Coverage Report

Created: 2026-01-18 06:49

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/php-src/Zend/Optimizer/zend_ssa.c
Line
Count
Source
1
/*
2
   +----------------------------------------------------------------------+
3
   | Zend Engine, SSA - Static Single Assignment Form                     |
4
   +----------------------------------------------------------------------+
5
   | Copyright (c) The PHP Group                                          |
6
   +----------------------------------------------------------------------+
7
   | This source file is subject to version 3.01 of the PHP license,      |
8
   | that is bundled with this package in the file LICENSE, and is        |
9
   | available through the world-wide-web at the following url:           |
10
   | https://www.php.net/license/3_01.txt                                 |
11
   | If you did not receive a copy of the PHP license and are unable to   |
12
   | obtain it through the world-wide-web, please send a note to          |
13
   | license@php.net so we can mail you a copy immediately.               |
14
   +----------------------------------------------------------------------+
15
   | Authors: Dmitry Stogov <dmitry@php.net>                              |
16
   |          Nikita Popov <nikic@php.net>                                |
17
   +----------------------------------------------------------------------+
18
*/
19
20
#include "zend_compile.h"
21
#include "zend_dfg.h"
22
#include "zend_ssa.h"
23
#include "zend_dump.h"
24
#include "zend_inference.h"
25
#include "zend_worklist.h"
26
#include "Optimizer/zend_optimizer_internal.h"
27
28
0
static bool dominates(const zend_basic_block *blocks, int a, int b) {
29
0
  while (blocks[b].level > blocks[a].level) {
30
0
    b = blocks[b].idom;
31
0
  }
32
0
  return a == b;
33
0
}
34
35
static bool will_rejoin(
36
    const zend_cfg *cfg, const zend_dfg *dfg, const zend_basic_block *block,
37
9
    int other_successor, int exclude, int var) {
38
9
  int i;
39
27
  for (i = 0; i < block->predecessors_count; i++) {
40
18
    int predecessor = cfg->predecessors[block->predecessor_offset + i];
41
18
    if (predecessor == exclude) {
42
9
      continue;
43
9
    }
44
45
    /* The variable is changed in this predecessor,
46
     * so we will not rejoin with the original value. */
47
    // TODO: This should not be limited to the direct predecessor block.
48
9
    if (DFG_ISSET(dfg->def, dfg->size, predecessor, var)) {
49
9
      continue;
50
9
    }
51
52
    /* The other successor dominates this predecessor,
53
     * so we will get the original value from it. */
54
0
    if (dominates(cfg->blocks, other_successor, predecessor)) {
55
0
      return true;
56
0
    }
57
0
  }
58
9
  return false;
59
9
}
60
61
static bool needs_pi(const zend_op_array *op_array, const zend_dfg *dfg, const zend_ssa *ssa, int from, int to, int var) /* {{{ */
62
1.83k
{
63
1.83k
  const zend_basic_block *from_block, *to_block;
64
1.83k
  int other_successor;
65
66
1.83k
  if (!DFG_ISSET(dfg->in, dfg->size, to, var)) {
67
    /* Variable is not live, certainly won't benefit from pi */
68
23
    return false;
69
23
  }
70
71
  /* Make sure that both successors of the from block aren't the same. Pi nodes are associated
72
   * with predecessor blocks, so we can't distinguish which edge the pi belongs to. */
73
1.81k
  from_block = &ssa->cfg.blocks[from];
74
1.81k
  ZEND_ASSERT(from_block->successors_count == 2);
75
1.81k
  if (from_block->successors[0] == from_block->successors[1]) {
76
0
    return false;
77
0
  }
78
79
1.81k
  to_block = &ssa->cfg.blocks[to];
80
1.81k
  if (to_block->predecessors_count == 1) {
81
    /* Always place pi if one predecessor (an if branch) */
82
1.80k
    return true;
83
1.80k
  }
84
85
  /* Check whether we will rejoin with the original value coming from the other successor,
86
   * in which case the pi node will not have an effect. */
87
9
  other_successor = from_block->successors[0] == to
88
9
    ? from_block->successors[1] : from_block->successors[0];
89
9
  return !will_rejoin(&ssa->cfg, dfg, to_block, other_successor, from, var);
90
1.81k
}
91
/* }}} */
92
93
static zend_ssa_phi *add_pi(
94
    zend_arena **arena, const zend_op_array *op_array, const zend_dfg *dfg, const zend_ssa *ssa,
95
    int from, int to, int var) /* {{{ */
96
1.83k
{
97
1.83k
  zend_ssa_phi *phi;
98
1.83k
  if (!needs_pi(op_array, dfg, ssa, from, to, var)) {
99
23
    return NULL;
100
23
  }
101
102
1.81k
  phi = zend_arena_calloc(arena, 1,
103
1.81k
    ZEND_MM_ALIGNED_SIZE(sizeof(zend_ssa_phi)) +
104
1.81k
    ZEND_MM_ALIGNED_SIZE(sizeof(int) * ssa->cfg.blocks[to].predecessors_count) +
105
1.81k
    sizeof(void*) * ssa->cfg.blocks[to].predecessors_count);
106
1.81k
  phi->sources = (int*)(((char*)phi) + ZEND_MM_ALIGNED_SIZE(sizeof(zend_ssa_phi)));
107
1.81k
  memset(phi->sources, 0xff, sizeof(int) * ssa->cfg.blocks[to].predecessors_count);
108
1.81k
  phi->use_chains = (zend_ssa_phi**)(((char*)phi->sources) + ZEND_MM_ALIGNED_SIZE(sizeof(int) * ssa->cfg.blocks[to].predecessors_count));
109
110
1.81k
  phi->pi = from;
111
1.81k
  phi->var = var;
112
1.81k
  phi->ssa_var = -1;
113
1.81k
  phi->next = ssa->blocks[to].phis;
114
1.81k
  ssa->blocks[to].phis = phi;
115
116
  /* Block "to" now defines "var" via the pi statement, so add it to the "def" set. Note that
117
   * this is not entirely accurate, because the pi is actually placed along the edge from->to.
118
   * If there is a back-edge to "to" this may result in non-minimal SSA form. */
119
1.81k
  DFG_SET(dfg->def, dfg->size, to, var);
120
121
  /* If there are multiple predecessors in the target block, we need to place a phi there.
122
   * However this can (generally) not be expressed in terms of dominance frontiers, so place it
123
   * explicitly. dfg->use here really is dfg->phi, we're reusing the set. */
124
1.81k
  if (ssa->cfg.blocks[to].predecessors_count > 1) {
125
9
    DFG_SET(dfg->use, dfg->size, to, var);
126
9
  }
127
128
1.81k
  return phi;
129
1.83k
}
130
/* }}} */
131
132
static void pi_range(
133
    zend_ssa_phi *phi, int min_var, int max_var, zend_long min, zend_long max,
134
    bool underflow, bool overflow, bool negative) /* {{{ */
135
215
{
136
215
  zend_ssa_range_constraint *constraint = &phi->constraint.range;
137
215
  constraint->min_var = min_var;
138
215
  constraint->max_var = max_var;
139
215
  constraint->min_ssa_var = -1;
140
215
  constraint->max_ssa_var = -1;
141
215
  constraint->range.min = min;
142
215
  constraint->range.max = max;
143
215
  constraint->range.underflow = underflow;
144
215
  constraint->range.overflow = overflow;
145
215
  constraint->negative = negative ? NEG_INIT : NEG_NONE;
146
215
  phi->has_range_constraint = true;
147
215
}
148
/* }}} */
149
150
56
static inline void pi_range_equals(zend_ssa_phi *phi, int var, zend_long val) {
151
56
  pi_range(phi, var, var, val, val, false, false, false);
152
56
}
153
56
static inline void pi_range_not_equals(zend_ssa_phi *phi, int var, zend_long val) {
154
56
  pi_range(phi, var, var, val, val, false, false, true);
155
56
}
156
40
static inline void pi_range_min(zend_ssa_phi *phi, int var, zend_long val) {
157
40
  pi_range(phi, var, -1, val, ZEND_LONG_MAX, false, true, false);
158
40
}
159
63
static inline void pi_range_max(zend_ssa_phi *phi, int var, zend_long val) {
160
63
  pi_range(phi, -1, var, ZEND_LONG_MIN, val, true, false, false);
161
63
}
162
163
1.59k
static void pi_type_mask(zend_ssa_phi *phi, uint32_t type_mask) {
164
1.59k
  phi->has_range_constraint = false;
165
1.59k
  phi->constraint.type.ce = NULL;
166
1.59k
  phi->constraint.type.type_mask = MAY_BE_REF|MAY_BE_RC1|MAY_BE_RCN;
167
1.59k
  phi->constraint.type.type_mask |= type_mask;
168
1.59k
  if (type_mask & MAY_BE_NULL) {
169
0
    phi->constraint.type.type_mask |= MAY_BE_UNDEF;
170
0
  }
171
1.59k
}
172
1.59k
static inline void pi_not_type_mask(zend_ssa_phi *phi, uint32_t type_mask) {
173
1.59k
  uint32_t relevant = MAY_BE_ANY|MAY_BE_ARRAY_KEY_ANY|MAY_BE_ARRAY_OF_ANY|MAY_BE_ARRAY_OF_REF;
174
1.59k
  pi_type_mask(phi, ~type_mask & relevant);
175
1.59k
}
176
0
static inline uint32_t mask_for_type_check(uint32_t type) {
177
0
  if (type & MAY_BE_ARRAY) {
178
0
    return type | (MAY_BE_ARRAY_KEY_ANY|MAY_BE_ARRAY_OF_ANY|MAY_BE_ARRAY_OF_REF);
179
0
  } else {
180
0
    return type;
181
0
  }
182
0
}
183
184
/* We can interpret $a + 5 == 0 as $a = 0 - 5, i.e. shift the adjustment to the other operand.
185
 * This negated adjustment is what is written into the "adjustment" parameter. */
186
static int find_adjusted_tmp_var(const zend_op_array *op_array, uint32_t build_flags, zend_op *opline, uint32_t var_num, zend_long *adjustment) /* {{{ */
187
8
{
188
8
  zend_op *op = opline;
189
8
  zval *zv;
190
191
16
  while (op != op_array->opcodes) {
192
16
    op--;
193
16
    if (op->result_type != IS_TMP_VAR || op->result.var != var_num) {
194
8
      continue;
195
8
    }
196
197
8
    if (op->opcode == ZEND_POST_DEC) {
198
0
      if (op->op1_type == IS_CV) {
199
0
        *adjustment = -1;
200
0
        return EX_VAR_TO_NUM(op->op1.var);
201
0
      }
202
8
    } else if (op->opcode == ZEND_POST_INC) {
203
0
      if (op->op1_type == IS_CV) {
204
0
        *adjustment = 1;
205
0
        return EX_VAR_TO_NUM(op->op1.var);
206
0
      }
207
8
    } else if (op->opcode == ZEND_ADD) {
208
0
      if (op->op1_type == IS_CV && op->op2_type == IS_CONST) {
209
0
        zv = CRT_CONSTANT_EX(op_array, op, op->op2);
210
0
        if (Z_TYPE_P(zv) == IS_LONG
211
0
         && Z_LVAL_P(zv) != ZEND_LONG_MIN) {
212
0
          *adjustment = -Z_LVAL_P(zv);
213
0
          return EX_VAR_TO_NUM(op->op1.var);
214
0
        }
215
0
      } else if (op->op2_type == IS_CV && op->op1_type == IS_CONST) {
216
0
        zv = CRT_CONSTANT_EX(op_array, op, op->op1);
217
0
        if (Z_TYPE_P(zv) == IS_LONG
218
0
         && Z_LVAL_P(zv) != ZEND_LONG_MIN) {
219
0
          *adjustment = -Z_LVAL_P(zv);
220
0
          return EX_VAR_TO_NUM(op->op2.var);
221
0
        }
222
0
      }
223
8
    } else if (op->opcode == ZEND_SUB) {
224
0
      if (op->op1_type == IS_CV && op->op2_type == IS_CONST) {
225
0
        zv = CRT_CONSTANT_EX(op_array, op, op->op2);
226
0
        if (Z_TYPE_P(zv) == IS_LONG) {
227
0
          *adjustment = Z_LVAL_P(zv);
228
0
          return EX_VAR_TO_NUM(op->op1.var);
229
0
        }
230
0
      }
231
0
    }
232
8
    break;
233
8
  }
234
8
  return -1;
235
8
}
236
/* }}} */
237
238
/* e-SSA construction: Pi placement (Pi is actually a Phi with single
239
 * source and constraint).
240
 * Order of Phis is important, Pis must be placed before Phis
241
 */
242
static void place_essa_pis(
243
    zend_arena **arena, const zend_script *script, const zend_op_array *op_array,
244
191
    uint32_t build_flags, const zend_ssa *ssa, const zend_dfg *dfg) /* {{{ */ {
245
191
  const zend_basic_block *blocks = ssa->cfg.blocks;
246
191
  int j, blocks_count = ssa->cfg.blocks_count;
247
4.88k
  for (j = 0; j < blocks_count; j++) {
248
4.69k
    zend_ssa_phi *pi;
249
4.69k
    zend_op *opline = op_array->opcodes + blocks[j].start + blocks[j].len - 1;
250
4.69k
    int bt; /* successor block number if a condition is true */
251
4.69k
    int bf; /* successor block number if a condition is false */
252
253
4.69k
    if ((blocks[j].flags & ZEND_BB_REACHABLE) == 0 || blocks[j].len == 0) {
254
0
      continue;
255
0
    }
256
    /* the last instruction of basic block is conditional branch,
257
     * based on comparison of CV(s)
258
     */
259
4.69k
    switch (opline->opcode) {
260
95
      case ZEND_JMPZ:
261
95
        bf = blocks[j].successors[0];
262
95
        bt = blocks[j].successors[1];
263
95
        break;
264
157
      case ZEND_JMPNZ:
265
157
        bt = blocks[j].successors[0];
266
157
        bf = blocks[j].successors[1];
267
157
        break;
268
86
      case ZEND_COALESCE:
269
86
        if (opline->op1_type == IS_CV) {
270
0
          int var = EX_VAR_TO_NUM(opline->op1.var);
271
0
          if ((pi = add_pi(arena, op_array, dfg, ssa, j, blocks[j].successors[0], var))) {
272
0
            pi_not_type_mask(pi, MAY_BE_NULL);
273
0
          }
274
0
        }
275
86
        continue;
276
1.59k
      case ZEND_JMP_NULL:
277
1.59k
        if (opline->op1_type == IS_CV) {
278
1.59k
          int var = EX_VAR_TO_NUM(opline->op1.var);
279
1.59k
          if ((pi = add_pi(arena, op_array, dfg, ssa, j, blocks[j].successors[1], var))) {
280
1.59k
            pi_not_type_mask(pi, MAY_BE_NULL);
281
1.59k
          }
282
1.59k
        }
283
1.59k
        continue;
284
2.76k
      default:
285
2.76k
        continue;
286
4.69k
    }
287
288
    /* The following patterns all inspect the opline directly before the JMPZ opcode.
289
     * Make sure that it is part of the same block, otherwise it might not be a dominating
290
     * assignment. */
291
252
    if (blocks[j].len == 1) {
292
8
      continue;
293
8
    }
294
295
244
    if (opline->op1_type == IS_TMP_VAR &&
296
226
        ((opline-1)->opcode == ZEND_IS_EQUAL ||
297
212
         (opline-1)->opcode == ZEND_IS_NOT_EQUAL ||
298
186
         (opline-1)->opcode == ZEND_IS_SMALLER ||
299
162
         (opline-1)->opcode == ZEND_IS_SMALLER_OR_EQUAL) &&
300
175
        opline->op1.var == (opline-1)->result.var) {
301
175
      int  var1 = -1;
302
175
      int  var2 = -1;
303
175
      zend_long val1 = 0;
304
175
      zend_long val2 = 0;
305
//      long val = 0;
306
307
175
      if ((opline-1)->op1_type == IS_CV) {
308
174
        var1 = EX_VAR_TO_NUM((opline-1)->op1.var);
309
174
      } else if ((opline-1)->op1_type == IS_TMP_VAR) {
310
0
        var1 = find_adjusted_tmp_var(
311
0
          op_array, build_flags, opline, (opline-1)->op1.var, &val2);
312
0
      }
313
314
175
      if ((opline-1)->op2_type == IS_CV) {
315
25
        var2 = EX_VAR_TO_NUM((opline-1)->op2.var);
316
150
      } else if ((opline-1)->op2_type == IS_TMP_VAR) {
317
8
        var2 = find_adjusted_tmp_var(
318
8
          op_array, build_flags, opline, (opline-1)->op2.var, &val1);
319
8
      }
320
321
175
      if (var1 >= 0 && var2 >= 0) {
322
24
        if (!zend_sub_will_overflow(val1, val2) && !zend_sub_will_overflow(val2, val1)) {
323
24
          zend_long tmp = val1;
324
24
          val1 -= val2;
325
24
          val2 -= tmp;
326
24
        } else {
327
0
          var1 = -1;
328
0
          var2 = -1;
329
0
        }
330
151
      } else if (var1 >= 0 && var2 < 0) {
331
150
        zend_long add_val2 = 0;
332
150
        if ((opline-1)->op2_type == IS_CONST) {
333
142
          zval *zv = CRT_CONSTANT_EX(op_array, (opline-1), (opline-1)->op2);
334
335
142
          if (Z_TYPE_P(zv) == IS_LONG) {
336
71
            add_val2 = Z_LVAL_P(zv);
337
71
          } else {
338
71
            var1 = -1;
339
71
          }
340
142
        } else {
341
8
          var1 = -1;
342
8
        }
343
150
        if (!zend_add_will_overflow(val2, add_val2)) {
344
150
          val2 += add_val2;
345
150
        } else {
346
0
          var1 = -1;
347
0
        }
348
150
      } else if (var1 < 0 && var2 >= 0) {
349
1
        zend_long add_val1 = 0;
350
1
        if ((opline-1)->op1_type == IS_CONST) {
351
1
          zval *zv = CRT_CONSTANT_EX(op_array, (opline-1), (opline-1)->op1);
352
1
          if (Z_TYPE_P(zv) == IS_LONG) {
353
0
            add_val1 = Z_LVAL_P(CRT_CONSTANT_EX(op_array, (opline-1), (opline-1)->op1));
354
1
          } else {
355
1
            var2 = -1;
356
1
          }
357
1
        } else {
358
0
          var2 = -1;
359
0
        }
360
1
        if (!zend_add_will_overflow(val1, add_val1)) {
361
1
          val1 += add_val1;
362
1
        } else {
363
0
          var2 = -1;
364
0
        }
365
1
      }
366
367
175
      if (var1 >= 0) {
368
95
        if ((opline-1)->opcode == ZEND_IS_EQUAL) {
369
8
          if ((pi = add_pi(arena, op_array, dfg, ssa, j, bt, var1))) {
370
8
            pi_range_equals(pi, var2, val2);
371
8
          }
372
8
          if ((pi = add_pi(arena, op_array, dfg, ssa, j, bf, var1))) {
373
8
            pi_range_not_equals(pi, var2, val2);
374
8
          }
375
87
        } else if ((opline-1)->opcode == ZEND_IS_NOT_EQUAL) {
376
24
          if ((pi = add_pi(arena, op_array, dfg, ssa, j, bf, var1))) {
377
24
            pi_range_equals(pi, var2, val2);
378
24
          }
379
24
          if ((pi = add_pi(arena, op_array, dfg, ssa, j, bt, var1))) {
380
24
            pi_range_not_equals(pi, var2, val2);
381
24
          }
382
63
        } else if ((opline-1)->opcode == ZEND_IS_SMALLER) {
383
23
          if (val2 > ZEND_LONG_MIN) {
384
23
            if ((pi = add_pi(arena, op_array, dfg, ssa, j, bt, var1))) {
385
23
              pi_range_max(pi, var2, val2-1);
386
23
            }
387
23
          }
388
23
          if ((pi = add_pi(arena, op_array, dfg, ssa, j, bf, var1))) {
389
0
            pi_range_min(pi, var2, val2);
390
0
          }
391
40
        } else if ((opline-1)->opcode == ZEND_IS_SMALLER_OR_EQUAL) {
392
40
          if ((pi = add_pi(arena, op_array, dfg, ssa, j, bt, var1))) {
393
40
            pi_range_max(pi, var2, val2);
394
40
          }
395
40
          if (val2 < ZEND_LONG_MAX) {
396
40
            if ((pi = add_pi(arena, op_array, dfg, ssa, j, bf, var1))) {
397
40
              pi_range_min(pi, var2, val2+1);
398
40
            }
399
40
          }
400
40
        }
401
95
      }
402
175
      if (var2 >= 0) {
403
24
        if((opline-1)->opcode == ZEND_IS_EQUAL) {
404
0
          if ((pi = add_pi(arena, op_array, dfg, ssa, j, bt, var2))) {
405
0
            pi_range_equals(pi, var1, val1);
406
0
          }
407
0
          if ((pi = add_pi(arena, op_array, dfg, ssa, j, bf, var2))) {
408
0
            pi_range_not_equals(pi, var1, val1);
409
0
          }
410
24
        } else if ((opline-1)->opcode == ZEND_IS_NOT_EQUAL) {
411
24
          if ((pi = add_pi(arena, op_array, dfg, ssa, j, bf, var2))) {
412
24
            pi_range_equals(pi, var1, val1);
413
24
          }
414
24
          if ((pi = add_pi(arena, op_array, dfg, ssa, j, bt, var2))) {
415
24
            pi_range_not_equals(pi, var1, val1);
416
24
          }
417
24
        } else if ((opline-1)->opcode == ZEND_IS_SMALLER) {
418
0
          if (val1 < ZEND_LONG_MAX) {
419
0
            if ((pi = add_pi(arena, op_array, dfg, ssa, j, bt, var2))) {
420
0
              pi_range_min(pi, var1, val1+1);
421
0
            }
422
0
          }
423
0
          if ((pi = add_pi(arena, op_array, dfg, ssa, j, bf, var2))) {
424
0
            pi_range_max(pi, var1, val1);
425
0
          }
426
0
        } else if ((opline-1)->opcode == ZEND_IS_SMALLER_OR_EQUAL) {
427
0
          if ((pi = add_pi(arena, op_array, dfg, ssa, j, bt, var2))) {
428
0
            pi_range_min(pi, var1, val1);
429
0
          }
430
0
          if (val1 > ZEND_LONG_MIN) {
431
0
            if ((pi = add_pi(arena, op_array, dfg, ssa, j, bf, var2))) {
432
0
              pi_range_max(pi, var1, val1-1);
433
0
            }
434
0
          }
435
0
        }
436
24
      }
437
175
    } else if (opline->op1_type == IS_TMP_VAR &&
438
51
               ((opline-1)->opcode == ZEND_POST_INC ||
439
51
                (opline-1)->opcode == ZEND_POST_DEC) &&
440
0
               opline->op1.var == (opline-1)->result.var &&
441
0
               (opline-1)->op1_type == IS_CV) {
442
0
      int var = EX_VAR_TO_NUM((opline-1)->op1.var);
443
444
0
      if ((opline-1)->opcode == ZEND_POST_DEC) {
445
0
        if ((pi = add_pi(arena, op_array, dfg, ssa, j, bf, var))) {
446
0
          pi_range_equals(pi, -1, -1);
447
0
        }
448
0
        if ((pi = add_pi(arena, op_array, dfg, ssa, j, bt, var))) {
449
0
          pi_range_not_equals(pi, -1, -1);
450
0
        }
451
0
      } else if ((opline-1)->opcode == ZEND_POST_INC) {
452
0
        if ((pi = add_pi(arena, op_array, dfg, ssa, j, bf, var))) {
453
0
          pi_range_equals(pi, -1, 1);
454
0
        }
455
0
        if ((pi = add_pi(arena, op_array, dfg, ssa, j, bt, var))) {
456
0
          pi_range_not_equals(pi, -1, 1);
457
0
        }
458
0
      }
459
69
    } else if (opline->op1_type == IS_TMP_VAR &&
460
51
               ((opline-1)->opcode == ZEND_PRE_INC ||
461
51
                (opline-1)->opcode == ZEND_PRE_DEC) &&
462
0
               opline->op1.var == (opline-1)->result.var &&
463
0
               (opline-1)->op1_type == IS_CV) {
464
0
      int var = EX_VAR_TO_NUM((opline-1)->op1.var);
465
466
0
      if ((pi = add_pi(arena, op_array, dfg, ssa, j, bf, var))) {
467
0
        pi_range_equals(pi, -1, 0);
468
0
      }
469
      /* speculative */
470
0
      if ((pi = add_pi(arena, op_array, dfg, ssa, j, bt, var))) {
471
0
        pi_range_not_equals(pi, -1, 0);
472
0
      }
473
69
    } else if (opline->op1_type == IS_TMP_VAR && (opline-1)->opcode == ZEND_TYPE_CHECK &&
474
0
           opline->op1.var == (opline-1)->result.var && (opline-1)->op1_type == IS_CV) {
475
0
      int var = EX_VAR_TO_NUM((opline-1)->op1.var);
476
0
      uint32_t type = (opline-1)->extended_value;
477
0
      if ((pi = add_pi(arena, op_array, dfg, ssa, j, bt, var))) {
478
0
        pi_type_mask(pi, mask_for_type_check(type));
479
0
      }
480
0
      if (type != MAY_BE_RESOURCE) {
481
        /* is_resource() may return false for closed resources */
482
0
        if ((pi = add_pi(arena, op_array, dfg, ssa, j, bf, var))) {
483
0
          pi_not_type_mask(pi, mask_for_type_check(type));
484
0
        }
485
0
      }
486
69
    } else if (opline->op1_type == IS_TMP_VAR &&
487
51
           ((opline-1)->opcode == ZEND_IS_IDENTICAL
488
51
          || (opline-1)->opcode == ZEND_IS_NOT_IDENTICAL) &&
489
0
           opline->op1.var == (opline-1)->result.var) {
490
0
      int var;
491
0
      zval *val;
492
0
      uint32_t type_mask;
493
0
      if ((opline-1)->op1_type == IS_CV && (opline-1)->op2_type == IS_CONST) {
494
0
        var = EX_VAR_TO_NUM((opline-1)->op1.var);
495
0
        val = CRT_CONSTANT_EX(op_array, (opline-1), (opline-1)->op2);
496
0
      } else if ((opline-1)->op1_type == IS_CONST && (opline-1)->op2_type == IS_CV) {
497
0
        var = EX_VAR_TO_NUM((opline-1)->op2.var);
498
0
        val = CRT_CONSTANT_EX(op_array, (opline-1), (opline-1)->op1);
499
0
      } else {
500
0
        continue;
501
0
      }
502
503
      /* We're interested in === null/true/false comparisons here, because they eliminate
504
       * a type in the false-branch. Other === VAL comparisons are unlikely to be useful. */
505
0
      if (Z_TYPE_P(val) != IS_NULL && Z_TYPE_P(val) != IS_TRUE && Z_TYPE_P(val) != IS_FALSE) {
506
0
        continue;
507
0
      }
508
509
0
      type_mask = _const_op_type(val);
510
0
      if ((opline-1)->opcode == ZEND_IS_IDENTICAL) {
511
0
        if ((pi = add_pi(arena, op_array, dfg, ssa, j, bt, var))) {
512
0
          pi_type_mask(pi, type_mask);
513
0
        }
514
0
        if ((pi = add_pi(arena, op_array, dfg, ssa, j, bf, var))) {
515
0
          pi_not_type_mask(pi, type_mask);
516
0
        }
517
0
      } else {
518
0
        if ((pi = add_pi(arena, op_array, dfg, ssa, j, bf, var))) {
519
0
          pi_type_mask(pi, type_mask);
520
0
        }
521
0
        if ((pi = add_pi(arena, op_array, dfg, ssa, j, bt, var))) {
522
0
          pi_not_type_mask(pi, type_mask);
523
0
        }
524
0
      }
525
69
    } else if (opline->op1_type == IS_TMP_VAR && (opline-1)->opcode == ZEND_INSTANCEOF &&
526
0
           opline->op1.var == (opline-1)->result.var && (opline-1)->op1_type == IS_CV &&
527
0
           (opline-1)->op2_type == IS_CONST) {
528
0
      int var = EX_VAR_TO_NUM((opline-1)->op1.var);
529
0
      zend_string *lcname = Z_STR_P(CRT_CONSTANT_EX(op_array, (opline-1), (opline-1)->op2) + 1);
530
0
      zend_class_entry *ce = zend_optimizer_get_class_entry(script, op_array, lcname);
531
0
      if (!ce) {
532
0
        continue;
533
0
      }
534
535
0
      if ((pi = add_pi(arena, op_array, dfg, ssa, j, bt, var))) {
536
0
        pi_type_mask(pi, MAY_BE_OBJECT);
537
0
        pi->constraint.type.ce = ce;
538
0
      }
539
0
    }
540
244
  }
541
191
}
542
/* }}} */
543
544
static zend_always_inline int _zend_ssa_rename_op(const zend_op_array *op_array, const zend_op *opline, uint32_t k, uint32_t build_flags, int ssa_vars_count, zend_ssa_op *ssa_ops, int *var) /* {{{ */
545
24.9k
{
546
24.9k
  const zend_op *next;
547
548
24.9k
  if (opline->op1_type & (IS_CV|IS_VAR|IS_TMP_VAR)) {
549
19.7k
    ssa_ops[k].op1_use = var[EX_VAR_TO_NUM(opline->op1.var)];
550
    //USE_SSA_VAR(op_array->last_var + opline->op1.var)
551
19.7k
  }
552
24.9k
  if (opline->op2_type & (IS_CV|IS_VAR|IS_TMP_VAR)) {
553
6.19k
    ssa_ops[k].op2_use = var[EX_VAR_TO_NUM(opline->op2.var)];
554
    //USE_SSA_VAR(op_array->last_var + opline->op2.var)
555
6.19k
  }
556
24.9k
  if ((build_flags & ZEND_SSA_USE_CV_RESULTS)
557
0
   && opline->result_type == IS_CV
558
0
   && opline->opcode != ZEND_RECV) {
559
0
    ssa_ops[k].result_use = var[EX_VAR_TO_NUM(opline->result.var)];
560
    //USE_SSA_VAR(op_array->last_var + opline->result.var)
561
0
  }
562
563
24.9k
  switch (opline->opcode) {
564
733
    case ZEND_ASSIGN:
565
733
      if ((build_flags & ZEND_SSA_RC_INFERENCE) && opline->op2_type == IS_CV) {
566
0
        ssa_ops[k].op2_def = ssa_vars_count;
567
0
        var[EX_VAR_TO_NUM(opline->op2.var)] = ssa_vars_count;
568
0
        ssa_vars_count++;
569
        //NEW_SSA_VAR(opline->op2.var)
570
0
      }
571
733
      if (opline->op1_type == IS_CV) {
572
1.19k
add_op1_def:
573
1.19k
        ssa_ops[k].op1_def = ssa_vars_count;
574
1.19k
        var[EX_VAR_TO_NUM(opline->op1.var)] = ssa_vars_count;
575
1.19k
        ssa_vars_count++;
576
        //NEW_SSA_VAR(opline->op1.var)
577
1.19k
      }
578
1.19k
      break;
579
1.19k
    case ZEND_ASSIGN_REF:
580
3
      if (opline->op2_type == IS_CV) {
581
3
        ssa_ops[k].op2_def = ssa_vars_count;
582
3
        var[EX_VAR_TO_NUM(opline->op2.var)] = ssa_vars_count;
583
3
        ssa_vars_count++;
584
        //NEW_SSA_VAR(opline->op2.var)
585
3
      }
586
3
      if (opline->op1_type == IS_CV) {
587
3
        goto add_op1_def;
588
3
      }
589
0
      break;
590
45
    case ZEND_ASSIGN_DIM:
591
79
    case ZEND_ASSIGN_OBJ:
592
79
      next = opline + 1;
593
79
      if (next->op1_type & (IS_CV|IS_VAR|IS_TMP_VAR)) {
594
52
        ssa_ops[k + 1].op1_use = var[EX_VAR_TO_NUM(next->op1.var)];
595
        //USE_SSA_VAR(op_array->last_var + next->op1.var);
596
52
        if (build_flags & ZEND_SSA_RC_INFERENCE && next->op1_type == IS_CV) {
597
0
          ssa_ops[k + 1].op1_def = ssa_vars_count;
598
0
          var[EX_VAR_TO_NUM(next->op1.var)] = ssa_vars_count;
599
0
          ssa_vars_count++;
600
          //NEW_SSA_VAR(next->op1.var)
601
0
        }
602
52
      }
603
79
      if (opline->op1_type == IS_CV) {
604
50
        ssa_ops[k].op1_def = ssa_vars_count;
605
50
        var[EX_VAR_TO_NUM(opline->op1.var)] = ssa_vars_count;
606
50
        ssa_vars_count++;
607
        //NEW_SSA_VAR(opline->op1.var)
608
50
      }
609
79
      break;
610
0
    case ZEND_ASSIGN_OBJ_REF:
611
0
      if ((build_flags & ZEND_SSA_RC_INFERENCE) && opline->op1_type == IS_CV) {
612
0
        ssa_ops[k].op1_def = ssa_vars_count;
613
0
        var[EX_VAR_TO_NUM(opline->op1.var)] = ssa_vars_count;
614
0
        ssa_vars_count++;
615
        //NEW_SSA_VAR(opline->op1.var)
616
0
      }
617
0
      next = opline + 1;
618
0
      if (next->op1_type & (IS_CV|IS_VAR|IS_TMP_VAR)) {
619
0
        ssa_ops[k + 1].op1_use = var[EX_VAR_TO_NUM(next->op1.var)];
620
        //USE_SSA_VAR(op_array->last_var + next->op1.var);
621
0
        if (next->op1_type == IS_CV) {
622
0
          ssa_ops[k + 1].op1_def = ssa_vars_count;
623
0
          var[EX_VAR_TO_NUM(next->op1.var)] = ssa_vars_count;
624
0
          ssa_vars_count++;
625
          //NEW_SSA_VAR(next->op1.var)
626
0
        }
627
0
      }
628
0
      break;
629
0
    case ZEND_ASSIGN_STATIC_PROP:
630
0
      next = opline + 1;
631
0
      if (next->op1_type & (IS_CV|IS_VAR|IS_TMP_VAR)) {
632
0
        ssa_ops[k + 1].op1_use = var[EX_VAR_TO_NUM(next->op1.var)];
633
        //USE_SSA_VAR(op_array->last_var + next->op1.var);
634
0
        if ((build_flags & ZEND_SSA_RC_INFERENCE) && next->op1_type == IS_CV) {
635
0
          ssa_ops[k + 1].op1_def = ssa_vars_count;
636
0
          var[EX_VAR_TO_NUM(next->op1.var)] = ssa_vars_count;
637
0
          ssa_vars_count++;
638
          //NEW_SSA_VAR(next->op1.var)
639
0
        }
640
0
      }
641
0
      break;
642
0
    case ZEND_ASSIGN_STATIC_PROP_REF:
643
0
      next = opline + 1;
644
0
      if (next->op1_type & (IS_CV|IS_VAR|IS_TMP_VAR)) {
645
0
        ssa_ops[k + 1].op1_use = var[EX_VAR_TO_NUM(next->op1.var)];
646
        //USE_SSA_VAR(op_array->last_var + next->op1.var);
647
0
        if (next->op1_type == IS_CV) {
648
0
          ssa_ops[k + 1].op1_def = ssa_vars_count;
649
0
          var[EX_VAR_TO_NUM(next->op1.var)] = ssa_vars_count;
650
0
          ssa_vars_count++;
651
          //NEW_SSA_VAR(next->op1.var)
652
0
        }
653
0
      }
654
0
      break;
655
0
    case ZEND_ASSIGN_STATIC_PROP_OP:
656
0
      next = opline + 1;
657
0
      if (next->op1_type & (IS_CV|IS_VAR|IS_TMP_VAR)) {
658
0
        ssa_ops[k + 1].op1_use = var[EX_VAR_TO_NUM(next->op1.var)];
659
        //USE_SSA_VAR(op_array->last_var + next->op1.var);
660
0
      }
661
0
      break;
662
0
    case ZEND_ASSIGN_DIM_OP:
663
4
    case ZEND_ASSIGN_OBJ_OP:
664
4
      if (opline->op1_type == IS_CV) {
665
4
        ssa_ops[k].op1_def = ssa_vars_count;
666
4
        var[EX_VAR_TO_NUM(opline->op1.var)] = ssa_vars_count;
667
4
        ssa_vars_count++;
668
        //NEW_SSA_VAR(opline->op1.var)
669
4
      }
670
4
      next = opline + 1;
671
4
      if (next->op1_type & (IS_CV|IS_VAR|IS_TMP_VAR)) {
672
4
        ssa_ops[k + 1].op1_use = var[EX_VAR_TO_NUM(next->op1.var)];
673
        //USE_SSA_VAR(op_array->last_var + next->op1.var);
674
4
      }
675
4
      break;
676
159
    case ZEND_ASSIGN_OP:
677
223
    case ZEND_PRE_INC:
678
223
    case ZEND_PRE_DEC:
679
305
    case ZEND_POST_INC:
680
337
    case ZEND_POST_DEC:
681
337
    case ZEND_BIND_GLOBAL:
682
374
    case ZEND_BIND_STATIC:
683
374
    case ZEND_BIND_INIT_STATIC_OR_JMP:
684
374
    case ZEND_SEND_VAR_NO_REF:
685
374
    case ZEND_SEND_VAR_NO_REF_EX:
686
398
    case ZEND_SEND_VAR_EX:
687
402
    case ZEND_SEND_FUNC_ARG:
688
404
    case ZEND_SEND_REF:
689
404
    case ZEND_SEND_UNPACK:
690
404
    case ZEND_FE_RESET_RW:
691
404
    case ZEND_MAKE_REF:
692
404
    case ZEND_PRE_INC_OBJ:
693
404
    case ZEND_PRE_DEC_OBJ:
694
404
    case ZEND_POST_INC_OBJ:
695
404
    case ZEND_POST_DEC_OBJ:
696
428
    case ZEND_UNSET_DIM:
697
428
    case ZEND_UNSET_OBJ:
698
454
    case ZEND_FETCH_DIM_W:
699
454
    case ZEND_FETCH_DIM_RW:
700
458
    case ZEND_FETCH_DIM_FUNC_ARG:
701
458
    case ZEND_FETCH_DIM_UNSET:
702
458
    case ZEND_FETCH_LIST_W:
703
458
      if (opline->op1_type == IS_CV) {
704
454
        goto add_op1_def;
705
454
      }
706
4
      break;
707
138
    case ZEND_SEND_VAR:
708
162
    case ZEND_CAST:
709
578
    case ZEND_QM_ASSIGN:
710
726
    case ZEND_JMP_SET:
711
812
    case ZEND_COALESCE:
712
833
    case ZEND_FE_RESET_R:
713
833
      if ((build_flags & ZEND_SSA_RC_INFERENCE) && opline->op1_type == IS_CV) {
714
0
        goto add_op1_def;
715
0
      }
716
833
      break;
717
833
    case ZEND_ADD_ARRAY_UNPACK:
718
0
      ssa_ops[k].result_use = var[EX_VAR_TO_NUM(opline->result.var)];
719
0
      break;
720
194
    case ZEND_ADD_ARRAY_ELEMENT:
721
194
      ssa_ops[k].result_use = var[EX_VAR_TO_NUM(opline->result.var)];
722
194
      ZEND_FALLTHROUGH;
723
210
    case ZEND_INIT_ARRAY:
724
210
      if (((build_flags & ZEND_SSA_RC_INFERENCE)
725
210
            || (opline->extended_value & ZEND_ARRAY_ELEMENT_REF))
726
0
          && opline->op1_type == IS_CV) {
727
0
        goto add_op1_def;
728
0
      }
729
210
      break;
730
210
    case ZEND_YIELD:
731
0
      if (opline->op1_type == IS_CV
732
0
          && ((op_array->fn_flags & ZEND_ACC_RETURN_REFERENCE)
733
0
            || (build_flags & ZEND_SSA_RC_INFERENCE))) {
734
0
        goto add_op1_def;
735
0
      }
736
0
      break;
737
0
    case ZEND_UNSET_CV:
738
0
      goto add_op1_def;
739
0
    case ZEND_VERIFY_RETURN_TYPE:
740
0
      if (opline->op1_type & (IS_TMP_VAR|IS_VAR|IS_CV)) {
741
0
        goto add_op1_def;
742
0
      }
743
0
      break;
744
21
    case ZEND_FE_FETCH_R:
745
21
    case ZEND_FE_FETCH_RW:
746
21
      if (opline->op2_type != IS_CV) {
747
0
        ssa_ops[k].op2_use = -1; /* not used */
748
0
      }
749
21
      ssa_ops[k].op2_def = ssa_vars_count;
750
21
      var[EX_VAR_TO_NUM(opline->op2.var)] = ssa_vars_count;
751
21
      ssa_vars_count++;
752
      //NEW_SSA_VAR(opline->op2.var)
753
21
      break;
754
37
    case ZEND_BIND_LEXICAL:
755
37
      if ((opline->extended_value & ZEND_BIND_REF) || (build_flags & ZEND_SSA_RC_INFERENCE)) {
756
0
        ssa_ops[k].op2_def = ssa_vars_count;
757
0
        var[EX_VAR_TO_NUM(opline->op2.var)] = ssa_vars_count;
758
0
        ssa_vars_count++;
759
        //NEW_SSA_VAR(opline->op2.var)
760
0
      }
761
37
      break;
762
0
    case ZEND_COPY_TMP:
763
0
      if (build_flags & ZEND_SSA_RC_INFERENCE) {
764
0
        ssa_ops[k].op1_def = ssa_vars_count;
765
0
        var[EX_VAR_TO_NUM(opline->op1.var)] = ssa_vars_count;
766
0
        ssa_vars_count++;
767
        //NEW_SSA_VAR(opline->op1.var)
768
0
      }
769
0
      break;
770
0
    case ZEND_FRAMELESS_ICALL_1:
771
0
    case ZEND_FRAMELESS_ICALL_2:
772
0
    case ZEND_FRAMELESS_ICALL_3: {
773
0
      if ((build_flags & ZEND_SSA_RC_INFERENCE) && opline->op1_type == IS_CV) {
774
0
        ssa_ops[k].op1_def = ssa_vars_count;
775
0
        var[EX_VAR_TO_NUM(opline->op1.var)] = ssa_vars_count;
776
0
        ssa_vars_count++;
777
        //NEW_SSA_VAR(opline->op1.var)
778
0
      }
779
0
      if ((build_flags & ZEND_SSA_RC_INFERENCE) && opline->op2_type == IS_CV) {
780
0
        ssa_ops[k].op2_def = ssa_vars_count;
781
0
        var[EX_VAR_TO_NUM(opline->op2.var)] = ssa_vars_count;
782
0
        ssa_vars_count++;
783
        //NEW_SSA_VAR(opline->op2.var)
784
0
      }
785
0
      if (opline->opcode == ZEND_FRAMELESS_ICALL_3) {
786
0
        next = opline + 1;
787
0
        if (next->op1_type & (IS_CV|IS_VAR|IS_TMP_VAR)) {
788
0
          ssa_ops[k + 1].op1_use = var[EX_VAR_TO_NUM(next->op1.var)];
789
          //USE_SSA_VAR(op_array->last_var + next->op1.var);
790
0
          if ((build_flags & ZEND_SSA_RC_INFERENCE) && next->op1_type == IS_CV) {
791
0
            ssa_ops[k + 1].op1_def = ssa_vars_count;
792
0
            var[EX_VAR_TO_NUM(next->op1.var)] = ssa_vars_count;
793
0
            ssa_vars_count++;
794
            //NEW_SSA_VAR(next->op1.var)
795
0
          }
796
0
        }
797
0
      }
798
0
    }
799
22.5k
    default:
800
22.5k
      break;
801
24.9k
  }
802
803
24.9k
  if (opline->result_type & (IS_CV|IS_VAR|IS_TMP_VAR)) {
804
19.0k
    ssa_ops[k].result_def = ssa_vars_count;
805
19.0k
    var[EX_VAR_TO_NUM(opline->result.var)] = ssa_vars_count;
806
19.0k
    ssa_vars_count++;
807
    //NEW_SSA_VAR(op_array->last_var + opline->result.var)
808
19.0k
  }
809
810
24.9k
  return ssa_vars_count;
811
24.9k
}
812
/* }}} */
813
814
ZEND_API int zend_ssa_rename_op(const zend_op_array *op_array, const zend_op *opline, uint32_t k, uint32_t build_flags, int ssa_vars_count, zend_ssa_op *ssa_ops, int *var) /* {{{ */
815
0
{
816
0
  return _zend_ssa_rename_op(op_array, opline, k, build_flags, ssa_vars_count, ssa_ops, var);
817
0
}
818
/* }}} */
819
820
static void zend_ssa_rename_in_block(const zend_op_array *op_array, uint32_t build_flags, zend_ssa *ssa, int *var, int n) /* {{{ */
821
4.69k
{
822
4.69k
  const zend_basic_block *blocks = ssa->cfg.blocks;
823
4.69k
  const zend_ssa_block *ssa_blocks = ssa->blocks;
824
4.69k
  zend_ssa_op *ssa_ops = ssa->ops;
825
4.69k
  int ssa_vars_count = ssa->vars_count;
826
4.69k
  int i, j;
827
4.69k
  const zend_op *opline, *end;
828
829
4.69k
  if (ssa_blocks[n].phis) {
830
3.86k
    zend_ssa_phi *phi = ssa_blocks[n].phis;
831
5.96k
    do {
832
5.96k
      if (phi->ssa_var < 0) {
833
4.16k
        phi->ssa_var = ssa_vars_count;
834
4.16k
        var[phi->var] = ssa_vars_count;
835
4.16k
        ssa_vars_count++;
836
4.16k
      } else {
837
1.80k
        var[phi->var] = phi->ssa_var;
838
1.80k
      }
839
5.96k
      phi = phi->next;
840
5.96k
    } while (phi);
841
3.86k
  }
842
843
4.69k
  opline = op_array->opcodes + blocks[n].start;
844
4.69k
  end = opline + blocks[n].len;
845
29.6k
  for (; opline < end; opline++) {
846
25.0k
    uint32_t k = opline - op_array->opcodes;
847
25.0k
    if (opline->opcode != ZEND_OP_DATA) {
848
24.9k
      ssa_vars_count = _zend_ssa_rename_op(op_array, opline, k, build_flags, ssa_vars_count, ssa_ops, var);
849
24.9k
    }
850
25.0k
  }
851
852
4.69k
  const zend_ssa_op *fe_fetch_ssa_op = blocks[n].len != 0
853
4.69k
      && ((end-1)->opcode == ZEND_FE_FETCH_R || (end-1)->opcode == ZEND_FE_FETCH_RW)
854
21
      && (end-1)->op2_type == IS_CV
855
4.69k
    ? &ssa_ops[blocks[n].start + blocks[n].len - 1] : NULL;
856
11.3k
  for (i = 0; i < blocks[n].successors_count; i++) {
857
6.66k
    int succ = blocks[n].successors[i];
858
6.66k
    zend_ssa_phi *p;
859
16.7k
    for (p = ssa_blocks[succ].phis; p; p = p->next) {
860
10.1k
      if (p->pi == n) {
861
        /* e-SSA Pi */
862
1.81k
        if (p->has_range_constraint) {
863
215
          if (p->constraint.range.min_var >= 0) {
864
96
            p->constraint.range.min_ssa_var = var[p->constraint.range.min_var];
865
96
          }
866
215
          if (p->constraint.range.max_var >= 0) {
867
96
            p->constraint.range.max_ssa_var = var[p->constraint.range.max_var];
868
96
          }
869
215
        }
870
3.63k
        for (j = 0; j < blocks[succ].predecessors_count; j++) {
871
1.82k
          p->sources[j] = var[p->var];
872
1.82k
        }
873
1.81k
        if (p->ssa_var < 0) {
874
1.80k
          p->ssa_var = ssa_vars_count;
875
1.80k
          ssa_vars_count++;
876
1.80k
        }
877
8.32k
      } else if (p->pi < 0) {
878
        /* Normal Phi */
879
12.4k
        for (j = 0; j < blocks[succ].predecessors_count; j++)
880
12.4k
          if (ssa->cfg.predecessors[blocks[succ].predecessor_offset + j] == n) {
881
8.31k
            break;
882
8.31k
          }
883
8.31k
        ZEND_ASSERT(j < blocks[succ].predecessors_count);
884
8.31k
        p->sources[j] = var[p->var];
885
8.31k
        if (fe_fetch_ssa_op && i == 0 && p->sources[j] == fe_fetch_ssa_op->op2_def) {
886
          /* On the exit edge of an FE_FETCH, use the pre-modification value instead. */
887
13
          p->sources[j] = fe_fetch_ssa_op->op2_use;
888
13
        }
889
8.31k
      }
890
10.1k
    }
891
8.48k
    for (p = ssa_blocks[succ].phis; p && (p->pi >= 0); p = p->next) {
892
1.82k
      if (p->pi == n) {
893
1.81k
        zend_ssa_phi *q = p->next;
894
1.86k
        while (q) {
895
57
          if (q->pi < 0 && q->var == p->var) {
896
18
            for (j = 0; j < blocks[succ].predecessors_count; j++) {
897
18
              if (ssa->cfg.predecessors[blocks[succ].predecessor_offset + j] == n) {
898
9
                break;
899
9
              }
900
18
            }
901
9
            ZEND_ASSERT(j < blocks[succ].predecessors_count);
902
9
            q->sources[j] = p->ssa_var;
903
9
          }
904
57
          q = q->next;
905
57
        }
906
1.81k
      }
907
1.82k
    }
908
6.66k
  }
909
910
4.69k
  ssa->vars_count = ssa_vars_count;
911
4.69k
}
912
/* }}} */
913
914
static zend_result zend_ssa_rename(const zend_op_array *op_array, uint32_t build_flags, zend_ssa *ssa, int *var, int n)
915
191
{
916
  /* The worklist contains block numbers, encoded as positive or negative value.
917
   * Positive values indicate that the variable rename still needs to happen for the block.
918
   * Negative values indicate the variable rename was done and all children were handled too.
919
   * In that case, we will clean up.
920
   * Because block 0 is valid, we bias the block numbers by adding 1 such that we can distinguish
921
   * positive and negative values in all cases. */
922
191
  zend_worklist_stack work;
923
191
  ALLOCA_FLAG(work_use_heap);
924
191
  ZEND_WORKLIST_STACK_ALLOCA(&work, ssa->cfg.blocks_count, work_use_heap);
925
191
  zend_worklist_stack_push(&work, n + 1);
926
927
  /* This is used to backtrack the right version of the renamed variables to use. */
928
191
  ALLOCA_FLAG(save_vars_use_heap);
929
191
  unsigned int save_vars_top = 0;
930
191
  int **save_vars = do_alloca(sizeof(int *) * (ssa->cfg.blocks_count + 1), save_vars_use_heap);
931
191
  save_vars[0] = var;
932
933
7.19k
  while (work.len) {
934
7.00k
    n = zend_worklist_stack_pop(&work);
935
936
    /* Enter state: perform SSA variable rename */
937
7.00k
    if (n > 0) {
938
4.69k
      n--;
939
940
      // FIXME: Can we optimize this copying out in some cases?
941
4.69k
      int *new_var;
942
4.69k
      if (ssa->cfg.blocks[n].next_child >= 0) {
943
2.19k
        new_var = emalloc(sizeof(int) * (op_array->last_var + op_array->T));
944
2.19k
        memcpy(new_var, save_vars[save_vars_top], sizeof(int) * (op_array->last_var + op_array->T));
945
2.19k
        save_vars[++save_vars_top] = new_var;
946
2.50k
      } else {
947
2.50k
        new_var = save_vars[save_vars_top];
948
2.50k
      }
949
950
4.69k
      zend_ssa_rename_in_block(op_array, build_flags, ssa, new_var, n);
951
952
4.69k
      int j = ssa->cfg.blocks[n].children;
953
4.69k
      if (j >= 0) {
954
        /* Push backtrack state */
955
2.31k
        zend_worklist_stack_push(&work, -(n + 1));
956
957
        /* Push children in enter state */
958
2.31k
        unsigned int child_count = 0;
959
2.31k
        int len_prior = work.len;
960
4.50k
        do {
961
4.50k
          zend_worklist_stack_push(&work, j + 1);
962
4.50k
          j = ssa->cfg.blocks[j].next_child;
963
4.50k
          child_count++;
964
4.50k
        } while (j >= 0);
965
966
        /* Reverse block order to maintain SSA variable number order given in previous PHP versions,
967
         * but the data structure doesn't allow reverse dominator tree traversal. */
968
4.42k
        for (unsigned int i = 0; i < child_count / 2; i++) {
969
2.11k
          int tmp = work.buf[len_prior + i];
970
2.11k
          work.buf[len_prior + i] = work.buf[work.len - 1 - i];
971
2.11k
          work.buf[work.len - 1 - i] = tmp;
972
2.11k
        }
973
2.38k
      } else {
974
        /* Leafs jump directly to backtracking */
975
2.38k
        goto backtrack;
976
2.38k
      }
977
4.69k
    }
978
    /* Leave state: backtrack */
979
2.31k
    else {
980
2.31k
      n = -n;
981
2.31k
      n--;
982
4.69k
backtrack:;
983
4.69k
      if (ssa->cfg.blocks[n].next_child >= 0) {
984
2.19k
        efree(save_vars[save_vars_top]);
985
2.19k
        save_vars_top--;
986
2.19k
      }
987
4.69k
    }
988
7.00k
  }
989
990
191
  free_alloca(save_vars, save_vars_use_heap);
991
191
  ZEND_WORKLIST_STACK_FREE_ALLOCA(&work, work_use_heap);
992
993
191
  return SUCCESS;
994
191
}
995
996
ZEND_API zend_result zend_build_ssa(zend_arena **arena, const zend_script *script, const zend_op_array *op_array, uint32_t build_flags, zend_ssa *ssa) /* {{{ */
997
191
{
998
191
  const zend_basic_block *blocks = ssa->cfg.blocks;
999
191
  zend_ssa_block *ssa_blocks;
1000
191
  int blocks_count = ssa->cfg.blocks_count;
1001
191
  uint32_t set_size;
1002
191
  zend_bitset def, in, phi;
1003
191
  int *var = NULL;
1004
191
  int i, j, k, changed;
1005
191
  zend_dfg dfg;
1006
191
  ALLOCA_FLAG(dfg_use_heap)
1007
191
  ALLOCA_FLAG(var_use_heap)
1008
1009
191
  if ((blocks_count * (op_array->last_var + op_array->T)) > 4 * 1024 * 1024) {
1010
      /* Don't build SSA for very big functions */
1011
0
    return FAILURE;
1012
0
  }
1013
1014
191
  ssa_blocks = zend_arena_calloc(arena, blocks_count, sizeof(zend_ssa_block));
1015
191
  ssa->blocks = ssa_blocks;
1016
1017
  /* Compute Variable Liveness */
1018
191
  dfg.vars = op_array->last_var + op_array->T;
1019
191
  dfg.size = set_size = zend_bitset_len(dfg.vars);
1020
191
  dfg.tmp = do_alloca((set_size * sizeof(zend_ulong)) * (blocks_count * 4 + 1), dfg_use_heap);
1021
191
  memset(dfg.tmp, 0, (set_size * sizeof(zend_ulong)) * (blocks_count * 4 + 1));
1022
191
  dfg.def = dfg.tmp + set_size;
1023
191
  dfg.use = dfg.def + set_size * blocks_count;
1024
191
  dfg.in  = dfg.use + set_size * blocks_count;
1025
191
  dfg.out = dfg.in  + set_size * blocks_count;
1026
1027
191
  zend_build_dfg(op_array, &ssa->cfg, &dfg, build_flags);
1028
1029
191
  if (build_flags & ZEND_SSA_DEBUG_LIVENESS) {
1030
0
    zend_dump_dfg(op_array, &ssa->cfg, &dfg);
1031
0
  }
1032
1033
191
  def = dfg.def;
1034
191
  in  = dfg.in;
1035
1036
  /* Reuse the "use" set, as we no longer need it */
1037
191
  phi = dfg.use;
1038
191
  zend_bitset_clear(phi, set_size * blocks_count);
1039
1040
  /* Place e-SSA pis. This will add additional "def" points, so it must
1041
   * happen before def propagation. */
1042
191
  place_essa_pis(arena, script, op_array, build_flags, ssa, &dfg);
1043
1044
  /* SSA construction, Step 1: Propagate "def" sets in merge points */
1045
234
  do {
1046
234
    changed = 0;
1047
9.47k
    for (j = 0; j < blocks_count; j++) {
1048
9.24k
      zend_bitset def_j = def + j * set_size, phi_j = phi + j * set_size;
1049
9.24k
      if ((blocks[j].flags & ZEND_BB_REACHABLE) == 0) {
1050
0
        continue;
1051
0
      }
1052
9.24k
      if (blocks[j].predecessors_count > 1) {
1053
4.28k
        if (blocks[j].flags & ZEND_BB_IRREDUCIBLE_LOOP) {
1054
          /* Prevent any values from flowing into irreducible loops by
1055
             replacing all incoming values with explicit phis.  The
1056
             register allocator depends on this property.  */
1057
0
          zend_bitset_union(phi_j, in + (j * set_size), set_size);
1058
4.28k
        } else {
1059
12.8k
          for (k = 0; k < blocks[j].predecessors_count; k++) {
1060
8.59k
            i = ssa->cfg.predecessors[blocks[j].predecessor_offset + k];
1061
14.9k
            while (i != -1 && i != blocks[j].idom) {
1062
6.40k
              zend_bitset_union_with_intersection(
1063
6.40k
                phi_j, phi_j, def + (i * set_size), in + (j * set_size), set_size);
1064
6.40k
              i = blocks[i].idom;
1065
6.40k
            }
1066
8.59k
          }
1067
4.28k
        }
1068
4.28k
        if (!zend_bitset_subset(phi_j, def_j, set_size)) {
1069
2.08k
          zend_bitset_union(def_j, phi_j, set_size);
1070
2.08k
          changed = 1;
1071
2.08k
        }
1072
4.28k
      }
1073
9.24k
    }
1074
234
  } while (changed);
1075
1076
  /* SSA construction, Step 2: Phi placement based on Dominance Frontiers */
1077
191
  var = do_alloca(sizeof(int) * (op_array->last_var + op_array->T), var_use_heap);
1078
191
  if (!var) {
1079
0
    free_alloca(dfg.tmp, dfg_use_heap);
1080
0
    return FAILURE;
1081
0
  }
1082
1083
4.88k
  for (j = 0; j < blocks_count; j++) {
1084
4.69k
    if ((blocks[j].flags & ZEND_BB_REACHABLE) == 0) {
1085
0
      continue;
1086
0
    }
1087
4.69k
    if (!zend_bitset_empty(phi + j * set_size, set_size)) {
1088
201k
      ZEND_BITSET_REVERSE_FOREACH(phi + j * set_size, set_size, i) {
1089
4.15k
        zend_ssa_phi *phi = zend_arena_calloc(arena, 1,
1090
4.15k
          ZEND_MM_ALIGNED_SIZE(sizeof(zend_ssa_phi)) +
1091
4.15k
          ZEND_MM_ALIGNED_SIZE(sizeof(int) * blocks[j].predecessors_count) +
1092
4.15k
          sizeof(void*) * blocks[j].predecessors_count);
1093
1094
4.15k
        phi->sources = (int*)(((char*)phi) + ZEND_MM_ALIGNED_SIZE(sizeof(zend_ssa_phi)));
1095
4.15k
        memset(phi->sources, 0xff, sizeof(int) * blocks[j].predecessors_count);
1096
4.15k
        phi->use_chains = (zend_ssa_phi**)(((char*)phi->sources) + ZEND_MM_ALIGNED_SIZE(sizeof(int) * ssa->cfg.blocks[j].predecessors_count));
1097
1098
4.15k
        phi->pi = -1;
1099
4.15k
        phi->var = i;
1100
4.15k
        phi->ssa_var = -1;
1101
1102
        /* Place phis after pis */
1103
4.15k
        {
1104
4.15k
          zend_ssa_phi **pp = &ssa_blocks[j].phis;
1105
4.16k
          while (*pp) {
1106
2.05k
            if ((*pp)->pi < 0) {
1107
2.04k
              break;
1108
2.04k
            }
1109
9
            pp = &(*pp)->next;
1110
9
          }
1111
4.15k
          phi->next = *pp;
1112
4.15k
          *pp = phi;
1113
4.15k
        }
1114
4.15k
      } ZEND_BITSET_FOREACH_END();
1115
2.11k
    }
1116
4.69k
  }
1117
1118
191
  if (build_flags & ZEND_SSA_DEBUG_PHI_PLACEMENT) {
1119
0
    zend_dump_phi_placement(op_array, ssa);
1120
0
  }
1121
1122
  /* SSA construction, Step 3: Renaming */
1123
191
  ssa->ops = zend_arena_calloc(arena, op_array->last, sizeof(zend_ssa_op));
1124
191
  memset(ssa->ops, 0xff, op_array->last * sizeof(zend_ssa_op));
1125
191
  memset(var + op_array->last_var, 0xff, op_array->T * sizeof(int));
1126
  /* Create uninitialized SSA variables for each CV */
1127
966
  for (j = 0; j < op_array->last_var; j++) {
1128
775
    var[j] = j;
1129
775
  }
1130
191
  ssa->vars_count = op_array->last_var;
1131
191
  if (zend_ssa_rename(op_array, build_flags, ssa, var, 0) == FAILURE) {
1132
0
    free_alloca(var, var_use_heap);
1133
0
    free_alloca(dfg.tmp, dfg_use_heap);
1134
0
    return FAILURE;
1135
0
  }
1136
1137
191
  free_alloca(var, var_use_heap);
1138
191
  free_alloca(dfg.tmp, dfg_use_heap);
1139
1140
191
  return SUCCESS;
1141
191
}
1142
/* }}} */
1143
1144
ZEND_API void zend_ssa_compute_use_def_chains(zend_arena **arena, const zend_op_array *op_array, zend_ssa *ssa) /* {{{ */
1145
191
{
1146
191
  zend_ssa_var *ssa_vars;
1147
191
  int i;
1148
1149
191
  if (!ssa->vars) {
1150
191
    ssa->vars = zend_arena_calloc(arena, ssa->vars_count, sizeof(zend_ssa_var));
1151
191
  }
1152
191
  ssa_vars = ssa->vars;
1153
1154
966
  for (i = 0; i < op_array->last_var; i++) {
1155
775
    ssa_vars[i].var = i;
1156
775
    ssa_vars[i].scc = -1;
1157
775
    ssa_vars[i].definition = -1;
1158
775
    ssa_vars[i].use_chain = -1;
1159
775
  }
1160
26.5k
  for (i = op_array->last_var; i < ssa->vars_count; i++) {
1161
26.3k
    ssa_vars[i].var = -1;
1162
26.3k
    ssa_vars[i].scc = -1;
1163
26.3k
    ssa_vars[i].definition = -1;
1164
26.3k
    ssa_vars[i].use_chain = -1;
1165
26.3k
  }
1166
1167
25.1k
  for (i = op_array->last - 1; i >= 0; i--) {
1168
25.0k
    zend_ssa_op *op = ssa->ops + i;
1169
1170
25.0k
    if (op->op1_use >= 0) {
1171
19.7k
      op->op1_use_chain = ssa_vars[op->op1_use].use_chain;
1172
19.7k
      ssa_vars[op->op1_use].use_chain = i;
1173
19.7k
    }
1174
25.0k
    if (op->op2_use >= 0 && op->op2_use != op->op1_use) {
1175
6.14k
      op->op2_use_chain = ssa_vars[op->op2_use].use_chain;
1176
6.14k
      ssa_vars[op->op2_use].use_chain = i;
1177
6.14k
    }
1178
25.0k
    if (op->result_use >= 0 && op->result_use != op->op1_use && op->result_use != op->op2_use) {
1179
194
      op->res_use_chain = ssa_vars[op->result_use].use_chain;
1180
194
      ssa_vars[op->result_use].use_chain = i;
1181
194
    }
1182
25.0k
    if (op->op1_def >= 0) {
1183
1.24k
      ssa_vars[op->op1_def].var = EX_VAR_TO_NUM(op_array->opcodes[i].op1.var);
1184
1.24k
      ssa_vars[op->op1_def].definition = i;
1185
1.24k
    }
1186
25.0k
    if (op->op2_def >= 0) {
1187
24
      ssa_vars[op->op2_def].var = EX_VAR_TO_NUM(op_array->opcodes[i].op2.var);
1188
24
      ssa_vars[op->op2_def].definition = i;
1189
24
    }
1190
25.0k
    if (op->result_def >= 0) {
1191
19.0k
      ssa_vars[op->result_def].var = EX_VAR_TO_NUM(op_array->opcodes[i].result.var);
1192
19.0k
      ssa_vars[op->result_def].definition = i;
1193
19.0k
    }
1194
25.0k
  }
1195
1196
4.88k
  for (i = 0; i < ssa->cfg.blocks_count; i++) {
1197
4.69k
    zend_ssa_phi *phi = ssa->blocks[i].phis;
1198
10.6k
    while (phi) {
1199
5.96k
      phi->block = i;
1200
5.96k
      ssa_vars[phi->ssa_var].var = phi->var;
1201
5.96k
      ssa_vars[phi->ssa_var].definition_phi = phi;
1202
5.96k
      if (phi->pi >= 0) {
1203
1.81k
        zend_ssa_phi *p;
1204
1205
1.81k
        ZEND_ASSERT(phi->sources[0] >= 0);
1206
1.81k
        p = ssa_vars[phi->sources[0]].phi_use_chain;
1207
1.90k
        while (p && p != phi) {
1208
96
          p = zend_ssa_next_use_phi(ssa, phi->sources[0], p);
1209
96
        }
1210
1.81k
        if (!p) {
1211
1.81k
          phi->use_chains[0] = ssa_vars[phi->sources[0]].phi_use_chain;
1212
1.81k
          ssa_vars[phi->sources[0]].phi_use_chain = phi;
1213
1.81k
        }
1214
1.81k
        if (phi->has_range_constraint) {
1215
          /* min and max variables can't be used together */
1216
215
          zend_ssa_range_constraint *constraint = &phi->constraint.range;
1217
215
          if (constraint->min_ssa_var >= 0) {
1218
96
            phi->sym_use_chain = ssa_vars[constraint->min_ssa_var].sym_use_chain;
1219
96
            ssa_vars[constraint->min_ssa_var].sym_use_chain = phi;
1220
119
          } else if (constraint->max_ssa_var >= 0) {
1221
0
            phi->sym_use_chain = ssa_vars[constraint->max_ssa_var].sym_use_chain;
1222
0
            ssa_vars[constraint->max_ssa_var].sym_use_chain = phi;
1223
0
          }
1224
215
        }
1225
4.15k
      } else {
1226
4.15k
        int j;
1227
1228
12.4k
        for (j = 0; j < ssa->cfg.blocks[i].predecessors_count; j++) {
1229
8.31k
          zend_ssa_phi *p;
1230
1231
8.31k
          ZEND_ASSERT(phi->sources[j] >= 0);
1232
8.31k
          p = ssa_vars[phi->sources[j]].phi_use_chain;
1233
9.98k
          while (p && p != phi) {
1234
1.66k
            p = zend_ssa_next_use_phi(ssa, phi->sources[j], p);
1235
1.66k
          }
1236
8.31k
          if (!p) {
1237
8.31k
            phi->use_chains[j] = ssa_vars[phi->sources[j]].phi_use_chain;
1238
8.31k
            ssa_vars[phi->sources[j]].phi_use_chain = phi;
1239
8.31k
          }
1240
8.31k
        }
1241
4.15k
      }
1242
5.96k
      phi = phi->next;
1243
5.96k
    }
1244
4.69k
  }
1245
1246
  /* Mark indirectly accessed variables */
1247
966
  for (i = 0; i < op_array->last_var; i++) {
1248
775
    if ((ssa->cfg.flags & ZEND_FUNC_INDIRECT_VAR_ACCESS)) {
1249
0
      ssa_vars[i].alias = SYMTABLE_ALIAS;
1250
775
    } else if (zend_string_equals_literal(op_array->vars[i], "http_response_header")) {
1251
0
      ssa_vars[i].alias = HTTP_RESPONSE_HEADER_ALIAS;
1252
0
    }
1253
775
  }
1254
26.5k
  for (i = op_array->last_var; i < ssa->vars_count; i++) {
1255
26.3k
    if (ssa_vars[i].var < op_array->last_var) {
1256
5.35k
      ssa_vars[i].alias = ssa_vars[ssa_vars[i].var].alias;
1257
5.35k
    }
1258
26.3k
  }
1259
191
}
1260
/* }}} */
1261
1262
void zend_ssa_unlink_use_chain(const zend_ssa *ssa, int op, int var) /* {{{ */
1263
1.27k
{
1264
1.27k
  if (ssa->vars[var].use_chain == op) {
1265
979
    ssa->vars[var].use_chain = zend_ssa_next_use(ssa->ops, var, op);
1266
979
    return;
1267
979
  }
1268
293
  int use = ssa->vars[var].use_chain;
1269
1270
567
  while (use >= 0) {
1271
567
    if (ssa->ops[use].result_use == var) {
1272
8
      if (ssa->ops[use].res_use_chain == op) {
1273
8
        ssa->ops[use].res_use_chain = zend_ssa_next_use(ssa->ops, var, op);
1274
8
        return;
1275
8
      } else {
1276
0
        use = ssa->ops[use].res_use_chain;
1277
0
      }
1278
559
    } else if (ssa->ops[use].op1_use == var) {
1279
319
      if (ssa->ops[use].op1_use_chain == op) {
1280
155
        ssa->ops[use].op1_use_chain = zend_ssa_next_use(ssa->ops, var, op);
1281
155
        return;
1282
164
      } else {
1283
164
        use = ssa->ops[use].op1_use_chain;
1284
164
      }
1285
319
    } else if (ssa->ops[use].op2_use == var) {
1286
240
      if (ssa->ops[use].op2_use_chain == op) {
1287
130
        ssa->ops[use].op2_use_chain = zend_ssa_next_use(ssa->ops, var, op);
1288
130
        return;
1289
130
      } else {
1290
110
        use = ssa->ops[use].op2_use_chain;
1291
110
      }
1292
240
    } else {
1293
0
      break;
1294
0
    }
1295
567
  }
1296
  /* something wrong */
1297
0
  ZEND_UNREACHABLE();
1298
0
}
1299
/* }}} */
1300
1301
void zend_ssa_replace_use_chain(const zend_ssa *ssa, int op, int new_op, int var) /* {{{ */
1302
0
{
1303
0
  if (ssa->vars[var].use_chain == op) {
1304
0
    ssa->vars[var].use_chain = new_op;
1305
0
    return;
1306
0
  } else {
1307
0
    int use = ssa->vars[var].use_chain;
1308
1309
0
    while (use >= 0) {
1310
0
      if (ssa->ops[use].result_use == var) {
1311
0
        if (ssa->ops[use].res_use_chain == op) {
1312
0
          ssa->ops[use].res_use_chain = new_op;
1313
0
          return;
1314
0
        } else {
1315
0
          use = ssa->ops[use].res_use_chain;
1316
0
        }
1317
0
      } else if (ssa->ops[use].op1_use == var) {
1318
0
        if (ssa->ops[use].op1_use_chain == op) {
1319
0
          ssa->ops[use].op1_use_chain = new_op;
1320
0
          return;
1321
0
        } else {
1322
0
          use = ssa->ops[use].op1_use_chain;
1323
0
        }
1324
0
      } else if (ssa->ops[use].op2_use == var) {
1325
0
        if (ssa->ops[use].op2_use_chain == op) {
1326
0
          ssa->ops[use].op2_use_chain = new_op;
1327
0
          return;
1328
0
        } else {
1329
0
          use = ssa->ops[use].op2_use_chain;
1330
0
        }
1331
0
      } else {
1332
0
        break;
1333
0
      }
1334
0
    }
1335
0
  }
1336
  /* something wrong */
1337
0
  ZEND_UNREACHABLE();
1338
0
}
1339
/* }}} */
1340
1341
void zend_ssa_remove_instr(const zend_ssa *ssa, zend_op *opline, zend_ssa_op *ssa_op) /* {{{ */
1342
1.02k
{
1343
1.02k
  if (ssa_op->result_use >= 0) {
1344
17
    zend_ssa_unlink_use_chain(ssa, ssa_op - ssa->ops, ssa_op->result_use);
1345
17
    ssa_op->result_use = -1;
1346
17
    ssa_op->res_use_chain = -1;
1347
17
  }
1348
1.02k
  if (ssa_op->op1_use >= 0) {
1349
632
    if (ssa_op->op1_use != ssa_op->op2_use) {
1350
628
      zend_ssa_unlink_use_chain(ssa, ssa_op - ssa->ops, ssa_op->op1_use);
1351
628
    } else {
1352
4
      ssa_op->op2_use_chain = ssa_op->op1_use_chain;
1353
4
    }
1354
632
    ssa_op->op1_use = -1;
1355
632
    ssa_op->op1_use_chain = -1;
1356
632
  }
1357
1.02k
  if (ssa_op->op2_use >= 0) {
1358
88
    zend_ssa_unlink_use_chain(ssa, ssa_op - ssa->ops, ssa_op->op2_use);
1359
88
    ssa_op->op2_use = -1;
1360
88
    ssa_op->op2_use_chain = -1;
1361
88
  }
1362
1363
  /* We let the caller make sure that all defs are gone */
1364
1.02k
  ZEND_ASSERT(ssa_op->result_def == -1);
1365
1.02k
  ZEND_ASSERT(ssa_op->op1_def == -1);
1366
1.02k
  ZEND_ASSERT(ssa_op->op2_def == -1);
1367
1368
1.02k
  MAKE_NOP(opline);
1369
1.02k
}
1370
/* }}} */
1371
1372
static inline zend_ssa_phi **zend_ssa_next_use_phi_ptr(const zend_ssa *ssa, int var, zend_ssa_phi *p) /* {{{ */
1373
48
{
1374
48
  if (p->pi >= 0) {
1375
18
    return &p->use_chains[0];
1376
30
  } else {
1377
30
    int j;
1378
54
    for (j = 0; j < ssa->cfg.blocks[p->block].predecessors_count; j++) {
1379
54
      if (p->sources[j] == var) {
1380
30
        return &p->use_chains[j];
1381
30
      }
1382
54
    }
1383
30
  }
1384
0
  ZEND_UNREACHABLE();
1385
0
  return NULL;
1386
0
}
1387
/* }}} */
1388
1389
/* May be called even if source is not used in the phi (useful when removing uses in a phi
1390
 * with multiple identical operands) */
1391
static inline void zend_ssa_remove_use_of_phi_source(const zend_ssa *ssa, const zend_ssa_phi *phi, int source, zend_ssa_phi *next_use_phi) /* {{{ */
1392
712
{
1393
712
  zend_ssa_phi **cur = &ssa->vars[source].phi_use_chain;
1394
760
  while (*cur && *cur != phi) {
1395
48
    cur = zend_ssa_next_use_phi_ptr(ssa, source, *cur);
1396
48
  }
1397
712
  if (*cur) {
1398
474
    *cur = next_use_phi;
1399
474
  }
1400
712
}
1401
/* }}} */
1402
1403
static void zend_ssa_remove_uses_of_phi_sources(const zend_ssa *ssa, zend_ssa_phi *phi) /* {{{ */
1404
363
{
1405
363
  int source;
1406
1.37k
  FOREACH_PHI_SOURCE(phi, source) {
1407
1.37k
    zend_ssa_remove_use_of_phi_source(ssa, phi, source, zend_ssa_next_use_phi(ssa, source, phi));
1408
1.37k
  } FOREACH_PHI_SOURCE_END();
1409
363
}
1410
/* }}} */
1411
1412
static void zend_ssa_remove_phi_from_block(const zend_ssa *ssa, const zend_ssa_phi *phi) /* {{{ */
1413
363
{
1414
363
  zend_ssa_block *block = &ssa->blocks[phi->block];
1415
363
  zend_ssa_phi **cur = &block->phis;
1416
581
  while (*cur != phi) {
1417
218
    ZEND_ASSERT(*cur != NULL);
1418
218
    cur = &(*cur)->next;
1419
218
  }
1420
363
  *cur = (*cur)->next;
1421
363
}
1422
/* }}} */
1423
1424
void zend_ssa_remove_defs_of_instr(zend_ssa *ssa, zend_ssa_op *ssa_op) /* {{{ */
1425
374
{
1426
374
  if (ssa_op->op1_def >= 0) {
1427
54
    zend_ssa_remove_uses_of_var(ssa, ssa_op->op1_def);
1428
54
    zend_ssa_remove_op1_def(ssa, ssa_op);
1429
54
  }
1430
374
  if (ssa_op->op2_def >= 0) {
1431
0
    zend_ssa_remove_uses_of_var(ssa, ssa_op->op2_def);
1432
0
    zend_ssa_remove_op2_def(ssa, ssa_op);
1433
0
  }
1434
374
  if (ssa_op->result_def >= 0) {
1435
242
    zend_ssa_remove_uses_of_var(ssa, ssa_op->result_def);
1436
242
    zend_ssa_remove_result_def(ssa, ssa_op);
1437
242
  }
1438
374
}
1439
/* }}} */
1440
1441
static inline void zend_ssa_remove_phi_source(const zend_ssa *ssa, const zend_ssa_phi *phi, int pred_offset, int predecessors_count) /* {{{ */
1442
206
{
1443
206
  int j, var_num = phi->sources[pred_offset];
1444
206
  zend_ssa_phi *next_phi = phi->use_chains[pred_offset];
1445
1446
206
  predecessors_count--;
1447
206
  if (pred_offset < predecessors_count) {
1448
86
    memmove(phi->sources + pred_offset, phi->sources + pred_offset + 1, (predecessors_count - pred_offset) * sizeof(uint32_t));
1449
86
    memmove(phi->use_chains + pred_offset, phi->use_chains + pred_offset + 1, (predecessors_count - pred_offset) * sizeof(zend_ssa_phi*));
1450
86
  }
1451
1452
  /* Check if they same var is used in a different phi operand as well, in this case we don't
1453
   * need to adjust the use chain (but may have to move the next pointer). */
1454
356
  for (j = 0; j < predecessors_count; j++) {
1455
150
    if (phi->sources[j] == var_num) {
1456
0
      if (j < pred_offset) {
1457
0
        ZEND_ASSERT(next_phi == NULL);
1458
0
      } else if (j >= pred_offset) {
1459
0
        phi->use_chains[j] = next_phi;
1460
0
      }
1461
0
      return;
1462
0
    }
1463
150
  }
1464
1465
  /* Variable only used in one operand, remove the phi from the use chain. */
1466
206
  zend_ssa_remove_use_of_phi_source(ssa, phi, var_num, next_phi);
1467
206
}
1468
/* }}} */
1469
1470
void zend_ssa_remove_phi(const zend_ssa *ssa, zend_ssa_phi *phi) /* {{{ */
1471
363
{
1472
363
  ZEND_ASSERT(phi->ssa_var >= 0);
1473
363
  ZEND_ASSERT(ssa->vars[phi->ssa_var].use_chain < 0
1474
363
    && ssa->vars[phi->ssa_var].phi_use_chain == NULL);
1475
363
  zend_ssa_remove_uses_of_phi_sources(ssa, phi);
1476
363
  zend_ssa_remove_phi_from_block(ssa, phi);
1477
363
  ssa->vars[phi->ssa_var].definition_phi = NULL;
1478
363
  phi->ssa_var = -1;
1479
363
}
1480
/* }}} */
1481
1482
void zend_ssa_remove_uses_of_var(const zend_ssa *ssa, int var_num) /* {{{ */
1483
569
{
1484
569
  zend_ssa_var *var = &ssa->vars[var_num];
1485
569
  zend_ssa_phi *phi;
1486
569
  int use;
1487
803
  FOREACH_PHI_USE(var, phi) {
1488
803
    int i, end = NUM_PHI_SOURCES(phi);
1489
803
    for (i = 0; i < end; i++) {
1490
402
      if (phi->sources[i] == var_num) {
1491
234
        phi->use_chains[i] = NULL;
1492
234
      }
1493
402
    }
1494
803
  } FOREACH_PHI_USE_END();
1495
569
  var->phi_use_chain = NULL;
1496
737
  FOREACH_USE(var, use) {
1497
737
    zend_ssa_op *ssa_op = &ssa->ops[use];
1498
737
    if (ssa_op->op1_use == var_num) {
1499
156
      ssa_op->op1_use = -1;
1500
156
      ssa_op->op1_use_chain = -1;
1501
156
    }
1502
737
    if (ssa_op->op2_use == var_num) {
1503
12
      ssa_op->op2_use = -1;
1504
12
      ssa_op->op2_use_chain = -1;
1505
12
    }
1506
737
    if (ssa_op->result_use == var_num) {
1507
0
      ssa_op->result_use = -1;
1508
0
      ssa_op->res_use_chain = -1;
1509
0
    }
1510
737
  } FOREACH_USE_END();
1511
569
  var->use_chain = -1;
1512
569
}
1513
/* }}} */
1514
1515
void zend_ssa_remove_predecessor(zend_ssa *ssa, int from, int to) /* {{{ */
1516
341
{
1517
341
  zend_basic_block *next_block = &ssa->cfg.blocks[to];
1518
341
  const zend_ssa_block *next_ssa_block = &ssa->blocks[to];
1519
341
  zend_ssa_phi *phi;
1520
341
  int j;
1521
1522
  /* Find at which predecessor offset this block is referenced */
1523
341
  int pred_offset = -1;
1524
341
  int *predecessors = &ssa->cfg.predecessors[next_block->predecessor_offset];
1525
1526
527
  for (j = 0; j < next_block->predecessors_count; j++) {
1527
434
    if (predecessors[j] == from) {
1528
248
      pred_offset = j;
1529
248
      break;
1530
248
    }
1531
434
  }
1532
1533
  /* If there are duplicate successors, the predecessors may have been removed in
1534
   * a previous iteration already. */
1535
341
  if (pred_offset == -1) {
1536
93
    return;
1537
93
  }
1538
1539
  /* For phis in successor blocks, remove the operands associated with this block */
1540
460
  for (phi = next_ssa_block->phis; phi; phi = phi->next) {
1541
212
    if (phi->pi >= 0) {
1542
6
      if (phi->pi == from) {
1543
6
        zend_ssa_rename_var_uses(ssa, phi->ssa_var, phi->sources[0], /* update_types */ false);
1544
6
        zend_ssa_remove_phi(ssa, phi);
1545
6
      }
1546
206
    } else {
1547
206
      ZEND_ASSERT(phi->sources[pred_offset] >= 0);
1548
206
      zend_ssa_remove_phi_source(ssa, phi, pred_offset, next_block->predecessors_count);
1549
206
    }
1550
212
  }
1551
1552
  /* Remove this predecessor */
1553
248
  next_block->predecessors_count--;
1554
248
  if (pred_offset < next_block->predecessors_count) {
1555
80
    predecessors = &ssa->cfg.predecessors[next_block->predecessor_offset + pred_offset];
1556
80
    memmove(predecessors, predecessors + 1, (next_block->predecessors_count - pred_offset) * sizeof(uint32_t));
1557
80
  }
1558
248
}
1559
/* }}} */
1560
1561
void zend_ssa_remove_block(const zend_op_array *op_array, zend_ssa *ssa, int i) /* {{{ */
1562
303
{
1563
303
  zend_basic_block *block = &ssa->cfg.blocks[i];
1564
303
  const zend_ssa_block *ssa_block = &ssa->blocks[i];
1565
303
  zend_ssa_phi *phi;
1566
303
  int j;
1567
1568
303
  block->flags &= ~ZEND_BB_REACHABLE;
1569
1570
  /* Removes phis in this block */
1571
375
  for (phi = ssa_block->phis; phi; phi = phi->next) {
1572
72
    zend_ssa_remove_uses_of_var(ssa, phi->ssa_var);
1573
72
    zend_ssa_remove_phi(ssa, phi);
1574
72
  }
1575
1576
  /* Remove instructions in this block */
1577
677
  for (j = block->start; j < block->start + block->len; j++) {
1578
374
    if (op_array->opcodes[j].opcode == ZEND_NOP) {
1579
0
      continue;
1580
0
    }
1581
1582
374
    zend_ssa_remove_defs_of_instr(ssa, &ssa->ops[j]);
1583
374
    zend_ssa_remove_instr(ssa, &op_array->opcodes[j], &ssa->ops[j]);
1584
374
  }
1585
1586
303
  zend_ssa_remove_block_from_cfg(ssa, i);
1587
303
}
1588
/* }}} */
1589
1590
void zend_ssa_remove_block_from_cfg(zend_ssa *ssa, int i) /* {{{ */
1591
303
{
1592
303
  zend_basic_block *block = &ssa->cfg.blocks[i];
1593
303
  int *predecessors;
1594
303
  int j, s;
1595
1596
634
  for (s = 0; s < block->successors_count; s++) {
1597
331
    zend_ssa_remove_predecessor(ssa, i, block->successors[s]);
1598
331
  }
1599
1600
  /* Remove successors of predecessors */
1601
303
  predecessors = &ssa->cfg.predecessors[block->predecessor_offset];
1602
512
  for (j = 0; j < block->predecessors_count; j++) {
1603
209
    if (predecessors[j] >= 0) {
1604
209
      zend_basic_block *prev_block = &ssa->cfg.blocks[predecessors[j]];
1605
1606
577
      for (s = 0; s < prev_block->successors_count; s++) {
1607
368
        if (prev_block->successors[s] == i) {
1608
116
          memmove(prev_block->successors + s,
1609
116
              prev_block->successors + s + 1,
1610
116
              sizeof(int) * (prev_block->successors_count - s - 1));
1611
116
          prev_block->successors_count--;
1612
116
          s--;
1613
116
        }
1614
368
      }
1615
209
    }
1616
209
  }
1617
1618
303
  block->successors_count = 0;
1619
303
  block->predecessors_count = 0;
1620
1621
  /* Remove from dominators tree */
1622
303
  if (block->idom >= 0) {
1623
303
    j = ssa->cfg.blocks[block->idom].children;
1624
303
    if (j == i) {
1625
183
      ssa->cfg.blocks[block->idom].children = block->next_child;
1626
183
    } else if (j >= 0) {
1627
0
      while (ssa->cfg.blocks[j].next_child >= 0) {
1628
0
        if (ssa->cfg.blocks[j].next_child == i) {
1629
0
          ssa->cfg.blocks[j].next_child = block->next_child;
1630
0
          break;
1631
0
        }
1632
0
        j = ssa->cfg.blocks[j].next_child;
1633
0
      }
1634
0
    }
1635
303
  }
1636
303
  block->idom = -1;
1637
303
  block->level = -1;
1638
303
  block->children = -1;
1639
303
  block->next_child = -1;
1640
303
}
1641
/* }}} */
1642
1643
static void propagate_phi_type_widening(zend_ssa *ssa, int var) /* {{{ */
1644
68
{
1645
68
  zend_ssa_phi *phi;
1646
112
  FOREACH_PHI_USE(&ssa->vars[var], phi) {
1647
112
    if (ssa->var_info[var].type & ~ssa->var_info[phi->ssa_var].type) {
1648
20
      ssa->var_info[phi->ssa_var].type |= ssa->var_info[var].type;
1649
20
      propagate_phi_type_widening(ssa, phi->ssa_var);
1650
20
    }
1651
112
  } FOREACH_PHI_USE_END();
1652
68
}
1653
/* }}} */
1654
1655
void zend_ssa_rename_var_uses(zend_ssa *ssa, int old, int new, bool update_types) /* {{{ */
1656
166
{
1657
166
  zend_ssa_var *old_var = &ssa->vars[old];
1658
166
  zend_ssa_var *new_var = &ssa->vars[new];
1659
166
  int use;
1660
166
  zend_ssa_phi *phi;
1661
1662
166
  ZEND_ASSERT(old >= 0 && new >= 0);
1663
166
  ZEND_ASSERT(old != new);
1664
1665
  /* Only a no_val is both variables are */
1666
166
  new_var->no_val &= old_var->no_val;
1667
1668
  /* Update ssa_op use chains */
1669
243
  FOREACH_USE(old_var, use) {
1670
243
    zend_ssa_op *ssa_op = &ssa->ops[use];
1671
1672
    /* If the op already uses the new var, don't add the op to the use
1673
     * list again. Instead move the use_chain to the correct operand. */
1674
243
    bool add_to_use_chain = true;
1675
243
    if (ssa_op->result_use == new) {
1676
0
      add_to_use_chain = false;
1677
77
    } else if (ssa_op->op1_use == new) {
1678
0
      if (ssa_op->result_use == old) {
1679
0
        ssa_op->res_use_chain = ssa_op->op1_use_chain;
1680
0
        ssa_op->op1_use_chain = -1;
1681
0
      }
1682
0
      add_to_use_chain = false;
1683
77
    } else if (ssa_op->op2_use == new) {
1684
0
      if (ssa_op->result_use == old) {
1685
0
        ssa_op->res_use_chain = ssa_op->op2_use_chain;
1686
0
        ssa_op->op2_use_chain = -1;
1687
0
      } else if (ssa_op->op1_use == old) {
1688
0
        ssa_op->op1_use_chain = ssa_op->op2_use_chain;
1689
0
        ssa_op->op2_use_chain = -1;
1690
0
      }
1691
0
      add_to_use_chain = false;
1692
0
    }
1693
1694
    /* Perform the actual renaming */
1695
243
    if (ssa_op->result_use == old) {
1696
8
      ssa_op->result_use = new;
1697
8
    }
1698
243
    if (ssa_op->op1_use == old) {
1699
61
      ssa_op->op1_use = new;
1700
61
    }
1701
243
    if (ssa_op->op2_use == old) {
1702
8
      ssa_op->op2_use = new;
1703
8
    }
1704
1705
    /* Add op to use chain of new var (if it isn't already). We use the
1706
     * first use chain of (result, op1, op2) that has the new variable. */
1707
243
    if (add_to_use_chain) {
1708
77
      if (ssa_op->result_use == new) {
1709
8
        ssa_op->res_use_chain = new_var->use_chain;
1710
8
        new_var->use_chain = use;
1711
69
      } else if (ssa_op->op1_use == new) {
1712
61
        ssa_op->op1_use_chain = new_var->use_chain;
1713
61
        new_var->use_chain = use;
1714
61
      } else {
1715
8
        ZEND_ASSERT(ssa_op->op2_use == new);
1716
8
        ssa_op->op2_use_chain = new_var->use_chain;
1717
8
        new_var->use_chain = use;
1718
8
      }
1719
77
    }
1720
243
  } FOREACH_USE_END();
1721
166
  old_var->use_chain = -1;
1722
1723
  /* Update phi use chains */
1724
260
  FOREACH_PHI_USE(old_var, phi) {
1725
260
    int j;
1726
260
    bool after_first_new_source = false;
1727
1728
    /* If the phi already uses the new var, find its use chain, as we may
1729
     * need to move it to a different source operand. */
1730
260
    zend_ssa_phi **existing_use_chain_ptr = NULL;
1731
260
    for (j = 0; j < ssa->cfg.blocks[phi->block].predecessors_count; j++) {
1732
134
      if (phi->sources[j] == new) {
1733
4
        existing_use_chain_ptr = &phi->use_chains[j];
1734
4
        break;
1735
4
      }
1736
134
    }
1737
1738
260
    for (j = 0; j < ssa->cfg.blocks[phi->block].predecessors_count; j++) {
1739
138
      if (phi->sources[j] == new) {
1740
4
        after_first_new_source = true;
1741
134
      } else if (phi->sources[j] == old) {
1742
94
        phi->sources[j] = new;
1743
1744
        /* Either move existing use chain to this source, or add the phi
1745
         * to the phi use chain of the new variables. Do this only once. */
1746
94
        if (!after_first_new_source) {
1747
90
          if (existing_use_chain_ptr) {
1748
0
            phi->use_chains[j] = *existing_use_chain_ptr;
1749
0
            *existing_use_chain_ptr = NULL;
1750
90
          } else {
1751
90
            phi->use_chains[j] = new_var->phi_use_chain;
1752
90
            new_var->phi_use_chain = phi;
1753
90
          }
1754
90
          after_first_new_source = true;
1755
90
        } else {
1756
4
          phi->use_chains[j] = NULL;
1757
4
        }
1758
94
      }
1759
138
    }
1760
1761
    /* Make sure phi result types are not incorrectly narrow after renaming.
1762
     * This should not normally happen, but can occur if we DCE an assignment
1763
     * or unset and there is an improper phi-indirected use lateron. */
1764
    // TODO Alternatively we could rerun type-inference after DCE
1765
260
    if (update_types && (ssa->var_info[new].type & ~ssa->var_info[phi->ssa_var].type)) {
1766
48
      ssa->var_info[phi->ssa_var].type |= ssa->var_info[new].type;
1767
48
      propagate_phi_type_widening(ssa, phi->ssa_var);
1768
48
    }
1769
260
  } FOREACH_PHI_USE_END();
1770
  old_var->phi_use_chain = NULL;
1771
166
}
1772
/* }}} */