.443 2.523 0.000e+00 0.000e+00 449 445:sd3 106.2805 7.390 15.081 5.567 0.192 -0.080 -2.262 4.891 2.527 0.000e+00 0.000e+00 450 446:sx6 106.4405 6.800 12.811 5.569 0.179 -0.080 -2.462 5.647 2.532 0.000e+00 0.000e+00 451 447:hcm 106.4405 6.800 12.811 5.569 0.179 -0.080 -2.462 5.647 2.532 0.000e+00 0.000e+00 452 448:vcm 106.4405 6.800 12.811 5.569 0.179 -0.080 -2.462 5.647 2.532 0.000e+00 0.000e+00 453 449:sd2 106.7304 5.731 9.179 5.573 0.156 -0.080 -2.825 7.180 2.539 0.000e+00 0.000e+00 454 450:q8 107.0906 0.836 6.960 5.581 0.142 0.002 1.342 7.753 2.546 0.000e+00 0.000e+00 455 451:ge 107.0906 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111.3030 -0.192 4.247 5.722 0.151 0.002 -0.180 2.858 2.723 0.000e+00 0.000e+00 478 474:sd13i 111.5030 -0.241 4.334 5.729 0.151 0.002 -0.252 2.944 2.734 0.000e+00 0.000e+00 479 475:sd13i 111.7030 -0.290 4.440 5.736 0.151 0.002 -0.324 3.059 2.744 0.000e+00 0.000e+00 480 476:sd13i 111.9030 -0.339 4.566 5.744 0.152 0.002 -0.397 3.203 2.754 0.000e+00 0.000e+00 481 477:sd13i 112.1030 -0.388 4.711 5.750 0.152 0.002 -0.469 3.376 2.764 0.000e+00 0.000e+00 482 478:sd13i 112.3030 -0.436 4.876 5.757 0.153 0.002 -0.541 3.578 2.773 0.000e+00 0.000e+00 483 479:sd13i 112.5030 -0.485 5.060 5.763 0.153 0.002 -0.613 3.809 2.782 0.000e+00 0.000e+00 484 480:sd13i 112.7030 -0.534 5.264 5.770 0.153 0.002 -0.686 4.069 2.790 0.000e+00 0.000e+00 485 481:sd13i 112.9030 -0.583 5.487 5.776 0.154 0.002 -0.758 4.358 2.798 0.000e+00 0.000e+00 486 482:sd13i 113.1030 -0.632 5.730 5.781 0.154 0.002 -0.830 4.675 2.805 0.000e+00 0.000e+00 487 483:sd13i 113.3030 -0.681 5.993 5.787 0.155 0.002 -0.902 5.022 2.811 0.000e+00 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8.315 3.233 0.000e+00 0.000e+00 586 582:bpm 129.6439 0.754 6.535 6.762 0.154 0.000 2.191 8.315 3.233 0.000e+00 0.000e+00 587 583:sd13a 132.7854 -0.000 4.167 6.864 0.154 0.000 -0.000 1.434 3.415 0.000e+00 0.000e+00 588 584:sd13a 135.9268 -0.754 6.536 6.967 0.154 0.000 -2.191 8.318 3.596 0.000e+00 0.000e+00 589 585:bpm 135.9268 -0.754 6.536 6.967 0.154 0.000 -2.191 8.318 3.596 0.000e+00 0.000e+00 590 586:sd87 136.2477 -0.831 7.044 6.975 0.154 0.000 -2.415 9.796 3.602 0.000e+00 0.000e+00 591 587:gs 136.2477 -0.831 7.044 6.975 0.154 0.000 -2.415 9.796 3.602 0.000e+00 0.000e+00 592 588:q8 136.6079 -5.775 9.276 6.982 0.170 0.089 3.045 9.552 3.608 0.000e+00 0.000e+00 593 589:sd2 136.8978 -6.849 12.936 6.986 0.196 0.089 2.733 7.877 3.613 0.000e+00 0.000e+00 594 590:sx8 137.0578 -7.441 15.222 6.988 0.210 0.089 2.561 7.030 3.617 0.000e+00 0.000e+00 595 591:hcm 137.0578 -7.441 15.222 6.988 0.210 0.089 2.561 7.030 3.617 0.000e+00 0.000e+00 596 592:vcm 137.0578 -7.441 15.222 6.988 0.210 0.089 2.561 7.030 3.617 0.000e+00 0.000e+00 597 593:sd3 137.1597 -7.819 16.777 6.989 0.219 0.089 2.452 6.519 3.619 0.000e+00 0.000e+00 598 594:q7 137.6559 9.652 15.672 6.994 0.206 -0.141 -4.606 7.436 3.631 0.000e+00 0.000e+00 599 595:sdb10 137.8228 8.649 12.618 6.995 0.182 -0.141 -5.105 9.057 3.635 0.000e+00 0.000e+00 600 596:bpm 137.8228 8.649 12.618 6.995 0.182 -0.141 -5.105 9.057 3.635 0.000e+00 0.000e+00 601 597:sd42 137.9478 7.898 10.549 6.997 0.165 -0.141 -5.478 10.380 3.637 0.000e+00 0.000e+00 602 598:sx7 138.1078 6.937 8.176 7.000 0.142 -0.141 -5.956 12.209 3.639 0.000e+00 0.000e+00 603 599:hcm 138.1078 6.937 8.176 7.000 0.142 -0.141 -5.956 12.209 3.639 0.000e+00 0.000e+00 604 600:vcm 138.1078 6.937 8.176 7.000 0.142 -0.141 -5.956 12.209 3.639 0.000e+00 0.000e+00 605 601:sd5 138.2077 6.336 6.850 7.002 0.128 -0.141 -6.255 13.429 3.640 0.000e+00 0.000e+00 606 602:q6 138.5679 3.000 3.626 7.014 0.085 -0.102 -1.213 16.243 3.644 0.000e+00 0.000e+00 607 603:ge 138.5679 3.000 3.626 7.014 0.085 -0.102 -1.213 16.243 3.644 0.000e+00 0.000e+00 608 604:sd7 138.9878 1.842 1.592 7.042 0.042 -0.102 -1.277 17.288 3.648 0.000e+00 0.000e+00 609 605:dip 138.9878 1.842 1.592 7.042 0.042 -0.102 -1.277 17.288 3.648 0.000e+00 0.000e+00 610 606:bend0 140.0402 -1.071 0.770 7.345 0.037 0.093 -1.480 20.187 3.657 0.000e+00 0.000e+00 611 607:sd7 140.4601 -2.242 2.161 7.398 0.076 0.093 -1.546 21.458 3.660 0.000e+00 0.000e+00 612 608:gs 140.4601 -2.242 2.161 7.398 0.076 0.093 -1.546 21.458 3.660 0.000e+00 0.000e+00 613 609:q9 140.8203 -5.657 4.834 7.416 0.119 0.145 9.182 18.512 3.663 0.000e+00 0.000e+00 614 610:sd8 140.9202 -6.340 6.033 7.419 0.133 0.145 8.722 16.724 3.664 0.000e+00 0.000e+00 615 611:sx9 141.0802 -7.432 8.236 7.423 0.156 0.145 7.984 14.051 3.665 0.000e+00 0.000e+00 616 612:hcm 141.0802 -7.432 8.236 7.423 0.156 0.145 7.984 14.051 3.665 0.000e+00 0.000e+00 617 613:vcm 141.0802 -7.432 8.236 7.423 0.156 0.145 7.984 14.051 3.665 0.000e+00 0.000e+00 618 614:sdb11 141.2521 -8.606 10.993 7.426 0.181 0.145 7.192 11.442 3.668 0.000e+00 0.000e+00 619 615:bpm 141.2521 -8.606 10.993 7.426 0.181 0.145 7.192 11.442 3.668 0.000e+00 0.000e+00 620 616:sd92 141.4564 -10.001 14.794 7.428 0.211 0.145 6.251 8.696 3.671 0.000e+00 0.000e+00 621 617:q10 141.8166 0.123 18.650 7.432 0.238 0.001 1.022 6.259 3.679 0.000e+00 0.000e+00 622 618:sd8 141.9165 0.118 18.626 7.433 0.238 0.001 0.989 6.058 3.681 0.000e+00 0.000e+00 623 619:sx10 142.0765 0.109 18.589 7.434 0.238 0.001 0.937 5.750 3.686 0.000e+00 0.000e+00 624 620:hcm 142.0765 0.109 18.589 7.434 0.238 0.001 0.937 5.750 3.686 0.000e+00 0.000e+00 625 621:vcm 142.0765 0.109 18.589 7.434 0.238 0.001 0.937 5.750 3.686 0.000e+00 0.000e+00 626 622:ge 142.0765 0.109 18.589 7.434 0.238 0.001 0.937 5.750 3.686 0.000e+00 0.000e+00 627 623:sd89 142.4169 0.090 18.522 7.437 0.238 0.001 0.826 5.150 3.696 0.000e+00 0.000e+00 628 624:bpm 142.4169 0.090 18.522 7.437 0.238 0.001 0.826 5.150 3.696 0.000e+00 0.000e+00 629 625:sdac1 143.9012 0.010 18.373 7.450 0.239 0.001 0.341 3.418 3.753 0.000e+00 0.000e+00 630 626:sdac1 145.3855 -0.071 18.465 7.463 0.240 0.001 -0.144 3.125 3.828 0.000e+00 0.000e+00 631 627:bpm 145.3855 -0.071 18.465 7.463 0.240 0.001 -0.144 3.125 3.828 0.000e+00 0.000e+00 632 628:sd88 145.7265 -0.090 18.520 7.465 0.240 0.001 -0.255 3.261 3.845 0.000e+00 0.000e+00 633 629:gs 145.7265 -0.090 18.520 7.465 0.240 0.001 -0.255 3.261 3.845 0.000e+00 0.000e+00 634 630:sx10 145.8865 -0.098 18.550 7.467 0.240 0.001 -0.307 3.351 3.853 0.000e+00 0.000e+00 635 631:qt 145.8865 -0.098 18.550 7.467 0.240 0.001 -0.307 3.351 3.853 0.000e+00 0.000e+00 636 632:hcm 145.8865 -0.098 18.550 7.467 0.240 0.001 -0.307 3.351 3.853 0.000e+00 0.000e+00 637 633:vcm 145.8865 -0.098 18.550 7.467 0.240 0.001 -0.307 3.351 3.853 0.000e+00 0.000e+00 638 634:sd8 145.9864 -0.104 18.570 7.468 0.240 0.001 -0.340 3.416 3.858 0.000e+00 0.000e+00 639 635:q10 146.3466 9.969 14.720 7.471 0.214 -0.146 -3.149 4.585 3.873 0.000e+00 0.000e+00 640 636:sd93 146.5979 8.255 10.140 7.474 0.177 -0.146 -3.747 6.319 3.880 0.000e+00 0.000e+00 641 637:bpm 146.5979 8.255 10.140 7.474 0.177 -0.146 -3.747 6.319 3.880 0.000e+00 0.000e+00 642 638:sdb12 146.7228 7.403 8.184 7.477 0.159 -0.146 -4.045 7.292 3.883 0.000e+00 0.000e+00 643 639:sx9 146.8828 6.312 5.990 7.480 0.135 -0.146 -4.426 8.647 3.886 0.000e+00 0.000e+00 644 640:hcm 146.8828 6.312 5.990 7.480 0.135 -0.146 -4.426 8.647 3.886 0.000e+00 0.000e+00 645 641:vcm 146.8828 6.312 5.990 7.480 0.135 -0.146 -4.426 8.647 3.886 0.000e+00 0.000e+00 646 642:sd8 146.9827 5.631 4.797 7.483 0.121 -0.146 -4.664 9.555 3.888 0.000e+00 0.000e+00 647 643:q9 147.3429 2.232 2.136 7.502 0.079 -0.092 0.845 11.028 3.894 0.000e+00 0.000e+00 648 644:ge 147.3429 2.232 2.136 7.502 0.079 -0.092 0.845 11.028 3.894 0.000e+00 0.000e+00 649 645:sd7 147.7628 1.056 0.756 7.555 0.040 -0.092 0.780 10.345 3.900 0.000e+00 0.000e+00 650 646:dip 147.7628 1.056 0.756 7.555 0.040 -0.092 0.780 10.345 3.900 0.000e+00 0.000e+00 651 647:bend0 148.8152 -1.867 1.621 7.859 0.045 0.103 0.597 8.897 3.917 0.000e+00 0.000e+00 652 648:sd7 149.2351 -3.029 3.676 7.886 0.089 0.103 0.533 8.422 3.925 0.000e+00 0.000e+00 653 649:gs 149.2351 -3.029 3.676 7.886 0.089 0.103 0.533 8.422 3.925 0.000e+00 0.000e+00 654 650:q6 149.5953 -6.396 6.930 7.898 0.132 0.143 3.147 7.035 3.932 0.000e+00 0.000e+00 655 651:sd5 149.6952 -7.000 8.268 7.900 0.147 0.143 2.992 6.422 3.935 0.000e+00 0.000e+00 656 652:sx7 149.8552 -7.967 10.663 7.902 0.169 0.143 2.744 5.504 3.939 0.000e+00 0.000e+00 657 653:hcm 149.8552 -7.967 10.663 7.902 0.169 0.143 2.744 5.504 3.939 0.000e+00 0.000e+00 658 654:vcm 149.8552 -7.967 10.663 7.902 0.169 0.143 2.744 5.504 3.939 0.000e+00 0.000e+00 659 655:sd41 150.0273 -9.008 13.584 7.905 0.194 0.143 2.478 4.605 3.944 0.000e+00 0.000e+00 660 656:bpm 150.0273 -9.008 13.584 7.905 0.194 0.143 2.478 4.605 3.944 0.000e+00 0.000e+00 661 657:sdb13 150.1471 -9.732 15.829 7.906 0.211 0.143 2.292 4.034 3.949 0.000e+00 0.000e+00 662 658:q7 150.6433 7.907 16.930 7.910 0.224 -0.093 -1.739 3.799 3.971 0.000e+00 0.000e+00 663 659:sd3 150.7452 7.525 15.358 7.911 0.215 -0.093 -1.847 4.164 3.975 0.000e+00 0.000e+00 664 660:sx8 150.9052 6.924 13.046 7.913 0.200 -0.093 -2.017 4.783 3.981 0.000e+00 0.000e+00 665 661:hcm 150.9052 6.924 13.046 7.913 0.200 -0.093 -2.017 4.783 3.981 0.000e+00 0.000e+00 666 662:vcm 150.9052 6.924 13.046 7.913 0.200 -0.093 -2.017 4.783 3.981 0.000e+00 0.000e+00 667 663:sd2 151.1951 5.837 9.346 7.917 0.173 -0.093 -2.324 6.041 3.989 0.000e+00 0.000e+00 668 664:q8 151.5553 0.854 7.086 7.925 0.156 -0.002 1.160 6.491 3.998 0.000e+00 0.000e+00 669 665:ge 151.5553 0.854 7.086 7.925 0.156 -0.002 1.160 6.491 3.998 0.000e+00 0.000e+00 670 666:sd87 151.8762 0.776 6.563 7.932 0.156 -0.002 1.044 5.784 4.006 0.000e+00 0.000e+00 671 667:bpm 151.8762 0.776 6.563 7.932 0.156 -0.002 1.044 5.784 4.006 0.000e+00 0.000e+00 672 668:sd13a 155.0177 0.009 4.098 8.036 0.149 -0.002 -0.091 2.791 4.149 0.000e+00 0.000e+00 673 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684 680:sdb14 160.0550 8.566 12.523 8.169 0.165 -0.129 -2.724 5.449 4.330 0.000e+00 0.000e+00 685 681:bpm 160.0550 8.566 12.523 8.169 0.165 -0.129 -2.724 5.449 4.330 0.000e+00 0.000e+00 686 682:sd43 160.1801 7.823 10.473 8.171 0.149 -0.129 -2.917 6.155 4.334 0.000e+00 0.000e+00 687 683:sx5 160.3401 6.873 8.122 8.174 0.129 -0.129 -3.164 7.128 4.338 0.000e+00 0.000e+00 688 684:hcm 160.3401 6.873 8.122 8.174 0.129 -0.129 -3.164 7.128 4.338 0.000e+00 0.000e+00 689 685:vcm 160.3401 6.873 8.122 8.174 0.129 -0.129 -3.164 7.128 4.338 0.000e+00 0.000e+00 690 686:sd5 160.4400 6.279 6.808 8.176 0.116 -0.129 -3.318 7.775 4.340 0.000e+00 0.000e+00 691 687:q6 160.8002 2.971 3.614 8.187 0.076 -0.095 -0.414 9.182 4.346 0.000e+00 0.000e+00 692 688:ge 160.8002 2.971 3.614 8.187 0.076 -0.095 -0.414 9.182 4.346 0.000e+00 0.000e+00 693 689:sd7 161.2201 1.829 1.598 8.215 0.036 -0.095 -0.468 9.552 4.353 0.000e+00 0.000e+00 694 690:dip 161.2201 1.829 1.598 8.215 0.036 -0.095 -0.468 9.552 4.353 0.000e+00 0.000e+00 695 691:bend0 162.2726 -1.043 0.759 8.516 0.039 0.101 -0.625 10.701 4.370 0.000e+00 0.000e+00 696 692:sd7 162.6925 -2.198 2.120 8.570 0.081 0.101 -0.679 11.249 4.376 0.000e+00 0.000e+00 697 693:gs 162.6925 -2.198 2.120 8.570 0.081 0.101 -0.679 11.249 4.376 0.000e+00 0.000e+00 698 694:q4 163.0527 -5.130 4.625 8.589 0.125 0.147 4.055 9.962 4.381 0.000e+00 0.000e+00 699 695:sd8 163.1526 -5.720 5.709 8.592 0.140 0.147 3.880 9.169 4.383 0.000e+00 0.000e+00 700 696:sx3 163.3126 -6.665 7.691 8.596 0.163 0.147 3.600 7.972 4.386 0.000e+00 0.000e+00 701 697:hcm 163.3126 -6.665 7.691 8.596 0.163 0.147 3.600 7.972 4.386 0.000e+00 0.000e+00 702 698:vcm 163.3126 -6.665 7.691 8.596 0.163 0.147 3.600 7.972 4.386 0.000e+00 0.000e+00 703 699:sdb15 163.4846 -7.681 10.158 8.599 0.189 0.147 3.299 6.786 4.390 0.000e+00 0.000e+00 704 700:bpm 163.4846 -7.681 10.158 8.599 0.189 0.147 3.299 6.786 4.390 0.000e+00 0.000e+00 705 701:sd9a 163.6888 -8.887 13.541 8.602 0.219 0.147 2.941 5.511 4.395 0.000e+00 0.000e+00 706 702:q5 164.0490 0.030 16.988 8.605 0.246 0.002 -0.278 4.617 4.407 0.000e+00 0.000e+00 707 703:sd10 164.4189 0.008 16.974 8.609 0.247 0.002 -0.364 4.854 4.419 0.000e+00 0.000e+00 708 704:sx4 164.5789 -0.001 16.973 8.610 0.247 0.002 -0.401 4.976 4.425 0.000e+00 0.000e+00 709 705:qt 164.5789 -0.001 16.973 8.610 0.247 0.002 -0.401 4.976 4.425 0.000e+00 0.000e+00 710 706:hcm 164.5789 -0.001 16.973 8.610 0.247 0.002 -0.401 4.976 4.425 0.000e+00 0.000e+00 711 707:vcm 164.5789 -0.001 16.973 8.610 0.247 0.002 -0.401 4.976 4.425 0.000e+00 0.000e+00 712 708:sdb4 164.7765 -0.013 16.976 8.612 0.248 0.002 -0.447 5.144 4.431 0.000e+00 0.000e+00 713 709:bpm 164.7765 -0.013 16.976 8.612 0.248 0.002 -0.447 5.144 4.431 0.000e+00 0.000e+00 714 710:sd10a 164.9488 -0.023 16.982 8.614 0.248 0.002 -0.488 5.305 4.436 0.000e+00 0.000e+00 715 711:q5 165.3090 8.888 13.532 8.617 0.222 -0.144 -4.554 6.999 4.446 0.000e+00 0.000e+00 716 712:sd93 165.5603 7.402 9.438 8.621 0.186 -0.144 -5.335 9.484 4.451 0.000e+00 0.000e+00 717 713:bpm 165.5603 7.402 9.438 8.621 0.186 -0.144 -5.335 9.484 4.451 0.000e+00 0.000e+00 718 714:sdb17 165.6853 6.663 7.680 8.623 0.168 -0.144 -5.723 10.866 4.453 0.000e+00 0.000e+00 719 715:sx3 165.8453 5.718 5.699 8.627 0.145 -0.144 -6.220 12.777 4.455 0.000e+00 0.000e+00 720 716:hcm 165.8453 5.718 5.699 8.627 0.145 -0.144 -6.220 12.777 4.455 0.000e+00 0.000e+00 721 717:vcm 165.8453 5.718 5.699 8.627 0.145 -0.144 -6.220 12.777 4.455 0.000e+00 0.000e+00 722 718:sd8 165.9452 5.127 4.616 8.630 0.130 -0.144 -6.530 14.050 4.456 0.000e+00 0.000e+00 723 719:q4 166.3054 2.197 2.113 8.649 0.088 -0.095 0.194 16.466 4.460 0.000e+00 0.000e+00 724 720:ge 166.3054 2.197 2.113 8.649 0.088 -0.095 0.194 16.466 4.460 0.000e+00 0.000e+00 725 721:sd7 166.7253 1.039 0.754 8.703 0.048 -0.095 0.167 16.315 4.464 0.000e+00 0.000e+00 726 722:dip 166.7253 1.039 0.754 8.703 0.048 -0.095 0.167 16.315 4.464 0.000e+00 0.000e+00 727 723:bend0 167.7777 -1.841 1.609 9.004 0.050 0.100 0.066 16.069 4.474 0.000e+00 0.000e+00 728 724:sd6 168.4877 -3.777 5.598 9.042 0.121 0.100 0.022 16.006 4.481 0.000e+00 0.000e+00 729 725:gs 168.4877 -3.777 5.598 9.042 0.121 0.100 0.022 16.006 4.481 0.000e+00 0.000e+00 730 726:sx2 168.6477 -4.213 6.876 9.046 0.137 0.100 0.012 16.001 4.483 0.000e+00 0.000e+00 731 727:hcm 168.6477 -4.213 6.876 9.046 0.137 0.100 0.012 16.001 4.483 0.000e+00 0.000e+00 732 728:vcm 168.6477 -4.213 6.876 9.046 0.137 0.100 0.012 16.001 4.483 0.000e+00 0.000e+00 733 729:sd5 168.7476 -4.485 7.745 9.049 0.147 0.100 0.006 15.999 4.484 0.000e+00 0.000e+00 734 730:q3 169.1078 -8.215 12.195 9.055 0.190 0.139 3.518 14.693 4.487 0.000e+00 0.000e+00 735 731:sd141 169.5397 -10.640 20.338 9.059 0.250 0.139 3.125 11.824 4.493 0.000e+00 0.000e+00 736 732:bpm 169.5397 -10.640 20.338 9.059 0.250 0.139 3.125 11.824 4.493 0.000e+00 0.000e+00 737 733:sdb18 169.6596 -11.313 22.971 9.060 0.267 0.139 3.016 11.088 4.494 0.000e+00 0.000e+00 738 734:q2 170.1558 8.226 24.742 9.063 0.280 -0.086 -6.187 12.482 4.501 0.000e+00 0.000e+00 739 735:sd3 170.2577 7.943 23.094 9.064 0.272 -0.086 -6.507 13.776 4.503 0.000e+00 0.000e+00 740 736:sx1 170.4177 7.499 20.623 9.065 0.258 -0.086 -7.011 15.939 4.504 0.000e+00 0.000e+00 741 737:qt 170.4177 7.499 20.623 9.065 0.258 -0.086 -7.011 15.939 4.504 0.000e+00 0.000e+00 742 738:hcm 170.4177 7.499 20.623 9.065 0.258 -0.086 -7.011 15.939 4.504 0.000e+00 0.000e+00 743 739:vcm 170.4177 7.499 20.623 9.065 0.258 -0.086 -7.011 15.939 4.504 0.000e+00 0.000e+00 744 740:sd2 170.7076 6.695 16.509 9.067 0.233 -0.086 -7.923 20.268 4.507 0.000e+00 0.000e+00 745 741:q1 171.0678 0.562 14.010 9.071 0.218 0.000 0.278 23.157 4.510 0.000e+00 0.000e+00 746 742:ge 171.0678 0.562 14.010 9.071 0.218 0.000 0.278 23.157 4.510 0.000e+00 0.000e+00 747 743:sdc12 171.3887 0.532 13.659 9.075 0.218 0.000 0.263 22.983 4.512 0.000e+00 0.000e+00 748 744:bpm 171.3887 0.532 13.659 9.075 0.218 0.000 0.263 22.983 4.512 0.000e+00 0.000e+00 749 745:sd1e 177.0476 0.000 10.646 9.153 0.218 0.000 0.000 21.492 4.553 0.000e+00 0.000e+00 750 746:sd1e 182.7065 -0.531 13.649 9.230 0.218 0.000 -0.263 22.982 4.594 0.000e+00 0.000e+00 751 747:bpm 182.7065 -0.531 13.649 9.230 0.218 0.000 -0.263 22.982 4.594 0.000e+00 0.000e+00 752 748:sdb1 183.0274 -0.561 14.000 9.234 0.218 0.000 -0.278 23.156 4.596 0.000e+00 0.000e+00 753 749:gs 183.0274 -0.561 14.000 9.234 0.218 0.000 -0.278 23.156 4.596 0.000e+00 0.000e+00 754 750:q1 183.3876 -6.690 16.497 9.238 0.233 0.086 7.923 20.267 4.599 0.000e+00 0.000e+00 755 751:sd2 183.6775 -7.493 20.609 9.240 0.258 0.086 7.010 15.938 4.601 0.000e+00 0.000e+00 756 752:sx1 183.8375 -7.937 23.077 9.242 0.272 0.086 6.507 13.775 4.603 0.000e+00 0.000e+00 757 753:qt 183.8375 -7.937 23.077 9.242 0.272 0.086 6.507 13.775 4.603 0.000e+00 0.000e+00 758 754:hcm 183.8375 -7.937 23.077 9.242 0.272 0.086 6.507 13.775 4.603 0.000e+00 0.000e+00 759 755:vcm 183.8375 -7.937 23.077 9.242 0.272 0.086 6.507 13.775 4.603 0.000e+00 0.000e+00 760 756:sd3 183.9394 -8.220 24.724 9.242 0.281 0.086 6.186 12.482 4.604 0.000e+00 0.000e+00 761 757:q2 184.4356 11.305 22.954 9.245 0.267 -0.139 -3.015 11.087 4.611 0.000e+00 0.000e+00 762 758:sdb2 184.6024 10.369 19.338 9.247 0.244 -0.139 -3.167 12.119 4.614 0.000e+00 0.000e+00 763 759:bpm 184.6024 10.369 19.338 9.247 0.244 -0.139 -3.167 12.119 4.614 0.000e+00 0.000e+00 764 760:sd14a 184.9874 8.209 12.186 9.251 0.190 -0.139 -3.518 14.692 4.618 0.000e+00 0.000e+00 765 761:q3 185.3476 4.482 7.739 9.257 0.147 -0.100 -0.006 15.998 4.622 0.000e+00 0.000e+00 766 762:sd5 185.4475 4.210 6.871 9.259 0.137 -0.100 -0.012 16.000 4.623 0.000e+00 0.000e+00 767 763:sx2 185.6075 3.774 5.593 9.263 0.121 -0.100 -0.022 16.006 4.624 0.000e+00 0.000e+00 768 764:hcm 185.6075 3.774 5.593 9.263 0.121 -0.100 -0.022 16.006 4.624 0.000e+00 0.000e+00 769 765:vcm 185.6075 3.774 5.593 9.263 0.121 -0.100 -0.022 16.006 4.624 0.000e+00 0.000e+00 770 766:ge 185.6075 3.774 5.593 9.263 0.121 -0.100 -0.022 16.006 4.624 0.000e+00 0.000e+00 771 767:sd6 186.3175 1.839 1.608 9.301 0.050 -0.100 -0.066 16.068 4.631 0.000e+00 0.000e+00 772 768:dip 186.3175 1.839 1.608 9.301 0.050 -0.100 -0.066 16.068 4.631 0.000e+00 0.000e+00 773 769:bend0 187.3699 -1.039 0.754 9.602 0.048 0.095 -0.167 16.314 4.642 0.000e+00 0.000e+00 774 770:sd7 187.7898 -2.196 2.112 9.656 0.088 0.095 -0.194 16.465 4.646 0.000e+00 0.000e+00 775 771:gs 187.7898 -2.196 2.112 9.656 0.088 0.095 -0.194 16.465 4.646 0.000e+00 0.000e+00 776 772:q4 188.1500 -5.125 4.615 9.675 0.130 0.144 6.530 14.050 4.650 0.000e+00 0.000e+00 777 773:sd8 188.2499 -5.715 5.698 9.678 0.145 0.144 6.220 12.776 4.651 0.000e+00 0.000e+00 778 774:sx3 188.4099 -6.661 7.678 9.682 0.168 0.144 5.723 10.865 4.653 0.000e+00 0.000e+00 779 775:hcm 188.4099 -6.661 7.678 9.682 0.168 0.144 5.723 10.865 4.653 0.000e+00 0.000e+00 780 776:vcm 188.4099 -6.661 7.678 9.682 0.168 0.144 5.723 10.865 4.653 0.000e+00 0.000e+00 781 777:sdb3 188.5819 -7.677 10.144 9.685 0.193 0.144 5.188 8.989 4.656 0.000e+00 0.000e+00 782 778:bpm 188.5819 -7.677 10.144 9.685 0.193 0.144 5.188 8.989 4.656 0.000e+00 0.000e+00 783 779:sd9a 188.7861 -8.884 13.526 9.688 0.222 0.144 4.554 6.999 4.660 0.000e+00 0.000e+00 784 780:q5 189.1463 0.023 16.974 9.691 0.248 -0.002 0.487 5.306 4.670 0.000e+00 0.000e+00 785 781:sd12 189.5162 0.001 16.965 9.695 0.247 -0.002 0.401 4.977 4.681 0.000e+00 0.000e+00 786 782:sx4 189.6762 -0.008 16.966 9.696 0.247 -0.002 0.364 4.855 4.686 0.000e+00 0.000e+00 787 783:qt 189.6762 -0.008 16.966 9.696 0.247 -0.002 0.364 4.855 4.686 0.000e+00 0.000e+00 788 784:hcm 189.6762 -0.008 16.966 9.696 0.247 -0.002 0.364 4.855 4.686 0.000e+00 0.000e+00 789 785:vcm 189.6762 -0.008 16.966 9.696 0.247 -0.002 0.364 4.855 4.686 0.000e+00 0.000e+00 790 786:sdb4 189.8738 -0.020 16.972 9.698 0.246 -0.002 0.318 4.720 4.693 0.000e+00 0.000e+00 791 787:bpm 189.8738 -0.020 16.972 9.698 0.246 -0.002 0.318 4.720 4.693 0.000e+00 0.000e+00 792 788:sd10a 190.0461 -0.030 16.980 9.700 0.246 -0.002 0.277 4.617 4.699 0.000e+00 0.000e+00 793 789:q5 190.4063 8.883 13.535 9.703 0.219 -0.147 -2.942 5.513 4.710 0.000e+00 0.000e+00 794 790:sd91 190.6576 7.400 9.444 9.707 0.182 -0.147 -3.382 7.101 4.717 0.000e+00 0.000e+00 795 791:bpm 190.6576 7.400 9.444 9.707 0.182 -0.147 -3.382 7.101 4.717 0.000e+00 0.000e+00 796 792:sdb5 190.7826 6.662 7.686 9.709 0.163 -0.147 -3.601 7.974 4.719 0.000e+00 0.000e+00 797 793:sx3 190.9426 5.717 5.706 9.713 0.140 -0.147 -3.881 9.172 4.722 0.000e+00 0.000e+00 798 794:hcm 190.9426 5.717 5.706 9.713 0.140 -0.147 -3.881 9.172 4.722 0.000e+00 0.000e+00 799 795:vcm 190.9426 5.717 5.706 9.713 0.140 -0.147 -3.881 9.172 4.722 0.000e+00 0.000e+00 800 796:sd8 191.0425 5.127 4.622 9.716 0.125 -0.147 -4.056 9.965 4.724 0.000e+00 0.000e+00 801 797:q4 191.4027 2.197 2.119 9.735 0.081 -0.101 0.680 11.252 4.729 0.000e+00 0.000e+00 802 798:ge 191.4027 2.197 2.119 9.735 0.081 -0.101 0.680 11.252 4.729 0.000e+00 0.000e+00 803 799:sd7 191.8226 1.042 0.759 9.789 0.039 -0.101 0.625 10.704 4.735 0.000e+00 0.000e+00 804 800:dip 191.8226 1.042 0.759 9.789 0.039 -0.101 0.625 10.704 4.735 0.000e+00 0.000e+00 805 801:bend0 192.8750 -1.829 1.598 10.090 0.036 0.095 0.468 9.555 4.752 0.000e+00 0.000e+00 806 802:sd7 193.2949 -2.971 3.613 10.118 0.076 0.095 0.414 9.184 4.759 0.000e+00 0.000e+00 807 803:gs 193.2949 -2.971 3.613 10.118 0.076 0.095 0.414 9.184 4.759 0.000e+00 0.000e+00 808 804:q6 193.6551 -6.278 6.807 10.129 0.116 0.129 3.319 7.777 4.766 0.000e+00 0.000e+00 809 805:sd5 193.7550 -6.871 8.121 10.132 0.129 0.129 3.165 7.130 4.768 0.000e+00 0.000e+00 810 806:sx5 193.9150 -7.821 10.471 10.134 0.149 0.129 2.918 6.156 4.772 0.000e+00 0.000e+00 811 807:hcm 193.9150 -7.821 10.471 10.134 0.149 0.129 2.918 6.156 4.772 0.000e+00 0.000e+00 812 808:vcm 193.9150 -7.821 10.471 10.134 0.149 0.129 2.918 6.156 4.772 0.000e+00 0.000e+00 813 809:sd41 194.0871 -8.843 13.339 10.137 0.171 0.129 2.652 5.198 4.777 0.000e+00 0.000e+00 814 810:bpm 194.0871 -8.843 13.339 10.137 0.171 0.129 2.652 5.198 4.777 0.000e+00 0.000e+00 815 811:sdb6 194.2069 -9.555 15.543 10.138 0.187 0.129 2.467 4.585 4.781 0.000e+00 0.000e+00 816 812:q7 194.7031 7.764 16.623 10.142 0.200 -0.080 -2.135 4.443 4.800 0.000e+00 0.000e+00 817 813:sd3 194.8050 7.389 15.079 10.143 0.192 -0.080 -2.262 4.891 4.803 0.000e+00 0.000e+00 818 814:sx6 194.9650 6.799 12.809 10.145 0.179 -0.080 -2.462 5.647 4.808 0.000e+00 0.000e+00 819 815:hcm 194.9650 6.799 12.809 10.145 0.179 -0.080 -2.462 5.647 4.808 0.000e+00 0.000e+00 820 816:vcm 194.9650 6.799 12.809 10.145 0.179 -0.080 -2.462 5.647 4.808 0.000e+00 0.000e+00 821 817:sd2 195.2549 5.730 9.177 10.150 0.156 -0.080 -2.825 7.180 4.815 0.000e+00 0.000e+00 822 818:q8 195.6151 0.836 6.959 10.157 0.142 0.002 1.342 7.753 4.823 0.000e+00 0.000e+00 823 819:ge 195.6151 0.836 6.959 10.157 0.142 0.002 1.342 7.753 4.823 0.000e+00 0.000e+00 824 820:sdc12 195.9360 0.758 6.447 10.165 0.143 0.002 1.226 6.929 4.830 0.000e+00 0.000e+00 825 821:bpm 195.9360 0.758 6.447 10.165 0.143 0.002 1.226 6.929 4.830 0.000e+00 0.000e+00 826 822:sd13k 196.3274 0.662 5.891 10.175 0.143 0.002 1.085 6.024 4.839 0.000e+00 0.000e+00 827 823:ssdm 196.3274 0.662 5.891 10.175 0.143 0.002 1.085 6.024 4.839 0.000e+00 0.000e+00 828 824:sd13i 196.5274 0.613 5.636 10.180 0.144 0.002 1.012 5.605 4.845 0.000e+00 0.000e+00 829 825:sd13i 196.7274 0.565 5.400 10.186 0.144 0.002 0.940 5.214 4.851 0.000e+00 0.000e+00 830 826:sd13i 196.9274 0.516 5.184 10.192 0.145 0.002 0.868 4.853 4.857 0.000e+00 0.000e+00 831 827:sd13i 197.1274 0.467 4.988 10.198 0.145 0.002 0.796 4.520 4.864 0.000e+00 0.000e+00 832 828:sd13i 197.3274 0.418 4.811 10.205 0.145 0.002 0.723 4.216 4.871 0.000e+00 0.000e+00 833 829:sd13i 197.5274 0.369 4.653 10.212 0.146 0.002 0.651 3.941 4.879 0.000e+00 0.000e+00 834 830:sd13i 197.7274 0.320 4.515 10.218 0.146 0.002 0.579 3.695 4.887 0.000e+00 0.000e+00 835 831:sd13i 197.9274 0.272 4.397 10.226 0.147 0.002 0.507 3.478 4.896 0.000e+00 0.000e+00 836 832:sd13i 198.1274 0.223 4.298 10.233 0.147 0.002 0.434 3.290 4.906 0.000e+00 0.000e+00 837 833:sd13i 198.3274 0.174 4.219 10.240 0.148 0.002 0.362 3.131 4.915 0.000e+00 0.000e+00 838 834:sd13i 198.5274 0.125 4.159 10.248 0.148 0.002 0.290 3.000 4.926 0.000e+00 0.000e+00 839 835:sd13i 198.7274 0.076 4.119 10.256 0.148 0.002 0.218 2.899 4.937 0.000e+00 0.000e+00 840 836:sd13i 198.9274 0.027 4.098 10.263 0.149 0.002 0.145 2.826 4.948 0.000e+00 0.000e+00 841 837:sd13j 199.0774 -0.009 4.095 10.269 0.149 0.002 0.091 2.791 4.956 0.000e+00 0.000e+00 842 838:sd13j 199.2274 -0.046 4.104 10.275 0.149 0.002 0.037 2.771 4.965 0.000e+00 0.000e+00 843 839:sd13i 199.4274 -0.095 4.132 10.283 0.150 0.002 -0.035 2.771 4.976 0.000e+00 0.000e+00 844 840:sd13i 199.6274 -0.144 4.179 10.291 0.150 0.002 -0.108 2.800 4.988 0.000e+00 0.000e+00 845 841:sd13i 199.8274 -0.192 4.247 10.298 0.151 0.002 -0.180 2.857 4.999 0.000e+00 0.000e+00 846 842:sd13i 200.0274 -0.241 4.333 10.305 0.151 0.002 -0.252 2.944 5.010 0.000e+00 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10.395 0.224 0.093 1.739 3.799 5.135 0.000e+00 0.000e+00 869 865:q7 203.9480 9.734 15.833 10.399 0.211 -0.143 -2.292 4.034 5.157 0.000e+00 0.000e+00 870 866:sdb7 204.1149 8.725 12.752 10.401 0.187 -0.143 -2.551 4.843 5.163 0.000e+00 0.000e+00 871 867:bpm 204.1149 8.725 12.752 10.401 0.187 -0.143 -2.551 4.843 5.163 0.000e+00 0.000e+00 872 868:sd42 204.2399 7.969 10.666 10.403 0.169 -0.143 -2.745 5.505 5.167 0.000e+00 0.000e+00 873 869:sx7 204.3999 7.001 8.271 10.405 0.147 -0.143 -2.993 6.423 5.171 0.000e+00 0.000e+00 874 870:hcm 204.3999 7.001 8.271 10.405 0.147 -0.143 -2.993 6.423 5.171 0.000e+00 0.000e+00 875 871:vcm 204.3999 7.001 8.271 10.405 0.147 -0.143 -2.993 6.423 5.171 0.000e+00 0.000e+00 876 872:sd5 204.4998 6.397 6.932 10.407 0.132 -0.143 -3.148 7.036 5.173 0.000e+00 0.000e+00 877 873:q6 204.8600 3.029 3.677 10.419 0.089 -0.103 -0.534 8.424 5.181 0.000e+00 0.000e+00 878 874:ge 204.8600 3.029 3.677 10.419 0.089 -0.103 -0.534 8.424 5.181 0.000e+00 0.000e+00 879 875:sd7 205.2799 1.867 1.621 10.447 0.045 -0.103 -0.598 8.899 5.188 0.000e+00 0.000e+00 880 876:dip 205.2799 1.867 1.621 10.447 0.045 -0.103 -0.598 8.899 5.188 0.000e+00 0.000e+00 881 877:bend0 206.3323 -1.056 0.755 10.750 0.040 0.092 -0.780 10.348 5.206 0.000e+00 0.000e+00 882 878:sd7 206.7522 -2.231 2.135 10.803 0.079 0.092 -0.846 11.031 5.212 0.000e+00 0.000e+00 883 879:gs 206.7522 -2.231 2.135 10.803 0.079 0.092 -0.846 11.031 5.212 0.000e+00 0.000e+00 884 880:q9 207.1124 -5.630 4.795 10.822 0.121 0.146 4.665 9.558 5.217 0.000e+00 0.000e+00 885 881:sd8 207.2123 -6.311 5.988 10.825 0.135 0.146 4.427 8.649 5.219 0.000e+00 0.000e+00 886 882:sx9 207.3723 -7.402 8.182 10.829 0.159 0.146 4.046 7.294 5.222 0.000e+00 0.000e+00 887 883:hcm 207.3723 -7.402 8.182 10.829 0.159 0.146 4.046 7.294 5.222 0.000e+00 0.000e+00 888 884:vcm 207.3723 -7.402 8.182 10.829 0.159 0.146 4.046 7.294 5.222 0.000e+00 0.000e+00 889 885:sdb8 207.5443 -8.574 10.930 10.832 0.184 0.146 3.636 5.972 5.227 0.000e+00 0.000e+00 890 886:bpm 207.5443 -8.574 10.930 10.832 0.184 0.146 3.636 5.972 5.227 0.000e+00 0.000e+00 891 887:sd9a 207.7485 -9.967 14.716 10.834 0.213 0.146 3.150 4.587 5.233 0.000e+00 0.000e+00 892 888:q10 208.1087 0.103 18.566 10.837 0.240 -0.001 0.340 3.417 5.248 0.000e+00 0.000e+00 893 889:sd8 208.2086 0.098 18.546 10.838 0.240 -0.001 0.308 3.352 5.252 0.000e+00 0.000e+00 894 890:sx10 208.3686 0.089 18.516 10.840 0.240 -0.001 0.255 3.262 5.260 0.000e+00 0.000e+00 895 891:qt 208.3686 0.089 18.516 10.840 0.240 -0.001 0.255 3.262 5.260 0.000e+00 0.000e+00 896 892:hcm 208.3686 0.089 18.516 10.840 0.240 -0.001 0.255 3.262 5.260 0.000e+00 0.000e+00 897 893:vcm 208.3686 0.089 18.516 10.840 0.240 -0.001 0.255 3.262 5.260 0.000e+00 0.000e+00 898 894:ge 208.3686 0.089 18.516 10.840 0.240 -0.001 0.255 3.262 5.260 0.000e+00 0.000e+00 899 895:sdc44 208.7090 0.071 18.461 10.843 0.240 -0.001 0.144 3.126 5.277 0.000e+00 0.000e+00 900 896:bpm 208.7090 0.071 18.461 10.843 0.240 -0.001 0.144 3.126 5.277 0.000e+00 0.000e+00 901 897:sdac4 209.2933 0.039 18.397 10.848 0.239 -0.001 -0.047 3.069 5.307 0.000e+00 0.000e+00 902 898:ssdac 209.2933 0.039 18.397 10.848 0.239 -0.001 -0.047 3.069 5.307 0.000e+00 0.000e+00 903 899:sdac2 209.4933 0.028 18.384 10.849 0.239 -0.001 -0.112 3.101 5.318 0.000e+00 0.000e+00 904 900:sdac2 209.6933 0.017 18.375 10.851 0.239 -0.001 -0.177 3.159 5.328 0.000e+00 0.000e+00 905 901:sdac2 209.8933 0.006 18.370 10.853 0.239 -0.001 -0.243 3.243 5.338 0.000e+00 0.000e+00 906 902:sdac2 210.0933 -0.005 18.370 10.855 0.239 -0.001 -0.308 3.353 5.347 0.000e+00 0.000e+00 907 903:sdac2 210.2933 -0.016 18.374 10.856 0.239 -0.001 -0.373 3.489 5.357 0.000e+00 0.000e+00 908 904:sdac2 210.4933 -0.026 18.383 10.858 0.239 -0.001 -0.438 3.652 5.366 0.000e+00 0.000e+00 909 905:sdac2 210.6933 -0.037 18.395 10.860 0.239 -0.001 -0.504 3.840 5.374 0.000e+00 0.000e+00 910 906:sdac2 210.8933 -0.048 18.413 10.861 0.239 -0.001 -0.569 4.055 5.382 0.000e+00 0.000e+00 911 907:sdac2 211.0933 -0.059 18.434 10.863 0.238 -0.001 -0.634 4.295 5.390 0.000e+00 0.000e+00 912 908:esdac 211.0933 -0.059 18.434 10.863 0.238 -0.001 -0.634 4.295 5.390 0.000e+00 0.000e+00 913 909:sdac4 211.6776 -0.091 18.522 10.868 0.238 -0.001 -0.825 5.148 5.410 0.000e+00 0.000e+00 914 910:bpm 211.6776 -0.091 18.522 10.868 0.238 -0.001 -0.825 5.148 5.410 0.000e+00 0.000e+00 915 911:sdc45 212.0186 -0.110 18.590 10.871 0.238 -0.001 -0.936 5.749 5.420 0.000e+00 0.000e+00 916 912:gs 212.0186 -0.110 18.590 10.871 0.238 -0.001 -0.936 5.749 5.420 0.000e+00 0.000e+00 917 913:sx10 212.1786 -0.118 18.627 10.873 0.238 -0.001 -0.989 6.057 5.424 0.000e+00 0.000e+00 918 914:hcm 212.1786 -0.118 18.627 10.873 0.238 -0.001 -0.989 6.057 5.424 0.000e+00 0.000e+00 919 915:vcm 212.1786 -0.118 18.627 10.873 0.238 -0.001 -0.989 6.057 5.424 0.000e+00 0.000e+00 920 916:sd8 212.2785 -0.124 18.651 10.873 0.238 -0.001 -1.021 6.257 5.427 0.000e+00 0.000e+00 921 917:q10 212.6387 10.001 14.796 10.877 0.211 -0.145 -6.249 8.694 5.435 0.000e+00 0.000e+00 922 918:sd91 212.8899 8.285 10.201 10.880 0.174 -0.145 -7.407 12.125 5.439 0.000e+00 0.000e+00 923 919:bpm 212.8899 8.285 10.201 10.880 0.174 -0.145 -7.407 12.125 5.439 0.000e+00 0.000e+00 924 920:sd42 213.0149 7.432 8.237 10.882 0.156 -0.145 -7.983 14.048 5.440 0.000e+00 0.000e+00 925 921:sx9 213.1749 6.340 6.033 10.886 0.133 -0.145 -8.720 16.721 5.442 0.000e+00 0.000e+00 926 922:hcm 213.1749 6.340 6.033 10.886 0.133 -0.145 -8.720 16.721 5.442 0.000e+00 0.000e+00 927 923:vcm 213.1749 6.340 6.033 10.886 0.133 -0.145 -8.720 16.721 5.442 0.000e+00 0.000e+00 928 924:sd8 213.2748 5.658 4.835 10.889 0.119 -0.145 -9.180 18.509 5.443 0.000e+00 0.000e+00 929 925:q9 213.6350 2.242 2.162 10.907 0.076 -0.093 1.546 21.454 5.445 0.000e+00 0.000e+00 930 926:ge 213.6350 2.242 2.162 10.907 0.076 -0.093 1.546 21.454 5.445 0.000e+00 0.000e+00 931 927:sd7 214.0549 1.071 0.770 10.960 0.037 -0.093 1.480 20.183 5.449 0.000e+00 0.000e+00 932 928:dip 214.0549 1.071 0.770 10.960 0.037 -0.093 1.480 20.183 5.449 0.000e+00 0.000e+00 933 929:bend0 215.1074 -1.842 1.592 11.263 0.042 0.102 1.277 17.284 5.458 0.000e+00 0.000e+00 934 930:sd7 215.5273 -3.000 3.625 11.291 0.085 0.102 1.213 16.238 5.462 0.000e+00 0.000e+00 935 931:gs 215.5273 -3.000 3.625 11.291 0.085 0.102 1.213 16.238 5.462 0.000e+00 0.000e+00 936 932:q6 215.8875 -6.335 6.848 11.303 0.128 0.141 6.253 13.425 5.465 0.000e+00 0.000e+00 937 933:sd5 215.9874 -6.935 8.174 11.305 0.142 0.141 5.955 12.206 5.467 0.000e+00 0.000e+00 938 934:sx7 216.1474 -7.896 10.547 11.308 0.165 0.141 5.477 10.377 5.469 0.000e+00 0.000e+00 939 935:hcm 216.1474 -7.896 10.547 11.308 0.165 0.141 5.477 10.377 5.469 0.000e+00 0.000e+00 940 936:vcm 216.1474 -7.896 10.547 11.308 0.165 0.141 5.477 10.377 5.469 0.000e+00 0.000e+00 941 937:sd41 216.3195 -8.930 13.442 11.310 0.189 0.141 4.963 8.580 5.472 0.000e+00 0.000e+00 942 938:bpm 216.3195 -8.930 13.442 11.310 0.189 0.141 4.963 8.580 5.472 0.000e+00 0.000e+00 943 939:sdb9 216.4393 -9.650 15.668 11.312 0.206 0.141 4.605 7.434 5.474 0.000e+00 0.000e+00 944 940:q7 216.9355 7.817 16.774 11.316 0.219 -0.089 -2.451 6.517 5.487 0.000e+00 0.000e+00 945 941:sd3 217.0374 7.440 15.219 11.317 0.210 -0.089 -2.560 7.027 5.489 0.000e+00 0.000e+00 946 942:sx8 217.1974 6.847 12.933 11.319 0.196 -0.089 -2.732 7.874 5.492 0.000e+00 0.000e+00 947 943:qt 217.1974 6.847 12.933 11.319 0.196 -0.089 -2.732 7.874 5.492 0.000e+00 0.000e+00 948 944:hcm 217.1974 6.847 12.933 11.319 0.196 -0.089 -2.732 7.874 5.492 0.000e+00 0.000e+00 949 945:vcm 217.1974 6.847 12.933 11.319 0.196 -0.089 -2.732 7.874 5.492 0.000e+00 0.000e+00 950 946:sd2 217.4873 5.774 9.274 11.323 0.170 -0.089 -3.044 9.549 5.498 0.000e+00 0.000e+00 951 947:q8 217.8475 0.830 7.043 11.330 0.154 -0.000 2.414 9.792 5.503 0.000e+00 0.000e+00 952 948:ge 217.8475 0.830 7.043 11.330 0.154 -0.000 2.414 9.792 5.503 0.000e+00 0.000e+00 953 949:sd87 218.1684 0.753 6.535 11.338 0.154 -0.000 2.190 8.314 5.509 0.000e+00 0.000e+00 954 950:bpm 218.1684 0.753 6.535 11.338 0.154 -0.000 2.190 8.314 5.509 0.000e+00 0.000e+00 955 951:sd13a 221.3098 -0.000 4.168 11.441 0.154 -0.000 -0.000 1.434 5.691 0.000e+00 0.000e+00 956 952:sd13a 224.4513 -0.754 6.537 11.543 0.154 -0.000 -2.191 8.317 5.873 0.000e+00 0.000e+00 957 953:bpm 224.4513 -0.754 6.537 11.543 0.154 -0.000 -2.191 8.317 5.873 0.000e+00 0.000e+00 958 954:sd87 224.7722 -0.831 7.045 11.551 0.154 -0.000 -2.414 9.794 5.878 0.000e+00 0.000e+00 959 955:gs 224.7722 -0.831 7.045 11.551 0.154 -0.000 -2.414 9.794 5.878 0.000e+00 0.000e+00 960 956:q8 225.1324 -5.776 9.277 11.558 0.170 0.089 3.045 9.551 5.884 0.000e+00 0.000e+00 961 957:sd2 225.4223 -6.849 12.937 11.563 0.196 0.089 2.733 7.876 5.890 0.000e+00 0.000e+00 962 958:sx8 225.5823 -7.442 15.224 11.564 0.210 0.089 2.561 7.029 5.893 0.000e+00 0.000e+00 963 959:hcm 225.5823 -7.442 15.224 11.564 0.210 0.089 2.561 7.029 5.893 0.000e+00 0.000e+00 964 960:vcm 225.5823 -7.442 15.224 11.564 0.210 0.089 2.561 7.029 5.893 0.000e+00 0.000e+00 965 961:sd3 225.6842 -7.819 16.779 11.565 0.219 0.089 2.451 6.518 5.895 0.000e+00 0.000e+00 966 962:q7 226.1804 9.653 15.673 11.570 0.206 -0.141 -4.605 7.435 5.908 0.000e+00 0.000e+00 967 963:sdb10 226.3473 8.650 12.619 11.572 0.182 -0.141 -5.104 9.055 5.911 0.000e+00 0.000e+00 968 964:bpm 226.3473 8.650 12.619 11.572 0.182 -0.141 -5.104 9.055 5.911 0.000e+00 0.000e+00 969 965:sd42 226.4723 7.899 10.550 11.573 0.165 -0.141 -5.477 10.378 5.913 0.000e+00 0.000e+00 970 966:sx7 226.6323 6.937 8.176 11.576 0.142 -0.141 -5.955 12.207 5.915 0.000e+00 0.000e+00 971 967:hcm 226.6323 6.937 8.176 11.576 0.142 -0.141 -5.955 12.207 5.915 0.000e+00 0.000e+00 972 968:vcm 226.6323 6.937 8.176 11.576 0.142 -0.141 -5.955 12.207 5.915 0.000e+00 0.000e+00 973 969:sd5 226.7322 6.337 6.850 11.578 0.128 -0.141 -6.254 13.427 5.916 0.000e+00 0.000e+00 974 970:q6 227.0924 3.001 3.626 11.590 0.085 -0.102 -1.213 16.240 5.920 0.000e+00 0.000e+00 975 971:ge 227.0924 3.001 3.626 11.590 0.085 -0.102 -1.213 16.240 5.920 0.000e+00 0.000e+00 976 972:sd7 227.5123 1.842 1.592 11.618 0.042 -0.102 -1.276 17.285 5.924 0.000e+00 0.000e+00 977 973:dip 227.5123 1.842 1.592 11.618 0.042 -0.102 -1.276 17.285 5.924 0.000e+00 0.000e+00 978 974:bend0 228.5647 -1.072 0.770 11.922 0.037 0.093 -1.480 20.183 5.933 0.000e+00 0.000e+00 979 975:sd7 228.9846 -2.243 2.162 11.974 0.076 0.093 -1.546 21.454 5.936 0.000e+00 0.000e+00 980 976:gs 228.9846 -2.243 2.162 11.974 0.076 0.093 -1.546 21.454 5.936 0.000e+00 0.000e+00 981 977:q9 229.3448 -5.659 4.836 11.993 0.119 0.145 9.180 18.509 5.939 0.000e+00 0.000e+00 982 978:sd8 229.4447 -6.341 6.034 11.996 0.133 0.145 8.720 16.721 5.940 0.000e+00 0.000e+00 983 979:sx9 229.6047 -7.434 8.238 11.999 0.156 0.145 7.983 14.048 5.942 0.000e+00 0.000e+00 984 980:hcm 229.6047 -7.434 8.238 11.999 0.156 0.145 7.983 14.048 5.942 0.000e+00 0.000e+00 985 981:vcm 229.6047 -7.434 8.238 11.999 0.156 0.145 7.983 14.048 5.942 0.000e+00 0.000e+00 986 982:sdb11 229.7766 -8.608 10.996 12.002 0.181 0.145 7.191 11.440 5.944 0.000e+00 0.000e+00 987 983:bpm 229.7766 -8.608 10.996 12.002 0.181 0.145 7.191 11.440 5.944 0.000e+00 0.000e+00 988 984:sd92 229.9809 -10.003 14.798 12.005 0.211 0.145 6.250 8.694 5.947 0.000e+00 0.000e+00 989 985:q10 230.3411 0.123 18.654 12.008 0.238 0.001 1.021 6.258 5.955 0.000e+00 0.000e+00 990 986:sd8 230.4410 0.118 18.630 12.009 0.238 0.001 0.989 6.057 5.958 0.000e+00 0.000e+00 991 987:sx10 230.6010 0.109 18.594 12.010 0.238 0.001 0.937 5.749 5.962 0.000e+00 0.000e+00 992 988:hcm 230.6010 0.109 18.594 12.010 0.238 0.001 0.937 5.749 5.962 0.000e+00 0.000e+00 993 989:vcm 230.6010 0.109 18.594 12.010 0.238 0.001 0.937 5.749 5.962 0.000e+00 0.000e+00 994 990:ge 230.6010 0.109 18.594 12.010 0.238 0.001 0.937 5.749 5.962 0.000e+00 0.000e+00 995 991:sd89 230.9414 0.091 18.526 12.013 0.238 0.001 0.825 5.149 5.972 0.000e+00 0.000e+00 996 992:bpm 230.9414 0.091 18.526 12.013 0.238 0.001 0.825 5.149 5.972 0.000e+00 0.000e+00 997 993:sdac1 232.4257 0.010 18.377 12.026 0.239 0.001 0.341 3.418 6.030 0.000e+00 0.000e+00 998 994:sdac1 233.9099 -0.071 18.468 12.039 0.240 0.001 -0.144 3.126 6.105 0.000e+00 0.000e+00 999 995:bpm 233.9099 -0.071 18.468 12.039 0.240 0.001 -0.144 3.126 6.105 0.000e+00 0.000e+00 1000 996:sd88 234.2509 -0.090 18.523 12.042 0.240 0.001 -0.255 3.262 6.122 0.000e+00 0.000e+00 1001 997:gs 234.2509 -0.090 18.523 12.042 0.240 0.001 -0.255 3.262 6.122 0.000e+00 0.000e+00 1002 998:sx10 234.4109 -0.098 18.553 12.043 0.240 0.001 -0.308 3.352 6.129 0.000e+00 0.000e+00 1003 999:qt 234.4109 -0.098 18.553 12.043 0.240 0.001 -0.308 3.352 6.129 0.000e+00 0.000e+00 1004 1000:hcm 234.4109 -0.098 18.553 12.043 0.240 0.001 -0.308 3.352 6.129 0.000e+00 0.000e+00 1005 1001:vcm 234.4109 -0.098 18.553 12.043 0.240 0.001 -0.308 3.352 6.129 0.000e+00 0.000e+00 1006 1002:sd8 234.5108 -0.104 18.573 12.044 0.240 0.001 -0.340 3.417 6.134 0.000e+00 0.000e+00 1007 1003:q10 234.8710 9.970 14.722 12.047 0.214 -0.146 -3.150 4.586 6.149 0.000e+00 0.000e+00 1008 1004:sd93 235.1223 8.256 10.142 12.051 0.177 -0.146 -3.748 6.320 6.157 0.000e+00 0.000e+00 1009 1005:bpm 235.1223 8.256 10.142 12.051 0.177 -0.146 -3.748 6.320 6.157 0.000e+00 0.000e+00 1010 1006:sdb12 235.2472 7.405 8.186 12.053 0.159 -0.146 -4.045 7.293 6.160 0.000e+00 0.000e+00 1011 1007:sx9 235.4072 6.313 5.991 12.056 0.135 -0.146 -4.426 8.648 6.163 0.000e+00 0.000e+00 1012 1008:hcm 235.4072 6.313 5.991 12.056 0.135 -0.146 -4.426 8.648 6.163 0.000e+00 0.000e+00 1013 1009:vcm 235.4072 6.313 5.991 12.056 0.135 -0.146 -4.426 8.648 6.163 0.000e+00 0.000e+00 1014 1010:sd8 235.5071 5.632 4.797 12.059 0.121 -0.146 -4.664 9.557 6.165 0.000e+00 0.000e+00 1015 1011:q9 235.8673 2.232 2.136 12.078 0.079 -0.092 0.845 11.030 6.170 0.000e+00 0.000e+00 1016 1012:ge 235.8673 2.232 2.136 12.078 0.079 -0.092 0.845 11.030 6.170 0.000e+00 0.000e+00 1017 1013:sd7 236.2872 1.056 0.756 12.132 0.040 -0.092 0.780 10.347 6.176 0.000e+00 0.000e+00 1018 1014:dip 236.2872 1.056 0.756 12.132 0.040 -0.092 0.780 10.347 6.176 0.000e+00 0.000e+00 1019 1015:bend0 237.3397 -1.867 1.621 12.435 0.045 0.103 0.598 8.898 6.194 0.000e+00 0.000e+00 1020 1016:sd7 237.7596 -3.030 3.677 12.462 0.089 0.103 0.534 8.423 6.201 0.000e+00 0.000e+00 1021 1017:gs 237.7596 -3.030 3.677 12.462 0.089 0.103 0.534 8.423 6.201 0.000e+00 0.000e+00 1022 1018:q6 238.1198 -6.397 6.932 12.474 0.132 0.143 3.148 7.036 6.209 0.000e+00 0.000e+00 1023 1019:sd5 238.2197 -7.002 8.271 12.476 0.147 0.143 2.993 6.423 6.211 0.000e+00 0.000e+00 1024 1020:sx7 238.3797 -7.969 10.666 12.479 0.169 0.143 2.745 5.505 6.215 0.000e+00 0.000e+00 1025 1021:hcm 238.3797 -7.969 10.666 12.479 0.169 0.143 2.745 5.505 6.215 0.000e+00 0.000e+00 1026 1022:vcm 238.3797 -7.969 10.666 12.479 0.169 0.143 2.745 5.505 6.215 0.000e+00 0.000e+00 1027 1023:sd41 238.5518 -9.010 13.588 12.481 0.194 0.143 2.478 4.606 6.221 0.000e+00 0.000e+00 1028 1024:bpm 238.5518 -9.010 13.588 12.481 0.194 0.143 2.478 4.606 6.221 0.000e+00 0.000e+00 1029 1025:sdb13 238.6716 -9.735 15.834 12.482 0.211 0.143 2.292 4.035 6.225 0.000e+00 0.000e+00 1030 1026:q7 239.1678 7.909 16.935 12.487 0.224 -0.093 -1.740 3.799 6.247 0.000e+00 0.000e+00 1031 1027:sd3 239.2697 7.527 15.362 12.488 0.215 -0.093 -1.848 4.165 6.251 0.000e+00 0.000e+00 1032 1028:sx8 239.4297 6.926 13.049 12.490 0.200 -0.093 -2.017 4.783 6.257 0.000e+00 0.000e+00 1033 1029:hcm 239.4297 6.926 13.049 12.490 0.200 -0.093 -2.017 4.783 6.257 0.000e+00 0.000e+00 1034 1030:vcm 239.4297 6.926 13.049 12.490 0.200 -0.093 -2.017 4.783 6.257 0.000e+00 0.000e+00 1035 1031:sd2 239.7196 5.838 9.349 12.494 0.173 -0.093 -2.324 6.042 6.266 0.000e+00 0.000e+00 1036 1032:q8 240.0798 0.854 7.088 12.501 0.156 -0.002 1.160 6.492 6.274 0.000e+00 0.000e+00 1037 1033:ge 240.0798 0.854 7.088 12.501 0.156 -0.002 1.160 6.492 6.274 0.000e+00 0.000e+00 1038 1034:sd87 240.4007 0.776 6.565 12.508 0.156 -0.002 1.044 5.785 6.283 0.000e+00 0.000e+00 1039 1035:bpm 240.4007 0.776 6.565 12.508 0.156 -0.002 1.044 5.785 6.283 0.000e+00 0.000e+00 1040 1036:sd13a 243.5421 0.009 4.097 12.612 0.149 -0.002 -0.091 2.791 6.426 0.000e+00 0.000e+00 1041 1037:sd13a 246.6836 -0.757 6.448 12.717 0.143 -0.002 -1.226 6.928 6.552 0.000e+00 0.000e+00 1042 1038:bpm 246.6836 -0.757 6.448 12.717 0.143 -0.002 -1.226 6.928 6.552 0.000e+00 0.000e+00 1043 1039:sd87 247.0045 -0.836 6.959 12.724 0.142 -0.002 -1.342 7.752 6.559 0.000e+00 0.000e+00 1044 1040:gs 247.0045 -0.836 6.959 12.724 0.142 -0.002 -1.342 7.752 6.559 0.000e+00 0.000e+00 1045 1041:q8 247.3647 -5.729 9.177 12.732 0.156 0.080 2.824 7.179 6.567 0.000e+00 0.000e+00 1046 1042:sd2 247.6546 -6.798 12.808 12.736 0.179 0.080 2.462 5.646 6.574 0.000e+00 0.000e+00 1047 1043:sx6 247.8146 -7.388 15.078 12.738 0.191 0.080 2.262 4.890 6.579 0.000e+00 0.000e+00 1048 1044:hcm 247.8146 -7.388 15.078 12.738 0.191 0.080 2.262 4.890 6.579 0.000e+00 0.000e+00 1049 1045:vcm 247.8146 -7.388 15.078 12.738 0.191 0.080 2.262 4.890 6.579 0.000e+00 0.000e+00 1050 1046:sd3 247.9165 -7.763 16.622 12.739 0.200 0.080 2.134 4.442 6.582 0.000e+00 0.000e+00 1051 1047:q7 248.4127 9.554 15.542 12.743 0.187 -0.129 -2.466 4.584 6.601 0.000e+00 0.000e+00 1052 1048:sdb14 248.5795 8.564 12.520 12.745 0.165 -0.129 -2.724 5.450 6.607 0.000e+00 0.000e+00 1053 1049:bpm 248.5795 8.564 12.520 12.745 0.165 -0.129 -2.724 5.450 6.607 0.000e+00 0.000e+00 1054 1050:sd43 248.7046 7.821 10.470 12.747 0.149 -0.129 -2.917 6.155 6.610 0.000e+00 0.000e+00 1055 1051:sx5 248.8646 6.871 8.119 12.750 0.128 -0.129 -3.165 7.128 6.614 0.000e+00 0.000e+00 1056 1052:hcm 248.8646 6.871 8.119 12.750 0.128 -0.129 -3.165 7.128 6.614 0.000e+00 0.000e+00 1057 1053:vcm 248.8646 6.871 8.119 12.750 0.128 -0.129 -3.165 7.128 6.614 0.000e+00 0.000e+00 1058 1054:sd5 248.9645 6.278 6.806 12.752 0.116 -0.129 -3.319 7.776 6.616 0.000e+00 0.000e+00 1059 1055:q6 249.3247 2.971 3.613 12.764 0.076 -0.095 -0.414 9.183 6.623 0.000e+00 0.000e+00 1060 1056:ge 249.3247 2.971 3.613 12.764 0.076 -0.095 -0.414 9.183 6.623 0.000e+00 0.000e+00 1061 1057:sd7 249.7446 1.829 1.597 12.792 0.036 -0.095 -0.468 9.553 6.630 0.000e+00 0.000e+00 1062 1058:dip 249.7446 1.829 1.597 12.792 0.036 -0.095 -0.468 9.553 6.630 0.000e+00 0.000e+00 1063 1059:bend0 250.7970 -1.043 0.759 13.093 0.039 0.101 -0.625 10.703 6.647 0.000e+00 0.000e+00 1064 1060:sd7 251.2169 -2.198 2.120 13.146 0.081 0.101 -0.680 11.250 6.653 0.000e+00 0.000e+00 1065 1061:gs 251.2169 -2.198 2.120 13.146 0.081 0.101 -0.680 11.250 6.653 0.000e+00 0.000e+00 1066 1062:q4 251.5771 -5.129 4.624 13.165 0.125 0.147 4.056 9.963 6.658 0.000e+00 0.000e+00 1067 1063:sd8 251.6770 -5.719 5.708 13.168 0.140 0.147 3.881 9.171 6.660 0.000e+00 0.000e+00 1068 1064:sx3 251.8370 -6.663 7.689 13.172 0.163 0.147 3.601 7.974 6.663 0.000e+00 0.000e+00 1069 1065:hcm 251.8370 -6.663 7.689 13.172 0.163 0.147 3.601 7.974 6.663 0.000e+00 0.000e+00 1070 1066:vcm 251.8370 -6.663 7.689 13.172 0.163 0.147 3.601 7.974 6.663 0.000e+00 0.000e+00 1071 1067:sdb15 252.0090 -7.679 10.156 13.175 0.189 0.147 3.299 6.787 6.666 0.000e+00 0.000e+00 1072 1068:bpm 252.0090 -7.679 10.156 13.175 0.189 0.147 3.299 6.787 6.666 0.000e+00 0.000e+00 1073 1069:sd9a 252.2132 -8.885 13.538 13.178 0.219 0.147 2.942 5.512 6.672 0.000e+00 0.000e+00 1074 1070:q5 252.5734 0.030 16.984 13.182 0.246 0.002 -0.278 4.617 6.683 0.000e+00 0.000e+00 1075 1071:sd10 252.9433 0.008 16.970 13.185 0.247 0.002 -0.364 4.855 6.696 0.000e+00 0.000e+00 1076 1072:sx4 253.1033 -0.001 16.969 13.187 0.247 0.002 -0.401 4.977 6.701 0.000e+00 0.000e+00 1077 1073:qt 253.1033 -0.001 16.969 13.187 0.247 0.002 -0.401 4.977 6.701 0.000e+00 0.000e+00 1078 1074:hcm 253.1033 -0.001 16.969 13.187 0.247 0.002 -0.401 4.977 6.701 0.000e+00 0.000e+00 1079 1075:vcm 253.1033 -0.001 16.969 13.187 0.247 0.002 -0.401 4.977 6.701 0.000e+00 0.000e+00 1080 1076:sdb4 253.3009 -0.013 16.972 13.188 0.248 0.002 -0.447 5.145 6.707 0.000e+00 0.000e+00 1081 1077:bpm 253.3009 -0.013 16.972 13.188 0.248 0.002 -0.447 5.145 6.707 0.000e+00 0.000e+00 1082 1078:sd10a 253.4732 -0.023 16.978 13.190 0.248 0.002 -0.488 5.306 6.712 0.000e+00 0.000e+00 1083 1079:q5 253.8334 8.886 13.529 13.194 0.222 -0.144 -4.555 7.000 6.722 0.000e+00 0.000e+00 1084 1080:sd93 254.0847 7.401 9.436 13.197 0.186 -0.144 -5.335 9.485 6.727 0.000e+00 0.000e+00 1085 1081:bpm 254.0847 7.401 9.436 13.197 0.186 -0.144 -5.335 9.485 6.727 0.000e+00 0.000e+00 1086 1082:sdb17 254.2097 6.662 7.678 13.200 0.168 -0.144 -5.724 10.868 6.729 0.000e+00 0.000e+00 1087 1083:sx3 254.3697 5.716 5.698 13.203 0.145 -0.144 -6.221 12.779 6.731 0.000e+00 0.000e+00 1088 1084:hcm 254.3697 5.716 5.698 13.203 0.145 -0.144 -6.221 12.779 6.731 0.000e+00 0.000e+00 1089 1085:vcm 254.3697 5.716 5.698 13.203 0.145 -0.144 -6.221 12.779 6.731 0.000e+00 0.000e+00 1090 1086:sd8 254.4696 5.126 4.614 13.207 0.130 -0.144 -6.531 14.053 6.732 0.000e+00 0.000e+00 1091 1087:q4 254.8298 2.196 2.112 13.225 0.088 -0.095 0.194 16.469 6.736 0.000e+00 0.000e+00 1092 1088:ge 254.8298 2.196 2.112 13.225 0.088 -0.095 0.194 16.469 6.736 0.000e+00 0.000e+00 1093 1089:sd7 255.2497 1.038 0.754 13.279 0.048 -0.095 0.167 16.317 6.740 0.000e+00 0.000e+00 1094 1090:dip 255.2497 1.038 0.754 13.279 0.048 -0.095 0.167 16.317 6.740 0.000e+00 0.000e+00 1095 1091:bend0 256.3021 -1.840 1.609 13.581 0.050 0.100 0.066 16.071 6.751 0.000e+00 0.000e+00 1096 1092:sd6 257.0121 -3.776 5.597 13.619 0.121 0.100 0.022 16.008 6.758 0.000e+00 0.000e+00 1097 1093:gs 257.0121 -3.776 5.597 13.619 0.121 0.100 0.022 16.008 6.758 0.000e+00 0.000e+00 1098 1094:sx2 257.1721 -4.212 6.875 13.623 0.137 0.100 0.012 16.003 6.759 0.000e+00 0.000e+00 1099 1095:hcm 257.1721 -4.212 6.875 13.623 0.137 0.100 0.012 16.003 6.759 0.000e+00 0.000e+00 1100 1096:vcm 257.1721 -4.212 6.875 13.623 0.137 0.100 0.012 16.003 6.759 0.000e+00 0.000e+00 1101 1097:sd5 257.2720 -4.484 7.744 13.625 0.147 0.100 0.006 16.001 6.760 0.000e+00 0.000e+00 1102 1098:q3 257.6322 -8.213 12.194 13.631 0.190 0.139 3.519 14.695 6.764 0.000e+00 0.000e+00 1103 1099:sd141 258.0641 -10.638 20.336 13.635 0.250 0.139 3.125 11.825 6.769 0.000e+00 0.000e+00 1104 1100:bpm 258.0641 -10.638 20.336 13.635 0.250 0.139 3.125 11.825 6.769 0.000e+00 0.000e+00 1105 1101:sdb18 258.1840 -11.311 22.967 13.636 0.267 0.139 3.016 11.089 6.771 0.000e+00 0.000e+00 1106 1102:q2 258.6802 8.225 24.738 13.639 0.280 -0.086 -6.187 12.483 6.778 0.000e+00 0.000e+00 1107 1103:sd3 258.7821 7.942 23.091 13.640 0.272 -0.086 -6.508 13.777 6.779 0.000e+00 0.000e+00 1108 1104:sx1 258.9421 7.498 20.620 13.641 0.258 -0.086 -7.011 15.940 6.781 0.000e+00 0.000e+00 1109 1105:qt 258.9421 7.498 20.620 13.641 0.258 -0.086 -7.011 15.940 6.781 0.000e+00 0.000e+00 1110 1106:hcm 258.9421 7.498 20.620 13.641 0.258 -0.086 -7.011 15.940 6.781 0.000e+00 0.000e+00 1111 1107:vcm 258.9421 7.498 20.620 13.641 0.258 -0.086 -7.011 15.940 6.781 0.000e+00 0.000e+00 1112 1108:sd2 259.2320 6.694 16.506 13.643 0.233 -0.086 -7.923 20.269 6.783 0.000e+00 0.000e+00 1113 1109:q1 259.5922 0.562 14.007 13.647 0.218 -0.000 0.278 23.158 6.786 0.000e+00 0.000e+00 1114 1110:ge 259.5922 0.562 14.007 13.647 0.218 -0.000 0.278 23.158 6.786 0.000e+00 0.000e+00 1115 1111:sdc12 259.9131 0.532 13.656 13.651 0.218 -0.000 0.264 22.984 6.788 0.000e+00 0.000e+00 1116 1112:bpm 259.9131 0.532 13.656 13.651 0.218 -0.000 0.264 22.984 6.788 0.000e+00 0.000e+00 1117 1113:sd1e 265.5720 0.000 10.643 13.729 0.218 -0.000 0.000 21.492 6.829 0.000e+00 0.000e+00 1118 1114:sd1e 271.2309 -0.531 13.648 13.807 0.218 -0.000 -0.263 22.980 6.870 0.000e+00 0.000e+00 1119 1115:bpm 271.2309 -0.531 13.648 13.807 0.218 -0.000 -0.263 22.980 6.870 0.000e+00 0.000e+00 1120 1116:sdb1 271.5518 -0.561 13.998 13.810 0.218 -0.000 -0.278 23.153 6.872 0.000e+00 0.000e+00 1121 1117:gs 271.5518 -0.561 13.998 13.810 0.218 -0.000 -0.278 23.153 6.872 0.000e+00 0.000e+00 1122 1118:q1 271.9120 -6.689 16.495 13.814 0.233 0.086 7.922 20.265 6.875 0.000e+00 0.000e+00 1123 1119:sd2 272.2019 -7.493 20.607 13.817 0.258 0.086 7.010 15.936 6.878 0.000e+00 0.000e+00 1124 1120:sx1 272.3619 -7.937 23.075 13.818 0.272 0.086 6.506 13.774 6.879 0.000e+00 0.000e+00 1125 1121:qt 272.3619 -7.937 23.075 13.818 0.272 0.086 6.506 13.774 6.879 0.000e+00 0.000e+00 1126 1122:hcm 272.3619 -7.937 23.075 13.818 0.272 0.086 6.506 13.774 6.879 0.000e+00 0.000e+00 1127 1123:vcm 272.3619 -7.937 23.075 13.818 0.272 0.086 6.506 13.774 6.879 0.000e+00 0.000e+00 1128 1124:sd3 272.4638 -8.219 24.722 13.818 0.280 0.086 6.186 12.480 6.880 0.000e+00 0.000e+00 1129 1125:q2 272.9600 11.304 22.952 13.822 0.267 -0.139 -3.015 11.086 6.888 0.000e+00 0.000e+00 1130 1126:sdb2 273.1268 10.368 19.337 13.823 0.244 -0.139 -3.167 12.117 6.890 0.000e+00 0.000e+00 1131 1127:bpm 273.1268 10.368 19.337 13.823 0.244 -0.139 -3.167 12.117 6.890 0.000e+00 0.000e+00 1132 1128:sd14a 273.5118 8.208 12.185 13.827 0.190 -0.139 -3.517 14.690 6.895 0.000e+00 0.000e+00 1133 1129:q3 273.8720 4.481 7.739 13.833 0.147 -0.100 -0.006 15.996 6.898 0.000e+00 0.000e+00 1134 1130:sd5 273.9719 4.209 6.870 13.835 0.137 -0.100 -0.012 15.998 6.899 0.000e+00 0.000e+00 1135 1131:sx2 274.1319 3.773 5.593 13.839 0.121 -0.100 -0.022 16.003 6.901 0.000e+00 0.000e+00 1136 1132:hcm 274.1319 3.773 5.593 13.839 0.121 -0.100 -0.022 16.003 6.901 0.000e+00 0.000e+00 1137 1133:vcm 274.1319 3.773 5.593 13.839 0.121 -0.100 -0.022 16.003 6.901 0.000e+00 0.000e+00 1138 1134:ge 274.1319 3.773 5.593 13.839 0.121 -0.100 -0.022 16.003 6.901 0.000e+00 0.000e+00 1139 1135:sd6 274.8419 1.839 1.608 13.877 0.050 -0.100 -0.066 16.066 6.908 0.000e+00 0.000e+00 1140 1136:dip 274.8419 1.839 1.608 13.877 0.050 -0.100 -0.066 16.066 6.908 0.000e+00 0.000e+00 1141 1137:bend0 275.8944 -1.038 0.754 14.178 0.048 0.095 -0.167 16.311 6.918 0.000e+00 0.000e+00 1142 1138:sd7 276.3143 -2.195 2.112 14.232 0.088 0.095 -0.193 16.462 6.922 0.000e+00 0.000e+00 1143 1139:gs 276.3143 -2.195 2.112 14.232 0.088 0.095 -0.193 16.462 6.922 0.000e+00 0.000e+00 1144 1140:q4 276.6745 -5.124 4.614 14.251 0.130 0.144 6.529 14.047 6.926 0.000e+00 0.000e+00 1145 1141:sd8 276.7744 -5.714 5.696 14.254 0.145 0.144 6.219 12.774 6.927 0.000e+00 0.000e+00 1146 1142:sx3 276.9344 -6.659 7.676 14.258 0.168 0.144 5.722 10.863 6.929 0.000e+00 0.000e+00 1147 1143:hcm 276.9344 -6.659 7.676 14.258 0.168 0.144 5.722 10.863 6.929 0.000e+00 0.000e+00 1148 1144:vcm 276.9344 -6.659 7.676 14.258 0.168 0.144 5.722 10.863 6.929 0.000e+00 0.000e+00 1149 1145:sdb3 277.1064 -7.675 10.142 14.261 0.193 0.144 5.187 8.987 6.932 0.000e+00 0.000e+00 1150 1146:bpm 277.1064 -7.675 10.142 14.261 0.193 0.144 5.187 8.987 6.932 0.000e+00 0.000e+00 1151 1147:sd9a 277.3106 -8.882 13.523 14.264 0.222 0.144 4.553 6.998 6.936 0.000e+00 0.000e+00 1152 1148:q5 277.6708 0.023 16.970 14.267 0.248 -0.002 0.487 5.305 6.946 0.000e+00 0.000e+00 1153 1149:sd12 278.0407 0.001 16.961 14.271 0.247 -0.002 0.401 4.976 6.957 0.000e+00 0.000e+00 1154 1150:sx4 278.2007 -0.008 16.962 14.272 0.247 -0.002 0.364 4.854 6.963 0.000e+00 0.000e+00 1155 1151:qt 278.2007 -0.008 16.962 14.272 0.247 -0.002 0.364 4.854 6.963 0.000e+00 0.000e+00 1156 1152:hcm 278.2007 -0.008 16.962 14.272 0.247 -0.002 0.364 4.854 6.963 0.000e+00 0.000e+00 1157 1153:vcm 278.2007 -0.008 16.962 14.272 0.247 -0.002 0.364 4.854 6.963 0.000e+00 0.000e+00 1158 1154:sdb4 278.3983 -0.020 16.968 14.274 0.246 -0.002 0.318 4.719 6.969 0.000e+00 0.000e+00 1159 1155:bpm 278.3983 -0.020 16.968 14.274 0.246 -0.002 0.318 4.719 6.969 0.000e+00 0.000e+00 1160 1156:sd10a 278.5706 -0.030 16.977 14.276 0.246 -0.002 0.277 4.617 6.975 0.000e+00 0.000e+00 1161 1157:q5 278.9308 8.881 13.532 14.280 0.219 -0.147 -2.942 5.512 6.987 0.000e+00 0.000e+00 1162 1158:sd91 279.1820 7.398 9.442 14.283 0.182 -0.147 -3.382 7.100 6.993 0.000e+00 0.000e+00 1163 1159:bpm 279.1820 7.398 9.442 14.283 0.182 -0.147 -3.382 7.100 6.993 0.000e+00 0.000e+00 1164 1160:sdb5 279.3070 6.660 7.685 14.285 0.163 -0.147 -3.601 7.973 6.996 0.000e+00 0.000e+00 1165 1161:sx3 279.4670 5.716 5.705 14.289 0.140 -0.147 -3.881 9.170 6.999 0.000e+00 0.000e+00 1166 1162:hcm 279.4670 5.716 5.705 14.289 0.140 -0.147 -3.881 9.170 6.999 0.000e+00 0.000e+00 1167 1163:vcm 279.4670 5.716 5.705 14.289 0.140 -0.147 -3.881 9.170 6.999 0.000e+00 0.000e+00 1168 1164:sd8 279.5669 5.126 4.621 14.292 0.125 -0.147 -4.056 9.963 7.001 0.000e+00 0.000e+00 1169 1165:q4 279.9271 2.197 2.119 14.311 0.081 -0.101 0.679 11.250 7.006 0.000e+00 0.000e+00 1170 1166:ge 279.9271 2.197 2.119 14.311 0.081 -0.101 0.679 11.250 7.006 0.000e+00 0.000e+00 1171 1167:sd7 280.3470 1.042 0.759 14.365 0.039 -0.101 0.625 10.703 7.012 0.000e+00 0.000e+00 1172 1168:dip 280.3470 1.042 0.759 14.365 0.039 -0.101 0.625 10.703 7.012 0.000e+00 0.000e+00 1173 1169:bend0 281.3994 -1.828 1.598 14.666 0.036 0.095 0.468 9.554 7.028 0.000e+00 0.000e+00 1174 1170:sd7 281.8193 -2.970 3.613 14.694 0.076 0.095 0.414 9.183 7.036 0.000e+00 0.000e+00 1175 1171:gs 281.8193 -2.970 3.613 14.694 0.076 0.095 0.414 9.183 7.036 0.000e+00 0.000e+00 1176 1172:q6 282.1795 -6.276 6.805 14.706 0.116 0.129 3.319 7.777 7.042 0.000e+00 0.000e+00 1177 1173:sd5 282.2794 -6.869 8.118 14.708 0.128 0.129 3.165 7.129 7.044 0.000e+00 0.000e+00 1178 1174:sx5 282.4394 -7.819 10.469 14.711 0.149 0.129 2.917 6.156 7.048 0.000e+00 0.000e+00 1179 1175:hcm 282.4394 -7.819 10.469 14.711 0.149 0.129 2.917 6.156 7.048 0.000e+00 0.000e+00 1180 1176:vcm 282.4394 -7.819 10.469 14.711 0.149 0.129 2.917 6.156 7.048 0.000e+00 0.000e+00 1181 1177:sd41 282.6115 -8.841 13.336 14.713 0.171 0.129 2.652 5.198 7.053 0.000e+00 0.000e+00 1182 1178:bpm 282.6115 -8.841 13.336 14.713 0.171 0.129 2.652 5.198 7.053 0.000e+00 0.000e+00 1183 1179:sdb6 282.7313 -9.552 15.539 14.714 0.187 0.129 2.466 4.585 7.057 0.000e+00 0.000e+00 1184 1180:q7 283.2275 7.762 16.618 14.719 0.200 -0.080 -2.135 4.443 7.076 0.000e+00 0.000e+00 1185 1181:sd3 283.3294 7.387 15.075 14.720 0.191 -0.080 -2.262 4.891 7.080 0.000e+00 0.000e+00 1186 1182:sx6 283.4894 6.797 12.805 14.722 0.179 -0.080 -2.463 5.647 7.084 0.000e+00 0.000e+00 1187 1183:hcm 283.4894 6.797 12.805 14.722 0.179 -0.080 -2.463 5.647 7.084 0.000e+00 0.000e+00 1188 1184:vcm 283.4894 6.797 12.805 14.722 0.179 -0.080 -2.463 5.647 7.084 0.000e+00 0.000e+00 1189 1185:sd2 283.7793 5.728 9.174 14.726 0.156 -0.080 -2.825 7.180 7.092 0.000e+00 0.000e+00 1190 1186:q8 284.1395 0.836 6.957 14.733 0.142 0.002 1.342 7.754 7.099 0.000e+00 0.000e+00 1191 1187:ge 284.1395 0.836 6.957 14.733 0.142 0.002 1.342 7.754 7.099 0.000e+00 0.000e+00 1192 1188:sdc12 284.4604 0.758 6.445 14.741 0.143 0.002 1.226 6.930 7.106 0.000e+00 0.000e+00 1193 1189:bpm 284.4604 0.758 6.445 14.741 0.143 0.002 1.226 6.930 7.106 0.000e+00 0.000e+00 1194 1190:sd13k 284.8519 0.662 5.890 14.751 0.143 0.002 1.085 6.025 7.116 0.000e+00 0.000e+00 1195 1191:ssdm 284.8519 0.662 5.890 14.751 0.143 0.002 1.085 6.025 7.116 0.000e+00 0.000e+00 1196 1192:sd13i 285.0519 0.613 5.635 14.757 0.144 0.002 1.012 5.605 7.121 0.000e+00 0.000e+00 1197 1193:sd13i 285.2519 0.564 5.399 14.762 0.144 0.002 0.940 5.215 7.127 0.000e+00 0.000e+00 1198 1194:sd13i 285.4519 0.516 5.183 14.768 0.145 0.002 0.868 4.853 7.133 0.000e+00 0.000e+00 1199 1195:sd13i 285.6519 0.467 4.987 14.775 0.145 0.002 0.796 4.521 7.140 0.000e+00 0.000e+00 1200 1196:sd13i 285.8519 0.418 4.810 14.781 0.145 0.002 0.723 4.217 7.147 0.000e+00 0.000e+00 1201 1197:sd13i 286.0519 0.369 4.652 14.788 0.146 0.002 0.651 3.942 7.155 0.000e+00 0.000e+00 1202 1198:sd13i 286.2519 0.320 4.515 14.795 0.146 0.002 0.579 3.696 7.164 0.000e+00 0.000e+00 1203 1199:sd13i 286.4519 0.271 4.396 14.802 0.147 0.002 0.507 3.479 7.173 0.000e+00 0.000e+00 1204 1200:sd13i 286.6519 0.222 4.298 14.809 0.147 0.002 0.434 3.290 7.182 0.000e+00 0.000e+00 1205 1201:sd13i 286.8519 0.174 4.218 14.817 0.147 0.002 0.362 3.131 7.192 0.000e+00 0.000e+00 1206 1202:sd13i 287.0519 0.125 4.159 14.824 0.148 0.002 0.290 3.001 7.202 0.000e+00 0.000e+00 1207 1203:sd13i 287.2519 0.076 4.119 14.832 0.148 0.002 0.218 2.899 7.213 0.000e+00 0.000e+00 1208 1204:sd13i 287.4519 0.027 4.098 14.840 0.149 0.002 0.145 2.827 7.224 0.000e+00 0.000e+00 1209 1205:sd13j 287.6019 -0.010 4.095 14.846 0.149 0.002 0.091 2.791 7.233 0.000e+00 0.000e+00 1210 1206:sd13j 287.7519 -0.046 4.104 14.851 0.149 0.002 0.037 2.772 7.241 0.000e+00 0.000e+00 1211 1207:sd13i 287.9519 -0.095 4.132 14.859 0.150 0.002 -0.035 2.771 7.253 0.000e+00 0.000e+00 1212 1208:sd13i 288.1519 -0.144 4.180 14.867 0.150 0.002 -0.107 2.800 7.264 0.000e+00 0.000e+00 1213 1209:sd13i 288.3519 -0.193 4.247 14.874 0.151 0.002 -0.180 2.857 7.275 0.000e+00 0.000e+00 1214 1210:sd13i 288.5519 -0.242 4.334 14.882 0.151 0.002 -0.252 2.944 7.286 0.000e+00 0.000e+00 1215 1211:sd13i 288.7519 -0.290 4.440 14.889 0.151 0.002 -0.324 3.059 7.297 0.000e+00 0.000e+00 1216 1212:sd13i 288.9519 -0.339 4.566 14.896 0.152 0.002 -0.396 3.203 7.307 0.000e+00 0.000e+00 1217 1213:sd13i 289.1519 -0.388 4.712 14.903 0.152 0.002 -0.469 3.376 7.317 0.000e+00 0.000e+00 1218 1214:sd13i 289.3519 -0.437 4.877 14.910 0.153 0.002 -0.541 3.578 7.326 0.000e+00 0.000e+00 1219 1215:sd13i 289.5519 -0.486 5.061 14.916 0.153 0.002 -0.613 3.809 7.335 0.000e+00 0.000e+00 1220 1216:sd13i 289.7519 -0.535 5.265 14.922 0.153 0.002 -0.685 4.069 7.343 0.000e+00 0.000e+00 1221 1217:sd13i 289.9519 -0.583 5.489 14.928 0.154 0.002 -0.758 4.357 7.350 0.000e+00 0.000e+00 1222 1218:sd13i 290.1519 -0.632 5.732 14.934 0.154 0.002 -0.830 4.675 7.357 0.000e+00 0.000e+00 1223 1219:sd13i 290.3519 -0.681 5.995 14.939 0.155 0.002 -0.902 5.021 7.364 0.000e+00 0.000e+00 1224 1220:esdm 290.3519 -0.681 5.995 14.939 0.155 0.002 -0.902 5.021 7.364 0.000e+00 0.000e+00 1225 1221:eesdm 290.3519 -0.681 5.995 14.939 0.155 0.002 -0.902 5.021 7.364 0.000e+00 0.000e+00 1226 1222:sd13k 290.7433 -0.777 6.565 14.949 0.156 0.002 -1.044 5.783 7.376 0.000e+00 0.000e+00 1227 1223:bpm 290.7433 -0.777 6.565 14.949 0.156 0.002 -1.044 5.783 7.376 0.000e+00 0.000e+00 1228 1224:sd87 291.0642 -0.855 7.089 14.957 0.156 0.002 -1.160 6.490 7.384 0.000e+00 0.000e+00 1229 1225:gs 291.0642 -0.855 7.089 14.957 0.156 0.002 -1.160 6.490 7.384 0.000e+00 0.000e+00 1230 1226:q8 291.4244 -5.840 9.351 14.964 0.173 0.093 2.324 6.040 7.393 0.000e+00 0.000e+00 1231 1227:sd2 291.7143 -6.928 13.052 14.968 0.200 0.093 2.017 4.782 7.401 0.000e+00 0.000e+00 1232 1228:sx8 291.8743 -7.529 15.365 14.970 0.215 0.093 1.847 4.164 7.407 0.000e+00 0.000e+00 1233 1229:qt 291.8743 -7.529 15.365 14.970 0.215 0.093 1.847 4.164 7.407 0.000e+00 0.000e+00 1234 1230:hcm 291.8743 -7.529 15.365 14.970 0.215 0.093 1.847 4.164 7.407 0.000e+00 0.000e+00 1235 1231:vcm 291.8743 -7.529 15.365 14.970 0.215 0.093 1.847 4.164 7.407 0.000e+00 0.000e+00 1236 1232:sd3 291.9762 -7.911 16.938 14.971 0.224 0.093 1.739 3.798 7.411 0.000e+00 0.000e+00 1237 1233:q7 292.4724 9.737 15.838 14.975 0.211 -0.143 -2.292 4.034 7.433 0.000e+00 0.000e+00 1238 1234:sdb7 292.6393 8.727 12.756 14.977 0.187 -0.143 -2.551 4.842 7.439 0.000e+00 0.000e+00 1239 1235:bpm 292.6393 8.727 12.756 14.977 0.187 -0.143 -2.551 4.842 7.439 0.000e+00 0.000e+00 1240 1236:sd42 292.7643 7.971 10.669 14.979 0.169 -0.143 -2.745 5.504 7.443 0.000e+00 0.000e+00 1241 1237:sx7 292.9243 7.003 8.273 14.982 0.147 -0.143 -2.993 6.422 7.447 0.000e+00 0.000e+00 1242 1238:hcm 292.9243 7.003 8.273 14.982 0.147 -0.143 -2.993 6.422 7.447 0.000e+00 0.000e+00 1243 1239:vcm 292.9243 7.003 8.273 14.982 0.147 -0.143 -2.993 6.422 7.447 0.000e+00 0.000e+00 1244 1240:sd5 293.0242 6.399 6.934 14.984 0.132 -0.143 -3.147 7.035 7.450 0.000e+00 0.000e+00 1245 1241:q6 293.3844 3.030 3.678 14.995 0.089 -0.103 -0.534 8.422 7.457 0.000e+00 0.000e+00 1246 1242:ge 293.3844 3.030 3.678 14.995 0.089 -0.103 -0.534 8.422 7.457 0.000e+00 0.000e+00 1247 1243:sd7 293.8043 1.868 1.622 15.023 0.045 -0.103 -0.598 8.897 7.465 0.000e+00 0.000e+00 1248 1244:dip 293.8043 1.868 1.622 15.023 0.045 -0.103 -0.598 8.897 7.465 0.000e+00 0.000e+00 1249 1245:bend0 294.8568 -1.056 0.755 15.326 0.040 0.092 -0.780 10.346 7.482 0.000e+00 0.000e+00 1250 1246:sd7 295.2767 -2.232 2.136 15.380 0.079 0.092 -0.846 11.029 7.488 0.000e+00 0.000e+00 1251 1247:gs 295.2767 -2.232 2.136 15.380 0.079 0.092 -0.846 11.029 7.488 0.000e+00 0.000e+00 1252 1248:q9 295.6369 -5.631 4.796 15.398 0.121 0.146 4.664 9.556 7.494 0.000e+00 0.000e+00 1253 1249:sd8 295.7368 -6.312 5.989 15.401 0.135 0.146 4.426 8.648 7.496 0.000e+00 0.000e+00 1254 1250:sx9 295.8968 -7.403 8.184 15.405 0.159 0.146 4.045 7.293 7.499 0.000e+00 0.000e+00 1255 1251:hcm 295.8968 -7.403 8.184 15.405 0.159 0.146 4.045 7.293 7.499 0.000e+00 0.000e+00 1256 1252:vcm 295.8968 -7.403 8.184 15.405 0.159 0.146 4.045 7.293 7.499 0.000e+00 0.000e+00 1257 1253:sdb8 296.0688 -8.576 10.932 15.408 0.184 0.146 3.636 5.972 7.503 0.000e+00 0.000e+00 1258 1254:bpm 296.0688 -8.576 10.932 15.408 0.184 0.146 3.636 5.972 7.503 0.000e+00 0.000e+00 1259 1255:sd9a 296.2730 -9.969 14.719 15.410 0.214 0.146 3.149 4.586 7.509 0.000e+00 0.000e+00 1260 1256:q10 296.6332 0.103 18.570 15.414 0.240 -0.001 0.340 3.417 7.524 0.000e+00 0.000e+00 1261 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301.5394 7.434 8.239 15.458 0.156 -0.145 -7.984 14.051 7.717 0.000e+00 0.000e+00 1293 1289:sx9 301.6994 6.341 6.035 15.462 0.133 -0.145 -8.721 16.724 7.718 0.000e+00 0.000e+00 1294 1290:hcm 301.6994 6.341 6.035 15.462 0.133 -0.145 -8.721 16.724 7.718 0.000e+00 0.000e+00 1295 1291:vcm 301.6994 6.341 6.035 15.462 0.133 -0.145 -8.721 16.724 7.718 0.000e+00 0.000e+00 1296 1292:sd8 301.7993 5.659 4.836 15.465 0.119 -0.145 -9.181 18.512 7.719 0.000e+00 0.000e+00 1297 1293:q9 302.1595 2.243 2.162 15.483 0.076 -0.093 1.547 21.457 7.722 0.000e+00 0.000e+00 1298 1294:ge 302.1595 2.243 2.162 15.483 0.076 -0.093 1.547 21.457 7.722 0.000e+00 0.000e+00 1299 1295:sd7 302.5794 1.072 0.770 15.536 0.037 -0.093 1.480 20.186 7.725 0.000e+00 0.000e+00 1300 1296:dip 302.5794 1.072 0.770 15.536 0.037 -0.093 1.480 20.186 7.725 0.000e+00 0.000e+00 1301 1297:bend0 303.6318 -1.842 1.592 15.840 0.042 0.102 1.277 17.286 7.734 0.000e+00 0.000e+00 1302 1298:sd7 304.0517 -3.000 3.625 15.868 0.085 0.102 1.213 16.241 7.738 0.000e+00 0.000e+00 1303 1299:gs 304.0517 -3.000 3.625 15.868 0.085 0.102 1.213 16.241 7.738 0.000e+00 0.000e+00 1304 1300:q6 304.4119 -6.336 6.849 15.879 0.128 0.141 6.254 13.427 7.742 0.000e+00 0.000e+00 1305 1301:sd5 304.5118 -6.936 8.175 15.881 0.142 0.141 5.956 12.208 7.743 0.000e+00 0.000e+00 1306 1302:sx7 304.6718 -7.898 10.548 15.884 0.165 0.141 5.478 10.378 7.745 0.000e+00 0.000e+00 1307 1303:hcm 304.6718 -7.898 10.548 15.884 0.165 0.141 5.478 10.378 7.745 0.000e+00 0.000e+00 1308 1304:vcm 304.6718 -7.898 10.548 15.884 0.165 0.141 5.478 10.378 7.745 0.000e+00 0.000e+00 1309 1305:sd41 304.8439 -8.931 13.444 15.886 0.189 0.141 4.964 8.581 7.748 0.000e+00 0.000e+00 1310 1306:bpm 304.8439 -8.931 13.444 15.886 0.189 0.141 4.964 8.581 7.748 0.000e+00 0.000e+00 1311 1307:sdb9 304.9637 -9.651 15.671 15.888 0.206 0.141 4.606 7.435 7.751 0.000e+00 0.000e+00 1312 1308:q7 305.4599 7.818 16.776 15.892 0.219 -0.089 -2.451 6.518 7.763 0.000e+00 0.000e+00 1313 1309:sd3 305.5618 7.440 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8.433 0.000e+00 0.000e+00 1377 1373:bpm 323.6468 8.256 10.140 16.627 0.177 -0.146 -3.747 6.318 8.433 0.000e+00 0.000e+00 1378 1374:sdb12 323.7717 7.404 8.185 16.629 0.159 -0.146 -4.045 7.292 8.436 0.000e+00 0.000e+00 1379 1375:sx9 323.9317 6.313 5.990 16.633 0.135 -0.146 -4.426 8.647 8.439 0.000e+00 0.000e+00 1380 1376:hcm 323.9317 6.313 5.990 16.633 0.135 -0.146 -4.426 8.647 8.439 0.000e+00 0.000e+00 1381 1377:vcm 323.9317 6.313 5.990 16.633 0.135 -0.146 -4.426 8.647 8.439 0.000e+00 0.000e+00 1382 1378:sd8 324.0316 5.631 4.797 16.636 0.121 -0.146 -4.664 9.555 8.441 0.000e+00 0.000e+00 1383 1379:q9 324.3918 2.232 2.136 16.654 0.079 -0.092 0.845 11.028 8.446 0.000e+00 0.000e+00 1384 1380:ge 324.3918 2.232 2.136 16.654 0.079 -0.092 0.845 11.028 8.446 0.000e+00 0.000e+00 1385 1381:sd7 324.8117 1.056 0.756 16.708 0.040 -0.092 0.780 10.345 8.453 0.000e+00 0.000e+00 1386 1382:dip 324.8117 1.056 0.756 16.708 0.040 -0.092 0.780 10.345 8.453 0.000e+00 0.000e+00 1387 1383:bend0 325.8641 -1.868 1.621 17.011 0.045 0.103 0.597 8.897 8.470 0.000e+00 0.000e+00 1388 1384:sd7 326.2840 -3.030 3.678 17.039 0.089 0.103 0.533 8.422 8.478 0.000e+00 0.000e+00 1389 1385:gs 326.2840 -3.030 3.678 17.039 0.089 0.103 0.533 8.422 8.478 0.000e+00 0.000e+00 1390 1386:q6 326.6442 -6.398 6.933 17.050 0.132 0.143 3.147 7.035 8.485 0.000e+00 0.000e+00 1391 1387:sd5 326.7441 -7.002 8.272 17.052 0.147 0.143 2.992 6.422 8.488 0.000e+00 0.000e+00 1392 1388:sx7 326.9041 -7.970 10.667 17.055 0.169 0.143 2.744 5.504 8.492 0.000e+00 0.000e+00 1393 1389:hcm 326.9041 -7.970 10.667 17.055 0.169 0.143 2.744 5.504 8.492 0.000e+00 0.000e+00 1394 1390:vcm 326.9041 -7.970 10.667 17.055 0.169 0.143 2.744 5.504 8.492 0.000e+00 0.000e+00 1395 1391:sd41 327.0762 -9.011 13.590 17.057 0.194 0.143 2.478 4.605 8.497 0.000e+00 0.000e+00 1396 1392:bpm 327.0762 -9.011 13.590 17.057 0.194 0.143 2.478 4.605 8.497 0.000e+00 0.000e+00 1397 1393:sdb13 327.1960 -9.736 15.836 17.059 0.211 0.143 2.292 4.034 8.502 0.000e+00 0.000e+00 1398 1394:q7 327.6922 7.910 16.937 17.063 0.224 -0.093 -1.740 3.799 8.524 0.000e+00 0.000e+00 1399 1395:sd3 327.7941 7.528 15.363 17.064 0.215 -0.093 -1.848 4.164 8.528 0.000e+00 0.000e+00 1400 1396:sx8 327.9541 6.927 13.051 17.066 0.200 -0.093 -2.017 4.783 8.533 0.000e+00 0.000e+00 1401 1397:hcm 327.9541 6.927 13.051 17.066 0.200 -0.093 -2.017 4.783 8.533 0.000e+00 0.000e+00 1402 1398:vcm 327.9541 6.927 13.051 17.066 0.200 -0.093 -2.017 4.783 8.533 0.000e+00 0.000e+00 1403 1399:sd2 328.2440 5.839 9.350 17.070 0.173 -0.093 -2.324 6.041 8.542 0.000e+00 0.000e+00 1404 1400:q8 328.6042 0.855 7.088 17.077 0.156 -0.002 1.160 6.492 8.551 0.000e+00 0.000e+00 1405 1401:ge 328.6042 0.855 7.088 17.077 0.156 -0.002 1.160 6.492 8.551 0.000e+00 0.000e+00 1406 1402:sd87 328.9251 0.776 6.565 17.085 0.156 -0.002 1.044 5.785 8.559 0.000e+00 0.000e+00 1407 1403:bpm 328.9251 0.776 6.565 17.085 0.156 -0.002 1.044 5.785 8.559 0.000e+00 0.000e+00 1408 1404:sd13a 332.0666 0.009 4.096 17.188 0.149 -0.002 -0.091 2.791 8.702 0.000e+00 0.000e+00 1409 1405:sd13a 335.2080 -0.758 6.446 17.293 0.143 -0.002 -1.226 6.928 8.829 0.000e+00 0.000e+00 1410 1406:bpm 335.2080 -0.758 6.446 17.293 0.143 -0.002 -1.226 6.928 8.829 0.000e+00 0.000e+00 1411 1407:sd87 335.5289 -0.836 6.958 17.301 0.142 -0.002 -1.342 7.751 8.836 0.000e+00 0.000e+00 1412 1408:gs 335.5289 -0.836 6.958 17.301 0.142 -0.002 -1.342 7.751 8.836 0.000e+00 0.000e+00 1413 1409:q8 335.8891 -5.729 9.176 17.308 0.156 0.080 2.824 7.178 8.843 0.000e+00 0.000e+00 1414 1410:sd2 336.1790 -6.797 12.807 17.312 0.179 0.080 2.462 5.646 8.850 0.000e+00 0.000e+00 1415 1411:sx6 336.3390 -7.387 15.076 17.314 0.192 0.080 2.262 4.890 8.855 0.000e+00 0.000e+00 1416 1412:hcm 336.3390 -7.387 15.076 17.314 0.192 0.080 2.262 4.890 8.855 0.000e+00 0.000e+00 1417 1413:vcm 336.3390 -7.387 15.076 17.314 0.192 0.080 2.262 4.890 8.855 0.000e+00 0.000e+00 1418 1414:sd3 336.4409 -7.763 16.620 17.315 0.200 0.080 2.134 4.442 8.859 0.000e+00 0.000e+00 1419 1415:q7 336.9371 9.553 15.541 17.320 0.187 -0.129 -2.466 4.583 8.878 0.000e+00 0.000e+00 1420 1416:sdb14 337.1039 8.563 12.519 17.322 0.165 -0.129 -2.724 5.449 8.883 0.000e+00 0.000e+00 1421 1417:bpm 337.1039 8.563 12.519 17.322 0.165 -0.129 -2.724 5.449 8.883 0.000e+00 0.000e+00 1422 1418:sd43 337.2290 7.820 10.469 17.323 0.149 -0.129 -2.917 6.154 8.887 0.000e+00 0.000e+00 1423 1419:sx5 337.3890 6.870 8.119 17.326 0.129 -0.129 -3.164 7.127 8.890 0.000e+00 0.000e+00 1424 1420:hcm 337.3890 6.870 8.119 17.326 0.129 -0.129 -3.164 7.127 8.890 0.000e+00 0.000e+00 1425 1421:vcm 337.3890 6.870 8.119 17.326 0.129 -0.129 -3.164 7.127 8.890 0.000e+00 0.000e+00 1426 1422:sd5 337.4889 6.277 6.806 17.328 0.116 -0.129 -3.318 7.775 8.893 0.000e+00 0.000e+00 1427 1423:q6 337.8491 2.970 3.613 17.340 0.076 -0.095 -0.414 9.181 8.899 0.000e+00 0.000e+00 1428 1424:ge 337.8491 2.970 3.613 17.340 0.076 -0.095 -0.414 9.181 8.899 0.000e+00 0.000e+00 1429 1425:sd7 338.2690 1.829 1.598 17.368 0.036 -0.095 -0.468 9.552 8.906 0.000e+00 0.000e+00 1430 1426:dip 338.2690 1.829 1.598 17.368 0.036 -0.095 -0.468 9.552 8.906 0.000e+00 0.000e+00 1431 1427:bend0 339.3215 -1.043 0.759 17.669 0.039 0.101 -0.625 10.701 8.923 0.000e+00 0.000e+00 1432 1428:sd7 339.7414 -2.197 2.119 17.723 0.081 0.101 -0.679 11.248 8.929 0.000e+00 0.000e+00 1433 1429:gs 339.7414 -2.197 2.119 17.723 0.081 0.101 -0.679 11.248 8.929 0.000e+00 0.000e+00 1434 1430:q4 340.1016 -5.127 4.623 17.741 0.125 0.147 4.055 9.962 8.934 0.000e+00 0.000e+00 1435 1431:sd8 340.2015 -5.717 5.706 17.745 0.140 0.147 3.880 9.169 8.936 0.000e+00 0.000e+00 1436 1432:sx3 340.3615 -6.662 7.687 17.748 0.163 0.147 3.600 7.972 8.939 0.000e+00 0.000e+00 1437 1433:hcm 340.3615 -6.662 7.687 17.748 0.163 0.147 3.600 7.972 8.939 0.000e+00 0.000e+00 1438 1434:vcm 340.3615 -6.662 7.687 17.748 0.163 0.147 3.600 7.972 8.939 0.000e+00 0.000e+00 1439 1435:sdb15 340.5335 -7.677 10.153 17.752 0.189 0.147 3.299 6.786 8.943 0.000e+00 0.000e+00 1440 1436:bpm 340.5335 -7.677 10.153 17.752 0.189 0.147 3.299 6.786 8.943 0.000e+00 0.000e+00 1441 1437:sd9a 340.7377 -8.883 13.535 17.754 0.219 0.147 2.941 5.511 8.948 0.000e+00 0.000e+00 1442 1438:q5 341.0979 0.030 16.980 17.758 0.246 0.002 -0.278 4.617 8.960 0.000e+00 0.000e+00 1443 1439:sd10 341.4678 0.008 16.966 17.761 0.247 0.002 -0.364 4.854 8.972 0.000e+00 0.000e+00 1444 1440:sx4 341.6278 -0.001 16.965 17.763 0.247 0.002 -0.401 4.976 8.977 0.000e+00 0.000e+00 1445 1441:qt 341.6278 -0.001 16.965 17.763 0.247 0.002 -0.401 4.976 8.977 0.000e+00 0.000e+00 1446 1442:hcm 341.6278 -0.001 16.965 17.763 0.247 0.002 -0.401 4.976 8.977 0.000e+00 0.000e+00 1447 1443:vcm 341.6278 -0.001 16.965 17.763 0.247 0.002 -0.401 4.976 8.977 0.000e+00 0.000e+00 1448 1444:sdb4 341.8254 -0.013 16.968 17.765 0.248 0.002 -0.447 5.144 8.984 0.000e+00 0.000e+00 1449 1445:bpm 341.8254 -0.013 16.968 17.765 0.248 0.002 -0.447 5.144 8.984 0.000e+00 0.000e+00 1450 1446:sd10a 341.9977 -0.023 16.974 17.766 0.248 0.002 -0.488 5.305 8.989 0.000e+00 0.000e+00 1451 1447:q5 342.3579 8.884 13.525 17.770 0.222 -0.144 -4.554 6.999 8.999 0.000e+00 0.000e+00 1452 1448:sd93 342.6092 7.399 9.434 17.774 0.186 -0.144 -5.335 9.484 9.004 0.000e+00 0.000e+00 1453 1449:bpm 342.6092 7.399 9.434 17.774 0.186 -0.144 -5.335 9.484 9.004 0.000e+00 0.000e+00 1454 1450:sdb17 342.7342 6.660 7.676 17.776 0.168 -0.144 -5.723 10.866 9.005 0.000e+00 0.000e+00 1455 1451:sx3 342.8942 5.715 5.696 17.780 0.145 -0.144 -6.220 12.777 9.008 0.000e+00 0.000e+00 1456 1452:hcm 342.8942 5.715 5.696 17.780 0.145 -0.144 -6.220 12.777 9.008 0.000e+00 0.000e+00 1457 1453:vcm 342.8942 5.715 5.696 17.780 0.145 -0.144 -6.220 12.777 9.008 0.000e+00 0.000e+00 1458 1454:sd8 342.9941 5.124 4.614 17.783 0.130 -0.144 -6.531 14.051 9.009 0.000e+00 0.000e+00 1459 1455:q4 343.3543 2.196 2.112 17.802 0.088 -0.095 0.194 16.467 9.013 0.000e+00 0.000e+00 1460 1456:ge 343.3543 2.196 2.112 17.802 0.088 -0.095 0.194 16.467 9.013 0.000e+00 0.000e+00 1461 1457:sd7 343.7742 1.038 0.754 17.856 0.048 -0.095 0.167 16.315 9.017 0.000e+00 0.000e+00 1462 1458:dip 343.7742 1.038 0.754 17.856 0.048 -0.095 0.167 16.315 9.017 0.000e+00 0.000e+00 1463 1459:bend0 344.8266 -1.840 1.609 18.157 0.050 0.100 0.066 16.070 9.027 0.000e+00 0.000e+00 1464 1460:sd6 345.5366 -3.775 5.596 18.195 0.121 0.100 0.022 16.007 9.034 0.000e+00 0.000e+00 1465 1461:gs 345.5366 -3.775 5.596 18.195 0.121 0.100 0.022 16.007 9.034 0.000e+00 0.000e+00 1466 1462:sx2 345.6966 -4.211 6.873 18.199 0.137 0.100 0.012 16.002 9.036 0.000e+00 0.000e+00 1467 1463:hcm 345.6966 -4.211 6.873 18.199 0.137 0.100 0.012 16.002 9.036 0.000e+00 0.000e+00 1468 1464:vcm 345.6966 -4.211 6.873 18.199 0.137 0.100 0.012 16.002 9.036 0.000e+00 0.000e+00 1469 1465:sd5 345.7965 -4.483 7.742 18.201 0.147 0.100 0.006 16.000 9.037 0.000e+00 0.000e+00 1470 1466:q3 346.1567 -8.211 12.190 18.207 0.190 0.139 3.518 14.694 9.040 0.000e+00 0.000e+00 1471 1467:sd141 346.5886 -10.635 20.330 18.211 0.250 0.139 3.125 11.825 9.045 0.000e+00 0.000e+00 1472 1468:bpm 346.5886 -10.635 20.330 18.211 0.250 0.139 3.125 11.825 9.045 0.000e+00 0.000e+00 1473 1469:sdb18 346.7085 -11.308 22.961 18.212 0.267 0.139 3.016 11.088 9.047 0.000e+00 0.000e+00 1474 1470:q2 347.2047 8.223 24.731 18.215 0.281 -0.086 -6.187 12.483 9.054 0.000e+00 0.000e+00 1475 1471:sd3 347.3066 7.940 23.084 18.216 0.272 -0.086 -6.508 13.776 9.056 0.000e+00 0.000e+00 1476 1472:sx1 347.4666 7.496 20.614 18.217 0.258 -0.086 -7.011 15.939 9.057 0.000e+00 0.000e+00 1477 1473:qt 347.4666 7.496 20.614 18.217 0.258 -0.086 -7.011 15.939 9.057 0.000e+00 0.000e+00 1478 1474:hcm 347.4666 7.496 20.614 18.217 0.258 -0.086 -7.011 15.939 9.057 0.000e+00 0.000e+00 1479 1475:vcm 347.4666 7.496 20.614 18.217 0.258 -0.086 -7.011 15.939 9.057 0.000e+00 0.000e+00 1480 1476:sd2 347.7565 6.692 16.501 18.220 0.233 -0.086 -7.923 20.269 9.060 0.000e+00 0.000e+00 1481 1477:q1 348.1167 0.562 14.003 18.224 0.218 0.000 0.278 23.158 9.062 0.000e+00 0.000e+00 1482 1478:ge 348.1167 0.562 14.003 18.224 0.218 0.000 0.278 23.158 9.062 0.000e+00 0.000e+00 1483 1479:sdc12 348.4376 0.532 13.652 18.227 0.218 0.000 0.263 22.984 9.065 0.000e+00 0.000e+00 1484 1480:bpm 348.4376 0.532 13.652 18.227 0.218 0.000 0.263 22.984 9.065 0.000e+00 0.000e+00 1485 1481:sd1e 354.0965 0.000 10.642 18.305 0.218 0.000 0.000 21.494 9.106 0.000e+00 0.000e+00 1486 1482:cav 354.0965 0.000 10.642 18.305 0.218 0.000 0.000 21.494 9.106 0.000e+00 0.000e+00 1487 1483:fin 354.0965 0.000 10.642 18.305 0.218 0.000 0.000 21.494 9.106 0.000e+00 0.000e+00 -
trunk/tracy/.kdev4/tracy.kdev4
r9 r11 12 12 13 13 [Launch][Launch Configuration 0][Data] 14 Arguments= fmap.prm14 Arguments=indus2.prm 15 15 Dependencies=@Variant(\x00\x00\x00\t\x00\x00\x00\x00\x00) 16 16 Dependency Action=Nothing … … 20 20 Project Target= 21 21 Use External Terminal=false 22 Working Directory=file:///home/jfz/work_in_france/ lal/thom-x/alex/fmap22 Working Directory=file:///home/jfz/work_in_france/india 23 23 isExecutable=true 24 24 -
trunk/tracy/tools/soltracy.cc
r10 r11 41 41 globval.H_exact = false; 42 42 43 44 //output files 45 char fic_twiss[S_SIZE + 4] = ""; //twiss file 46 char fic_summary[S_SIZE + 4]=""; //summary file 47 48 43 49 /* parameters to read the user input script .prm */ 44 50 long i=0L; //initialize the for loop to read command string … … 99 105 else 100 106 globval.ge = ElemIndex(ge_name); 101 107 108 102 109 // globval.g = ElemIndex("g"); /* get family index of girder*/ 103 104 /* print the summary of the element in lattice */ 110 strcpy(fic_twiss,lat_file); 111 strcpy(fic_summary,lat_file); 112 strcat(fic_twiss,".twi"); 113 strcat(fic_summary,".sum"); 114 115 //generate the twiss and summary files with proper appendix 116 /* print the summary of the element in lattice to the screen and an external file*/ 105 117 printglob(); 118 printglob2file(fic_summary); 119 //print the twiss file 120 /* print out lattice functions, with all the optical information for the lattice with design values */ 121 printlatt(fic_twiss); 122 106 123 /************************************************************************ 107 124 print files, very important file for debug … … 246 263 } 247 264 265 else if(strcmp(CommandStr,"PrintTrackElemFlag") == 0) { 266 cout << "\n"; 267 cout << "print the tracked coordinates to file: " 268 << UserCommandFlag[i]._PrintTrackElem_track_file << "\n"; 269 270 PrintTrackElem(UserCommandFlag[i]._PrintTrackElem_track_file, 271 UserCommandFlag[i]._PrintTrackElem_x, UserCommandFlag[i]._PrintTrackElem_px, 272 UserCommandFlag[i]._PrintTrackElem_y, UserCommandFlag[i]._PrintTrackElem_py, 273 UserCommandFlag[i]._PrintTrackElem_delta,UserCommandFlag[i]._PrintTrackElem_ctau, 274 UserCommandFlag[i]._PrintTrackElem_nelem1,UserCommandFlag[i]._PrintTrackElem_nelem2); 275 } 248 276 //print the girder 249 277 // else if(strcmp(CommandStr,"PrintGirderFlag") == 0) { … … 462 490 // UserCommandFlag[i]._FmapFlag_delta, 463 491 // UserCommandFlag[i]._FmapFlag_diffusion, 492 // UserCommandFlag[i]._FmapFlag_printloss, 464 493 // numprocs,myid); 465 494 … … 514 543 UserCommandFlag[i]._FmapFlag_ymax, 515 544 UserCommandFlag[i]._FmapFlag_delta, 516 UserCommandFlag[i]._FmapFlag_diffusion); 545 UserCommandFlag[i]._FmapFlag_diffusion, 546 UserCommandFlag[i]._FmapFlag_printloss); 517 547 //#endif 518 548 } … … 542 572 // UserCommandFlag[i]._FmapdpFlag_z, 543 573 // UserCommandFlag[i]._FmapdpFlag_diffusion, 574 // UserCommandFlag[i]._FmapdpFlag_printloss, 544 575 // numprocs,myid); 545 576 … … 594 625 UserCommandFlag[i]._FmapdpFlag_emax, 595 626 UserCommandFlag[i]._FmapdpFlag_z, 596 UserCommandFlag[i]._FmapdpFlag_diffusion); 627 UserCommandFlag[i]._FmapdpFlag_diffusion, 628 UserCommandFlag[i]._FmapdpFlag_printloss); 597 629 // #endif 598 630 } -
trunk/tracy/tracy.kdev4
r3 r11 1 1 [Project] 2 2 Manager=KDevCustomMakeManager 3 Name=tracy 3 Name=tracy_3_10 -
trunk/tracy/tracy/doc/soltracy3_userManual_developer.tex
r10 r11 8 8 \usepackage[colorlinks=true,urlcolor=magenta,citecolor=blue]{hyperref} 9 9 \usepackage{color} 10 \usepackage{setspace} 11 12 13 %% auto center the sentence in the line 14 \newenvironment{tightcenter}{% 15 \vspace{0.02in} 16 \setlength\topsep{0pt} 17 \setlength\parskip{0pt} 18 \begin{center} 19 }{% 20 \end{center} 21 \vspace{0.02in} 22 } 23 24 %% auto wrap a long word 25 \newcommand*\wrapletters[1]{\wr@pletters#1\@nil} 26 \def\wr@pletters#1#2\@nil{#1\allowbreak\if&\else\wr@pletters#2\@nil\fi} 27 28 % define the file path font 29 \newcommand{\pathfont}[1]{\textit{\wrapletters{#1}}} 30 % define the font and color of the Tracy command in Tracy file 31 \newcommand{\tracycommand}[2]{\begin{tightcenter} 32 \textsf{\textcolor{red}{#1}} \quad \textsf{\textcolor{blue}{#2}} 33 \end{tightcenter}} 34 \newcommand{\tracycomm}[1]{\textsf{\textcolor{red}{#1}}} 35 \newcommand{\tracypara}[1]{\textsf{\textcolor{blue}{#1}}} 36 37 % lattice element definition 38 \newcommand{\latticedef}[3]{\begin{tightcenter} 39 \textsf{\textcolor{black}{#1}} 40 \textsf{\textcolor{red}{#2}} \quad \textsf{\textcolor{blue}{#3}} 41 \end{tightcenter}} 42 \newcommand{\elemname}[1]{\textsf{\textcolor{black}{#1}}} 43 \newcommand{\elemkeyword}[1]{\textsf{\textcolor{red}{#1}}} 44 \newcommand{\elempara}[1]{\textsf{\textcolor{blue}{#1}}} 45 46 \newcommand{\notespace}[1]{\vspace{0.1in}\textbf{#1} \vspace{0.05in}} 47 10 48 11 49 \begin{document} … … 14 52 \tableofcontents 15 53 54 %\onehalfspacing 55 16 56 \section{Log} 17 57 18 58 \begin{itemize} 19 \item[05/10/2012] Add the control flag to control the entrance and exit edge effects and fringe field of the dipole, with``edge\_effect1 = 1'' in the dipole definition in the lattice file, the 59 \item[05/10/2012] Add the control flag to control the entrance and exit edge effects and fringe 60 field of the dipole, with``edge\_effect1 = 1'' in the dipole definition in the lattice file, the 20 61 entrance edge effect and fringe field of the dipole are turned on, with ``edge\_effect1 = 0'', 21 62 this effects are turned off. These two effects at the exit of the dipole are controlled by … … 24 65 25 66 \section{Introduction} 26 Tracy is a code to do long term tracking, and is written in the mixture of c and c++. This code is kept on developing. Soleil version of Tracy 3 is a code with more flexibility and easy to use. User does not need to know the structure of the code, what they need to do is to write an input script, and then run the code. 67 Tracy is a code to do long term tracking, and is written in the mixture of c and c++. 68 This code is kept on developing. Soleil version of Tracy 3 is a code with more flexibility and easy to use. User does not need to know the structure of the code, what they need to do is to write an input script, and then run the code. 27 69 Based on the need, user can write the files to define multipole field errors, misalignment errors of the lattice elements, and vacuum chamber, and then provide the file name in the user input script, in order to set the field errors of the lattice elements and the vacuum limit for the different region of the lattice. 28 70 Attention: … … 30 72 Although the user can define the file name whatever they want, it is suggested to name the file which is used to define multipole field error with the extension â.feâ and name the file which is used to define the misalignment error with the extension â.aeâ. 31 73 32 There are two versions of Tracy 3, non-parallel version and parallel version. Non-parallel version Tracy is for the single computer, parallel version of Tracy is for the the cluster. The user defined input script â*.prmâ can be used for both parallel and non-parallel version Tracy. 74 There are two versions of Tracy 3, non-parallel version and parallel version. Non-parallel version Tracy is for the single computer, parallel version of Tracy is for the the cluster. The user defined input script which can be used for both parallel and non-parallel version Tracy. The ascii file with any extension isacceptable for Tracy3, but the extension is suggested to be â.prmâ. 75 33 76 \section{ Non-parallel version Tracy} 34 77 \subsection {Compile} 35 The make file of Tracy is generated by âautomakeâ. Based on the compilers used, user needs to update âmake\_for\_gcc.shâ under path ``\$HOME/TracyIII/'' or the ``Makefile.am'' under path ``\$HOME/TracyIII/tracy/tracy/src'' and ``\$HOME/TracyIII/tracy/tools''. The compilers used on the server ``metis'' of SOLEIL Synchrotron are ``gfortran'', and ``gcc''. 36 37 To compile the code, run 38 39 make\_for\_gcc.sh opt 40 41 under the shell terminal, an executive file ``soltracy'' is automatically generated under path ``\$HOME/TracyIII/tracy/tools''. 78 The make file of Tracy is generated by âautomakeâ. Based on the compilers used, 79 user needs to update â\textsf{\wrapletters{make\_for\_gcc.sh}}â under 80 path ``\pathfont{\$HOME/TracyIII/}'' 81 or the ``Makefile.am'' under path ``\pathfont{\$HOME/TracyIII/tracy/tracy/src}'' 82 and ``\pathfont{\$HOME/TracyIII/tracy/tools}''. The compilers used on the server 83 ``metis'' of SOLEIL Synchrotron are ``gfortran'', and ``gcc''. 84 85 To compile the code, run the command under the shell terminal: 86 \begin{tightcenter} 87 \textsf{make\_for\_gcc.sh} \qquad \textsf{opt} 88 \end{tightcenter} 89 Then the executive file ``soltracy'' is automatically 90 generated under path ``\pathfont{\$HOME/TracyIII/tracy/tools}''. 42 91 43 92 \subsection{Run} 44 45 To execute Tracy, user needs to provide an input script with the file extension â.prmâ. For example, ``Input\_test.prm'' is a user defined script, user can type the command line 46 47 soltracy Input\_test.prm 48 49 under the shell terminal, and then press ``return'' key to execute the code. The input script file name can be defined with any valid string except it must be ended with the file extension ``.prm''. 93 To execute Tracy, the user needs to define an input file with the 94 the lattice file names and the related commands (section~\ref{}). 95 The name of the input file can be any valid characters. Although 96 there is no limitation to the extension of the file, the extension 97 ``.prm'' is preferred. For example, To run the user defined input file 98 ``Input\_test.prm'', user can type the command: 99 \begin{tightcenter} 100 \textsf{soltracy} \qquad \textsf{Input\_test.prm} 101 \end{tightcenter} 50 102 51 103 \section{ Parallel version Tracy} … … 63 115 64 116 \subsection{Compile} 65 The commonly used compilers for parallel computation are MPI 2, and Intel MPI which is based on MPI 2. For the cluster of SOLEIL Synchrotron, Intel MPI is installed. To get the parallel Tracy work, three files of the non-parallel version Tracy need to be modified. 66 The details are shown in the following steps. 117 The commonly used compilers for parallel computation are MPI 2, and Intel 118 MPI which is based on MPI 2. For the cluster of SOLEIL Synchrotron, Intel 119 MPI is installed. To get the parallel Tracy work, three files of the 120 non-parallel version Tracy need to be modified. The details are shown in 121 the following steps. 67 122 \begin{enumerate} 68 123 \item 69 124 The path of included files of Intel MPI is added in ``Makefile.am'' under 70 path ``\$HOME/TracyIII/tracy/tracy/src'' (shown in BLUE color): 71 72 INCLUDES = -I../inc -I\$(NUM\_REC)/inc 73 -I/opt/intel/impi/3.2.2.006/include64 125 path ``\pathfont{\$HOME/TracyIII/tracy/tracy/src}'' (shown in BLUE color): 126 127 \wrapletters{INCLUDES = -I../inc -I\$(NUM\_REC)/inc \quad 128 -I/opt/intel/impi/3.2.2.006/include64} 129 74 130 \item 75 131 The execute file, source file, paths of included files and library of Intel 76 MPI are modified in ``Makefile.am'' under path ``\ $HOME/TracyIII/tracy/tools''132 MPI are modified in ``Makefile.am'' under path ``\pathfont{\$HOME/TracyIII/tracy/tools}'' 77 133 (shown in BLUE color): 78 134 79 135 bin\_PROGRAMS = psoltracy 80 136 81 soltracy\_SOURCES = soltracy.cc nrutil.c nrcheck.c 82 nrlinwww.c nrframe.c ../tracy/src/tracy\_lib.cc -> 83 psoltracy\_SOURCES = psoltracy.cc nrutil.c nrcheck.c 84 nrlinwww.c nrframe.c ../tracy/src/tracy\_lib.cc 85 86 LIBS = -L\$(NUM\_REC)/lib 87 -L/opt/intel/impi/3.2.2.006/lib64 -L\$(LIBPATH) 88 -lrecipes\_c\_icc -lstdc++ -lgfortran -lmpichcxx 137 soltracy\_SOURCES = \texttt{soltracy.cc nrutil.c nrcheck.c } 138 \texttt{ nrlinwww.c nrframe.c ../tracy/src/tracy\_lib.cc $\rightarrow$} 139 140 psoltracy\_SOURCES = \texttt{psoltracy.cc nrutil.c nrcheck.c 141 nrlinwww.c nrframe.c ../tracy/src/tracy\_lib.cc} 142 143 LIBS = \texttt{\wrapletters{-L\$(NUM\_REC)/lib \quad 144 -L/opt/intel/impi/3.2.2.006/lib64 \quad -L\$(LIBPATH) \quad 145 -lrecipes\_c\_icc \quad -lstdc++ \quad -lgfortran \quad -lmpichcxx}} 89 146 90 INCLUDES = -I\$(TRACY\_LIB)/tracy/inc -I\$(NUM\_REC)/inc 91 -I/opt/intel/impi/3.2.2.006/include64 147 INCLUDES = \texttt{\wrapletters{-I\$(TRACY\_LIB)/tracy/inc \quad -I\$(NUM\_REC)/inc 148 \quad -I/opt/intel/impi/3.2.2.006/include64}} 149 92 150 \item 93 The compilers used in the parallel computing are defined in the ``make\_for\_psoltracy.sh'' located in path ``\$HOME/TracyIII'' as (shown in BLUE color): 94 95 CC = mpiicc 96 97 CXX = mpiicpc 98 99 F77 = mpiifort 151 The compilers used in the parallel computing are defined in the 152 ``\wrapletters{make\_for\_psoltracy.sh}'' located in path ``\$HOME/TracyIII'' 153 as (shown in BLUE color): 154 155 CC = \texttt{mpiicc} 156 157 CXX = \texttt{mpiicpc} 158 159 F77 = \texttt{mpiifort} 100 160 101 161 Depending on the compilers used to do parallel computation, user needs to … … 103 163 files and library which are shown above with blue color. 104 164 105 165 After updating compilers, paths of included files and library for parallel 106 166 computation, user can run 107 108 make\_for\_psoltracy.sh 109 167 \begin{tightcenter} 168 \textsf{make\_for\_psoltracy.sh} 169 \end{tightcenter} 110 170 under the shell script to compile the parallel Tracy. After compilation, 111 171 the execute file ``psoltracy'' is automatically generated under the 112 path ``\$HOME/TracyIII/tracy/tools''. 113 114 172 path ``\pathfont{\$HOME/TracyIII/tracy/tools}''. 115 173 \end{enumerate} 116 174 175 117 176 \subsection{Run} 118 As the non-parallel version Tracy, user needs to write the commands in a script which must be with the file extension â.prmâ. The syntaxes to define the script â*.prmâ are the same for both non-parallel and parallel Tracy. 119 To run the parallel Tracy, user need to contact the administrator of their cluster to know how to run parallel programs on the cluster. For the cluster on Synchrotron SOLEIL, the nodes used to do parallel computation are assigned by PBS (Portable Batch System), so a script is need. For example, user define the input script âtest.prmâ to tell Tracy what jobs are need to be done on the cluster, define script âlance\_tracy3\_parallel.shâ to assign the numbers of CPUs to do parallel computation and lance job to the SOLEIL cluster. and then type the following command under the bash shell to submit the job and run the parallel Tracy on the cluster: 120 121 lance\_tracy3\_parallel.sh test.prm 177 As the non-parallel version Tracy, user needs to write the commands in a 178 script which must be with the file extension ``.prm''. The syntaxes to define 179 the script ``*.prm'' are the same for both non-parallel and parallel 180 Tracy. 181 182 To run the parallel Tracy, user need to contact the administrator of their 183 cluster to know how to run parallel programs on the cluster. For the cluster 184 on Synchrotron SOLEIL, the nodes used to do parallel computation are assigned 185 by PBS (Portable Batch System), so a script is need. For example, user define 186 the input script \texttt{test.prm} to tell Tracy what jobs are need to be done on the 187 cluster, define script \textsf{\wrapletters{lance\_tracy3\_parallel.sh}} to assign 188 the numbers of CPUs to do 189 parallel computation and lance job to the SOLEIL cluster; and then type the 190 following command under the bash shell to submit the job and run the parallel 191 Tracy on the cluster: 192 \begin{tightcenter} 193 \textsf{lance\_tracy3\_parallel.sh \qquad test.prm} 194 \end{tightcenter} 195 122 196 123 197 \section{ User input script} 124 There are two types of keywords in the user input script. The first type is to set the file, the file names, and define parameters for the related calculations; the key words for such definitions are ended with the characters âFlagâ. The second type is to define Boolean commands with or without parameters to do different calculations. The rules of the definition of input scripts are: 125 The blank lines and lines starting with "\#" (comment line) are ignored by the code. 126 Keywords without âFlagâ as the final 4 characters are NOT executed according to the defined sequence in user input script. If the same command keywords are defined many times in the user script, only the last defined keyword is executed. 127 The commands with the last 4 characters as âFlagâ are executed according to the sequence in the code. 128 The definition of lattice file at the beginning of the user script is mandatory. If the lattice file is with any of the following elements: horizontal correctors, vertical correctors, girders, BPM, skew quadrupoles, user must declare the element name at the beginning of input script. 129 One keyword command uses one line. User can not define more than one command at the same line. 130 Except explanation, all commands with Boolean flag are the generic commands, and can be used on all the lattice of the ring. 131 \subsection{ File path} 132 In the user input script, user can specify the name of the files which are used in the calculation, such as the lattice file, multipole field error file, misalignment error file, vacuum chamber file. When specifying the file name, user can provide the absolute path for the file which is not located at the current path, such as: â/home/physmach/Tracy3/tracy/soleil.latâ; or for convenience, user provides the filename without absolute path, but put the files at a certain directory and then specific this directory using the command: 133 in\_dir user\_defined\_path 134 For example: 135 in\_dir /home/zhang/codes/TracyIII/lattice/ 136 137 This command tells the code all the files specified in the script are located at the directory â/home/zhang/codes/TracyIII/lattice/â. If user declares the files without absolute path and does not set the directory through command in\_dir; or the files specified in the script are not found at the current working path, the code will give an error message and stop running. 138 139 \section{ File names} 198 There are two types of keywords in the user input script. The first type is 199 to set the file, the file names, and define parameters for the related 200 calculations; the key words for such definitions are ended with the 201 characters ``Flag''. The second type is to define Boolean commands with or 202 without parameters to do different calculations. The rules of the definition 203 of input scripts are: 204 \begin{itemize} 205 \item 206 The blank lines and lines starting with ``\#'' (comment line) are ignored 207 by the code. 208 \item 209 Keywords without ``Flag'' as the final 4 characters are NOT executed according 210 to the defined sequence in user input script. If the same command keywords 211 are defined many times in the user script, only the last defined keyword is 212 executed. 213 \item 214 The commands with the last 4 characters as ``Flag'' are executed according 215 to the sequence in the code. 216 \item 217 The definition of lattice file at the beginning of the user script is mandatory. 218 \item 219 If the horizontal correctors, or vertical correctors, or girders, Beam Position 220 Monitors, or skew quadrupoles are defined in the lattice file, user must 221 declare the element name at the beginning of Tracy input file. 222 \item 223 One keyword command uses one line. User can not define more than one command 224 at the same line. 225 \item 226 Except explanation, all commands with Boolean flag are the generic commands, 227 that is, the commands are not machine dependent. 228 \end{itemize} 229 230 \subsection{File path} 231 In the user input script, user can specify the name of the files which are used 232 in the calculation, such as the lattice file, multipole field error file, 233 misalignment error file, vacuum chamber file. When specifying the file name without 234 file path in the Tracy input file, Tracy will look for the file in the current 235 work path. Otherwise, user need to provide the absolute path of the file which is 236 not located at the current path, such as: ``\texttt{\wrapletters{/home/physmach/Tracy3/tracy/soleil.lat}}''. 237 Another method is to provide the filename without absolute path, but put all the 238 called external files at a certain directory, and this directory is defined in the 239 Tracy input file using the command: 240 \tracycommand{in\_dir}{user\_defined\_path} 241 For example, 242 \tracycommand{in\_dir}{/home/zhang/codes/TracyIII/lattice/} 243 This example tells the code all the files defined with absolute file path in the Tracy 244 input file are located 245 at the directory \pathfont{/home/zhang/codes/TracyIII/lattice/}. If user declares the files 246 without absolute path and does not set the directory through command \textsf{in\_dir}; or 247 the files specified in the script are not found at the current working path, 248 the code will give an error message and stop running. 249 250 \section{File names} 140 251 141 252 \subsection{Lattice file name} 142 In the input script, user must define the lattice name, this is mandatory. The command is: 143 lat\_file lattice\_file\_name 144 Here âlattice\_file\_nameâ is the lattice file name without â.latâ extension. For example, the following command sets the lattice file of SOLEIL ring: 145 lat\_file solamor2\_reglage\_focalisation\_chcvqt\_thicksextu\_LQPintermediaire\_QFF 146 In Tracy 3, after reading the lattice, Twiss parameters are automatically printed to the file âlinlat.outâ. 147 If one of these elements (Horizontal/vertical correctors or beam position monitors, or girders, or skew quadrupoles.) are defined in the lattice file, for example to read the misalignment errors of the lattice element and then do orbit correction, to read multipole field errors (SOLEIL lattice), etc.; user MUST specify the names of these elements using the corresponding commands in the â*.prmâ script: 148 h\_corr HCM 149 v\_corr VCM 150 gs GS 151 ge GE 152 bpm\_name BPM 153 qt QT 154 Here âHCMâ is the name of horizontal correctors used for horizontal orbit correction, or the horizontal correctors on which the multipole field errors are added in SOLEIL lattice; âVCMâ is the name of vertical correctors used for vertical orbit correction, or the vertical correctors on which the multipole field errors are added in SOLEIL lattice; âGSâ is the name of the start girder; âGEâ is the name of the end girder; âBPMâ is the name of beam position monitors defined in the lattice file; âQTâ is the name of the skew quadrupoles defined in the lattice. Generally, user needs to define horizontal, vertical correctors and BPMs when reading the misalignment errors or correcting closed orbit distortion 253 In the input script, user must define the lattice name, this is mandatory. 254 The command is: 255 256 \tracycommand{lat\_file}{lattice\_file\_name} 257 258 Here \tracypara{lattice\_file\_name} is the lattice file name without the extension ``.lat''. 259 For example, the following command sets the lattice file of SOLEIL ring: 260 \tracycommand{lat\_file}{solamor2} 261 262 n Tracy 3, after reading the lattice, Twiss parameters are automatically printed to the 263 file \textsl{linlat.out}. 264 265 If one of these elements (Horizontal/vertical correctors or beam position monitors, or 266 girders, or skew quadrupoles.) are defined in the lattice file, for example to read 267 the misalignment errors of the lattice element and then do orbit correction, to read multipole 268 field errors (SOLEIL lattice), etc.; user MUST specify the names of these elements using the 269 corresponding commands in the Tracy input file: 270 \tracycommand{h\_corr}{HCM} 271 \tracycommand{v\_corr}{VCM} 272 \tracycommand{gs}{GS} 273 \tracycommand{ge}{GE} 274 \tracycommand{bpm\_name}{BPM} 275 \tracycommand{qt}{QT} 276 Here \tracypara{HCM} is the name of horizontal correctors for horizontal orbit correction, 277 or the horizontal correctors on which the multipole field errors are added in SOLEIL lattice; 278 \tracypara{VCM} is the name of vertical correctors used for vertical orbit correction, or 279 the vertical correctors on which the multipole field errors are added in SOLEIL lattice; 280 \tracypara{GS} is the name of the start girder; \tracypara{GE} is the name of the end girder; 281 \tracypara{BPM} is the name of beam position monitors defined in the lattice file; 282 \tracypara{QT} is the name of the skew quadrupoles defined in the lattice. Generally, 283 user needs to define horizontal, vertical correctors and BPMs when reading the misalignment 284 errors or correcting closed orbit distortion. 155 285 156 286 \subsection{Multipole field error file name (SOLEIL lattice)} 157 User can read the multipole field errors on SOLEIL lattice from an external file; the file is specified in the user script using the following command: 158 multipole\_file multipole\_file\_name 159 Here âmultipole\_file\_nameâ is the user defined multipole field error file, the format of this file is given in section Error: Reference source not found. 160 161 If the multipole field errors of horizontal, vertical correctors and skew quadrupoles are defined in the âmultipole\_fileâ, user MUST specify the names of these lattice elements in the â*.prmâ file as the following example: 162 h\_corr CH 163 v\_corr CV 164 qt QT 165 Here âCHâ, âCVâ and âQTâ are the names of horizontal, vertical correctors, and skew quadrupoles respectively which are defined in the lattice file. 287 User can read the multipole field errors on SOLEIL lattice from an external file; 288 the file is specified in the user script using the following command: 289 \tracycommand{multipole\_file}{multipole\_file\_name} 290 Here \tracypara{multipole\_file\_name} is the user defined multipole field error file, 291 the format of this file is given in section~\ref{}. 292 293 If the multipole field errors of horizontal, vertical correctors and skew quadrupoles 294 are defined in the \tracypara{multipole\_file}, user MUST specify the names of these 295 lattice elements in the Tracy input file as the following example: 296 \tracycommand{h\_corr}{CH} 297 \tracycommand{v\_corr}{CV} 298 \tracycommand{qt}{QT} 299 Here \tracypara{CH}, \tracypara{CV} and \tracypara{QT} are the names of horizontal, 300 vertical correctors, and skew quadrupoles respectively which are defined in the lattice file. 166 301 167 302 \subsection{Files of multipole field errors of correctors and skew quadrupoles (SOLEIL lattice)} 168 Horizontal, vertical correctors and skew quadrupoles are integrated with the sextupole quadrupoles on SOLEIL storage ring. To define the multipole field errors on these elements, user need to define the orders and relative strengths of multipole field errors in the multipole field error file (section Error: Reference source not found) and specify the file name in the user input script â*.prmâ (section Multipole field error file name), then specify the file names as the following example: 169 fic\_hcorr corh.txt 170 fic\_vcorr corv.txt 171 fic\_skew corqt.txt 172 Here âcorh.txtâ and âcorv.txtâ are the files with measured current values corh, corv, corqt (with unit [Ampere]) for the horizontal, vertical correctors and skew quadrupoles respectively. Based on the measured current values, user can get the integrated field strength as: 173 Hcorr\_strength [T.m] = corh *\_convHcorr /brho; (horizontal correctors) 174 Vcorr\_strength [T.m] = corv *\_convVcorr /brho; (vertical correctors) 175 Qt\_strength [T.m] = corqt *\_convQt /brho; (skew quadrupoles) 176 here brho is the momentum rigidity, and the conversion constants between current and field are \_convHcorr = 8.14e-4, \_convVcorr = 4.642e-4, \_convQt = 93.83e-4. 177 For SOLEIL lattice, the SAME ORDER of multipole field errors on the same elements are added together, so the SAME ORDER of horizontal/vertical, skew quadrupoles, and sextupoles are added together since these elements are integrated at the same magnets. 303 Horizontal, vertical correctors and skew quadrupoles are integrated with the sextupole quadrupoles 304 on SOLEIL storage ring. To define the multipole field errors on these elements, user need to define the orders and relative strengths of multipole field errors in the multipole field error file (section Error: Reference source not found) and specify the file name in the user input script â*.prmâ (section Multipole field error file name), then specify the file names as the following example: 305 \tracycommand{fic\_hcorr}{corh.txt} 306 \tracycommand{fic\_vcorr}{corv.txt} 307 \tracycommand{fic\_skew}{corqt.txt} 308 Here \tracypara{corh.txt} and \tracypara{corv.txt} are the files with measured current values corh, 309 corv, corqt (with unit [Ampere]) for the horizontal, vertical correctors and skew quadrupoles 310 respectively. Based on the measured current values, user can get the integrated field strength as:\\ 311 \vspace{0.02in} 312 \texttt{Hcorr\_strength [T.m] = corh *\_convHcorr /brho; (horizontal correctors) \\} 313 \vspace{0.02in} 314 \texttt{Vcorr\_strength [T.m] = corv *\_convVcorr /brho; (vertical correctors)} \\ 315 \vspace{0.02in} 316 \texttt{Qt\_strength [T.m] = corqt *\_convQt /brho; (skew quadrupoles)} \\ 317 \vspace{0.02in} 318 319 Here brho is the momentum rigidity, and the conversion constants between current and field are \texttt{\_convHcorr} = 8.14e-4, \texttt{\_convVcorr} = 4.642e-4, \texttt{\_convQt} = 93.83e-4. 320 321 For SOLEIL lattice, the SAME ORDER of multipole field errors on the same elements are added together, 322 so the SAME ORDER of horizontal/vertical, skew quadrupoles, and sextupoles are added together since 323 these elements are integrated at the same magnets. 178 324 179 325 \subsection{ File to define field strength of virtual coupling source elements (SOLEIL lattice)} 180 On SOLEIL storage ring, the coupling is thought to come from the rotation of quadrupoles and vertical displacements of sextupoles. The strengths of these coupling sources are written in a file, then read by the following command: 181 virtualskewquad\_file virtual\_skew\_quad\_currents.txt 182 183 Here âvirtual\_skew\_quad\_currents.txtâ is the user defined file with strength of vertical coupling source. 184 In order to use this command to read the virtual sources of coupling, user needs to define the virtual coupling element as a skew quadrupole in the lattice file: 185 SQ: quadrupole, tilt=45.0, K= 0.0, method=4, N=1; 326 On SOLEIL storage ring, the coupling is thought to come from the rotation of quadrupoles 327 and vertical displacements of sextupoles. The strengths of these coupling sources are 328 written in a file, then read by the following command: 329 \tracycommand{virtualskewquad\_file}{virtual\_skew\_quad\_currents.txt} 330 331 Here \tracypara{virtual\_skew\_quad\_currents.txt} is the user defined file with strength 332 of vertical coupling source. 333 334 In order to use this command to read the virtual sources of coupling, user needs to define 335 the virtual coupling element as a skew quadrupole in the lattice file: 336 \latticedef{SQ:}{quadrupole,}{tilt=45.0, K= 0.0, method=4, N=1;} 186 337 and this virtual coupling element MUST be with the name âSQâ. Now there 152 elements defined as the virtual coupling sources in the SOLEIL lattice. The syntaxs to define skew quadrupole are explained in section . 187 338 The measured current value qtcorr[i] of the ith coupling source is converted to the corresponding integrated skew quadrupole field strength corr\_strength as … … 435 586 \subsection{kick map} 436 587 437 \section{ Commands} 588 589 \section{ Lattice file} 590 In the lattice, RF cavity with the correct harmonic number must be defined!!! 591 Otherwise Tracy will give the error message: 592 \textcolor{red}{Elem\_GetPos: there are no kids in family 0 ()}. This obigatory is for the 593 correct calculation of positive/negtive momentum compaction factor. 594 To deactive the RF cavity, the cavity voltage can be defined as 0. 595 596 597 The followings are the rules to define a lattice file used in Tracy 3. The curvelinear coordinates are 598 used. \textbf{The ideal particle or design particle sees the perfect magnetic field in all magnets, and its} 599 \textbf{orbit is used as the reference orbit and base of the curvilinear coordinate}. Since the reference orbit 600 is a curve inside the dipoles and a straight line in other lattice elements (drifts and the magnets except 601 dipoles), so the length of the dipole is the the path length of the reference particle inside the dipole 602 which is equal to $\rho*\theta$ where $\rho$ is the bending radius of the dipole and $theta$ is the bending angle 603 with unit [rad], and all the other magnet lengths are the straight length of the magnets. 604 605 Due to the same reason, the curvature of the curvilinear cooridnates h = 1/$\rho$ is not zero only inside dipole; 606 in other magnets and drift h = 0, and the curvilinear coordinates goes to cartesian cooridnates. 607 As a result, the independent variable $s$ inside the dipole harmitonian is the arc length, while the staight 608 length in other lattice elements. 609 610 \subsection{Lattice} 611 The $n^{th}$ field component of the lattice element is defined as in Tracy (n = 1, 2, 3, 4 ...): 612 \begin{eqnarray*} 613 b_n & = & \frac{1}{B \rho} \frac{1}{(n-1)!} \frac{\partial^{n-1} B_y }{\partial x ^{n-1}}|_{x=0,y=0} \\ 614 a_n & = & \frac{1}{B \rho} \frac{1}{(n-1)!} \frac{\partial^{n-1} B_x }{\partial x ^{n-1}}|_{x=0,y=0} \\ 615 B \rho & = & \frac{p_0}{e} 616 \end{eqnarray*} 617 $B \rho$ is the magnetic rigidity, $p_0$ is the design beam momentum, $e$ is the electric charge. 618 For example, for sextupole, n = 3, so $b_3$ and $a_3$ are defined as 619 \begin{eqnarray*} 620 b_3 & = & \frac{1}{B \rho} \frac{1}{2} \frac{\partial^{2} B_y }{\partial x ^{2}}|_{x=0,y=0} \\ 621 a_3 & = & \frac{1}{B \rho} \frac{1}{2} \frac{\partial^{2} B_x }{\partial x ^{2}}|_{x=0,y=0} 622 \end{eqnarray*}. 623 624 \notespace{NOTES:} 625 In \textbf{AT} (Accelerator Toolbox) and \textbf{BETA} code, the definition of are the same as in \textbf{Tracy}. 626 While In \textbf{MAD8}, \textbf{MADX} and \textbf{ELEGANT}, the order of the field compoent start from 0, that is 627 n = 0, 1, 2, 3, ..., and the $n^{th}$ field strength components of the lattice element $b_n$ and $a_n$ are defined as 628 \begin{eqnarray*} 629 b_n & = & \frac{1}{B \rho} \frac{\partial^{n} B_y }{\partial x ^{n}}|_{x=0,y=0} \\ 630 a_n & = & \frac{1}{B \rho} \frac{\partial^{n} B_x }{\partial x ^{n}}|_{x=0,y=0} \\ 631 B \rho & = & \frac{p_0}{e} 632 \end{eqnarray*} 633 For example, for sextupole, n = 3, its field component $b_2$ and $a_2$ are defined as 634 \begin{eqnarray*} 635 b_2 & = & \frac{1}{B \rho} \frac{\partial^{2} B_y }{\partial x ^{2}}|_{x=0,y=0} \\ 636 a_2 & = & \frac{1}{B \rho} \frac{\partial^{2} B_x }{\partial x ^{2}}|_{x=0,y=0} 637 \end{eqnarray*}. 638 639 640 641 \subsection{Syntax} 642 Every line embraced by â{}â is comment line. For example: 643 644 {*****drift space *****} 645 646 Each sentence is ended by â;â or no punctuation. 647 Tracy is not sensitive to capital/small letters in the lattice. 648 User can define any lattice element with any valid name (but must start with a character) they want, but the element type is fixed. 649 For the lattice of the ring, the definition of RF cavity is mandatory, and the harmonic number of the RF cavity is also mandatory; for the lattice of the linac, the definition of the RF cavity is optional. 650 651 \subsection{Variables} 652 User can define the variables in the lattice file. For example: 653 \begin{tightcenter} 654 \textsf{Intmeth = 4}; 655 \end{tightcenter} 656 Then when the code is running, the variable \textsf{intmeth} in the lattice 657 file will be replaced by \textsf{4}. 658 659 Tracy accept math operation. For example, 660 \latticedef{DL1: }{drift,}{L = 0.1*2 + 0.1-0.01;} 661 662 \subsection{Start line} 663 The lattice file must begin with the sentence: 664 \begin{tightcenter} 665 \textsf{define} \quad \textsf{lattice}; 666 \end{tightcenter} 667 This definition is mandatory. 668 669 \subsection{Global variables} 670 After define the ring, user needs to define the system parameters of the lattice: 671 Energy, the beam energy with unit [GeV]. 672 dP, the relative momentum offset of the particle. 673 CODeps, the convergence for the algorism to find the closed orbit. 674 For example: 675 Energy = 2.739; 676 dP = 1.0d-10; 677 CODeps= 1.0d-15; 678 These definitions are mandatory. 679 680 \subsection{DRIFT} 681 682 \latticedef{Name:}{drift,}{L = $\langle \dots \rangle$;} 683 684 \begin{table}[htbp] 685 \centering 686 \caption{Parameters of dipole in the lattice file.} 687 \label{tab:dipole-para} 688 %\begin{tabular*}{\linewidth}{@{\extracolsep{\fill}}|p{0.2\linewidth} |p{0.1\linewidth} | p{0.6\linewidth} |} 689 \begin{tabular}{| p{0.2\linewidth} | p{0.2\linewidth} | p{0.1\linewidth} | p{0.4\linewidth} |} 690 \hline 691 \textbf{Parameter Name} & \textbf{Units} &\textbf{Default} & \textbf{Description} \\ 692 \hline 693 \textbf{L} & [m] & 0.0 & Length. \\ 694 \hline 695 \end{tabular} 696 \end{table} 697 The definition of the length of a drift is mandatory. 698 699 \vspace{0.05in} 700 \textit{Example:} 701 \latticedef{SD1a:}{drift,}{L= 0.900000;} 702 703 \subsection{DIPOLE} 704 705 \latticedef{Element\_name:}{bending,}{L = $\langle \dots \rangle$, T = $\langle \dots \rangle$, 706 \textbf{T1} = $\langle \dots \rangle$, \textbf{T2}=$\langle \dots \rangle$, 707 \textbf{H1} = $\lbrack \dots \rbrack$, \textbf{H2}= $\lbrack \dots \rbrack$, 708 \textbf{gap} = $\lbrack \dots \rbrack$, \textbf{edge\_effect1} = $\lbrack \dots \rbrack$, 709 \textbf{edge\_effect2} = $\lbrack \dots \rbrack$, \textbf{K} =$\lbrack \dots \rbrack$, 710 \textbf{method} = $\langle \dots \rangle$, \textbf{N} = $\langle \dots \rangle$;} 711 712 713 714 \begin{table}[tbp] 715 \centering 716 \caption{Parameters of dipole in the lattice file.} 717 \label{tab:dipole-para} 718 %% \begin{tabular*}{\linewidth}{@{\extracolsep{\fill}}|l|c|c|p{0.4\linewidth}|} 719 \begin{tabular}{| p{0.2\linewidth} | p{0.2\linewidth} | p{0.1\linewidth} | p{0.4\linewidth} |} 720 \hline 721 \textbf{Parameter Name} & \textbf{Units} &\textbf{Default} & \textbf{Description} \\ 722 \hline 723 \textbf{L} & [m] & 0.0 & Curved path length of 724 the design particle inside the dipole. L = $\rho * \theta$, where $\rho$ is the 725 bending radius of the dipole, and $\theta$ is the bending angle of the dipole. \\ 726 \hline 727 \textbf{T} &[degree] & 0.0 & Total bending angle \\ 728 \hline 729 \textbf{T1} &[degree] & 0.0 & Entrance angle \\ 730 \hline 731 \textbf{T2} &[degree] & 0.0 & Exit Angle \\ 732 \hline 733 \textbf{K} & L $\neq$ 0, m$^{-2}$. \newline L = 0, m$^{-1}$. & 0.0 734 & L $\neq$ 0, quadrupole field strength; \newline L = 0, integrated field strength. \\ 735 \hline 736 \textbf{Method} & - & 4 & 1,2,4. Symplectic integration method. The 737 value ``1'' means $1^{\mathrm{st}}$ order, ``2'' means $2^{\mathrm{nd}}$ order, 738 and ``4'' means $4^{\mathrm{th}}$ order. \\ 739 \hline 740 \textbf{Gap} &[m] & 0.0 & Distance between two poles of the dipole, 741 the gap size determine the fringe field. If the gap size is 0, then the dipole has 742 no fringe field (\textcolor{red}{??????}). \\ 743 \hline 744 \textbf{edge\_effect1} & - & 0 & 1/0. 745 ``1'' to turn on the edge focusing effect and the fringe field at the entrance of 746 the dipole. ``0'' to turn off the two effects. \\ 747 \hline 748 \textbf{edge\_effect2} & - & 0 & 1/0. ``1'' to turn on the edge focusing effect and the 749 fringe field at the exit of the dipole. ``0'' to turn off the two effects. \\ 750 \hline 751 \textbf{N} & - & 1 & number of cut slices. \\ 752 \hline 753 \end{tabular} 754 \end{table} 755 756 \vspace{0.05in} 757 For example:\\ 758 \vspace{0.05in} 759 \textsf{beta\_gap=37e-3; tracy\_gap=beta\_gap*2*0.724;} 760 \latticedef{BEND1 :}{ \textbf{bending},}{ \textbf{L} = 1.05243, \textbf{T} = 11.25, \textbf{T1} = 5.5906, 761 \textbf{T2} = 5.67658, \textbf{K} = 0.00204,gap=tracy\_gap, 762 \textbf{edge\_effect1} = 1, \textbf{edge\_effect2} = 1, \textbf{N} = 4, 763 \textbf{method} = intmeth;} 764 765 The parameters of ``bending'' are optional, the default values for the missing parameters are 0, 766 and the default value for ``method'' is also 0. 767 768 769 \vspace{0.05in} 770 \textbf{Attention:} 771 \begin{itemize} 772 \item 773 The bending magnet in Tracy is a symplectic element. 774 The independent variable $s$ inside the dipole harmitonian is the arc length, 775 so the length of the dipole is defined the curved path length of the design 776 particle inside the dipole. 777 \item 778 One can refer to the definition of $T1$,$T2$, $H1$, $H2$ on page 116 of SLAC-75 for more 779 information. 780 \item 781 In the lattice files of ELEGANT, MADX and BETA, the dipole angles are defined with the unit [rad]. 782 But in TRACY, the unit is [degree]. 783 \item 784 BETA dipole gap is the Elegant gap; but Tracy dipole gap is different from 785 the definition in both BETA and Elegant. 786 Tracy definition of dipole with fringe field: \\ 787 \textsf{ 788 beta\_gap=0.04; 789 {tracy\_gap=beta\_gap*2*1/6;} 790 {Due to the Tanh-like fringe field, K1=0.2, and tracy\_gap = beta\_gap *2* FINT (K brown para.)} 791 tracy\_gap = beta\_gap*2*0.348;} 792 793 794 \latticedef{DIP:}{bending,}{L=0.27646,T= 45, T1=0, T2=0,gap=tracy\_gap,edge\_effect1=1,edge\_effect2=1,method=intmeth,N=4;} 795 796 Elegant definition of dipole with dipole fringe field: \\ 797 \textsf{DIP: csbend,N\_KICKS=100,INTEGRATION\_ORDER=4,L=0.27646,angle= 0.785398, E1=0, E2=0,hgap=0.02,Fint=0.348,nonlinear=1,edge1\_effects=2,edge2\_effects=2,edge\_order=2;} 798 \end{itemize} 799 800 \subsection{QUADRUPOLE} 801 \textbf{Definition:} \\ 802 \latticedef{Element\_Name:}{ quadrupole,}{ L = $\lbrack \dots \rbrack$, tilt = $\lbrack \dots \rbrack$, 803 K =$\lbrack \dots \rbrack$, FF1 = $\lbrack \dots \rbrack$, 804 FF2= $\lbrack \dots \rbrack$, FFscaling = $\lbrack \dots \rbrack$, 805 method = $\lbrack \dots \rbrack$, N= $\langle \dots \rangle$;} 806 807 \begin{table}[htbp] 808 \centering 809 \caption{Parameters of quadrupoles in the lattice file.} 810 \label{tab:quad-para} 811 \begin{tabular}{| p{0.2\linewidth} | p{0.2\linewidth} | p{0.1\linewidth} | p{0.4\linewidth} |} 812 \hline 813 \textbf{Parameter Name} & \textbf{Units} &\textbf{Default} & \textbf{Description} \\ 814 \hline 815 L & [m] & 0.0 & Length of the quadrupole \\ 816 \hline 817 Tilt & [degree] & 0.0 & tilt angle of the quadrupole. 818 If âtiltâ is non-zero, then the 819 quadrupole is a skew quadruple. \\ 820 \hline 821 K & L $\neq$ 0, [m$^{-2}$]. \newline L = 0, [m$^{-1}$]. & 0.0 & L $\neq$ 0, Gradient 822 $\frac{\frac{\partial B_y }{\partial x}}{B \rho}$; \newline L = 0, integrated field strength 823 $\frac{\frac{\partial B_y }{\partial x} L }{B \rho}$. \\ 824 \hline 825 FF1 & - & 0 & 1 or 0. \newline 826 1: to avtive fringe field at the left edge. \textsf{QuadFringeOnFlag} 827 should be set in the Tracy input file. 0: left fringe field off. \\ 828 \hline 829 FF2 & - & 0 & 1 or 0. \newline 830 1: to avtive fringe field at the right edge. \textsf{QuadFringeOnFlag} 831 should be set in the Tracy input file. 0: right fringe field off. \\ 832 \hline 833 FFscaling & - & 1 & Scaling factor of the dipole fringe field. \\ 834 \hline 835 Method & - & 4 & 1,2,4. Order of symplectic integration method. 836 Value ``1'' means 1st order, ``2'' means 2nd order, and ``4'' means 4th order. \\ 837 \hline 838 N & - & 1 & Pieces of the quadrupole to be cut when it is treated in the code. \\ 839 \hline 840 \end{tabular} 841 \end{table} 842 843 844 845 Example: \\ 846 847 \textsf{Nq=8/2; dgsurg=1.00; dgsurgL=1.00; quadfringe=1.0; LQC=0.3602;} 848 \latticedef{QP1a:}{quadrupole,}{ L=LQC/2, K= -1.073038*dgsurg, FF1=quadfringe, FF2=0, 849 FFscaling =1, method=intmeth, N=Nq;} 850 851 The parameters of âquadrupoleâ are optional, the default value for âmethodâ is 4, the default value for âFFscalingâ is 1, the default value for the other parameters are 0. 852 853 \subsection{SKEW QUADRUPOLE} 854 855 The skew quadrupole is a quadrupole with a 45 [degree] tilt angle. For example: 856 \latticedef{QT:}{quadrupole,}{tilt=45.0, K= 0.0, method=intmeth, N=1;} 857 858 \notespace{NOTES:} 859 If skew quadrupoles are defined in the lattice file with a name \tracypara{skewquad}, 860 User must specify the name of skew quadrupole in the tracy input file using 861 the commands: 862 \tracycommand{qt}{skewquad} 863 864 \subsection{SEXTUPOLE} 865 866 \latticedef{Element\_Name:}{sextupole,}{L = $\lbrack \dots \rbrack$, K = $\lbrack \dots \rbrack$, 867 FF1 = $\lbrack \dots \rbrack$, FF2=$\lbrack \dots \rbrack$,method = $\lbrack \dots \rbrack$, 868 N=$\lbrack \dots \rbrack$;} 869 870 871 \begin{table}[htpb] 872 \centering 873 \caption{Parameters of sextupoles in the lattice file.} 874 \label{tab:sext-para} 875 \begin{tabular}{| p{0.2\linewidth} | p{0.2\linewidth} | p{0.1\linewidth} | p{0.4\linewidth} |} 876 \hline 877 \textbf{Parameter Name} & \textbf{Units} &\textbf{Default} & \textbf{Description} \\ 878 \hline 879 \textbf{L} [m] & & 0.0 & Length\\ 880 \hline 881 \textbf{K} &L $\neq$ 0, [m$^{-3}$]. \newline L = 0, [m$^{-2}$]. & 0.0 & 882 If L $\neq$ 0, 883 $K = \frac{1}{2} \frac{1}{B \rho} \frac{\partial^{2} B_y }{\partial x ^{2}}|_{x=0,y=0}$, 884 $B \rho$ is the magnetic rigidity, $p_0$ is the design beam momentum, 885 $e$ is the electric charge. If L = 0, K is the integrated field 886 strength $L\frac{1}{2} \frac{1}{B \rho} \frac{\partial^{2} B_y }{\partial x ^{2}}|_{x=0,y=0}$ \\ 887 \hline 888 \textbf{FF1} & - & 0 & \textbf{1} or \textbf{0}. \textbf{1}: tringe on the fringe field at the 889 left edge. \textbf{0}: tringe off the fringe field at the 890 left edge.\\ 891 \hline 892 \textbf{FF2} & - & 0 & \textbf{1} or \textbf{0}. \textbf{1}: tringe on the fringe field at the 893 right edge. \textbf{0}: tringe off the fringe field at the 894 right edge.\\ 895 \hline 896 \textbf{Method} & - & 4 & \textbf{1},\textbf{2},\textbf{4}. Order of symplectic integration method. 897 \textbf{1}: 1st order; \textbf{2}: 2nd order; \textbf{4} 4th order. \\ 898 \hline 899 \textbf{N} & - & 1 & Pieces of this element to be cut, used in the symplectic 900 integration. \\ 901 902 \hline 903 \end{tabular} 904 \end{table} 905 906 907 908 \textit{Example:} \\ 909 \textsf{NqSx=1; coef=1.0/0.16; method4sextu = 4; sextfringe = 0;} 910 \latticedef{SX1:}{sextupole,}{ L=0.16, K = 1.719190*coef, method=method4sextu, N = NqSx, 911 FF1=sextfringe, FF2=sextfringe;} 912 913 The parameters of âsextupoleâ are optional, the default value for âmethodâ is 4, 914 the default value for the other parameters is 0. 915 916 917 \notespace{NOTES:} 918 919 In \textbf{AT} (Accelerator Toolbox) and \textbf{BETA} code, the european notation of 920 the order of magnetic field is used. That is n = 1, 2, 3, ...n; and the definition of 921 K are the same as in \textbf{Tracy}. 922 While In \textbf{MAD8}, \textbf{MADX} and \textbf{ELEGANT}, the U.S. notation of the 923 order order of the field is used, that is n = 0, 1, 2, 3, ..n. For sextupole, n = 2, 924 and its gradient is defined as 925 \begin{equation*} 926 K_2 = \frac{1}{B \rho} \frac{\partial^{2} B_y }{\partial x ^{2}}|_{x=0,y=0} 927 \end{equation*} 928 929 \subsection{MULTIPOLE} 930 931 \latticedef{Element\_Name:}{Multipole,}{L= $\lbrack \dots \rbrack$, T =$\lbrack \dots \rbrack$, 932 T1=$\lbrack \dots \rbrack$, T2=$\lbrack \dots \rbrack$, 933 tilt=$\lbrack \dots \rbrack$, HOM = (i, $\langle$ $b_i$ $\rangle$, $\langle$ $a_i$ $\rangle$, 934 j, $\langle$ $b_j$ $\rangle$, $\langle$ $a_j$ $\rangle$,âŠ.$n$, $\langle$ $b_n$ $\rangle$, $\langle$ 935 $a_n$ $\rangle$), $N$ =$\lbrack \dots \rbrack$$\langle$, method =$\lbrack \dots \rbrack$;} 936 937 \begin{table}[htpb] 938 \centering 939 \caption{Parameters of the multipoles.} 940 \label{tab:mult-para} 941 \begin{tabular}{| p{0.2\linewidth} | p{0.2\linewidth} | p{0.1\linewidth} | p{0.4\linewidth} |} 942 \hline 943 \textbf{Parameter Name} & \textbf{Units} &\textbf{Default} & \textbf{Description} \\ 944 \hline 945 \textbf{L} & [m] & 0.0 & Length \\ 946 \hline 947 \textbf{T} & [degree] & 0.0 & Total bending angle \\ 948 \hline 949 \textbf{T1} & [degree] & 0.0 & Entrance angle \\ 950 \hline 951 \textbf{T2} & [degree] & 0.0 & Exit Angle \\ 952 \hline 953 \textbf{Tilt} & [degree] & 0.0 & Rotation angle of the quadrupole; if \tracypara{Tilt} 954 is non-zero, then the quadrupole is a skew quadruple.???? \\ 955 \hline 956 \textbf{HOM} & - & (0, 0, 0) & Multipole field components of the element. The format 957 is \textit{n}, \textit{$b_{n}$}, \textit{$a_n$}, etc. \newline 958 \textit{n} is order of the multipole 959 field in U.S. notation (?????), n=1 (dipole field), 960 n=2 (quadrupole field), n=3 (sextupole field), 961 n=4 (octuple field), n=5 (decuple field). 962 \textit{$b_n$} is $n^{\mathrm{th}}$ component of the upright multipole 963 field with the unit [$\frac{1}{m^{-n}}$]; 964 \textit{$a_n$} is $n^{\mathrm{th}}$ component 965 of the skew multipole field with the 966 unit [$\frac{1}{m^-n}$]. \\ 967 \hline 968 \textbf{N} & - & 1 & Pieces of this element to be cut \\ 969 \hline 970 \textbf{Method} & - & 4 & 1,2,4. Symplectic integration method. 971 1 is $1^{\mathrm{st}}$ order, 2 is $2^{\mathrm{nd}}$ order, 4 is 972 $4\mathrm{th}$ order. \\ 973 \hline 974 \end{tabular} 975 \end{table} 976 977 The multipole field components $a_n$ and $b_n$ are defined as 978 \begin{eqnarray} 979 b_n & = & \frac{1}{B \rho} \frac{1}{(n-1)!} \frac{\partial^{n-1} B_y }{\partial x ^{n-1}}|_{x=0,y=0} \\ 980 a_n & = & \frac{1}{B \rho} \frac{1}{(n-1)!} \frac{\partial^{n-1} B_x }{\partial x ^{n-1}}|_{x=0,y=0} \\ 981 B \rho & = & \frac{p_0}{e} 982 \end{eqnarray} 983 $B \rho$ is the magnetic rigidity, $p_0$ is the design beam momentum, $e$ is the electric charge. 984 985 If the magnetic field $\vec{B^{tip}}$ is measured at the location with the radius $r_0$, then 986 $b_n$ and $a_n$ are defined as 987 \begin{eqnarray*} 988 b_n & = & \frac{1}{B \rho} \frac{B_y^{tip}}{r_0^{n-1}}\\ 989 a_n & = & \frac{1}{B \rho} \frac{B_x^{tip}}{r_0^{n-1}} \\ 990 \vec{B^{tip}} & = & B_y^{tip} \hat{y} + B_x^{tip} \hat{x} 991 \end{eqnarray*} 992 993 The $n^{th}$ order magnetic field is 994 \begin{equation} 995 B_y^n + i * B_x^n = (b_n + i*a_n) * (x + i*y)^n 996 \end{equation} 997 The total magnetic field with $1^{st}$ to $n^{th}$ order field components can be calculated using 998 \begin{eqnarray} 999 \label{eqn:total:field} 1000 B_y + i * B_x & = & (b_n + i*a_n) * (x+i*y)*(x + i*y)^{n-1} + O(n-1) \\ 1001 & = & [(b_n*x - a_n*y) + b_{n-1} + i*(a_n*x + b_n*y + a_{n-1})]*(x+i*y)^{n-1} + O(n-2) \\ 1002 & ...& 1003 \end{eqnarray} 1004 1005 The eqn.~\ref{eqn:total:field} is used in Tracy3 to calculate the effective fields of the 1006 magnet. This equation clearly shows that, all the field errors gives the same effect the 1007 beam: horizontal focusing and vertical decusing. But since the field strength of the 1008 $n^{th}$ order magnet is proportial to the $n^{th}$ order of $x/y$ and $x/y$ at the 1009 entrance of the magnet is small, so the higher $n$ is, the weak of the $n^{th}$ order 1010 multipole field is. 1011 1012 \vspace{0.05in} 1013 \textit{Example 1: } 1014 1015 \latticedef{B:}{multipole,}{L=0.70, T=10.0, T1=5.0, T2=5.0, HOM = (1, -1.0, 0), N=8, Method=2;} 1016 1017 In this example, the multipole is a dipole with field component $b_1$ = -1.0, or the 1018 field strength is $B_{y0}$, and the field direction is down. This field gives a horizontal 1019 focusing to the electron. 1020 1021 \vspace{0.05in} 1022 \textit{Example 2:} 1023 1024 \latticedef{QF:}{multipole,}{L=0.70, HOM = (1, 2.50, 0.0, 4, 1.01e7, 0.0), N=8, Method=4;} 1025 1026 In this example, the multipole is a dipole with $4^{th}$ order upright multipole filed errors (octupole), 1027 and $b_4$ = 1.01e7. 1028 1029 To add multipole errors in the defined lattice files, user can also define the multipoles 1030 inside an external file (Section~\ref{sec:mult:field:error}) (???? To be checked, can this 1031 routine mesured with the general one???). 1032 1033 \notespace{NOTES:} \\ 1034 In \textbf{AT} (Accelerator Toolbox) and \textbf{BETA} code, the definition of are the same 1035 as in \textbf{Tracy}. While In \textbf{MAD8}, \textbf{MADX} and \textbf{ELEGANT}, the order 1036 of the field compoent start from 0, that is n = 0, 1, 2, 3, ..., and the $n^{th}$ field 1037 strength components of the lattice element $b_n$ and $a_n$ are defined as 1038 \begin{eqnarray*} 1039 b_n & = & \frac{1}{B \rho} \frac{\partial^{n} B_y }{\partial x ^{n}}|_{x=0,y=0} \\ 1040 a_n & = & \frac{1}{B \rho} \frac{\partial^{n} B_x }{\partial x ^{n}}|_{x=0,y=0} \\ 1041 B \rho & = & \frac{p_0}{e} 1042 \end{eqnarray*} 1043 1044 \subsection{ wiggler (To be updated.)} 1045 1046 \latticedef{Element\_Name:}{Wiggler,}{L = $\langle$ length $\rangle$,BoBrhoV = $\langle$ B/Brho $\rangle$, 1047 BoBrhoH = $\langle$ B/Brho $\rangle$, Lambda = $\langle$ period $\rangle$,kxV= $\langle$ [m] $\rangle$,kxH = $\langle$ [m] $\rangle$,phi = $\langle$ phase $\rangle$, 1048 harm(n, kxV, BoBrhoV, kxH, BoBrhoH, phi), N = $\langle$ no of integration steps $\rangle$, 1049 Method = $\langle$ method $\rangle$;} 1050 1051 1052 \begin{table}[htbp] 1053 \centering 1054 \caption{The parameters of wigglers in a lattice file.} 1055 \label{tab:wiggler-para} 1056 \begin{tabular}{| p{0.2\linewidth} | p{0.2\linewidth} | p{0.1\linewidth} | p{0.4\linewidth} |} 1057 \hline 1058 \textbf{Parameter Name} & \textbf{Units} &\textbf{Default} & \textbf{Description} \\ 1059 \textbf{L} & [m] & 0.0 & Length \\ \hline 1060 \textbf{BoBrhoV} & ??? & ??? & the normalized vertical field \\ \hline 1061 \textbf{BoBrhoH} & ??? & ??? & the normalized horizontal field \\ \hline 1062 \textbf{Labmda} & [m] & ??? & period length \\ \hline 1063 \textbf{kxV} & [m] & ??? & ??? \\ \hline 1064 \textbf{kxH} & [m] & ??? & ??? \\ \hline 1065 \textbf{phi} & [degree] & ??? & ??? \\ \hline 1066 \textbf{harm} & ??? & ??? & ??? \\ \hline 1067 \textbf{N} & - & - & No of integration steps \\ \hline 1068 \textbf{Method} & - & - & Symplectic integration method. 1069 1 is 1st order, 2 is 2nd order, 4 is 4th order.\\ 1070 \hline 1071 \end{tabular} 1072 \end{table} 1073 1074 \vspace{0.05in} 1075 \textit{ Example 1:} 1076 \latticedef{U143:}{wiggler,}{L=4.80, K=0.5, Lambda=0.15, N=20, Method=0;} 1077 1078 \vspace{0.05in} 1079 \textit{Example 2:} 1080 \latticedef{EPU:}{wiggler,}{L=4.80, Lambda=0.15, N=20, Method=0, 1081 harm=(3, kxV\_3, BoBrhoV\_3, kxH\_3, BoBrhoH\_3, phi\_3);} 1082 1083 \subsection{FIELD MAP (To be updatedâŠâŠ..)} 1084 1085 \latticedef{Element\_Name:}{Fieldmap,}{L = $\langle$ length [m] $\rangle$, N = $\langle$ 1086 no of integration steps $\rangle$, file1 = $\langle$ file name (lower case) $\rangle$}; 1087 1088 \begin{table}[htbp] 1089 \centering 1090 \caption{Parameters of field map in the lattice file.} 1091 \label{tab:fieldmap-para} 1092 \begin{tabular}{| p{0.2\linewidth} | p{0.2\linewidth} | p{0.1\linewidth} | p{0.4\linewidth} |} 1093 \hline 1094 \textbf{Parameter Name} & \textbf{Units} &\textbf{Default} & \textbf{Description} \\ 1095 \hline 1096 \textbf{L} & [m] & 0.0 & Length \\ \hline 1097 \textbf{L} & [m] & 0.0 & Length of the field map \\ 1098 \hline 1099 \textbf{N} & - & ??? & the number of integration steps \\ 1100 \hline 1101 \textbf{file1} & - & ??? & field map file \\ 1102 \hline 1103 \end{tabular} 1104 \end{table} 1105 1106 \vspace{0.05in} 1107 \textit{Example:} 1108 \latticedef{FM:}{Fieldmap,}{L = 1.0, N = 20, file1 = "U19\_Bxyz.dat";} 1109 1110 1111 \subsection{INSERTION DEVICE} 1112 1113 \latticedef{Element\_Name:}{insertion,}{scaling1 = 1/0, scaling2=1/0,method = interpolation\_method, 1114 N=Number of slice, file1 = name of the file with 1st order radia map, 1115 file2 = name of the file with 2nd order radia map;} 1116 1117 \begin{table}[htbp] 1118 \centering 1119 \caption{Parameters of the insertion devices.} 1120 \label{tab:insertiondevice-para} 1121 \begin{tabular}{| p{0.2\linewidth} | p{0.2\linewidth} | p{0.1\linewidth} | p{0.4\linewidth} |} 1122 \hline 1123 \textbf{Parameter Name} & \textbf{Units} &\textbf{Default} & \textbf{Description} \\ 1124 \textbf{scaling1} & - & ??? & scaling factor for the 1st order field map \\ 1125 \hline 1126 \textbf{scaling2} & - & ??? & scaling factor for the 2rd order field map \\ 1127 \hline 1128 \textbf{method} & - & ??? & 1, 3. The order of symplectic interpolation method. 1 is linear 1129 interpolation, 3 is spline interpolation.\\ 1130 \hline 1131 \textbf{N} & - & ??? & pieces of this element is cut when it is treated in the code \\ 1132 \hline 1133 \textbf{file1} & - & ??? & The 1st order of insertion device field are read from the 1134 files generated by RADIA. If user does not specify the file name with the file path, 1135 then the code will look for the files in the current working directory. The path of 1136 the Radia map file must be in small letters, otherwise the code canât find the file. \\ 1137 \hline 1138 \textbf{file2} & - & ??? & 1139 The 2nd order of insertion device field are read from the files generated by RADIA. 1140 If user does not specify the file name with the file path, then the code will look 1141 for the files in the current working directory. The path of the Radia map file must 1142 be in small letters, otherwise the code canât find the file. \\ 1143 \hline 1144 \end{tabular} 1145 \end{table} 1146 1147 \vspace{0.05in} 1148 \textit{Example:} 1149 \latticedef{WIGSLIC:}{insertion,}{N = 10, scaling1=1.0, scaling2=1.0, method=2, file1="/home/sources/physmach/tracy2.7/w150g11pole60\_oppose\_radia\_pour\_tracy.txt", file2= "/home/sources/physmach/brunelle/tracy-2.7/w150g11pole20\_fin.dat";} 1150 1151 All the parameters for âinsertionâ is optional, the default value for scaling1 and scaling2 are 1, 1152 the default âmethodâ is 3 which means spline interpolation, the default âNâ is 1, the default 1153 values for all the other parameters are 0. 1154 1155 \subsection{RF CAVITY} 1156 1157 \latticedef{Element\_Name}{cavity,}{Frequency = RF frequency, Voltage = RF voltage, Phase = synchrotron 1158 Phase, harnum = harmonic number of the RF cavity;} 1159 1160 1161 \begin{table}[htbp] 1162 \centering 1163 \caption{Parameters of RF cacity.} 1164 \label{tab:RFCavity-para} 1165 \begin{tabular}{| p{0.2\linewidth} | p{0.2\linewidth} | p{0.1\linewidth} | p{0.4\linewidth} |} 1166 \hline 1167 \textbf{Parameter Name} & \textbf{Units} &\textbf{Default} & \textbf{Description} \\ 1168 \hline 1169 \textbf{frequency} & [Hz] & ??? & RF frequency \\ 1170 \hline 1171 \textbf{voltage} & [Volt] & ??? & RF voltage \\ 1172 \hline 1173 \textbf{phase} & [degree] & ??? & synchrotron phase \\ 1174 \hline 1175 \textbf{harnum} & - & ??? & harmonic number \\ 1176 \hline 1177 \end{tabular} 1178 \end{table} 1179 1180 1181 \vspace{0.05in} 1182 \textit{Example:} 1183 \latticedef{CAV:}{Cavity,}{Frequency = 499.95e6, Voltage=1.22e6, phase = 30, harnum=328;} 1184 1185 The harmonic number of the RF cavity is mandatory, and the other parameters of âcavityâ are 1186 optional, the default values are 0. 1187 1188 \subsection{CORRECTOR} 1189 1190 \latticedef{Element\_Name:}{corrector,}{horizontal/vertical, method = integrated method;} 1191 1192 \begin{table}[htbp] 1193 \centering 1194 \caption{Parameters of correctors.} 1195 \label{tab:corrector-para} 1196 \begin{tabular}{| p{0.2\linewidth} | p{0.2\linewidth} | p{0.1\linewidth} | p{0.4\linewidth} |} 1197 \hline 1198 \textbf{Horizontal / vertical} & - & ??? & âhorizontalâ: horizontal corrector; âverticalâ: vertical 1199 corrector \\ 1200 \hline 1201 \textbf{method} & - & ??? & 1, 2, 4. Order of symplectic integration method. 1202 Value â1â means 1st order, â2â means 2nd order, and â4â means 4th order \\ 1203 \hline 1204 \end{tabular} 1205 \end{table} 1206 1207 1208 \vspace{0.05in} 1209 \textit{Example 1:} 1210 \latticedef{CH:}{corrector,}{horizontal, method=intmeth;} 1211 It defines a horizontal corrector. 1212 1213 \vspace{0.05in} 1214 \textit{Example 2:} 1215 \latticedef{CV:}{corrector,}{vertical, method=intmeth;} 1216 It defines a vertical corrector. 1217 1218 The parameters of âcorrectorâ are optional, the default value for âmethodâ is 0. 1219 1220 \notespace{NOTES:} 1221 For a lattice with correctors, user must specify the name of corrector in the Tracy 1222 input file with the commands: 1223 \tracycommand{h\_corr}{HCM} 1224 or 1225 \tracycommand{v\_corr}{VCM} 1226 Here \tracypara{HCM} is the name of the corrector defined in the lattice for horizontal 1227 orbit correction (????); \tracypara{VCM} is the name of the corrector defined in the 1228 lattice for vertical orbit correction. 1229 1230 1231 \subsection{MARKER} 1232 1233 \latticedef{Element\_Name:}{marker;}{} 1234 1235 \subsection{BEAM POSITION MONITOR (To be updated)} 1236 BPM is a special marker in the lattice; the âsymbolâ name must be âBPMâ (???). User can 1237 define the BPM as:???? 1238 \latticedef{BPM:}{type;}{} 1239 1240 Normally Its type is defined as âMarkerâ type, but in order to include the misalignment 1241 error of BPM into the lattice, it must be defined as âBeam Position Monitorâ type 1242 which is in fact multipole type, since only the element with multipole type is saved 1243 with displacement error, field error, etc. 1244 1245 \notespace{NOTES:} 1246 For lattice with BPMs, user must specify the name of BPM in the Tracy input file 1247 with the command: 1248 \latticedef{bpm}{beaPosMonitor} 1249 Here âbeaPosMonitorâ is the name of the BPMs defined in the lattice. 1250 1251 \subsection{GIRDER} 1252 Girder is a special element, itâs the girder used in the real machine to support the magnetic elements and other elements. It is defined as: 1253 Symbol: type; 1254 1255 Normally Its type is defined as âMarkerâ type, but in order to include the misalignment error of girder into the lattice, it must be defined as âmultipoleâ type, since only the element with multipole type is saved with displacement error, field error, etc. 1256 For convenience, itâs better to define the beginning of the girder and also the end of the girder, and the elements between the beginning and end of the girders are the elements who are put on the girder in the real machine. 1257 1258 Notice: 1259 For lattice with girders, 1260 User must specify the name of girder in the input file â*.prmâ with the commands: 1261 gs Girder\_Start 1262 ge Girder\_End 1263 1264 Here âGirder\_Startâ is the name of the start of girder defined in the lattice; âGirder\_Endâ is the name of the end of girder defined in the lattice. 1265 1266 \subsection{SOLENOID...TO BE UPDATED...} 1267 1268 1269 \subsection{ELEMENT BLOCK} 1270 To construct the element block, use the following format: 1271 Symbol: elem1, elem2,âŠ., block1,block2; 1272 Here âSymbolâ is the name of the element block, and âelem1â, âelem2â, âblock1â, âblock2â are the element or sub element blocks in this element block. 1273 If there are N the same element/block subsequently, user can use âN*element/blockâ to simply the definition. For example: 1274 SINJ: SD1a, ssep, 3*SEP,esep,SD1c,eHU600,SD1d; 1275 In this example element block, there are 9 elements/blocks, and 3 elements/blocks âSEPâ subsequently. 1276 1277 \subsection{LINE} 1278 User can define the cell structure using the command: 1279 1280 CELL : $\langle$ block name $\rangle$, SYMMETRY=$\langle$ symmetry $\rangle$; 1281 1282 $\langle$ block name $\rangle$ is the name of a block; $\langle$ symmetry $\rangle$ is the number of super symmetry or the number of the block in the ring. 1283 1284 Example: 1285 1286 CELL: BL1, Symmetry=12; 1287 1288 This example defines the cell with block âBL1â, and the number of super symmetry is 12. The output of the Tracy3 with symmetry large than 1 will give the 1289 tunes and chromaticities in one symmetric period. 1290 1291 \subsection{RING} 1292 To define the ring, use the command: 1293 RING: elem, blockâŠ. 1294 Itâs similar to define an element block, but must with the fixed symbol name âRINGâ. For example: 1295 RING: DEBUT,SUP1,SUP2,SUP3,SUP4,CAV,FIN; 1296 5.1.23 End line 1297 To end the lattice file, user needs to use the following command at the end of the lattice file: 1298 End; 1299 This command is mandatory. 1300 1301 1302 \section{Commands} 438 1303 The following commands turn on the boolean flags in the code to set the machine parameters and carry on different calculations. All these commands are optional; user can choose whichever they need. If user wants to use the flag, they can write the flag in the script, if they do not want to use it, they can delete or comment out (add â\#â at the beginning of command line) the flag. The Boolean flags in the user input script have the following features: 439 1304 If the flags are not active, then the default values for all the boolean commands are false. … … 472 1337 473 1338 The parameters and the default values of âPrintTrackFlagâ are shown in Table . 1339 1340 \begin{table}[h] 1341 \centering 1342 \caption{} 1343 \label{} 1344 \begin{tabular*}{\linewidth}{@{\extracolsep{\fill}}|p{0.2\linewidth} |p{0.5\linewidth} | p{0.15\linewidth} |} 1345 \hline 1346 \hline 1347 \end{tabular*} 1348 \end{table} 1349 474 1350 Table Parameters of command "PrintTrackFlag". 475 1351 Name … … 512 1388 - 513 1389 1390 \subsection{PrintTrackElemFlag} 1391 To print the coordinates tracked (NOT around COD) at a certain element to a file, use the command: 1392 PrintTrackFlag track\_file x px y py delta ctau nelem1 nelem2 1393 1394 For example: 1395 PrintTrackFlag track.out 0.001 0.0 0.0 0.0 0.0 0.0 50 1 2 1396 1397 The parameters and the default values of âPrintTrackElemFlagâ are shown in Table . 1398 1399 \begin{table}[h] 1400 \centering 1401 \caption{} 1402 \label{} 1403 \begin{tabular*}{\linewidth}{@{\extracolsep{\fill}}|p{0.2\linewidth} |p{0.5\linewidth} | p{0.15\linewidth} |} 1404 \hline 1405 \hline 1406 \end{tabular*} 1407 \end{table} 1408 1409 Table Parameters of command "PrintTrackElemFlag". 1410 Name 1411 Description 1412 Default value 1413 Unit 1414 track\_file 1415 File to save the tracked coordinates around each lattice element 1416 track.out 1417 - 1418 x 1419 Start tracking horizontal coordinate 1420 0.001 1421 [m] 1422 px 1423 Start tracking horizontal canonical momentum px normalized by reference momentum p0, that is: px = px/p0. Normally px is approximate as horizontal deviation with unit [rad]. 1424 0.0 1425 1426 - 1427 y 1428 Start tracking vertical coordinate 1429 0.0 1430 [m] 1431 py 1432 Start tracking vertical canonical momentum py normalized by reference momentum p0, that is: py = py/p0. Normally px is approximate as vertical deviation with unit [rad]. 1433 0.0 1434 1435 - 1436 delta 1437 Start tracking relative energy offset 1438 0.0 1439 - 1440 ctau 1441 Start tracking longitudinal coordinate 1442 0.0 1443 [m] 1444 nelem1 1445 index of start lattice element for tracking 1446 1447 nelem2 1448 index of end lattice element for tracking 1449 514 1450 \subsection{PrintTwissFlag} 515 1451 … … 533 1469 \# 534 1470 Where â\#â denotes the command line, the meanings of the above parameters are shown in Table . 1471 1472 \begin{table}[h] 1473 \centering 1474 \caption{} 1475 \label{} 1476 \begin{tabular*}{\linewidth}{@{\extracolsep{\fill}}|p{0.2\linewidth} |p{0.5\linewidth} | p{0.15\linewidth} |} 1477 \hline 1478 \hline 1479 \end{tabular*} 1480 \end{table} 1481 535 1482 Table Parameters in the output file of close orbit. 536 1483 Name … … 665 1612 666 1613 The meanings of parameters and default values of command âAmplitudeTuneShiftFlagâ are shown in Table . If user uses the command AmplitudeTuneShiftFlag without parameters, then the code will use all the default values. 1614 1615 \begin{table}[h] 1616 \centering 1617 \caption{} 1618 \label{} 1619 \begin{tabular*}{\linewidth}{@{\extracolsep{\fill}}|p{0.2\linewidth} |p{0.5\linewidth} | p{0.15\linewidth} |} 1620 \hline 1621 \hline 1622 \end{tabular*} 1623 \end{table} 1624 667 1625 Table Parameters of the command to calculate tune shift with amplitude 668 1626 Parameters … … 704 1662 The meaning of parameters and default values of this command are shown in Table . 705 1663 If user uses command EnergyTuneShiftFlag without parameters, then the code will use all the default values. 1664 1665 \begin{table}[h] 1666 \centering 1667 \caption{} 1668 \label{} 1669 \begin{tabular*}{\linewidth}{@{\extracolsep{\fill}}|p{0.2\linewidth} |p{0.5\linewidth} | p{0.15\linewidth} |} 1670 \hline 1671 \hline 1672 \end{tabular*} 1673 \end{table} 1674 706 1675 Table Parameters of the command to calculate tune shift with energy 707 1676 parameter … … 722 1691 723 1692 \subsection{FmapFlag} 724 Frequency map analysis for on momentum particle 1693 Frequency map analysis for on momentum particle. 1694 Track the coordinates (x, px, y, py, delta, ctau) of the particle, 1695 the coordinates (x, px, y, py) are tracked around the closed orbit; 1696 while (delta, ctau) is tracked around the zero orbit. 1697 1698 The grid of the particle is x= 1e-6 + xcod ~ xmax + xcod, with the 1699 step size xmax/nturn, 1700 z= 1e-6 + zcod ~ zmax + zcod, with the 1701 step size ymax/nturn; px = 0 + pxcod; pz = 0 + pzcod; 1702 ctau = 0; delta = set value. 725 1703 726 1704 To do frequency map analysis for the on momentum particle, use the command: 727 FmapFlag fmap\_file nxpoint nypoint nturn xmax ymax delta diffusion 1705 FmapFlag fmap\_file nxpoint nypoint nturn xmax ymax delta diffusion \\ 1706 or 1707 FmapFlag fmap\_file nxpoint nypoint nturn xmax ymax delta diffusion printloss \\ 1708 728 1709 For example: 729 FmapFlag fmap.out 31 21 516 0.025 0.005 0.0 true 1710 FmapFlag fmap.out 31 21 516 0.025 0.005 0.0 true 1711 or 1712 FmapFlag fmap.out 31 21 516 0.025 0.005 0.0 true true 1713 1714 730 1715 The meaning of parameters and default values of this command are shown in Table . If user uses command FmapFlag without parameters, then the code will use all the default values. 1716 1717 \begin{table}[h] 1718 \centering 1719 \caption{} 1720 \label{} 1721 \begin{tabular*}{\linewidth}{@{\extracolsep{\fill}}|p{0.2\linewidth} |p{0.5\linewidth} | p{0.15\linewidth} |} 1722 \hline 1723 \hline 1724 \end{tabular*} 1725 \end{table} 1726 731 1727 Table Parameters of the command to do frequency map analysis for on momentum particle. 732 1728 Parameters … … 743 1739 21 744 1740 nturn 745 Number of turns for tracking 1741 Number of turns for tracking; if ``diffusion'' is 1742 true, then the tunes will calculated in the first Nturn 1743 and then the second Nturn, and the tune difference 1744 between these two tunes is the tune diffusion. 746 1745 516 747 1746 xmax … … 755 1754 0.0 756 1755 diffusion 757 Boolean flag to compute tune diffusion1756 Boolean flag, true/false; to compute tune diffusion at the first N turns and second N turns. 758 1757 true 759 1758 1759 printloss (optional) 1760 Boolean flag, true/flase; print out the last information of the tracked particleto and external file? If true, the output file is ``fmap\_file.loss''. 760 1761 \subsection{FmapdpFlag} 761 1762 Frequency map analysis for off momentum particle \\ … … 763 1764 To do frequency map analysis for the off momentum particle, use the command: 764 1765 FmapdpFlag fmapdp\_file nxpoint nepoint nturn xmax emax y diffusion 1766 or 1767 FmapdpFlag fmapdp\_file nxpoint nepoint nturn xmax emax y diffusion printloss 1768 765 1769 The meaning of parameters and default values are shown in Table . If user only uses the command FmapdpFlag but without defining all the parameters, then the code uses the default values. 1770 1771 \begin{table}[h] 1772 \centering 1773 \caption{} 1774 \label{} 1775 \begin{tabular*}{\linewidth}{@{\extracolsep{\fill}}|p{0.2\linewidth} |p{0.5\linewidth} | p{0.15\linewidth} |} 1776 \hline 1777 \hline 1778 \end{tabular*} 1779 \end{table} 1780 766 1781 Table Parameters of the command âFmapdpFlagâ. 767 1782 parameters … … 793 1808 true 794 1809 1810 printloss (optional) 1811 Boolean flag, true/flase; print out the last information of the tracked particleto and external file? If true, the output file is ``fmapdp\_file.loss''. 1812 1813 795 1814 \subsection{ErrorCouplingFlag} 796 1815 Add coupling by the random rotation of the full quadrupoles \\ … … 827 1846 -0.05 100 1026 0.0001 828 1847 The meaning of parameters and default values are shown in Table . If user uses MomentumAccFlag without parameters, then the code will use the default values. 1848 1849 \begin{table}[h] 1850 \centering 1851 \caption{} 1852 \label{} 1853 \begin{tabular*}{\linewidth}{@{\extracolsep{\fill}}|p{0.2\linewidth} |p{0.5\linewidth} | p{0.15\linewidth} |} 1854 \hline 1855 \hline 1856 \end{tabular*} 1857 \end{table} 1858 829 1859 Table Parameters of the command to calculate momentum acceptance 830 1860 parameter … … 921 1951 FitTune4Flag Q1a Q1b Q2a Q2b nux nuz 922 1952 The parameters of this command are shown in Table . 1953 1954 \begin{table}[h] 1955 \centering 1956 \caption{} 1957 \label{} 1958 \begin{tabular*}{\linewidth}{@{\extracolsep{\fill}}|p{0.2\linewidth} |p{0.5\linewidth} | p{0.15\linewidth} |} 1959 \hline 1960 \hline 1961 \end{tabular*} 1962 \end{table} 1963 923 1964 Table Parameters of the command âFitTune4Flagâ. 924 1965 Parameters … … 956 1997 FitChromFlag SX1 SX2 epsilon\_x epsilon\_z 957 1998 The parameters of this command are shown in Table . 1999 2000 \begin{table}[h] 2001 \centering 2002 \caption{} 2003 \label{} 2004 \begin{tabular*}{\linewidth}{@{\extracolsep{\fill}}|p{0.2\linewidth} |p{0.5\linewidth} | p{0.15\linewidth} |} 2005 \hline 2006 \hline 2007 \end{tabular*} 2008 \end{table} 2009 958 2010 Table Parameters of the command âFitChromFlagâ. 959 2011 Parameters … … 1063 2115 1064 2116 The meanings of the above commands and the default values used to do ID compensation using quadrupoles are shown in Table . 2117 2118 \begin{table}[h] 2119 \centering 2120 \caption{} 2121 \label{} 2122 \begin{tabular*}{\linewidth}{@{\extracolsep{\fill}}|p{0.2\linewidth} |p{0.5\linewidth} | p{0.15\linewidth} |} 2123 \hline 2124 \hline 2125 \end{tabular*} 2126 \end{table} 2127 1065 2128 Table Parameters of commands to do ID compensation using quadrupoles. 1066 2129 Parameters … … 1107 2170 1108 2171 2172 2173 2174 2175 2176 2177 2178 Frequency map analysis for on momentum particle, command ``FmapFlag''. 2179 \begin{itemize} 2180 \item 2181 Frequency map analysis for off momentum particle, command ``FmapdpFlag''. 2182 \item 2183 Track momentum acceptance at lattice elements, command ``MomentumAccFlag''. 2184 \end{itemize} 2185 2186 \subsection{Compile} 2187 The commonly used compilers for parallel computation are MPI 2, and Intel MPI which is based on MPI 2. For the cluster of SOLEIL Synchrotron, Intel MPI is installed. To get the parallel Tracy work, three files of the non-parallel version Tracy need to be modified. 2188 The details are shown in the following steps. 2189 \begin{enumerate} 2190 \item 2191 The path of included files of Intel MPI is added in ``Makefile.am'' under 2192 path ``\$HOME/TracyIII/tracy/tracy/src'' (shown in BLUE color): 2193 2194 INCLUDES = -I../inc -I\$(NUM\_REC)/inc 2195 -I/opt/intel/impi/3.2.2.006/include64 2196 \item 2197 The execute file, source file, paths of included files and library of Intel 2198 MPI are modified in ``Makefile.am'' under path ``\$HOME/TracyIII/tracy/tools'' 2199 (shown in BLUE color): 2200 2201 bin\_PROGRAMS = psoltracy 2202 2203 soltracy\_SOURCES = soltracy.cc nrutil.c nrcheck.c 2204 nrlinwww.c nrframe.c ../tracy/src/tracy\_lib.cc -> 2205 psoltracy\_SOURCES = psoltracy.cc nrutil.c nrcheck.c 2206 nrlinwww.c nrframe.c ../tracy/src/tracy\_lib.cc 2207 2208 LIBS = -L\$(NUM\_REC)/lib 2209 -L/opt/intel/impi/3.2.2.006/lib64 -L\$(LIBPATH) 2210 -lrecipes\_c\_icc -lstdc++ -lgfortran -lmpichcxx 2211 2212 INCLUDES = -I\$(TRACY\_LIB)/tracy/inc -I\$(NUM\_REC)/inc 2213 -I/opt/intel/impi/3.2.2.006/include64 2214 \item 2215 The compilers used in the parallel computing are defined in the ``make\_for\_psoltracy.sh'' located in path ``\$HOME/TracyIII'' as (shown in BLUE color): 2216 2217 CC = mpiicc 2218 2219 CXX = mpiicpc 2220 2221 F77 = mpiifort 2222 2223 Depending on the compilers used to do parallel computation, user needs to 2224 update the compilers in ``make\_for\_psoltracy.sh'' and the paths of included 2225 files and library which are shown above with blue color. 2226 2227 After updating compilers, paths of included files and library for parallel 2228 computation, user can run 2229 2230 make\_for\_psoltracy.sh 2231 2232 under the shell script to compile the parallel Tracy. After compilation, 2233 the execute file ``psoltracy'' is automatically generated under the 2234 path ``\$HOME/TracyIII/tracy/tools''. 2235 2236 2237 \end{enumerate} 2238 2239 \subsection{Run} 2240 As the non-parallel version Tracy, user needs to write the commands in a script which must be with the file extension â.prmâ. The syntaxes to define the script â*.prmâ are the same for both non-parallel and parallel Tracy. 2241 To run the parallel Tracy, user need to contact the administrator of their cluster to know how to run parallel programs on the cluster. For the cluster on Synchrotron SOLEIL, the nodes used to do parallel computation are assigned by PBS (Portable Batch System), so a script is need. For example, user define the input script âtest.prmâ to tell Tracy what jobs are need to be done on the cluster, define script âlance\_tracy3\_parallel.shâ to assign the numbers of CPUs to do parallel computation and lance job to the SOLEIL cluster. and then type the following command under the bash shell to submit the job and run the parallel Tracy on the cluster: 2242 2243 lance\_tracy3\_parallel.sh test.prm 2244 2245 \section{ User input script} 2246 There are two types of keywords in the user input script. The first type is to set the file, the file names, and define parameters for the related calculations; the key words for such definitions are ended with the characters âFlagâ. The second type is to define Boolean commands with or without parameters to do different calculations. The rules of the definition of input scripts are: 2247 The blank lines and lines starting with "\#" (comment line) are ignored by the code. 2248 Keywords without âFlagâ as the final 4 characters are NOT executed according to the defined sequence in user input script. If the same command keywords are defined many times in the user script, only the last defined keyword is executed. 2249 The commands with the last 4 characters as âFlagâ are executed according to the sequence in the code. 2250 The definition of lattice file at the beginning of the user script is mandatory. If the lattice file is with any of the following elements: horizontal correctors, vertical correctors, girders, BPM, skew quadrupoles, user must declare the element name at the beginning of input script. 2251 One keyword command uses one line. User can not define more than one command at the same line. 2252 Except explanation, all commands with Boolean flag are the generic commands, and can be used on all the lattice of the ring. 2253 \subsection{ File path} 2254 In the user input script, user can specify the name of the files which are used in the calculation, such as the lattice file, multipole field error file, misalignment error file, vacuum chamber file. When specifying the file name, user can provide the absolute path for the file which is not located at the current path, such as: â/home/physmach/Tracy3/tracy/soleil.latâ; or for convenience, user provides the filename without absolute path, but put the files at a certain directory and then specific this directory using the command: 2255 in\_dir user\_defined\_path 2256 For example: 2257 in\_dir /home/zhang/codes/TracyIII/lattice/ 2258 2259 This command tells the code all the files specified in the script are located at the directory â/home/zhang/codes/TracyIII/lattice/â. If user declares the files without absolute path and does not set the directory through command in\_dir; or the files specified in the script are not found at the current working path, the code will give an error message and stop running. 2260 2261 \section{ File names} 2262 2263 \subsection{Lattice file name} 2264 In the input script, user must define the lattice name, this is mandatory. The command is: 2265 lat\_file lattice\_file\_name 2266 Here âlattice\_file\_nameâ is the lattice file name without â.latâ extension. For example, the following command sets the lattice file of SOLEIL ring: 2267 lat\_file solamor2\_reglage\_focalisation\_chcvqt\_thicksextu\_LQPintermediaire\_QFF 2268 In Tracy 3, after reading the lattice, Twiss parameters are automatically printed to the file âlinlat.outâ. 2269 If one of these elements (Horizontal/vertical correctors or beam position monitors, or girders, or skew quadrupoles.) are defined in the lattice file, for example to read the misalignment errors of the lattice element and then do orbit correction, to read multipole field errors (SOLEIL lattice), etc.; user MUST specify the names of these elements using the corresponding commands in the â*.prmâ script: 2270 h\_corr HCM 2271 v\_corr VCM 2272 gs GS 2273 ge GE 2274 bpm\_name BPM 2275 qt QT 2276 Here âHCMâ is the name of horizontal correctors used for horizontal orbit correction, or the horizontal correctors on which the multipole field errors are added in SOLEIL lattice; âVCMâ is the name of vertical correctors used for vertical orbit correction, or the vertical correctors on which the multipole field errors are added in SOLEIL lattice; âGSâ is the name of the start girder; âGEâ is the name of the end girder; âBPMâ is the name of beam position monitors defined in the lattice file; âQTâ is the name of the skew quadrupoles defined in the lattice. Generally, user needs to define horizontal, vertical correctors and BPMs when reading the misalignment errors or correcting closed orbit distortion 2277 2278 \subsection{Multipole field error file name (SOLEIL lattice)} 2279 User can read the multipole field errors on SOLEIL lattice from an external file; the file is specified in the user script using the following command: 2280 multipole\_file multipole\_file\_name 2281 Here âmultipole\_file\_nameâ is the user defined multipole field error file, the format of this file is given in section Error: Reference source not found. 2282 2283 If the multipole field errors of horizontal, vertical correctors and skew quadrupoles are defined in the âmultipole\_fileâ, user MUST specify the names of these lattice elements in the â*.prmâ file as the following example: 2284 h\_corr CH 2285 v\_corr CV 2286 qt QT 2287 Here âCHâ, âCVâ and âQTâ are the names of horizontal, vertical correctors, and skew quadrupoles respectively which are defined in the lattice file. 2288 2289 \subsection{Files of multipole field errors of correctors and skew quadrupoles (SOLEIL lattice)} 2290 Horizontal, vertical correctors and skew quadrupoles are integrated with the sextupole quadrupoles on SOLEIL storage ring. To define the multipole field errors on these elements, user need to define the orders and relative strengths of multipole field errors in the multipole field error file (section Error: Reference source not found) and specify the file name in the user input script â*.prmâ (section Multipole field error file name), then specify the file names as the following example: 2291 fic\_hcorr corh.txt 2292 fic\_vcorr corv.txt 2293 fic\_skew corqt.txt 2294 Here âcorh.txtâ and âcorv.txtâ are the files with measured current values corh, corv, corqt (with unit [Ampere]) for the horizontal, vertical correctors and skew quadrupoles respectively. Based on the measured current values, user can get the integrated field strength as: 2295 Hcorr\_strength [T.m] = corh *\_convHcorr /brho; (horizontal correctors) 2296 Vcorr\_strength [T.m] = corv *\_convVcorr /brho; (vertical correctors) 2297 Qt\_strength [T.m] = corqt *\_convQt /brho; (skew quadrupoles) 2298 here brho is the momentum rigidity, and the conversion constants between current and field are \_convHcorr = 8.14e-4, \_convVcorr = 4.642e-4, \_convQt = 93.83e-4. 2299 For SOLEIL lattice, the SAME ORDER of multipole field errors on the same elements are added together, so the SAME ORDER of horizontal/vertical, skew quadrupoles, and sextupoles are added together since these elements are integrated at the same magnets. 2300 2301 \subsection{ File to define field strength of virtual coupling source elements (SOLEIL lattice)} 2302 On SOLEIL storage ring, the coupling is thought to come from the rotation of quadrupoles and vertical displacements of sextupoles. The strengths of these coupling sources are written in a file, then read by the following command: 2303 virtualskewquad\_file virtual\_skew\_quad\_currents.txt 2304 2305 Here âvirtual\_skew\_quad\_currents.txtâ is the user defined file with strength of vertical coupling source. 2306 In order to use this command to read the virtual sources of coupling, user needs to define the virtual coupling element as a skew quadrupole in the lattice file: 2307 SQ: quadrupole, tilt=45.0, K= 0.0, method=4, N=1; 2308 and this virtual coupling element MUST be with the name âSQâ. Now there 152 elements defined as the virtual coupling sources in the SOLEIL lattice. The syntaxs to define skew quadrupole are explained in section . 2309 The measured current value qtcorr[i] of the ith coupling source is converted to the corresponding integrated skew quadrupole field strength corr\_strength as 2310 corr\_strength [m-1] = qtcorr[i]*conv/brho; 2311 here brho is momentum rigidity, and the conversion constant conv is 93.88e-4 [A-1.T]. 2312 2313 \subsection{Cut off value} 2314 Set the cut off value of all random distribution (Gaussian distribution) to ânâ times of the RMS value sigma: 2315 normalcut n 2316 2317 \section{Physics: Hamiltionian} 2318 The dynamic motion of a conserved system can be described by a Hamiltonian. For an accelerator system without radiation 2319 damping (energy loss) and RF cavities (energy gain), the motion of a single electron in the magnetic field can be described using the 2320 following Hamitonian in the curvilinear coordinate system (Merz...) 2321 \begin{eqnarray} 2322 H (x,P_x; y, P_y; -t, \delta; s) &=& L + V \\ 2323 &=& -(1+h_{\mathrm{ref}}x)[\sqrt(P^2 - (P_x - eA_x)^2 - (P_y - eA_y)^2 ) + eA_z(x,P_x; y, P_y,s)] \\ 2324 P^2 & =& P_x^2 + P_y^2 + P_z^2 2325 \end{eqnarray} 2326 $h_{\mathrm{ref}}$ is the curvature of reference orbit inside the dipole. 2327 The $(x,P_x; y, P_y; -t, \delta)$ are the canonical cooridinates of the $H$, and $P_x, P_y, P-z$ are respectively the 2328 horizontal, vertical, and longitudinal mechanical momentums. A more convienent way is to expand the electron motion 2329 around the motion of a reference particle with total momentum $P_0$, so 2330 \begin{eqnarray} 2331 \frac{1}{P_0}H (x,P_x; y, P_y; -t, \delta; s) &=& \\ 2332 H (x,p_x; y, p_y; -t, \delta; s) &=& -(1+h_{\mathrm{ref}}x)\sqrt((1+\delta)^2 - (p_x - \frac{e}{P_0}A_x)^2 - (p_y - \frac{e}{P_0}A_y)^2 ) + \frac{e}{P_0}A_z(x,p_x; y, p_y,s) \\ 2333 &=& -(1+h_{\mathrm{ref}}x)\sqrt((1+\delta)^2 - (p_x - \frac{1}{B \rho}A_x)^2 - (p_y - \frac{1}{B \rho}A_y)^2 ) + \frac{1}{B \rho}A_z(x,p_x; y, p_y,s) 2334 \end{eqnarray} 2335 with 2336 \begin{eqnarray} 2337 p_x &=& \frac{P_x}{P_0} \\ 2338 p_y &=& \frac{P_y}{P_0} \\ 2339 p &=& \frac{P}{P_0} = \frac{\Delta P + P_0}{P_0} = (1+\delta) \\ 2340 \delta &=& \frac{\Delta P}{P_0} \\ 2341 B \rho &=& \frac{P_0}{e} (magnetic rigidity) 2342 \end{eqnarray} 2343 2344 With some operations (J. Bengtsson's linear transverse dynamics for sotrage ring with applications to the low energy antiproton ring (LEAR) at CERN; Tracy 2 manual.), 2345 the Hamitonian can be expressed with the canonical coordinates $(x,p_x; y, p_y; -ct, \delta; s)$ (Tracy-2 Manual, J. Bengtsson) 2346 2347 \begin{align*} 2348 %\label{Tracy:Exact:H} 2349 H (x,p_x; y, p_y; -ct, \delta; s) \\ 2350 &=-(1+h_{\mathrm{ref}}x)(\sqrt{(1+\delta)^2 - (p_x - \frac{A_x}{B \rho})^2 - (p_y - \frac{A_y}{B \rho})^2} + \frac{A_z}{B \rho}) + \delta \\ 2351 &= -(1+h_{\mathrm{ref}}x)(\sqrt{(1+\delta)^2 - (p_x - \frac{A_x}{B \rho})^2 - (p_y - \frac{A_y}{B \rho})^2 }) + h_{\mathrm{ref}} x \frac{A_z}{B \rho} \\ 2352 & + \frac{A_z}{B \rho} + \delta \\ 2353 &= \underbrace{-(1+h_{\mathrm{ref}}x)\sqrt{(1+\delta)^2 - (p_x - \frac{A_x}{B \rho})^2 - (p_y - \frac{A_y}{B \rho})^2 )}}_\text{kinetic energy} \\ 2354 & + \underbrace{\frac{x}{\rho} +\frac{x}{2\rho^2}}_\text{Gemometic components due to the curvilinear coordinate inside the dipole}\\ 2355 & +\underbrace{\frac{A_z}{B \rho}}_\text{magnet contribution} \\ 2356 & +\underbrace{\delta}_\text{due to the canonical coordinate $-ct$ instead of $-t$}\\ 2357 A_z & =A_z(x,p_x; y, p_y,s) 2358 \end{align*} 2359 2360 The equation is the exact Hamitonian used in Tracy. The $A_x$ are due to the longidutinal fringe field, this is an natural results due to the Maxwell Equation; $h_{\mathrm{ref}}$ is not zero only inside the dipoles. 2361 2362 For the system without fringe field of the magnet, or only consider the field inside the body of the magnet, $A_x = 0$ and $A_y = 0$, 2363 so the Hamiltonian is 2364 \begin{align} 2365 \label{eqn:exact:H:NoFF} 2366 H (x,p_x; y, p_y; -ct, \delta; s) \\ 2367 &= \underbrace{-(1+h_{\mathrm{ref}}x)\sqrt{(1+\delta)^2 - p_x^2 - p_y^2)}}_\text{kinetic energy} \\ 2368 & + \underbrace{\frac{x}{\rho} +\frac{x}{2\rho^2}}_\text{Gemometic components due to the curvilinear coordinate inside the dipole}\\ 2369 & +\underbrace{\frac{A_z}{B \rho}}_\text{magnet contribution} \\ 2370 & +\underbrace{\delta}_\text{due to the canonical coordinate $-ct$ instead of $-t$}\\ 2371 \end{align} 2372 2373 From eqn.~\ref{eqn:exact:H:NoFF}, it is easy to get the map of the particle inside different lattice elements. 2374 2375 2376 \subsection{Map of drift} 2377 \label{H:drift} 2378 2379 In the drift, $A_z = 0$, and $h_{\mathrm{ref}}$ = 0, from eqn.~\ref{eqn:exact:H:NoFF}, we can get the Hamiltonian 2380 inside a drift is 2381 \begin{align} 2382 \label{eqn:H:exact:drift} 2383 H (x,p_x; y, p_y; -ct, \delta; s) = -\sqrt{(1+\delta)^2 - p_x^2 - p_y^2)} + \delta 2384 \end{align} 2385 2386 In large ring, in order to increase the tracking speed, we can expand the sqare root in 2387 eqn.~\ref{eqn:H:exact:drift} to get the approximate Hamitonian. 2388 That is, 2389 \begin{align} 2390 \label{eqn:H:approxi:drift} 2391 H (x,p_x; y, p_y; -ct, \delta; s) &= -(1+\delta) \left[ 1 - \frac{p_x^2 + p_y^2}{2 (1+\delta)^2} \right] + \delta\\ 2392 &= \frac{p_x^2 + p_y^2}{2(1+\delta)} 2393 \end{align} 2394 2395 2396 From eqn.~\ref{eqn:H:exact:drift}, it is easy to get the map inside the drift for the 2397 \textbf{small ring}: 2398 \begin{align} 2399 x^{'} = \frac{dx}{ds} = \frac{\partial H}{\partial p_{x0}} = \frac{p_{x0}}{\sqrt{(1+\delta_0)^2 -(p_{x0}^2+p_{y0}^2)}} \\ 2400 y^{'} = \frac{dy}{ds} = \frac{\partial H}{\partial p_{y0}}= \frac{p_{y0}}{\sqrt{(1+\delta_0)^2 -(p_{x0}^2+p_{y0}^2)}} \\ 2401 (-ct)^{'} = \frac{d(-ct)}{ds} = \frac{\partial H}{\partial \delta_0} =-\frac{1+\delta_0}{\sqrt{(1+\delta_0)^2 -(p_{x0}^2+p_{y0}^2)}}+1 \\ 2402 or \\ 2403 (ct)^{'} = \frac{1+\delta_0}{\sqrt{(1+\delta_0)^2 -(p_{x0}^2+p_{y0}^2)}}-1 \\ 2404 p_x = p_{x0} \\ 2405 p_y = p_{y0} \\ 2406 \delta = \delta_0 2407 \end{align} 2408 2409 From eqn.~\ref{eqn:H:approxi:drift}, it is easy to get the map inside the drift for the 2410 \textbf{big ring}: 2411 \begin{align} 2412 x^{'} = \frac{dx}{ds} = \frac{\partial H}{\partial p_{x0}} = \frac{p_{x0}}{1+\delta_0} \\ 2413 y^{'} = \frac{dy}{ds} = \frac{\partial H}{\partial p_{y0}}= \frac{p_{y0}}{1+\delta_0} \\ 2414 (-ct)^{'} = \frac{d(-ct)}{ds} = \frac{\partial H}{\partial \delta_0} =-\frac{p_{x0^2}+p_{y0}^2}{2(1+\delta_0)} \\ 2415 or \\ 2416 (ct)^{'} = \frac{p_{x0^2}+p_{y0}^2}{2(1+\delta_0)} \\ 2417 p_x = p_{x0} \\ 2418 p_y = p_{y0} \\ 2419 \delta = \delta_0 2420 \end{align} 2421 2422 \subsection{Map of mutipoles} 2423 From eqn.~\ref{eqn:exact:H:NoFF}, we can get the Hamiltonian 2424 inside a multipole without fringe field is 2425 \begin{align} 2426 \label{eqn:H:exact} 2427 H (x,p_x; y, p_y; -ct, \delta; s) \\ 2428 =& \underbrace{-\sqrt{(1+\delta)^2 - p_x^2 - p_y^2}+\delta}_\text{H drift} \\ 2429 & \underbrace{-h_{\mathrm{ref}}x \sqrt{(1+\delta)^2 - p_x^2 - p_y^2}}_\text{H kick} \\ 2430 & + \underbrace{\frac{x}{\rho} +\frac{x}{2\rho^2}-\frac{A_z}{B \rho}}_\text{H kick} 2431 \end{align} 2432 2433 In eqn.~\ref{eqn:H:exact}, the Hamiltonian is decomposed into two part, one is the Hamiltonian 2434 of the drift which is due to the kinetic energy of the system (section~\ref{H:drift}), another part is the kick 2435 due to the multipoles which will give the kick to the particle. 2436 Now we only need to focus on the Hamiltonian of the multipoles which induces the kick map: 2437 \begin{align} 2438 \label{eqn:H:exact:multipole} 2439 H (x,p_x; y, p_y; -ct, \delta; s) \\ 2440 &=-h_{\mathrm{ref}}x \sqrt{(1+\delta)^2 - p_x^2 - p_y^2} \\ 2441 & +\frac{x}{\rho} +\frac{x}{2\rho^2}-\frac{A_z}{B \rho} 2442 \end{align} 2443 2444 Similarly, by expand the sqare root in eqn.~\ref{eqn:H:exact}, we can get the approximate Hamiltonian 2445 of the multipole as 2446 \begin{align} 2447 \label{eqn:H:approxi:multipole} 2448 H (x,p_x; y, p_y; -ct, \delta; s) \\ 2449 &=-h_{\mathrm{ref}}x \sqrt{(1+\delta)^2 - p_x^2 - p_y^2} \\ 2450 & +\frac{x}{\rho} +\frac{x}{2\rho^2}-\frac{A_z}{B \rho} \\ 2451 &=-h_{\mathrm{ref}} x \delta + \frac{1}{2}h_{\mathrm{ref}} h_{B} x^2 - \frac{A_z}{B \rho}+(h_B - h_{\mathrm{ref}})x 2452 \end{align} 2453 where $h_{\mathrm{ref}}$ is the curvature due to the curlininear coordinates inside the dipole, 2454 $h_{\mathrm{ref}} = 1/\rho_{ref}$; 2455 $h_{\mathrm{bend}}$ is due to the bending curvature of the dipole which is determined by the dipole 2456 field, $h_{\mathrm{bend}} = 1/ \rho_{bend}$. $h_{\mathrm{ref}} \neq 0$ only inside dipoles. 2457 2458 In the dipole, $A_z \neq 0$, and $h_{\mathrm{ref}} \neq $ 0, so 2459 from eqn.~\ref{eqn:H:exact:multipole}, we can get the kick map due to the dipole 2460 in the \textbf{small ring} which use the exact Hamiltonian: 2461 \begin{align} 2462 \label{eqn:kickmap:exact} 2463 x^{'} = \frac{dx}{ds} = \frac{\partial H}{\partial p_{x0}} = h_{\mathrm{ref}} x_0 \frac{p_{x0}}{\sqrt{(1+\delta_0)^2 -(p_{x0}^2+p_{y0}^2)}} \\ 2464 y^{'} = \frac{dy}{ds} = \frac{\partial H}{\partial p_{y0}}= h_{\mathrm{ref}} x_0 \frac{p_{y0}}{\sqrt{(1+\delta_0)^2 -(p_{x0}^2+p_{y0}^2)}} \\ 2465 p_x^{'} = -\frac{\partial H}{\partial y_0} = h_{\mathrm{ref}} \sqrt{(1+\delta_0)^2 - p_{x0}^2 - p_{y0}^2} - h_{\mathrm{bend}} - h_{\mathrm{ref}}h_{\mathrm{bend}}x - \frac{B_y}{B \rho}\\ 2466 p_y^{'} = -\frac{\partial H}{\partial y_0} = \frac{1}{B \rho} \frac{\partial A_z}{\partial y_0} = \frac{B_x}{B \rho}\\ 2467 (-ct)^{'} = \frac{d(-ct)}{ds} = \frac{\partial H}{\partial \delta_0} =-h_{\mathrm{ref}} x_0 \frac{1+\delta_0}{\sqrt{(1+\delta_0)^2 -(p_{x0}^2+p_{y0}^2)}} \\ 2468 or \\ 2469 (ct)^{'} = h_{\mathrm{ref}} x_0 \frac{1+\delta_0}{\sqrt{(1+\delta_0)^2 -(p_{x0}^2+p_{y0}^2)}} \\ 2470 \delta = \delta_0 \\ 2471 B \rho = \frac{p_0}{e} 2472 \end{align} 2473 where 2474 \begin{align} 2475 \frac{\partial A_z}{\partial x} = - B_y \\ 2476 \frac{\partial A_z}{\partial y} = B_x 2477 \end{align} 2478 since 2479 \begin{align} 2480 A_x = 0 \\ 2481 A_y =0 2482 \end{align} 2483 inside the body of the multipoles, and 2484 \begin{align*} 2485 \vec{B} = \Delta \times \vec{A} \\ 2486 \hat{x} & \hat{y} & \hat{z} \\ 2487 \frac{\partial}{x} & \frac{\partial}{y} & \frac{\partial}{z} \\ 2488 A_x & A_y & A_z \\ 2489 \end{align*} 2490 2491 2492 In the dipole, $A_z \neq 0$, and $h_{\mathrm{ref}} \neq $ 0, so 2493 from eqn.~\ref{eqn:H:approxi:multipole}, we can get the kick map due to the dipole 2494 in the \textbf{big ring} which use the exact Hamiltonian: 2495 \begin{align} 2496 \label{eqn:kickmap:approxi} 2497 x^{'} = \frac{dx}{ds} = \frac{\partial H}{\partial p_{x0}} = h_{\mathrm{ref}} x_0 \frac{p_{x0}}{1+\delta_0} \\ 2498 y^{'} = \frac{dy}{ds} = \frac{\partial H}{\partial p_{y0}}= h_{\mathrm{ref}} x_0 \frac{p_{y0}}{1+\delta_0} \\ 2499 p_x^{'} = -\frac{\partial H}{\partial y_0} = h_{\mathrm{ref}} \delta_0 - (h_{\mathrm{bend}} - h_{\mathrm{ref}}) - h_{\mathrm{ref}}h_{\mathrm{bend}}x - \frac{B_y}{B \rho}\\ 2500 p_y^{'} = -\frac{\partial H}{\partial y_0} = \frac{1}{B \rho} \frac{\partial A_z}{\partial y_0} = \frac{B_x}{B \rho}\\ 2501 (-ct)^{'} = \frac{d(-ct)}{ds} = \frac{\partial H}{\partial \delta_0} =\frac{-h_{\mathrm{ref}} x_0}{1+\delta_0} \frac{-(p_{x0}^2+p_{y0}^2)}{2(1+\delta_0)} \\ 2502 or \\ 2503 (ct)^{'} =-\frac{h_{\mathrm{ref}} x_0}{1+\delta_0} \frac{(p_{x0}^2+p_{y0}^2)}{2(1+\delta_0)} \\ 2504 \delta^{'} = 0 2505 \end{align} 2506 2507 For other multipoles (quadrupoles, sextupole, decapole, octupole, etc), the curvilinear coordinate is 2508 the cartesian coordinates, that is $h_{ref}$ = 0, so from eqn.~\ref{eqn:kickmap:exact}, the kick map for 2509 these multipoles in the small ring is: 2510 \begin{align} 2511 \label{eqn:kickmap:exact:multipole} 2512 x^{'} = \frac{dx}{ds} = \frac{\partial H}{\partial p_{x0}} = 0 \\ 2513 y^{'} = \frac{dy}{ds} = \frac{\partial H}{\partial p_{y0}}= 0 \\ 2514 p_x^{'} = -\frac{\partial H}{\partial y_0} = - (h_{\mathrm{bend}} + \frac{B_y}{B \rho})\\ 2515 p_y^{'} = -\frac{\partial H}{\partial y_0} = \frac{1}{B \rho} \frac{\partial A_z}{\partial y_0} = \frac{B_x}{B \rho}\\ 2516 (-ct)^{'} = \frac{d(-ct)}{ds} = \frac{\partial H}{\partial \delta_0} = 0\\ 2517 or \\ 2518 (ct)^{'} = 0 \\ 2519 \delta^{'} = 0 2520 \end{align} 2521 2522 With $h_{ref} = 0$, from eqn:~\ref{eqn:kickmap:approxi}, the kick map for these 2523 multipoles (quadrupoles, sextupole, decapole, octupole, etc) in the big ring is: 2524 \begin{align} 2525 \label{eqn:kickmap:approxi:multipole} 2526 x^{'} = \frac{dx}{ds} = \frac{\partial H}{\partial p_{x0}} = 0 \\ 2527 y^{'} = \frac{dy}{ds} = \frac{\partial H}{\partial p_{y0}}= 0 \\ 2528 p_x^{'} = -\frac{\partial H}{\partial y_0} = - (h_{\mathrm{bend}} + \frac{B_y}{B \rho})\\ 2529 p_y^{'} = -\frac{\partial H}{\partial y_0} = \frac{1}{B \rho} \frac{\partial A_z}{\partial y_0} = \frac{B_x}{B \rho}\\ 2530 (-ct)^{'} = \frac{d(-ct)}{ds} = \frac{\partial H}{\partial \delta_0} = 0\\ 2531 or \\ 2532 (ct)^{'} = 0 \\ 2533 \delta^{'} = 0 2534 \end{align} 2535 2536 From the eqn~\ref{eqn:kickmap:exact} to eqn.~\ref{eqn:kickmap:approxi:multipole}, it's clear 2537 that the kick map from the main body of dipoles are different in the small ring and big ring; 2538 while the kick map from the main body of other type of multipoles are the same in small 2539 rings and big rings. 2540 2541 2542 2543 2544 2545 2546 2547 2548 \section{Magnetic field} 2549 2550 A. Dragt ....(Lie methods for acceleator........) 2551 2552 \section{FF of dipole} 2553 \subsection{kick map} 2554 E. Forest ........... 2555 2556 \section{FF of quadrupole} 2557 \subsection{kick map} 2558 2559 1109 2560 \section{ Lattice file} 2561 In the lattice, RF cavity must be defined!!! Otherwise Tracy will give the error message: 2562 \textcolor{red}{Elem\_GetPos: there are no kids in family 0 ()}. This obigatory is for the 2563 correct calculation of positive/negtive momentum compaction factor. 2564 2565 2566 1110 2567 The followings are the rules to define a lattice file used in Tracy 3. The curvelinear coordinates are 1111 2568 used. \textbf{The ideal particle or design particle sees the perfect magnetic field in all magnets, and its} … … 1182 2639 CODeps= 1.0d-15; 1183 2640 These definitions are mandatory. 1184 1185 \subsection{drift}1186 To define a drift element, the format is:1187 Symbol: drift , L = length ;1188 âSymbolâ is the user defined element name, âdriftâ is a keyword to denote this element is a drift, and using keyword âLâ, user can define the drift length of the element with unit [m].1189 For example:1190 SD1a : drift, L= 0.900000;1191 The definition of the length of the drift element is mandatory.1192 1193 \subsection{bending}1194 The bending magnet in Tracy is a symplectic element.1195 The independent variable $s$ inside the dipole harmitonian is the arc length,1196 so the length of the dipole is defined the curved path length of the design1197 particle inside the dipole.1198 1199 To define a bending magnet, the format is:1200 1201 Element\_name: \textbf{bending}, \textbf{L} = length, \textbf{T} = total bending angle,1202 \textbf{T1} = entrance angle, \textbf{T2}=exit angle,1203 \textbf{gap} = full gap between two poles, \textbf{edge\_effect1} = 1/0,1204 \textbf{edge\_effect2} = 1/0, \textbf{K} = quadrupole component field strength,1205 \textbf{method} = integration\_method, \textbf{N} = Number of slice;1206 1207 Here ``Element\_name'' is the user defined element name; ``bending'' is a keyword to denote1208 this element is a dipole; all the other parameters are explained in Table~\ref{tab:dipole-para}.1209 1210 \begin{table}[h]1211 \centering1212 \caption{Parameters of dipole in the lattice file.}1213 \label{tab:dipole-para}1214 \begin{tabular*}{\linewidth}{@{\extracolsep{\fill}}|p{0.2\linewidth} |p{0.5\linewidth} | p{0.15\linewidth} |}1215 \hline1216 \textbf{Symbol} & \textbf{Units} & \textbf{Parameter} \\1217 \hline1218 \textbf{L} & length which is a curved path length of1219 the design particle inside the dipole.1220 L = $\rho * \theta$, where $\rho$ is the1221 bending radius of the dipole, and $\theta$1222 is the bending angle of the dipole. & m \\1223 \hline1224 \textbf{T} & total bending angle & degree \\1225 \hline1226 \textbf{T1} & Entrance angle & degree \\1227 \hline1228 \textbf{T2} & Exit Angle & degree \\1229 \hline1230 \textbf{K} & (For combined dipoles) quadrupole field1231 strength if magnet length L not equal to 0 or1232 integrated field strength if L=0. & m1 (L!=0) /unitless (L=0) \\1233 \hline1234 \textbf{Method} & 1,2,4.1235 Symplectic integration method. The1236 value ``1'' means $1^{\mathrm{st}}$ order,1237 ``2'' means $2^{\mathrm{nd}}$ order,1238 and ``4'' means $4^{\mathrm{th}}$ order. & - \\1239 \hline1240 \textbf{Gap} & Distance between two poles of the dipole,1241 the gap size determine the fringe field.1242 If the gap size is 0, then the dipole has1243 no fringe field (\textcolor{red}{??????}). & m \\1244 \hline1245 \textbf{edge\_effect1} & 1/0.1246 ``1'' to turn on the edge focusing effect1247 and the fringe field at the entrance of1248 the dipole. ``0'' to turn off the two effects. & - \\1249 \hline1250 \textbf{edge\_effect2} & 1/0.1251 ``1'' to turn on the edge focusing effect1252 and the fringe field at the exit of1253 the dipole.1254 ``0'' to turn off the two effects. & - \\1255 \hline1256 \textbf{N} & number of slices when the dipole is treated in the code & - \\1257 \hline1258 \end{tabular*}1259 \end{table}1260 1261 For example:1262 1263 {** bending **}1264 1265 beta\_gap=37e-3;1266 1267 tracy\_gap=beta\_gap*2*0.724;1268 1269 BEND1 : \textbf{bending}, \textbf{L} = 1.05243, \textbf{T} = 11.25, \textbf{T1} = 5.5906,1270 \textbf{T2} = 5.67658, \textbf{K} = 0.00204,gap=tracy\_gap,1271 \textbf{edge\_effect1} = 1, \textbf{edge\_effect2} = 1, \textbf{N} = 4,1272 \textbf{method} = intmeth;1273 1274 The parameters of ``bending'' are optional, the default values for the missing parameters are 0,1275 and the default value for ``method'' is also 0.1276 1277 1278 Attension:1279 1280 In the lattice of ELEGANT, BETA, the dipole angles are defined with the unit [rad]. But in TRACY, the unit is [degree].1281 1282 \subsection{quadrupole}1283 To define a quadrupole element, the format is:1284 Symbol: quadrupole, L = length, tilt = tilt angle, K = field strength, FF1 = 1[0],1285 FF2=1[0], FFscaling = scaling factor of the field, method =1286 integration\_method, N=Number of slice;1287 1288 Here âSymbolâ is the user defined element name; âquadrupoleâ is a keyword to denote this element is a quadrupole or parts of a quadrupole; all the other parameters are explained in Table .1289 Table Parameters of quadrupoles in the lattice file.1290 Symbol1291 Parameter1292 Units1293 L1294 Length of the quadrupole1295 [m]1296 Tilt1297 tilt angle of the quadrupole;1298 if âtiltâ is non-zero, then the quadrupole is a skew quadruple.1299 [degree]1300 K1301 If L ï¹ 0,1302 then Gradient, .1303 If L= 0,1304 integrated field strength of this quadrupole component.1305 [m-2] (If L ï¹ 0)1306 1307 1308 1309 [m-1] (If L = 0)1310 FF11311 1 or 0.1312 1 means taking into account the fringe field at the left edge.1313 0 means not taking into account the fringe field at the left edge(user should notice, in order to take into account the fringe field of the quadrupoles, user also need to use âQuadFringeOnFlagâ in the user input script)1314 1315 -1316 FF21317 1 or 0.1318 1 means taking into account the fringe field at the right edge.1319 0 means not taking into account the fringe field at the right edge(user should notice, in order to take into account the quadrupole fringe field, user need also to set âQuadFringeOnFlagâ in the user input script)1320 1321 -1322 Method1323 Order of symplectic integration method.1324 Value â1â means 1st order, â2â means 2nd order, and â4â means 4th order.1325 1,2,41326 N1327 Pieces of the quadrupole to be cut when it is treated in the code.1328 -1329 1330 Example:1331 {** Quadrupole **}1332 Nq=8/2; {Number of slices}1333 dgsurg=1.00;1334 dgsurgL=1.00;1335 quadfringe=1.0;1336 LQC=0.3602;1337 1338 QP1a: quadrupole, L=LQC/2, K= -1.073038*dgsurg, FF1=quadfringe, FF2=0,1339 FFscaling =1, method=intmeth, N=Nq;1340 The parameters of âquadrupoleâ are optional, the default value for âmethodâ is 4, the default value for âFFscalingâ is 1, the default value for the other parameters are 0.1341 5.1.9 Skew quadrupole1342 The skew quadrupole is a special type of quadrupole, with a non-zero tilt angle. For example:1343 QT: quadrupole, tilt=45.0, K= 0.0, method=intmeth, N=1;1344 Notice:1345 For lattice with skew quadrupoles,1346 User must specify the name of skew quadrupole in the input file â*.prmâ with the commands:1347 qt skewquad1348 Here âskewquadâ is the name of the skew quadrupoles defined in the lattice.1349 1350 \subsection{sextupole}1351 To define one sextupole, the format is:1352 1353 Symbol: sextupole, L = length, K = field strength, FF1 = 1/0, FF2=1/0,1354 method = integration\_method, N=Number of slice;1355 Here âsymbolâ is the user defined element name; âsextupoleâ is a keyword to denote this element is a sextupole; all other parameters are explained in Table .1356 Table Parameters of sextupoles in the lattice file.1357 Symbol1358 Parameter1359 Units1360 L1361 Length of the element1362 [m]1363 K1364 If L ï¹ 0,1365 Gradient, .1366 1367 If L= 0,1368 integrated field strength with unit [m-2] of this quadrupole component.1369 [m-3] (If L ï¹ 0)1370 1371 1372 1373 [m-2] (If L = 0)1374 FF11375 1 or 0.1376 1 means taking into account the fringe field at the left edge.1377 0 means not taking into account the fringe field at the left edge1378 1379 FF21380 1 or 0.1381 1 means taking into account the fringe field at the right edge.1382 0 means not taking into account the fringe field at the right edge1383 1384 Method1385 Order of symplectic integration method.1386 Value â1â means 1st order, â2â means 2nd order, and â4â means 4th order.1387 1,2,41388 N1389 pieces of this element to be cut1390 1391 1392 For example:1393 NqSx=1; {Number of slices}1394 coef=1.0/0.16;1395 method4sextu = 4;1396 sextfringe = 0;1397 1398 SX1 : sextupole, L=0.16, K = 1.719190*coef, method=method4sextu, N = NqSx,1399 FF1=sextfringe, FF2=sextfringe;1400 The parameters of âsextupoleâ are optional, the default value for âmethodâ is 4, the default value for the other parameters is 0.1401 1402 \subsection{ multipole}1403 To define a multipole, the format is:1404 Symbol: Multipole, L= $\langle$ length $\rangle$, T =$\langle$ bending angle $\rangle$,1405 T1=$\langle$ entrance angle $\rangle$, T2=$\langle$ exit angle $\rangle$,1406 tilt=$\langle$ roll angle $\rangle$, HOM = (i, $\langle$ $b_i$ $\rangle$, $\langle$ $a_i$ $\rangle$,1407 j, $\langle$ $b_j$ $\rangle$, $\langle$ $a_j$ $\rangle$,âŠ.$n$, $\langle$ $b_n$ $\rangle$, $\langle$1408 $a_n$ $\rangle$), $N$ =$\langle$ number of slices $\rangle$, method = $\langle$ method $\rangle$;1409 Here ``symbol'' is the user defined element name; ``multipole'' is a keyword to denote1410 this element is a multipole; all other parameters are explained in Table~\ref{tab:mult-para}.1411 1412 \begin{table}[h]1413 \centering1414 \caption{Parameters of the multipoles.}1415 \label{tab:mult-para}1416 \begin{tabular*}{\linewidth}{@{\extracolsep{\fill}}|p{0.1\linewidth} |p{0.45\linewidth} | p{0.15\linewidth} | c |}1417 \hline1418 \textbf{Symbol} & \textbf{Units} & \textbf{Parameter} & \textbf{Default} \\1419 \hline1420 \textbf{L} & Length of the multipole & m & 0.0 \\1421 \hline1422 \textbf{T} & Total bending angle & degree & 0.0 \\1423 \hline1424 \textbf{T1} & Entrance angle & degree & 0.0 \\1425 \hline1426 \textbf{T2} & Exit Angle & degree & 0.0 \\1427 \hline1428 \textbf{Tilt} & Tilt angle of the1429 quadrupole; if ``tilt''1430 is non-zero, then the1431 quadrupole is a skew1432 quadruple. & degree & 0.0 \\1433 \hline1434 \textbf{HOM} & Multipole field components1435 of the element. The format1436 is \textit{n}, \textit{$b_{n}$},1437 \textit{$a_n$}, etc.1438 1439 \textit{n} is order of1440 the multipole1441 field in US. notation, n=1 means dipole errors,1442 n=2 is quadrupole errors, n=3 is sextupole field errors,1443 n=4 is octuple field errors, n=5 is decuple field errors, etc. \\1444 \textit{$b_n$} is $n^{\mathrm{th}}$1445 component of the upright multipole1446 field with the unit [$\frac{1}{m^{n}}$];1447 \textit{$a_n$} is $n^{\mathrm{th}}$ component1448 of the skew multipole field with the1449 unit [$\frac{1}{m^n}$]. & - & (0, 0.0, 0.0) \\1450 \hline1451 \textbf{N} & Pieces of this element to be cut & - & 0 \\1452 \hline1453 \textbf{Method} & 1,2,4.1454 Symplectic integration method.1455 1 is $1^{\mathrm{st}}$ order, 2 is1456 $2^{\mathrm{nd}}$ order, 4 is1457 $4\mathrm{th}$ order. & - & 0\\1458 1459 \hline1460 \end{tabular*}1461 \end{table}1462 1463 The multipole field components $a_n$ and $b_n$ are defined as1464 \begin{eqnarray}1465 b_n & = & \frac{1}{B \rho} \frac{1}{(n-1)!} \frac{\partial^{n-1} B_y }{\partial x ^{n-1}}|_{x=0,y=0} \\1466 a_n & = & \frac{1}{B \rho} \frac{1}{(n-1)!} \frac{\partial^{n-1} B_x }{\partial x ^{n-1}}|_{x=0,y=0} \\1467 B \rho & = & \frac{p_0}{e}1468 \end{eqnarray}1469 $B \rho$ is the magnetic rigidity, $p_0$ is the design beam momentum, $e$ is the electric charge.1470 1471 If the magnetic field $\vec{B^{tip}}$ is measured at the location with the radius $r_0$, then1472 $b_n$ and $a_n$ are defined as1473 \begin{eqnarray*}1474 b_n & = & \frac{1}{B \rho} \frac{B_y^{tip}}{r_0^{n-1}}\\1475 a_n & = & \frac{1}{B \rho} \frac{B_x^{tip}}{r_0^{n-1}} \\1476 \vec{B^{tip}} & = & B_y^{tip} \hat{y} + B_x^{tip} \hat{x}1477 \end{eqnarray*}1478 1479 The $n^{th}$ order magnetic field is1480 \begin{equation}1481 B_y^n + i * B_x^n = (b_n + i*a_n) * (x + i*y)^n1482 \end{equation}1483 The total magnetic field with $1^{st}$ to $n^{th}$ order field components can be calculated using1484 \begin{eqnarray}1485 \label{eqn:total:field}1486 B_y + i * B_x & = & (b_n + i*a_n) * (x+i*y)*(x + i*y)^{n-1} + O(n-1) \\1487 & = & [(b_n*x - a_n) + b_{n-1} + i*(a_n*x + b_n*y + a_{n-1})]*(x+i*y)^{n-1} + O(n-2) \\1488 & ...&1489 \end{eqnarray}1490 The eqn.~\ref{eqn:total:field} is used in Tracy3 to calculate the effective fields of the1491 magnet. This equation clearly shows that, all the field errors gives the same effect the1492 beam: horizontal focusing and vertical decusing.1493 But since the field strength of the1494 $n^{th}$ order magnet is proportial to the $n^{th}$ order of $x/y$ and $x/y$ at the1495 entrance of the magnet is small, so the higher $n$ is, the weak of the $n^{th}$ order multipole1496 field is.1497 1498 1499 Example 1:1500 1501 B: multipole, L=0.70, T=10.0, T1=5.0, T2=5.0, HOM = (1, -1.0, 0), N=8, Method=2;1502 1503 In this example, the multipole is a dipole with field component $b_1$ = -1.0, or the1504 field strength is $B_{y0}$, and the field direction is down. This field gives a horizontal1505 focusing to the electron.1506 1507 Example 2:1508 1509 QF: multipole, L=0.70, HOM = (1, 2.50, 0.0, 4, 1.01e7, 0.0), N=8, Method=4;1510 1511 In this example, the multipole is a dipole with $4^{th}$ order upright multipole filed errors (octupole),1512 and $b_4$ = 1.01e7.1513 1514 To add multipole errors in the defined lattice files, user can also define the multipoles1515 inside a separate file (Section~\ref{sec:mult:field:error}) (???? To be checked, can this routine mesured with1516 the general one???).1517 \subsection{ wiggler (To be updated.)}1518 To define a wiggler, the format is: (To be updatedâŠâŠ..)1519 symbol: Wiggler, L = $\langle$ length $\rangle$,BoBrhoV = $\langle$ B/Brho $\rangle$,BoBrhoH = $\langle$ B/Brho $\rangle$,1520 Lambda = $\langle$ period $\rangle$,kxV = $\langle$ [m] $\rangle$,kxH = $\langle$ [m] $\rangle$,phi = $\langle$ phase $\rangle$,1521 harm(n, kxV, BoBrhoV, kxH, BoBrhoH, phi), N = $\langle$ no of integration steps $\rangle$,1522 Method = $\langle$ method $\rangle$;1523 1524 Here âsymbolâ is the user defined element name; âwigglerâ is a keyword to denote this element is a wiggler; all other parameters are explained in Table .1525 Table The parameters of wigglers in a lattice file.1526 Symbol1527 Parameter1528 Units1529 L1530 Length of the wiggler1531 [m]1532 BoBrhoV1533 the normalized vertical field1534 [m-1]1535 BoBrhoH1536 the normalized horizontal field1537 [m-1]1538 Labmda1539 period length1540 [m]1541 kxV1542 1543 [m]1544 kxH1545 1546 [m]1547 phi1548 1549 [degree]1550 harm1551 1552 1553 N1554 No of integration steps1555 1556 Method1557 Symplectic integration method.1558 1 is 1st order, 2 is 2nd order, 4 is 4th order.1559 1560 1561 Example 1:1562 U143: wiggler, L=4.80, K=0.5, Lambda=0.15, N=20, Method=0;1563 1564 Example 2:1565 EPU: wiggler, L=4.80, Lambda=0.15, N=20, Method=0,1566 harm=(3, kxV\_3, BoBrhoV\_3, kxH\_3, BoBrhoH\_3, phi\_3);1567 \subsection{field map (To be updatedâŠâŠ..)}1568 To read field map from a file, use the format:1569 $\langle$ symbol $\rangle$ : Fieldmap, L = $\langle$ length [m] $\rangle$, N = $\langle$ no of integration steps $\rangle$,1570 file1 = $\langle$ file name (lower case) $\rangle$;1571 Here âsymbolâ is the user defined element name; âFieldmapâ is a keyword to denote this element is a Fieldmap; all other parameters are explained in Table .1572 Table Parameters of field map in the lattice file.1573 Symbol1574 Parameter1575 Units1576 L1577 Length of the field map1578 [m]1579 file11580 field map file1581 1582 N1583 No of integration steps1584 1585 1586 1587 âLâ is the length of the element, âNâ is the number of integration steps in the code, âfile1â is the field map file.1588 1589 Example:1590 FM: Fieldmap, L = 1.0, N = 20, file1 = "U19\_Bxyz.dat";1591 1592 \subsection{Insertion device}1593 To define the insertion device, the format is:1594 Symbol : insertion , scaling1 = 1/0, scaling2=1/0,method = interpolation\_method,1595 N=Number of slice, file1 = name of the file with 1st order radia map,1596 file2 = name of the file with 2nd order radia map;1597 Here âsymbolâ is the user defined element name; âinsertionâ is a keyword to denote this element is an insertion device; all other parameters are explained in Table .1598 Table parameters of the insertion devices in the lattice file.1599 Symbol1600 Parameter1601 Units1602 scaling11603 scaling factor for the 1st order field map1604 1605 scaling21606 scaling factor for the 2nd order map1607 1608 method1609 the order of symplectic interpolation method in the code, the value of 1 is linear interpolation, 3 is spline interpolation.1610 1611 N1612 pieces of this element is cut when it is treated in the code1613 1614 file11615 The 1st order of insertion device field are read from the files generated by RADIA.1616 If user does not specify the file name with the file path, then the code will look for the files in the current working directory. The path of the Radia map file must be in small letters, otherwise the code canât find the file.1617 1618 file11619 The 2nd order of insertion device field are read from the files generated by RADIA.1620 If user does not specify the file name with the file path, then the code will look for the files in the current working directory. The path of the Radia map file must be in small letters, otherwise the code canât find the file.1621 1622 1623 Example:1624 WIGSLIC: insertion, N = 10, scaling1=1.0, scaling2=1.0, method=2, file1="/home/sources/physmach/tracy2.7/w150g11pole60\_oppose\_radia\_pour\_tracy.txt", file2= "/home/sources/physmach/brunelle/tracy-2.7/w150g11pole20\_fin.dat";1625 1626 All the parameters for âinsertionâ is optional, the default value for scaling1 and scaling2 are 1, the default âmethodâ is 3 which means spline interpolation, the default âNâ is 1, the default values for all the other parameters are 0.1627 1628 \subsection{RF cavity}1629 To define the RF cavity, use the command:1630 Symbol: cavity, Frequency = RF frequency, Voltage = RF voltage, Phase = synchrotron1631 Phase, harnum = harmonic number of the RF cavity;1632 Here âsymbolâ is the element name, âcavityâ means that this element is a RF cavity; all the other parameters are explained in Table .1633 Table Parameters of RF cacity in the lattice file.1634 Symbol1635 Parameter1636 Units1637 frequency1638 RF frequency1639 [Hz]1640 voltage1641 RF voltage1642 [Volt]1643 phase1644 synchrotron phase1645 [degree]1646 harnum1647 harmonic number1648 -1649 1650 1651 Example:1652 CAV: Cavity, Frequency = 499.95e6, Voltage=1.22e6, phase = 30, harnum=328;1653 1654 The harmonic number of the RF cavity is mandatory, and the other parameters of âcavityâ are optional, the default values are 0.1655 1656 \subsection{corrector}1657 To define the corrector, use the command:1658 Symbol: corrector, horizontal/vertical, method = integrated method;1659 Here âsymbolâ is the element name, âcorrectorâ means that this element is a corrector; all the other parameters are explained in1660 Table parameters of correctors in the lattice file.1661 Symbol1662 Parameter1663 Units1664 Horizontal / vertical1665 âhorizontalâ means the element is a horizontal corrector; âverticalâ means the element is a vertical corrector1666 -1667 method1668 Order of symplectic integration method.1669 Value â1â means 1st order, â2â means 2nd order, and â4â means 4th order1670 1,2,41671 1672 Example:1673 {** Horizontal correctors **}1674 CH : corrector, horizontal, method=intmeth;1675 {** Vertical correctors **}1676 CV : corrector, vertical, method=intmeth;1677 1678 The parameters of âcorrectorâ are optional, the default value for âmethodâ is 0.1679 1680 Notice:1681 The âsymbolâ of correctors are special!!!!1682 For a lattice with correctors,1683 User must specify the name of corrector in the input file â*.prmâ with the commands:1684 h\_corr HCM1685 or1686 v\_corr VCM1687 Here âHCMâ is the name of the corrector defined in the lattice for horizontal orbit correction; âVCMâ is the name of the corrector defined in the lattice for vertical orbit correction.1688 1689 1690 \subsection{Marker}1691 To define a marker, use the command:1692 Symbol: marker;1693 Here âsymbolâ is the name of the element, âmarkerâ means the element is a marker in the lattice, it does not have length or field strength, etc.1694 1695 \subsection{BPM (To be updated)}1696 BPM is a special marker in the lattice; the âsymbolâ name must be âBPMâ (???). User can1697 define the BPM as:1698 BPM : type;1699 1700 Normally Its type is defined as âMarkerâ type, but in order to include the misalignment error of BPM into the lattice, it must be defined as âBeam Position Monitorâ type which is in fact multipole type, since only the element with multipole type is saved with displacement error, field error, etc.1701 1702 Notice:1703 For lattice with BPMs,1704 User must specify the name of BPM in the input file â*.prmâ with the commands:1705 bpm beaPosMonitor1706 Here âbeaPosMonitorâ is the name of the BPMs defined in the lattice.1707 1708 \subsection{Girder}1709 Girder is a special element, itâs the girder used in the real machine to support the magnetic elements and other elements. It is defined as:1710 Symbol: type;1711 1712 Normally Its type is defined as âMarkerâ type, but in order to include the misalignment error of girder into the lattice, it must be defined as âmultipoleâ type, since only the element with multipole type is saved with displacement error, field error, etc.1713 For convenience, itâs better to define the beginning of the girder and also the end of the girder, and the elements between the beginning and end of the girders are the elements who are put on the girder in the real machine.1714 1715 Notice:1716 For lattice with girders,1717 User must specify the name of girder in the input file â*.prmâ with the commands:1718 gs Girder\_Start1719 ge Girder\_End1720 1721 Here âGirder\_Startâ is the name of the start of girder defined in the lattice; âGirder\_Endâ is the name of the end of girder defined in the lattice.1722 1723 \subsection{Element block}1724 To construct the element block, use the following format:1725 Symbol: elem1, elem2,âŠ., block1,block2;1726 Here âSymbolâ is the name of the element block, and âelem1â, âelem2â, âblock1â, âblock2â are the element or sub element blocks in this element block.1727 If there are N the same element/block subsequently, user can use âN*element/blockâ to simply the definition. For example:1728 SINJ: SD1a, ssep, 3*SEP,esep,SD1c,eHU600,SD1d;1729 In this example element block, there are 9 elements/blocks, and 3 elements/blocks âSEPâ subsequently.1730 1731 \subsection{Cell}1732 User can define the cell structure using the command:1733 1734 CELL : $\langle$ block name $\rangle$, SYMMETRY=$\langle$ symmetry $\rangle$;1735 1736 $\langle$ block name $\rangle$ is the name of a block; $\langle$ symmetry $\rangle$ is the number of super symmetry or the number of the block in the ring.1737 1738 Example:1739 1740 CELL: BL1, Symmetry=12;1741 1742 This example defines the cell with block âBL1â, and the number of super symmetry is 12. The output of the Tracy3 with symmetry large than 1 will give the1743 tunes and chromaticities in one symmetric period.1744 1745 \subsection{Ring}1746 To define the ring, use the command:1747 RING: elem, blockâŠ.1748 Itâs similar to define an element block, but must with the fixed symbol name âRINGâ. For example:1749 RING: DEBUT,SUP1,SUP2,SUP3,SUP4,CAV,FIN;1750 5.1.23 End line1751 To end the lattice file, user needs to use the following command at the end of the lattice file:1752 End;1753 This command is mandatory.1754 2641 1755 2642 \section{Multipole field error file} … … 1779 2666 Bn defines the upright component of the magnetic field, then for the component of a skew quadrupole or a vertical corrector, Bn = 0 1780 2667 An defines the skew component of the magnetic field, then for the component of a dipole or upright quadrupole, An = 0. 1781 The line start with â\#â is comment line.1782 The blank line in the multipole definition file isneglected by the code.2668 The line start with â\#â is a comment line. 2669 The blank lines in the multipole definition file are neglected by the code. 1783 2670 1784 2671 There are two ways to define the multipole field errors strength, one is to define the measured field errors at the pole tip location $r_0$, 1785 then $b_n$ and $a_n$ are respectively the scale coefficient of the main magnetic field coeffeicient , for example, to define the decupole field2672 then $b_n$ and $a_n$ are respectively the scale coefficient of the main magnetic field coeffeicient. For example, to define the decupole field 1786 2673 errors inside a horizontal bending dipole with coefficient $b_1$, we define the normal scale coefficience as $c_5$ and skew scale coefficience 1787 2674 as $d_5$, then the $b_5$ component of this decupole is $c_5$ * $b_1$ and the skew coefficience $a_5$ is $d_5$ * $b_1$; that is … … 1789 2676 b_5 &=& \frac{1}{B \rho} \frac{c_5 * B_0}{r_0^5} \\ 1790 2677 a_5 &=& \frac{1}{B \rho} \frac{d_5 * B_0}{r_0^5} \\ 1791 b_1 &=& \frac{1}{B \rho} B_01792 2678 \end{eqnarray*} 1793 This method is the simplest way to define the multipole errors inside a lattice element. 2679 where 2680 \begin{equation} 2681 b_1 = \frac{1}{B \rho} B_0. 2682 \end{equation} 2683 This method is the simplest way to define the multipole errors inside a lattice element. The default scaling factors $c_n$ and $d_n$ are 1. 1794 2684 1795 2685 Another way is to direct define the multipole field coefficiences $b_n$ and $a_n$, that is, set $r_0 = 0$. … … 1915 2805 \# name x(m) y(m) r (rad) 1916 2806 \#----------------------------------------------------------------------- 2807 \begin{table}[h] 2808 \centering 2809 \caption{} 2810 \label{} 2811 \begin{tabular*}{\linewidth}{@{\extracolsep{\fill}}|p{0.2\linewidth} |p{0.5\linewidth} | p{0.15\linewidth} |} 2812 \hline 2813 \hline 2814 \end{tabular*} 2815 \end{table} 2816 1917 2817 girder sys 100.0e-6 100.0e-6 0.5e-03 1918 2818 quad sys 30.0e-6 30.0e-6 80.0e-06 … … 1932 2832 \# name x(m) y(m) r (rad) 1933 2833 \#----------------------------------------------------------------------- 2834 \begin{table}[h] 2835 \centering 2836 \caption{} 2837 \label{} 2838 \begin{tabular*}{\linewidth}{@{\extracolsep{\fill}}|p{0.2\linewidth} |p{0.5\linewidth} | p{0.15\linewidth} |} 2839 \hline 2840 \hline 2841 \end{tabular*} 2842 \end{table} 2843 1934 2844 girder rms 100.0e-6 100.0e-6 0.5e-03 1935 2845 quad rms 30.0e-6 30.0e-6 80.0e-06 -
trunk/tracy/tracy/inc/naffutils.h
r3 r11 27 27 double ctau, long nmax, double Tx[][NTURN], bool *status); 28 28 29 void Trac_Simple4DCOD(double x, double px, double y, double py, double dp, 30 double ctau, long nmax, double Tx[][NTURN], long& lastn, long& lastpos,ss_vect<double>& x1,bool *status2); 31 29 32 void Trac_Simple6DCOD(double x, double px, double y, double py, double dp, 30 33 double ctau, long nmax, double Tx[][NTURN], bool *status); -
trunk/tracy/tracy/inc/physlib.h
r3 r11 55 55 56 56 void printglob(void); 57 58 void printglob2file(const char fic[]); 57 59 58 60 void printlatt(const char fic[]); -
trunk/tracy/tracy/inc/read_script.h
r3 r11 37 37 long _PrintTrack_nmax; 38 38 39 //start track particle coordinates; PrintTrackFlag 40 char _PrintTrackElem_track_file[max_str]; 41 double _PrintTrackElem_x, _PrintTrackElem_px, _PrintTrackElem_y, 42 _PrintTrackElem_py, _PrintTrackElem_delta, _PrintTrackElem_ctau; 43 long _PrintTrackElem_nelem1, _PrintTrackElem_nelem2; 44 45 39 46 //twiss file 40 47 char _PrintTwiss_twiss_file[max_str]; … … 58 65 long _FmapFlag_nxpoint, _FmapFlag_nypoint, _FmapFlag_nturn; 59 66 double _FmapFlag_xmax, _FmapFlag_ymax, _FmapFlag_delta; 60 bool _FmapFlag_diffusion; 67 bool _FmapFlag_diffusion; 68 bool _FmapFlag_printloss; 69 61 70 62 71 //extern bool FmapdpFlag; … … 64 73 long _FmapdpFlag_nxpoint, _FmapdpFlag_nepoint, _FmapdpFlag_nturn; 65 74 double _FmapdpFlag_xmax, _FmapdpFlag_emax, _FmapdpFlag_z; 66 bool _FmapdpFlag_diffusion; 75 bool _FmapdpFlag_diffusion; 76 bool _FmapdpFlag_printloss; 67 77 68 78 … … 110 120 _FmapFlag_nxpoint=31L, _FmapFlag_nypoint=21L, _FmapFlag_nturn=516L; 111 121 _FmapFlag_xmax=0.025, _FmapFlag_ymax=0.005, _FmapFlag_delta=0.0; 112 _FmapFlag_diffusion = true ;122 _FmapFlag_diffusion = true, _FmapFlag_printloss = false; 113 123 114 124 /*fmap for off momentum particle*/ … … 116 126 _FmapdpFlag_nxpoint=31L, _FmapdpFlag_nepoint=21L, _FmapdpFlag_nturn=516L; 117 127 _FmapdpFlag_xmax=0.025, _FmapdpFlag_emax=0.005, _FmapdpFlag_z=0.0; 118 _FmapdpFlag_diffusion = true ;119 128 _FmapdpFlag_diffusion = true, _FmapdpFlag_printloss = false; 129 120 130 /* tune shift with amplitude*/ 121 131 strcpy(_AmplitudeTuneShift_nudx_file,"nudx.out"); … … 162 172 163 173 /***** file names************/ 164 //files with multipole errors; for soleil lattice 174 extern char lat_file[max_str]; 175 176 //files with multipole errors; for soleil lattice 165 177 extern char fic_hcorr[max_str],fic_vcorr[max_str], fic_skew[max_str]; 166 178 extern char multipole_file[max_str]; -
trunk/tracy/tracy/inc/soleillib.h
r3 r11 58 58 // double z, bool diffusion, bool matlab); 59 59 void fmap(const char *FmapFile, long Nbx, long Nbz, long Nbtour, double xmax, double zmax, 60 double energy, bool diffusion); 60 double energy, bool diffusion); 61 void fmap(const char *FmapFile, long Nbx, long Nbz, long Nbtour, double xmax, double zmax, 62 double energy, bool diffusion, bool printloss); 61 63 void fmap_p(const char *FmapFile, long Nbx, long Nbz, long Nbtour, double xmax, double zmax, 62 double energy, bool diffusion, int numprocs, int myid);64 double energy, bool diffusion, bool printloss, int numprocs, int myid); 63 65 void fmapdp(const char *FmapdpFile, long Nbx, long Nbe, long Nbtour, double xmax, double emax, 64 double z, bool diffusion );66 double z, bool diffusion, bool printloss); 65 67 void fmapdp_p(const char *FmapdpFile, long Nbx, long Nbe, long Nbtour, double xmax, double emax, 66 double z, bool diffusion, int numprocs, int myid);68 double z, bool diffusion, bool printloss, int numprocs, int myid); 67 69 void Nu_Naff(void); 68 70 … … 128 130 /* fit tunes for soleil lattice, in which each quadrupole is cut into two parts*/ 129 131 void FitTune4(long qf1,long qf2, long qd1, long qd2, double nux, double nuy); 130 //print the coordinates at lattice elements 132 //print the coordinates at lattice elements tracked for n turns 131 133 void PrintTrack(const char *TrackFile, double x, double px,double y,double py, 132 134 double delta, double ctau, long int nmax); 133 135 //print the tracked coordinates after a lattice element 136 void PrintTrackElem(const char *TrackFile, double x, double px,double y,double py, 137 double delta, double ctau, long int nelem1,long int nelem2); 134 138 135 139 -
trunk/tracy/tracy/inc/t2elem.h
r3 r11 38 38 39 39 template<typename T> 40 void Drift(double L,double h_bend, ss_vect<T> &x); 41 42 template<typename T> 40 43 void Drift(double L, ss_vect<T> &x); 41 44 … … 47 50 48 51 template<typename T> 49 static void EdgeFocus(double irho, ss_vect<T> &x);52 static void bendCurvature(double irho, double H, ss_vect<T> &x); 50 53 51 54 template<typename T> … … 58 61 template<typename T> 59 62 void Drift_Pass(CellType &Cell, ss_vect<T> &x); 63 64 template<typename T> 65 void dipole_kick(double L, double h_ref, double h_bend, ss_vect<T> &x); 66 template<typename T> 67 void multipole_kick(int Order, double MB[], double L, double h_bend, ss_vect<T> &x); 60 68 61 69 template<typename T> -
trunk/tracy/tracy/inc/tracy.h
r3 r11 110 110 bool tuneflag, chromflag, codflag, mapflag, passflag, overflag, chambre; 111 111 int lossplane; /* lost in: horizontal 1 112 vertical 2 113 longitudinal 3 */ 112 vertical 2 113 longitudinal 3 114 not lost in any of the above plane: 0*/ 114 115 } statusrec; 115 116 -
trunk/tracy/tracy/inc/tracy_global.h
r3 r11 111 111 double PTx1; // horizontal entrance angle [deg] 112 112 double PTx2; // horizontal exit angle [deg] 113 double PH1; // bending curvature of the entrance pole face of dipole, see P116 SAC-75. 114 double PH2; // bending curvature of the exit pole face of dipole, see P116 SAC-75. 113 115 double Pgap; // total magnet gap [m] 114 116 double Pirho; // angle([radian], but in lattice definition, angle is with unit degree)/length of the dipole, 1/rho [1/m] -
trunk/tracy/tracy/src/lsoc.cc
r3 r11 286 286 // first line is a comment 287 287 if (fgets(line, max_str, hCorrFile) == 0) 288 exit (1);288 exit_(1); 289 289 290 290 // loop over correctors … … 488 488 new_rnd whether to generate new scale value for the rms error 489 489 ik 490 491 Comments: 492 14/10/2013 by Jianfeng Zhang @ LAL 493 (1) Fix the bug to read a long line of the file. Now the code can read a line 494 with arbitrary length. 495 (2) Fix the bug to skip the empty line in the file. 496 (3) Fix the bug to read the empty characters at the end of line. 497 (4) Print the order and field errors in a better format. 490 498 ********************************************************************************/ 491 499 void LoadFieldErrs(const char *FieldErrorFile, const bool Scale_it, … … 493 501 { 494 502 bool rms, set_rnd = false; 495 char line[max_str], name[max_str], type[max_str], *prm; 503 char *line = NULL; 504 size_t len = 0; 505 ssize_t read; 506 char name[max_str], type[max_str], *prm; 496 507 int k, n; 497 508 long int seed_val; 498 509 double Bn, An, r0; 499 510 FILE *inf; 500 501 const bool prt = true; 502 511 512 513 const bool prt = false; 514 503 515 inf = file_read(FieldErrorFile); 504 505 506 while (fgets(line, max_str, inf) != NULL) { 507 if (!prt) 508 cout << line << endl; 509 if (strstr(line, "#") == NULL) { // if line does not strat with # 516 if(inf == NULL){ 517 printf("LoadFieldErrs(): Error! Read error file %s Failure!\n", FieldErrorFile); 518 exit_(1); 519 } 520 521 // read the line with arbitrary length 522 while ((read = getline(&line, &len, inf)) != -1) { 523 if (!prt){ 524 printf("Retrieved line of length %zu :\n", read); 525 cout << line << endl; 526 } 527 528 // skip the empty line 529 if (line[0] != '#' && line[0] != '\n') { // if line does not strat with # 510 530 // check for whether to set new seed 511 531 sscanf(line, "%s", name); … … 517 537 } else { // then it is an & bn definition 518 538 sscanf(line, "%*s %s %lf", type, &r0); // read reference radius 519 printf("\n"); 520 printf("%-4s %3s %7.1le\n", name, type, r0);539 if (!prt) printf("\nsetting <%s> multipole error to: %-5s r0 = %7.1le\n",type,name,r0); 540 521 541 rms = (strcmp("rms", type) == 0)? true : false; 522 542 if (rms && !set_rnd) { … … 526 546 527 547 // skip first three parameters 528 strtok(line, " "); // set pointer 529 for (k = 1; k <= 2; k++) 530 strtok(NULL, " "); // pointer move to nxt element548 strtok(line, " "); // set pointer; skip name 549 strtok(NULL, " "); // skip n 550 strtok(NULL, " "); // pointer move to nxt element; skin r0 531 551 532 533 while (((prm = strtok(NULL, " ")) != NULL) && 552 553 // To skip the empty characters at the end of line 554 while (((prm = strtok(NULL, " \n")) != NULL) && 534 555 (strcmp(prm, "\r\n") != 0)) { 556 535 557 sscanf(prm, "%d", &n); 536 558 prm = get_prm(); … … 542 564 An *= Scale; 543 565 } 544 if ( prt)545 cout << n << " " << Bn << " " << An << " "<<endl;546 547 566 if (!prt) 567 printf(" n = %2d, Bn = %9.1e, An = %9.1e\n", n, Bn, An); 568 569 // convert to normalized multipole components 548 570 SetFieldErrors(name, rms, r0, n, Bn, An, true); 549 571 } // end while … … 552 574 } // end while file 553 575 576 free(line); 554 577 fclose(inf); 555 578 } -
trunk/tracy/tracy/src/naffutils.cc
r10 r11 108 108 } while ((lastn < nmax) && (lastpos == globval.Cell_nLoc) && (lostF == false)); 109 109 110 110 111 if (lastpos != globval.Cell_nLoc) 111 112 { /* Particle lost: Error message section */ … … 117 118 } 118 119 120 121 /****************************************************************************/ 122 /* void Trac_Simple4DCOD(double x, double px, double y, double py, double dp, 123 double ctau, long nmax, double Tx[][NTURN], bool *status2) 124 125 Purpose: 126 Single particle tracking around the closed orbit for NTURN turns 127 The 6D phase trajectory is saved in a array, but the 128 tracked dp and ctau is not about the COD. 129 130 Input: 131 x, px, y, py 4 transverse coordinates 132 dp energy offset 133 nmax number of turns 134 pos starting position for tracking 135 aperture global physical aperture 136 137 Output: 138 lastn last n (should be nmax if not lost) 139 lastpos last position in the ring 140 Tx 6xNTURN matrix of phase trajectory 141 142 Return: 143 none 144 145 Global variables: 146 NTURN number of turn for tracking 147 globval 148 149 Specific functions: 150 Cell_Pass 151 152 Comments: 153 useful for connection with NAFF 154 19/01/03 tracking around the closed orbit 155 156 11/06/2013 Modified by Jianfeng Zhang @ LAL 157 The same feature as function 158 Trac_Simple4DCOD(double x, double px, double y, double py, double dp, 159 double ctau, long nmax, double Tx[][NTURN], bool *status2) 160 but add the feature to extract the position of the location of 161 the lost particle; 162 called by function 163 fmap(const char *FmapFile, long Nbx, long Nbz, long Nbtour, double xmax, double zmax, 164 double energy, bool diffusion, bool loss) 165 in soleillib.cc. 166 167 ****************************************************************************/ 168 void Trac_Simple4DCOD(double x, double px, double y, double py, double dp, 169 double ctau, long nmax, double Tx[][NTURN], long& lastn, long& lastpos, ss_vect<double>& x1, bool *status2) 170 { 171 bool lostF = false; /* Lost particle Flag */ 172 Vector2 aperture = {1.0, 1.0}; 173 174 lastn = 0; 175 lastpos = globval.Cell_nLoc; 176 *status2 = true; /* stable */ 177 x1[0]=0,x1[1]=0,x1[2]=0,x1[3]=0,x1[4]=0,x1[5]=0; 178 179 if (globval.MatMeth) Cell_Concat(dp); 180 181 /* Get closed orbit */ 182 183 getcod(dp, lastpos); 184 185 186 if (!trace && status.codflag) 187 printf("dp= % .5e %% xcod= % .5e mm zcod= % .5e mm \n", 188 dp*1e2, globval.CODvect[0]*1e3, globval.CODvect[2]*1e3); 189 190 /* Tracking coordinates around the closed orbit */ 191 x1[0] = x + globval.CODvect[0]; x1[1] = px + globval.CODvect[1]; 192 x1[2] = y + globval.CODvect[2]; x1[3] = py + globval.CODvect[3]; 193 x1[4] = dp; x1[5] = ctau; 194 195 Tx[0][lastn] = x1[0]; Tx[1][lastn] = x1[1]; 196 Tx[2][lastn] = x1[2]; Tx[3][lastn] = x1[3]; 197 Tx[4][lastn] = x1[4]; Tx[5][lastn] = x1[5]; 198 lastn++; 199 200 do 201 { /* tracking through the ring */ 202 if ((lastpos == globval.Cell_nLoc) && 203 (fabs(x1[0]) < aperture[0]) && (fabs(x1[2]) < aperture[1]) && status.codflag) 204 { 205 if (globval.MatMeth) 206 Cell_fPass(x1, lastpos); 207 else 208 Cell_Pass(0, globval.Cell_nLoc, x1, lastpos); 209 Tx[0][lastn] = x1[0]; Tx[1][lastn] = x1[1]; 210 Tx[2][lastn] = x1[2]; Tx[3][lastn] = x1[3]; 211 Tx[4][lastn] = x1[4]; Tx[5][lastn] = x1[5]; 212 } 213 else 214 { 215 printf("Trac_Simple: Particle lost \n"); 216 fprintf(stdout, "%6ld plane: %1d %+10.5g %+10.5g %+10.5g %+10.5g %+10.5g %+10.5g \n", 217 lastn, status.lossplane, x1[0], x1[1], x1[2], x1[3], x1[4], x1[5]); 218 lostF = true; 219 *status2 = false; 220 } 221 lastn++; 222 } while ((lastn < nmax) && (lastpos == globval.Cell_nLoc) && (lostF == false)); 223 224 225 if (lastpos != globval.Cell_nLoc) 226 { /* Particle lost: Error message section */ 227 *status2 = false; 228 printf("Trac_Simple: Particle lost \n"); 229 fprintf(stdout, "turn=%5ld plane= %1d %+10.5g %+10.5g %+10.5g %+10.5g %+10.5g %+10.5g \n", lastn-1, 230 status.lossplane, x1[0], x1[1], x1[2], x1[3], x1[4], x1[5]); 231 } 232 } 233 234 119 235 /****************************************************************************/ 120 236 /* void Trac_Simple6DCOD(double x, double px, double y, double py, double dp, long nmax, 121 double Tx[][NTURN], bool *status )237 double Tx[][NTURN], bool *status2) 122 238 123 239 Purpose: -
trunk/tracy/tracy/src/nsls-ii_lib.cc
r3 r11 1333 1333 new_rnd use new random number or not 1334 1334 k 1335 1336 15/10/2013 Jianfeng Zhang @ LAL 1337 Replace fgets() by getline() to fix the bug to read line of 1338 arbritrary length. 1339 1335 1340 ****************************************************************************/ 1336 1341 void LoadAlignTol(const char *AlignFile, const bool Scale_it, 1337 1342 const double Scale, const bool new_rnd, const int k) 1338 1343 { 1339 char line[max_str], Name[max_str], type[max_str]; 1340 int Fnum, seed_val; 1341 double dx, dy, dr; // x and y misalignments [m] and roll error [rad] 1342 double dr_deg; 1343 bool rms = false, set_rnd; 1344 char Name[max_str]=" ", type[max_str]=" "; 1345 char *line = NULL; 1346 size_t len = 0; 1347 ssize_t read; 1348 int Fnum = 0, seed_val = 0, LineNum = 0; 1349 double dx = 0.0, dy = 0.0, dr = 0.0; // x and y misalignments [m] and roll error [rad] 1350 double dr_deg = 0.0; 1351 bool rms = false, set_rnd = false; 1352 bool prt = false; 1344 1353 FILE *fp; 1345 1354 1346 1355 fp = file_read(AlignFile); 1347 1348 printf("\n"); 1356 if(fp == NULL){ 1357 printf("LoadAlignTol(): Error! Failure to read file %s !\n",AlignFile); 1358 exit_(1); 1359 } 1360 1349 1361 if (new_rnd) 1350 1362 printf("set alignment errors\n"); … … 1352 1364 printf("scale alignment errors: %4.2f\n", Scale); 1353 1365 1354 set_rnd = false; 1355 while (fgets(line, max_str, fp) != NULL) { 1366 while ((read=getline(&line, &len, fp)) != -1) { 1367 1368 LineNum++; 1369 if(!prt){ 1370 printf("Line # %ld \n",LineNum); 1371 printf("Retrieved line of length %zu : \n",read); 1372 printf("%s \n",line); 1373 } 1374 1356 1375 //check for whether to set seed 1357 if ((strstr(line, "#") == NULL) && (strcmp(line, "\r\n") != 0)) { 1376 if ((strstr(line, "#") == NULL) && line[0] != '\n' && 1377 line[0]!='\r' && (strcmp(line, "\r\n") != 0)) { 1358 1378 sscanf(line, "%s", Name); 1359 1379 if (strcmp("seed", Name) == 0) { … … 1369 1389 if (strcmp(type, "rms") == 0){ 1370 1390 rms = true; 1371 printf("<rms> ");1372 1391 } 1373 1392 else if (strcmp(type, "sys") == 0){ 1374 1393 rms = false; 1375 printf("<sys> ");1376 1394 } 1377 1395 else { 1378 printf("LoadAlignTol : element %s: need to specify rms or sys\n",1396 printf("LoadAlignTol(): Error! Need to specify misalignment error type: <rms> or <sys> of element %s! \n", 1379 1397 Name); 1380 1398 exit_(1); … … 1382 1400 1383 1401 if (rms && !set_rnd) { 1384 printf("LoadAlignTol : seed not defined\n");1402 printf("LoadAlignTol(): Error! Seed of <rms> errors is not defined \n"); 1385 1403 exit_(1); 1386 1404 } … … 1390 1408 } 1391 1409 1410 if(!prt){ 1411 printf("Set <%s> misalignment errors to: [%s] \n",type, Name); 1412 printf("dx = %e, dy = %e, dr = %e \n \n",dx,dy,dr); 1413 } 1414 1392 1415 if (strcmp("all", Name) == 0) { 1393 printf("misaligning all: dx = %e, dy = %e, dr = %e\n", 1394 dx, dy, dr); 1416 1395 1417 if(rms) 1396 1418 misalign_rms_type(All, dx, dy, dr_deg, new_rnd); … … 1398 1420 misalign_sys_type(All, dx, dy, dr_deg); 1399 1421 } else if (strcmp("girder", Name) == 0) { 1400 printf("misaligning girders: dx = %e, dy = %e, dr = %e\n", 1401 dx, dy, dr); 1422 1402 1423 if (rms) 1403 1424 misalign_rms_girders(globval.gs, globval.ge, dx, dy, dr_deg, … … 1406 1427 misalign_sys_girders(globval.gs, globval.ge, dx, dy, dr_deg); 1407 1428 } else if (strcmp("dipole", Name) == 0) { 1408 printf("misaligning dipoles: dx = %e, dy = %e, dr = %e\n", 1409 dx, dy, dr); 1429 1410 1430 if (rms) 1411 1431 misalign_rms_type(Dip, dx, dy, dr_deg, new_rnd); … … 1413 1433 misalign_sys_type(Dip, dx, dy, dr_deg); 1414 1434 } else if (strcmp("quad", Name) == 0) { 1415 printf("misaligning quadrupoles: dx = %e, dy = %e, dr = %e\n", 1416 dx, dy, dr); 1435 1417 1436 if (rms) 1418 1437 misalign_rms_type(Quad, dx, dy, dr_deg, new_rnd); … … 1420 1439 misalign_sys_type(Quad, dx, dy, dr_deg); 1421 1440 } else if (strcmp("sext", Name) == 0) { 1422 printf("misaligning sextupoles: dx = %e, dy = %e, dr = %e\n", 1423 dx, dy, dr); 1441 1424 1442 if (rms) 1425 1443 misalign_rms_type(Sext, dx, dy, dr_deg, new_rnd); … … 1427 1445 misalign_sys_type(Sext, dx, dy, dr_deg); 1428 1446 } else if (strcmp("bpm", Name) == 0) { 1429 printf("misaligning bpms: dx = %e, dy = %e, dr = %e\n", 1430 dx, dy, dr); 1447 1431 1448 if (rms) 1432 1449 misalign_rms_fam(globval.bpm, dx, dy, dr_deg, new_rnd); … … 1436 1453 Fnum = ElemIndex(Name); 1437 1454 if(Fnum > 0) { 1438 printf("misaligning all %s: dx = %e, dy = %e, dr = %e\n",1439 Name, dx, dy, dr);1440 1455 if (rms) 1441 1456 misalign_rms_fam(Fnum, dx, dy, dr_deg, new_rnd); 1442 1457 else 1443 1458 misalign_sys_fam(Fnum, dx, dy, dr_deg); 1444 } else 1445 printf("LoadAlignTol: undefined element %s\n", Name); 1459 } else{ 1460 printf("LoadAlignTol(): Error! Undefined element: %s \n", Name); 1461 exit_(1); 1462 } 1446 1463 } 1447 1464 } 1448 1465 } else 1449 printf("%s", line);1450 } 1451 1466 continue; 1467 } 1468 free(line); 1452 1469 fclose(fp); 1453 1470 } … … 2775 2792 } 2776 2793 2777 2794 /************************************************************************** 2795 * void LoadFieldErr(const char *FieldErrorFile, const bool Scale_it, 2796 const double Scale, const bool new_rnd) 2797 * 2798 * 2799 * 2800 **************************************************************************/ 2778 2801 void LoadFieldErr(const char *FieldErrorFile, const bool Scale_it, 2779 2802 const double Scale, const bool new_rnd) … … 4830 4853 } 4831 4854 4832 4855 /**************************************************************** 4856 * void get_bn(char file_name[], int n, const bool prt) 4857 * 4858 * 4859 ****************************************************************/ 4833 4860 void get_bn(char file_name[], int n, const bool prt) 4834 4861 { -
trunk/tracy/tracy/src/physlib.cc
r3 r11 16 16 /**************************/ 17 17 18 18 /******************************************************************************* 19 * 20 * 21 * 22 * 23 ******************************************************************************/ 19 24 /**** same as asctime in C without the \n at the end****/ 20 25 char *asctime2(const struct tm *timeptr) { … … 33 38 return result; 34 39 } 35 40 /******************************************************************************* 41 * 42 * 43 * 44 * 45 ******************************************************************************/ 36 46 /** Get time and date **/ 37 47 struct tm* GetTime() { … … 189 199 190 200 Comments copied from Tracy 2.7(soleil),Written by L.Nadolski. 201 202 03/06/2013 Add feature to print the summary on the sreen and an external file 191 203 192 204 ****************************************************************************/ … … 251 263 252 264 /****************************************************************************/ 253 /* void printlatt(void) 265 /* void printglob2file(void) 266 267 Purpose: 268 Print global variables on screen 269 Print tunes and chromaticities 270 Print Oneturn matrix 271 272 Input: 273 none 274 275 Output: 276 output on the screen 277 278 Return: 279 none 280 281 Global variables: 282 globval 283 284 Specific functions: 285 none 286 287 Comments: 288 03/06/2013 by Jianfeng Zhang @ LAL 289 The same feature as the file printglob(void), but 290 added feature to print the lattice summary to an external file 291 292 293 ****************************************************************************/ 294 void printglob2file(const char fic[]) { 295 FILE *fout; 296 int i=0,j=0; 297 298 fout = fopen(fic,"w"); 299 300 fprintf(fout, "\n***************************************************************" 301 "***************\n"); 302 fprintf(fout,"\n"); 303 fprintf(fout," dPcommon = %9.3e dPparticle = %9.3e" 304 " Energy [GeV] = %.3f\n", globval.dPcommon, globval.dPparticle, 305 globval.Energy); 306 fprintf(fout," MaxAmplx [m] = %9.3e MaxAmply [m] = %9.3e" 307 " RFAccept [%%] = +/- %4.2f\n", Cell[0].maxampl[X_][1], 308 Cell[0].maxampl[Y_][1], globval.delta_RF * 1e2); 309 fprintf(fout," MatMeth = %s ", globval.MatMeth ? "TRUE " : "FALSE"); 310 fprintf(fout," Cavity_On = %s ", globval.Cavity_on ? "TRUE " : "FALSE"); 311 fprintf(fout," Radiation_On = %s \n", globval.radiation ? "TRUE " : "FALSE"); 312 313 if(globval.bpm == 0) 314 fprintf(fout," bpm = 0"); 315 else 316 fprintf(fout," bpm = %3d", GetnKid(globval.bpm)); 317 if(globval.qt == 0) 318 fprintf(fout," qt = 0 \n"); 319 else 320 fprintf(fout," qt = %3d \n", GetnKid(globval.qt)); 321 if(globval.hcorr == 0) 322 fprintf(fout," hcorr = 0"); 323 else 324 fprintf(fout," hcorr = %3d", GetnKid(globval.hcorr)); 325 if(globval.vcorr == 0) 326 fprintf(fout," vcorr = 0 \n"); 327 else 328 fprintf(fout," vcorr = %3d \n", GetnKid(globval.vcorr)); 329 330 fprintf(fout," Chambre_On = %s \n", globval.Aperture_on ? "TRUE " : "FALSE"); 331 332 fprintf(fout," alphac = %8.4e\n", globval.Alphac); 333 fprintf(fout," nux = %8.6f nuy = %8.6f", 334 globval.TotalTune[X_], globval.TotalTune[Y_]); 335 if (globval.Cavity_on) 336 fprintf(fout," omega = %13.9f\n", globval.Omega); 337 else { 338 fprintf(fout,"\n"); 339 fprintf(fout," ksix = %8.6f ksiy = %8.6f\n", 340 globval.Chrom[X_], globval.Chrom[Y_]); 341 } 342 fprintf(fout,"\n"); 343 344 fprintf(fout," OneTurn matrix:\n"); 345 for(i=0;i<ss_dim;i++){ 346 fprintf(fout,"\n"); 347 for(j=0;j<ss_dim;j++) 348 fprintf(fout,"%14.6e",globval.OneTurnMat[i][j]); 349 } 350 351 fprintf(fout,"\n\nTwiss parameters at entrance:\n"); 352 fprintf(fout, 353 " Betax [m] = % 9.3e Alphax = % 9.3e Etax [m] = % 9.3e Etaxp = % 9.3e\n" 354 " Betay [m] = % 9.3e Alphay = % 9.3e Etay [m] = % 9.3e Etayp = % 9.3e\n\n", 355 Cell[1].Beta[X_], Cell[1].Alpha[X_], Cell[1].Eta[X_], 356 Cell[1].Etap[X_], Cell[1].Beta[Y_], Cell[1].Alpha[Y_], 357 Cell[1].Eta[Y_], Cell[1].Etap[Y_]); 358 359 fclose(fout); 360 } 361 362 /****************************************************************************/ 363 /* void printlatt(const char fic[]) 254 364 255 365 Purpose: … … 313 423 fclose(outf); 314 424 } 315 425 /******************************************************************************* 426 * 427 * 428 * 429 * 430 ******************************************************************************/ 316 431 double int_curly_H1(long int n) { 317 432 /* Integration with Simpson's Rule */ … … 330 445 return curly_H; 331 446 } 332 447 /******************************************************************************* 448 * 449 * 450 * 451 * 452 ******************************************************************************/ 333 453 void prt_sigma(void) { 334 454 long int i; … … 477 597 } 478 598 } 479 599 /******************************************************************************* 600 * 601 * 602 * 603 * 604 ******************************************************************************/ 480 605 void getabn(Vector2 &alpha, Vector2 &beta, Vector2 &nu) { 481 606 Vector2 gamma; 482 607 Cell_GetABGN(globval.OneTurnMat, alpha, beta, gamma, nu); 483 608 } 484 609 /******************************************************************************* 610 * 611 * 612 * 613 * 614 ******************************************************************************/ 485 615 void TraceABN(long i0, long i1, const Vector2 &alpha, const Vector2 &beta, 486 616 const Vector2 &eta, const Vector2 &etap, const double dP) { … … 613 743 Ring_Fitchrom(ksi, ksieps, ns, sfbuf, sdbuf, ksidkpL, ksiimax); 614 744 } 615 745 /******************************************************************************* 746 * 747 * 748 * 749 * 750 ******************************************************************************/ 616 751 void FitDisp(long q, long pos, double eta) { 617 long i , nq;752 long i=0L, nq=0L; 618 753 fitvect qbuf; 619 754 … … 625 760 Ring_FitDisp(pos, eta, dispeps, nq, qbuf, dispdkL, dispimax); 626 761 } 627 762 /******************************************************************************* 763 * 764 * 765 * 766 * 767 ******************************************************************************/ 628 768 #define nfloq 4 629 769 … … 635 775 #undef nfloq 636 776 777 /******************************************************************************* 778 * 779 * 780 * 781 * 782 ******************************************************************************/ 637 783 #define ntrack 4 638 784 … … 651 797 652 798 */ 653 long int i ;654 double twoJx , twoJy, phix, phiy, scl_1 = 1.0, scl_2 = 1.0;799 long int i=0L; 800 double twoJx=0.0, twoJy=0.0, phix=0.0, phiy=0.0, scl_1 = 1.0, scl_2 = 1.0; 655 801 Vector x0, x1, x2, xf; 656 802 FILE *outf; … … 810 956 #undef ntrack 811 957 958 /******************************************************************************* 959 * 960 * 961 * 962 * 963 ******************************************************************************/ 812 964 #define step 0.1 813 965 #define px 0.0 814 966 #define py 0.0 815 967 void track_(double r, struct LOC_getdynap *LINK) { 816 long i , lastn, lastpos;968 long i=0L, lastn=0L, lastpos=0L; 817 969 Vector x; 818 970 … … 889 1041 void Trac(double x, double px, double y, double py, double dp, double ctau, 890 1042 long nmax, long pos, long &lastn, long &lastpos, FILE *outf1) { 891 bool lostF; /* Lost particle Flag */ 1043 1044 bool lostF = true; /* Lost particle Flag */ 892 1045 Vector x1; /* tracking coordinates */ 893 1046 Vector2 aperture; … … 907 1060 lastn = 0L; 908 1061 (lastpos) = pos; 909 lostF = true;910 1062 911 1063 if (trace) … … 976 1128 #define nfloq 4 977 1129 bool chk_if_lost(double x0, double y0, double delta, long int nturn, bool floqs) { 978 long int i, lastn, lastpos; 1130 1131 long int i=0L, lastn=0L, lastpos=0L; 979 1132 Vector x; 980 1133 … … 1106 1259 ****************************************************************************/ 1107 1260 void getcsAscr(void) { 1108 long i , j;1109 double phi ;1261 long i=0L, j=0L; 1262 double phi=0.0; 1110 1263 Matrix R; 1111 1264 … … 1178 1331 Assumes mid-plane symmetry. */ 1179 1332 1180 long int i , lastpos;1181 double phi , x_min, x_max, y_min, y_max;1333 long int i=0L, lastpos=0L; 1334 double phi=0.0, x_min=0.0, x_max=0.0, y_min=0.0, y_max=0.0; 1182 1335 1183 1336 getcod(delta, lastpos); … … 1269 1422 ****************************************************************************/ 1270 1423 double get_aper(int n, double x[], double y[]) { 1271 int i ;1272 double A ;1424 int i=0; 1425 double A=0.0; 1273 1426 1274 1427 A = 0.0; … … 1283 1436 } 1284 1437 1438 /************************************************************************** 1439 * void GetTrack(const char *file_name, long *n, double x[], double px[], 1440 double y[], double py[]) 1441 * 1442 * 1443 * 1444 **************************************************************************/ 1285 1445 void GetTrack(const char *file_name, long *n, double x[], double px[], 1286 1446 double y[], double py[]) { 1287 int k ;1447 int k=0; 1288 1448 char line[200]; 1289 1449 FILE *inf; … … 1335 1495 ****************************************************************************/ 1336 1496 void Getj(long n, double *x, double *px, double *y, double *py) { 1337 long int i ;1497 long int i=0L; 1338 1498 1339 1499 for (i = 0; i < n; i++) { … … 1369 1529 ****************************************************************************/ 1370 1530 double GetArg(double x, double px, double nu) { 1371 double phi, val; 1531 1532 double phi=0.0, val=0.0; 1372 1533 1373 1534 phi = GetAngle(x, px); … … 1407 1568 void GetPhi(long n, double *x, double *px, double *y, double *py) { 1408 1569 /* Calculates the linear phase */ 1409 long i ;1570 long i=0L; 1410 1571 1411 1572 for (i = 1; i <= n; i++) { … … 1421 1582 void Sinfft(int n, double xr[]) { 1422 1583 /* DFT with sine window */ 1423 int i ;1584 int i=0; 1424 1585 double xi[n]; 1425 1586 … … 1450 1611 free_dvector(xi, 1, 2 * n); 1451 1612 } 1452 1613 /******************************************************************************* 1614 * 1615 * 1616 * 1617 * 1618 ******************************************************************************/ 1453 1619 void sin_FFT(int n, double xr[], double xi[]) { 1454 1620 /* DFT with sine window */ 1455 int i ;1621 int i=0; 1456 1622 double *xri; 1457 1623 … … 1470 1636 free_dvector(xri, 1, 2 * n); 1471 1637 } 1472 1638 /******************************************************************************* 1639 * 1640 * 1641 * 1642 * 1643 ******************************************************************************/ 1473 1644 void GetInd(int n, int k, int *ind1, int *ind3) { 1474 1645 if (k == 1) { … … 1483 1654 } 1484 1655 } 1485 1656 /******************************************************************************* 1657 * 1658 * 1659 * 1660 * 1661 ******************************************************************************/ 1486 1662 void GetInd1(int n, int k, int *ind1, int *ind3) { 1487 1663 if (k == 1) { … … 1496 1672 } 1497 1673 } 1498 1674 /******************************************************************************* 1675 * 1676 * 1677 * 1678 * 1679 ******************************************************************************/ 1499 1680 void GetPeak(int n, double *x, int *k) { 1500 1681 /* Locate peak in DFT spectrum */ 1501 int ind1, ind2, ind3; 1502 double peak; 1503 1504 peak = 0.0; 1682 int ind1=0, ind2=0, ind3=0; 1683 double peak=0.0; 1684 1505 1685 *k = 1; 1506 1686 for (ind2 = 1; ind2 <= n / 2 + 1; ind2++) { … … 1513 1693 } 1514 1694 } 1515 1695 /******************************************************************************* 1696 * 1697 * 1698 * 1699 * 1700 ******************************************************************************/ 1516 1701 void GetPeak1(int n, double *x, int *k) { 1517 1702 /* Locate peak in DFT spectrum */ 1518 int ind1, ind2, ind3; 1519 double peak; 1520 1521 peak = 0.0; 1703 int ind1=0, ind2=0, ind3=0; 1704 double peak=0.0; 1705 1522 1706 *k = 1; 1523 1707 for (ind2 = 1; ind2 <= n; ind2++) { … … 1530 1714 } 1531 1715 } 1532 1716 /******************************************************************************* 1717 * 1718 * 1719 * 1720 * 1721 ******************************************************************************/ 1533 1722 double Int2snu(int n, double *x, int k) { 1534 1723 /* Get frequency by nonlinear interpolation with two samples … … 1539 1728 N A(k-1) + A(k) 2 1540 1729 */ 1541 int ind , ind1, ind3;1542 double ampl1 , ampl2;1730 int ind=0, ind1=0, ind3=0; 1731 double ampl1=0.0, ampl2=0.0; 1543 1732 1544 1733 GetInd(n, k, &ind1, &ind3); … … 1634 1823 2 pi ( k + 1/2 ) pi ( k - 1/2 ) 1635 1824 */ 1636 double corr ;1825 double corr=0.0; 1637 1826 1638 1827 corr = (Sinc(M_PI * (k - 1 + 0.5 - nu * n)) + Sinc(M_PI * (k - 1 - 0.5 - nu … … 1669 1858 /* Get phase by linear interpolation for rectangular window 1670 1859 with -pi <= phi <= pi */ 1671 int i ;1672 double phi ;1860 int i=0; 1861 double phi=0.0; 1673 1862 double xr[n], xi[n]; 1674 1863 … … 1712 1901 ****************************************************************************/ 1713 1902 void FndRes(struct LOC_findres *LINK) { 1714 int i , j, FORLIM, FORLIM1;1715 double delta ;1903 int i=0, j=0, FORLIM=0, FORLIM1=0; 1904 double delta=0.0; 1716 1905 1717 1906 FORLIM = LINK->n; … … 1781 1970 } while (!V.found); 1782 1971 } 1783 1972 /******************************************************************************* 1973 * 1974 * 1975 * 1976 * 1977 ******************************************************************************/ 1784 1978 void GetPeaks(int n, double *x, int nf, double *nu, double *A) { 1785 int i , k, ind1, ind3;1979 int i=0, k=0, ind1=0, ind3=0; 1786 1980 1787 1981 for (i = 0; i < nf; i++) { … … 1797 1991 } 1798 1992 } 1799 1993 /******************************************************************************* 1994 * 1995 * 1996 * 1997 * 1998 ******************************************************************************/ 1800 1999 void GetPeaks1(int n, double *x, int nf, double *nu, double *A) { 1801 int i , k, ind1, ind3;2000 int i=0, k=0, ind1=0, ind3=0; 1802 2001 1803 2002 for (i = 0; i < nf; i++) { … … 1819 2018 1820 2019 void SetTol(int Fnum, double dxrms, double dyrms, double drrms) { 1821 int i ;1822 long k ;2020 int i=0; 2021 long k=0L; 1823 2022 1824 2023 for (i = 1; i <= GetnKid(Fnum); i++) { … … 1834 2033 } 1835 2034 } 1836 2035 /******************************************************************************* 2036 * 2037 * 2038 * 2039 * 2040 ******************************************************************************/ 1837 2041 void Scale_Tol(int Fnum, double dxrms, double dyrms, double drrms) { 1838 int Knum ;1839 long int loc ;2042 int Knum=0; 2043 long int loc=0L; 1840 2044 1841 2045 for (Knum = 1; Knum <= GetnKid(Fnum); Knum++) { … … 1875 2079 ****************************************************************************/ 1876 2080 void SetaTol(int Fnum, int Knum, double dx, double dy, double dr) { 1877 long int loc ;2081 long int loc=0L; 1878 2082 1879 2083 loc = Elem_GetPos(Fnum, Knum); … … 1887 2091 Mpole_SetdT(Fnum, Knum); 1888 2092 } 1889 2093 /******************************************************************************* 2094 * 2095 * 2096 * 2097 * 2098 ******************************************************************************/ 1890 2099 void ini_aper(const double Dxmin, const double Dxmax, const double Dymin, 1891 2100 const double Dymax) { 1892 int k ;2101 int k=0; 1893 2102 1894 2103 for (k = 0; k <= globval.Cell_nLoc; k++) { … … 1899 2108 } 1900 2109 } 1901 2110 /******************************************************************************* 2111 * 2112 * 2113 * 2114 * 2115 ******************************************************************************/ 1902 2116 void set_aper(const int Fnum, const double Dxmin, const double Dxmax, 1903 2117 const double Dymin, const double Dymax) { 1904 int i ;1905 long int loc ;2118 int i=0; 2119 long int loc=0L; 1906 2120 1907 2121 for (i = 1; i <= GetnKid(Fnum); i++) { … … 1913 2127 } 1914 2128 } 1915 2129 /************************************************* 2130 * void LoadApertures(const char *ChamberFileName) 2131 * 2132 * 2133 * 2134 **************************************************/ 1916 2135 void LoadApertures(const char *ChamberFileName) { 1917 2136 char line[128], FamName[32]; 1918 long Fnum ;1919 double Xmin , Xmax, Ymin, Ymax;2137 long Fnum=0L; 2138 double Xmin=0.0, Xmax=0.0, Ymin=0.0, Ymax=0.0; 1920 2139 FILE *ChamberFile; 1921 2140 … … 1935 2154 fclose(ChamberFile); 1936 2155 } 1937 2156 /********************************************************************************** 2157 * void LoadTolerances(const char *TolFileName) 2158 * 2159 * 2160 * 2161 **********************************************************************************/ 1938 2162 // Load tolerances from the file 1939 2163 void LoadTolerances(const char *TolFileName) { 1940 2164 char line[128], FamName[32]; 1941 int Fnum ;1942 double dx , dy, dr;2165 int Fnum=0; 2166 double dx=0.0, dy=0.0, dr=0.0; 1943 2167 FILE *tolfile; 1944 2168 1945 2169 tolfile = file_read(TolFileName); 2170 if(tolfile == NULL){ 2171 printf("LoadTolerances(): Error! Failure to read file: %s \n",TolFileName); 2172 exit_(1); 2173 } 1946 2174 1947 2175 do … … 1965 2193 } 1966 2194 2195 /************************************************************************************** 2196 * void ScaleTolerances(const char *TolFileName, const double scl) 2197 * 2198 * 2199 * 2200 * ************************************************************************************/ 1967 2201 // Load tolerances from the file 1968 2202 void ScaleTolerances(const char *TolFileName, const double scl) { 1969 2203 char line[128], FamName[32]; 1970 int Fnum ;1971 double dx , dy, dr;2204 int Fnum=0; 2205 double dx=0.0, dy=0.0, dr=0.0; 1972 2206 FILE *tolfile; 1973 2207 1974 2208 tolfile = file_read(TolFileName); 1975 2209 if(tolfile == NULL){ 2210 printf("LoadTolerances(): Error! Failure to read file: %s \n",TolFileName); 2211 exit_(1); 2212 } 2213 1976 2214 do 1977 2215 fgets(line, 128, tolfile); … … 1992 2230 fclose(tolfile); 1993 2231 } 1994 2232 /******************************************************************************* 2233 * 2234 * 2235 * 2236 * 2237 ******************************************************************************/ 1995 2238 void SetKpar(int Fnum, int Knum, int Order, double k) { 1996 2239 … … 1998 2241 Mpole_SetPB(Fnum, Knum, Order); 1999 2242 } 2000 2243 /******************************************************************************* 2244 * 2245 * 2246 * 2247 * 2248 ******************************************************************************/ 2001 2249 void SetL(int Fnum, int Knum, double L) { 2002 2250 2003 2251 Cell[Elem_GetPos(Fnum, Knum)].Elem.PL = L; 2004 2252 } 2005 2253 /******************************************************************************* 2254 * 2255 * 2256 * 2257 * 2258 ******************************************************************************/ 2006 2259 void SetL(int Fnum, double L) { 2007 int i ;2260 int i=0; 2008 2261 2009 2262 for (i = 1; i <= GetnKid(Fnum); i++) 2010 2263 Cell[Elem_GetPos(Fnum, i)].Elem.PL = L; 2011 2264 } 2012 2265 /******************************************************************************* 2266 * 2267 * 2268 * 2269 * 2270 ******************************************************************************/ 2013 2271 void SetdKpar(int Fnum, int Knum, int Order, double dk) { 2014 2272 … … 2016 2274 Mpole_SetPB(Fnum, Knum, Order); 2017 2275 } 2018 2276 /******************************************************************************* 2277 * 2278 * 2279 * 2280 * 2281 ******************************************************************************/ 2019 2282 void SetKLpar(int Fnum, int Knum, int Order, double kL) { 2020 long int loc ;2283 long int loc=0L; 2021 2284 2022 2285 if (abs(Order) > HOMmax) { … … 2033 2296 Mpole_SetPB(Fnum, Knum, Order); 2034 2297 } 2035 2298 /******************************************************************************* 2299 * 2300 * 2301 * 2302 * 2303 ******************************************************************************/ 2036 2304 void SetdKLpar(int Fnum, int Knum, int Order, double dkL) { 2037 long int loc ;2305 long int loc=0L; 2038 2306 2039 2307 loc = Elem_GetPos(Fnum, Knum); … … 2064 2332 **************************************************************/ 2065 2333 void SetdKrpar(int Fnum, int Knum, int Order, double dkrel) { 2066 long int loc ;2334 long int loc=0L; 2067 2335 2068 2336 loc = Elem_GetPos(Fnum, Knum); … … 2075 2343 Mpole_SetPB(Fnum, Knum, Order); 2076 2344 } 2077 2345 /******************************************************************************* 2346 * 2347 * 2348 * 2349 * 2350 ******************************************************************************/ 2078 2351 void Setbn(int Fnum, int order, double bn) { 2079 int i ;2352 int i=0; 2080 2353 2081 2354 for (i = 1; i <= GetnKid(Fnum); i++) 2082 2355 SetKpar(Fnum, i, order, bn); 2083 2356 } 2084 2357 /******************************************************************************* 2358 * 2359 * 2360 * 2361 * 2362 ******************************************************************************/ 2085 2363 void SetbnL(int Fnum, int order, double bnL) { 2086 int i ;2364 int i=0; 2087 2365 2088 2366 for (i = 1; i <= GetnKid(Fnum); i++) 2089 2367 SetKLpar(Fnum, i, order, bnL); 2090 2368 } 2091 2369 /******************************************************************************* 2370 * 2371 * 2372 * 2373 * 2374 ******************************************************************************/ 2092 2375 void Setdbn(int Fnum, int order, double dbn) { 2093 int i ;2376 int i=0; 2094 2377 2095 2378 for (i = 1; i <= GetnKid(Fnum); i++) 2096 2379 SetdKpar(Fnum, i, order, dbn); 2097 2380 } 2098 2381 /******************************************************************************* 2382 * 2383 * 2384 * 2385 * 2386 ******************************************************************************/ 2099 2387 void SetdbnL(int Fnum, int order, double dbnL) { 2100 int i ;2388 int i=0; 2101 2389 2102 2390 for (i = 1; i <= GetnKid(Fnum); i++) { … … 2127 2415 //void Setbnr(int Fnum, long order, double bnr) { 2128 2416 void Setbnr(int Fnum, int order, double bnr) { 2129 int i ;2417 int i=0; 2130 2418 2131 2419 for (i = 1; i <= GetnKid(Fnum); i++) 2132 2420 SetdKrpar(Fnum, i, order, bnr); 2133 2421 } 2134 2422 /******************************************************************************* 2423 * 2424 * 2425 * 2426 * 2427 ******************************************************************************/ 2135 2428 void SetbnL_sys(int Fnum, int Order, double bnL_sys) { 2136 int Knum ;2137 long int loc ;2429 int Knum=0; 2430 long int loc=0L; 2138 2431 2139 2432 for (Knum = 1; Knum <= GetnKid(Fnum); Knum++) { … … 2147 2440 } 2148 2441 } 2149 2442 /******************************************************************************* 2443 * 2444 * 2445 * 2446 * 2447 ******************************************************************************/ 2150 2448 void set_dbn_rel(const int type, const int n, const double dbn_rel) { 2151 long int j ;2152 double dbn ;2449 long int j=0L; 2450 double dbn=0.0; 2153 2451 2154 2452 printf("\n"); … … 2237 2535 return (Cell[loc].Elem.M->PBpar[Order + HOMmax]); 2238 2536 } 2239 2537 /******************************************************************************* 2538 * 2539 * 2540 * 2541 * 2542 ******************************************************************************/ 2240 2543 void SetdKLrms(int Fnum, int Order, double dkLrms) { 2241 long int Knum , loc;2544 long int Knum=0L, loc=0L; 2242 2545 2243 2546 for (Knum = 1; Knum <= GetnKid(Fnum); Knum++) { … … 2252 2555 } 2253 2556 } 2254 2557 /******************************************************************************* 2558 * 2559 * 2560 * 2561 * 2562 ******************************************************************************/ 2255 2563 void Setdkrrms(int Fnum, int Order, double dkrrms) { 2256 long int Knum , loc;2564 long int Knum=0L, loc=0L; 2257 2565 2258 2566 for (Knum = 1; Knum <= GetnKid(Fnum); Knum++) { … … 2268 2576 } 2269 2577 } 2270 2578 /******************************************************************************* 2579 * 2580 * 2581 * 2582 * 2583 ******************************************************************************/ 2271 2584 void SetKL(int Fnum, int Order) { 2272 long int Knum ;2585 long int Knum=0L; 2273 2586 2274 2587 for (Knum = 1; Knum <= GetnKid(Fnum); Knum++) 2275 2588 Mpole_SetPB(Fnum, Knum, Order); 2276 2589 } 2277 2590 /******************************************************************************* 2591 * 2592 * 2593 * 2594 * 2595 ******************************************************************************/ 2278 2596 void set_dx(const int type, const double sigma_x, const double sigma_y) { 2279 long int j ;2597 long int j=0L; 2280 2598 2281 2599 printf("\n"); … … 2293 2611 } 2294 2612 } 2295 2613 /******************************************************************************* 2614 * 2615 * 2616 * 2617 * 2618 ******************************************************************************/ 2296 2619 void SetBpmdS(int Fnum, double dxrms, double dyrms) { 2297 long int Knum, loc ;2620 long int Knum, loc=0L; 2298 2621 2299 2622 for (Knum = 1; Knum <= GetnKid(Fnum); Knum++) { … … 2321 2644 ****************************************************************************/ 2322 2645 void codstat(double *mean, double *sigma, double *xmax, long lastpos, bool all) { 2323 long i , j, n;2646 long i=0L, j=0L, n=0L; 2324 2647 Vector2 sum, sum2; 2325 double TEMP ;2648 double TEMP=0.0; 2326 2649 2327 2650 n = 0; … … 2388 2711 void CodStatBpm(double *mean, double *sigma, double *xmax, long lastpos, 2389 2712 long bpmdis[mnp]) { 2390 long i , j, m, n;2713 long i=0L, j=0L, m=0L, n=0L; 2391 2714 Vector2 sum, sum2; 2392 double TEMP ;2715 double TEMP=0.0; 2393 2716 2394 2717 m = n = 0; … … 2548 2871 ****************************************************************************/ 2549 2872 void GetMean(long n, double *x) { 2550 long i ;2873 long i=0L; 2551 2874 double mean = 0e0; 2552 2875 … … 2957 3280 const int ntrial = 40; // maximum number of trials for closed orbit 2958 3281 const double tolx = 1e-8; // numerical precision 2959 int k ;2960 int dim ; // 4D or 6D tracking2961 long lastpos ;3282 int k=0; 3283 int dim=0; // 4D or 6D tracking 3284 long lastpos=0L; 2962 3285 2963 3286 vcod = dvector(1, 6); … … 3039 3362 const int ntrial = 40; // maximum number of trials for closed orbit 3040 3363 const double tolx = 1e-10; // numerical precision 3041 int k , dim = 0;3042 long lastpos ;3364 int k=0, dim = 0; 3365 long lastpos=0L; 3043 3366 3044 3367 // initializations … … 3106 3429 3107 3430 void computeFandJS(double *x, int n, double **fjac, double *fvect) { 3108 int i , k;3431 int i=0, k=0; 3109 3432 long lastpos = 0L; 3110 3433 Vector x0, fx, fx1, fx2; … … 3178 3501 ****************************************************************************/ 3179 3502 void computeFandJ(int n, Vector &x, Matrix &fjac, Vector &fvect) { 3180 int i , k;3503 int i=0, k=0; 3181 3504 long lastpos = 0; 3182 3505 Vector x0, fx1, fx2; … … 3260 3583 3261 3584 void Newton_RaphsonS(int ntrial, double x[], int n, double tolx) { 3262 int k , i, *indx;3263 double errx , d, *bet, *fvect, **alpha;3585 int k=0, i=0, *indx; 3586 double errx=0.0, d=0.0, *bet, *fvect, **alpha; 3264 3587 3265 3588 errx = 0.0; … … 3358 3681 ****************************************************************************/ 3359 3682 int Newton_Raphson(int n, Vector &x, int ntrial, double tolx) { 3360 int k , i;3361 double errx ;3683 int k=0, i=0; 3684 double errx=0.0; 3362 3685 Vector bet, fvect; 3363 3686 Matrix alpha; … … 3401 3724 return 0; 3402 3725 } 3403 3726 /******************************************************************************* 3727 * 3728 * 3729 * 3730 * 3731 ******************************************************************************/ 3404 3732 void rm_mean(long int n, double x[]) { 3405 long int i; 3406 double mean; 3407 3408 mean = 0.0; 3733 long int i=0L; 3734 double mean=0.0; 3735 3409 3736 for (i = 0; i < n; i++) 3410 3737 mean += x[i]; -
trunk/tracy/tracy/src/prtmfile.cc
r3 r11 153 153 154 154 Purpose: 155 Print out flatfile 155 Print out flatfile; 156 print the lattice parameters in an external file. 156 157 157 158 Input: … … 181 182 Cell[i].dS[Y_], Cell[i].Elem.M->PdTpar, Cell[i].Elem.M->PdTsys 182 183 + Cell[i].Elem.M->PdTrms * Cell[i].Elem.M->PdTrnd); 183 fprintf(mfile, " %23.16e %23.16e %23.16e %23.16e %23.16e \n",184 fprintf(mfile, " %23.16e %23.16e %23.16e %23.16e %23.16e %23.16e %23.16e\n", 184 185 Cell[i].Elem.PL, Cell[i].Elem.M->Pirho, Cell[i].Elem.M->PTx1, 185 Cell[i].Elem.M->PTx2, Cell[i].Elem.M->P gap);186 Cell[i].Elem.M->PTx2, Cell[i].Elem.M->PH1,Cell[i].Elem.M->PH2,Cell[i].Elem.M->Pgap); 186 187 prtHOM(mfile, Cell[i].Elem.M->n_design, Cell[i].Elem.M->PB, 187 188 Cell[i].Elem.M->Porder); -
trunk/tracy/tracy/src/rdmfile.cc
r3 r11 217 217 if (prt) 218 218 printf("%s\n", line); 219 sscanf(line, "%lf %lf %lf %lf %lf ", &Cell[i].Elem.PL,219 sscanf(line, "%lf %lf %lf %lf %lf %lf %lf", &Cell[i].Elem.PL, 220 220 &Cell[i].Elem.M->Pirho, &Cell[i].Elem.M->PTx1, 221 &Cell[i].Elem.M->PTx2, &Cell[i].Elem.M->P gap);221 &Cell[i].Elem.M->PTx2, &Cell[i].Elem.M->PH1, &Cell[i].Elem.M->PH2, &Cell[i].Elem.M->Pgap); 222 222 if (Cell[i].Elem.M->Pirho != 0.0) 223 223 Cell[i].Elem.M->Porder = 1; -
trunk/tracy/tracy/src/read_script.cc
r3 r11 25 25 Comments: 26 26 Written by Jianfeng Zhang 03/2011 soleil 27 28 (1) 15/10/2013 by Jianfeng Zhang @ LAL 29 Fix the bugs of fgets(): 30 to read lines with arbritracy length, 31 to read the empty space at the end of the line. 32 33 Remove the rontine to move the address of "line" if the 34 contents of "line" is empty space; otherwise free() can't 35 find the orignial address of "line". 36 27 37 28 38 ****************************************************************************/ … … 30 40 /* files */ 31 41 42 char lat_file[max_str]="voidlattice"; 32 43 // girder file 33 44 char girder_file[max_str]; … … 67 78 68 79 69 char str[max_str]="voidstring", dummy[max_str]="voidstring", nextpara[max_str]="voidpara";80 char str[max_str]="voidstring", dummy[max_str]="voidstring",dummy2[max_str]="voidstring", nextpara[max_str]="voidpara"; 70 81 char in[max_str]; //temporary line with preceding white space 71 char *line; //line to store the command without preceding white space 82 char *line = NULL; //line to store the command without preceding white space 83 size_t len = 0; 84 ssize_t read; 72 85 char name[max_str]="voidname"; 73 char lat_file[max_str]="voidlattice";86 // char lat_file[max_str]="voidlattice"; 74 87 char EndName[]="void"; 75 88 76 89 FILE *inf; 77 90 const bool prt = false; // for debugging printout each line of input file … … 87 100 // Manipulation of the parameter file 88 101 strcpy(dummy, param_file_name); 89 pch = strstr (dummy,".prm"); // search for extension .prm 90 /* remove additional .prm if exist */ 91 if (pch != NULL) strncpy(pch,"\0",1); 92 93 sprintf(full_param_file_name,"%s.prm",dummy); 94 if (prt) printf("\n reading in script file: %s\n",full_param_file_name); 102 103 sprintf(full_param_file_name,"%s",dummy); 104 if (!prt) printf("\n reading in script file: %s\n",full_param_file_name); 95 105 96 106 // 97 107 inf = file_read(full_param_file_name); 98 108 if(inf == NULL){ 109 printf("read_script(): Error! Read File %s Failure!\n",full_param_file_name); 110 exit_(1); 111 } 99 112 100 113 // read parameter file, line by line 101 // while (fgets(line, max_str, inf) != NULL) { 102 while (line = fgets(in, max_str, inf)) { 103 104 /* kill preceding whitespace generated by "table" key 105 or "space" key, but leave \n 106 so we're guaranteed to have something*/ 107 while(*line == ' ' || *line == '\t') { 108 line++; 109 } 110 111 if(prt) 112 printf("cfg: %s",line); 113 114 LineNum++; 114 while ((read = getline(&line, &len, inf)) != -1) { 115 116 LineNum++; 117 if(prt){ 118 printf("Line # %ld \n",LineNum); 119 printf("Retrieved line of length %zu : \n",read); 120 cout << line << endl; 121 } 122 123 115 124 116 125 /* read the end of line symbol '\n','\r' or '\r\n' at different operation system*/ 117 if (strstr(line, "#") == NULL && strcmp(line,"\n") != 0&&118 strcmp(line,"\r") != 0 && strcmp(line,"\r\n") != 0){126 if (strstr(line, "#") == NULL && line[0] != '\n' && 127 line[0] != '\r' && strcmp(line, "\r\n") != 0 ){ 119 128 // get initial command token 120 129 sscanf(line, "%s", name); … … 251 260 strcpy(UserCommandFlag[CommNo].CommandStr,name); 252 261 } 262 //print the cooridinates using tracking at each element 263 else if (strcmp("PrintTrackElemFlag", name) == 0){ 264 sscanf(line, "%*s %s",nextpara); 265 266 if(strcmp(nextpara,"voidpara")!=0) 267 sscanf(line, "%*s %s %lf %lf %lf %lf %lf %lf %ld %ld", 268 UserCommandFlag[CommNo]._PrintTrackElem_track_file, 269 &(UserCommandFlag[CommNo]._PrintTrackElem_x), 270 &(UserCommandFlag[CommNo]._PrintTrackElem_px), 271 &(UserCommandFlag[CommNo]._PrintTrackElem_y), 272 &(UserCommandFlag[CommNo]._PrintTrackElem_py), 273 &(UserCommandFlag[CommNo]._PrintTrackElem_delta), 274 &(UserCommandFlag[CommNo]._PrintTrackElem_ctau), 275 &(UserCommandFlag[CommNo]._PrintTrackElem_nelem1), 276 &(UserCommandFlag[CommNo]._PrintTrackElem_nelem2)); 277 strcpy(UserCommandFlag[CommNo].CommandStr,name); 278 } 253 279 //print close orbit(COD) flag 254 280 else if (strcmp("PrintGirderFlag", name) == 0){ … … 267 293 else if (strcmp("FmapFlag", name) == 0){ 268 294 strcpy(dummy, ""); 269 295 strcpy(dummy2,""); 270 296 sscanf(line, "%*s %s",nextpara); 271 297 298 //if no definition of loss flag in the lattice file, then "dummy2" is empty string. 272 299 if(strcmp(nextpara,"voidpara")!=0) 273 sscanf(line, "%*s %s %ld %ld %ld %lf %lf %lf %s ",300 sscanf(line, "%*s %s %ld %ld %ld %lf %lf %lf %s %s", 274 301 UserCommandFlag[CommNo]._FmapFlag_fmap_file, 275 302 &(UserCommandFlag[CommNo]._FmapFlag_nxpoint), … … 279 306 &(UserCommandFlag[CommNo]._FmapFlag_ymax), 280 307 &(UserCommandFlag[CommNo]._FmapFlag_delta), 281 dummy );308 dummy,dummy2); 282 309 283 310 if(strcmp(dummy, "true") == 0) … … 286 313 UserCommandFlag[CommNo]._FmapFlag_diffusion = false; 287 314 315 if(strcmp(dummy2, "true") == 0) 316 UserCommandFlag[CommNo]._FmapFlag_printloss = true; 317 else if(strcmp(dummy2, "false") == 0) 318 UserCommandFlag[CommNo]._FmapFlag_printloss = false; 319 else 320 UserCommandFlag[CommNo]._FmapFlag_printloss = false; 321 322 323 //cout << "debug: " << line << endl; 324 //cout << "dummy2 = " << dummy2 << " lossflag = " << UserCommandFlag[CommNo]._FmapFlag_printloss << endl; 325 288 326 // FmapFlag = true; 289 327 strcpy(UserCommandFlag[CommNo].CommandStr,name); … … 292 330 else if (strcmp("FmapdpFlag", name) == 0){ 293 331 strcpy(dummy, ""); 332 strcpy(dummy2,""); 294 333 sscanf(line, "%*s %s",nextpara); 295 334 296 335 if(strcmp(nextpara,"voidpara")!=0) 297 sscanf(line, "%*s %s %ld %ld %ld %lf %lf %lf %s ",336 sscanf(line, "%*s %s %ld %ld %ld %lf %lf %lf %s %s", 298 337 UserCommandFlag[CommNo]._FmapdpFlag_fmapdp_file, 299 338 &(UserCommandFlag[CommNo]._FmapdpFlag_nxpoint), … … 303 342 &(UserCommandFlag[CommNo]._FmapdpFlag_emax), 304 343 &(UserCommandFlag[CommNo]._FmapdpFlag_z), 305 dummy );344 dummy,dummy2); 306 345 307 346 if(strcmp(dummy, "true") == 0) … … 310 349 UserCommandFlag[CommNo]._FmapdpFlag_diffusion = false; 311 350 351 if(strcmp(dummy2, "true") == 0) 352 UserCommandFlag[CommNo]._FmapdpFlag_printloss = true; 353 else if(strcmp(dummy2, "false") == 0) 354 UserCommandFlag[CommNo]._FmapdpFlag_printloss = false; 355 else 356 UserCommandFlag[CommNo]._FmapdpFlag_printloss = false; 357 358 359 cout << "debug: " << line << endl; 360 cout << "dummy2 = " << dummy2 << " lossflag = " << UserCommandFlag[CommNo]._FmapdpFlag_printloss << endl; 361 312 362 // FmapdpFlag = true; 313 363 strcpy(UserCommandFlag[CommNo].CommandStr,name); … … 535 585 exit_(1); 536 586 } 537 587 } 538 588 /* continue read in the line */ 539 589 else 540 continue; 541 } 590 continue; 591 }//end of while loop 592 593 free(line); 594 542 595 fclose(inf); 543 596 } -
trunk/tracy/tracy/src/soleilcommon.cc
r9 r11 81 81 void Read_Lattice(char *fic) 82 82 { 83 char fic_maille[S_SIZE + 4] = ""; 84 char fic_erreur[S_SIZE + 4] = ""; 83 char fic_maille[S_SIZE + 4] = ""; //lattice file 84 char fic_erreur[S_SIZE + 4] = ""; //error file 85 85 86 bool status; 86 87 bool chroma = true; … … 95 96 strcpy(fic_maille, fic); 96 97 strcpy(fic_erreur, fic); 97 98 98 99 /* automatic generation of filenames for lattice and error */ 99 100 strcat(fic_maille, ".lat"); 100 101 strcat(fic_erreur, ".lax"); 101 102 102 103 /* Initialisation de Tracy */ 103 104 104 t2init(); 105 105 … … 153 153 /*check whether the RF cavity hormonic number is defined or not*/ 154 154 if(Cell[Elem_GetPos(globval.cav, 1)].Elem.C->Ph == 0){ 155 printf("soleilcommon(): Error!!! Define RF cavityharmonic number in the lattice! \n"156 "Because this parameter will be used to calculate (to be checked...)?????\n");155 printf("soleilcommon(): Error!!! Please define RF harmonic number in the lattice! \n" 156 "Because this parameter will be used to calculate stable phase for positive / negative momentum compaction factor\n"); 157 157 exit_(1); 158 158 } 159 159 160 160 /* Defines global variables for Tracy code */ 161 globval.H_exact = false; // Small Ring Hamiltonian162 globval.quad_fringe = false; // quadrupole fringe fields on/off161 globval.H_exact = false; // Small Ring Hamiltonian 162 globval.quad_fringe = true; // quadrupole fringe fields on/off 163 163 globval.EPU = false; // Elliptically Polarizing Undulator 164 164 globval.IBS = false; /* diffusion on/off */ … … 181 181 // Cell_SetdP(dP); /* added for correcting BUG if non convergence: compute on momentum linear matrices */ 182 182 } 183 184 183 else 185 184 { // for transfer lines … … 218 217 TransTwiss(alpha, beta, eta, etap, codvect); 219 218 } 220 } 221 /* SOLEIL print out lattice functions, with all the optical information for the lattice with design values */ 222 printlatt("linlat.out"); 219 }//finish read the transfer line 220 223 221 } 224 222 -
trunk/tracy/tracy/src/soleillib.cc
r10 r11 25 25 none 26 26 27 27 28 Global variables: 28 29 trace … … 37 38 void Get_Disp_dp(void) 38 39 { 39 long i ;40 long i=0L; 40 41 // long lastpos = 0; 41 42 const char nomfic[] = "dispersion.out"; … … 95 96 { 96 97 Vector x1; /* tracking coordinates */ 97 long i = 0L, k = 0L, imax = 50 ;98 long i = 0L, k = 0L, imax = 50L; 98 99 FILE * outf; 99 100 double dP = 0.0, dP20 = 0.0, dpmax = 0.06; 100 101 Vector2 amp = {0.0, 0.0}, H = {0.0, 0.0}; 101 102 const char nomfic[] = "amp_ind.out"; 102 long lastpos = 0 ;103 long lastpos = 0L; 103 104 CellType Celldebut, Cell; 104 105 Vector codvector[Cell_nLocMax]; … … 200 201 { 201 202 CellType Cell; 202 long i ;203 long i=0L; 203 204 Vector2 H; 204 205 … … 251 252 { 252 253 CellType Cell; 253 long i ;254 long i=0L; 254 255 long lastpos = 1L; 255 256 Vector2 H; … … 461 462 See also LoadApers in nsrl-ii.cc 462 463 J.Zhang 07/10 soleil 464 465 (1) 15/10/2013 Jianfeng Zhang @ LAL 466 Replace fgets() by getline() to fix the bug 467 to read arbritrary line length. 463 468 ****************************************************************************/ 464 469 void ReadCh(const char *AperFile) 465 470 { 466 char in[max_str], Name1[max_str], Name2[max_str]; 467 char *line; 471 char Name1[max_str], Name2[max_str]; 472 char *line = NULL; 473 size_t len = 0; 474 ssize_t read; 468 475 int Fnum1=0, Fnum2=0, Kidnum1=0, Kidnum2=0, k1=0, k2=0; 469 476 int i=0, j=0,LineNum=0; … … 473 480 474 481 fp = file_read(AperFile); 475 476 printf("\n"); 477 printf("Loading and setting vacuum apertures to lattice elements...\n"); 478 479 while (line=fgets(in, max_str, fp)) { 480 /* kill preceding whitespace generated by "table" key 481 or "space" key, but leave \n 482 so we're guaranteed to have something*/ 483 while(*line == ' ' || *line == '\t') { 484 line++; 485 } 486 /* count the line number that has been read*/ 487 LineNum++; 482 if(fp == NULL){ 483 printf("ReadCh(): Error! Failure to read file %s\n", AperFile); 484 exit_(1); 485 } 486 487 printf("\n Loading and setting vacuum apertures to lattice elements...\n"); 488 489 while ((read=getline(&line, &len, fp)) != -1) { 490 491 /* count the line number that has been read*/ 492 LineNum++; 493 if(!prt){ 494 printf("Line # %ld : \n",LineNum); 495 printf("Retrieved line of length %zu :\n",read); 496 printf("%s\n",line); 497 } 498 488 499 /* NOT read comment line or blank line with the end of line symbol '\n','\r' or '\r\n'*/ 489 if (strstr(line, "#") == NULL && strcmp(line,"\n") != 0&&490 strcmp(line,"\r") != 0&&strcmp(line,"\r\n") != 0)500 if (strstr(line, "#") == NULL && line[0] != '\n' && 501 line[0] != '\r' &&strcmp(line,"\r\n") != 0) 491 502 /* read the aperture setting */ 492 503 { … … 559 570 // printf("%s", line); 560 571 } 572 free(line); 561 573 fclose(fp); 562 574 // turn on the global flag for CheckAmpl() … … 605 617 bool lostF = true; /* Lost particle Flag */ 606 618 Vector x1; /* tracking coordinates */ 607 long i ;619 long i=0L; 608 620 Vector2 aperture; 609 621 aperture[0] = 1e0; aperture[1] = 1e0; … … 799 811 #undef nterm 800 812 801 813 /******************************************************************************* 814 * 815 * 816 * 817 * 818 ******************************************************************************/ 802 819 double get_D(const double df_x, const double df_y) 803 820 { 804 double D ;821 double D=0.0; 805 822 806 823 const double D_min = -2.0, D_max = -10.0; … … 845 862 846 863 Output: 847 status true if stable864 status2 true if stable 848 865 false otherwise 849 866 … … 878 895 int nb_freq[2] = {0, 0}; 879 896 long nturn = Nbtour; 880 bool status = true;897 bool status2 = true; 881 898 struct tm *newtime; 882 899 … … 929 946 // z = z0 + sgn(j)*sqrt((double)abs(j))*zstep; 930 947 // tracking around closed orbit 931 Trac_Simple4DCOD(x,xp,z,zp,energy,ctau,nturn,Tab,&status );932 if (status ) { // if trajectory is stable948 Trac_Simple4DCOD(x,xp,z,zp,energy,ctau,nturn,Tab,&status2); 949 if (status2) { // if trajectory is stable 933 950 // gets frequency vectors 934 951 Get_NAFF(NTERM2, Nbtour, Tab, fx, fz, nb_freq); … … 976 993 #undef NTERM2 977 994 995 /****************************************************************************/ 996 /* void fmap(const char *FmapFile, long Nbx, long Nbz, long Nbtour, double xmax, double zmax, 997 double energy, bool diffusion, bool loss) 998 999 Purpose: 1000 1001 1002 Compute a frequency map of Nbx x Nbz points 1003 For each set of initial conditions the particle is tracked over 1004 Nbtour for an energy offset dp 1005 1006 Frequency map is based on fixed beam energy, trace x versus z, 1007 or, tracking transverse dynamic aperture for fixed momentum 1008 (usually, on-momentum) particle. 1009 1010 The stepsize follows a square root law 1011 1012 Results in fmap.out 1013 1014 Input: 1015 FmapFile file to save calculated frequency map analysis 1016 Nbx horizontal step number 1017 Nby vertical step number 1018 xmax horizontal maximum amplitude 1019 zmax vertical maximum amplitude 1020 Nbtour number of turn for tracking 1021 energy particle energy offset 1022 diffusion flag to calculate tune diffusion/ tune 1023 difference between the first Nbtour and last Nbtour 1024 matlab set file print format for matlab post-process; specific for nsrl-ii 1025 1026 Output: 1027 status2 true if stable 1028 false otherwise 1029 1030 Return: 1031 none 1032 1033 Global variables: 1034 none 1035 1036 Specific functions: 1037 Trac_Simple, Get_NAFF 1038 1039 Comments: 1040 15/10/03 run for the diffusion: nasty patch for retrieving the closed orbit 1041 16/02/03 patch removed 1042 19/07/11 add interface of file defined by user which is used to save calculated 1043 frequency map analysis 1044 1045 11/06/2013 Modified by Jianfeng Zhang @ LAL 1046 The same as famp(onst char *FmapFile, long Nbx, long Nbz, long Nbtour, double xmax, double zmax, 1047 double energy, bool diffusion); but with a flag to print/not print the final information of 1048 the particle; if the final turn is not the "Nbtour", then the particle is lost. 1049 ****************************************************************************/ 1050 #define NTERM2 10 1051 void fmap(const char *FmapFile, long Nbx, long Nbz, long Nbtour, double xmax, double zmax, 1052 double energy, bool diffusion, bool printloss) 1053 { 1054 FILE * outf; //file with the tunes at the grid point 1055 FILE *outf_loss; //file with the information of the lost particle 1056 long i = 0L, j = 0L; 1057 double Tab[DIM][NTURN], Tab0[DIM][NTURN]; 1058 double fx[NTERM2], fz[NTERM2], fx2[NTERM2], fz2[NTERM2], dfx=0.0, dfz=0.0; 1059 double x = 0.0, xp = 0.0, z = 0.0, zp = 0.0; 1060 double x0 = 1e-6, xp0 = 0.0, z0 = 1e-6, zp0 = 0.0; 1061 const double ctau = 0.0; 1062 double xstep = 0.0, zstep = 0.0; 1063 double nux1 = 0.0, nuz1 = 0.0, nux2 = 0.0, nuz2 = 0.0; 1064 int nb_freq[2] = {0, 0}; 1065 long nturn = Nbtour; 1066 bool status2 = true; 1067 1068 struct tm *newtime; 1069 1070 //variables of the returned the tracked particle 1071 long lastn = 0; 1072 long lastpos = 1; 1073 ss_vect<double> x1; 1074 1075 1076 //if(loss){ 1077 char FmapLossFile[S_SIZE+5]=" "; 1078 strcpy(FmapLossFile,FmapFile); 1079 strcat(FmapLossFile,".loss"); 1080 //} 1081 1082 /* Get time and date */ 1083 time_t aclock; 1084 time(&aclock); /* Get time in seconds */ 1085 newtime = localtime(&aclock); /* Convert time to struct */ 1086 1087 if (trace) printf("Entering fmap ... results in %s\n\n",FmapFile); 1088 1089 /* Opening file */ 1090 if ((outf = fopen(FmapFile, "w")) == NULL) { 1091 fprintf(stdout, "fmap: error while opening file %s\n", FmapFile); 1092 exit_(1); 1093 } 1094 1095 1096 fprintf(outf,"# TRACY III -- %s -- %s \n", FmapFile, asctime2(newtime)); 1097 fprintf(outf,"# nu = f(x) \n"); 1098 // fprintf(outf,"# x[mm] z[mm] fx fz" 1099 // " dfx dfz D=log_10(sqrt(df_x^2+df_y^2))\n"); 1100 // 1101 fprintf(outf,"# x[m] z[m] fx fz" 1102 " dfx dfz\n"); 1103 1104 1105 //file with lost particle information 1106 if(printloss){ 1107 1108 if ((outf_loss = fopen(FmapLossFile, "w")) == NULL) { 1109 fprintf(stdout, "fmap: error while opening file %s\n", FmapLossFile); 1110 exit_(1); 1111 } 1112 1113 fprintf(outf_loss,"# TRACY III -- %s -- %s \n", FmapLossFile, asctime2(newtime)); 1114 fprintf(outf_loss,"# information of the lost particle: " 1115 " lostp = 0 (no particle lost /1(horizontal) /2(vertical) /3(longitudinal) plane) \n"); 1116 1117 fprintf(outf_loss,"# x[m] z[m] Nturn lostp S[m] x[m]" 1118 " xp[rad] z[m] zp[rad] delta ctau\n"); 1119 } 1120 1121 if ((Nbx < 1) || (Nbz < 1)) 1122 fprintf(stdout,"fmap: Error Nbx=%ld Nbz=%ld\n",Nbx,Nbz); 1123 1124 // steps in both planes 1125 xstep = xmax/sqrt((double)Nbx); 1126 zstep = zmax/sqrt((double)Nbz); 1127 1128 // double number of turn if diffusion to compute 1129 if (diffusion) nturn = 2*Nbtour; 1130 1131 // px and pz zeroed 1132 xp = xp0; 1133 zp = zp0; 1134 1135 // Tracking part + NAFF 1136 for (i = 0; i <= Nbx; i++) { 1137 x = x0 + sqrt((double)i)*xstep; 1138 // for (i = -Nbx; i <= Nbx; i++) { 1139 // x = x0 + sgn(i)*sqrt((double)abs(i))*xstep; 1140 // if (!matlab) fprintf(outf,"\n"); 1141 fprintf(stdout,"\n"); 1142 for (j = 0; j<= Nbz; j++) { 1143 z = z0 + sqrt((double)j)*zstep; 1144 // for (j = -Nbz; j<= Nbz; j++) { 1145 // z = z0 + sgn(j)*sqrt((double)abs(j))*zstep; 1146 1147 //print out the lost information 1148 if(printloss) 1149 Trac_Simple4DCOD(x,xp,z,zp,energy,ctau,nturn,Tab,lastn, lastpos, x1, &status2); 1150 else 1151 // tracking around closed orbit 1152 Trac_Simple4DCOD(x,xp,z,zp,energy,ctau,nturn,Tab,&status2); 1153 1154 if (status2) { // if trajectory is stable 1155 // gets frequency vectors 1156 Get_NAFF(NTERM2, Nbtour, Tab, fx, fz, nb_freq); 1157 Get_freq(fx,fz,&nux1,&nuz1); // gets nux and nuz 1158 if (diffusion) { // diffusion 1159 // shift data for second round NAFF 1160 Get_Tabshift(Tab,Tab0,Nbtour,Nbtour); 1161 // gets frequency vectors 1162 Get_NAFF(NTERM2, Nbtour, Tab0, fx2, fz2, nb_freq); 1163 Get_freq(fx2,fz2,&nux2,&nuz2); // gets nux and nuz 1164 } 1165 } // unstable trajectory 1166 else { //zeroing output 1167 nux1 = 0.0; nuz1 = 0.0; 1168 nux2 = 0.0; nuz2 = 0.0; 1169 } 1170 1171 // printout value 1172 if (!diffusion){ 1173 // fprintf(outf,"%14.6e %14.6e %14.6e %14.6e\n", 1174 // 1e3*x, 1e3*z, nux1, nuz1); 1175 // fprintf(stdout,"%14.6e %14.6e %14.6e %14.6e\n", 1176 // 1e3*x, 1e3*z, nux1, nuz1); 1177 fprintf(outf,"%10.6e %10.6e %10.6e %10.6e\n", 1178 x, z, nux1, nuz1); 1179 fprintf(stdout,"%14.6e %14.6e %14.6e %14.6e\n", 1180 x, z, nux1, nuz1); 1181 } 1182 else { 1183 dfx = nux1 - nux2; dfz = nuz1 - nuz2; 1184 fprintf(outf,"%10.6e %10.6e %10.6e %10.6e %10.6e %10.6e\n", 1185 x, z, nux1, nuz1, dfx, dfz); 1186 fprintf(stdout,"%14.6e %14.6e %14.6e %14.6e %14.6e %14.6e\n", 1187 x, z, nux1, nuz1, dfx, dfz); 1188 } 1189 1190 //print out the information of the lost particle 1191 if(printloss) 1192 fprintf(outf_loss, "%6.3e %6.3e %8ld %3d %+12.6f %+10.6f %+10.6f %+10.6f %+10.6f %+10.6f %+10.6f \n", 1193 x, z, lastn,status.lossplane, Cell[lastpos].S, x1[0],x1[1], 1194 x1[2], x1[3], x1[4], x1[5]); 1195 1196 } 1197 } 1198 1199 fclose(outf); 1200 if(printloss) 1201 fclose(outf_loss); 1202 } 1203 #undef NTERM2 1204 978 1205 979 1206 /****************************************************************************/ … … 1026 1253 #define NTERM2 10 1027 1254 void fmap_p(const char *FmapFile_p, long Nbx, long Nbz, long Nbtour, double xmax, 1028 double zmax, double energy, bool diffusion, int numprocs, int myid)1255 double zmax, double energy, bool diffusion, bool printloss, int numprocs, int myid) 1029 1256 { 1030 1257 FILE * outf; 1258 FILE *outf_loss; //file with the information of the lost particle 1031 1259 long i = 0L, j = 0L; 1032 1260 double Tab[DIM][NTURN], Tab0[DIM][NTURN]; 1033 double fx[NTERM2], fz[NTERM2], fx2[NTERM2], fz2[NTERM2], dfx , dfz;1261 double fx[NTERM2], fz[NTERM2], fx2[NTERM2], fz2[NTERM2], dfx=0.0, dfz=0.0; 1034 1262 double x = 0.0, xp = 0.0, z = 0.0, zp = 0.0; 1035 1263 double x0 = 1e-6, xp0 = 0.0, z0 = 1e-6, zp0 = 0.0; … … 1039 1267 int nb_freq[2] = {0, 0}; 1040 1268 long nturn = Nbtour; 1041 bool status = true;1269 bool status2 = true; 1042 1270 struct tm *newtime; 1043 1271 … … 1046 1274 strcat(FmapFile,FmapFile_p); 1047 1275 printf("%s\n",FmapFile); 1276 1277 //variables of the returned the tracked particle 1278 long lastn = 0; 1279 long lastpos = 1; 1280 ss_vect<double> x1; 1281 1282 char FmapLossFile[S_SIZE+5]=" "; 1283 strcpy(FmapLossFile,FmapFile); 1284 strcat(FmapLossFile,".loss"); 1285 1048 1286 1049 1287 /* Get time and date */ … … 1061 1299 } 1062 1300 1301 //file with lost particle information 1302 if(printloss){ 1303 if ((outf_loss = fopen(FmapLossFile, "w")) == NULL) { 1304 fprintf(stdout, "fmap: error while opening file %s\n", FmapLossFile); 1305 exit_(1); 1306 } 1307 } 1308 1063 1309 if(myid==0) 1064 1310 { … … 1066 1312 fprintf(outf,"# nu = f(x) \n"); 1067 1313 fprintf(outf,"# x[m] z[m] fx fz dfx dfz\n"); 1068 } 1314 1315 if(printloss){ 1316 fprintf(outf_loss,"# TRACY III -- %s -- %s \n", FmapLossFile, asctime2(newtime)); 1317 fprintf(outf_loss,"# information of the lost particle: " 1318 " lostp = 0 (no particle lost /1(horizontal) /2(vertical) /3(longitudinal) plane) \n"); 1319 1320 fprintf(outf_loss,"# x[m] z[m] Nturn lostp S[m] x[m]" 1321 " xp[rad] z[m] zp[rad] delta ctau\n"); 1322 } 1323 } 1069 1324 1070 1325 if ((Nbx < 1) || (Nbz < 1)) … … 1115 1370 1116 1371 // tracking around closed orbit 1117 Trac_Simple4DCOD(x,xp,z,zp,energy,ctau,nturn,Tab,&status); 1118 if (status) // if trajectory is stable 1372 if(printloss) 1373 Trac_Simple4DCOD(x,xp,z,zp,energy,ctau,nturn,Tab,lastn, lastpos, x1, &status2); 1374 else 1375 Trac_Simple4DCOD(x,xp,z,zp,energy,ctau,nturn,Tab,&status2); 1376 1377 1378 if (status2) // if trajectory is stable 1119 1379 { 1120 1380 // gets frequency vectors … … 1150 1410 fprintf(stdout,"%14.6e %14.6e %14.6e %14.6e %14.6e %14.6e\n", x, z, nux1, nuz1, dfx, dfz); 1151 1411 } 1412 1413 //print out the information of the lost particle 1414 if(printloss) 1415 fprintf(outf_loss, "%6.3e %6.3e %8ld %3d %+12.6f %+10.6f %+10.6f %+10.6f %+10.6f %+10.6f %+10.6f \n", 1416 x, z, lastn,status.lossplane, Cell[lastpos].S, x1[0],x1[1], 1417 x1[2], x1[3], x1[4], x1[5]); 1152 1418 } 1153 1419 } 1154 1420 1155 1421 fclose(outf); 1422 1423 if(printloss) 1424 fclose(outf_loss); 1425 1156 1426 } 1157 1427 #undef NTERM2 … … 1187 1457 matlab set file print format for matlab post-process; specific for nsrl-ii 1188 1458 Output: 1189 status true if stable1459 status2 true if stable 1190 1460 false otherwise 1191 1461 … … 1204 1474 is negative for negative enrgy offset since this is true for the cod 1205 1475 19/07/11 add features to save calculated fmapdp in the user defined file 1476 1477 18/06/2013 by Jianfeng Zhang @ LAL 1478 1479 Add bool flag to print out the last information of the tracked particle 1206 1480 ****************************************************************************/ 1207 1481 #define NTERM2 10 1208 1482 void fmapdp(const char *FmapdpFile, long Nbx, long Nbe, long Nbtour, double xmax, double emax, 1209 double z, bool diffusion )1483 double z, bool diffusion, bool printloss) 1210 1484 { 1211 1485 FILE * outf; 1486 FILE *outf_loss; //file with the information of the lost particle 1212 1487 long i = 0L, j = 0L; 1213 1488 double Tab[DIM][NTURN], Tab0[DIM][NTURN]; 1214 double fx[NTERM2], fz[NTERM2], fx2[NTERM2], fz2[NTERM2], dfx , dfz;1489 double fx[NTERM2], fz[NTERM2], fx2[NTERM2], fz2[NTERM2], dfx=0.0, dfz=0.0; 1215 1490 double x = 0.0, xp = 0.0, zp = 0.0, dp = 0.0, ctau = 0.0; 1216 1491 double x0 = 1e-6, xp0 = 0.0, zp0 = 0.0; … … 1220 1495 int nb_freq[2] = {0, 0}; 1221 1496 long nturn = Nbtour; 1222 bool status =true;1497 bool status2=true; 1223 1498 struct tm *newtime; 1499 1500 //variables of the returned the tracked particle 1501 long lastn = 0; 1502 long lastpos = 1; 1503 ss_vect<double> x1; 1504 1505 char FmapdpLossFile[S_SIZE+5]=" "; 1506 strcpy(FmapdpLossFile,FmapdpFile); 1507 strcat(FmapdpLossFile,".loss"); 1224 1508 1225 1509 /* Get time and date */ … … 1230 1514 if (diffusion && globval.Cavity_on == false) nturn = 2*Nbtour; 1231 1515 1232 if (trace) printf("Entering fmap ... results in %s\n\n",FmapdpFile);1516 if (trace) printf("Entering fmapdp ... results in %s\n\n",FmapdpFile); 1233 1517 1234 1518 /* Opening file */ … … 1243 1527 fprintf(outf,"# dp[m] x[m] fx fz dfx dfz\n"); 1244 1528 1529 1530 //file with lost particle information 1531 if(printloss){ 1532 1533 if ((outf_loss = fopen(FmapdpLossFile, "w")) == NULL) { 1534 fprintf(stdout, "fmapdp: error while opening file %s\n", FmapdpLossFile); 1535 exit_(1); 1536 } 1537 1538 fprintf(outf_loss,"# TRACY III -- %s -- %s \n", FmapdpLossFile, asctime2(newtime)); 1539 fprintf(outf_loss,"# information of the lost particle: " 1540 " lostp = 0 (no particle lost /1(horizontal) /2(vertical) /3(longitudinal) plane) \n"); 1541 1542 fprintf(outf_loss,"# dp x[m] Nturn lostp S[m] x[m]" 1543 " xp[rad] z[m] zp[rad] delta ctau\n"); 1544 } 1545 1245 1546 if ((Nbx <= 1) || (Nbe <= 1)) 1246 1547 fprintf(stdout,"fmapdp: Error Nbx=%ld Nbe=%ld\n",Nbx,Nbe); … … 1265 1566 diffusion = false; 1266 1567 } 1267 else 1568 else{ 1268 1569 // x = x0 + sgn(j)*sqrt((double)abs(j))*xstep; 1269 1570 x = x0 + sqrt((double)j)*xstep; 1270 Trac_Simple4DCOD(x,xp,z,zp,dp,ctau,nturn,Tab,&status); 1271 if (status) { 1571 } 1572 1573 if(printloss) 1574 Trac_Simple4DCOD(x,xp,z,zp,dp,ctau,nturn,Tab,lastn, lastpos, x1, &status2); 1575 else 1576 Trac_Simple4DCOD(x,xp,z,zp,dp,ctau,nturn,Tab,&status2); 1577 1578 if (status2) { 1272 1579 Get_NAFF(NTERM2, Nbtour, Tab, fx, fz, nb_freq); 1273 1580 Get_freq(fx,fz,&nux1,&nuz1); // gets nux and nuz … … 1303 1610 dp, x, nux1, nuz2, dfx, dfz); 1304 1611 } 1612 1613 if(printloss) 1614 fprintf(outf_loss," %-+8.3f %-+8.3f %-8ld %2d %+12.3f %+10.6f %+10.6f %+10.6f %+10.6f %+10.6f %+10.6f \n", 1615 dp, x, lastn,status.lossplane, Cell[lastpos].S, x1[0],x1[1], x1[2], x1[3], x1[4], x1[5]); 1616 1305 1617 } 1306 1618 } 1307 1619 1308 1620 fclose(outf); 1621 1622 if(printloss) 1623 fclose(outf_loss); 1309 1624 } 1310 1625 #undef NTERM2 … … 1341 1656 1342 1657 Output: 1343 status true if stable1658 status2 true if stable 1344 1659 false otherwise 1345 1660 … … 1356 1671 14/11/2011 add features to parallel calculate fmapdp. 1357 1672 Merged with the version written by Mao-sen Qiu at Taiwan light source. 1673 1674 18/06/2013 by Jianfeng Zhang @ LAL 1675 Add bool flag to print out the last information of the tracked particle 1358 1676 ****************************************************************************/ 1359 1677 #define NTERM2 10 1360 1678 void fmapdp_p(const char *FmapdpFile_p, long Nbx, long Nbe, long Nbtour, double xmax, 1361 double emax, double z, bool diffusion, int numprocs, int myid)1679 double emax, double z, bool diffusion, bool printloss, int numprocs, int myid) 1362 1680 { 1363 1681 FILE * outf; 1682 FILE *outf_loss; //file with the information of the lost particle 1364 1683 long i = 0L, j = 0L; 1365 1684 double Tab[DIM][NTURN], Tab0[DIM][NTURN]; 1366 double fx[NTERM2], fz[NTERM2], fx2[NTERM2], fz2[NTERM2], dfx , dfz;1685 double fx[NTERM2], fz[NTERM2], fx2[NTERM2], fz2[NTERM2], dfx=0.0, dfz=0.0; 1367 1686 double x = 0.0, xp = 0.0, zp = 0.0, dp = 0.0, ctau = 0.0; 1368 1687 double x0 = 1e-6, xp0 = 0.0, zp0 = 0.0; … … 1372 1691 int nb_freq[2] = {0, 0}; 1373 1692 long nturn = Nbtour; 1374 bool status =true;1693 bool status2=true; 1375 1694 struct tm *newtime; 1376 1695 … … 1380 1699 printf("%s\n",FmapdpFile); 1381 1700 1701 //variables of the returned the tracked particle 1702 long lastn = 0; 1703 long lastpos = 1; 1704 ss_vect<double> x1; 1705 1706 char FmapdpLossFile[S_SIZE+5]=" "; 1707 strcpy(FmapdpLossFile,FmapdpFile); 1708 strcat(FmapdpLossFile,".loss"); 1709 1382 1710 /* Get time and date */ 1383 1711 time_t aclock; … … 1393 1721 fprintf(stdout, "fmapdp: error while opening file %s\n", FmapdpFile); 1394 1722 exit_(1); 1723 } 1724 1725 if(printloss){ 1726 if ((outf_loss = fopen(FmapdpLossFile, "w")) == NULL) { 1727 fprintf(stdout, "fmapdp: error while opening file %s\n", FmapdpLossFile); 1728 exit_(1); 1729 } 1395 1730 } 1396 1731 … … 1401 1736 // fprintf(outf,"# dp[%%] x[mm] fx fz dfx dfz\n"); 1402 1737 fprintf(outf,"# dp[m] x[m] fx fz dfx dfz\n"); 1403 } 1738 1739 1740 if(printloss){ 1741 fprintf(outf_loss,"# TRACY III -- %s -- %s \n", FmapdpLossFile, asctime2(newtime)); 1742 fprintf(outf_loss,"# information of the lost particle: " 1743 " lostp = 0 (no particle lost /1(horizontal) /2(vertical) /3(longitudinal) plane) \n"); 1744 1745 fprintf(outf_loss,"# dp x[m] Nturn lostp S[m] x[m]" 1746 " xp[rad] z[m] zp[rad] delta ctau\n"); 1747 } 1748 } 1404 1749 1405 1750 if ((Nbx <= 1) || (Nbe <= 1)) … … 1451 1796 diffusion = false; 1452 1797 } 1453 else 1798 else{ 1454 1799 // x = x0 + sgn(j)*sqrt((double)abs(j))*xstep; 1455 1800 x = x0 + sqrt((double)j)*xstep; 1456 Trac_Simple4DCOD(x,xp,z,zp,dp,ctau,nturn,Tab,&status); 1457 if (status) { 1801 } 1802 1803 if(printloss) 1804 Trac_Simple4DCOD(x,xp,z,zp,dp,ctau,nturn,Tab,lastn, lastpos, x1, &status2); 1805 else 1806 Trac_Simple4DCOD(x,xp,z,zp,dp,ctau,nturn,Tab,&status2); 1807 1808 if (status2) { 1458 1809 Get_NAFF(NTERM2, Nbtour, Tab, fx, fz, nb_freq); 1459 1810 Get_freq(fx,fz,&nux1,&nuz1); // gets nux and nuz … … 1489 1840 dp, x, nux1, nuz2, dfx, dfz); 1490 1841 } 1842 1843 if(printloss) 1844 fprintf(outf_loss," %-+8.3f %-+8.3f %-8ld %2d %+12.3f %+10.6f %+10.6f %+10.6f %+10.6f %+10.6f %+10.6f \n", 1845 dp, x, lastn,status.lossplane, Cell[lastpos].S, x1[0],x1[1], x1[2], x1[3], x1[4], x1[5]); 1846 1491 1847 } 1492 1848 } 1493 1849 1494 1850 fclose(outf); 1851 1852 if(printloss) 1853 fclose(outf_loss); 1495 1854 } 1496 1855 #undef NTERM2 … … 1538 1897 double nux1 = 0.0, nuz1 = 0.0; 1539 1898 int nb_freq[2] = {0, 0}; 1540 bool status = true;1899 bool status2 = true; 1541 1900 struct tm *newtime; 1542 1901 … … 1570 1929 ctau = ctau0; 1571 1930 1572 Trac_Simple4DCOD(x,xp,z,zp,dp,ctau,Nbtour,Tab,&status ); // tracking around closed orbit1573 if (status ) {1931 Trac_Simple4DCOD(x,xp,z,zp,dp,ctau,Nbtour,Tab,&status2); // tracking around closed orbit 1932 if (status2) { 1574 1933 Get_NAFF(NTERM, Nbtour, Tab, fx, fz, nb_freq); // get frequency vectors 1575 1934 Get_freq(fx,fz,&nux1,&nuz1); // gets nux and nuz … … 1577 1936 else { 1578 1937 nux1 = 0.0; nuz1 = 0.0; 1579 status = true;1938 status2 = true; 1580 1939 } 1581 1940 … … 1632 1991 FILE *outf; 1633 1992 const char *fic = phasefile; 1634 int i ;1635 bool status ;1993 int i=0; 1994 bool status2=false; 1636 1995 struct tm *newtime; 1637 1996 … … 1666 2025 } 1667 2026 1668 Trac_Simple6DCOD(x,xp,y,yp,energy,ctau,Nbtour,Tab,&status );2027 Trac_Simple6DCOD(x,xp,y,yp,energy,ctau,Nbtour,Tab,&status2); 1669 2028 1670 2029 for (i = 0; i < Nbtour; i++) { … … 1672 2031 Tab[0][i],Tab[1][i],Tab[2][i],Tab[3][i],Tab[4][i],Tab[5][i]); 1673 2032 } 1674 // cout << "status is: " << status << endl;2033 // cout << "status is: " << status2 << endl; 1675 2034 fclose(outf); 1676 2035 } … … 1710 2069 FILE *outf; 1711 2070 const char *fic="phasepoly.out"; 1712 long lastpos = 0 ,lastn = 0;1713 int i ,j;1714 double x , z, px, pz, delta, ctau;2071 long lastpos = 0L,lastn = 0L; 2072 int i=0,j=0; 2073 double x=0.0, z=0.0, px=0.0, pz=0.0, delta=0.0, ctau=0.0; 1715 2074 double ex = 1368E-9, el = 1.78E-4; 1716 2075 double betax = 9.0, /*betaz = 8.2, */betal = 45.5; … … 1804 2163 double start = 0.0, step = 0.0; 1805 2164 double x = 0.0, px = 0.0, z = 0.0, pz = 0.0, delta = 0.0, ctau = 0.0; 1806 bool status = true;2165 bool status2 = true; 1807 2166 struct tm *newtime; 1808 2167 … … 1863 2222 fprintf(stdout,"% .5e % .5e % .5e % .5e % .5e % .5e\n", 1864 2223 x,px,z,pz,delta,ctau); 1865 Trac_Simple4DCOD(x,px,z,pz,delta,ctau,Nbtour,Tab,&status );2224 Trac_Simple4DCOD(x,px,z,pz,delta,ctau,Nbtour,Tab,&status2); 1866 2225 for (i = 0; i < Nbtour; i++) { 1867 2226 fprintf(outf,"% .5e % .5e % .5e % .5e % .5e % .5e\n", … … 1906 2265 FILE *outf; 1907 2266 const char fic[] = "check_ampl.out"; 1908 int i ;2267 int i=0; 1909 2268 1910 2269 if ((outf = fopen(fic, "w")) == NULL) … … 1961 2320 FILE *outf; 1962 2321 const char fic[] = "enveloppe.out"; 1963 int i ,j;2322 int i=0,j=0 ; 1964 2323 CellType Cell; 1965 2324 … … 3203 3562 FILE *fi; 3204 3563 const char fic_skew[] = "QT-solamor_2_3.dat"; 3205 int i ;3564 int i=0; 3206 3565 double theta[500]; /* array for skew quad tilt*/ 3207 double b2 , mKL;3566 double b2=0.0, mKL=0.0; 3208 3567 CellType Cell; 3209 long mOrder ;3568 long mOrder=0L; 3210 3569 3211 3570 int nquad = 0; /* Number of skew quadrupoles */ … … 3408 3767 struct tm *newtime; // for time 3409 3768 Vector codvector[Cell_nLocMax]; 3410 bool cavityflag , radiationflag;3769 bool cavityflag=false, radiationflag=false; 3411 3770 bool trace=true; 3412 3771 … … 3806 4165 struct tm *newtime; // for time 3807 4166 Vector codvector[Cell_nLocMax]; 3808 bool cavityflag , radiationflag;4167 bool cavityflag=false, radiationflag=false; 3809 4168 bool trace=true; 3810 4169 … … 4291 4650 const char xfic[] = "xspectrum.out"; 4292 4651 const char zfic[] = "zspectrum.out"; 4293 long i , j, k;4652 long i=0L, j=0L, k=0L; 4294 4653 #define nterm2 20 4295 4654 double Tab[6][NTURN], fx[nterm2], fz[nterm2], fx2[nterm2], fz2[nterm2]; … … 4299 4658 int nb_freq[2] = {0, 0}; 4300 4659 long nturn = Nbtour; 4301 bool status =true;4660 bool status2=true; 4302 4661 struct tm *newtime; 4303 4662 … … 4340 4699 for (j = 0; j<= Nbz; j++) { 4341 4700 z = z0 + sqrt((double)j)*zstep; 4342 Trac_Simple4DCOD(x,xp,z,zp,energy,0.0,nturn,Tab,&status );4343 if (status ) {4701 Trac_Simple4DCOD(x,xp,z,zp,energy,0.0,nturn,Tab,&status2); 4702 if (status2) { 4344 4703 Get_NAFF(nterm2, Nbtour, Tab, fx, fz, nb_freq); 4345 4704 } … … 4420 4779 long nmax, long pos, long &lastn, long &lastpos, FILE *outf1) 4421 4780 { 4422 bool lostF ; /* Lost particle Flag */4781 bool lostF=false; /* Lost particle Flag */ 4423 4782 Vector x1; /* tracking coordinates */ 4424 4783 Vector2 aperture; … … 4504 4863 CellType Cell; 4505 4864 int qlist[320]; 4506 int nquad=0, i ;4865 int nquad=0, i=0; 4507 4866 double A = 0.0; 4508 4867 … … 4538 4897 /****************************************************************************/ 4539 4898 /* void fmapfull(long Nbx, long Nbz, long Nbtour, double xmax, double zmax, 4540 double energy, bool *status )4899 double energy, bool *status2) 4541 4900 4542 4901 Purpose: … … 4558 4917 4559 4918 Output: 4560 status true if stable4919 status2 true if stable 4561 4920 false otherwise 4562 4921 … … 4580 4939 FILE * outf; 4581 4940 const char fic[] = "fmapfull.out"; 4582 int i , j, k;4941 int i=0, j=0, k=0; 4583 4942 double Tab[DIM][NTURN], Tab0[DIM][NTURN]; 4584 4943 double fx[NTERM], fz[NTERM], fx2[NTERM], fz2[NTERM]; … … 4589 4948 double nux1[NTERM], nuz1[NTERM],nux2[NTERM], nuz2[NTERM]; 4590 4949 long nturn = Nbtour; 4591 bool status =true;4950 bool status2=true; 4592 4951 struct tm *newtime; 4593 4952 char name[14]; … … 4649 5008 for (j = 0; j<= Nbz; j++) { 4650 5009 z = z0 + sqrt((double)j)*zstep; 4651 Trac_Simple4DCOD(x,xp,z,zp,energy,0.0,nturn,Tab,&status );4652 4653 if (status ) {5010 Trac_Simple4DCOD(x,xp,z,zp,energy,0.0,nturn,Tab,&status2); 5011 5012 if (status2) { 4654 5013 Get_NAFF(NTERM, Nbtour, Tab, fx, fz, nb_freq); 4655 5014 … … 4732 5091 /****************************************************************************/ 4733 5092 /* void Dyna(long Nbx, long Nbz, long Nbtour, double xmax, double zmax, 4734 double energy, bool *status )5093 double energy, bool *status2) 4735 5094 4736 5095 Purpose: … … 4752 5111 4753 5112 Output: 4754 status true if stable5113 status2 true if stable 4755 5114 false otherwise 4756 5115 … … 4774 5133 FILE * outf; 4775 5134 const char fic[] = "dyna.out"; 4776 long i , j;5135 long i=0, j=0; 4777 5136 double Tab[6][NTURN], fx[NTERM2], fz[NTERM2]; 4778 5137 double x = 0.0, xp = 0.0, z = 0.0, zp = 0.0; … … 4781 5140 int nb_freq[2] = {0, 0}; 4782 5141 long nturn = Nbtour; 4783 bool status =true;5142 bool status2=true; 4784 5143 struct tm *newtime; 4785 5144 … … 4815 5174 for (j = 0; j<= Nbz; j++) { 4816 5175 z = z0 + sqrt((double)j)*zstep; 4817 Trac_Simple4DCOD(x,xp,z,zp,energy,0.0,nturn,Tab,&status );4818 if (status ) Get_NAFF(NTERM2, Nbtour, Tab, fx, fz, nb_freq);5176 Trac_Simple4DCOD(x,xp,z,zp,energy,0.0,nturn,Tab,&status2); 5177 if (status2) Get_NAFF(NTERM2, Nbtour, Tab, fx, fz, nb_freq); 4819 5178 else { 4820 5179 fx[0] = 0.0; fz[0] = 0.0; 4821 5180 } 4822 fprintf(outf,"%14.6e %14.6e %14.6e %14.6e %d\n", x, z, fx[0], fz[0], status );4823 fprintf(stdout,"%14.6e %14.6e %14.6e %14.6e %d\n", x, z, fx[0], fz[0], status );5181 fprintf(outf,"%14.6e %14.6e %14.6e %14.6e %d\n", x, z, fx[0], fz[0], status2); 5182 fprintf(stdout,"%14.6e %14.6e %14.6e %14.6e %d\n", x, z, fx[0], fz[0], status2); 4824 5183 if (diffusion) { 4825 if (status ) Get_NAFF(NTERM2, Nbtour, Tab, fx, fz, nb_freq);4826 fprintf(outf,"%14.6e %14.6e %14.6e %14.6e %d\n", x, z, fx[0], fz[0], status );4827 fprintf(stdout,"%14.6e %14.6e %14.6e %14.6e %d\n", x, z, fx[0], fz[0], status );5184 if (status2) Get_NAFF(NTERM2, Nbtour, Tab, fx, fz, nb_freq); 5185 fprintf(outf,"%14.6e %14.6e %14.6e %14.6e %d\n", x, z, fx[0], fz[0], status2); 5186 fprintf(stdout,"%14.6e %14.6e %14.6e %14.6e %d\n", x, z, fx[0], fz[0], status2); 4828 5187 } 4829 5188 } … … 4837 5196 for (j = 0; j<= Nbz; j++) { 4838 5197 z = z0 + sqrt((double)j)*zstep; 4839 Trac_Simple4DCOD(x,xp,z,zp,energy,0.0,nturn,Tab,&status );4840 if (status ) Get_NAFF(NTERM2, Nbtour, Tab, fx, fz, nb_freq);5198 Trac_Simple4DCOD(x,xp,z,zp,energy,0.0,nturn,Tab,&status2); 5199 if (status2) Get_NAFF(NTERM2, Nbtour, Tab, fx, fz, nb_freq); 4841 5200 else { 4842 5201 fx[0] = 0.0; fz[0] =0.0; 4843 5202 } 4844 fprintf(outf,"%14.6e %14.6e %14.6e %14.6e %d\n", x, z, fx[0], fz[0], status );4845 fprintf(stdout,"%14.6e %14.6e %14.6e %14.6e %d\n", x, z, fx[0], fz[0], status );5203 fprintf(outf,"%14.6e %14.6e %14.6e %14.6e %d\n", x, z, fx[0], fz[0], status2); 5204 fprintf(stdout,"%14.6e %14.6e %14.6e %14.6e %d\n", x, z, fx[0], fz[0], status2); 4846 5205 if (diffusion) { 4847 if (status ) Get_NAFF(NTERM2, Nbtour, Tab, fx, fz, nb_freq);5206 if (status2) Get_NAFF(NTERM2, Nbtour, Tab, fx, fz, nb_freq); 4848 5207 fprintf(outf,"%14.6e %14.6e %14.6e %14.6e\n", x, z, fx[0], fz[0]); 4849 5208 fprintf(stdout,"%14.6e %14.6e %14.6e %14.6e\n", x, z, fx[0], fz[0]); … … 4888 5247 FILE *outf; 4889 5248 const char fic[] = "phase2.out"; 4890 long lastpos = 0 ,lastn = 0;5249 long lastpos = 0L,lastn = 0L; 4891 5250 struct tm *newtime; 4892 5251 … … 5014 5373 int i,j; 5015 5374 bool chroma=true, trace=false; 5016 bool radiationflag , cavityflag;5375 bool radiationflag=false, cavityflag=false; 5017 5376 double dP = 0.0; 5018 5377 double diffcmu = 0.0, /* cos(mu1) - cos(mu2)*/ … … 5436 5795 void PhaseLongitudinalHamiltonien(void) 5437 5796 { 5438 long i ,j;5797 long i=0L,j=0L; 5439 5798 const double t = T; // To get a one turn map 5440 double phi , delta, H0;5799 double phi=0.0, delta=0.0, H0=0.0; 5441 5800 long imax = 1000L, // turn number 5442 5801 jmax = 25L; // starting condition number … … 5634 5993 } 5635 5994 5636 5995 /******************************************************************************* 5996 * 5997 * 5998 * 5999 * 6000 ******************************************************************************/ 5637 6001 double EnergySmall(double *X, double irho) 5638 6002 { 5639 double A , B;6003 double A=0.0, B=0.0; 5640 6004 double h = irho; 5641 6005 … … 5644 6008 return (A+B); 5645 6009 } 5646 6010 /******************************************************************************* 6011 * 6012 * 6013 * 6014 * 6015 ******************************************************************************/ 5647 6016 double EnergyDrift(double *X) 5648 6017 { 5649 double A ;6018 double A=0.0; 5650 6019 5651 6020 A = (X[1]*X[1]+X[3]*X[3])/2.0/(1.0+X[4]); … … 5686 6055 FILE *outf; 5687 6056 const char fic[] = "enveloppe2.out"; 5688 int i ,j;6057 int i=0,j=0 ; 5689 6058 CellType Cell; 5690 6059 /* Array for Enveloppes */ … … 5816 6185 void set_RFVoltage(const int Fnum, const double V_RF){ 5817 6186 5818 int k , n = 0;6187 int k=0, n = 0; 5819 6188 5820 6189 … … 5863 6232 01/2011 Fix the bug for reading the end of line symbol "\n" , "\r",'\r\n' 5864 6233 at different operation system 5865 04/2011 Change the set of 'seed' for rms error in file, now it's mandatory. 6234 04/2011 Change the set of 'seed' for rms error in file, now it's mandatory. 6235 10/2013 Jianfeng Zhang @ LAL 6236 Fix the bug of fgets() to read lines of arbritrary length. 5866 6237 *****************************************************************************************************/ 5867 6238 void ReadFieldErr(const char *FieldErrorFile) 5868 6239 { 5869 bool rms, set_rnd = false; 5870 char in[max_str], name[max_str],keywrd[max_str], *prm; 5871 char *line; 6240 bool rms=false, set_rnd = false; 6241 char name[max_str],keywrd[max_str], *prm; 6242 char *line = NULL; 6243 size_t len = 0; 6244 ssize_t read; 5872 6245 int n = 0; /* field error order*/ 5873 6246 int LineNum = 0; 5874 int seed_val ; // random seed number for the rms error6247 int seed_val = 0; // random seed number for the rms error 5875 6248 double Bn = 0.0, An = 0.0, r0 = 0.0; /* field error components and radius when the field error is measured */ 5876 6249 /* conversion number from A to T.m for soleil*/ … … 5881 6254 5882 6255 inf = file_read(FieldErrorFile); 5883 6256 if(inf == NULL){ 6257 printf("ReadFieldErr(): Error! Failure to read file %s !\n",FieldErrorFile); 6258 exit_(1); 6259 } 6260 5884 6261 printf("\n"); 5885 6262 /* read lines*/ 5886 while (line=fgets(in, max_str, inf)) { 5887 5888 /* kill preceding whitespace generated by "table" key 5889 or "space" key, but leave \n 5890 so we're guaranteed to have something*/ 5891 while(*line == ' ' || *line == '\t') { 5892 line++; 5893 } 6263 while ((read=getline(&line, &len, inf)) != -1) { 5894 6264 5895 6265 /* count line number for debug*/ 5896 6266 LineNum++; 6267 if(prt){ 6268 printf("Line # %ld \n",LineNum); 6269 printf("Retrieved line of length %zu : \n",read); 6270 printf("%s\n",line); 6271 } 5897 6272 5898 6273 /* check the line is whether comment line or null line*/ … … 5912 6287 /*read and assign the key words and measure radius*/ 5913 6288 sscanf(line, " %*s %s %lf",keywrd, &r0); 5914 if ( prt) printf("\nsetting <%s> multipole error to: %-5s r0 = %7.1le\n",keywrd,name,r0);6289 if (!prt) printf("\nsetting <%s> multipole error to: %-5s r0 = %7.1le\n",keywrd,name,r0); 5915 6290 5916 6291 rms = (strcmp("rms", keywrd) == 0)? true : false; … … 5936 6311 sscanf(prm, "%lf", &An); 5937 6312 5938 if ( prt)6313 if (!prt) 5939 6314 printf(" n = %2d, Bn = %9.1e, An = %9.1e\n", n, Bn, An); 5940 6315 … … 5960 6335 // printf("%s", line); 5961 6336 } 5962 6337 free(line); 5963 6338 fclose(inf); 5964 6339 } … … 6018 6393 AddFieldValues_fam(Fnum,keywrd, r0, n, Bn, An); 6019 6394 else 6020 printf(" SetFieldErrors: undefined element %s\n", name);6395 printf("AddFieldErrors(): Error! undefined lattice element %s !\n", name); 6021 6396 } 6022 6397 } … … 6299 6674 which also functions as these correctors. 6300 6675 6301 10/2010 Written by Jianfeng Zhang 6676 10/2010 Written by Jianfeng Zhang @ SOLEIL 6302 6677 **********************************************************************/ 6303 6678 void AddCorrQtErr_fam(char const *fic, const int Fnum, const double conv, const char *keywrd, const double r0, … … 6307 6682 double bnL = 0.0, anL = 0.0; 6308 6683 double brho = 0.0, conv_strength = 0.0; 6309 double corr ; /* skew quadrupole horizontal or vertical corrector error, read from a file*/6684 double corr = 0.0; /* skew quadrupole horizontal or vertical corrector error, read from a file*/ 6310 6685 int corrlistThick[120]; /* index of associated sextupole*/ 6311 6686 … … 6423 6798 void FitTune4(long qf1,long qf2, long qd1, long qd2, double nux, double nuy) 6424 6799 { 6425 long i ;6800 long i=0L; 6426 6801 iVector2 nq1 = {0,0},nq2 = {0,0}, nq={0,0}; 6427 6802 Vector2 nu = {0.0, 0.0}; … … 6484 6859 { 6485 6860 6486 long int i ,pos = 1;6487 long int lastn = 0 , lastpos = 0;6861 long int i=0L, pos = 1L; 6862 long int lastn = 0L, lastpos = 0L; 6488 6863 Vector x0, x1, x2, xf,codvector[Cell_nLocMax]; 6489 6864 FILE *outf; … … 6574 6949 fclose(outf); 6575 6950 } 6951 /********************************************************************** 6952 void PrintTrackElem(const char *TrackFile, double x, double px, double y,double py, 6953 double delta, double ctau, long int nelem1, long int nelem2) 6954 6955 Purpose: 6956 Print the coordinates tracked around a lattice element by tracking around COD 6957 6958 Input: 6959 TrackFile file to be print 6960 x initial x relative to closed orbit 6961 px initial px relative to closed orbit 6962 y initial y relative to closed orbit 6963 py initial py relative to closed orbit 6964 delta initial delta relative to closed orbit 6965 ctau initial c*tau relative to closed orbit 6966 nelem1 start lattice index of the tracked element 6967 nelem2 end lattice index of the tracked element 6968 6969 6970 Output: 6971 6972 Comments: 6973 Written by Jianfeng Zhang @ LAL 04/2013 6974 **********************************************************************/ 6975 void PrintTrackElem(const char *TrackFile, double x, double px, double y,double py, 6976 double delta, double ctau, long int nelem1, long int nelem2) 6977 { 6978 6979 long int i=0L, pos = 1L; 6980 Vector x0, x1; 6981 FILE *outf; 6982 struct tm *newtime; 6983 6984 bool prt = true; 6985 6986 outf = file_write(TrackFile); 6987 /* Get time and date */ 6988 newtime = GetTime(); 6989 6990 fprintf(outf, "# Element tracking using TRACY III-- %s -- %s\n",TrackFile, asctime2(newtime)); 6991 fprintf(outf, "#\n"); 6992 // fprintf(outf, "# work tunes: %7.5f %7.5f\n",globval.TotalTune[0], globval.TotalTune[1]); 6993 // fprintf(outf, "# i ElemName S x p_x y p_y"); 6994 // fprintf(outf, " delta cdt NElem \n"); 6995 // fprintf(outf, "# [m] [mm] [mrad] [mm] [mrad]"); 6996 // fprintf(outf, " [%%] [mm]\n"); 6997 6998 fprintf(outf,"i ElemName S[m] x(m) px(rad) y(m) py(rad) delta(-) z(m) \n"); 6999 //initial coordinates 7000 x0[x_] = x; 7001 x0[px_] = px; 7002 x0[y_] = y; 7003 x0[py_] = py; 7004 x0[delta_] = delta; 7005 x0[ct_] = ctau; 7006 7007 for (i = 0; i < nv_; i++) //nv_ = 6 7008 x1[i] = x0[i]; 7009 7010 //print the coordinates at the element 7011 pos = nelem1+1;//first element "1" of Tracy is a default "debut", it's diffirent from the real lattice index 7012 7013 //tracking from the start element to the end element 7014 while( pos <= nelem2+1){ 7015 7016 Elem_Pass(pos,x1); 7017 7018 7019 if (prt) { 7020 printf("%4ld %s %6.4f %16.8f %16.8f %16.8f %16.8f %16.8f %16.8f \n", 7021 pos-1,Cell[pos].Elem.PName,Cell[pos].S, x1[x_], x1[px_], 7022 x1[y_], x1[py_],x1[delta_], x1[ct_]); 7023 } 7024 7025 fprintf(outf,"%6d %s %8.4e %16.8e %16.8e %16.8e %16.8e %16.8e %16.8e \n", 7026 pos-1,Cell[pos].Elem.PName,Cell[pos].S, x1[x_], x1[px_], 7027 x1[y_], x1[py_],x1[delta_], x1[ct_]); 7028 7029 pos++; 7030 }//finish of tracking and printing to file 7031 7032 7033 7034 // if (globval.MatMeth) 7035 // Cell_Pass(0, globval.Cell_nLoc, x1, lastpos); 7036 7037 fclose(outf); 7038 } 6576 7039 /******************************************************************************************************* 6577 7040 void ReadVirtualSkewQuad(const char *SkewQuadFile) -
trunk/tracy/tracy/src/t2elem.cc
r10 r11 113 113 cout << " " << 1+x[delta_] << " " << x[px_] << " " << x[py_] << endl; 114 114 printf("get_p_s: *** Speed of light exceeded!\n"); 115 //exit_(1);115 // exit_(1); 116 116 117 117 } … … 124 124 125 125 Purpose: 126 Drift pass 126 Exact Drift pass in the curvilinear coordinate for the dipole 127 128 See Eqn. (10.26) on page 307 in E. Forest's beam dynamics, a new attitude 129 130 H(x,y,cT,px,py,delta) =(1 + h_ref*x) * sqrt((1+delta)^ - px^2 - py^2) + delta 131 132 Input: 133 L: drift length 134 &x: pointer to initial vector: x 135 136 Output: 137 none 138 139 Return: 140 none 141 142 Global variables: 143 144 145 Specific functions: 146 147 148 149 Comments: 150 151 Test version....rewritten by Jianfeng zhang @ LAL, 31/07/2013 152 153 ****************************************************************************/ 154 155 156 template<typename T> 157 void Drift(double L,double h_bend, ss_vect<T> &x) { 158 T u; 159 ss_vect<T> x0; 160 161 x0=x; 162 163 if (globval.H_exact) { 164 if(get_p_s(x) == 0) 165 return; 166 167 x[x_] = x0[x_]/cos(L*h_bend)/(1-x0[px_]/get_p_s(x)*tan(L*h_bend)); 168 x[px_]= x0[px_]*cos(L*h_bend) + get_p_s(x)*sin(L*h_bend); 169 x[y_] = x0[y_]+x0[px_]*x0[x_]*tan(L*h_bend)/get_p_s(x)/(1-x0[px_]/get_p_s(x)*tan(L*h_bend)); 170 x[py_]= x0[py_]; 171 x[ct_]= x0[ct_]+((1+x0[delta_])*x0[x_]*tan(L*h_bend))/get_p_s(x)/(1-x0[px_]/get_p_s(x)*tan(L*h_bend)); 172 173 174 } 175 } 176 177 /****************************************************************************/ 178 /* Drift(double L, ss_vect<T> &x) 179 180 Purpose: 181 Drift pass in the Cartesian coordinate 127 182 128 183 If H_exact = false, using approximation Hamiltonian (only valid for big ring): … … 616 671 Correction for magnet gap (longitudinal fringe field) 617 672 618 irho h = 1/rho [1/m] 619 phi dipole edge angle 620 gap full gap between poles 673 Input: 674 irho: h = 1/rho [1/m] 675 phi: dipole edge (entrance or exit) angle 676 gap: full gap between poles 621 677 622 678 2 … … 650 706 } 651 707 708 /***************************************************************** 709 * Exact map of the sector dipole 710 * 711 * Forest's beam dynamics P.360 Eqn. (12.18) 712 * Also see Laurent's thesis: P219-220. 713 * 714 * Written by Jianfeng Zhang @ LAL, 01/08/2013 715 * 716 * Test version........................................ 717 * 718 * ****************************************************************/ 719 template<typename T> 720 void dipole_kick(double L, double h_ref, double h_bend, ss_vect<T> &x){ 721 722 ss_vect<T> x0; 723 T ps, u, dpxf; 724 725 x0 = x; 726 ps = get_p_s(x0); 727 728 u = sqrt(sqr(1+x0[delta_])-sqr(x0[py_])); 729 730 x[py_] = x0[py_]; 731 732 x[delta_] =x0[delta_]; 733 734 x[px_]= x0[px_]*cos(L*h_ref) + (ps -h_bend*(1/h_ref+x0[x_]))*sin(L*h_ref); 735 736 dpxf = h_ref*sqrt((1+x[delta_])*(1+x[delta_]) - x[px_]*x[px_] - x[py_]*x[py_])-h_bend*(1+h_ref*x[x_]); 737 738 739 x[y_] += h_ref/h_bend*x0[py_]*L + x0[py_]/h_bend*(asin(x0[px_]/u)-asin(x[px_]/u)); 740 741 x[x_] = 1/(h_bend*h_ref)*(h_ref*sqrt(sqr(1+x[delta_])-sqr(x[px_])-sqr(x[py_]))-dpxf - h_bend); 742 743 x[ct_] += (1+x0[delta_])*h_ref/h_bend*L + (1+x0[delta_])/h_bend*(asin(x0[px_]/u)-asin(x[px_]/u)); 744 745 } 746 747 /***************************************************************** 748 * pure multipole kick 749 * 750 * Forest's beam dynamics P.360 Eqn. (12.18) 751 * Also see Laurent's thesis: P219-220. 752 * 753 * Written by Jianfeng Zhang @ LAL, 01/08/2013 754 * 755 * Test version........................................ 756 * 757 * ****************************************************************/ 758 template<typename T> 759 void multipole_kick(int Order, double MB[], double L, double h_bend, ss_vect<T> &x){ 760 761 int j=0; 762 ss_vect<T> x0; 763 764 T ByoBrho = 0, BxoBrho = 0, ByoBrho1=0 ; 765 766 if ((h_bend != 0.0) || ((1 <= Order) && (Order <= HOMmax))) { 767 x0 = x; 768 /* compute the total magnetic field Bx and By with Horner's rule */ 769 ByoBrho = MB[HOMmax + Order]; // normalized By, By/(p0/e) 770 BxoBrho = MB[HOMmax - Order]; // normalized Bx, Bx/(p0/e) 771 for (j = Order - 1; j >= 1; j--) { 772 ByoBrho1 = x0[x_] * ByoBrho - x0[y_] * BxoBrho + MB[j + HOMmax]; 773 BxoBrho = x0[y_] * ByoBrho + x0[x_] * BxoBrho + MB[HOMmax - j]; 774 ByoBrho = ByoBrho1; 775 } 776 } 777 778 x[px_] -= L * (ByoBrho + h_bend*1); 779 //vertical kick due to the magnets 780 x[py_] += L * BxoBrho; 781 } 782 652 783 /****************************************************************************/ 653 784 /* template<typename T> … … 657 788 Refer to Tracy 2 manual. 658 789 Calculate multipole kick. 659 790 , 660 791 (1) The exact Hamiltonian is 661 792 … … 737 868 MB array of an and bn, magnetic field components 738 869 L multipole length 739 h_bend B_dipole/Brho is the dipole field normalized by the reference momentum 870 h_bend B_dipole/Brho is the dipole field normalized by the reference momentum; one of the example is the combined dipole 740 871 h_ref 1/rho [m^-1] is the curvature of the reference orbit in the dipoles which is used in curvilinear coordinate, 741 872 x initial coordinates vector … … 797 928 return; 798 929 799 u = L * h_ref * x0[x_] /get_p_s(x0); 800 x[x_] += u * x0[px_]; 801 x[y_] += u * x0[py_]; 802 x[px_]-= L * (-h_ref * get_p_s(x0) + h_bend + h_ref * h_bend 803 * x0[x_] + ByoBrho); 804 x[ct_] += u * (1.0+x0[delta_]); 930 //dipole kick map from the exact Hamiltonian; not symplectic 931 // u = L * h_ref * x0[x_] /get_p_s(x0); 932 // x[x_] += u * x0[px_]; 933 // x[y_] += u * x0[py_]; 934 // x[px_]-= L * (-h_ref * get_p_s(x0) + h_bend + h_ref * h_bend 935 // * x0[x_] + ByoBrho); 936 // x[ct_] += u * (1.0+x0[delta_]); 937 938 //kick map due to the dipole vector potential 939 // x[px_] -= L*(h_bend + h_ref*h_bend*x0[x_]+ByoBrho); 805 940 806 941 // sqrtpx = sqrt(sqr(1+x0[delta_])-sqr(x0[py_])); … … 835 970 x[ct_] += L * h_ref * x0[x_]; 836 971 837 // second order of the h_ref; has problem when do tracking... 838 u = L * h_ref * x0[x_] /(1.0+x[delta_]); 972 // second order, cubic term of H, H3; has problem when do tracking...works for THOMX!!!!! 973 // not symplectic???? 974 if(0){ 975 u = L * h_ref * x0[x_] /(1.0+x0[delta_]); 839 976 x[x_] += u * x0[px_]; 840 977 x[y_] += u * x0[py_]; 841 978 x[ct_] += u*(sqr(x0[px_])+sqr(x0[py_]))/(2.0*(1.0+x0[delta_])); 842 979 843 } 980 // cout << "test......2..... u = " << u<< endl; 981 } 982 } 844 983 845 984 }//from other straight magnets 846 985 else 847 x[px_] -= L * (ByoBrho + h_bend );986 x[px_] -= L * (ByoBrho + h_bend*1); //h_bend should be trigger on for combined dipoles 848 987 849 988 //vertical kick due to the magnets … … 872 1011 Compute edge focusing for a dipole 873 1012 There is no radiation coming from the edge 874 The standard formula used is : ( Where these formula comes from?????)1013 The standard formula used is : (SLAC-75, K. Brown's first order of fringe field but with the correction of 1/(1+delta) in R43) 875 1014 876 1015 px = px0 + irho tan(phi) *x0 … … 913 1052 914 1053 April 2011, No energy dependence for H-plane according to SSC-141 note (E. Forest) 915 Agreement better with MAD8 (LNLS), SOLEIL small effect (.1) 1054 Agreement better with MAD8 (LNLS), SOLEIL small effect (.1). Modified by Laurent Nadolski @ soleil 1055 Comments: Jianfeng Zhang @ LAL, 05/06/2013 1056 This model only works for Soleil lattice, but not works for ThomX and SuperB DR lattice. 916 1057 917 Add the contribution of x' to the x[py_] for small ring like Thom-X.918 1058 18/06/2012 Jianfeng Zhang @ LAL 919 1059 Add the contribution of x' to the x[py_] for small ring like Thom-X, using Alexandre Loulergue's correction. 1060 This models works for ThomX, Soleil, and SuperB DR lattices; and 1061 close to the Forest's model and K. Brown's models. 920 1062 921 1063 ****************************************************************************/ … … 926 1068 if (true) { 927 1069 928 //cout << "WithAlex's correction: " << endl;1070 // cout << "Dipole edge effect WITH Alex's correction: " << endl; 929 1071 930 1072 //with the contribution from the entrance angle of the particle at the edge … … 939 1081 // compared the fringe field model used in Tracy 940 1082 // results: K. Brown's model is wrong for small ring like Thom-X!!!! 941 // The original model of tracy is correct !!!!!!!!!!1083 // The original model of tracy is correct for tracking!!!!!!!!!! 942 1084 /* 943 1085 double psi; … … 959 1101 */ 960 1102 961 //add the contribution of the entrance momentum of the particle, from Alex Loulergue. This model is NOT 962 //correct, because it's not symplectic!!!!!!!! 1103 //add the contribution of the entrance momentum of the particle, from Alex Loulergue. 963 1104 if(Entrance){ 964 x[px_] += irho * tan(dtor(phi) ) * x[x_]/ (1.0 + x[delta_]*0);965 x[py_] -= irho * tan(dtor(phi) + x[px_]/(1+x[delta_]*1) - get_psi(irho, phi, gap) ) * x[y_]966 / (1.0 + x[delta_] );1105 x[px_] += irho * tan(dtor(phi) +x[py_]/(1+x[delta_]*1)) * x[x_]/ (1.0 + x[delta_]*0); 1106 x[py_] -= irho * tan(dtor(phi) + x[px_]/(1+x[delta_]*1) - get_psi(irho, phi, gap)/(1+x[delta_]*0)) * x[y_] 1107 / (1.0 + x[delta_]*0); 967 1108 }else{ 968 x[px_] += irho * tan(dtor(phi) ) * x[x_]/ (1.0 + x[delta_]*0);969 x[py_] -= irho * tan(dtor(phi) - x[px_]/(1+x[delta_]*1) - get_psi(irho, phi, gap) ) * x[y_]970 / (1.0 + x[delta_] );1109 x[px_] += irho * tan(dtor(phi) - x[py_]/(1+x[delta_]*1)) * x[x_]/ (1.0 + x[delta_]*0); 1110 x[py_] -= irho * tan(dtor(phi) - x[px_]/(1+x[delta_]*1) - get_psi(irho, phi, gap)/(1+x[delta_]*0)) * x[y_] 1111 / (1.0 + x[delta_]*0); 971 1112 } 972 1113 973 1114 } else {//original one 974 1115 975 //cout << "WithoutAlex's correction: " << endl;1116 //cout << "Dipole edge effect WITHOUT Alex's correction: " << endl; 976 1117 x[px_] += irho * tan(dtor(phi)) * x[x_]; 977 x[py_] -= irho * tan(dtor(phi) - get_psi(irho, phi, gap)) * x[y_] ;1118 x[py_] -= irho * tan(dtor(phi) - get_psi(irho, phi, gap)) * x[y_]/ (1.0 + x[delta_]*1); 978 1119 } 979 1120 } … … 981 1122 982 1123 /****************************************************************** 983 1124 template<typename T> 1125 static void BendCurvature(double irho, double H, ss_vect<T> &x) 1126 1127 The leanding order term T211, T233, and T413 on page 117 & page 118 1128 of the dipole edge effect in SLAC-75, using the symplectic 1129 form in 984 1130 E. Forest: "Fringe field in MAD, Part II: Bend curvature in MAD-X for the 985 1131 mudule PTC". 986 1132 P.10 Eq. (5) and (42). 987 1133 1134 For an rectangular dipole, the bending curvature term is zero, since 1/R = 0. 1135 1136 irho: curvature of the central orbit inside the dipole 1137 H: curvature of the entrance/exit pole face of the dipole 1138 1139 Comments: 1140 Written by Jianfeng Zhang @ LAL, 01/10/2012. 988 1141 ******************************************************************/ 989 1142 template<typename T> 990 static void EdgeFocus(double irho, ss_vect<T> &x) { 1143 static void BendCurvature(double irho, double H, ss_vect<T> &x) { 1144 1145 if(trace) 1146 cout << "Forest's bend curvature...."<<endl; 991 1147 992 1148 T pm2,u, coeff1, coeff2,coeff3; 993 1149 994 ss_vect<T> x 1;1150 ss_vect<T> x0; 995 1151 996 x 1= x;1152 x0 = x; 997 1153 998 pm2 = sqr(1+x 1[delta_]) - sqr(x1[px_]);999 u = irho* irho/2/pm2;1154 pm2 = sqr(1+x0[delta_]) - sqr(x0[px_]); 1155 u = irho*H/2/pm2; 1000 1156 1001 coeff1 = u * 2*x 1[px_]*(1+x1[delta_])/pm2;1002 coeff2 = u * (1+x 1[delta_]);1003 coeff3 = u * (-1) * (sqr(1+x1[delta_]) + sqr(x1[px_]))/pm2;1157 coeff1 = u * 2*x0[px_]*(1+x0[delta_])/pm2; // 1158 coeff2 = u * (1+x0[delta_]); // 1159 coeff3 = u * (pm2 - 2*(1+x0[delta_]))/pm2; 1004 1160 1005 1161 1006 x[x_] = x1[x_]/(1-coeff1*x1[y_]*x1[y_]);1007 x[px_] -= coeff2*x 1[y_]*x1[y_] - irho*irho/2*sqr(x1[x_]);1008 x[py_] -= 2*coeff2*x[x_]*x 1[y_];1009 x[ct_] -= coeff3*x[x_]*x 1[y_]*x1[y_];1162 x[x_] += x0[x_]/(1-coeff1*x0[y_]*x0[y_]); 1163 x[px_] -= coeff2*x0[y_]*x0[y_] - irho*H/2*sqr(x0[x_]); 1164 x[py_] -= 2*coeff2*x[x_]*x0[y_]; 1165 x[ct_] -= coeff3*x[x_]*x0[y_]*x0[y_]; 1010 1166 } 1011 1167 … … 1313 1469 //fringe field and edge focusing of dipoles 1314 1470 if (M->Pirho != 0.0 && M->dipEdge_effect1 == 1){ 1315 if (!globval.H_exact) { //big ring */ 1316 // EdgeFocus(M->Pirho, M->PTx1, M->Pgap, x,true); 1317 //} else {//small and big rings 1318 if(M->PTx1!=0){ 1319 EdgeFocus(M->Pirho, x); 1320 //p_rot(M->PTx1, x); 1321 //rotate from cartesian cooridnate to curlinear curved beam coordinate; 1471 if (!globval.H_exact) { //big ring */ modified linear term T43 on page 117 & 118 in SLAC-75. 1472 EdgeFocus(M->Pirho, M->PTx1, M->Pgap, x,true); 1473 } else {//small and big rings; Forest's model 1474 if(M->PH1!=0){ 1475 // curvature of the magnet pole face; for a sector/wedge/rectangular dipole, this term is 0. 1476 BendCurvature(M->Pirho, M->PH1, x); 1477 } 1478 p_rot(M->PTx1, x); //rotate from cartesian cooridnate to curlinear curved beam coordinate; 1322 1479 // since the map of a sector dipole is used in Tracy 3 1323 }1324 p_rot(M->PTx1, x);1325 1480 bend_fringe(M->Pirho, M->Pgap, x); //fringe field 1326 1481 } … … 1366 1521 1367 1522 case Meth_Second: 1368 cout << "Mpole_Pass: Meth_Second not supported" << endl; 1369 exit_(0); 1370 break; 1371 1523 1524 // cout << "Mpole_Pass: Meth_Second not supported" << endl; 1525 // exit_(0); 1526 // break; 1527 1528 //specially for the test of the dipole map,see Forest's beam dynamics, p361. eqn.(12.19) 1529 1530 dL1 = 0.5*dL; 1531 dL2 = dL; 1532 1533 for (seg = 1; seg <= M->PN; seg++) { 1534 dipole_kick(dL1,M->Pirho,h_ref,x); 1535 multipole_kick(M->Porder, M->PB, dkL1, M->Pirho, x); 1536 dipole_kick(dL1,M->Pirho,h_ref,x); 1537 } 1538 1539 1540 1372 1541 case Meth_Fourth: //forth order symplectic integrator 1373 1542 if (M->Pthick == thick) { … … 1386 1555 } 1387 1556 1388 1557 Drift(dL1, x); 1389 1558 thin_kick(M->Porder, M->PB, dkL1, M->Pirho, h_ref, x); 1390 1559 Drift(dL2, x); 1391 1560 thin_kick(M->Porder, M->PB, dkL2, M->Pirho, h_ref, x); 1392 1561 1393 1562 if (globval.emittance && (!globval.Cavity_on) && (M->Pirho … … 1396 1565 dI4 += 4.0 * is_tps<tps>::get_dI4(x); 1397 1566 } 1398 1567 1568 1399 1569 Drift(dL2, x); 1400 1401 1570 thin_kick(M->Porder, M->PB, dkL1, M->Pirho, h_ref, x); 1571 Drift(dL1, x); 1402 1572 1403 1573 if (globval.emittance && (!globval.Cavity_on) && (M->Pirho … … 1428 1598 /* dipole fringe fields */ 1429 1599 if (M->Pirho != 0.0 && M->dipEdge_effect2 == 1){ 1430 if (!globval.H_exact) { //big ring 1431 // EdgeFocus(M->Pirho, M->PTx2, M->Pgap, x,false); 1432 // }else{ 1433 1434 1435 bend_fringe(-M->Pirho, M->Pgap,x); //fringe field of the dipole 1436 p_rot(M->PTx2, x); 1437 if(M->PTx2!=0){ 1438 //p_rot(M->PTx2, x); //rotate back to the cartesian cooridinate 1439 EdgeFocus(M->Pirho, x); 1600 if (!globval.H_exact) { //big ring, linear model correction 1601 EdgeFocus(M->Pirho, M->PTx2, M->Pgap, x,false); 1602 }else{ 1603 bend_fringe(-M->Pirho, M->Pgap,x); //Forest's fringe field of the dipole 1604 p_rot(M->PTx2, x); //rotate back to the cartesian cooridinate 1605 if(M->PH2!=0){ 1606 // curvature of the magnet pole face; for a sector/wedge/rectangular dipole, this term is 0. 1607 BendCurvature(M->Pirho, M->PH2, x); 1440 1608 } 1441 1442 1443 1609 } 1444 1610 } … … 2762 2928 corresponding to a half magnet w/ an entrance 2763 2929 angle and no exit angle. 2764 The linear frin dge field is taken into account2930 The linear fringe field is taken into account 2765 2931 **************************************************************/ 2766 2932 void Mpole_Setmatrix(int Fnum1, int Knum1, double K) { … … 3259 3425 printf("Elem_GetPos: there are no kids in family %d (%s)\n", Fnum1, 3260 3426 ElemFam[Fnum1 - 1].ElemF.PName); 3261 exit_( 0);3427 exit_(1); 3262 3428 } 3263 3429 … … 3290 3456 d_2 = 1e0 - 2e0 * d_1; 3291 3457 3458 3459 3460 3461 3292 3462 // classical radiation 3293 3463 // C_gamma = 8.846056192e-05; … … 3682 3852 M->PTx1 = 0.0; /* Entrance angle */ 3683 3853 M->PTx2 = 0.0; /* Exit angle */ 3854 M->PH1 = 0.0; /* Entrance pole face curvature*/ 3855 M->PH2 = 0.0; /* Exit pole face curvature */ 3684 3856 M->Pgap = 0.0; /* Gap for fringe field ??? */ 3685 3857 -
trunk/tracy/tracy/src/t2lat.cc
r3 r11 44 44 leq, pwrsym, lss, geo, gtr, period_, charcon, stringcon, ident, geq, lsym, 45 45 bobrhosym, bobrhovsym, bobrhohsym, kxvsym, kxhsym, phisym, ksym, 46 tsym, t1sym, t2sym, 46 tsym, t1sym, t2sym,h1sym,h2sym, 47 47 gapsym, thksym, invsym, thnsym, 48 48 endsym, tsksym, bemsym, corsym, prnsym, tblsym, possym, prmsym, … … 658 658 if (!strncmp(id, "t ", sizeof(alfa_))) 659 659 *sym = tsym; 660 else if (!strncmp(id, "h1 ", sizeof(alfa_))) 661 *sym = h1sym; 662 else if (!strncmp(id, "h2 ", sizeof(alfa_))) 663 *sym = h2sym; 660 664 else if (!strncmp(id, "gap ", sizeof(alfa_))) 661 665 *sym = gapsym; … … 1055 1059 else if (!strncmp(fname, "t2 ", sizeof(partsName))) 1056 1060 x = WITH1->PTx2; 1061 else if (!strncmp(fname, "h1 ", sizeof(partsName))) 1062 x = WITH1->PH1; 1063 else if (!strncmp(fname, "h2 ", sizeof(partsName))) 1064 x = WITH1->PH2; 1057 1065 else if (!strncmp(fname, "gap ", sizeof(partsName))) 1058 1066 x = WITH1->Pgap; … … 2018 2026 struct LOC_Lat_DealElement V; 2019 2027 bool Result = false; 2020 double t, t1, t2, gap, QL = 0.0, QK; 2021 double QKick; /* kick angle of the corrector [rad]*/ 2022 int Kplane; /* kick plane of the corrector, 1 for H plane, -1 for V plane*/ 2023 double QKV, QKH, QKxV, QKxH, QPhi, QKS; 2024 double dt, Frf, Vrf; 2025 long k1, k2, harnum,edge_effect1,edge_effect2, FF1, FF2; 2026 double FFscaling; 2028 double t=0.0, t1=0.0, t2=0.0, h1=0,h2=0,gap=0.0, QL = 0.0, QK=0.0; 2029 double QKick=0.0; /* kick angle of the corrector [rad]*/ 2030 int Kplane=0; /* kick plane of the corrector, 1 for H plane, -1 for V plane*/ 2031 double QKV=0.0, QKH=0.0, QKxV=0.0, QKxH=0.0, QPhi=0.0, QKS=0.0; 2032 double dt=0.0, Frf=0.0, Vrf=0.0; 2033 long harnum=0L; 2034 int k1=1; //number of cut slice of the element 2035 int k2=4; //integration method; Meth_Linear=0, Meth_First=1,Meth_Second=2,Meth_Fourth=4 2036 int edge_effect1=0,edge_effect2=0; //flag to turn on/off dipole fringe field 2037 int FF1=0, FF2=0; 2038 double FFscaling=0.0; 2027 2039 Lat_symbol sym1; 2028 2040 symset mysys, SET; … … 2077 2089 test__(P_expset(SET, 1 << ((long)semicolon)), "<;> expected", &V); 2078 2090 GetSym__(&V); 2091 QL = *V.rnum; 2079 2092 globval.Elem_nFam++; 2080 2093 if (globval.Elem_nFam <= Elem_nFamMax) { … … 2082 2095 WITH1 = &WITH->ElemF; 2083 2096 memcpy(WITH1->PName, ElementName, sizeof(partsName)); 2084 WITH1->PL = *V.rnum; 2097 // WITH1->PL = *V.rnum; 2098 WITH1->PL = QL; 2085 2099 WITH1->Pkind = PartsKind(drift); 2086 2100 Drift_Alloc(&WITH->ElemF); … … 2121 2135 Example 2122 2136 2123 B: bending, L=0.70, T=10.0, T1:=5.0, T2:=5.0, gap=0.03, edge_effect1=1, edge_effect2=1, K=-1.0, N=8, Method=2;2137 B: bending, L=0.70, T=10.0, T1:=5.0, T2:=5.0, H1=0, H2=0, gap=0.03, edge_effect1=1, edge_effect2=1, K=-1.0, N=8, Method=2; 2124 2138 2125 2139 *************************************************************************/ … … 2129 2143 QL = 0.0; /* L */ 2130 2144 QK = 0.0; /* K, quadrupole components*/ 2131 k1 = 0; /* N */2145 k1 = 1; /* N */ 2132 2146 t = 0.0; /* T */ 2133 2147 t1 = 0.0; /* T1 */ 2134 2148 t2 = 0.0; /* T2 */ 2149 h1 = 0.0; 2150 h2 = 0.0; 2135 2151 gap = 0.0; /* gap */ 2136 2152 edge_effect1 = 0; /* edge_effect effect at the entrance */ 2137 2153 edge_effect2 = 0; /* edge effect at the exit */ 2138 k2 = Meth_ Linear; /* method */2154 k2 = Meth_Fourth; /* method */ 2139 2155 dt = 0.0; 2140 2156 ClearHOMandDBN(&V); … … 2147 2163 P_addset(mysys, (long)t1sym); 2148 2164 P_addset(mysys, (long)t2sym); 2165 P_addset(mysys, (long)h1sym); 2166 P_addset(mysys, (long)h2sym); 2149 2167 P_addset(mysys, (long)gapsym); 2150 2168 P_addset(mysys, (long)edge_effect1sym); … … 2187 2205 break; 2188 2206 2207 case h1sym: 2208 h1 = EVAL_(&V); 2209 break; 2210 2211 case h2sym: 2212 h2 = EVAL_(&V); 2213 break; 2214 2189 2215 case gapsym: 2190 2216 gap = EVAL_(&V); … … 2240 2266 else 2241 2267 WITH2->Pirho = t * M_PI / 180.0; 2242 WITH2->PTx1 = t1; WITH2->PTx2 = t2; //entrance and exit angle of the dipoles (relative to sector magnets) 2268 WITH2->PTx1 = t1; WITH2->PTx2 = t2; //entrance and exit angle of the dipoles (relative to rectangular magnets) 2269 WITH2->PH1 = h1; WITH2->PH2 = h2; //entrance and exit angle of the dipoles 2243 2270 WITH2->Pgap = gap; 2244 2271 WITH2->dipEdge_effect1 = edge_effect1;//edge_effect effect at the entrance … … 2283 2310 QL = 0.0; /* L */ 2284 2311 QK = 0.0; /* K */ 2285 k1 = 0; /* N */2312 k1 = 1; /* N */ 2286 2313 k2 = Meth_Fourth; /* method */ 2287 2314 dt = 0.0; … … 2411 2438 QL = 0.0; /* L */ 2412 2439 QK = 0.0; /* K */ 2413 k1 = 0; /* N */2440 k1 = 1; /* N */ 2414 2441 k2 = Meth_Fourth; /* method */ 2415 2442 FF1 = 0; /* Entrance Fringe field */ … … 2626 2653 QKick = 0.0; /* kick angle of the corrector [rad]*/ 2627 2654 Kplane = 0; /* 1 is horizontal corrector, -1 is vertical corrector */ 2628 k1 = 0; /* N */2655 k1 = 1; /* N */ 2629 2656 k2 = Meth_Linear; /* method */ 2630 2657 dt = 0.0; … … 2904 2931 QL = 0.0; /* L */ 2905 2932 QK = 0.0; /* K */ 2906 k1 = 0; /* N */2933 k1 = 1; /* N */ 2907 2934 t = 0.0; /* T */ 2908 2935 t1 = 0.0; /* T1 */ 2909 2936 t2 = 0.0; /* T2 */ 2937 h1 = 0.0; 2938 h2 = 0.0; 2910 2939 gap = 0.0; /* gap */ 2911 k2 = Meth_ Linear; /* method */2940 k2 = Meth_Fourth; /* method */ 2912 2941 dt = 0.0; 2913 2942 ClearHOMandDBN(&V); … … 2918 2947 P_addset(mysys, (long)t1sym); 2919 2948 P_addset(mysys, (long)t2sym); 2949 P_addset(mysys, (long)h1sym); 2950 P_addset(mysys, (long)h2sym); 2920 2951 P_addset(mysys, (long)gapsym); 2921 2952 P_addset(mysys, (long)rollsym); … … 2952 2983 break; 2953 2984 2985 case h1sym: 2986 h1 = EVAL_(&V); 2987 break; 2988 2989 case h2sym: 2990 h2 = EVAL_(&V); 2991 break; 2992 2954 2993 case gapsym: 2955 2994 gap = EVAL_(&V); … … 2999 3038 } 3000 3039 WITH2->PN = k1; WITH2->Pmethod = k2; 3001 WITH2->PTx1 = t1; WITH2->PTx2 = t2; WITH2->Pgap = gap; 3040 WITH2->PTx1 = t1; WITH2->PTx2 = t2; 3041 WITH2->PH1 = h1; WITH2->PH2 = h2; 3042 WITH2->Pgap = gap; 3002 3043 WITH2->PdTpar = dt; 3003 3044 AssignHOM(globval.Elem_nFam, &V); … … 3042 3083 getest__(P_expset(SET, 1 << ((long)comma)), "<, > expected", &V); 3043 3084 GetSym__(&V); 3044 QL = 0e0; QK = 0e0; QKV = 0e0; QKH = 0e0; QKxV = 0e0; QKxH = 0e0; 3045 QPhi = 0e0; QKS = 0e0; k1 = 0; k2 = Meth_Linear; dt = 0e0; 3085 QL = 0e0; 3086 QK = 0e0; 3087 QKV = 0e0; 3088 QKH = 0e0; 3089 QKxV = 0e0; 3090 QKxH = 0e0; 3091 QPhi = 0e0; 3092 QKS = 0e0; 3093 k1 = 1; 3094 k2 = Meth_Fourth; 3095 dt = 0e0; 3046 3096 ClearHOMandDBN(&V); 3047 3097 P_addset(P_expset(mysys, 0), (long)lsym); … … 3169 3219 getest__(P_expset(SET, 1 << ((long)comma)), "<, > expected", &V); 3170 3220 GetSym__(&V); 3171 QL = 0.0; k1 = 0; strcpy(str1, ""); strcpy(str2, ""); 3221 QL = 0.0; 3222 k1 = 1; 3223 strcpy(str1, ""); 3224 strcpy(str2, ""); 3172 3225 P_addset(P_expset(mysys, 0), (long)lsym); 3173 3226 P_addset(mysys, (long)nsym); … … 3519 3572 QL = 0.0; /* L */ 3520 3573 QK = 0.0; /* K */ 3521 k1 = 0; /* N */3574 k1 = 1; /* N */ 3522 3575 P_addset(P_expset(mysys, 0), (long)lsym); 3523 3576 P_addset(mysys, (long)bobrhosym); … … 3693 3746 Reg("gap ", gapsym, &V); 3694 3747 Reg("ghost ", gstsym, &V); 3748 Reg("h1 ", h1sym, &V); 3749 Reg("h2 ", h2sym, &V); 3695 3750 Reg("harm ", harmsym, &V); 3696 3751 Reg("harnum ", harnumsym, &V); -
trunk/tracy/tracy/src/t2ring.cc
r3 r11 701 701 Purpose: called by Ring_GetTwiss 702 702 Computes twiss parameters for an energy offset dP using da method 703 First call GetCOD() to check whether can find a COD or not, if yes,703 First call GetCOD() to check whether there is a stable COD, if yes, 704 704 check the linear one turn matrix is stable or not, then put the linear 705 705 one turn map … … 743 743 printf("\n %d D tracking....\n",n); 744 744 745 /* Gets closed orbit and computes one turn map around it*/745 /* Gets closed orbit and computes one turn map around it*/ 746 746 GetCOD(globval.CODimax, globval.CODeps, dP, lastpos); 747 747 … … 786 786 787 787 Input: 788 Chroma if true compute chromaticities and dispersion789 if false dispersion is set to zero !!!788 Chroma if true, compute chromaticities and dispersion 789 if false, dispersion is set to zero !!! 790 790 Dp energy offset 791 791 -
trunk/tracy/tracy/src/tracy.cc
r3 r11 97 97 template void radiate(ss_vect<tps> &, const double, const double, const tps[]); 98 98 99 template void Drift(double, double, ss_vect<double> &); 100 101 template void Drift(double, double, ss_vect<tps> &); 102 99 103 template void Drift(double, ss_vect<double> &); 100 104 … … 109 113 template void bend_fringe(double, double, ss_vect<tps> &); 110 114 111 template static void EdgeFocus(double, ss_vect<double> &);112 113 template static void EdgeFocus(double, ss_vect<tps> &);115 template static void BendCurvature(double, double, ss_vect<double> &); 116 117 template static void BendCurvature(double, double, ss_vect<tps> &); 114 118 115 119 template static void EdgeFocus(double, double, double, ss_vect<double> &, bool); … … 124 128 125 129 template void Drift_Pass(CellType &, ss_vect<tps> &); 130 131 132 template void dipole_kick(double, double, double, ss_vect<double> &); 133 template void dipole_kick(double, double, double, ss_vect<tps> &); 134 template void multipole_kick(int, double[], double, double, ss_vect<double> &); 135 template void multipole_kick(int, double[], double, double, ss_vect<tps> &); 126 136 127 137 template void thin_kick(int, double[], double, double, double,
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