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ethannicholasb3058bd2016-07-01 08:22:01 -07001/*
2 * Copyright 2016 Google Inc.
3 *
4 * Use of this source code is governed by a BSD-style license that can be
5 * found in the LICENSE file.
6 */
Mike Klein6ad99092016-10-26 10:35:22 -04007
Mike Kleinc0bd9f92019-04-23 12:05:21 -05008#include "src/sksl/SkSLCompiler.h"
ethannicholasb3058bd2016-07-01 08:22:01 -07009
John Stilesfbd050b2020-08-03 13:21:46 -040010#include <memory>
John Stilesb8e010c2020-08-11 18:05:39 -040011#include <unordered_set>
John Stilesfbd050b2020-08-03 13:21:46 -040012
John Stilesb92641c2020-08-31 18:09:01 -040013#include "src/sksl/SkSLAnalysis.h"
Mike Kleinc0bd9f92019-04-23 12:05:21 -050014#include "src/sksl/SkSLByteCodeGenerator.h"
15#include "src/sksl/SkSLCFGGenerator.h"
16#include "src/sksl/SkSLCPPCodeGenerator.h"
17#include "src/sksl/SkSLGLSLCodeGenerator.h"
18#include "src/sksl/SkSLHCodeGenerator.h"
19#include "src/sksl/SkSLIRGenerator.h"
20#include "src/sksl/SkSLMetalCodeGenerator.h"
21#include "src/sksl/SkSLPipelineStageCodeGenerator.h"
Ethan Nicholasc18bb512020-07-28 14:46:53 -040022#include "src/sksl/SkSLRehydrator.h"
Mike Kleinc0bd9f92019-04-23 12:05:21 -050023#include "src/sksl/SkSLSPIRVCodeGenerator.h"
Brian Osmanc0243912020-02-19 15:35:26 -050024#include "src/sksl/SkSLSPIRVtoHLSL.h"
Mike Kleinc0bd9f92019-04-23 12:05:21 -050025#include "src/sksl/ir/SkSLEnum.h"
26#include "src/sksl/ir/SkSLExpression.h"
27#include "src/sksl/ir/SkSLExpressionStatement.h"
28#include "src/sksl/ir/SkSLFunctionCall.h"
29#include "src/sksl/ir/SkSLIntLiteral.h"
30#include "src/sksl/ir/SkSLModifiersDeclaration.h"
31#include "src/sksl/ir/SkSLNop.h"
32#include "src/sksl/ir/SkSLSymbolTable.h"
33#include "src/sksl/ir/SkSLTernaryExpression.h"
34#include "src/sksl/ir/SkSLUnresolvedFunction.h"
35#include "src/sksl/ir/SkSLVarDeclarations.h"
John Stilese6150002020-10-05 12:03:53 -040036#include "src/utils/SkBitSet.h"
ethannicholasb3058bd2016-07-01 08:22:01 -070037
Ethan Nicholasb33fa3f2020-08-06 13:00:19 -040038#include <fstream>
39
Ethan Nicholasa11035b2019-11-26 16:27:47 -050040#if !defined(SKSL_STANDALONE) & SK_SUPPORT_GPU
41#include "include/gpu/GrContextOptions.h"
42#include "src/gpu/GrShaderCaps.h"
43#endif
44
Ethan Nicholasa6ae1f72017-03-16 09:56:54 -040045#ifdef SK_ENABLE_SPIRV_VALIDATION
46#include "spirv-tools/libspirv.hpp"
47#endif
48
Brian Osman3d87e9f2020-10-08 11:50:22 -040049#if defined(SKSL_STANDALONE)
Ethan Nicholasc18bb512020-07-28 14:46:53 -040050
Brian Osman3d87e9f2020-10-08 11:50:22 -040051// In standalone mode, we load the textual sksl source files. GN generates or copies these files
52// to the skslc executable directory. The "data" in this mode is just the filename.
53#define MODULE_DATA(name) MakeModulePath("sksl_" #name ".sksl")
54
55#else
56
57// At runtime, we load the dehydrated sksl data files. The data is a (pointer, size) pair.
Ethan Nicholasc18bb512020-07-28 14:46:53 -040058#include "src/sksl/generated/sksl_fp.dehydrated.sksl"
59#include "src/sksl/generated/sksl_frag.dehydrated.sksl"
60#include "src/sksl/generated/sksl_geom.dehydrated.sksl"
61#include "src/sksl/generated/sksl_gpu.dehydrated.sksl"
62#include "src/sksl/generated/sksl_interp.dehydrated.sksl"
63#include "src/sksl/generated/sksl_pipeline.dehydrated.sksl"
64#include "src/sksl/generated/sksl_vert.dehydrated.sksl"
65
Brian Osman3d87e9f2020-10-08 11:50:22 -040066#define MODULE_DATA(name) MakeModuleData(SKSL_INCLUDE_sksl_##name,\
67 SKSL_INCLUDE_sksl_##name##_LENGTH)
Ethan Nicholasc18bb512020-07-28 14:46:53 -040068
69#endif
Ethan Nicholas0d997662019-04-08 09:46:01 -040070
ethannicholasb3058bd2016-07-01 08:22:01 -070071namespace SkSL {
72
Brian Osman88cda172020-10-09 12:05:16 -040073class AutoSource {
74public:
75 AutoSource(Compiler* compiler, const String* source)
76 : fCompiler(compiler), fOldSource(fCompiler->fSource) {
77 fCompiler->fSource = source;
78 }
79
80 ~AutoSource() { fCompiler->fSource = fOldSource; }
81
82 Compiler* fCompiler;
83 const String* fOldSource;
84};
85
Ethan Nicholas6e1cbc02017-07-14 10:12:15 -040086Compiler::Compiler(Flags flags)
Brian Osman00a8b5b2020-10-02 09:06:04 -040087: fFlags(flags)
John Stiles810c8cf2020-08-26 19:46:27 -040088, fContext(std::make_shared<Context>())
Ethan Nicholas6e1cbc02017-07-14 10:12:15 -040089, fErrorCount(0) {
Brian Osmaneac49832020-09-18 11:49:22 -040090 fRootSymbolTable = std::make_shared<SymbolTable>(this);
John Stilese497a082020-10-12 12:03:59 -040091 fIRGenerator = std::make_unique<IRGenerator>(fContext.get(), *this);
Brian Osman88cda172020-10-09 12:05:16 -040092#define ADD_TYPE(t) fRootSymbolTable->addWithoutOwnership(fContext->f##t##_Type.get())
ethannicholasb3058bd2016-07-01 08:22:01 -070093 ADD_TYPE(Void);
94 ADD_TYPE(Float);
Ethan Nicholas5af9ea32017-07-28 15:19:46 -040095 ADD_TYPE(Float2);
96 ADD_TYPE(Float3);
97 ADD_TYPE(Float4);
Ethan Nicholasdcba08e2017-08-02 10:52:54 -040098 ADD_TYPE(Half);
99 ADD_TYPE(Half2);
100 ADD_TYPE(Half3);
101 ADD_TYPE(Half4);
ethannicholasb3058bd2016-07-01 08:22:01 -0700102 ADD_TYPE(Int);
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400103 ADD_TYPE(Int2);
104 ADD_TYPE(Int3);
105 ADD_TYPE(Int4);
ethannicholasb3058bd2016-07-01 08:22:01 -0700106 ADD_TYPE(UInt);
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400107 ADD_TYPE(UInt2);
108 ADD_TYPE(UInt3);
109 ADD_TYPE(UInt4);
Ethan Nicholasdcba08e2017-08-02 10:52:54 -0400110 ADD_TYPE(Short);
111 ADD_TYPE(Short2);
112 ADD_TYPE(Short3);
113 ADD_TYPE(Short4);
114 ADD_TYPE(UShort);
115 ADD_TYPE(UShort2);
116 ADD_TYPE(UShort3);
117 ADD_TYPE(UShort4);
Ruiqi Maob609e6d2018-07-17 10:19:38 -0400118 ADD_TYPE(Byte);
119 ADD_TYPE(Byte2);
120 ADD_TYPE(Byte3);
121 ADD_TYPE(Byte4);
122 ADD_TYPE(UByte);
123 ADD_TYPE(UByte2);
124 ADD_TYPE(UByte3);
125 ADD_TYPE(UByte4);
ethannicholasb3058bd2016-07-01 08:22:01 -0700126 ADD_TYPE(Bool);
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400127 ADD_TYPE(Bool2);
128 ADD_TYPE(Bool3);
129 ADD_TYPE(Bool4);
130 ADD_TYPE(Float2x2);
131 ADD_TYPE(Float2x3);
132 ADD_TYPE(Float2x4);
133 ADD_TYPE(Float3x2);
134 ADD_TYPE(Float3x3);
135 ADD_TYPE(Float3x4);
136 ADD_TYPE(Float4x2);
137 ADD_TYPE(Float4x3);
138 ADD_TYPE(Float4x4);
Ethan Nicholasdcba08e2017-08-02 10:52:54 -0400139 ADD_TYPE(Half2x2);
140 ADD_TYPE(Half2x3);
141 ADD_TYPE(Half2x4);
142 ADD_TYPE(Half3x2);
143 ADD_TYPE(Half3x3);
144 ADD_TYPE(Half3x4);
145 ADD_TYPE(Half4x2);
146 ADD_TYPE(Half4x3);
147 ADD_TYPE(Half4x4);
ethannicholasb3058bd2016-07-01 08:22:01 -0700148 ADD_TYPE(GenType);
Ethan Nicholasdcba08e2017-08-02 10:52:54 -0400149 ADD_TYPE(GenHType);
ethannicholasb3058bd2016-07-01 08:22:01 -0700150 ADD_TYPE(GenIType);
151 ADD_TYPE(GenUType);
152 ADD_TYPE(GenBType);
153 ADD_TYPE(Mat);
154 ADD_TYPE(Vec);
155 ADD_TYPE(GVec);
156 ADD_TYPE(GVec2);
157 ADD_TYPE(GVec3);
158 ADD_TYPE(GVec4);
Ethan Nicholasdcba08e2017-08-02 10:52:54 -0400159 ADD_TYPE(HVec);
ethannicholasb3058bd2016-07-01 08:22:01 -0700160 ADD_TYPE(IVec);
161 ADD_TYPE(UVec);
Ethan Nicholasdcba08e2017-08-02 10:52:54 -0400162 ADD_TYPE(SVec);
163 ADD_TYPE(USVec);
Ruiqi Maob609e6d2018-07-17 10:19:38 -0400164 ADD_TYPE(ByteVec);
165 ADD_TYPE(UByteVec);
ethannicholasb3058bd2016-07-01 08:22:01 -0700166 ADD_TYPE(BVec);
167
168 ADD_TYPE(Sampler1D);
169 ADD_TYPE(Sampler2D);
170 ADD_TYPE(Sampler3D);
ethannicholas5961bc92016-10-12 06:39:56 -0700171 ADD_TYPE(SamplerExternalOES);
ethannicholasb3058bd2016-07-01 08:22:01 -0700172 ADD_TYPE(SamplerCube);
173 ADD_TYPE(Sampler2DRect);
174 ADD_TYPE(Sampler1DArray);
175 ADD_TYPE(Sampler2DArray);
176 ADD_TYPE(SamplerCubeArray);
177 ADD_TYPE(SamplerBuffer);
178 ADD_TYPE(Sampler2DMS);
179 ADD_TYPE(Sampler2DMSArray);
180
Brian Salomonbf7b6202016-11-11 16:08:03 -0500181 ADD_TYPE(ISampler2D);
182
Brian Salomon2a51de82016-11-16 12:06:01 -0500183 ADD_TYPE(Image2D);
184 ADD_TYPE(IImage2D);
185
Greg Daniel64773e62016-11-22 09:44:03 -0500186 ADD_TYPE(SubpassInput);
187 ADD_TYPE(SubpassInputMS);
188
ethannicholasb3058bd2016-07-01 08:22:01 -0700189 ADD_TYPE(GSampler1D);
190 ADD_TYPE(GSampler2D);
191 ADD_TYPE(GSampler3D);
192 ADD_TYPE(GSamplerCube);
193 ADD_TYPE(GSampler2DRect);
194 ADD_TYPE(GSampler1DArray);
195 ADD_TYPE(GSampler2DArray);
196 ADD_TYPE(GSamplerCubeArray);
197 ADD_TYPE(GSamplerBuffer);
198 ADD_TYPE(GSampler2DMS);
199 ADD_TYPE(GSampler2DMSArray);
200
201 ADD_TYPE(Sampler1DShadow);
202 ADD_TYPE(Sampler2DShadow);
203 ADD_TYPE(SamplerCubeShadow);
204 ADD_TYPE(Sampler2DRectShadow);
205 ADD_TYPE(Sampler1DArrayShadow);
206 ADD_TYPE(Sampler2DArrayShadow);
207 ADD_TYPE(SamplerCubeArrayShadow);
208 ADD_TYPE(GSampler2DArrayShadow);
209 ADD_TYPE(GSamplerCubeArrayShadow);
Ethan Nicholasc9472af2017-10-10 16:30:21 -0400210 ADD_TYPE(FragmentProcessor);
Stephen Whiteff5d7a22019-07-26 17:42:06 -0400211 ADD_TYPE(Sampler);
212 ADD_TYPE(Texture2D);
ethannicholasb3058bd2016-07-01 08:22:01 -0700213
Brian Osman28590d52020-03-23 16:59:08 -0400214 StringFragment fpAliasName("shader");
John Stiles49a547f2020-10-06 16:14:37 -0400215 fRootSymbolTable->addAlias(fpAliasName, fContext->fFragmentProcessor_Type.get());
Brian Osman28590d52020-03-23 16:59:08 -0400216
Brian Osman3887a012020-09-30 13:22:27 -0400217 // sk_Caps is "builtin", but all references to it are resolved to Settings, so we don't need to
218 // treat it as builtin (ie, no need to clone it into the Program).
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700219 StringFragment skCapsName("sk_Caps");
John Stilesb8cc6652020-10-08 09:12:07 -0400220 fRootSymbolTable->add(std::make_unique<Variable>(/*offset=*/-1,
Ethan Nicholas041fd0a2020-10-07 16:42:04 -0400221 fIRGenerator->fModifiers->handle(Modifiers()),
Ethan Nicholas453f67f2020-10-09 10:43:45 -0400222 skCapsName,
223 fContext->fSkCaps_Type.get(),
224 /*builtin=*/false,
225 Variable::Storage::kGlobal));
Ethan Nicholas3605ace2016-11-21 15:59:48 -0500226
Brian Osman3d87e9f2020-10-08 11:50:22 -0400227 fRootModule = {fRootSymbolTable, /*fIntrinsics=*/nullptr};
John Stilesbc0c29e2020-09-28 13:13:40 -0400228
Brian Osman3d87e9f2020-10-08 11:50:22 -0400229 fGPUModule = this->parseModule(Program::kFragment_Kind, MODULE_DATA(gpu), fRootModule);
230 fVertexModule = this->parseModule(Program::kVertex_Kind, MODULE_DATA(vert), fGPUModule);
231 fFragmentModule = this->parseModule(Program::kFragment_Kind, MODULE_DATA(frag), fGPUModule);
ethannicholasb3058bd2016-07-01 08:22:01 -0700232}
233
John Stiles656427a2020-08-27 15:26:26 -0400234Compiler::~Compiler() {}
ethannicholasb3058bd2016-07-01 08:22:01 -0700235
Brian Osman88cda172020-10-09 12:05:16 -0400236const ParsedModule& Compiler::loadGeometryModule() {
Brian Osman3d87e9f2020-10-08 11:50:22 -0400237 if (!fGeometryModule.fSymbols) {
238 fGeometryModule = this->parseModule(Program::kGeometry_Kind, MODULE_DATA(geom), fGPUModule);
Ethan Nicholasc18bb512020-07-28 14:46:53 -0400239 }
Brian Osman88cda172020-10-09 12:05:16 -0400240 return fGeometryModule;
Ethan Nicholasc18bb512020-07-28 14:46:53 -0400241}
242
Brian Osman88cda172020-10-09 12:05:16 -0400243const ParsedModule& Compiler::loadFPModule() {
Brian Osman3d87e9f2020-10-08 11:50:22 -0400244 if (!fFPModule.fSymbols) {
245 fFPModule =
246 this->parseModule(Program::kFragmentProcessor_Kind, MODULE_DATA(fp), fGPUModule);
Brian Osman8e2ef022020-09-30 13:26:43 -0400247 }
Brian Osman88cda172020-10-09 12:05:16 -0400248 return fFPModule;
Brian Osman8e2ef022020-09-30 13:26:43 -0400249}
250
Brian Osman88cda172020-10-09 12:05:16 -0400251const ParsedModule& Compiler::loadPipelineModule() {
Brian Osman3d87e9f2020-10-08 11:50:22 -0400252 if (!fPipelineModule.fSymbols) {
253 fPipelineModule =
254 this->parseModule(Program::kPipelineStage_Kind, MODULE_DATA(pipeline), fGPUModule);
Ethan Nicholasc18bb512020-07-28 14:46:53 -0400255 }
Brian Osman88cda172020-10-09 12:05:16 -0400256 return fPipelineModule;
Ethan Nicholasc18bb512020-07-28 14:46:53 -0400257}
258
Brian Osman88cda172020-10-09 12:05:16 -0400259const ParsedModule& Compiler::loadInterpreterModule() {
Brian Osman3d87e9f2020-10-08 11:50:22 -0400260 if (!fInterpreterModule.fSymbols) {
261 fInterpreterModule =
262 this->parseModule(Program::kGeneric_Kind, MODULE_DATA(interp), fRootModule);
Ethan Nicholasc18bb512020-07-28 14:46:53 -0400263 }
Brian Osman88cda172020-10-09 12:05:16 -0400264 return fInterpreterModule;
265}
266
267const ParsedModule& Compiler::moduleForProgramKind(Program::Kind kind) {
268 switch (kind) {
269 case Program::kVertex_Kind: return fVertexModule; break;
270 case Program::kFragment_Kind: return fFragmentModule; break;
271 case Program::kGeometry_Kind: return this->loadGeometryModule(); break;
272 case Program::kFragmentProcessor_Kind: return this->loadFPModule(); break;
273 case Program::kPipelineStage_Kind: return this->loadPipelineModule(); break;
274 case Program::kGeneric_Kind: return this->loadInterpreterModule(); break;
275 }
276 SkUNREACHABLE;
Ethan Nicholasc18bb512020-07-28 14:46:53 -0400277}
278
Brian Osman3d87e9f2020-10-08 11:50:22 -0400279LoadedModule Compiler::loadModule(Program::Kind kind,
280 ModuleData data,
281 std::shared_ptr<SymbolTable> base) {
Brian Osman3d87e9f2020-10-08 11:50:22 -0400282 if (!base) {
283 base = fRootSymbolTable;
284 }
285
286#if defined(SKSL_STANDALONE)
287 SkASSERT(data.fPath);
288 std::ifstream in(data.fPath);
Brian Osmane498b3c2020-09-23 14:42:11 -0400289 std::unique_ptr<String> text = std::make_unique<String>(std::istreambuf_iterator<char>(in),
290 std::istreambuf_iterator<char>());
Ethan Nicholasb33fa3f2020-08-06 13:00:19 -0400291 if (in.rdstate()) {
Brian Osman3d87e9f2020-10-08 11:50:22 -0400292 printf("error reading %s\n", data.fPath);
Ethan Nicholasb33fa3f2020-08-06 13:00:19 -0400293 abort();
294 }
Brian Osmane498b3c2020-09-23 14:42:11 -0400295 const String* source = fRootSymbolTable->takeOwnershipOfString(std::move(text));
Brian Osman88cda172020-10-09 12:05:16 -0400296 AutoSource as(this, source);
Ethan Nicholas8da1e652019-05-24 11:01:59 -0400297 Program::Settings settings;
John Stiles881a10c2020-09-19 10:13:24 -0400298 SkASSERT(fIRGenerator->fCanInline);
299 fIRGenerator->fCanInline = false;
Brian Osman88cda172020-10-09 12:05:16 -0400300 ParsedModule baseModule = {base, /*fIntrinsics=*/nullptr};
301 IRGenerator::IRBundle ir = fIRGenerator->convertProgram(
302 kind, &settings, baseModule, /*isBuiltinCode=*/true, source->c_str(), source->length(),
303 /*externalValues=*/nullptr);
304 LoadedModule module = { std::move(ir.fSymbolTable), std::move(ir.fElements) };
John Stiles881a10c2020-09-19 10:13:24 -0400305 fIRGenerator->fCanInline = true;
Ethan Nicholas8da1e652019-05-24 11:01:59 -0400306 if (this->fErrorCount) {
307 printf("Unexpected errors: %s\n", this->fErrorText.c_str());
Brian Osman3d87e9f2020-10-08 11:50:22 -0400308 SkDEBUGFAILF("%s %s\n", data.fPath, this->fErrorText.c_str());
Ethan Nicholas8da1e652019-05-24 11:01:59 -0400309 }
Brian Osman88cda172020-10-09 12:05:16 -0400310 fModifiers.push_back(std::move(ir.fModifiers));
Brian Osman3d87e9f2020-10-08 11:50:22 -0400311#else
312 SkASSERT(data.fData && (data.fSize != 0));
313 Rehydrator rehydrator(fContext.get(), fIRGenerator->fModifiers.get(), base, this,
314 data.fData, data.fSize);
Brian Osman88cda172020-10-09 12:05:16 -0400315 LoadedModule module = { rehydrator.symbolTable(), rehydrator.elements() };
Brian Osman3d87e9f2020-10-08 11:50:22 -0400316 fModifiers.push_back(fIRGenerator->releaseModifiers());
317#endif
318
319 return module;
320}
321
322ParsedModule Compiler::parseModule(Program::Kind kind, ModuleData data, const ParsedModule& base) {
323 auto [symbols, elements] = this->loadModule(kind, data, base.fSymbols);
324
325 // For modules that just declare (but don't define) intrinsic functions, there will be no new
326 // program elements. In that case, we can share our parent's intrinsic map:
327 if (elements.empty()) {
328 return {symbols, base.fIntrinsics};
329 }
330
331 auto intrinsics = std::make_shared<IRIntrinsicMap>(base.fIntrinsics.get());
332
333 // Now, transfer all of the program elements to an intrinsic map. This maps certain types of
334 // global objects to the declaring ProgramElement.
335 for (std::unique_ptr<ProgramElement>& element : elements) {
336 switch (element->kind()) {
337 case ProgramElement::Kind::kFunction: {
338 const FunctionDefinition& f = element->as<FunctionDefinition>();
339 SkASSERT(f.fDeclaration.isBuiltin());
Brian Osman3d87e9f2020-10-08 11:50:22 -0400340 intrinsics->insertOrDie(f.fDeclaration.description(), std::move(element));
341 break;
342 }
343 case ProgramElement::Kind::kEnum: {
344 const Enum& e = element->as<Enum>();
345 SkASSERT(e.isBuiltin());
346 intrinsics->insertOrDie(e.typeName(), std::move(element));
347 break;
348 }
349 case ProgramElement::Kind::kGlobalVar: {
350 const Variable* var = element->as<GlobalVarDeclaration>().fDecl->fVar;
351 SkASSERT(var->isBuiltin());
352 intrinsics->insertOrDie(var->name(), std::move(element));
353 break;
354 }
355 case ProgramElement::Kind::kInterfaceBlock: {
356 const Variable* var = element->as<InterfaceBlock>().fVariable;
357 SkASSERT(var->isBuiltin());
358 intrinsics->insertOrDie(var->name(), std::move(element));
359 break;
360 }
361 default:
362 printf("Unsupported element: %s\n", element->description().c_str());
363 SkASSERT(false);
364 break;
365 }
366 }
367
368 return {symbols, std::move(intrinsics)};
Ethan Nicholas8da1e652019-05-24 11:01:59 -0400369}
370
ethannicholas22f939e2016-10-13 13:25:34 -0700371// add the definition created by assigning to the lvalue to the definition set
Ethan Nicholas86a43402017-01-19 13:32:00 -0500372void Compiler::addDefinition(const Expression* lvalue, std::unique_ptr<Expression>* expr,
373 DefinitionMap* definitions) {
Ethan Nicholase6592142020-09-08 10:22:09 -0400374 switch (lvalue->kind()) {
375 case Expression::Kind::kVariableReference: {
Ethan Nicholas78686922020-10-08 06:46:27 -0400376 const Variable& var = *lvalue->as<VariableReference>().variable();
Ethan Nicholas453f67f2020-10-09 10:43:45 -0400377 if (var.storage() == Variable::Storage::kLocal) {
John Stiles796cdb72020-10-08 12:06:53 -0400378 definitions->set(&var, expr);
ethannicholas22f939e2016-10-13 13:25:34 -0700379 }
380 break;
381 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400382 case Expression::Kind::kSwizzle:
ethannicholas22f939e2016-10-13 13:25:34 -0700383 // We consider the variable written to as long as at least some of its components have
384 // been written to. This will lead to some false negatives (we won't catch it if you
385 // write to foo.x and then read foo.y), but being stricter could lead to false positives
Mike Klein6ad99092016-10-26 10:35:22 -0400386 // (we write to foo.x, and then pass foo to a function which happens to only read foo.x,
387 // but since we pass foo as a whole it is flagged as an error) unless we perform a much
ethannicholas22f939e2016-10-13 13:25:34 -0700388 // more complicated whole-program analysis. This is probably good enough.
John Stilesa5a97b42020-08-18 11:19:07 -0400389 this->addDefinition(lvalue->as<Swizzle>().fBase.get(),
Ethan Nicholas26a9aad2018-03-27 14:10:52 -0400390 (std::unique_ptr<Expression>*) &fContext->fDefined_Expression,
ethannicholas22f939e2016-10-13 13:25:34 -0700391 definitions);
392 break;
Ethan Nicholase6592142020-09-08 10:22:09 -0400393 case Expression::Kind::kIndex:
ethannicholas22f939e2016-10-13 13:25:34 -0700394 // see comments in Swizzle
Ethan Nicholas2a4952d2020-10-08 15:35:56 -0400395 this->addDefinition(lvalue->as<IndexExpression>().base().get(),
Ethan Nicholas26a9aad2018-03-27 14:10:52 -0400396 (std::unique_ptr<Expression>*) &fContext->fDefined_Expression,
ethannicholas22f939e2016-10-13 13:25:34 -0700397 definitions);
398 break;
Ethan Nicholase6592142020-09-08 10:22:09 -0400399 case Expression::Kind::kFieldAccess:
ethannicholas22f939e2016-10-13 13:25:34 -0700400 // see comments in Swizzle
Ethan Nicholas7a95b202020-10-09 11:55:40 -0400401 this->addDefinition(lvalue->as<FieldAccess>().base().get(),
Ethan Nicholas26a9aad2018-03-27 14:10:52 -0400402 (std::unique_ptr<Expression>*) &fContext->fDefined_Expression,
ethannicholas22f939e2016-10-13 13:25:34 -0700403 definitions);
404 break;
Ethan Nicholase6592142020-09-08 10:22:09 -0400405 case Expression::Kind::kTernary:
Ethan Nicholasa583b812018-01-18 13:32:11 -0500406 // To simplify analysis, we just pretend that we write to both sides of the ternary.
407 // This allows for false positives (meaning we fail to detect that a variable might not
408 // have been assigned), but is preferable to false negatives.
Ethan Nicholasdd218162020-10-08 05:48:01 -0400409 this->addDefinition(lvalue->as<TernaryExpression>().ifTrue().get(),
Ethan Nicholas26a9aad2018-03-27 14:10:52 -0400410 (std::unique_ptr<Expression>*) &fContext->fDefined_Expression,
Ethan Nicholasa583b812018-01-18 13:32:11 -0500411 definitions);
Ethan Nicholasdd218162020-10-08 05:48:01 -0400412 this->addDefinition(lvalue->as<TernaryExpression>().ifFalse().get(),
Ethan Nicholas26a9aad2018-03-27 14:10:52 -0400413 (std::unique_ptr<Expression>*) &fContext->fDefined_Expression,
Ethan Nicholasa583b812018-01-18 13:32:11 -0500414 definitions);
415 break;
Ethan Nicholase6592142020-09-08 10:22:09 -0400416 case Expression::Kind::kExternalValue:
Ethan Nicholas91164d12019-05-15 15:29:54 -0400417 break;
ethannicholas22f939e2016-10-13 13:25:34 -0700418 default:
419 // not an lvalue, can't happen
Ethan Nicholasd9d33c32018-06-12 11:05:59 -0400420 SkASSERT(false);
ethannicholas22f939e2016-10-13 13:25:34 -0700421 }
422}
423
424// add local variables defined by this node to the set
John Stiles796cdb72020-10-08 12:06:53 -0400425void Compiler::addDefinitions(const BasicBlock::Node& node, DefinitionMap* definitions) {
John Stiles70025e52020-09-28 16:08:58 -0400426 if (node.isExpression()) {
427 Expression* expr = node.expression()->get();
428 switch (expr->kind()) {
429 case Expression::Kind::kBinary: {
430 BinaryExpression* b = &expr->as<BinaryExpression>();
431 if (b->getOperator() == Token::Kind::TK_EQ) {
432 this->addDefinition(&b->left(), &b->rightPointer(), definitions);
433 } else if (Compiler::IsAssignment(b->getOperator())) {
434 this->addDefinition(
435 &b->left(),
436 (std::unique_ptr<Expression>*) &fContext->fDefined_Expression,
437 definitions);
Ethan Nicholas86a43402017-01-19 13:32:00 -0500438
ethannicholas22f939e2016-10-13 13:25:34 -0700439 }
John Stiles70025e52020-09-28 16:08:58 -0400440 break;
ethannicholas22f939e2016-10-13 13:25:34 -0700441 }
John Stiles70025e52020-09-28 16:08:58 -0400442 case Expression::Kind::kFunctionCall: {
443 const FunctionCall& c = expr->as<FunctionCall>();
Ethan Nicholased84b732020-10-08 11:45:44 -0400444 const std::vector<Variable*>& parameters = c.function().parameters();
445 for (size_t i = 0; i < parameters.size(); ++i) {
446 if (parameters[i]->modifiers().fFlags & Modifiers::kOut_Flag) {
John Stiles70025e52020-09-28 16:08:58 -0400447 this->addDefinition(
Ethan Nicholas0dec9922020-10-05 15:51:52 -0400448 c.arguments()[i].get(),
John Stiles70025e52020-09-28 16:08:58 -0400449 (std::unique_ptr<Expression>*) &fContext->fDefined_Expression,
450 definitions);
451 }
452 }
453 break;
454 }
455 case Expression::Kind::kPrefix: {
456 const PrefixExpression* p = &expr->as<PrefixExpression>();
Ethan Nicholas444ccc62020-10-09 10:16:22 -0400457 if (p->getOperator() == Token::Kind::TK_MINUSMINUS ||
458 p->getOperator() == Token::Kind::TK_PLUSPLUS) {
John Stiles70025e52020-09-28 16:08:58 -0400459 this->addDefinition(
Ethan Nicholas444ccc62020-10-09 10:16:22 -0400460 p->operand().get(),
John Stiles70025e52020-09-28 16:08:58 -0400461 (std::unique_ptr<Expression>*) &fContext->fDefined_Expression,
462 definitions);
463 }
464 break;
465 }
466 case Expression::Kind::kPostfix: {
467 const PostfixExpression* p = &expr->as<PostfixExpression>();
Ethan Nicholas444ccc62020-10-09 10:16:22 -0400468 if (p->getOperator() == Token::Kind::TK_MINUSMINUS ||
469 p->getOperator() == Token::Kind::TK_PLUSPLUS) {
John Stiles70025e52020-09-28 16:08:58 -0400470 this->addDefinition(
Ethan Nicholas444ccc62020-10-09 10:16:22 -0400471 p->operand().get(),
John Stiles70025e52020-09-28 16:08:58 -0400472 (std::unique_ptr<Expression>*) &fContext->fDefined_Expression,
473 definitions);
474 }
475 break;
476 }
477 case Expression::Kind::kVariableReference: {
478 const VariableReference* v = &expr->as<VariableReference>();
Ethan Nicholas453f67f2020-10-09 10:43:45 -0400479 if (v->refKind() != VariableReference::RefKind::kRead) {
John Stiles70025e52020-09-28 16:08:58 -0400480 this->addDefinition(
481 v,
482 (std::unique_ptr<Expression>*) &fContext->fDefined_Expression,
483 definitions);
484 }
485 break;
486 }
487 default:
488 break;
ethannicholas22f939e2016-10-13 13:25:34 -0700489 }
John Stiles70025e52020-09-28 16:08:58 -0400490 } else if (node.isStatement()) {
491 Statement* stmt = node.statement()->get();
492 if (stmt->is<VarDeclaration>()) {
493 VarDeclaration& vd = stmt->as<VarDeclaration>();
494 if (vd.fValue) {
John Stiles796cdb72020-10-08 12:06:53 -0400495 definitions->set(vd.fVar, &vd.fValue);
ethannicholas22f939e2016-10-13 13:25:34 -0700496 }
ethannicholas22f939e2016-10-13 13:25:34 -0700497 }
498 }
499}
500
John Stilese6150002020-10-05 12:03:53 -0400501void Compiler::scanCFG(CFG* cfg, BlockId blockId, SkBitSet* processedSet) {
ethannicholas22f939e2016-10-13 13:25:34 -0700502 BasicBlock& block = cfg->fBlocks[blockId];
503
504 // compute definitions after this block
Ethan Nicholas86a43402017-01-19 13:32:00 -0500505 DefinitionMap after = block.fBefore;
ethannicholas22f939e2016-10-13 13:25:34 -0700506 for (const BasicBlock::Node& n : block.fNodes) {
507 this->addDefinitions(n, &after);
508 }
509
510 // propagate definitions to exits
511 for (BlockId exitId : block.fExits) {
Ethan Nicholas26a9aad2018-03-27 14:10:52 -0400512 if (exitId == blockId) {
513 continue;
514 }
ethannicholas22f939e2016-10-13 13:25:34 -0700515 BasicBlock& exit = cfg->fBlocks[exitId];
John Stiles796cdb72020-10-08 12:06:53 -0400516 after.foreach([&](const Variable* var, std::unique_ptr<Expression>** e1Ptr) {
517 std::unique_ptr<Expression>* e1 = *e1Ptr;
518 std::unique_ptr<Expression>** exitDef = exit.fBefore.find(var);
519 if (!exitDef) {
John Stilese6150002020-10-05 12:03:53 -0400520 // exit has no definition for it, just copy it and reprocess exit block
521 processedSet->reset(exitId);
John Stiles796cdb72020-10-08 12:06:53 -0400522 exit.fBefore[var] = e1;
ethannicholas22f939e2016-10-13 13:25:34 -0700523 } else {
Ethan Nicholas86a43402017-01-19 13:32:00 -0500524 // exit has a (possibly different) value already defined
John Stiles796cdb72020-10-08 12:06:53 -0400525 std::unique_ptr<Expression>* e2 = *exitDef;
ethannicholas22f939e2016-10-13 13:25:34 -0700526 if (e1 != e2) {
John Stilese6150002020-10-05 12:03:53 -0400527 // definition has changed, merge and reprocess the exit block
528 processedSet->reset(exitId);
Ethan Nicholasaf197692017-02-27 13:26:45 -0500529 if (e1 && e2) {
John Stiles796cdb72020-10-08 12:06:53 -0400530 *exitDef = (std::unique_ptr<Expression>*)&fContext->fDefined_Expression;
Ethan Nicholasaf197692017-02-27 13:26:45 -0500531 } else {
John Stiles796cdb72020-10-08 12:06:53 -0400532 *exitDef = nullptr;
Ethan Nicholasaf197692017-02-27 13:26:45 -0500533 }
ethannicholas22f939e2016-10-13 13:25:34 -0700534 }
535 }
John Stiles796cdb72020-10-08 12:06:53 -0400536 });
ethannicholas22f939e2016-10-13 13:25:34 -0700537 }
538}
539
540// returns a map which maps all local variables in the function to null, indicating that their value
541// is initially unknown
Ethan Nicholas86a43402017-01-19 13:32:00 -0500542static DefinitionMap compute_start_state(const CFG& cfg) {
543 DefinitionMap result;
Mike Klein6ad99092016-10-26 10:35:22 -0400544 for (const auto& block : cfg.fBlocks) {
545 for (const auto& node : block.fNodes) {
John Stiles70025e52020-09-28 16:08:58 -0400546 if (node.isStatement()) {
Ethan Nicholascb670962017-04-20 19:31:52 -0400547 const Statement* s = node.statement()->get();
Brian Osmanc0213602020-10-06 14:43:32 -0400548 if (s->is<VarDeclaration>()) {
549 result[s->as<VarDeclaration>().fVar] = nullptr;
ethannicholas22f939e2016-10-13 13:25:34 -0700550 }
551 }
552 }
553 }
554 return result;
555}
556
Ethan Nicholascb670962017-04-20 19:31:52 -0400557/**
558 * Returns true if assigning to this lvalue has no effect.
559 */
560static bool is_dead(const Expression& lvalue) {
Ethan Nicholase6592142020-09-08 10:22:09 -0400561 switch (lvalue.kind()) {
562 case Expression::Kind::kVariableReference:
Ethan Nicholas78686922020-10-08 06:46:27 -0400563 return lvalue.as<VariableReference>().variable()->dead();
Ethan Nicholase6592142020-09-08 10:22:09 -0400564 case Expression::Kind::kSwizzle:
John Stilesa5a97b42020-08-18 11:19:07 -0400565 return is_dead(*lvalue.as<Swizzle>().fBase);
Ethan Nicholase6592142020-09-08 10:22:09 -0400566 case Expression::Kind::kFieldAccess:
Ethan Nicholas7a95b202020-10-09 11:55:40 -0400567 return is_dead(*lvalue.as<FieldAccess>().base());
Ethan Nicholase6592142020-09-08 10:22:09 -0400568 case Expression::Kind::kIndex: {
John Stilesa5a97b42020-08-18 11:19:07 -0400569 const IndexExpression& idx = lvalue.as<IndexExpression>();
Ethan Nicholas2a4952d2020-10-08 15:35:56 -0400570 return is_dead(*idx.base()) &&
571 !idx.index()->hasProperty(Expression::Property::kSideEffects);
Ethan Nicholascb670962017-04-20 19:31:52 -0400572 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400573 case Expression::Kind::kTernary: {
John Stilesa5a97b42020-08-18 11:19:07 -0400574 const TernaryExpression& t = lvalue.as<TernaryExpression>();
Ethan Nicholasdd218162020-10-08 05:48:01 -0400575 return !t.test()->hasSideEffects() && is_dead(*t.ifTrue()) && is_dead(*t.ifFalse());
Ethan Nicholasa583b812018-01-18 13:32:11 -0500576 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400577 case Expression::Kind::kExternalValue:
Ethan Nicholas91164d12019-05-15 15:29:54 -0400578 return false;
Ethan Nicholascb670962017-04-20 19:31:52 -0400579 default:
Ethan Nicholas2a099da2020-01-02 14:40:54 -0500580#ifdef SK_DEBUG
Ethan Nicholascb670962017-04-20 19:31:52 -0400581 ABORT("invalid lvalue: %s\n", lvalue.description().c_str());
Ethan Nicholas2a099da2020-01-02 14:40:54 -0500582#endif
583 return false;
Ethan Nicholascb670962017-04-20 19:31:52 -0400584 }
585}
ethannicholas22f939e2016-10-13 13:25:34 -0700586
Ethan Nicholascb670962017-04-20 19:31:52 -0400587/**
588 * Returns true if this is an assignment which can be collapsed down to just the right hand side due
589 * to a dead target and lack of side effects on the left hand side.
590 */
591static bool dead_assignment(const BinaryExpression& b) {
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -0400592 if (!Compiler::IsAssignment(b.getOperator())) {
Ethan Nicholascb670962017-04-20 19:31:52 -0400593 return false;
594 }
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -0400595 return is_dead(b.left());
Ethan Nicholascb670962017-04-20 19:31:52 -0400596}
597
598void Compiler::computeDataFlow(CFG* cfg) {
599 cfg->fBlocks[cfg->fStart].fBefore = compute_start_state(*cfg);
John Stilese6150002020-10-05 12:03:53 -0400600
601 // We set bits in the "processed" set after a block has been scanned.
602 SkBitSet processedSet(cfg->fBlocks.size());
603 while (SkBitSet::OptionalIndex blockId = processedSet.findFirstUnset()) {
604 processedSet.set(*blockId);
605 this->scanCFG(cfg, *blockId, &processedSet);
ethannicholas22f939e2016-10-13 13:25:34 -0700606 }
Ethan Nicholascb670962017-04-20 19:31:52 -0400607}
608
609/**
610 * Attempts to replace the expression pointed to by iter with a new one (in both the CFG and the
611 * IR). If the expression can be cleanly removed, returns true and updates the iterator to point to
612 * the newly-inserted element. Otherwise updates only the IR and returns false (and the CFG will
613 * need to be regenerated).
614 */
John Stilesafbf8992020-08-18 10:08:21 -0400615static bool try_replace_expression(BasicBlock* b,
616 std::vector<BasicBlock::Node>::iterator* iter,
617 std::unique_ptr<Expression>* newExpression) {
Ethan Nicholascb670962017-04-20 19:31:52 -0400618 std::unique_ptr<Expression>* target = (*iter)->expression();
619 if (!b->tryRemoveExpression(iter)) {
620 *target = std::move(*newExpression);
621 return false;
622 }
623 *target = std::move(*newExpression);
624 return b->tryInsertExpression(iter, target);
625}
626
627/**
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400628 * Returns true if the expression is a constant numeric literal with the specified value, or a
629 * constant vector with all elements equal to the specified value.
Ethan Nicholascb670962017-04-20 19:31:52 -0400630 */
Ethan Nicholasa3f22f12020-10-01 12:13:17 -0400631template <typename T = SKSL_FLOAT>
John Stiles9d944232020-08-19 09:56:49 -0400632static bool is_constant(const Expression& expr, T value) {
Ethan Nicholase6592142020-09-08 10:22:09 -0400633 switch (expr.kind()) {
634 case Expression::Kind::kIntLiteral:
Ethan Nicholase96cdd12020-09-28 16:27:18 -0400635 return expr.as<IntLiteral>().value() == value;
John Stiles9d944232020-08-19 09:56:49 -0400636
Ethan Nicholase6592142020-09-08 10:22:09 -0400637 case Expression::Kind::kFloatLiteral:
Ethan Nicholasa3f22f12020-10-01 12:13:17 -0400638 return expr.as<FloatLiteral>().value() == value;
John Stiles9d944232020-08-19 09:56:49 -0400639
Ethan Nicholase6592142020-09-08 10:22:09 -0400640 case Expression::Kind::kConstructor: {
John Stiles9d944232020-08-19 09:56:49 -0400641 const Constructor& constructor = expr.as<Constructor>();
642 if (constructor.isCompileTimeConstant()) {
Ethan Nicholas30d30222020-09-11 12:27:26 -0400643 const Type& constructorType = constructor.type();
644 bool isFloat = constructorType.columns() > 1
645 ? constructorType.componentType().isFloat()
646 : constructorType.isFloat();
647 switch (constructorType.typeKind()) {
Ethan Nicholase6592142020-09-08 10:22:09 -0400648 case Type::TypeKind::kVector:
Ethan Nicholas30d30222020-09-11 12:27:26 -0400649 for (int i = 0; i < constructorType.columns(); ++i) {
John Stiles9d944232020-08-19 09:56:49 -0400650 if (isFloat) {
651 if (constructor.getFVecComponent(i) != value) {
652 return false;
653 }
654 } else {
655 if (constructor.getIVecComponent(i) != value) {
656 return false;
657 }
658 }
Ethan Nicholasd188c182019-06-10 15:55:38 -0400659 }
John Stiles9d944232020-08-19 09:56:49 -0400660 return true;
661
Ethan Nicholase6592142020-09-08 10:22:09 -0400662 case Type::TypeKind::kScalar:
Ethan Nicholasf70f0442020-09-29 12:41:35 -0400663 SkASSERT(constructor.arguments().size() == 1);
664 return is_constant<T>(*constructor.arguments()[0], value);
John Stiles9d944232020-08-19 09:56:49 -0400665
666 default:
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400667 return false;
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400668 }
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400669 }
670 return false;
671 }
Ethan Nicholascb670962017-04-20 19:31:52 -0400672 default:
673 return false;
674 }
675}
676
677/**
678 * Collapses the binary expression pointed to by iter down to just the right side (in both the IR
679 * and CFG structures).
680 */
John Stilesafbf8992020-08-18 10:08:21 -0400681static void delete_left(BasicBlock* b,
682 std::vector<BasicBlock::Node>::iterator* iter,
683 bool* outUpdated,
684 bool* outNeedsRescan) {
Ethan Nicholascb670962017-04-20 19:31:52 -0400685 *outUpdated = true;
Ethan Nicholasc2371a42017-05-05 10:04:06 -0400686 std::unique_ptr<Expression>* target = (*iter)->expression();
John Stilesa5a97b42020-08-18 11:19:07 -0400687 BinaryExpression& bin = (*target)->as<BinaryExpression>();
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -0400688 Expression& left = bin.left();
689 std::unique_ptr<Expression>& rightPointer = bin.rightPointer();
690 SkASSERT(!left.hasSideEffects());
Ethan Nicholasc2371a42017-05-05 10:04:06 -0400691 bool result;
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -0400692 if (bin.getOperator() == Token::Kind::TK_EQ) {
693 result = b->tryRemoveLValueBefore(iter, &left);
Ethan Nicholasc2371a42017-05-05 10:04:06 -0400694 } else {
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -0400695 result = b->tryRemoveExpressionBefore(iter, &left);
Ethan Nicholascb670962017-04-20 19:31:52 -0400696 }
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -0400697 *target = std::move(rightPointer);
Ethan Nicholasc2371a42017-05-05 10:04:06 -0400698 if (!result) {
Ethan Nicholas4b330df2017-05-17 10:52:55 -0400699 *outNeedsRescan = true;
700 return;
701 }
702 if (*iter == b->fNodes.begin()) {
Ethan Nicholasc2371a42017-05-05 10:04:06 -0400703 *outNeedsRescan = true;
704 return;
705 }
706 --(*iter);
John Stiles70025e52020-09-28 16:08:58 -0400707 if (!(*iter)->isExpression() || (*iter)->expression() != &rightPointer) {
Ethan Nicholas4b330df2017-05-17 10:52:55 -0400708 *outNeedsRescan = true;
709 return;
710 }
Ethan Nicholasc2371a42017-05-05 10:04:06 -0400711 *iter = b->fNodes.erase(*iter);
Ethan Nicholasd9d33c32018-06-12 11:05:59 -0400712 SkASSERT((*iter)->expression() == target);
Ethan Nicholascb670962017-04-20 19:31:52 -0400713}
714
715/**
716 * Collapses the binary expression pointed to by iter down to just the left side (in both the IR and
717 * CFG structures).
718 */
John Stilesafbf8992020-08-18 10:08:21 -0400719static void delete_right(BasicBlock* b,
720 std::vector<BasicBlock::Node>::iterator* iter,
721 bool* outUpdated,
722 bool* outNeedsRescan) {
Ethan Nicholascb670962017-04-20 19:31:52 -0400723 *outUpdated = true;
Ethan Nicholasc2371a42017-05-05 10:04:06 -0400724 std::unique_ptr<Expression>* target = (*iter)->expression();
John Stilesa5a97b42020-08-18 11:19:07 -0400725 BinaryExpression& bin = (*target)->as<BinaryExpression>();
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -0400726 std::unique_ptr<Expression>& leftPointer = bin.leftPointer();
727 Expression& right = bin.right();
728 SkASSERT(!right.hasSideEffects());
729 if (!b->tryRemoveExpressionBefore(iter, &right)) {
730 *target = std::move(leftPointer);
Ethan Nicholascb670962017-04-20 19:31:52 -0400731 *outNeedsRescan = true;
Ethan Nicholasc2371a42017-05-05 10:04:06 -0400732 return;
Ethan Nicholascb670962017-04-20 19:31:52 -0400733 }
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -0400734 *target = std::move(leftPointer);
Ethan Nicholas4b330df2017-05-17 10:52:55 -0400735 if (*iter == b->fNodes.begin()) {
736 *outNeedsRescan = true;
737 return;
738 }
Ethan Nicholasc2371a42017-05-05 10:04:06 -0400739 --(*iter);
John Stiles70025e52020-09-28 16:08:58 -0400740 if ((!(*iter)->isExpression() || (*iter)->expression() != &leftPointer)) {
Ethan Nicholas4b330df2017-05-17 10:52:55 -0400741 *outNeedsRescan = true;
742 return;
743 }
Ethan Nicholasc2371a42017-05-05 10:04:06 -0400744 *iter = b->fNodes.erase(*iter);
Ethan Nicholasd9d33c32018-06-12 11:05:59 -0400745 SkASSERT((*iter)->expression() == target);
Ethan Nicholascb670962017-04-20 19:31:52 -0400746}
747
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400748/**
749 * Constructs the specified type using a single argument.
750 */
Ethan Nicholas30d30222020-09-11 12:27:26 -0400751static std::unique_ptr<Expression> construct(const Type* type, std::unique_ptr<Expression> v) {
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400752 std::vector<std::unique_ptr<Expression>> args;
753 args.push_back(std::move(v));
Ethan Nicholase6592142020-09-08 10:22:09 -0400754 std::unique_ptr<Expression> result = std::make_unique<Constructor>(-1, type, std::move(args));
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400755 return result;
756}
757
758/**
759 * Used in the implementations of vectorize_left and vectorize_right. Given a vector type and an
760 * expression x, deletes the expression pointed to by iter and replaces it with <type>(x).
761 */
762static void vectorize(BasicBlock* b,
763 std::vector<BasicBlock::Node>::iterator* iter,
764 const Type& type,
765 std::unique_ptr<Expression>* otherExpression,
766 bool* outUpdated,
767 bool* outNeedsRescan) {
Ethan Nicholase6592142020-09-08 10:22:09 -0400768 SkASSERT((*(*iter)->expression())->kind() == Expression::Kind::kBinary);
769 SkASSERT(type.typeKind() == Type::TypeKind::kVector);
Ethan Nicholas30d30222020-09-11 12:27:26 -0400770 SkASSERT((*otherExpression)->type().typeKind() == Type::TypeKind::kScalar);
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400771 *outUpdated = true;
772 std::unique_ptr<Expression>* target = (*iter)->expression();
773 if (!b->tryRemoveExpression(iter)) {
Ethan Nicholas30d30222020-09-11 12:27:26 -0400774 *target = construct(&type, std::move(*otherExpression));
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400775 *outNeedsRescan = true;
776 } else {
Ethan Nicholas30d30222020-09-11 12:27:26 -0400777 *target = construct(&type, std::move(*otherExpression));
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400778 if (!b->tryInsertExpression(iter, target)) {
779 *outNeedsRescan = true;
780 }
781 }
782}
783
784/**
785 * Given a binary expression of the form x <op> vec<n>(y), deletes the right side and vectorizes the
786 * left to yield vec<n>(x).
787 */
788static void vectorize_left(BasicBlock* b,
789 std::vector<BasicBlock::Node>::iterator* iter,
790 bool* outUpdated,
791 bool* outNeedsRescan) {
John Stilesa5a97b42020-08-18 11:19:07 -0400792 BinaryExpression& bin = (*(*iter)->expression())->as<BinaryExpression>();
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -0400793 vectorize(b, iter, bin.right().type(), &bin.leftPointer(), outUpdated, outNeedsRescan);
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400794}
795
796/**
797 * Given a binary expression of the form vec<n>(x) <op> y, deletes the left side and vectorizes the
798 * right to yield vec<n>(y).
799 */
800static void vectorize_right(BasicBlock* b,
801 std::vector<BasicBlock::Node>::iterator* iter,
802 bool* outUpdated,
803 bool* outNeedsRescan) {
John Stilesa5a97b42020-08-18 11:19:07 -0400804 BinaryExpression& bin = (*(*iter)->expression())->as<BinaryExpression>();
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -0400805 vectorize(b, iter, bin.left().type(), &bin.rightPointer(), outUpdated, outNeedsRescan);
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400806}
807
808// Mark that an expression which we were writing to is no longer being written to
John Stilesa5a97b42020-08-18 11:19:07 -0400809static void clear_write(Expression& expr) {
Ethan Nicholase6592142020-09-08 10:22:09 -0400810 switch (expr.kind()) {
811 case Expression::Kind::kVariableReference: {
Ethan Nicholas453f67f2020-10-09 10:43:45 -0400812 expr.as<VariableReference>().setRefKind(VariableReference::RefKind::kRead);
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400813 break;
814 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400815 case Expression::Kind::kFieldAccess:
Ethan Nicholas7a95b202020-10-09 11:55:40 -0400816 clear_write(*expr.as<FieldAccess>().base());
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400817 break;
Ethan Nicholase6592142020-09-08 10:22:09 -0400818 case Expression::Kind::kSwizzle:
John Stilesa5a97b42020-08-18 11:19:07 -0400819 clear_write(*expr.as<Swizzle>().fBase);
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400820 break;
Ethan Nicholase6592142020-09-08 10:22:09 -0400821 case Expression::Kind::kIndex:
Ethan Nicholas2a4952d2020-10-08 15:35:56 -0400822 clear_write(*expr.as<IndexExpression>().base());
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400823 break;
824 default:
825 ABORT("shouldn't be writing to this kind of expression\n");
826 break;
827 }
828}
829
Ethan Nicholascb670962017-04-20 19:31:52 -0400830void Compiler::simplifyExpression(DefinitionMap& definitions,
831 BasicBlock& b,
832 std::vector<BasicBlock::Node>::iterator* iter,
833 std::unordered_set<const Variable*>* undefinedVariables,
834 bool* outUpdated,
835 bool* outNeedsRescan) {
836 Expression* expr = (*iter)->expression()->get();
Ethan Nicholasd9d33c32018-06-12 11:05:59 -0400837 SkASSERT(expr);
Ethan Nicholascb670962017-04-20 19:31:52 -0400838 if ((*iter)->fConstantPropagation) {
839 std::unique_ptr<Expression> optimized = expr->constantPropagate(*fIRGenerator, definitions);
840 if (optimized) {
Ethan Nicholas4b330df2017-05-17 10:52:55 -0400841 *outUpdated = true;
Ethan Nicholas30d30222020-09-11 12:27:26 -0400842 optimized = fIRGenerator->coerce(std::move(optimized), expr->type());
Ethan Nicholas1d881522020-09-11 09:32:54 -0400843 SkASSERT(optimized);
Ethan Nicholascb670962017-04-20 19:31:52 -0400844 if (!try_replace_expression(&b, iter, &optimized)) {
845 *outNeedsRescan = true;
Ethan Nicholas4b330df2017-05-17 10:52:55 -0400846 return;
Ethan Nicholascb670962017-04-20 19:31:52 -0400847 }
John Stiles70025e52020-09-28 16:08:58 -0400848 SkASSERT((*iter)->isExpression());
Ethan Nicholascb670962017-04-20 19:31:52 -0400849 expr = (*iter)->expression()->get();
Ethan Nicholascb670962017-04-20 19:31:52 -0400850 }
851 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400852 switch (expr->kind()) {
853 case Expression::Kind::kVariableReference: {
John Stilesa5a97b42020-08-18 11:19:07 -0400854 const VariableReference& ref = expr->as<VariableReference>();
Ethan Nicholas78686922020-10-08 06:46:27 -0400855 const Variable* var = ref.variable();
Ethan Nicholas453f67f2020-10-09 10:43:45 -0400856 if (ref.refKind() != VariableReference::RefKind::kWrite &&
857 ref.refKind() != VariableReference::RefKind::kPointer &&
858 var->storage() == Variable::Storage::kLocal && !definitions[var] &&
Brian Osman79457ef2020-09-24 15:01:27 -0400859 (*undefinedVariables).find(var) == (*undefinedVariables).end()) {
860 (*undefinedVariables).insert(var);
Ethan Nicholas82a62d22017-11-07 14:42:10 +0000861 this->error(expr->fOffset,
Ethan Nicholase2c49992020-10-05 11:49:11 -0400862 "'" + var->name() + "' has not been assigned");
Ethan Nicholascb670962017-04-20 19:31:52 -0400863 }
864 break;
865 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400866 case Expression::Kind::kTernary: {
John Stiles403a3632020-08-20 12:11:48 -0400867 TernaryExpression* t = &expr->as<TernaryExpression>();
Ethan Nicholasdd218162020-10-08 05:48:01 -0400868 if (t->test()->is<BoolLiteral>()) {
Ethan Nicholascb670962017-04-20 19:31:52 -0400869 // ternary has a constant test, replace it with either the true or
870 // false branch
Ethan Nicholasdd218162020-10-08 05:48:01 -0400871 if (t->test()->as<BoolLiteral>().value()) {
872 (*iter)->setExpression(std::move(t->ifTrue()));
Ethan Nicholascb670962017-04-20 19:31:52 -0400873 } else {
Ethan Nicholasdd218162020-10-08 05:48:01 -0400874 (*iter)->setExpression(std::move(t->ifFalse()));
Ethan Nicholascb670962017-04-20 19:31:52 -0400875 }
876 *outUpdated = true;
877 *outNeedsRescan = true;
878 }
879 break;
880 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400881 case Expression::Kind::kBinary: {
John Stiles403a3632020-08-20 12:11:48 -0400882 BinaryExpression* bin = &expr->as<BinaryExpression>();
Ethan Nicholasc2371a42017-05-05 10:04:06 -0400883 if (dead_assignment(*bin)) {
884 delete_left(&b, iter, outUpdated, outNeedsRescan);
885 break;
886 }
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -0400887 Expression& left = bin->left();
888 Expression& right = bin->right();
889 const Type& leftType = left.type();
890 const Type& rightType = right.type();
Ethan Nicholasc2371a42017-05-05 10:04:06 -0400891 // collapse useless expressions like x * 1 or x + 0
Ethan Nicholas30d30222020-09-11 12:27:26 -0400892 if (((leftType.typeKind() != Type::TypeKind::kScalar) &&
893 (leftType.typeKind() != Type::TypeKind::kVector)) ||
894 ((rightType.typeKind() != Type::TypeKind::kScalar) &&
895 (rightType.typeKind() != Type::TypeKind::kVector))) {
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400896 break;
897 }
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -0400898 switch (bin->getOperator()) {
Ethan Nicholas5a9e7fb2020-04-17 12:45:51 -0400899 case Token::Kind::TK_STAR:
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -0400900 if (is_constant(left, 1)) {
Ethan Nicholas30d30222020-09-11 12:27:26 -0400901 if (leftType.typeKind() == Type::TypeKind::kVector &&
902 rightType.typeKind() == Type::TypeKind::kScalar) {
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400903 // float4(1) * x -> float4(x)
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400904 vectorize_right(&b, iter, outUpdated, outNeedsRescan);
905 } else {
906 // 1 * x -> x
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400907 // 1 * float4(x) -> float4(x)
908 // float4(1) * float4(x) -> float4(x)
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400909 delete_left(&b, iter, outUpdated, outNeedsRescan);
910 }
911 }
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -0400912 else if (is_constant(left, 0)) {
Ethan Nicholas30d30222020-09-11 12:27:26 -0400913 if (leftType.typeKind() == Type::TypeKind::kScalar &&
914 rightType.typeKind() == Type::TypeKind::kVector &&
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -0400915 !right.hasSideEffects()) {
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400916 // 0 * float4(x) -> float4(0)
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400917 vectorize_left(&b, iter, outUpdated, outNeedsRescan);
918 } else {
919 // 0 * x -> 0
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400920 // float4(0) * x -> float4(0)
921 // float4(0) * float4(x) -> float4(0)
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -0400922 if (!right.hasSideEffects()) {
Ethan Nicholas51493ee2017-12-11 12:34:33 -0500923 delete_right(&b, iter, outUpdated, outNeedsRescan);
924 }
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400925 }
Ethan Nicholascb670962017-04-20 19:31:52 -0400926 }
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -0400927 else if (is_constant(right, 1)) {
Ethan Nicholas30d30222020-09-11 12:27:26 -0400928 if (leftType.typeKind() == Type::TypeKind::kScalar &&
929 rightType.typeKind() == Type::TypeKind::kVector) {
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400930 // x * float4(1) -> float4(x)
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400931 vectorize_left(&b, iter, outUpdated, outNeedsRescan);
932 } else {
933 // x * 1 -> x
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400934 // float4(x) * 1 -> float4(x)
935 // float4(x) * float4(1) -> float4(x)
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400936 delete_right(&b, iter, outUpdated, outNeedsRescan);
937 }
938 }
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -0400939 else if (is_constant(right, 0)) {
Ethan Nicholas30d30222020-09-11 12:27:26 -0400940 if (leftType.typeKind() == Type::TypeKind::kVector &&
941 rightType.typeKind() == Type::TypeKind::kScalar &&
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -0400942 !left.hasSideEffects()) {
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400943 // float4(x) * 0 -> float4(0)
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400944 vectorize_right(&b, iter, outUpdated, outNeedsRescan);
945 } else {
946 // x * 0 -> 0
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400947 // x * float4(0) -> float4(0)
948 // float4(x) * float4(0) -> float4(0)
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -0400949 if (!left.hasSideEffects()) {
Ethan Nicholas51493ee2017-12-11 12:34:33 -0500950 delete_left(&b, iter, outUpdated, outNeedsRescan);
951 }
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400952 }
Ethan Nicholascb670962017-04-20 19:31:52 -0400953 }
954 break;
Ethan Nicholas5a9e7fb2020-04-17 12:45:51 -0400955 case Token::Kind::TK_PLUS:
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -0400956 if (is_constant(left, 0)) {
Ethan Nicholas30d30222020-09-11 12:27:26 -0400957 if (leftType.typeKind() == Type::TypeKind::kVector &&
958 rightType.typeKind() == Type::TypeKind::kScalar) {
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400959 // float4(0) + x -> float4(x)
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400960 vectorize_right(&b, iter, outUpdated, outNeedsRescan);
961 } else {
962 // 0 + x -> x
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400963 // 0 + float4(x) -> float4(x)
964 // float4(0) + float4(x) -> float4(x)
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400965 delete_left(&b, iter, outUpdated, outNeedsRescan);
966 }
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -0400967 } else if (is_constant(right, 0)) {
Ethan Nicholas30d30222020-09-11 12:27:26 -0400968 if (leftType.typeKind() == Type::TypeKind::kScalar &&
969 rightType.typeKind() == Type::TypeKind::kVector) {
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400970 // x + float4(0) -> float4(x)
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400971 vectorize_left(&b, iter, outUpdated, outNeedsRescan);
972 } else {
973 // x + 0 -> x
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400974 // float4(x) + 0 -> float4(x)
975 // float4(x) + float4(0) -> float4(x)
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400976 delete_right(&b, iter, outUpdated, outNeedsRescan);
977 }
Ethan Nicholas56e42712017-04-21 10:23:37 -0400978 }
979 break;
Ethan Nicholas5a9e7fb2020-04-17 12:45:51 -0400980 case Token::Kind::TK_MINUS:
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -0400981 if (is_constant(right, 0)) {
Ethan Nicholas30d30222020-09-11 12:27:26 -0400982 if (leftType.typeKind() == Type::TypeKind::kScalar &&
983 rightType.typeKind() == Type::TypeKind::kVector) {
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400984 // x - float4(0) -> float4(x)
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400985 vectorize_left(&b, iter, outUpdated, outNeedsRescan);
986 } else {
987 // x - 0 -> x
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400988 // float4(x) - 0 -> float4(x)
989 // float4(x) - float4(0) -> float4(x)
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400990 delete_right(&b, iter, outUpdated, outNeedsRescan);
991 }
Ethan Nicholascb670962017-04-20 19:31:52 -0400992 }
993 break;
Ethan Nicholas5a9e7fb2020-04-17 12:45:51 -0400994 case Token::Kind::TK_SLASH:
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -0400995 if (is_constant(right, 1)) {
Ethan Nicholas30d30222020-09-11 12:27:26 -0400996 if (leftType.typeKind() == Type::TypeKind::kScalar &&
997 rightType.typeKind() == Type::TypeKind::kVector) {
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400998 // x / float4(1) -> float4(x)
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400999 vectorize_left(&b, iter, outUpdated, outNeedsRescan);
1000 } else {
1001 // x / 1 -> x
Ethan Nicholas5af9ea32017-07-28 15:19:46 -04001002 // float4(x) / 1 -> float4(x)
1003 // float4(x) / float4(1) -> float4(x)
Ethan Nicholasfe53e582017-04-27 16:24:51 -04001004 delete_right(&b, iter, outUpdated, outNeedsRescan);
1005 }
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -04001006 } else if (is_constant(left, 0)) {
Ethan Nicholas30d30222020-09-11 12:27:26 -04001007 if (leftType.typeKind() == Type::TypeKind::kScalar &&
1008 rightType.typeKind() == Type::TypeKind::kVector &&
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -04001009 !right.hasSideEffects()) {
Ethan Nicholas5af9ea32017-07-28 15:19:46 -04001010 // 0 / float4(x) -> float4(0)
Ethan Nicholasfe53e582017-04-27 16:24:51 -04001011 vectorize_left(&b, iter, outUpdated, outNeedsRescan);
1012 } else {
1013 // 0 / x -> 0
Ethan Nicholas5af9ea32017-07-28 15:19:46 -04001014 // float4(0) / x -> float4(0)
1015 // float4(0) / float4(x) -> float4(0)
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -04001016 if (!right.hasSideEffects()) {
Ethan Nicholas51493ee2017-12-11 12:34:33 -05001017 delete_right(&b, iter, outUpdated, outNeedsRescan);
1018 }
Ethan Nicholasfe53e582017-04-27 16:24:51 -04001019 }
1020 }
1021 break;
Ethan Nicholas5a9e7fb2020-04-17 12:45:51 -04001022 case Token::Kind::TK_PLUSEQ:
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -04001023 if (is_constant(right, 0)) {
1024 clear_write(left);
Ethan Nicholasfe53e582017-04-27 16:24:51 -04001025 delete_right(&b, iter, outUpdated, outNeedsRescan);
1026 }
1027 break;
Ethan Nicholas5a9e7fb2020-04-17 12:45:51 -04001028 case Token::Kind::TK_MINUSEQ:
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -04001029 if (is_constant(right, 0)) {
1030 clear_write(left);
Ethan Nicholasfe53e582017-04-27 16:24:51 -04001031 delete_right(&b, iter, outUpdated, outNeedsRescan);
1032 }
1033 break;
Ethan Nicholas5a9e7fb2020-04-17 12:45:51 -04001034 case Token::Kind::TK_STAREQ:
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -04001035 if (is_constant(right, 1)) {
1036 clear_write(left);
Ethan Nicholasfe53e582017-04-27 16:24:51 -04001037 delete_right(&b, iter, outUpdated, outNeedsRescan);
1038 }
1039 break;
Ethan Nicholas5a9e7fb2020-04-17 12:45:51 -04001040 case Token::Kind::TK_SLASHEQ:
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -04001041 if (is_constant(right, 1)) {
1042 clear_write(left);
Ethan Nicholascb670962017-04-20 19:31:52 -04001043 delete_right(&b, iter, outUpdated, outNeedsRescan);
1044 }
1045 break;
1046 default:
1047 break;
1048 }
Ethan Nicholas409f6f02019-09-17 12:34:39 -04001049 break;
1050 }
Ethan Nicholase6592142020-09-08 10:22:09 -04001051 case Expression::Kind::kSwizzle: {
John Stiles403a3632020-08-20 12:11:48 -04001052 Swizzle& s = expr->as<Swizzle>();
Ethan Nicholas409f6f02019-09-17 12:34:39 -04001053 // detect identity swizzles like foo.rgba
Ethan Nicholas30d30222020-09-11 12:27:26 -04001054 if ((int) s.fComponents.size() == s.fBase->type().columns()) {
Ethan Nicholas409f6f02019-09-17 12:34:39 -04001055 bool identity = true;
1056 for (int i = 0; i < (int) s.fComponents.size(); ++i) {
1057 if (s.fComponents[i] != i) {
1058 identity = false;
1059 break;
1060 }
1061 }
1062 if (identity) {
1063 *outUpdated = true;
1064 if (!try_replace_expression(&b, iter, &s.fBase)) {
1065 *outNeedsRescan = true;
1066 return;
1067 }
John Stiles70025e52020-09-28 16:08:58 -04001068 SkASSERT((*iter)->isExpression());
Ethan Nicholas409f6f02019-09-17 12:34:39 -04001069 break;
1070 }
1071 }
1072 // detect swizzles of swizzles, e.g. replace foo.argb.r000 with foo.a000
Ethan Nicholase6592142020-09-08 10:22:09 -04001073 if (s.fBase->kind() == Expression::Kind::kSwizzle) {
John Stilesa5a97b42020-08-18 11:19:07 -04001074 Swizzle& base = s.fBase->as<Swizzle>();
Ethan Nicholas409f6f02019-09-17 12:34:39 -04001075 std::vector<int> final;
1076 for (int c : s.fComponents) {
Brian Osman25647672020-09-15 15:16:56 -04001077 final.push_back(base.fComponents[c]);
Ethan Nicholas409f6f02019-09-17 12:34:39 -04001078 }
1079 *outUpdated = true;
1080 std::unique_ptr<Expression> replacement(new Swizzle(*fContext, base.fBase->clone(),
1081 std::move(final)));
1082 if (!try_replace_expression(&b, iter, &replacement)) {
1083 *outNeedsRescan = true;
1084 return;
1085 }
John Stiles70025e52020-09-28 16:08:58 -04001086 SkASSERT((*iter)->isExpression());
Ethan Nicholas409f6f02019-09-17 12:34:39 -04001087 }
John Stiles30212b72020-06-11 17:55:07 -04001088 break;
Ethan Nicholascb670962017-04-20 19:31:52 -04001089 }
1090 default:
1091 break;
1092 }
1093}
1094
John Stiles92219b42020-06-15 12:32:24 -04001095// Returns true if this statement could potentially execute a break at the current level. We ignore
1096// nested loops and switches, since any breaks inside of them will merely break the loop / switch.
John Stilesb92641c2020-08-31 18:09:01 -04001097static bool contains_conditional_break(Statement& stmt) {
1098 class ContainsConditionalBreak : public ProgramVisitor {
1099 public:
1100 bool visitStatement(const Statement& stmt) override {
Ethan Nicholase6592142020-09-08 10:22:09 -04001101 switch (stmt.kind()) {
1102 case Statement::Kind::kBlock:
John Stilesb92641c2020-08-31 18:09:01 -04001103 return this->INHERITED::visitStatement(stmt);
1104
Ethan Nicholase6592142020-09-08 10:22:09 -04001105 case Statement::Kind::kBreak:
John Stilesb92641c2020-08-31 18:09:01 -04001106 return fInConditional > 0;
1107
Ethan Nicholase6592142020-09-08 10:22:09 -04001108 case Statement::Kind::kIf: {
John Stilesb92641c2020-08-31 18:09:01 -04001109 ++fInConditional;
1110 bool result = this->INHERITED::visitStatement(stmt);
1111 --fInConditional;
1112 return result;
1113 }
1114
1115 default:
1116 return false;
1117 }
1118 }
1119
1120 int fInConditional = 0;
1121 using INHERITED = ProgramVisitor;
1122 };
1123
1124 return ContainsConditionalBreak{}.visitStatement(stmt);
John Stiles92219b42020-06-15 12:32:24 -04001125}
1126
Ethan Nicholas5005a222018-08-24 13:06:27 -04001127// returns true if this statement definitely executes a break at the current level (we ignore
1128// nested loops and switches, since any breaks inside of them will merely break the loop / switch)
John Stilesb92641c2020-08-31 18:09:01 -04001129static bool contains_unconditional_break(Statement& stmt) {
1130 class ContainsUnconditionalBreak : public ProgramVisitor {
1131 public:
1132 bool visitStatement(const Statement& stmt) override {
Ethan Nicholase6592142020-09-08 10:22:09 -04001133 switch (stmt.kind()) {
1134 case Statement::Kind::kBlock:
John Stilesb92641c2020-08-31 18:09:01 -04001135 return this->INHERITED::visitStatement(stmt);
1136
Ethan Nicholase6592142020-09-08 10:22:09 -04001137 case Statement::Kind::kBreak:
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001138 return true;
John Stilesb92641c2020-08-31 18:09:01 -04001139
1140 default:
1141 return false;
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001142 }
John Stilesb92641c2020-08-31 18:09:01 -04001143 }
John Stiles92219b42020-06-15 12:32:24 -04001144
John Stilesb92641c2020-08-31 18:09:01 -04001145 using INHERITED = ProgramVisitor;
1146 };
John Stiles92219b42020-06-15 12:32:24 -04001147
John Stilesb92641c2020-08-31 18:09:01 -04001148 return ContainsUnconditionalBreak{}.visitStatement(stmt);
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001149}
1150
John Stiles92219b42020-06-15 12:32:24 -04001151static void move_all_but_break(std::unique_ptr<Statement>& stmt,
1152 std::vector<std::unique_ptr<Statement>>* target) {
Ethan Nicholase6592142020-09-08 10:22:09 -04001153 switch (stmt->kind()) {
1154 case Statement::Kind::kBlock: {
John Stiles92219b42020-06-15 12:32:24 -04001155 // Recurse into the block.
1156 Block& block = static_cast<Block&>(*stmt);
1157
1158 std::vector<std::unique_ptr<Statement>> blockStmts;
Ethan Nicholas7bd60432020-09-25 14:31:59 -04001159 blockStmts.reserve(block.children().size());
1160 for (std::unique_ptr<Statement>& stmt : block.children()) {
1161 move_all_but_break(stmt, &blockStmts);
Ethan Nicholas739e1ca2020-06-11 12:16:14 -04001162 }
John Stiles92219b42020-06-15 12:32:24 -04001163
1164 target->push_back(std::make_unique<Block>(block.fOffset, std::move(blockStmts),
Ethan Nicholas7bd60432020-09-25 14:31:59 -04001165 block.symbolTable(), block.isScope()));
Ethan Nicholas739e1ca2020-06-11 12:16:14 -04001166 break;
John Stiles92219b42020-06-15 12:32:24 -04001167 }
1168
Ethan Nicholase6592142020-09-08 10:22:09 -04001169 case Statement::Kind::kBreak:
John Stiles92219b42020-06-15 12:32:24 -04001170 // Do not append a break to the target.
1171 break;
1172
Ethan Nicholas739e1ca2020-06-11 12:16:14 -04001173 default:
John Stiles92219b42020-06-15 12:32:24 -04001174 // Append normal statements to the target.
1175 target->push_back(std::move(stmt));
1176 break;
Ethan Nicholas739e1ca2020-06-11 12:16:14 -04001177 }
1178}
1179
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001180// Returns a block containing all of the statements that will be run if the given case matches
1181// (which, owing to the statements being owned by unique_ptrs, means the switch itself will be
1182// broken by this call and must then be discarded).
1183// Returns null (and leaves the switch unmodified) if no such simple reduction is possible, such as
1184// when break statements appear inside conditionals.
John Stiles92219b42020-06-15 12:32:24 -04001185static std::unique_ptr<Statement> block_for_case(SwitchStatement* switchStatement,
1186 SwitchCase* caseToCapture) {
1187 // We have to be careful to not move any of the pointers until after we're sure we're going to
1188 // succeed, so before we make any changes at all, we check the switch-cases to decide on a plan
1189 // of action. First, find the switch-case we are interested in.
1190 auto iter = switchStatement->fCases.begin();
1191 for (; iter != switchStatement->fCases.end(); ++iter) {
1192 if (iter->get() == caseToCapture) {
1193 break;
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001194 }
John Stiles92219b42020-06-15 12:32:24 -04001195 }
1196
1197 // Next, walk forward through the rest of the switch. If we find a conditional break, we're
1198 // stuck and can't simplify at all. If we find an unconditional break, we have a range of
1199 // statements that we can use for simplification.
1200 auto startIter = iter;
1201 Statement* unconditionalBreakStmt = nullptr;
1202 for (; iter != switchStatement->fCases.end(); ++iter) {
1203 for (std::unique_ptr<Statement>& stmt : (*iter)->fStatements) {
1204 if (contains_conditional_break(*stmt)) {
1205 // We can't reduce switch-cases to a block when they have conditional breaks.
1206 return nullptr;
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001207 }
John Stiles92219b42020-06-15 12:32:24 -04001208
1209 if (contains_unconditional_break(*stmt)) {
1210 // We found an unconditional break. We can use this block, but we need to strip
1211 // out the break statement.
1212 unconditionalBreakStmt = stmt.get();
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001213 break;
1214 }
1215 }
John Stiles92219b42020-06-15 12:32:24 -04001216
1217 if (unconditionalBreakStmt != nullptr) {
1218 break;
1219 }
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001220 }
John Stiles92219b42020-06-15 12:32:24 -04001221
1222 // We fell off the bottom of the switch or encountered a break. We know the range of statements
1223 // that we need to move over, and we know it's safe to do so.
1224 std::vector<std::unique_ptr<Statement>> caseStmts;
1225
1226 // We can move over most of the statements as-is.
1227 while (startIter != iter) {
1228 for (std::unique_ptr<Statement>& stmt : (*startIter)->fStatements) {
1229 caseStmts.push_back(std::move(stmt));
1230 }
1231 ++startIter;
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001232 }
John Stiles92219b42020-06-15 12:32:24 -04001233
1234 // If we found an unconditional break at the end, we need to move what we can while avoiding
1235 // that break.
1236 if (unconditionalBreakStmt != nullptr) {
1237 for (std::unique_ptr<Statement>& stmt : (*startIter)->fStatements) {
1238 if (stmt.get() == unconditionalBreakStmt) {
1239 move_all_but_break(stmt, &caseStmts);
1240 unconditionalBreakStmt = nullptr;
1241 break;
1242 }
1243
1244 caseStmts.push_back(std::move(stmt));
1245 }
1246 }
1247
1248 SkASSERT(unconditionalBreakStmt == nullptr); // Verify that we fixed the unconditional break.
1249
1250 // Return our newly-synthesized block.
1251 return std::make_unique<Block>(/*offset=*/-1, std::move(caseStmts), switchStatement->fSymbols);
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001252}
1253
Ethan Nicholascb670962017-04-20 19:31:52 -04001254void Compiler::simplifyStatement(DefinitionMap& definitions,
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001255 BasicBlock& b,
1256 std::vector<BasicBlock::Node>::iterator* iter,
1257 std::unordered_set<const Variable*>* undefinedVariables,
1258 bool* outUpdated,
1259 bool* outNeedsRescan) {
Ethan Nicholascb670962017-04-20 19:31:52 -04001260 Statement* stmt = (*iter)->statement()->get();
Ethan Nicholase6592142020-09-08 10:22:09 -04001261 switch (stmt->kind()) {
1262 case Statement::Kind::kVarDeclaration: {
John Stilesa5a97b42020-08-18 11:19:07 -04001263 const auto& varDecl = stmt->as<VarDeclaration>();
Ethan Nicholas82a62d22017-11-07 14:42:10 +00001264 if (varDecl.fVar->dead() &&
1265 (!varDecl.fValue ||
1266 !varDecl.fValue->hasSideEffects())) {
1267 if (varDecl.fValue) {
Ethan Nicholasd9d33c32018-06-12 11:05:59 -04001268 SkASSERT((*iter)->statement()->get() == stmt);
Ethan Nicholas82a62d22017-11-07 14:42:10 +00001269 if (!b.tryRemoveExpressionBefore(iter, varDecl.fValue.get())) {
1270 *outNeedsRescan = true;
Ethan Nicholascb670962017-04-20 19:31:52 -04001271 }
Ethan Nicholascb670962017-04-20 19:31:52 -04001272 }
Ethan Nicholascb670962017-04-20 19:31:52 -04001273 (*iter)->setStatement(std::unique_ptr<Statement>(new Nop()));
Ethan Nicholas82a62d22017-11-07 14:42:10 +00001274 *outUpdated = true;
Ethan Nicholascb670962017-04-20 19:31:52 -04001275 }
1276 break;
1277 }
Ethan Nicholase6592142020-09-08 10:22:09 -04001278 case Statement::Kind::kIf: {
John Stilesa5a97b42020-08-18 11:19:07 -04001279 IfStatement& i = stmt->as<IfStatement>();
Ethan Nicholas8c44eca2020-10-07 16:47:09 -04001280 if (i.test()->kind() == Expression::Kind::kBoolLiteral) {
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001281 // constant if, collapse down to a single branch
Ethan Nicholas8c44eca2020-10-07 16:47:09 -04001282 if (i.test()->as<BoolLiteral>().value()) {
1283 SkASSERT(i.ifTrue());
1284 (*iter)->setStatement(std::move(i.ifTrue()));
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001285 } else {
Ethan Nicholas8c44eca2020-10-07 16:47:09 -04001286 if (i.ifFalse()) {
1287 (*iter)->setStatement(std::move(i.ifFalse()));
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001288 } else {
1289 (*iter)->setStatement(std::unique_ptr<Statement>(new Nop()));
1290 }
1291 }
1292 *outUpdated = true;
1293 *outNeedsRescan = true;
1294 break;
1295 }
Ethan Nicholas8c44eca2020-10-07 16:47:09 -04001296 if (i.ifFalse() && i.ifFalse()->isEmpty()) {
Ethan Nicholascb670962017-04-20 19:31:52 -04001297 // else block doesn't do anything, remove it
Ethan Nicholas8c44eca2020-10-07 16:47:09 -04001298 i.ifFalse().reset();
Ethan Nicholascb670962017-04-20 19:31:52 -04001299 *outUpdated = true;
1300 *outNeedsRescan = true;
1301 }
Ethan Nicholas8c44eca2020-10-07 16:47:09 -04001302 if (!i.ifFalse() && i.ifTrue()->isEmpty()) {
Ethan Nicholascb670962017-04-20 19:31:52 -04001303 // if block doesn't do anything, no else block
Ethan Nicholas8c44eca2020-10-07 16:47:09 -04001304 if (i.test()->hasSideEffects()) {
Ethan Nicholascb670962017-04-20 19:31:52 -04001305 // test has side effects, keep it
1306 (*iter)->setStatement(std::unique_ptr<Statement>(
Ethan Nicholas8c44eca2020-10-07 16:47:09 -04001307 new ExpressionStatement(std::move(i.test()))));
Ethan Nicholascb670962017-04-20 19:31:52 -04001308 } else {
1309 // no if, no else, no test side effects, kill the whole if
1310 // statement
1311 (*iter)->setStatement(std::unique_ptr<Statement>(new Nop()));
1312 }
1313 *outUpdated = true;
1314 *outNeedsRescan = true;
1315 }
1316 break;
1317 }
Ethan Nicholase6592142020-09-08 10:22:09 -04001318 case Statement::Kind::kSwitch: {
John Stilesa5a97b42020-08-18 11:19:07 -04001319 SwitchStatement& s = stmt->as<SwitchStatement>();
Ethan Nicholas34b19c52020-09-14 11:33:47 -04001320 int64_t switchValue;
1321 if (fIRGenerator->getConstantInt(*s.fValue, &switchValue)) {
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001322 // switch is constant, replace it with the case that matches
1323 bool found = false;
1324 SwitchCase* defaultCase = nullptr;
John Stiles9d944232020-08-19 09:56:49 -04001325 for (const std::unique_ptr<SwitchCase>& c : s.fCases) {
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001326 if (!c->fValue) {
1327 defaultCase = c.get();
1328 continue;
1329 }
Ethan Nicholas34b19c52020-09-14 11:33:47 -04001330 int64_t caseValue;
1331 SkAssertResult(fIRGenerator->getConstantInt(*c->fValue, &caseValue));
1332 if (caseValue == switchValue) {
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001333 std::unique_ptr<Statement> newBlock = block_for_case(&s, c.get());
1334 if (newBlock) {
1335 (*iter)->setStatement(std::move(newBlock));
John Stiles9d944232020-08-19 09:56:49 -04001336 found = true;
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001337 break;
1338 } else {
Ethan Nicholas6e1cbc02017-07-14 10:12:15 -04001339 if (s.fIsStatic && !(fFlags & kPermitInvalidStaticTests_Flag)) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001340 this->error(s.fOffset,
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001341 "static switch contains non-static conditional break");
1342 s.fIsStatic = false;
1343 }
1344 return; // can't simplify
1345 }
1346 }
1347 }
1348 if (!found) {
1349 // no matching case. use default if it exists, or kill the whole thing
1350 if (defaultCase) {
1351 std::unique_ptr<Statement> newBlock = block_for_case(&s, defaultCase);
1352 if (newBlock) {
1353 (*iter)->setStatement(std::move(newBlock));
1354 } else {
Ethan Nicholas6e1cbc02017-07-14 10:12:15 -04001355 if (s.fIsStatic && !(fFlags & kPermitInvalidStaticTests_Flag)) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001356 this->error(s.fOffset,
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001357 "static switch contains non-static conditional break");
1358 s.fIsStatic = false;
1359 }
1360 return; // can't simplify
1361 }
1362 } else {
1363 (*iter)->setStatement(std::unique_ptr<Statement>(new Nop()));
1364 }
1365 }
1366 *outUpdated = true;
1367 *outNeedsRescan = true;
1368 }
1369 break;
1370 }
Ethan Nicholase6592142020-09-08 10:22:09 -04001371 case Statement::Kind::kExpression: {
John Stilesa5a97b42020-08-18 11:19:07 -04001372 ExpressionStatement& e = stmt->as<ExpressionStatement>();
Ethan Nicholasd9d33c32018-06-12 11:05:59 -04001373 SkASSERT((*iter)->statement()->get() == &e);
Ethan Nicholasd503a5a2020-09-30 09:29:55 -04001374 if (!e.expression()->hasSideEffects()) {
Ethan Nicholascb670962017-04-20 19:31:52 -04001375 // Expression statement with no side effects, kill it
Ethan Nicholasd503a5a2020-09-30 09:29:55 -04001376 if (!b.tryRemoveExpressionBefore(iter, e.expression().get())) {
Ethan Nicholascb670962017-04-20 19:31:52 -04001377 *outNeedsRescan = true;
1378 }
Ethan Nicholasd9d33c32018-06-12 11:05:59 -04001379 SkASSERT((*iter)->statement()->get() == stmt);
Ethan Nicholascb670962017-04-20 19:31:52 -04001380 (*iter)->setStatement(std::unique_ptr<Statement>(new Nop()));
1381 *outUpdated = true;
1382 }
1383 break;
1384 }
1385 default:
1386 break;
1387 }
1388}
1389
John Stiles0cc193a2020-09-09 09:39:34 -04001390bool Compiler::scanCFG(FunctionDefinition& f) {
1391 bool madeChanges = false;
1392
Ethan Nicholascb670962017-04-20 19:31:52 -04001393 CFG cfg = CFGGenerator().getCFG(f);
1394 this->computeDataFlow(&cfg);
ethannicholas22f939e2016-10-13 13:25:34 -07001395
1396 // check for unreachable code
1397 for (size_t i = 0; i < cfg.fBlocks.size(); i++) {
John Stiles0cc193a2020-09-09 09:39:34 -04001398 const BasicBlock& block = cfg.fBlocks[i];
John Stiles61e75e32020-10-01 15:42:37 -04001399 if (i != cfg.fStart && !block.fIsReachable && block.fNodes.size()) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001400 int offset;
John Stiles0cc193a2020-09-09 09:39:34 -04001401 const BasicBlock::Node& node = block.fNodes[0];
John Stiles70025e52020-09-28 16:08:58 -04001402 if (node.isStatement()) {
1403 offset = (*node.statement())->fOffset;
1404 } else {
1405 offset = (*node.expression())->fOffset;
1406 if ((*node.expression())->is<BoolLiteral>()) {
1407 // Function inlining can generate do { ... } while(false) loops which always
1408 // break, so the boolean condition is considered unreachable. Since not being
1409 // able to reach a literal is a non-issue in the first place, we don't report an
1410 // error in this case.
1411 continue;
1412 }
Ethan Nicholas86a43402017-01-19 13:32:00 -05001413 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001414 this->error(offset, String("unreachable"));
ethannicholas22f939e2016-10-13 13:25:34 -07001415 }
1416 }
1417 if (fErrorCount) {
John Stiles0cc193a2020-09-09 09:39:34 -04001418 return madeChanges;
ethannicholas22f939e2016-10-13 13:25:34 -07001419 }
1420
Ethan Nicholascb670962017-04-20 19:31:52 -04001421 // check for dead code & undefined variables, perform constant propagation
1422 std::unordered_set<const Variable*> undefinedVariables;
1423 bool updated;
1424 bool needsRescan = false;
1425 do {
1426 if (needsRescan) {
1427 cfg = CFGGenerator().getCFG(f);
1428 this->computeDataFlow(&cfg);
1429 needsRescan = false;
Ethan Nicholas113628d2017-02-02 16:11:39 -05001430 }
Ethan Nicholascb670962017-04-20 19:31:52 -04001431
1432 updated = false;
Ethan Nicholas1de14812020-06-19 15:32:49 -04001433 bool first = true;
Ethan Nicholascb670962017-04-20 19:31:52 -04001434 for (BasicBlock& b : cfg.fBlocks) {
John Stiles61e75e32020-10-01 15:42:37 -04001435 if (!first && !b.fIsReachable) {
Ethan Nicholas1de14812020-06-19 15:32:49 -04001436 // Block was reachable before optimization, but has since become unreachable. In
1437 // addition to being dead code, it's broken - since control flow can't reach it, no
1438 // prior variable definitions can reach it, and therefore variables might look to
Brian Osmanc0213602020-10-06 14:43:32 -04001439 // have not been properly assigned. Kill it by replacing all statements with Nops.
Ethan Nicholas1de14812020-06-19 15:32:49 -04001440 for (BasicBlock::Node& node : b.fNodes) {
John Stiles70025e52020-09-28 16:08:58 -04001441 if (node.isStatement() && !(*node.statement())->is<Nop>()) {
John Stiles0cc193a2020-09-09 09:39:34 -04001442 node.setStatement(std::make_unique<Nop>());
1443 madeChanges = true;
Ethan Nicholas1de14812020-06-19 15:32:49 -04001444 }
1445 }
1446 continue;
1447 }
1448 first = false;
Ethan Nicholascb670962017-04-20 19:31:52 -04001449 DefinitionMap definitions = b.fBefore;
1450
1451 for (auto iter = b.fNodes.begin(); iter != b.fNodes.end() && !needsRescan; ++iter) {
John Stiles70025e52020-09-28 16:08:58 -04001452 if (iter->isExpression()) {
Ethan Nicholascb670962017-04-20 19:31:52 -04001453 this->simplifyExpression(definitions, b, &iter, &undefinedVariables, &updated,
1454 &needsRescan);
1455 } else {
1456 this->simplifyStatement(definitions, b, &iter, &undefinedVariables, &updated,
John Stiles0cc193a2020-09-09 09:39:34 -04001457 &needsRescan);
Ethan Nicholascb670962017-04-20 19:31:52 -04001458 }
Ethan Nicholas4b330df2017-05-17 10:52:55 -04001459 if (needsRescan) {
1460 break;
1461 }
Ethan Nicholascb670962017-04-20 19:31:52 -04001462 this->addDefinitions(*iter, &definitions);
1463 }
Brian Osman01a3eb42020-09-14 11:32:49 -04001464
1465 if (needsRescan) {
1466 break;
1467 }
Ethan Nicholascb670962017-04-20 19:31:52 -04001468 }
John Stiles0cc193a2020-09-09 09:39:34 -04001469 madeChanges |= updated;
Ethan Nicholascb670962017-04-20 19:31:52 -04001470 } while (updated);
Ethan Nicholasd9d33c32018-06-12 11:05:59 -04001471 SkASSERT(!needsRescan);
ethannicholas22f939e2016-10-13 13:25:34 -07001472
Ethan Nicholas91a10532017-06-22 11:24:38 -04001473 // verify static ifs & switches, clean up dead variable decls
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001474 for (BasicBlock& b : cfg.fBlocks) {
Ethan Nicholas91a10532017-06-22 11:24:38 -04001475 for (auto iter = b.fNodes.begin(); iter != b.fNodes.end() && !needsRescan;) {
John Stiles70025e52020-09-28 16:08:58 -04001476 if (iter->isStatement()) {
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001477 const Statement& s = **iter->statement();
Ethan Nicholase6592142020-09-08 10:22:09 -04001478 switch (s.kind()) {
1479 case Statement::Kind::kIf:
Ethan Nicholas8c44eca2020-10-07 16:47:09 -04001480 if (s.as<IfStatement>().isStatic() &&
Ethan Nicholas6e1cbc02017-07-14 10:12:15 -04001481 !(fFlags & kPermitInvalidStaticTests_Flag)) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001482 this->error(s.fOffset, "static if has non-static test");
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001483 }
Ethan Nicholas91a10532017-06-22 11:24:38 -04001484 ++iter;
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001485 break;
Ethan Nicholase6592142020-09-08 10:22:09 -04001486 case Statement::Kind::kSwitch:
John Stilesa5a97b42020-08-18 11:19:07 -04001487 if (s.as<SwitchStatement>().fIsStatic &&
John Stiles0cc193a2020-09-09 09:39:34 -04001488 !(fFlags & kPermitInvalidStaticTests_Flag)) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001489 this->error(s.fOffset, "static switch has non-static test");
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001490 }
Ethan Nicholas91a10532017-06-22 11:24:38 -04001491 ++iter;
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001492 break;
1493 default:
Ethan Nicholas91a10532017-06-22 11:24:38 -04001494 ++iter;
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001495 break;
1496 }
Ethan Nicholas91a10532017-06-22 11:24:38 -04001497 } else {
1498 ++iter;
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001499 }
1500 }
1501 }
1502
ethannicholas22f939e2016-10-13 13:25:34 -07001503 // check for missing return
Ethan Nicholased84b732020-10-08 11:45:44 -04001504 if (f.fDeclaration.returnType() != *fContext->fVoid_Type) {
John Stiles61e75e32020-10-01 15:42:37 -04001505 if (cfg.fBlocks[cfg.fExit].fIsReachable) {
Ethan Nicholase2c49992020-10-05 11:49:11 -04001506 this->error(f.fOffset, String("function '" + String(f.fDeclaration.name()) +
Ethan Nicholasdb80f692019-11-22 14:06:12 -05001507 "' can exit without returning a value"));
ethannicholas22f939e2016-10-13 13:25:34 -07001508 }
1509 }
John Stiles0cc193a2020-09-09 09:39:34 -04001510
1511 return madeChanges;
ethannicholas22f939e2016-10-13 13:25:34 -07001512}
1513
Brian Osman32d53552020-09-23 13:55:20 -04001514std::unique_ptr<Program> Compiler::convertProgram(
1515 Program::Kind kind,
1516 String text,
1517 const Program::Settings& settings,
1518 const std::vector<std::unique_ptr<ExternalValue>>* externalValues) {
1519 SkASSERT(!externalValues || (kind == Program::kGeneric_Kind));
Ethan Nicholas91164d12019-05-15 15:29:54 -04001520
ethannicholasb3058bd2016-07-01 08:22:01 -07001521 fErrorText = "";
1522 fErrorCount = 0;
Brian Osman3d87e9f2020-10-08 11:50:22 -04001523 fInliner.reset(fContext.get(), fIRGenerator->fModifiers.get(), &settings);
Brian Osman88cda172020-10-09 12:05:16 -04001524
1525 // Not using AutoSource, because caller is likely to call errorText() if we fail to compile
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001526 std::unique_ptr<String> textPtr(new String(std::move(text)));
1527 fSource = textPtr.get();
Brian Osman88cda172020-10-09 12:05:16 -04001528
1529 const ParsedModule& baseModule = this->moduleForProgramKind(kind);
1530
1531 IRGenerator::IRBundle ir =
1532 fIRGenerator->convertProgram(kind, &settings, baseModule, /*isBuiltinCode=*/false,
1533 textPtr->c_str(), textPtr->size(), externalValues);
John Stilesfbd050b2020-08-03 13:21:46 -04001534 auto result = std::make_unique<Program>(kind,
1535 std::move(textPtr),
1536 settings,
1537 fContext,
Brian Osman88cda172020-10-09 12:05:16 -04001538 std::move(ir.fElements),
1539 std::move(ir.fModifiers),
1540 std::move(ir.fSymbolTable),
1541 ir.fInputs);
Ethan Nicholas941e7e22016-12-12 15:33:30 -05001542 if (fErrorCount) {
1543 return nullptr;
1544 }
Ethan Nicholas34b19c52020-09-14 11:33:47 -04001545 if (settings.fOptimize && !this->optimize(*result)) {
1546 return nullptr;
1547 }
Ethan Nicholas941e7e22016-12-12 15:33:30 -05001548 return result;
1549}
1550
Ethan Nicholas00543112018-07-31 09:44:36 -04001551bool Compiler::optimize(Program& program) {
1552 SkASSERT(!fErrorCount);
Ethan Nicholas34b19c52020-09-14 11:33:47 -04001553 fIRGenerator->fKind = program.fKind;
1554 fIRGenerator->fSettings = &program.fSettings;
John Stiles7954d6c2020-09-01 10:53:02 -04001555
Ethan Nicholas34b19c52020-09-14 11:33:47 -04001556 while (fErrorCount == 0) {
1557 bool madeChanges = false;
John Stiles7954d6c2020-09-01 10:53:02 -04001558
Ethan Nicholas34b19c52020-09-14 11:33:47 -04001559 // Scan and optimize based on the control-flow graph for each function.
Brian Osman1179fcf2020-10-08 16:04:40 -04001560 for (const auto& element : program.elements()) {
1561 if (element->is<FunctionDefinition>()) {
1562 madeChanges |= this->scanCFG(element->as<FunctionDefinition>());
Ethan Nicholas34b19c52020-09-14 11:33:47 -04001563 }
1564 }
1565
1566 // Perform inline-candidate analysis and inline any functions deemed suitable.
John Stiles881a10c2020-09-19 10:13:24 -04001567 madeChanges |= fInliner.analyze(program);
Ethan Nicholas34b19c52020-09-14 11:33:47 -04001568
1569 // Remove dead functions. We wait until after analysis so that we still report errors,
1570 // even in unused code.
1571 if (program.fSettings.fRemoveDeadFunctions) {
1572 program.fElements.erase(
1573 std::remove_if(program.fElements.begin(),
1574 program.fElements.end(),
1575 [&](const std::unique_ptr<ProgramElement>& element) {
1576 if (!element->is<FunctionDefinition>()) {
1577 return false;
1578 }
1579 const auto& fn = element->as<FunctionDefinition>();
Ethan Nicholased84b732020-10-08 11:45:44 -04001580 bool dead = fn.fDeclaration.callCount() == 0 &&
Ethan Nicholase2c49992020-10-05 11:49:11 -04001581 fn.fDeclaration.name() != "main";
Ethan Nicholas34b19c52020-09-14 11:33:47 -04001582 madeChanges |= dead;
1583 return dead;
1584 }),
1585 program.fElements.end());
1586 }
1587
1588 if (program.fKind != Program::kFragmentProcessor_Kind) {
Brian Osmanc0213602020-10-06 14:43:32 -04001589 // Remove declarations of dead global variables
Ethan Nicholas34b19c52020-09-14 11:33:47 -04001590 program.fElements.erase(
1591 std::remove_if(program.fElements.begin(), program.fElements.end(),
1592 [&](const std::unique_ptr<ProgramElement>& element) {
Brian Osmanc0213602020-10-06 14:43:32 -04001593 if (!element->is<GlobalVarDeclaration>()) {
Ethan Nicholas34b19c52020-09-14 11:33:47 -04001594 return false;
1595 }
Brian Osmanc0213602020-10-06 14:43:32 -04001596 const auto& varDecl = element->as<GlobalVarDeclaration>();
1597 bool dead = varDecl.fDecl->fVar->dead();
Ethan Nicholas34b19c52020-09-14 11:33:47 -04001598 madeChanges |= dead;
1599 return dead;
1600 }),
1601 program.fElements.end());
1602 }
John Stiles73a6bff2020-09-09 13:40:37 -04001603
Ethan Nicholas34b19c52020-09-14 11:33:47 -04001604 if (!madeChanges) {
1605 break;
Ethan Nicholas0dc80872019-02-08 15:46:24 -05001606 }
Ethan Nicholas00543112018-07-31 09:44:36 -04001607 }
1608 return fErrorCount == 0;
1609}
1610
Brian Osmanfb32ddf2019-06-18 10:14:20 -04001611#if defined(SKSL_STANDALONE) || SK_SUPPORT_GPU
1612
Ethan Nicholas00543112018-07-31 09:44:36 -04001613bool Compiler::toSPIRV(Program& program, OutputStream& out) {
Ethan Nicholasa6ae1f72017-03-16 09:56:54 -04001614#ifdef SK_ENABLE_SPIRV_VALIDATION
Ethan Nicholas0df1b042017-03-31 13:56:23 -04001615 StringStream buffer;
Brian Osman88cda172020-10-09 12:05:16 -04001616 AutoSource as(this, program.fSource.get());
Brian Osman8b43dad2020-10-09 13:31:42 -04001617 SPIRVCodeGenerator cg(fContext.get(), &program, this, &buffer);
Ethan Nicholasa6ae1f72017-03-16 09:56:54 -04001618 bool result = cg.generateCode();
1619 if (result) {
Ethan Nicholasa6ae1f72017-03-16 09:56:54 -04001620 spvtools::SpirvTools tools(SPV_ENV_VULKAN_1_0);
Ethan Nicholas762466e2017-06-29 10:03:38 -04001621 const String& data = buffer.str();
Ethan Nicholasd9d33c32018-06-12 11:05:59 -04001622 SkASSERT(0 == data.size() % 4);
Ethan Nicholasa6ae1f72017-03-16 09:56:54 -04001623 auto dumpmsg = [](spv_message_level_t, const char*, const spv_position_t&, const char* m) {
1624 SkDebugf("SPIR-V validation error: %s\n", m);
1625 };
1626 tools.SetMessageConsumer(dumpmsg);
Ethan Nicholasd9d33c32018-06-12 11:05:59 -04001627 // Verify that the SPIR-V we produced is valid. If this SkASSERT fails, check the logs prior
Ethan Nicholasa6ae1f72017-03-16 09:56:54 -04001628 // to the failure to see the validation errors.
Ethan Nicholasd9d33c32018-06-12 11:05:59 -04001629 SkAssertResult(tools.Validate((const uint32_t*) data.c_str(), data.size() / 4));
Ethan Nicholas762466e2017-06-29 10:03:38 -04001630 out.write(data.c_str(), data.size());
Ethan Nicholasa6ae1f72017-03-16 09:56:54 -04001631 }
1632#else
Brian Osman88cda172020-10-09 12:05:16 -04001633 AutoSource as(this, program.fSource.get());
Brian Osman8b43dad2020-10-09 13:31:42 -04001634 SPIRVCodeGenerator cg(fContext.get(), &program, this, &out);
Ethan Nicholas941e7e22016-12-12 15:33:30 -05001635 bool result = cg.generateCode();
Ethan Nicholasa6ae1f72017-03-16 09:56:54 -04001636#endif
Ethan Nicholasce33f102016-12-09 17:22:59 -05001637 return result;
1638}
1639
Ethan Nicholas00543112018-07-31 09:44:36 -04001640bool Compiler::toSPIRV(Program& program, String* out) {
Ethan Nicholas0df1b042017-03-31 13:56:23 -04001641 StringStream buffer;
Ethan Nicholas941e7e22016-12-12 15:33:30 -05001642 bool result = this->toSPIRV(program, buffer);
1643 if (result) {
Ethan Nicholas762466e2017-06-29 10:03:38 -04001644 *out = buffer.str();
Ethan Nicholas941e7e22016-12-12 15:33:30 -05001645 }
1646 return result;
1647}
1648
Ethan Nicholas00543112018-07-31 09:44:36 -04001649bool Compiler::toGLSL(Program& program, OutputStream& out) {
Brian Osman88cda172020-10-09 12:05:16 -04001650 AutoSource as(this, program.fSource.get());
Ethan Nicholas26a9aad2018-03-27 14:10:52 -04001651 GLSLCodeGenerator cg(fContext.get(), &program, this, &out);
Ethan Nicholas941e7e22016-12-12 15:33:30 -05001652 bool result = cg.generateCode();
Ethan Nicholas941e7e22016-12-12 15:33:30 -05001653 return result;
1654}
1655
Ethan Nicholas00543112018-07-31 09:44:36 -04001656bool Compiler::toGLSL(Program& program, String* out) {
Ethan Nicholas0df1b042017-03-31 13:56:23 -04001657 StringStream buffer;
Ethan Nicholas941e7e22016-12-12 15:33:30 -05001658 bool result = this->toGLSL(program, buffer);
1659 if (result) {
Ethan Nicholas762466e2017-06-29 10:03:38 -04001660 *out = buffer.str();
Ethan Nicholas941e7e22016-12-12 15:33:30 -05001661 }
1662 return result;
1663}
1664
Brian Osmanc0243912020-02-19 15:35:26 -05001665bool Compiler::toHLSL(Program& program, String* out) {
1666 String spirv;
1667 if (!this->toSPIRV(program, &spirv)) {
1668 return false;
1669 }
1670
1671 return SPIRVtoHLSL(spirv, out);
1672}
1673
Ethan Nicholas00543112018-07-31 09:44:36 -04001674bool Compiler::toMetal(Program& program, OutputStream& out) {
Ethan Nicholas26a9aad2018-03-27 14:10:52 -04001675 MetalCodeGenerator cg(fContext.get(), &program, this, &out);
Ethan Nicholascc305772017-10-13 16:17:45 -04001676 bool result = cg.generateCode();
Ethan Nicholascc305772017-10-13 16:17:45 -04001677 return result;
1678}
1679
Ethan Nicholas00543112018-07-31 09:44:36 -04001680bool Compiler::toMetal(Program& program, String* out) {
Timothy Liangb8eeb802018-07-23 16:46:16 -04001681 StringStream buffer;
1682 bool result = this->toMetal(program, buffer);
1683 if (result) {
1684 *out = buffer.str();
1685 }
1686 return result;
1687}
1688
Greg Daniela28ea672020-09-25 11:12:56 -04001689#if defined(SKSL_STANDALONE) || GR_TEST_UTILS
Ethan Nicholas00543112018-07-31 09:44:36 -04001690bool Compiler::toCPP(Program& program, String name, OutputStream& out) {
Brian Osman88cda172020-10-09 12:05:16 -04001691 AutoSource as(this, program.fSource.get());
Ethan Nicholas26a9aad2018-03-27 14:10:52 -04001692 CPPCodeGenerator cg(fContext.get(), &program, this, name, &out);
Ethan Nicholas762466e2017-06-29 10:03:38 -04001693 bool result = cg.generateCode();
Ethan Nicholas762466e2017-06-29 10:03:38 -04001694 return result;
1695}
1696
Ethan Nicholas00543112018-07-31 09:44:36 -04001697bool Compiler::toH(Program& program, String name, OutputStream& out) {
Brian Osman88cda172020-10-09 12:05:16 -04001698 AutoSource as(this, program.fSource.get());
Ethan Nicholas26a9aad2018-03-27 14:10:52 -04001699 HCodeGenerator cg(fContext.get(), &program, this, name, &out);
Ethan Nicholas762466e2017-06-29 10:03:38 -04001700 bool result = cg.generateCode();
Ethan Nicholas00543112018-07-31 09:44:36 -04001701 return result;
1702}
Greg Daniela28ea672020-09-25 11:12:56 -04001703#endif // defined(SKSL_STANDALONE) || GR_TEST_UTILS
Ethan Nicholas00543112018-07-31 09:44:36 -04001704
Ethan Nicholas2a479a52020-08-18 16:29:45 -04001705#endif // defined(SKSL_STANDALONE) || SK_SUPPORT_GPU
Brian Osman2e29ab52019-09-20 12:19:11 -04001706
1707#if !defined(SKSL_STANDALONE) && SK_SUPPORT_GPU
Brian Osmana4b91692020-08-10 14:26:16 -04001708bool Compiler::toPipelineStage(Program& program, PipelineStageArgs* outArgs) {
Brian Osman88cda172020-10-09 12:05:16 -04001709 AutoSource as(this, program.fSource.get());
Ethan Nicholas00543112018-07-31 09:44:36 -04001710 StringStream buffer;
Brian Osman300fe1d2020-01-23 15:42:43 -05001711 PipelineStageCodeGenerator cg(fContext.get(), &program, this, &buffer, outArgs);
Ethan Nicholas00543112018-07-31 09:44:36 -04001712 bool result = cg.generateCode();
Ethan Nicholas00543112018-07-31 09:44:36 -04001713 if (result) {
Brian Osman107c6662019-12-30 15:02:30 -05001714 outArgs->fCode = buffer.str();
Ethan Nicholas00543112018-07-31 09:44:36 -04001715 }
Ethan Nicholas762466e2017-06-29 10:03:38 -04001716 return result;
1717}
Brian Osmanfb32ddf2019-06-18 10:14:20 -04001718#endif
1719
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001720std::unique_ptr<ByteCode> Compiler::toByteCode(Program& program) {
Mike Klein853d4ed2020-08-20 00:41:00 +00001721#if defined(SK_ENABLE_SKSL_INTERPRETER)
Brian Osman88cda172020-10-09 12:05:16 -04001722 AutoSource as(this, program.fSource.get());
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001723 std::unique_ptr<ByteCode> result(new ByteCode());
Brian Osmanb08cc022020-04-02 11:38:40 -04001724 ByteCodeGenerator cg(fContext.get(), &program, this, result.get());
1725 bool success = cg.generateCode();
Brian Osmanb08cc022020-04-02 11:38:40 -04001726 if (success) {
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001727 return result;
1728 }
Mike Klein853d4ed2020-08-20 00:41:00 +00001729#else
1730 ABORT("ByteCode interpreter not enabled");
1731#endif
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001732 return nullptr;
1733}
1734
Brian Osman401a0092020-09-10 14:47:24 -04001735const char* Compiler::OperatorName(Token::Kind op) {
1736 switch (op) {
Ethan Nicholas5a9e7fb2020-04-17 12:45:51 -04001737 case Token::Kind::TK_PLUS: return "+";
1738 case Token::Kind::TK_MINUS: return "-";
1739 case Token::Kind::TK_STAR: return "*";
1740 case Token::Kind::TK_SLASH: return "/";
1741 case Token::Kind::TK_PERCENT: return "%";
1742 case Token::Kind::TK_SHL: return "<<";
1743 case Token::Kind::TK_SHR: return ">>";
1744 case Token::Kind::TK_LOGICALNOT: return "!";
1745 case Token::Kind::TK_LOGICALAND: return "&&";
1746 case Token::Kind::TK_LOGICALOR: return "||";
1747 case Token::Kind::TK_LOGICALXOR: return "^^";
1748 case Token::Kind::TK_BITWISENOT: return "~";
1749 case Token::Kind::TK_BITWISEAND: return "&";
1750 case Token::Kind::TK_BITWISEOR: return "|";
1751 case Token::Kind::TK_BITWISEXOR: return "^";
1752 case Token::Kind::TK_EQ: return "=";
1753 case Token::Kind::TK_EQEQ: return "==";
1754 case Token::Kind::TK_NEQ: return "!=";
1755 case Token::Kind::TK_LT: return "<";
1756 case Token::Kind::TK_GT: return ">";
1757 case Token::Kind::TK_LTEQ: return "<=";
1758 case Token::Kind::TK_GTEQ: return ">=";
1759 case Token::Kind::TK_PLUSEQ: return "+=";
1760 case Token::Kind::TK_MINUSEQ: return "-=";
1761 case Token::Kind::TK_STAREQ: return "*=";
1762 case Token::Kind::TK_SLASHEQ: return "/=";
1763 case Token::Kind::TK_PERCENTEQ: return "%=";
1764 case Token::Kind::TK_SHLEQ: return "<<=";
1765 case Token::Kind::TK_SHREQ: return ">>=";
1766 case Token::Kind::TK_LOGICALANDEQ: return "&&=";
1767 case Token::Kind::TK_LOGICALOREQ: return "||=";
1768 case Token::Kind::TK_LOGICALXOREQ: return "^^=";
1769 case Token::Kind::TK_BITWISEANDEQ: return "&=";
1770 case Token::Kind::TK_BITWISEOREQ: return "|=";
1771 case Token::Kind::TK_BITWISEXOREQ: return "^=";
1772 case Token::Kind::TK_PLUSPLUS: return "++";
1773 case Token::Kind::TK_MINUSMINUS: return "--";
1774 case Token::Kind::TK_COMMA: return ",";
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001775 default:
Brian Osman401a0092020-09-10 14:47:24 -04001776 ABORT("unsupported operator: %d\n", (int) op);
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001777 }
1778}
1779
1780
1781bool Compiler::IsAssignment(Token::Kind op) {
1782 switch (op) {
Ethan Nicholas5a9e7fb2020-04-17 12:45:51 -04001783 case Token::Kind::TK_EQ: // fall through
1784 case Token::Kind::TK_PLUSEQ: // fall through
1785 case Token::Kind::TK_MINUSEQ: // fall through
1786 case Token::Kind::TK_STAREQ: // fall through
1787 case Token::Kind::TK_SLASHEQ: // fall through
1788 case Token::Kind::TK_PERCENTEQ: // fall through
1789 case Token::Kind::TK_SHLEQ: // fall through
1790 case Token::Kind::TK_SHREQ: // fall through
1791 case Token::Kind::TK_BITWISEOREQ: // fall through
1792 case Token::Kind::TK_BITWISEXOREQ: // fall through
1793 case Token::Kind::TK_BITWISEANDEQ: // fall through
1794 case Token::Kind::TK_LOGICALOREQ: // fall through
1795 case Token::Kind::TK_LOGICALXOREQ: // fall through
1796 case Token::Kind::TK_LOGICALANDEQ:
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001797 return true;
1798 default:
1799 return false;
1800 }
1801}
1802
Brian Osman401a0092020-09-10 14:47:24 -04001803Token::Kind Compiler::RemoveAssignment(Token::Kind op) {
1804 switch (op) {
1805 case Token::Kind::TK_PLUSEQ: return Token::Kind::TK_PLUS;
1806 case Token::Kind::TK_MINUSEQ: return Token::Kind::TK_MINUS;
1807 case Token::Kind::TK_STAREQ: return Token::Kind::TK_STAR;
1808 case Token::Kind::TK_SLASHEQ: return Token::Kind::TK_SLASH;
1809 case Token::Kind::TK_PERCENTEQ: return Token::Kind::TK_PERCENT;
1810 case Token::Kind::TK_SHLEQ: return Token::Kind::TK_SHL;
1811 case Token::Kind::TK_SHREQ: return Token::Kind::TK_SHR;
1812 case Token::Kind::TK_BITWISEOREQ: return Token::Kind::TK_BITWISEOR;
1813 case Token::Kind::TK_BITWISEXOREQ: return Token::Kind::TK_BITWISEXOR;
1814 case Token::Kind::TK_BITWISEANDEQ: return Token::Kind::TK_BITWISEAND;
1815 case Token::Kind::TK_LOGICALOREQ: return Token::Kind::TK_LOGICALOR;
1816 case Token::Kind::TK_LOGICALXOREQ: return Token::Kind::TK_LOGICALXOR;
1817 case Token::Kind::TK_LOGICALANDEQ: return Token::Kind::TK_LOGICALAND;
1818 default: return op;
1819 }
1820}
1821
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001822Position Compiler::position(int offset) {
Ethan Nicholasd9d33c32018-06-12 11:05:59 -04001823 SkASSERT(fSource);
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001824 int line = 1;
1825 int column = 1;
1826 for (int i = 0; i < offset; i++) {
1827 if ((*fSource)[i] == '\n') {
1828 ++line;
1829 column = 1;
1830 }
1831 else {
1832 ++column;
1833 }
1834 }
1835 return Position(line, column);
1836}
1837
1838void Compiler::error(int offset, String msg) {
ethannicholasb3058bd2016-07-01 08:22:01 -07001839 fErrorCount++;
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001840 Position pos = this->position(offset);
1841 fErrorText += "error: " + to_string(pos.fLine) + ": " + msg.c_str() + "\n";
ethannicholasb3058bd2016-07-01 08:22:01 -07001842}
1843
Ethan Nicholas0df1b042017-03-31 13:56:23 -04001844String Compiler::errorText() {
Ethan Nicholas00543112018-07-31 09:44:36 -04001845 this->writeErrorCount();
1846 fErrorCount = 0;
Ethan Nicholas0df1b042017-03-31 13:56:23 -04001847 String result = fErrorText;
ethannicholasb3058bd2016-07-01 08:22:01 -07001848 return result;
1849}
1850
1851void Compiler::writeErrorCount() {
1852 if (fErrorCount) {
1853 fErrorText += to_string(fErrorCount) + " error";
1854 if (fErrorCount > 1) {
1855 fErrorText += "s";
1856 }
1857 fErrorText += "\n";
1858 }
1859}
1860
John Stilesa6841be2020-08-06 14:11:56 -04001861} // namespace SkSL