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4ee9c684 1/* Conditional constant propagation pass for the GNU compiler.
8e8f6434 2 Copyright (C) 2000-2018 Free Software Foundation, Inc.
4ee9c684 3 Adapted from original RTL SSA-CCP by Daniel Berlin <dberlin@dberlin.org>
4 Adapted to GIMPLE trees by Diego Novillo <dnovillo@redhat.com>
5
6This file is part of GCC.
48e1416a 7
4ee9c684 8GCC is free software; you can redistribute it and/or modify it
9under the terms of the GNU General Public License as published by the
8c4c00c1 10Free Software Foundation; either version 3, or (at your option) any
4ee9c684 11later version.
48e1416a 12
4ee9c684 13GCC is distributed in the hope that it will be useful, but WITHOUT
14ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
15FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
16for more details.
48e1416a 17
4ee9c684 18You should have received a copy of the GNU General Public License
8c4c00c1 19along with GCC; see the file COPYING3. If not see
20<http://www.gnu.org/licenses/>. */
4ee9c684 21
88dbf20f 22/* Conditional constant propagation (CCP) is based on the SSA
23 propagation engine (tree-ssa-propagate.c). Constant assignments of
24 the form VAR = CST are propagated from the assignments into uses of
25 VAR, which in turn may generate new constants. The simulation uses
26 a four level lattice to keep track of constant values associated
27 with SSA names. Given an SSA name V_i, it may take one of the
28 following values:
29
bfa30570 30 UNINITIALIZED -> the initial state of the value. This value
31 is replaced with a correct initial value
32 the first time the value is used, so the
33 rest of the pass does not need to care about
34 it. Using this value simplifies initialization
35 of the pass, and prevents us from needlessly
36 scanning statements that are never reached.
88dbf20f 37
38 UNDEFINED -> V_i is a local variable whose definition
39 has not been processed yet. Therefore we
40 don't yet know if its value is a constant
41 or not.
42
43 CONSTANT -> V_i has been found to hold a constant
44 value C.
45
46 VARYING -> V_i cannot take a constant value, or if it
47 does, it is not possible to determine it
48 at compile time.
49
50 The core of SSA-CCP is in ccp_visit_stmt and ccp_visit_phi_node:
51
52 1- In ccp_visit_stmt, we are interested in assignments whose RHS
53 evaluates into a constant and conditional jumps whose predicate
54 evaluates into a boolean true or false. When an assignment of
55 the form V_i = CONST is found, V_i's lattice value is set to
56 CONSTANT and CONST is associated with it. This causes the
57 propagation engine to add all the SSA edges coming out the
58 assignment into the worklists, so that statements that use V_i
59 can be visited.
60
61 If the statement is a conditional with a constant predicate, we
62 mark the outgoing edges as executable or not executable
63 depending on the predicate's value. This is then used when
64 visiting PHI nodes to know when a PHI argument can be ignored.
48e1416a 65
88dbf20f 66
67 2- In ccp_visit_phi_node, if all the PHI arguments evaluate to the
68 same constant C, then the LHS of the PHI is set to C. This
69 evaluation is known as the "meet operation". Since one of the
70 goals of this evaluation is to optimistically return constant
71 values as often as possible, it uses two main short cuts:
72
73 - If an argument is flowing in through a non-executable edge, it
74 is ignored. This is useful in cases like this:
75
76 if (PRED)
77 a_9 = 3;
78 else
79 a_10 = 100;
80 a_11 = PHI (a_9, a_10)
81
82 If PRED is known to always evaluate to false, then we can
83 assume that a_11 will always take its value from a_10, meaning
84 that instead of consider it VARYING (a_9 and a_10 have
85 different values), we can consider it CONSTANT 100.
86
87 - If an argument has an UNDEFINED value, then it does not affect
88 the outcome of the meet operation. If a variable V_i has an
89 UNDEFINED value, it means that either its defining statement
90 hasn't been visited yet or V_i has no defining statement, in
91 which case the original symbol 'V' is being used
92 uninitialized. Since 'V' is a local variable, the compiler
93 may assume any initial value for it.
94
95
96 After propagation, every variable V_i that ends up with a lattice
97 value of CONSTANT will have the associated constant value in the
98 array CONST_VAL[i].VALUE. That is fed into substitute_and_fold for
99 final substitution and folding.
100
e913b5cd 101 This algorithm uses wide-ints at the max precision of the target.
102 This means that, with one uninteresting exception, variables with
103 UNSIGNED types never go to VARYING because the bits above the
104 precision of the type of the variable are always zero. The
105 uninteresting case is a variable of UNSIGNED type that has the
106 maximum precision of the target. Such variables can go to VARYING,
107 but this causes no loss of infomation since these variables will
108 never be extended.
109
4ee9c684 110 References:
111
112 Constant propagation with conditional branches,
113 Wegman and Zadeck, ACM TOPLAS 13(2):181-210.
114
115 Building an Optimizing Compiler,
116 Robert Morgan, Butterworth-Heinemann, 1998, Section 8.9.
117
118 Advanced Compiler Design and Implementation,
119 Steven Muchnick, Morgan Kaufmann, 1997, Section 12.6 */
120
121#include "config.h"
122#include "system.h"
123#include "coretypes.h"
9ef16211 124#include "backend.h"
7c29e30e 125#include "target.h"
4ee9c684 126#include "tree.h"
9ef16211 127#include "gimple.h"
7c29e30e 128#include "tree-pass.h"
9ef16211 129#include "ssa.h"
7c29e30e 130#include "gimple-pretty-print.h"
b20a8bb4 131#include "fold-const.h"
bc61cadb 132#include "gimple-fold.h"
133#include "tree-eh.h"
a8783bee 134#include "gimplify.h"
dcf1a1ec 135#include "gimple-iterator.h"
073c1fd5 136#include "tree-cfg.h"
41511585 137#include "tree-ssa-propagate.h"
43fb76c1 138#include "dbgcnt.h"
9a65cc0a 139#include "params.h"
f7715905 140#include "builtins.h"
e2588447 141#include "cfgloop.h"
9c1a31e4 142#include "stor-layout.h"
143#include "optabs-query.h"
a54071b2 144#include "tree-ssa-ccp.h"
82193434 145#include "tree-dfa.h"
184fac50 146#include "diagnostic-core.h"
30a86690 147#include "stringpool.h"
148#include "attribs.h"
0a2b1323 149#include "tree-vector-builder.h"
2dc10fae 150
4ee9c684 151/* Possible lattice values. */
152typedef enum
153{
bfa30570 154 UNINITIALIZED,
4ee9c684 155 UNDEFINED,
156 CONSTANT,
157 VARYING
88dbf20f 158} ccp_lattice_t;
4ee9c684 159
9908fe4d 160struct ccp_prop_value_t {
14f101cf 161 /* Lattice value. */
162 ccp_lattice_t lattice_val;
163
164 /* Propagated value. */
165 tree value;
b7e55469 166
e913b5cd 167 /* Mask that applies to the propagated value during CCP. For X
168 with a CONSTANT lattice value X & ~mask == value & ~mask. The
169 zero bits in the mask cover constant values. The ones mean no
170 information. */
5de9d3ed 171 widest_int mask;
14f101cf 172};
173
6bd87d95 174class ccp_propagate : public ssa_propagation_engine
175{
176 public:
177 enum ssa_prop_result visit_stmt (gimple *, edge *, tree *) FINAL OVERRIDE;
178 enum ssa_prop_result visit_phi (gphi *) FINAL OVERRIDE;
179};
180
88dbf20f 181/* Array of propagated constant values. After propagation,
182 CONST_VAL[I].VALUE holds the constant value for SSA_NAME(I). If
183 the constant is held in an SSA name representing a memory store
4fb5e5ca 184 (i.e., a VDEF), CONST_VAL[I].MEM_REF will contain the actual
185 memory reference used to store (i.e., the LHS of the assignment
186 doing the store). */
9908fe4d 187static ccp_prop_value_t *const_val;
285df01b 188static unsigned n_const_val;
4ee9c684 189
9908fe4d 190static void canonicalize_value (ccp_prop_value_t *);
27de3d43 191static void ccp_lattice_meet (ccp_prop_value_t *, ccp_prop_value_t *);
4af351a8 192
88dbf20f 193/* Dump constant propagation value VAL to file OUTF prefixed by PREFIX. */
01406fc0 194
195static void
9908fe4d 196dump_lattice_value (FILE *outf, const char *prefix, ccp_prop_value_t val)
01406fc0 197{
41511585 198 switch (val.lattice_val)
01406fc0 199 {
88dbf20f 200 case UNINITIALIZED:
201 fprintf (outf, "%sUNINITIALIZED", prefix);
202 break;
41511585 203 case UNDEFINED:
204 fprintf (outf, "%sUNDEFINED", prefix);
205 break;
206 case VARYING:
207 fprintf (outf, "%sVARYING", prefix);
208 break;
41511585 209 case CONSTANT:
b7e55469 210 if (TREE_CODE (val.value) != INTEGER_CST
796b6678 211 || val.mask == 0)
16ab4e97 212 {
213 fprintf (outf, "%sCONSTANT ", prefix);
214 print_generic_expr (outf, val.value, dump_flags);
215 }
b7e55469 216 else
217 {
28e557ef 218 widest_int cval = wi::bit_and_not (wi::to_widest (val.value),
219 val.mask);
e913b5cd 220 fprintf (outf, "%sCONSTANT ", prefix);
221 print_hex (cval, outf);
222 fprintf (outf, " (");
223 print_hex (val.mask, outf);
224 fprintf (outf, ")");
b7e55469 225 }
41511585 226 break;
227 default:
8c0963c4 228 gcc_unreachable ();
41511585 229 }
01406fc0 230}
4ee9c684 231
4ee9c684 232
88dbf20f 233/* Print lattice value VAL to stderr. */
234
9908fe4d 235void debug_lattice_value (ccp_prop_value_t val);
88dbf20f 236
4b987fac 237DEBUG_FUNCTION void
9908fe4d 238debug_lattice_value (ccp_prop_value_t val)
88dbf20f 239{
240 dump_lattice_value (stderr, "", val);
241 fprintf (stderr, "\n");
242}
4ee9c684 243
9a93e2f7 244/* Extend NONZERO_BITS to a full mask, based on sgn. */
9c1be15e 245
246static widest_int
9a93e2f7 247extend_mask (const wide_int &nonzero_bits, signop sgn)
9c1be15e 248{
9a93e2f7 249 return widest_int::from (nonzero_bits, sgn);
9c1be15e 250}
4ee9c684 251
88dbf20f 252/* Compute a default value for variable VAR and store it in the
253 CONST_VAL array. The following rules are used to get default
254 values:
01406fc0 255
88dbf20f 256 1- Global and static variables that are declared constant are
257 considered CONSTANT.
258
259 2- Any other value is considered UNDEFINED. This is useful when
41511585 260 considering PHI nodes. PHI arguments that are undefined do not
261 change the constant value of the PHI node, which allows for more
88dbf20f 262 constants to be propagated.
4ee9c684 263
8883e700 264 3- Variables defined by statements other than assignments and PHI
88dbf20f 265 nodes are considered VARYING.
4ee9c684 266
8883e700 267 4- Initial values of variables that are not GIMPLE registers are
bfa30570 268 considered VARYING. */
4ee9c684 269
9908fe4d 270static ccp_prop_value_t
88dbf20f 271get_default_value (tree var)
272{
9908fe4d 273 ccp_prop_value_t val = { UNINITIALIZED, NULL_TREE, 0 };
42acab1c 274 gimple *stmt;
8edeb88b 275
276 stmt = SSA_NAME_DEF_STMT (var);
277
278 if (gimple_nop_p (stmt))
4ee9c684 279 {
8edeb88b 280 /* Variables defined by an empty statement are those used
281 before being initialized. If VAR is a local variable, we
282 can assume initially that it is UNDEFINED, otherwise we must
283 consider it VARYING. */
7c782c9b 284 if (!virtual_operand_p (var)
9ae1b28a 285 && SSA_NAME_VAR (var)
7c782c9b 286 && TREE_CODE (SSA_NAME_VAR (var)) == VAR_DECL)
8edeb88b 287 val.lattice_val = UNDEFINED;
288 else
b7e55469 289 {
290 val.lattice_val = VARYING;
e913b5cd 291 val.mask = -1;
fc08b993 292 if (flag_tree_bit_ccp)
293 {
9c1be15e 294 wide_int nonzero_bits = get_nonzero_bits (var);
295 if (nonzero_bits != -1)
fc08b993 296 {
297 val.lattice_val = CONSTANT;
298 val.value = build_zero_cst (TREE_TYPE (var));
9a93e2f7 299 val.mask = extend_mask (nonzero_bits, TYPE_SIGN (TREE_TYPE (var)));
fc08b993 300 }
301 }
b7e55469 302 }
4ee9c684 303 }
b45b214a 304 else if (is_gimple_assign (stmt))
41511585 305 {
8edeb88b 306 tree cst;
307 if (gimple_assign_single_p (stmt)
308 && DECL_P (gimple_assign_rhs1 (stmt))
309 && (cst = get_symbol_constant_value (gimple_assign_rhs1 (stmt))))
88dbf20f 310 {
8edeb88b 311 val.lattice_val = CONSTANT;
312 val.value = cst;
88dbf20f 313 }
314 else
b45b214a 315 {
316 /* Any other variable defined by an assignment is considered
317 UNDEFINED. */
318 val.lattice_val = UNDEFINED;
319 }
320 }
321 else if ((is_gimple_call (stmt)
322 && gimple_call_lhs (stmt) != NULL_TREE)
323 || gimple_code (stmt) == GIMPLE_PHI)
324 {
325 /* A variable defined by a call or a PHI node is considered
326 UNDEFINED. */
327 val.lattice_val = UNDEFINED;
8edeb88b 328 }
329 else
330 {
331 /* Otherwise, VAR will never take on a constant value. */
332 val.lattice_val = VARYING;
e913b5cd 333 val.mask = -1;
41511585 334 }
4ee9c684 335
41511585 336 return val;
337}
4ee9c684 338
4ee9c684 339
bfa30570 340/* Get the constant value associated with variable VAR. */
4ee9c684 341
9908fe4d 342static inline ccp_prop_value_t *
bfa30570 343get_value (tree var)
88dbf20f 344{
9908fe4d 345 ccp_prop_value_t *val;
bfa30570 346
285df01b 347 if (const_val == NULL
348 || SSA_NAME_VERSION (var) >= n_const_val)
e004838d 349 return NULL;
350
351 val = &const_val[SSA_NAME_VERSION (var)];
bfa30570 352 if (val->lattice_val == UNINITIALIZED)
4ee9c684 353 *val = get_default_value (var);
354
f5faab84 355 canonicalize_value (val);
4af351a8 356
4ee9c684 357 return val;
358}
359
15d138c9 360/* Return the constant tree value associated with VAR. */
361
362static inline tree
363get_constant_value (tree var)
364{
9908fe4d 365 ccp_prop_value_t *val;
98d92e3c 366 if (TREE_CODE (var) != SSA_NAME)
367 {
368 if (is_gimple_min_invariant (var))
369 return var;
370 return NULL_TREE;
371 }
372 val = get_value (var);
b7e55469 373 if (val
374 && val->lattice_val == CONSTANT
375 && (TREE_CODE (val->value) != INTEGER_CST
796b6678 376 || val->mask == 0))
15d138c9 377 return val->value;
378 return NULL_TREE;
379}
380
bfa30570 381/* Sets the value associated with VAR to VARYING. */
382
383static inline void
384set_value_varying (tree var)
385{
9908fe4d 386 ccp_prop_value_t *val = &const_val[SSA_NAME_VERSION (var)];
bfa30570 387
388 val->lattice_val = VARYING;
389 val->value = NULL_TREE;
e913b5cd 390 val->mask = -1;
bfa30570 391}
4ee9c684 392
0001b944 393/* For integer constants, make sure to drop TREE_OVERFLOW. */
b31eb493 394
395static void
9908fe4d 396canonicalize_value (ccp_prop_value_t *val)
b31eb493 397{
f5faab84 398 if (val->lattice_val != CONSTANT)
399 return;
400
401 if (TREE_OVERFLOW_P (val->value))
402 val->value = drop_tree_overflow (val->value);
b31eb493 403}
404
b7e55469 405/* Return whether the lattice transition is valid. */
406
407static bool
9908fe4d 408valid_lattice_transition (ccp_prop_value_t old_val, ccp_prop_value_t new_val)
b7e55469 409{
410 /* Lattice transitions must always be monotonically increasing in
411 value. */
412 if (old_val.lattice_val < new_val.lattice_val)
413 return true;
414
415 if (old_val.lattice_val != new_val.lattice_val)
416 return false;
417
418 if (!old_val.value && !new_val.value)
419 return true;
420
421 /* Now both lattice values are CONSTANT. */
422
fc6cc27b 423 /* Allow arbitrary copy changes as we might look through PHI <a_1, ...>
424 when only a single copy edge is executable. */
425 if (TREE_CODE (old_val.value) == SSA_NAME
426 && TREE_CODE (new_val.value) == SSA_NAME)
427 return true;
428
429 /* Allow transitioning from a constant to a copy. */
430 if (is_gimple_min_invariant (old_val.value)
431 && TREE_CODE (new_val.value) == SSA_NAME)
432 return true;
433
43c92e0a 434 /* Allow transitioning from PHI <&x, not executable> == &x
435 to PHI <&x, &y> == common alignment. */
b7e55469 436 if (TREE_CODE (old_val.value) != INTEGER_CST
437 && TREE_CODE (new_val.value) == INTEGER_CST)
438 return true;
439
440 /* Bit-lattices have to agree in the still valid bits. */
441 if (TREE_CODE (old_val.value) == INTEGER_CST
442 && TREE_CODE (new_val.value) == INTEGER_CST)
5de9d3ed 443 return (wi::bit_and_not (wi::to_widest (old_val.value), new_val.mask)
444 == wi::bit_and_not (wi::to_widest (new_val.value), new_val.mask));
b7e55469 445
446 /* Otherwise constant values have to agree. */
0001b944 447 if (operand_equal_p (old_val.value, new_val.value, 0))
448 return true;
449
450 /* At least the kinds and types should agree now. */
451 if (TREE_CODE (old_val.value) != TREE_CODE (new_val.value)
452 || !types_compatible_p (TREE_TYPE (old_val.value),
453 TREE_TYPE (new_val.value)))
454 return false;
455
456 /* For floats and !HONOR_NANS allow transitions from (partial) NaN
457 to non-NaN. */
458 tree type = TREE_TYPE (new_val.value);
459 if (SCALAR_FLOAT_TYPE_P (type)
93633022 460 && !HONOR_NANS (type))
0001b944 461 {
462 if (REAL_VALUE_ISNAN (TREE_REAL_CST (old_val.value)))
463 return true;
464 }
465 else if (VECTOR_FLOAT_TYPE_P (type)
93633022 466 && !HONOR_NANS (type))
0001b944 467 {
0a2b1323 468 unsigned int count
469 = tree_vector_builder::binary_encoded_nelts (old_val.value,
470 new_val.value);
471 for (unsigned int i = 0; i < count; ++i)
0001b944 472 if (!REAL_VALUE_ISNAN
0a2b1323 473 (TREE_REAL_CST (VECTOR_CST_ENCODED_ELT (old_val.value, i)))
474 && !operand_equal_p (VECTOR_CST_ENCODED_ELT (old_val.value, i),
475 VECTOR_CST_ENCODED_ELT (new_val.value, i), 0))
0001b944 476 return false;
477 return true;
478 }
479 else if (COMPLEX_FLOAT_TYPE_P (type)
93633022 480 && !HONOR_NANS (type))
0001b944 481 {
482 if (!REAL_VALUE_ISNAN (TREE_REAL_CST (TREE_REALPART (old_val.value)))
483 && !operand_equal_p (TREE_REALPART (old_val.value),
484 TREE_REALPART (new_val.value), 0))
485 return false;
486 if (!REAL_VALUE_ISNAN (TREE_REAL_CST (TREE_IMAGPART (old_val.value)))
487 && !operand_equal_p (TREE_IMAGPART (old_val.value),
488 TREE_IMAGPART (new_val.value), 0))
489 return false;
490 return true;
491 }
492 return false;
b7e55469 493}
494
88dbf20f 495/* Set the value for variable VAR to NEW_VAL. Return true if the new
496 value is different from VAR's previous value. */
4ee9c684 497
41511585 498static bool
27de3d43 499set_lattice_value (tree var, ccp_prop_value_t *new_val)
4ee9c684 500{
6d0bf6d6 501 /* We can deal with old UNINITIALIZED values just fine here. */
9908fe4d 502 ccp_prop_value_t *old_val = &const_val[SSA_NAME_VERSION (var)];
88dbf20f 503
27de3d43 504 canonicalize_value (new_val);
b31eb493 505
b7e55469 506 /* We have to be careful to not go up the bitwise lattice
27de3d43 507 represented by the mask. Instead of dropping to VARYING
508 use the meet operator to retain a conservative value.
509 Missed optimizations like PR65851 makes this necessary.
510 It also ensures we converge to a stable lattice solution. */
d637695e 511 if (old_val->lattice_val != UNINITIALIZED)
27de3d43 512 ccp_lattice_meet (new_val, old_val);
bfa30570 513
27de3d43 514 gcc_checking_assert (valid_lattice_transition (*old_val, *new_val));
88dbf20f 515
b7e55469 516 /* If *OLD_VAL and NEW_VAL are the same, return false to inform the
517 caller that this was a non-transition. */
27de3d43 518 if (old_val->lattice_val != new_val->lattice_val
519 || (new_val->lattice_val == CONSTANT
520 && (TREE_CODE (new_val->value) != TREE_CODE (old_val->value)
521 || (TREE_CODE (new_val->value) == INTEGER_CST
522 && (new_val->mask != old_val->mask
bc1d3d97 523 || (wi::bit_and_not (wi::to_widest (old_val->value),
27de3d43 524 new_val->mask)
525 != wi::bit_and_not (wi::to_widest (new_val->value),
526 new_val->mask))))
527 || (TREE_CODE (new_val->value) != INTEGER_CST
528 && !operand_equal_p (new_val->value, old_val->value, 0)))))
4ee9c684 529 {
b7e55469 530 /* ??? We would like to delay creation of INTEGER_CSTs from
531 partially constants here. */
532
41511585 533 if (dump_file && (dump_flags & TDF_DETAILS))
534 {
27de3d43 535 dump_lattice_value (dump_file, "Lattice value changed to ", *new_val);
bfa30570 536 fprintf (dump_file, ". Adding SSA edges to worklist.\n");
41511585 537 }
538
27de3d43 539 *old_val = *new_val;
88dbf20f 540
27de3d43 541 gcc_assert (new_val->lattice_val != UNINITIALIZED);
bfa30570 542 return true;
4ee9c684 543 }
41511585 544
545 return false;
4ee9c684 546}
547
9908fe4d 548static ccp_prop_value_t get_value_for_expr (tree, bool);
549static ccp_prop_value_t bit_value_binop (enum tree_code, tree, tree, tree);
a54071b2 550void bit_value_binop (enum tree_code, signop, int, widest_int *, widest_int *,
551 signop, int, const widest_int &, const widest_int &,
552 signop, int, const widest_int &, const widest_int &);
b7e55469 553
5de9d3ed 554/* Return a widest_int that can be used for bitwise simplifications
b7e55469 555 from VAL. */
556
5de9d3ed 557static widest_int
9908fe4d 558value_to_wide_int (ccp_prop_value_t val)
b7e55469 559{
560 if (val.value
561 && TREE_CODE (val.value) == INTEGER_CST)
5de9d3ed 562 return wi::to_widest (val.value);
e913b5cd 563
564 return 0;
b7e55469 565}
566
567/* Return the value for the address expression EXPR based on alignment
568 information. */
6d0bf6d6 569
9908fe4d 570static ccp_prop_value_t
b7e55469 571get_value_from_alignment (tree expr)
572{
f8abb542 573 tree type = TREE_TYPE (expr);
9908fe4d 574 ccp_prop_value_t val;
f8abb542 575 unsigned HOST_WIDE_INT bitpos;
576 unsigned int align;
b7e55469 577
578 gcc_assert (TREE_CODE (expr) == ADDR_EXPR);
579
59da1bcd 580 get_pointer_alignment_1 (expr, &align, &bitpos);
1c8ecf8d 581 val.mask = wi::bit_and_not
582 (POINTER_TYPE_P (type) || TYPE_UNSIGNED (type)
583 ? wi::mask <widest_int> (TYPE_PRECISION (type), false)
584 : -1,
585 align / BITS_PER_UNIT - 1);
c90d2c17 586 val.lattice_val
587 = wi::sext (val.mask, TYPE_PRECISION (type)) == -1 ? VARYING : CONSTANT;
f8abb542 588 if (val.lattice_val == CONSTANT)
796b6678 589 val.value = build_int_cstu (type, bitpos / BITS_PER_UNIT);
b7e55469 590 else
f8abb542 591 val.value = NULL_TREE;
b7e55469 592
593 return val;
594}
595
596/* Return the value for the tree operand EXPR. If FOR_BITS_P is true
597 return constant bits extracted from alignment information for
598 invariant addresses. */
599
9908fe4d 600static ccp_prop_value_t
b7e55469 601get_value_for_expr (tree expr, bool for_bits_p)
6d0bf6d6 602{
9908fe4d 603 ccp_prop_value_t val;
6d0bf6d6 604
605 if (TREE_CODE (expr) == SSA_NAME)
b7e55469 606 {
1941149a 607 ccp_prop_value_t *val_ = get_value (expr);
608 if (val_)
609 val = *val_;
610 else
611 {
612 val.lattice_val = VARYING;
613 val.value = NULL_TREE;
614 val.mask = -1;
615 }
b7e55469 616 if (for_bits_p
617 && val.lattice_val == CONSTANT
618 && TREE_CODE (val.value) == ADDR_EXPR)
619 val = get_value_from_alignment (val.value);
bc1d3d97 620 /* Fall back to a copy value. */
621 if (!for_bits_p
622 && val.lattice_val == VARYING
623 && !SSA_NAME_OCCURS_IN_ABNORMAL_PHI (expr))
624 {
625 val.lattice_val = CONSTANT;
626 val.value = expr;
627 val.mask = -1;
628 }
b7e55469 629 }
630 else if (is_gimple_min_invariant (expr)
131a1c2f 631 && (!for_bits_p || TREE_CODE (expr) == INTEGER_CST))
6d0bf6d6 632 {
633 val.lattice_val = CONSTANT;
634 val.value = expr;
e913b5cd 635 val.mask = 0;
f5faab84 636 canonicalize_value (&val);
6d0bf6d6 637 }
b7e55469 638 else if (TREE_CODE (expr) == ADDR_EXPR)
639 val = get_value_from_alignment (expr);
6d0bf6d6 640 else
641 {
642 val.lattice_val = VARYING;
09b2913a 643 val.mask = -1;
6d0bf6d6 644 val.value = NULL_TREE;
645 }
911a6ef1 646
647 if (val.lattice_val == VARYING
648 && TYPE_UNSIGNED (TREE_TYPE (expr)))
649 val.mask = wi::zext (val.mask, TYPE_PRECISION (TREE_TYPE (expr)));
650
6d0bf6d6 651 return val;
652}
653
88dbf20f 654/* Return the likely CCP lattice value for STMT.
4ee9c684 655
41511585 656 If STMT has no operands, then return CONSTANT.
4ee9c684 657
d61b9af3 658 Else if undefinedness of operands of STMT cause its value to be
659 undefined, then return UNDEFINED.
4ee9c684 660
41511585 661 Else if any operands of STMT are constants, then return CONSTANT.
4ee9c684 662
41511585 663 Else return VARYING. */
4ee9c684 664
88dbf20f 665static ccp_lattice_t
42acab1c 666likely_value (gimple *stmt)
41511585 667{
d61b9af3 668 bool has_constant_operand, has_undefined_operand, all_undefined_operands;
a8a0d56e 669 bool has_nsa_operand;
41511585 670 tree use;
671 ssa_op_iter iter;
8edeb88b 672 unsigned i;
4ee9c684 673
590c3166 674 enum gimple_code code = gimple_code (stmt);
75a70cf9 675
676 /* This function appears to be called only for assignments, calls,
677 conditionals, and switches, due to the logic in visit_stmt. */
678 gcc_assert (code == GIMPLE_ASSIGN
679 || code == GIMPLE_CALL
680 || code == GIMPLE_COND
681 || code == GIMPLE_SWITCH);
88dbf20f 682
683 /* If the statement has volatile operands, it won't fold to a
684 constant value. */
75a70cf9 685 if (gimple_has_volatile_ops (stmt))
88dbf20f 686 return VARYING;
687
75a70cf9 688 /* Arrive here for more complex cases. */
bfa30570 689 has_constant_operand = false;
d61b9af3 690 has_undefined_operand = false;
691 all_undefined_operands = true;
a8a0d56e 692 has_nsa_operand = false;
8edeb88b 693 FOR_EACH_SSA_TREE_OPERAND (use, stmt, iter, SSA_OP_USE)
41511585 694 {
9908fe4d 695 ccp_prop_value_t *val = get_value (use);
41511585 696
1941149a 697 if (val && val->lattice_val == UNDEFINED)
d61b9af3 698 has_undefined_operand = true;
699 else
700 all_undefined_operands = false;
88dbf20f 701
1941149a 702 if (val && val->lattice_val == CONSTANT)
bfa30570 703 has_constant_operand = true;
a8a0d56e 704
705 if (SSA_NAME_IS_DEFAULT_DEF (use)
706 || !prop_simulate_again_p (SSA_NAME_DEF_STMT (use)))
707 has_nsa_operand = true;
4ee9c684 708 }
41511585 709
dd277d48 710 /* There may be constants in regular rhs operands. For calls we
711 have to ignore lhs, fndecl and static chain, otherwise only
712 the lhs. */
713 for (i = (is_gimple_call (stmt) ? 2 : 0) + gimple_has_lhs (stmt);
8edeb88b 714 i < gimple_num_ops (stmt); ++i)
715 {
716 tree op = gimple_op (stmt, i);
717 if (!op || TREE_CODE (op) == SSA_NAME)
718 continue;
719 if (is_gimple_min_invariant (op))
720 has_constant_operand = true;
721 }
722
87c0a9fc 723 if (has_constant_operand)
724 all_undefined_operands = false;
725
3d483a94 726 if (has_undefined_operand
727 && code == GIMPLE_CALL
728 && gimple_call_internal_p (stmt))
729 switch (gimple_call_internal_fn (stmt))
730 {
731 /* These 3 builtins use the first argument just as a magic
732 way how to find out a decl uid. */
733 case IFN_GOMP_SIMD_LANE:
734 case IFN_GOMP_SIMD_VF:
735 case IFN_GOMP_SIMD_LAST_LANE:
736 has_undefined_operand = false;
737 break;
738 default:
739 break;
740 }
741
d61b9af3 742 /* If the operation combines operands like COMPLEX_EXPR make sure to
743 not mark the result UNDEFINED if only one part of the result is
744 undefined. */
75a70cf9 745 if (has_undefined_operand && all_undefined_operands)
d61b9af3 746 return UNDEFINED;
75a70cf9 747 else if (code == GIMPLE_ASSIGN && has_undefined_operand)
d61b9af3 748 {
75a70cf9 749 switch (gimple_assign_rhs_code (stmt))
d61b9af3 750 {
751 /* Unary operators are handled with all_undefined_operands. */
752 case PLUS_EXPR:
753 case MINUS_EXPR:
d61b9af3 754 case POINTER_PLUS_EXPR:
c00c8b9a 755 case BIT_XOR_EXPR:
d61b9af3 756 /* Not MIN_EXPR, MAX_EXPR. One VARYING operand may be selected.
757 Not bitwise operators, one VARYING operand may specify the
c00c8b9a 758 result completely.
759 Not logical operators for the same reason, apart from XOR.
05a936a0 760 Not COMPLEX_EXPR as one VARYING operand makes the result partly
761 not UNDEFINED. Not *DIV_EXPR, comparisons and shifts because
762 the undefined operand may be promoted. */
d61b9af3 763 return UNDEFINED;
764
43c92e0a 765 case ADDR_EXPR:
766 /* If any part of an address is UNDEFINED, like the index
767 of an ARRAY_EXPR, then treat the result as UNDEFINED. */
768 return UNDEFINED;
769
d61b9af3 770 default:
771 ;
772 }
773 }
774 /* If there was an UNDEFINED operand but the result may be not UNDEFINED
c91fedc5 775 fall back to CONSTANT. During iteration UNDEFINED may still drop
776 to CONSTANT. */
d61b9af3 777 if (has_undefined_operand)
c91fedc5 778 return CONSTANT;
d61b9af3 779
8edeb88b 780 /* We do not consider virtual operands here -- load from read-only
781 memory may have only VARYING virtual operands, but still be
a8a0d56e 782 constant. Also we can combine the stmt with definitions from
783 operands whose definitions are not simulated again. */
bfa30570 784 if (has_constant_operand
a8a0d56e 785 || has_nsa_operand
8edeb88b 786 || gimple_references_memory_p (stmt))
88dbf20f 787 return CONSTANT;
788
bfa30570 789 return VARYING;
4ee9c684 790}
791
bfa30570 792/* Returns true if STMT cannot be constant. */
793
794static bool
42acab1c 795surely_varying_stmt_p (gimple *stmt)
bfa30570 796{
797 /* If the statement has operands that we cannot handle, it cannot be
798 constant. */
75a70cf9 799 if (gimple_has_volatile_ops (stmt))
bfa30570 800 return true;
801
f257af64 802 /* If it is a call and does not return a value or is not a
237e78b1 803 builtin and not an indirect call or a call to function with
804 assume_aligned/alloc_align attribute, it is varying. */
75a70cf9 805 if (is_gimple_call (stmt))
f257af64 806 {
237e78b1 807 tree fndecl, fntype = gimple_call_fntype (stmt);
f257af64 808 if (!gimple_call_lhs (stmt)
809 || ((fndecl = gimple_call_fndecl (stmt)) != NULL_TREE
a0e9bfbb 810 && !fndecl_built_in_p (fndecl)
237e78b1 811 && !lookup_attribute ("assume_aligned",
812 TYPE_ATTRIBUTES (fntype))
813 && !lookup_attribute ("alloc_align",
814 TYPE_ATTRIBUTES (fntype))))
f257af64 815 return true;
816 }
bfa30570 817
8edeb88b 818 /* Any other store operation is not interesting. */
dd277d48 819 else if (gimple_vdef (stmt))
8edeb88b 820 return true;
821
bfa30570 822 /* Anything other than assignments and conditional jumps are not
823 interesting for CCP. */
75a70cf9 824 if (gimple_code (stmt) != GIMPLE_ASSIGN
f257af64 825 && gimple_code (stmt) != GIMPLE_COND
826 && gimple_code (stmt) != GIMPLE_SWITCH
827 && gimple_code (stmt) != GIMPLE_CALL)
bfa30570 828 return true;
829
830 return false;
831}
4ee9c684 832
41511585 833/* Initialize local data structures for CCP. */
4ee9c684 834
835static void
41511585 836ccp_initialize (void)
4ee9c684 837{
41511585 838 basic_block bb;
4ee9c684 839
285df01b 840 n_const_val = num_ssa_names;
9908fe4d 841 const_val = XCNEWVEC (ccp_prop_value_t, n_const_val);
4ee9c684 842
41511585 843 /* Initialize simulation flags for PHI nodes and statements. */
fc00614f 844 FOR_EACH_BB_FN (bb, cfun)
4ee9c684 845 {
75a70cf9 846 gimple_stmt_iterator i;
4ee9c684 847
75a70cf9 848 for (i = gsi_start_bb (bb); !gsi_end_p (i); gsi_next (&i))
41511585 849 {
42acab1c 850 gimple *stmt = gsi_stmt (i);
2193544e 851 bool is_varying;
852
853 /* If the statement is a control insn, then we do not
854 want to avoid simulating the statement once. Failure
855 to do so means that those edges will never get added. */
856 if (stmt_ends_bb_p (stmt))
857 is_varying = false;
858 else
859 is_varying = surely_varying_stmt_p (stmt);
4ee9c684 860
bfa30570 861 if (is_varying)
41511585 862 {
88dbf20f 863 tree def;
864 ssa_op_iter iter;
865
866 /* If the statement will not produce a constant, mark
867 all its outputs VARYING. */
868 FOR_EACH_SSA_TREE_OPERAND (def, stmt, iter, SSA_OP_ALL_DEFS)
8edeb88b 869 set_value_varying (def);
41511585 870 }
75a70cf9 871 prop_set_simulate_again (stmt, !is_varying);
41511585 872 }
4ee9c684 873 }
874
75a70cf9 875 /* Now process PHI nodes. We never clear the simulate_again flag on
876 phi nodes, since we do not know which edges are executable yet,
877 except for phi nodes for virtual operands when we do not do store ccp. */
fc00614f 878 FOR_EACH_BB_FN (bb, cfun)
4ee9c684 879 {
1a91d914 880 gphi_iterator i;
41511585 881
75a70cf9 882 for (i = gsi_start_phis (bb); !gsi_end_p (i); gsi_next (&i))
883 {
1a91d914 884 gphi *phi = i.phi ();
75a70cf9 885
7c782c9b 886 if (virtual_operand_p (gimple_phi_result (phi)))
75a70cf9 887 prop_set_simulate_again (phi, false);
bfa30570 888 else
75a70cf9 889 prop_set_simulate_again (phi, true);
41511585 890 }
4ee9c684 891 }
41511585 892}
4ee9c684 893
43fb76c1 894/* Debug count support. Reset the values of ssa names
895 VARYING when the total number ssa names analyzed is
896 beyond the debug count specified. */
897
898static void
899do_dbg_cnt (void)
900{
901 unsigned i;
902 for (i = 0; i < num_ssa_names; i++)
903 {
904 if (!dbg_cnt (ccp))
905 {
906 const_val[i].lattice_val = VARYING;
e913b5cd 907 const_val[i].mask = -1;
43fb76c1 908 const_val[i].value = NULL_TREE;
909 }
910 }
911}
912
4ee9c684 913
b08e7364 914/* We want to provide our own GET_VALUE and FOLD_STMT virtual methods. */
915class ccp_folder : public substitute_and_fold_engine
916{
917 public:
918 tree get_value (tree) FINAL OVERRIDE;
919 bool fold_stmt (gimple_stmt_iterator *) FINAL OVERRIDE;
920};
921
922/* This method just wraps GET_CONSTANT_VALUE for now. Over time
923 naked calls to GET_CONSTANT_VALUE should be eliminated in favor
924 of calling member functions. */
925
926tree
927ccp_folder::get_value (tree op)
928{
929 return get_constant_value (op);
930}
931
88dbf20f 932/* Do final substitution of propagated values, cleanup the flowgraph and
d0322b7d 933 free allocated storage. If NONZERO_P, record nonzero bits.
4ee9c684 934
33a34f1e 935 Return TRUE when something was optimized. */
936
937static bool
a54071b2 938ccp_finalize (bool nonzero_p)
4ee9c684 939{
43fb76c1 940 bool something_changed;
153c3b50 941 unsigned i;
f211616e 942 tree name;
43fb76c1 943
944 do_dbg_cnt ();
153c3b50 945
946 /* Derive alignment and misalignment information from partially
fc08b993 947 constant pointers in the lattice or nonzero bits from partially
948 constant integers. */
f211616e 949 FOR_EACH_SSA_NAME (i, name, cfun)
153c3b50 950 {
9908fe4d 951 ccp_prop_value_t *val;
153c3b50 952 unsigned int tem, align;
953
f211616e 954 if (!POINTER_TYPE_P (TREE_TYPE (name))
955 && (!INTEGRAL_TYPE_P (TREE_TYPE (name))
956 /* Don't record nonzero bits before IPA to avoid
957 using too much memory. */
958 || !nonzero_p))
153c3b50 959 continue;
960
961 val = get_value (name);
962 if (val->lattice_val != CONSTANT
a54071b2 963 || TREE_CODE (val->value) != INTEGER_CST
964 || val->mask == 0)
153c3b50 965 continue;
966
fc08b993 967 if (POINTER_TYPE_P (TREE_TYPE (name)))
968 {
969 /* Trailing mask bits specify the alignment, trailing value
970 bits the misalignment. */
aeb682a2 971 tem = val->mask.to_uhwi ();
ac29ece2 972 align = least_bit_hwi (tem);
fc08b993 973 if (align > 1)
974 set_ptr_info_alignment (get_ptr_info (name), align,
f9ae6f95 975 (TREE_INT_CST_LOW (val->value)
fc08b993 976 & (align - 1)));
977 }
978 else
979 {
9c1be15e 980 unsigned int precision = TYPE_PRECISION (TREE_TYPE (val->value));
e3d0f65c 981 wide_int nonzero_bits
982 = (wide_int::from (val->mask, precision, UNSIGNED)
983 | wi::to_wide (val->value));
fc08b993 984 nonzero_bits &= get_nonzero_bits (name);
985 set_nonzero_bits (name, nonzero_bits);
986 }
153c3b50 987 }
988
88dbf20f 989 /* Perform substitutions based on the known constant values. */
b08e7364 990 class ccp_folder ccp_folder;
991 something_changed = ccp_folder.substitute_and_fold ();
4ee9c684 992
88dbf20f 993 free (const_val);
e004838d 994 const_val = NULL;
7f38a6aa 995 return something_changed;
4ee9c684 996}
997
998
88dbf20f 999/* Compute the meet operator between *VAL1 and *VAL2. Store the result
1000 in VAL1.
1001
1002 any M UNDEFINED = any
88dbf20f 1003 any M VARYING = VARYING
1004 Ci M Cj = Ci if (i == j)
1005 Ci M Cj = VARYING if (i != j)
bfa30570 1006 */
4ee9c684 1007
1008static void
27de3d43 1009ccp_lattice_meet (ccp_prop_value_t *val1, ccp_prop_value_t *val2)
4ee9c684 1010{
fc6cc27b 1011 if (val1->lattice_val == UNDEFINED
1012 /* For UNDEFINED M SSA we can't always SSA because its definition
1013 may not dominate the PHI node. Doing optimistic copy propagation
1014 also causes a lot of gcc.dg/uninit-pred*.c FAILs. */
1015 && (val2->lattice_val != CONSTANT
1016 || TREE_CODE (val2->value) != SSA_NAME))
4ee9c684 1017 {
88dbf20f 1018 /* UNDEFINED M any = any */
1019 *val1 = *val2;
41511585 1020 }
fc6cc27b 1021 else if (val2->lattice_val == UNDEFINED
1022 /* See above. */
1023 && (val1->lattice_val != CONSTANT
1024 || TREE_CODE (val1->value) != SSA_NAME))
92481a4d 1025 {
88dbf20f 1026 /* any M UNDEFINED = any
1027 Nothing to do. VAL1 already contains the value we want. */
1028 ;
92481a4d 1029 }
88dbf20f 1030 else if (val1->lattice_val == VARYING
1031 || val2->lattice_val == VARYING)
41511585 1032 {
88dbf20f 1033 /* any M VARYING = VARYING. */
1034 val1->lattice_val = VARYING;
e913b5cd 1035 val1->mask = -1;
88dbf20f 1036 val1->value = NULL_TREE;
41511585 1037 }
b7e55469 1038 else if (val1->lattice_val == CONSTANT
1039 && val2->lattice_val == CONSTANT
1040 && TREE_CODE (val1->value) == INTEGER_CST
1041 && TREE_CODE (val2->value) == INTEGER_CST)
1042 {
1043 /* Ci M Cj = Ci if (i == j)
1044 Ci M Cj = VARYING if (i != j)
1045
1046 For INTEGER_CSTs mask unequal bits. If no equal bits remain,
1047 drop to varying. */
e913b5cd 1048 val1->mask = (val1->mask | val2->mask
5de9d3ed 1049 | (wi::to_widest (val1->value)
1050 ^ wi::to_widest (val2->value)));
c90d2c17 1051 if (wi::sext (val1->mask, TYPE_PRECISION (TREE_TYPE (val1->value))) == -1)
b7e55469 1052 {
1053 val1->lattice_val = VARYING;
1054 val1->value = NULL_TREE;
1055 }
1056 }
88dbf20f 1057 else if (val1->lattice_val == CONSTANT
1058 && val2->lattice_val == CONSTANT
27de3d43 1059 && operand_equal_p (val1->value, val2->value, 0))
41511585 1060 {
88dbf20f 1061 /* Ci M Cj = Ci if (i == j)
1062 Ci M Cj = VARYING if (i != j)
1063
b7e55469 1064 VAL1 already contains the value we want for equivalent values. */
1065 }
1066 else if (val1->lattice_val == CONSTANT
1067 && val2->lattice_val == CONSTANT
1068 && (TREE_CODE (val1->value) == ADDR_EXPR
1069 || TREE_CODE (val2->value) == ADDR_EXPR))
1070 {
1071 /* When not equal addresses are involved try meeting for
1072 alignment. */
9908fe4d 1073 ccp_prop_value_t tem = *val2;
b7e55469 1074 if (TREE_CODE (val1->value) == ADDR_EXPR)
1075 *val1 = get_value_for_expr (val1->value, true);
1076 if (TREE_CODE (val2->value) == ADDR_EXPR)
1077 tem = get_value_for_expr (val2->value, true);
27de3d43 1078 ccp_lattice_meet (val1, &tem);
41511585 1079 }
1080 else
1081 {
88dbf20f 1082 /* Any other combination is VARYING. */
1083 val1->lattice_val = VARYING;
e913b5cd 1084 val1->mask = -1;
88dbf20f 1085 val1->value = NULL_TREE;
41511585 1086 }
4ee9c684 1087}
1088
1089
41511585 1090/* Loop through the PHI_NODE's parameters for BLOCK and compare their
1091 lattice values to determine PHI_NODE's lattice value. The value of a
88dbf20f 1092 PHI node is determined calling ccp_lattice_meet with all the arguments
41511585 1093 of the PHI node that are incoming via executable edges. */
4ee9c684 1094
6bd87d95 1095enum ssa_prop_result
1096ccp_propagate::visit_phi (gphi *phi)
4ee9c684 1097{
75a70cf9 1098 unsigned i;
bc1d3d97 1099 ccp_prop_value_t new_val;
4ee9c684 1100
41511585 1101 if (dump_file && (dump_flags & TDF_DETAILS))
4ee9c684 1102 {
41511585 1103 fprintf (dump_file, "\nVisiting PHI node: ");
75a70cf9 1104 print_gimple_stmt (dump_file, phi, 0, dump_flags);
4ee9c684 1105 }
4ee9c684 1106
bc1d3d97 1107 new_val.lattice_val = UNDEFINED;
1108 new_val.value = NULL_TREE;
1109 new_val.mask = 0;
4ee9c684 1110
bc1d3d97 1111 bool first = true;
83c60000 1112 bool non_exec_edge = false;
75a70cf9 1113 for (i = 0; i < gimple_phi_num_args (phi); i++)
41511585 1114 {
88dbf20f 1115 /* Compute the meet operator over all the PHI arguments flowing
1116 through executable edges. */
75a70cf9 1117 edge e = gimple_phi_arg_edge (phi, i);
4ee9c684 1118
41511585 1119 if (dump_file && (dump_flags & TDF_DETAILS))
1120 {
1121 fprintf (dump_file,
fa31eb45 1122 "\tArgument #%d (%d -> %d %sexecutable)\n",
41511585 1123 i, e->src->index, e->dest->index,
1124 (e->flags & EDGE_EXECUTABLE) ? "" : "not ");
1125 }
1126
1127 /* If the incoming edge is executable, Compute the meet operator for
1128 the existing value of the PHI node and the current PHI argument. */
1129 if (e->flags & EDGE_EXECUTABLE)
1130 {
75a70cf9 1131 tree arg = gimple_phi_arg (phi, i)->def;
9908fe4d 1132 ccp_prop_value_t arg_val = get_value_for_expr (arg, false);
4ee9c684 1133
bc1d3d97 1134 if (first)
1135 {
1136 new_val = arg_val;
1137 first = false;
1138 }
1139 else
27de3d43 1140 ccp_lattice_meet (&new_val, &arg_val);
4ee9c684 1141
41511585 1142 if (dump_file && (dump_flags & TDF_DETAILS))
1143 {
1144 fprintf (dump_file, "\t");
88dbf20f 1145 print_generic_expr (dump_file, arg, dump_flags);
1146 dump_lattice_value (dump_file, "\tValue: ", arg_val);
41511585 1147 fprintf (dump_file, "\n");
1148 }
4ee9c684 1149
41511585 1150 if (new_val.lattice_val == VARYING)
1151 break;
1152 }
83c60000 1153 else
1154 non_exec_edge = true;
1155 }
1156
1157 /* In case there were non-executable edges and the value is a copy
1158 make sure its definition dominates the PHI node. */
1159 if (non_exec_edge
1160 && new_val.lattice_val == CONSTANT
1161 && TREE_CODE (new_val.value) == SSA_NAME
1162 && ! SSA_NAME_IS_DEFAULT_DEF (new_val.value)
1163 && ! dominated_by_p (CDI_DOMINATORS, gimple_bb (phi),
1164 gimple_bb (SSA_NAME_DEF_STMT (new_val.value))))
1165 {
1166 new_val.lattice_val = VARYING;
1167 new_val.value = NULL_TREE;
1168 new_val.mask = -1;
41511585 1169 }
4ee9c684 1170
1171 if (dump_file && (dump_flags & TDF_DETAILS))
41511585 1172 {
1173 dump_lattice_value (dump_file, "\n PHI node value: ", new_val);
1174 fprintf (dump_file, "\n\n");
1175 }
1176
bfa30570 1177 /* Make the transition to the new value. */
27de3d43 1178 if (set_lattice_value (gimple_phi_result (phi), &new_val))
41511585 1179 {
1180 if (new_val.lattice_val == VARYING)
1181 return SSA_PROP_VARYING;
1182 else
1183 return SSA_PROP_INTERESTING;
1184 }
1185 else
1186 return SSA_PROP_NOT_INTERESTING;
4ee9c684 1187}
1188
15d138c9 1189/* Return the constant value for OP or OP otherwise. */
00f4f705 1190
1191static tree
15d138c9 1192valueize_op (tree op)
00f4f705 1193{
00f4f705 1194 if (TREE_CODE (op) == SSA_NAME)
1195 {
15d138c9 1196 tree tem = get_constant_value (op);
1197 if (tem)
1198 return tem;
00f4f705 1199 }
1200 return op;
1201}
1202
4e1b3545 1203/* Return the constant value for OP, but signal to not follow SSA
1204 edges if the definition may be simulated again. */
1205
1206static tree
1207valueize_op_1 (tree op)
1208{
1209 if (TREE_CODE (op) == SSA_NAME)
1210 {
4e1b3545 1211 /* If the definition may be simulated again we cannot follow
1212 this SSA edge as the SSA propagator does not necessarily
1213 re-visit the use. */
42acab1c 1214 gimple *def_stmt = SSA_NAME_DEF_STMT (op);
2160d5ba 1215 if (!gimple_nop_p (def_stmt)
1216 && prop_simulate_again_p (def_stmt))
4e1b3545 1217 return NULL_TREE;
bc8fa068 1218 tree tem = get_constant_value (op);
1219 if (tem)
1220 return tem;
4e1b3545 1221 }
1222 return op;
1223}
1224
41511585 1225/* CCP specific front-end to the non-destructive constant folding
1226 routines.
4ee9c684 1227
1228 Attempt to simplify the RHS of STMT knowing that one or more
1229 operands are constants.
1230
1231 If simplification is possible, return the simplified RHS,
75a70cf9 1232 otherwise return the original RHS or NULL_TREE. */
4ee9c684 1233
1234static tree
42acab1c 1235ccp_fold (gimple *stmt)
4ee9c684 1236{
389dd41b 1237 location_t loc = gimple_location (stmt);
75a70cf9 1238 switch (gimple_code (stmt))
88dbf20f 1239 {
75a70cf9 1240 case GIMPLE_COND:
1241 {
1242 /* Handle comparison operators that can appear in GIMPLE form. */
15d138c9 1243 tree op0 = valueize_op (gimple_cond_lhs (stmt));
1244 tree op1 = valueize_op (gimple_cond_rhs (stmt));
75a70cf9 1245 enum tree_code code = gimple_cond_code (stmt);
389dd41b 1246 return fold_binary_loc (loc, code, boolean_type_node, op0, op1);
75a70cf9 1247 }
4ee9c684 1248
75a70cf9 1249 case GIMPLE_SWITCH:
1250 {
15d138c9 1251 /* Return the constant switch index. */
1a91d914 1252 return valueize_op (gimple_switch_index (as_a <gswitch *> (stmt)));
75a70cf9 1253 }
912f109f 1254
1d0b727d 1255 case GIMPLE_ASSIGN:
1256 case GIMPLE_CALL:
4e1b3545 1257 return gimple_fold_stmt_to_constant_1 (stmt,
1258 valueize_op, valueize_op_1);
04236c3a 1259
8782adcf 1260 default:
1d0b727d 1261 gcc_unreachable ();
8782adcf 1262 }
8782adcf 1263}
75a70cf9 1264
b7e55469 1265/* Apply the operation CODE in type TYPE to the value, mask pair
1266 RVAL and RMASK representing a value of type RTYPE and set
1267 the value, mask pair *VAL and *MASK to the result. */
1268
a54071b2 1269void
1270bit_value_unop (enum tree_code code, signop type_sgn, int type_precision,
1271 widest_int *val, widest_int *mask,
1272 signop rtype_sgn, int rtype_precision,
1273 const widest_int &rval, const widest_int &rmask)
b7e55469 1274{
1275 switch (code)
1276 {
1277 case BIT_NOT_EXPR:
1278 *mask = rmask;
cf8f0e63 1279 *val = ~rval;
b7e55469 1280 break;
1281
1282 case NEGATE_EXPR:
1283 {
5de9d3ed 1284 widest_int temv, temm;
b7e55469 1285 /* Return ~rval + 1. */
a54071b2 1286 bit_value_unop (BIT_NOT_EXPR, type_sgn, type_precision, &temv, &temm,
1287 type_sgn, type_precision, rval, rmask);
1288 bit_value_binop (PLUS_EXPR, type_sgn, type_precision, val, mask,
1289 type_sgn, type_precision, temv, temm,
1290 type_sgn, type_precision, 1, 0);
b7e55469 1291 break;
1292 }
1293
1294 CASE_CONVERT:
1295 {
b7e55469 1296 /* First extend mask and value according to the original type. */
a54071b2 1297 *mask = wi::ext (rmask, rtype_precision, rtype_sgn);
1298 *val = wi::ext (rval, rtype_precision, rtype_sgn);
b7e55469 1299
1300 /* Then extend mask and value according to the target type. */
a54071b2 1301 *mask = wi::ext (*mask, type_precision, type_sgn);
1302 *val = wi::ext (*val, type_precision, type_sgn);
b7e55469 1303 break;
1304 }
1305
1306 default:
e913b5cd 1307 *mask = -1;
b7e55469 1308 break;
1309 }
1310}
1311
1312/* Apply the operation CODE in type TYPE to the value, mask pairs
1313 R1VAL, R1MASK and R2VAL, R2MASK representing a values of type R1TYPE
1314 and R2TYPE and set the value, mask pair *VAL and *MASK to the result. */
1315
a54071b2 1316void
1317bit_value_binop (enum tree_code code, signop sgn, int width,
1318 widest_int *val, widest_int *mask,
1319 signop r1type_sgn, int r1type_precision,
1320 const widest_int &r1val, const widest_int &r1mask,
1321 signop r2type_sgn, int r2type_precision,
1322 const widest_int &r2val, const widest_int &r2mask)
b7e55469 1323{
10c3fe8d 1324 bool swap_p = false;
e913b5cd 1325
1326 /* Assume we'll get a constant result. Use an initial non varying
1327 value, we fall back to varying in the end if necessary. */
1328 *mask = -1;
1329
b7e55469 1330 switch (code)
1331 {
1332 case BIT_AND_EXPR:
1333 /* The mask is constant where there is a known not
1334 set bit, (m1 | m2) & ((v1 | m1) & (v2 | m2)) */
cf8f0e63 1335 *mask = (r1mask | r2mask) & (r1val | r1mask) & (r2val | r2mask);
1336 *val = r1val & r2val;
b7e55469 1337 break;
1338
1339 case BIT_IOR_EXPR:
1340 /* The mask is constant where there is a known
1341 set bit, (m1 | m2) & ~((v1 & ~m1) | (v2 & ~m2)). */
1c8ecf8d 1342 *mask = wi::bit_and_not (r1mask | r2mask,
1343 wi::bit_and_not (r1val, r1mask)
1344 | wi::bit_and_not (r2val, r2mask));
cf8f0e63 1345 *val = r1val | r2val;
b7e55469 1346 break;
1347
1348 case BIT_XOR_EXPR:
1349 /* m1 | m2 */
cf8f0e63 1350 *mask = r1mask | r2mask;
1351 *val = r1val ^ r2val;
b7e55469 1352 break;
1353
1354 case LROTATE_EXPR:
1355 case RROTATE_EXPR:
796b6678 1356 if (r2mask == 0)
b7e55469 1357 {
28e557ef 1358 widest_int shift = r2val;
796b6678 1359 if (shift == 0)
e913b5cd 1360 {
1361 *mask = r1mask;
1362 *val = r1val;
1363 }
ddb1be65 1364 else
e913b5cd 1365 {
796b6678 1366 if (wi::neg_p (shift))
e913b5cd 1367 {
1368 shift = -shift;
1369 if (code == RROTATE_EXPR)
1370 code = LROTATE_EXPR;
1371 else
1372 code = RROTATE_EXPR;
1373 }
1374 if (code == RROTATE_EXPR)
1375 {
796b6678 1376 *mask = wi::rrotate (r1mask, shift, width);
1377 *val = wi::rrotate (r1val, shift, width);
e913b5cd 1378 }
1379 else
1380 {
796b6678 1381 *mask = wi::lrotate (r1mask, shift, width);
1382 *val = wi::lrotate (r1val, shift, width);
e913b5cd 1383 }
1384 }
b7e55469 1385 }
1386 break;
1387
1388 case LSHIFT_EXPR:
1389 case RSHIFT_EXPR:
1390 /* ??? We can handle partially known shift counts if we know
1391 its sign. That way we can tell that (x << (y | 8)) & 255
1392 is zero. */
796b6678 1393 if (r2mask == 0)
b7e55469 1394 {
28e557ef 1395 widest_int shift = r2val;
796b6678 1396 if (shift == 0)
b7e55469 1397 {
1398 *mask = r1mask;
1399 *val = r1val;
1400 }
ddb1be65 1401 else
e913b5cd 1402 {
796b6678 1403 if (wi::neg_p (shift))
e913b5cd 1404 {
1405 shift = -shift;
1406 if (code == RSHIFT_EXPR)
1407 code = LSHIFT_EXPR;
1408 else
1409 code = RSHIFT_EXPR;
1410 }
1411 if (code == RSHIFT_EXPR)
1412 {
45639915 1413 *mask = wi::rshift (wi::ext (r1mask, width, sgn), shift, sgn);
1414 *val = wi::rshift (wi::ext (r1val, width, sgn), shift, sgn);
e913b5cd 1415 }
1416 else
1417 {
9fdc1ed4 1418 *mask = wi::ext (r1mask << shift, width, sgn);
1419 *val = wi::ext (r1val << shift, width, sgn);
e913b5cd 1420 }
1421 }
b7e55469 1422 }
1423 break;
1424
1425 case PLUS_EXPR:
1426 case POINTER_PLUS_EXPR:
1427 {
b7e55469 1428 /* Do the addition with unknown bits set to zero, to give carry-ins of
1429 zero wherever possible. */
1c8ecf8d 1430 widest_int lo = (wi::bit_and_not (r1val, r1mask)
1431 + wi::bit_and_not (r2val, r2mask));
796b6678 1432 lo = wi::ext (lo, width, sgn);
b7e55469 1433 /* Do the addition with unknown bits set to one, to give carry-ins of
1434 one wherever possible. */
ab2c1de8 1435 widest_int hi = (r1val | r1mask) + (r2val | r2mask);
796b6678 1436 hi = wi::ext (hi, width, sgn);
b7e55469 1437 /* Each bit in the result is known if (a) the corresponding bits in
1438 both inputs are known, and (b) the carry-in to that bit position
1439 is known. We can check condition (b) by seeing if we got the same
1440 result with minimised carries as with maximised carries. */
cf8f0e63 1441 *mask = r1mask | r2mask | (lo ^ hi);
796b6678 1442 *mask = wi::ext (*mask, width, sgn);
b7e55469 1443 /* It shouldn't matter whether we choose lo or hi here. */
1444 *val = lo;
1445 break;
1446 }
1447
1448 case MINUS_EXPR:
1449 {
5de9d3ed 1450 widest_int temv, temm;
a54071b2 1451 bit_value_unop (NEGATE_EXPR, r2type_sgn, r2type_precision, &temv, &temm,
1452 r2type_sgn, r2type_precision, r2val, r2mask);
1453 bit_value_binop (PLUS_EXPR, sgn, width, val, mask,
1454 r1type_sgn, r1type_precision, r1val, r1mask,
1455 r2type_sgn, r2type_precision, temv, temm);
b7e55469 1456 break;
1457 }
1458
1459 case MULT_EXPR:
1460 {
1461 /* Just track trailing zeros in both operands and transfer
1462 them to the other. */
796b6678 1463 int r1tz = wi::ctz (r1val | r1mask);
1464 int r2tz = wi::ctz (r2val | r2mask);
e913b5cd 1465 if (r1tz + r2tz >= width)
b7e55469 1466 {
e913b5cd 1467 *mask = 0;
1468 *val = 0;
b7e55469 1469 }
1470 else if (r1tz + r2tz > 0)
1471 {
5de9d3ed 1472 *mask = wi::ext (wi::mask <widest_int> (r1tz + r2tz, true),
796b6678 1473 width, sgn);
e913b5cd 1474 *val = 0;
b7e55469 1475 }
1476 break;
1477 }
1478
1479 case EQ_EXPR:
1480 case NE_EXPR:
1481 {
5de9d3ed 1482 widest_int m = r1mask | r2mask;
1c8ecf8d 1483 if (wi::bit_and_not (r1val, m) != wi::bit_and_not (r2val, m))
b7e55469 1484 {
e913b5cd 1485 *mask = 0;
1486 *val = ((code == EQ_EXPR) ? 0 : 1);
b7e55469 1487 }
1488 else
1489 {
1490 /* We know the result of a comparison is always one or zero. */
e913b5cd 1491 *mask = 1;
1492 *val = 0;
b7e55469 1493 }
1494 break;
1495 }
1496
1497 case GE_EXPR:
1498 case GT_EXPR:
10c3fe8d 1499 swap_p = true;
1500 code = swap_tree_comparison (code);
1501 /* Fall through. */
b7e55469 1502 case LT_EXPR:
1503 case LE_EXPR:
1504 {
1505 int minmax, maxmin;
e913b5cd 1506
10c3fe8d 1507 const widest_int &o1val = swap_p ? r2val : r1val;
1508 const widest_int &o1mask = swap_p ? r2mask : r1mask;
1509 const widest_int &o2val = swap_p ? r1val : r2val;
1510 const widest_int &o2mask = swap_p ? r1mask : r2mask;
1511
b7e55469 1512 /* If the most significant bits are not known we know nothing. */
796b6678 1513 if (wi::neg_p (o1mask) || wi::neg_p (o2mask))
b7e55469 1514 break;
1515
90c0f5b7 1516 /* For comparisons the signedness is in the comparison operands. */
a54071b2 1517 sgn = r1type_sgn;
90c0f5b7 1518
b7e55469 1519 /* If we know the most significant bits we know the values
1520 value ranges by means of treating varying bits as zero
1521 or one. Do a cross comparison of the max/min pairs. */
1c8ecf8d 1522 maxmin = wi::cmp (o1val | o1mask,
1523 wi::bit_and_not (o2val, o2mask), sgn);
1524 minmax = wi::cmp (wi::bit_and_not (o1val, o1mask),
1525 o2val | o2mask, sgn);
e913b5cd 1526 if (maxmin < 0) /* o1 is less than o2. */
b7e55469 1527 {
e913b5cd 1528 *mask = 0;
1529 *val = 1;
b7e55469 1530 }
e913b5cd 1531 else if (minmax > 0) /* o1 is not less or equal to o2. */
b7e55469 1532 {
e913b5cd 1533 *mask = 0;
1534 *val = 0;
b7e55469 1535 }
e913b5cd 1536 else if (maxmin == minmax) /* o1 and o2 are equal. */
b7e55469 1537 {
1538 /* This probably should never happen as we'd have
1539 folded the thing during fully constant value folding. */
e913b5cd 1540 *mask = 0;
1541 *val = (code == LE_EXPR ? 1 : 0);
b7e55469 1542 }
1543 else
1544 {
1545 /* We know the result of a comparison is always one or zero. */
e913b5cd 1546 *mask = 1;
1547 *val = 0;
b7e55469 1548 }
1549 break;
1550 }
1551
1552 default:;
1553 }
1554}
1555
1556/* Return the propagation value when applying the operation CODE to
1557 the value RHS yielding type TYPE. */
1558
9908fe4d 1559static ccp_prop_value_t
b7e55469 1560bit_value_unop (enum tree_code code, tree type, tree rhs)
1561{
9908fe4d 1562 ccp_prop_value_t rval = get_value_for_expr (rhs, true);
5de9d3ed 1563 widest_int value, mask;
9908fe4d 1564 ccp_prop_value_t val;
c91fedc5 1565
1566 if (rval.lattice_val == UNDEFINED)
1567 return rval;
1568
b7e55469 1569 gcc_assert ((rval.lattice_val == CONSTANT
1570 && TREE_CODE (rval.value) == INTEGER_CST)
c90d2c17 1571 || wi::sext (rval.mask, TYPE_PRECISION (TREE_TYPE (rhs))) == -1);
a54071b2 1572 bit_value_unop (code, TYPE_SIGN (type), TYPE_PRECISION (type), &value, &mask,
1573 TYPE_SIGN (TREE_TYPE (rhs)), TYPE_PRECISION (TREE_TYPE (rhs)),
1574 value_to_wide_int (rval), rval.mask);
c90d2c17 1575 if (wi::sext (mask, TYPE_PRECISION (type)) != -1)
b7e55469 1576 {
1577 val.lattice_val = CONSTANT;
1578 val.mask = mask;
1579 /* ??? Delay building trees here. */
e913b5cd 1580 val.value = wide_int_to_tree (type, value);
b7e55469 1581 }
1582 else
1583 {
1584 val.lattice_val = VARYING;
1585 val.value = NULL_TREE;
e913b5cd 1586 val.mask = -1;
b7e55469 1587 }
1588 return val;
1589}
1590
1591/* Return the propagation value when applying the operation CODE to
1592 the values RHS1 and RHS2 yielding type TYPE. */
1593
9908fe4d 1594static ccp_prop_value_t
b7e55469 1595bit_value_binop (enum tree_code code, tree type, tree rhs1, tree rhs2)
1596{
9908fe4d 1597 ccp_prop_value_t r1val = get_value_for_expr (rhs1, true);
1598 ccp_prop_value_t r2val = get_value_for_expr (rhs2, true);
5de9d3ed 1599 widest_int value, mask;
9908fe4d 1600 ccp_prop_value_t val;
c91fedc5 1601
1602 if (r1val.lattice_val == UNDEFINED
1603 || r2val.lattice_val == UNDEFINED)
1604 {
1605 val.lattice_val = VARYING;
1606 val.value = NULL_TREE;
e913b5cd 1607 val.mask = -1;
c91fedc5 1608 return val;
1609 }
1610
b7e55469 1611 gcc_assert ((r1val.lattice_val == CONSTANT
1612 && TREE_CODE (r1val.value) == INTEGER_CST)
c90d2c17 1613 || wi::sext (r1val.mask,
1614 TYPE_PRECISION (TREE_TYPE (rhs1))) == -1);
b7e55469 1615 gcc_assert ((r2val.lattice_val == CONSTANT
1616 && TREE_CODE (r2val.value) == INTEGER_CST)
c90d2c17 1617 || wi::sext (r2val.mask,
1618 TYPE_PRECISION (TREE_TYPE (rhs2))) == -1);
a54071b2 1619 bit_value_binop (code, TYPE_SIGN (type), TYPE_PRECISION (type), &value, &mask,
1620 TYPE_SIGN (TREE_TYPE (rhs1)), TYPE_PRECISION (TREE_TYPE (rhs1)),
1621 value_to_wide_int (r1val), r1val.mask,
1622 TYPE_SIGN (TREE_TYPE (rhs2)), TYPE_PRECISION (TREE_TYPE (rhs2)),
1623 value_to_wide_int (r2val), r2val.mask);
1624
c90d2c17 1625 if (wi::sext (mask, TYPE_PRECISION (type)) != -1)
b7e55469 1626 {
1627 val.lattice_val = CONSTANT;
1628 val.mask = mask;
1629 /* ??? Delay building trees here. */
e913b5cd 1630 val.value = wide_int_to_tree (type, value);
b7e55469 1631 }
1632 else
1633 {
1634 val.lattice_val = VARYING;
1635 val.value = NULL_TREE;
e913b5cd 1636 val.mask = -1;
b7e55469 1637 }
1638 return val;
1639}
1640
237e78b1 1641/* Return the propagation value for __builtin_assume_aligned
1642 and functions with assume_aligned or alloc_aligned attribute.
1643 For __builtin_assume_aligned, ATTR is NULL_TREE,
1644 for assume_aligned attribute ATTR is non-NULL and ALLOC_ALIGNED
1645 is false, for alloc_aligned attribute ATTR is non-NULL and
1646 ALLOC_ALIGNED is true. */
fca0886c 1647
9908fe4d 1648static ccp_prop_value_t
42acab1c 1649bit_value_assume_aligned (gimple *stmt, tree attr, ccp_prop_value_t ptrval,
237e78b1 1650 bool alloc_aligned)
fca0886c 1651{
237e78b1 1652 tree align, misalign = NULL_TREE, type;
fca0886c 1653 unsigned HOST_WIDE_INT aligni, misaligni = 0;
9908fe4d 1654 ccp_prop_value_t alignval;
5de9d3ed 1655 widest_int value, mask;
9908fe4d 1656 ccp_prop_value_t val;
e913b5cd 1657
237e78b1 1658 if (attr == NULL_TREE)
1659 {
1660 tree ptr = gimple_call_arg (stmt, 0);
1661 type = TREE_TYPE (ptr);
1662 ptrval = get_value_for_expr (ptr, true);
1663 }
1664 else
1665 {
1666 tree lhs = gimple_call_lhs (stmt);
1667 type = TREE_TYPE (lhs);
1668 }
1669
fca0886c 1670 if (ptrval.lattice_val == UNDEFINED)
1671 return ptrval;
1672 gcc_assert ((ptrval.lattice_val == CONSTANT
1673 && TREE_CODE (ptrval.value) == INTEGER_CST)
c90d2c17 1674 || wi::sext (ptrval.mask, TYPE_PRECISION (type)) == -1);
237e78b1 1675 if (attr == NULL_TREE)
fca0886c 1676 {
237e78b1 1677 /* Get aligni and misaligni from __builtin_assume_aligned. */
1678 align = gimple_call_arg (stmt, 1);
1679 if (!tree_fits_uhwi_p (align))
fca0886c 1680 return ptrval;
237e78b1 1681 aligni = tree_to_uhwi (align);
1682 if (gimple_call_num_args (stmt) > 2)
1683 {
1684 misalign = gimple_call_arg (stmt, 2);
1685 if (!tree_fits_uhwi_p (misalign))
1686 return ptrval;
1687 misaligni = tree_to_uhwi (misalign);
1688 }
1689 }
1690 else
fca0886c 1691 {
237e78b1 1692 /* Get aligni and misaligni from assume_aligned or
1693 alloc_align attributes. */
1694 if (TREE_VALUE (attr) == NULL_TREE)
fca0886c 1695 return ptrval;
237e78b1 1696 attr = TREE_VALUE (attr);
1697 align = TREE_VALUE (attr);
1698 if (!tree_fits_uhwi_p (align))
fca0886c 1699 return ptrval;
237e78b1 1700 aligni = tree_to_uhwi (align);
1701 if (alloc_aligned)
1702 {
1703 if (aligni == 0 || aligni > gimple_call_num_args (stmt))
1704 return ptrval;
1705 align = gimple_call_arg (stmt, aligni - 1);
1706 if (!tree_fits_uhwi_p (align))
1707 return ptrval;
1708 aligni = tree_to_uhwi (align);
1709 }
1710 else if (TREE_CHAIN (attr) && TREE_VALUE (TREE_CHAIN (attr)))
1711 {
1712 misalign = TREE_VALUE (TREE_CHAIN (attr));
1713 if (!tree_fits_uhwi_p (misalign))
1714 return ptrval;
1715 misaligni = tree_to_uhwi (misalign);
1716 }
fca0886c 1717 }
237e78b1 1718 if (aligni <= 1 || (aligni & (aligni - 1)) != 0 || misaligni >= aligni)
1719 return ptrval;
1720
fca0886c 1721 align = build_int_cst_type (type, -aligni);
1722 alignval = get_value_for_expr (align, true);
a54071b2 1723 bit_value_binop (BIT_AND_EXPR, TYPE_SIGN (type), TYPE_PRECISION (type), &value, &mask,
1724 TYPE_SIGN (type), TYPE_PRECISION (type), value_to_wide_int (ptrval), ptrval.mask,
1725 TYPE_SIGN (type), TYPE_PRECISION (type), value_to_wide_int (alignval), alignval.mask);
1726
c90d2c17 1727 if (wi::sext (mask, TYPE_PRECISION (type)) != -1)
fca0886c 1728 {
1729 val.lattice_val = CONSTANT;
1730 val.mask = mask;
e913b5cd 1731 gcc_assert ((mask.to_uhwi () & (aligni - 1)) == 0);
1732 gcc_assert ((value.to_uhwi () & (aligni - 1)) == 0);
1733 value |= misaligni;
fca0886c 1734 /* ??? Delay building trees here. */
e913b5cd 1735 val.value = wide_int_to_tree (type, value);
fca0886c 1736 }
1737 else
1738 {
1739 val.lattice_val = VARYING;
1740 val.value = NULL_TREE;
e913b5cd 1741 val.mask = -1;
fca0886c 1742 }
1743 return val;
1744}
1745
75a70cf9 1746/* Evaluate statement STMT.
1747 Valid only for assignments, calls, conditionals, and switches. */
4ee9c684 1748
9908fe4d 1749static ccp_prop_value_t
42acab1c 1750evaluate_stmt (gimple *stmt)
4ee9c684 1751{
9908fe4d 1752 ccp_prop_value_t val;
4f61cce6 1753 tree simplified = NULL_TREE;
88dbf20f 1754 ccp_lattice_t likelyvalue = likely_value (stmt);
b7e55469 1755 bool is_constant = false;
581bf1c2 1756 unsigned int align;
88dbf20f 1757
b7e55469 1758 if (dump_file && (dump_flags & TDF_DETAILS))
1759 {
1760 fprintf (dump_file, "which is likely ");
1761 switch (likelyvalue)
1762 {
1763 case CONSTANT:
1764 fprintf (dump_file, "CONSTANT");
1765 break;
1766 case UNDEFINED:
1767 fprintf (dump_file, "UNDEFINED");
1768 break;
1769 case VARYING:
1770 fprintf (dump_file, "VARYING");
1771 break;
1772 default:;
1773 }
1774 fprintf (dump_file, "\n");
1775 }
add6ee5e 1776
4ee9c684 1777 /* If the statement is likely to have a CONSTANT result, then try
1778 to fold the statement to determine the constant value. */
75a70cf9 1779 /* FIXME. This is the only place that we call ccp_fold.
1780 Since likely_value never returns CONSTANT for calls, we will
1781 not attempt to fold them, including builtins that may profit. */
4ee9c684 1782 if (likelyvalue == CONSTANT)
b7e55469 1783 {
1784 fold_defer_overflow_warnings ();
1785 simplified = ccp_fold (stmt);
c57dab92 1786 if (simplified
3ec56105 1787 && TREE_CODE (simplified) == SSA_NAME)
1788 {
c57dab92 1789 /* We may not use values of something that may be simulated again,
1790 see valueize_op_1. */
3ec56105 1791 if (SSA_NAME_IS_DEFAULT_DEF (simplified)
1792 || ! prop_simulate_again_p (SSA_NAME_DEF_STMT (simplified)))
27de3d43 1793 {
3ec56105 1794 ccp_prop_value_t *val = get_value (simplified);
1795 if (val && val->lattice_val != VARYING)
1796 {
1797 fold_undefer_overflow_warnings (true, stmt, 0);
1798 return *val;
1799 }
27de3d43 1800 }
3ec56105 1801 else
1802 /* We may also not place a non-valueized copy in the lattice
1803 as that might become stale if we never re-visit this stmt. */
1804 simplified = NULL_TREE;
27de3d43 1805 }
b7e55469 1806 is_constant = simplified && is_gimple_min_invariant (simplified);
1807 fold_undefer_overflow_warnings (is_constant, stmt, 0);
1808 if (is_constant)
1809 {
1810 /* The statement produced a constant value. */
1811 val.lattice_val = CONSTANT;
1812 val.value = simplified;
e913b5cd 1813 val.mask = 0;
27de3d43 1814 return val;
b7e55469 1815 }
1816 }
4ee9c684 1817 /* If the statement is likely to have a VARYING result, then do not
1818 bother folding the statement. */
04236c3a 1819 else if (likelyvalue == VARYING)
75a70cf9 1820 {
590c3166 1821 enum gimple_code code = gimple_code (stmt);
75a70cf9 1822 if (code == GIMPLE_ASSIGN)
1823 {
1824 enum tree_code subcode = gimple_assign_rhs_code (stmt);
48e1416a 1825
75a70cf9 1826 /* Other cases cannot satisfy is_gimple_min_invariant
1827 without folding. */
1828 if (get_gimple_rhs_class (subcode) == GIMPLE_SINGLE_RHS)
1829 simplified = gimple_assign_rhs1 (stmt);
1830 }
1831 else if (code == GIMPLE_SWITCH)
1a91d914 1832 simplified = gimple_switch_index (as_a <gswitch *> (stmt));
75a70cf9 1833 else
a65c4d64 1834 /* These cannot satisfy is_gimple_min_invariant without folding. */
1835 gcc_assert (code == GIMPLE_CALL || code == GIMPLE_COND);
b7e55469 1836 is_constant = simplified && is_gimple_min_invariant (simplified);
1837 if (is_constant)
1838 {
1839 /* The statement produced a constant value. */
1840 val.lattice_val = CONSTANT;
1841 val.value = simplified;
e913b5cd 1842 val.mask = 0;
b7e55469 1843 }
75a70cf9 1844 }
4c9206f2 1845 /* If the statement result is likely UNDEFINED, make it so. */
1846 else if (likelyvalue == UNDEFINED)
1847 {
1848 val.lattice_val = UNDEFINED;
1849 val.value = NULL_TREE;
1850 val.mask = 0;
1851 return val;
1852 }
4ee9c684 1853
b7e55469 1854 /* Resort to simplification for bitwise tracking. */
1855 if (flag_tree_bit_ccp
db48deb0 1856 && (likelyvalue == CONSTANT || is_gimple_call (stmt)
1857 || (gimple_assign_single_p (stmt)
1858 && gimple_assign_rhs_code (stmt) == ADDR_EXPR))
b7e55469 1859 && !is_constant)
912f109f 1860 {
b7e55469 1861 enum gimple_code code = gimple_code (stmt);
1862 val.lattice_val = VARYING;
1863 val.value = NULL_TREE;
e913b5cd 1864 val.mask = -1;
b7e55469 1865 if (code == GIMPLE_ASSIGN)
912f109f 1866 {
b7e55469 1867 enum tree_code subcode = gimple_assign_rhs_code (stmt);
1868 tree rhs1 = gimple_assign_rhs1 (stmt);
c0a4b664 1869 tree lhs = gimple_assign_lhs (stmt);
1870 if ((INTEGRAL_TYPE_P (TREE_TYPE (lhs))
1871 || POINTER_TYPE_P (TREE_TYPE (lhs)))
1872 && (INTEGRAL_TYPE_P (TREE_TYPE (rhs1))
1873 || POINTER_TYPE_P (TREE_TYPE (rhs1))))
1874 switch (get_gimple_rhs_class (subcode))
1875 {
1876 case GIMPLE_SINGLE_RHS:
1877 val = get_value_for_expr (rhs1, true);
1878 break;
1879
1880 case GIMPLE_UNARY_RHS:
1881 val = bit_value_unop (subcode, TREE_TYPE (lhs), rhs1);
1882 break;
1883
1884 case GIMPLE_BINARY_RHS:
1885 val = bit_value_binop (subcode, TREE_TYPE (lhs), rhs1,
1886 gimple_assign_rhs2 (stmt));
1887 break;
1888
1889 default:;
1890 }
912f109f 1891 }
b7e55469 1892 else if (code == GIMPLE_COND)
1893 {
1894 enum tree_code code = gimple_cond_code (stmt);
1895 tree rhs1 = gimple_cond_lhs (stmt);
1896 tree rhs2 = gimple_cond_rhs (stmt);
1897 if (INTEGRAL_TYPE_P (TREE_TYPE (rhs1))
1898 || POINTER_TYPE_P (TREE_TYPE (rhs1)))
1899 val = bit_value_binop (code, TREE_TYPE (rhs1), rhs1, rhs2);
1900 }
0b4f0116 1901 else if (gimple_call_builtin_p (stmt, BUILT_IN_NORMAL))
153c3b50 1902 {
0b4f0116 1903 tree fndecl = gimple_call_fndecl (stmt);
153c3b50 1904 switch (DECL_FUNCTION_CODE (fndecl))
1905 {
1906 case BUILT_IN_MALLOC:
1907 case BUILT_IN_REALLOC:
1908 case BUILT_IN_CALLOC:
939514e9 1909 case BUILT_IN_STRDUP:
1910 case BUILT_IN_STRNDUP:
153c3b50 1911 val.lattice_val = CONSTANT;
1912 val.value = build_int_cst (TREE_TYPE (gimple_get_lhs (stmt)), 0);
796b6678 1913 val.mask = ~((HOST_WIDE_INT) MALLOC_ABI_ALIGNMENT
1914 / BITS_PER_UNIT - 1);
153c3b50 1915 break;
1916
2b34677f 1917 CASE_BUILT_IN_ALLOCA:
1918 align = (DECL_FUNCTION_CODE (fndecl) == BUILT_IN_ALLOCA
1919 ? BIGGEST_ALIGNMENT
1920 : TREE_INT_CST_LOW (gimple_call_arg (stmt, 1)));
153c3b50 1921 val.lattice_val = CONSTANT;
1922 val.value = build_int_cst (TREE_TYPE (gimple_get_lhs (stmt)), 0);
796b6678 1923 val.mask = ~((HOST_WIDE_INT) align / BITS_PER_UNIT - 1);
153c3b50 1924 break;
1925
939514e9 1926 /* These builtins return their first argument, unmodified. */
1927 case BUILT_IN_MEMCPY:
1928 case BUILT_IN_MEMMOVE:
1929 case BUILT_IN_MEMSET:
1930 case BUILT_IN_STRCPY:
1931 case BUILT_IN_STRNCPY:
1932 case BUILT_IN_MEMCPY_CHK:
1933 case BUILT_IN_MEMMOVE_CHK:
1934 case BUILT_IN_MEMSET_CHK:
1935 case BUILT_IN_STRCPY_CHK:
1936 case BUILT_IN_STRNCPY_CHK:
1937 val = get_value_for_expr (gimple_call_arg (stmt, 0), true);
1938 break;
1939
fca0886c 1940 case BUILT_IN_ASSUME_ALIGNED:
237e78b1 1941 val = bit_value_assume_aligned (stmt, NULL_TREE, val, false);
fca0886c 1942 break;
1943
060fc206 1944 case BUILT_IN_ALIGNED_ALLOC:
1945 {
1946 tree align = get_constant_value (gimple_call_arg (stmt, 0));
1947 if (align
1948 && tree_fits_uhwi_p (align))
1949 {
1950 unsigned HOST_WIDE_INT aligni = tree_to_uhwi (align);
1951 if (aligni > 1
1952 /* align must be power-of-two */
1953 && (aligni & (aligni - 1)) == 0)
1954 {
1955 val.lattice_val = CONSTANT;
1956 val.value = build_int_cst (ptr_type_node, 0);
cd89b631 1957 val.mask = -aligni;
060fc206 1958 }
1959 }
1960 break;
1961 }
1962
153c3b50 1963 default:;
1964 }
1965 }
237e78b1 1966 if (is_gimple_call (stmt) && gimple_call_lhs (stmt))
1967 {
1968 tree fntype = gimple_call_fntype (stmt);
1969 if (fntype)
1970 {
1971 tree attrs = lookup_attribute ("assume_aligned",
1972 TYPE_ATTRIBUTES (fntype));
1973 if (attrs)
1974 val = bit_value_assume_aligned (stmt, attrs, val, false);
1975 attrs = lookup_attribute ("alloc_align",
1976 TYPE_ATTRIBUTES (fntype));
1977 if (attrs)
1978 val = bit_value_assume_aligned (stmt, attrs, val, true);
1979 }
1980 }
b7e55469 1981 is_constant = (val.lattice_val == CONSTANT);
912f109f 1982 }
1983
fc08b993 1984 if (flag_tree_bit_ccp
1985 && ((is_constant && TREE_CODE (val.value) == INTEGER_CST)
4c9206f2 1986 || !is_constant)
fc08b993 1987 && gimple_get_lhs (stmt)
1988 && TREE_CODE (gimple_get_lhs (stmt)) == SSA_NAME)
1989 {
1990 tree lhs = gimple_get_lhs (stmt);
9c1be15e 1991 wide_int nonzero_bits = get_nonzero_bits (lhs);
1992 if (nonzero_bits != -1)
fc08b993 1993 {
1994 if (!is_constant)
1995 {
1996 val.lattice_val = CONSTANT;
1997 val.value = build_zero_cst (TREE_TYPE (lhs));
9a93e2f7 1998 val.mask = extend_mask (nonzero_bits, TYPE_SIGN (TREE_TYPE (lhs)));
fc08b993 1999 is_constant = true;
2000 }
2001 else
2002 {
e3d0f65c 2003 if (wi::bit_and_not (wi::to_wide (val.value), nonzero_bits) != 0)
aeb682a2 2004 val.value = wide_int_to_tree (TREE_TYPE (lhs),
e3d0f65c 2005 nonzero_bits
2006 & wi::to_wide (val.value));
aeb682a2 2007 if (nonzero_bits == 0)
2008 val.mask = 0;
fc08b993 2009 else
9a93e2f7 2010 val.mask = val.mask & extend_mask (nonzero_bits,
2011 TYPE_SIGN (TREE_TYPE (lhs)));
fc08b993 2012 }
2013 }
2014 }
2015
4c9206f2 2016 /* The statement produced a nonconstant value. */
b7e55469 2017 if (!is_constant)
4ee9c684 2018 {
fc6cc27b 2019 /* The statement produced a copy. */
2020 if (simplified && TREE_CODE (simplified) == SSA_NAME
2021 && !SSA_NAME_OCCURS_IN_ABNORMAL_PHI (simplified))
2022 {
2023 val.lattice_val = CONSTANT;
2024 val.value = simplified;
2025 val.mask = -1;
2026 }
2027 /* The statement is VARYING. */
2028 else
2029 {
2030 val.lattice_val = VARYING;
2031 val.value = NULL_TREE;
2032 val.mask = -1;
2033 }
4ee9c684 2034 }
41511585 2035
2036 return val;
4ee9c684 2037}
2038
42acab1c 2039typedef hash_table<nofree_ptr_hash<gimple> > gimple_htab;
2b15d2ba 2040
582a80ed 2041/* Given a BUILT_IN_STACK_SAVE value SAVED_VAL, insert a clobber of VAR before
2042 each matching BUILT_IN_STACK_RESTORE. Mark visited phis in VISITED. */
2043
2044static void
2b15d2ba 2045insert_clobber_before_stack_restore (tree saved_val, tree var,
c1f445d2 2046 gimple_htab **visited)
582a80ed 2047{
42acab1c 2048 gimple *stmt;
1a91d914 2049 gassign *clobber_stmt;
582a80ed 2050 tree clobber;
2051 imm_use_iterator iter;
2052 gimple_stmt_iterator i;
42acab1c 2053 gimple **slot;
582a80ed 2054
2055 FOR_EACH_IMM_USE_STMT (stmt, iter, saved_val)
2056 if (gimple_call_builtin_p (stmt, BUILT_IN_STACK_RESTORE))
2057 {
f1f41a6c 2058 clobber = build_constructor (TREE_TYPE (var),
2059 NULL);
582a80ed 2060 TREE_THIS_VOLATILE (clobber) = 1;
2061 clobber_stmt = gimple_build_assign (var, clobber);
2062
2063 i = gsi_for_stmt (stmt);
2064 gsi_insert_before (&i, clobber_stmt, GSI_SAME_STMT);
2065 }
2066 else if (gimple_code (stmt) == GIMPLE_PHI)
2067 {
c1f445d2 2068 if (!*visited)
2069 *visited = new gimple_htab (10);
582a80ed 2070
c1f445d2 2071 slot = (*visited)->find_slot (stmt, INSERT);
582a80ed 2072 if (*slot != NULL)
2073 continue;
2074
2075 *slot = stmt;
2076 insert_clobber_before_stack_restore (gimple_phi_result (stmt), var,
2077 visited);
2078 }
42eed683 2079 else if (gimple_assign_ssa_name_copy_p (stmt))
2080 insert_clobber_before_stack_restore (gimple_assign_lhs (stmt), var,
2081 visited);
582a80ed 2082 else
2083 gcc_assert (is_gimple_debug (stmt));
2084}
2085
2086/* Advance the iterator to the previous non-debug gimple statement in the same
2087 or dominating basic block. */
2088
2089static inline void
2090gsi_prev_dom_bb_nondebug (gimple_stmt_iterator *i)
2091{
2092 basic_block dom;
2093
2094 gsi_prev_nondebug (i);
2095 while (gsi_end_p (*i))
2096 {
2097 dom = get_immediate_dominator (CDI_DOMINATORS, i->bb);
34154e27 2098 if (dom == NULL || dom == ENTRY_BLOCK_PTR_FOR_FN (cfun))
582a80ed 2099 return;
2100
2101 *i = gsi_last_bb (dom);
2102 }
2103}
2104
2105/* Find a BUILT_IN_STACK_SAVE dominating gsi_stmt (I), and insert
1543f720 2106 a clobber of VAR before each matching BUILT_IN_STACK_RESTORE.
2107
2108 It is possible that BUILT_IN_STACK_SAVE cannot be find in a dominator when a
2109 previous pass (such as DOM) duplicated it along multiple paths to a BB. In
2110 that case the function gives up without inserting the clobbers. */
582a80ed 2111
2112static void
2113insert_clobbers_for_var (gimple_stmt_iterator i, tree var)
2114{
42acab1c 2115 gimple *stmt;
582a80ed 2116 tree saved_val;
c1f445d2 2117 gimple_htab *visited = NULL;
582a80ed 2118
1543f720 2119 for (; !gsi_end_p (i); gsi_prev_dom_bb_nondebug (&i))
582a80ed 2120 {
2121 stmt = gsi_stmt (i);
2122
2123 if (!gimple_call_builtin_p (stmt, BUILT_IN_STACK_SAVE))
2124 continue;
582a80ed 2125
2126 saved_val = gimple_call_lhs (stmt);
2127 if (saved_val == NULL_TREE)
2128 continue;
2129
2130 insert_clobber_before_stack_restore (saved_val, var, &visited);
2131 break;
2132 }
2133
c1f445d2 2134 delete visited;
582a80ed 2135}
2136
581bf1c2 2137/* Detects a __builtin_alloca_with_align with constant size argument. Declares
2138 fixed-size array and returns the address, if found, otherwise returns
2139 NULL_TREE. */
9a65cc0a 2140
2141static tree
42acab1c 2142fold_builtin_alloca_with_align (gimple *stmt)
9a65cc0a 2143{
2144 unsigned HOST_WIDE_INT size, threshold, n_elem;
2145 tree lhs, arg, block, var, elem_type, array_type;
9a65cc0a 2146
2147 /* Get lhs. */
2148 lhs = gimple_call_lhs (stmt);
2149 if (lhs == NULL_TREE)
2150 return NULL_TREE;
2151
2152 /* Detect constant argument. */
2153 arg = get_constant_value (gimple_call_arg (stmt, 0));
6e93d308 2154 if (arg == NULL_TREE
2155 || TREE_CODE (arg) != INTEGER_CST
e913b5cd 2156 || !tree_fits_uhwi_p (arg))
9a65cc0a 2157 return NULL_TREE;
6e93d308 2158
8c53c46c 2159 size = tree_to_uhwi (arg);
9a65cc0a 2160
581bf1c2 2161 /* Heuristic: don't fold large allocas. */
9a65cc0a 2162 threshold = (unsigned HOST_WIDE_INT)PARAM_VALUE (PARAM_LARGE_STACK_FRAME);
581bf1c2 2163 /* In case the alloca is located at function entry, it has the same lifetime
2164 as a declared array, so we allow a larger size. */
9a65cc0a 2165 block = gimple_block (stmt);
2166 if (!(cfun->after_inlining
14df71e4 2167 && block
9a65cc0a 2168 && TREE_CODE (BLOCK_SUPERCONTEXT (block)) == FUNCTION_DECL))
2169 threshold /= 10;
2170 if (size > threshold)
2171 return NULL_TREE;
2172
2173 /* Declare array. */
2174 elem_type = build_nonstandard_integer_type (BITS_PER_UNIT, 1);
2175 n_elem = size * 8 / BITS_PER_UNIT;
9a65cc0a 2176 array_type = build_array_type_nelts (elem_type, n_elem);
f9e245b2 2177 var = create_tmp_var (array_type);
5d4b30ea 2178 SET_DECL_ALIGN (var, TREE_INT_CST_LOW (gimple_call_arg (stmt, 1)));
3d4a0a4b 2179 {
2180 struct ptr_info_def *pi = SSA_NAME_PTR_INFO (lhs);
2181 if (pi != NULL && !pi->pt.anything)
2182 {
2183 bool singleton_p;
2184 unsigned uid;
5b48910f 2185 singleton_p = pt_solution_singleton_or_null_p (&pi->pt, &uid);
3d4a0a4b 2186 gcc_assert (singleton_p);
2187 SET_DECL_PT_UID (var, uid);
2188 }
2189 }
9a65cc0a 2190
2191 /* Fold alloca to the address of the array. */
2192 return fold_convert (TREE_TYPE (lhs), build_fold_addr_expr (var));
2193}
2194
6688f8ec 2195/* Fold the stmt at *GSI with CCP specific information that propagating
2196 and regular folding does not catch. */
2197
b08e7364 2198bool
2199ccp_folder::fold_stmt (gimple_stmt_iterator *gsi)
6688f8ec 2200{
42acab1c 2201 gimple *stmt = gsi_stmt (*gsi);
6688f8ec 2202
94144e68 2203 switch (gimple_code (stmt))
2204 {
2205 case GIMPLE_COND:
2206 {
1a91d914 2207 gcond *cond_stmt = as_a <gcond *> (stmt);
9908fe4d 2208 ccp_prop_value_t val;
94144e68 2209 /* Statement evaluation will handle type mismatches in constants
2210 more gracefully than the final propagation. This allows us to
2211 fold more conditionals here. */
2212 val = evaluate_stmt (stmt);
2213 if (val.lattice_val != CONSTANT
796b6678 2214 || val.mask != 0)
94144e68 2215 return false;
2216
b7e55469 2217 if (dump_file)
2218 {
2219 fprintf (dump_file, "Folding predicate ");
1ffa4346 2220 print_gimple_expr (dump_file, stmt, 0);
b7e55469 2221 fprintf (dump_file, " to ");
1ffa4346 2222 print_generic_expr (dump_file, val.value);
b7e55469 2223 fprintf (dump_file, "\n");
2224 }
2225
94144e68 2226 if (integer_zerop (val.value))
1a91d914 2227 gimple_cond_make_false (cond_stmt);
94144e68 2228 else
1a91d914 2229 gimple_cond_make_true (cond_stmt);
6688f8ec 2230
94144e68 2231 return true;
2232 }
6688f8ec 2233
94144e68 2234 case GIMPLE_CALL:
2235 {
2236 tree lhs = gimple_call_lhs (stmt);
3064bb7b 2237 int flags = gimple_call_flags (stmt);
15d138c9 2238 tree val;
94144e68 2239 tree argt;
2240 bool changed = false;
2241 unsigned i;
2242
2243 /* If the call was folded into a constant make sure it goes
2244 away even if we cannot propagate into all uses because of
2245 type issues. */
2246 if (lhs
2247 && TREE_CODE (lhs) == SSA_NAME
3064bb7b 2248 && (val = get_constant_value (lhs))
2249 /* Don't optimize away calls that have side-effects. */
2250 && (flags & (ECF_CONST|ECF_PURE)) != 0
2251 && (flags & ECF_LOOPING_CONST_OR_PURE) == 0)
94144e68 2252 {
15d138c9 2253 tree new_rhs = unshare_expr (val);
338cce8f 2254 bool res;
94144e68 2255 if (!useless_type_conversion_p (TREE_TYPE (lhs),
2256 TREE_TYPE (new_rhs)))
2257 new_rhs = fold_convert (TREE_TYPE (lhs), new_rhs);
338cce8f 2258 res = update_call_from_tree (gsi, new_rhs);
2259 gcc_assert (res);
94144e68 2260 return true;
2261 }
2262
fb049fba 2263 /* Internal calls provide no argument types, so the extra laxity
2264 for normal calls does not apply. */
2265 if (gimple_call_internal_p (stmt))
2266 return false;
2267
581bf1c2 2268 /* The heuristic of fold_builtin_alloca_with_align differs before and
2269 after inlining, so we don't require the arg to be changed into a
2270 constant for folding, but just to be constant. */
2b34677f 2271 if (gimple_call_builtin_p (stmt, BUILT_IN_ALLOCA_WITH_ALIGN)
2272 || gimple_call_builtin_p (stmt, BUILT_IN_ALLOCA_WITH_ALIGN_AND_MAX))
9a65cc0a 2273 {
581bf1c2 2274 tree new_rhs = fold_builtin_alloca_with_align (stmt);
6e93d308 2275 if (new_rhs)
2276 {
2277 bool res = update_call_from_tree (gsi, new_rhs);
582a80ed 2278 tree var = TREE_OPERAND (TREE_OPERAND (new_rhs, 0),0);
6e93d308 2279 gcc_assert (res);
582a80ed 2280 insert_clobbers_for_var (*gsi, var);
6e93d308 2281 return true;
2282 }
9a65cc0a 2283 }
2284
94144e68 2285 /* Propagate into the call arguments. Compared to replace_uses_in
2286 this can use the argument slot types for type verification
2287 instead of the current argument type. We also can safely
2288 drop qualifiers here as we are dealing with constants anyway. */
2de00a2d 2289 argt = TYPE_ARG_TYPES (gimple_call_fntype (stmt));
94144e68 2290 for (i = 0; i < gimple_call_num_args (stmt) && argt;
2291 ++i, argt = TREE_CHAIN (argt))
2292 {
2293 tree arg = gimple_call_arg (stmt, i);
2294 if (TREE_CODE (arg) == SSA_NAME
15d138c9 2295 && (val = get_constant_value (arg))
94144e68 2296 && useless_type_conversion_p
2297 (TYPE_MAIN_VARIANT (TREE_VALUE (argt)),
15d138c9 2298 TYPE_MAIN_VARIANT (TREE_TYPE (val))))
94144e68 2299 {
15d138c9 2300 gimple_call_set_arg (stmt, i, unshare_expr (val));
94144e68 2301 changed = true;
2302 }
2303 }
e16f4c39 2304
94144e68 2305 return changed;
2306 }
6688f8ec 2307
6872bf3c 2308 case GIMPLE_ASSIGN:
2309 {
2310 tree lhs = gimple_assign_lhs (stmt);
15d138c9 2311 tree val;
6872bf3c 2312
2313 /* If we have a load that turned out to be constant replace it
2314 as we cannot propagate into all uses in all cases. */
2315 if (gimple_assign_single_p (stmt)
2316 && TREE_CODE (lhs) == SSA_NAME
15d138c9 2317 && (val = get_constant_value (lhs)))
6872bf3c 2318 {
15d138c9 2319 tree rhs = unshare_expr (val);
6872bf3c 2320 if (!useless_type_conversion_p (TREE_TYPE (lhs), TREE_TYPE (rhs)))
182cf5a9 2321 rhs = fold_build1 (VIEW_CONVERT_EXPR, TREE_TYPE (lhs), rhs);
6872bf3c 2322 gimple_assign_set_rhs_from_tree (gsi, rhs);
2323 return true;
2324 }
2325
2326 return false;
2327 }
2328
94144e68 2329 default:
2330 return false;
2331 }
6688f8ec 2332}
2333
41511585 2334/* Visit the assignment statement STMT. Set the value of its LHS to the
88dbf20f 2335 value computed by the RHS and store LHS in *OUTPUT_P. If STMT
2336 creates virtual definitions, set the value of each new name to that
75a70cf9 2337 of the RHS (if we can derive a constant out of the RHS).
2338 Value-returning call statements also perform an assignment, and
2339 are handled here. */
4ee9c684 2340
41511585 2341static enum ssa_prop_result
42acab1c 2342visit_assignment (gimple *stmt, tree *output_p)
4ee9c684 2343{
9908fe4d 2344 ccp_prop_value_t val;
fc6cc27b 2345 enum ssa_prop_result retval = SSA_PROP_NOT_INTERESTING;
4ee9c684 2346
75a70cf9 2347 tree lhs = gimple_get_lhs (stmt);
88dbf20f 2348 if (TREE_CODE (lhs) == SSA_NAME)
4ee9c684 2349 {
fc6cc27b 2350 /* Evaluate the statement, which could be
2351 either a GIMPLE_ASSIGN or a GIMPLE_CALL. */
2352 val = evaluate_stmt (stmt);
2353
88dbf20f 2354 /* If STMT is an assignment to an SSA_NAME, we only have one
2355 value to set. */
27de3d43 2356 if (set_lattice_value (lhs, &val))
88dbf20f 2357 {
2358 *output_p = lhs;
2359 if (val.lattice_val == VARYING)
2360 retval = SSA_PROP_VARYING;
2361 else
2362 retval = SSA_PROP_INTERESTING;
2363 }
4ee9c684 2364 }
88dbf20f 2365
2366 return retval;
4ee9c684 2367}
2368
4ee9c684 2369
41511585 2370/* Visit the conditional statement STMT. Return SSA_PROP_INTERESTING
2371 if it can determine which edge will be taken. Otherwise, return
2372 SSA_PROP_VARYING. */
2373
2374static enum ssa_prop_result
42acab1c 2375visit_cond_stmt (gimple *stmt, edge *taken_edge_p)
4ee9c684 2376{
9908fe4d 2377 ccp_prop_value_t val;
41511585 2378 basic_block block;
2379
75a70cf9 2380 block = gimple_bb (stmt);
41511585 2381 val = evaluate_stmt (stmt);
b7e55469 2382 if (val.lattice_val != CONSTANT
796b6678 2383 || val.mask != 0)
b7e55469 2384 return SSA_PROP_VARYING;
41511585 2385
2386 /* Find which edge out of the conditional block will be taken and add it
2387 to the worklist. If no single edge can be determined statically,
2388 return SSA_PROP_VARYING to feed all the outgoing edges to the
2389 propagation engine. */
b7e55469 2390 *taken_edge_p = find_taken_edge (block, val.value);
41511585 2391 if (*taken_edge_p)
2392 return SSA_PROP_INTERESTING;
2393 else
2394 return SSA_PROP_VARYING;
4ee9c684 2395}
2396
4ee9c684 2397
41511585 2398/* Evaluate statement STMT. If the statement produces an output value and
2399 its evaluation changes the lattice value of its output, return
2400 SSA_PROP_INTERESTING and set *OUTPUT_P to the SSA_NAME holding the
2401 output value.
48e1416a 2402
41511585 2403 If STMT is a conditional branch and we can determine its truth
2404 value, set *TAKEN_EDGE_P accordingly. If STMT produces a varying
2405 value, return SSA_PROP_VARYING. */
4ee9c684 2406
6bd87d95 2407enum ssa_prop_result
2408ccp_propagate::visit_stmt (gimple *stmt, edge *taken_edge_p, tree *output_p)
41511585 2409{
41511585 2410 tree def;
2411 ssa_op_iter iter;
4ee9c684 2412
41511585 2413 if (dump_file && (dump_flags & TDF_DETAILS))
4ee9c684 2414 {
88dbf20f 2415 fprintf (dump_file, "\nVisiting statement:\n");
75a70cf9 2416 print_gimple_stmt (dump_file, stmt, 0, dump_flags);
4ee9c684 2417 }
4ee9c684 2418
75a70cf9 2419 switch (gimple_code (stmt))
4ee9c684 2420 {
75a70cf9 2421 case GIMPLE_ASSIGN:
2422 /* If the statement is an assignment that produces a single
2423 output value, evaluate its RHS to see if the lattice value of
2424 its output has changed. */
2425 return visit_assignment (stmt, output_p);
2426
2427 case GIMPLE_CALL:
2428 /* A value-returning call also performs an assignment. */
2429 if (gimple_call_lhs (stmt) != NULL_TREE)
2430 return visit_assignment (stmt, output_p);
2431 break;
2432
2433 case GIMPLE_COND:
2434 case GIMPLE_SWITCH:
2435 /* If STMT is a conditional branch, see if we can determine
2436 which branch will be taken. */
2437 /* FIXME. It appears that we should be able to optimize
2438 computed GOTOs here as well. */
2439 return visit_cond_stmt (stmt, taken_edge_p);
2440
2441 default:
2442 break;
4ee9c684 2443 }
4ee9c684 2444
41511585 2445 /* Any other kind of statement is not interesting for constant
2446 propagation and, therefore, not worth simulating. */
41511585 2447 if (dump_file && (dump_flags & TDF_DETAILS))
2448 fprintf (dump_file, "No interesting values produced. Marked VARYING.\n");
4ee9c684 2449
41511585 2450 /* Definitions made by statements other than assignments to
2451 SSA_NAMEs represent unknown modifications to their outputs.
2452 Mark them VARYING. */
88dbf20f 2453 FOR_EACH_SSA_TREE_OPERAND (def, stmt, iter, SSA_OP_ALL_DEFS)
27de3d43 2454 set_value_varying (def);
4ee9c684 2455
41511585 2456 return SSA_PROP_VARYING;
2457}
4ee9c684 2458
4ee9c684 2459
d0322b7d 2460/* Main entry point for SSA Conditional Constant Propagation. If NONZERO_P,
2461 record nonzero bits. */
41511585 2462
33a34f1e 2463static unsigned int
d0322b7d 2464do_ssa_ccp (bool nonzero_p)
41511585 2465{
582a80ed 2466 unsigned int todo = 0;
2467 calculate_dominance_info (CDI_DOMINATORS);
e2588447 2468
41511585 2469 ccp_initialize ();
6bd87d95 2470 class ccp_propagate ccp_propagate;
2471 ccp_propagate.ssa_propagate ();
a54071b2 2472 if (ccp_finalize (nonzero_p || flag_ipa_bit_cp))
e2588447 2473 {
2474 todo = (TODO_cleanup_cfg | TODO_update_ssa);
2475
2476 /* ccp_finalize does not preserve loop-closed ssa. */
2477 loops_state_clear (LOOP_CLOSED_SSA);
2478 }
2479
582a80ed 2480 free_dominance_info (CDI_DOMINATORS);
2481 return todo;
4ee9c684 2482}
2483
5664499b 2484
cbe8bda8 2485namespace {
2486
2487const pass_data pass_data_ccp =
41511585 2488{
cbe8bda8 2489 GIMPLE_PASS, /* type */
2490 "ccp", /* name */
2491 OPTGROUP_NONE, /* optinfo_flags */
cbe8bda8 2492 TV_TREE_CCP, /* tv_id */
2493 ( PROP_cfg | PROP_ssa ), /* properties_required */
2494 0, /* properties_provided */
2495 0, /* properties_destroyed */
2496 0, /* todo_flags_start */
8b88439e 2497 TODO_update_address_taken, /* todo_flags_finish */
41511585 2498};
4ee9c684 2499
cbe8bda8 2500class pass_ccp : public gimple_opt_pass
2501{
2502public:
9af5ce0c 2503 pass_ccp (gcc::context *ctxt)
d0322b7d 2504 : gimple_opt_pass (pass_data_ccp, ctxt), nonzero_p (false)
cbe8bda8 2505 {}
2506
2507 /* opt_pass methods: */
ae84f584 2508 opt_pass * clone () { return new pass_ccp (m_ctxt); }
d0322b7d 2509 void set_pass_param (unsigned int n, bool param)
2510 {
2511 gcc_assert (n == 0);
2512 nonzero_p = param;
2513 }
31315c24 2514 virtual bool gate (function *) { return flag_tree_ccp != 0; }
d0322b7d 2515 virtual unsigned int execute (function *) { return do_ssa_ccp (nonzero_p); }
cbe8bda8 2516
d0322b7d 2517 private:
2518 /* Determines whether the pass instance records nonzero bits. */
2519 bool nonzero_p;
cbe8bda8 2520}; // class pass_ccp
2521
2522} // anon namespace
2523
2524gimple_opt_pass *
2525make_pass_ccp (gcc::context *ctxt)
2526{
2527 return new pass_ccp (ctxt);
2528}
2529
4ee9c684 2530
75a70cf9 2531
bdd0e199 2532/* Try to optimize out __builtin_stack_restore. Optimize it out
2533 if there is another __builtin_stack_restore in the same basic
2534 block and no calls or ASM_EXPRs are in between, or if this block's
2535 only outgoing edge is to EXIT_BLOCK and there are no calls or
2536 ASM_EXPRs after this __builtin_stack_restore. */
2537
2538static tree
75a70cf9 2539optimize_stack_restore (gimple_stmt_iterator i)
bdd0e199 2540{
6ea999da 2541 tree callee;
42acab1c 2542 gimple *stmt;
75a70cf9 2543
2544 basic_block bb = gsi_bb (i);
42acab1c 2545 gimple *call = gsi_stmt (i);
bdd0e199 2546
75a70cf9 2547 if (gimple_code (call) != GIMPLE_CALL
2548 || gimple_call_num_args (call) != 1
2549 || TREE_CODE (gimple_call_arg (call, 0)) != SSA_NAME
2550 || !POINTER_TYPE_P (TREE_TYPE (gimple_call_arg (call, 0))))
bdd0e199 2551 return NULL_TREE;
2552
75a70cf9 2553 for (gsi_next (&i); !gsi_end_p (i); gsi_next (&i))
bdd0e199 2554 {
75a70cf9 2555 stmt = gsi_stmt (i);
2556 if (gimple_code (stmt) == GIMPLE_ASM)
bdd0e199 2557 return NULL_TREE;
75a70cf9 2558 if (gimple_code (stmt) != GIMPLE_CALL)
bdd0e199 2559 continue;
2560
75a70cf9 2561 callee = gimple_call_fndecl (stmt);
c40a6f90 2562 if (!callee
a0e9bfbb 2563 || !fndecl_built_in_p (callee, BUILT_IN_NORMAL)
c40a6f90 2564 /* All regular builtins are ok, just obviously not alloca. */
2b34677f 2565 || ALLOCA_FUNCTION_CODE_P (DECL_FUNCTION_CODE (callee)))
bdd0e199 2566 return NULL_TREE;
2567
2568 if (DECL_FUNCTION_CODE (callee) == BUILT_IN_STACK_RESTORE)
6ea999da 2569 goto second_stack_restore;
bdd0e199 2570 }
2571
6ea999da 2572 if (!gsi_end_p (i))
bdd0e199 2573 return NULL_TREE;
2574
6ea999da 2575 /* Allow one successor of the exit block, or zero successors. */
2576 switch (EDGE_COUNT (bb->succs))
2577 {
2578 case 0:
2579 break;
2580 case 1:
34154e27 2581 if (single_succ_edge (bb)->dest != EXIT_BLOCK_PTR_FOR_FN (cfun))
6ea999da 2582 return NULL_TREE;
2583 break;
2584 default:
2585 return NULL_TREE;
2586 }
2587 second_stack_restore:
bdd0e199 2588
6ea999da 2589 /* If there's exactly one use, then zap the call to __builtin_stack_save.
2590 If there are multiple uses, then the last one should remove the call.
2591 In any case, whether the call to __builtin_stack_save can be removed
2592 or not is irrelevant to removing the call to __builtin_stack_restore. */
2593 if (has_single_use (gimple_call_arg (call, 0)))
2594 {
42acab1c 2595 gimple *stack_save = SSA_NAME_DEF_STMT (gimple_call_arg (call, 0));
6ea999da 2596 if (is_gimple_call (stack_save))
2597 {
2598 callee = gimple_call_fndecl (stack_save);
a0e9bfbb 2599 if (callee && fndecl_built_in_p (callee, BUILT_IN_STACK_SAVE))
6ea999da 2600 {
2601 gimple_stmt_iterator stack_save_gsi;
2602 tree rhs;
bdd0e199 2603
6ea999da 2604 stack_save_gsi = gsi_for_stmt (stack_save);
2605 rhs = build_int_cst (TREE_TYPE (gimple_call_arg (call, 0)), 0);
2606 update_call_from_tree (&stack_save_gsi, rhs);
2607 }
2608 }
2609 }
bdd0e199 2610
75a70cf9 2611 /* No effect, so the statement will be deleted. */
bdd0e199 2612 return integer_zero_node;
2613}
75a70cf9 2614
8a58ed0a 2615/* If va_list type is a simple pointer and nothing special is needed,
2616 optimize __builtin_va_start (&ap, 0) into ap = __builtin_next_arg (0),
2617 __builtin_va_end (&ap) out as NOP and __builtin_va_copy into a simple
2618 pointer assignment. */
2619
2620static tree
42acab1c 2621optimize_stdarg_builtin (gimple *call)
8a58ed0a 2622{
5f57a8b1 2623 tree callee, lhs, rhs, cfun_va_list;
8a58ed0a 2624 bool va_list_simple_ptr;
389dd41b 2625 location_t loc = gimple_location (call);
8a58ed0a 2626
75a70cf9 2627 if (gimple_code (call) != GIMPLE_CALL)
8a58ed0a 2628 return NULL_TREE;
2629
75a70cf9 2630 callee = gimple_call_fndecl (call);
5f57a8b1 2631
2632 cfun_va_list = targetm.fn_abi_va_list (callee);
2633 va_list_simple_ptr = POINTER_TYPE_P (cfun_va_list)
2634 && (TREE_TYPE (cfun_va_list) == void_type_node
2635 || TREE_TYPE (cfun_va_list) == char_type_node);
2636
8a58ed0a 2637 switch (DECL_FUNCTION_CODE (callee))
2638 {
2639 case BUILT_IN_VA_START:
2640 if (!va_list_simple_ptr
2641 || targetm.expand_builtin_va_start != NULL
e7ed5dd7 2642 || !builtin_decl_explicit_p (BUILT_IN_NEXT_ARG))
8a58ed0a 2643 return NULL_TREE;
2644
75a70cf9 2645 if (gimple_call_num_args (call) != 2)
8a58ed0a 2646 return NULL_TREE;
2647
75a70cf9 2648 lhs = gimple_call_arg (call, 0);
8a58ed0a 2649 if (!POINTER_TYPE_P (TREE_TYPE (lhs))
2650 || TYPE_MAIN_VARIANT (TREE_TYPE (TREE_TYPE (lhs)))
5f57a8b1 2651 != TYPE_MAIN_VARIANT (cfun_va_list))
8a58ed0a 2652 return NULL_TREE;
48e1416a 2653
389dd41b 2654 lhs = build_fold_indirect_ref_loc (loc, lhs);
b9a16870 2655 rhs = build_call_expr_loc (loc, builtin_decl_explicit (BUILT_IN_NEXT_ARG),
75a70cf9 2656 1, integer_zero_node);
389dd41b 2657 rhs = fold_convert_loc (loc, TREE_TYPE (lhs), rhs);
8a58ed0a 2658 return build2 (MODIFY_EXPR, TREE_TYPE (lhs), lhs, rhs);
2659
2660 case BUILT_IN_VA_COPY:
2661 if (!va_list_simple_ptr)
2662 return NULL_TREE;
2663
75a70cf9 2664 if (gimple_call_num_args (call) != 2)
8a58ed0a 2665 return NULL_TREE;
2666
75a70cf9 2667 lhs = gimple_call_arg (call, 0);
8a58ed0a 2668 if (!POINTER_TYPE_P (TREE_TYPE (lhs))
2669 || TYPE_MAIN_VARIANT (TREE_TYPE (TREE_TYPE (lhs)))
5f57a8b1 2670 != TYPE_MAIN_VARIANT (cfun_va_list))
8a58ed0a 2671 return NULL_TREE;
2672
389dd41b 2673 lhs = build_fold_indirect_ref_loc (loc, lhs);
75a70cf9 2674 rhs = gimple_call_arg (call, 1);
8a58ed0a 2675 if (TYPE_MAIN_VARIANT (TREE_TYPE (rhs))
5f57a8b1 2676 != TYPE_MAIN_VARIANT (cfun_va_list))
8a58ed0a 2677 return NULL_TREE;
2678
389dd41b 2679 rhs = fold_convert_loc (loc, TREE_TYPE (lhs), rhs);
8a58ed0a 2680 return build2 (MODIFY_EXPR, TREE_TYPE (lhs), lhs, rhs);
2681
2682 case BUILT_IN_VA_END:
75a70cf9 2683 /* No effect, so the statement will be deleted. */
8a58ed0a 2684 return integer_zero_node;
2685
2686 default:
2687 gcc_unreachable ();
2688 }
2689}
75a70cf9 2690
f87df69a 2691/* Attemp to make the block of __builtin_unreachable I unreachable by changing
2692 the incoming jumps. Return true if at least one jump was changed. */
2693
2694static bool
2695optimize_unreachable (gimple_stmt_iterator i)
2696{
2697 basic_block bb = gsi_bb (i);
2698 gimple_stmt_iterator gsi;
42acab1c 2699 gimple *stmt;
f87df69a 2700 edge_iterator ei;
2701 edge e;
2702 bool ret;
2703
f6b540af 2704 if (flag_sanitize & SANITIZE_UNREACHABLE)
2705 return false;
2706
f87df69a 2707 for (gsi = gsi_start_bb (bb); !gsi_end_p (gsi); gsi_next (&gsi))
2708 {
2709 stmt = gsi_stmt (gsi);
2710
2711 if (is_gimple_debug (stmt))
2712 continue;
2713
1a91d914 2714 if (glabel *label_stmt = dyn_cast <glabel *> (stmt))
f87df69a 2715 {
2716 /* Verify we do not need to preserve the label. */
1a91d914 2717 if (FORCED_LABEL (gimple_label_label (label_stmt)))
f87df69a 2718 return false;
2719
2720 continue;
2721 }
2722
2723 /* Only handle the case that __builtin_unreachable is the first statement
2724 in the block. We rely on DCE to remove stmts without side-effects
2725 before __builtin_unreachable. */
2726 if (gsi_stmt (gsi) != gsi_stmt (i))
2727 return false;
2728 }
2729
2730 ret = false;
2731 FOR_EACH_EDGE (e, ei, bb->preds)
2732 {
2733 gsi = gsi_last_bb (e->src);
522f73a1 2734 if (gsi_end_p (gsi))
2735 continue;
f87df69a 2736
522f73a1 2737 stmt = gsi_stmt (gsi);
1a91d914 2738 if (gcond *cond_stmt = dyn_cast <gcond *> (stmt))
f87df69a 2739 {
2740 if (e->flags & EDGE_TRUE_VALUE)
1a91d914 2741 gimple_cond_make_false (cond_stmt);
f87df69a 2742 else if (e->flags & EDGE_FALSE_VALUE)
1a91d914 2743 gimple_cond_make_true (cond_stmt);
f87df69a 2744 else
2745 gcc_unreachable ();
1a91d914 2746 update_stmt (cond_stmt);
f87df69a 2747 }
2748 else
2749 {
34f3dfc2 2750 /* Todo: handle other cases. Note that unreachable switch case
2751 statements have already been removed. */
f87df69a 2752 continue;
2753 }
2754
2755 ret = true;
2756 }
2757
2758 return ret;
2759}
2760
9c1a31e4 2761/* Optimize
2762 mask_2 = 1 << cnt_1;
2763 _4 = __atomic_fetch_or_* (ptr_6, mask_2, _3);
2764 _5 = _4 & mask_2;
2765 to
2766 _4 = ATOMIC_BIT_TEST_AND_SET (ptr_6, cnt_1, 0, _3);
2767 _5 = _4;
2768 If _5 is only used in _5 != 0 or _5 == 0 comparisons, 1
2769 is passed instead of 0, and the builtin just returns a zero
2770 or 1 value instead of the actual bit.
2771 Similarly for __sync_fetch_and_or_* (without the ", _3" part
2772 in there), and/or if mask_2 is a power of 2 constant.
2773 Similarly for xor instead of or, use ATOMIC_BIT_TEST_AND_COMPLEMENT
2774 in that case. And similarly for and instead of or, except that
2775 the second argument to the builtin needs to be one's complement
2776 of the mask instead of mask. */
2777
2778static void
2779optimize_atomic_bit_test_and (gimple_stmt_iterator *gsip,
2780 enum internal_fn fn, bool has_model_arg,
2781 bool after)
2782{
2783 gimple *call = gsi_stmt (*gsip);
2784 tree lhs = gimple_call_lhs (call);
2785 use_operand_p use_p;
2786 gimple *use_stmt;
2787 tree mask, bit;
2788 optab optab;
2789
2790 if (!flag_inline_atomics
2791 || optimize_debug
2792 || !gimple_call_builtin_p (call, BUILT_IN_NORMAL)
2793 || !lhs
2794 || SSA_NAME_OCCURS_IN_ABNORMAL_PHI (lhs)
2795 || !single_imm_use (lhs, &use_p, &use_stmt)
2796 || !is_gimple_assign (use_stmt)
2797 || gimple_assign_rhs_code (use_stmt) != BIT_AND_EXPR
2798 || !gimple_vdef (call))
2799 return;
2800
2801 switch (fn)
2802 {
2803 case IFN_ATOMIC_BIT_TEST_AND_SET:
2804 optab = atomic_bit_test_and_set_optab;
2805 break;
2806 case IFN_ATOMIC_BIT_TEST_AND_COMPLEMENT:
2807 optab = atomic_bit_test_and_complement_optab;
2808 break;
2809 case IFN_ATOMIC_BIT_TEST_AND_RESET:
2810 optab = atomic_bit_test_and_reset_optab;
2811 break;
2812 default:
2813 return;
2814 }
2815
2816 if (optab_handler (optab, TYPE_MODE (TREE_TYPE (lhs))) == CODE_FOR_nothing)
2817 return;
2818
2819 mask = gimple_call_arg (call, 1);
2820 tree use_lhs = gimple_assign_lhs (use_stmt);
2821 if (!use_lhs)
2822 return;
2823
2824 if (TREE_CODE (mask) == INTEGER_CST)
2825 {
2826 if (fn == IFN_ATOMIC_BIT_TEST_AND_RESET)
2827 mask = const_unop (BIT_NOT_EXPR, TREE_TYPE (mask), mask);
2828 mask = fold_convert (TREE_TYPE (lhs), mask);
2829 int ibit = tree_log2 (mask);
2830 if (ibit < 0)
2831 return;
2832 bit = build_int_cst (TREE_TYPE (lhs), ibit);
2833 }
2834 else if (TREE_CODE (mask) == SSA_NAME)
2835 {
2836 gimple *g = SSA_NAME_DEF_STMT (mask);
2837 if (fn == IFN_ATOMIC_BIT_TEST_AND_RESET)
2838 {
2839 if (!is_gimple_assign (g)
2840 || gimple_assign_rhs_code (g) != BIT_NOT_EXPR)
2841 return;
2842 mask = gimple_assign_rhs1 (g);
2843 if (TREE_CODE (mask) != SSA_NAME)
2844 return;
2845 g = SSA_NAME_DEF_STMT (mask);
2846 }
2847 if (!is_gimple_assign (g)
2848 || gimple_assign_rhs_code (g) != LSHIFT_EXPR
2849 || !integer_onep (gimple_assign_rhs1 (g)))
2850 return;
2851 bit = gimple_assign_rhs2 (g);
2852 }
2853 else
2854 return;
2855
2856 if (gimple_assign_rhs1 (use_stmt) == lhs)
2857 {
2858 if (!operand_equal_p (gimple_assign_rhs2 (use_stmt), mask, 0))
2859 return;
2860 }
2861 else if (gimple_assign_rhs2 (use_stmt) != lhs
2862 || !operand_equal_p (gimple_assign_rhs1 (use_stmt), mask, 0))
2863 return;
2864
2865 bool use_bool = true;
2866 bool has_debug_uses = false;
2867 imm_use_iterator iter;
2868 gimple *g;
2869
2870 if (SSA_NAME_OCCURS_IN_ABNORMAL_PHI (use_lhs))
2871 use_bool = false;
2872 FOR_EACH_IMM_USE_STMT (g, iter, use_lhs)
2873 {
2874 enum tree_code code = ERROR_MARK;
7b645785 2875 tree op0 = NULL_TREE, op1 = NULL_TREE;
9c1a31e4 2876 if (is_gimple_debug (g))
2877 {
2878 has_debug_uses = true;
2879 continue;
2880 }
2881 else if (is_gimple_assign (g))
2882 switch (gimple_assign_rhs_code (g))
2883 {
2884 case COND_EXPR:
2885 op1 = gimple_assign_rhs1 (g);
2886 code = TREE_CODE (op1);
2887 op0 = TREE_OPERAND (op1, 0);
2888 op1 = TREE_OPERAND (op1, 1);
2889 break;
2890 case EQ_EXPR:
2891 case NE_EXPR:
2892 code = gimple_assign_rhs_code (g);
2893 op0 = gimple_assign_rhs1 (g);
2894 op1 = gimple_assign_rhs2 (g);
2895 break;
2896 default:
2897 break;
2898 }
2899 else if (gimple_code (g) == GIMPLE_COND)
2900 {
2901 code = gimple_cond_code (g);
2902 op0 = gimple_cond_lhs (g);
2903 op1 = gimple_cond_rhs (g);
2904 }
2905
2906 if ((code == EQ_EXPR || code == NE_EXPR)
2907 && op0 == use_lhs
2908 && integer_zerop (op1))
2909 {
2910 use_operand_p use_p;
2911 int n = 0;
2912 FOR_EACH_IMM_USE_ON_STMT (use_p, iter)
2913 n++;
2914 if (n == 1)
2915 continue;
2916 }
2917
2918 use_bool = false;
2919 BREAK_FROM_IMM_USE_STMT (iter);
2920 }
2921
2922 tree new_lhs = make_ssa_name (TREE_TYPE (lhs));
2923 tree flag = build_int_cst (TREE_TYPE (lhs), use_bool);
2924 if (has_model_arg)
2925 g = gimple_build_call_internal (fn, 4, gimple_call_arg (call, 0),
2926 bit, flag, gimple_call_arg (call, 2));
2927 else
2928 g = gimple_build_call_internal (fn, 3, gimple_call_arg (call, 0),
2929 bit, flag);
2930 gimple_call_set_lhs (g, new_lhs);
2931 gimple_set_location (g, gimple_location (call));
2932 gimple_set_vuse (g, gimple_vuse (call));
2933 gimple_set_vdef (g, gimple_vdef (call));
aac19106 2934 bool throws = stmt_can_throw_internal (cfun, call);
c35e53b1 2935 gimple_call_set_nothrow (as_a <gcall *> (g),
2936 gimple_call_nothrow_p (as_a <gcall *> (call)));
9c1a31e4 2937 SSA_NAME_DEF_STMT (gimple_vdef (call)) = g;
2938 gimple_stmt_iterator gsi = *gsip;
2939 gsi_insert_after (&gsi, g, GSI_NEW_STMT);
c35e53b1 2940 edge e = NULL;
2941 if (throws)
2942 {
2943 maybe_clean_or_replace_eh_stmt (call, g);
2944 if (after || (use_bool && has_debug_uses))
2945 e = find_fallthru_edge (gsi_bb (gsi)->succs);
2946 }
9c1a31e4 2947 if (after)
2948 {
2949 /* The internal function returns the value of the specified bit
2950 before the atomic operation. If we are interested in the value
2951 of the specified bit after the atomic operation (makes only sense
2952 for xor, otherwise the bit content is compile time known),
2953 we need to invert the bit. */
2954 g = gimple_build_assign (make_ssa_name (TREE_TYPE (lhs)),
2955 BIT_XOR_EXPR, new_lhs,
2956 use_bool ? build_int_cst (TREE_TYPE (lhs), 1)
2957 : mask);
2958 new_lhs = gimple_assign_lhs (g);
c35e53b1 2959 if (throws)
2960 {
2961 gsi_insert_on_edge_immediate (e, g);
2962 gsi = gsi_for_stmt (g);
2963 }
2964 else
2965 gsi_insert_after (&gsi, g, GSI_NEW_STMT);
9c1a31e4 2966 }
2967 if (use_bool && has_debug_uses)
2968 {
c35e53b1 2969 tree temp = NULL_TREE;
2970 if (!throws || after || single_pred_p (e->dest))
2971 {
2972 temp = make_node (DEBUG_EXPR_DECL);
2973 DECL_ARTIFICIAL (temp) = 1;
2974 TREE_TYPE (temp) = TREE_TYPE (lhs);
2975 SET_DECL_MODE (temp, TYPE_MODE (TREE_TYPE (lhs)));
2976 tree t = build2 (LSHIFT_EXPR, TREE_TYPE (lhs), new_lhs, bit);
2977 g = gimple_build_debug_bind (temp, t, g);
2978 if (throws && !after)
2979 {
2980 gsi = gsi_after_labels (e->dest);
2981 gsi_insert_before (&gsi, g, GSI_SAME_STMT);
2982 }
2983 else
2984 gsi_insert_after (&gsi, g, GSI_NEW_STMT);
2985 }
9c1a31e4 2986 FOR_EACH_IMM_USE_STMT (g, iter, use_lhs)
2987 if (is_gimple_debug (g))
2988 {
2989 use_operand_p use_p;
c35e53b1 2990 if (temp == NULL_TREE)
2991 gimple_debug_bind_reset_value (g);
2992 else
2993 FOR_EACH_IMM_USE_ON_STMT (use_p, iter)
2994 SET_USE (use_p, temp);
9c1a31e4 2995 update_stmt (g);
2996 }
2997 }
2998 SSA_NAME_OCCURS_IN_ABNORMAL_PHI (new_lhs)
2999 = SSA_NAME_OCCURS_IN_ABNORMAL_PHI (use_lhs);
3000 replace_uses_by (use_lhs, new_lhs);
3001 gsi = gsi_for_stmt (use_stmt);
3002 gsi_remove (&gsi, true);
3003 release_defs (use_stmt);
3004 gsi_remove (gsip, true);
3005 release_ssa_name (lhs);
3006}
3007
82193434 3008/* Optimize
3009 a = {};
3010 b = a;
3011 into
3012 a = {};
3013 b = {};
3014 Similarly for memset (&a, ..., sizeof (a)); instead of a = {};
3015 and/or memcpy (&b, &a, sizeof (a)); instead of b = a; */
3016
3017static void
3018optimize_memcpy (gimple_stmt_iterator *gsip, tree dest, tree src, tree len)
3019{
3020 gimple *stmt = gsi_stmt (*gsip);
3021 if (gimple_has_volatile_ops (stmt))
3022 return;
3023
3024 tree vuse = gimple_vuse (stmt);
3025 if (vuse == NULL)
3026 return;
3027
3028 gimple *defstmt = SSA_NAME_DEF_STMT (vuse);
3029 tree src2 = NULL_TREE, len2 = NULL_TREE;
773078cb 3030 poly_int64 offset, offset2;
82193434 3031 tree val = integer_zero_node;
3032 if (gimple_store_p (defstmt)
3033 && gimple_assign_single_p (defstmt)
3034 && TREE_CODE (gimple_assign_rhs1 (defstmt)) == CONSTRUCTOR
3035 && !gimple_clobber_p (defstmt))
3036 src2 = gimple_assign_lhs (defstmt);
3037 else if (gimple_call_builtin_p (defstmt, BUILT_IN_MEMSET)
3038 && TREE_CODE (gimple_call_arg (defstmt, 0)) == ADDR_EXPR
3039 && TREE_CODE (gimple_call_arg (defstmt, 1)) == INTEGER_CST)
3040 {
3041 src2 = TREE_OPERAND (gimple_call_arg (defstmt, 0), 0);
3042 len2 = gimple_call_arg (defstmt, 2);
3043 val = gimple_call_arg (defstmt, 1);
3044 /* For non-0 val, we'd have to transform stmt from assignment
3045 into memset (only if dest is addressable). */
3046 if (!integer_zerop (val) && is_gimple_assign (stmt))
3047 src2 = NULL_TREE;
3048 }
3049
3050 if (src2 == NULL_TREE)
3051 return;
3052
3053 if (len == NULL_TREE)
3054 len = (TREE_CODE (src) == COMPONENT_REF
3055 ? DECL_SIZE_UNIT (TREE_OPERAND (src, 1))
3056 : TYPE_SIZE_UNIT (TREE_TYPE (src)));
3057 if (len2 == NULL_TREE)
3058 len2 = (TREE_CODE (src2) == COMPONENT_REF
3059 ? DECL_SIZE_UNIT (TREE_OPERAND (src2, 1))
3060 : TYPE_SIZE_UNIT (TREE_TYPE (src2)));
3061 if (len == NULL_TREE
773078cb 3062 || !poly_int_tree_p (len)
82193434 3063 || len2 == NULL_TREE
773078cb 3064 || !poly_int_tree_p (len2))
82193434 3065 return;
3066
3067 src = get_addr_base_and_unit_offset (src, &offset);
3068 src2 = get_addr_base_and_unit_offset (src2, &offset2);
3069 if (src == NULL_TREE
3070 || src2 == NULL_TREE
773078cb 3071 || maybe_lt (offset, offset2))
82193434 3072 return;
3073
3074 if (!operand_equal_p (src, src2, 0))
3075 return;
3076
3077 /* [ src + offset2, src + offset2 + len2 - 1 ] is set to val.
3078 Make sure that
3079 [ src + offset, src + offset + len - 1 ] is a subset of that. */
773078cb 3080 if (maybe_gt (wi::to_poly_offset (len) + (offset - offset2),
3081 wi::to_poly_offset (len2)))
82193434 3082 return;
3083
3084 if (dump_file && (dump_flags & TDF_DETAILS))
3085 {
3086 fprintf (dump_file, "Simplified\n ");
3087 print_gimple_stmt (dump_file, stmt, 0, dump_flags);
3088 fprintf (dump_file, "after previous\n ");
3089 print_gimple_stmt (dump_file, defstmt, 0, dump_flags);
3090 }
3091
3092 /* For simplicity, don't change the kind of the stmt,
3093 turn dest = src; into dest = {}; and memcpy (&dest, &src, len);
3094 into memset (&dest, val, len);
3095 In theory we could change dest = src into memset if dest
3096 is addressable (maybe beneficial if val is not 0), or
3097 memcpy (&dest, &src, len) into dest = {} if len is the size
3098 of dest, dest isn't volatile. */
3099 if (is_gimple_assign (stmt))
3100 {
3101 tree ctor = build_constructor (TREE_TYPE (dest), NULL);
3102 gimple_assign_set_rhs_from_tree (gsip, ctor);
3103 update_stmt (stmt);
3104 }
3105 else /* If stmt is memcpy, transform it into memset. */
3106 {
3107 gcall *call = as_a <gcall *> (stmt);
3108 tree fndecl = builtin_decl_implicit (BUILT_IN_MEMSET);
3109 gimple_call_set_fndecl (call, fndecl);
3110 gimple_call_set_fntype (call, TREE_TYPE (fndecl));
3111 gimple_call_set_arg (call, 1, val);
3112 update_stmt (stmt);
3113 }
3114
3115 if (dump_file && (dump_flags & TDF_DETAILS))
3116 {
3117 fprintf (dump_file, "into\n ");
3118 print_gimple_stmt (dump_file, stmt, 0, dump_flags);
3119 }
3120}
3121
4ee9c684 3122/* A simple pass that attempts to fold all builtin functions. This pass
3123 is run after we've propagated as many constants as we can. */
3124
65b0537f 3125namespace {
3126
3127const pass_data pass_data_fold_builtins =
3128{
3129 GIMPLE_PASS, /* type */
3130 "fab", /* name */
3131 OPTGROUP_NONE, /* optinfo_flags */
65b0537f 3132 TV_NONE, /* tv_id */
3133 ( PROP_cfg | PROP_ssa ), /* properties_required */
3134 0, /* properties_provided */
3135 0, /* properties_destroyed */
3136 0, /* todo_flags_start */
8b88439e 3137 TODO_update_ssa, /* todo_flags_finish */
65b0537f 3138};
3139
3140class pass_fold_builtins : public gimple_opt_pass
3141{
3142public:
3143 pass_fold_builtins (gcc::context *ctxt)
3144 : gimple_opt_pass (pass_data_fold_builtins, ctxt)
3145 {}
3146
3147 /* opt_pass methods: */
3148 opt_pass * clone () { return new pass_fold_builtins (m_ctxt); }
3149 virtual unsigned int execute (function *);
3150
3151}; // class pass_fold_builtins
3152
3153unsigned int
3154pass_fold_builtins::execute (function *fun)
4ee9c684 3155{
b36237eb 3156 bool cfg_changed = false;
4ee9c684 3157 basic_block bb;
b1b7c0c4 3158 unsigned int todoflags = 0;
48e1416a 3159
65b0537f 3160 FOR_EACH_BB_FN (bb, fun)
4ee9c684 3161 {
75a70cf9 3162 gimple_stmt_iterator i;
3163 for (i = gsi_start_bb (bb); !gsi_end_p (i); )
4ee9c684 3164 {
42acab1c 3165 gimple *stmt, *old_stmt;
40a3eb84 3166 tree callee;
0a39fd54 3167 enum built_in_function fcode;
4ee9c684 3168
75a70cf9 3169 stmt = gsi_stmt (i);
3170
3171 if (gimple_code (stmt) != GIMPLE_CALL)
0a39fd54 3172 {
896a0c42 3173 /* Remove all *ssaname_N ={v} {CLOBBER}; stmts,
3174 after the last GIMPLE DSE they aren't needed and might
3175 unnecessarily keep the SSA_NAMEs live. */
3176 if (gimple_clobber_p (stmt))
3177 {
3178 tree lhs = gimple_assign_lhs (stmt);
3179 if (TREE_CODE (lhs) == MEM_REF
3180 && TREE_CODE (TREE_OPERAND (lhs, 0)) == SSA_NAME)
3181 {
3182 unlink_stmt_vdef (stmt);
3183 gsi_remove (&i, true);
3184 release_defs (stmt);
3185 continue;
3186 }
3187 }
82193434 3188 else if (gimple_assign_load_p (stmt) && gimple_store_p (stmt))
3189 optimize_memcpy (&i, gimple_assign_lhs (stmt),
3190 gimple_assign_rhs1 (stmt), NULL_TREE);
75a70cf9 3191 gsi_next (&i);
0a39fd54 3192 continue;
3193 }
40a3eb84 3194
75a70cf9 3195 callee = gimple_call_fndecl (stmt);
a0e9bfbb 3196 if (!callee || !fndecl_built_in_p (callee, BUILT_IN_NORMAL))
0a39fd54 3197 {
75a70cf9 3198 gsi_next (&i);
0a39fd54 3199 continue;
3200 }
5a4b7e1e 3201
40a3eb84 3202 fcode = DECL_FUNCTION_CODE (callee);
3203 if (fold_stmt (&i))
3204 ;
3205 else
3206 {
3207 tree result = NULL_TREE;
3208 switch (DECL_FUNCTION_CODE (callee))
3209 {
3210 case BUILT_IN_CONSTANT_P:
3211 /* Resolve __builtin_constant_p. If it hasn't been
3212 folded to integer_one_node by now, it's fairly
3213 certain that the value simply isn't constant. */
3214 result = integer_zero_node;
3215 break;
5a4b7e1e 3216
40a3eb84 3217 case BUILT_IN_ASSUME_ALIGNED:
3218 /* Remove __builtin_assume_aligned. */
3219 result = gimple_call_arg (stmt, 0);
3220 break;
4ee9c684 3221
40a3eb84 3222 case BUILT_IN_STACK_RESTORE:
3223 result = optimize_stack_restore (i);
3224 if (result)
3225 break;
3226 gsi_next (&i);
3227 continue;
fca0886c 3228
40a3eb84 3229 case BUILT_IN_UNREACHABLE:
3230 if (optimize_unreachable (i))
3231 cfg_changed = true;
8a58ed0a 3232 break;
8a58ed0a 3233
9c1a31e4 3234 case BUILT_IN_ATOMIC_FETCH_OR_1:
3235 case BUILT_IN_ATOMIC_FETCH_OR_2:
3236 case BUILT_IN_ATOMIC_FETCH_OR_4:
3237 case BUILT_IN_ATOMIC_FETCH_OR_8:
3238 case BUILT_IN_ATOMIC_FETCH_OR_16:
3239 optimize_atomic_bit_test_and (&i,
3240 IFN_ATOMIC_BIT_TEST_AND_SET,
3241 true, false);
3242 break;
3243 case BUILT_IN_SYNC_FETCH_AND_OR_1:
3244 case BUILT_IN_SYNC_FETCH_AND_OR_2:
3245 case BUILT_IN_SYNC_FETCH_AND_OR_4:
3246 case BUILT_IN_SYNC_FETCH_AND_OR_8:
3247 case BUILT_IN_SYNC_FETCH_AND_OR_16:
3248 optimize_atomic_bit_test_and (&i,
3249 IFN_ATOMIC_BIT_TEST_AND_SET,
3250 false, false);
3251 break;
3252
3253 case BUILT_IN_ATOMIC_FETCH_XOR_1:
3254 case BUILT_IN_ATOMIC_FETCH_XOR_2:
3255 case BUILT_IN_ATOMIC_FETCH_XOR_4:
3256 case BUILT_IN_ATOMIC_FETCH_XOR_8:
3257 case BUILT_IN_ATOMIC_FETCH_XOR_16:
3258 optimize_atomic_bit_test_and
3259 (&i, IFN_ATOMIC_BIT_TEST_AND_COMPLEMENT, true, false);
3260 break;
3261 case BUILT_IN_SYNC_FETCH_AND_XOR_1:
3262 case BUILT_IN_SYNC_FETCH_AND_XOR_2:
3263 case BUILT_IN_SYNC_FETCH_AND_XOR_4:
3264 case BUILT_IN_SYNC_FETCH_AND_XOR_8:
3265 case BUILT_IN_SYNC_FETCH_AND_XOR_16:
3266 optimize_atomic_bit_test_and
3267 (&i, IFN_ATOMIC_BIT_TEST_AND_COMPLEMENT, false, false);
3268 break;
3269
3270 case BUILT_IN_ATOMIC_XOR_FETCH_1:
3271 case BUILT_IN_ATOMIC_XOR_FETCH_2:
3272 case BUILT_IN_ATOMIC_XOR_FETCH_4:
3273 case BUILT_IN_ATOMIC_XOR_FETCH_8:
3274 case BUILT_IN_ATOMIC_XOR_FETCH_16:
3275 optimize_atomic_bit_test_and
3276 (&i, IFN_ATOMIC_BIT_TEST_AND_COMPLEMENT, true, true);
3277 break;
3278 case BUILT_IN_SYNC_XOR_AND_FETCH_1:
3279 case BUILT_IN_SYNC_XOR_AND_FETCH_2:
3280 case BUILT_IN_SYNC_XOR_AND_FETCH_4:
3281 case BUILT_IN_SYNC_XOR_AND_FETCH_8:
3282 case BUILT_IN_SYNC_XOR_AND_FETCH_16:
3283 optimize_atomic_bit_test_and
3284 (&i, IFN_ATOMIC_BIT_TEST_AND_COMPLEMENT, false, true);
3285 break;
3286
3287 case BUILT_IN_ATOMIC_FETCH_AND_1:
3288 case BUILT_IN_ATOMIC_FETCH_AND_2:
3289 case BUILT_IN_ATOMIC_FETCH_AND_4:
3290 case BUILT_IN_ATOMIC_FETCH_AND_8:
3291 case BUILT_IN_ATOMIC_FETCH_AND_16:
3292 optimize_atomic_bit_test_and (&i,
3293 IFN_ATOMIC_BIT_TEST_AND_RESET,
3294 true, false);
3295 break;
3296 case BUILT_IN_SYNC_FETCH_AND_AND_1:
3297 case BUILT_IN_SYNC_FETCH_AND_AND_2:
3298 case BUILT_IN_SYNC_FETCH_AND_AND_4:
3299 case BUILT_IN_SYNC_FETCH_AND_AND_8:
3300 case BUILT_IN_SYNC_FETCH_AND_AND_16:
3301 optimize_atomic_bit_test_and (&i,
3302 IFN_ATOMIC_BIT_TEST_AND_RESET,
3303 false, false);
3304 break;
3305
82193434 3306 case BUILT_IN_MEMCPY:
3307 if (gimple_call_builtin_p (stmt, BUILT_IN_NORMAL)
3308 && TREE_CODE (gimple_call_arg (stmt, 0)) == ADDR_EXPR
3309 && TREE_CODE (gimple_call_arg (stmt, 1)) == ADDR_EXPR
3310 && TREE_CODE (gimple_call_arg (stmt, 2)) == INTEGER_CST)
3311 {
3312 tree dest = TREE_OPERAND (gimple_call_arg (stmt, 0), 0);
3313 tree src = TREE_OPERAND (gimple_call_arg (stmt, 1), 0);
3314 tree len = gimple_call_arg (stmt, 2);
3315 optimize_memcpy (&i, dest, src, len);
3316 }
3317 break;
3318
40a3eb84 3319 case BUILT_IN_VA_START:
3320 case BUILT_IN_VA_END:
3321 case BUILT_IN_VA_COPY:
3322 /* These shouldn't be folded before pass_stdarg. */
3323 result = optimize_stdarg_builtin (stmt);
82193434 3324 break;
f87df69a 3325
40a3eb84 3326 default:;
3327 }
bdd0e199 3328
40a3eb84 3329 if (!result)
3330 {
3331 gsi_next (&i);
3332 continue;
3333 }
4ee9c684 3334
40a3eb84 3335 if (!update_call_from_tree (&i, result))
3336 gimplify_and_update_call_from_tree (&i, result);
3337 }
3338
3339 todoflags |= TODO_update_address_taken;
f87df69a 3340
4ee9c684 3341 if (dump_file && (dump_flags & TDF_DETAILS))
3342 {
3343 fprintf (dump_file, "Simplified\n ");
75a70cf9 3344 print_gimple_stmt (dump_file, stmt, 0, dump_flags);
4ee9c684 3345 }
3346
75a70cf9 3347 old_stmt = stmt;
75a70cf9 3348 stmt = gsi_stmt (i);
4c5fd53c 3349 update_stmt (stmt);
de6ed584 3350
75a70cf9 3351 if (maybe_clean_or_replace_eh_stmt (old_stmt, stmt)
3352 && gimple_purge_dead_eh_edges (bb))
b36237eb 3353 cfg_changed = true;
4ee9c684 3354
3355 if (dump_file && (dump_flags & TDF_DETAILS))
3356 {
3357 fprintf (dump_file, "to\n ");
75a70cf9 3358 print_gimple_stmt (dump_file, stmt, 0, dump_flags);
4ee9c684 3359 fprintf (dump_file, "\n");
3360 }
0a39fd54 3361
3362 /* Retry the same statement if it changed into another
3363 builtin, there might be new opportunities now. */
75a70cf9 3364 if (gimple_code (stmt) != GIMPLE_CALL)
0a39fd54 3365 {
75a70cf9 3366 gsi_next (&i);
0a39fd54 3367 continue;
3368 }
75a70cf9 3369 callee = gimple_call_fndecl (stmt);
0a39fd54 3370 if (!callee
a0e9bfbb 3371 || !fndecl_built_in_p (callee, fcode))
75a70cf9 3372 gsi_next (&i);
4ee9c684 3373 }
3374 }
48e1416a 3375
b36237eb 3376 /* Delete unreachable blocks. */
b1b7c0c4 3377 if (cfg_changed)
3378 todoflags |= TODO_cleanup_cfg;
48e1416a 3379
b1b7c0c4 3380 return todoflags;
4ee9c684 3381}
3382
cbe8bda8 3383} // anon namespace
3384
3385gimple_opt_pass *
3386make_pass_fold_builtins (gcc::context *ctxt)
3387{
3388 return new pass_fold_builtins (ctxt);
3389}
184fac50 3390
3391/* A simple pass that emits some warnings post IPA. */
3392
3393namespace {
3394
3395const pass_data pass_data_post_ipa_warn =
3396{
3397 GIMPLE_PASS, /* type */
3398 "post_ipa_warn", /* name */
3399 OPTGROUP_NONE, /* optinfo_flags */
3400 TV_NONE, /* tv_id */
3401 ( PROP_cfg | PROP_ssa ), /* properties_required */
3402 0, /* properties_provided */
3403 0, /* properties_destroyed */
3404 0, /* todo_flags_start */
3405 0, /* todo_flags_finish */
3406};
3407
3408class pass_post_ipa_warn : public gimple_opt_pass
3409{
3410public:
3411 pass_post_ipa_warn (gcc::context *ctxt)
3412 : gimple_opt_pass (pass_data_post_ipa_warn, ctxt)
3413 {}
3414
3415 /* opt_pass methods: */
3416 opt_pass * clone () { return new pass_post_ipa_warn (m_ctxt); }
3417 virtual bool gate (function *) { return warn_nonnull != 0; }
3418 virtual unsigned int execute (function *);
3419
3420}; // class pass_fold_builtins
3421
3422unsigned int
3423pass_post_ipa_warn::execute (function *fun)
3424{
3425 basic_block bb;
3426
3427 FOR_EACH_BB_FN (bb, fun)
3428 {
3429 gimple_stmt_iterator gsi;
3430 for (gsi = gsi_start_bb (bb); !gsi_end_p (gsi); gsi_next (&gsi))
3431 {
3432 gimple *stmt = gsi_stmt (gsi);
3433 if (!is_gimple_call (stmt) || gimple_no_warning_p (stmt))
3434 continue;
3435
3436 if (warn_nonnull)
3437 {
3438 bitmap nonnullargs
3439 = get_nonnull_args (gimple_call_fntype (stmt));
3440 if (nonnullargs)
3441 {
3442 for (unsigned i = 0; i < gimple_call_num_args (stmt); i++)
3443 {
3444 tree arg = gimple_call_arg (stmt, i);
3445 if (TREE_CODE (TREE_TYPE (arg)) != POINTER_TYPE)
3446 continue;
3447 if (!integer_zerop (arg))
3448 continue;
3449 if (!bitmap_empty_p (nonnullargs)
3450 && !bitmap_bit_p (nonnullargs, i))
3451 continue;
3452
3453 location_t loc = gimple_location (stmt);
bc35ef65 3454 auto_diagnostic_group d;
184fac50 3455 if (warning_at (loc, OPT_Wnonnull,
5fe5ed7c 3456 "%Gargument %u null where non-null "
a2e93b74 3457 "expected", stmt, i + 1))
184fac50 3458 {
3459 tree fndecl = gimple_call_fndecl (stmt);
3460 if (fndecl && DECL_IS_BUILTIN (fndecl))
3461 inform (loc, "in a call to built-in function %qD",
3462 fndecl);
3463 else if (fndecl)
3464 inform (DECL_SOURCE_LOCATION (fndecl),
3465 "in a call to function %qD declared here",
3466 fndecl);
3467
3468 }
3469 }
3470 BITMAP_FREE (nonnullargs);
3471 }
3472 }
3473 }
3474 }
3475 return 0;
3476}
3477
3478} // anon namespace
3479
3480gimple_opt_pass *
3481make_pass_post_ipa_warn (gcc::context *ctxt)
3482{
3483 return new pass_post_ipa_warn (ctxt);
3484}