graphite.h revision 1.10 1 1.3 mrg /* Graphite polyhedral representation.
2 1.10 mrg Copyright (C) 2009-2022 Free Software Foundation, Inc.
3 1.3 mrg Contributed by Sebastian Pop <sebastian.pop (at) amd.com> and
4 1.3 mrg Tobias Grosser <grosser (at) fim.uni-passau.de>.
5 1.1 mrg
6 1.1 mrg This file is part of GCC.
7 1.1 mrg
8 1.1 mrg GCC is free software; you can redistribute it and/or modify
9 1.1 mrg it under the terms of the GNU General Public License as published by
10 1.1 mrg the Free Software Foundation; either version 3, or (at your option)
11 1.1 mrg any later version.
12 1.1 mrg
13 1.1 mrg GCC is distributed in the hope that it will be useful,
14 1.1 mrg but WITHOUT ANY WARRANTY; without even the implied warranty of
15 1.1 mrg MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 1.1 mrg GNU General Public License for more details.
17 1.1 mrg
18 1.1 mrg You should have received a copy of the GNU General Public License
19 1.1 mrg along with GCC; see the file COPYING3. If not see
20 1.1 mrg <http://www.gnu.org/licenses/>. */
21 1.1 mrg
22 1.3 mrg #ifndef GCC_GRAPHITE_POLY_H
23 1.3 mrg #define GCC_GRAPHITE_POLY_H
24 1.1 mrg
25 1.3 mrg #include "sese.h"
26 1.3 mrg
27 1.3 mrg typedef struct poly_dr *poly_dr_p;
28 1.3 mrg
29 1.3 mrg typedef struct poly_bb *poly_bb_p;
30 1.3 mrg
31 1.3 mrg typedef struct scop *scop_p;
32 1.3 mrg
33 1.3 mrg typedef unsigned graphite_dim_t;
34 1.3 mrg
35 1.3 mrg static inline graphite_dim_t scop_nb_params (scop_p);
36 1.3 mrg
37 1.3 mrg /* A data reference can write or read some memory or we
38 1.3 mrg just know it may write some memory. */
39 1.3 mrg enum poly_dr_type
40 1.3 mrg {
41 1.3 mrg PDR_READ,
42 1.3 mrg /* PDR_MAY_READs are represented using PDR_READS. This does not
43 1.3 mrg limit the expressiveness. */
44 1.3 mrg PDR_WRITE,
45 1.3 mrg PDR_MAY_WRITE
46 1.3 mrg };
47 1.3 mrg
48 1.3 mrg struct poly_dr
49 1.3 mrg {
50 1.3 mrg /* An identifier for this PDR. */
51 1.3 mrg int id;
52 1.3 mrg
53 1.3 mrg /* The number of data refs identical to this one in the PBB. */
54 1.3 mrg int nb_refs;
55 1.3 mrg
56 1.3 mrg /* A pointer to the gimple stmt containing this reference. */
57 1.3 mrg gimple *stmt;
58 1.3 mrg
59 1.3 mrg /* A pointer to the PBB that contains this data reference. */
60 1.3 mrg poly_bb_p pbb;
61 1.3 mrg
62 1.3 mrg enum poly_dr_type type;
63 1.3 mrg
64 1.3 mrg /* The access polyhedron contains the polyhedral space this data
65 1.3 mrg reference will access.
66 1.3 mrg
67 1.3 mrg The polyhedron contains these dimensions:
68 1.3 mrg
69 1.3 mrg - The alias set (a):
70 1.3 mrg Every memory access is classified in at least one alias set.
71 1.3 mrg
72 1.3 mrg - The subscripts (s_0, ..., s_n):
73 1.3 mrg The memory is accessed using zero or more subscript dimensions.
74 1.3 mrg
75 1.3 mrg - The iteration domain (variables and parameters)
76 1.3 mrg
77 1.3 mrg Do not hardcode the dimensions. Use the following accessor functions:
78 1.3 mrg - pdr_alias_set_dim
79 1.3 mrg - pdr_subscript_dim
80 1.3 mrg - pdr_iterator_dim
81 1.3 mrg - pdr_parameter_dim
82 1.3 mrg
83 1.3 mrg Example:
84 1.3 mrg
85 1.3 mrg | int A[1335][123];
86 1.3 mrg | int *p = malloc ();
87 1.3 mrg |
88 1.3 mrg | k = ...
89 1.3 mrg | for i
90 1.3 mrg | {
91 1.3 mrg | if (unknown_function ())
92 1.3 mrg | p = A;
93 1.3 mrg | ... = p[?][?];
94 1.3 mrg | for j
95 1.3 mrg | A[i][j+k] = m;
96 1.3 mrg | }
97 1.3 mrg
98 1.3 mrg The data access A[i][j+k] in alias set "5" is described like this:
99 1.3 mrg
100 1.3 mrg | i j k a s0 s1 1
101 1.3 mrg | 0 0 0 1 0 0 -5 = 0
102 1.3 mrg |-1 0 0 0 1 0 0 = 0
103 1.3 mrg | 0 -1 -1 0 0 1 0 = 0
104 1.3 mrg | 0 0 0 0 1 0 0 >= 0 # The last four lines describe the
105 1.3 mrg | 0 0 0 0 0 1 0 >= 0 # array size.
106 1.3 mrg | 0 0 0 0 -1 0 1335 >= 0
107 1.3 mrg | 0 0 0 0 0 -1 123 >= 0
108 1.3 mrg
109 1.3 mrg The pointer "*p" in alias set "5" and "7" is described as a union of
110 1.3 mrg polyhedron:
111 1.3 mrg
112 1.3 mrg
113 1.3 mrg | i k a s0 1
114 1.3 mrg | 0 0 1 0 -5 = 0
115 1.3 mrg | 0 0 0 1 0 >= 0
116 1.3 mrg
117 1.3 mrg "or"
118 1.3 mrg
119 1.3 mrg | i k a s0 1
120 1.3 mrg | 0 0 1 0 -7 = 0
121 1.3 mrg | 0 0 0 1 0 >= 0
122 1.3 mrg
123 1.3 mrg "*p" accesses all of the object allocated with 'malloc'.
124 1.3 mrg
125 1.3 mrg The scalar data access "m" is represented as an array with zero subscript
126 1.3 mrg dimensions.
127 1.3 mrg
128 1.3 mrg | i j k a 1
129 1.3 mrg | 0 0 0 -1 15 = 0
130 1.3 mrg
131 1.3 mrg The difference between the graphite internal format for access data and
132 1.3 mrg the OpenSop format is in the order of columns.
133 1.3 mrg Instead of having:
134 1.3 mrg
135 1.3 mrg | i j k a s0 s1 1
136 1.3 mrg | 0 0 0 1 0 0 -5 = 0
137 1.3 mrg |-1 0 0 0 1 0 0 = 0
138 1.3 mrg | 0 -1 -1 0 0 1 0 = 0
139 1.3 mrg | 0 0 0 0 1 0 0 >= 0 # The last four lines describe the
140 1.3 mrg | 0 0 0 0 0 1 0 >= 0 # array size.
141 1.3 mrg | 0 0 0 0 -1 0 1335 >= 0
142 1.3 mrg | 0 0 0 0 0 -1 123 >= 0
143 1.3 mrg
144 1.3 mrg In OpenScop we have:
145 1.3 mrg
146 1.3 mrg | a s0 s1 i j k 1
147 1.3 mrg | 1 0 0 0 0 0 -5 = 0
148 1.3 mrg | 0 1 0 -1 0 0 0 = 0
149 1.3 mrg | 0 0 1 0 -1 -1 0 = 0
150 1.3 mrg | 0 1 0 0 0 0 0 >= 0 # The last four lines describe the
151 1.3 mrg | 0 0 1 0 0 0 0 >= 0 # array size.
152 1.3 mrg | 0 -1 0 0 0 0 1335 >= 0
153 1.3 mrg | 0 0 -1 0 0 0 123 >= 0
154 1.3 mrg
155 1.3 mrg The OpenScop access function is printed as follows:
156 1.3 mrg
157 1.3 mrg | 1 # The number of disjunct components in a union of access functions.
158 1.3 mrg | R C O I L P # Described bellow.
159 1.3 mrg | a s0 s1 i j k 1
160 1.3 mrg | 1 0 0 0 0 0 -5 = 0
161 1.3 mrg | 0 1 0 -1 0 0 0 = 0
162 1.3 mrg | 0 0 1 0 -1 -1 0 = 0
163 1.3 mrg | 0 1 0 0 0 0 0 >= 0 # The last four lines describe the
164 1.3 mrg | 0 0 1 0 0 0 0 >= 0 # array size.
165 1.3 mrg | 0 -1 0 0 0 0 1335 >= 0
166 1.3 mrg | 0 0 -1 0 0 0 123 >= 0
167 1.3 mrg
168 1.3 mrg Where:
169 1.3 mrg - R: Number of rows.
170 1.3 mrg - C: Number of columns.
171 1.3 mrg - O: Number of output dimensions = alias set + number of subscripts.
172 1.3 mrg - I: Number of input dimensions (iterators).
173 1.3 mrg - L: Number of local (existentially quantified) dimensions.
174 1.3 mrg - P: Number of parameters.
175 1.3 mrg
176 1.3 mrg In the example, the vector "R C O I L P" is "7 7 3 2 0 1". */
177 1.3 mrg isl_map *accesses;
178 1.3 mrg isl_set *subscript_sizes;
179 1.3 mrg };
180 1.3 mrg
181 1.3 mrg #define PDR_ID(PDR) (PDR->id)
182 1.3 mrg #define PDR_NB_REFS(PDR) (PDR->nb_refs)
183 1.3 mrg #define PDR_PBB(PDR) (PDR->pbb)
184 1.3 mrg #define PDR_TYPE(PDR) (PDR->type)
185 1.3 mrg #define PDR_ACCESSES(PDR) (NULL)
186 1.3 mrg
187 1.3 mrg void new_poly_dr (poly_bb_p, gimple *, enum poly_dr_type,
188 1.3 mrg isl_map *, isl_set *);
189 1.3 mrg void debug_pdr (poly_dr_p);
190 1.3 mrg void print_pdr (FILE *, poly_dr_p);
191 1.3 mrg
192 1.3 mrg static inline bool
193 1.3 mrg pdr_read_p (poly_dr_p pdr)
194 1.3 mrg {
195 1.3 mrg return PDR_TYPE (pdr) == PDR_READ;
196 1.3 mrg }
197 1.3 mrg
198 1.3 mrg /* Returns true when PDR is a "write". */
199 1.3 mrg
200 1.3 mrg static inline bool
201 1.3 mrg pdr_write_p (poly_dr_p pdr)
202 1.3 mrg {
203 1.3 mrg return PDR_TYPE (pdr) == PDR_WRITE;
204 1.3 mrg }
205 1.3 mrg
206 1.3 mrg /* Returns true when PDR is a "may write". */
207 1.3 mrg
208 1.3 mrg static inline bool
209 1.3 mrg pdr_may_write_p (poly_dr_p pdr)
210 1.3 mrg {
211 1.3 mrg return PDR_TYPE (pdr) == PDR_MAY_WRITE;
212 1.3 mrg }
213 1.3 mrg
214 1.3 mrg /* POLY_BB represents a blackbox in the polyhedral model. */
215 1.3 mrg
216 1.3 mrg struct poly_bb
217 1.3 mrg {
218 1.3 mrg /* Pointer to a basic block or a statement in the compiler. */
219 1.3 mrg gimple_poly_bb_p black_box;
220 1.3 mrg
221 1.3 mrg /* Pointer to the SCOP containing this PBB. */
222 1.3 mrg scop_p scop;
223 1.3 mrg
224 1.3 mrg /* The iteration domain of this bb. The layout of this polyhedron
225 1.3 mrg is I|G with I the iteration domain, G the context parameters.
226 1.3 mrg
227 1.3 mrg Example:
228 1.3 mrg
229 1.3 mrg for (i = a - 7*b + 8; i <= 3*a + 13*b + 20; i++)
230 1.3 mrg for (j = 2; j <= 2*i + 5; j++)
231 1.3 mrg for (k = 0; k <= 5; k++)
232 1.3 mrg S (i,j,k)
233 1.3 mrg
234 1.3 mrg Loop iterators: i, j, k
235 1.3 mrg Parameters: a, b
236 1.3 mrg
237 1.3 mrg | i >= a - 7b + 8
238 1.3 mrg | i <= 3a + 13b + 20
239 1.3 mrg | j >= 2
240 1.3 mrg | j <= 2i + 5
241 1.3 mrg | k >= 0
242 1.3 mrg | k <= 5
243 1.3 mrg
244 1.3 mrg The number of variables in the DOMAIN may change and is not
245 1.3 mrg related to the number of loops in the original code. */
246 1.3 mrg isl_set *domain;
247 1.3 mrg isl_set *iterators;
248 1.3 mrg
249 1.3 mrg /* The data references we access. */
250 1.3 mrg vec<poly_dr_p> drs;
251 1.3 mrg
252 1.3 mrg /* The last basic block generated for this pbb. */
253 1.3 mrg basic_block new_bb;
254 1.3 mrg };
255 1.3 mrg
256 1.3 mrg #define PBB_BLACK_BOX(PBB) ((gimple_poly_bb_p) PBB->black_box)
257 1.3 mrg #define PBB_SCOP(PBB) (PBB->scop)
258 1.3 mrg #define PBB_DRS(PBB) (PBB->drs)
259 1.3 mrg
260 1.3 mrg extern poly_bb_p new_poly_bb (scop_p, gimple_poly_bb_p);
261 1.3 mrg extern void print_pbb_domain (FILE *, poly_bb_p);
262 1.3 mrg extern void print_pbb (FILE *, poly_bb_p);
263 1.3 mrg extern void print_scop_context (FILE *, scop_p);
264 1.3 mrg extern void print_scop (FILE *, scop_p);
265 1.3 mrg extern void debug_pbb_domain (poly_bb_p);
266 1.3 mrg extern void debug_pbb (poly_bb_p);
267 1.3 mrg extern void print_pdrs (FILE *, poly_bb_p);
268 1.3 mrg extern void debug_pdrs (poly_bb_p);
269 1.3 mrg extern void debug_scop_context (scop_p);
270 1.3 mrg extern void debug_scop (scop_p);
271 1.3 mrg extern void print_scop_params (FILE *, scop_p);
272 1.3 mrg extern void debug_scop_params (scop_p);
273 1.3 mrg extern void print_iteration_domain (FILE *, poly_bb_p);
274 1.3 mrg extern void print_iteration_domains (FILE *, scop_p);
275 1.3 mrg extern void debug_iteration_domain (poly_bb_p);
276 1.3 mrg extern void debug_iteration_domains (scop_p);
277 1.3 mrg extern void print_isl_set (FILE *, isl_set *);
278 1.3 mrg extern void print_isl_map (FILE *, isl_map *);
279 1.3 mrg extern void print_isl_union_map (FILE *, isl_union_map *);
280 1.3 mrg extern void print_isl_aff (FILE *, isl_aff *);
281 1.3 mrg extern void print_isl_constraint (FILE *, isl_constraint *);
282 1.3 mrg extern void print_isl_schedule (FILE *, isl_schedule *);
283 1.3 mrg extern void debug_isl_schedule (isl_schedule *);
284 1.3 mrg extern void print_isl_ast (FILE *, isl_ast_node *);
285 1.3 mrg extern void debug_isl_ast (isl_ast_node *);
286 1.3 mrg extern void debug_isl_set (isl_set *);
287 1.3 mrg extern void debug_isl_map (isl_map *);
288 1.3 mrg extern void debug_isl_union_map (isl_union_map *);
289 1.3 mrg extern void debug_isl_aff (isl_aff *);
290 1.3 mrg extern void debug_isl_constraint (isl_constraint *);
291 1.3 mrg extern void debug_gmp_value (mpz_t);
292 1.3 mrg extern void debug_scop_pbb (scop_p scop, int i);
293 1.3 mrg extern void print_schedule_ast (FILE *, __isl_keep isl_schedule *, scop_p);
294 1.3 mrg extern void debug_schedule_ast (__isl_keep isl_schedule *, scop_p);
295 1.3 mrg
296 1.3 mrg /* The basic block of the PBB. */
297 1.3 mrg
298 1.3 mrg static inline basic_block
299 1.3 mrg pbb_bb (poly_bb_p pbb)
300 1.3 mrg {
301 1.3 mrg return GBB_BB (PBB_BLACK_BOX (pbb));
302 1.3 mrg }
303 1.3 mrg
304 1.3 mrg static inline int
305 1.3 mrg pbb_index (poly_bb_p pbb)
306 1.3 mrg {
307 1.3 mrg return pbb_bb (pbb)->index;
308 1.3 mrg }
309 1.3 mrg
310 1.3 mrg /* The loop of the PBB. */
311 1.3 mrg
312 1.3 mrg static inline loop_p
313 1.3 mrg pbb_loop (poly_bb_p pbb)
314 1.3 mrg {
315 1.3 mrg return gbb_loop (PBB_BLACK_BOX (pbb));
316 1.3 mrg }
317 1.3 mrg
318 1.3 mrg /* The scop that contains the PDR. */
319 1.3 mrg
320 1.3 mrg static inline scop_p
321 1.3 mrg pdr_scop (poly_dr_p pdr)
322 1.3 mrg {
323 1.3 mrg return PBB_SCOP (PDR_PBB (pdr));
324 1.3 mrg }
325 1.3 mrg
326 1.3 mrg /* Set black box of PBB to BLACKBOX. */
327 1.3 mrg
328 1.3 mrg static inline void
329 1.3 mrg pbb_set_black_box (poly_bb_p pbb, gimple_poly_bb_p black_box)
330 1.3 mrg {
331 1.3 mrg pbb->black_box = black_box;
332 1.3 mrg }
333 1.3 mrg
334 1.3 mrg /* A helper structure to keep track of data references, polyhedral BBs, and
335 1.3 mrg alias sets. */
336 1.3 mrg
337 1.3 mrg struct dr_info
338 1.3 mrg {
339 1.3 mrg enum {
340 1.3 mrg invalid_alias_set = -1
341 1.3 mrg };
342 1.3 mrg /* The data reference. */
343 1.3 mrg data_reference_p dr;
344 1.3 mrg
345 1.3 mrg /* The polyhedral BB containing this DR. */
346 1.3 mrg poly_bb_p pbb;
347 1.3 mrg
348 1.3 mrg /* ALIAS_SET is the SCC number assigned by a graph_dfs of the alias graph.
349 1.3 mrg -1 is an invalid alias set. */
350 1.3 mrg int alias_set;
351 1.3 mrg
352 1.3 mrg /* Construct a DR_INFO from a data reference DR, an ALIAS_SET, and a PBB. */
353 1.3 mrg dr_info (data_reference_p dr, poly_bb_p pbb,
354 1.3 mrg int alias_set = invalid_alias_set)
355 1.3 mrg : dr (dr), pbb (pbb), alias_set (alias_set) {}
356 1.3 mrg };
357 1.3 mrg
358 1.3 mrg /* A SCOP is a Static Control Part of the program, simple enough to be
359 1.3 mrg represented in polyhedral form. */
360 1.3 mrg struct scop
361 1.3 mrg {
362 1.3 mrg /* A SCOP is defined as a SESE region. */
363 1.3 mrg sese_info_p scop_info;
364 1.3 mrg
365 1.3 mrg /* Number of parameters in SCoP. */
366 1.3 mrg graphite_dim_t nb_params;
367 1.3 mrg
368 1.7 mrg /* The maximum alias set as assigned to drs by build_alias_sets. */
369 1.7 mrg unsigned max_alias_set;
370 1.7 mrg
371 1.3 mrg /* All the basic blocks in this scop that contain memory references
372 1.3 mrg and that will be represented as statements in the polyhedral
373 1.3 mrg representation. */
374 1.3 mrg vec<poly_bb_p> pbbs;
375 1.3 mrg
376 1.3 mrg /* All the data references in this scop. */
377 1.3 mrg vec<dr_info> drs;
378 1.3 mrg
379 1.3 mrg /* The context describes known restrictions concerning the parameters
380 1.3 mrg and relations in between the parameters.
381 1.3 mrg
382 1.3 mrg void f (int8_t a, uint_16_t b) {
383 1.3 mrg c = 2 a + b;
384 1.3 mrg ...
385 1.3 mrg }
386 1.3 mrg
387 1.3 mrg Here we can add these restrictions to the context:
388 1.3 mrg
389 1.3 mrg -128 >= a >= 127
390 1.3 mrg 0 >= b >= 65,535
391 1.3 mrg c = 2a + b */
392 1.3 mrg isl_set *param_context;
393 1.3 mrg
394 1.3 mrg /* The context used internally by isl. */
395 1.3 mrg isl_ctx *isl_context;
396 1.3 mrg
397 1.3 mrg /* SCoP original schedule. */
398 1.3 mrg isl_schedule *original_schedule;
399 1.3 mrg
400 1.3 mrg /* SCoP transformed schedule. */
401 1.3 mrg isl_schedule *transformed_schedule;
402 1.3 mrg
403 1.3 mrg /* The data dependence relation among the data references in this scop. */
404 1.3 mrg isl_union_map *dependence;
405 1.3 mrg };
406 1.3 mrg
407 1.3 mrg extern scop_p new_scop (edge, edge);
408 1.3 mrg extern void free_scop (scop_p);
409 1.3 mrg extern gimple_poly_bb_p new_gimple_poly_bb (basic_block, vec<data_reference_p>,
410 1.3 mrg vec<scalar_use>, vec<tree>);
411 1.3 mrg extern bool apply_poly_transforms (scop_p);
412 1.3 mrg
413 1.3 mrg /* Set the region of SCOP to REGION. */
414 1.3 mrg
415 1.3 mrg static inline void
416 1.3 mrg scop_set_region (scop_p scop, sese_info_p region)
417 1.3 mrg {
418 1.3 mrg scop->scop_info = region;
419 1.3 mrg }
420 1.3 mrg
421 1.3 mrg /* Returns the number of parameters for SCOP. */
422 1.3 mrg
423 1.3 mrg static inline graphite_dim_t
424 1.3 mrg scop_nb_params (scop_p scop)
425 1.3 mrg {
426 1.3 mrg return scop->nb_params;
427 1.3 mrg }
428 1.3 mrg
429 1.3 mrg /* Set the number of params of SCOP to NB_PARAMS. */
430 1.3 mrg
431 1.3 mrg static inline void
432 1.3 mrg scop_set_nb_params (scop_p scop, graphite_dim_t nb_params)
433 1.3 mrg {
434 1.3 mrg scop->nb_params = nb_params;
435 1.3 mrg }
436 1.3 mrg
437 1.3 mrg extern void scop_get_dependences (scop_p scop);
438 1.3 mrg
439 1.3 mrg bool
440 1.3 mrg carries_deps (__isl_keep isl_union_map *schedule,
441 1.3 mrg __isl_keep isl_union_map *deps,
442 1.3 mrg int depth);
443 1.3 mrg
444 1.3 mrg extern bool build_poly_scop (scop_p);
445 1.3 mrg extern bool graphite_regenerate_ast_isl (scop_p);
446 1.3 mrg extern void build_scops (vec<scop_p> *);
447 1.8 mrg extern tree cached_scalar_evolution_in_region (const sese_l &, loop_p, tree);
448 1.3 mrg extern void dot_all_sese (FILE *, vec<sese_l> &);
449 1.3 mrg extern void dot_sese (sese_l &);
450 1.3 mrg extern void dot_cfg ();
451 1.3 mrg
452 1.3 mrg #endif
453