Coverage Report

Created: 2025-12-14 06:09

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/php-src/Zend/Optimizer/sccp.c
Line
Count
Source
1
/*
2
   +----------------------------------------------------------------------+
3
   | Zend Engine, SCCP - Sparse Conditional Constant Propagation          |
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: Nikita Popov <nikic@php.net>                                |
16
   |          Dmitry Stogov <dmitry@php.net>                              |
17
   +----------------------------------------------------------------------+
18
*/
19
20
#include "zend_API.h"
21
#include "zend_exceptions.h"
22
#include "zend_ini.h"
23
#include "zend_type_info.h"
24
#include "Optimizer/zend_optimizer_internal.h"
25
#include "Optimizer/zend_call_graph.h"
26
#include "Optimizer/zend_inference.h"
27
#include "Optimizer/scdf.h"
28
#include "Optimizer/zend_dump.h"
29
30
/* This implements sparse conditional constant propagation (SCCP) based on the SCDF framework. The
31
 * used value lattice is defined as follows:
32
 *
33
 * BOT < {constant values} < TOP
34
 *
35
 * TOP indicates an underdefined value, i.e. that we do not yet know the value of variable.
36
 * BOT indicates an overdefined value, i.e. that we know the variable to be non-constant.
37
 *
38
 * All variables are optimistically initialized to TOP, apart from the implicit variables defined
39
 * at the start of the first block. Note that variables that MAY_BE_REF are *not* initialized to
40
 * BOT. We rely on the fact that any operation resulting in a reference will produce a BOT anyway.
41
 * This is better because such operations might never be reached due to the conditional nature of
42
 * the algorithm.
43
 *
44
 * The meet operation for phi functions is defined as follows:
45
 * BOT + any = BOT
46
 * TOP + any = any
47
 * C_i + C_i = C_i (i.e. two equal constants)
48
 * C_i + C_j = BOT (i.e. two different constants)
49
 *
50
 * When evaluating instructions TOP and BOT are handled as follows:
51
 * a) If any operand is BOT, the result is BOT. The main exception to this is op1 of ASSIGN, which
52
 *    is ignored. However, if the op1 MAY_BE_REF we do have to propagate the BOT.
53
 * b) Otherwise, if the instruction can never be evaluated (either in general, or with the
54
 *    specific modifiers) the result is BOT.
55
 * c) Otherwise, if any operand is TOP, the result is TOP.
56
 * d) Otherwise (at this point all operands are known and constant), if we can compute the result
57
 *    for these specific constants (without throwing notices or similar) then that is the result.
58
 * e) Otherwise the result is BOT.
59
 *
60
 * It is sometimes possible to determine a result even if one argument is TOP / BOT, e.g. for things
61
 * like BOT*0. Right now we don't bother with this.
62
 *
63
 * Feasible successors for conditional branches are determined as follows:
64
 * a) If we don't support the branch type or branch on BOT, all successors are feasible.
65
 * b) Otherwise, if we branch on TOP none of the successors are feasible.
66
 * c) Otherwise (we branch on a constant), the feasible successors are marked based on the constant
67
 *    (usually only one successor will be feasible).
68
 *
69
 * The original SCCP algorithm is extended with ability to propagate constant array
70
 * elements and object properties. The extension is based on a variation of Array
71
 * SSA form and its application to Spare Constant Propagation, described at
72
 * "Array SSA Form" by Vivek Sarkar, Kathleen Knobe and Stephen Fink in chapter
73
 * 16 of the SSA book.
74
 */
75
76
#define SCP_DEBUG 0
77
78
typedef struct _sccp_ctx {
79
  scdf_ctx scdf;
80
  zend_call_info **call_map;
81
  zval *values;
82
  zval top;
83
  zval bot;
84
} sccp_ctx;
85
86
2.94M
#define TOP ((uint8_t)-1)
87
2.34M
#define BOT ((uint8_t)-2)
88
656k
#define PARTIAL_ARRAY ((uint8_t)-3)
89
620k
#define PARTIAL_OBJECT ((uint8_t)-4)
90
3.52M
#define IS_TOP(zv) (Z_TYPE_P(zv) == TOP)
91
3.71M
#define IS_BOT(zv) (Z_TYPE_P(zv) == BOT)
92
1.27M
#define IS_PARTIAL_ARRAY(zv) (Z_TYPE_P(zv) == PARTIAL_ARRAY)
93
621k
#define IS_PARTIAL_OBJECT(zv) (Z_TYPE_P(zv) == PARTIAL_OBJECT)
94
95
5.28k
#define MAKE_PARTIAL_ARRAY(zv) (Z_TYPE_INFO_P(zv) = PARTIAL_ARRAY | (IS_TYPE_REFCOUNTED << Z_TYPE_FLAGS_SHIFT))
96
433
#define MAKE_PARTIAL_OBJECT(zv) (Z_TYPE_INFO_P(zv) = PARTIAL_OBJECT | (IS_TYPE_REFCOUNTED << Z_TYPE_FLAGS_SHIFT))
97
98
751k
#define MAKE_TOP(zv) (Z_TYPE_INFO_P(zv) = TOP)
99
93.5k
#define MAKE_BOT(zv) (Z_TYPE_INFO_P(zv) = BOT)
100
101
0
static void scp_dump_value(zval *zv) {
102
0
  if (IS_TOP(zv)) {
103
0
    fprintf(stderr, " top");
104
0
  } else if (IS_BOT(zv)) {
105
0
    fprintf(stderr, " bot");
106
0
  } else if (Z_TYPE_P(zv) == IS_ARRAY || IS_PARTIAL_ARRAY(zv)) {
107
0
    fprintf(stderr, " %s[", IS_PARTIAL_ARRAY(zv) ? "partial " : "");
108
0
    zend_dump_ht(Z_ARRVAL_P(zv));
109
0
    fprintf(stderr, "]");
110
0
  } else if (IS_PARTIAL_OBJECT(zv)) {
111
0
    fprintf(stderr, " {");
112
0
    zend_dump_ht(Z_ARRVAL_P(zv));
113
0
    fprintf(stderr, "}");
114
0
  } else {
115
0
    zend_dump_const(zv);
116
0
  }
117
0
}
118
119
static void empty_partial_array(zval *zv)
120
1.60k
{
121
1.60k
  MAKE_PARTIAL_ARRAY(zv);
122
1.60k
  Z_ARR_P(zv) = zend_new_array(8);
123
1.60k
}
124
125
static void dup_partial_array(zval *dst, const zval *src)
126
476
{
127
476
  MAKE_PARTIAL_ARRAY(dst);
128
476
  Z_ARR_P(dst) = zend_array_dup(Z_ARR_P(src));
129
476
}
130
131
static void empty_partial_object(zval *zv)
132
267
{
133
267
  MAKE_PARTIAL_OBJECT(zv);
134
267
  Z_ARR_P(zv) = zend_new_array(8);
135
267
}
136
137
static void dup_partial_object(zval *dst, const zval *src)
138
166
{
139
166
  MAKE_PARTIAL_OBJECT(dst);
140
166
  Z_ARR_P(dst) = zend_array_dup(Z_ARR_P(src));
141
166
}
142
143
668k
static inline bool value_known(zval *zv) {
144
668k
  return !IS_TOP(zv) && !IS_BOT(zv);
145
668k
}
146
147
/* Sets new value for variable and ensures that it is lower or equal
148
 * the previous one in the constant propagation lattice. */
149
619k
static void set_value(scdf_ctx *scdf, sccp_ctx *ctx, int var, const zval *new) {
150
619k
  zval *value = &ctx->values[var];
151
619k
  if (IS_BOT(value) || IS_TOP(new)) {
152
1.13k
    return;
153
1.13k
  }
154
155
#if SCP_DEBUG
156
  fprintf(stderr, "Lowering #%d.", var);
157
  zend_dump_var(scdf->op_array, IS_CV, scdf->ssa->vars[var].var);
158
  fprintf(stderr, " from");
159
  scp_dump_value(value);
160
  fprintf(stderr, " to");
161
  scp_dump_value(new);
162
  fprintf(stderr, "\n");
163
#endif
164
165
618k
  if (IS_TOP(value) || IS_BOT(new)) {
166
617k
    zval_ptr_dtor_nogc(value);
167
617k
    ZVAL_COPY(value, new);
168
617k
    scdf_add_to_worklist(scdf, var);
169
617k
    return;
170
617k
  }
171
172
  /* Always replace PARTIAL_(ARRAY|OBJECT), as new maybe changed by join_partial_(arrays|object) */
173
640
  if (IS_PARTIAL_ARRAY(new) || IS_PARTIAL_OBJECT(new)) {
174
81
    if (Z_TYPE_P(value) != Z_TYPE_P(new)
175
47
      || zend_hash_num_elements(Z_ARR_P(new)) != zend_hash_num_elements(Z_ARR_P(value))) {
176
47
      zval_ptr_dtor_nogc(value);
177
47
      ZVAL_COPY(value, new);
178
47
      scdf_add_to_worklist(scdf, var);
179
47
    }
180
81
    return;
181
81
  }
182
183
559
#if ZEND_DEBUG
184
559
  ZEND_ASSERT(zend_is_identical(value, new) ||
185
559
    (Z_TYPE_P(value) == IS_DOUBLE && Z_TYPE_P(new) == IS_DOUBLE && isnan(Z_DVAL_P(value)) && isnan(Z_DVAL_P(new))));
186
559
#endif
187
559
}
188
189
868k
static zval *get_op1_value(sccp_ctx *ctx, zend_op *opline, const zend_ssa_op *ssa_op) {
190
868k
  if (opline->op1_type == IS_CONST) {
191
110k
    return CT_CONSTANT_EX(ctx->scdf.op_array, opline->op1.constant);
192
758k
  } else if (ssa_op->op1_use != -1) {
193
529k
    return &ctx->values[ssa_op->op1_use];
194
529k
  } else {
195
229k
    return NULL;
196
229k
  }
197
868k
}
198
199
827k
static zval *get_op2_value(sccp_ctx *ctx, const zend_op *opline, const zend_ssa_op *ssa_op) {
200
827k
  if (opline->op2_type == IS_CONST) {
201
254k
    return CT_CONSTANT_EX(ctx->scdf.op_array, opline->op2.constant);
202
573k
  } else if (ssa_op->op2_use != -1) {
203
143k
    return &ctx->values[ssa_op->op2_use];
204
429k
  } else {
205
429k
    return NULL;
206
429k
  }
207
827k
}
208
209
static bool can_replace_op1(
210
11.3k
    const zend_op_array *op_array, const zend_op *opline, const zend_ssa_op *ssa_op) {
211
11.3k
  switch (opline->opcode) {
212
37
    case ZEND_PRE_INC:
213
39
    case ZEND_PRE_DEC:
214
39
    case ZEND_PRE_INC_OBJ:
215
39
    case ZEND_PRE_DEC_OBJ:
216
39
    case ZEND_POST_INC:
217
39
    case ZEND_POST_DEC:
218
39
    case ZEND_POST_INC_OBJ:
219
39
    case ZEND_POST_DEC_OBJ:
220
796
    case ZEND_ASSIGN:
221
845
    case ZEND_ASSIGN_REF:
222
1.02k
    case ZEND_ASSIGN_DIM:
223
1.03k
    case ZEND_ASSIGN_OBJ:
224
1.03k
    case ZEND_ASSIGN_OBJ_REF:
225
1.06k
    case ZEND_ASSIGN_OP:
226
1.08k
    case ZEND_ASSIGN_DIM_OP:
227
1.08k
    case ZEND_ASSIGN_OBJ_OP:
228
1.08k
    case ZEND_ASSIGN_STATIC_PROP_OP:
229
1.13k
    case ZEND_FETCH_DIM_W:
230
1.13k
    case ZEND_FETCH_DIM_RW:
231
1.13k
    case ZEND_FETCH_DIM_UNSET:
232
1.13k
    case ZEND_FETCH_DIM_FUNC_ARG:
233
1.13k
    case ZEND_FETCH_OBJ_W:
234
1.13k
    case ZEND_FETCH_OBJ_RW:
235
1.13k
    case ZEND_FETCH_OBJ_UNSET:
236
1.13k
    case ZEND_FETCH_OBJ_FUNC_ARG:
237
1.13k
    case ZEND_FETCH_LIST_W:
238
1.15k
    case ZEND_UNSET_DIM:
239
1.15k
    case ZEND_UNSET_OBJ:
240
1.17k
    case ZEND_SEND_REF:
241
1.18k
    case ZEND_SEND_VAR_EX:
242
1.21k
    case ZEND_SEND_FUNC_ARG:
243
1.21k
    case ZEND_SEND_UNPACK:
244
1.21k
    case ZEND_SEND_ARRAY:
245
1.21k
    case ZEND_SEND_USER:
246
1.21k
    case ZEND_FE_RESET_RW:
247
1.21k
      return false;
248
    /* Do not accept CONST */
249
6.81k
    case ZEND_ROPE_ADD:
250
6.81k
    case ZEND_ROPE_END:
251
6.81k
    case ZEND_BIND_STATIC:
252
6.81k
    case ZEND_BIND_INIT_STATIC_OR_JMP:
253
6.81k
    case ZEND_BIND_GLOBAL:
254
6.82k
    case ZEND_MAKE_REF:
255
6.83k
    case ZEND_UNSET_CV:
256
6.83k
    case ZEND_ISSET_ISEMPTY_CV:
257
6.83k
      return false;
258
20
    case ZEND_INIT_ARRAY:
259
24
    case ZEND_ADD_ARRAY_ELEMENT:
260
24
      return !(opline->extended_value & ZEND_ARRAY_ELEMENT_REF);
261
24
    case ZEND_YIELD:
262
24
      return !(op_array->fn_flags & ZEND_ACC_RETURN_REFERENCE);
263
28
    case ZEND_VERIFY_RETURN_TYPE:
264
      // TODO: This would require a non-local change ???
265
28
      return false;
266
452
    case ZEND_OP_DATA:
267
452
      return (opline - 1)->opcode != ZEND_ASSIGN_OBJ_REF &&
268
452
        (opline - 1)->opcode != ZEND_ASSIGN_STATIC_PROP_REF;
269
2.79k
    default:
270
2.79k
      if (ssa_op->op1_def != -1) {
271
0
        ZEND_UNREACHABLE();
272
0
        return false;
273
0
      }
274
11.3k
  }
275
276
2.79k
  return true;
277
11.3k
}
278
279
static bool can_replace_op2(
280
2.03k
    const zend_op_array *op_array, zend_op *opline, zend_ssa_op *ssa_op) {
281
2.03k
  switch (opline->opcode) {
282
    /* Do not accept CONST */
283
0
    case ZEND_DECLARE_CLASS_DELAYED:
284
28
    case ZEND_BIND_LEXICAL:
285
28
    case ZEND_FE_FETCH_R:
286
28
    case ZEND_FE_FETCH_RW:
287
28
      return false;
288
2.03k
  }
289
2.00k
  return true;
290
2.03k
}
291
292
static bool try_replace_op1(
293
21.6k
    sccp_ctx *ctx, zend_op *opline, zend_ssa_op *ssa_op, int var, zval *value) {
294
21.6k
  if (ssa_op->op1_use == var && can_replace_op1(ctx->scdf.op_array, opline, ssa_op)) {
295
3.26k
    zval zv;
296
3.26k
    ZVAL_COPY(&zv, value);
297
3.26k
    if (zend_optimizer_update_op1_const(ctx->scdf.op_array, opline, &zv)) {
298
3.23k
      return true;
299
3.23k
    }
300
36
    zval_ptr_dtor_nogc(&zv);
301
36
  }
302
18.4k
  return false;
303
21.6k
}
304
305
static bool try_replace_op2(
306
21.6k
    sccp_ctx *ctx, zend_op *opline, zend_ssa_op *ssa_op, int var, zval *value) {
307
21.6k
  if (ssa_op->op2_use == var && can_replace_op2(ctx->scdf.op_array, opline, ssa_op)) {
308
2.00k
    zval zv;
309
2.00k
    ZVAL_COPY(&zv, value);
310
2.00k
    if (zend_optimizer_update_op2_const(ctx->scdf.op_array, opline, &zv)) {
311
1.95k
      return true;
312
1.95k
    }
313
56
    zval_ptr_dtor_nogc(&zv);
314
56
  }
315
19.7k
  return false;
316
21.6k
}
317
318
4.59k
static inline zend_result ct_eval_binary_op(zval *result, uint8_t binop, zval *op1, zval *op2) {
319
  /* TODO: We could implement support for evaluation of + on partial arrays. */
320
4.59k
  if (IS_PARTIAL_ARRAY(op1) || IS_PARTIAL_ARRAY(op2)) {
321
10
    return FAILURE;
322
10
  }
323
324
4.58k
  return zend_optimizer_eval_binary_op(result, binop, op1, op2);
325
4.59k
}
326
327
2.11k
static inline zend_result ct_eval_bool_cast(zval *result, zval *op) {
328
2.11k
  if (IS_PARTIAL_ARRAY(op)) {
329
0
    if (zend_hash_num_elements(Z_ARRVAL_P(op)) == 0) {
330
      /* An empty partial array may be non-empty at runtime, we don't know whether the
331
       * result will be true or false. */
332
0
      return FAILURE;
333
0
    }
334
335
0
    ZVAL_TRUE(result);
336
0
    return SUCCESS;
337
0
  }
338
  /* NAN warns when casting */
339
2.11k
  if (Z_TYPE_P(op) == IS_DOUBLE && zend_isnan(Z_DVAL_P(op))) {
340
2
    return FAILURE;
341
2
  }
342
343
2.10k
  ZVAL_BOOL(result, zend_is_true(op));
344
2.10k
  return SUCCESS;
345
2.11k
}
346
347
20
static inline zend_result zval_to_string_offset(zend_long *result, zval *op) {
348
20
  switch (Z_TYPE_P(op)) {
349
18
    case IS_LONG:
350
18
      *result = Z_LVAL_P(op);
351
18
      return SUCCESS;
352
2
    case IS_STRING:
353
2
      if (IS_LONG == is_numeric_string(
354
2
          Z_STRVAL_P(op), Z_STRLEN_P(op), result, NULL, 0)) {
355
0
        return SUCCESS;
356
0
      }
357
2
      return FAILURE;
358
0
    default:
359
0
      return FAILURE;
360
20
  }
361
20
}
362
363
340
static inline zend_result fetch_array_elem(zval **result, zval *op1, zval *op2) {
364
340
  switch (Z_TYPE_P(op2)) {
365
2
    case IS_NULL:
366
2
      *result = zend_hash_find(Z_ARR_P(op1), ZSTR_EMPTY_ALLOC());
367
2
      return SUCCESS;
368
2
    case IS_FALSE:
369
2
      *result = zend_hash_index_find(Z_ARR_P(op1), 0);
370
2
      return SUCCESS;
371
2
    case IS_TRUE:
372
2
      *result = zend_hash_index_find(Z_ARR_P(op1), 1);
373
2
      return SUCCESS;
374
270
    case IS_LONG:
375
270
      *result = zend_hash_index_find(Z_ARR_P(op1), Z_LVAL_P(op2));
376
270
      return SUCCESS;
377
4
    case IS_DOUBLE: {
378
4
      zend_long lval = zend_dval_to_lval_silent(Z_DVAL_P(op2));
379
4
      if (!zend_is_long_compatible(Z_DVAL_P(op2), lval)) {
380
2
        return FAILURE;
381
2
      }
382
2
      *result = zend_hash_index_find(Z_ARR_P(op1), lval);
383
2
      return SUCCESS;
384
4
    }
385
60
    case IS_STRING:
386
60
      *result = zend_symtable_find(Z_ARR_P(op1), Z_STR_P(op2));
387
60
      return SUCCESS;
388
0
    default:
389
0
      return FAILURE;
390
340
  }
391
340
}
392
393
367
static inline zend_result ct_eval_fetch_dim(zval *result, zval *op1, zval *op2, int support_strings) {
394
367
  if (Z_TYPE_P(op1) == IS_ARRAY || IS_PARTIAL_ARRAY(op1)) {
395
325
    zval *value;
396
325
    if (fetch_array_elem(&value, op1, op2) == SUCCESS && value && !IS_BOT(value)) {
397
231
      ZVAL_COPY(result, value);
398
231
      return SUCCESS;
399
231
    }
400
325
  } else if (support_strings && Z_TYPE_P(op1) == IS_STRING) {
401
20
    zend_long index;
402
20
    if (zval_to_string_offset(&index, op2) == FAILURE) {
403
2
      return FAILURE;
404
2
    }
405
18
    if (index >= 0 && index < Z_STRLEN_P(op1)) {
406
16
      ZVAL_STR(result, zend_string_init(&Z_STRVAL_P(op1)[index], 1, 0));
407
16
      return SUCCESS;
408
16
    }
409
18
  }
410
118
  return FAILURE;
411
367
}
412
413
/* op1 may be NULL here to indicate an unset value */
414
15
static inline zend_result ct_eval_isset_isempty(zval *result, uint32_t extended_value, zval *op1) {
415
15
  zval zv;
416
15
  if (!(extended_value & ZEND_ISEMPTY)) {
417
15
    ZVAL_BOOL(result, op1 && Z_TYPE_P(op1) != IS_NULL);
418
15
    return SUCCESS;
419
15
  } else if (!op1) {
420
0
    ZVAL_TRUE(result);
421
0
    return SUCCESS;
422
0
  } else if (ct_eval_bool_cast(&zv, op1) == SUCCESS) {
423
0
    ZVAL_BOOL(result, Z_TYPE(zv) == IS_FALSE);
424
0
    return SUCCESS;
425
0
  } else {
426
0
    return FAILURE;
427
0
  }
428
15
}
429
430
15
static inline zend_result ct_eval_isset_dim(zval *result, uint32_t extended_value, zval *op1, zval *op2) {
431
15
  if (Z_TYPE_P(op1) == IS_ARRAY || IS_PARTIAL_ARRAY(op1)) {
432
15
    zval *value;
433
15
    if (fetch_array_elem(&value, op1, op2) == FAILURE) {
434
0
      return FAILURE;
435
0
    }
436
15
    if (IS_PARTIAL_ARRAY(op1) && (!value || IS_BOT(value))) {
437
0
      return FAILURE;
438
0
    }
439
15
    return ct_eval_isset_isempty(result, extended_value, value);
440
15
  } else if (Z_TYPE_P(op1) == IS_STRING) {
441
    // TODO
442
0
    return FAILURE;
443
0
  } else {
444
0
    ZVAL_BOOL(result, (extended_value & ZEND_ISEMPTY));
445
0
    return SUCCESS;
446
0
  }
447
15
}
448
449
464
static inline zend_result ct_eval_del_array_elem(zval *result, const zval *key) {
450
464
  ZEND_ASSERT(IS_PARTIAL_ARRAY(result));
451
452
464
  switch (Z_TYPE_P(key)) {
453
0
    case IS_NULL:
454
0
      zend_hash_del(Z_ARR_P(result), ZSTR_EMPTY_ALLOC());
455
0
      break;
456
2
    case IS_FALSE:
457
2
      zend_hash_index_del(Z_ARR_P(result), 0);
458
2
      break;
459
0
    case IS_TRUE:
460
0
      zend_hash_index_del(Z_ARR_P(result), 1);
461
0
      break;
462
246
    case IS_LONG:
463
246
      zend_hash_index_del(Z_ARR_P(result), Z_LVAL_P(key));
464
246
      break;
465
0
    case IS_DOUBLE: {
466
0
      zend_long lval = zend_dval_to_lval_silent(Z_DVAL_P(key));
467
0
      if (!zend_is_long_compatible(Z_DVAL_P(key), lval)) {
468
0
        return FAILURE;
469
0
      }
470
0
      zend_hash_index_del(Z_ARR_P(result), lval);
471
0
      break;
472
0
    }
473
212
    case IS_STRING:
474
212
      zend_symtable_del(Z_ARR_P(result), Z_STR_P(key));
475
212
      break;
476
4
    default:
477
4
      return FAILURE;
478
464
  }
479
480
460
  return SUCCESS;
481
464
}
482
483
2.03k
static inline zend_result ct_eval_add_array_elem(zval *result, zval *value, const zval *key) {
484
2.03k
  if (!key) {
485
1.28k
    SEPARATE_ARRAY(result);
486
1.28k
    if ((value = zend_hash_next_index_insert(Z_ARR_P(result), value))) {
487
1.28k
      Z_TRY_ADDREF_P(value);
488
1.28k
      return SUCCESS;
489
1.28k
    }
490
0
    return FAILURE;
491
1.28k
  }
492
493
749
  switch (Z_TYPE_P(key)) {
494
0
    case IS_NULL:
495
0
      SEPARATE_ARRAY(result);
496
0
      value = zend_hash_update(Z_ARR_P(result), ZSTR_EMPTY_ALLOC(), value);
497
0
      break;
498
2
    case IS_FALSE:
499
2
      SEPARATE_ARRAY(result);
500
2
      value = zend_hash_index_update(Z_ARR_P(result), 0, value);
501
2
      break;
502
0
    case IS_TRUE:
503
0
      SEPARATE_ARRAY(result);
504
0
      value = zend_hash_index_update(Z_ARR_P(result), 1, value);
505
0
      break;
506
372
    case IS_LONG:
507
372
      SEPARATE_ARRAY(result);
508
372
      value = zend_hash_index_update(Z_ARR_P(result), Z_LVAL_P(key), value);
509
372
      break;
510
6
    case IS_DOUBLE: {
511
6
      zend_long lval = zend_dval_to_lval_silent(Z_DVAL_P(key));
512
6
      if (!zend_is_long_compatible(Z_DVAL_P(key), lval)) {
513
6
        return FAILURE;
514
6
      }
515
0
      SEPARATE_ARRAY(result);
516
0
      value = zend_hash_index_update(
517
0
        Z_ARR_P(result), lval, value);
518
0
      break;
519
6
    }
520
369
    case IS_STRING:
521
369
      SEPARATE_ARRAY(result);
522
369
      value = zend_symtable_update(Z_ARR_P(result), Z_STR_P(key), value);
523
369
      break;
524
0
    default:
525
0
      return FAILURE;
526
749
  }
527
528
743
  Z_TRY_ADDREF_P(value);
529
743
  return SUCCESS;
530
749
}
531
532
12
static inline zend_result ct_eval_add_array_unpack(zval *result, zval *array) {
533
12
  zend_string *key;
534
12
  zval *value;
535
12
  if (Z_TYPE_P(array) != IS_ARRAY) {
536
8
    return FAILURE;
537
8
  }
538
539
4
  SEPARATE_ARRAY(result);
540
24
  ZEND_HASH_FOREACH_STR_KEY_VAL(Z_ARRVAL_P(array), key, value) {
541
24
    if (key) {
542
0
      value = zend_hash_update(Z_ARR_P(result), key, value);
543
10
    } else {
544
10
      value = zend_hash_next_index_insert(Z_ARR_P(result), value);
545
10
    }
546
24
    if (!value) {
547
0
      return FAILURE;
548
0
    }
549
10
    Z_TRY_ADDREF_P(value);
550
10
  } ZEND_HASH_FOREACH_END();
551
4
  return SUCCESS;
552
4
}
553
554
396
static inline zend_result ct_eval_assign_dim(zval *result, zval *value, const zval *key) {
555
396
  switch (Z_TYPE_P(result)) {
556
44
    case IS_NULL:
557
44
    case IS_FALSE:
558
44
      array_init(result);
559
44
      ZEND_FALLTHROUGH;
560
192
    case IS_ARRAY:
561
390
    case PARTIAL_ARRAY:
562
390
      return ct_eval_add_array_elem(result, value, key);
563
4
    case IS_STRING:
564
      // TODO Before enabling this case, make sure ARRAY_DIM result op is correct
565
#if 0
566
      zend_long index;
567
      zend_string *new_str, *value_str;
568
      if (!key || Z_TYPE_P(value) == IS_ARRAY
569
          || zval_to_string_offset(&index, key) == FAILURE || index < 0) {
570
        return FAILURE;
571
      }
572
573
      if (index >= Z_STRLEN_P(result)) {
574
        new_str = zend_string_alloc(index + 1, 0);
575
        memcpy(ZSTR_VAL(new_str), Z_STRVAL_P(result), Z_STRLEN_P(result));
576
        memset(ZSTR_VAL(new_str) + Z_STRLEN_P(result), ' ', index - Z_STRLEN_P(result));
577
        ZSTR_VAL(new_str)[index + 1] = 0;
578
      } else {
579
        new_str = zend_string_init(Z_STRVAL_P(result), Z_STRLEN_P(result), 0);
580
      }
581
582
      value_str = zval_get_string(value);
583
      ZVAL_STR(result, new_str);
584
      Z_STRVAL_P(result)[index] = ZSTR_VAL(value_str)[0];
585
      zend_string_release_ex(value_str, 0);
586
#endif
587
4
      return FAILURE;
588
2
    default:
589
2
      return FAILURE;
590
396
  }
591
396
}
592
593
34
static inline zend_result fetch_obj_prop(zval **result, zval *op1, zval *op2) {
594
34
  switch (Z_TYPE_P(op2)) {
595
22
    case IS_STRING:
596
22
      *result = zend_symtable_find(Z_ARR_P(op1), Z_STR_P(op2));
597
22
      return SUCCESS;
598
12
    default:
599
12
      return FAILURE;
600
34
  }
601
34
}
602
603
72
static inline zend_result ct_eval_fetch_obj(zval *result, zval *op1, zval *op2) {
604
72
  if (IS_PARTIAL_OBJECT(op1)) {
605
34
    zval *value;
606
34
    if (fetch_obj_prop(&value, op1, op2) == SUCCESS && value && !IS_BOT(value)) {
607
8
      ZVAL_COPY(result, value);
608
8
      return SUCCESS;
609
8
    }
610
34
  }
611
64
  return FAILURE;
612
72
}
613
614
6
static inline zend_result ct_eval_isset_obj(zval *result, uint32_t extended_value, zval *op1, zval *op2) {
615
6
  if (IS_PARTIAL_OBJECT(op1)) {
616
0
    zval *value;
617
0
    if (fetch_obj_prop(&value, op1, op2) == FAILURE) {
618
0
      return FAILURE;
619
0
    }
620
0
    if (!value || IS_BOT(value)) {
621
0
      return FAILURE;
622
0
    }
623
0
    return ct_eval_isset_isempty(result, extended_value, value);
624
6
  } else {
625
6
    ZVAL_BOOL(result, (extended_value & ZEND_ISEMPTY));
626
6
    return SUCCESS;
627
6
  }
628
6
}
629
630
70
static inline zend_result ct_eval_del_obj_prop(zval *result, const zval *key) {
631
70
  ZEND_ASSERT(IS_PARTIAL_OBJECT(result));
632
633
70
  switch (Z_TYPE_P(key)) {
634
70
    case IS_STRING:
635
70
      zend_symtable_del(Z_ARR_P(result), Z_STR_P(key));
636
70
      break;
637
0
    default:
638
0
      return FAILURE;
639
70
  }
640
641
70
  return SUCCESS;
642
70
}
643
644
96
static inline zend_result ct_eval_add_obj_prop(zval *result, zval *value, const zval *key) {
645
96
  switch (Z_TYPE_P(key)) {
646
96
    case IS_STRING:
647
96
      value = zend_symtable_update(Z_ARR_P(result), Z_STR_P(key), value);
648
96
      break;
649
0
    default:
650
0
      return FAILURE;
651
96
  }
652
653
96
  Z_TRY_ADDREF_P(value);
654
96
  return SUCCESS;
655
96
}
656
657
96
static inline zend_result ct_eval_assign_obj(zval *result, zval *value, const zval *key) {
658
96
  switch (Z_TYPE_P(result)) {
659
0
    case IS_NULL:
660
0
    case IS_FALSE:
661
0
      empty_partial_object(result);
662
0
      ZEND_FALLTHROUGH;
663
96
    case PARTIAL_OBJECT:
664
96
      return ct_eval_add_obj_prop(result, value, key);
665
0
    default:
666
0
      return FAILURE;
667
96
  }
668
96
}
669
670
901
static inline zend_result ct_eval_incdec(zval *result, uint8_t opcode, zval *op1) {
671
  /* As of PHP 8.3 with the warning/deprecation notices any type other than int/double/null will emit a diagnostic
672
  if (Z_TYPE_P(op1) == IS_ARRAY || IS_PARTIAL_ARRAY(op1)) {
673
    return FAILURE;
674
  }
675
  */
676
901
  if (Z_TYPE_P(op1) != IS_LONG && Z_TYPE_P(op1) != IS_DOUBLE && Z_TYPE_P(op1) != IS_NULL) {
677
28
    return FAILURE;
678
28
  }
679
680
873
  ZVAL_COPY(result, op1);
681
873
  if (opcode == ZEND_PRE_INC
682
210
      || opcode == ZEND_POST_INC
683
28
      || opcode == ZEND_PRE_INC_OBJ
684
845
      || opcode == ZEND_POST_INC_OBJ) {
685
845
    increment_function(result);
686
845
  } else {
687
    /* Decrement on null emits a deprecation notice */
688
28
    if (Z_TYPE_P(op1) == IS_NULL) {
689
0
      zval_ptr_dtor(result);
690
0
      return FAILURE;
691
0
    }
692
28
    decrement_function(result);
693
28
  }
694
873
  return SUCCESS;
695
873
}
696
697
4
static inline void ct_eval_type_check(zval *result, uint32_t type_mask, zval *op1) {
698
4
  uint32_t type = Z_TYPE_P(op1);
699
4
  if (type == PARTIAL_ARRAY) {
700
0
    type = IS_ARRAY;
701
4
  } else if (type == PARTIAL_OBJECT) {
702
0
    type = IS_OBJECT;
703
0
  }
704
4
  ZVAL_BOOL(result, (type_mask >> type) & 1);
705
4
}
706
707
0
static inline zend_result ct_eval_in_array(zval *result, uint32_t extended_value, zval *op1, zval *op2) {
708
0
  HashTable *ht;
709
0
  bool res;
710
711
0
  if (Z_TYPE_P(op2) != IS_ARRAY) {
712
0
    return FAILURE;
713
0
  }
714
0
  ht = Z_ARRVAL_P(op2);
715
0
  if (EXPECTED(Z_TYPE_P(op1) == IS_STRING)) {
716
0
    res = zend_hash_exists(ht, Z_STR_P(op1));
717
0
  } else if (extended_value) {
718
0
    if (EXPECTED(Z_TYPE_P(op1) == IS_LONG)) {
719
0
      res = zend_hash_index_exists(ht, Z_LVAL_P(op1));
720
0
    } else {
721
0
      res = false;
722
0
    }
723
0
  } else if (Z_TYPE_P(op1) <= IS_FALSE) {
724
0
    res = zend_hash_exists(ht, ZSTR_EMPTY_ALLOC());
725
0
  } else {
726
0
    zend_string *key;
727
0
    zval key_tmp;
728
729
0
    res = false;
730
0
    ZEND_HASH_MAP_FOREACH_STR_KEY(ht, key) {
731
0
      ZVAL_STR(&key_tmp, key);
732
0
      if (zend_compare(op1, &key_tmp) == 0) {
733
0
        res = true;
734
0
        break;
735
0
      }
736
0
    } ZEND_HASH_FOREACH_END();
737
0
  }
738
0
  ZVAL_BOOL(result, res);
739
0
  return SUCCESS;
740
0
}
741
742
0
static inline zend_result ct_eval_array_key_exists(zval *result, zval *op1, zval *op2) {
743
0
  zval *value;
744
745
0
  if (Z_TYPE_P(op2) != IS_ARRAY && !IS_PARTIAL_ARRAY(op2)) {
746
0
    return FAILURE;
747
0
  }
748
0
  if (Z_TYPE_P(op1) != IS_STRING && Z_TYPE_P(op1) != IS_LONG && Z_TYPE_P(op1) != IS_NULL) {
749
0
    return FAILURE;
750
0
  }
751
0
  if (fetch_array_elem(&value, op2, op1) == FAILURE) {
752
0
    return FAILURE;
753
0
  }
754
0
  if (IS_PARTIAL_ARRAY(op2) && (!value || IS_BOT(value))) {
755
0
    return FAILURE;
756
0
  }
757
758
0
  ZVAL_BOOL(result, value != NULL);
759
0
  return SUCCESS;
760
0
}
761
762
0
static bool can_ct_eval_func_call(zend_function *func, zend_string *name, uint32_t num_args, zval **args) {
763
  /* Precondition: func->type == ZEND_INTERNAL_FUNCTION, this is a global function */
764
  /* Functions setting ZEND_ACC_COMPILE_TIME_EVAL (@compile-time-eval) must always produce the same result for the same arguments,
765
   * and have no dependence on global state (such as locales). It is okay if they throw
766
   * or warn on invalid arguments, as we detect this and will discard the evaluation result. */
767
0
  if (func->common.fn_flags & ZEND_ACC_COMPILE_TIME_EVAL) {
768
    /* This has @compile-time-eval in stub info and uses a macro such as ZEND_SUPPORTS_COMPILE_TIME_EVAL_FE */
769
0
    return true;
770
0
  }
771
0
#ifndef ZEND_WIN32
772
  /* On Windows this function may be code page dependent. */
773
0
  if (zend_string_equals_literal(name, "dirname")) {
774
0
    return true;
775
0
  }
776
0
#endif
777
778
0
  if (num_args == 2) {
779
0
    if (zend_string_equals_literal(name, "str_repeat")) {
780
      /* Avoid creating overly large strings at compile-time. */
781
0
      bool overflow;
782
0
      return Z_TYPE_P(args[0]) == IS_STRING
783
0
        && Z_TYPE_P(args[1]) == IS_LONG
784
0
        && zend_safe_address(Z_STRLEN_P(args[0]), Z_LVAL_P(args[1]), 0, &overflow) < 64 * 1024
785
0
        && !overflow;
786
0
    }
787
0
    return false;
788
0
  }
789
790
0
  return false;
791
0
}
792
793
/* The functions chosen here are simple to implement and either likely to affect a branch,
794
 * or just happened to be commonly used with constant operands in WP (need to test other
795
 * applications as well, of course). */
796
static inline zend_result ct_eval_func_call_ex(
797
0
    zend_op_array *op_array, zval *result, zend_function *func, uint32_t num_args, zval **args) {
798
0
  uint32_t i;
799
0
  zend_string *name = func->common.function_name;
800
0
  if (num_args == 1 && Z_TYPE_P(args[0]) == IS_STRING &&
801
0
      zend_optimizer_eval_special_func_call(result, name, Z_STR_P(args[0])) == SUCCESS) {
802
0
    return SUCCESS;
803
0
  }
804
805
0
  if (!can_ct_eval_func_call(func, name, num_args, args)) {
806
0
    return FAILURE;
807
0
  }
808
809
0
  zend_execute_data *prev_execute_data = EG(current_execute_data);
810
0
  zend_execute_data *execute_data, dummy_frame;
811
0
  zend_op dummy_opline;
812
813
  /* Add a dummy frame to get the correct strict_types behavior. */
814
0
  memset(&dummy_frame, 0, sizeof(zend_execute_data));
815
0
  memset(&dummy_opline, 0, sizeof(zend_op));
816
0
  dummy_frame.func = (zend_function *) op_array;
817
0
  dummy_frame.opline = &dummy_opline;
818
0
  dummy_opline.opcode = ZEND_DO_FCALL;
819
820
0
  execute_data = safe_emalloc(num_args, sizeof(zval), ZEND_CALL_FRAME_SLOT * sizeof(zval));
821
0
  memset(execute_data, 0, sizeof(zend_execute_data));
822
0
  execute_data->prev_execute_data = &dummy_frame;
823
0
  EG(current_execute_data) = execute_data;
824
825
  /* Enable suppression and counting of warnings. */
826
0
  ZEND_ASSERT(EG(capture_warnings_during_sccp) == 0);
827
0
  EG(capture_warnings_during_sccp) = 1;
828
829
0
  EX(func) = func;
830
0
  EX_NUM_ARGS() = num_args;
831
0
  for (i = 0; i < num_args; i++) {
832
0
    ZVAL_COPY(EX_VAR_NUM(i), args[i]);
833
0
  }
834
0
  ZVAL_NULL(result);
835
0
  func->internal_function.handler(execute_data, result);
836
0
  for (i = 0; i < num_args; i++) {
837
0
    zval_ptr_dtor_nogc(EX_VAR_NUM(i));
838
0
  }
839
840
0
  zend_result retval = SUCCESS;
841
0
  if (EG(exception)) {
842
0
    zval_ptr_dtor(result);
843
0
    zend_clear_exception();
844
0
    retval = FAILURE;
845
0
  } else if (EG(capture_warnings_during_sccp) > 1) {
846
0
    zval_ptr_dtor(result);
847
0
    retval = FAILURE;
848
0
  }
849
0
  EG(capture_warnings_during_sccp) = 0;
850
851
0
  efree(execute_data);
852
0
  EG(current_execute_data) = prev_execute_data;
853
0
  return retval;
854
0
}
855
856
static inline zend_result ct_eval_func_call(
857
0
    zend_op_array *op_array, zval *result, zend_string *name, uint32_t num_args, zval **args) {
858
0
  zend_function *func = zend_hash_find_ptr(CG(function_table), name);
859
0
  if (!func || func->type != ZEND_INTERNAL_FUNCTION) {
860
0
    return FAILURE;
861
0
  }
862
0
  return ct_eval_func_call_ex(op_array, result, func, num_args, args);
863
0
}
864
865
2.22M
#define SET_RESULT(op, zv) do { \
866
2.22M
  if (ssa_op->op##_def >= 0) { \
867
522k
    set_value(scdf, ctx, ssa_op->op##_def, zv); \
868
522k
  } \
869
2.22M
} while (0)
870
2.18M
#define SET_RESULT_BOT(op) SET_RESULT(op, &ctx->bot)
871
#define SET_RESULT_TOP(op) SET_RESULT(op, &ctx->top)
872
873
41.0k
#define SKIP_IF_TOP(op) if (IS_TOP(op)) return;
874
875
827k
static void sccp_visit_instr(scdf_ctx *scdf, zend_op *opline, zend_ssa_op *ssa_op) {
876
827k
  sccp_ctx *ctx = (sccp_ctx *) scdf;
877
827k
  zval *op1, *op2, zv; /* zv is a temporary to hold result values */
878
879
827k
  op1 = get_op1_value(ctx, opline, ssa_op);
880
827k
  op2 = get_op2_value(ctx, opline, ssa_op);
881
882
827k
  switch (opline->opcode) {
883
29.2k
    case ZEND_ASSIGN:
884
      /* The value of op1 is irrelevant here, because we are overwriting it
885
       * -- unless it can be a reference, in which case we propagate a BOT.
886
       * The result is also BOT in this case, because it might be a typed reference. */
887
29.2k
      if (IS_BOT(op1) && (ctx->scdf.ssa->var_info[ssa_op->op1_use].type & MAY_BE_REF)) {
888
17.8k
        SET_RESULT_BOT(op1);
889
17.8k
        SET_RESULT_BOT(result);
890
17.8k
      } else {
891
11.4k
        SET_RESULT(op1, op2);
892
11.4k
        SET_RESULT(result, op2);
893
11.4k
      }
894
29.2k
      return;
895
3.66k
    case ZEND_ASSIGN_DIM:
896
3.66k
    {
897
3.66k
      zval *data = get_op1_value(ctx, opline+1, ssa_op+1);
898
899
      /* If $a in $a[$b]=$c is UNDEF, treat it like NULL. There is no warning. */
900
3.66k
      if ((ctx->scdf.ssa->var_info[ssa_op->op1_use].type & MAY_BE_ANY) == 0) {
901
110
        op1 = &EG(uninitialized_zval);
902
110
      }
903
904
3.66k
      if (IS_BOT(op1)) {
905
2.89k
        SET_RESULT_BOT(result);
906
2.89k
        SET_RESULT_BOT(op1);
907
2.89k
        return;
908
2.89k
      }
909
910
763
      SKIP_IF_TOP(op1);
911
763
      SKIP_IF_TOP(data);
912
763
      if (op2) {
913
665
        SKIP_IF_TOP(op2);
914
665
      }
915
916
763
      if (op2 && IS_BOT(op2)) {
917
        /* Update of unknown index */
918
57
        SET_RESULT_BOT(result);
919
57
        if (ssa_op->op1_def >= 0) {
920
57
          empty_partial_array(&zv);
921
57
          SET_RESULT(op1, &zv);
922
57
          zval_ptr_dtor_nogc(&zv);
923
57
        } else {
924
0
          SET_RESULT_BOT(op1);
925
0
        }
926
57
        return;
927
57
      }
928
929
706
      if (IS_BOT(data)) {
930
931
312
        SET_RESULT_BOT(result);
932
312
        if ((IS_PARTIAL_ARRAY(op1)
933
68
            || Z_TYPE_P(op1) == IS_NULL
934
42
            || Z_TYPE_P(op1) == IS_FALSE
935
30
            || Z_TYPE_P(op1) == IS_ARRAY)
936
312
          && ssa_op->op1_def >= 0) {
937
938
312
          if (Z_TYPE_P(op1) == IS_NULL || Z_TYPE_P(op1) == IS_FALSE) {
939
38
            empty_partial_array(&zv);
940
274
          } else {
941
274
            dup_partial_array(&zv, op1);
942
274
          }
943
944
312
          if (!op2) {
945
            /* We can't add NEXT element into partial array (skip it) */
946
62
            SET_RESULT(op1, &zv);
947
250
          } else if (ct_eval_del_array_elem(&zv, op2) == SUCCESS) {
948
250
            SET_RESULT(op1, &zv);
949
250
          } else {
950
0
            SET_RESULT_BOT(op1);
951
0
          }
952
953
312
          zval_ptr_dtor_nogc(&zv);
954
312
        } else {
955
0
          SET_RESULT_BOT(op1);
956
0
        }
957
958
394
      } else {
959
960
394
        if (IS_PARTIAL_ARRAY(op1)) {
961
202
          dup_partial_array(&zv, op1);
962
202
        } else {
963
192
          ZVAL_COPY(&zv, op1);
964
192
        }
965
966
394
        if (!op2 && IS_PARTIAL_ARRAY(&zv)) {
967
          /* We can't add NEXT element into partial array (skip it) */
968
4
          SET_RESULT(result, data);
969
4
          SET_RESULT(op1, &zv);
970
390
        } else if (ct_eval_assign_dim(&zv, data, op2) == SUCCESS) {
971
          /* Mark array containing partial array as partial */
972
384
          if (IS_PARTIAL_ARRAY(data)) {
973
4
            MAKE_PARTIAL_ARRAY(&zv);
974
4
          }
975
384
          SET_RESULT(result, data);
976
384
          SET_RESULT(op1, &zv);
977
384
        } else {
978
6
          SET_RESULT_BOT(result);
979
6
          SET_RESULT_BOT(op1);
980
6
        }
981
982
394
        zval_ptr_dtor_nogc(&zv);
983
394
      }
984
706
      return;
985
763
    }
986
987
3.89k
    case ZEND_ASSIGN_OBJ:
988
3.89k
      if (ssa_op->op1_def >= 0
989
1.92k
          && ctx->scdf.ssa->vars[ssa_op->op1_def].escape_state == ESCAPE_STATE_NO_ESCAPE) {
990
243
        zval *data = get_op1_value(ctx, opline+1, ssa_op+1);
991
243
        zend_ssa_var_info *var_info = &ctx->scdf.ssa->var_info[ssa_op->op1_use];
992
993
        /* Don't try to propagate assignments to (potentially) typed properties. We would
994
         * need to deal with errors and type conversions first. */
995
        // TODO: Distinguish dynamic and declared property assignments here?
996
243
        if (!var_info->ce || (var_info->ce->ce_flags & ZEND_ACC_HAS_TYPE_HINTS) ||
997
189
            !(var_info->ce->ce_flags & ZEND_ACC_ALLOW_DYNAMIC_PROPERTIES)) {
998
61
          SET_RESULT_BOT(result);
999
61
          SET_RESULT_BOT(op1);
1000
61
          return;
1001
61
        }
1002
1003
182
        if (IS_BOT(op1)) {
1004
8
          SET_RESULT_BOT(result);
1005
8
          SET_RESULT_BOT(op1);
1006
8
          return;
1007
8
        }
1008
1009
174
        SKIP_IF_TOP(op1);
1010
174
        SKIP_IF_TOP(data);
1011
174
        SKIP_IF_TOP(op2);
1012
1013
174
        if (IS_BOT(op2)) {
1014
          /* Update of unknown property */
1015
8
          SET_RESULT_BOT(result);
1016
8
          empty_partial_object(&zv);
1017
8
          SET_RESULT(op1, &zv);
1018
8
          zval_ptr_dtor_nogc(&zv);
1019
8
          return;
1020
8
        }
1021
1022
166
        if (IS_BOT(data)) {
1023
70
          SET_RESULT_BOT(result);
1024
70
          if (IS_PARTIAL_OBJECT(op1)
1025
0
              || Z_TYPE_P(op1) == IS_NULL
1026
70
              || Z_TYPE_P(op1) == IS_FALSE) {
1027
1028
70
            if (Z_TYPE_P(op1) == IS_NULL || Z_TYPE_P(op1) == IS_FALSE) {
1029
0
              empty_partial_object(&zv);
1030
70
            } else {
1031
70
              dup_partial_object(&zv, op1);
1032
70
            }
1033
1034
70
            if (ct_eval_del_obj_prop(&zv, op2) == SUCCESS) {
1035
70
              SET_RESULT(op1, &zv);
1036
70
            } else {
1037
0
              SET_RESULT_BOT(op1);
1038
0
            }
1039
70
            zval_ptr_dtor_nogc(&zv);
1040
70
          } else {
1041
0
            SET_RESULT_BOT(op1);
1042
0
          }
1043
1044
96
        } else {
1045
1046
96
          if (IS_PARTIAL_OBJECT(op1)) {
1047
96
            dup_partial_object(&zv, op1);
1048
96
          } else {
1049
0
            ZVAL_COPY(&zv, op1);
1050
0
          }
1051
1052
96
          if (ct_eval_assign_obj(&zv, data, op2) == SUCCESS) {
1053
96
            SET_RESULT(result, data);
1054
96
            SET_RESULT(op1, &zv);
1055
96
          } else {
1056
0
            SET_RESULT_BOT(result);
1057
0
            SET_RESULT_BOT(op1);
1058
0
          }
1059
1060
96
          zval_ptr_dtor_nogc(&zv);
1061
96
        }
1062
3.65k
      } else {
1063
3.65k
        SET_RESULT_BOT(result);
1064
3.65k
        SET_RESULT_BOT(op1);
1065
3.65k
      }
1066
3.81k
      return;
1067
1068
30.7k
    case ZEND_SEND_VAL:
1069
47.8k
    case ZEND_SEND_VAR:
1070
47.8k
    {
1071
      /* If the value of a SEND for an ICALL changes, we need to reconsider the
1072
       * ICALL result value. Otherwise we can ignore the opcode. */
1073
47.8k
      zend_call_info *call;
1074
47.8k
      if (!ctx->call_map) {
1075
2.65k
        return;
1076
2.65k
      }
1077
1078
45.1k
      call = ctx->call_map[opline - ctx->scdf.op_array->opcodes];
1079
45.1k
      if (IS_TOP(op1) || !call || !call->caller_call_opline
1080
45.1k
          || call->caller_call_opline->opcode != ZEND_DO_ICALL) {
1081
45.1k
        return;
1082
45.1k
      }
1083
1084
0
      opline = call->caller_call_opline;
1085
0
      ssa_op = &ctx->scdf.ssa->ops[opline - ctx->scdf.op_array->opcodes];
1086
0
      break;
1087
45.1k
    }
1088
1.70k
    case ZEND_INIT_ARRAY:
1089
10.1k
    case ZEND_ADD_ARRAY_ELEMENT:
1090
10.1k
    {
1091
10.1k
      zval *result = NULL;
1092
1093
10.1k
      if (opline->opcode == ZEND_ADD_ARRAY_ELEMENT) {
1094
8.48k
        result = &ctx->values[ssa_op->result_use];
1095
8.48k
        if (IS_BOT(result)) {
1096
20
          SET_RESULT_BOT(result);
1097
20
          SET_RESULT_BOT(op1);
1098
20
          return;
1099
20
        }
1100
8.46k
        SKIP_IF_TOP(result);
1101
8.46k
      }
1102
1103
10.1k
      if (op1) {
1104
10.1k
        SKIP_IF_TOP(op1);
1105
10.1k
      }
1106
1107
10.1k
      if (op2) {
1108
854
        SKIP_IF_TOP(op2);
1109
854
        if (Z_TYPE_P(op2) == IS_NULL) {
1110
          /* Emits deprecation at run-time. */
1111
4
          SET_RESULT_BOT(result);
1112
4
          return;
1113
4
        }
1114
854
      }
1115
1116
      /* We want to avoid keeping around intermediate arrays for each SSA variable in the
1117
       * ADD_ARRAY_ELEMENT chain. We do this by only keeping the array on the last opcode
1118
       * and use a NULL value everywhere else. */
1119
10.1k
      if (result && Z_TYPE_P(result) == IS_NULL) {
1120
0
        SET_RESULT_BOT(result);
1121
0
        return;
1122
0
      }
1123
1124
10.1k
      if (op2 && IS_BOT(op2)) {
1125
        /* Update of unknown index */
1126
247
        SET_RESULT_BOT(op1);
1127
247
        if (ssa_op->result_def >= 0) {
1128
247
          empty_partial_array(&zv);
1129
247
          SET_RESULT(result, &zv);
1130
247
          zval_ptr_dtor_nogc(&zv);
1131
247
        } else {
1132
0
          SET_RESULT_BOT(result);
1133
0
        }
1134
247
        return;
1135
247
      }
1136
1137
9.91k
      if ((op1 && IS_BOT(op1))
1138
5.70k
          || (opline->extended_value & ZEND_ARRAY_ELEMENT_REF)) {
1139
1140
4.22k
        SET_RESULT_BOT(op1);
1141
4.22k
        if (ssa_op->result_def >= 0) {
1142
4.22k
          if (!result) {
1143
1.10k
            empty_partial_array(&zv);
1144
3.11k
          } else {
1145
3.11k
            MAKE_PARTIAL_ARRAY(result);
1146
3.11k
            ZVAL_COPY_VALUE(&zv, result);
1147
3.11k
            ZVAL_NULL(result);
1148
3.11k
          }
1149
4.22k
          if (!op2) {
1150
            /* We can't add NEXT element into partial array (skip it) */
1151
4.00k
            SET_RESULT(result, &zv);
1152
4.00k
          } else if (ct_eval_del_array_elem(&zv, op2) == SUCCESS) {
1153
210
            SET_RESULT(result, &zv);
1154
210
          } else {
1155
4
            SET_RESULT_BOT(result);
1156
4
          }
1157
4.22k
          zval_ptr_dtor_nogc(&zv);
1158
4.22k
        } else {
1159
          /* If any operand is BOT, mark the result as BOT right away.
1160
           * Exceptions to this rule are handled above. */
1161
0
          SET_RESULT_BOT(result);
1162
0
        }
1163
1164
5.69k
      } else {
1165
5.69k
        if (result) {
1166
5.21k
          ZVAL_COPY_VALUE(&zv, result);
1167
5.21k
          ZVAL_NULL(result);
1168
5.21k
        } else {
1169
480
          array_init(&zv);
1170
480
        }
1171
1172
5.69k
        if (op1) {
1173
5.66k
          if (!op2 && IS_PARTIAL_ARRAY(&zv)) {
1174
            /* We can't add NEXT element into partial array (skip it) */
1175
4.01k
            SET_RESULT(result, &zv);
1176
4.01k
          } else if (ct_eval_add_array_elem(&zv, op1, op2) == SUCCESS) {
1177
1.64k
            if (IS_PARTIAL_ARRAY(op1)) {
1178
90
              MAKE_PARTIAL_ARRAY(&zv);
1179
90
            }
1180
1.64k
            SET_RESULT(result, &zv);
1181
1.64k
          } else {
1182
6
            SET_RESULT_BOT(result);
1183
6
          }
1184
5.66k
        } else {
1185
32
          SET_RESULT(result, &zv);
1186
32
        }
1187
1188
5.69k
        zval_ptr_dtor_nogc(&zv);
1189
5.69k
      }
1190
9.91k
      return;
1191
10.1k
    }
1192
44
    case ZEND_ADD_ARRAY_UNPACK: {
1193
44
      zval *result = &ctx->values[ssa_op->result_use];
1194
44
      if (IS_BOT(result) || IS_BOT(op1)) {
1195
32
        SET_RESULT_BOT(result);
1196
32
        return;
1197
32
      }
1198
12
      SKIP_IF_TOP(result);
1199
12
      SKIP_IF_TOP(op1);
1200
1201
      /* See comment for ADD_ARRAY_ELEMENT. */
1202
12
      if (Z_TYPE_P(result) == IS_NULL) {
1203
0
        SET_RESULT_BOT(result);
1204
0
        return;
1205
0
      }
1206
12
      ZVAL_COPY_VALUE(&zv, result);
1207
12
      ZVAL_NULL(result);
1208
1209
12
      if (ct_eval_add_array_unpack(&zv, op1) == SUCCESS) {
1210
4
        SET_RESULT(result, &zv);
1211
8
      } else {
1212
8
        SET_RESULT_BOT(result);
1213
8
      }
1214
12
      zval_ptr_dtor_nogc(&zv);
1215
12
      return;
1216
12
    }
1217
11.4k
    case ZEND_NEW:
1218
11.4k
      if (ssa_op->result_def >= 0
1219
11.4k
          && ctx->scdf.ssa->vars[ssa_op->result_def].escape_state == ESCAPE_STATE_NO_ESCAPE) {
1220
259
        empty_partial_object(&zv);
1221
259
        SET_RESULT(result, &zv);
1222
259
        zval_ptr_dtor_nogc(&zv);
1223
11.1k
      } else {
1224
11.1k
        SET_RESULT_BOT(result);
1225
11.1k
      }
1226
11.4k
      return;
1227
44
    case ZEND_ASSIGN_STATIC_PROP_REF:
1228
178
    case ZEND_ASSIGN_OBJ_REF:
1229
      /* Handled here because we also need to BOT the OP_DATA operand, while the generic
1230
       * code below will not do so. */
1231
178
      SET_RESULT_BOT(result);
1232
178
      SET_RESULT_BOT(op1);
1233
178
      SET_RESULT_BOT(op2);
1234
178
      opline++;
1235
178
      ssa_op++;
1236
178
      SET_RESULT_BOT(op1);
1237
178
      break;
1238
827k
  }
1239
1240
721k
  if ((op1 && IS_BOT(op1)) || (op2 && IS_BOT(op2))) {
1241
    /* If any operand is BOT, mark the result as BOT right away.
1242
     * Exceptions to this rule are handled above. */
1243
423k
    SET_RESULT_BOT(result);
1244
423k
    SET_RESULT_BOT(op1);
1245
423k
    SET_RESULT_BOT(op2);
1246
423k
    return;
1247
423k
  }
1248
1249
298k
  switch (opline->opcode) {
1250
270
    case ZEND_ADD:
1251
597
    case ZEND_SUB:
1252
934
    case ZEND_MUL:
1253
1.18k
    case ZEND_DIV:
1254
1.85k
    case ZEND_MOD:
1255
1.96k
    case ZEND_POW:
1256
2.46k
    case ZEND_SL:
1257
2.62k
    case ZEND_SR:
1258
2.66k
    case ZEND_CONCAT:
1259
2.66k
    case ZEND_FAST_CONCAT:
1260
2.66k
    case ZEND_IS_EQUAL:
1261
2.70k
    case ZEND_IS_NOT_EQUAL:
1262
3.38k
    case ZEND_IS_SMALLER:
1263
3.54k
    case ZEND_IS_SMALLER_OR_EQUAL:
1264
3.54k
    case ZEND_IS_IDENTICAL:
1265
3.54k
    case ZEND_IS_NOT_IDENTICAL:
1266
3.61k
    case ZEND_BW_OR:
1267
3.67k
    case ZEND_BW_AND:
1268
4.26k
    case ZEND_BW_XOR:
1269
4.34k
    case ZEND_BOOL_XOR:
1270
4.34k
    case ZEND_CASE:
1271
4.37k
    case ZEND_CASE_STRICT:
1272
4.37k
      SKIP_IF_TOP(op1);
1273
4.37k
      SKIP_IF_TOP(op2);
1274
1275
4.37k
      if (ct_eval_binary_op(&zv, opline->opcode, op1, op2) == SUCCESS) {
1276
1.23k
        SET_RESULT(result, &zv);
1277
1.23k
        zval_ptr_dtor_nogc(&zv);
1278
1.23k
        break;
1279
1.23k
      }
1280
3.14k
      SET_RESULT_BOT(result);
1281
3.14k
      break;
1282
131
    case ZEND_ASSIGN_OP:
1283
165
    case ZEND_ASSIGN_DIM_OP:
1284
219
    case ZEND_ASSIGN_OBJ_OP:
1285
227
    case ZEND_ASSIGN_STATIC_PROP_OP:
1286
227
      if (op1) {
1287
183
        SKIP_IF_TOP(op1);
1288
183
      }
1289
227
      if (op2) {
1290
227
        SKIP_IF_TOP(op2);
1291
227
      }
1292
227
      if (opline->opcode == ZEND_ASSIGN_OP) {
1293
131
        if (ct_eval_binary_op(&zv, opline->extended_value, op1, op2) == SUCCESS) {
1294
129
          SET_RESULT(op1, &zv);
1295
129
          SET_RESULT(result, &zv);
1296
129
          zval_ptr_dtor_nogc(&zv);
1297
129
          break;
1298
129
        }
1299
131
      } else if (opline->opcode == ZEND_ASSIGN_DIM_OP) {
1300
34
        if ((IS_PARTIAL_ARRAY(op1) || Z_TYPE_P(op1) == IS_ARRAY)
1301
32
            && ssa_op->op1_def >= 0 && op2) {
1302
32
          zval tmp;
1303
32
          zval *data = get_op1_value(ctx, opline+1, ssa_op+1);
1304
1305
32
          SKIP_IF_TOP(data);
1306
1307
32
          if (ct_eval_fetch_dim(&tmp, op1, op2, 0) == SUCCESS) {
1308
6
            if (IS_BOT(data)) {
1309
0
              dup_partial_array(&zv, op1);
1310
0
              ct_eval_del_array_elem(&zv, op2);
1311
0
              SET_RESULT_BOT(result);
1312
0
              SET_RESULT(op1, &zv);
1313
0
              zval_ptr_dtor_nogc(&tmp);
1314
0
              zval_ptr_dtor_nogc(&zv);
1315
0
              break;
1316
0
            }
1317
1318
6
            if (ct_eval_binary_op(&tmp, opline->extended_value, &tmp, data) == FAILURE) {
1319
0
              SET_RESULT_BOT(result);
1320
0
              SET_RESULT_BOT(op1);
1321
0
              zval_ptr_dtor_nogc(&tmp);
1322
0
              break;
1323
0
            }
1324
1325
6
            if (IS_PARTIAL_ARRAY(op1)) {
1326
0
              dup_partial_array(&zv, op1);
1327
6
            } else {
1328
6
              ZVAL_COPY(&zv, op1);
1329
6
            }
1330
1331
6
            if (ct_eval_assign_dim(&zv, &tmp, op2) == SUCCESS) {
1332
6
              SET_RESULT(result, &tmp);
1333
6
              SET_RESULT(op1, &zv);
1334
6
              zval_ptr_dtor_nogc(&tmp);
1335
6
              zval_ptr_dtor_nogc(&zv);
1336
6
              break;
1337
6
            }
1338
1339
0
            zval_ptr_dtor_nogc(&tmp);
1340
0
            zval_ptr_dtor_nogc(&zv);
1341
0
          }
1342
32
        }
1343
62
      } else if (opline->opcode == ZEND_ASSIGN_OBJ_OP) {
1344
54
        if (op1 && IS_PARTIAL_OBJECT(op1)
1345
10
            && ssa_op->op1_def >= 0
1346
10
            && ctx->scdf.ssa->vars[ssa_op->op1_def].escape_state == ESCAPE_STATE_NO_ESCAPE) {
1347
10
          zval tmp;
1348
10
          zval *data = get_op1_value(ctx, opline+1, ssa_op+1);
1349
1350
10
          SKIP_IF_TOP(data);
1351
1352
10
          if (ct_eval_fetch_obj(&tmp, op1, op2) == SUCCESS) {
1353
0
            if (IS_BOT(data)) {
1354
0
              dup_partial_object(&zv, op1);
1355
0
              ct_eval_del_obj_prop(&zv, op2);
1356
0
              SET_RESULT_BOT(result);
1357
0
              SET_RESULT(op1, &zv);
1358
0
              zval_ptr_dtor_nogc(&tmp);
1359
0
              zval_ptr_dtor_nogc(&zv);
1360
0
              break;
1361
0
            }
1362
1363
0
            if (ct_eval_binary_op(&tmp, opline->extended_value, &tmp, data) == FAILURE) {
1364
0
              SET_RESULT_BOT(result);
1365
0
              SET_RESULT_BOT(op1);
1366
0
              zval_ptr_dtor_nogc(&tmp);
1367
0
              break;
1368
0
            }
1369
1370
0
            dup_partial_object(&zv, op1);
1371
1372
0
            if (ct_eval_assign_obj(&zv, &tmp, op2) == SUCCESS) {
1373
0
              SET_RESULT(result, &tmp);
1374
0
              SET_RESULT(op1, &zv);
1375
0
              zval_ptr_dtor_nogc(&tmp);
1376
0
              zval_ptr_dtor_nogc(&zv);
1377
0
              break;
1378
0
            }
1379
1380
0
            zval_ptr_dtor_nogc(&tmp);
1381
0
            zval_ptr_dtor_nogc(&zv);
1382
0
          }
1383
10
        }
1384
54
      }
1385
92
      SET_RESULT_BOT(result);
1386
92
      SET_RESULT_BOT(op1);
1387
92
      break;
1388
69
    case ZEND_PRE_INC_OBJ:
1389
81
    case ZEND_PRE_DEC_OBJ:
1390
87
    case ZEND_POST_INC_OBJ:
1391
91
    case ZEND_POST_DEC_OBJ:
1392
91
      if (op1) {
1393
8
        SKIP_IF_TOP(op1);
1394
8
        SKIP_IF_TOP(op2);
1395
8
        if (IS_PARTIAL_OBJECT(op1)
1396
8
            && ssa_op->op1_def >= 0
1397
8
            && ctx->scdf.ssa->vars[ssa_op->op1_def].escape_state == ESCAPE_STATE_NO_ESCAPE) {
1398
8
          zval tmp1, tmp2;
1399
1400
8
          if (ct_eval_fetch_obj(&tmp1, op1, op2) == SUCCESS) {
1401
8
            if (ct_eval_incdec(&tmp2, opline->opcode, &tmp1) == SUCCESS) {
1402
0
              dup_partial_object(&zv, op1);
1403
0
              ct_eval_assign_obj(&zv, &tmp2, op2);
1404
0
              if (opline->opcode == ZEND_PRE_INC_OBJ || opline->opcode == ZEND_PRE_DEC_OBJ) {
1405
0
                SET_RESULT(result, &tmp2);
1406
0
              } else {
1407
0
                SET_RESULT(result, &tmp1);
1408
0
              }
1409
0
              zval_ptr_dtor_nogc(&tmp1);
1410
0
              zval_ptr_dtor_nogc(&tmp2);
1411
0
              SET_RESULT(op1, &zv);
1412
0
              zval_ptr_dtor_nogc(&zv);
1413
0
              break;
1414
0
            }
1415
8
            zval_ptr_dtor_nogc(&tmp1);
1416
8
          }
1417
8
        }
1418
8
      }
1419
91
      SET_RESULT_BOT(op1);
1420
91
      SET_RESULT_BOT(result);
1421
91
      break;
1422
682
    case ZEND_PRE_INC:
1423
701
    case ZEND_PRE_DEC:
1424
701
      SKIP_IF_TOP(op1);
1425
701
      if (ct_eval_incdec(&zv, opline->opcode, op1) == SUCCESS) {
1426
681
        SET_RESULT(op1, &zv);
1427
681
        SET_RESULT(result, &zv);
1428
681
        zval_ptr_dtor_nogc(&zv);
1429
681
        break;
1430
681
      }
1431
20
      SET_RESULT_BOT(op1);
1432
20
      SET_RESULT_BOT(result);
1433
20
      break;
1434
182
    case ZEND_POST_INC:
1435
192
    case ZEND_POST_DEC:
1436
192
      SKIP_IF_TOP(op1);
1437
192
      SET_RESULT(result, op1);
1438
192
      if (ct_eval_incdec(&zv, opline->opcode, op1) == SUCCESS) {
1439
192
        SET_RESULT(op1, &zv);
1440
192
        zval_ptr_dtor_nogc(&zv);
1441
192
        break;
1442
192
      }
1443
0
      SET_RESULT_BOT(op1);
1444
0
      break;
1445
134
    case ZEND_BW_NOT:
1446
241
    case ZEND_BOOL_NOT:
1447
241
      SKIP_IF_TOP(op1);
1448
241
      if (IS_PARTIAL_ARRAY(op1)) {
1449
0
        SET_RESULT_BOT(result);
1450
0
        break;
1451
0
      }
1452
241
      if (zend_optimizer_eval_unary_op(&zv, opline->opcode, op1) == SUCCESS) {
1453
76
        SET_RESULT(result, &zv);
1454
76
        zval_ptr_dtor_nogc(&zv);
1455
76
        break;
1456
76
      }
1457
165
      SET_RESULT_BOT(result);
1458
165
      break;
1459
191
    case ZEND_CAST:
1460
191
      SKIP_IF_TOP(op1);
1461
191
      if (IS_PARTIAL_ARRAY(op1)) {
1462
12
        SET_RESULT_BOT(result);
1463
12
        break;
1464
12
      }
1465
179
      if (zend_optimizer_eval_cast(&zv, opline->extended_value, op1) == SUCCESS) {
1466
2
        SET_RESULT(result, &zv);
1467
2
        zval_ptr_dtor_nogc(&zv);
1468
2
        break;
1469
2
      }
1470
177
      SET_RESULT_BOT(result);
1471
177
      break;
1472
65
    case ZEND_BOOL:
1473
317
    case ZEND_JMPZ_EX:
1474
435
    case ZEND_JMPNZ_EX:
1475
435
      SKIP_IF_TOP(op1);
1476
435
      if (ct_eval_bool_cast(&zv, op1) == SUCCESS) {
1477
433
        SET_RESULT(result, &zv);
1478
433
        zval_ptr_dtor_nogc(&zv);
1479
433
        break;
1480
433
      }
1481
2
      SET_RESULT_BOT(result);
1482
2
      break;
1483
38
    case ZEND_STRLEN:
1484
38
      SKIP_IF_TOP(op1);
1485
38
      if (zend_optimizer_eval_strlen(&zv, op1) == SUCCESS) {
1486
36
        SET_RESULT(result, &zv);
1487
36
        zval_ptr_dtor_nogc(&zv);
1488
36
        break;
1489
36
      }
1490
2
      SET_RESULT_BOT(result);
1491
2
      break;
1492
38
    case ZEND_YIELD_FROM:
1493
      // tmp = yield from [] -> tmp = null
1494
38
      SKIP_IF_TOP(op1);
1495
38
      if (Z_TYPE_P(op1) == IS_ARRAY && zend_hash_num_elements(Z_ARR_P(op1)) == 0) {
1496
8
        ZVAL_NULL(&zv);
1497
8
        SET_RESULT(result, &zv);
1498
8
        break;
1499
8
      }
1500
30
      SET_RESULT_BOT(result);
1501
30
      break;
1502
22
    case ZEND_COUNT:
1503
22
      SKIP_IF_TOP(op1);
1504
22
      if (Z_TYPE_P(op1) == IS_ARRAY) {
1505
2
        ZVAL_LONG(&zv, zend_hash_num_elements(Z_ARRVAL_P(op1)));
1506
2
        SET_RESULT(result, &zv);
1507
2
        zval_ptr_dtor_nogc(&zv);
1508
2
        break;
1509
2
      }
1510
20
      SET_RESULT_BOT(result);
1511
20
      break;
1512
0
    case ZEND_IN_ARRAY:
1513
0
      SKIP_IF_TOP(op1);
1514
0
      SKIP_IF_TOP(op2);
1515
0
      if (ct_eval_in_array(&zv, opline->extended_value, op1, op2) == SUCCESS) {
1516
0
        SET_RESULT(result, &zv);
1517
0
        zval_ptr_dtor_nogc(&zv);
1518
0
        break;
1519
0
      }
1520
0
      SET_RESULT_BOT(result);
1521
0
      break;
1522
0
    case ZEND_ARRAY_KEY_EXISTS:
1523
0
      SKIP_IF_TOP(op1);
1524
0
      SKIP_IF_TOP(op2);
1525
0
      if (ct_eval_array_key_exists(&zv, op1, op2) == SUCCESS) {
1526
0
        SET_RESULT(result, &zv);
1527
0
        zval_ptr_dtor_nogc(&zv);
1528
0
        break;
1529
0
      }
1530
0
      SET_RESULT_BOT(result);
1531
0
      break;
1532
131
    case ZEND_FETCH_DIM_R:
1533
139
    case ZEND_FETCH_DIM_IS:
1534
335
    case ZEND_FETCH_LIST_R:
1535
335
      SKIP_IF_TOP(op1);
1536
335
      SKIP_IF_TOP(op2);
1537
1538
335
      if (ct_eval_fetch_dim(&zv, op1, op2, (opline->opcode != ZEND_FETCH_LIST_R)) == SUCCESS) {
1539
241
        SET_RESULT(result, &zv);
1540
241
        zval_ptr_dtor_nogc(&zv);
1541
241
        break;
1542
241
      }
1543
94
      SET_RESULT_BOT(result);
1544
94
      break;
1545
15
    case ZEND_ISSET_ISEMPTY_DIM_OBJ:
1546
15
      SKIP_IF_TOP(op1);
1547
15
      SKIP_IF_TOP(op2);
1548
1549
15
      if (ct_eval_isset_dim(&zv, opline->extended_value, op1, op2) == SUCCESS) {
1550
15
        SET_RESULT(result, &zv);
1551
15
        zval_ptr_dtor_nogc(&zv);
1552
15
        break;
1553
15
      }
1554
0
      SET_RESULT_BOT(result);
1555
0
      break;
1556
1.10k
    case ZEND_FETCH_OBJ_R:
1557
1.19k
    case ZEND_FETCH_OBJ_IS:
1558
1.19k
      if (op1) {
1559
54
        SKIP_IF_TOP(op1);
1560
54
        SKIP_IF_TOP(op2);
1561
1562
54
        if (ct_eval_fetch_obj(&zv, op1, op2) == SUCCESS) {
1563
0
          SET_RESULT(result, &zv);
1564
0
          zval_ptr_dtor_nogc(&zv);
1565
0
          break;
1566
0
        }
1567
54
      }
1568
1.19k
      SET_RESULT_BOT(result);
1569
1.19k
      break;
1570
26
    case ZEND_ISSET_ISEMPTY_PROP_OBJ:
1571
26
      if (op1) {
1572
6
        SKIP_IF_TOP(op1);
1573
6
        SKIP_IF_TOP(op2);
1574
1575
6
        if (ct_eval_isset_obj(&zv, opline->extended_value, op1, op2) == SUCCESS) {
1576
6
          SET_RESULT(result, &zv);
1577
6
          zval_ptr_dtor_nogc(&zv);
1578
6
          break;
1579
6
        }
1580
6
      }
1581
20
      SET_RESULT_BOT(result);
1582
20
      break;
1583
2.46k
    case ZEND_QM_ASSIGN:
1584
2.64k
    case ZEND_JMP_SET:
1585
3.17k
    case ZEND_COALESCE:
1586
3.21k
    case ZEND_COPY_TMP:
1587
3.21k
      SET_RESULT(result, op1);
1588
3.21k
      break;
1589
44
    case ZEND_JMP_NULL:
1590
44
      switch (opline->extended_value & ZEND_SHORT_CIRCUITING_CHAIN_MASK) {
1591
44
        case ZEND_SHORT_CIRCUITING_CHAIN_EXPR:
1592
44
          ZVAL_NULL(&zv);
1593
44
          break;
1594
0
        case ZEND_SHORT_CIRCUITING_CHAIN_ISSET:
1595
0
          ZVAL_FALSE(&zv);
1596
0
          break;
1597
0
        case ZEND_SHORT_CIRCUITING_CHAIN_EMPTY:
1598
0
          ZVAL_TRUE(&zv);
1599
0
          break;
1600
44
        EMPTY_SWITCH_DEFAULT_CASE()
1601
44
      }
1602
44
      SET_RESULT(result, &zv);
1603
44
      break;
1604
28
    case ZEND_FETCH_CLASS:
1605
28
      SET_RESULT(result, op2);
1606
28
      break;
1607
0
    case ZEND_ISSET_ISEMPTY_CV:
1608
0
      SKIP_IF_TOP(op1);
1609
0
      if (ct_eval_isset_isempty(&zv, opline->extended_value, op1) == SUCCESS) {
1610
0
        SET_RESULT(result, &zv);
1611
0
        zval_ptr_dtor_nogc(&zv);
1612
0
        break;
1613
0
      }
1614
0
      SET_RESULT_BOT(result);
1615
0
      break;
1616
4
    case ZEND_TYPE_CHECK:
1617
4
      SKIP_IF_TOP(op1);
1618
4
      ct_eval_type_check(&zv, opline->extended_value, op1);
1619
4
      SET_RESULT(result, &zv);
1620
4
      zval_ptr_dtor_nogc(&zv);
1621
4
      break;
1622
0
    case ZEND_INSTANCEOF:
1623
0
      SKIP_IF_TOP(op1);
1624
0
      ZVAL_FALSE(&zv);
1625
0
      SET_RESULT(result, &zv);
1626
0
      break;
1627
6.82k
    case ZEND_ROPE_INIT:
1628
6.82k
      SKIP_IF_TOP(op2);
1629
6.82k
      if (IS_PARTIAL_ARRAY(op2)) {
1630
0
        SET_RESULT_BOT(result);
1631
0
        break;
1632
0
      }
1633
6.82k
      if (zend_optimizer_eval_cast(&zv, IS_STRING, op2) == SUCCESS) {
1634
6.82k
        SET_RESULT(result, &zv);
1635
6.82k
        zval_ptr_dtor_nogc(&zv);
1636
6.82k
        break;
1637
6.82k
      }
1638
0
      SET_RESULT_BOT(result);
1639
0
      break;
1640
59
    case ZEND_ROPE_ADD:
1641
83
    case ZEND_ROPE_END:
1642
      // TODO The way this is currently implemented will result in quadratic runtime
1643
      // This is not necessary, the way the algorithm works it's okay to reuse the same
1644
      // string for all SSA vars with some extra checks
1645
83
      SKIP_IF_TOP(op1);
1646
83
      SKIP_IF_TOP(op2);
1647
83
      if (ct_eval_binary_op(&zv, ZEND_CONCAT, op1, op2) == SUCCESS) {
1648
82
        SET_RESULT(result, &zv);
1649
82
        zval_ptr_dtor_nogc(&zv);
1650
82
        break;
1651
82
      }
1652
1
      SET_RESULT_BOT(result);
1653
1
      break;
1654
0
    case ZEND_DO_ICALL:
1655
0
    {
1656
0
      zend_call_info *call;
1657
0
      zval *name, *args[3] = {NULL};
1658
1659
0
      if (!ctx->call_map) {
1660
0
        SET_RESULT_BOT(result);
1661
0
        break;
1662
0
      }
1663
1664
0
      call = ctx->call_map[opline - ctx->scdf.op_array->opcodes];
1665
0
      name = CT_CONSTANT_EX(ctx->scdf.op_array, call->caller_init_opline->op2.constant);
1666
1667
      /* We already know it can't be evaluated, don't bother checking again */
1668
0
      if (ssa_op->result_def < 0 || IS_BOT(&ctx->values[ssa_op->result_def])) {
1669
0
        break;
1670
0
      }
1671
1672
      /* We're only interested in functions with up to three arguments right now.
1673
       * Note that named arguments with the argument in declaration order will still work. */
1674
0
      if (call->num_args > 3 || call->send_unpack || call->is_prototype || call->named_args) {
1675
0
        SET_RESULT_BOT(result);
1676
0
        break;
1677
0
      }
1678
1679
0
      for (uint32_t i = 0; i < call->num_args; i++) {
1680
0
        zend_op *opline = call->arg_info[i].opline;
1681
0
        if (opline->opcode != ZEND_SEND_VAL && opline->opcode != ZEND_SEND_VAR) {
1682
0
          SET_RESULT_BOT(result);
1683
0
          return;
1684
0
        }
1685
1686
0
        args[i] = get_op1_value(ctx, opline,
1687
0
          &ctx->scdf.ssa->ops[opline - ctx->scdf.op_array->opcodes]);
1688
0
        if (args[i]) {
1689
0
          if (IS_BOT(args[i]) || IS_PARTIAL_ARRAY(args[i])) {
1690
0
            SET_RESULT_BOT(result);
1691
0
            return;
1692
0
          } else if (IS_TOP(args[i])) {
1693
0
            return;
1694
0
          }
1695
0
        }
1696
0
      }
1697
1698
      /* We didn't get a BOT argument, so value stays the same */
1699
0
      if (!IS_TOP(&ctx->values[ssa_op->result_def])) {
1700
0
        break;
1701
0
      }
1702
1703
0
      if (ct_eval_func_call(scdf->op_array, &zv, Z_STR_P(name), call->num_args, args) == SUCCESS) {
1704
0
        SET_RESULT(result, &zv);
1705
0
        zval_ptr_dtor_nogc(&zv);
1706
0
        break;
1707
0
      }
1708
1709
#if 0
1710
      /* sort out | uniq -c | sort -n */
1711
      fprintf(stderr, "%s\n", Z_STRVAL_P(name));
1712
      /*if (args[1]) {
1713
        php_printf("%s %Z %Z\n", Z_STRVAL_P(name), args[0], args[1]);
1714
      } else {
1715
        php_printf("%s %Z\n", Z_STRVAL_P(name), args[0]);
1716
      }*/
1717
#endif
1718
1719
0
      SET_RESULT_BOT(result);
1720
0
      break;
1721
0
    }
1722
0
    case ZEND_FRAMELESS_ICALL_0:
1723
0
    case ZEND_FRAMELESS_ICALL_1:
1724
0
    case ZEND_FRAMELESS_ICALL_2:
1725
0
    case ZEND_FRAMELESS_ICALL_3: {
1726
      /* We already know it can't be evaluated, don't bother checking again */
1727
0
      if (ssa_op->result_def < 0 || IS_BOT(&ctx->values[ssa_op->result_def])) {
1728
0
        break;
1729
0
      }
1730
1731
0
      zval *args[3] = {NULL};
1732
0
      zend_function *func = ZEND_FLF_FUNC(opline);
1733
0
      uint32_t num_args = ZEND_FLF_NUM_ARGS(opline->opcode);
1734
1735
0
      switch (num_args) {
1736
0
        case 3: {
1737
0
          zend_op *op_data = opline + 1;
1738
0
          args[2] = get_op1_value(ctx, op_data, &ctx->scdf.ssa->ops[op_data - ctx->scdf.op_array->opcodes]);
1739
0
          ZEND_FALLTHROUGH;
1740
0
        }
1741
0
        case 2:
1742
0
          args[1] = get_op2_value(ctx, opline, &ctx->scdf.ssa->ops[opline - ctx->scdf.op_array->opcodes]);
1743
0
          ZEND_FALLTHROUGH;
1744
0
        case 1:
1745
0
          args[0] = get_op1_value(ctx, opline, &ctx->scdf.ssa->ops[opline - ctx->scdf.op_array->opcodes]);
1746
0
          break;
1747
0
      }
1748
0
      for (uint32_t i = 0; i < num_args; i++) {
1749
0
        if (!args[i]) {
1750
0
          SET_RESULT_BOT(result);
1751
0
          return;
1752
0
        } else if (IS_BOT(args[i]) || IS_PARTIAL_ARRAY(args[i])) {
1753
0
          SET_RESULT_BOT(result);
1754
0
          return;
1755
0
        } else if (IS_TOP(args[i])) {
1756
0
          return;
1757
0
        }
1758
0
      }
1759
0
      if (ct_eval_func_call_ex(scdf->op_array, &zv, func, num_args, args) == SUCCESS) {
1760
0
        SET_RESULT(result, &zv);
1761
0
        zval_ptr_dtor_nogc(&zv);
1762
0
        break;
1763
0
      }
1764
0
      SET_RESULT_BOT(result);
1765
0
      break;
1766
0
    }
1767
279k
    default:
1768
279k
    {
1769
      /* If we have no explicit implementation return BOT */
1770
279k
      SET_RESULT_BOT(result);
1771
279k
      SET_RESULT_BOT(op1);
1772
279k
      SET_RESULT_BOT(op2);
1773
279k
      break;
1774
0
    }
1775
298k
  }
1776
298k
}
1777
1778
623k
static zval *value_from_type_and_range(sccp_ctx *ctx, int var_num, zval *tmp) {
1779
623k
  zend_ssa *ssa = ctx->scdf.ssa;
1780
623k
  zend_ssa_var_info *info = &ssa->var_info[var_num];
1781
1782
623k
  if (info->type & MAY_BE_UNDEF) {
1783
63.7k
    return NULL;
1784
63.7k
  }
1785
1786
559k
  if (!(info->type & MAY_BE_ANY)) {
1787
    /* This code must be unreachable. We could replace operands with NULL, but this doesn't
1788
     * really make things better. It would be better to later remove this code entirely. */
1789
1.62k
    return NULL;
1790
1.62k
  }
1791
1792
558k
  if (!(info->type & ((MAY_BE_ANY|MAY_BE_UNDEF)-MAY_BE_NULL))) {
1793
27.8k
    if (ssa->vars[var_num].definition >= 0
1794
27.4k
     && ctx->scdf.op_array->opcodes[ssa->vars[var_num].definition].opcode == ZEND_VERIFY_RETURN_TYPE) {
1795
12
      return NULL;
1796
12
    }
1797
27.8k
    ZVAL_NULL(tmp);
1798
27.8k
    return tmp;
1799
27.8k
  }
1800
530k
  if (!(info->type & ((MAY_BE_ANY|MAY_BE_UNDEF)-MAY_BE_FALSE))) {
1801
303
    if (ssa->vars[var_num].definition >= 0
1802
107
     && ctx->scdf.op_array->opcodes[ssa->vars[var_num].definition].opcode == ZEND_VERIFY_RETURN_TYPE) {
1803
4
      return NULL;
1804
4
    }
1805
299
    ZVAL_FALSE(tmp);
1806
299
    return tmp;
1807
303
  }
1808
529k
  if (!(info->type & ((MAY_BE_ANY|MAY_BE_UNDEF)-MAY_BE_TRUE))) {
1809
657
    if (ssa->vars[var_num].definition >= 0
1810
524
     && ctx->scdf.op_array->opcodes[ssa->vars[var_num].definition].opcode == ZEND_VERIFY_RETURN_TYPE) {
1811
6
      return NULL;
1812
6
    }
1813
651
    ZVAL_TRUE(tmp);
1814
651
    return tmp;
1815
657
  }
1816
1817
529k
  if (!(info->type & ((MAY_BE_ANY|MAY_BE_UNDEF)-MAY_BE_LONG))
1818
60.1k
      && info->has_range
1819
59.6k
      && !info->range.overflow && !info->range.underflow
1820
7.42k
      && info->range.min == info->range.max) {
1821
291
    ZVAL_LONG(tmp, info->range.min);
1822
291
    return tmp;
1823
291
  }
1824
1825
528k
  return NULL;
1826
529k
}
1827
1828
1829
/* Returns whether there is a successor */
1830
static void sccp_mark_feasible_successors(
1831
    scdf_ctx *scdf,
1832
    int block_num, zend_basic_block *block,
1833
39.0k
    zend_op *opline, zend_ssa_op *ssa_op) {
1834
39.0k
  sccp_ctx *ctx = (sccp_ctx *) scdf;
1835
39.0k
  zval *op1, zv;
1836
39.0k
  int s;
1837
1838
  /* We can't determine the branch target at compile-time for these */
1839
39.0k
  switch (opline->opcode) {
1840
366
    case ZEND_ASSERT_CHECK:
1841
366
    case ZEND_CATCH:
1842
1.54k
    case ZEND_FE_FETCH_R:
1843
1.88k
    case ZEND_FE_FETCH_RW:
1844
1.95k
    case ZEND_BIND_INIT_STATIC_OR_JMP:
1845
1.95k
      scdf_mark_edge_feasible(scdf, block_num, block->successors[0]);
1846
1.95k
      scdf_mark_edge_feasible(scdf, block_num, block->successors[1]);
1847
1.95k
      return;
1848
39.0k
  }
1849
1850
37.0k
  op1 = get_op1_value(ctx, opline, ssa_op);
1851
37.0k
  if (IS_BOT(op1)) {
1852
34.6k
    ZEND_ASSERT(ssa_op->op1_use >= 0);
1853
34.6k
    op1 = value_from_type_and_range(ctx, ssa_op->op1_use, &zv);
1854
34.6k
  }
1855
1856
  /* Branch target can be either one */
1857
37.0k
  if (!op1 || IS_BOT(op1)) {
1858
104k
    for (s = 0; s < block->successors_count; s++) {
1859
69.4k
      scdf_mark_edge_feasible(scdf, block_num, block->successors[s]);
1860
69.4k
    }
1861
34.5k
    return;
1862
34.5k
  }
1863
1864
  /* Branch target not yet known */
1865
2.47k
  if (IS_TOP(op1)) {
1866
0
    return;
1867
0
  }
1868
1869
2.47k
  switch (opline->opcode) {
1870
269
    case ZEND_JMPZ:
1871
525
    case ZEND_JMPZ_EX:
1872
525
    {
1873
525
      if (ct_eval_bool_cast(&zv, op1) == FAILURE) {
1874
0
        scdf_mark_edge_feasible(scdf, block_num, block->successors[0]);
1875
0
        scdf_mark_edge_feasible(scdf, block_num, block->successors[1]);
1876
0
        return;
1877
0
      }
1878
525
      s = Z_TYPE(zv) == IS_TRUE;
1879
525
      break;
1880
525
    }
1881
859
    case ZEND_JMPNZ:
1882
977
    case ZEND_JMPNZ_EX:
1883
1.15k
    case ZEND_JMP_SET:
1884
1.15k
    {
1885
1.15k
      if (ct_eval_bool_cast(&zv, op1) == FAILURE) {
1886
0
        scdf_mark_edge_feasible(scdf, block_num, block->successors[0]);
1887
0
        scdf_mark_edge_feasible(scdf, block_num, block->successors[1]);
1888
0
        return;
1889
0
      }
1890
1.15k
      s = Z_TYPE(zv) == IS_FALSE;
1891
1.15k
      break;
1892
1.15k
    }
1893
578
    case ZEND_COALESCE:
1894
578
      s = (Z_TYPE_P(op1) == IS_NULL);
1895
578
      break;
1896
44
    case ZEND_JMP_NULL:
1897
44
      s = (Z_TYPE_P(op1) != IS_NULL);
1898
44
      break;
1899
166
    case ZEND_FE_RESET_R:
1900
174
    case ZEND_FE_RESET_RW:
1901
      /* A non-empty partial array is definitely non-empty, but an
1902
       * empty partial array may be non-empty at runtime. */
1903
174
      if (Z_TYPE_P(op1) != IS_ARRAY ||
1904
132
          (IS_PARTIAL_ARRAY(op1) && zend_hash_num_elements(Z_ARR_P(op1)) == 0)) {
1905
42
        scdf_mark_edge_feasible(scdf, block_num, block->successors[0]);
1906
42
        scdf_mark_edge_feasible(scdf, block_num, block->successors[1]);
1907
42
        return;
1908
42
      }
1909
132
      s = zend_hash_num_elements(Z_ARR_P(op1)) != 0;
1910
132
      break;
1911
0
    case ZEND_SWITCH_LONG:
1912
2
    case ZEND_SWITCH_STRING:
1913
6
    case ZEND_MATCH:
1914
6
    {
1915
6
      bool strict_comparison = opline->opcode == ZEND_MATCH;
1916
6
      uint8_t type = Z_TYPE_P(op1);
1917
6
      bool correct_type =
1918
6
        (opline->opcode == ZEND_SWITCH_LONG && type == IS_LONG)
1919
6
        || (opline->opcode == ZEND_SWITCH_STRING && type == IS_STRING)
1920
6
        || (opline->opcode == ZEND_MATCH && (type == IS_LONG || type == IS_STRING));
1921
1922
6
      if (correct_type) {
1923
2
        zend_op_array *op_array = scdf->op_array;
1924
2
        zend_ssa *ssa = scdf->ssa;
1925
2
        HashTable *jmptable = Z_ARRVAL_P(CT_CONSTANT_EX(op_array, opline->op2.constant));
1926
2
        zval *jmp_zv = type == IS_LONG
1927
2
          ? zend_hash_index_find(jmptable, Z_LVAL_P(op1))
1928
2
          : zend_hash_find(jmptable, Z_STR_P(op1));
1929
2
        int target;
1930
1931
2
        if (jmp_zv) {
1932
2
          target = ssa->cfg.map[ZEND_OFFSET_TO_OPLINE_NUM(op_array, opline, Z_LVAL_P(jmp_zv))];
1933
2
        } else {
1934
0
          target = ssa->cfg.map[ZEND_OFFSET_TO_OPLINE_NUM(op_array, opline, opline->extended_value)];
1935
0
        }
1936
2
        scdf_mark_edge_feasible(scdf, block_num, target);
1937
2
        return;
1938
4
      } else if (strict_comparison) {
1939
2
        zend_op_array *op_array = scdf->op_array;
1940
2
        zend_ssa *ssa = scdf->ssa;
1941
2
        int target = ssa->cfg.map[ZEND_OFFSET_TO_OPLINE_NUM(op_array, opline, opline->extended_value)];
1942
2
        scdf_mark_edge_feasible(scdf, block_num, target);
1943
2
        return;
1944
2
      }
1945
2
      s = block->successors_count - 1;
1946
2
      break;
1947
6
    }
1948
0
    default:
1949
0
      for (s = 0; s < block->successors_count; s++) {
1950
0
        scdf_mark_edge_feasible(scdf, block_num, block->successors[s]);
1951
0
      }
1952
0
      return;
1953
2.47k
  }
1954
2.43k
  scdf_mark_edge_feasible(scdf, block_num, block->successors[s]);
1955
2.43k
}
1956
1957
static void join_hash_tables(HashTable *ret, HashTable *ht1, HashTable *ht2)
1958
151
{
1959
151
  zend_ulong index;
1960
151
  zend_string *key;
1961
151
  zval *val1, *val2;
1962
1963
459
  ZEND_HASH_FOREACH_KEY_VAL(ht1, index, key, val1) {
1964
459
    if (key) {
1965
36
      val2 = zend_hash_find(ht2, key);
1966
114
    } else {
1967
114
      val2 = zend_hash_index_find(ht2, index);
1968
114
    }
1969
459
    if (val2 && zend_is_identical(val1, val2)) {
1970
84
      if (key) {
1971
26
        val1 = zend_hash_add_new(ret, key, val1);
1972
58
      } else {
1973
58
        val1 = zend_hash_index_add_new(ret, index, val1);
1974
58
      }
1975
84
      Z_TRY_ADDREF_P(val1);
1976
84
    }
1977
459
  } ZEND_HASH_FOREACH_END();
1978
151
}
1979
1980
static zend_result join_partial_arrays(zval *a, zval *b)
1981
1.55k
{
1982
1.55k
  zval ret;
1983
1984
1.55k
  if ((Z_TYPE_P(a) != IS_ARRAY && !IS_PARTIAL_ARRAY(a))
1985
1.40k
      || (Z_TYPE_P(b) != IS_ARRAY && !IS_PARTIAL_ARRAY(b))) {
1986
1.40k
    return FAILURE;
1987
1.40k
  }
1988
1989
151
  empty_partial_array(&ret);
1990
151
  join_hash_tables(Z_ARRVAL(ret), Z_ARRVAL_P(a), Z_ARRVAL_P(b));
1991
151
  zval_ptr_dtor_nogc(a);
1992
151
  ZVAL_COPY_VALUE(a, &ret);
1993
1994
151
  return SUCCESS;
1995
1.55k
}
1996
1997
static zend_result join_partial_objects(zval *a, zval *b)
1998
0
{
1999
0
  zval ret;
2000
2001
0
  if (!IS_PARTIAL_OBJECT(a) || !IS_PARTIAL_OBJECT(b)) {
2002
0
    return FAILURE;
2003
0
  }
2004
2005
0
  empty_partial_object(&ret);
2006
0
  join_hash_tables(Z_ARRVAL(ret), Z_ARRVAL_P(a), Z_ARRVAL_P(b));
2007
0
  zval_ptr_dtor_nogc(a);
2008
0
  ZVAL_COPY_VALUE(a, &ret);
2009
2010
0
  return SUCCESS;
2011
0
}
2012
2013
152k
static void join_phi_values(zval *a, zval *b, bool escape) {
2014
152k
  if (IS_BOT(a) || IS_TOP(b)) {
2015
53.4k
    return;
2016
53.4k
  }
2017
99.1k
  if (IS_TOP(a)) {
2018
96.6k
    zval_ptr_dtor_nogc(a);
2019
96.6k
    ZVAL_COPY(a, b);
2020
96.6k
    return;
2021
96.6k
  }
2022
2.51k
  if (IS_BOT(b)) {
2023
513
    zval_ptr_dtor_nogc(a);
2024
513
    MAKE_BOT(a);
2025
513
    return;
2026
513
  }
2027
2.00k
  if (IS_PARTIAL_ARRAY(a) || IS_PARTIAL_ARRAY(b)) {
2028
124
    if (join_partial_arrays(a, b) == FAILURE) {
2029
0
      zval_ptr_dtor_nogc(a);
2030
0
      MAKE_BOT(a);
2031
0
    }
2032
1.87k
  } else if (IS_PARTIAL_OBJECT(a) || IS_PARTIAL_OBJECT(b)) {
2033
0
    if (escape || join_partial_objects(a, b) == FAILURE) {
2034
0
      zval_ptr_dtor_nogc(a);
2035
0
      MAKE_BOT(a);
2036
0
    }
2037
1.87k
  } else if (!zend_is_identical(a, b)) {
2038
1.43k
    if (join_partial_arrays(a, b) == FAILURE) {
2039
1.40k
      zval_ptr_dtor_nogc(a);
2040
1.40k
      MAKE_BOT(a);
2041
1.40k
    }
2042
1.43k
  }
2043
2.00k
}
2044
2045
108k
static void sccp_visit_phi(scdf_ctx *scdf, const zend_ssa_phi *phi) {
2046
108k
  sccp_ctx *ctx = (sccp_ctx *) scdf;
2047
108k
  zend_ssa *ssa = scdf->ssa;
2048
108k
  ZEND_ASSERT(phi->ssa_var >= 0);
2049
108k
  if (!IS_BOT(&ctx->values[phi->ssa_var])) {
2050
96.9k
    zend_basic_block *block = &ssa->cfg.blocks[phi->block];
2051
96.9k
    int *predecessors = &ssa->cfg.predecessors[block->predecessor_offset];
2052
2053
96.9k
    int i;
2054
96.9k
    zval result;
2055
96.9k
    MAKE_TOP(&result);
2056
#if SCP_DEBUG
2057
    fprintf(stderr, "Handling phi(");
2058
#endif
2059
96.9k
    if (phi->pi >= 0) {
2060
29.6k
      ZEND_ASSERT(phi->sources[0] >= 0);
2061
29.6k
      if (scdf_is_edge_feasible(scdf, phi->pi, phi->block)) {
2062
29.3k
        join_phi_values(&result, &ctx->values[phi->sources[0]], ssa->vars[phi->ssa_var].escape_state != ESCAPE_STATE_NO_ESCAPE);
2063
29.3k
      }
2064
67.3k
    } else {
2065
204k
      for (i = 0; i < block->predecessors_count; i++) {
2066
137k
        ZEND_ASSERT(phi->sources[i] >= 0);
2067
137k
        if (scdf_is_edge_feasible(scdf, predecessors[i], phi->block)) {
2068
#if SCP_DEBUG
2069
          scp_dump_value(&ctx->values[phi->sources[i]]);
2070
          fprintf(stderr, ",");
2071
#endif
2072
123k
          join_phi_values(&result, &ctx->values[phi->sources[i]], ssa->vars[phi->ssa_var].escape_state != ESCAPE_STATE_NO_ESCAPE);
2073
123k
        } else {
2074
#if SCP_DEBUG
2075
          fprintf(stderr, " --,");
2076
#endif
2077
13.7k
        }
2078
137k
      }
2079
67.3k
    }
2080
#if SCP_DEBUG
2081
    fprintf(stderr, ")\n");
2082
#endif
2083
2084
96.9k
    set_value(scdf, ctx, phi->ssa_var, &result);
2085
96.9k
    zval_ptr_dtor_nogc(&result);
2086
96.9k
  }
2087
108k
}
2088
2089
/* Call instruction -> remove opcodes that are part of the call */
2090
static int remove_call(sccp_ctx *ctx, zend_op *opline, zend_ssa_op *ssa_op)
2091
0
{
2092
0
  zend_ssa *ssa = ctx->scdf.ssa;
2093
0
  zend_op_array *op_array = ctx->scdf.op_array;
2094
0
  zend_call_info *call;
2095
2096
0
  ZEND_ASSERT(ctx->call_map);
2097
0
  call = ctx->call_map[opline - op_array->opcodes];
2098
0
  ZEND_ASSERT(call);
2099
0
  ZEND_ASSERT(call->caller_call_opline == opline);
2100
0
  zend_ssa_remove_instr(ssa, opline, ssa_op);
2101
0
  zend_ssa_remove_instr(ssa, call->caller_init_opline,
2102
0
    &ssa->ops[call->caller_init_opline - op_array->opcodes]);
2103
2104
0
  for (uint32_t i = 0; i < call->num_args; i++) {
2105
0
    zend_ssa_remove_instr(ssa, call->arg_info[i].opline,
2106
0
      &ssa->ops[call->arg_info[i].opline - op_array->opcodes]);
2107
0
  }
2108
2109
  // TODO: remove call_info completely???
2110
0
  call->callee_func = NULL;
2111
2112
0
  return call->num_args + 2;
2113
0
}
2114
2115
/* This is a basic DCE pass we run after SCCP. It only works on those instructions those result
2116
 * value(s) were determined by SCCP. It removes dead computational instructions and converts
2117
 * CV-affecting instructions into CONST ASSIGNs. This basic DCE is performed for multiple reasons:
2118
 * a) During operand replacement we eliminate FREEs. The corresponding computational instructions
2119
 *    must be removed to avoid leaks. This way SCCP can run independently of the full DCE pass.
2120
 * b) The main DCE pass relies on type analysis to determine whether instructions have side-effects
2121
 *    and can't be DCEd. This means that it will not be able collect all instructions rendered dead
2122
 *    by SCCP, because they may have potentially side-effecting types, but the actual values are
2123
 *    not. As such doing DCE here will allow us to eliminate more dead code in combination.
2124
 * c) The ordinary DCE pass cannot collect dead calls. However SCCP can result in dead calls, which
2125
 *    we need to collect.
2126
 * d) The ordinary DCE pass cannot collect construction of dead non-escaping arrays and objects.
2127
 */
2128
static uint32_t try_remove_definition(sccp_ctx *ctx, int var_num, zend_ssa_var *var, zval *value)
2129
25.3k
{
2130
25.3k
  zend_ssa *ssa = ctx->scdf.ssa;
2131
25.3k
  zend_op_array *op_array = ctx->scdf.op_array;
2132
25.3k
  uint32_t removed_ops = 0;
2133
2134
25.3k
  if (var->definition >= 0) {
2135
24.0k
    zend_op *opline = &op_array->opcodes[var->definition];
2136
24.0k
    zend_ssa_op *ssa_op = &ssa->ops[var->definition];
2137
2138
24.0k
    if (ssa_op->result_def == var_num) {
2139
20.4k
      if (opline->opcode == ZEND_ASSIGN) {
2140
        /* We can't drop the ASSIGN, but we can remove the result. */
2141
453
        if (var->use_chain < 0 && var->phi_use_chain == NULL) {
2142
439
          opline->result_type = IS_UNUSED;
2143
439
          zend_ssa_remove_result_def(ssa, ssa_op);
2144
439
        }
2145
453
        return 0;
2146
453
      }
2147
20.0k
      if (ssa_op->op1_def >= 0 || ssa_op->op2_def >= 0) {
2148
358
        if (var->use_chain < 0 && var->phi_use_chain == NULL) {
2149
292
          switch (opline->opcode) {
2150
0
            case ZEND_ASSIGN:
2151
0
            case ZEND_ASSIGN_REF:
2152
262
            case ZEND_ASSIGN_DIM:
2153
262
            case ZEND_ASSIGN_OBJ:
2154
262
            case ZEND_ASSIGN_OBJ_REF:
2155
262
            case ZEND_ASSIGN_STATIC_PROP:
2156
262
            case ZEND_ASSIGN_STATIC_PROP_REF:
2157
284
            case ZEND_ASSIGN_OP:
2158
284
            case ZEND_ASSIGN_DIM_OP:
2159
284
            case ZEND_ASSIGN_OBJ_OP:
2160
284
            case ZEND_ASSIGN_STATIC_PROP_OP:
2161
290
            case ZEND_PRE_INC:
2162
290
            case ZEND_PRE_DEC:
2163
290
            case ZEND_PRE_INC_OBJ:
2164
290
            case ZEND_PRE_DEC_OBJ:
2165
290
            case ZEND_DO_ICALL:
2166
290
            case ZEND_DO_UCALL:
2167
290
            case ZEND_DO_FCALL_BY_NAME:
2168
290
            case ZEND_DO_FCALL:
2169
290
            case ZEND_INCLUDE_OR_EVAL:
2170
290
            case ZEND_YIELD:
2171
290
            case ZEND_YIELD_FROM:
2172
290
            case ZEND_ASSERT_CHECK:
2173
290
              opline->result_type = IS_UNUSED;
2174
290
              zend_ssa_remove_result_def(ssa, ssa_op);
2175
290
              break;
2176
2
            default:
2177
2
              break;
2178
292
          }
2179
292
        }
2180
        /* we cannot remove instruction that defines other variables */
2181
358
        return 0;
2182
19.6k
      } else if (opline->opcode == ZEND_JMPZ_EX
2183
19.3k
          || opline->opcode == ZEND_JMPNZ_EX
2184
19.2k
          || opline->opcode == ZEND_JMP_SET
2185
19.1k
          || opline->opcode == ZEND_COALESCE
2186
18.5k
          || opline->opcode == ZEND_JMP_NULL
2187
18.5k
          || opline->opcode == ZEND_FE_RESET_R
2188
18.5k
          || opline->opcode == ZEND_FE_RESET_RW
2189
18.5k
          || opline->opcode == ZEND_FE_FETCH_R
2190
18.5k
          || opline->opcode == ZEND_FE_FETCH_RW
2191
18.5k
          || opline->opcode == ZEND_NEW) {
2192
        /* we cannot simple remove jump instructions */
2193
1.10k
        return 0;
2194
18.5k
      } else if (var->use_chain >= 0
2195
17.1k
          || var->phi_use_chain != NULL) {
2196
17.1k
        if (value
2197
17.1k
            && (opline->result_type & (IS_VAR|IS_TMP_VAR))
2198
17.1k
            && opline->opcode != ZEND_QM_ASSIGN
2199
15.1k
            && opline->opcode != ZEND_FETCH_CLASS
2200
15.1k
            && opline->opcode != ZEND_ROPE_INIT
2201
8.37k
            && opline->opcode != ZEND_ROPE_ADD
2202
8.35k
            && opline->opcode != ZEND_INIT_ARRAY
2203
7.23k
            && opline->opcode != ZEND_ADD_ARRAY_ELEMENT
2204
18
            && opline->opcode != ZEND_ADD_ARRAY_UNPACK) {
2205
          /* Replace with QM_ASSIGN */
2206
18
          uint8_t old_type = opline->result_type;
2207
18
          uint32_t old_var = opline->result.var;
2208
2209
18
          ssa_op->result_def = -1;
2210
18
          if (opline->opcode == ZEND_DO_ICALL) {
2211
0
            removed_ops = remove_call(ctx, opline, ssa_op) - 1;
2212
18
          } else {
2213
18
            bool has_op_data = opline->opcode == ZEND_FRAMELESS_ICALL_3;
2214
18
            zend_ssa_remove_instr(ssa, opline, ssa_op);
2215
18
            removed_ops++;
2216
18
            if (has_op_data) {
2217
0
              zend_ssa_remove_instr(ssa, opline + 1, ssa_op + 1);
2218
0
              removed_ops++;
2219
0
            }
2220
18
          }
2221
18
          ssa_op->result_def = var_num;
2222
18
          opline->opcode = ZEND_QM_ASSIGN;
2223
18
          opline->result_type = old_type;
2224
18
          opline->result.var = old_var;
2225
18
          Z_TRY_ADDREF_P(value);
2226
18
          zend_optimizer_update_op1_const(ctx->scdf.op_array, opline, value);
2227
18
        }
2228
17.1k
        return 0;
2229
17.1k
      } else if ((opline->op2_type & (IS_VAR|IS_TMP_VAR))
2230
50
          && (!value_known(&ctx->values[ssa_op->op2_use])
2231
50
            || IS_PARTIAL_ARRAY(&ctx->values[ssa_op->op2_use])
2232
50
            || IS_PARTIAL_OBJECT(&ctx->values[ssa_op->op2_use]))) {
2233
0
        return 0;
2234
1.37k
      } else if ((opline->op1_type & (IS_VAR|IS_TMP_VAR))
2235
415
          && (!value_known(&ctx->values[ssa_op->op1_use])
2236
415
            || IS_PARTIAL_ARRAY(&ctx->values[ssa_op->op1_use])
2237
413
            || IS_PARTIAL_OBJECT(&ctx->values[ssa_op->op1_use]))) {
2238
2
        if (opline->opcode == ZEND_TYPE_CHECK
2239
2
         || opline->opcode == ZEND_BOOL) {
2240
0
          zend_ssa_remove_result_def(ssa, ssa_op);
2241
          /* For TYPE_CHECK we may compute the result value without knowing the
2242
           * operand, based on type inference information. Make sure the operand is
2243
           * freed and leave further cleanup to DCE. */
2244
0
          opline->opcode = ZEND_FREE;
2245
0
          opline->result_type = IS_UNUSED;
2246
0
          removed_ops++;
2247
2
        } else {
2248
2
          return 0;
2249
2
        }
2250
1.36k
      } else {
2251
1.36k
        zend_ssa_remove_result_def(ssa, ssa_op);
2252
1.36k
        if (opline->opcode == ZEND_DO_ICALL) {
2253
0
          removed_ops = remove_call(ctx, opline, ssa_op);
2254
1.36k
        } else {
2255
1.36k
          bool has_op_data = opline->opcode == ZEND_FRAMELESS_ICALL_3;
2256
1.36k
          zend_ssa_remove_instr(ssa, opline, ssa_op);
2257
1.36k
          removed_ops++;
2258
1.36k
          if (has_op_data) {
2259
0
            zend_ssa_remove_instr(ssa, opline + 1, ssa_op + 1);
2260
0
            removed_ops++;
2261
0
          }
2262
1.36k
        }
2263
1.36k
      }
2264
20.0k
    } else if (ssa_op->op1_def == var_num) {
2265
3.56k
      if (opline->opcode == ZEND_ASSIGN) {
2266
        /* Leave assigns to DCE (due to dtor effects) */
2267
3.14k
        return 0;
2268
3.14k
      }
2269
2270
      /* Compound assign or incdec -> convert to direct ASSIGN */
2271
2272
419
      if (!value) {
2273
        /* In some cases zend_may_throw() may be avoided */
2274
146
        switch (opline->opcode) {
2275
70
          case ZEND_ASSIGN_DIM:
2276
146
          case ZEND_ASSIGN_OBJ:
2277
146
          case ZEND_ASSIGN_OP:
2278
146
          case ZEND_ASSIGN_DIM_OP:
2279
146
          case ZEND_ASSIGN_OBJ_OP:
2280
146
          case ZEND_ASSIGN_STATIC_PROP_OP:
2281
146
            if ((ssa_op->op2_use >= 0 && !value_known(&ctx->values[ssa_op->op2_use]))
2282
124
                || ((ssa_op+1)->op1_use >= 0 &&!value_known(&ctx->values[(ssa_op+1)->op1_use]))) {
2283
88
              return 0;
2284
88
            }
2285
58
            break;
2286
58
          case ZEND_PRE_INC_OBJ:
2287
0
          case ZEND_PRE_DEC_OBJ:
2288
0
          case ZEND_POST_INC_OBJ:
2289
0
          case ZEND_POST_DEC_OBJ:
2290
0
            if (ssa_op->op2_use >= 0 && !value_known(&ctx->values[ssa_op->op2_use])) {
2291
0
              return 0;
2292
0
            }
2293
0
            break;
2294
0
          case ZEND_INIT_ARRAY:
2295
0
          case ZEND_ADD_ARRAY_ELEMENT:
2296
0
            if (opline->op2_type == IS_UNUSED) {
2297
0
              return 0;
2298
0
            }
2299
            /* break missing intentionally */
2300
0
          default:
2301
0
            if (zend_may_throw(opline, ssa_op, op_array, ssa)) {
2302
0
              return 0;
2303
0
            }
2304
0
            break;
2305
146
        }
2306
146
      }
2307
2308
      /* Mark result unused, if possible */
2309
331
      if (ssa_op->result_def >= 0) {
2310
14
        if (ssa->vars[ssa_op->result_def].use_chain < 0
2311
14
            && ssa->vars[ssa_op->result_def].phi_use_chain == NULL) {
2312
2
          zend_ssa_remove_result_def(ssa, ssa_op);
2313
2
          opline->result_type = IS_UNUSED;
2314
12
        } else if (opline->opcode != ZEND_PRE_INC &&
2315
12
            opline->opcode != ZEND_PRE_DEC) {
2316
          /* op1_def and result_def are different */
2317
12
          return removed_ops;
2318
12
        }
2319
14
      }
2320
2321
      /* Destroy previous op2 */
2322
319
      if (opline->op2_type == IS_CONST) {
2323
206
        literal_dtor(&ZEND_OP2_LITERAL(opline));
2324
206
      } else if (ssa_op->op2_use >= 0) {
2325
53
        if (ssa_op->op2_use != ssa_op->op1_use) {
2326
30
          zend_ssa_unlink_use_chain(ssa, var->definition, ssa_op->op2_use);
2327
30
        }
2328
53
        ssa_op->op2_use = -1;
2329
53
        ssa_op->op2_use_chain = -1;
2330
53
      }
2331
2332
      /* Remove OP_DATA opcode */
2333
319
      switch (opline->opcode) {
2334
174
        case ZEND_ASSIGN_DIM:
2335
224
        case ZEND_ASSIGN_OBJ:
2336
224
          removed_ops++;
2337
224
          zend_ssa_remove_instr(ssa, opline + 1, ssa_op + 1);
2338
224
          break;
2339
6
        case ZEND_ASSIGN_DIM_OP:
2340
6
        case ZEND_ASSIGN_OBJ_OP:
2341
6
        case ZEND_ASSIGN_STATIC_PROP_OP:
2342
6
          removed_ops++;
2343
6
          zend_ssa_remove_instr(ssa, opline + 1, ssa_op + 1);
2344
6
          break;
2345
89
        default:
2346
89
          break;
2347
319
      }
2348
2349
319
      if (value) {
2350
        /* Convert to ASSIGN */
2351
261
        opline->opcode = ZEND_ASSIGN;
2352
261
        opline->op2_type = IS_CONST;
2353
261
        opline->op2.constant = zend_optimizer_add_literal(op_array, value);
2354
261
        Z_TRY_ADDREF_P(value);
2355
261
      } else {
2356
        /* Remove dead array or object construction */
2357
58
        removed_ops++;
2358
58
        if (var->use_chain >= 0 || var->phi_use_chain != NULL) {
2359
44
          zend_ssa_rename_var_uses(ssa, ssa_op->op1_def, ssa_op->op1_use, 1);
2360
44
        }
2361
58
        zend_ssa_remove_op1_def(ssa, ssa_op);
2362
58
        zend_ssa_remove_instr(ssa, opline, ssa_op);
2363
58
      }
2364
319
    }
2365
24.0k
  } else if (var->definition_phi
2366
1.30k
      && var->use_chain < 0
2367
1.23k
      && var->phi_use_chain == NULL) {
2368
846
    zend_ssa_remove_phi(ssa, var->definition_phi);
2369
846
  }
2370
2.99k
  return removed_ops;
2371
25.3k
}
2372
2373
/* This will try to replace uses of SSA variables we have determined to be constant. Not all uses
2374
 * can be replaced, because some instructions don't accept constant operands or only accept them
2375
 * if they have a certain type. */
2376
37.0k
static uint32_t replace_constant_operands(sccp_ctx *ctx) {
2377
37.0k
  zend_ssa *ssa = ctx->scdf.ssa;
2378
37.0k
  zend_op_array *op_array = ctx->scdf.op_array;
2379
37.0k
  int i;
2380
37.0k
  zval tmp;
2381
37.0k
  uint32_t removed_ops = 0;
2382
2383
  /* We iterate the variables backwards, so we can eliminate sequences like INIT_ROPE
2384
   * and INIT_ARRAY. */
2385
654k
  for (i = ssa->vars_count - 1; i >= op_array->last_var; i--) {
2386
617k
    zend_ssa_var *var = &ssa->vars[i];
2387
617k
    zval *value;
2388
617k
    int use;
2389
2390
617k
    if (IS_PARTIAL_ARRAY(&ctx->values[i])
2391
614k
        || IS_PARTIAL_OBJECT(&ctx->values[i])) {
2392
3.23k
      if (!Z_DELREF(ctx->values[i])) {
2393
2.88k
        zend_array_destroy(Z_ARR(ctx->values[i]));
2394
2.88k
      }
2395
3.23k
      MAKE_BOT(&ctx->values[i]);
2396
3.23k
      if ((var->use_chain < 0 && var->phi_use_chain == NULL) || var->no_val) {
2397
218
        removed_ops += try_remove_definition(ctx, i, var, NULL);
2398
218
      }
2399
3.23k
      continue;
2400
613k
    } else if (value_known(&ctx->values[i])) {
2401
25.1k
      value = &ctx->values[i];
2402
588k
    } else {
2403
588k
      value = value_from_type_and_range(ctx, i, &tmp);
2404
588k
      if (!value) {
2405
559k
        continue;
2406
559k
      }
2407
588k
    }
2408
2409
75.8k
    FOREACH_USE(var, use) {
2410
75.8k
      zend_op *opline = &op_array->opcodes[use];
2411
75.8k
      zend_ssa_op *ssa_op = &ssa->ops[use];
2412
75.8k
      if (try_replace_op1(ctx, opline, ssa_op, i, value)) {
2413
3.23k
        if (opline->opcode == ZEND_NOP) {
2414
479
          removed_ops++;
2415
479
        }
2416
3.23k
        ZEND_ASSERT(ssa_op->op1_def == -1);
2417
3.23k
        if (ssa_op->op1_use != ssa_op->op2_use) {
2418
3.23k
          zend_ssa_unlink_use_chain(ssa, use, ssa_op->op1_use);
2419
3.23k
        } else {
2420
0
          ssa_op->op2_use_chain = ssa_op->op1_use_chain;
2421
0
        }
2422
3.23k
        ssa_op->op1_use = -1;
2423
3.23k
        ssa_op->op1_use_chain = -1;
2424
3.23k
      }
2425
75.8k
      if (try_replace_op2(ctx, opline, ssa_op, i, value)) {
2426
1.95k
        ZEND_ASSERT(ssa_op->op2_def == -1);
2427
1.95k
        if (ssa_op->op2_use != ssa_op->op1_use) {
2428
1.87k
          zend_ssa_unlink_use_chain(ssa, use, ssa_op->op2_use);
2429
1.87k
        }
2430
1.95k
        ssa_op->op2_use = -1;
2431
1.95k
        ssa_op->op2_use_chain = -1;
2432
1.95k
      }
2433
21.6k
    } FOREACH_USE_END();
2434
2435
54.1k
    if (value_known(&ctx->values[i])) {
2436
25.1k
      removed_ops += try_remove_definition(ctx, i, var, value);
2437
25.1k
    }
2438
54.1k
  }
2439
2440
37.0k
  return removed_ops;
2441
37.0k
}
2442
2443
static void sccp_context_init(zend_optimizer_ctx *ctx, sccp_ctx *sccp,
2444
37.0k
    zend_ssa *ssa, zend_op_array *op_array, zend_call_info **call_map) {
2445
37.0k
  int i;
2446
37.0k
  sccp->call_map = call_map;
2447
37.0k
  sccp->values = zend_arena_alloc(&ctx->arena, sizeof(zval) * ssa->vars_count);
2448
2449
37.0k
  MAKE_TOP(&sccp->top);
2450
37.0k
  MAKE_BOT(&sccp->bot);
2451
2452
37.0k
  i = 0;
2453
88.3k
  for (; i < op_array->last_var; ++i) {
2454
    /* These are all undefined variables, which we have to mark BOT.
2455
     * Otherwise the undefined variable warning might not be preserved. */
2456
51.3k
    MAKE_BOT(&sccp->values[i]);
2457
51.3k
  }
2458
654k
  for (; i < ssa->vars_count; ++i) {
2459
617k
    if (ssa->vars[i].alias) {
2460
0
      MAKE_BOT(&sccp->values[i]);
2461
617k
    } else {
2462
617k
      MAKE_TOP(&sccp->values[i]);
2463
617k
    }
2464
617k
  }
2465
37.0k
}
2466
2467
37.0k
static void sccp_context_free(sccp_ctx *sccp) {
2468
37.0k
  int i;
2469
654k
  for (i = sccp->scdf.op_array->last_var; i < sccp->scdf.ssa->vars_count; ++i) {
2470
617k
    zval_ptr_dtor_nogc(&sccp->values[i]);
2471
617k
  }
2472
37.0k
}
2473
2474
uint32_t sccp_optimize_op_array(zend_optimizer_ctx *ctx, zend_op_array *op_array, zend_ssa *ssa, zend_call_info **call_map)
2475
37.0k
{
2476
37.0k
  sccp_ctx sccp;
2477
37.0k
  uint32_t removed_ops = 0;
2478
37.0k
  void *checkpoint = zend_arena_checkpoint(ctx->arena);
2479
2480
37.0k
  sccp_context_init(ctx, &sccp, ssa, op_array, call_map);
2481
2482
37.0k
  sccp.scdf.handlers.visit_instr = sccp_visit_instr;
2483
37.0k
  sccp.scdf.handlers.visit_phi = sccp_visit_phi;
2484
37.0k
  sccp.scdf.handlers.mark_feasible_successors = sccp_mark_feasible_successors;
2485
2486
37.0k
  scdf_init(ctx, &sccp.scdf, op_array, ssa);
2487
37.0k
  scdf_solve(&sccp.scdf, "SCCP");
2488
2489
37.0k
  if (ctx->debug_level & ZEND_DUMP_SCCP) {
2490
0
    int i, first = 1;
2491
2492
0
    for (i = op_array->last_var; i < ssa->vars_count; i++) {
2493
0
      zval *zv = &sccp.values[i];
2494
2495
0
      if (IS_TOP(zv) || IS_BOT(zv)) {
2496
0
        continue;
2497
0
      }
2498
0
      if (first) {
2499
0
        first = 0;
2500
0
        fprintf(stderr, "\nSCCP Values for \"");
2501
0
        zend_dump_op_array_name(op_array);
2502
0
        fprintf(stderr, "\":\n");
2503
0
      }
2504
0
      fprintf(stderr, "    #%d.", i);
2505
0
      zend_dump_var(op_array, IS_CV, ssa->vars[i].var);
2506
0
      fprintf(stderr, " =");
2507
0
      scp_dump_value(zv);
2508
0
      fprintf(stderr, "\n");
2509
0
    }
2510
0
  }
2511
2512
37.0k
  removed_ops += scdf_remove_unreachable_blocks(&sccp.scdf);
2513
37.0k
  removed_ops += replace_constant_operands(&sccp);
2514
2515
37.0k
  sccp_context_free(&sccp);
2516
37.0k
  zend_arena_release(&ctx->arena, checkpoint);
2517
2518
37.0k
  return removed_ops;
2519
37.0k
}