1 | // Prediction mouvement d'etoiles entre un tour et le suivant...
|
---|
2 | // si TS -> TS + dT, H -> H + dT, dT=dH
|
---|
3 | //
|
---|
4 | // dz = - cos phi sin az dH (check sign)
|
---|
5 | // daz = (sin phi - cos az cotg z cos phi) dH (check sign)
|
---|
6 | //
|
---|
7 | // free parameters = period + phase
|
---|
8 |
|
---|
9 | #include <math.h>
|
---|
10 | #include "ssthandler.h"
|
---|
11 |
|
---|
12 | // diodpermut[i] = channel de la diode i
|
---|
13 | int SSTHandler::diodpermut[46]=
|
---|
14 | { 8,24,40, 9,25,41,10,26,42,11,
|
---|
15 | 27,43,16,32, 1,17,33, 2,18,34,
|
---|
16 | 3,19,35,12,28,44,13,29,45,14,
|
---|
17 | 30,46,15,31,47,20,36, 5,21,37,
|
---|
18 | 6,22,38, 7,23,39};
|
---|
19 | // voies 0 et 4 non connectees, voie 1 en panne.
|
---|
20 |
|
---|
21 | SSTHandler::SSTHandler()
|
---|
22 | {
|
---|
23 | diodeHistLength = nb_per_block*2+10;
|
---|
24 | diodeT = new int[diodeHistLength*nb_photo_diodes];
|
---|
25 | starHistLength = 300;
|
---|
26 | stars = new (vector<star>[starHistLength]);
|
---|
27 | lastBlkNum = -1;
|
---|
28 |
|
---|
29 | //Has2Bars(false);
|
---|
30 | prcTodo=0;
|
---|
31 | seuil=100;
|
---|
32 |
|
---|
33 | }
|
---|
34 |
|
---|
35 | SSTHandler::SSTHandler(SSTHandler const& x)
|
---|
36 | {
|
---|
37 | diodeHistLength = x.diodeHistLength;
|
---|
38 | diodeT = new int[diodeHistLength*nb_photo_diodes];
|
---|
39 | memcpy(diodeT, x.diodeT, diodeHistLength*nb_photo_diodes);
|
---|
40 | starHistLength = x.starHistLength;
|
---|
41 | stars = new (vector<star>[starHistLength]);
|
---|
42 | for (int i=0; i<starHistLength; i++)
|
---|
43 | stars[i] = x.stars[i];
|
---|
44 |
|
---|
45 | prcTodo = x.prcTodo;
|
---|
46 | // has2bars = x.has2bars;
|
---|
47 | // elecOffset = x.elecOffset;
|
---|
48 | lastBlkNum = x.lastBlkNum;
|
---|
49 | seuil = x.seuil;
|
---|
50 | }
|
---|
51 |
|
---|
52 | SSTHandler& SSTHandler::operator = (SSTHandler const& x) {
|
---|
53 | delete[] stars;
|
---|
54 | delete[] diodeT;
|
---|
55 | diodeHistLength = x.diodeHistLength;
|
---|
56 | diodeT = new int[diodeHistLength*nb_photo_diodes];
|
---|
57 | memcpy(diodeT, x.diodeT, diodeHistLength*nb_photo_diodes);
|
---|
58 | starHistLength = x.starHistLength;
|
---|
59 | stars = new (vector<star>[starHistLength]);
|
---|
60 | for (int i=0; i<starHistLength; i++)
|
---|
61 | stars[i] = x.stars[i];
|
---|
62 |
|
---|
63 | prcTodo = x.prcTodo;
|
---|
64 | // has2bars = x.has2bars;
|
---|
65 | // elecOffset = x.elecOffset;
|
---|
66 | lastBlkNum = x.lastBlkNum;
|
---|
67 | seuil = x.seuil;
|
---|
68 |
|
---|
69 | return *this;
|
---|
70 | }
|
---|
71 |
|
---|
72 | SSTHandler::~SSTHandler()
|
---|
73 | {
|
---|
74 | delete[] stars;
|
---|
75 | delete[] diodeT;
|
---|
76 | }
|
---|
77 |
|
---|
78 | void SSTHandler::NeedProcess(int prcMask)
|
---|
79 | {
|
---|
80 | prcTodo |= prcMask;
|
---|
81 | if (prcTodo & findAxis) prcTodo |= findPeriod;
|
---|
82 | if (prcTodo & findPeriod) prcTodo |= findStars;
|
---|
83 | if (prcTodo & findStars) prcTodo |= rmveOffset;
|
---|
84 | }
|
---|
85 |
|
---|
86 | bool SSTHandler::has2bars = false;
|
---|
87 | int SSTHandler::elecOffset = 1;
|
---|
88 |
|
---|
89 | void SSTHandler::Has2Bars(bool has, int eo)
|
---|
90 | {
|
---|
91 | has2bars = has;
|
---|
92 | elecOffset = eo;
|
---|
93 | }
|
---|
94 |
|
---|
95 | void SSTHandler::ProcessBlock(block_type_sst* blk)
|
---|
96 | {
|
---|
97 | lastBlkNum = numero_block(blk);
|
---|
98 | for (int i = 0; i<nb_per_block*2; i++) {
|
---|
99 | DecodeTMBlock(blk, i, diodeRaw[i]);
|
---|
100 | }
|
---|
101 | if (prcTodo & rmveOffset) {
|
---|
102 | RemoveOffset();
|
---|
103 | }
|
---|
104 | if (prcTodo & findStars) {
|
---|
105 | FindStars();
|
---|
106 | }
|
---|
107 | }
|
---|
108 |
|
---|
109 |
|
---|
110 | void SSTHandler::DecodeTMBlock(block_type_sst* blk, int i, int* diod)
|
---|
111 | {
|
---|
112 | int j; // 0-5 : numero du bloc de 8 diodes
|
---|
113 | int k; // 0-2 : indice du bloc de 4 bits (une diode = 12 bits = 3 blocs de 4 bits)
|
---|
114 | int l; // 0-7 : indice de la diode dans son bloc (8 diodes * 4 bits = 1 mot de 32 bits)
|
---|
115 |
|
---|
116 | // numero de la diode (0-47) = j*8+l;
|
---|
117 | // indice dans le bloc sst du mot de 32 bits (0-17) = j*3+k;
|
---|
118 | // indice dans mot de 32 bits du premier bit utile = 4*l;
|
---|
119 |
|
---|
120 | for (j=0; j<48; j++) diod[j] = 0;
|
---|
121 |
|
---|
122 | for (j=0; j<6; j++)
|
---|
123 | for (k=0; k<3; k++)
|
---|
124 | for (l=0; l<8; l++) {
|
---|
125 | int4 word = blk->sst[i][j*3+k];
|
---|
126 | word = (word >> (4*l)) & 0xF;
|
---|
127 | // printf("diode %d mot %d valeur %d\n", j*8+l, k, word);
|
---|
128 | diod[j*8+l] = (diod[j*8+l] << 4) + word;
|
---|
129 | }
|
---|
130 |
|
---|
131 | //for (j=0; j<48; j++) if (diod[j]>2047) diod[j] -= 4096;
|
---|
132 | for (j=0; j<48; j++) diod[j] -= 2048;
|
---|
133 |
|
---|
134 | }
|
---|
135 |
|
---|
136 |
|
---|
137 | void SSTHandler::RemoveOffset()
|
---|
138 | {
|
---|
139 | int j0 = diodeHistLength-(nb_per_block*2);
|
---|
140 |
|
---|
141 | // Decalage vers la gauche de la taille d'un bloc
|
---|
142 | memcpy(diodeT, diodeT + (nb_per_block*2)*nb_photo_diodes, j0*nb_photo_diodes);
|
---|
143 |
|
---|
144 | for (int j=0; j<nb_per_block*2; j++) {
|
---|
145 | // permutation des diodes
|
---|
146 | for (int i=0; i<46; i++)
|
---|
147 | diode(j+j0,i) = diodeRaw[j][diodpermut[i]];
|
---|
148 |
|
---|
149 | /*
|
---|
150 | // calcul d'un fond sur la rangee. Moyenne clippee.
|
---|
151 | float m = 0; float sig = 1.e10;
|
---|
152 | for (int k=0; k<2; k++) {
|
---|
153 | float s=0; float s2=0; int n=0;
|
---|
154 | for (int i=0; i<46; i++) {
|
---|
155 | if (fabs(diode(j+j0,i)-m)<3*sig+1) {
|
---|
156 | s += diode(j+j0,i); s2 += diode(j+j0,i)*diode(j+j0,i); n++;
|
---|
157 | }
|
---|
158 | }
|
---|
159 | if (n>0) {
|
---|
160 | m = s/n; sig = sqrt(s2/n - m*m);
|
---|
161 | } else {
|
---|
162 | m = 0; break;
|
---|
163 | }
|
---|
164 | }
|
---|
165 | for (int i=0; i<46; i++)
|
---|
166 | diode(j+j0,i) -= m;
|
---|
167 | */
|
---|
168 | }
|
---|
169 | }
|
---|
170 |
|
---|
171 | int SSTHandler::getRawSignal(int imesure, int idiode) // for last block
|
---|
172 | {
|
---|
173 | if (imesure<0 || imesure>=nb_per_block*2 || idiode<0 || idiode>=48) return -99999;
|
---|
174 | return diodeRaw[imesure][idiode];
|
---|
175 | }
|
---|
176 |
|
---|
177 | int SSTHandler::getSignal(int imesure, int idiode) // for last block
|
---|
178 | {
|
---|
179 | int j0 = diodeHistLength-(nb_per_block*2);
|
---|
180 | if (imesure+j0<0 || imesure>=nb_per_block*2 ||
|
---|
181 | idiode<0 || idiode>=nb_photo_diodes) return -99999;
|
---|
182 | return diode(imesure+j0, idiode);
|
---|
183 | }
|
---|
184 |
|
---|
185 | int SSTHandler::getStarZ(int imesure, int istar) // for last block
|
---|
186 | {
|
---|
187 | int j0 = starHistLength-(nb_per_block*2);
|
---|
188 | if (imesure+j0<0 || imesure>=nb_per_block*2) return -99999;
|
---|
189 | if (istar < 0 || istar >= stars[imesure+j0].size()) return -99999;
|
---|
190 | return stars[imesure+j0][istar].z;
|
---|
191 | }
|
---|
192 |
|
---|
193 | int SSTHandler::getStarF(int imesure, int istar) // for last block
|
---|
194 | {
|
---|
195 | int j0 = starHistLength-(nb_per_block*2);
|
---|
196 | if (imesure+j0<0 || imesure>=nb_per_block*2) return -99999;
|
---|
197 | if (istar < 0 || istar >= stars[imesure+j0].size()) return -99999;
|
---|
198 | return stars[imesure+j0][istar].m;
|
---|
199 | }
|
---|
200 |
|
---|
201 |
|
---|
202 | void SSTHandler::FindStars() // sur les 72 derniers echantillons dans diode.
|
---|
203 | {
|
---|
204 | int js0 = starHistLength-(nb_per_block*2);
|
---|
205 | int jd0 = diodeHistLength-(nb_per_block*2);
|
---|
206 | // Decalage vers la gauche de la taille d'un bloc
|
---|
207 | for (int i=0; i<js0; i++) {
|
---|
208 | stars[i] = stars[i+(nb_per_block*2)];
|
---|
209 | }
|
---|
210 |
|
---|
211 | // Recherche d'etoiles
|
---|
212 | for (int i=0; i<(nb_per_block*2); i++) {
|
---|
213 | stars[js0+i].clear();
|
---|
214 | for (int idiode=0; idiode<46; idiode++) {
|
---|
215 | if (diode(jd0+i,idiode) < -seuil) {
|
---|
216 | if (has2bars) {
|
---|
217 | for (int j=-2; j>=-5; j--) {
|
---|
218 | if (diode(jd0+i+j,(idiode+elecOffset)%46) < -seuil) {
|
---|
219 | star s;
|
---|
220 | s.z = idiode;
|
---|
221 | s.m = -diode(jd0+i,idiode);
|
---|
222 | s.t = i; // $CHECK$ need absolute time...
|
---|
223 | stars[js0+i].push_back(s);
|
---|
224 | break;
|
---|
225 | } else if (idiode<45 && diode(jd0+i+j,(idiode+1+elecOffset)%46) > seuil) {
|
---|
226 | star s;
|
---|
227 | s.z = idiode+.5;
|
---|
228 | s.m = -diode(jd0+i,idiode);
|
---|
229 | s.t = i; // $CHECK$ need absolute time...
|
---|
230 | stars[js0+i].push_back(s);
|
---|
231 | break;
|
---|
232 | }
|
---|
233 | }
|
---|
234 | } else {
|
---|
235 | if (diode(jd0+i,idiode) > diode(jd0+i-1,idiode)) {
|
---|
236 | star s;
|
---|
237 | s.z = idiode;
|
---|
238 | s.m = -diode(jd0+i-1,idiode);
|
---|
239 | s.t = i; // $CHECK$ need absolute time...
|
---|
240 | stars[js0+i].push_back(s);
|
---|
241 | }
|
---|
242 | }
|
---|
243 | }
|
---|
244 | }
|
---|
245 | }
|
---|
246 |
|
---|
247 |
|
---|
248 | }
|
---|