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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"
ethannicholasb3058bd2016-07-01 08:22:01 -070036
Ethan Nicholasb33fa3f2020-08-06 13:00:19 -040037#include <fstream>
38
Ethan Nicholasa11035b2019-11-26 16:27:47 -050039#if !defined(SKSL_STANDALONE) & SK_SUPPORT_GPU
40#include "include/gpu/GrContextOptions.h"
41#include "src/gpu/GrShaderCaps.h"
42#endif
43
Ethan Nicholasa6ae1f72017-03-16 09:56:54 -040044#ifdef SK_ENABLE_SPIRV_VALIDATION
45#include "spirv-tools/libspirv.hpp"
46#endif
47
Brian Osmandd496172020-08-08 08:17:18 -040048#if !SKSL_STANDALONE
Ethan Nicholasc18bb512020-07-28 14:46:53 -040049
50#include "src/sksl/generated/sksl_fp.dehydrated.sksl"
51#include "src/sksl/generated/sksl_frag.dehydrated.sksl"
52#include "src/sksl/generated/sksl_geom.dehydrated.sksl"
53#include "src/sksl/generated/sksl_gpu.dehydrated.sksl"
54#include "src/sksl/generated/sksl_interp.dehydrated.sksl"
55#include "src/sksl/generated/sksl_pipeline.dehydrated.sksl"
56#include "src/sksl/generated/sksl_vert.dehydrated.sksl"
57
58#else
59
Brian Osmandd496172020-08-08 08:17:18 -040060// GN generates or copies all of these files to the skslc executable directory
61static const char SKSL_GPU_INCLUDE[] = "sksl_gpu.sksl";
62static const char SKSL_INTERP_INCLUDE[] = "sksl_interp.sksl";
63static const char SKSL_VERT_INCLUDE[] = "sksl_vert.sksl";
64static const char SKSL_FRAG_INCLUDE[] = "sksl_frag.sksl";
65static const char SKSL_GEOM_INCLUDE[] = "sksl_geom.sksl";
66static const char SKSL_FP_INCLUDE[] = "sksl_fp.sksl";
67static const char SKSL_PIPELINE_INCLUDE[] = "sksl_pipeline.sksl";
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
Ethan Nicholasdb80f692019-11-22 14:06:12 -050073static void grab_intrinsics(std::vector<std::unique_ptr<ProgramElement>>* src,
John Stiles810c8cf2020-08-26 19:46:27 -040074 IRIntrinsicMap* target) {
Brian Osman08f986d2020-05-13 17:06:46 -040075 for (auto iter = src->begin(); iter != src->end(); ) {
76 std::unique_ptr<ProgramElement>& element = *iter;
Ethan Nicholase6592142020-09-08 10:22:09 -040077 switch (element->kind()) {
78 case ProgramElement::Kind::kFunction: {
John Stiles3dc0da62020-08-19 17:48:31 -040079 FunctionDefinition& f = element->as<FunctionDefinition>();
Brian Osman08f986d2020-05-13 17:06:46 -040080 SkASSERT(f.fDeclaration.fBuiltin);
Ethan Nicholasc18bb512020-07-28 14:46:53 -040081 String key = f.fDeclaration.description();
Brian Osman08f986d2020-05-13 17:06:46 -040082 SkASSERT(target->find(key) == target->end());
John Stiles810c8cf2020-08-26 19:46:27 -040083 (*target)[key] = IRIntrinsic{std::move(element), /*fAlreadyIncluded=*/false};
Brian Osman08f986d2020-05-13 17:06:46 -040084 iter = src->erase(iter);
Ethan Nicholasdb80f692019-11-22 14:06:12 -050085 break;
86 }
Ethan Nicholase6592142020-09-08 10:22:09 -040087 case ProgramElement::Kind::kEnum: {
John Stiles3dc0da62020-08-19 17:48:31 -040088 Enum& e = element->as<Enum>();
Ethan Nicholasdb80f692019-11-22 14:06:12 -050089 StringFragment name = e.fTypeName;
90 SkASSERT(target->find(name) == target->end());
John Stiles810c8cf2020-08-26 19:46:27 -040091 (*target)[name] = IRIntrinsic{std::move(element), /*fAlreadyIncluded=*/false};
Brian Osman08f986d2020-05-13 17:06:46 -040092 iter = src->erase(iter);
Ethan Nicholasdb80f692019-11-22 14:06:12 -050093 break;
94 }
95 default:
96 printf("unsupported include file element\n");
97 SkASSERT(false);
98 }
99 }
100}
101
Ethan Nicholas6e1cbc02017-07-14 10:12:15 -0400102Compiler::Compiler(Flags flags)
John Stiles810c8cf2020-08-26 19:46:27 -0400103: fGPUIntrinsics(std::make_unique<IRIntrinsicMap>())
104, fInterpreterIntrinsics(std::make_unique<IRIntrinsicMap>())
105, fFlags(flags)
106, fContext(std::make_shared<Context>())
Ethan Nicholas6e1cbc02017-07-14 10:12:15 -0400107, fErrorCount(0) {
John Stiles656427a2020-08-27 15:26:26 -0400108 auto symbols = std::make_shared<SymbolTable>(this);
John Stiles7b463002020-08-31 17:29:21 -0400109 fIRGenerator = std::make_unique<IRGenerator>(fContext.get(), &fInliner, symbols, *this);
Ethan Nicholasc18bb512020-07-28 14:46:53 -0400110 #define ADD_TYPE(t) symbols->addWithoutOwnership(fContext->f ## t ## _Type->fName, \
111 fContext->f ## t ## _Type.get())
ethannicholasb3058bd2016-07-01 08:22:01 -0700112 ADD_TYPE(Void);
113 ADD_TYPE(Float);
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400114 ADD_TYPE(Float2);
115 ADD_TYPE(Float3);
116 ADD_TYPE(Float4);
Ethan Nicholasdcba08e2017-08-02 10:52:54 -0400117 ADD_TYPE(Half);
118 ADD_TYPE(Half2);
119 ADD_TYPE(Half3);
120 ADD_TYPE(Half4);
ethannicholasb3058bd2016-07-01 08:22:01 -0700121 ADD_TYPE(Int);
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400122 ADD_TYPE(Int2);
123 ADD_TYPE(Int3);
124 ADD_TYPE(Int4);
ethannicholasb3058bd2016-07-01 08:22:01 -0700125 ADD_TYPE(UInt);
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400126 ADD_TYPE(UInt2);
127 ADD_TYPE(UInt3);
128 ADD_TYPE(UInt4);
Ethan Nicholasdcba08e2017-08-02 10:52:54 -0400129 ADD_TYPE(Short);
130 ADD_TYPE(Short2);
131 ADD_TYPE(Short3);
132 ADD_TYPE(Short4);
133 ADD_TYPE(UShort);
134 ADD_TYPE(UShort2);
135 ADD_TYPE(UShort3);
136 ADD_TYPE(UShort4);
Ruiqi Maob609e6d2018-07-17 10:19:38 -0400137 ADD_TYPE(Byte);
138 ADD_TYPE(Byte2);
139 ADD_TYPE(Byte3);
140 ADD_TYPE(Byte4);
141 ADD_TYPE(UByte);
142 ADD_TYPE(UByte2);
143 ADD_TYPE(UByte3);
144 ADD_TYPE(UByte4);
ethannicholasb3058bd2016-07-01 08:22:01 -0700145 ADD_TYPE(Bool);
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400146 ADD_TYPE(Bool2);
147 ADD_TYPE(Bool3);
148 ADD_TYPE(Bool4);
149 ADD_TYPE(Float2x2);
150 ADD_TYPE(Float2x3);
151 ADD_TYPE(Float2x4);
152 ADD_TYPE(Float3x2);
153 ADD_TYPE(Float3x3);
154 ADD_TYPE(Float3x4);
155 ADD_TYPE(Float4x2);
156 ADD_TYPE(Float4x3);
157 ADD_TYPE(Float4x4);
Ethan Nicholasdcba08e2017-08-02 10:52:54 -0400158 ADD_TYPE(Half2x2);
159 ADD_TYPE(Half2x3);
160 ADD_TYPE(Half2x4);
161 ADD_TYPE(Half3x2);
162 ADD_TYPE(Half3x3);
163 ADD_TYPE(Half3x4);
164 ADD_TYPE(Half4x2);
165 ADD_TYPE(Half4x3);
166 ADD_TYPE(Half4x4);
ethannicholasb3058bd2016-07-01 08:22:01 -0700167 ADD_TYPE(GenType);
Ethan Nicholasdcba08e2017-08-02 10:52:54 -0400168 ADD_TYPE(GenHType);
ethannicholasb3058bd2016-07-01 08:22:01 -0700169 ADD_TYPE(GenIType);
170 ADD_TYPE(GenUType);
171 ADD_TYPE(GenBType);
172 ADD_TYPE(Mat);
173 ADD_TYPE(Vec);
174 ADD_TYPE(GVec);
175 ADD_TYPE(GVec2);
176 ADD_TYPE(GVec3);
177 ADD_TYPE(GVec4);
Ethan Nicholasdcba08e2017-08-02 10:52:54 -0400178 ADD_TYPE(HVec);
ethannicholasb3058bd2016-07-01 08:22:01 -0700179 ADD_TYPE(IVec);
180 ADD_TYPE(UVec);
Ethan Nicholasdcba08e2017-08-02 10:52:54 -0400181 ADD_TYPE(SVec);
182 ADD_TYPE(USVec);
Ruiqi Maob609e6d2018-07-17 10:19:38 -0400183 ADD_TYPE(ByteVec);
184 ADD_TYPE(UByteVec);
ethannicholasb3058bd2016-07-01 08:22:01 -0700185 ADD_TYPE(BVec);
186
187 ADD_TYPE(Sampler1D);
188 ADD_TYPE(Sampler2D);
189 ADD_TYPE(Sampler3D);
ethannicholas5961bc92016-10-12 06:39:56 -0700190 ADD_TYPE(SamplerExternalOES);
ethannicholasb3058bd2016-07-01 08:22:01 -0700191 ADD_TYPE(SamplerCube);
192 ADD_TYPE(Sampler2DRect);
193 ADD_TYPE(Sampler1DArray);
194 ADD_TYPE(Sampler2DArray);
195 ADD_TYPE(SamplerCubeArray);
196 ADD_TYPE(SamplerBuffer);
197 ADD_TYPE(Sampler2DMS);
198 ADD_TYPE(Sampler2DMSArray);
199
Brian Salomonbf7b6202016-11-11 16:08:03 -0500200 ADD_TYPE(ISampler2D);
201
Brian Salomon2a51de82016-11-16 12:06:01 -0500202 ADD_TYPE(Image2D);
203 ADD_TYPE(IImage2D);
204
Greg Daniel64773e62016-11-22 09:44:03 -0500205 ADD_TYPE(SubpassInput);
206 ADD_TYPE(SubpassInputMS);
207
ethannicholasb3058bd2016-07-01 08:22:01 -0700208 ADD_TYPE(GSampler1D);
209 ADD_TYPE(GSampler2D);
210 ADD_TYPE(GSampler3D);
211 ADD_TYPE(GSamplerCube);
212 ADD_TYPE(GSampler2DRect);
213 ADD_TYPE(GSampler1DArray);
214 ADD_TYPE(GSampler2DArray);
215 ADD_TYPE(GSamplerCubeArray);
216 ADD_TYPE(GSamplerBuffer);
217 ADD_TYPE(GSampler2DMS);
218 ADD_TYPE(GSampler2DMSArray);
219
220 ADD_TYPE(Sampler1DShadow);
221 ADD_TYPE(Sampler2DShadow);
222 ADD_TYPE(SamplerCubeShadow);
223 ADD_TYPE(Sampler2DRectShadow);
224 ADD_TYPE(Sampler1DArrayShadow);
225 ADD_TYPE(Sampler2DArrayShadow);
226 ADD_TYPE(SamplerCubeArrayShadow);
227 ADD_TYPE(GSampler2DArrayShadow);
228 ADD_TYPE(GSamplerCubeArrayShadow);
Ethan Nicholasc9472af2017-10-10 16:30:21 -0400229 ADD_TYPE(FragmentProcessor);
Stephen Whiteff5d7a22019-07-26 17:42:06 -0400230 ADD_TYPE(Sampler);
231 ADD_TYPE(Texture2D);
ethannicholasb3058bd2016-07-01 08:22:01 -0700232
Brian Osman28590d52020-03-23 16:59:08 -0400233 StringFragment fpAliasName("shader");
Ethan Nicholasc18bb512020-07-28 14:46:53 -0400234 symbols->addWithoutOwnership(fpAliasName, fContext->fFragmentProcessor_Type.get());
Brian Osman28590d52020-03-23 16:59:08 -0400235
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700236 StringFragment skCapsName("sk_Caps");
John Stiles311dd9d2020-08-13 17:09:29 -0400237 fIRGenerator->fSymbolTable->add(
238 skCapsName,
239 std::make_unique<Variable>(/*offset=*/-1, Modifiers(), skCapsName,
240 *fContext->fSkCaps_Type, Variable::kGlobal_Storage));
Ethan Nicholas3605ace2016-11-21 15:59:48 -0500241
John Stiles810c8cf2020-08-26 19:46:27 -0400242 fIRGenerator->fIntrinsics = fGPUIntrinsics.get();
Ethan Nicholasdb80f692019-11-22 14:06:12 -0500243 std::vector<std::unique_ptr<ProgramElement>> gpuIntrinsics;
Ethan Nicholasc18bb512020-07-28 14:46:53 -0400244 std::vector<std::unique_ptr<ProgramElement>> interpIntrinsics;
Brian Osmandd496172020-08-08 08:17:18 -0400245#if SKSL_STANDALONE
Ethan Nicholasb33fa3f2020-08-06 13:00:19 -0400246 this->processIncludeFile(Program::kFragment_Kind, SKSL_GPU_INCLUDE, symbols, &gpuIntrinsics,
247 &fGpuSymbolTable);
248 this->processIncludeFile(Program::kVertex_Kind, SKSL_VERT_INCLUDE, fGpuSymbolTable,
249 &fVertexInclude, &fVertexSymbolTable);
250 this->processIncludeFile(Program::kFragment_Kind, SKSL_FRAG_INCLUDE, fGpuSymbolTable,
251 &fFragmentInclude, &fFragmentSymbolTable);
Ethan Nicholasc18bb512020-07-28 14:46:53 -0400252#else
253 {
254 Rehydrator rehydrator(fContext.get(), symbols, this, SKSL_INCLUDE_sksl_gpu,
255 SKSL_INCLUDE_sksl_gpu_LENGTH);
256 fGpuSymbolTable = rehydrator.symbolTable();
257 gpuIntrinsics = rehydrator.elements();
258 }
259 {
260 Rehydrator rehydrator(fContext.get(), fGpuSymbolTable, this, SKSL_INCLUDE_sksl_vert,
261 SKSL_INCLUDE_sksl_vert_LENGTH);
262 fVertexSymbolTable = rehydrator.symbolTable();
263 fVertexInclude = rehydrator.elements();
264 }
265 {
266 Rehydrator rehydrator(fContext.get(), fGpuSymbolTable, this, SKSL_INCLUDE_sksl_frag,
267 SKSL_INCLUDE_sksl_frag_LENGTH);
268 fFragmentSymbolTable = rehydrator.symbolTable();
269 fFragmentInclude = rehydrator.elements();
270 }
271#endif
John Stiles810c8cf2020-08-26 19:46:27 -0400272 grab_intrinsics(&gpuIntrinsics, fGPUIntrinsics.get());
273 grab_intrinsics(&interpIntrinsics, fInterpreterIntrinsics.get());
ethannicholasb3058bd2016-07-01 08:22:01 -0700274}
275
John Stiles656427a2020-08-27 15:26:26 -0400276Compiler::~Compiler() {}
ethannicholasb3058bd2016-07-01 08:22:01 -0700277
Ethan Nicholasc18bb512020-07-28 14:46:53 -0400278void Compiler::loadGeometryIntrinsics() {
279 if (fGeometrySymbolTable) {
280 return;
281 }
Brian Osmandd496172020-08-08 08:17:18 -0400282 #if !SKSL_STANDALONE
Ethan Nicholasc18bb512020-07-28 14:46:53 -0400283 {
284 Rehydrator rehydrator(fContext.get(), fGpuSymbolTable, this, SKSL_INCLUDE_sksl_geom,
285 SKSL_INCLUDE_sksl_geom_LENGTH);
286 fGeometrySymbolTable = rehydrator.symbolTable();
287 fGeometryInclude = rehydrator.elements();
288 }
289 #else
Ethan Nicholasb33fa3f2020-08-06 13:00:19 -0400290 this->processIncludeFile(Program::kGeometry_Kind, SKSL_GEOM_INCLUDE, fGpuSymbolTable,
291 &fGeometryInclude, &fGeometrySymbolTable);
Ethan Nicholasc18bb512020-07-28 14:46:53 -0400292 #endif
293}
294
295void Compiler::loadPipelineIntrinsics() {
296 if (fPipelineSymbolTable) {
297 return;
298 }
Brian Osmandd496172020-08-08 08:17:18 -0400299 #if !SKSL_STANDALONE
Ethan Nicholasc18bb512020-07-28 14:46:53 -0400300 {
301 Rehydrator rehydrator(fContext.get(), fGpuSymbolTable, this,
302 SKSL_INCLUDE_sksl_pipeline,
303 SKSL_INCLUDE_sksl_pipeline_LENGTH);
304 fPipelineSymbolTable = rehydrator.symbolTable();
305 fPipelineInclude = rehydrator.elements();
306 }
307 #else
308 this->processIncludeFile(Program::kPipelineStage_Kind, SKSL_PIPELINE_INCLUDE,
Ethan Nicholasb33fa3f2020-08-06 13:00:19 -0400309 fGpuSymbolTable, &fPipelineInclude, &fPipelineSymbolTable);
Ethan Nicholasc18bb512020-07-28 14:46:53 -0400310 #endif
311}
312
313void Compiler::loadInterpreterIntrinsics() {
314 if (fInterpreterSymbolTable) {
315 return;
316 }
317 this->loadPipelineIntrinsics();
Brian Osmandd496172020-08-08 08:17:18 -0400318 #if !SKSL_STANDALONE
Ethan Nicholasc18bb512020-07-28 14:46:53 -0400319 {
320 Rehydrator rehydrator(fContext.get(), fPipelineSymbolTable, this,
321 SKSL_INCLUDE_sksl_interp,
322 SKSL_INCLUDE_sksl_interp_LENGTH);
323 fInterpreterSymbolTable = rehydrator.symbolTable();
324 fInterpreterInclude = rehydrator.elements();
325 }
326 #else
327 this->processIncludeFile(Program::kGeneric_Kind, SKSL_INTERP_INCLUDE,
Ethan Nicholasb33fa3f2020-08-06 13:00:19 -0400328 fIRGenerator->fSymbolTable, &fInterpreterInclude,
329 &fInterpreterSymbolTable);
Ethan Nicholasc18bb512020-07-28 14:46:53 -0400330 #endif
331}
332
Ethan Nicholasb33fa3f2020-08-06 13:00:19 -0400333void Compiler::processIncludeFile(Program::Kind kind, const char* path,
Ethan Nicholas8da1e652019-05-24 11:01:59 -0400334 std::shared_ptr<SymbolTable> base,
335 std::vector<std::unique_ptr<ProgramElement>>* outElements,
336 std::shared_ptr<SymbolTable>* outSymbolTable) {
Ethan Nicholasb33fa3f2020-08-06 13:00:19 -0400337 std::ifstream in(path);
338 std::string stdText{std::istreambuf_iterator<char>(in),
339 std::istreambuf_iterator<char>()};
340 if (in.rdstate()) {
341 printf("error reading %s\n", path);
342 abort();
343 }
344 if (!base) {
345 base = fIRGenerator->fSymbolTable;
346 }
347 SkASSERT(base);
348 const String* source = base->takeOwnershipOfString(std::make_unique<String>(stdText.c_str()));
349 fSource = source;
Ethan Nicholasc18bb512020-07-28 14:46:53 -0400350 std::shared_ptr<SymbolTable> old = fIRGenerator->fSymbolTable;
351 if (base) {
352 fIRGenerator->fSymbolTable = std::move(base);
353 }
Ethan Nicholas8da1e652019-05-24 11:01:59 -0400354 Program::Settings settings;
Ethan Nicholasa11035b2019-11-26 16:27:47 -0500355#if !defined(SKSL_STANDALONE) & SK_SUPPORT_GPU
356 GrContextOptions opts;
357 GrShaderCaps caps(opts);
358 settings.fCaps = &caps;
359#endif
Ethan Nicholasc18bb512020-07-28 14:46:53 -0400360 SkASSERT(fIRGenerator->fCanInline);
361 fIRGenerator->fCanInline = false;
362 fIRGenerator->start(&settings, nullptr, true);
Ethan Nicholasb33fa3f2020-08-06 13:00:19 -0400363 fIRGenerator->convertProgram(kind, source->c_str(), source->length(), outElements);
Ethan Nicholasc18bb512020-07-28 14:46:53 -0400364 fIRGenerator->fCanInline = true;
Ethan Nicholas8da1e652019-05-24 11:01:59 -0400365 if (this->fErrorCount) {
366 printf("Unexpected errors: %s\n", this->fErrorText.c_str());
367 }
368 SkASSERT(!fErrorCount);
Ethan Nicholas8da1e652019-05-24 11:01:59 -0400369 *outSymbolTable = fIRGenerator->fSymbolTable;
Ethan Nicholasa11035b2019-11-26 16:27:47 -0500370#ifdef SK_DEBUG
371 fSource = nullptr;
372#endif
Ethan Nicholasc18bb512020-07-28 14:46:53 -0400373 fIRGenerator->fSymbolTable = std::move(old);
Ethan Nicholas8da1e652019-05-24 11:01:59 -0400374}
375
ethannicholas22f939e2016-10-13 13:25:34 -0700376// add the definition created by assigning to the lvalue to the definition set
Ethan Nicholas86a43402017-01-19 13:32:00 -0500377void Compiler::addDefinition(const Expression* lvalue, std::unique_ptr<Expression>* expr,
378 DefinitionMap* definitions) {
Ethan Nicholase6592142020-09-08 10:22:09 -0400379 switch (lvalue->kind()) {
380 case Expression::Kind::kVariableReference: {
John Stilesa5a97b42020-08-18 11:19:07 -0400381 const Variable& var = lvalue->as<VariableReference>().fVariable;
ethannicholas22f939e2016-10-13 13:25:34 -0700382 if (var.fStorage == Variable::kLocal_Storage) {
383 (*definitions)[&var] = expr;
384 }
385 break;
386 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400387 case Expression::Kind::kSwizzle:
ethannicholas22f939e2016-10-13 13:25:34 -0700388 // We consider the variable written to as long as at least some of its components have
389 // been written to. This will lead to some false negatives (we won't catch it if you
390 // write to foo.x and then read foo.y), but being stricter could lead to false positives
Mike Klein6ad99092016-10-26 10:35:22 -0400391 // (we write to foo.x, and then pass foo to a function which happens to only read foo.x,
392 // 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 -0700393 // more complicated whole-program analysis. This is probably good enough.
John Stilesa5a97b42020-08-18 11:19:07 -0400394 this->addDefinition(lvalue->as<Swizzle>().fBase.get(),
Ethan Nicholas26a9aad2018-03-27 14:10:52 -0400395 (std::unique_ptr<Expression>*) &fContext->fDefined_Expression,
ethannicholas22f939e2016-10-13 13:25:34 -0700396 definitions);
397 break;
Ethan Nicholase6592142020-09-08 10:22:09 -0400398 case Expression::Kind::kIndex:
ethannicholas22f939e2016-10-13 13:25:34 -0700399 // see comments in Swizzle
John Stilesa5a97b42020-08-18 11:19:07 -0400400 this->addDefinition(lvalue->as<IndexExpression>().fBase.get(),
Ethan Nicholas26a9aad2018-03-27 14:10:52 -0400401 (std::unique_ptr<Expression>*) &fContext->fDefined_Expression,
ethannicholas22f939e2016-10-13 13:25:34 -0700402 definitions);
403 break;
Ethan Nicholase6592142020-09-08 10:22:09 -0400404 case Expression::Kind::kFieldAccess:
ethannicholas22f939e2016-10-13 13:25:34 -0700405 // see comments in Swizzle
John Stilesa5a97b42020-08-18 11:19:07 -0400406 this->addDefinition(lvalue->as<FieldAccess>().fBase.get(),
Ethan Nicholas26a9aad2018-03-27 14:10:52 -0400407 (std::unique_ptr<Expression>*) &fContext->fDefined_Expression,
ethannicholas22f939e2016-10-13 13:25:34 -0700408 definitions);
409 break;
Ethan Nicholase6592142020-09-08 10:22:09 -0400410 case Expression::Kind::kTernary:
Ethan Nicholasa583b812018-01-18 13:32:11 -0500411 // To simplify analysis, we just pretend that we write to both sides of the ternary.
412 // This allows for false positives (meaning we fail to detect that a variable might not
413 // have been assigned), but is preferable to false negatives.
John Stilesa5a97b42020-08-18 11:19:07 -0400414 this->addDefinition(lvalue->as<TernaryExpression>().fIfTrue.get(),
Ethan Nicholas26a9aad2018-03-27 14:10:52 -0400415 (std::unique_ptr<Expression>*) &fContext->fDefined_Expression,
Ethan Nicholasa583b812018-01-18 13:32:11 -0500416 definitions);
John Stilesa5a97b42020-08-18 11:19:07 -0400417 this->addDefinition(lvalue->as<TernaryExpression>().fIfFalse.get(),
Ethan Nicholas26a9aad2018-03-27 14:10:52 -0400418 (std::unique_ptr<Expression>*) &fContext->fDefined_Expression,
Ethan Nicholasa583b812018-01-18 13:32:11 -0500419 definitions);
420 break;
Ethan Nicholase6592142020-09-08 10:22:09 -0400421 case Expression::Kind::kExternalValue:
Ethan Nicholas91164d12019-05-15 15:29:54 -0400422 break;
ethannicholas22f939e2016-10-13 13:25:34 -0700423 default:
424 // not an lvalue, can't happen
Ethan Nicholasd9d33c32018-06-12 11:05:59 -0400425 SkASSERT(false);
ethannicholas22f939e2016-10-13 13:25:34 -0700426 }
427}
428
429// add local variables defined by this node to the set
Mike Klein6ad99092016-10-26 10:35:22 -0400430void Compiler::addDefinitions(const BasicBlock::Node& node,
Ethan Nicholas86a43402017-01-19 13:32:00 -0500431 DefinitionMap* definitions) {
ethannicholas22f939e2016-10-13 13:25:34 -0700432 switch (node.fKind) {
433 case BasicBlock::Node::kExpression_Kind: {
Ethan Nicholasd9d33c32018-06-12 11:05:59 -0400434 SkASSERT(node.expression());
John Stilesa5a97b42020-08-18 11:19:07 -0400435 Expression* expr = node.expression()->get();
Ethan Nicholase6592142020-09-08 10:22:09 -0400436 switch (expr->kind()) {
437 case Expression::Kind::kBinary: {
John Stilesa5a97b42020-08-18 11:19:07 -0400438 BinaryExpression* b = &expr->as<BinaryExpression>();
Ethan Nicholas5a9e7fb2020-04-17 12:45:51 -0400439 if (b->fOperator == Token::Kind::TK_EQ) {
Ethan Nicholas86a43402017-01-19 13:32:00 -0500440 this->addDefinition(b->fLeft.get(), &b->fRight, definitions);
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700441 } else if (Compiler::IsAssignment(b->fOperator)) {
Ethan Nicholas86a43402017-01-19 13:32:00 -0500442 this->addDefinition(
Ethan Nicholas26a9aad2018-03-27 14:10:52 -0400443 b->fLeft.get(),
444 (std::unique_ptr<Expression>*) &fContext->fDefined_Expression,
445 definitions);
Ethan Nicholas86a43402017-01-19 13:32:00 -0500446
447 }
448 break;
ethannicholas22f939e2016-10-13 13:25:34 -0700449 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400450 case Expression::Kind::kFunctionCall: {
John Stilesa5a97b42020-08-18 11:19:07 -0400451 const FunctionCall& c = expr->as<FunctionCall>();
Ethan Nicholasc6a19f12018-03-29 16:46:56 -0400452 for (size_t i = 0; i < c.fFunction.fParameters.size(); ++i) {
453 if (c.fFunction.fParameters[i]->fModifiers.fFlags & Modifiers::kOut_Flag) {
454 this->addDefinition(
455 c.fArguments[i].get(),
456 (std::unique_ptr<Expression>*) &fContext->fDefined_Expression,
457 definitions);
458 }
459 }
460 break;
461 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400462 case Expression::Kind::kPrefix: {
John Stilesa5a97b42020-08-18 11:19:07 -0400463 const PrefixExpression* p = &expr->as<PrefixExpression>();
Ethan Nicholas5a9e7fb2020-04-17 12:45:51 -0400464 if (p->fOperator == Token::Kind::TK_MINUSMINUS ||
465 p->fOperator == Token::Kind::TK_PLUSPLUS) {
Ethan Nicholas86a43402017-01-19 13:32:00 -0500466 this->addDefinition(
Ethan Nicholas26a9aad2018-03-27 14:10:52 -0400467 p->fOperand.get(),
468 (std::unique_ptr<Expression>*) &fContext->fDefined_Expression,
469 definitions);
Ethan Nicholas86a43402017-01-19 13:32:00 -0500470 }
471 break;
472 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400473 case Expression::Kind::kPostfix: {
John Stilesa5a97b42020-08-18 11:19:07 -0400474 const PostfixExpression* p = &expr->as<PostfixExpression>();
Ethan Nicholas5a9e7fb2020-04-17 12:45:51 -0400475 if (p->fOperator == Token::Kind::TK_MINUSMINUS ||
476 p->fOperator == Token::Kind::TK_PLUSPLUS) {
Ethan Nicholas86a43402017-01-19 13:32:00 -0500477 this->addDefinition(
Ethan Nicholas26a9aad2018-03-27 14:10:52 -0400478 p->fOperand.get(),
479 (std::unique_ptr<Expression>*) &fContext->fDefined_Expression,
480 definitions);
Ethan Nicholas86a43402017-01-19 13:32:00 -0500481 }
482 break;
483 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400484 case Expression::Kind::kVariableReference: {
John Stilesa5a97b42020-08-18 11:19:07 -0400485 const VariableReference* v = &expr->as<VariableReference>();
Ethan Nicholascb670962017-04-20 19:31:52 -0400486 if (v->fRefKind != VariableReference::kRead_RefKind) {
487 this->addDefinition(
Ethan Nicholas26a9aad2018-03-27 14:10:52 -0400488 v,
489 (std::unique_ptr<Expression>*) &fContext->fDefined_Expression,
490 definitions);
Ethan Nicholascb670962017-04-20 19:31:52 -0400491 }
John Stiles30212b72020-06-11 17:55:07 -0400492 break;
Ethan Nicholascb670962017-04-20 19:31:52 -0400493 }
Ethan Nicholas86a43402017-01-19 13:32:00 -0500494 default:
495 break;
ethannicholas22f939e2016-10-13 13:25:34 -0700496 }
497 break;
498 }
499 case BasicBlock::Node::kStatement_Kind: {
John Stilesa5a97b42020-08-18 11:19:07 -0400500 Statement* stmt = node.statement()->get();
Ethan Nicholase6592142020-09-08 10:22:09 -0400501 if (stmt->kind() == Statement::Kind::kVarDeclaration) {
John Stilesa5a97b42020-08-18 11:19:07 -0400502 VarDeclaration& vd = stmt->as<VarDeclaration>();
Ethan Nicholas82a62d22017-11-07 14:42:10 +0000503 if (vd.fValue) {
504 (*definitions)[vd.fVar] = &vd.fValue;
ethannicholas22f939e2016-10-13 13:25:34 -0700505 }
506 }
507 break;
508 }
509 }
510}
511
512void Compiler::scanCFG(CFG* cfg, BlockId blockId, std::set<BlockId>* workList) {
513 BasicBlock& block = cfg->fBlocks[blockId];
514
515 // compute definitions after this block
Ethan Nicholas86a43402017-01-19 13:32:00 -0500516 DefinitionMap after = block.fBefore;
ethannicholas22f939e2016-10-13 13:25:34 -0700517 for (const BasicBlock::Node& n : block.fNodes) {
518 this->addDefinitions(n, &after);
519 }
520
521 // propagate definitions to exits
522 for (BlockId exitId : block.fExits) {
Ethan Nicholas26a9aad2018-03-27 14:10:52 -0400523 if (exitId == blockId) {
524 continue;
525 }
ethannicholas22f939e2016-10-13 13:25:34 -0700526 BasicBlock& exit = cfg->fBlocks[exitId];
527 for (const auto& pair : after) {
Ethan Nicholas86a43402017-01-19 13:32:00 -0500528 std::unique_ptr<Expression>* e1 = pair.second;
529 auto found = exit.fBefore.find(pair.first);
530 if (found == exit.fBefore.end()) {
531 // exit has no definition for it, just copy it
532 workList->insert(exitId);
ethannicholas22f939e2016-10-13 13:25:34 -0700533 exit.fBefore[pair.first] = e1;
534 } else {
Ethan Nicholas86a43402017-01-19 13:32:00 -0500535 // exit has a (possibly different) value already defined
536 std::unique_ptr<Expression>* e2 = exit.fBefore[pair.first];
ethannicholas22f939e2016-10-13 13:25:34 -0700537 if (e1 != e2) {
538 // definition has changed, merge and add exit block to worklist
539 workList->insert(exitId);
Ethan Nicholasaf197692017-02-27 13:26:45 -0500540 if (e1 && e2) {
541 exit.fBefore[pair.first] =
Ethan Nicholas26a9aad2018-03-27 14:10:52 -0400542 (std::unique_ptr<Expression>*) &fContext->fDefined_Expression;
Ethan Nicholasaf197692017-02-27 13:26:45 -0500543 } else {
544 exit.fBefore[pair.first] = nullptr;
545 }
ethannicholas22f939e2016-10-13 13:25:34 -0700546 }
547 }
548 }
549 }
550}
551
552// returns a map which maps all local variables in the function to null, indicating that their value
553// is initially unknown
Ethan Nicholas86a43402017-01-19 13:32:00 -0500554static DefinitionMap compute_start_state(const CFG& cfg) {
555 DefinitionMap result;
Mike Klein6ad99092016-10-26 10:35:22 -0400556 for (const auto& block : cfg.fBlocks) {
557 for (const auto& node : block.fNodes) {
ethannicholas22f939e2016-10-13 13:25:34 -0700558 if (node.fKind == BasicBlock::Node::kStatement_Kind) {
Ethan Nicholasd9d33c32018-06-12 11:05:59 -0400559 SkASSERT(node.statement());
Ethan Nicholascb670962017-04-20 19:31:52 -0400560 const Statement* s = node.statement()->get();
Ethan Nicholase6592142020-09-08 10:22:09 -0400561 if (s->kind() == Statement::Kind::kVarDeclarations) {
John Stilesa5a97b42020-08-18 11:19:07 -0400562 const VarDeclarationsStatement* vd = &s->as<VarDeclarationsStatement>();
Ethan Nicholas82a62d22017-11-07 14:42:10 +0000563 for (const auto& decl : vd->fDeclaration->fVars) {
Ethan Nicholase6592142020-09-08 10:22:09 -0400564 if (decl->kind() == Statement::Kind::kVarDeclaration) {
John Stilesa5a97b42020-08-18 11:19:07 -0400565 result[decl->as<VarDeclaration>().fVar] = nullptr;
Ethan Nicholas82a62d22017-11-07 14:42:10 +0000566 }
Mike Klein6ad99092016-10-26 10:35:22 -0400567 }
ethannicholas22f939e2016-10-13 13:25:34 -0700568 }
569 }
570 }
571 }
572 return result;
573}
574
Ethan Nicholascb670962017-04-20 19:31:52 -0400575/**
576 * Returns true if assigning to this lvalue has no effect.
577 */
578static bool is_dead(const Expression& lvalue) {
Ethan Nicholase6592142020-09-08 10:22:09 -0400579 switch (lvalue.kind()) {
580 case Expression::Kind::kVariableReference:
John Stilesa5a97b42020-08-18 11:19:07 -0400581 return lvalue.as<VariableReference>().fVariable.dead();
Ethan Nicholase6592142020-09-08 10:22:09 -0400582 case Expression::Kind::kSwizzle:
John Stilesa5a97b42020-08-18 11:19:07 -0400583 return is_dead(*lvalue.as<Swizzle>().fBase);
Ethan Nicholase6592142020-09-08 10:22:09 -0400584 case Expression::Kind::kFieldAccess:
John Stilesa5a97b42020-08-18 11:19:07 -0400585 return is_dead(*lvalue.as<FieldAccess>().fBase);
Ethan Nicholase6592142020-09-08 10:22:09 -0400586 case Expression::Kind::kIndex: {
John Stilesa5a97b42020-08-18 11:19:07 -0400587 const IndexExpression& idx = lvalue.as<IndexExpression>();
Ethan Nicholas2a099da2020-01-02 14:40:54 -0500588 return is_dead(*idx.fBase) &&
589 !idx.fIndex->hasProperty(Expression::Property::kSideEffects);
Ethan Nicholascb670962017-04-20 19:31:52 -0400590 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400591 case Expression::Kind::kTernary: {
John Stilesa5a97b42020-08-18 11:19:07 -0400592 const TernaryExpression& t = lvalue.as<TernaryExpression>();
Ethan Nicholasa583b812018-01-18 13:32:11 -0500593 return !t.fTest->hasSideEffects() && is_dead(*t.fIfTrue) && is_dead(*t.fIfFalse);
594 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400595 case Expression::Kind::kExternalValue:
Ethan Nicholas91164d12019-05-15 15:29:54 -0400596 return false;
Ethan Nicholascb670962017-04-20 19:31:52 -0400597 default:
Ethan Nicholas2a099da2020-01-02 14:40:54 -0500598#ifdef SK_DEBUG
Ethan Nicholascb670962017-04-20 19:31:52 -0400599 ABORT("invalid lvalue: %s\n", lvalue.description().c_str());
Ethan Nicholas2a099da2020-01-02 14:40:54 -0500600#endif
601 return false;
Ethan Nicholascb670962017-04-20 19:31:52 -0400602 }
603}
ethannicholas22f939e2016-10-13 13:25:34 -0700604
Ethan Nicholascb670962017-04-20 19:31:52 -0400605/**
606 * Returns true if this is an assignment which can be collapsed down to just the right hand side due
607 * to a dead target and lack of side effects on the left hand side.
608 */
609static bool dead_assignment(const BinaryExpression& b) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700610 if (!Compiler::IsAssignment(b.fOperator)) {
Ethan Nicholascb670962017-04-20 19:31:52 -0400611 return false;
612 }
613 return is_dead(*b.fLeft);
614}
615
616void Compiler::computeDataFlow(CFG* cfg) {
617 cfg->fBlocks[cfg->fStart].fBefore = compute_start_state(*cfg);
ethannicholas22f939e2016-10-13 13:25:34 -0700618 std::set<BlockId> workList;
Ethan Nicholascb670962017-04-20 19:31:52 -0400619 for (BlockId i = 0; i < cfg->fBlocks.size(); i++) {
ethannicholas22f939e2016-10-13 13:25:34 -0700620 workList.insert(i);
621 }
622 while (workList.size()) {
623 BlockId next = *workList.begin();
624 workList.erase(workList.begin());
Ethan Nicholascb670962017-04-20 19:31:52 -0400625 this->scanCFG(cfg, next, &workList);
ethannicholas22f939e2016-10-13 13:25:34 -0700626 }
Ethan Nicholascb670962017-04-20 19:31:52 -0400627}
628
629/**
630 * Attempts to replace the expression pointed to by iter with a new one (in both the CFG and the
631 * IR). If the expression can be cleanly removed, returns true and updates the iterator to point to
632 * the newly-inserted element. Otherwise updates only the IR and returns false (and the CFG will
633 * need to be regenerated).
634 */
John Stilesafbf8992020-08-18 10:08:21 -0400635static bool try_replace_expression(BasicBlock* b,
636 std::vector<BasicBlock::Node>::iterator* iter,
637 std::unique_ptr<Expression>* newExpression) {
Ethan Nicholascb670962017-04-20 19:31:52 -0400638 std::unique_ptr<Expression>* target = (*iter)->expression();
639 if (!b->tryRemoveExpression(iter)) {
640 *target = std::move(*newExpression);
641 return false;
642 }
643 *target = std::move(*newExpression);
644 return b->tryInsertExpression(iter, target);
645}
646
647/**
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400648 * Returns true if the expression is a constant numeric literal with the specified value, or a
649 * constant vector with all elements equal to the specified value.
Ethan Nicholascb670962017-04-20 19:31:52 -0400650 */
John Stiles9d944232020-08-19 09:56:49 -0400651template <typename T = double>
652static bool is_constant(const Expression& expr, T value) {
Ethan Nicholase6592142020-09-08 10:22:09 -0400653 switch (expr.kind()) {
654 case Expression::Kind::kIntLiteral:
John Stiles81365af2020-08-18 09:24:00 -0400655 return expr.as<IntLiteral>().fValue == value;
John Stiles9d944232020-08-19 09:56:49 -0400656
Ethan Nicholase6592142020-09-08 10:22:09 -0400657 case Expression::Kind::kFloatLiteral:
John Stiles81365af2020-08-18 09:24:00 -0400658 return expr.as<FloatLiteral>().fValue == value;
John Stiles9d944232020-08-19 09:56:49 -0400659
Ethan Nicholase6592142020-09-08 10:22:09 -0400660 case Expression::Kind::kConstructor: {
John Stiles9d944232020-08-19 09:56:49 -0400661 const Constructor& constructor = expr.as<Constructor>();
662 if (constructor.isCompileTimeConstant()) {
663 bool isFloat = constructor.fType.columns() > 1
664 ? constructor.fType.componentType().isFloat()
665 : constructor.fType.isFloat();
Ethan Nicholase6592142020-09-08 10:22:09 -0400666 switch (constructor.fType.typeKind()) {
667 case Type::TypeKind::kVector:
John Stiles9d944232020-08-19 09:56:49 -0400668 for (int i = 0; i < constructor.fType.columns(); ++i) {
669 if (isFloat) {
670 if (constructor.getFVecComponent(i) != value) {
671 return false;
672 }
673 } else {
674 if (constructor.getIVecComponent(i) != value) {
675 return false;
676 }
677 }
Ethan Nicholasd188c182019-06-10 15:55:38 -0400678 }
John Stiles9d944232020-08-19 09:56:49 -0400679 return true;
680
Ethan Nicholase6592142020-09-08 10:22:09 -0400681 case Type::TypeKind::kScalar:
John Stiles9d944232020-08-19 09:56:49 -0400682 SkASSERT(constructor.fArguments.size() == 1);
683 return is_constant<T>(*constructor.fArguments[0], value);
684
685 default:
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400686 return false;
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400687 }
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400688 }
689 return false;
690 }
Ethan Nicholascb670962017-04-20 19:31:52 -0400691 default:
692 return false;
693 }
694}
695
696/**
697 * Collapses the binary expression pointed to by iter down to just the right side (in both the IR
698 * and CFG structures).
699 */
John Stilesafbf8992020-08-18 10:08:21 -0400700static void delete_left(BasicBlock* b,
701 std::vector<BasicBlock::Node>::iterator* iter,
702 bool* outUpdated,
703 bool* outNeedsRescan) {
Ethan Nicholascb670962017-04-20 19:31:52 -0400704 *outUpdated = true;
Ethan Nicholasc2371a42017-05-05 10:04:06 -0400705 std::unique_ptr<Expression>* target = (*iter)->expression();
John Stilesa5a97b42020-08-18 11:19:07 -0400706 BinaryExpression& bin = (*target)->as<BinaryExpression>();
Ethan Nicholasd9d33c32018-06-12 11:05:59 -0400707 SkASSERT(!bin.fLeft->hasSideEffects());
Ethan Nicholasc2371a42017-05-05 10:04:06 -0400708 bool result;
Ethan Nicholas5a9e7fb2020-04-17 12:45:51 -0400709 if (bin.fOperator == Token::Kind::TK_EQ) {
Ethan Nicholas4b330df2017-05-17 10:52:55 -0400710 result = b->tryRemoveLValueBefore(iter, bin.fLeft.get());
Ethan Nicholasc2371a42017-05-05 10:04:06 -0400711 } else {
Ethan Nicholas4b330df2017-05-17 10:52:55 -0400712 result = b->tryRemoveExpressionBefore(iter, bin.fLeft.get());
Ethan Nicholascb670962017-04-20 19:31:52 -0400713 }
Ethan Nicholas4b330df2017-05-17 10:52:55 -0400714 *target = std::move(bin.fRight);
Ethan Nicholasc2371a42017-05-05 10:04:06 -0400715 if (!result) {
Ethan Nicholas4b330df2017-05-17 10:52:55 -0400716 *outNeedsRescan = true;
717 return;
718 }
719 if (*iter == b->fNodes.begin()) {
Ethan Nicholasc2371a42017-05-05 10:04:06 -0400720 *outNeedsRescan = true;
721 return;
722 }
723 --(*iter);
Ethan Nicholas4b330df2017-05-17 10:52:55 -0400724 if ((*iter)->fKind != BasicBlock::Node::kExpression_Kind ||
725 (*iter)->expression() != &bin.fRight) {
726 *outNeedsRescan = true;
727 return;
728 }
Ethan Nicholasc2371a42017-05-05 10:04:06 -0400729 *iter = b->fNodes.erase(*iter);
Ethan Nicholasd9d33c32018-06-12 11:05:59 -0400730 SkASSERT((*iter)->expression() == target);
Ethan Nicholascb670962017-04-20 19:31:52 -0400731}
732
733/**
734 * Collapses the binary expression pointed to by iter down to just the left side (in both the IR and
735 * CFG structures).
736 */
John Stilesafbf8992020-08-18 10:08:21 -0400737static void delete_right(BasicBlock* b,
738 std::vector<BasicBlock::Node>::iterator* iter,
739 bool* outUpdated,
740 bool* outNeedsRescan) {
Ethan Nicholascb670962017-04-20 19:31:52 -0400741 *outUpdated = true;
Ethan Nicholasc2371a42017-05-05 10:04:06 -0400742 std::unique_ptr<Expression>* target = (*iter)->expression();
John Stilesa5a97b42020-08-18 11:19:07 -0400743 BinaryExpression& bin = (*target)->as<BinaryExpression>();
Ethan Nicholasd9d33c32018-06-12 11:05:59 -0400744 SkASSERT(!bin.fRight->hasSideEffects());
Ethan Nicholasc2371a42017-05-05 10:04:06 -0400745 if (!b->tryRemoveExpressionBefore(iter, bin.fRight.get())) {
746 *target = std::move(bin.fLeft);
Ethan Nicholascb670962017-04-20 19:31:52 -0400747 *outNeedsRescan = true;
Ethan Nicholasc2371a42017-05-05 10:04:06 -0400748 return;
Ethan Nicholascb670962017-04-20 19:31:52 -0400749 }
Ethan Nicholas4b330df2017-05-17 10:52:55 -0400750 *target = std::move(bin.fLeft);
751 if (*iter == b->fNodes.begin()) {
752 *outNeedsRescan = true;
753 return;
754 }
Ethan Nicholasc2371a42017-05-05 10:04:06 -0400755 --(*iter);
Ethan Nicholas4b330df2017-05-17 10:52:55 -0400756 if (((*iter)->fKind != BasicBlock::Node::kExpression_Kind ||
757 (*iter)->expression() != &bin.fLeft)) {
758 *outNeedsRescan = true;
759 return;
760 }
Ethan Nicholasc2371a42017-05-05 10:04:06 -0400761 *iter = b->fNodes.erase(*iter);
Ethan Nicholasd9d33c32018-06-12 11:05:59 -0400762 SkASSERT((*iter)->expression() == target);
Ethan Nicholascb670962017-04-20 19:31:52 -0400763}
764
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400765/**
766 * Constructs the specified type using a single argument.
767 */
768static std::unique_ptr<Expression> construct(const Type& type, std::unique_ptr<Expression> v) {
769 std::vector<std::unique_ptr<Expression>> args;
770 args.push_back(std::move(v));
Ethan Nicholase6592142020-09-08 10:22:09 -0400771 std::unique_ptr<Expression> result = std::make_unique<Constructor>(-1, type, std::move(args));
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400772 return result;
773}
774
775/**
776 * Used in the implementations of vectorize_left and vectorize_right. Given a vector type and an
777 * expression x, deletes the expression pointed to by iter and replaces it with <type>(x).
778 */
779static void vectorize(BasicBlock* b,
780 std::vector<BasicBlock::Node>::iterator* iter,
781 const Type& type,
782 std::unique_ptr<Expression>* otherExpression,
783 bool* outUpdated,
784 bool* outNeedsRescan) {
Ethan Nicholase6592142020-09-08 10:22:09 -0400785 SkASSERT((*(*iter)->expression())->kind() == Expression::Kind::kBinary);
786 SkASSERT(type.typeKind() == Type::TypeKind::kVector);
787 SkASSERT((*otherExpression)->fType.typeKind() == Type::TypeKind::kScalar);
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400788 *outUpdated = true;
789 std::unique_ptr<Expression>* target = (*iter)->expression();
790 if (!b->tryRemoveExpression(iter)) {
791 *target = construct(type, std::move(*otherExpression));
792 *outNeedsRescan = true;
793 } else {
794 *target = construct(type, std::move(*otherExpression));
795 if (!b->tryInsertExpression(iter, target)) {
796 *outNeedsRescan = true;
797 }
798 }
799}
800
801/**
802 * Given a binary expression of the form x <op> vec<n>(y), deletes the right side and vectorizes the
803 * left to yield vec<n>(x).
804 */
805static void vectorize_left(BasicBlock* b,
806 std::vector<BasicBlock::Node>::iterator* iter,
807 bool* outUpdated,
808 bool* outNeedsRescan) {
John Stilesa5a97b42020-08-18 11:19:07 -0400809 BinaryExpression& bin = (*(*iter)->expression())->as<BinaryExpression>();
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400810 vectorize(b, iter, bin.fRight->fType, &bin.fLeft, outUpdated, outNeedsRescan);
811}
812
813/**
814 * Given a binary expression of the form vec<n>(x) <op> y, deletes the left side and vectorizes the
815 * right to yield vec<n>(y).
816 */
817static void vectorize_right(BasicBlock* b,
818 std::vector<BasicBlock::Node>::iterator* iter,
819 bool* outUpdated,
820 bool* outNeedsRescan) {
John Stilesa5a97b42020-08-18 11:19:07 -0400821 BinaryExpression& bin = (*(*iter)->expression())->as<BinaryExpression>();
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400822 vectorize(b, iter, bin.fLeft->fType, &bin.fRight, outUpdated, outNeedsRescan);
823}
824
825// Mark that an expression which we were writing to is no longer being written to
John Stilesa5a97b42020-08-18 11:19:07 -0400826static void clear_write(Expression& expr) {
Ethan Nicholase6592142020-09-08 10:22:09 -0400827 switch (expr.kind()) {
828 case Expression::Kind::kVariableReference: {
John Stilesa5a97b42020-08-18 11:19:07 -0400829 expr.as<VariableReference>().setRefKind(VariableReference::kRead_RefKind);
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400830 break;
831 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400832 case Expression::Kind::kFieldAccess:
John Stilesa5a97b42020-08-18 11:19:07 -0400833 clear_write(*expr.as<FieldAccess>().fBase);
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400834 break;
Ethan Nicholase6592142020-09-08 10:22:09 -0400835 case Expression::Kind::kSwizzle:
John Stilesa5a97b42020-08-18 11:19:07 -0400836 clear_write(*expr.as<Swizzle>().fBase);
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400837 break;
Ethan Nicholase6592142020-09-08 10:22:09 -0400838 case Expression::Kind::kIndex:
John Stilesa5a97b42020-08-18 11:19:07 -0400839 clear_write(*expr.as<IndexExpression>().fBase);
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400840 break;
841 default:
842 ABORT("shouldn't be writing to this kind of expression\n");
843 break;
844 }
845}
846
Ethan Nicholascb670962017-04-20 19:31:52 -0400847void Compiler::simplifyExpression(DefinitionMap& definitions,
848 BasicBlock& b,
849 std::vector<BasicBlock::Node>::iterator* iter,
850 std::unordered_set<const Variable*>* undefinedVariables,
851 bool* outUpdated,
852 bool* outNeedsRescan) {
853 Expression* expr = (*iter)->expression()->get();
Ethan Nicholasd9d33c32018-06-12 11:05:59 -0400854 SkASSERT(expr);
Ethan Nicholascb670962017-04-20 19:31:52 -0400855 if ((*iter)->fConstantPropagation) {
856 std::unique_ptr<Expression> optimized = expr->constantPropagate(*fIRGenerator, definitions);
857 if (optimized) {
Ethan Nicholas4b330df2017-05-17 10:52:55 -0400858 *outUpdated = true;
Ethan Nicholascb670962017-04-20 19:31:52 -0400859 if (!try_replace_expression(&b, iter, &optimized)) {
860 *outNeedsRescan = true;
Ethan Nicholas4b330df2017-05-17 10:52:55 -0400861 return;
Ethan Nicholascb670962017-04-20 19:31:52 -0400862 }
Ethan Nicholasd9d33c32018-06-12 11:05:59 -0400863 SkASSERT((*iter)->fKind == BasicBlock::Node::kExpression_Kind);
Ethan Nicholascb670962017-04-20 19:31:52 -0400864 expr = (*iter)->expression()->get();
Ethan Nicholascb670962017-04-20 19:31:52 -0400865 }
866 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400867 switch (expr->kind()) {
868 case Expression::Kind::kVariableReference: {
John Stilesa5a97b42020-08-18 11:19:07 -0400869 const VariableReference& ref = expr->as<VariableReference>();
Ethan Nicholas8f7e28f2018-03-26 14:24:27 -0400870 const Variable& var = ref.fVariable;
871 if (ref.refKind() != VariableReference::kWrite_RefKind &&
872 ref.refKind() != VariableReference::kPointer_RefKind &&
873 var.fStorage == Variable::kLocal_Storage && !definitions[&var] &&
Ethan Nicholascb670962017-04-20 19:31:52 -0400874 (*undefinedVariables).find(&var) == (*undefinedVariables).end()) {
875 (*undefinedVariables).insert(&var);
Ethan Nicholas82a62d22017-11-07 14:42:10 +0000876 this->error(expr->fOffset,
877 "'" + var.fName + "' has not been assigned");
Ethan Nicholascb670962017-04-20 19:31:52 -0400878 }
879 break;
880 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400881 case Expression::Kind::kTernary: {
John Stiles403a3632020-08-20 12:11:48 -0400882 TernaryExpression* t = &expr->as<TernaryExpression>();
Ethan Nicholase6592142020-09-08 10:22:09 -0400883 if (t->fTest->kind() == Expression::Kind::kBoolLiteral) {
Ethan Nicholascb670962017-04-20 19:31:52 -0400884 // ternary has a constant test, replace it with either the true or
885 // false branch
John Stiles403a3632020-08-20 12:11:48 -0400886 if (t->fTest->as<BoolLiteral>().fValue) {
Ethan Nicholascb670962017-04-20 19:31:52 -0400887 (*iter)->setExpression(std::move(t->fIfTrue));
888 } else {
889 (*iter)->setExpression(std::move(t->fIfFalse));
890 }
891 *outUpdated = true;
892 *outNeedsRescan = true;
893 }
894 break;
895 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400896 case Expression::Kind::kBinary: {
John Stiles403a3632020-08-20 12:11:48 -0400897 BinaryExpression* bin = &expr->as<BinaryExpression>();
Ethan Nicholasc2371a42017-05-05 10:04:06 -0400898 if (dead_assignment(*bin)) {
899 delete_left(&b, iter, outUpdated, outNeedsRescan);
900 break;
901 }
902 // collapse useless expressions like x * 1 or x + 0
Ethan Nicholase6592142020-09-08 10:22:09 -0400903 if (((bin->fLeft->fType.typeKind() != Type::TypeKind::kScalar) &&
904 (bin->fLeft->fType.typeKind() != Type::TypeKind::kVector)) ||
905 ((bin->fRight->fType.typeKind() != Type::TypeKind::kScalar) &&
906 (bin->fRight->fType.typeKind() != Type::TypeKind::kVector))) {
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400907 break;
908 }
Ethan Nicholascb670962017-04-20 19:31:52 -0400909 switch (bin->fOperator) {
Ethan Nicholas5a9e7fb2020-04-17 12:45:51 -0400910 case Token::Kind::TK_STAR:
Ethan Nicholascb670962017-04-20 19:31:52 -0400911 if (is_constant(*bin->fLeft, 1)) {
Ethan Nicholase6592142020-09-08 10:22:09 -0400912 if (bin->fLeft->fType.typeKind() == Type::TypeKind::kVector &&
913 bin->fRight->fType.typeKind() == Type::TypeKind::kScalar) {
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400914 // float4(1) * x -> float4(x)
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400915 vectorize_right(&b, iter, outUpdated, outNeedsRescan);
916 } else {
917 // 1 * x -> x
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400918 // 1 * float4(x) -> float4(x)
919 // float4(1) * float4(x) -> float4(x)
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400920 delete_left(&b, iter, outUpdated, outNeedsRescan);
921 }
922 }
923 else if (is_constant(*bin->fLeft, 0)) {
Ethan Nicholase6592142020-09-08 10:22:09 -0400924 if (bin->fLeft->fType.typeKind() == Type::TypeKind::kScalar &&
925 bin->fRight->fType.typeKind() == Type::TypeKind::kVector &&
Ethan Nicholas08dae922018-01-23 10:31:56 -0500926 !bin->fRight->hasSideEffects()) {
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400927 // 0 * float4(x) -> float4(0)
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400928 vectorize_left(&b, iter, outUpdated, outNeedsRescan);
929 } else {
930 // 0 * x -> 0
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400931 // float4(0) * x -> float4(0)
932 // float4(0) * float4(x) -> float4(0)
Ethan Nicholas51493ee2017-12-11 12:34:33 -0500933 if (!bin->fRight->hasSideEffects()) {
934 delete_right(&b, iter, outUpdated, outNeedsRescan);
935 }
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400936 }
Ethan Nicholascb670962017-04-20 19:31:52 -0400937 }
938 else if (is_constant(*bin->fRight, 1)) {
Ethan Nicholase6592142020-09-08 10:22:09 -0400939 if (bin->fLeft->fType.typeKind() == Type::TypeKind::kScalar &&
940 bin->fRight->fType.typeKind() == Type::TypeKind::kVector) {
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400941 // x * float4(1) -> float4(x)
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400942 vectorize_left(&b, iter, outUpdated, outNeedsRescan);
943 } else {
944 // x * 1 -> x
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400945 // float4(x) * 1 -> float4(x)
946 // float4(x) * float4(1) -> float4(x)
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400947 delete_right(&b, iter, outUpdated, outNeedsRescan);
948 }
949 }
950 else if (is_constant(*bin->fRight, 0)) {
Ethan Nicholase6592142020-09-08 10:22:09 -0400951 if (bin->fLeft->fType.typeKind() == Type::TypeKind::kVector &&
952 bin->fRight->fType.typeKind() == Type::TypeKind::kScalar &&
Ethan Nicholas08dae922018-01-23 10:31:56 -0500953 !bin->fLeft->hasSideEffects()) {
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400954 // float4(x) * 0 -> float4(0)
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400955 vectorize_right(&b, iter, outUpdated, outNeedsRescan);
956 } else {
957 // x * 0 -> 0
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400958 // x * float4(0) -> float4(0)
959 // float4(x) * float4(0) -> float4(0)
Ethan Nicholas51493ee2017-12-11 12:34:33 -0500960 if (!bin->fLeft->hasSideEffects()) {
961 delete_left(&b, iter, outUpdated, outNeedsRescan);
962 }
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400963 }
Ethan Nicholascb670962017-04-20 19:31:52 -0400964 }
965 break;
Ethan Nicholas5a9e7fb2020-04-17 12:45:51 -0400966 case Token::Kind::TK_PLUS:
Ethan Nicholascb670962017-04-20 19:31:52 -0400967 if (is_constant(*bin->fLeft, 0)) {
Ethan Nicholase6592142020-09-08 10:22:09 -0400968 if (bin->fLeft->fType.typeKind() == Type::TypeKind::kVector &&
969 bin->fRight->fType.typeKind() == Type::TypeKind::kScalar) {
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400970 // float4(0) + x -> float4(x)
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400971 vectorize_right(&b, iter, outUpdated, outNeedsRescan);
972 } else {
973 // 0 + x -> x
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400974 // 0 + float4(x) -> float4(x)
975 // float4(0) + float4(x) -> float4(x)
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400976 delete_left(&b, iter, outUpdated, outNeedsRescan);
977 }
978 } else if (is_constant(*bin->fRight, 0)) {
Ethan Nicholase6592142020-09-08 10:22:09 -0400979 if (bin->fLeft->fType.typeKind() == Type::TypeKind::kScalar &&
980 bin->fRight->fType.typeKind() == Type::TypeKind::kVector) {
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400981 // x + float4(0) -> float4(x)
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400982 vectorize_left(&b, iter, outUpdated, outNeedsRescan);
983 } else {
984 // x + 0 -> x
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400985 // float4(x) + 0 -> float4(x)
986 // float4(x) + float4(0) -> float4(x)
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400987 delete_right(&b, iter, outUpdated, outNeedsRescan);
988 }
Ethan Nicholas56e42712017-04-21 10:23:37 -0400989 }
990 break;
Ethan Nicholas5a9e7fb2020-04-17 12:45:51 -0400991 case Token::Kind::TK_MINUS:
Ethan Nicholas56e42712017-04-21 10:23:37 -0400992 if (is_constant(*bin->fRight, 0)) {
Ethan Nicholase6592142020-09-08 10:22:09 -0400993 if (bin->fLeft->fType.typeKind() == Type::TypeKind::kScalar &&
994 bin->fRight->fType.typeKind() == Type::TypeKind::kVector) {
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400995 // x - float4(0) -> float4(x)
Ethan Nicholasfe53e582017-04-27 16:24:51 -0400996 vectorize_left(&b, iter, outUpdated, outNeedsRescan);
997 } else {
998 // x - 0 -> x
Ethan Nicholas5af9ea32017-07-28 15:19:46 -0400999 // float4(x) - 0 -> float4(x)
1000 // float4(x) - float4(0) -> float4(x)
Ethan Nicholasfe53e582017-04-27 16:24:51 -04001001 delete_right(&b, iter, outUpdated, outNeedsRescan);
1002 }
Ethan Nicholascb670962017-04-20 19:31:52 -04001003 }
1004 break;
Ethan Nicholas5a9e7fb2020-04-17 12:45:51 -04001005 case Token::Kind::TK_SLASH:
Ethan Nicholascb670962017-04-20 19:31:52 -04001006 if (is_constant(*bin->fRight, 1)) {
Ethan Nicholase6592142020-09-08 10:22:09 -04001007 if (bin->fLeft->fType.typeKind() == Type::TypeKind::kScalar &&
1008 bin->fRight->fType.typeKind() == Type::TypeKind::kVector) {
Ethan Nicholas5af9ea32017-07-28 15:19:46 -04001009 // x / float4(1) -> float4(x)
Ethan Nicholasfe53e582017-04-27 16:24:51 -04001010 vectorize_left(&b, iter, outUpdated, outNeedsRescan);
1011 } else {
1012 // x / 1 -> x
Ethan Nicholas5af9ea32017-07-28 15:19:46 -04001013 // float4(x) / 1 -> float4(x)
1014 // float4(x) / float4(1) -> float4(x)
Ethan Nicholasfe53e582017-04-27 16:24:51 -04001015 delete_right(&b, iter, outUpdated, outNeedsRescan);
1016 }
1017 } else if (is_constant(*bin->fLeft, 0)) {
Ethan Nicholase6592142020-09-08 10:22:09 -04001018 if (bin->fLeft->fType.typeKind() == Type::TypeKind::kScalar &&
1019 bin->fRight->fType.typeKind() == Type::TypeKind::kVector &&
Ethan Nicholas08dae922018-01-23 10:31:56 -05001020 !bin->fRight->hasSideEffects()) {
Ethan Nicholas5af9ea32017-07-28 15:19:46 -04001021 // 0 / float4(x) -> float4(0)
Ethan Nicholasfe53e582017-04-27 16:24:51 -04001022 vectorize_left(&b, iter, outUpdated, outNeedsRescan);
1023 } else {
1024 // 0 / x -> 0
Ethan Nicholas5af9ea32017-07-28 15:19:46 -04001025 // float4(0) / x -> float4(0)
1026 // float4(0) / float4(x) -> float4(0)
Ethan Nicholas51493ee2017-12-11 12:34:33 -05001027 if (!bin->fRight->hasSideEffects()) {
1028 delete_right(&b, iter, outUpdated, outNeedsRescan);
1029 }
Ethan Nicholasfe53e582017-04-27 16:24:51 -04001030 }
1031 }
1032 break;
Ethan Nicholas5a9e7fb2020-04-17 12:45:51 -04001033 case Token::Kind::TK_PLUSEQ:
Ethan Nicholasfe53e582017-04-27 16:24:51 -04001034 if (is_constant(*bin->fRight, 0)) {
1035 clear_write(*bin->fLeft);
1036 delete_right(&b, iter, outUpdated, outNeedsRescan);
1037 }
1038 break;
Ethan Nicholas5a9e7fb2020-04-17 12:45:51 -04001039 case Token::Kind::TK_MINUSEQ:
Ethan Nicholasfe53e582017-04-27 16:24:51 -04001040 if (is_constant(*bin->fRight, 0)) {
1041 clear_write(*bin->fLeft);
1042 delete_right(&b, iter, outUpdated, outNeedsRescan);
1043 }
1044 break;
Ethan Nicholas5a9e7fb2020-04-17 12:45:51 -04001045 case Token::Kind::TK_STAREQ:
Ethan Nicholasfe53e582017-04-27 16:24:51 -04001046 if (is_constant(*bin->fRight, 1)) {
1047 clear_write(*bin->fLeft);
1048 delete_right(&b, iter, outUpdated, outNeedsRescan);
1049 }
1050 break;
Ethan Nicholas5a9e7fb2020-04-17 12:45:51 -04001051 case Token::Kind::TK_SLASHEQ:
Ethan Nicholasfe53e582017-04-27 16:24:51 -04001052 if (is_constant(*bin->fRight, 1)) {
1053 clear_write(*bin->fLeft);
Ethan Nicholascb670962017-04-20 19:31:52 -04001054 delete_right(&b, iter, outUpdated, outNeedsRescan);
1055 }
1056 break;
1057 default:
1058 break;
1059 }
Ethan Nicholas409f6f02019-09-17 12:34:39 -04001060 break;
1061 }
Ethan Nicholase6592142020-09-08 10:22:09 -04001062 case Expression::Kind::kSwizzle: {
John Stiles403a3632020-08-20 12:11:48 -04001063 Swizzle& s = expr->as<Swizzle>();
Ethan Nicholas409f6f02019-09-17 12:34:39 -04001064 // detect identity swizzles like foo.rgba
1065 if ((int) s.fComponents.size() == s.fBase->fType.columns()) {
1066 bool identity = true;
1067 for (int i = 0; i < (int) s.fComponents.size(); ++i) {
1068 if (s.fComponents[i] != i) {
1069 identity = false;
1070 break;
1071 }
1072 }
1073 if (identity) {
1074 *outUpdated = true;
1075 if (!try_replace_expression(&b, iter, &s.fBase)) {
1076 *outNeedsRescan = true;
1077 return;
1078 }
1079 SkASSERT((*iter)->fKind == BasicBlock::Node::kExpression_Kind);
1080 break;
1081 }
1082 }
1083 // detect swizzles of swizzles, e.g. replace foo.argb.r000 with foo.a000
Ethan Nicholase6592142020-09-08 10:22:09 -04001084 if (s.fBase->kind() == Expression::Kind::kSwizzle) {
John Stilesa5a97b42020-08-18 11:19:07 -04001085 Swizzle& base = s.fBase->as<Swizzle>();
Ethan Nicholas409f6f02019-09-17 12:34:39 -04001086 std::vector<int> final;
1087 for (int c : s.fComponents) {
1088 if (c == SKSL_SWIZZLE_0 || c == SKSL_SWIZZLE_1) {
1089 final.push_back(c);
1090 } else {
1091 final.push_back(base.fComponents[c]);
1092 }
1093 }
1094 *outUpdated = true;
1095 std::unique_ptr<Expression> replacement(new Swizzle(*fContext, base.fBase->clone(),
1096 std::move(final)));
1097 if (!try_replace_expression(&b, iter, &replacement)) {
1098 *outNeedsRescan = true;
1099 return;
1100 }
1101 SkASSERT((*iter)->fKind == BasicBlock::Node::kExpression_Kind);
Ethan Nicholas409f6f02019-09-17 12:34:39 -04001102 }
John Stiles30212b72020-06-11 17:55:07 -04001103 break;
Ethan Nicholascb670962017-04-20 19:31:52 -04001104 }
1105 default:
1106 break;
1107 }
1108}
1109
John Stiles92219b42020-06-15 12:32:24 -04001110// Returns true if this statement could potentially execute a break at the current level. We ignore
1111// nested loops and switches, since any breaks inside of them will merely break the loop / switch.
John Stilesb92641c2020-08-31 18:09:01 -04001112static bool contains_conditional_break(Statement& stmt) {
1113 class ContainsConditionalBreak : public ProgramVisitor {
1114 public:
1115 bool visitStatement(const Statement& stmt) override {
Ethan Nicholase6592142020-09-08 10:22:09 -04001116 switch (stmt.kind()) {
1117 case Statement::Kind::kBlock:
John Stilesb92641c2020-08-31 18:09:01 -04001118 return this->INHERITED::visitStatement(stmt);
1119
Ethan Nicholase6592142020-09-08 10:22:09 -04001120 case Statement::Kind::kBreak:
John Stilesb92641c2020-08-31 18:09:01 -04001121 return fInConditional > 0;
1122
Ethan Nicholase6592142020-09-08 10:22:09 -04001123 case Statement::Kind::kIf: {
John Stilesb92641c2020-08-31 18:09:01 -04001124 ++fInConditional;
1125 bool result = this->INHERITED::visitStatement(stmt);
1126 --fInConditional;
1127 return result;
1128 }
1129
1130 default:
1131 return false;
1132 }
1133 }
1134
1135 int fInConditional = 0;
1136 using INHERITED = ProgramVisitor;
1137 };
1138
1139 return ContainsConditionalBreak{}.visitStatement(stmt);
John Stiles92219b42020-06-15 12:32:24 -04001140}
1141
Ethan Nicholas5005a222018-08-24 13:06:27 -04001142// returns true if this statement definitely executes a break at the current level (we ignore
1143// nested loops and switches, since any breaks inside of them will merely break the loop / switch)
John Stilesb92641c2020-08-31 18:09:01 -04001144static bool contains_unconditional_break(Statement& stmt) {
1145 class ContainsUnconditionalBreak : public ProgramVisitor {
1146 public:
1147 bool visitStatement(const Statement& stmt) override {
Ethan Nicholase6592142020-09-08 10:22:09 -04001148 switch (stmt.kind()) {
1149 case Statement::Kind::kBlock:
John Stilesb92641c2020-08-31 18:09:01 -04001150 return this->INHERITED::visitStatement(stmt);
1151
Ethan Nicholase6592142020-09-08 10:22:09 -04001152 case Statement::Kind::kBreak:
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001153 return true;
John Stilesb92641c2020-08-31 18:09:01 -04001154
1155 default:
1156 return false;
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001157 }
John Stilesb92641c2020-08-31 18:09:01 -04001158 }
John Stiles92219b42020-06-15 12:32:24 -04001159
John Stilesb92641c2020-08-31 18:09:01 -04001160 using INHERITED = ProgramVisitor;
1161 };
John Stiles92219b42020-06-15 12:32:24 -04001162
John Stilesb92641c2020-08-31 18:09:01 -04001163 return ContainsUnconditionalBreak{}.visitStatement(stmt);
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001164}
1165
John Stiles92219b42020-06-15 12:32:24 -04001166static void move_all_but_break(std::unique_ptr<Statement>& stmt,
1167 std::vector<std::unique_ptr<Statement>>* target) {
Ethan Nicholase6592142020-09-08 10:22:09 -04001168 switch (stmt->kind()) {
1169 case Statement::Kind::kBlock: {
John Stiles92219b42020-06-15 12:32:24 -04001170 // Recurse into the block.
1171 Block& block = static_cast<Block&>(*stmt);
1172
1173 std::vector<std::unique_ptr<Statement>> blockStmts;
1174 blockStmts.reserve(block.fStatements.size());
1175 for (std::unique_ptr<Statement>& statementInBlock : block.fStatements) {
1176 move_all_but_break(statementInBlock, &blockStmts);
Ethan Nicholas739e1ca2020-06-11 12:16:14 -04001177 }
John Stiles92219b42020-06-15 12:32:24 -04001178
1179 target->push_back(std::make_unique<Block>(block.fOffset, std::move(blockStmts),
1180 block.fSymbols, block.fIsScope));
Ethan Nicholas739e1ca2020-06-11 12:16:14 -04001181 break;
John Stiles92219b42020-06-15 12:32:24 -04001182 }
1183
Ethan Nicholase6592142020-09-08 10:22:09 -04001184 case Statement::Kind::kBreak:
John Stiles92219b42020-06-15 12:32:24 -04001185 // Do not append a break to the target.
1186 break;
1187
Ethan Nicholas739e1ca2020-06-11 12:16:14 -04001188 default:
John Stiles92219b42020-06-15 12:32:24 -04001189 // Append normal statements to the target.
1190 target->push_back(std::move(stmt));
1191 break;
Ethan Nicholas739e1ca2020-06-11 12:16:14 -04001192 }
1193}
1194
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001195// Returns a block containing all of the statements that will be run if the given case matches
1196// (which, owing to the statements being owned by unique_ptrs, means the switch itself will be
1197// broken by this call and must then be discarded).
1198// Returns null (and leaves the switch unmodified) if no such simple reduction is possible, such as
1199// when break statements appear inside conditionals.
John Stiles92219b42020-06-15 12:32:24 -04001200static std::unique_ptr<Statement> block_for_case(SwitchStatement* switchStatement,
1201 SwitchCase* caseToCapture) {
1202 // We have to be careful to not move any of the pointers until after we're sure we're going to
1203 // succeed, so before we make any changes at all, we check the switch-cases to decide on a plan
1204 // of action. First, find the switch-case we are interested in.
1205 auto iter = switchStatement->fCases.begin();
1206 for (; iter != switchStatement->fCases.end(); ++iter) {
1207 if (iter->get() == caseToCapture) {
1208 break;
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001209 }
John Stiles92219b42020-06-15 12:32:24 -04001210 }
1211
1212 // Next, walk forward through the rest of the switch. If we find a conditional break, we're
1213 // stuck and can't simplify at all. If we find an unconditional break, we have a range of
1214 // statements that we can use for simplification.
1215 auto startIter = iter;
1216 Statement* unconditionalBreakStmt = nullptr;
1217 for (; iter != switchStatement->fCases.end(); ++iter) {
1218 for (std::unique_ptr<Statement>& stmt : (*iter)->fStatements) {
1219 if (contains_conditional_break(*stmt)) {
1220 // We can't reduce switch-cases to a block when they have conditional breaks.
1221 return nullptr;
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001222 }
John Stiles92219b42020-06-15 12:32:24 -04001223
1224 if (contains_unconditional_break(*stmt)) {
1225 // We found an unconditional break. We can use this block, but we need to strip
1226 // out the break statement.
1227 unconditionalBreakStmt = stmt.get();
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001228 break;
1229 }
1230 }
John Stiles92219b42020-06-15 12:32:24 -04001231
1232 if (unconditionalBreakStmt != nullptr) {
1233 break;
1234 }
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001235 }
John Stiles92219b42020-06-15 12:32:24 -04001236
1237 // We fell off the bottom of the switch or encountered a break. We know the range of statements
1238 // that we need to move over, and we know it's safe to do so.
1239 std::vector<std::unique_ptr<Statement>> caseStmts;
1240
1241 // We can move over most of the statements as-is.
1242 while (startIter != iter) {
1243 for (std::unique_ptr<Statement>& stmt : (*startIter)->fStatements) {
1244 caseStmts.push_back(std::move(stmt));
1245 }
1246 ++startIter;
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001247 }
John Stiles92219b42020-06-15 12:32:24 -04001248
1249 // If we found an unconditional break at the end, we need to move what we can while avoiding
1250 // that break.
1251 if (unconditionalBreakStmt != nullptr) {
1252 for (std::unique_ptr<Statement>& stmt : (*startIter)->fStatements) {
1253 if (stmt.get() == unconditionalBreakStmt) {
1254 move_all_but_break(stmt, &caseStmts);
1255 unconditionalBreakStmt = nullptr;
1256 break;
1257 }
1258
1259 caseStmts.push_back(std::move(stmt));
1260 }
1261 }
1262
1263 SkASSERT(unconditionalBreakStmt == nullptr); // Verify that we fixed the unconditional break.
1264
1265 // Return our newly-synthesized block.
1266 return std::make_unique<Block>(/*offset=*/-1, std::move(caseStmts), switchStatement->fSymbols);
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001267}
1268
Ethan Nicholascb670962017-04-20 19:31:52 -04001269void Compiler::simplifyStatement(DefinitionMap& definitions,
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001270 BasicBlock& b,
1271 std::vector<BasicBlock::Node>::iterator* iter,
1272 std::unordered_set<const Variable*>* undefinedVariables,
1273 bool* outUpdated,
1274 bool* outNeedsRescan) {
Ethan Nicholascb670962017-04-20 19:31:52 -04001275 Statement* stmt = (*iter)->statement()->get();
Ethan Nicholase6592142020-09-08 10:22:09 -04001276 switch (stmt->kind()) {
1277 case Statement::Kind::kVarDeclaration: {
John Stilesa5a97b42020-08-18 11:19:07 -04001278 const auto& varDecl = stmt->as<VarDeclaration>();
Ethan Nicholas82a62d22017-11-07 14:42:10 +00001279 if (varDecl.fVar->dead() &&
1280 (!varDecl.fValue ||
1281 !varDecl.fValue->hasSideEffects())) {
1282 if (varDecl.fValue) {
Ethan Nicholasd9d33c32018-06-12 11:05:59 -04001283 SkASSERT((*iter)->statement()->get() == stmt);
Ethan Nicholas82a62d22017-11-07 14:42:10 +00001284 if (!b.tryRemoveExpressionBefore(iter, varDecl.fValue.get())) {
1285 *outNeedsRescan = true;
Ethan Nicholascb670962017-04-20 19:31:52 -04001286 }
Ethan Nicholascb670962017-04-20 19:31:52 -04001287 }
Ethan Nicholascb670962017-04-20 19:31:52 -04001288 (*iter)->setStatement(std::unique_ptr<Statement>(new Nop()));
Ethan Nicholas82a62d22017-11-07 14:42:10 +00001289 *outUpdated = true;
Ethan Nicholascb670962017-04-20 19:31:52 -04001290 }
1291 break;
1292 }
Ethan Nicholase6592142020-09-08 10:22:09 -04001293 case Statement::Kind::kIf: {
John Stilesa5a97b42020-08-18 11:19:07 -04001294 IfStatement& i = stmt->as<IfStatement>();
Ethan Nicholase6592142020-09-08 10:22:09 -04001295 if (i.fTest->kind() == Expression::Kind::kBoolLiteral) {
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001296 // constant if, collapse down to a single branch
John Stilesa5a97b42020-08-18 11:19:07 -04001297 if (i.fTest->as<BoolLiteral>().fValue) {
Ethan Nicholasd9d33c32018-06-12 11:05:59 -04001298 SkASSERT(i.fIfTrue);
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001299 (*iter)->setStatement(std::move(i.fIfTrue));
1300 } else {
1301 if (i.fIfFalse) {
1302 (*iter)->setStatement(std::move(i.fIfFalse));
1303 } else {
1304 (*iter)->setStatement(std::unique_ptr<Statement>(new Nop()));
1305 }
1306 }
1307 *outUpdated = true;
1308 *outNeedsRescan = true;
1309 break;
1310 }
Ethan Nicholascb670962017-04-20 19:31:52 -04001311 if (i.fIfFalse && i.fIfFalse->isEmpty()) {
1312 // else block doesn't do anything, remove it
1313 i.fIfFalse.reset();
1314 *outUpdated = true;
1315 *outNeedsRescan = true;
1316 }
1317 if (!i.fIfFalse && i.fIfTrue->isEmpty()) {
1318 // if block doesn't do anything, no else block
1319 if (i.fTest->hasSideEffects()) {
1320 // test has side effects, keep it
1321 (*iter)->setStatement(std::unique_ptr<Statement>(
1322 new ExpressionStatement(std::move(i.fTest))));
1323 } else {
1324 // no if, no else, no test side effects, kill the whole if
1325 // statement
1326 (*iter)->setStatement(std::unique_ptr<Statement>(new Nop()));
1327 }
1328 *outUpdated = true;
1329 *outNeedsRescan = true;
1330 }
1331 break;
1332 }
Ethan Nicholase6592142020-09-08 10:22:09 -04001333 case Statement::Kind::kSwitch: {
John Stilesa5a97b42020-08-18 11:19:07 -04001334 SwitchStatement& s = stmt->as<SwitchStatement>();
Brian Osmanb6b95732020-06-30 11:44:27 -04001335 if (s.fValue->isCompileTimeConstant()) {
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001336 // switch is constant, replace it with the case that matches
1337 bool found = false;
1338 SwitchCase* defaultCase = nullptr;
John Stiles9d944232020-08-19 09:56:49 -04001339 for (const std::unique_ptr<SwitchCase>& c : s.fCases) {
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001340 if (!c->fValue) {
1341 defaultCase = c.get();
1342 continue;
1343 }
John Stiles9d944232020-08-19 09:56:49 -04001344 if (is_constant<int64_t>(*s.fValue, c->fValue->getConstantInt())) {
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001345 std::unique_ptr<Statement> newBlock = block_for_case(&s, c.get());
1346 if (newBlock) {
1347 (*iter)->setStatement(std::move(newBlock));
John Stiles9d944232020-08-19 09:56:49 -04001348 found = true;
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001349 break;
1350 } else {
Ethan Nicholas6e1cbc02017-07-14 10:12:15 -04001351 if (s.fIsStatic && !(fFlags & kPermitInvalidStaticTests_Flag)) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001352 this->error(s.fOffset,
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001353 "static switch contains non-static conditional break");
1354 s.fIsStatic = false;
1355 }
1356 return; // can't simplify
1357 }
1358 }
1359 }
1360 if (!found) {
1361 // no matching case. use default if it exists, or kill the whole thing
1362 if (defaultCase) {
1363 std::unique_ptr<Statement> newBlock = block_for_case(&s, defaultCase);
1364 if (newBlock) {
1365 (*iter)->setStatement(std::move(newBlock));
1366 } else {
Ethan Nicholas6e1cbc02017-07-14 10:12:15 -04001367 if (s.fIsStatic && !(fFlags & kPermitInvalidStaticTests_Flag)) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001368 this->error(s.fOffset,
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001369 "static switch contains non-static conditional break");
1370 s.fIsStatic = false;
1371 }
1372 return; // can't simplify
1373 }
1374 } else {
1375 (*iter)->setStatement(std::unique_ptr<Statement>(new Nop()));
1376 }
1377 }
1378 *outUpdated = true;
1379 *outNeedsRescan = true;
1380 }
1381 break;
1382 }
Ethan Nicholase6592142020-09-08 10:22:09 -04001383 case Statement::Kind::kExpression: {
John Stilesa5a97b42020-08-18 11:19:07 -04001384 ExpressionStatement& e = stmt->as<ExpressionStatement>();
Ethan Nicholasd9d33c32018-06-12 11:05:59 -04001385 SkASSERT((*iter)->statement()->get() == &e);
Ethan Nicholascb670962017-04-20 19:31:52 -04001386 if (!e.fExpression->hasSideEffects()) {
1387 // Expression statement with no side effects, kill it
1388 if (!b.tryRemoveExpressionBefore(iter, e.fExpression.get())) {
1389 *outNeedsRescan = true;
1390 }
Ethan Nicholasd9d33c32018-06-12 11:05:59 -04001391 SkASSERT((*iter)->statement()->get() == stmt);
Ethan Nicholascb670962017-04-20 19:31:52 -04001392 (*iter)->setStatement(std::unique_ptr<Statement>(new Nop()));
1393 *outUpdated = true;
1394 }
1395 break;
1396 }
1397 default:
1398 break;
1399 }
1400}
1401
John Stiles0cc193a2020-09-09 09:39:34 -04001402bool Compiler::scanCFG(FunctionDefinition& f) {
1403 bool madeChanges = false;
1404
Ethan Nicholascb670962017-04-20 19:31:52 -04001405 CFG cfg = CFGGenerator().getCFG(f);
1406 this->computeDataFlow(&cfg);
ethannicholas22f939e2016-10-13 13:25:34 -07001407
1408 // check for unreachable code
1409 for (size_t i = 0; i < cfg.fBlocks.size(); i++) {
John Stiles0cc193a2020-09-09 09:39:34 -04001410 const BasicBlock& block = cfg.fBlocks[i];
1411 if (i != cfg.fStart && !block.fEntrances.size() && block.fNodes.size()) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001412 int offset;
John Stiles0cc193a2020-09-09 09:39:34 -04001413 const BasicBlock::Node& node = block.fNodes[0];
1414 switch (node.fKind) {
Ethan Nicholas86a43402017-01-19 13:32:00 -05001415 case BasicBlock::Node::kStatement_Kind:
John Stiles0cc193a2020-09-09 09:39:34 -04001416 offset = (*node.statement())->fOffset;
Ethan Nicholas86a43402017-01-19 13:32:00 -05001417 break;
1418 case BasicBlock::Node::kExpression_Kind:
John Stiles0cc193a2020-09-09 09:39:34 -04001419 offset = (*node.expression())->fOffset;
1420 if ((*node.expression())->is<BoolLiteral>()) {
Ethan Nicholas70728ef2020-05-28 07:09:00 -04001421 // Function inlining can generate do { ... } while(false) loops which always
1422 // break, so the boolean condition is considered unreachable. Since not
1423 // being able to reach a literal is a non-issue in the first place, we
1424 // don't report an error in this case.
1425 continue;
1426 }
Ethan Nicholas86a43402017-01-19 13:32:00 -05001427 break;
1428 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001429 this->error(offset, String("unreachable"));
ethannicholas22f939e2016-10-13 13:25:34 -07001430 }
1431 }
1432 if (fErrorCount) {
John Stiles0cc193a2020-09-09 09:39:34 -04001433 return madeChanges;
ethannicholas22f939e2016-10-13 13:25:34 -07001434 }
1435
Ethan Nicholascb670962017-04-20 19:31:52 -04001436 // check for dead code & undefined variables, perform constant propagation
1437 std::unordered_set<const Variable*> undefinedVariables;
1438 bool updated;
1439 bool needsRescan = false;
1440 do {
1441 if (needsRescan) {
1442 cfg = CFGGenerator().getCFG(f);
1443 this->computeDataFlow(&cfg);
1444 needsRescan = false;
Ethan Nicholas113628d2017-02-02 16:11:39 -05001445 }
Ethan Nicholascb670962017-04-20 19:31:52 -04001446
1447 updated = false;
Ethan Nicholas1de14812020-06-19 15:32:49 -04001448 bool first = true;
Ethan Nicholascb670962017-04-20 19:31:52 -04001449 for (BasicBlock& b : cfg.fBlocks) {
Ethan Nicholas1de14812020-06-19 15:32:49 -04001450 if (!first && b.fEntrances.empty()) {
1451 // Block was reachable before optimization, but has since become unreachable. In
1452 // addition to being dead code, it's broken - since control flow can't reach it, no
1453 // prior variable definitions can reach it, and therefore variables might look to
1454 // have not been properly assigned. Kill it.
Brian Osmandb16c482020-09-09 15:15:06 -04001455
1456 // We need to do this in two steps. For any variable declarations, the node list
1457 // will contain statement nodes for each VarDeclaration, and then a statement for
1458 // the VarDeclarationsStatement. When we replace the VDS with a Nop, we delete the
1459 // storage of the unique_ptr that the VD nodes are pointing to. So we remove those
1460 // from the node list entirely, first.
1461 b.fNodes.erase(
1462 std::remove_if(b.fNodes.begin(), b.fNodes.end(),
1463 [](const BasicBlock::Node& node) {
1464 return node.fKind == BasicBlock::Node::kStatement_Kind &&
1465 (*node.statement())->is<VarDeclaration>();
1466 }),
1467 b.fNodes.end());
1468
1469 // Now replace any remaining statements in the block with Nops.
Ethan Nicholas1de14812020-06-19 15:32:49 -04001470 for (BasicBlock::Node& node : b.fNodes) {
1471 if (node.fKind == BasicBlock::Node::kStatement_Kind &&
John Stiles0cc193a2020-09-09 09:39:34 -04001472 !(*node.statement())->is<Nop>()) {
1473 node.setStatement(std::make_unique<Nop>());
1474 madeChanges = true;
Ethan Nicholas1de14812020-06-19 15:32:49 -04001475 }
1476 }
1477 continue;
1478 }
1479 first = false;
Ethan Nicholascb670962017-04-20 19:31:52 -04001480 DefinitionMap definitions = b.fBefore;
1481
1482 for (auto iter = b.fNodes.begin(); iter != b.fNodes.end() && !needsRescan; ++iter) {
1483 if (iter->fKind == BasicBlock::Node::kExpression_Kind) {
1484 this->simplifyExpression(definitions, b, &iter, &undefinedVariables, &updated,
1485 &needsRescan);
1486 } else {
1487 this->simplifyStatement(definitions, b, &iter, &undefinedVariables, &updated,
John Stiles0cc193a2020-09-09 09:39:34 -04001488 &needsRescan);
Ethan Nicholascb670962017-04-20 19:31:52 -04001489 }
Ethan Nicholas4b330df2017-05-17 10:52:55 -04001490 if (needsRescan) {
1491 break;
1492 }
Ethan Nicholascb670962017-04-20 19:31:52 -04001493 this->addDefinitions(*iter, &definitions);
1494 }
1495 }
John Stiles0cc193a2020-09-09 09:39:34 -04001496 madeChanges |= updated;
Ethan Nicholascb670962017-04-20 19:31:52 -04001497 } while (updated);
Ethan Nicholasd9d33c32018-06-12 11:05:59 -04001498 SkASSERT(!needsRescan);
ethannicholas22f939e2016-10-13 13:25:34 -07001499
Ethan Nicholas91a10532017-06-22 11:24:38 -04001500 // verify static ifs & switches, clean up dead variable decls
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001501 for (BasicBlock& b : cfg.fBlocks) {
1502 DefinitionMap definitions = b.fBefore;
1503
Ethan Nicholas91a10532017-06-22 11:24:38 -04001504 for (auto iter = b.fNodes.begin(); iter != b.fNodes.end() && !needsRescan;) {
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001505 if (iter->fKind == BasicBlock::Node::kStatement_Kind) {
1506 const Statement& s = **iter->statement();
Ethan Nicholase6592142020-09-08 10:22:09 -04001507 switch (s.kind()) {
1508 case Statement::Kind::kIf:
John Stilesa5a97b42020-08-18 11:19:07 -04001509 if (s.as<IfStatement>().fIsStatic &&
Ethan Nicholas6e1cbc02017-07-14 10:12:15 -04001510 !(fFlags & kPermitInvalidStaticTests_Flag)) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001511 this->error(s.fOffset, "static if has non-static test");
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001512 }
Ethan Nicholas91a10532017-06-22 11:24:38 -04001513 ++iter;
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001514 break;
Ethan Nicholase6592142020-09-08 10:22:09 -04001515 case Statement::Kind::kSwitch:
John Stilesa5a97b42020-08-18 11:19:07 -04001516 if (s.as<SwitchStatement>().fIsStatic &&
John Stiles0cc193a2020-09-09 09:39:34 -04001517 !(fFlags & kPermitInvalidStaticTests_Flag)) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001518 this->error(s.fOffset, "static switch has non-static test");
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001519 }
Ethan Nicholas91a10532017-06-22 11:24:38 -04001520 ++iter;
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001521 break;
Ethan Nicholase6592142020-09-08 10:22:09 -04001522 case Statement::Kind::kVarDeclarations: {
John Stilesa5a97b42020-08-18 11:19:07 -04001523 VarDeclarations& decls = *s.as<VarDeclarationsStatement>().fDeclaration;
John Stiles0cc193a2020-09-09 09:39:34 -04001524 decls.fVars.erase(
1525 std::remove_if(decls.fVars.begin(), decls.fVars.end(),
1526 [&](const std::unique_ptr<Statement>& var) {
1527 bool nop = var->is<Nop>();
1528 madeChanges |= nop;
1529 return nop;
1530 }),
1531 decls.fVars.end());
1532 if (decls.fVars.empty()) {
Ethan Nicholas82a62d22017-11-07 14:42:10 +00001533 iter = b.fNodes.erase(iter);
1534 } else {
1535 ++iter;
1536 }
1537 break;
1538 }
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001539 default:
Ethan Nicholas91a10532017-06-22 11:24:38 -04001540 ++iter;
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001541 break;
1542 }
Ethan Nicholas91a10532017-06-22 11:24:38 -04001543 } else {
1544 ++iter;
Ethan Nicholas5ac13c22017-05-10 15:06:17 -04001545 }
1546 }
1547 }
1548
ethannicholas22f939e2016-10-13 13:25:34 -07001549 // check for missing return
Ethan Nicholas26a9aad2018-03-27 14:10:52 -04001550 if (f.fDeclaration.fReturnType != *fContext->fVoid_Type) {
ethannicholas22f939e2016-10-13 13:25:34 -07001551 if (cfg.fBlocks[cfg.fExit].fEntrances.size()) {
Ethan Nicholasdb80f692019-11-22 14:06:12 -05001552 this->error(f.fOffset, String("function '" + String(f.fDeclaration.fName) +
1553 "' can exit without returning a value"));
ethannicholas22f939e2016-10-13 13:25:34 -07001554 }
1555 }
John Stiles0cc193a2020-09-09 09:39:34 -04001556
1557 return madeChanges;
ethannicholas22f939e2016-10-13 13:25:34 -07001558}
1559
Ethan Nicholas91164d12019-05-15 15:29:54 -04001560void Compiler::registerExternalValue(ExternalValue* value) {
1561 fIRGenerator->fRootSymbolTable->addWithoutOwnership(value->fName, value);
1562}
1563
Ethan Nicholasc18bb512020-07-28 14:46:53 -04001564const Symbol* Compiler::takeOwnership(std::unique_ptr<const Symbol> symbol) {
John Stiles3ae071e2020-08-05 15:29:29 -04001565 return fIRGenerator->fRootSymbolTable->takeOwnershipOfSymbol(std::move(symbol));
Ethan Nicholas91164d12019-05-15 15:29:54 -04001566}
1567
Ethan Nicholas0df1b042017-03-31 13:56:23 -04001568std::unique_ptr<Program> Compiler::convertProgram(Program::Kind kind, String text,
Ethan Nicholas941e7e22016-12-12 15:33:30 -05001569 const Program::Settings& settings) {
ethannicholasb3058bd2016-07-01 08:22:01 -07001570 fErrorText = "";
1571 fErrorCount = 0;
John Stiles7b463002020-08-31 17:29:21 -04001572 fInliner.reset(context(), settings);
Ethan Nicholas3c6ae622018-04-24 13:06:09 -04001573 std::vector<std::unique_ptr<ProgramElement>>* inherited;
ethannicholasd598f792016-07-25 10:08:54 -07001574 std::vector<std::unique_ptr<ProgramElement>> elements;
ethannicholasb3058bd2016-07-01 08:22:01 -07001575 switch (kind) {
1576 case Program::kVertex_Kind:
Ethan Nicholas3c6ae622018-04-24 13:06:09 -04001577 inherited = &fVertexInclude;
1578 fIRGenerator->fSymbolTable = fVertexSymbolTable;
John Stiles810c8cf2020-08-26 19:46:27 -04001579 fIRGenerator->fIntrinsics = fGPUIntrinsics.get();
Ethan Nicholas3c6ae622018-04-24 13:06:09 -04001580 fIRGenerator->start(&settings, inherited);
ethannicholasb3058bd2016-07-01 08:22:01 -07001581 break;
1582 case Program::kFragment_Kind:
Ethan Nicholas3c6ae622018-04-24 13:06:09 -04001583 inherited = &fFragmentInclude;
1584 fIRGenerator->fSymbolTable = fFragmentSymbolTable;
John Stiles810c8cf2020-08-26 19:46:27 -04001585 fIRGenerator->fIntrinsics = fGPUIntrinsics.get();
Ethan Nicholas3c6ae622018-04-24 13:06:09 -04001586 fIRGenerator->start(&settings, inherited);
ethannicholasb3058bd2016-07-01 08:22:01 -07001587 break;
Ethan Nicholas52cad152017-02-16 16:37:32 -05001588 case Program::kGeometry_Kind:
Ethan Nicholasc18bb512020-07-28 14:46:53 -04001589 this->loadGeometryIntrinsics();
Ethan Nicholas3c6ae622018-04-24 13:06:09 -04001590 inherited = &fGeometryInclude;
1591 fIRGenerator->fSymbolTable = fGeometrySymbolTable;
John Stiles810c8cf2020-08-26 19:46:27 -04001592 fIRGenerator->fIntrinsics = fGPUIntrinsics.get();
Ethan Nicholas3c6ae622018-04-24 13:06:09 -04001593 fIRGenerator->start(&settings, inherited);
Ethan Nicholas52cad152017-02-16 16:37:32 -05001594 break;
Ethan Nicholasb33fa3f2020-08-06 13:00:19 -04001595 case Program::kFragmentProcessor_Kind: {
Brian Osmandd496172020-08-08 08:17:18 -04001596#if !SKSL_STANDALONE
Ethan Nicholasc18bb512020-07-28 14:46:53 -04001597 {
1598 Rehydrator rehydrator(fContext.get(), fGpuSymbolTable, this,
1599 SKSL_INCLUDE_sksl_fp,
1600 SKSL_INCLUDE_sksl_fp_LENGTH);
1601 fFPSymbolTable = rehydrator.symbolTable();
1602 fFPInclude = rehydrator.elements();
1603 }
1604 inherited = &fFPInclude;
1605 fIRGenerator->fSymbolTable = fFPSymbolTable;
John Stiles810c8cf2020-08-26 19:46:27 -04001606 fIRGenerator->fIntrinsics = fGPUIntrinsics.get();
Ethan Nicholasc18bb512020-07-28 14:46:53 -04001607 fIRGenerator->start(&settings, inherited);
1608 break;
1609#else
Ethan Nicholas3c6ae622018-04-24 13:06:09 -04001610 inherited = nullptr;
Ethan Nicholas8da1e652019-05-24 11:01:59 -04001611 fIRGenerator->fSymbolTable = fGpuSymbolTable;
Ethan Nicholasb33fa3f2020-08-06 13:00:19 -04001612 fIRGenerator->start(&settings, /*inherited=*/nullptr, /*builtin=*/true);
John Stiles810c8cf2020-08-26 19:46:27 -04001613 fIRGenerator->fIntrinsics = fGPUIntrinsics.get();
Ethan Nicholasb33fa3f2020-08-06 13:00:19 -04001614 std::ifstream in(SKSL_FP_INCLUDE);
1615 std::string stdText{std::istreambuf_iterator<char>(in),
1616 std::istreambuf_iterator<char>()};
1617 if (in.rdstate()) {
1618 printf("error reading %s\n", SKSL_FP_INCLUDE);
1619 abort();
1620 }
1621 const String* source = fGpuSymbolTable->takeOwnershipOfString(
1622 std::make_unique<String>(stdText.c_str()));
1623 fIRGenerator->convertProgram(kind, source->c_str(), source->length(), &elements);
Ethan Nicholasc18bb512020-07-28 14:46:53 -04001624 fIRGenerator->fIsBuiltinCode = false;
Ethan Nicholas762466e2017-06-29 10:03:38 -04001625 break;
Ethan Nicholasc18bb512020-07-28 14:46:53 -04001626#endif
Ethan Nicholasb33fa3f2020-08-06 13:00:19 -04001627 }
Ethan Nicholas8da1e652019-05-24 11:01:59 -04001628 case Program::kPipelineStage_Kind:
Ethan Nicholasc18bb512020-07-28 14:46:53 -04001629 this->loadPipelineIntrinsics();
Ethan Nicholas8da1e652019-05-24 11:01:59 -04001630 inherited = &fPipelineInclude;
1631 fIRGenerator->fSymbolTable = fPipelineSymbolTable;
John Stiles810c8cf2020-08-26 19:46:27 -04001632 fIRGenerator->fIntrinsics = fGPUIntrinsics.get();
Ethan Nicholas8da1e652019-05-24 11:01:59 -04001633 fIRGenerator->start(&settings, inherited);
1634 break;
Ethan Nicholas746035a2019-04-23 13:31:09 -04001635 case Program::kGeneric_Kind:
Ethan Nicholasc18bb512020-07-28 14:46:53 -04001636 this->loadInterpreterIntrinsics();
Ethan Nicholas8da1e652019-05-24 11:01:59 -04001637 inherited = &fInterpreterInclude;
1638 fIRGenerator->fSymbolTable = fInterpreterSymbolTable;
John Stiles810c8cf2020-08-26 19:46:27 -04001639 fIRGenerator->fIntrinsics = fInterpreterIntrinsics.get();
Ethan Nicholas8da1e652019-05-24 11:01:59 -04001640 fIRGenerator->start(&settings, inherited);
Ethan Nicholas0d997662019-04-08 09:46:01 -04001641 break;
ethannicholasb3058bd2016-07-01 08:22:01 -07001642 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001643 std::unique_ptr<String> textPtr(new String(std::move(text)));
1644 fSource = textPtr.get();
Ethan Nicholasc18bb512020-07-28 14:46:53 -04001645 fIRGenerator->convertProgram(kind, textPtr->c_str(), textPtr->size(), &elements);
John Stilesfbd050b2020-08-03 13:21:46 -04001646 auto result = std::make_unique<Program>(kind,
1647 std::move(textPtr),
1648 settings,
1649 fContext,
1650 inherited,
1651 std::move(elements),
1652 fIRGenerator->fSymbolTable,
1653 fIRGenerator->fInputs);
Ethan Nicholas941e7e22016-12-12 15:33:30 -05001654 if (fErrorCount) {
1655 return nullptr;
1656 }
1657 return result;
1658}
1659
Ethan Nicholas00543112018-07-31 09:44:36 -04001660bool Compiler::optimize(Program& program) {
1661 SkASSERT(!fErrorCount);
1662 if (!program.fIsOptimized) {
1663 program.fIsOptimized = true;
1664 fIRGenerator->fKind = program.fKind;
1665 fIRGenerator->fSettings = &program.fSettings;
John Stiles7954d6c2020-09-01 10:53:02 -04001666
John Stilesc0dd06d2020-09-02 12:45:22 -04001667 // Scan and optimize based on the control-flow graph for each function.
John Stiles73a6bff2020-09-09 13:40:37 -04001668 while (fErrorCount == 0) {
1669 bool madeChanges = false;
John Stiles7954d6c2020-09-01 10:53:02 -04001670
John Stileseadfc3b2020-09-02 14:12:41 -04001671 for (ProgramElement& element : program) {
John Stiles73a6bff2020-09-09 13:40:37 -04001672 if (element.is<FunctionDefinition>()) {
1673 madeChanges |= this->scanCFG(element.as<FunctionDefinition>());
Ethan Nicholas0dc80872019-02-08 15:46:24 -05001674 }
Ethan Nicholas0dc80872019-02-08 15:46:24 -05001675 }
John Stileseadfc3b2020-09-02 14:12:41 -04001676
John Stiles73a6bff2020-09-09 13:40:37 -04001677 // Remove dead functions. We wait until after analysis so that we still report errors,
1678 // even in unused code.
1679 if (program.fSettings.fRemoveDeadFunctions) {
1680 program.fElements.erase(
1681 std::remove_if(program.fElements.begin(),
1682 program.fElements.end(),
1683 [&](const std::unique_ptr<ProgramElement>& element) {
1684 if (!element->is<FunctionDefinition>()) {
1685 return false;
1686 }
1687 const auto& fn = element->as<FunctionDefinition>();
1688 bool dead = fn.fDeclaration.fCallCount == 0 &&
1689 fn.fDeclaration.fName != "main";
1690 madeChanges |= dead;
1691 return dead;
1692 }),
1693 program.fElements.end());
1694 }
1695
1696 if (program.fKind != Program::kFragmentProcessor_Kind) {
1697 // Remove dead variables.
1698 for (ProgramElement& element : program) {
1699 if (!element.is<VarDeclarations>()) {
1700 continue;
1701 }
1702 VarDeclarations& vars = element.as<VarDeclarations>();
1703 vars.fVars.erase(
1704 std::remove_if(vars.fVars.begin(), vars.fVars.end(),
1705 [&](const std::unique_ptr<Statement>& stmt) {
1706 bool dead = stmt->as<VarDeclaration>().fVar->dead();
1707 madeChanges |= dead;
1708 return dead;
1709 }),
1710 vars.fVars.end());
1711 }
1712
1713 // Remove empty variable declarations with no variables left inside of them.
1714 program.fElements.erase(
1715 std::remove_if(program.fElements.begin(), program.fElements.end(),
1716 [&](const std::unique_ptr<ProgramElement>& element) {
1717 if (!element->is<VarDeclarations>()) {
1718 return false;
1719 }
1720 bool dead = element->as<VarDeclarations>().fVars.empty();
1721 madeChanges |= dead;
1722 return dead;
1723 }),
1724 program.fElements.end());
1725 }
1726
1727 if (!madeChanges) {
1728 break;
1729 }
Ethan Nicholas0dc80872019-02-08 15:46:24 -05001730 }
Ethan Nicholas00543112018-07-31 09:44:36 -04001731 }
1732 return fErrorCount == 0;
1733}
1734
Brian Osmanfb32ddf2019-06-18 10:14:20 -04001735#if defined(SKSL_STANDALONE) || SK_SUPPORT_GPU
1736
Ethan Nicholas00543112018-07-31 09:44:36 -04001737bool Compiler::toSPIRV(Program& program, OutputStream& out) {
1738 if (!this->optimize(program)) {
1739 return false;
1740 }
Ethan Nicholasa6ae1f72017-03-16 09:56:54 -04001741#ifdef SK_ENABLE_SPIRV_VALIDATION
Ethan Nicholas0df1b042017-03-31 13:56:23 -04001742 StringStream buffer;
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001743 fSource = program.fSource.get();
Ethan Nicholas26a9aad2018-03-27 14:10:52 -04001744 SPIRVCodeGenerator cg(fContext.get(), &program, this, &buffer);
Ethan Nicholasa6ae1f72017-03-16 09:56:54 -04001745 bool result = cg.generateCode();
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001746 fSource = nullptr;
Ethan Nicholasa6ae1f72017-03-16 09:56:54 -04001747 if (result) {
Ethan Nicholasa6ae1f72017-03-16 09:56:54 -04001748 spvtools::SpirvTools tools(SPV_ENV_VULKAN_1_0);
Ethan Nicholas762466e2017-06-29 10:03:38 -04001749 const String& data = buffer.str();
Ethan Nicholasd9d33c32018-06-12 11:05:59 -04001750 SkASSERT(0 == data.size() % 4);
Ethan Nicholasa6ae1f72017-03-16 09:56:54 -04001751 auto dumpmsg = [](spv_message_level_t, const char*, const spv_position_t&, const char* m) {
1752 SkDebugf("SPIR-V validation error: %s\n", m);
1753 };
1754 tools.SetMessageConsumer(dumpmsg);
Ethan Nicholasd9d33c32018-06-12 11:05:59 -04001755 // Verify that the SPIR-V we produced is valid. If this SkASSERT fails, check the logs prior
Ethan Nicholasa6ae1f72017-03-16 09:56:54 -04001756 // to the failure to see the validation errors.
Ethan Nicholasd9d33c32018-06-12 11:05:59 -04001757 SkAssertResult(tools.Validate((const uint32_t*) data.c_str(), data.size() / 4));
Ethan Nicholas762466e2017-06-29 10:03:38 -04001758 out.write(data.c_str(), data.size());
Ethan Nicholasa6ae1f72017-03-16 09:56:54 -04001759 }
1760#else
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001761 fSource = program.fSource.get();
Ethan Nicholas26a9aad2018-03-27 14:10:52 -04001762 SPIRVCodeGenerator cg(fContext.get(), &program, this, &out);
Ethan Nicholas941e7e22016-12-12 15:33:30 -05001763 bool result = cg.generateCode();
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001764 fSource = nullptr;
Ethan Nicholasa6ae1f72017-03-16 09:56:54 -04001765#endif
Ethan Nicholasce33f102016-12-09 17:22:59 -05001766 return result;
1767}
1768
Ethan Nicholas00543112018-07-31 09:44:36 -04001769bool Compiler::toSPIRV(Program& program, String* out) {
Ethan Nicholas0df1b042017-03-31 13:56:23 -04001770 StringStream buffer;
Ethan Nicholas941e7e22016-12-12 15:33:30 -05001771 bool result = this->toSPIRV(program, buffer);
1772 if (result) {
Ethan Nicholas762466e2017-06-29 10:03:38 -04001773 *out = buffer.str();
Ethan Nicholas941e7e22016-12-12 15:33:30 -05001774 }
1775 return result;
1776}
1777
Ethan Nicholas00543112018-07-31 09:44:36 -04001778bool Compiler::toGLSL(Program& program, OutputStream& out) {
1779 if (!this->optimize(program)) {
1780 return false;
1781 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001782 fSource = program.fSource.get();
Ethan Nicholas26a9aad2018-03-27 14:10:52 -04001783 GLSLCodeGenerator cg(fContext.get(), &program, this, &out);
Ethan Nicholas941e7e22016-12-12 15:33:30 -05001784 bool result = cg.generateCode();
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001785 fSource = nullptr;
Ethan Nicholas941e7e22016-12-12 15:33:30 -05001786 return result;
1787}
1788
Ethan Nicholas00543112018-07-31 09:44:36 -04001789bool Compiler::toGLSL(Program& program, String* out) {
Ethan Nicholas0df1b042017-03-31 13:56:23 -04001790 StringStream buffer;
Ethan Nicholas941e7e22016-12-12 15:33:30 -05001791 bool result = this->toGLSL(program, buffer);
1792 if (result) {
Ethan Nicholas762466e2017-06-29 10:03:38 -04001793 *out = buffer.str();
Ethan Nicholas941e7e22016-12-12 15:33:30 -05001794 }
1795 return result;
1796}
1797
Brian Osmanc0243912020-02-19 15:35:26 -05001798bool Compiler::toHLSL(Program& program, String* out) {
1799 String spirv;
1800 if (!this->toSPIRV(program, &spirv)) {
1801 return false;
1802 }
1803
1804 return SPIRVtoHLSL(spirv, out);
1805}
1806
Ethan Nicholas00543112018-07-31 09:44:36 -04001807bool Compiler::toMetal(Program& program, OutputStream& out) {
1808 if (!this->optimize(program)) {
1809 return false;
1810 }
Ethan Nicholas26a9aad2018-03-27 14:10:52 -04001811 MetalCodeGenerator cg(fContext.get(), &program, this, &out);
Ethan Nicholascc305772017-10-13 16:17:45 -04001812 bool result = cg.generateCode();
Ethan Nicholascc305772017-10-13 16:17:45 -04001813 return result;
1814}
1815
Ethan Nicholas00543112018-07-31 09:44:36 -04001816bool Compiler::toMetal(Program& program, String* out) {
1817 if (!this->optimize(program)) {
1818 return false;
1819 }
Timothy Liangb8eeb802018-07-23 16:46:16 -04001820 StringStream buffer;
1821 bool result = this->toMetal(program, buffer);
1822 if (result) {
1823 *out = buffer.str();
1824 }
1825 return result;
1826}
1827
Ethan Nicholas2a479a52020-08-18 16:29:45 -04001828#if defined(SKSL_STANDALONE) || defined(GR_TEST_UTILS)
Ethan Nicholas00543112018-07-31 09:44:36 -04001829bool Compiler::toCPP(Program& program, String name, OutputStream& out) {
1830 if (!this->optimize(program)) {
1831 return false;
1832 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001833 fSource = program.fSource.get();
Ethan Nicholas26a9aad2018-03-27 14:10:52 -04001834 CPPCodeGenerator cg(fContext.get(), &program, this, name, &out);
Ethan Nicholas762466e2017-06-29 10:03:38 -04001835 bool result = cg.generateCode();
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001836 fSource = nullptr;
Ethan Nicholas762466e2017-06-29 10:03:38 -04001837 return result;
1838}
1839
Ethan Nicholas00543112018-07-31 09:44:36 -04001840bool Compiler::toH(Program& program, String name, OutputStream& out) {
1841 if (!this->optimize(program)) {
1842 return false;
1843 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001844 fSource = program.fSource.get();
Ethan Nicholas26a9aad2018-03-27 14:10:52 -04001845 HCodeGenerator cg(fContext.get(), &program, this, name, &out);
Ethan Nicholas762466e2017-06-29 10:03:38 -04001846 bool result = cg.generateCode();
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001847 fSource = nullptr;
Ethan Nicholas00543112018-07-31 09:44:36 -04001848 return result;
1849}
Ethan Nicholas2a479a52020-08-18 16:29:45 -04001850#endif // defined(SKSL_STANDALONE) || defined(GR_TEST_UTILS)
Ethan Nicholas00543112018-07-31 09:44:36 -04001851
Ethan Nicholas2a479a52020-08-18 16:29:45 -04001852#endif // defined(SKSL_STANDALONE) || SK_SUPPORT_GPU
Brian Osman2e29ab52019-09-20 12:19:11 -04001853
1854#if !defined(SKSL_STANDALONE) && SK_SUPPORT_GPU
Brian Osmana4b91692020-08-10 14:26:16 -04001855bool Compiler::toPipelineStage(Program& program, PipelineStageArgs* outArgs) {
1856 if (!this->optimize(program)) {
1857 return false;
1858 }
Ethan Nicholas00543112018-07-31 09:44:36 -04001859 fSource = program.fSource.get();
1860 StringStream buffer;
Brian Osman300fe1d2020-01-23 15:42:43 -05001861 PipelineStageCodeGenerator cg(fContext.get(), &program, this, &buffer, outArgs);
Ethan Nicholas00543112018-07-31 09:44:36 -04001862 bool result = cg.generateCode();
1863 fSource = nullptr;
1864 if (result) {
Brian Osman107c6662019-12-30 15:02:30 -05001865 outArgs->fCode = buffer.str();
Ethan Nicholas00543112018-07-31 09:44:36 -04001866 }
Ethan Nicholas762466e2017-06-29 10:03:38 -04001867 return result;
1868}
Brian Osmanfb32ddf2019-06-18 10:14:20 -04001869#endif
1870
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001871std::unique_ptr<ByteCode> Compiler::toByteCode(Program& program) {
Mike Klein853d4ed2020-08-20 00:41:00 +00001872#if defined(SK_ENABLE_SKSL_INTERPRETER)
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001873 if (!this->optimize(program)) {
1874 return nullptr;
1875 }
Brian Osman808f0212020-01-21 15:36:47 -05001876 fSource = program.fSource.get();
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001877 std::unique_ptr<ByteCode> result(new ByteCode());
Brian Osmanb08cc022020-04-02 11:38:40 -04001878 ByteCodeGenerator cg(fContext.get(), &program, this, result.get());
1879 bool success = cg.generateCode();
1880 fSource = nullptr;
1881 if (success) {
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001882 return result;
1883 }
Mike Klein853d4ed2020-08-20 00:41:00 +00001884#else
1885 ABORT("ByteCode interpreter not enabled");
1886#endif
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001887 return nullptr;
1888}
1889
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001890const char* Compiler::OperatorName(Token::Kind kind) {
1891 switch (kind) {
Ethan Nicholas5a9e7fb2020-04-17 12:45:51 -04001892 case Token::Kind::TK_PLUS: return "+";
1893 case Token::Kind::TK_MINUS: return "-";
1894 case Token::Kind::TK_STAR: return "*";
1895 case Token::Kind::TK_SLASH: return "/";
1896 case Token::Kind::TK_PERCENT: return "%";
1897 case Token::Kind::TK_SHL: return "<<";
1898 case Token::Kind::TK_SHR: return ">>";
1899 case Token::Kind::TK_LOGICALNOT: return "!";
1900 case Token::Kind::TK_LOGICALAND: return "&&";
1901 case Token::Kind::TK_LOGICALOR: return "||";
1902 case Token::Kind::TK_LOGICALXOR: return "^^";
1903 case Token::Kind::TK_BITWISENOT: return "~";
1904 case Token::Kind::TK_BITWISEAND: return "&";
1905 case Token::Kind::TK_BITWISEOR: return "|";
1906 case Token::Kind::TK_BITWISEXOR: return "^";
1907 case Token::Kind::TK_EQ: return "=";
1908 case Token::Kind::TK_EQEQ: return "==";
1909 case Token::Kind::TK_NEQ: return "!=";
1910 case Token::Kind::TK_LT: return "<";
1911 case Token::Kind::TK_GT: return ">";
1912 case Token::Kind::TK_LTEQ: return "<=";
1913 case Token::Kind::TK_GTEQ: return ">=";
1914 case Token::Kind::TK_PLUSEQ: return "+=";
1915 case Token::Kind::TK_MINUSEQ: return "-=";
1916 case Token::Kind::TK_STAREQ: return "*=";
1917 case Token::Kind::TK_SLASHEQ: return "/=";
1918 case Token::Kind::TK_PERCENTEQ: return "%=";
1919 case Token::Kind::TK_SHLEQ: return "<<=";
1920 case Token::Kind::TK_SHREQ: return ">>=";
1921 case Token::Kind::TK_LOGICALANDEQ: return "&&=";
1922 case Token::Kind::TK_LOGICALOREQ: return "||=";
1923 case Token::Kind::TK_LOGICALXOREQ: return "^^=";
1924 case Token::Kind::TK_BITWISEANDEQ: return "&=";
1925 case Token::Kind::TK_BITWISEOREQ: return "|=";
1926 case Token::Kind::TK_BITWISEXOREQ: return "^=";
1927 case Token::Kind::TK_PLUSPLUS: return "++";
1928 case Token::Kind::TK_MINUSMINUS: return "--";
1929 case Token::Kind::TK_COMMA: return ",";
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001930 default:
Ethan Nicholas5a9e7fb2020-04-17 12:45:51 -04001931 ABORT("unsupported operator: %d\n", (int) kind);
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001932 }
1933}
1934
1935
1936bool Compiler::IsAssignment(Token::Kind op) {
1937 switch (op) {
Ethan Nicholas5a9e7fb2020-04-17 12:45:51 -04001938 case Token::Kind::TK_EQ: // fall through
1939 case Token::Kind::TK_PLUSEQ: // fall through
1940 case Token::Kind::TK_MINUSEQ: // fall through
1941 case Token::Kind::TK_STAREQ: // fall through
1942 case Token::Kind::TK_SLASHEQ: // fall through
1943 case Token::Kind::TK_PERCENTEQ: // fall through
1944 case Token::Kind::TK_SHLEQ: // fall through
1945 case Token::Kind::TK_SHREQ: // fall through
1946 case Token::Kind::TK_BITWISEOREQ: // fall through
1947 case Token::Kind::TK_BITWISEXOREQ: // fall through
1948 case Token::Kind::TK_BITWISEANDEQ: // fall through
1949 case Token::Kind::TK_LOGICALOREQ: // fall through
1950 case Token::Kind::TK_LOGICALXOREQ: // fall through
1951 case Token::Kind::TK_LOGICALANDEQ:
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001952 return true;
1953 default:
1954 return false;
1955 }
1956}
1957
1958Position Compiler::position(int offset) {
Ethan Nicholasd9d33c32018-06-12 11:05:59 -04001959 SkASSERT(fSource);
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001960 int line = 1;
1961 int column = 1;
1962 for (int i = 0; i < offset; i++) {
1963 if ((*fSource)[i] == '\n') {
1964 ++line;
1965 column = 1;
1966 }
1967 else {
1968 ++column;
1969 }
1970 }
1971 return Position(line, column);
1972}
1973
1974void Compiler::error(int offset, String msg) {
ethannicholasb3058bd2016-07-01 08:22:01 -07001975 fErrorCount++;
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001976 Position pos = this->position(offset);
1977 fErrorText += "error: " + to_string(pos.fLine) + ": " + msg.c_str() + "\n";
ethannicholasb3058bd2016-07-01 08:22:01 -07001978}
1979
Ethan Nicholas0df1b042017-03-31 13:56:23 -04001980String Compiler::errorText() {
Ethan Nicholas00543112018-07-31 09:44:36 -04001981 this->writeErrorCount();
1982 fErrorCount = 0;
Ethan Nicholas0df1b042017-03-31 13:56:23 -04001983 String result = fErrorText;
ethannicholasb3058bd2016-07-01 08:22:01 -07001984 return result;
1985}
1986
1987void Compiler::writeErrorCount() {
1988 if (fErrorCount) {
1989 fErrorText += to_string(fErrorCount) + " error";
1990 if (fErrorCount > 1) {
1991 fErrorText += "s";
1992 }
1993 fErrorText += "\n";
1994 }
1995}
1996
John Stilesa6841be2020-08-06 14:11:56 -04001997} // namespace SkSL