Coverage Report

Created: 2026-05-04 06:07

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/wasm3/source/m3_compile.c
Line
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Source
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//
2
//  m3_compile.c
3
//
4
//  Created by Steven Massey on 4/17/19.
5
//  Copyright © 2019 Steven Massey. All rights reserved.
6
//
7
8
// Allow using opcodes for compilation process
9
#define M3_COMPILE_OPCODES
10
11
#include "m3_env.h"
12
#include "m3_compile.h"
13
#include "m3_exec.h"
14
#include "m3_exception.h"
15
#include "m3_info.h"
16
17
//----- EMIT --------------------------------------------------------------------------------------------------------------
18
19
static inline
20
pc_t GetPC (IM3Compilation o)
21
120
{
22
120
    return GetPagePC (o->page);
23
120
}
24
25
static M3_NOINLINE
26
M3Result  EnsureCodePageNumLines  (IM3Compilation o, u32 i_numLines)
27
39.4k
{
28
39.4k
    M3Result result = m3Err_none;
29
30
39.4k
    i_numLines += 2; // room for Bridge
31
32
39.4k
    if (NumFreeLines (o->page) < i_numLines)
33
26
    {
34
26
        IM3CodePage page = AcquireCodePageWithCapacity (o->runtime, i_numLines);
35
36
26
        if (page)
37
26
        {
38
26
            m3log (emit, "bridging new code page from: %d %p (free slots: %d) to: %d", o->page->info.sequence, GetPC (o), NumFreeLines (o->page), page->info.sequence);
39
26
            d_m3Assert (NumFreeLines (o->page) >= 2);
40
41
26
            EmitWord (o->page, op_Branch);
42
26
            EmitWord (o->page, GetPagePC (page));
43
44
26
            ReleaseCodePage (o->runtime, o->page);
45
46
26
            o->page = page;
47
26
        }
48
0
        else result = m3Err_mallocFailedCodePage;
49
26
    }
50
51
39.4k
    return result;
52
39.4k
}
53
54
static M3_NOINLINE
55
M3Result  EmitOp  (IM3Compilation o, IM3Operation i_operation)
56
39.7k
{
57
39.7k
    M3Result result = m3Err_none;                                 d_m3Assert (i_operation or IsStackPolymorphic (o));
58
59
    // it's OK for page to be null; when compile-walking the bytecode without emitting
60
39.7k
    if (o->page)
61
39.4k
    {
62
# if d_m3EnableOpTracing
63
        if (i_operation != op_DumpStack)
64
            o->numEmits++;
65
# endif
66
67
        // have execution jump to a new page if slots are critically low
68
39.4k
        result = EnsureCodePageNumLines (o, d_m3CodePageFreeLinesThreshold);
69
70
39.4k
        if (not result)
71
39.4k
        {                                                           if (d_m3LogEmit) log_emit (o, i_operation);
72
# if d_m3RecordBacktraces
73
            EmitMappingEntry (o->page, o->lastOpcodeStart - o->module->wasmStart);
74
# endif // d_m3RecordBacktraces
75
39.4k
            EmitWord (o->page, i_operation);
76
39.4k
        }
77
39.4k
    }
78
79
39.7k
    return result;
80
39.7k
}
81
82
// Push an immediate constant into the M3 codestream
83
static M3_NOINLINE
84
void  EmitConstant32  (IM3Compilation o, const u32 i_immediate)
85
40
{
86
40
    if (o->page)
87
40
        EmitWord32 (o->page, i_immediate);
88
40
}
89
90
static M3_NOINLINE
91
void  EmitSlotOffset  (IM3Compilation o, const i32 i_offset)
92
66.9k
{
93
66.9k
    if (o->page)
94
66.8k
        EmitWord32 (o->page, i_offset);
95
66.9k
}
96
97
static M3_NOINLINE
98
pc_t  EmitPointer  (IM3Compilation o, const void * const i_pointer)
99
1.06k
{
100
1.06k
    pc_t ptr = GetPagePC (o->page);
101
102
1.06k
    if (o->page)
103
877
        EmitWord (o->page, i_pointer);
104
105
1.06k
    return ptr;
106
1.06k
}
107
108
static M3_NOINLINE
109
void * ReservePointer (IM3Compilation o)
110
29
{
111
29
    pc_t ptr = GetPagePC (o->page);
112
29
    EmitPointer (o, NULL);
113
29
    return (void *) ptr;
114
29
}
115
116
117
//-------------------------------------------------------------------------------------------------------------------------
118
119
#define d_indent "     | %s"
120
121
// just want less letters and numbers to stare at down the way in the compiler table
122
#define i_32    c_m3Type_i32
123
#define i_64    c_m3Type_i64
124
#define f_32    c_m3Type_f32
125
#define f_64    c_m3Type_f64
126
#define none    c_m3Type_none
127
#define any     (u8)-1
128
129
#if d_m3HasFloat
130
#   define FPOP(x) x
131
#else
132
#   define FPOP(x) NULL
133
#endif
134
135
static const IM3Operation c_preserveSetSlot [] = { NULL, op_PreserveSetSlot_i32,       op_PreserveSetSlot_i64,
136
                                                    FPOP(op_PreserveSetSlot_f32), FPOP(op_PreserveSetSlot_f64) };
137
static const IM3Operation c_setSetOps [] =       { NULL, op_SetSlot_i32,               op_SetSlot_i64,
138
                                                    FPOP(op_SetSlot_f32),         FPOP(op_SetSlot_f64) };
139
static const IM3Operation c_setGlobalOps [] =    { NULL, op_SetGlobal_i32,             op_SetGlobal_i64,
140
                                                    FPOP(op_SetGlobal_f32),       FPOP(op_SetGlobal_f64) };
141
static const IM3Operation c_setRegisterOps [] =  { NULL, op_SetRegister_i32,           op_SetRegister_i64,
142
                                                    FPOP(op_SetRegister_f32),     FPOP(op_SetRegister_f64) };
143
144
static const IM3Operation c_intSelectOps [2] [4] =      { { op_Select_i32_rss, op_Select_i32_srs, op_Select_i32_ssr, op_Select_i32_sss },
145
                                                          { op_Select_i64_rss, op_Select_i64_srs, op_Select_i64_ssr, op_Select_i64_sss } };
146
#if d_m3HasFloat
147
static const IM3Operation c_fpSelectOps [2] [2] [3] = { { { op_Select_f32_sss, op_Select_f32_srs, op_Select_f32_ssr },        // selector in slot
148
                                                          { op_Select_f32_rss, op_Select_f32_rrs, op_Select_f32_rsr } },      // selector in reg
149
                                                        { { op_Select_f64_sss, op_Select_f64_srs, op_Select_f64_ssr },        // selector in slot
150
                                                          { op_Select_f64_rss, op_Select_f64_rrs, op_Select_f64_rsr } } };    // selector in reg
151
#endif
152
153
// all args & returns are 64-bit aligned, so use 2 slots for a d_m3Use32BitSlots=1 build
154
static const u16 c_ioSlotCount = sizeof (u64) / sizeof (m3slot_t);
155
156
static
157
M3Result  AcquireCompilationCodePage  (IM3Compilation o, IM3CodePage * o_codePage)
158
270
{
159
270
    M3Result result = m3Err_none;
160
161
270
    IM3CodePage page = AcquireCodePage (o->runtime);
162
163
270
    if (page)
164
270
    {
165
#       if (d_m3EnableCodePageRefCounting)
166
        {
167
            if (o->function)
168
            {
169
                IM3Function func = o->function;
170
                page->info.usageCount++;
171
172
                u32 index = func->numCodePageRefs++;
173
_               (m3ReallocArray (& func->codePageRefs, IM3CodePage, func->numCodePageRefs, index));
174
                func->codePageRefs [index] = page;
175
            }
176
        }
177
#       endif
178
270
    }
179
270
    else _throw (m3Err_mallocFailedCodePage);
180
181
270
    _catch:
182
183
270
    * o_codePage = page;
184
185
270
    return result;
186
270
}
187
188
static inline
189
void  ReleaseCompilationCodePage  (IM3Compilation o)
190
263
{
191
263
    ReleaseCodePage (o->runtime, o->page);
192
263
}
193
194
static inline
195
u16 GetTypeNumSlots (u8 i_type)
196
272k
{
197
272k
#   if d_m3Use32BitSlots
198
272k
        return Is64BitType (i_type) ? 2 : 1;
199
#   else
200
        return 1;
201
#   endif
202
272k
}
203
204
static inline
205
void  AlignSlotToType  (u16 * io_slot, u8 i_type)
206
42.5k
{
207
    // align 64-bit words to even slots (if d_m3Use32BitSlots)
208
42.5k
    u16 numSlots = GetTypeNumSlots (i_type);
209
210
42.5k
    u16 mask = numSlots - 1;
211
42.5k
    * io_slot = (* io_slot + mask) & ~mask;
212
42.5k
}
213
214
static inline
215
i16  GetStackTopIndex  (IM3Compilation o)
216
3.00k
{                                                           d_m3Assert (o->stackIndex > o->stackFirstDynamicIndex or IsStackPolymorphic (o));
217
3.00k
    return o->stackIndex - 1;
218
3.00k
}
219
220
221
// Items in the static portion of the stack (args/locals) are hidden from GetStackTypeFromTop ()
222
// In other words, only "real" Wasm stack items can be inspected.  This is important when
223
// returning values, etc. and you need an accurate wasm-view of the stack.
224
static
225
u8  GetStackTypeFromTop  (IM3Compilation o, u16 i_offset)
226
12.4k
{
227
12.4k
    u8 type = c_m3Type_none;
228
229
12.4k
    ++i_offset;
230
12.4k
    if (o->stackIndex >= i_offset)
231
12.3k
    {
232
12.3k
        u16 index = o->stackIndex - i_offset;
233
234
12.3k
        if (index >= o->stackFirstDynamicIndex)
235
11.8k
            type = o->typeStack [index];
236
12.3k
    }
237
238
12.4k
    return type;
239
12.4k
}
240
241
static inline
242
u8  GetStackTopType  (IM3Compilation o)
243
11.9k
{
244
11.9k
    return GetStackTypeFromTop (o, 0);
245
11.9k
}
246
247
static inline
248
u8  GetStackTypeFromBottom  (IM3Compilation o, u16 i_offset)
249
107k
{
250
107k
    u8 type = c_m3Type_none;
251
252
107k
    if (i_offset < o->stackIndex)
253
107k
        type = o->typeStack [i_offset];
254
255
107k
    return type;
256
107k
}
257
258
259
8.09k
static inline bool  IsConstantSlot    (IM3Compilation o, u16 i_slot)  { return (i_slot >= o->slotFirstConstIndex and i_slot < o->slotMaxConstIndex); }
260
5.75k
static inline bool  IsSlotAllocated   (IM3Compilation o, u16 i_slot)  { return o->m3Slots [i_slot]; }
261
262
static inline
263
bool  IsStackIndexInRegister  (IM3Compilation o, i32 i_stackIndex)
264
29.6k
{                                                                           d_m3Assert (i_stackIndex < o->stackIndex or IsStackPolymorphic (o));
265
29.6k
    if (i_stackIndex >= 0 and i_stackIndex < o->stackIndex)
266
29.5k
        return (o->wasmStack [i_stackIndex] >= d_m3Reg0SlotAlias);
267
32
    else
268
32
        return false;
269
29.6k
}
270
271
551
static inline u16   GetNumBlockValuesOnStack      (IM3Compilation o)  { return o->stackIndex - o->block.blockStackIndex; }
272
273
1.15k
static inline bool  IsStackTopInRegister          (IM3Compilation o)  { return IsStackIndexInRegister (o, (i32) GetStackTopIndex (o));       }
274
237
static inline bool  IsStackTopMinus1InRegister    (IM3Compilation o)  { return IsStackIndexInRegister (o, (i32) GetStackTopIndex (o) - 1);   }
275
12
static inline bool  IsStackTopMinus2InRegister    (IM3Compilation o)  { return IsStackIndexInRegister (o, (i32) GetStackTopIndex (o) - 2);   }
276
277
761
static inline bool  IsStackTopInSlot              (IM3Compilation o)  { return not IsStackTopInRegister (o); }
278
279
66
static inline bool  IsValidSlot                   (u16 i_slot)        { return (i_slot < d_m3MaxFunctionSlots); }
280
281
static inline
282
u16  GetStackTopSlotNumber  (IM3Compilation o)
283
595
{
284
595
    i16 i = GetStackTopIndex (o);
285
286
595
    u16 slot = c_slotUnused;
287
288
595
    if (i >= 0)
289
579
        slot = o->wasmStack [i];
290
291
595
    return slot;
292
595
}
293
294
295
// from bottom
296
static inline
297
u16  GetSlotForStackIndex  (IM3Compilation o, u16 i_stackIndex)
298
206k
{                                                                   d_m3Assert (i_stackIndex < o->stackIndex or IsStackPolymorphic (o));
299
206k
    u16 slot = c_slotUnused;
300
301
206k
    if (i_stackIndex < o->stackIndex)
302
206k
        slot = o->wasmStack [i_stackIndex];
303
304
206k
    return slot;
305
206k
}
306
307
static inline
308
u16  GetExtraSlotForStackIndex  (IM3Compilation o, u16 i_stackIndex)
309
55.2k
{
310
55.2k
    u16 baseSlot = GetSlotForStackIndex (o, i_stackIndex);
311
312
55.2k
    if (baseSlot != c_slotUnused)
313
55.2k
    {
314
55.2k
        u16 extraSlot = GetTypeNumSlots (GetStackTypeFromBottom (o, i_stackIndex)) - 1;
315
55.2k
        baseSlot += extraSlot;
316
55.2k
    }
317
318
55.2k
    return baseSlot;
319
55.2k
}
320
321
322
static inline
323
void  TouchSlot  (IM3Compilation o, u16 i_slot)
324
96.8k
{
325
    // op_Entry uses this value to track and detect stack overflow
326
96.8k
    o->maxStackSlots = M3_MAX (o->maxStackSlots, i_slot + 1);
327
96.8k
}
328
329
static inline
330
void  MarkSlotAllocated  (IM3Compilation o, u16 i_slot)
331
84.3k
{                                                                   d_m3Assert (o->m3Slots [i_slot] == 0); // shouldn't be already allocated
332
84.3k
    o->m3Slots [i_slot] = 1;
333
334
84.3k
    o->slotMaxAllocatedIndexPlusOne = M3_MAX (o->slotMaxAllocatedIndexPlusOne, i_slot + 1);
335
336
84.3k
    TouchSlot (o, i_slot);
337
84.3k
}
338
339
static inline
340
void  MarkSlotsAllocated  (IM3Compilation o, u16 i_slot, u16 i_numSlots)
341
56.4k
{
342
136k
    while (i_numSlots--)
343
79.9k
        MarkSlotAllocated (o, i_slot++);
344
56.4k
}
345
346
static inline
347
void  MarkSlotsAllocatedByType  (IM3Compilation o, u16 i_slot, u8 i_type)
348
23.7k
{
349
23.7k
    u16 numSlots = GetTypeNumSlots (i_type);
350
23.7k
    MarkSlotsAllocated (o, i_slot, numSlots);
351
23.7k
}
352
353
354
static
355
M3Result  AllocateSlotsWithinRange  (IM3Compilation o, u16 * o_slot, u8 i_type, u16 i_startSlot, u16 i_endSlot)
356
42.0k
{
357
42.0k
    M3Result result = m3Err_functionStackOverflow;
358
359
42.0k
    u16 numSlots = GetTypeNumSlots (i_type);
360
42.0k
    u16 searchOffset = numSlots - 1;
361
362
42.0k
    AlignSlotToType (& i_startSlot, i_type);
363
364
    // search for 1 or 2 consecutive slots in the execution stack
365
42.0k
    u16 i = i_startSlot;
366
10.1M
    while (i + searchOffset < i_endSlot)
367
10.1M
    {
368
10.1M
        if (o->m3Slots [i] == 0 and o->m3Slots [i + searchOffset] == 0)
369
32.7k
        {
370
32.7k
            MarkSlotsAllocated (o, i, numSlots);
371
372
32.7k
            * o_slot = i;
373
32.7k
            result = m3Err_none;
374
32.7k
            break;
375
32.7k
        }
376
377
        // keep 2-slot allocations even-aligned
378
10.0M
        i += numSlots;
379
10.0M
    }
380
381
42.0k
    return result;
382
42.0k
}
383
384
static inline
385
M3Result  AllocateSlots  (IM3Compilation o, u16 * o_slot, u8 i_type)
386
32.6k
{
387
32.6k
    return AllocateSlotsWithinRange (o, o_slot, i_type, o->slotFirstDynamicIndex, d_m3MaxFunctionSlots);
388
32.6k
}
389
390
static inline
391
M3Result  AllocateConstantSlots  (IM3Compilation o, u16 * o_slot, u8 i_type)
392
9.38k
{
393
9.38k
    u16 maxTableIndex = o->slotFirstConstIndex + d_m3MaxConstantTableSize;
394
9.38k
    return AllocateSlotsWithinRange (o, o_slot, i_type, o->slotFirstConstIndex, M3_MIN(o->slotFirstDynamicIndex, maxTableIndex));
395
9.38k
}
396
397
398
// TOQUE: this usage count system could be eliminated. real world code doesn't frequently trigger it.  just copy to multiple
399
// unique slots.
400
static inline
401
M3Result  IncrementSlotUsageCount  (IM3Compilation o, u16 i_slot)
402
0
{                                                                                       d_m3Assert (i_slot < d_m3MaxFunctionSlots);
403
0
    M3Result result = m3Err_none;                                                       d_m3Assert (o->m3Slots [i_slot] > 0);
404
405
    // OPTZ (memory): 'm3Slots' could still be fused with 'typeStack' if 4 bits were used to indicate: [0,1,2,many]. The many-case
406
    // would scan 'wasmStack' to determine the actual usage count
407
0
    if (o->m3Slots [i_slot] < 0xFF)
408
0
    {
409
0
        o->m3Slots [i_slot]++;
410
0
    }
411
0
    else result = "slot usage count overflow";
412
413
0
    return result;
414
0
}
415
416
static inline
417
void DeallocateSlot (IM3Compilation o, i16 i_slot, u8 i_type)
418
31.0k
{                                                                                       d_m3Assert (i_slot >= o->slotFirstDynamicIndex);
419
31.0k
                                                                                        d_m3Assert (i_slot < o->slotMaxAllocatedIndexPlusOne);
420
71.5k
    for (u16 i = 0; i < GetTypeNumSlots (i_type); ++i, ++i_slot)
421
40.5k
    {                                                                                   d_m3Assert (o->m3Slots [i_slot]);
422
40.5k
        -- o->m3Slots [i_slot];
423
40.5k
    }
424
31.0k
}
425
426
427
static inline
428
bool  IsRegisterTypeAllocated  (IM3Compilation o, u8 i_type)
429
15
{
430
15
    return IsRegisterAllocated (o, IsFpType (i_type));
431
15
}
432
433
static inline
434
void  AllocateRegister  (IM3Compilation o, u32 i_register, u16 i_stackIndex)
435
569
{                                                                                       d_m3Assert (not IsRegisterAllocated (o, i_register));
436
569
    o->regStackIndexPlusOne [i_register] = i_stackIndex + 1;
437
569
}
438
439
static inline
440
void  DeallocateRegister  (IM3Compilation o, u32 i_register)
441
549
{                                                                                       d_m3Assert (IsRegisterAllocated (o, i_register));
442
549
    o->regStackIndexPlusOne [i_register] = c_m3RegisterUnallocated;
443
549
}
444
445
static inline
446
u16  GetRegisterStackIndex  (IM3Compilation o, u32 i_register)
447
107
{                                                                                       d_m3Assert (IsRegisterAllocated (o, i_register));
448
107
    return o->regStackIndexPlusOne [i_register] - 1;
449
107
}
450
451
u16  GetMaxUsedSlotPlusOne  (IM3Compilation o)
452
207
{
453
5.81k
    while (o->slotMaxAllocatedIndexPlusOne > o->slotFirstDynamicIndex)
454
5.75k
    {
455
5.75k
        if (IsSlotAllocated (o, o->slotMaxAllocatedIndexPlusOne - 1))
456
149
            break;
457
458
5.60k
        o->slotMaxAllocatedIndexPlusOne--;
459
5.60k
    }
460
461
#   ifdef DEBUG
462
        u16 maxSlot = o->slotMaxAllocatedIndexPlusOne;
463
        while (maxSlot < d_m3MaxFunctionSlots)
464
        {
465
            d_m3Assert (o->m3Slots [maxSlot] == 0);
466
            maxSlot++;
467
        }
468
#   endif
469
470
207
    return o->slotMaxAllocatedIndexPlusOne;
471
207
}
472
473
static
474
M3Result  PreserveRegisterIfOccupied  (IM3Compilation o, u8 i_registerType)
475
1.11k
{
476
1.11k
    M3Result result = m3Err_none;
477
478
1.11k
    u32 regSelect = IsFpType (i_registerType);
479
480
1.11k
    if (IsRegisterAllocated (o, regSelect))
481
94
    {
482
94
        u16 stackIndex = GetRegisterStackIndex (o, regSelect);
483
94
        DeallocateRegister (o, regSelect);
484
485
94
        u8 type = GetStackTypeFromBottom (o, stackIndex);
486
487
        // and point to a exec slot
488
94
        u16 slot = c_slotUnused;
489
94
_       (AllocateSlots (o, & slot, type));
490
94
        o->wasmStack [stackIndex] = slot;
491
492
94
_       (EmitOp (o, c_setSetOps [type]));
493
94
        EmitSlotOffset (o, slot);
494
94
    }
495
496
1.11k
    _catch: return result;
497
1.11k
}
498
499
500
// all values must be in slots before entering loop, if, and else blocks
501
// otherwise they'd end up preserve-copied in the block to probably different locations (if/else)
502
static inline
503
M3Result  PreserveRegisters  (IM3Compilation o)
504
353
{
505
353
    M3Result result;
506
507
353
_   (PreserveRegisterIfOccupied (o, c_m3Type_f64));
508
353
_   (PreserveRegisterIfOccupied (o, c_m3Type_i64));
509
510
353
    _catch: return result;
511
353
}
512
513
static
514
M3Result  PreserveNonTopRegisters  (IM3Compilation o)
515
29
{
516
29
    M3Result result = m3Err_none;
517
518
29
    i16 stackTop = GetStackTopIndex (o);
519
520
29
    if (stackTop >= 0)
521
29
    {
522
29
        if (IsRegisterAllocated (o, 0))     // r0
523
10
        {
524
10
            if (GetRegisterStackIndex (o, 0) != stackTop)
525
10
_               (PreserveRegisterIfOccupied (o, c_m3Type_i64));
526
10
        }
527
528
29
        if (IsRegisterAllocated (o, 1))     // fp0
529
3
        {
530
3
            if (GetRegisterStackIndex (o, 1) != stackTop)
531
3
_               (PreserveRegisterIfOccupied (o, c_m3Type_f64));
532
3
        }
533
29
    }
534
535
29
    _catch: return result;
536
29
}
537
538
539
//----------------------------------------------------------------------------------------------------------------------
540
541
static
542
M3Result  Push  (IM3Compilation o, u8 i_type, u16 i_slot)
543
57.3k
{
544
57.3k
    M3Result result = m3Err_none;
545
546
#if !d_m3HasFloat
547
    if (i_type == c_m3Type_f32 || i_type == c_m3Type_f64) {
548
        return m3Err_unknownOpcode;
549
    }
550
#endif
551
552
57.3k
    u16 stackIndex = o->stackIndex++;                                       // printf ("push: %d\n", (i32) i);
553
554
57.3k
    if (stackIndex < d_m3MaxFunctionStackHeight)
555
55.9k
    {
556
55.9k
        o->wasmStack        [stackIndex] = i_slot;
557
55.9k
        o->typeStack        [stackIndex] = i_type;
558
559
55.9k
        if (IsRegisterSlotAlias (i_slot))
560
569
        {
561
569
            u32 regSelect = IsFpRegisterSlotAlias (i_slot);
562
569
            AllocateRegister (o, regSelect, stackIndex);
563
569
        }
564
565
55.9k
        if (d_m3LogWasmStack) dump_type_stack (o);
566
55.9k
    }
567
1.38k
    else result = m3Err_functionStackOverflow;
568
569
57.3k
    return result;
570
57.3k
}
571
572
static inline
573
M3Result  PushRegister  (IM3Compilation o, u8 i_type)
574
468
{
575
468
    M3Result result = m3Err_none;                                                       d_m3Assert ((u16) d_m3Reg0SlotAlias > (u16) d_m3MaxFunctionSlots);
576
468
    u16 slot = IsFpType (i_type) ? d_m3Fp0SlotAlias : d_m3Reg0SlotAlias;                d_m3Assert (i_type or IsStackPolymorphic (o));
577
578
468
_   (Push (o, i_type, slot));
579
580
468
    _catch: return result;
581
465
}
582
583
static
584
M3Result  Pop  (IM3Compilation o)
585
35.8k
{
586
35.8k
    M3Result result = m3Err_none;
587
588
35.8k
    if (o->stackIndex > o->block.blockStackIndex)
589
32.6k
    {
590
32.6k
        o->stackIndex--;                                                //  printf ("pop: %d\n", (i32) o->stackIndex);
591
592
32.6k
        u16 slot = o->wasmStack [o->stackIndex];
593
32.6k
        u8 type = o->typeStack [o->stackIndex];
594
595
32.6k
        if (IsRegisterSlotAlias (slot))
596
455
        {
597
455
            u32 regSelect = IsFpRegisterSlotAlias (slot);
598
455
            DeallocateRegister (o, regSelect);
599
455
        }
600
32.1k
        else if (slot >= o->slotFirstDynamicIndex)
601
31.0k
        {
602
31.0k
            DeallocateSlot (o, slot, type);
603
31.0k
        }
604
32.6k
    }
605
3.16k
    else if (not IsStackPolymorphic (o))
606
0
        result = m3Err_functionStackUnderrun;
607
608
35.8k
    return result;
609
35.8k
}
610
611
static
612
M3Result  PopType  (IM3Compilation o, u8 i_type)
613
11.2k
{
614
11.2k
    M3Result result = m3Err_none;
615
616
11.2k
    u8 topType = GetStackTopType (o);
617
618
11.2k
    if (i_type == topType or o->block.isPolymorphic)
619
11.2k
    {
620
11.2k
_       (Pop (o));
621
11.2k
    }
622
11.2k
    else _throw (m3Err_typeMismatch);
623
624
11.2k
    _catch:
625
11.2k
    return result;
626
11.2k
}
627
628
static
629
M3Result  _PushAllocatedSlotAndEmit  (IM3Compilation o, u8 i_type, bool i_doEmit)
630
32.5k
{
631
32.5k
    M3Result result = m3Err_none;
632
633
32.5k
    u16 slot = c_slotUnused;
634
635
32.5k
_   (AllocateSlots (o, & slot, i_type));
636
32.5k
_   (Push (o, i_type, slot));
637
638
32.5k
    if (i_doEmit)
639
9.74k
        EmitSlotOffset (o, slot);
640
641
//    printf ("push: %d\n", (u32) slot);
642
643
32.5k
    _catch: return result;
644
32.5k
}
645
646
static inline
647
M3Result  PushAllocatedSlotAndEmit  (IM3Compilation o, u8 i_type)
648
9.74k
{
649
9.74k
    return _PushAllocatedSlotAndEmit (o, i_type, true);
650
9.74k
}
651
652
static inline
653
M3Result  PushAllocatedSlot  (IM3Compilation o, u8 i_type)
654
22.8k
{
655
22.8k
    return _PushAllocatedSlotAndEmit (o, i_type, false);
656
22.8k
}
657
658
static
659
M3Result  PushConst  (IM3Compilation o, u64 i_word, u8 i_type)
660
22.8k
{
661
22.8k
    M3Result result = m3Err_none;
662
663
    // Early-exit if we're not emitting
664
22.8k
    if (!o->page) return result;
665
666
22.8k
    bool matchFound = false;
667
9.38k
    bool is64BitType = Is64BitType (i_type);
668
669
9.38k
    u16 numRequiredSlots = GetTypeNumSlots (i_type);
670
9.38k
    u16 numUsedConstSlots = o->slotMaxConstIndex - o->slotFirstConstIndex;
671
672
    // search for duplicate matching constant slot to reuse
673
9.38k
    if (numRequiredSlots == 2 and numUsedConstSlots >= 2)
674
0
    {
675
0
        u16 firstConstSlot = o->slotFirstConstIndex;
676
0
        AlignSlotToType (& firstConstSlot, c_m3Type_i64);
677
678
0
        for (u16 slot = firstConstSlot; slot < o->slotMaxConstIndex - 1; slot += 2)
679
0
        {
680
0
            if (IsSlotAllocated (o, slot) and IsSlotAllocated (o, slot + 1))
681
0
            {
682
0
                u64 constant;
683
0
                memcpy (&constant, &o->constants [slot - o->slotFirstConstIndex], sizeof(constant));
684
685
0
                if (constant == i_word)
686
0
                {
687
0
                    matchFound = true;
688
0
_                   (Push (o, i_type, slot));
689
0
                    break;
690
0
                }
691
0
            }
692
0
        }
693
0
    }
694
9.38k
    else if (numRequiredSlots == 1)
695
3.81k
    {
696
3.81k
        for (u16 i = 0; i < numUsedConstSlots; ++i)
697
0
        {
698
0
            u16 slot = o->slotFirstConstIndex + i;
699
700
0
            if (IsSlotAllocated (o, slot))
701
0
            {
702
0
                bool matches;
703
0
                if (is64BitType) {
704
0
                    u64 constant;
705
0
                    memcpy (&constant, &o->constants [i], sizeof(constant));
706
0
                    matches = (constant == i_word);
707
0
                } else {
708
0
                    u32 constant;
709
0
                    memcpy (&constant, &o->constants [i], sizeof(constant));
710
0
                    matches = (constant == i_word);
711
0
                }
712
0
                if (matches)
713
0
                {
714
0
                    matchFound = true;
715
0
_                   (Push (o, i_type, slot));
716
0
                    break;
717
0
                }
718
0
            }
719
0
        }
720
3.81k
    }
721
722
9.38k
    if (not matchFound)
723
9.38k
    {
724
9.38k
        u16 slot = c_slotUnused;
725
9.38k
        result = AllocateConstantSlots (o, & slot, i_type);
726
727
9.38k
        if (result || slot == c_slotUnused) // no more constant table space; use inline constants
728
9.37k
        {
729
9.37k
            result = m3Err_none;
730
731
9.37k
            if (is64BitType) {
732
5.56k
_               (EmitOp (o, op_Const64));
733
5.56k
                EmitWord64 (o->page, i_word);
734
5.56k
            } else {
735
3.81k
_               (EmitOp (o, op_Const32));
736
3.81k
                EmitWord32 (o->page, (u32) i_word);
737
3.81k
            }
738
739
9.37k
_           (PushAllocatedSlotAndEmit (o, i_type));
740
9.37k
        }
741
7
        else
742
7
        {
743
7
            u16 constTableIndex = slot - o->slotFirstConstIndex;
744
745
7
            d_m3Assert(constTableIndex < d_m3MaxConstantTableSize);
746
747
7
            if (is64BitType) {
748
5
                memcpy (& o->constants [constTableIndex], &i_word, sizeof(i_word));
749
5
            } else {
750
2
                u32 word32 = i_word;
751
2
                memcpy (& o->constants [constTableIndex], &word32, sizeof(word32));
752
2
            }
753
754
7
_           (Push (o, i_type, slot));
755
756
7
            o->slotMaxConstIndex = M3_MAX (slot + numRequiredSlots, o->slotMaxConstIndex);
757
7
        }
758
9.38k
    }
759
760
9.38k
    _catch: return result;
761
9.38k
}
762
763
static inline
764
M3Result  EmitSlotNumOfStackTopAndPop  (IM3Compilation o)
765
565
{
766
    // no emit if value is in register
767
565
    if (IsStackTopInSlot (o))
768
358
        EmitSlotOffset (o, GetStackTopSlotNumber (o));
769
770
565
    return Pop (o);
771
565
}
772
773
774
// Or, maybe: EmitTrappingOp
775
M3Result  AddTrapRecord  (IM3Compilation o)
776
143
{
777
143
    M3Result result = m3Err_none;
778
779
143
    if (o->function)
780
143
    {
781
143
    }
782
783
143
    return result;
784
143
}
785
786
static
787
M3Result  UnwindBlockStack  (IM3Compilation o)
788
158
{
789
158
    M3Result result = m3Err_none;
790
791
158
    u32 popCount = 0;
792
5.26k
    while (o->stackIndex > o->block.blockStackIndex)
793
5.10k
    {
794
5.10k
_       (Pop (o));
795
5.10k
        ++popCount;
796
5.10k
    }
797
798
158
    if (popCount)
799
94
    {
800
94
        m3log (compile, "unwound stack top: %d", popCount);
801
94
    }
802
803
158
    _catch: return result;
804
158
}
805
806
static inline
807
M3Result  SetStackPolymorphic  (IM3Compilation o)
808
143
{
809
143
    o->block.isPolymorphic = true;                              m3log (compile, "stack set polymorphic");
810
143
    return UnwindBlockStack (o);
811
143
}
812
813
static
814
void  PatchBranches  (IM3Compilation o)
815
120
{
816
120
    pc_t pc = GetPC (o);
817
818
120
    pc_t patches = o->block.patches;
819
120
    o->block.patches = NULL;
820
821
120
    while (patches)
822
0
    {                                                           m3log (compile, "patching location: %p to pc: %p", patches, pc);
823
0
        pc_t next = * (pc_t *) patches;
824
0
        * (pc_t *) patches = pc;
825
0
        patches = next;
826
0
    }
827
120
}
828
829
//-------------------------------------------------------------------------------------------------------------------------
830
831
static
832
M3Result  CopyStackIndexToSlot  (IM3Compilation o, u16 i_destSlot, u16 i_stackIndex)  // NoPushPop
833
28.2k
{
834
28.2k
    M3Result result = m3Err_none;
835
836
28.2k
    IM3Operation op;
837
838
28.2k
    u8 type = GetStackTypeFromBottom (o, i_stackIndex);
839
28.2k
    bool inRegister = IsStackIndexInRegister (o, i_stackIndex);
840
841
28.2k
    if (inRegister)
842
5
    {
843
5
        op = c_setSetOps [type];
844
5
    }
845
28.1k
    else op = Is64BitType (type) ? op_CopySlot_64 : op_CopySlot_32;
846
847
28.2k
_   (EmitOp (o, op));
848
28.2k
    EmitSlotOffset (o, i_destSlot);
849
850
28.2k
    if (not inRegister)
851
28.1k
    {
852
28.1k
        u16 srcSlot = GetSlotForStackIndex (o, i_stackIndex);
853
28.1k
        EmitSlotOffset (o, srcSlot);
854
28.1k
    }
855
856
28.2k
    _catch: return result;
857
28.2k
}
858
859
static
860
M3Result  CopyStackTopToSlot  (IM3Compilation o, u16 i_destSlot)  // NoPushPop
861
485
{
862
485
    M3Result result;
863
864
485
    i16 stackTop = GetStackTopIndex (o);
865
485
_   (CopyStackIndexToSlot (o, i_destSlot, (u16) stackTop));
866
867
485
    _catch: return result;
868
485
}
869
870
871
// a copy-on-write strategy is used with locals. when a get local occurs, it's not copied anywhere. the stack
872
// entry just has a index pointer to that local memory slot.
873
// then, when a previously referenced local is set, the current value needs to be preserved for those references
874
875
// TODO: consider getting rid of these specialized operations: PreserveSetSlot & PreserveCopySlot.
876
// They likely just take up space (which seems to reduce performance) without improving performance.
877
static
878
M3Result  PreservedCopyTopSlot  (IM3Compilation o, u16 i_destSlot, u16 i_preserveSlot)
879
0
{
880
0
    M3Result result = m3Err_none;             d_m3Assert (i_destSlot != i_preserveSlot);
881
882
0
    IM3Operation op;
883
884
0
    u8 type = GetStackTopType (o);
885
886
0
    if (IsStackTopInRegister (o))
887
0
    {
888
0
        op = c_preserveSetSlot [type];
889
0
    }
890
0
    else op = Is64BitType (type) ? op_PreserveCopySlot_64 : op_PreserveCopySlot_32;
891
892
0
_   (EmitOp (o, op));
893
0
    EmitSlotOffset (o, i_destSlot);
894
895
0
    if (IsStackTopInSlot (o))
896
0
        EmitSlotOffset (o, GetStackTopSlotNumber (o));
897
898
0
    EmitSlotOffset (o, i_preserveSlot);
899
900
0
    _catch: return result;
901
0
}
902
903
static
904
M3Result  CopyStackTopToRegister  (IM3Compilation o, bool i_updateStack)
905
181
{
906
181
    M3Result result = m3Err_none;
907
908
181
    if (IsStackTopInSlot (o))
909
173
    {
910
173
        u8 type = GetStackTopType (o);
911
912
173
_       (PreserveRegisterIfOccupied (o, type));
913
914
173
        IM3Operation op = c_setRegisterOps [type];
915
916
173
_       (EmitOp (o, op));
917
173
        EmitSlotOffset (o, GetStackTopSlotNumber (o));
918
919
173
        if (i_updateStack)
920
0
        {
921
0
_           (PopType (o, type));
922
0
_           (PushRegister (o, type));
923
0
        }
924
173
    }
925
926
181
    _catch: return result;
927
181
}
928
929
930
// if local is unreferenced, o_preservedSlotNumber will be equal to localIndex on return
931
static
932
M3Result  FindReferencedLocalWithinCurrentBlock  (IM3Compilation o, u16 * o_preservedSlotNumber, u32 i_localSlot)
933
16.7k
{
934
16.7k
    M3Result result = m3Err_none;
935
936
16.7k
    IM3CompilationScope scope = & o->block;
937
16.7k
    u16 startIndex = scope->blockStackIndex;
938
939
17.3k
    while (scope->opcode == c_waOp_block)
940
620
    {
941
620
        scope = scope->outer;
942
620
        if (not scope)
943
0
            break;
944
945
620
        startIndex = scope->blockStackIndex;
946
620
    }
947
948
16.7k
    * o_preservedSlotNumber = (u16) i_localSlot;
949
950
465k
    for (u32 i = startIndex; i < o->stackIndex; ++i)
951
448k
    {
952
448k
        if (o->wasmStack [i] == i_localSlot)
953
0
        {
954
0
            if (* o_preservedSlotNumber == i_localSlot)
955
0
            {
956
0
                u8 type = GetStackTypeFromBottom (o, i);                    d_m3Assert (type != c_m3Type_none)
957
958
0
_               (AllocateSlots (o, o_preservedSlotNumber, type));
959
0
            }
960
0
            else
961
0
_               (IncrementSlotUsageCount (o, * o_preservedSlotNumber));
962
963
0
            o->wasmStack [i] = * o_preservedSlotNumber;
964
0
        }
965
448k
    }
966
967
16.7k
    _catch: return result;
968
16.7k
}
969
970
static
971
M3Result  GetBlockScope  (IM3Compilation o, IM3CompilationScope * o_scope, u32 i_depth)
972
234
{
973
234
    M3Result result = m3Err_none;
974
975
234
    IM3CompilationScope scope = & o->block;
976
977
234
    while (i_depth--)
978
1
    {
979
1
        scope = scope->outer;
980
1
        _throwif ("invalid block depth", not scope);
981
0
    }
982
983
233
    * o_scope = scope;
984
985
234
    _catch:
986
234
    return result;
987
233
}
988
989
static
990
M3Result  CopyStackSlotsR  (IM3Compilation o, u16 i_targetSlotStackIndex, u16 i_stackIndex, u16 i_endStackIndex, u16 i_tempSlot)
991
16.0k
{
992
16.0k
    M3Result result = m3Err_none;
993
994
16.0k
    if (i_stackIndex < i_endStackIndex)
995
15.8k
    {
996
15.8k
        u16 srcSlot = GetSlotForStackIndex (o, i_stackIndex);
997
998
15.8k
        u8 type = GetStackTypeFromBottom (o, i_stackIndex);
999
15.8k
        u16 numSlots = GetTypeNumSlots (type);
1000
15.8k
        u16 extraSlot = numSlots - 1;
1001
1002
15.8k
        u16 targetSlot = GetSlotForStackIndex (o, i_targetSlotStackIndex);
1003
1004
15.8k
        u16 preserveIndex = i_stackIndex;
1005
15.8k
        u16 collisionSlot = srcSlot;
1006
1007
15.8k
        if (targetSlot != srcSlot)
1008
15.2k
        {
1009
            // search for collisions
1010
15.2k
            u16 checkIndex = i_stackIndex + 1;
1011
57.9k
            while (checkIndex < i_endStackIndex)
1012
55.2k
            {
1013
55.2k
                u16 otherSlot1 = GetSlotForStackIndex (o, checkIndex);
1014
55.2k
                u16 otherSlot2 = GetExtraSlotForStackIndex (o, checkIndex);
1015
1016
55.2k
                if (targetSlot == otherSlot1 or
1017
42.7k
                    targetSlot == otherSlot2 or
1018
42.7k
                    targetSlot + extraSlot == otherSlot1)
1019
12.5k
                {
1020
12.5k
                    _throwif (m3Err_functionStackOverflow, i_tempSlot >= d_m3MaxFunctionSlots);
1021
1022
12.5k
_                   (CopyStackIndexToSlot (o, i_tempSlot, checkIndex));
1023
12.5k
                    o->wasmStack [checkIndex] = i_tempSlot;
1024
12.5k
                    i_tempSlot += GetTypeNumSlots (c_m3Type_i64);
1025
12.5k
                    TouchSlot (o, i_tempSlot - 1);
1026
1027
                    // restore this on the way back down
1028
12.5k
                    preserveIndex = checkIndex;
1029
12.5k
                    collisionSlot = otherSlot1;
1030
1031
12.5k
                    break;
1032
12.5k
                }
1033
1034
42.7k
                ++checkIndex;
1035
42.7k
            }
1036
1037
15.2k
_           (CopyStackIndexToSlot (o, targetSlot, i_stackIndex));                                               m3log (compile, " copying slot: %d to slot: %d", srcSlot, targetSlot);
1038
15.2k
            o->wasmStack [i_stackIndex] = targetSlot;
1039
1040
15.2k
        }
1041
1042
15.8k
_       (CopyStackSlotsR (o, i_targetSlotStackIndex + 1, i_stackIndex + 1, i_endStackIndex, i_tempSlot));
1043
1044
        // restore the stack state
1045
15.7k
        o->wasmStack [i_stackIndex] = srcSlot;
1046
15.7k
        o->wasmStack [preserveIndex] = collisionSlot;
1047
15.7k
    }
1048
1049
16.0k
    _catch:
1050
16.0k
    return result;
1051
16.0k
}
1052
1053
static
1054
M3Result  ResolveBlockResults  (IM3Compilation o, IM3CompilationScope i_targetBlock, bool i_isBranch)
1055
233
{
1056
233
    M3Result result = m3Err_none;                                   if (d_m3LogWasmStack) dump_type_stack (o);
1057
1058
233
    bool isLoop = (i_targetBlock->opcode == c_waOp_loop and i_isBranch);
1059
1060
233
    u16 numParams = GetFuncTypeNumParams (i_targetBlock->type);
1061
233
    u16 numResults = GetFuncTypeNumResults (i_targetBlock->type);
1062
1063
233
    u16 slotRecords = i_targetBlock->exitStackIndex;
1064
1065
233
    u16 numValues;
1066
1067
233
    if (not isLoop)
1068
233
    {
1069
233
        numValues = numResults;
1070
233
        slotRecords += numParams;
1071
233
    }
1072
0
    else numValues = numParams;
1073
1074
233
    u16 blockHeight = GetNumBlockValuesOnStack (o);
1075
1076
233
    _throwif (m3Err_typeCountMismatch, i_isBranch ? (blockHeight < numValues) : (blockHeight != numValues));
1077
1078
233
    if (numValues)
1079
233
    {
1080
233
        u16 endIndex = GetStackTopIndex (o) + 1;
1081
233
        u16 numRemValues = numValues;
1082
1083
        // The last result is taken from _fp0. See PushBlockResults.
1084
233
        if (not isLoop and IsFpType (GetStackTopType (o)))
1085
165
        {
1086
165
_           (CopyStackTopToRegister (o, false));
1087
165
            --endIndex;
1088
165
            --numRemValues;
1089
165
        }
1090
1091
        // TODO: tempslot affects maxStackSlots, so can grow unnecess each time.
1092
233
        u16 tempSlot = o->maxStackSlots;// GetMaxUsedSlotPlusOne (o); doesn't work cause can collide with slotRecords
1093
233
        AlignSlotToType (& tempSlot, c_m3Type_i64);
1094
1095
233
_       (CopyStackSlotsR (o, slotRecords, endIndex - numRemValues, endIndex, tempSlot));
1096
1097
226
        if (d_m3LogWasmStack) dump_type_stack (o);
1098
226
    }
1099
1100
233
    _catch: return result;
1101
233
}
1102
1103
1104
static
1105
M3Result  ReturnValues  (IM3Compilation o, IM3CompilationScope i_functionBlock, bool i_isBranch)
1106
6
{
1107
6
    M3Result result = m3Err_none;                                               if (d_m3LogWasmStack) dump_type_stack (o);
1108
1109
6
    u16 numReturns = GetFuncTypeNumResults (i_functionBlock->type);     // could just o->function too...
1110
6
    u16 blockHeight = GetNumBlockValuesOnStack (o);
1111
1112
6
    if (not IsStackPolymorphic (o))
1113
6
        _throwif (m3Err_typeCountMismatch, i_isBranch ? (blockHeight < numReturns) : (blockHeight != numReturns));
1114
1115
6
    if (numReturns)
1116
6
    {
1117
        // return slots like args are 64-bit aligned
1118
6
        u16 returnSlot = numReturns * c_ioSlotCount;
1119
6
        u16 stackTop = GetStackTopIndex (o);
1120
1121
486
        for (u16 i = 0; i < numReturns; ++i)
1122
480
        {
1123
480
            u8 returnType = GetFuncTypeResultType (i_functionBlock->type, numReturns - 1 - i);
1124
1125
480
            u8 stackType = GetStackTypeFromTop (o, i);  // using FromTop so that only dynamic items are checked
1126
1127
480
            if (IsStackPolymorphic (o) and stackType == c_m3Type_none)
1128
259
                stackType = returnType;
1129
1130
480
            _throwif (m3Err_typeMismatch, returnType != stackType);
1131
1132
480
            if (not IsStackPolymorphic (o))
1133
0
            {
1134
0
                returnSlot -= c_ioSlotCount;
1135
0
_               (CopyStackIndexToSlot (o, returnSlot, stackTop--));
1136
0
            }
1137
480
        }
1138
1139
6
        if (not i_isBranch)
1140
6
        {
1141
486
            while (numReturns--)
1142
480
_               (Pop (o));
1143
6
        }
1144
6
    }
1145
1146
6
    _catch: return result;
1147
6
}
1148
1149
1150
//-------------------------------------------------------------------------------------------------------------------------
1151
1152
static
1153
M3Result  Compile_Const_i32  (IM3Compilation o, m3opcode_t i_opcode)
1154
8.50k
{
1155
8.50k
    M3Result result;
1156
1157
8.50k
    i32 value;
1158
8.50k
_   (ReadLEB_i32 (& value, & o->wasm, o->wasmEnd));
1159
8.50k
_   (PushConst (o, value, c_m3Type_i32));                       m3log (compile, d_indent " (const i32 = %" PRIi32 ")", get_indention_string (o), value);
1160
8.50k
    _catch: return result;
1161
8.50k
}
1162
1163
static
1164
M3Result  Compile_Const_i64  (IM3Compilation o, m3opcode_t i_opcode)
1165
13.7k
{
1166
13.7k
    M3Result result;
1167
1168
13.7k
    i64 value;
1169
13.7k
_   (ReadLEB_i64 (& value, & o->wasm, o->wasmEnd));
1170
13.7k
_   (PushConst (o, value, c_m3Type_i64));                       m3log (compile, d_indent " (const i64 = %" PRIi64 ")", get_indention_string (o), value);
1171
13.7k
    _catch: return result;
1172
13.7k
}
1173
1174
1175
#if d_m3ImplementFloat
1176
static
1177
M3Result  Compile_Const_f32  (IM3Compilation o, m3opcode_t i_opcode)
1178
462
{
1179
462
    M3Result result;
1180
1181
462
    union { u32 u; f32 f; } value = { 0 };
1182
1183
462
_   (Read_f32 (& value.f, & o->wasm, o->wasmEnd));              m3log (compile, d_indent " (const f32 = %" PRIf32 ")", get_indention_string (o), value.f);
1184
462
_   (PushConst (o, value.u, c_m3Type_f32));
1185
1186
462
    _catch: return result;
1187
462
}
1188
1189
static
1190
M3Result  Compile_Const_f64  (IM3Compilation o, m3opcode_t i_opcode)
1191
100
{
1192
100
    M3Result result;
1193
1194
100
    union { u64 u; f64 f; } value = { 0 };
1195
1196
100
_   (Read_f64 (& value.f, & o->wasm, o->wasmEnd));              m3log (compile, d_indent " (const f64 = %" PRIf64 ")", get_indention_string (o), value.f);
1197
100
_   (PushConst (o, value.u, c_m3Type_f64));
1198
1199
100
    _catch: return result;
1200
100
}
1201
#endif
1202
1203
#if d_m3CascadedOpcodes
1204
1205
static
1206
M3Result  Compile_ExtendedOpcode  (IM3Compilation o, m3opcode_t i_opcode)
1207
2
{
1208
2
_try {
1209
2
    u8 opcode;
1210
2
_   (Read_u8 (& opcode, & o->wasm, o->wasmEnd));             m3log (compile, d_indent " (FC: %" PRIi32 ")", get_indention_string (o), opcode);
1211
1212
2
    i_opcode = (i_opcode << 8) | opcode;
1213
1214
    //printf("Extended opcode: 0x%x\n", i_opcode);
1215
1216
2
    IM3OpInfo opInfo = GetOpInfo (i_opcode);
1217
2
    _throwif (m3Err_unknownOpcode, not opInfo);
1218
1219
2
    M3Compiler compiler = opInfo->compiler;
1220
2
    _throwif (m3Err_noCompiler, not compiler);
1221
1222
2
_   ((* compiler) (o, i_opcode));
1223
1224
2
    o->previousOpcode = i_opcode;
1225
1226
2
    } _catch: return result;
1227
2
}
1228
#endif
1229
1230
static
1231
M3Result  Compile_Return  (IM3Compilation o, m3opcode_t i_opcode)
1232
14
{
1233
14
    M3Result result = m3Err_none;
1234
1235
14
    if (not IsStackPolymorphic (o))
1236
0
    {
1237
0
        IM3CompilationScope functionScope;
1238
0
_       (GetBlockScope (o, & functionScope, o->block.depth));
1239
1240
0
_       (ReturnValues (o, functionScope, true));
1241
1242
0
_       (EmitOp (o, op_Return));
1243
1244
0
_       (SetStackPolymorphic (o));
1245
0
    }
1246
1247
14
    _catch: return result;
1248
14
}
1249
1250
static
1251
M3Result  ValidateBlockEnd  (IM3Compilation o)
1252
361
{
1253
361
    M3Result result = m3Err_none;
1254
/*
1255
    u16 numResults = GetFuncTypeNumResults (o->block.type);
1256
    u16 blockHeight = GetNumBlockValuesOnStack (o);
1257
1258
    if (IsStackPolymorphic (o))
1259
    {
1260
    }
1261
    else
1262
    {
1263
    }
1264
1265
361
    _catch: */ return result;
1266
361
}
1267
1268
static
1269
M3Result  Compile_End  (IM3Compilation o, m3opcode_t i_opcode)
1270
255
{
1271
255
    M3Result result = m3Err_none;                   //dump_type_stack (o);
1272
1273
    // function end:
1274
255
    if (o->block.depth == 0)
1275
240
    {
1276
240
        ValidateBlockEnd (o);
1277
1278
//      if (not IsStackPolymorphic (o))
1279
240
        {
1280
240
            if (o->function)
1281
6
            {
1282
6
_               (ReturnValues (o, & o->block, false));
1283
6
            }
1284
1285
240
_           (EmitOp (o, op_Return));
1286
240
        }
1287
240
    }
1288
1289
255
    _catch: return result;
1290
255
}
1291
1292
1293
static
1294
M3Result  Compile_SetLocal  (IM3Compilation o, m3opcode_t i_opcode)
1295
1
{
1296
1
    M3Result result;
1297
1298
1
    u32 localIndex;
1299
1
_   (ReadLEB_u32 (& localIndex, & o->wasm, o->wasmEnd));             //  printf ("--- set local: %d \n", localSlot);
1300
1301
1
    if (localIndex < GetFunctionNumArgsAndLocals (o->function))
1302
1
    {
1303
1
        u16 localSlot = GetSlotForStackIndex (o, localIndex);
1304
1305
1
        u16 preserveSlot;
1306
1
_       (FindReferencedLocalWithinCurrentBlock (o, & preserveSlot, localSlot));  // preserve will be different than local, if referenced
1307
1308
1
        if (preserveSlot == localSlot)
1309
1
_           (CopyStackTopToSlot (o, localSlot))
1310
0
        else
1311
0
_           (PreservedCopyTopSlot (o, localSlot, preserveSlot))
1312
1313
1
        if (i_opcode != c_waOp_teeLocal)
1314
1
_           (Pop (o));
1315
1
    }
1316
1
    else _throw ("local index out of bounds");
1317
1318
1
    _catch: return result;
1319
1
}
1320
1321
static
1322
M3Result  Compile_GetLocal  (IM3Compilation o, m3opcode_t i_opcode)
1323
5
{
1324
5
_try {
1325
1326
5
    u32 localIndex;
1327
5
_   (ReadLEB_u32 (& localIndex, & o->wasm, o->wasmEnd));
1328
1329
5
    if (localIndex >= GetFunctionNumArgsAndLocals (o->function))
1330
4
        _throw ("local index out of bounds");
1331
1332
4
    u8 type = GetStackTypeFromBottom (o, localIndex);
1333
4
    u16 slot = GetSlotForStackIndex (o, localIndex);
1334
1335
4
_   (Push (o, type, slot));
1336
1337
5
    } _catch: return result;
1338
4
}
1339
1340
static
1341
M3Result  Compile_GetGlobal  (IM3Compilation o, M3Global * i_global)
1342
356
{
1343
356
    M3Result result;
1344
1345
356
    IM3Operation op = Is64BitType (i_global->type) ? op_GetGlobal_s64 : op_GetGlobal_s32;
1346
356
_   (EmitOp (o, op));
1347
356
    EmitPointer (o, & i_global->i64Value);
1348
356
_   (PushAllocatedSlotAndEmit (o, i_global->type));
1349
1350
356
    _catch: return result;
1351
356
}
1352
1353
static
1354
M3Result  Compile_SetGlobal  (IM3Compilation o, M3Global * i_global)
1355
0
{
1356
0
    M3Result result = m3Err_none;
1357
1358
0
    if (i_global->isMutable)
1359
0
    {
1360
0
        IM3Operation op;
1361
0
        u8 type = GetStackTopType (o);
1362
1363
0
        if (IsStackTopInRegister (o))
1364
0
        {
1365
0
            op = c_setGlobalOps [type];
1366
0
        }
1367
0
        else op = Is64BitType (type) ? op_SetGlobal_s64 : op_SetGlobal_s32;
1368
1369
0
_      (EmitOp (o, op));
1370
0
        EmitPointer (o, & i_global->i64Value);
1371
1372
0
        if (IsStackTopInSlot (o))
1373
0
            EmitSlotOffset (o, GetStackTopSlotNumber (o));
1374
1375
0
_      (Pop (o));
1376
0
    }
1377
0
    else _throw (m3Err_settingImmutableGlobal);
1378
1379
0
    _catch: return result;
1380
0
}
1381
1382
static
1383
M3Result  Compile_GetSetGlobal  (IM3Compilation o, m3opcode_t i_opcode)
1384
356
{
1385
356
    M3Result result = m3Err_none;
1386
1387
356
    u32 globalIndex;
1388
356
_   (ReadLEB_u32 (& globalIndex, & o->wasm, o->wasmEnd));
1389
1390
356
    if (globalIndex < o->module->numGlobals)
1391
356
    {
1392
356
        if (o->module->globals)
1393
356
        {
1394
356
            M3Global * global = & o->module->globals [globalIndex];
1395
1396
356
_           ((i_opcode == c_waOp_getGlobal) ? Compile_GetGlobal (o, global) : Compile_SetGlobal (o, global));
1397
356
        }
1398
356
        else _throw (ErrorCompile (m3Err_globalMemoryNotAllocated, o, "module '%s' is missing global memory", o->module->name));
1399
356
    }
1400
356
    else _throw (m3Err_globaIndexOutOfBounds);
1401
1402
356
    _catch: return result;
1403
356
}
1404
1405
static
1406
void  EmitPatchingBranchPointer  (IM3Compilation o, IM3CompilationScope i_scope)
1407
226
{
1408
226
    pc_t patch = EmitPointer (o, i_scope->patches);                     m3log (compile, "branch patch required at: %p", patch);
1409
226
    i_scope->patches = patch;
1410
226
}
1411
1412
static
1413
M3Result  EmitPatchingBranch  (IM3Compilation o, IM3CompilationScope i_scope)
1414
226
{
1415
226
    M3Result result = m3Err_none;
1416
1417
226
_   (EmitOp (o, op_Branch));
1418
226
    EmitPatchingBranchPointer (o, i_scope);
1419
1420
226
    _catch: return result;
1421
226
}
1422
1423
static
1424
M3Result  Compile_Branch  (IM3Compilation o, m3opcode_t i_opcode)
1425
1
{
1426
1
    M3Result result;
1427
1428
1
    u32 depth;
1429
1
_   (ReadLEB_u32 (& depth, & o->wasm, o->wasmEnd));
1430
1431
1
    IM3CompilationScope scope;
1432
1
_   (GetBlockScope (o, & scope, depth));
1433
1434
    // branch target is a loop (continue)
1435
0
    if (scope->opcode == c_waOp_loop)
1436
0
    {
1437
0
        if (i_opcode == c_waOp_branchIf)
1438
0
        {
1439
0
            if (GetFuncTypeNumParams (scope->type))
1440
0
            {
1441
0
                IM3Operation op = IsStackTopInRegister (o) ? op_BranchIfPrologue_r : op_BranchIfPrologue_s;
1442
1443
0
_               (EmitOp (o, op));
1444
0
_               (EmitSlotNumOfStackTopAndPop (o));
1445
1446
0
                pc_t * jumpTo = (pc_t *) ReservePointer (o);
1447
1448
0
_               (ResolveBlockResults (o, scope, /* isBranch: */ true));
1449
1450
0
_               (EmitOp (o, op_ContinueLoop));
1451
0
                EmitPointer (o, scope->pc);
1452
1453
0
                * jumpTo = GetPC (o);
1454
0
            }
1455
0
            else
1456
0
            {
1457
                // move the condition to a register
1458
0
_               (CopyStackTopToRegister (o, false));
1459
0
_               (PopType (o, c_m3Type_i32));
1460
1461
0
_               (EmitOp (o, op_ContinueLoopIf));
1462
0
                EmitPointer (o, scope->pc);
1463
0
            }
1464
1465
//          dump_type_stack(o);
1466
0
        }
1467
0
        else // is c_waOp_branch
1468
0
        {
1469
0
    _       (EmitOp (o, op_ContinueLoop));
1470
0
            EmitPointer (o, scope->pc);
1471
0
            o->block.isPolymorphic = true;
1472
0
        }
1473
0
    }
1474
0
    else // forward branch
1475
0
    {
1476
0
        pc_t * jumpTo = NULL;
1477
1478
0
        bool isReturn = (scope->depth == 0);
1479
0
        bool targetHasResults = GetFuncTypeNumResults (scope->type);
1480
1481
0
        if (i_opcode == c_waOp_branchIf)
1482
0
        {
1483
0
            if (targetHasResults or isReturn)
1484
0
            {
1485
0
                IM3Operation op = IsStackTopInRegister (o) ? op_BranchIfPrologue_r : op_BranchIfPrologue_s;
1486
1487
0
    _           (EmitOp (o, op));
1488
0
    _           (EmitSlotNumOfStackTopAndPop (o)); // condition
1489
1490
                // this is continuation point, if the branch isn't taken
1491
0
                jumpTo = (pc_t *) ReservePointer (o);
1492
0
            }
1493
0
            else
1494
0
            {
1495
0
                IM3Operation op = IsStackTopInRegister (o) ? op_BranchIf_r : op_BranchIf_s;
1496
1497
0
    _           (EmitOp (o, op));
1498
0
    _           (EmitSlotNumOfStackTopAndPop (o)); // condition
1499
1500
0
                EmitPatchingBranchPointer (o, scope);
1501
0
                goto _catch;
1502
0
            }
1503
0
        }
1504
1505
0
        if (not IsStackPolymorphic (o))
1506
0
        {
1507
0
            if (isReturn)
1508
0
            {
1509
0
_               (ReturnValues (o, scope, true));
1510
0
_               (EmitOp (o, op_Return));
1511
0
            }
1512
0
            else
1513
0
            {
1514
0
_               (ResolveBlockResults (o, scope, true));
1515
0
_               (EmitPatchingBranch (o, scope));
1516
0
            }
1517
0
        }
1518
1519
0
        if (jumpTo)
1520
0
        {
1521
0
            * jumpTo = GetPC (o);
1522
0
        }
1523
1524
0
        if (i_opcode == c_waOp_branch)
1525
0
_           (SetStackPolymorphic (o));
1526
0
    }
1527
1528
1
    _catch: return result;
1529
0
}
1530
1531
static
1532
M3Result  Compile_BranchTable  (IM3Compilation o, m3opcode_t i_opcode)
1533
7
{
1534
7
_try {
1535
7
    u32 targetCount;
1536
7
_   (ReadLEB_u32 (& targetCount, & o->wasm, o->wasmEnd));
1537
1538
7
_   (PreserveRegisterIfOccupied (o, c_m3Type_i64));         // move branch operand to a slot
1539
7
    u16 slot = GetStackTopSlotNumber (o);
1540
7
_   (Pop (o));
1541
1542
    // OPTZ: according to spec: "forward branches that target a control instruction with a non-empty
1543
    // result type consume matching operands first and push them back on the operand stack after unwinding"
1544
    // So, this move-to-reg is only necessary if the target scopes have a type.
1545
1546
7
    u32 numCodeLines = targetCount + 4; // 3 => IM3Operation + slot + target_count + default_target
1547
7
_   (EnsureCodePageNumLines (o, numCodeLines));
1548
1549
7
_   (EmitOp (o, op_BranchTable));
1550
7
    EmitSlotOffset (o, slot);
1551
7
    EmitConstant32 (o, targetCount);
1552
1553
7
    IM3CodePage continueOpPage = NULL;
1554
1555
7
    ++targetCount; // include default
1556
233
    for (u32 i = 0; i < targetCount; ++i)
1557
233
    {
1558
233
        u32 target;
1559
233
_       (ReadLEB_u32 (& target, & o->wasm, o->wasmEnd));
1560
1561
233
        IM3CompilationScope scope;
1562
233
_       (GetBlockScope (o, & scope, target));
1563
1564
        // TODO: don't need codepage rigmarole for
1565
        // no-param forward-branch targets
1566
1567
233
_       (AcquireCompilationCodePage (o, & continueOpPage));
1568
1569
233
        pc_t startPC = GetPagePC (continueOpPage);
1570
233
        IM3CodePage savedPage = o->page;
1571
233
        o->page = continueOpPage;
1572
1573
233
        if (scope->opcode == c_waOp_loop)
1574
0
        {
1575
0
_           (ResolveBlockResults (o, scope, true));
1576
1577
0
_           (EmitOp (o, op_ContinueLoop));
1578
0
            EmitPointer (o, scope->pc);
1579
0
        }
1580
233
        else
1581
233
        {
1582
            // TODO: this could be fused with equivalent targets
1583
233
            if (not IsStackPolymorphic (o))
1584
233
            {
1585
233
                if (scope->depth == 0)
1586
0
                {
1587
0
_                   (ReturnValues (o, scope, true));
1588
0
_                   (EmitOp (o, op_Return));
1589
0
                }
1590
233
                else
1591
233
                {
1592
233
_                   (ResolveBlockResults (o, scope, true));
1593
1594
226
_                   (EmitPatchingBranch (o, scope));
1595
226
                }
1596
233
            }
1597
233
        }
1598
1599
226
        ReleaseCompilationCodePage (o);     // FIX: continueOpPage can get lost if thrown
1600
226
        o->page = savedPage;
1601
1602
226
        EmitPointer (o, startPC);
1603
226
    }
1604
1605
0
_   (SetStackPolymorphic (o));
1606
1607
0
    }
1608
1609
7
    _catch: return result;
1610
0
}
1611
1612
static
1613
M3Result  CompileCallArgsAndReturn  (IM3Compilation o, u16 * o_stackOffset, IM3FuncType i_type, bool i_isIndirect)
1614
173
{
1615
173
_try {
1616
1617
173
    u16 topSlot = GetMaxUsedSlotPlusOne (o);
1618
1619
    // force use of at least one stack slot; this is to help ensure
1620
    // the m3 stack overflows (and traps) before the native stack can overflow.
1621
    // e.g. see Wasm spec test 'runaway' in call.wast
1622
173
    topSlot = M3_MAX (1, topSlot);
1623
1624
    // stack frame is 64-bit aligned
1625
173
    AlignSlotToType (& topSlot, c_m3Type_i64);
1626
1627
173
    * o_stackOffset = topSlot;
1628
1629
    // wait to pop this here so that topSlot search is correct
1630
173
    if (i_isIndirect)
1631
173
_       (Pop (o));
1632
1633
173
    u16 numArgs = GetFuncTypeNumParams (i_type);
1634
173
    u16 numRets = GetFuncTypeNumResults (i_type);
1635
1636
173
    u16 argTop = topSlot + (numArgs + numRets) * c_ioSlotCount;
1637
1638
657
    while (numArgs--)
1639
484
    {
1640
484
_       (CopyStackTopToSlot (o, argTop -= c_ioSlotCount));
1641
484
_       (Pop (o));
1642
484
    }
1643
1644
173
    u16 i = 0;
1645
13.0k
    while (numRets--)
1646
12.9k
    {
1647
12.9k
        u8 type = GetFuncTypeResultType (i_type, i++);
1648
1649
12.9k
_       (Push (o, type, topSlot));
1650
12.9k
        MarkSlotsAllocatedByType (o, topSlot, type);
1651
1652
12.9k
        topSlot += c_ioSlotCount;
1653
12.9k
    }
1654
1655
173
    } _catch: return result;
1656
173
}
1657
1658
static
1659
M3Result  Compile_Call  (IM3Compilation o, m3opcode_t i_opcode)
1660
156
{
1661
156
_try {
1662
156
    u32 functionIndex;
1663
156
_   (ReadLEB_u32 (& functionIndex, & o->wasm, o->wasmEnd));
1664
1665
156
    IM3Function function = Module_GetFunction (o->module, functionIndex);
1666
1667
156
    if (function)
1668
155
    {                                                                   m3log (compile, d_indent " (func= [%d] '%s'; args= %d)",
1669
155
                                                                                get_indention_string (o), functionIndex, m3_GetFunctionName (function), function->funcType->numArgs);
1670
155
        if (function->module)
1671
155
        {
1672
155
            u16 slotTop;
1673
155
_           (CompileCallArgsAndReturn (o, & slotTop, function->funcType, false));
1674
1675
155
            IM3Operation op;
1676
155
            const void * operand;
1677
1678
155
            if (function->compiled)
1679
0
            {
1680
0
                op = op_Call;
1681
0
                operand = function->compiled;
1682
0
            }
1683
155
            else
1684
155
            {
1685
155
                op = op_Compile;
1686
155
                operand = function;
1687
155
            }
1688
1689
155
_           (EmitOp     (o, op));
1690
155
            EmitPointer (o, operand);
1691
155
            EmitSlotOffset  (o, slotTop);
1692
155
        }
1693
0
        else
1694
0
        {
1695
0
            _throw (ErrorCompile (m3Err_functionImportMissing, o, "'%s.%s'", GetFunctionImportModuleName (function), m3_GetFunctionName (function)));
1696
0
        }
1697
155
    }
1698
155
    else _throw (m3Err_functionLookupFailed);
1699
1700
156
    } _catch: return result;
1701
155
}
1702
1703
static
1704
M3Result  Compile_CallIndirect  (IM3Compilation o, m3opcode_t i_opcode)
1705
20
{
1706
20
_try {
1707
20
    u32 typeIndex;
1708
20
_   (ReadLEB_u32 (& typeIndex, & o->wasm, o->wasmEnd));
1709
1710
19
    u32 tableIndex;
1711
19
_   (ReadLEB_u32 (& tableIndex, & o->wasm, o->wasmEnd));
1712
1713
18
    _throwif ("function call type index out of range", typeIndex >= o->module->numFuncTypes);
1714
1715
18
    if (IsStackTopInRegister (o))
1716
18
_       (PreserveRegisterIfOccupied (o, c_m3Type_i32));
1717
1718
18
    u16 tableIndexSlot = GetStackTopSlotNumber (o);
1719
1720
18
    u16 execTop;
1721
18
    IM3FuncType type = o->module->funcTypes [typeIndex];
1722
18
_   (CompileCallArgsAndReturn (o, & execTop, type, true));
1723
1724
18
_   (EmitOp         (o, op_CallIndirect));
1725
18
    EmitSlotOffset  (o, tableIndexSlot);
1726
18
    EmitPointer     (o, o->module);
1727
18
    EmitPointer     (o, type);              // TODO: unify all types in M3Environment
1728
18
    EmitSlotOffset  (o, execTop);
1729
1730
20
} _catch:
1731
20
    return result;
1732
18
}
1733
1734
static
1735
M3Result  Compile_Memory_Size  (IM3Compilation o, m3opcode_t i_opcode)
1736
0
{
1737
0
    M3Result result;
1738
1739
0
    i8 reserved;
1740
0
_   (ReadLEB_i7 (& reserved, & o->wasm, o->wasmEnd));
1741
1742
0
_   (PreserveRegisterIfOccupied (o, c_m3Type_i32));
1743
1744
0
_   (EmitOp     (o, op_MemSize));
1745
1746
0
_   (PushRegister (o, c_m3Type_i32));
1747
1748
0
    _catch: return result;
1749
0
}
1750
1751
static
1752
M3Result  Compile_Memory_Grow  (IM3Compilation o, m3opcode_t i_opcode)
1753
14
{
1754
14
    M3Result result;
1755
1756
14
    i8 reserved;
1757
14
_   (ReadLEB_i7 (& reserved, & o->wasm, o->wasmEnd));
1758
1759
14
_   (CopyStackTopToRegister (o, false));
1760
14
_   (PopType (o, c_m3Type_i32));
1761
1762
14
_   (EmitOp     (o, op_MemGrow));
1763
1764
14
_   (PushRegister (o, c_m3Type_i32));
1765
1766
14
    _catch: return result;
1767
14
}
1768
1769
static
1770
M3Result  Compile_Memory_CopyFill  (IM3Compilation o, m3opcode_t i_opcode)
1771
2
{
1772
2
    M3Result result = m3Err_none;
1773
1774
2
    u32 sourceMemoryIdx, targetMemoryIdx;
1775
2
    IM3Operation op;
1776
2
    if (i_opcode == c_waOp_memoryCopy)
1777
0
    {
1778
0
_       (ReadLEB_u32 (& sourceMemoryIdx, & o->wasm, o->wasmEnd));
1779
0
        op = op_MemCopy;
1780
0
    }
1781
2
    else op = op_MemFill;
1782
1783
2
_   (ReadLEB_u32 (& targetMemoryIdx, & o->wasm, o->wasmEnd));
1784
1785
2
_   (CopyStackTopToRegister (o, false));
1786
1787
2
_   (EmitOp  (o, op));
1788
2
_   (PopType (o, c_m3Type_i32));
1789
2
_   (EmitSlotNumOfStackTopAndPop (o));
1790
2
_   (EmitSlotNumOfStackTopAndPop (o));
1791
1792
2
    _catch: return result;
1793
2
}
1794
1795
1796
static
1797
M3Result  ReadBlockType  (IM3Compilation o, IM3FuncType * o_blockType)
1798
382
{
1799
382
    M3Result result;
1800
1801
382
    i64 type;
1802
382
_   (ReadLebSigned (& type, 33, & o->wasm, o->wasmEnd));
1803
1804
377
    if (type < 0)
1805
4
    {
1806
4
        u8 valueType;
1807
4
_       (NormalizeType (&valueType, type));                                m3log (compile, d_indent " (type: %s)", get_indention_string (o), c_waTypes [valueType]);
1808
4
        *o_blockType = o->module->environment->retFuncTypes[valueType];
1809
4
    }
1810
373
    else
1811
373
    {
1812
373
        _throwif("func type out of bounds", type >= o->module->numFuncTypes);
1813
371
        *o_blockType = o->module->funcTypes[type];                         m3log (compile, d_indent " (type: %s)", get_indention_string (o), SPrintFuncTypeSignature (*o_blockType));
1814
371
    }
1815
382
    _catch: return result;
1816
377
}
1817
1818
static
1819
M3Result  PreserveArgsAndLocals  (IM3Compilation o)
1820
382
{
1821
382
    M3Result result = m3Err_none;
1822
1823
382
    if (o->stackIndex > o->stackFirstDynamicIndex)
1824
371
    {
1825
371
        u32 numArgsAndLocals = GetFunctionNumArgsAndLocals (o->function);
1826
1827
17.1k
        for (u32 i = 0; i < numArgsAndLocals; ++i)
1828
16.7k
        {
1829
16.7k
            u16 slot = GetSlotForStackIndex (o, i);
1830
1831
16.7k
            u16 preservedSlotNumber;
1832
16.7k
_           (FindReferencedLocalWithinCurrentBlock (o, & preservedSlotNumber, slot));
1833
1834
16.7k
            if (preservedSlotNumber != slot)
1835
0
            {
1836
0
                u8 type = GetStackTypeFromBottom (o, i);                    d_m3Assert (type != c_m3Type_none)
1837
0
                IM3Operation op = Is64BitType (type) ? op_CopySlot_64 : op_CopySlot_32;
1838
1839
0
                EmitOp          (o, op);
1840
0
                EmitSlotOffset  (o, preservedSlotNumber);
1841
0
                EmitSlotOffset  (o, slot);
1842
0
            }
1843
16.7k
        }
1844
371
    }
1845
1846
382
    _catch:
1847
382
    return result;
1848
382
}
1849
1850
static
1851
M3Result  Compile_LoopOrBlock  (IM3Compilation o, m3opcode_t i_opcode)
1852
353
{
1853
353
    M3Result result;
1854
1855
    // TODO: these shouldn't be necessary for non-loop blocks?
1856
353
_   (PreserveRegisters (o));
1857
353
_   (PreserveArgsAndLocals (o));
1858
1859
353
    IM3FuncType blockType;
1860
353
_   (ReadBlockType (o, & blockType));
1861
1862
346
    if (i_opcode == c_waOp_loop)
1863
322
    {
1864
322
        u16 numParams = GetFuncTypeNumParams (blockType);
1865
322
        if (numParams)
1866
312
        {
1867
            // instantiate constants
1868
312
            u16 numValues = GetNumBlockValuesOnStack (o);                   // CompileBlock enforces this at comptime
1869
312
                                                                            d_m3Assert (numValues >= numParams);
1870
312
            if (numValues >= numParams)
1871
253
            {
1872
253
                u16 stackTop = GetStackTopIndex (o) + 1;
1873
1874
8.34k
                for (u16 i = stackTop - numParams; i < stackTop; ++i)
1875
8.09k
                {
1876
8.09k
                    u16 slot = GetSlotForStackIndex (o, i);
1877
8.09k
                    u8 type = GetStackTypeFromBottom (o, i);
1878
1879
8.09k
                    if (IsConstantSlot (o, slot))
1880
2
                    {
1881
2
                        u16 newSlot = c_slotUnused;
1882
2
_                       (AllocateSlots (o, & newSlot, type));
1883
2
_                       (CopyStackIndexToSlot (o, newSlot, i));
1884
2
                        o->wasmStack [i] = newSlot;
1885
2
                    }
1886
8.09k
                }
1887
253
            }
1888
312
        }
1889
1890
322
_       (EmitOp (o, op_Loop));
1891
322
    }
1892
24
    else
1893
24
    {
1894
24
    }
1895
1896
346
_   (CompileBlock (o, blockType, i_opcode));
1897
1898
353
    _catch: return result;
1899
9
}
1900
1901
static
1902
M3Result  CompileElseBlock  (IM3Compilation o, pc_t * o_startPC, IM3FuncType i_blockType)
1903
3
{
1904
3
    IM3CodePage savedPage = o->page;
1905
3
_try {
1906
1907
3
    IM3CodePage elsePage;
1908
3
_   (AcquireCompilationCodePage (o, & elsePage));
1909
1910
3
    * o_startPC = GetPagePC (elsePage);
1911
1912
3
    o->page = elsePage;
1913
1914
3
_   (CompileBlock (o, i_blockType, c_waOp_else));
1915
1916
2
_   (EmitOp (o, op_Branch));
1917
2
    EmitPointer (o, GetPagePC (savedPage));
1918
3
} _catch:
1919
3
    if(o->page != savedPage) {
1920
3
        ReleaseCompilationCodePage (o);
1921
3
    }
1922
3
    o->page = savedPage;
1923
3
    return result;
1924
2
}
1925
1926
static
1927
M3Result  Compile_If  (IM3Compilation o, m3opcode_t i_opcode)
1928
29
{
1929
    /*      [   op_If   ]
1930
            [ <else-pc> ]   ---->   [ ..else..  ]
1931
            [  ..if..   ]           [ ..block.. ]
1932
            [ ..block.. ]           [ op_Branch ]
1933
            [    end    ]  <-----   [  <end-pc> ]       */
1934
1935
29
_try {
1936
1937
29
_   (PreserveNonTopRegisters (o));
1938
29
_   (PreserveArgsAndLocals (o));
1939
1940
29
    IM3Operation op = IsStackTopInRegister (o) ? op_If_r : op_If_s;
1941
1942
29
_   (EmitOp (o, op));
1943
29
_   (EmitSlotNumOfStackTopAndPop (o));
1944
1945
29
    pc_t * pc = (pc_t *) ReservePointer (o);
1946
1947
29
    IM3FuncType blockType;
1948
29
_   (ReadBlockType (o, & blockType));
1949
1950
//  dump_type_stack (o);
1951
1952
29
    u16 stackIndex = o->stackIndex;
1953
1954
29
_   (CompileBlock (o, blockType, i_opcode));
1955
1956
3
    if (o->previousOpcode == c_waOp_else)
1957
0
    {
1958
0
        o->stackIndex = stackIndex;
1959
0
_       (CompileElseBlock (o, pc, blockType));
1960
0
    }
1961
3
    else
1962
3
    {
1963
        // if block produces values and there isn't a defined else
1964
        // case, then we need to make one up so that the pass-through
1965
        // results end up in the right place
1966
3
        if (GetFuncTypeNumResults (blockType))
1967
3
        {
1968
            // rewind to the if's end to create a fake else block
1969
3
            o->wasm--;
1970
3
            o->stackIndex = stackIndex;
1971
1972
//          dump_type_stack (o);
1973
1974
3
_           (CompileElseBlock (o, pc, blockType));
1975
2
        }
1976
0
        else * pc = GetPC (o);
1977
3
    }
1978
1979
29
    } _catch: return result;
1980
3
}
1981
1982
static
1983
M3Result  Compile_Select  (IM3Compilation o, m3opcode_t i_opcode)
1984
22
{
1985
22
    M3Result result = m3Err_none;
1986
1987
22
    u16 slots [3] = { c_slotUnused, c_slotUnused, c_slotUnused };
1988
1989
22
    u8 type = GetStackTypeFromTop (o, 1); // get type of selection
1990
1991
22
    IM3Operation op = NULL;
1992
1993
22
    if (IsFpType (type))
1994
8
    {
1995
8
#   if d_m3HasFloat
1996
        // not consuming a fp reg, so preserve
1997
8
        if (not IsStackTopMinus1InRegister (o) and
1998
8
            not IsStackTopMinus2InRegister (o))
1999
7
        {
2000
7
_           (PreserveRegisterIfOccupied (o, type));
2001
7
        }
2002
2003
8
        bool selectorInReg = IsStackTopInRegister (o);
2004
8
        slots [0] = GetStackTopSlotNumber (o);
2005
8
_       (Pop (o));
2006
2007
8
        u32 opIndex = 0;
2008
2009
24
        for (u32 i = 1; i <= 2; ++i)
2010
16
        {
2011
16
            if (IsStackTopInRegister (o))
2012
1
                opIndex = i;
2013
15
            else
2014
15
                slots [i] = GetStackTopSlotNumber (o);
2015
2016
16
_          (Pop (o));
2017
16
        }
2018
2019
8
        op = c_fpSelectOps [type - c_m3Type_f32] [selectorInReg] [opIndex];
2020
#   else
2021
        _throw (m3Err_unknownOpcode);
2022
#   endif
2023
8
    }
2024
14
    else if (IsIntType (type))
2025
7
    {
2026
        // 'sss' operation doesn't consume a register, so might have to protected its contents
2027
7
        if (not IsStackTopInRegister (o) and
2028
4
            not IsStackTopMinus1InRegister (o) and
2029
4
            not IsStackTopMinus2InRegister (o))
2030
4
        {
2031
4
_           (PreserveRegisterIfOccupied (o, type));
2032
4
        }
2033
2034
7
        u32 opIndex = 3;  // op_Select_*_sss
2035
2036
28
        for (u32 i = 0; i < 3; ++i)
2037
21
        {
2038
21
            if (IsStackTopInRegister (o))
2039
5
                opIndex = i;
2040
16
            else
2041
16
                slots [i] = GetStackTopSlotNumber (o);
2042
2043
21
_          (Pop (o));
2044
21
        }
2045
2046
7
        op = c_intSelectOps [type - c_m3Type_i32] [opIndex];
2047
7
    }
2048
7
    else if (not IsStackPolymorphic (o))
2049
22
        _throw (m3Err_functionStackUnderrun);
2050
2051
22
    EmitOp (o, op);
2052
88
    for (u32 i = 0; i < 3; i++)
2053
66
    {
2054
66
        if (IsValidSlot (slots [i]))
2055
38
            EmitSlotOffset (o, slots [i]);
2056
66
    }
2057
22
_   (PushRegister (o, type));
2058
2059
22
    _catch: return result;
2060
22
}
2061
2062
static
2063
M3Result  Compile_Drop  (IM3Compilation o, m3opcode_t i_opcode)
2064
2
{
2065
2
    M3Result result = Pop (o);                                              if (d_m3LogWasmStack) dump_type_stack (o);
2066
2
    return result;
2067
2
}
2068
2069
static
2070
M3Result  Compile_Nop  (IM3Compilation o, m3opcode_t i_opcode)
2071
18
{
2072
18
    return m3Err_none;
2073
18
}
2074
2075
static
2076
M3Result  Compile_Unreachable  (IM3Compilation o, m3opcode_t i_opcode)
2077
143
{
2078
143
    M3Result result;
2079
2080
143
_   (AddTrapRecord (o));
2081
2082
143
_   (EmitOp (o, op_Unreachable));
2083
143
_   (SetStackPolymorphic (o));
2084
2085
143
    _catch:
2086
143
    return result;
2087
143
}
2088
2089
2090
// OPTZ: currently all stack slot indices take up a full word, but
2091
// dual stack source operands could be packed together
2092
static
2093
M3Result  Compile_Operator  (IM3Compilation o, m3opcode_t i_opcode)
2094
296
{
2095
296
    M3Result result;
2096
2097
296
    IM3OpInfo opInfo = GetOpInfo (i_opcode);
2098
296
    _throwif (m3Err_unknownOpcode, not opInfo);
2099
2100
296
    IM3Operation op;
2101
2102
    // This preserve is for for FP compare operations.
2103
    // either need additional slot destination operations or the
2104
    // easy fix, move _r0 out of the way.
2105
    // moving out the way might be the optimal solution most often?
2106
    // otherwise, the _r0 reg can get buried down in the stack
2107
    // and be idle & wasted for a moment.
2108
296
    if (IsFpType (GetStackTopType (o)) and IsIntType (opInfo->type))
2109
92
    {
2110
92
_       (PreserveRegisterIfOccupied (o, opInfo->type));
2111
92
    }
2112
2113
296
    if (opInfo->stackOffset == 0)
2114
71
    {
2115
71
        if (IsStackTopInRegister (o))
2116
25
        {
2117
25
            op = opInfo->operations [0]; // _s
2118
25
        }
2119
46
        else
2120
46
        {
2121
46
_           (PreserveRegisterIfOccupied (o, opInfo->type));
2122
46
            op = opInfo->operations [1]; // _r
2123
46
        }
2124
71
    }
2125
225
    else
2126
225
    {
2127
225
        if (IsStackTopInRegister (o))
2128
149
        {
2129
149
            op = opInfo->operations [0];  // _rs
2130
2131
149
            if (IsStackTopMinus1InRegister (o))
2132
2
            {                                       d_m3Assert (i_opcode == c_waOp_store_f32 or i_opcode == c_waOp_store_f64);
2133
2
                op = opInfo->operations [3]; // _rr for fp.store
2134
2
            }
2135
149
        }
2136
76
        else if (IsStackTopMinus1InRegister (o))
2137
1
        {
2138
1
            op = opInfo->operations [1]; // _sr
2139
2140
1
            if (not op)  // must be commutative, then
2141
0
                op = opInfo->operations [0];
2142
1
        }
2143
75
        else
2144
75
        {
2145
75
_           (PreserveRegisterIfOccupied (o, opInfo->type));     // _ss
2146
75
            op = opInfo->operations [2];
2147
75
        }
2148
225
    }
2149
2150
296
    if (op)
2151
294
    {
2152
294
_       (EmitOp (o, op));
2153
2154
294
_       (EmitSlotNumOfStackTopAndPop (o));
2155
2156
294
        if (opInfo->stackOffset < 0)
2157
294
_           (EmitSlotNumOfStackTopAndPop (o));
2158
2159
294
        if (opInfo->type != c_m3Type_none)
2160
293
_           (PushRegister (o, opInfo->type));
2161
293
    }
2162
2
    else
2163
2
    {
2164
#       ifdef DEBUG
2165
            result = ErrorCompile ("no operation found for opcode", o, "'%s'", opInfo->name);
2166
#       else
2167
2
            result = ErrorCompile ("no operation found for opcode", o, "%x", i_opcode);
2168
2
#       endif
2169
2
        _throw (result);
2170
0
    }
2171
2172
296
    _catch: return result;
2173
296
}
2174
2175
static
2176
M3Result  Compile_Convert  (IM3Compilation o, m3opcode_t i_opcode)
2177
15
{
2178
15
_try {
2179
15
    IM3OpInfo opInfo = GetOpInfo (i_opcode);
2180
15
    _throwif (m3Err_unknownOpcode, not opInfo);
2181
2182
15
    bool destInSlot = IsRegisterTypeAllocated (o, opInfo->type);
2183
15
    bool sourceInSlot = IsStackTopInSlot (o);
2184
2185
15
    IM3Operation op = opInfo->operations [destInSlot * 2 + sourceInSlot];
2186
2187
15
_   (EmitOp (o, op));
2188
15
_   (EmitSlotNumOfStackTopAndPop (o));
2189
2190
15
    if (destInSlot)
2191
7
_       (PushAllocatedSlotAndEmit (o, opInfo->type))
2192
8
    else
2193
8
_       (PushRegister (o, opInfo->type))
2194
2195
15
}
2196
15
    _catch: return result;
2197
15
}
2198
2199
static
2200
M3Result  Compile_Load_Store  (IM3Compilation o, m3opcode_t i_opcode)
2201
34
{
2202
34
_try {
2203
34
    u32 alignHint, memoryOffset;
2204
2205
34
_   (ReadLEB_u32 (& alignHint, & o->wasm, o->wasmEnd));
2206
34
_   (ReadLEB_u32 (& memoryOffset, & o->wasm, o->wasmEnd));
2207
33
                                                                        m3log (compile, d_indent " (offset = %d)", get_indention_string (o), memoryOffset);
2208
33
    IM3OpInfo opInfo = GetOpInfo (i_opcode);
2209
33
    _throwif (m3Err_unknownOpcode, not opInfo);
2210
2211
33
    if (IsFpType (opInfo->type))
2212
33
_       (PreserveRegisterIfOccupied (o, c_m3Type_f64));
2213
2214
33
_   (Compile_Operator (o, i_opcode));
2215
2216
33
    EmitConstant32 (o, memoryOffset);
2217
33
}
2218
34
    _catch: return result;
2219
33
}
2220
2221
2222
M3Result  CompileRawFunction  (IM3Module io_module,  IM3Function io_function, const void * i_function, const void * i_userdata)
2223
0
{
2224
0
    d_m3Assert (io_module->runtime);
2225
2226
0
    IM3CodePage page = AcquireCodePageWithCapacity (io_module->runtime, 4);
2227
2228
0
    if (page)
2229
0
    {
2230
0
        io_function->compiled = GetPagePC (page);
2231
0
        io_function->module = io_module;
2232
2233
0
        EmitWord (page, op_CallRawFunction);
2234
0
        EmitWord (page, i_function);
2235
0
        EmitWord (page, io_function);
2236
0
        EmitWord (page, i_userdata);
2237
2238
0
        ReleaseCodePage (io_module->runtime, page);
2239
0
        return m3Err_none;
2240
0
    }
2241
0
    else {
2242
0
        return m3Err_mallocFailedCodePage;
2243
0
    }
2244
0
}
2245
2246
2247
2248
// d_logOp, d_logOp2 macros aren't actually used by the compiler, just codepage decoding (d_m3LogCodePages = 1)
2249
#define d_logOp(OP)                         { op_##OP,                  NULL,                       NULL,                       NULL }
2250
#define d_logOp2(OP1,OP2)                   { op_##OP1,                 op_##OP2,                   NULL,                       NULL }
2251
2252
#define d_emptyOpList                       { NULL,                     NULL,                       NULL,                       NULL }
2253
#define d_unaryOpList(TYPE, NAME)           { op_##TYPE##_##NAME##_r,   op_##TYPE##_##NAME##_s,     NULL,                       NULL }
2254
#define d_binOpList(TYPE, NAME)             { op_##TYPE##_##NAME##_rs,  op_##TYPE##_##NAME##_sr,    op_##TYPE##_##NAME##_ss,    NULL }
2255
#define d_storeFpOpList(TYPE, NAME)         { op_##TYPE##_##NAME##_rs,  op_##TYPE##_##NAME##_sr,    op_##TYPE##_##NAME##_ss,    op_##TYPE##_##NAME##_rr }
2256
#define d_commutativeBinOpList(TYPE, NAME)  { op_##TYPE##_##NAME##_rs,  NULL,                       op_##TYPE##_##NAME##_ss,    NULL }
2257
#define d_convertOpList(OP)                 { op_##OP##_r_r,            op_##OP##_r_s,              op_##OP##_s_r,              op_##OP##_s_s }
2258
2259
2260
const M3OpInfo c_operations [] =
2261
{
2262
    M3OP( "unreachable",         0, none,   d_logOp (Unreachable),              Compile_Unreachable ),  // 0x00
2263
    M3OP( "nop",                 0, none,   d_emptyOpList,                      Compile_Nop ),          // 0x01 .
2264
    M3OP( "block",               0, none,   d_emptyOpList,                      Compile_LoopOrBlock ),  // 0x02
2265
    M3OP( "loop",                0, none,   d_logOp (Loop),                     Compile_LoopOrBlock ),  // 0x03
2266
    M3OP( "if",                 -1, none,   d_emptyOpList,                      Compile_If ),           // 0x04
2267
    M3OP( "else",                0, none,   d_emptyOpList,                      Compile_Nop ),          // 0x05
2268
2269
    M3OP_RESERVED, M3OP_RESERVED, M3OP_RESERVED, M3OP_RESERVED, M3OP_RESERVED,                          // 0x06...0x0a
2270
2271
    M3OP( "end",                 0, none,   d_emptyOpList,                      Compile_End ),          // 0x0b
2272
    M3OP( "br",                  0, none,   d_logOp (Branch),                   Compile_Branch ),       // 0x0c
2273
    M3OP( "br_if",              -1, none,   d_logOp2 (BranchIf_r, BranchIf_s),  Compile_Branch ),       // 0x0d
2274
    M3OP( "br_table",           -1, none,   d_logOp (BranchTable),              Compile_BranchTable ),  // 0x0e
2275
    M3OP( "return",              0, any,    d_logOp (Return),                   Compile_Return ),       // 0x0f
2276
    M3OP( "call",                0, any,    d_logOp (Call),                     Compile_Call ),         // 0x10
2277
    M3OP( "call_indirect",       0, any,    d_logOp (CallIndirect),             Compile_CallIndirect ), // 0x11
2278
    M3OP( "return_call",         0, any,    d_emptyOpList,                      Compile_Call ),         // 0x12 TODO: Optimize
2279
    M3OP( "return_call_indirect",0, any,    d_emptyOpList,                      Compile_CallIndirect ), // 0x13
2280
2281
    M3OP_RESERVED,  M3OP_RESERVED,                                                                      // 0x14...
2282
    M3OP_RESERVED,  M3OP_RESERVED, M3OP_RESERVED, M3OP_RESERVED,                                        // ...0x19
2283
2284
    M3OP( "drop",               -1, none,   d_emptyOpList,                      Compile_Drop ),         // 0x1a
2285
    M3OP( "select",             -2, any,    d_emptyOpList,                      Compile_Select  ),      // 0x1b
2286
2287
    M3OP_RESERVED,  M3OP_RESERVED, M3OP_RESERVED, M3OP_RESERVED,                                        // 0x1c...0x1f
2288
2289
    M3OP( "local.get",          1,  any,    d_emptyOpList,                      Compile_GetLocal ),     // 0x20
2290
    M3OP( "local.set",          1,  none,   d_emptyOpList,                      Compile_SetLocal ),     // 0x21
2291
    M3OP( "local.tee",          0,  any,    d_emptyOpList,                      Compile_SetLocal ),     // 0x22
2292
    M3OP( "global.get",         1,  none,   d_emptyOpList,                      Compile_GetSetGlobal ), // 0x23
2293
    M3OP( "global.set",         1,  none,   d_emptyOpList,                      Compile_GetSetGlobal ), // 0x24
2294
2295
    M3OP_RESERVED,  M3OP_RESERVED, M3OP_RESERVED,                                                       // 0x25...0x27
2296
2297
    M3OP( "i32.load",           0,  i_32,   d_unaryOpList (i32, Load_i32),      Compile_Load_Store ),   // 0x28
2298
    M3OP( "i64.load",           0,  i_64,   d_unaryOpList (i64, Load_i64),      Compile_Load_Store ),   // 0x29
2299
    M3OP_F( "f32.load",         0,  f_32,   d_unaryOpList (f32, Load_f32),      Compile_Load_Store ),   // 0x2a
2300
    M3OP_F( "f64.load",         0,  f_64,   d_unaryOpList (f64, Load_f64),      Compile_Load_Store ),   // 0x2b
2301
2302
    M3OP( "i32.load8_s",        0,  i_32,   d_unaryOpList (i32, Load_i8),       Compile_Load_Store ),   // 0x2c
2303
    M3OP( "i32.load8_u",        0,  i_32,   d_unaryOpList (i32, Load_u8),       Compile_Load_Store ),   // 0x2d
2304
    M3OP( "i32.load16_s",       0,  i_32,   d_unaryOpList (i32, Load_i16),      Compile_Load_Store ),   // 0x2e
2305
    M3OP( "i32.load16_u",       0,  i_32,   d_unaryOpList (i32, Load_u16),      Compile_Load_Store ),   // 0x2f
2306
2307
    M3OP( "i64.load8_s",        0,  i_64,   d_unaryOpList (i64, Load_i8),       Compile_Load_Store ),   // 0x30
2308
    M3OP( "i64.load8_u",        0,  i_64,   d_unaryOpList (i64, Load_u8),       Compile_Load_Store ),   // 0x31
2309
    M3OP( "i64.load16_s",       0,  i_64,   d_unaryOpList (i64, Load_i16),      Compile_Load_Store ),   // 0x32
2310
    M3OP( "i64.load16_u",       0,  i_64,   d_unaryOpList (i64, Load_u16),      Compile_Load_Store ),   // 0x33
2311
    M3OP( "i64.load32_s",       0,  i_64,   d_unaryOpList (i64, Load_i32),      Compile_Load_Store ),   // 0x34
2312
    M3OP( "i64.load32_u",       0,  i_64,   d_unaryOpList (i64, Load_u32),      Compile_Load_Store ),   // 0x35
2313
2314
    M3OP( "i32.store",          -2, none,   d_binOpList (i32, Store_i32),       Compile_Load_Store ),   // 0x36
2315
    M3OP( "i64.store",          -2, none,   d_binOpList (i64, Store_i64),       Compile_Load_Store ),   // 0x37
2316
    M3OP_F( "f32.store",        -2, none,   d_storeFpOpList (f32, Store_f32),   Compile_Load_Store ),   // 0x38
2317
    M3OP_F( "f64.store",        -2, none,   d_storeFpOpList (f64, Store_f64),   Compile_Load_Store ),   // 0x39
2318
2319
    M3OP( "i32.store8",         -2, none,   d_binOpList (i32, Store_u8),        Compile_Load_Store ),   // 0x3a
2320
    M3OP( "i32.store16",        -2, none,   d_binOpList (i32, Store_i16),       Compile_Load_Store ),   // 0x3b
2321
2322
    M3OP( "i64.store8",         -2, none,   d_binOpList (i64, Store_u8),        Compile_Load_Store ),   // 0x3c
2323
    M3OP( "i64.store16",        -2, none,   d_binOpList (i64, Store_i16),       Compile_Load_Store ),   // 0x3d
2324
    M3OP( "i64.store32",        -2, none,   d_binOpList (i64, Store_i32),       Compile_Load_Store ),   // 0x3e
2325
2326
    M3OP( "memory.size",        1,  i_32,   d_logOp (MemSize),                  Compile_Memory_Size ),  // 0x3f
2327
    M3OP( "memory.grow",        1,  i_32,   d_logOp (MemGrow),                  Compile_Memory_Grow ),  // 0x40
2328
2329
    M3OP( "i32.const",          1,  i_32,   d_logOp (Const32),                  Compile_Const_i32 ),    // 0x41
2330
    M3OP( "i64.const",          1,  i_64,   d_logOp (Const64),                  Compile_Const_i64 ),    // 0x42
2331
    M3OP_F( "f32.const",        1,  f_32,   d_emptyOpList,                      Compile_Const_f32 ),    // 0x43
2332
    M3OP_F( "f64.const",        1,  f_64,   d_emptyOpList,                      Compile_Const_f64 ),    // 0x44
2333
2334
    M3OP( "i32.eqz",            0,  i_32,   d_unaryOpList (i32, EqualToZero)        , NULL  ),          // 0x45
2335
    M3OP( "i32.eq",             -1, i_32,   d_commutativeBinOpList (i32, Equal)     , NULL  ),          // 0x46
2336
    M3OP( "i32.ne",             -1, i_32,   d_commutativeBinOpList (i32, NotEqual)  , NULL  ),          // 0x47
2337
    M3OP( "i32.lt_s",           -1, i_32,   d_binOpList (i32, LessThan)             , NULL  ),          // 0x48
2338
    M3OP( "i32.lt_u",           -1, i_32,   d_binOpList (u32, LessThan)             , NULL  ),          // 0x49
2339
    M3OP( "i32.gt_s",           -1, i_32,   d_binOpList (i32, GreaterThan)          , NULL  ),          // 0x4a
2340
    M3OP( "i32.gt_u",           -1, i_32,   d_binOpList (u32, GreaterThan)          , NULL  ),          // 0x4b
2341
    M3OP( "i32.le_s",           -1, i_32,   d_binOpList (i32, LessThanOrEqual)      , NULL  ),          // 0x4c
2342
    M3OP( "i32.le_u",           -1, i_32,   d_binOpList (u32, LessThanOrEqual)      , NULL  ),          // 0x4d
2343
    M3OP( "i32.ge_s",           -1, i_32,   d_binOpList (i32, GreaterThanOrEqual)   , NULL  ),          // 0x4e
2344
    M3OP( "i32.ge_u",           -1, i_32,   d_binOpList (u32, GreaterThanOrEqual)   , NULL  ),          // 0x4f
2345
2346
    M3OP( "i64.eqz",            0,  i_32,   d_unaryOpList (i64, EqualToZero)        , NULL  ),          // 0x50
2347
    M3OP( "i64.eq",             -1, i_32,   d_commutativeBinOpList (i64, Equal)     , NULL  ),          // 0x51
2348
    M3OP( "i64.ne",             -1, i_32,   d_commutativeBinOpList (i64, NotEqual)  , NULL  ),          // 0x52
2349
    M3OP( "i64.lt_s",           -1, i_32,   d_binOpList (i64, LessThan)             , NULL  ),          // 0x53
2350
    M3OP( "i64.lt_u",           -1, i_32,   d_binOpList (u64, LessThan)             , NULL  ),          // 0x54
2351
    M3OP( "i64.gt_s",           -1, i_32,   d_binOpList (i64, GreaterThan)          , NULL  ),          // 0x55
2352
    M3OP( "i64.gt_u",           -1, i_32,   d_binOpList (u64, GreaterThan)          , NULL  ),          // 0x56
2353
    M3OP( "i64.le_s",           -1, i_32,   d_binOpList (i64, LessThanOrEqual)      , NULL  ),          // 0x57
2354
    M3OP( "i64.le_u",           -1, i_32,   d_binOpList (u64, LessThanOrEqual)      , NULL  ),          // 0x58
2355
    M3OP( "i64.ge_s",           -1, i_32,   d_binOpList (i64, GreaterThanOrEqual)   , NULL  ),          // 0x59
2356
    M3OP( "i64.ge_u",           -1, i_32,   d_binOpList (u64, GreaterThanOrEqual)   , NULL  ),          // 0x5a
2357
2358
    M3OP_F( "f32.eq",           -1, i_32,   d_commutativeBinOpList (f32, Equal)     , NULL  ),          // 0x5b
2359
    M3OP_F( "f32.ne",           -1, i_32,   d_commutativeBinOpList (f32, NotEqual)  , NULL  ),          // 0x5c
2360
    M3OP_F( "f32.lt",           -1, i_32,   d_binOpList (f32, LessThan)             , NULL  ),          // 0x5d
2361
    M3OP_F( "f32.gt",           -1, i_32,   d_binOpList (f32, GreaterThan)          , NULL  ),          // 0x5e
2362
    M3OP_F( "f32.le",           -1, i_32,   d_binOpList (f32, LessThanOrEqual)      , NULL  ),          // 0x5f
2363
    M3OP_F( "f32.ge",           -1, i_32,   d_binOpList (f32, GreaterThanOrEqual)   , NULL  ),          // 0x60
2364
2365
    M3OP_F( "f64.eq",           -1, i_32,   d_commutativeBinOpList (f64, Equal)     , NULL  ),          // 0x61
2366
    M3OP_F( "f64.ne",           -1, i_32,   d_commutativeBinOpList (f64, NotEqual)  , NULL  ),          // 0x62
2367
    M3OP_F( "f64.lt",           -1, i_32,   d_binOpList (f64, LessThan)             , NULL  ),          // 0x63
2368
    M3OP_F( "f64.gt",           -1, i_32,   d_binOpList (f64, GreaterThan)          , NULL  ),          // 0x64
2369
    M3OP_F( "f64.le",           -1, i_32,   d_binOpList (f64, LessThanOrEqual)      , NULL  ),          // 0x65
2370
    M3OP_F( "f64.ge",           -1, i_32,   d_binOpList (f64, GreaterThanOrEqual)   , NULL  ),          // 0x66
2371
2372
    M3OP( "i32.clz",            0,  i_32,   d_unaryOpList (u32, Clz)                , NULL  ),          // 0x67
2373
    M3OP( "i32.ctz",            0,  i_32,   d_unaryOpList (u32, Ctz)                , NULL  ),          // 0x68
2374
    M3OP( "i32.popcnt",         0,  i_32,   d_unaryOpList (u32, Popcnt)             , NULL  ),          // 0x69
2375
2376
    M3OP( "i32.add",            -1, i_32,   d_commutativeBinOpList (i32, Add)       , NULL  ),          // 0x6a
2377
    M3OP( "i32.sub",            -1, i_32,   d_binOpList (i32, Subtract)             , NULL  ),          // 0x6b
2378
    M3OP( "i32.mul",            -1, i_32,   d_commutativeBinOpList (i32, Multiply)  , NULL  ),          // 0x6c
2379
    M3OP( "i32.div_s",          -1, i_32,   d_binOpList (i32, Divide)               , NULL  ),          // 0x6d
2380
    M3OP( "i32.div_u",          -1, i_32,   d_binOpList (u32, Divide)               , NULL  ),          // 0x6e
2381
    M3OP( "i32.rem_s",          -1, i_32,   d_binOpList (i32, Remainder)            , NULL  ),          // 0x6f
2382
    M3OP( "i32.rem_u",          -1, i_32,   d_binOpList (u32, Remainder)            , NULL  ),          // 0x70
2383
    M3OP( "i32.and",            -1, i_32,   d_commutativeBinOpList (u32, And)       , NULL  ),          // 0x71
2384
    M3OP( "i32.or",             -1, i_32,   d_commutativeBinOpList (u32, Or)        , NULL  ),          // 0x72
2385
    M3OP( "i32.xor",            -1, i_32,   d_commutativeBinOpList (u32, Xor)       , NULL  ),          // 0x73
2386
    M3OP( "i32.shl",            -1, i_32,   d_binOpList (u32, ShiftLeft)            , NULL  ),          // 0x74
2387
    M3OP( "i32.shr_s",          -1, i_32,   d_binOpList (i32, ShiftRight)           , NULL  ),          // 0x75
2388
    M3OP( "i32.shr_u",          -1, i_32,   d_binOpList (u32, ShiftRight)           , NULL  ),          // 0x76
2389
    M3OP( "i32.rotl",           -1, i_32,   d_binOpList (u32, Rotl)                 , NULL  ),          // 0x77
2390
    M3OP( "i32.rotr",           -1, i_32,   d_binOpList (u32, Rotr)                 , NULL  ),          // 0x78
2391
2392
    M3OP( "i64.clz",            0,  i_64,   d_unaryOpList (u64, Clz)                , NULL  ),          // 0x79
2393
    M3OP( "i64.ctz",            0,  i_64,   d_unaryOpList (u64, Ctz)                , NULL  ),          // 0x7a
2394
    M3OP( "i64.popcnt",         0,  i_64,   d_unaryOpList (u64, Popcnt)             , NULL  ),          // 0x7b
2395
2396
    M3OP( "i64.add",            -1, i_64,   d_commutativeBinOpList (i64, Add)       , NULL  ),          // 0x7c
2397
    M3OP( "i64.sub",            -1, i_64,   d_binOpList (i64, Subtract)             , NULL  ),          // 0x7d
2398
    M3OP( "i64.mul",            -1, i_64,   d_commutativeBinOpList (i64, Multiply)  , NULL  ),          // 0x7e
2399
    M3OP( "i64.div_s",          -1, i_64,   d_binOpList (i64, Divide)               , NULL  ),          // 0x7f
2400
    M3OP( "i64.div_u",          -1, i_64,   d_binOpList (u64, Divide)               , NULL  ),          // 0x80
2401
    M3OP( "i64.rem_s",          -1, i_64,   d_binOpList (i64, Remainder)            , NULL  ),          // 0x81
2402
    M3OP( "i64.rem_u",          -1, i_64,   d_binOpList (u64, Remainder)            , NULL  ),          // 0x82
2403
    M3OP( "i64.and",            -1, i_64,   d_commutativeBinOpList (u64, And)       , NULL  ),          // 0x83
2404
    M3OP( "i64.or",             -1, i_64,   d_commutativeBinOpList (u64, Or)        , NULL  ),          // 0x84
2405
    M3OP( "i64.xor",            -1, i_64,   d_commutativeBinOpList (u64, Xor)       , NULL  ),          // 0x85
2406
    M3OP( "i64.shl",            -1, i_64,   d_binOpList (u64, ShiftLeft)            , NULL  ),          // 0x86
2407
    M3OP( "i64.shr_s",          -1, i_64,   d_binOpList (i64, ShiftRight)           , NULL  ),          // 0x87
2408
    M3OP( "i64.shr_u",          -1, i_64,   d_binOpList (u64, ShiftRight)           , NULL  ),          // 0x88
2409
    M3OP( "i64.rotl",           -1, i_64,   d_binOpList (u64, Rotl)                 , NULL  ),          // 0x89
2410
    M3OP( "i64.rotr",           -1, i_64,   d_binOpList (u64, Rotr)                 , NULL  ),          // 0x8a
2411
2412
    M3OP_F( "f32.abs",          0,  f_32,   d_unaryOpList(f32, Abs)                 , NULL  ),          // 0x8b
2413
    M3OP_F( "f32.neg",          0,  f_32,   d_unaryOpList(f32, Negate)              , NULL  ),          // 0x8c
2414
    M3OP_F( "f32.ceil",         0,  f_32,   d_unaryOpList(f32, Ceil)                , NULL  ),          // 0x8d
2415
    M3OP_F( "f32.floor",        0,  f_32,   d_unaryOpList(f32, Floor)               , NULL  ),          // 0x8e
2416
    M3OP_F( "f32.trunc",        0,  f_32,   d_unaryOpList(f32, Trunc)               , NULL  ),          // 0x8f
2417
    M3OP_F( "f32.nearest",      0,  f_32,   d_unaryOpList(f32, Nearest)             , NULL  ),          // 0x90
2418
    M3OP_F( "f32.sqrt",         0,  f_32,   d_unaryOpList(f32, Sqrt)                , NULL  ),          // 0x91
2419
2420
    M3OP_F( "f32.add",          -1, f_32,   d_commutativeBinOpList (f32, Add)       , NULL  ),          // 0x92
2421
    M3OP_F( "f32.sub",          -1, f_32,   d_binOpList (f32, Subtract)             , NULL  ),          // 0x93
2422
    M3OP_F( "f32.mul",          -1, f_32,   d_commutativeBinOpList (f32, Multiply)  , NULL  ),          // 0x94
2423
    M3OP_F( "f32.div",          -1, f_32,   d_binOpList (f32, Divide)               , NULL  ),          // 0x95
2424
    M3OP_F( "f32.min",          -1, f_32,   d_commutativeBinOpList (f32, Min)       , NULL  ),          // 0x96
2425
    M3OP_F( "f32.max",          -1, f_32,   d_commutativeBinOpList (f32, Max)       , NULL  ),          // 0x97
2426
    M3OP_F( "f32.copysign",     -1, f_32,   d_binOpList (f32, CopySign)             , NULL  ),          // 0x98
2427
2428
    M3OP_F( "f64.abs",          0,  f_64,   d_unaryOpList(f64, Abs)                 , NULL  ),          // 0x99
2429
    M3OP_F( "f64.neg",          0,  f_64,   d_unaryOpList(f64, Negate)              , NULL  ),          // 0x9a
2430
    M3OP_F( "f64.ceil",         0,  f_64,   d_unaryOpList(f64, Ceil)                , NULL  ),          // 0x9b
2431
    M3OP_F( "f64.floor",        0,  f_64,   d_unaryOpList(f64, Floor)               , NULL  ),          // 0x9c
2432
    M3OP_F( "f64.trunc",        0,  f_64,   d_unaryOpList(f64, Trunc)               , NULL  ),          // 0x9d
2433
    M3OP_F( "f64.nearest",      0,  f_64,   d_unaryOpList(f64, Nearest)             , NULL  ),          // 0x9e
2434
    M3OP_F( "f64.sqrt",         0,  f_64,   d_unaryOpList(f64, Sqrt)                , NULL  ),          // 0x9f
2435
2436
    M3OP_F( "f64.add",          -1, f_64,   d_commutativeBinOpList (f64, Add)       , NULL  ),          // 0xa0
2437
    M3OP_F( "f64.sub",          -1, f_64,   d_binOpList (f64, Subtract)             , NULL  ),          // 0xa1
2438
    M3OP_F( "f64.mul",          -1, f_64,   d_commutativeBinOpList (f64, Multiply)  , NULL  ),          // 0xa2
2439
    M3OP_F( "f64.div",          -1, f_64,   d_binOpList (f64, Divide)               , NULL  ),          // 0xa3
2440
    M3OP_F( "f64.min",          -1, f_64,   d_commutativeBinOpList (f64, Min)       , NULL  ),          // 0xa4
2441
    M3OP_F( "f64.max",          -1, f_64,   d_commutativeBinOpList (f64, Max)       , NULL  ),          // 0xa5
2442
    M3OP_F( "f64.copysign",     -1, f_64,   d_binOpList (f64, CopySign)             , NULL  ),          // 0xa6
2443
2444
    M3OP( "i32.wrap/i64",       0,  i_32,   d_unaryOpList (i32, Wrap_i64),          NULL    ),          // 0xa7
2445
    M3OP_F( "i32.trunc_s/f32",  0,  i_32,   d_convertOpList (i32_Trunc_f32),        Compile_Convert ),  // 0xa8
2446
    M3OP_F( "i32.trunc_u/f32",  0,  i_32,   d_convertOpList (u32_Trunc_f32),        Compile_Convert ),  // 0xa9
2447
    M3OP_F( "i32.trunc_s/f64",  0,  i_32,   d_convertOpList (i32_Trunc_f64),        Compile_Convert ),  // 0xaa
2448
    M3OP_F( "i32.trunc_u/f64",  0,  i_32,   d_convertOpList (u32_Trunc_f64),        Compile_Convert ),  // 0xab
2449
2450
    M3OP( "i64.extend_s/i32",   0,  i_64,   d_unaryOpList (i64, Extend_i32),        NULL    ),          // 0xac
2451
    M3OP( "i64.extend_u/i32",   0,  i_64,   d_unaryOpList (i64, Extend_u32),        NULL    ),          // 0xad
2452
2453
    M3OP_F( "i64.trunc_s/f32",  0,  i_64,   d_convertOpList (i64_Trunc_f32),        Compile_Convert ),  // 0xae
2454
    M3OP_F( "i64.trunc_u/f32",  0,  i_64,   d_convertOpList (u64_Trunc_f32),        Compile_Convert ),  // 0xaf
2455
    M3OP_F( "i64.trunc_s/f64",  0,  i_64,   d_convertOpList (i64_Trunc_f64),        Compile_Convert ),  // 0xb0
2456
    M3OP_F( "i64.trunc_u/f64",  0,  i_64,   d_convertOpList (u64_Trunc_f64),        Compile_Convert ),  // 0xb1
2457
2458
    M3OP_F( "f32.convert_s/i32",0,  f_32,   d_convertOpList (f32_Convert_i32),      Compile_Convert ),  // 0xb2
2459
    M3OP_F( "f32.convert_u/i32",0,  f_32,   d_convertOpList (f32_Convert_u32),      Compile_Convert ),  // 0xb3
2460
    M3OP_F( "f32.convert_s/i64",0,  f_32,   d_convertOpList (f32_Convert_i64),      Compile_Convert ),  // 0xb4
2461
    M3OP_F( "f32.convert_u/i64",0,  f_32,   d_convertOpList (f32_Convert_u64),      Compile_Convert ),  // 0xb5
2462
2463
    M3OP_F( "f32.demote/f64",   0,  f_32,   d_unaryOpList (f32, Demote_f64),        NULL    ),          // 0xb6
2464
2465
    M3OP_F( "f64.convert_s/i32",0,  f_64,   d_convertOpList (f64_Convert_i32),      Compile_Convert ),  // 0xb7
2466
    M3OP_F( "f64.convert_u/i32",0,  f_64,   d_convertOpList (f64_Convert_u32),      Compile_Convert ),  // 0xb8
2467
    M3OP_F( "f64.convert_s/i64",0,  f_64,   d_convertOpList (f64_Convert_i64),      Compile_Convert ),  // 0xb9
2468
    M3OP_F( "f64.convert_u/i64",0,  f_64,   d_convertOpList (f64_Convert_u64),      Compile_Convert ),  // 0xba
2469
2470
    M3OP_F( "f64.promote/f32",  0,  f_64,   d_unaryOpList (f64, Promote_f32),       NULL    ),          // 0xbb
2471
2472
    M3OP_F( "i32.reinterpret/f32",0,i_32,   d_convertOpList (i32_Reinterpret_f32),  Compile_Convert ),  // 0xbc
2473
    M3OP_F( "i64.reinterpret/f64",0,i_64,   d_convertOpList (i64_Reinterpret_f64),  Compile_Convert ),  // 0xbd
2474
    M3OP_F( "f32.reinterpret/i32",0,f_32,   d_convertOpList (f32_Reinterpret_i32),  Compile_Convert ),  // 0xbe
2475
    M3OP_F( "f64.reinterpret/i64",0,f_64,   d_convertOpList (f64_Reinterpret_i64),  Compile_Convert ),  // 0xbf
2476
2477
    M3OP( "i32.extend8_s",       0,  i_32,   d_unaryOpList (i32, Extend8_s),        NULL    ),          // 0xc0
2478
    M3OP( "i32.extend16_s",      0,  i_32,   d_unaryOpList (i32, Extend16_s),       NULL    ),          // 0xc1
2479
    M3OP( "i64.extend8_s",       0,  i_64,   d_unaryOpList (i64, Extend8_s),        NULL    ),          // 0xc2
2480
    M3OP( "i64.extend16_s",      0,  i_64,   d_unaryOpList (i64, Extend16_s),       NULL    ),          // 0xc3
2481
    M3OP( "i64.extend32_s",      0,  i_64,   d_unaryOpList (i64, Extend32_s),       NULL    ),          // 0xc4
2482
2483
# ifdef DEBUG // for codepage logging. the order doesn't matter:
2484
#   define d_m3DebugOp(OP) M3OP (#OP, 0, none, { op_##OP })
2485
2486
# if d_m3HasFloat
2487
#   define d_m3DebugTypedOp(OP) M3OP (#OP, 0, none, { op_##OP##_i32, op_##OP##_i64, op_##OP##_f32, op_##OP##_f64, })
2488
# else
2489
#   define d_m3DebugTypedOp(OP) M3OP (#OP, 0, none, { op_##OP##_i32, op_##OP##_i64 })
2490
# endif
2491
2492
    d_m3DebugOp (Compile),          d_m3DebugOp (Entry),            d_m3DebugOp (End),
2493
    d_m3DebugOp (Unsupported),      d_m3DebugOp (CallRawFunction),
2494
2495
    d_m3DebugOp (GetGlobal_s32),    d_m3DebugOp (GetGlobal_s64),    d_m3DebugOp (ContinueLoop),     d_m3DebugOp (ContinueLoopIf),
2496
2497
    d_m3DebugOp (CopySlot_32),      d_m3DebugOp (PreserveCopySlot_32), d_m3DebugOp (If_s),          d_m3DebugOp (BranchIfPrologue_s),
2498
    d_m3DebugOp (CopySlot_64),      d_m3DebugOp (PreserveCopySlot_64), d_m3DebugOp (If_r),          d_m3DebugOp (BranchIfPrologue_r),
2499
2500
    d_m3DebugOp (Select_i32_rss),   d_m3DebugOp (Select_i32_srs),   d_m3DebugOp (Select_i32_ssr),   d_m3DebugOp (Select_i32_sss),
2501
    d_m3DebugOp (Select_i64_rss),   d_m3DebugOp (Select_i64_srs),   d_m3DebugOp (Select_i64_ssr),   d_m3DebugOp (Select_i64_sss),
2502
2503
# if d_m3HasFloat
2504
    d_m3DebugOp (Select_f32_sss),   d_m3DebugOp (Select_f32_srs),   d_m3DebugOp (Select_f32_ssr),
2505
    d_m3DebugOp (Select_f32_rss),   d_m3DebugOp (Select_f32_rrs),   d_m3DebugOp (Select_f32_rsr),
2506
2507
    d_m3DebugOp (Select_f64_sss),   d_m3DebugOp (Select_f64_srs),   d_m3DebugOp (Select_f64_ssr),
2508
    d_m3DebugOp (Select_f64_rss),   d_m3DebugOp (Select_f64_rrs),   d_m3DebugOp (Select_f64_rsr),
2509
# endif
2510
2511
    d_m3DebugOp (MemFill),          d_m3DebugOp (MemCopy),
2512
2513
    d_m3DebugTypedOp (SetGlobal),   d_m3DebugOp (SetGlobal_s32),    d_m3DebugOp (SetGlobal_s64),
2514
2515
    d_m3DebugTypedOp (SetRegister), d_m3DebugTypedOp (SetSlot),     d_m3DebugTypedOp (PreserveSetSlot),
2516
# endif
2517
2518
# if d_m3CascadedOpcodes
2519
    [c_waOp_extended] = M3OP( "0xFC", 0, c_m3Type_unknown,   d_emptyOpList,  Compile_ExtendedOpcode ),
2520
# endif
2521
2522
# ifdef DEBUG
2523
    M3OP( "termination", 0, c_m3Type_unknown ) // for find_operation_info
2524
# endif
2525
};
2526
2527
const M3OpInfo c_operationsFC [] =
2528
{
2529
    M3OP_F( "i32.trunc_s:sat/f32",0,  i_32,   d_convertOpList (i32_TruncSat_f32),        Compile_Convert ),  // 0x00
2530
    M3OP_F( "i32.trunc_u:sat/f32",0,  i_32,   d_convertOpList (u32_TruncSat_f32),        Compile_Convert ),  // 0x01
2531
    M3OP_F( "i32.trunc_s:sat/f64",0,  i_32,   d_convertOpList (i32_TruncSat_f64),        Compile_Convert ),  // 0x02
2532
    M3OP_F( "i32.trunc_u:sat/f64",0,  i_32,   d_convertOpList (u32_TruncSat_f64),        Compile_Convert ),  // 0x03
2533
    M3OP_F( "i64.trunc_s:sat/f32",0,  i_64,   d_convertOpList (i64_TruncSat_f32),        Compile_Convert ),  // 0x04
2534
    M3OP_F( "i64.trunc_u:sat/f32",0,  i_64,   d_convertOpList (u64_TruncSat_f32),        Compile_Convert ),  // 0x05
2535
    M3OP_F( "i64.trunc_s:sat/f64",0,  i_64,   d_convertOpList (i64_TruncSat_f64),        Compile_Convert ),  // 0x06
2536
    M3OP_F( "i64.trunc_u:sat/f64",0,  i_64,   d_convertOpList (u64_TruncSat_f64),        Compile_Convert ),  // 0x07
2537
2538
    M3OP_RESERVED, M3OP_RESERVED,
2539
2540
    M3OP( "memory.copy",            0,  none,   d_emptyOpList,                           Compile_Memory_CopyFill ), // 0x0a
2541
    M3OP( "memory.fill",            0,  none,   d_emptyOpList,                           Compile_Memory_CopyFill ), // 0x0b
2542
2543
2544
# ifdef DEBUG
2545
    M3OP( "termination", 0, c_m3Type_unknown ) // for find_operation_info
2546
# endif
2547
};
2548
2549
2550
IM3OpInfo  GetOpInfo  (m3opcode_t opcode)
2551
24.8k
{
2552
24.8k
    switch (opcode >> 8) {
2553
24.8k
    case 0x00:
2554
24.8k
        if (M3_LIKELY(opcode < M3_COUNT_OF(c_operations))) {
2555
24.8k
            return &c_operations[opcode];
2556
24.8k
        }
2557
0
        break;
2558
2
    case c_waOp_extended:
2559
2
        opcode &= 0xFF;
2560
2
        if (M3_LIKELY(opcode < M3_COUNT_OF(c_operationsFC))) {
2561
2
            return &c_operationsFC[opcode];
2562
2
        }
2563
0
        break;
2564
24.8k
    }
2565
0
    return NULL;
2566
24.8k
}
2567
2568
M3Result  CompileBlockStatements  (IM3Compilation o)
2569
664
{
2570
664
    M3Result result = m3Err_none;
2571
664
    bool validEnd = false;
2572
2573
24.5k
    while (o->wasm < o->wasmEnd)
2574
24.5k
    {
2575
# if d_m3EnableOpTracing
2576
        if (o->numEmits)
2577
        {
2578
            EmitOp          (o, op_DumpStack);
2579
            EmitConstant32  (o, o->numOpcodes);
2580
            EmitConstant32  (o, GetMaxUsedSlotPlusOne(o));
2581
            EmitPointer     (o, o->function);
2582
2583
            o->numEmits = 0;
2584
        }
2585
# endif
2586
24.5k
        m3opcode_t opcode;
2587
24.5k
        o->lastOpcodeStart = o->wasm;
2588
24.5k
_       (Read_opcode (& opcode, & o->wasm, o->wasmEnd));                log_opcode (o, opcode);
2589
2590
        // Restrict opcodes when evaluating expressions
2591
24.5k
        if (not o->function) {
2592
23.4k
            switch (opcode) {
2593
22.2k
            case c_waOp_i32_const: case c_waOp_i64_const:
2594
22.8k
            case c_waOp_f32_const: case c_waOp_f64_const:
2595
23.4k
            case c_waOp_getGlobal: case c_waOp_end:
2596
23.4k
                break;
2597
11
            default:
2598
11
                _throw(m3Err_restrictedOpcode);
2599
23.4k
            }
2600
23.4k
        }
2601
2602
24.5k
        IM3OpInfo opinfo = GetOpInfo (opcode);
2603
2604
24.5k
        if (opinfo == NULL)
2605
24.5k
            _throw (ErrorCompile (m3Err_unknownOpcode, o, "opcode '%x' not available", opcode));
2606
2607
24.5k
        if (opinfo->compiler) {
2608
24.2k
_           ((* opinfo->compiler) (o, opcode))
2609
24.2k
        } else {
2610
263
_           (Compile_Operator (o, opcode));
2611
260
        }
2612
2613
24.1k
        o->previousOpcode = opcode;
2614
2615
24.1k
        if (opcode == c_waOp_else)
2616
0
        {
2617
0
            _throwif (m3Err_wasmMalformed, o->block.opcode != c_waOp_if);
2618
0
            validEnd = true;
2619
0
            break;
2620
0
        }
2621
24.1k
        else if (opcode == c_waOp_end)
2622
255
        {
2623
255
            validEnd = true;
2624
255
            break;
2625
255
        }
2626
24.1k
    }
2627
259
    _throwif(m3Err_wasmMalformed, !(validEnd));
2628
2629
664
_catch:
2630
664
    return result;
2631
255
}
2632
2633
static
2634
M3Result  PushBlockResults  (IM3Compilation o)
2635
500
{
2636
500
    M3Result result = m3Err_none;
2637
2638
500
    u16 numResults = GetFuncTypeNumResults (o->block.type);
2639
2640
17.3k
    for (u16 i = 0; i < numResults; ++i)
2641
16.9k
    {
2642
16.9k
        u8 type = GetFuncTypeResultType (o->block.type, i);
2643
2644
16.9k
        if (i == numResults - 1 and IsFpType (type))
2645
137
        {
2646
137
_           (PushRegister (o, type));
2647
137
        }
2648
16.7k
        else
2649
16.8k
_           (PushAllocatedSlot (o, type));
2650
16.8k
    }
2651
2652
500
    _catch: return result;
2653
500
}
2654
2655
2656
M3Result  CompileBlock  (IM3Compilation o, IM3FuncType i_blockType, m3opcode_t i_blockOpcode)
2657
488
{
2658
488
                                                                                        d_m3Assert (not IsRegisterAllocated (o, 0));
2659
488
                                                                                        d_m3Assert (not IsRegisterAllocated (o, 1));
2660
488
    M3CompilationScope outerScope = o->block;
2661
488
    M3CompilationScope * block = & o->block;
2662
2663
488
    block->outer            = & outerScope;
2664
488
    block->pc               = GetPagePC (o->page);
2665
488
    block->patches          = NULL;
2666
488
    block->type             = i_blockType;
2667
488
    block->depth            ++;
2668
488
    block->opcode           = i_blockOpcode;
2669
2670
    /*
2671
     The block stack frame is a little strange but for good reasons.  Because blocks need to be restarted to
2672
     compile different pathways (if/else), the incoming params must be saved.  The parameters are popped
2673
     and validated.  But, then the stack top is readjusted so they aren't subsequently overwritten.
2674
     Next, the result are preallocated to find destination slots.  But again these are immediately popped
2675
     (deallocated) and the stack top is readjusted to keep these records in pace. This allows branch instructions
2676
     to find their result landing pads.  Finally, the params are copied from the "dead" records and pushed back
2677
     onto the stack as active stack items for the CompileBlockStatements () call.
2678
2679
    [     block      ]
2680
    [     params     ]
2681
    ------------------
2682
    [     result     ]  <---- blockStackIndex
2683
    [      slots     ]
2684
    ------------------
2685
    [   saved param  ]
2686
    [     records    ]
2687
                        <----- exitStackIndex
2688
    */
2689
2690
488
_try {
2691
    // validate and dealloc params ----------------------------
2692
2693
488
    u16 stackIndex = o->stackIndex;
2694
2695
488
    u16 numParams = GetFuncTypeNumParams (i_blockType);
2696
2697
488
    if (i_blockOpcode != c_waOp_else)
2698
485
    {
2699
11.7k
        for (u16 i = 0; i < numParams; ++i)
2700
11.2k
        {
2701
11.2k
            u8 type = GetFuncTypeParamType (i_blockType, numParams - 1 - i);
2702
11.2k
_           (PopType (o, type));
2703
11.2k
        }
2704
485
    }
2705
3
    else {
2706
3
        if (IsStackPolymorphic (o) && o->block.blockStackIndex + numParams > o->stackIndex) {
2707
2
            o->stackIndex = o->block.blockStackIndex;
2708
2
        } else {
2709
1
            o->stackIndex -= numParams;
2710
1
        }
2711
3
    }
2712
2713
488
    u16 paramIndex = o->stackIndex;
2714
488
    block->exitStackIndex = paramIndex; // consume the params at block exit
2715
2716
    // keep copies of param slots in the stack
2717
488
    o->stackIndex = stackIndex;
2718
2719
    // find slots for the results ----------------------------
2720
488
    PushBlockResults (o);
2721
2722
488
    stackIndex = o->stackIndex;
2723
2724
    // dealloc but keep record of the result slots in the stack
2725
488
    u16 numResults = GetFuncTypeNumResults (i_blockType);
2726
18.3k
    while (numResults--)
2727
17.8k
        Pop (o);
2728
2729
488
    block->blockStackIndex = o->stackIndex = stackIndex;
2730
2731
    // push the params back onto the stack -------------------
2732
11.8k
    for (u16 i = 0; i < numParams; ++i)
2733
11.3k
    {
2734
11.3k
        u8 type = GetFuncTypeParamType (i_blockType, i);
2735
2736
11.3k
        u16 slot = GetSlotForStackIndex (o, paramIndex + i);
2737
11.3k
        Push (o, type, slot);
2738
2739
11.3k
        if (slot >= o->slotFirstDynamicIndex && slot != c_slotUnused)
2740
10.7k
            MarkSlotsAllocatedByType (o, slot, type);
2741
11.3k
    }
2742
2743
    //--------------------------------------------------------
2744
2745
488
_   (CompileBlockStatements (o));
2746
2747
121
_   (ValidateBlockEnd (o));
2748
2749
121
    if (o->function)    // skip for expressions
2750
15
    {
2751
15
        if (not IsStackPolymorphic (o))
2752
15
_           (ResolveBlockResults (o, & o->block, /* isBranch: */ false));
2753
2754
15
_       (UnwindBlockStack (o))
2755
2756
15
        if (not ((i_blockOpcode == c_waOp_if and numResults) or o->previousOpcode == c_waOp_else))
2757
12
        {
2758
12
            o->stackIndex = o->block.exitStackIndex;
2759
12
_           (PushBlockResults (o));
2760
11
        }
2761
15
    }
2762
2763
120
    PatchBranches (o);
2764
2765
120
    o->block = outerScope;
2766
2767
488
}   _catch: return result;
2768
120
}
2769
2770
static
2771
M3Result  CompileLocals  (IM3Compilation o)
2772
34
{
2773
34
    M3Result result;
2774
2775
34
    u32 numLocals = 0;
2776
34
    u32 numLocalBlocks;
2777
34
_   (ReadLEB_u32 (& numLocalBlocks, & o->wasm, o->wasmEnd));
2778
2779
50
    for (u32 l = 0; l < numLocalBlocks; ++l)
2780
16
    {
2781
16
        u32 varCount;
2782
16
        i8 waType;
2783
16
        u8 localType;
2784
2785
16
_       (ReadLEB_u32 (& varCount, & o->wasm, o->wasmEnd));
2786
16
_       (ReadLEB_i7 (& waType, & o->wasm, o->wasmEnd));
2787
16
_       (NormalizeType (& localType, waType));
2788
16
        numLocals += varCount;                                                          m3log (compile, "pushing locals. count: %d; type: %s", varCount, c_waTypes [localType]);
2789
5.65k
        while (varCount--)
2790
5.63k
_           (PushAllocatedSlot (o, localType));
2791
16
    }
2792
2793
34
    if (o->function)
2794
34
        o->function->numLocals = numLocals;
2795
2796
34
    _catch: return result;
2797
34
}
2798
2799
static
2800
M3Result  ReserveConstants  (IM3Compilation o)
2801
34
{
2802
34
    M3Result result = m3Err_none;
2803
2804
    // in the interest of speed, this blindly scans the Wasm code looking for any byte
2805
    // that looks like an const opcode.
2806
34
    u16 numConstantSlots = 0;
2807
2808
34
    bytes_t wa = o->wasm;
2809
2.55k
    while (wa < o->wasmEnd)
2810
2.51k
    {
2811
2.51k
        u8 code = * wa++;
2812
2.51k
        u16 addSlots = 0;
2813
2814
2.51k
        if (code == c_waOp_i32_const or code == c_waOp_f32_const)
2815
7
            addSlots = 1;
2816
2.50k
        else if (code == c_waOp_i64_const or code == c_waOp_f64_const)
2817
11
            addSlots = GetTypeNumSlots (c_m3Type_i64);
2818
2819
2.51k
        if (numConstantSlots + addSlots >= d_m3MaxConstantTableSize)
2820
0
            break;
2821
2822
2.51k
        numConstantSlots += addSlots;
2823
2.51k
    }
2824
2825
    // if constants overflow their reserved stack space, the compiler simply emits op_Const
2826
    // operations as needed. Compiled expressions (global inits) don't pass through this
2827
    // ReserveConstants function and thus always produce inline constants.
2828
2829
34
    AlignSlotToType (& numConstantSlots, c_m3Type_i64);                                         m3log (compile, "reserved constant slots: %d", numConstantSlots);
2830
2831
34
    o->slotFirstDynamicIndex = o->slotFirstConstIndex + numConstantSlots;
2832
2833
34
    if (o->slotFirstDynamicIndex >= d_m3MaxFunctionSlots)
2834
34
        _throw (m3Err_functionStackOverflow);
2835
2836
34
    _catch:
2837
34
    return result;
2838
34
}
2839
2840
2841
M3Result  CompileFunction  (IM3Function io_function)
2842
34
{
2843
34
    if (!io_function->wasm) return "function body is missing";
2844
2845
34
    IM3FuncType funcType = io_function->funcType;                   m3log (compile, "compiling: [%d] %s %s; wasm-size: %d",
2846
34
                                                                        io_function->index, m3_GetFunctionName (io_function), SPrintFuncTypeSignature (funcType), (u32) (io_function->wasmEnd - io_function->wasm));
2847
34
    IM3Runtime runtime = io_function->module->runtime;
2848
2849
34
    IM3Compilation o = & runtime->compilation;                      d_m3Assert (d_m3MaxFunctionSlots >= d_m3MaxFunctionStackHeight * (d_m3Use32BitSlots + 1))  // need twice as many slots in 32-bit mode
2850
34
    memset (o, 0x0, sizeof (M3Compilation));
2851
2852
34
    o->runtime  = runtime;
2853
34
    o->module   = io_function->module;
2854
34
    o->function = io_function;
2855
34
    o->wasm     = io_function->wasm;
2856
34
    o->wasmEnd  = io_function->wasmEnd;
2857
34
    o->block.type = funcType;
2858
2859
34
_try {
2860
    // skip over code size. the end was already calculated during parse phase
2861
34
    u32 size;
2862
34
_   (ReadLEB_u32 (& size, & o->wasm, o->wasmEnd));                  d_m3Assert (size == (o->wasmEnd - o->wasm))
2863
2864
34
_   (AcquireCompilationCodePage (o, & o->page));
2865
2866
34
    pc_t pc = GetPagePC (o->page);
2867
2868
34
    u16 numRetSlots = GetFunctionNumReturns (o->function) * c_ioSlotCount;
2869
2870
4.42k
    for (u16 i = 0; i < numRetSlots; ++i)
2871
4.38k
        MarkSlotAllocated (o, i);
2872
2873
34
    o->function->numRetSlots = o->slotFirstDynamicIndex = numRetSlots;
2874
2875
34
    u16 numArgs = GetFunctionNumArgs (o->function);
2876
2877
    // push the arg types to the type stack
2878
462
    for (u16 i = 0; i < numArgs; ++i)
2879
428
    {
2880
428
        u8 type = GetFunctionArgType (o->function, i);
2881
428
_       (PushAllocatedSlot (o, type));
2882
2883
        // prevent allocator fill-in
2884
428
        o->slotFirstDynamicIndex += c_ioSlotCount;
2885
428
    }
2886
2887
34
    o->slotMaxAllocatedIndexPlusOne = o->function->numRetAndArgSlots = o->slotFirstLocalIndex = o->slotFirstDynamicIndex;
2888
2889
34
_   (CompileLocals (o));
2890
2891
34
    u16 maxSlot = GetMaxUsedSlotPlusOne (o);
2892
2893
34
    o->function->numLocalBytes = (maxSlot - o->slotFirstLocalIndex) * sizeof (m3slot_t);
2894
2895
34
    o->slotFirstConstIndex = o->slotMaxConstIndex = maxSlot;
2896
2897
    // ReserveConstants initializes o->firstDynamicSlotNumber
2898
34
_   (ReserveConstants (o));
2899
2900
    // start tracking the max stack used (Push() also updates this value) so that op_Entry can precisely detect stack overflow
2901
34
    o->maxStackSlots = o->slotMaxAllocatedIndexPlusOne = o->slotFirstDynamicIndex;
2902
2903
34
    o->block.blockStackIndex = o->stackFirstDynamicIndex = o->stackIndex;                           m3log (compile, "start stack index: %d",
2904
34
                                                                                                          (u32) o->stackFirstDynamicIndex);
2905
34
_   (EmitOp (o, op_Entry));
2906
34
    EmitPointer (o, io_function);
2907
2908
34
_   (CompileBlockStatements (o));
2909
2910
    // TODO: validate opcode sequences
2911
6
    _throwif(m3Err_wasmMalformed, o->previousOpcode != c_waOp_end);
2912
2913
6
    io_function->compiled = pc;
2914
6
    io_function->maxStackSlots = o->maxStackSlots;
2915
2916
6
    u16 numConstantSlots = o->slotMaxConstIndex - o->slotFirstConstIndex;                           m3log (compile, "unique constant slots: %d; unused slots: %d",
2917
6
                                                                                                           numConstantSlots, o->slotFirstDynamicIndex - o->slotMaxConstIndex);
2918
6
    io_function->numConstantBytes = numConstantSlots * sizeof (m3slot_t);
2919
2920
6
    if (numConstantSlots)
2921
0
    {
2922
0
        io_function->constants = m3_CopyMem (o->constants, io_function->numConstantBytes);
2923
0
        _throwifnull(io_function->constants);
2924
0
    }
2925
2926
34
} _catch:
2927
2928
34
    ReleaseCompilationCodePage (o);
2929
2930
34
    return result;
2931
6
}