1 /*
2 * Copyright (c) 2021-2024 Huawei Device Co., Ltd.
3 * Licensed under the Apache License, Version 2.0 (the "License");
4 * you may not use this file except in compliance with the License.
5 * You may obtain a copy of the License at
6 *
7 * http://www.apache.org/licenses/LICENSE-2.0
8 *
9 * Unless required by applicable law or agreed to in writing, software
10 * distributed under the License is distributed on an "AS IS" BASIS,
11 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12 * See the License for the specific language governing permissions and
13 * limitations under the License.
14 */
15
16 #include "pandagen.h"
17
18 #include "varbinder/varbinder.h"
19 #include "checker/checker.h"
20 #include "checker/types/globalTypesHolder.h"
21 #include "util/helpers.h"
22 #include "varbinder/scope.h"
23 #include "varbinder/variable.h"
24 #include "compiler/base/catchTable.h"
25 #include "compiler/base/lexenv.h"
26 #include "compiler/base/literals.h"
27 #include "public/public.h"
28 #include "compiler/core/labelTarget.h"
29 #include "compiler/core/regAllocator.h"
30 #include "compiler/function/asyncFunctionBuilder.h"
31 #include "compiler/function/asyncGeneratorFunctionBuilder.h"
32 #include "compiler/function/functionBuilder.h"
33 #include "compiler/function/generatorFunctionBuilder.h"
34 #include "es2panda.h"
35 #include "generated/isa.h"
36 #include "ir/base/scriptFunction.h"
37 #include "ir/base/spreadElement.h"
38 #include "ir/statement.h"
39 #include "ir/expressions/identifier.h"
40 #include "ir/expressions/literals/numberLiteral.h"
41 #include "ir/expressions/literals/stringLiteral.h"
42
43 namespace ark::es2panda::compiler {
44
45 #ifndef PANDA_WITH_ECMASCRIPT
46 class EcmaDisabled : public IRNode {
47 public:
48 template <typename... Args>
EcmaDisabled(const ir::AstNode * node,Args &&...args)49 explicit EcmaDisabled(const ir::AstNode *node, [[maybe_unused]] Args &&...args) : IRNode(node)
50 {
51 UNREACHABLE();
52 }
53
GetFormats() const54 Formats GetFormats() const override
55 {
56 UNREACHABLE();
57 }
58
Registers(std::array<VReg *,MAX_REG_OPERAND> * regs)59 size_t Registers([[maybe_unused]] std::array<VReg *, MAX_REG_OPERAND> *regs) override
60 {
61 UNREACHABLE();
62 }
63
Registers(std::array<const VReg *,MAX_REG_OPERAND> * regs) const64 size_t Registers([[maybe_unused]] std::array<const VReg *, MAX_REG_OPERAND> *regs) const override
65 {
66 UNREACHABLE();
67 }
68
OutRegisters(std::array<OutVReg,MAX_REG_OPERAND> * regs) const69 size_t OutRegisters([[maybe_unused]] std::array<OutVReg, MAX_REG_OPERAND> *regs) const override
70 {
71 UNREACHABLE();
72 }
73
Transform(pandasm::Ins * ins,ProgramElement * programElement,uint32_t totalRegs) const74 void Transform([[maybe_unused]] pandasm::Ins *ins, [[maybe_unused]] ProgramElement *programElement,
75 [[maybe_unused]] uint32_t totalRegs) const override
76 {
77 UNREACHABLE();
78 }
79 };
80
81 using EcmaLdhole = EcmaDisabled;
82 using EcmaLdnan = EcmaDisabled;
83 using EcmaLdinfinity = EcmaDisabled;
84 using EcmaLdglobal = EcmaDisabled;
85 using EcmaLdundefined = EcmaDisabled;
86 using EcmaLdsymbol = EcmaDisabled;
87 using EcmaLdnull = EcmaDisabled;
88 using EcmaLdtrue = EcmaDisabled;
89 using EcmaLdfalse = EcmaDisabled;
90 using EcmaTryldglobalbyname = EcmaDisabled;
91 using EcmaTrystglobalbyname = EcmaDisabled;
92 using EcmaLdobjbyname = EcmaDisabled;
93 using EcmaStobjbyname = EcmaDisabled;
94 using EcmaLdobjbyindex = EcmaDisabled;
95 using EcmaLdobjbyvalue = EcmaDisabled;
96 using EcmaStobjbyvalue = EcmaDisabled;
97 using EcmaStobjbyindex = EcmaDisabled;
98 using EcmaStownbyname = EcmaDisabled;
99 using EcmaStownbyvalue = EcmaDisabled;
100 using EcmaStownbyindex = EcmaDisabled;
101 using EcmaDelobjprop = EcmaDisabled;
102 using EcmaLdglobalvar = EcmaDisabled;
103 using EcmaStglobalvar = EcmaDisabled;
104 using EcmaLdbigint = EcmaDisabled;
105 using EcmaEqdyn = EcmaDisabled;
106 using EcmaNoteqdyn = EcmaDisabled;
107 using EcmaStricteqdyn = EcmaDisabled;
108 using EcmaStrictnoteqdyn = EcmaDisabled;
109 using EcmaLessdyn = EcmaDisabled;
110 using EcmaLesseqdyn = EcmaDisabled;
111 using EcmaGreaterdyn = EcmaDisabled;
112 using EcmaGreatereqdyn = EcmaDisabled;
113 using EcmaTonumber = EcmaDisabled;
114 using EcmaNegdyn = EcmaDisabled;
115 using EcmaNotdyn = EcmaDisabled;
116 using EcmaNegate = EcmaDisabled;
117 using EcmaIncdyn = EcmaDisabled;
118 using EcmaDecdyn = EcmaDisabled;
119 using EcmaEqdyn = EcmaDisabled;
120 using EcmaNoteqdyn = EcmaDisabled;
121 using EcmaStricteqdyn = EcmaDisabled;
122 using EcmaStrictnoteqdyn = EcmaDisabled;
123 using EcmaLessdyn = EcmaDisabled;
124 using EcmaLesseqdyn = EcmaDisabled;
125 using EcmaGreaterdyn = EcmaDisabled;
126 using EcmaGreatereqdyn = EcmaDisabled;
127 using EcmaAdd2dyn = EcmaDisabled;
128 using EcmaSub2dyn = EcmaDisabled;
129 using EcmaMul2dyn = EcmaDisabled;
130 using EcmaDiv2dyn = EcmaDisabled;
131 using EcmaMod2dyn = EcmaDisabled;
132 using EcmaExpdyn = EcmaDisabled;
133 using EcmaShl2dyn = EcmaDisabled;
134 using EcmaShr2dyn = EcmaDisabled;
135 using EcmaAshr2dyn = EcmaDisabled;
136 using EcmaAnd2dyn = EcmaDisabled;
137 using EcmaOr2dyn = EcmaDisabled;
138 using EcmaXor2dyn = EcmaDisabled;
139 using EcmaIsindyn = EcmaDisabled;
140 using EcmaInstanceofdyn = EcmaDisabled;
141 using EcmaIsundefined = EcmaDisabled;
142 using EcmaIsundefined = EcmaDisabled;
143 using EcmaJtrue = EcmaDisabled;
144 using EcmaIstrue = EcmaDisabled;
145 using EcmaJfalse = EcmaDisabled;
146 using EcmaIscoercible = EcmaDisabled;
147 using EcmaThrowdyn = EcmaDisabled;
148 using EcmaRethrowdyn = EcmaDisabled;
149 using EcmaReturnDyn = EcmaDisabled;
150 using EcmaReturnundefined = EcmaDisabled;
151 using EcmaCall0thisdyn = EcmaDisabled;
152 using EcmaCall1thisdyn = EcmaDisabled;
153 using EcmaCall0dyn = EcmaDisabled;
154 using EcmaCall1thisdyn = EcmaDisabled;
155 using EcmaCall1dyn = EcmaDisabled;
156 using EcmaCall2thisdyn = EcmaDisabled;
157 using EcmaCall2dyn = EcmaDisabled;
158 using EcmaCall3thisdyn = EcmaDisabled;
159 using EcmaCall3dyn = EcmaDisabled;
160 using EcmaCallithisrangedyn = EcmaDisabled;
161 using EcmaCallirangedyn = EcmaDisabled;
162 using EcmaCall1thisdyn = EcmaDisabled;
163 using EcmaCall1dyn = EcmaDisabled;
164 using EcmaCall2thisdyn = EcmaDisabled;
165 using EcmaCall2dyn = EcmaDisabled;
166 using EcmaCall3thisdyn = EcmaDisabled;
167 using EcmaCall3dyn = EcmaDisabled;
168 using EcmaCallithisrangedyn = EcmaDisabled;
169 using EcmaCallirangedyn = EcmaDisabled;
170 using EcmaSupercall = EcmaDisabled;
171 using EcmaSupercallspread = EcmaDisabled;
172 using EcmaNewobjdynrange = EcmaDisabled;
173 using EcmaLdhomeobject = EcmaDisabled;
174 using EcmaDefinemethod = EcmaDisabled;
175 using EcmaDefineasyncgeneratorfunc = EcmaDisabled;
176 using EcmaDefineasyncfunc = EcmaDisabled;
177 using EcmaDefinegeneratorfunc = EcmaDisabled;
178 using EcmaDefinencfuncdyn = EcmaDisabled;
179 using EcmaDefinefuncdyn = EcmaDisabled;
180 using EcmaTypeofdyn = EcmaDisabled;
181 using EcmaCallspreaddyn = EcmaDisabled;
182 using EcmaNewobjspreaddyn = EcmaDisabled;
183 using EcmaGetunmappedargs = EcmaDisabled;
184 using EcmaNegate = EcmaDisabled;
185 using EcmaToboolean = EcmaDisabled;
186 using EcmaTonumber = EcmaDisabled;
187 using EcmaGetmethod = EcmaDisabled;
188 using EcmaCreategeneratorobj = EcmaDisabled;
189 using EcmaCreateasyncgeneratorobj = EcmaDisabled;
190 using EcmaCreateiterresultobj = EcmaDisabled;
191 using EcmaSuspendgenerator = EcmaDisabled;
192 using EcmaSuspendasyncgenerator = EcmaDisabled;
193 using EcmaSetgeneratorstate = EcmaDisabled;
194 using EcmaSetgeneratorstate = EcmaDisabled;
195 using EcmaResumegenerator = EcmaDisabled;
196 using EcmaGetresumemode = EcmaDisabled;
197 using EcmaAsyncfunctionenter = EcmaDisabled;
198 using EcmaAsyncfunctionawait = EcmaDisabled;
199 using EcmaAsyncfunctionresolve = EcmaDisabled;
200 using EcmaAsyncfunctionreject = EcmaDisabled;
201 using EcmaAsyncgeneratorresolve = EcmaDisabled;
202 using EcmaAsyncgeneratorreject = EcmaDisabled;
203 using EcmaGettemplateobject = EcmaDisabled;
204 using EcmaCopyrestargs = EcmaDisabled;
205 using EcmaGetpropiterator = EcmaDisabled;
206 using EcmaGetnextpropname = EcmaDisabled;
207 using EcmaCreateemptyobject = EcmaDisabled;
208 using EcmaCreateobjectwithbuffer = EcmaDisabled;
209 using EcmaCreateobjecthavingmethod = EcmaDisabled;
210 using EcmaSetobjectwithproto = EcmaDisabled;
211 using EcmaCopydataproperties = EcmaDisabled;
212 using EcmaDefinegettersetterbyvalue = EcmaDisabled;
213 using EcmaCreateemptyarray = EcmaDisabled;
214 using EcmaCreatearraywithbuffer = EcmaDisabled;
215 using EcmaStarrayspread = EcmaDisabled;
216 using EcmaCreateregexpwithliteral = EcmaDisabled;
217 using EcmaThrowifnotobject = EcmaDisabled;
218 using EcmaThrowthrownotexists = EcmaDisabled;
219 using EcmaGetiterator = EcmaDisabled;
220 using EcmaGetasynciterator = EcmaDisabled;
221 using EcmaCreateobjectwithexcludedkeys = EcmaDisabled;
222 using EcmaThrowpatternnoncoercible = EcmaDisabled;
223 using EcmaCloseiterator = EcmaDisabled;
224 using EcmaImportmodule = EcmaDisabled;
225 using EcmaSetclasscomputedfields = EcmaDisabled;
226 using EcmaDefineclasswithbuffer = EcmaDisabled;
227 using EcmaLoadclasscomputedinstancefields = EcmaDisabled;
228 using EcmaDefineclassprivatefields = EcmaDisabled;
229 using EcmaClassfieldadd = EcmaDisabled;
230 using EcmaClassprivatefieldadd = EcmaDisabled;
231 using EcmaClassprivatemethodoraccessoradd = EcmaDisabled;
232 using EcmaClassprivatefieldget = EcmaDisabled;
233 using EcmaClassprivatefieldset = EcmaDisabled;
234 using EcmaClassprivatefieldin = EcmaDisabled;
235 using EcmaLdmodvarbyname = EcmaDisabled;
236 using EcmaStmodulevar = EcmaDisabled;
237 using EcmaCopymodule = EcmaDisabled;
238 using EcmaStsuperbyname = EcmaDisabled;
239 using EcmaLdsuperbyname = EcmaDisabled;
240 using EcmaStsuperbyvalue = EcmaDisabled;
241 using EcmaLdsuperbyvalue = EcmaDisabled;
242 using EcmaLdlexvardyn = EcmaDisabled;
243 using EcmaLdlexdyn = EcmaDisabled;
244 using EcmaStlexvardyn = EcmaDisabled;
245 using EcmaStlexdyn = EcmaDisabled;
246 using EcmaThrowifsupernotcorrectcall = EcmaDisabled;
247 using EcmaThrowtdz = EcmaDisabled;
248 using EcmaThrowconstassignment = EcmaDisabled;
249 using EcmaPoplexenvdyn = EcmaDisabled;
250 using EcmaCopylexenvdyn = EcmaDisabled;
251 using EcmaNewlexenvdyn = EcmaDisabled;
252 using EcmaLdlexenvdyn = EcmaDisabled;
253 using EcmaLdevalvar = EcmaDisabled;
254 using EcmaStevalvar = EcmaDisabled;
255 using EcmaLdevalbindings = EcmaDisabled;
256 using EcmaDirecteval = EcmaDisabled;
257 #endif
258
PandaGen(ArenaAllocator * const allocator,RegSpiller * const spiller,public_lib::Context * const context,std::tuple<varbinder::FunctionScope *,ProgramElement *,AstCompiler * > toCompile)259 PandaGen::PandaGen(ArenaAllocator *const allocator, RegSpiller *const spiller, public_lib::Context *const context,
260 std::tuple<varbinder::FunctionScope *, ProgramElement *, AstCompiler *> toCompile)
261 : CodeGen(allocator, spiller, context, toCompile)
262 {
263 Function::Compile(this);
264 }
265
FuncBuilder() const266 FunctionBuilder *PandaGen::FuncBuilder() const noexcept
267 {
268 return builder_;
269 }
270
GetEnvScope() const271 EnvScope *PandaGen::GetEnvScope() const noexcept
272 {
273 return envScope_;
274 }
275
OptionalChainCheck(const bool optional,const VReg obj) const276 void PandaGen::OptionalChainCheck(const bool optional, const VReg obj) const
277 {
278 if (optional && optionalChain_ != nullptr) {
279 optionalChain_->Check(obj);
280 }
281 }
282
FunctionInit(CatchTable * catchTable)283 void PandaGen::FunctionInit(CatchTable *catchTable)
284 {
285 if (RootNode()->IsProgram()) {
286 builder_ = Allocator()->New<FunctionBuilder>(this, catchTable);
287 return;
288 }
289
290 const ir::ScriptFunction *func = RootNode()->AsScriptFunction();
291
292 if (func->IsAsyncFunc()) {
293 if (func->IsGenerator()) {
294 builder_ = Allocator()->New<AsyncGeneratorFunctionBuilder>(this, catchTable);
295 return;
296 }
297
298 builder_ = Allocator()->New<AsyncFunctionBuilder>(this, catchTable);
299 return;
300 }
301
302 if (func->IsGenerator()) {
303 builder_ = Allocator()->New<GeneratorFunctionBuilder>(this, catchTable);
304 return;
305 }
306
307 builder_ = Allocator()->New<FunctionBuilder>(this, catchTable);
308 }
309
FunctionHasFinalizer() const310 bool PandaGen::FunctionHasFinalizer() const
311 {
312 if (RootNode()->IsProgram()) {
313 return false;
314 }
315
316 const ir::ScriptFunction *func = RootNode()->AsScriptFunction();
317
318 return func->IsAsyncFunc() || func->IsGenerator();
319 }
320
FunctionEnter()321 void PandaGen::FunctionEnter()
322 {
323 builder_->Prepare(RootNode()->AsScriptFunction());
324 }
325
FunctionExit()326 void PandaGen::FunctionExit()
327 {
328 builder_->CleanUp(RootNode()->AsScriptFunction());
329 }
330
StoreAccumulator(const ir::AstNode * node,VReg vreg)331 void PandaGen::StoreAccumulator(const ir::AstNode *node, VReg vreg)
332 {
333 Ra().Emit<StaDyn>(node, vreg);
334 }
335
LoadAccumulator(const ir::AstNode * node,VReg reg)336 void PandaGen::LoadAccumulator(const ir::AstNode *node, VReg reg)
337 {
338 Ra().Emit<LdaDyn>(node, reg);
339 }
340
AllocMov(const ir::AstNode * node,const VReg vd,const VReg vs)341 IRNode *PandaGen::AllocMov(const ir::AstNode *node, const VReg vd, const VReg vs)
342 {
343 return Allocator()->New<MovDyn>(node, vd, vs);
344 }
345
AllocMov(const ir::AstNode * node,OutVReg vd,const VReg vs)346 IRNode *PandaGen::AllocMov(const ir::AstNode *node, OutVReg vd, const VReg vs)
347 {
348 ASSERT(vd.type == OperandType::ANY);
349 return Allocator()->New<MovDyn>(node, *vd.reg, vs);
350 }
351
MoveVreg(const ir::AstNode * node,VReg vd,VReg vs)352 void PandaGen::MoveVreg(const ir::AstNode *node, VReg vd, VReg vs)
353 {
354 Ra().Emit<MovDyn>(node, vd, vs);
355 }
356
LoadAccumulatorDouble(const ir::AstNode * node,double num)357 void PandaGen::LoadAccumulatorDouble(const ir::AstNode *node, double num)
358 {
359 Sa().Emit<FldaiDyn>(node, num);
360 }
361
LoadAccumulatorInt(const ir::AstNode * node,size_t num)362 void PandaGen::LoadAccumulatorInt(const ir::AstNode *node, size_t num)
363 {
364 Sa().Emit<LdaiDyn>(node, static_cast<int64_t>(num));
365 }
366
StoreConst(const ir::AstNode * node,VReg reg,Constant id)367 void PandaGen::StoreConst(const ir::AstNode *node, VReg reg, Constant id)
368 {
369 LoadConst(node, id);
370 StoreAccumulator(node, reg);
371 }
372
LoadConst(const ir::AstNode * node,Constant id)373 void PandaGen::LoadConst(const ir::AstNode *node, Constant id)
374 {
375 switch (id) {
376 case Constant::JS_HOLE: {
377 Sa().Emit<EcmaLdhole>(node);
378 break;
379 }
380 case Constant::JS_NAN: {
381 Sa().Emit<EcmaLdnan>(node);
382 break;
383 }
384 case Constant::JS_INFINITY: {
385 Sa().Emit<EcmaLdinfinity>(node);
386 break;
387 }
388 case Constant::JS_GLOBAL: {
389 Sa().Emit<EcmaLdglobal>(node);
390 break;
391 }
392 case Constant::JS_UNDEFINED: {
393 Sa().Emit<EcmaLdundefined>(node);
394 break;
395 }
396 case Constant::JS_SYMBOL: {
397 Sa().Emit<EcmaLdsymbol>(node);
398 break;
399 }
400 case Constant::JS_NULL: {
401 Sa().Emit<EcmaLdnull>(node);
402 break;
403 }
404 case Constant::JS_TRUE: {
405 Sa().Emit<EcmaLdtrue>(node);
406 break;
407 }
408 case Constant::JS_FALSE: {
409 Sa().Emit<EcmaLdfalse>(node);
410 break;
411 }
412 default: {
413 UNREACHABLE();
414 }
415 }
416 }
417
GetFunctionObject(const ir::AstNode * node)418 void PandaGen::GetFunctionObject(const ir::AstNode *node)
419 {
420 LoadAccFromLexEnv(node, Scope()->Find(varbinder::VarBinder::MANDATORY_PARAM_FUNC));
421 }
422
GetNewTarget(const ir::AstNode * node)423 void PandaGen::GetNewTarget(const ir::AstNode *node)
424 {
425 LoadAccFromLexEnv(node, Scope()->Find(varbinder::VarBinder::MANDATORY_PARAM_NEW_TARGET));
426 }
427
GetThis(const ir::AstNode * node)428 void PandaGen::GetThis(const ir::AstNode *node)
429 {
430 LoadAccFromLexEnv(node, Scope()->Find(varbinder::VarBinder::MANDATORY_PARAM_THIS));
431 }
432
SetThis(const ir::AstNode * node)433 void PandaGen::SetThis(const ir::AstNode *node)
434 {
435 StoreAccToLexEnv(node, Scope()->Find(varbinder::VarBinder::MANDATORY_PARAM_THIS), true);
436 }
437
LoadVar(const ir::Identifier * node,const varbinder::ConstScopeFindResult & result)438 void PandaGen::LoadVar(const ir::Identifier *node, const varbinder::ConstScopeFindResult &result)
439 {
440 auto *var = result.variable;
441
442 if (var == nullptr) {
443 TryLoadGlobalByName(node, result.name);
444 return;
445 }
446
447 if (var->IsGlobalVariable()) {
448 LoadGlobalVar(node, var->Name());
449 return;
450 }
451
452 if (var->IsModuleVariable()) {
453 LoadModuleVariable(node, var->AsModuleVariable()->ModuleReg(), var->AsModuleVariable()->ExoticName());
454 return;
455 }
456
457 ASSERT(var->IsLocalVariable());
458 LoadAccFromLexEnv(node, result);
459 }
460
StoreVar(const ir::AstNode * node,const varbinder::ConstScopeFindResult & result,bool isDeclaration)461 void PandaGen::StoreVar(const ir::AstNode *node, const varbinder::ConstScopeFindResult &result, bool isDeclaration)
462 {
463 varbinder::Variable *var = result.variable;
464
465 if (var == nullptr) {
466 if (IsDirectEval()) {
467 StoreEvalVariable(node, result.name);
468 } else {
469 TryStoreGlobalByName(node, result.name);
470 }
471 return;
472 }
473
474 if (var->IsGlobalVariable()) {
475 StoreGlobalVar(node, var->Name());
476 return;
477 }
478
479 if (var->IsModuleVariable()) {
480 ThrowConstAssignment(node, var->Name());
481 return;
482 }
483
484 ASSERT(var->IsLocalVariable());
485 StoreAccToLexEnv(node, result, isDeclaration);
486 }
487
LoadAccFromArgs(const ir::AstNode * node)488 void PandaGen::LoadAccFromArgs(const ir::AstNode *node)
489 {
490 if (!Scope()->HasFlag(varbinder::ScopeFlags::USE_ARGS)) {
491 return;
492 }
493
494 auto res = Scope()->Find(varbinder::VarBinder::FUNCTION_ARGUMENTS);
495 ASSERT(res.scope);
496
497 GetUnmappedArgs(node);
498 StoreAccToLexEnv(node, res, true);
499 }
500
LoadObjProperty(const ir::AstNode * node,const Operand & prop)501 void PandaGen::LoadObjProperty(const ir::AstNode *node, const Operand &prop)
502 {
503 if (std::holds_alternative<VReg>(prop)) {
504 LoadObjByValue(node, std::get<VReg>(prop));
505 return;
506 }
507
508 if (std::holds_alternative<int64_t>(prop)) {
509 LoadObjByIndex(node, std::get<int64_t>(prop));
510 return;
511 }
512
513 ASSERT(std::holds_alternative<util::StringView>(prop));
514 LoadObjByName(node, std::get<util::StringView>(prop));
515 }
516
StoreObjProperty(const ir::AstNode * node,VReg obj,const Operand & prop)517 void PandaGen::StoreObjProperty(const ir::AstNode *node, VReg obj, const Operand &prop)
518 {
519 if (std::holds_alternative<VReg>(prop)) {
520 StoreObjByValue(node, obj, std::get<VReg>(prop));
521 return;
522 }
523
524 if (std::holds_alternative<int64_t>(prop)) {
525 StoreObjByIndex(node, obj, std::get<int64_t>(prop));
526 return;
527 }
528
529 ASSERT(std::holds_alternative<util::StringView>(prop));
530 StoreObjByName(node, obj, std::get<util::StringView>(prop));
531 }
532
StoreOwnProperty(const ir::AstNode * node,VReg obj,const Operand & prop)533 void PandaGen::StoreOwnProperty(const ir::AstNode *node, VReg obj, const Operand &prop)
534 {
535 if (std::holds_alternative<VReg>(prop)) {
536 StOwnByValue(node, obj, std::get<VReg>(prop));
537 return;
538 }
539
540 if (std::holds_alternative<int64_t>(prop)) {
541 StOwnByIndex(node, obj, std::get<int64_t>(prop));
542 return;
543 }
544
545 ASSERT(std::holds_alternative<util::StringView>(prop));
546 StOwnByName(node, obj, std::get<util::StringView>(prop));
547 }
548
TryLoadGlobalByName(const ir::AstNode * node,const util::StringView & name)549 void PandaGen::TryLoadGlobalByName(const ir::AstNode *node, const util::StringView &name)
550 {
551 Sa().Emit<EcmaTryldglobalbyname>(node, name);
552 }
553
TryStoreGlobalByName(const ir::AstNode * node,const util::StringView & name)554 void PandaGen::TryStoreGlobalByName(const ir::AstNode *node, const util::StringView &name)
555 {
556 Sa().Emit<EcmaTrystglobalbyname>(node, name);
557 }
558
LoadObjByName(const ir::AstNode * node,const util::StringView & prop)559 void PandaGen::LoadObjByName(const ir::AstNode *node, const util::StringView &prop)
560 {
561 Ra().Emit<EcmaLdobjbyname>(node, prop);
562 }
563
StoreObjByName(const ir::AstNode * node,VReg obj,const util::StringView & prop)564 void PandaGen::StoreObjByName(const ir::AstNode *node, VReg obj, const util::StringView &prop)
565 {
566 Ra().Emit<EcmaStobjbyname>(node, prop, obj);
567 }
568
LoadObjByIndex(const ir::AstNode * node,int64_t index)569 void PandaGen::LoadObjByIndex(const ir::AstNode *node, int64_t index)
570 {
571 Ra().Emit<EcmaLdobjbyindex>(node, index);
572 }
573
LoadObjByValue(const ir::AstNode * node,VReg obj)574 void PandaGen::LoadObjByValue(const ir::AstNode *node, VReg obj)
575 {
576 Ra().Emit<EcmaLdobjbyvalue>(node, obj);
577 }
578
StoreObjByValue(const ir::AstNode * node,VReg obj,VReg prop)579 void PandaGen::StoreObjByValue(const ir::AstNode *node, VReg obj, VReg prop)
580 {
581 Ra().Emit<EcmaStobjbyvalue>(node, obj, prop);
582 }
583
StoreObjByIndex(const ir::AstNode * node,VReg obj,int64_t index)584 void PandaGen::StoreObjByIndex(const ir::AstNode *node, VReg obj, int64_t index)
585 {
586 Ra().Emit<EcmaStobjbyindex>(node, index, obj);
587 }
588
StOwnByName(const ir::AstNode * node,VReg obj,const util::StringView & prop)589 void PandaGen::StOwnByName(const ir::AstNode *node, VReg obj, const util::StringView &prop)
590 {
591 Ra().Emit<EcmaStownbyname>(node, prop, obj);
592 }
593
StOwnByValue(const ir::AstNode * node,VReg obj,VReg prop)594 void PandaGen::StOwnByValue(const ir::AstNode *node, VReg obj, VReg prop)
595 {
596 Ra().Emit<EcmaStownbyvalue>(node, obj, prop);
597 }
598
StOwnByIndex(const ir::AstNode * node,VReg obj,int64_t index)599 void PandaGen::StOwnByIndex(const ir::AstNode *node, VReg obj, int64_t index)
600 {
601 Ra().Emit<EcmaStownbyindex>(node, index, obj);
602 }
603
DeleteObjProperty(const ir::AstNode * node,VReg obj,VReg prop)604 void PandaGen::DeleteObjProperty(const ir::AstNode *node, VReg obj, VReg prop)
605 {
606 Ra().Emit<EcmaDelobjprop>(node, obj, prop);
607 }
608
LoadGlobalVar(const ir::AstNode * node,const util::StringView & name)609 void PandaGen::LoadGlobalVar(const ir::AstNode *node, const util::StringView &name)
610 {
611 Sa().Emit<EcmaLdglobalvar>(node, name);
612 }
613
StoreGlobalVar(const ir::AstNode * node,const util::StringView & name)614 void PandaGen::StoreGlobalVar(const ir::AstNode *node, const util::StringView &name)
615 {
616 Sa().Emit<EcmaStglobalvar>(node, name);
617 }
618
LexEnv() const619 VReg PandaGen::LexEnv() const noexcept
620 {
621 return envScope_->LexEnv();
622 }
623
LoadAccFromLexEnv(const ir::AstNode * node,const varbinder::ConstScopeFindResult & result)624 void PandaGen::LoadAccFromLexEnv(const ir::AstNode *node, const varbinder::ConstScopeFindResult &result)
625 {
626 VirtualLoadVar::Expand(this, node, result);
627 }
628
StoreAccToLexEnv(const ir::AstNode * node,const varbinder::ConstScopeFindResult & result,bool isDeclaration)629 void PandaGen::StoreAccToLexEnv(const ir::AstNode *node, const varbinder::ConstScopeFindResult &result,
630 bool isDeclaration)
631 {
632 VirtualStoreVar::Expand(this, node, result, isDeclaration);
633 }
634
LoadAccumulatorBigInt(const ir::AstNode * node,const util::StringView & bigInt)635 void PandaGen::LoadAccumulatorBigInt(const ir::AstNode *node, const util::StringView &bigInt)
636 {
637 Sa().Emit<EcmaLdbigint>(node, bigInt);
638 }
639
Condition(const ir::AstNode * node,lexer::TokenType op,VReg lhs,Label * ifFalse)640 void PandaGen::Condition(const ir::AstNode *node, lexer::TokenType op, VReg lhs, Label *ifFalse)
641 {
642 switch (op) {
643 case lexer::TokenType::PUNCTUATOR_EQUAL: {
644 Ra().Emit<EcmaEqdyn>(node, lhs);
645 break;
646 }
647 case lexer::TokenType::PUNCTUATOR_NOT_EQUAL: {
648 Ra().Emit<EcmaNoteqdyn>(node, lhs);
649 break;
650 }
651 case lexer::TokenType::PUNCTUATOR_STRICT_EQUAL: {
652 Ra().Emit<EcmaStricteqdyn>(node, lhs);
653 break;
654 }
655 case lexer::TokenType::PUNCTUATOR_NOT_STRICT_EQUAL: {
656 Ra().Emit<EcmaStrictnoteqdyn>(node, lhs);
657 break;
658 }
659 case lexer::TokenType::PUNCTUATOR_LESS_THAN: {
660 Ra().Emit<EcmaLessdyn>(node, lhs);
661 break;
662 }
663 case lexer::TokenType::PUNCTUATOR_LESS_THAN_EQUAL: {
664 Ra().Emit<EcmaLesseqdyn>(node, lhs);
665 break;
666 }
667 case lexer::TokenType::PUNCTUATOR_GREATER_THAN: {
668 Ra().Emit<EcmaGreaterdyn>(node, lhs);
669 break;
670 }
671 case lexer::TokenType::PUNCTUATOR_GREATER_THAN_EQUAL: {
672 Ra().Emit<EcmaGreatereqdyn>(node, lhs);
673 break;
674 }
675 default: {
676 UNREACHABLE();
677 }
678 }
679
680 BranchIfFalse(node, ifFalse);
681 }
682
Unary(const ir::AstNode * node,lexer::TokenType op,VReg operand)683 void PandaGen::Unary(const ir::AstNode *node, lexer::TokenType op, VReg operand)
684 {
685 switch (op) {
686 case lexer::TokenType::PUNCTUATOR_PLUS: {
687 Ra().Emit<EcmaTonumber>(node, operand);
688 break;
689 }
690 case lexer::TokenType::PUNCTUATOR_MINUS: {
691 Ra().Emit<EcmaNegdyn>(node, operand);
692 break;
693 }
694 case lexer::TokenType::PUNCTUATOR_TILDE: {
695 Ra().Emit<EcmaNotdyn>(node, operand);
696 break;
697 }
698 case lexer::TokenType::PUNCTUATOR_EXCLAMATION_MARK: {
699 Sa().Emit<EcmaNegate>(node);
700 break;
701 }
702 case lexer::TokenType::PUNCTUATOR_PLUS_PLUS: {
703 Ra().Emit<EcmaIncdyn>(node, operand);
704 break;
705 }
706 case lexer::TokenType::PUNCTUATOR_MINUS_MINUS: {
707 Ra().Emit<EcmaDecdyn>(node, operand);
708 break;
709 }
710 case lexer::TokenType::KEYW_VOID:
711 case lexer::TokenType::KEYW_DELETE: {
712 LoadConst(node, Constant::JS_UNDEFINED);
713 break;
714 }
715 default: {
716 UNREACHABLE();
717 }
718 }
719 }
720
Binary(const ir::AstNode * node,lexer::TokenType op,VReg lhs)721 void PandaGen::Binary(const ir::AstNode *node, lexer::TokenType op, VReg lhs)
722 {
723 switch (op) {
724 case lexer::TokenType::PUNCTUATOR_EQUAL: {
725 Ra().Emit<EcmaEqdyn>(node, lhs);
726 break;
727 }
728 case lexer::TokenType::PUNCTUATOR_NOT_EQUAL: {
729 Ra().Emit<EcmaNoteqdyn>(node, lhs);
730 break;
731 }
732 case lexer::TokenType::PUNCTUATOR_STRICT_EQUAL: {
733 Ra().Emit<EcmaStricteqdyn>(node, lhs);
734 break;
735 }
736 case lexer::TokenType::PUNCTUATOR_NOT_STRICT_EQUAL: {
737 Ra().Emit<EcmaStrictnoteqdyn>(node, lhs);
738 break;
739 }
740 case lexer::TokenType::PUNCTUATOR_LESS_THAN: {
741 Ra().Emit<EcmaLessdyn>(node, lhs);
742 break;
743 }
744 case lexer::TokenType::PUNCTUATOR_LESS_THAN_EQUAL: {
745 Ra().Emit<EcmaLesseqdyn>(node, lhs);
746 break;
747 }
748 case lexer::TokenType::PUNCTUATOR_GREATER_THAN: {
749 Ra().Emit<EcmaGreaterdyn>(node, lhs);
750 break;
751 }
752 case lexer::TokenType::PUNCTUATOR_GREATER_THAN_EQUAL: {
753 Ra().Emit<EcmaGreatereqdyn>(node, lhs);
754 break;
755 }
756 case lexer::TokenType::PUNCTUATOR_PLUS:
757 case lexer::TokenType::PUNCTUATOR_PLUS_EQUAL: {
758 Ra().Emit<EcmaAdd2dyn>(node, lhs);
759 break;
760 }
761 case lexer::TokenType::PUNCTUATOR_MINUS:
762 case lexer::TokenType::PUNCTUATOR_MINUS_EQUAL: {
763 Ra().Emit<EcmaSub2dyn>(node, lhs);
764 break;
765 }
766 case lexer::TokenType::PUNCTUATOR_MULTIPLY:
767 case lexer::TokenType::PUNCTUATOR_MULTIPLY_EQUAL: {
768 Ra().Emit<EcmaMul2dyn>(node, lhs);
769 break;
770 }
771 case lexer::TokenType::PUNCTUATOR_DIVIDE:
772 case lexer::TokenType::PUNCTUATOR_DIVIDE_EQUAL: {
773 Ra().Emit<EcmaDiv2dyn>(node, lhs);
774 break;
775 }
776 case lexer::TokenType::PUNCTUATOR_MOD:
777 case lexer::TokenType::PUNCTUATOR_MOD_EQUAL: {
778 Ra().Emit<EcmaMod2dyn>(node, lhs);
779 break;
780 }
781 case lexer::TokenType::PUNCTUATOR_EXPONENTIATION_EQUAL:
782 case lexer::TokenType::PUNCTUATOR_EXPONENTIATION: {
783 Ra().Emit<EcmaExpdyn>(node, lhs);
784 break;
785 }
786 case lexer::TokenType::PUNCTUATOR_LEFT_SHIFT:
787 case lexer::TokenType::PUNCTUATOR_LEFT_SHIFT_EQUAL: {
788 Ra().Emit<EcmaShl2dyn>(node, lhs);
789 break;
790 }
791 case lexer::TokenType::PUNCTUATOR_RIGHT_SHIFT:
792 case lexer::TokenType::PUNCTUATOR_RIGHT_SHIFT_EQUAL: {
793 Ra().Emit<EcmaShr2dyn>(node, lhs);
794 break;
795 }
796 case lexer::TokenType::PUNCTUATOR_UNSIGNED_RIGHT_SHIFT:
797 case lexer::TokenType::PUNCTUATOR_UNSIGNED_RIGHT_SHIFT_EQUAL: {
798 Ra().Emit<EcmaAshr2dyn>(node, lhs);
799 break;
800 }
801 case lexer::TokenType::PUNCTUATOR_BITWISE_AND:
802 case lexer::TokenType::PUNCTUATOR_BITWISE_AND_EQUAL: {
803 Ra().Emit<EcmaAnd2dyn>(node, lhs);
804 break;
805 }
806 case lexer::TokenType::PUNCTUATOR_BITWISE_OR:
807 case lexer::TokenType::PUNCTUATOR_BITWISE_OR_EQUAL: {
808 Ra().Emit<EcmaOr2dyn>(node, lhs);
809 break;
810 }
811 case lexer::TokenType::PUNCTUATOR_BITWISE_XOR:
812 case lexer::TokenType::PUNCTUATOR_BITWISE_XOR_EQUAL: {
813 Ra().Emit<EcmaXor2dyn>(node, lhs);
814 break;
815 }
816 case lexer::TokenType::KEYW_IN: {
817 Ra().Emit<EcmaIsindyn>(node, lhs);
818 break;
819 }
820 case lexer::TokenType::KEYW_INSTANCEOF: {
821 Ra().Emit<EcmaInstanceofdyn>(node, lhs);
822 break;
823 }
824 case lexer::TokenType::PUNCTUATOR_NULLISH_COALESCING:
825 case lexer::TokenType::PUNCTUATOR_LOGICAL_NULLISH_EQUAL: {
826 Unimplemented();
827 break;
828 }
829 default: {
830 UNREACHABLE();
831 }
832 }
833 }
834
BranchIfUndefined(const ir::AstNode * node,Label * target)835 void PandaGen::BranchIfUndefined(const ir::AstNode *node, Label *target)
836 {
837 Sa().Emit<EcmaIsundefined>(node);
838 BranchIfTrue(node, target);
839 }
840
BranchIfNotUndefined(const ir::AstNode * node,Label * target)841 void PandaGen::BranchIfNotUndefined(const ir::AstNode *node, Label *target)
842 {
843 Sa().Emit<EcmaIsundefined>(node);
844 BranchIfFalse(node, target);
845 }
846
BranchIfTrue(const ir::AstNode * node,Label * target)847 void PandaGen::BranchIfTrue(const ir::AstNode *node, Label *target)
848 {
849 Sa().Emit<EcmaJtrue>(node, target);
850 }
851
BranchIfNotTrue(const ir::AstNode * node,Label * target)852 void PandaGen::BranchIfNotTrue(const ir::AstNode *node, Label *target)
853 {
854 Sa().Emit<EcmaIstrue>(node);
855 BranchIfFalse(node, target);
856 }
857
BranchIfFalse(const ir::AstNode * node,Label * target)858 void PandaGen::BranchIfFalse(const ir::AstNode *node, Label *target)
859 {
860 Sa().Emit<EcmaJfalse>(node, target);
861 }
862
BranchIfCoercible(const ir::AstNode * node,Label * target)863 void PandaGen::BranchIfCoercible(const ir::AstNode *node, Label *target)
864 {
865 Sa().Emit<EcmaIscoercible>(node);
866 BranchIfTrue(node, target);
867 }
868
EmitThrow(const ir::AstNode * node)869 void PandaGen::EmitThrow(const ir::AstNode *node)
870 {
871 Sa().Emit<EcmaThrowdyn>(node);
872 }
873
EmitRethrow(const ir::AstNode * node)874 void PandaGen::EmitRethrow(const ir::AstNode *node)
875 {
876 Sa().Emit<EcmaRethrowdyn>(node);
877 }
878
EmitReturn(const ir::AstNode * node)879 void PandaGen::EmitReturn(const ir::AstNode *node)
880 {
881 Sa().Emit<EcmaReturnDyn>(node);
882 }
883
EmitReturnUndefined(const ir::AstNode * node)884 void PandaGen::EmitReturnUndefined(const ir::AstNode *node)
885 {
886 Sa().Emit<EcmaReturnundefined>(node);
887 }
888
ImplicitReturn(const ir::AstNode * node)889 void PandaGen::ImplicitReturn(const ir::AstNode *node)
890 {
891 builder_->ImplicitReturn(node);
892 }
893
DirectReturn(const ir::AstNode * node)894 void PandaGen::DirectReturn(const ir::AstNode *node)
895 {
896 builder_->DirectReturn(node);
897 }
898
ValidateClassDirectReturn(const ir::AstNode * node)899 void PandaGen::ValidateClassDirectReturn(const ir::AstNode *node)
900 {
901 const ir::ScriptFunction *func = util::Helpers::GetContainingFunction(node);
902
903 if (func == nullptr || !func->IsConstructor()) {
904 return;
905 }
906
907 RegScope rs(this);
908 VReg value = AllocReg();
909 StoreAccumulator(node, value);
910
911 auto *notUndefined = AllocLabel();
912 auto *condEnd = AllocLabel();
913
914 BranchIfNotUndefined(node, notUndefined);
915 GetThis(func);
916 ThrowIfSuperNotCorrectCall(func, 0);
917 Branch(node, condEnd);
918
919 SetLabel(node, notUndefined);
920 LoadAccumulator(node, value);
921
922 SetLabel(node, condEnd);
923 }
924
EmitAwait(const ir::AstNode * node)925 void PandaGen::EmitAwait(const ir::AstNode *node)
926 {
927 builder_->Await(node);
928 }
929
Call0This(const ir::AstNode * node,VReg callee,VReg thisReg)930 void PandaGen::Call0This(const ir::AstNode *node, VReg callee, VReg thisReg)
931 {
932 LoadAccumulator(node, thisReg);
933 Ra().Emit<EcmaCall0thisdyn>(node, callee);
934 }
935
Call1This(const ir::AstNode * node,VReg callee,VReg thisReg,VReg arg0)936 void PandaGen::Call1This(const ir::AstNode *node, VReg callee, VReg thisReg, VReg arg0)
937 {
938 LoadAccumulator(node, arg0);
939 Ra().Emit<EcmaCall1thisdyn>(node, callee, thisReg);
940 }
941
Call0Args(const ir::AstNode * n,VReg c,VReg thisR,bool hasThis)942 void PandaGen::Call0Args(const ir::AstNode *n, VReg c, VReg thisR, bool hasThis)
943 {
944 if (hasThis) {
945 Call0This(n, c, thisR);
946 } else {
947 Sa().Emit<EcmaCall0dyn>(n);
948 }
949 }
950
Call1Arg(const ir::AstNode * n,VReg c,VReg thisR,const ArenaVector<ir::Expression * > & args,bool hasThis)951 void PandaGen::Call1Arg(const ir::AstNode *n, VReg c, VReg thisR, const ArenaVector<ir::Expression *> &args,
952 bool hasThis)
953 {
954 const auto *arg0 = args[0];
955 arg0->Compile(this);
956
957 if (hasThis) {
958 Ra().Emit<EcmaCall1thisdyn>(n, c, thisR);
959 } else {
960 Ra().Emit<EcmaCall1dyn>(n, c);
961 }
962 }
963
Call2Args(const ir::AstNode * n,VReg c,VReg thisR,const ArenaVector<ir::Expression * > & args,bool hasThis)964 void PandaGen::Call2Args(const ir::AstNode *n, VReg c, VReg thisR, const ArenaVector<ir::Expression *> &args,
965 bool hasThis)
966 {
967 const auto *arg0 = args[0];
968 arg0->Compile(this);
969 compiler::VReg arg0Reg = AllocReg();
970 StoreAccumulator(arg0, arg0Reg);
971
972 const auto *arg1 = args[1];
973 arg1->Compile(this);
974
975 if (hasThis) {
976 Ra().Emit<EcmaCall2thisdyn>(n, c, thisR, arg0Reg);
977 } else {
978 Ra().Emit<EcmaCall2dyn>(n, c, arg0Reg);
979 }
980 }
981
Call3Args(const ir::AstNode * n,VReg c,VReg thisR,const ArenaVector<ir::Expression * > & args,bool hasThis)982 void PandaGen::Call3Args(const ir::AstNode *n, VReg c, VReg thisR, const ArenaVector<ir::Expression *> &args,
983 bool hasThis)
984 {
985 const auto *arg0 = args[0];
986 arg0->Compile(this);
987 compiler::VReg arg0Reg = AllocReg();
988 StoreAccumulator(arg0, arg0Reg);
989
990 const auto *arg1 = args[1];
991 arg1->Compile(this);
992 compiler::VReg arg1Reg = AllocReg();
993 StoreAccumulator(arg1, arg1Reg);
994
995 const auto *arg2 = args[2];
996 arg2->Compile(this);
997
998 if (hasThis) {
999 Ra().Emit<EcmaCall3thisdyn>(n, c, thisR, arg0Reg, arg1Reg);
1000 } else {
1001 Ra().Emit<EcmaCall3dyn>(n, c, arg0Reg, arg1Reg);
1002 }
1003 }
1004
Call(const ir::AstNode * node,VReg callee,VReg thisReg,const ArenaVector<ir::Expression * > & arguments)1005 void PandaGen::Call(const ir::AstNode *node, VReg callee, VReg thisReg, const ArenaVector<ir::Expression *> &arguments)
1006 {
1007 bool hasThis = !thisReg.IsInvalid();
1008
1009 switch (arguments.size()) {
1010 case 0: { // 0 args
1011 Call0Args(node, callee, thisReg, hasThis);
1012 return;
1013 }
1014 case 1: { // 1 arg
1015 Call1Arg(node, callee, thisReg, arguments, hasThis);
1016 return;
1017 }
1018 case 2: { // 2 args
1019 Call2Args(node, callee, thisReg, arguments, hasThis);
1020 return;
1021 }
1022 case 3: { // 3 args
1023 Call3Args(node, callee, thisReg, arguments, hasThis);
1024 return;
1025 }
1026 default: {
1027 break;
1028 }
1029 }
1030
1031 for (const auto *it : arguments) {
1032 it->Compile(this);
1033 compiler::VReg arg = AllocReg();
1034 StoreAccumulator(it, arg);
1035 }
1036
1037 if (hasThis) {
1038 size_t argCount = arguments.size() + 1;
1039 auto constexpr EXTRA_ARGS = 2;
1040 Rra().Emit<EcmaCallithisrangedyn>(node, callee, argCount + EXTRA_ARGS, static_cast<int64_t>(argCount), callee);
1041 } else {
1042 size_t argCount = arguments.size();
1043 Rra().Emit<EcmaCallirangedyn>(node, callee, argCount + 1, static_cast<int64_t>(argCount), callee);
1044 }
1045 }
1046
CallArgsTagged(const ir::AstNode * node,VReg callee,VReg thisReg,const ArenaVector<ir::Expression * > & arguments,bool hasThis)1047 bool PandaGen::CallArgsTagged(const ir::AstNode *node, VReg callee, VReg thisReg,
1048 const ArenaVector<ir::Expression *> &arguments, bool hasThis)
1049 {
1050 VReg arg0Reg = AllocReg();
1051 StoreAccumulator(node, arg0Reg);
1052
1053 const auto call1 = [this, hasThis, arg0Reg](const ir::AstNode *n, VReg c, VReg thisR,
1054 const ArenaVector<ir::Expression *> &args) {
1055 const auto *arg = args[0];
1056 arg->Compile(this);
1057
1058 if (hasThis) {
1059 Ra().Emit<EcmaCall2thisdyn>(n, c, thisR, arg0Reg);
1060 } else {
1061 Ra().Emit<EcmaCall2dyn>(n, c, arg0Reg);
1062 }
1063 };
1064 const auto call2 = [this, hasThis, arg0Reg](const ir::AstNode *n, VReg c, VReg thisR,
1065 const ArenaVector<ir::Expression *> &args) {
1066 const auto *arg1 = args[0];
1067 arg1->Compile(this);
1068 compiler::VReg arg1Reg = AllocReg();
1069 StoreAccumulator(arg1, arg1Reg);
1070
1071 const auto *arg2 = args[1];
1072 arg2->Compile(this);
1073
1074 if (hasThis) {
1075 Ra().Emit<EcmaCall3thisdyn>(n, c, thisR, arg0Reg, arg1Reg);
1076 } else {
1077 Ra().Emit<EcmaCall3dyn>(n, c, arg0Reg, arg1Reg);
1078 }
1079 };
1080
1081 switch (arguments.size()) {
1082 case 1: {
1083 call1(node, callee, thisReg, arguments);
1084 return true;
1085 }
1086 case 2: { // 2:2 args
1087 call2(node, callee, thisReg, arguments);
1088 return true;
1089 }
1090 default: {
1091 break;
1092 }
1093 }
1094 return false;
1095 }
1096
CallTagged(const ir::AstNode * node,VReg callee,VReg thisReg,const ArenaVector<ir::Expression * > & arguments)1097 void PandaGen::CallTagged(const ir::AstNode *node, VReg callee, VReg thisReg,
1098 const ArenaVector<ir::Expression *> &arguments)
1099 {
1100 bool hasThis = !thisReg.IsInvalid();
1101
1102 StoreAccumulator(node, callee);
1103 Literals::GetTemplateObject(this, node->AsTaggedTemplateExpression());
1104
1105 if (arguments.empty()) {
1106 if (hasThis) {
1107 Ra().Emit<EcmaCall1thisdyn>(node, callee, thisReg);
1108 } else {
1109 Sa().Emit<EcmaCall1dyn>(node, callee);
1110 }
1111 return;
1112 }
1113
1114 if (CallArgsTagged(node, callee, thisReg, arguments, hasThis)) {
1115 return;
1116 }
1117
1118 for (const auto *it : arguments) {
1119 it->Compile(this);
1120 compiler::VReg arg = AllocReg();
1121 StoreAccumulator(it, arg);
1122 }
1123
1124 if (hasThis) {
1125 auto constexpr EXTRA_ARGS = 2;
1126 size_t argCount = arguments.size() + EXTRA_ARGS;
1127 Rra().Emit<EcmaCallithisrangedyn>(node, callee, argCount + EXTRA_ARGS, static_cast<int64_t>(argCount), callee);
1128 } else {
1129 size_t argCount = arguments.size() + 1;
1130 Rra().Emit<EcmaCallirangedyn>(node, callee, argCount + 1, static_cast<int64_t>(argCount), callee);
1131 }
1132 }
1133
SuperCall(const ir::AstNode * node,VReg startReg,size_t argCount)1134 void PandaGen::SuperCall(const ir::AstNode *node, VReg startReg, size_t argCount)
1135 {
1136 Rra().Emit<EcmaSupercall>(node, startReg, argCount, static_cast<int64_t>(argCount), startReg);
1137 }
1138
SuperCallSpread(const ir::AstNode * node,VReg vs)1139 void PandaGen::SuperCallSpread(const ir::AstNode *node, VReg vs)
1140 {
1141 Ra().Emit<EcmaSupercallspread>(node, vs);
1142 }
1143
NewObject(const ir::AstNode * node,VReg startReg,size_t argCount)1144 void PandaGen::NewObject(const ir::AstNode *node, VReg startReg, size_t argCount)
1145 {
1146 Rra().Emit<EcmaNewobjdynrange>(node, startReg, argCount, static_cast<int64_t>(argCount), startReg);
1147 }
1148
LoadHomeObject(const ir::AstNode * node)1149 void PandaGen::LoadHomeObject(const ir::AstNode *node)
1150 {
1151 Sa().Emit<EcmaLdhomeobject>(node);
1152 }
1153
DefineMethod(const ir::AstNode * node,const util::StringView & name)1154 void PandaGen::DefineMethod(const ir::AstNode *node, const util::StringView &name)
1155 {
1156 Ra().Emit<EcmaDefinemethod>(node, name, LexEnv());
1157 }
1158
DefineFunction(const ir::AstNode * node,const ir::ScriptFunction * realNode,const util::StringView & name)1159 void PandaGen::DefineFunction(const ir::AstNode *node, const ir::ScriptFunction *realNode, const util::StringView &name)
1160 {
1161 if (realNode->IsAsyncFunc()) {
1162 if (realNode->IsGenerator()) {
1163 Ra().Emit<EcmaDefineasyncgeneratorfunc>(node, name, LexEnv());
1164 } else {
1165 Ra().Emit<EcmaDefineasyncfunc>(node, name, LexEnv());
1166 }
1167 } else if (realNode->IsGenerator()) {
1168 Ra().Emit<EcmaDefinegeneratorfunc>(node, name, LexEnv());
1169 } else if (realNode->IsArrow()) {
1170 LoadHomeObject(node);
1171 Ra().Emit<EcmaDefinencfuncdyn>(node, name, LexEnv());
1172 } else if (realNode->IsMethod()) {
1173 DefineMethod(node, name);
1174 } else {
1175 Ra().Emit<EcmaDefinefuncdyn>(node, name, LexEnv());
1176 }
1177 }
1178
TypeOf(const ir::AstNode * node)1179 void PandaGen::TypeOf(const ir::AstNode *node)
1180 {
1181 Sa().Emit<EcmaTypeofdyn>(node);
1182 }
1183
CallSpread(const ir::AstNode * node,VReg func,VReg thisReg,VReg args)1184 void PandaGen::CallSpread(const ir::AstNode *node, VReg func, VReg thisReg, VReg args)
1185 {
1186 Ra().Emit<EcmaCallspreaddyn>(node, func, thisReg, args);
1187 }
1188
NewObjSpread(const ir::AstNode * node,VReg obj,VReg target)1189 void PandaGen::NewObjSpread(const ir::AstNode *node, VReg obj, VReg target)
1190 {
1191 Ra().Emit<EcmaNewobjspreaddyn>(node, obj, target);
1192 }
1193
GetUnmappedArgs(const ir::AstNode * node)1194 void PandaGen::GetUnmappedArgs(const ir::AstNode *node)
1195 {
1196 Sa().Emit<EcmaGetunmappedargs>(node);
1197 }
1198
Negate(const ir::AstNode * node)1199 void PandaGen::Negate(const ir::AstNode *node)
1200 {
1201 Sa().Emit<EcmaNegate>(node);
1202 }
1203
ToBoolean(const ir::AstNode * node)1204 void PandaGen::ToBoolean(const ir::AstNode *node)
1205 {
1206 Sa().Emit<EcmaToboolean>(node);
1207 }
1208
ToNumber(const ir::AstNode * node,VReg arg)1209 void PandaGen::ToNumber(const ir::AstNode *node, VReg arg)
1210 {
1211 Ra().Emit<EcmaTonumber>(node, arg);
1212 }
1213
GetMethod(const ir::AstNode * node,VReg obj,const util::StringView & name)1214 void PandaGen::GetMethod(const ir::AstNode *node, VReg obj, const util::StringView &name)
1215 {
1216 Ra().Emit<EcmaGetmethod>(node, name, obj);
1217 }
1218
CreateGeneratorObj(const ir::AstNode * node,VReg funcObj)1219 void PandaGen::CreateGeneratorObj(const ir::AstNode *node, VReg funcObj)
1220 {
1221 Ra().Emit<EcmaCreategeneratorobj>(node, funcObj);
1222 }
1223
CreateAsyncGeneratorObj(const ir::AstNode * node,VReg funcObj)1224 void PandaGen::CreateAsyncGeneratorObj(const ir::AstNode *node, VReg funcObj)
1225 {
1226 Ra().Emit<EcmaCreateasyncgeneratorobj>(node, funcObj);
1227 }
1228
CreateIterResultObject(const ir::AstNode * node,bool done)1229 void PandaGen::CreateIterResultObject(const ir::AstNode *node, bool done)
1230 {
1231 Ra().Emit<EcmaCreateiterresultobj>(node, static_cast<int32_t>(done));
1232 }
1233
SuspendGenerator(const ir::AstNode * node,VReg genObj)1234 void PandaGen::SuspendGenerator(const ir::AstNode *node, VReg genObj)
1235 {
1236 Ra().Emit<EcmaSuspendgenerator>(node, genObj);
1237 }
1238
SuspendAsyncGenerator(const ir::AstNode * node,VReg asyncGenObj)1239 void PandaGen::SuspendAsyncGenerator(const ir::AstNode *node, VReg asyncGenObj)
1240 {
1241 Ra().Emit<EcmaSuspendasyncgenerator>(node, asyncGenObj);
1242 }
1243
GeneratorYield(const ir::AstNode * node,VReg genObj)1244 void PandaGen::GeneratorYield(const ir::AstNode *node, VReg genObj)
1245 {
1246 Ra().Emit<EcmaSetgeneratorstate>(node, genObj, static_cast<int32_t>(GeneratorState::SUSPENDED_YIELD));
1247 }
1248
GeneratorComplete(const ir::AstNode * node,VReg genObj)1249 void PandaGen::GeneratorComplete(const ir::AstNode *node, VReg genObj)
1250 {
1251 Ra().Emit<EcmaSetgeneratorstate>(node, genObj, static_cast<int32_t>(GeneratorState::COMPLETED));
1252 }
1253
ResumeGenerator(const ir::AstNode * node,VReg genObj)1254 void PandaGen::ResumeGenerator(const ir::AstNode *node, VReg genObj)
1255 {
1256 Ra().Emit<EcmaResumegenerator>(node, genObj);
1257 }
1258
GetResumeMode(const ir::AstNode * node,VReg genObj)1259 void PandaGen::GetResumeMode(const ir::AstNode *node, VReg genObj)
1260 {
1261 Ra().Emit<EcmaGetresumemode>(node, genObj);
1262 }
1263
AsyncFunctionEnter(const ir::AstNode * node)1264 void PandaGen::AsyncFunctionEnter(const ir::AstNode *node)
1265 {
1266 Sa().Emit<EcmaAsyncfunctionenter>(node);
1267 }
1268
AsyncFunctionAwait(const ir::AstNode * node,VReg asyncFuncObj)1269 void PandaGen::AsyncFunctionAwait(const ir::AstNode *node, VReg asyncFuncObj)
1270 {
1271 Ra().Emit<EcmaAsyncfunctionawait>(node, asyncFuncObj);
1272 }
1273
AsyncFunctionResolve(const ir::AstNode * node,VReg asyncFuncObj)1274 void PandaGen::AsyncFunctionResolve(const ir::AstNode *node, VReg asyncFuncObj)
1275 {
1276 Ra().Emit<EcmaAsyncfunctionresolve>(node, asyncFuncObj);
1277 }
1278
AsyncFunctionReject(const ir::AstNode * node,VReg asyncFuncObj)1279 void PandaGen::AsyncFunctionReject(const ir::AstNode *node, VReg asyncFuncObj)
1280 {
1281 Ra().Emit<EcmaAsyncfunctionreject>(node, asyncFuncObj);
1282 }
1283
AsyncGeneratorResolve(const ir::AstNode * node,VReg asyncGenObj)1284 void PandaGen::AsyncGeneratorResolve(const ir::AstNode *node, VReg asyncGenObj)
1285 {
1286 Ra().Emit<EcmaAsyncgeneratorresolve>(node, asyncGenObj);
1287 }
1288
AsyncGeneratorReject(const ir::AstNode * node,VReg asyncGenObj)1289 void PandaGen::AsyncGeneratorReject(const ir::AstNode *node, VReg asyncGenObj)
1290 {
1291 Ra().Emit<EcmaAsyncgeneratorreject>(node, asyncGenObj);
1292 }
1293
GetTemplateObject(const ir::AstNode * node,VReg value)1294 void PandaGen::GetTemplateObject(const ir::AstNode *node, VReg value)
1295 {
1296 Ra().Emit<EcmaGettemplateobject>(node, value);
1297 }
1298
CopyRestArgs(const ir::AstNode * node,uint32_t index)1299 void PandaGen::CopyRestArgs(const ir::AstNode *node, uint32_t index)
1300 {
1301 Sa().Emit<EcmaCopyrestargs>(node, index);
1302 }
1303
GetPropIterator(const ir::AstNode * node)1304 void PandaGen::GetPropIterator(const ir::AstNode *node)
1305 {
1306 Sa().Emit<EcmaGetpropiterator>(node);
1307 }
1308
GetNextPropName(const ir::AstNode * node,VReg iter)1309 void PandaGen::GetNextPropName(const ir::AstNode *node, VReg iter)
1310 {
1311 Ra().Emit<EcmaGetnextpropname>(node, iter);
1312 }
1313
CreateEmptyObject(const ir::AstNode * node)1314 void PandaGen::CreateEmptyObject(const ir::AstNode *node)
1315 {
1316 Sa().Emit<EcmaCreateemptyobject>(node);
1317 }
1318
CreateObjectWithBuffer(const ir::AstNode * node,uint32_t idx)1319 void PandaGen::CreateObjectWithBuffer(const ir::AstNode *node, uint32_t idx)
1320 {
1321 ASSERT(util::Helpers::IsInteger<uint32_t>(idx));
1322 Sa().Emit<EcmaCreateobjectwithbuffer>(node, util::Helpers::ToStringView(Allocator(), idx));
1323 }
1324
CreateObjectHavingMethod(const ir::AstNode * node,uint32_t idx)1325 void PandaGen::CreateObjectHavingMethod(const ir::AstNode *node, uint32_t idx)
1326 {
1327 ASSERT(util::Helpers::IsInteger<uint32_t>(idx));
1328 LoadAccumulator(node, LexEnv());
1329 Sa().Emit<EcmaCreateobjecthavingmethod>(node, util::Helpers::ToStringView(Allocator(), idx));
1330 }
1331
SetObjectWithProto(const ir::AstNode * node,VReg proto,VReg obj)1332 void PandaGen::SetObjectWithProto(const ir::AstNode *node, VReg proto, VReg obj)
1333 {
1334 Ra().Emit<EcmaSetobjectwithproto>(node, proto, obj);
1335 }
1336
CopyDataProperties(const ir::AstNode * node,VReg dst,VReg src)1337 void PandaGen::CopyDataProperties(const ir::AstNode *node, VReg dst, VReg src)
1338 {
1339 Ra().Emit<EcmaCopydataproperties>(node, dst, src);
1340 }
1341
DefineGetterSetterByValue(const ir::AstNode * node,std::tuple<VReg,VReg,VReg,VReg> registers,bool setName)1342 void PandaGen::DefineGetterSetterByValue(const ir::AstNode *node, std::tuple<VReg, VReg, VReg, VReg> registers,
1343 bool setName)
1344 {
1345 const auto [obj, name, getter, setter] = registers;
1346 LoadConst(node, setName ? Constant::JS_TRUE : Constant::JS_FALSE);
1347 Ra().Emit<EcmaDefinegettersetterbyvalue>(node, obj, name, getter, setter);
1348 }
1349
CreateEmptyArray(const ir::AstNode * node)1350 void PandaGen::CreateEmptyArray(const ir::AstNode *node)
1351 {
1352 Sa().Emit<EcmaCreateemptyarray>(node);
1353 }
1354
CreateArrayWithBuffer(const ir::AstNode * node,uint32_t idx)1355 void PandaGen::CreateArrayWithBuffer(const ir::AstNode *node, uint32_t idx)
1356 {
1357 ASSERT(util::Helpers::IsInteger<uint32_t>(idx));
1358 Sa().Emit<EcmaCreatearraywithbuffer>(node, util::Helpers::ToStringView(Allocator(), idx));
1359 }
1360
HandleArrayLiterals(const ir::AstNode * node,const ArenaVector<ir::Expression * > & elements)1361 size_t PandaGen::HandleArrayLiterals(const ir::AstNode *node, const ArenaVector<ir::Expression *> &elements)
1362 {
1363 LiteralBuffer buf {};
1364
1365 size_t i = 0;
1366 // This loop handles constant literal data by collecting it into a literal buffer
1367 // until a non-constant element is encountered.
1368 while (i < elements.size()) {
1369 Literal lit = util::Helpers::ToConstantLiteral(elements[i]);
1370 if (lit.IsInvalid()) {
1371 break;
1372 }
1373
1374 buf.emplace_back(std::move(lit));
1375 i++;
1376 }
1377
1378 if (buf.empty()) {
1379 CreateEmptyArray(node);
1380 } else {
1381 uint32_t bufIdx = AddLiteralBuffer(std::move(buf));
1382 CreateArrayWithBuffer(node, bufIdx);
1383 }
1384 return i;
1385 }
1386
HandleArraySpread(const ir::AstNode * node,const ArenaVector<ir::Expression * > & elements,VReg obj)1387 void PandaGen::HandleArraySpread(const ir::AstNode *node, const ArenaVector<ir::Expression *> &elements, VReg obj)
1388 {
1389 size_t i = 0;
1390 bool hasSpread = false;
1391
1392 // This loop handles array elements until a spread element is encountered
1393 for (; i < elements.size(); i++) {
1394 const ir::Expression *elem = elements[i];
1395
1396 if (elem->IsOmittedExpression()) {
1397 continue;
1398 }
1399
1400 if (elem->IsSpreadElement()) {
1401 // The next loop will handle arrays that have a spread element
1402 hasSpread = true;
1403 break;
1404 }
1405
1406 elem->Compile(this);
1407 StOwnByIndex(elem, obj, i);
1408 }
1409
1410 RegScope rs(this);
1411 VReg idxReg {};
1412
1413 if (hasSpread) {
1414 idxReg = AllocReg();
1415 LoadAccumulatorInt(node, i);
1416 StoreAccumulator(node, idxReg);
1417 }
1418
1419 // This loop handles arrays that contain spread elements
1420 for (; i < elements.size(); i++) {
1421 const ir::Expression *elem = elements[i];
1422
1423 if (elem->IsSpreadElement()) {
1424 elem->AsSpreadElement()->Argument()->Compile(this);
1425
1426 StoreArraySpread(elem, obj, idxReg);
1427 StoreAccumulator(elem, idxReg);
1428 continue;
1429 }
1430
1431 if (!elem->IsOmittedExpression()) {
1432 elem->Compile(this);
1433 StOwnByValue(elem, obj, idxReg);
1434 }
1435
1436 Unary(elem, lexer::TokenType::PUNCTUATOR_PLUS_PLUS, idxReg);
1437 StoreAccumulator(elem, idxReg);
1438 }
1439
1440 // If the last element is omitted, we also have to update the length property
1441 if (elements.back()->IsOmittedExpression()) {
1442 // if there was a spread value then acc already contains the length
1443 if (!hasSpread) {
1444 LoadAccumulatorInt(node, i);
1445 }
1446
1447 StOwnByName(node, obj, "length");
1448 }
1449 }
1450
CreateArray(const ir::AstNode * node,const ArenaVector<ir::Expression * > & elements,VReg obj)1451 void PandaGen::CreateArray(const ir::AstNode *node, const ArenaVector<ir::Expression *> &elements, VReg obj)
1452 {
1453 if (elements.empty()) {
1454 CreateEmptyArray(node);
1455 StoreAccumulator(node, obj);
1456 return;
1457 }
1458
1459 const auto i = HandleArrayLiterals(node, elements);
1460
1461 StoreAccumulator(node, obj);
1462
1463 if (i == elements.size()) {
1464 return;
1465 }
1466
1467 HandleArraySpread(node, elements, obj);
1468
1469 LoadAccumulator(node, obj);
1470 }
1471
StoreArraySpread(const ir::AstNode * node,VReg array,VReg index)1472 void PandaGen::StoreArraySpread(const ir::AstNode *node, VReg array, VReg index)
1473 {
1474 Ra().Emit<EcmaStarrayspread>(node, array, index);
1475 }
1476
CreateRegExpWithLiteral(const ir::AstNode * node,const util::StringView & pattern,uint8_t flags)1477 void PandaGen::CreateRegExpWithLiteral(const ir::AstNode *node, const util::StringView &pattern, uint8_t flags)
1478 {
1479 Sa().Emit<EcmaCreateregexpwithliteral>(node, pattern, flags);
1480 }
1481
ThrowIfNotObject(const ir::AstNode * node)1482 void PandaGen::ThrowIfNotObject(const ir::AstNode *node)
1483 {
1484 Ra().Emit<EcmaThrowifnotobject>(node);
1485 }
1486
ThrowThrowNotExist(const ir::AstNode * node)1487 void PandaGen::ThrowThrowNotExist(const ir::AstNode *node)
1488 {
1489 Sa().Emit<EcmaThrowthrownotexists>(node);
1490 }
1491
GetIterator(const ir::AstNode * node)1492 void PandaGen::GetIterator(const ir::AstNode *node)
1493 {
1494 Sa().Emit<EcmaGetiterator>(node);
1495 }
1496
GetAsyncIterator(const ir::AstNode * node)1497 void PandaGen::GetAsyncIterator(const ir::AstNode *node)
1498 {
1499 Sa().Emit<EcmaGetasynciterator>(node);
1500 }
1501
CreateObjectWithExcludedKeys(const ir::AstNode * node,VReg obj,VReg argStart,size_t argCount)1502 void PandaGen::CreateObjectWithExcludedKeys(const ir::AstNode *node, VReg obj, VReg argStart, size_t argCount)
1503 {
1504 ASSERT(argStart.GetIndex() == obj.GetIndex() - 1);
1505 if (argCount == 0) { // Do not emit undefined register
1506 argStart = obj;
1507 }
1508
1509 Rra().Emit<EcmaCreateobjectwithexcludedkeys>(node, argStart, argCount, static_cast<int64_t>(argCount), obj,
1510 argStart);
1511 }
1512
ThrowObjectNonCoercible(const ir::AstNode * node)1513 void PandaGen::ThrowObjectNonCoercible(const ir::AstNode *node)
1514 {
1515 Sa().Emit<EcmaThrowpatternnoncoercible>(node);
1516 }
1517
CloseIterator(const ir::AstNode * node,VReg iter)1518 void PandaGen::CloseIterator(const ir::AstNode *node, VReg iter)
1519 {
1520 Ra().Emit<EcmaCloseiterator>(node, iter);
1521 }
1522
ImportModule(const ir::AstNode * node,const util::StringView & name)1523 void PandaGen::ImportModule(const ir::AstNode *node, const util::StringView &name)
1524 {
1525 Sa().Emit<EcmaImportmodule>(node, name);
1526 }
1527
SetClassComputedFields(const ir::AstNode * node,VReg classReg,VReg computedInstanceFieldArray)1528 void PandaGen::SetClassComputedFields(const ir::AstNode *node, VReg classReg, VReg computedInstanceFieldArray)
1529 {
1530 Ra().Emit<EcmaSetclasscomputedfields>(node, classReg, computedInstanceFieldArray);
1531 }
1532
DefineClassWithBuffer(const ir::AstNode * node,const util::StringView & ctorId,uint32_t litIdx,VReg lexenv,VReg base)1533 void PandaGen::DefineClassWithBuffer(const ir::AstNode *node, const util::StringView &ctorId, uint32_t litIdx,
1534 VReg lexenv, VReg base)
1535 {
1536 Ra().Emit<EcmaDefineclasswithbuffer>(node, ctorId, litIdx, lexenv, base);
1537 }
1538
LoadClassComputedInstanceFields(const ir::AstNode * node,VReg ctor)1539 void PandaGen::LoadClassComputedInstanceFields(const ir::AstNode *node, VReg ctor)
1540 {
1541 Sa().Emit<EcmaLoadclasscomputedinstancefields>(node, ctor);
1542 }
1543
DefineClassPrivateFields(const ir::AstNode * node,uint32_t privateBufIdx)1544 void PandaGen::DefineClassPrivateFields(const ir::AstNode *node, uint32_t privateBufIdx)
1545 {
1546 Sa().Emit<EcmaDefineclassprivatefields>(node, util::Helpers::ToStringView(Allocator(), privateBufIdx), LexEnv());
1547 }
1548
ClassFieldAdd(const ir::AstNode * node,VReg obj,VReg prop)1549 void PandaGen::ClassFieldAdd(const ir::AstNode *node, VReg obj, VReg prop)
1550 {
1551 Ra().Emit<EcmaClassfieldadd>(node, obj, prop);
1552 }
1553
ClassPrivateFieldAdd(const ir::AstNode * node,VReg ctor,VReg obj,const util::StringView & prop)1554 void PandaGen::ClassPrivateFieldAdd(const ir::AstNode *node, VReg ctor, VReg obj, const util::StringView &prop)
1555 {
1556 Ra().Emit<EcmaClassprivatefieldadd>(node, prop, ctor, obj);
1557 }
1558
ClassPrivateMethodOrAccessorAdd(const ir::AstNode * node,VReg ctor,VReg obj)1559 void PandaGen::ClassPrivateMethodOrAccessorAdd(const ir::AstNode *node, VReg ctor, VReg obj)
1560 {
1561 Ra().Emit<EcmaClassprivatemethodoraccessoradd>(node, ctor, obj);
1562 }
1563
ClassPrivateFieldGet(const ir::AstNode * node,VReg ctor,VReg obj,const util::StringView & prop)1564 void PandaGen::ClassPrivateFieldGet(const ir::AstNode *node, VReg ctor, VReg obj, const util::StringView &prop)
1565 {
1566 Ra().Emit<EcmaClassprivatefieldget>(node, prop, ctor, obj);
1567 }
1568
ClassPrivateFieldSet(const ir::AstNode * node,VReg ctor,VReg obj,const util::StringView & prop)1569 void PandaGen::ClassPrivateFieldSet(const ir::AstNode *node, VReg ctor, VReg obj, const util::StringView &prop)
1570 {
1571 Ra().Emit<EcmaClassprivatefieldset>(node, prop, ctor, obj);
1572 }
1573
ClassPrivateFieldIn(const ir::AstNode * node,VReg ctor,const util::StringView & prop)1574 void PandaGen::ClassPrivateFieldIn(const ir::AstNode *node, VReg ctor, const util::StringView &prop)
1575 {
1576 Ra().Emit<EcmaClassprivatefieldin>(node, prop, ctor);
1577 }
1578
LoadModuleVariable(const ir::AstNode * node,VReg module,const util::StringView & name)1579 void PandaGen::LoadModuleVariable(const ir::AstNode *node, VReg module, const util::StringView &name)
1580 {
1581 Ra().Emit<EcmaLdmodvarbyname>(node, name, module);
1582 }
1583
StoreModuleVar(const ir::AstNode * node,const util::StringView & name)1584 void PandaGen::StoreModuleVar(const ir::AstNode *node, const util::StringView &name)
1585 {
1586 Sa().Emit<EcmaStmodulevar>(node, name);
1587 }
1588
CopyModule(const ir::AstNode * node,VReg module)1589 void PandaGen::CopyModule(const ir::AstNode *node, VReg module)
1590 {
1591 Ra().Emit<EcmaCopymodule>(node, module);
1592 }
1593
StSuperByName(const ir::AstNode * node,VReg obj,const util::StringView & key)1594 void PandaGen::StSuperByName(const ir::AstNode *node, VReg obj, const util::StringView &key)
1595 {
1596 Ra().Emit<EcmaStsuperbyname>(node, key, obj);
1597 }
1598
LdSuperByName(const ir::AstNode * node,const util::StringView & key)1599 void PandaGen::LdSuperByName(const ir::AstNode *node, const util::StringView &key)
1600 {
1601 Ra().Emit<EcmaLdsuperbyname>(node, key);
1602 }
1603
StSuperByValue(const ir::AstNode * node,VReg obj,VReg prop)1604 void PandaGen::StSuperByValue(const ir::AstNode *node, VReg obj, VReg prop)
1605 {
1606 Ra().Emit<EcmaStsuperbyvalue>(node, obj, prop);
1607 }
1608
LdSuperByValue(const ir::AstNode * node,VReg obj)1609 void PandaGen::LdSuperByValue(const ir::AstNode *node, VReg obj)
1610 {
1611 Ra().Emit<EcmaLdsuperbyvalue>(node, obj);
1612 }
1613
StoreSuperProperty(const ir::AstNode * node,VReg obj,const Operand & prop)1614 void PandaGen::StoreSuperProperty(const ir::AstNode *node, VReg obj, const Operand &prop)
1615 {
1616 if (std::holds_alternative<util::StringView>(prop)) {
1617 StSuperByName(node, obj, std::get<util::StringView>(prop));
1618 return;
1619 }
1620
1621 ASSERT(std::holds_alternative<VReg>(prop));
1622 StSuperByValue(node, obj, std::get<VReg>(prop));
1623 }
1624
LoadSuperProperty(const ir::AstNode * node,const Operand & prop)1625 void PandaGen::LoadSuperProperty(const ir::AstNode *node, const Operand &prop)
1626 {
1627 if (std::holds_alternative<util::StringView>(prop)) {
1628 LdSuperByName(node, std::get<util::StringView>(prop));
1629 return;
1630 }
1631
1632 ASSERT(std::holds_alternative<VReg>(prop));
1633 LdSuperByValue(node, std::get<VReg>(prop));
1634 }
1635
LoadLexicalVar(const ir::AstNode * node,uint32_t level,uint32_t slot)1636 void PandaGen::LoadLexicalVar(const ir::AstNode *node, uint32_t level, uint32_t slot)
1637 {
1638 Sa().Emit<EcmaLdlexvardyn>(node, level, slot);
1639 }
1640
LoadLexical(const ir::AstNode * node,const util::StringView & name,uint32_t level,uint32_t slot)1641 void PandaGen::LoadLexical(const ir::AstNode *node, const util::StringView &name, uint32_t level, uint32_t slot)
1642 {
1643 Sa().Emit<EcmaLdlexdyn>(node, name, level, slot);
1644 }
1645
StoreLexicalVar(const ir::AstNode * node,uint32_t level,uint32_t slot)1646 void PandaGen::StoreLexicalVar(const ir::AstNode *node, uint32_t level, uint32_t slot)
1647 {
1648 Ra().Emit<EcmaStlexvardyn>(node, level, slot);
1649 }
1650
StoreLexical(const ir::AstNode * node,const util::StringView & name,uint32_t level,uint32_t slot)1651 void PandaGen::StoreLexical(const ir::AstNode *node, const util::StringView &name, uint32_t level, uint32_t slot)
1652 {
1653 Ra().Emit<EcmaStlexdyn>(node, name, level, slot);
1654 }
1655
ThrowIfSuperNotCorrectCall(const ir::AstNode * node,int64_t num)1656 void PandaGen::ThrowIfSuperNotCorrectCall(const ir::AstNode *node, int64_t num)
1657 {
1658 Sa().Emit<EcmaThrowifsupernotcorrectcall>(node, num);
1659 }
1660
ThrowTdz(const ir::AstNode * node,const util::StringView & name)1661 void PandaGen::ThrowTdz(const ir::AstNode *node, const util::StringView &name)
1662 {
1663 Sa().Emit<EcmaThrowtdz>(node, name);
1664 }
1665
ThrowConstAssignment(const ir::AstNode * node,const util::StringView & name)1666 void PandaGen::ThrowConstAssignment(const ir::AstNode *node, const util::StringView &name)
1667 {
1668 Ra().Emit<EcmaThrowconstassignment>(node, name);
1669 }
1670
PopLexEnv(const ir::AstNode * node)1671 void PandaGen::PopLexEnv(const ir::AstNode *node)
1672 {
1673 Sa().Emit<EcmaPoplexenvdyn>(node);
1674 }
1675
CopyLexEnv(const ir::AstNode * node)1676 void PandaGen::CopyLexEnv(const ir::AstNode *node)
1677 {
1678 Sa().Emit<EcmaCopylexenvdyn>(node);
1679 }
1680
NewLexEnv(const ir::AstNode * node,uint32_t num)1681 void PandaGen::NewLexEnv(const ir::AstNode *node, uint32_t num)
1682 {
1683 Sa().Emit<EcmaNewlexenvdyn>(node, num);
1684 }
1685
LdLexEnv(const ir::AstNode * node)1686 void PandaGen::LdLexEnv(const ir::AstNode *node)
1687 {
1688 Sa().Emit<EcmaLdlexenvdyn>(node);
1689 }
1690
ToNamedPropertyKey(const ir::Expression * prop,bool isComputed)1691 Operand PandaGen::ToNamedPropertyKey(const ir::Expression *prop, bool isComputed)
1692 {
1693 VReg res {VReg::REG_START};
1694
1695 if (!isComputed) {
1696 if (prop->IsIdentifier()) {
1697 return prop->AsIdentifier()->Name();
1698 }
1699 return res;
1700 }
1701
1702 if (prop->IsStringLiteral()) {
1703 const util::StringView &str = prop->AsStringLiteral()->Str();
1704
1705 /* NOTE: dbatyai. remove this when runtime handles __proto__ as property name correctly */
1706 if (str.Is("__proto__")) {
1707 return res;
1708 }
1709
1710 int64_t index = util::Helpers::GetIndex(str);
1711 if (index != util::Helpers::INVALID_INDEX) {
1712 return index;
1713 }
1714
1715 return str;
1716 }
1717
1718 if (prop->IsNumberLiteral()) {
1719 auto num = prop->AsNumberLiteral()->Number().GetDouble();
1720 if (util::Helpers::IsIndex(num)) {
1721 return static_cast<int64_t>(num);
1722 }
1723
1724 return prop->AsNumberLiteral()->Str();
1725 }
1726
1727 return res;
1728 }
1729
ToPropertyKey(const ir::Expression * prop,bool isComputed,bool isSuperExpression)1730 Operand PandaGen::ToPropertyKey(const ir::Expression *prop, bool isComputed, bool isSuperExpression)
1731 {
1732 Operand op = ToNamedPropertyKey(prop, isComputed);
1733 if (std::holds_alternative<util::StringView>(op)) {
1734 return op;
1735 }
1736
1737 if (std::holds_alternative<int64_t>(op) && !isSuperExpression) {
1738 return op;
1739 }
1740
1741 VReg objReg = AllocReg();
1742 StoreAccumulator(prop, objReg);
1743 prop->Compile(this);
1744
1745 return objReg;
1746 }
1747
ToOwnPropertyKey(const ir::Expression * prop,bool isComputed)1748 Operand PandaGen::ToOwnPropertyKey(const ir::Expression *prop, bool isComputed)
1749 {
1750 Operand op = ToNamedPropertyKey(prop, isComputed);
1751 if (std::holds_alternative<util::StringView>(op)) {
1752 ASSERT(std::holds_alternative<util::StringView>(op) || std::holds_alternative<int64_t>(op));
1753 return op;
1754 }
1755
1756 if (std::holds_alternative<int64_t>(op)) {
1757 return op;
1758 }
1759
1760 VReg propReg = AllocReg();
1761 prop->Compile(this);
1762 StoreAccumulator(prop, propReg);
1763
1764 return propReg;
1765 }
1766
LoadPropertyKeyAcc(const ir::Expression * prop,bool isComputed)1767 void PandaGen::LoadPropertyKeyAcc(const ir::Expression *prop, bool isComputed)
1768 {
1769 Operand op = ToNamedPropertyKey(prop, isComputed);
1770 if (std::holds_alternative<util::StringView>(op)) {
1771 LoadAccumulatorString(prop, std::get<util::StringView>(op));
1772 } else if (std::holds_alternative<int64_t>(op)) {
1773 LoadAccumulatorInt(prop, static_cast<size_t>(std::get<int64_t>(op)));
1774 } else {
1775 prop->Compile(this);
1776 }
1777 }
1778
LoadPropertyKey(const ir::Expression * prop,bool isComputed)1779 VReg PandaGen::LoadPropertyKey(const ir::Expression *prop, bool isComputed)
1780 {
1781 LoadPropertyKeyAcc(prop, isComputed);
1782
1783 VReg propReg = AllocReg();
1784 StoreAccumulator(prop, propReg);
1785
1786 return propReg;
1787 }
1788
LoadEvalVariable(const ir::AstNode * node,const util::StringView & name)1789 void PandaGen::LoadEvalVariable(const ir::AstNode *node, const util::StringView &name)
1790 {
1791 RegScope rs(this);
1792 LoadLexicalContext(node);
1793 Ra().Emit<EcmaLdevalvar>(node, name);
1794 }
1795
StoreEvalVariable(const ir::AstNode * node,const util::StringView & name)1796 void PandaGen::StoreEvalVariable(const ir::AstNode *node, const util::StringView &name)
1797 {
1798 RegScope rs(this);
1799 VReg value = AllocReg();
1800 StoreAccumulator(node, value);
1801 LoadLexicalContext(node);
1802 Ra().Emit<EcmaStevalvar>(node, name, value);
1803 }
1804
DirectEval(const ir::AstNode * node,uint32_t parserStatus)1805 void PandaGen::DirectEval(const ir::AstNode *node, uint32_t parserStatus)
1806 {
1807 RegScope rs(this);
1808
1809 uint32_t index = 0;
1810 uint32_t evalBindingsIndex = 0;
1811 VReg arg0 = AllocReg();
1812 StoreAccumulator(node, arg0);
1813 VReg bindings = AllocReg();
1814 CreateEmptyArray(node);
1815 StoreAccumulator(node, bindings);
1816
1817 GetFunctionObject(node);
1818 StOwnByIndex(node, bindings, index++);
1819 GetNewTarget(node);
1820 StOwnByIndex(node, bindings, index++);
1821 GetThis(node);
1822 StOwnByIndex(node, bindings, index++);
1823
1824 VReg evalBindings = AllocReg();
1825 CreateEmptyArray(node);
1826 StoreAccumulator(node, evalBindings);
1827
1828 LoadAccumulator(node, LexEnv());
1829 StOwnByIndex(node, evalBindings, evalBindingsIndex++);
1830
1831 const auto *iter = Scope()->EnclosingVariableScope();
1832
1833 while (true) {
1834 uint32_t scopeBindingsBuf = iter->EvalBindings();
1835 if (scopeBindingsBuf != INVALID_LITERAL_BUFFER_ID) {
1836 Sa().Emit<EcmaLdevalbindings>(node, util::Helpers::ToStringView(Allocator(), scopeBindingsBuf));
1837 StOwnByIndex(node, evalBindings, evalBindingsIndex++);
1838 }
1839
1840 if (iter->Parent() == nullptr) {
1841 break;
1842 }
1843
1844 iter = iter->Parent()->EnclosingVariableScope();
1845 }
1846
1847 LoadAccumulator(node, evalBindings);
1848 StOwnByIndex(node, bindings, index++);
1849
1850 Sa().Emit<EcmaDirecteval>(node, static_cast<int64_t>(parserStatus), arg0, bindings);
1851 }
1852
LoadLexicalContext(const ir::AstNode * node)1853 void PandaGen::LoadLexicalContext(const ir::AstNode *node)
1854 {
1855 auto result = Scope()->Find(varbinder::VarBinder::LEXICAL_CONTEXT_PARAM);
1856 LoadLexicalVar(node, result.lexLevel, result.variable->AsLocalVariable()->LexIdx());
1857 }
1858
IsDirectEval() const1859 bool PandaGen::IsDirectEval() const
1860 {
1861 return Context()->config->options->CompilerOptions().isDirectEval;
1862 }
1863
IsEval() const1864 bool PandaGen::IsEval() const
1865 {
1866 return Context()->config->options->CompilerOptions().isEval;
1867 }
1868
GetVRegType(VReg vreg) const1869 const checker::Type *PandaGen::GetVRegType(VReg vreg) const
1870 {
1871 // We assume that all used regs have any type
1872 if (vreg.GetIndex() > NextReg().GetIndex()) {
1873 return Context()->checker->GetGlobalTypesHolder()->GlobalAnyType();
1874 }
1875
1876 return nullptr;
1877 }
1878
1879 } // namespace ark::es2panda::compiler
1880