1 | /***************************************************************************
|
---|
2 | * blitz/arrayexpr.h Array<T,N> expression templates
|
---|
3 | *
|
---|
4 | * $Id: expr.h,v 1.1.1.1 1999-11-26 16:37:07 ansari Exp $
|
---|
5 | *
|
---|
6 | * Copyright (C) 1997,1998 Todd Veldhuizen <tveldhui@seurat.uwaterloo.ca>
|
---|
7 | *
|
---|
8 | * This program is free software; you can redistribute it and/or
|
---|
9 | * modify it under the terms of the GNU General Public License
|
---|
10 | * as published by the Free Software Foundation; either version 2
|
---|
11 | * of the License, or (at your option) any later version.
|
---|
12 | *
|
---|
13 | * This program is distributed in the hope that it will be useful,
|
---|
14 | * but WITHOUT ANY WARRANTY; without even the implied warranty of
|
---|
15 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
|
---|
16 | * GNU General Public License for more details.
|
---|
17 | *
|
---|
18 | * Suggestions: blitz-suggest@cybervision.com
|
---|
19 | * Bugs: blitz-bugs@cybervision.com
|
---|
20 | *
|
---|
21 | * For more information, please see the Blitz++ Home Page:
|
---|
22 | * http://seurat.uwaterloo.ca/blitz/
|
---|
23 | *
|
---|
24 | ***************************************************************************
|
---|
25 | * $Log: not supported by cvs2svn $
|
---|
26 | * Revision 1.1.1.1 1999/04/09 17:59:03 ansari
|
---|
27 | * Creation module DPC/Blitz (blitz 0.4) Reza 09/04/99
|
---|
28 | *
|
---|
29 | * Revision 1.2 1998/03/14 00:04:47 tveldhui
|
---|
30 | * 0.2-alpha-05
|
---|
31 | *
|
---|
32 | * Revision 1.1 1997/07/16 14:51:20 tveldhui
|
---|
33 | * Update: Alpha release 0.2 (Arrays)
|
---|
34 | *
|
---|
35 | */
|
---|
36 |
|
---|
37 | #ifndef BZ_ARRAYEXPR_H
|
---|
38 | #define BZ_ARRAYEXPR_H
|
---|
39 |
|
---|
40 | #ifndef BZ_ARRAY_H
|
---|
41 | #error <blitz/array/expr.h> must be included via <blitz/array.h>
|
---|
42 | #endif
|
---|
43 |
|
---|
44 | #ifndef BZ_OPS_H
|
---|
45 | #include <blitz/ops.h>
|
---|
46 | #endif
|
---|
47 |
|
---|
48 | #ifndef BZ_PRETTYPRINT_H
|
---|
49 | #include <blitz/prettyprint.h>
|
---|
50 | #endif
|
---|
51 |
|
---|
52 | #ifndef BZ_SHAPECHECK_H
|
---|
53 | #include <blitz/shapecheck.h>
|
---|
54 | #endif
|
---|
55 |
|
---|
56 | #ifdef BZ_HAVE_NUMERIC_LIMITS
|
---|
57 | #ifndef BZ_NUMINQUIRE_H
|
---|
58 | #include <blitz/numinquire.h>
|
---|
59 | #endif
|
---|
60 | #endif
|
---|
61 |
|
---|
62 | /*
|
---|
63 | * The array expression templates iterator interface is followed by
|
---|
64 | * these classes:
|
---|
65 | *
|
---|
66 | * ArrayIterator <blitz/arrayiter.h>
|
---|
67 | * _bz_ArrayExpr <blitz/arrayexpr.h>
|
---|
68 | * _bz_ArrayExprOp "
|
---|
69 | * _bz_ArrayExprUnaryOp "
|
---|
70 | * _bz_ArrayExprConstant "
|
---|
71 | * _bz_ArrayMap <blitz/arraymap.h>
|
---|
72 | * _bz_ArrayExprReduce <blitz/arrayreduce.h>
|
---|
73 | * IndexPlaceholder <blitz/indexexpr.h>
|
---|
74 | */
|
---|
75 |
|
---|
76 | BZ_NAMESPACE(blitz)
|
---|
77 |
|
---|
78 | template<class T1, class T2>
|
---|
79 | class _bz_ExprPair {
|
---|
80 | public:
|
---|
81 | _bz_ExprPair(const T1& a, const T2& b)
|
---|
82 | : first_(a), second_(b)
|
---|
83 | { }
|
---|
84 |
|
---|
85 | const T1& first() const
|
---|
86 | { return first_; }
|
---|
87 |
|
---|
88 | const T2& second() const
|
---|
89 | { return second_; }
|
---|
90 |
|
---|
91 | protected:
|
---|
92 | T1 first_;
|
---|
93 | T2 second_;
|
---|
94 | };
|
---|
95 |
|
---|
96 | template<class T1, class T2>
|
---|
97 | inline _bz_ExprPair<T1,T2> makeExprPair(const T1& a, const T2& b)
|
---|
98 | {
|
---|
99 | return _bz_ExprPair<T1,T2>(a,b);
|
---|
100 | }
|
---|
101 |
|
---|
102 | template<class P_expr>
|
---|
103 | class _bz_ArrayExpr
|
---|
104 | #ifdef BZ_NEW_EXPRESSION_TEMPLATES
|
---|
105 | : public ETBase<_bz_ArrayExpr<P_expr> >
|
---|
106 | #endif
|
---|
107 | {
|
---|
108 |
|
---|
109 | public:
|
---|
110 | typedef P_expr T_expr;
|
---|
111 | typedef _bz_typename T_expr::T_numtype T_numtype;
|
---|
112 | typedef T_expr T_ctorArg1;
|
---|
113 | typedef int T_ctorArg2; // dummy
|
---|
114 |
|
---|
115 | enum { numArrayOperands = BZ_ENUM_CAST(P_expr::numArrayOperands),
|
---|
116 | numIndexPlaceholders = BZ_ENUM_CAST(P_expr::numIndexPlaceholders),
|
---|
117 | rank = BZ_ENUM_CAST(P_expr::rank) };
|
---|
118 |
|
---|
119 | _bz_ArrayExpr(const _bz_ArrayExpr<P_expr>& a)
|
---|
120 | : iter_(a.iter_)
|
---|
121 | { }
|
---|
122 |
|
---|
123 | _bz_ArrayExpr(T_expr a)
|
---|
124 | : iter_(a)
|
---|
125 | { }
|
---|
126 |
|
---|
127 | _bz_ArrayExpr(_bz_typename T_expr::T_ctorArg1 a)
|
---|
128 | : iter_(a)
|
---|
129 | { }
|
---|
130 |
|
---|
131 | // This template is not possible because it masks the copy constructor,
|
---|
132 | // wreaking havoc.
|
---|
133 |
|
---|
134 | #if BZ_TEMPLATE_CTOR_DOESNT_CAUSE_HAVOC
|
---|
135 | template<class T1>
|
---|
136 | _bz_explicit _bz_ArrayExpr(T1 a)
|
---|
137 | : iter_(a)
|
---|
138 | { }
|
---|
139 | #endif
|
---|
140 |
|
---|
141 | template<class T1, class T2>
|
---|
142 | _bz_ArrayExpr(T1 a, T2 b)
|
---|
143 | : iter_(a, b)
|
---|
144 | { }
|
---|
145 |
|
---|
146 | template<class T1, class T2, class T3>
|
---|
147 | _bz_ArrayExpr(T1 a, T2 b, T3 c)
|
---|
148 | : iter_(a, b, c)
|
---|
149 | { }
|
---|
150 |
|
---|
151 | template<class T1, class T2>
|
---|
152 | _bz_ArrayExpr(_bz_ExprPair<T1,T2> pair)
|
---|
153 | : iter_(pair.first(), pair.second())
|
---|
154 | { }
|
---|
155 |
|
---|
156 | T_numtype operator*()
|
---|
157 | { return *iter_; }
|
---|
158 |
|
---|
159 | #ifdef BZ_ARRAY_EXPR_PASS_INDEX_BY_VALUE
|
---|
160 | template<int N_rank>
|
---|
161 | T_numtype operator()(TinyVector<int, N_rank> i)
|
---|
162 | { return iter_(i); }
|
---|
163 | #else
|
---|
164 | template<int N_rank>
|
---|
165 | T_numtype operator()(const TinyVector<int, N_rank>& i)
|
---|
166 | { return iter_(i); }
|
---|
167 | #endif
|
---|
168 |
|
---|
169 | int lbound(int rank)
|
---|
170 | { return iter_.lbound(rank); }
|
---|
171 |
|
---|
172 | int ubound(int rank)
|
---|
173 | { return iter_.ubound(rank); }
|
---|
174 |
|
---|
175 | void push(int position)
|
---|
176 | { iter_.push(position); }
|
---|
177 |
|
---|
178 | void pop(int position)
|
---|
179 | { iter_.pop(position); }
|
---|
180 |
|
---|
181 | void advance()
|
---|
182 | { iter_.advance(); }
|
---|
183 |
|
---|
184 | void advance(int n)
|
---|
185 | { iter_.advance(n); }
|
---|
186 |
|
---|
187 | void loadStride(int rank)
|
---|
188 | { iter_.loadStride(rank); }
|
---|
189 |
|
---|
190 | _bz_bool isUnitStride(int rank) const
|
---|
191 | { return iter_.isUnitStride(rank); }
|
---|
192 |
|
---|
193 | void advanceUnitStride()
|
---|
194 | { iter_.advanceUnitStride(); }
|
---|
195 |
|
---|
196 | _bz_bool canCollapse(int outerLoopRank, int innerLoopRank) const
|
---|
197 | {
|
---|
198 | // BZ_DEBUG_MESSAGE("_bz_ArrayExpr<>::canCollapse()");
|
---|
199 | return iter_.canCollapse(outerLoopRank, innerLoopRank);
|
---|
200 | }
|
---|
201 |
|
---|
202 | T_numtype operator[](int i)
|
---|
203 | { return iter_[i]; }
|
---|
204 |
|
---|
205 | T_numtype fastRead(int i)
|
---|
206 | { return iter_.fastRead(i); }
|
---|
207 |
|
---|
208 | int suggestStride(int rank) const
|
---|
209 | { return iter_.suggestStride(rank); }
|
---|
210 |
|
---|
211 | _bz_bool isStride(int rank, int stride) const
|
---|
212 | { return iter_.isStride(rank,stride); }
|
---|
213 |
|
---|
214 | void prettyPrint(string& str) const
|
---|
215 | {
|
---|
216 | prettyPrintFormat format(_bz_true); // Terse formatting by default
|
---|
217 | iter_.prettyPrint(str, format);
|
---|
218 | }
|
---|
219 |
|
---|
220 | void prettyPrint(string& str, prettyPrintFormat& format) const
|
---|
221 | { iter_.prettyPrint(str, format); }
|
---|
222 |
|
---|
223 | template<class T_shape>
|
---|
224 | _bz_bool shapeCheck(const T_shape& shape)
|
---|
225 | { return iter_.shapeCheck(shape); }
|
---|
226 |
|
---|
227 | template<int N_rank>
|
---|
228 | void moveTo(const TinyVector<int,N_rank>& i)
|
---|
229 | {
|
---|
230 | iter_.moveTo(i);
|
---|
231 | }
|
---|
232 |
|
---|
233 | protected:
|
---|
234 | _bz_ArrayExpr() { }
|
---|
235 |
|
---|
236 | T_expr iter_;
|
---|
237 | };
|
---|
238 |
|
---|
239 | struct bounds {
|
---|
240 | static int compute_lbound(int rank, int lbound1, int lbound2)
|
---|
241 | {
|
---|
242 | // The value INT_MIN indicates that there are no arrays
|
---|
243 | // in a subtree of the expression. This logic returns
|
---|
244 | // whichever lbound is available. If there are two
|
---|
245 | // conflicting lbound values, this is an error.
|
---|
246 |
|
---|
247 | if (lbound1 == lbound2)
|
---|
248 | return lbound1;
|
---|
249 | else if (lbound1 == INT_MIN)
|
---|
250 | return lbound2;
|
---|
251 | else if (lbound2 == INT_MIN)
|
---|
252 | return lbound1;
|
---|
253 |
|
---|
254 | BZ_DEBUG_MESSAGE("Two array operands have different"
|
---|
255 | << endl << "lower bounds: in rank " << rank << ", the bounds are "
|
---|
256 | << lbound1 << " and " << lbound2 << endl);
|
---|
257 | BZ_PRE_FAIL;
|
---|
258 | return 0;
|
---|
259 | }
|
---|
260 |
|
---|
261 | static int compute_ubound(int rank, int ubound1, int ubound2)
|
---|
262 | {
|
---|
263 | // The value INT_MAX indicates that there are no arrays
|
---|
264 | // in a subtree of the expression. This logic returns
|
---|
265 | // whichever ubound is available. If there are two
|
---|
266 | // conflicting ubound values, this is an error.
|
---|
267 |
|
---|
268 | if (ubound1 == ubound2)
|
---|
269 | return ubound1;
|
---|
270 | else if (ubound1 == INT_MAX)
|
---|
271 | return ubound2;
|
---|
272 | else if (ubound2 == INT_MAX)
|
---|
273 | return ubound1;
|
---|
274 |
|
---|
275 | BZ_DEBUG_MESSAGE("Two array operands have different"
|
---|
276 | << endl << "upper bounds: in rank " << rank << ", the bounds are "
|
---|
277 | << ubound1 << " and " << ubound2 << endl);
|
---|
278 | BZ_PRE_FAIL;
|
---|
279 | return 0;
|
---|
280 | }
|
---|
281 |
|
---|
282 | };
|
---|
283 |
|
---|
284 | template<class P_expr1, class P_expr2, class P_op>
|
---|
285 | class _bz_ArrayExprOp {
|
---|
286 | public:
|
---|
287 | typedef P_expr1 T_expr1;
|
---|
288 | typedef P_expr2 T_expr2;
|
---|
289 | typedef _bz_typename T_expr1::T_numtype T_numtype1;
|
---|
290 | typedef _bz_typename T_expr2::T_numtype T_numtype2;
|
---|
291 | typedef _bz_typename P_op::T_numtype T_numtype;
|
---|
292 | typedef P_op T_op;
|
---|
293 | typedef T_expr1 T_ctorArg1;
|
---|
294 | typedef T_expr2 T_ctorArg2;
|
---|
295 |
|
---|
296 | enum { numArrayOperands = BZ_ENUM_CAST(P_expr1::numArrayOperands)
|
---|
297 | + BZ_ENUM_CAST(P_expr2::numArrayOperands),
|
---|
298 | numIndexPlaceholders = BZ_ENUM_CAST(P_expr1::numIndexPlaceholders)
|
---|
299 | + BZ_ENUM_CAST(P_expr2::numIndexPlaceholders),
|
---|
300 | rank = (BZ_ENUM_CAST(P_expr1::rank) > BZ_ENUM_CAST(P_expr2::rank))
|
---|
301 | ? BZ_ENUM_CAST(P_expr1::rank) : BZ_ENUM_CAST(P_expr2::rank)
|
---|
302 | };
|
---|
303 |
|
---|
304 | _bz_ArrayExprOp(const _bz_ArrayExprOp<P_expr1, P_expr2, P_op>& a)
|
---|
305 | : iter1_(a.iter1_), iter2_(a.iter2_)
|
---|
306 | { }
|
---|
307 |
|
---|
308 | template<class T1, class T2>
|
---|
309 | _bz_ArrayExprOp(T1 a, T2 b)
|
---|
310 | : iter1_(a), iter2_(b)
|
---|
311 | { }
|
---|
312 |
|
---|
313 | // _bz_ArrayExprOp(T_expr1 a, T_expr2 b)
|
---|
314 | // : iter1_(a), iter2_(b)
|
---|
315 | // { }
|
---|
316 |
|
---|
317 | T_numtype operator*()
|
---|
318 | { return T_op::apply(*iter1_, *iter2_); }
|
---|
319 |
|
---|
320 | #ifdef BZ_ARRAY_EXPR_PASS_INDEX_BY_VALUE
|
---|
321 | template<int N_rank>
|
---|
322 | T_numtype operator()(TinyVector<int, N_rank> i)
|
---|
323 | { return T_op::apply(iter1_(i), iter2_(i)); }
|
---|
324 | #else
|
---|
325 | template<int N_rank>
|
---|
326 | T_numtype operator()(const TinyVector<int, N_rank>& i)
|
---|
327 | { return T_op::apply(iter1_(i), iter2_(i)); }
|
---|
328 | #endif
|
---|
329 |
|
---|
330 | int lbound(int rank)
|
---|
331 | {
|
---|
332 | return bounds::compute_lbound(rank, iter1_.lbound(rank),
|
---|
333 | iter2_.lbound(rank));
|
---|
334 | }
|
---|
335 |
|
---|
336 | int ubound(int rank)
|
---|
337 | {
|
---|
338 | return bounds::compute_ubound(rank, iter1_.ubound(rank),
|
---|
339 | iter2_.ubound(rank));
|
---|
340 | }
|
---|
341 |
|
---|
342 | void push(int position)
|
---|
343 | {
|
---|
344 | iter1_.push(position);
|
---|
345 | iter2_.push(position);
|
---|
346 | }
|
---|
347 |
|
---|
348 | void pop(int position)
|
---|
349 | {
|
---|
350 | iter1_.pop(position);
|
---|
351 | iter2_.pop(position);
|
---|
352 | }
|
---|
353 |
|
---|
354 | void advance()
|
---|
355 | {
|
---|
356 | iter1_.advance();
|
---|
357 | iter2_.advance();
|
---|
358 | }
|
---|
359 |
|
---|
360 | void advance(int n)
|
---|
361 | {
|
---|
362 | iter1_.advance(n);
|
---|
363 | iter2_.advance(n);
|
---|
364 | }
|
---|
365 |
|
---|
366 | void loadStride(int rank)
|
---|
367 | {
|
---|
368 | iter1_.loadStride(rank);
|
---|
369 | iter2_.loadStride(rank);
|
---|
370 | }
|
---|
371 |
|
---|
372 | _bz_bool isUnitStride(int rank) const
|
---|
373 | { return iter1_.isUnitStride(rank) && iter2_.isUnitStride(rank); }
|
---|
374 |
|
---|
375 | void advanceUnitStride()
|
---|
376 | {
|
---|
377 | iter1_.advanceUnitStride();
|
---|
378 | iter2_.advanceUnitStride();
|
---|
379 | }
|
---|
380 |
|
---|
381 | _bz_bool canCollapse(int outerLoopRank, int innerLoopRank) const
|
---|
382 | {
|
---|
383 | // BZ_DEBUG_MESSAGE("_bz_ArrayExprOp<>::canCollapse");
|
---|
384 | return iter1_.canCollapse(outerLoopRank, innerLoopRank)
|
---|
385 | && iter2_.canCollapse(outerLoopRank, innerLoopRank);
|
---|
386 | }
|
---|
387 |
|
---|
388 | T_numtype operator[](int i)
|
---|
389 | { return T_op::apply(iter1_[i], iter2_[i]); }
|
---|
390 |
|
---|
391 | T_numtype fastRead(int i)
|
---|
392 | { return T_op::apply(iter1_.fastRead(i), iter2_.fastRead(i)); }
|
---|
393 |
|
---|
394 | int suggestStride(int rank) const
|
---|
395 | {
|
---|
396 | int stride1 = iter1_.suggestStride(rank);
|
---|
397 | int stride2 = iter2_.suggestStride(rank);
|
---|
398 | return (stride1 > stride2) ? stride1 : stride2;
|
---|
399 | }
|
---|
400 |
|
---|
401 | _bz_bool isStride(int rank, int stride) const
|
---|
402 | {
|
---|
403 | return iter1_.isStride(rank,stride) && iter2_.isStride(rank,stride);
|
---|
404 | }
|
---|
405 |
|
---|
406 | template<int N_rank>
|
---|
407 | void moveTo(const TinyVector<int,N_rank>& i)
|
---|
408 | {
|
---|
409 | iter1_.moveTo(i);
|
---|
410 | iter2_.moveTo(i);
|
---|
411 | }
|
---|
412 |
|
---|
413 | void prettyPrint(string& str, prettyPrintFormat& format) const
|
---|
414 | {
|
---|
415 | T_op::prettyPrint(str, format, iter1_, iter2_);
|
---|
416 | }
|
---|
417 |
|
---|
418 | template<class T_shape>
|
---|
419 | _bz_bool shapeCheck(const T_shape& shape)
|
---|
420 | { return iter1_.shapeCheck(shape) && iter2_.shapeCheck(shape); }
|
---|
421 |
|
---|
422 | protected:
|
---|
423 | _bz_ArrayExprOp() { }
|
---|
424 |
|
---|
425 | T_expr1 iter1_;
|
---|
426 | T_expr2 iter2_;
|
---|
427 | };
|
---|
428 |
|
---|
429 | template<class P_expr, class P_op>
|
---|
430 | class _bz_ArrayExprUnaryOp {
|
---|
431 | public:
|
---|
432 | typedef P_expr T_expr;
|
---|
433 | typedef _bz_typename P_expr::T_numtype T_numtype1;
|
---|
434 | typedef _bz_typename P_op::T_numtype T_numtype;
|
---|
435 | typedef P_op T_op;
|
---|
436 | typedef T_expr T_ctorArg1;
|
---|
437 | typedef int T_ctorArg2; // dummy
|
---|
438 |
|
---|
439 | enum { numArrayOperands = BZ_ENUM_CAST(T_expr::numArrayOperands),
|
---|
440 | numIndexPlaceholders = BZ_ENUM_CAST(T_expr::numIndexPlaceholders),
|
---|
441 | rank = BZ_ENUM_CAST(T_expr::rank) };
|
---|
442 |
|
---|
443 | _bz_ArrayExprUnaryOp(const _bz_ArrayExprUnaryOp<T_expr, P_op>& a)
|
---|
444 | : iter_(a.iter_)
|
---|
445 | { }
|
---|
446 |
|
---|
447 | _bz_ArrayExprUnaryOp(T_expr a)
|
---|
448 | : iter_(a)
|
---|
449 | { }
|
---|
450 |
|
---|
451 | _bz_ArrayExprUnaryOp(_bz_typename T_expr::T_ctorArg1 a)
|
---|
452 | : iter_(a)
|
---|
453 | { }
|
---|
454 |
|
---|
455 | #if BZ_TEMPLATE_CTOR_DOESNT_CAUSE_HAVOC
|
---|
456 | template<class T1>
|
---|
457 | _bz_explicit _bz_ArrayExprUnaryOp(T1 a)
|
---|
458 | : iter_(a)
|
---|
459 | { }
|
---|
460 | #endif
|
---|
461 |
|
---|
462 | int lbound(int rank)
|
---|
463 | { return iter_.lbound(rank); }
|
---|
464 |
|
---|
465 | int ubound(int rank)
|
---|
466 | { return iter_.ubound(rank); }
|
---|
467 |
|
---|
468 | T_numtype operator*()
|
---|
469 | { return T_op::apply(*iter_); }
|
---|
470 |
|
---|
471 | #ifdef BZ_ARRAY_EXPR_PASS_INDEX_BY_VALUE
|
---|
472 | template<int N_rank>
|
---|
473 | T_numtype operator()(TinyVector<int, N_rank> i)
|
---|
474 | { return T_op::apply(iter_(i)); }
|
---|
475 | #else
|
---|
476 | template<int N_rank>
|
---|
477 | T_numtype operator()(const TinyVector<int, N_rank>& i)
|
---|
478 | { return T_op::apply(iter_(i)); }
|
---|
479 | #endif
|
---|
480 |
|
---|
481 | void push(int position)
|
---|
482 | {
|
---|
483 | iter_.push(position);
|
---|
484 | }
|
---|
485 |
|
---|
486 | void pop(int position)
|
---|
487 | {
|
---|
488 | iter_.pop(position);
|
---|
489 | }
|
---|
490 |
|
---|
491 | void advance()
|
---|
492 | {
|
---|
493 | iter_.advance();
|
---|
494 | }
|
---|
495 |
|
---|
496 | void advance(int n)
|
---|
497 | {
|
---|
498 | iter_.advance(n);
|
---|
499 | }
|
---|
500 |
|
---|
501 | void loadStride(int rank)
|
---|
502 | {
|
---|
503 | iter_.loadStride(rank);
|
---|
504 | }
|
---|
505 |
|
---|
506 | _bz_bool isUnitStride(int rank) const
|
---|
507 | { return iter_.isUnitStride(rank); }
|
---|
508 |
|
---|
509 | void advanceUnitStride()
|
---|
510 | {
|
---|
511 | iter_.advanceUnitStride();
|
---|
512 | }
|
---|
513 |
|
---|
514 | template<int N_rank>
|
---|
515 | void moveTo(const TinyVector<int,N_rank>& i)
|
---|
516 | {
|
---|
517 | iter_.moveTo(i);
|
---|
518 | }
|
---|
519 |
|
---|
520 | _bz_bool canCollapse(int outerLoopRank, int innerLoopRank) const
|
---|
521 | {
|
---|
522 | // BZ_DEBUG_MESSAGE("_bz_ArrayExprUnaryOp<>::canCollapse");
|
---|
523 | return iter_.canCollapse(outerLoopRank, innerLoopRank);
|
---|
524 | }
|
---|
525 |
|
---|
526 | T_numtype operator[](int i)
|
---|
527 | { return T_op::apply(iter_[i]); }
|
---|
528 |
|
---|
529 | T_numtype fastRead(int i)
|
---|
530 | { return T_op::apply(iter_.fastRead(i)); }
|
---|
531 |
|
---|
532 | int suggestStride(int rank) const
|
---|
533 | { return iter_.suggestStride(rank); }
|
---|
534 |
|
---|
535 | _bz_bool isStride(int rank, int stride) const
|
---|
536 | { return iter_.isStride(rank,stride); }
|
---|
537 |
|
---|
538 | void prettyPrint(string& str, prettyPrintFormat& format) const
|
---|
539 | { T_op::prettyPrint(str, format, iter_); }
|
---|
540 |
|
---|
541 | template<class T_shape>
|
---|
542 | _bz_bool shapeCheck(const T_shape& shape)
|
---|
543 | { return iter_.shapeCheck(shape); }
|
---|
544 |
|
---|
545 | protected:
|
---|
546 | _bz_ArrayExprUnaryOp() { }
|
---|
547 |
|
---|
548 | T_expr iter_;
|
---|
549 | };
|
---|
550 |
|
---|
551 | template<class P_numtype>
|
---|
552 | class _bz_ArrayExprConstant {
|
---|
553 | public:
|
---|
554 | typedef P_numtype T_numtype;
|
---|
555 | typedef T_numtype T_ctorArg1;
|
---|
556 | typedef int T_ctorArg2; // dummy
|
---|
557 |
|
---|
558 | enum { numArrayOperands = 0, numIndexPlaceholders = 0, rank = 0 };
|
---|
559 |
|
---|
560 | _bz_ArrayExprConstant(const _bz_ArrayExprConstant<T_numtype>& a)
|
---|
561 | : value_(a.value_)
|
---|
562 | { }
|
---|
563 |
|
---|
564 | _bz_ArrayExprConstant(T_numtype value)
|
---|
565 | : value_(BZ_NO_PROPAGATE(value))
|
---|
566 | {
|
---|
567 | }
|
---|
568 |
|
---|
569 | // tiny() and huge() return the smallest and largest representable
|
---|
570 | // integer values. See <blitz/numinquire.h>
|
---|
571 | // NEEDS_WORK: use tiny(int()) once numeric_limits<T> available on
|
---|
572 | // all platforms
|
---|
573 | int lbound(int)
|
---|
574 | { return INT_MIN; }
|
---|
575 |
|
---|
576 | int ubound(int)
|
---|
577 | { return INT_MAX; }
|
---|
578 | // NEEDS_WORK: use huge(int()) once numeric_limits<T> available on
|
---|
579 | // all platforms
|
---|
580 |
|
---|
581 | T_numtype operator*()
|
---|
582 | { return value_; }
|
---|
583 |
|
---|
584 | #ifdef BZ_ARRAY_EXPR_PASS_INDEX_BY_VALUE
|
---|
585 | template<int N_rank>
|
---|
586 | T_numtype operator()(TinyVector<int,N_rank>)
|
---|
587 | { return value_; }
|
---|
588 | #else
|
---|
589 | template<int N_rank>
|
---|
590 | T_numtype operator()(const TinyVector<int,N_rank>&)
|
---|
591 | { return value_; }
|
---|
592 | #endif
|
---|
593 |
|
---|
594 | void push(int) { }
|
---|
595 | void pop(int) { }
|
---|
596 | void advance() { }
|
---|
597 | void advance(int) { }
|
---|
598 | void loadStride(int) { }
|
---|
599 |
|
---|
600 | _bz_bool isUnitStride(int rank) const
|
---|
601 | { return _bz_true; }
|
---|
602 |
|
---|
603 | void advanceUnitStride()
|
---|
604 | { }
|
---|
605 |
|
---|
606 | _bz_bool canCollapse(int,int) const
|
---|
607 | { return _bz_true; }
|
---|
608 |
|
---|
609 | T_numtype operator[](int)
|
---|
610 | { return value_; }
|
---|
611 |
|
---|
612 | T_numtype fastRead(int)
|
---|
613 | { return value_; }
|
---|
614 |
|
---|
615 | int suggestStride(int) const
|
---|
616 | { return 1; }
|
---|
617 |
|
---|
618 | _bz_bool isStride(int,int) const
|
---|
619 | { return _bz_true; }
|
---|
620 |
|
---|
621 | template<int N_rank>
|
---|
622 | void moveTo(const TinyVector<int,N_rank>& i)
|
---|
623 | {
|
---|
624 | }
|
---|
625 |
|
---|
626 | void prettyPrint(string& str, prettyPrintFormat& format) const
|
---|
627 | {
|
---|
628 | if (format.tersePrintingSelected())
|
---|
629 | str += format.nextScalarOperandSymbol();
|
---|
630 | else
|
---|
631 | str += BZ_DEBUG_TEMPLATE_AS_STRING_LITERAL(T_numtype);
|
---|
632 | }
|
---|
633 |
|
---|
634 | template<class T_shape>
|
---|
635 | _bz_bool shapeCheck(const T_shape&)
|
---|
636 | { return _bz_true; }
|
---|
637 |
|
---|
638 | protected:
|
---|
639 | _bz_ArrayExprConstant() { }
|
---|
640 |
|
---|
641 | T_numtype value_;
|
---|
642 | };
|
---|
643 |
|
---|
644 | BZ_NAMESPACE_END
|
---|
645 |
|
---|
646 | #include <blitz/array/asexpr.h>
|
---|
647 |
|
---|
648 | #endif // BZ_ARRAYEXPR_H
|
---|
649 |
|
---|