Coverage Report

Created: 2026-01-18 06:48

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/php-src/Zend/Optimizer/zend_cfg.c
Line
Count
Source
1
/*
2
   +----------------------------------------------------------------------+
3
   | Zend Engine, CFG - Control Flow Graph                                |
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
   +----------------------------------------------------------------------+
17
*/
18
19
#include "zend_compile.h"
20
#include "zend_cfg.h"
21
#include "zend_func_info.h"
22
#include "zend_worklist.h"
23
#include "zend_optimizer.h"
24
#include "zend_optimizer_internal.h"
25
#include "zend_sort.h"
26
27
static void zend_mark_reachable(zend_op *opcodes, zend_cfg *cfg, zend_basic_block *b) /* {{{ */
28
384
{
29
384
  zend_basic_block *blocks = cfg->blocks;
30
31
384
  zend_worklist work;
32
384
  ALLOCA_FLAG(list_use_heap)
33
384
  ZEND_WORKLIST_ALLOCA(&work, cfg->blocks_count, list_use_heap);
34
35
384
  zend_worklist_push(&work, b - cfg->blocks);
36
37
3.76k
  while (zend_worklist_len(&work)) {
38
3.37k
    int i;
39
3.37k
    b = cfg->blocks + zend_worklist_pop(&work);
40
41
3.37k
    b->flags |= ZEND_BB_REACHABLE;
42
3.37k
    if (b->successors_count == 0) {
43
276
      b->flags |= ZEND_BB_EXIT;
44
276
      continue;
45
276
    }
46
47
7.47k
    for (i = 0; i < b->successors_count; i++) {
48
4.36k
      zend_basic_block *succ = blocks + b->successors[i];
49
50
4.36k
      if (b->len != 0) {
51
4.36k
        uint8_t opcode = opcodes[b->start + b->len - 1].opcode;
52
4.36k
        if (opcode == ZEND_MATCH) {
53
0
          succ->flags |= ZEND_BB_TARGET;
54
4.36k
        } else if (opcode == ZEND_SWITCH_LONG || opcode == ZEND_SWITCH_STRING) {
55
0
          if (i == b->successors_count - 1) {
56
0
            succ->flags |= ZEND_BB_FOLLOW | ZEND_BB_TARGET;
57
0
          } else {
58
0
            succ->flags |= ZEND_BB_TARGET;
59
0
          }
60
4.36k
        } else if (b->successors_count == 1) {
61
1.83k
          if (opcode == ZEND_JMP) {
62
453
            succ->flags |= ZEND_BB_TARGET;
63
1.38k
          } else {
64
1.38k
            succ->flags |= ZEND_BB_FOLLOW;
65
66
1.38k
            if ((cfg->flags & ZEND_CFG_STACKLESS)) {
67
0
              if (opcode == ZEND_INCLUDE_OR_EVAL ||
68
0
                opcode == ZEND_GENERATOR_CREATE ||
69
0
                opcode == ZEND_YIELD ||
70
0
                opcode == ZEND_YIELD_FROM ||
71
0
                opcode == ZEND_DO_FCALL ||
72
0
                opcode == ZEND_DO_UCALL ||
73
0
                opcode == ZEND_DO_FCALL_BY_NAME) {
74
0
                succ->flags |= ZEND_BB_ENTRY;
75
0
              }
76
0
            }
77
1.38k
            if ((cfg->flags & ZEND_CFG_RECV_ENTRY)) {
78
0
              if (opcode == ZEND_RECV ||
79
0
                opcode == ZEND_RECV_INIT) {
80
0
                succ->flags |= ZEND_BB_RECV_ENTRY;
81
0
              }
82
0
            }
83
1.38k
          }
84
2.53k
        } else {
85
2.53k
          ZEND_ASSERT(b->successors_count == 2);
86
2.53k
          if (i == 0) {
87
1.26k
            succ->flags |= ZEND_BB_TARGET;
88
1.26k
          } else {
89
1.26k
            succ->flags |= ZEND_BB_FOLLOW;
90
1.26k
          }
91
2.53k
        }
92
4.36k
      } else {
93
1
        succ->flags |= ZEND_BB_FOLLOW;
94
1
      }
95
96
      /* Check reachability of successor */
97
4.36k
      if (!(succ->flags & ZEND_BB_REACHABLE)) {
98
3.89k
        zend_worklist_push(&work, succ - cfg->blocks);
99
3.89k
      }
100
4.36k
    }
101
3.10k
  }
102
103
384
  ZEND_WORKLIST_FREE_ALLOCA(&work, list_use_heap);
104
384
}
105
/* }}} */
106
107
static void zend_mark_reachable_blocks(const zend_op_array *op_array, zend_cfg *cfg, int start) /* {{{ */
108
246
{
109
246
  zend_basic_block *blocks = cfg->blocks;
110
111
246
  blocks[start].flags = ZEND_BB_START;
112
246
  zend_mark_reachable(op_array->opcodes, cfg, blocks + start);
113
114
246
  if (op_array->last_try_catch) {
115
138
    zend_basic_block *b;
116
138
    int j, changed;
117
138
    uint32_t *block_map = cfg->map;
118
119
276
    do {
120
276
      changed = 0;
121
122
      /* Add exception paths */
123
552
      for (j = 0; j < op_array->last_try_catch; j++) {
124
125
        /* check for jumps into the middle of try block */
126
276
        b = blocks + block_map[op_array->try_catch_array[j].try_op];
127
276
        if (!(b->flags & ZEND_BB_REACHABLE)) {
128
0
          zend_basic_block *end;
129
130
0
          if (op_array->try_catch_array[j].catch_op) {
131
0
            end = blocks + block_map[op_array->try_catch_array[j].catch_op];
132
0
            while (b != end) {
133
0
              if (b->flags & ZEND_BB_REACHABLE) {
134
0
                op_array->try_catch_array[j].try_op = b->start;
135
0
                break;
136
0
              }
137
0
              b++;
138
0
            }
139
0
          }
140
0
          b = blocks + block_map[op_array->try_catch_array[j].try_op];
141
0
          if (!(b->flags & ZEND_BB_REACHABLE)) {
142
0
            if (op_array->try_catch_array[j].finally_op) {
143
0
              end = blocks + block_map[op_array->try_catch_array[j].finally_op];
144
0
              while (b != end) {
145
0
                if (b->flags & ZEND_BB_REACHABLE) {
146
                  /* In case we get here, there is no live try block but there is a live finally block.
147
                   * If we do have catch_op set, we need to set it to the first catch block to satisfy
148
                   * the constraint try_op <= catch_op <= finally_op */
149
0
                  op_array->try_catch_array[j].try_op =
150
0
                    op_array->try_catch_array[j].catch_op ? op_array->try_catch_array[j].catch_op : b->start;
151
0
                  changed = 1;
152
0
                  zend_mark_reachable(op_array->opcodes, cfg, blocks + block_map[op_array->try_catch_array[j].try_op]);
153
0
                  break;
154
0
                }
155
0
                b++;
156
0
              }
157
0
            }
158
0
          }
159
0
        }
160
161
276
        b = blocks + block_map[op_array->try_catch_array[j].try_op];
162
276
        if (b->flags & ZEND_BB_REACHABLE) {
163
276
          b->flags |= ZEND_BB_TRY;
164
276
          if (op_array->try_catch_array[j].catch_op) {
165
276
            b = blocks + block_map[op_array->try_catch_array[j].catch_op];
166
276
            b->flags |= ZEND_BB_CATCH;
167
276
            if (!(b->flags & ZEND_BB_REACHABLE)) {
168
138
              changed = 1;
169
138
              zend_mark_reachable(op_array->opcodes, cfg, b);
170
138
            }
171
276
          }
172
276
          if (op_array->try_catch_array[j].finally_op) {
173
0
            b = blocks + block_map[op_array->try_catch_array[j].finally_op];
174
0
            b->flags |= ZEND_BB_FINALLY;
175
0
            if (!(b->flags & ZEND_BB_REACHABLE)) {
176
0
              changed = 1;
177
0
              zend_mark_reachable(op_array->opcodes, cfg, b);
178
0
            }
179
0
          }
180
276
          if (op_array->try_catch_array[j].finally_end) {
181
0
            b = blocks + block_map[op_array->try_catch_array[j].finally_end];
182
0
            b->flags |= ZEND_BB_FINALLY_END;
183
0
            if (!(b->flags & ZEND_BB_REACHABLE)) {
184
0
              changed = 1;
185
0
              zend_mark_reachable(op_array->opcodes, cfg, b);
186
0
            }
187
0
          }
188
276
        } else {
189
0
          if (op_array->try_catch_array[j].catch_op) {
190
0
            ZEND_ASSERT(!(blocks[block_map[op_array->try_catch_array[j].catch_op]].flags & ZEND_BB_REACHABLE));
191
0
          }
192
0
          if (op_array->try_catch_array[j].finally_op) {
193
0
            ZEND_ASSERT(!(blocks[block_map[op_array->try_catch_array[j].finally_op]].flags & ZEND_BB_REACHABLE));
194
0
          }
195
0
          if (op_array->try_catch_array[j].finally_end) {
196
0
            ZEND_ASSERT(!(blocks[block_map[op_array->try_catch_array[j].finally_end]].flags & ZEND_BB_REACHABLE));
197
0
          }
198
0
        }
199
276
      }
200
276
    } while (changed);
201
138
  }
202
203
246
  if (cfg->flags & ZEND_FUNC_FREE_LOOP_VAR) {
204
24
    zend_basic_block *b;
205
24
    int j;
206
24
    uint32_t *block_map = cfg->map;
207
208
    /* Mark blocks that are unreachable, but free a loop var created in a reachable block. */
209
2.06k
    for (b = blocks; b < blocks + cfg->blocks_count; b++) {
210
2.04k
      if (b->flags & ZEND_BB_REACHABLE) {
211
2.03k
        continue;
212
2.03k
      }
213
214
4
      for (j = b->start; j < b->start + b->len; j++) {
215
0
        zend_op *opline = &op_array->opcodes[j];
216
0
        if (zend_optimizer_is_loop_var_free(opline)) {
217
0
          zend_op *def_opline = zend_optimizer_get_loop_var_def(op_array, opline);
218
0
          if (def_opline) {
219
0
            uint32_t def_block = block_map[def_opline - op_array->opcodes];
220
0
            if (blocks[def_block].flags & ZEND_BB_REACHABLE) {
221
0
              b->flags |= ZEND_BB_UNREACHABLE_FREE;
222
0
              break;
223
0
            }
224
0
          }
225
0
        }
226
0
      }
227
4
    }
228
24
  }
229
246
}
230
/* }}} */
231
232
void zend_cfg_remark_reachable_blocks(const zend_op_array *op_array, zend_cfg *cfg) /* {{{ */
233
128
{
234
128
  zend_basic_block *blocks = cfg->blocks;
235
128
  int i;
236
128
  int start = 0;
237
238
128
  for (i = 0; i < cfg->blocks_count; i++) {
239
128
    if (blocks[i].flags & ZEND_BB_REACHABLE) {
240
128
      start = i;
241
128
      i++;
242
128
      break;
243
128
    }
244
128
  }
245
246
  /* clear all flags */
247
1.62k
  for (i = 0; i < cfg->blocks_count; i++) {
248
1.49k
    blocks[i].flags = 0;
249
1.49k
  }
250
251
128
  zend_mark_reachable_blocks(op_array, cfg, start);
252
128
}
253
/* }}} */
254
255
1.94k
static void initialize_block(zend_basic_block *block) {
256
1.94k
  block->flags = 0;
257
1.94k
  block->successors = block->successors_storage;
258
1.94k
  block->successors_count = 0;
259
1.94k
  block->predecessors_count = 0;
260
1.94k
  block->predecessor_offset = -1;
261
1.94k
  block->idom = -1;
262
1.94k
  block->loop_header = -1;
263
1.94k
  block->level = -1;
264
1.94k
  block->children = -1;
265
1.94k
  block->next_child = -1;
266
1.94k
}
267
268
2.29k
#define BB_START(i) do { \
269
2.29k
    if (!block_map[i]) { blocks_count++;} \
270
2.29k
    block_map[i]++; \
271
2.29k
  } while (0)
272
273
ZEND_API void zend_build_cfg(zend_arena **arena, const zend_op_array *op_array, uint32_t build_flags, zend_cfg *cfg) /* {{{ */
274
118
{
275
118
  uint32_t flags = 0;
276
118
  uint32_t i;
277
118
  uint32_t *block_map;
278
118
  zend_function *fn;
279
118
  int blocks_count = 0;
280
118
  zend_basic_block *blocks;
281
118
  zval *zv;
282
118
  bool extra_entry_block = false;
283
284
118
  cfg->flags = build_flags & (ZEND_CFG_STACKLESS|ZEND_CFG_RECV_ENTRY);
285
286
118
  cfg->map = block_map = zend_arena_calloc(arena, op_array->last, sizeof(uint32_t));
287
288
  /* Build CFG, Step 1: Find basic blocks starts, calculate number of blocks */
289
118
  BB_START(0);
290
10.0k
  for (i = 0; i < op_array->last; i++) {
291
9.91k
    zend_op *opline = op_array->opcodes + i;
292
9.91k
    switch (opline->opcode) {
293
15
      case ZEND_RECV:
294
15
      case ZEND_RECV_INIT:
295
15
        if (build_flags & ZEND_CFG_RECV_ENTRY) {
296
0
          BB_START(i + 1);
297
0
        }
298
15
        break;
299
130
      case ZEND_RETURN:
300
130
      case ZEND_RETURN_BY_REF:
301
130
      case ZEND_GENERATOR_RETURN:
302
130
      case ZEND_VERIFY_NEVER_TYPE:
303
130
        if (i + 1 < op_array->last) {
304
12
          BB_START(i + 1);
305
12
        }
306
130
        break;
307
0
      case ZEND_MATCH_ERROR:
308
0
      case ZEND_THROW:
309
        /* Don't treat THROW as terminator if it's used in expression context,
310
         * as we may lose live ranges when eliminating unreachable code. */
311
0
        if (opline->extended_value != ZEND_THROW_IS_EXPR && i + 1 < op_array->last) {
312
0
          BB_START(i + 1);
313
0
        }
314
0
        break;
315
38
      case ZEND_INCLUDE_OR_EVAL:
316
38
        flags |= ZEND_FUNC_INDIRECT_VAR_ACCESS;
317
38
        ZEND_FALLTHROUGH;
318
38
      case ZEND_GENERATOR_CREATE:
319
38
      case ZEND_YIELD:
320
38
      case ZEND_YIELD_FROM:
321
38
        if (build_flags & ZEND_CFG_STACKLESS) {
322
0
          BB_START(i + 1);
323
0
        }
324
38
        break;
325
410
      case ZEND_DO_FCALL:
326
410
      case ZEND_DO_UCALL:
327
410
      case ZEND_DO_FCALL_BY_NAME:
328
410
        flags |= ZEND_FUNC_HAS_CALLS;
329
410
        if (build_flags & ZEND_CFG_STACKLESS) {
330
0
          BB_START(i + 1);
331
0
        }
332
410
        break;
333
0
      case ZEND_DO_ICALL:
334
0
        flags |= ZEND_FUNC_HAS_CALLS;
335
0
        break;
336
150
      case ZEND_INIT_FCALL:
337
150
      case ZEND_INIT_NS_FCALL_BY_NAME:
338
150
        zv = CRT_CONSTANT(opline->op2);
339
150
        if (opline->opcode == ZEND_INIT_NS_FCALL_BY_NAME) {
340
          /* The third literal is the lowercased unqualified name */
341
0
          zv += 2;
342
0
        }
343
150
        if ((fn = zend_hash_find_ptr(EG(function_table), Z_STR_P(zv))) != NULL) {
344
130
          if (fn->type == ZEND_INTERNAL_FUNCTION) {
345
130
            flags |= zend_optimizer_classify_function(
346
130
              Z_STR_P(zv), opline->extended_value);
347
130
          }
348
130
        }
349
150
        break;
350
0
      case ZEND_FAST_CALL:
351
0
        BB_START(OP_JMP_ADDR(opline, opline->op1) - op_array->opcodes);
352
0
        BB_START(i + 1);
353
0
        break;
354
0
      case ZEND_FAST_RET:
355
0
        if (i + 1 < op_array->last) {
356
0
          BB_START(i + 1);
357
0
        }
358
0
        break;
359
220
      case ZEND_JMP:
360
220
        BB_START(OP_JMP_ADDR(opline, opline->op1) - op_array->opcodes);
361
220
        if (i + 1 < op_array->last) {
362
220
          BB_START(i + 1);
363
220
        }
364
220
        break;
365
4
      case ZEND_JMPZ:
366
137
      case ZEND_JMPNZ:
367
153
      case ZEND_JMPZ_EX:
368
159
      case ZEND_JMPNZ_EX:
369
183
      case ZEND_JMP_SET:
370
247
      case ZEND_COALESCE:
371
249
      case ZEND_ASSERT_CHECK:
372
713
      case ZEND_JMP_NULL:
373
713
      case ZEND_BIND_INIT_STATIC_OR_JMP:
374
713
      case ZEND_JMP_FRAMELESS:
375
713
        BB_START(OP_JMP_ADDR(opline, opline->op2) - op_array->opcodes);
376
713
        BB_START(i + 1);
377
713
        break;
378
77
      case ZEND_CATCH:
379
77
        if (!(opline->extended_value & ZEND_LAST_CATCH)) {
380
31
          BB_START(OP_JMP_ADDR(opline, opline->op2) - op_array->opcodes);
381
31
        }
382
77
        BB_START(i + 1);
383
77
        break;
384
20
      case ZEND_FE_FETCH_R:
385
20
      case ZEND_FE_FETCH_RW:
386
20
        BB_START(ZEND_OFFSET_TO_OPLINE_NUM(op_array, opline, opline->extended_value));
387
20
        BB_START(i + 1);
388
20
        break;
389
20
      case ZEND_FE_RESET_R:
390
20
      case ZEND_FE_RESET_RW:
391
20
        BB_START(OP_JMP_ADDR(opline, opline->op2) - op_array->opcodes);
392
20
        BB_START(i + 1);
393
20
        break;
394
0
      case ZEND_SWITCH_LONG:
395
0
      case ZEND_SWITCH_STRING:
396
0
      case ZEND_MATCH:
397
0
      {
398
0
        HashTable *jumptable = Z_ARRVAL_P(CRT_CONSTANT(opline->op2));
399
0
        zval *zv;
400
0
        ZEND_HASH_FOREACH_VAL(jumptable, zv) {
401
0
          BB_START(ZEND_OFFSET_TO_OPLINE_NUM(op_array, opline, Z_LVAL_P(zv)));
402
0
        } ZEND_HASH_FOREACH_END();
403
0
        BB_START(ZEND_OFFSET_TO_OPLINE_NUM(op_array, opline, opline->extended_value));
404
0
        BB_START(i + 1);
405
0
        break;
406
0
      }
407
0
      case ZEND_FETCH_R:
408
7
      case ZEND_FETCH_W:
409
7
      case ZEND_FETCH_RW:
410
7
      case ZEND_FETCH_FUNC_ARG:
411
7
      case ZEND_FETCH_IS:
412
7
      case ZEND_FETCH_UNSET:
413
7
      case ZEND_UNSET_VAR:
414
7
      case ZEND_ISSET_ISEMPTY_VAR:
415
7
        if (opline->extended_value & ZEND_FETCH_LOCAL) {
416
1
          flags |= ZEND_FUNC_INDIRECT_VAR_ACCESS;
417
6
        } else if ((opline->extended_value & (ZEND_FETCH_GLOBAL | ZEND_FETCH_GLOBAL_LOCK)) &&
418
6
                   !op_array->function_name) {
419
0
          flags |= ZEND_FUNC_INDIRECT_VAR_ACCESS;
420
0
        }
421
7
        break;
422
0
      case ZEND_FUNC_GET_ARGS:
423
0
        flags |= ZEND_FUNC_VARARG;
424
0
        break;
425
0
      case ZEND_EXT_STMT:
426
0
        flags |= ZEND_FUNC_HAS_EXTENDED_STMT;
427
0
        break;
428
0
      case ZEND_EXT_FCALL_BEGIN:
429
0
      case ZEND_EXT_FCALL_END:
430
0
        flags |= ZEND_FUNC_HAS_EXTENDED_FCALL;
431
0
        break;
432
126
      case ZEND_FREE:
433
146
      case ZEND_FE_FREE:
434
146
        if (zend_optimizer_is_loop_var_free(opline)
435
20
         && ((opline-1)->opcode != ZEND_MATCH_ERROR
436
20
          || (opline-1)->extended_value != ZEND_THROW_IS_EXPR)) {
437
20
          BB_START(i);
438
20
          flags |= ZEND_FUNC_FREE_LOOP_VAR;
439
20
        }
440
146
        break;
441
9.91k
    }
442
9.91k
  }
443
444
  /* If the entry block has predecessors, we may need to split it */
445
118
  if ((build_flags & ZEND_CFG_NO_ENTRY_PREDECESSORS)
446
36
      && op_array->last > 0 && block_map[0] > 1) {
447
0
    extra_entry_block = true;
448
0
  }
449
450
118
  if (op_array->last_try_catch) {
451
92
    for (uint32_t j = 0; j < op_array->last_try_catch; j++) {
452
46
      BB_START(op_array->try_catch_array[j].try_op);
453
46
      if (op_array->try_catch_array[j].catch_op) {
454
46
        BB_START(op_array->try_catch_array[j].catch_op);
455
46
      }
456
46
      if (op_array->try_catch_array[j].finally_op) {
457
0
        BB_START(op_array->try_catch_array[j].finally_op);
458
0
      }
459
46
      if (op_array->try_catch_array[j].finally_end) {
460
0
        BB_START(op_array->try_catch_array[j].finally_end);
461
0
      }
462
46
    }
463
46
  }
464
465
118
  blocks_count += extra_entry_block;
466
118
  cfg->blocks_count = blocks_count;
467
468
  /* Build CFG, Step 2: Build Array of Basic Blocks */
469
118
  cfg->blocks = blocks = zend_arena_calloc(arena, sizeof(zend_basic_block), blocks_count);
470
471
118
  blocks_count = -1;
472
473
118
  if (extra_entry_block) {
474
0
    initialize_block(&blocks[0]);
475
0
    blocks[0].start = 0;
476
0
    blocks[0].len = 0;
477
0
    blocks_count++;
478
0
  }
479
480
10.0k
  for (i = 0; i < op_array->last; i++) {
481
9.91k
    if (block_map[i]) {
482
1.94k
      if (blocks_count >= 0) {
483
1.82k
        blocks[blocks_count].len = i - blocks[blocks_count].start;
484
1.82k
      }
485
1.94k
      blocks_count++;
486
1.94k
      initialize_block(&blocks[blocks_count]);
487
1.94k
      blocks[blocks_count].start = i;
488
1.94k
    }
489
9.91k
    block_map[i] = blocks_count;
490
9.91k
  }
491
492
118
  blocks[blocks_count].len = i - blocks[blocks_count].start;
493
118
  blocks_count++;
494
495
  /* Build CFG, Step 3: Calculate successors */
496
2.06k
  for (int j = 0; j < blocks_count; j++) {
497
1.94k
    zend_basic_block *block = &blocks[j];
498
1.94k
    zend_op *opline;
499
1.94k
    if (block->len == 0) {
500
0
      block->successors_count = 1;
501
0
      block->successors[0] = j + 1;
502
0
      continue;
503
0
    }
504
505
1.94k
    opline = op_array->opcodes + block->start + block->len - 1;
506
1.94k
    switch (opline->opcode) {
507
0
      case ZEND_FAST_RET:
508
130
      case ZEND_RETURN:
509
130
      case ZEND_RETURN_BY_REF:
510
130
      case ZEND_GENERATOR_RETURN:
511
130
      case ZEND_THROW:
512
130
      case ZEND_MATCH_ERROR:
513
130
      case ZEND_VERIFY_NEVER_TYPE:
514
130
        break;
515
220
      case ZEND_JMP:
516
220
        block->successors_count = 1;
517
220
        block->successors[0] = block_map[OP_JMP_ADDR(opline, opline->op1) - op_array->opcodes];
518
220
        break;
519
4
      case ZEND_JMPZ:
520
137
      case ZEND_JMPNZ:
521
153
      case ZEND_JMPZ_EX:
522
159
      case ZEND_JMPNZ_EX:
523
183
      case ZEND_JMP_SET:
524
247
      case ZEND_COALESCE:
525
249
      case ZEND_ASSERT_CHECK:
526
713
      case ZEND_JMP_NULL:
527
713
      case ZEND_BIND_INIT_STATIC_OR_JMP:
528
713
      case ZEND_JMP_FRAMELESS:
529
713
        block->successors_count = 2;
530
713
        block->successors[0] = block_map[OP_JMP_ADDR(opline, opline->op2) - op_array->opcodes];
531
713
        block->successors[1] = j + 1;
532
713
        break;
533
77
      case ZEND_CATCH:
534
77
        if (!(opline->extended_value & ZEND_LAST_CATCH)) {
535
31
          block->successors_count = 2;
536
31
          block->successors[0] = block_map[OP_JMP_ADDR(opline, opline->op2) - op_array->opcodes];
537
31
          block->successors[1] = j + 1;
538
46
        } else {
539
46
          block->successors_count = 1;
540
46
          block->successors[0] = j + 1;
541
46
        }
542
77
        break;
543
20
      case ZEND_FE_FETCH_R:
544
20
      case ZEND_FE_FETCH_RW:
545
20
        block->successors_count = 2;
546
20
        block->successors[0] = block_map[ZEND_OFFSET_TO_OPLINE_NUM(op_array, opline, opline->extended_value)];
547
20
        block->successors[1] = j + 1;
548
20
        break;
549
20
      case ZEND_FE_RESET_R:
550
20
      case ZEND_FE_RESET_RW:
551
20
        block->successors_count = 2;
552
20
        block->successors[0] = block_map[OP_JMP_ADDR(opline, opline->op2) - op_array->opcodes];
553
20
        block->successors[1] = j + 1;
554
20
        break;
555
0
      case ZEND_FAST_CALL:
556
0
        block->successors_count = 2;
557
0
        block->successors[0] = block_map[OP_JMP_ADDR(opline, opline->op1) - op_array->opcodes];
558
0
        block->successors[1] = j + 1;
559
0
        break;
560
0
      case ZEND_SWITCH_LONG:
561
0
      case ZEND_SWITCH_STRING:
562
0
      case ZEND_MATCH:
563
0
      {
564
0
        HashTable *jumptable = Z_ARRVAL_P(CRT_CONSTANT(opline->op2));
565
0
        zval *zv;
566
0
        uint32_t s = 0;
567
568
0
        block->successors_count = (opline->opcode == ZEND_MATCH ? 1 : 2) + zend_hash_num_elements(jumptable);
569
0
        block->successors = zend_arena_calloc(arena, block->successors_count, sizeof(int));
570
571
0
        ZEND_HASH_FOREACH_VAL(jumptable, zv) {
572
0
          block->successors[s++] = block_map[ZEND_OFFSET_TO_OPLINE_NUM(op_array, opline, Z_LVAL_P(zv))];
573
0
        } ZEND_HASH_FOREACH_END();
574
575
0
        block->successors[s++] = block_map[ZEND_OFFSET_TO_OPLINE_NUM(op_array, opline, opline->extended_value)];
576
0
        if (opline->opcode != ZEND_MATCH) {
577
0
          block->successors[s++] = j + 1;
578
0
        }
579
0
        break;
580
0
      }
581
762
      default:
582
762
        block->successors_count = 1;
583
762
        block->successors[0] = j + 1;
584
762
        break;
585
1.94k
    }
586
1.94k
  }
587
588
  /* Build CFG, Step 4, Mark Reachable Basic Blocks */
589
118
  cfg->flags |= flags;
590
118
  zend_mark_reachable_blocks(op_array, cfg, 0);
591
118
}
592
/* }}} */
593
594
ZEND_API void zend_cfg_build_predecessors(zend_arena **arena, zend_cfg *cfg) /* {{{ */
595
32
{
596
32
  int j, s, edges;
597
32
  zend_basic_block *b;
598
32
  zend_basic_block *blocks = cfg->blocks;
599
32
  zend_basic_block *end = blocks + cfg->blocks_count;
600
32
  int *predecessors;
601
602
32
  edges = 0;
603
823
  for (b = blocks; b < end; b++) {
604
791
    b->predecessors_count = 0;
605
791
  }
606
823
  for (b = blocks; b < end; b++) {
607
791
    if (!(b->flags & ZEND_BB_REACHABLE)) {
608
0
      b->successors_count = 0;
609
0
      b->predecessors_count = 0;
610
791
    } else {
611
1.90k
      for (s = 0; s < b->successors_count; s++) {
612
1.11k
        edges++;
613
1.11k
        blocks[b->successors[s]].predecessors_count++;
614
1.11k
      }
615
791
    }
616
791
  }
617
618
32
  cfg->edges_count = edges;
619
32
  cfg->predecessors = predecessors = (int*)zend_arena_calloc(arena, sizeof(int), edges);
620
621
32
  edges = 0;
622
823
  for (b = blocks; b < end; b++) {
623
791
    if (b->flags & ZEND_BB_REACHABLE) {
624
791
      b->predecessor_offset = edges;
625
791
      edges += b->predecessors_count;
626
791
      b->predecessors_count = 0;
627
791
    }
628
791
  }
629
630
823
  for (j = 0; j < cfg->blocks_count; j++) {
631
791
    if (blocks[j].flags & ZEND_BB_REACHABLE) {
632
      /* SWITCH_STRING/LONG may have few identical successors */
633
1.90k
      for (s = 0; s < blocks[j].successors_count; s++) {
634
1.11k
        int duplicate = 0;
635
1.11k
        int p;
636
637
1.47k
        for (p = 0; p < s; p++) {
638
358
          if (blocks[j].successors[p] == blocks[j].successors[s]) {
639
0
            duplicate = 1;
640
0
            break;
641
0
          }
642
358
        }
643
1.11k
        if (!duplicate) {
644
1.11k
          zend_basic_block *b = blocks + blocks[j].successors[s];
645
646
1.11k
          predecessors[b->predecessor_offset + b->predecessors_count] = j;
647
1.11k
          b->predecessors_count++;
648
1.11k
        }
649
1.11k
      }
650
791
    }
651
791
  }
652
32
}
653
/* }}} */
654
655
/* Computes a postorder numbering of the CFG */
656
static void compute_postnum_recursive(
657
    int *postnum, int *cur, const zend_cfg *cfg, int block_num) /* {{{ */
658
1.12k
{
659
1.12k
  int s;
660
1.12k
  zend_basic_block *block = &cfg->blocks[block_num];
661
1.12k
  if (postnum[block_num] != -1) {
662
358
    return;
663
358
  }
664
665
769
  postnum[block_num] = -2; /* Marker for "currently visiting" */
666
1.88k
  for (s = 0; s < block->successors_count; s++) {
667
1.11k
    compute_postnum_recursive(postnum, cur, cfg, block->successors[s]);
668
1.11k
  }
669
769
  postnum[block_num] = (*cur)++;
670
769
}
671
/* }}} */
672
673
/* Computes dominator tree using algorithm from "A Simple, Fast Dominance Algorithm" by
674
 * Cooper, Harvey and Kennedy. */
675
ZEND_API void zend_cfg_compute_dominators_tree(const zend_op_array *op_array, zend_cfg *cfg) /* {{{ */
676
32
{
677
32
  zend_basic_block *blocks = cfg->blocks;
678
32
  int blocks_count = cfg->blocks_count;
679
32
  int j, k, changed;
680
681
32
  if (cfg->blocks_count == 1) {
682
22
    blocks[0].level = 0;
683
22
    return;
684
22
  }
685
686
10
  ALLOCA_FLAG(use_heap)
687
10
  int *postnum = do_alloca(sizeof(int) * cfg->blocks_count, use_heap);
688
10
  memset(postnum, -1, sizeof(int) * cfg->blocks_count);
689
10
  j = 0;
690
10
  compute_postnum_recursive(postnum, &j, cfg, 0);
691
692
  /* FIXME: move declarations */
693
10
  blocks[0].idom = 0;
694
35
  do {
695
35
    changed = 0;
696
    /* Iterating in RPO here would converge faster */
697
2.86k
    for (j = 1; j < blocks_count; j++) {
698
2.82k
      int idom = -1;
699
700
2.82k
      if ((blocks[j].flags & ZEND_BB_REACHABLE) == 0) {
701
0
        continue;
702
0
      }
703
6.89k
      for (k = 0; k < blocks[j].predecessors_count; k++) {
704
4.06k
        int pred = cfg->predecessors[blocks[j].predecessor_offset + k];
705
706
4.06k
        if (blocks[pred].idom >= 0) {
707
3.64k
          if (idom < 0) {
708
2.55k
            idom = pred;
709
2.55k
          } else {
710
2.18k
            while (idom != pred) {
711
3.03k
              while (postnum[pred] < postnum[idom]) pred = blocks[pred].idom;
712
1.09k
              while (postnum[idom] < postnum[pred]) idom = blocks[idom].idom;
713
1.09k
            }
714
1.09k
          }
715
3.64k
        }
716
4.06k
      }
717
718
2.82k
      if (idom >= 0 && blocks[j].idom != idom) {
719
759
        blocks[j].idom = idom;
720
759
        changed = 1;
721
759
      }
722
2.82k
    }
723
35
  } while (changed);
724
10
  blocks[0].idom = -1;
725
726
769
  for (j = 1; j < blocks_count; j++) {
727
759
    if ((blocks[j].flags & ZEND_BB_REACHABLE) == 0) {
728
0
      continue;
729
0
    }
730
759
    if (blocks[j].idom >= 0) {
731
      /* Sort by block number to traverse children in pre-order */
732
759
      if (blocks[blocks[j].idom].children < 0 ||
733
419
          j < blocks[blocks[j].idom].children) {
734
419
        blocks[j].next_child = blocks[blocks[j].idom].children;
735
419
        blocks[blocks[j].idom].children = j;
736
419
      } else {
737
340
        int k = blocks[blocks[j].idom].children;
738
340
        while (blocks[k].next_child >=0 && j > blocks[k].next_child) {
739
0
          k = blocks[k].next_child;
740
0
        }
741
340
        blocks[j].next_child = blocks[k].next_child;
742
340
        blocks[k].next_child = j;
743
340
      }
744
759
    }
745
759
  }
746
747
779
  for (j = 0; j < blocks_count; j++) {
748
769
    int idom = blocks[j].idom, level = 0;
749
769
    if ((blocks[j].flags & ZEND_BB_REACHABLE) == 0) {
750
0
      continue;
751
0
    }
752
830
    while (idom >= 0) {
753
820
      level++;
754
820
      if (blocks[idom].level >= 0) {
755
759
        level += blocks[idom].level;
756
759
        break;
757
759
      } else {
758
61
        idom = blocks[idom].idom;
759
61
      }
760
820
    }
761
769
    blocks[j].level = level;
762
769
  }
763
764
10
  free_alloca(postnum, use_heap);
765
10
}
766
/* }}} */
767
768
static bool dominates(zend_basic_block *blocks, int a, int b) /* {{{ */
769
358
{
770
522
  while (blocks[b].level > blocks[a].level) {
771
164
    b = blocks[b].idom;
772
164
  }
773
358
  return a == b;
774
358
}
775
/* }}} */
776
777
ZEND_API void zend_cfg_identify_loops(const zend_op_array *op_array, zend_cfg *cfg) /* {{{ */
778
32
{
779
32
  int i, j, k, n;
780
32
  int time;
781
32
  zend_basic_block *blocks = cfg->blocks;
782
32
  int *entry_times, *exit_times;
783
32
  zend_worklist work;
784
32
  int flag = ZEND_FUNC_NO_LOOPS;
785
32
  int *sorted_blocks;
786
32
  ALLOCA_FLAG(list_use_heap)
787
32
  ALLOCA_FLAG(tree_use_heap)
788
789
32
  if (cfg->blocks_count == 1) {
790
22
    cfg->flags |= flag;
791
22
    return;
792
22
  }
793
794
10
  ZEND_WORKLIST_ALLOCA(&work, cfg->blocks_count, list_use_heap);
795
796
  /* We don't materialize the DJ spanning tree explicitly, as we are only interested in ancestor
797
   * queries. These are implemented by checking entry/exit times of the DFS search. */
798
10
  entry_times = do_alloca(3 * sizeof(int) * cfg->blocks_count, tree_use_heap);
799
10
  exit_times = entry_times + cfg->blocks_count;
800
10
  sorted_blocks = exit_times + cfg->blocks_count;
801
10
  memset(entry_times, -1, 2 * sizeof(int) * cfg->blocks_count);
802
803
10
  zend_worklist_push(&work, 0);
804
10
  time = 0;
805
779
  while (zend_worklist_len(&work)) {
806
1.52k
  next:
807
1.52k
    i = zend_worklist_peek(&work);
808
1.52k
    if (entry_times[i] == -1) {
809
769
      entry_times[i] = time++;
810
769
    }
811
    /* Visit blocks immediately dominated by i. */
812
2.34k
    for (j = blocks[i].children; j >= 0; j = blocks[j].next_child) {
813
1.28k
      if (zend_worklist_push(&work, j)) {
814
470
        goto next;
815
470
      }
816
1.28k
    }
817
    /* Visit join edges.  */
818
2.17k
    for (j = 0; j < blocks[i].successors_count; j++) {
819
1.40k
      int succ = blocks[i].successors[j];
820
1.40k
      if (blocks[succ].idom == i) {
821
759
        continue;
822
759
      } else if (zend_worklist_push(&work, succ)) {
823
289
        goto next;
824
289
      }
825
1.40k
    }
826
769
    exit_times[i] = time++;
827
769
    zend_worklist_pop(&work);
828
769
  }
829
830
  /* Sort blocks by level, which is the opposite order in which we want to process them */
831
10
  sorted_blocks[0] = 0;
832
10
  j = 0;
833
10
  n = 1;
834
358
  while (j != n) {
835
348
    i = j;
836
348
    j = n;
837
1.11k
    for (; i < j; i++) {
838
769
      int child;
839
1.52k
      for (child = blocks[sorted_blocks[i]].children; child >= 0; child = blocks[child].next_child) {
840
759
        sorted_blocks[n++] = child;
841
759
      }
842
769
    }
843
348
  }
844
845
  /* Identify loops. See Sreedhar et al, "Identifying Loops Using DJ Graphs". */
846
779
  while (n > 0) {
847
769
    i = sorted_blocks[--n];
848
849
769
    if (blocks[i].predecessors_count < 2) {
850
        /* loop header has at least two input edges */
851
411
      continue;
852
411
    }
853
854
1.07k
    for (j = 0; j < blocks[i].predecessors_count; j++) {
855
716
      int pred = cfg->predecessors[blocks[i].predecessor_offset + j];
856
857
      /* A join edge is one for which the predecessor does not
858
         immediately dominate the successor. */
859
716
      if (blocks[i].idom == pred) {
860
358
        continue;
861
358
      }
862
863
      /* In a loop back-edge (back-join edge), the successor dominates
864
         the predecessor.  */
865
358
      if (dominates(blocks, i, pred)) {
866
69
        blocks[i].flags |= ZEND_BB_LOOP_HEADER;
867
69
        flag &= ~ZEND_FUNC_NO_LOOPS;
868
69
        if (!zend_worklist_len(&work)) {
869
69
          zend_bitset_clear(work.visited, zend_bitset_len(cfg->blocks_count));
870
69
        }
871
69
        zend_worklist_push(&work, pred);
872
289
      } else {
873
        /* Otherwise it's a cross-join edge.  See if it's a branch
874
           to an ancestor on the DJ spanning tree.  */
875
289
        if (entry_times[pred] > entry_times[i] && exit_times[pred] < exit_times[i]) {
876
0
          blocks[i].flags |= ZEND_BB_IRREDUCIBLE_LOOP;
877
0
          flag |= ZEND_FUNC_IRREDUCIBLE;
878
0
          flag &= ~ZEND_FUNC_NO_LOOPS;
879
0
        }
880
289
      }
881
358
    }
882
604
    while (zend_worklist_len(&work)) {
883
246
      j = zend_worklist_pop(&work);
884
318
      while (blocks[j].loop_header >= 0) {
885
72
        j = blocks[j].loop_header;
886
72
      }
887
246
      if (j != i) {
888
141
        if (blocks[j].idom < 0 && j != 0) {
889
          /* Ignore blocks that are unreachable or only abnormally reachable. */
890
0
          continue;
891
0
        }
892
141
        blocks[j].loop_header = i;
893
323
        for (k = 0; k < blocks[j].predecessors_count; k++) {
894
182
          zend_worklist_push(&work, cfg->predecessors[blocks[j].predecessor_offset + k]);
895
182
        }
896
141
      }
897
246
    }
898
358
  }
899
900
10
  free_alloca(entry_times, tree_use_heap);
901
10
  ZEND_WORKLIST_FREE_ALLOCA(&work, list_use_heap);
902
903
10
  cfg->flags |= flag;
904
10
}
905
/* }}} */