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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 */
Ethan Nicholas11d53972016-11-28 11:23:23 -05007
ethannicholasb3058bd2016-07-01 08:22:01 -07008#include "SkSLIRGenerator.h"
9
10#include "limits.h"
Ethan Nicholasaf197692017-02-27 13:26:45 -050011#include <unordered_set>
ethannicholasb3058bd2016-07-01 08:22:01 -070012
Ethan Nicholas941e7e22016-12-12 15:33:30 -050013#include "SkSLCompiler.h"
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -040014#include "SkSLParser.h"
ethannicholasb3058bd2016-07-01 08:22:01 -070015#include "ast/SkSLASTBoolLiteral.h"
16#include "ast/SkSLASTFieldSuffix.h"
17#include "ast/SkSLASTFloatLiteral.h"
18#include "ast/SkSLASTIndexSuffix.h"
19#include "ast/SkSLASTIntLiteral.h"
20#include "ir/SkSLBinaryExpression.h"
21#include "ir/SkSLBoolLiteral.h"
22#include "ir/SkSLBreakStatement.h"
23#include "ir/SkSLConstructor.h"
24#include "ir/SkSLContinueStatement.h"
25#include "ir/SkSLDiscardStatement.h"
26#include "ir/SkSLDoStatement.h"
Ethan Nicholasaae47c82017-11-10 15:34:03 -050027#include "ir/SkSLEnum.h"
ethannicholasb3058bd2016-07-01 08:22:01 -070028#include "ir/SkSLExpressionStatement.h"
29#include "ir/SkSLField.h"
30#include "ir/SkSLFieldAccess.h"
31#include "ir/SkSLFloatLiteral.h"
32#include "ir/SkSLForStatement.h"
33#include "ir/SkSLFunctionCall.h"
34#include "ir/SkSLFunctionDeclaration.h"
35#include "ir/SkSLFunctionDefinition.h"
36#include "ir/SkSLFunctionReference.h"
37#include "ir/SkSLIfStatement.h"
38#include "ir/SkSLIndexExpression.h"
39#include "ir/SkSLInterfaceBlock.h"
40#include "ir/SkSLIntLiteral.h"
41#include "ir/SkSLLayout.h"
42#include "ir/SkSLPostfixExpression.h"
43#include "ir/SkSLPrefixExpression.h"
44#include "ir/SkSLReturnStatement.h"
Ethan Nicholas762466e2017-06-29 10:03:38 -040045#include "ir/SkSLSetting.h"
Ethan Nicholasaf197692017-02-27 13:26:45 -050046#include "ir/SkSLSwitchCase.h"
47#include "ir/SkSLSwitchStatement.h"
ethannicholasb3058bd2016-07-01 08:22:01 -070048#include "ir/SkSLSwizzle.h"
49#include "ir/SkSLTernaryExpression.h"
50#include "ir/SkSLUnresolvedFunction.h"
51#include "ir/SkSLVariable.h"
ethannicholas22f939e2016-10-13 13:25:34 -070052#include "ir/SkSLVarDeclarations.h"
53#include "ir/SkSLVarDeclarationsStatement.h"
ethannicholasb3058bd2016-07-01 08:22:01 -070054#include "ir/SkSLVariableReference.h"
55#include "ir/SkSLWhileStatement.h"
56
57namespace SkSL {
58
59class AutoSymbolTable {
60public:
Ethan Nicholas11d53972016-11-28 11:23:23 -050061 AutoSymbolTable(IRGenerator* ir)
ethannicholasb3058bd2016-07-01 08:22:01 -070062 : fIR(ir)
63 , fPrevious(fIR->fSymbolTable) {
64 fIR->pushSymbolTable();
65 }
66
67 ~AutoSymbolTable() {
68 fIR->popSymbolTable();
69 ASSERT(fPrevious == fIR->fSymbolTable);
70 }
71
72 IRGenerator* fIR;
73 std::shared_ptr<SymbolTable> fPrevious;
74};
75
ethannicholas22f939e2016-10-13 13:25:34 -070076class AutoLoopLevel {
77public:
Ethan Nicholas11d53972016-11-28 11:23:23 -050078 AutoLoopLevel(IRGenerator* ir)
ethannicholas22f939e2016-10-13 13:25:34 -070079 : fIR(ir) {
80 fIR->fLoopLevel++;
81 }
82
83 ~AutoLoopLevel() {
84 fIR->fLoopLevel--;
85 }
86
87 IRGenerator* fIR;
88};
89
Ethan Nicholasaf197692017-02-27 13:26:45 -050090class AutoSwitchLevel {
91public:
92 AutoSwitchLevel(IRGenerator* ir)
93 : fIR(ir) {
94 fIR->fSwitchLevel++;
95 }
96
97 ~AutoSwitchLevel() {
98 fIR->fSwitchLevel--;
99 }
100
101 IRGenerator* fIR;
102};
103
Ethan Nicholas11d53972016-11-28 11:23:23 -0500104IRGenerator::IRGenerator(const Context* context, std::shared_ptr<SymbolTable> symbolTable,
ethannicholasb3058bd2016-07-01 08:22:01 -0700105 ErrorReporter& errorReporter)
ethannicholasd598f792016-07-25 10:08:54 -0700106: fContext(*context)
107, fCurrentFunction(nullptr)
Ethan Nicholas762466e2017-06-29 10:03:38 -0400108, fRootSymbolTable(symbolTable)
109, fSymbolTable(symbolTable)
ethannicholas22f939e2016-10-13 13:25:34 -0700110, fLoopLevel(0)
Ethan Nicholasaf197692017-02-27 13:26:45 -0500111, fSwitchLevel(0)
Ethan Nicholas762466e2017-06-29 10:03:38 -0400112, fTmpCount(0)
ethannicholasd598f792016-07-25 10:08:54 -0700113, fErrors(errorReporter) {}
ethannicholasb3058bd2016-07-01 08:22:01 -0700114
115void IRGenerator::pushSymbolTable() {
Ethan Nicholas8feeff92017-03-30 14:11:58 -0400116 fSymbolTable.reset(new SymbolTable(std::move(fSymbolTable), &fErrors));
ethannicholasb3058bd2016-07-01 08:22:01 -0700117}
118
119void IRGenerator::popSymbolTable() {
120 fSymbolTable = fSymbolTable->fParent;
121}
122
Ethan Nicholas762466e2017-06-29 10:03:38 -0400123static void fill_caps(const SKSL_CAPS_CLASS& caps,
124 std::unordered_map<String, Program::Settings::Value>* capsMap) {
125#define CAP(name) capsMap->insert(std::make_pair(String(#name), \
126 Program::Settings::Value(caps.name())));
Ethan Nicholas941e7e22016-12-12 15:33:30 -0500127 CAP(fbFetchSupport);
128 CAP(fbFetchNeedsCustomOutput);
Ethan Nicholas941e7e22016-12-12 15:33:30 -0500129 CAP(dropsTileOnZeroDivide);
130 CAP(flatInterpolationSupport);
131 CAP(noperspectiveInterpolationSupport);
Robert Phillips7f861922018-01-30 13:13:42 +0000132 CAP(multisampleInterpolationSupport);
133 CAP(sampleVariablesSupport);
134 CAP(sampleMaskOverrideCoverageSupport);
Ethan Nicholas941e7e22016-12-12 15:33:30 -0500135 CAP(externalTextureSupport);
136 CAP(texelFetchSupport);
137 CAP(imageLoadStoreSupport);
138 CAP(mustEnableAdvBlendEqs);
139 CAP(mustEnableSpecificAdvBlendEqs);
140 CAP(mustDeclareFragmentShaderOutput);
141 CAP(canUseAnyFunctionInShader);
Chris Dalton47c8ed32017-11-15 18:27:09 -0700142 CAP(floatIs32Bits);
Ethan Nicholas07990de2017-07-18 09:47:43 -0400143 CAP(integerSupport);
Ethan Nicholas941e7e22016-12-12 15:33:30 -0500144#undef CAP
145}
146
147void IRGenerator::start(const Program::Settings* settings) {
148 fSettings = settings;
149 fCapsMap.clear();
150 if (settings->fCaps) {
151 fill_caps(*settings->fCaps, &fCapsMap);
152 }
Ethan Nicholas3605ace2016-11-21 15:59:48 -0500153 this->pushSymbolTable();
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -0400154 fInvocations = -1;
Ethan Nicholas941e7e22016-12-12 15:33:30 -0500155 fInputs.reset();
Robert Phillipsfe8da172018-01-24 14:52:02 +0000156 fSkPerVertex = nullptr;
157 fRTAdjust = nullptr;
158 fRTAdjustInterfaceBlock = nullptr;
Ethan Nicholas3605ace2016-11-21 15:59:48 -0500159}
160
161void IRGenerator::finish() {
162 this->popSymbolTable();
Ethan Nicholas941e7e22016-12-12 15:33:30 -0500163 fSettings = nullptr;
Ethan Nicholas3605ace2016-11-21 15:59:48 -0500164}
165
ethannicholasb3058bd2016-07-01 08:22:01 -0700166std::unique_ptr<Extension> IRGenerator::convertExtension(const ASTExtension& extension) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700167 return std::unique_ptr<Extension>(new Extension(extension.fOffset, extension.fName));
ethannicholasb3058bd2016-07-01 08:22:01 -0700168}
169
170std::unique_ptr<Statement> IRGenerator::convertStatement(const ASTStatement& statement) {
171 switch (statement.fKind) {
172 case ASTStatement::kBlock_Kind:
173 return this->convertBlock((ASTBlock&) statement);
174 case ASTStatement::kVarDeclaration_Kind:
175 return this->convertVarDeclarationStatement((ASTVarDeclarationStatement&) statement);
Robert Phillipsfe8da172018-01-24 14:52:02 +0000176 case ASTStatement::kExpression_Kind: {
177 std::unique_ptr<Statement> result =
178 this->convertExpressionStatement((ASTExpressionStatement&) statement);
179 if (fRTAdjust && Program::kGeometry_Kind == fKind) {
180 ASSERT(result->fKind == Statement::kExpression_Kind);
181 Expression& expr = *((ExpressionStatement&) *result).fExpression;
182 if (expr.fKind == Expression::kFunctionCall_Kind) {
183 FunctionCall& fc = (FunctionCall&) expr;
184 if (fc.fFunction.fBuiltin && fc.fFunction.fName == "EmitVertex") {
185 std::vector<std::unique_ptr<Statement>> statements;
186 statements.push_back(getNormalizeSkPositionCode());
187 statements.push_back(std::move(result));
188 return std::unique_ptr<Block>(new Block(statement.fOffset,
189 std::move(statements),
190 fSymbolTable));
191 }
192 }
193 }
194 return result;
195 }
ethannicholasb3058bd2016-07-01 08:22:01 -0700196 case ASTStatement::kIf_Kind:
197 return this->convertIf((ASTIfStatement&) statement);
198 case ASTStatement::kFor_Kind:
199 return this->convertFor((ASTForStatement&) statement);
200 case ASTStatement::kWhile_Kind:
201 return this->convertWhile((ASTWhileStatement&) statement);
202 case ASTStatement::kDo_Kind:
203 return this->convertDo((ASTDoStatement&) statement);
Ethan Nicholasaf197692017-02-27 13:26:45 -0500204 case ASTStatement::kSwitch_Kind:
205 return this->convertSwitch((ASTSwitchStatement&) statement);
ethannicholasb3058bd2016-07-01 08:22:01 -0700206 case ASTStatement::kReturn_Kind:
207 return this->convertReturn((ASTReturnStatement&) statement);
208 case ASTStatement::kBreak_Kind:
209 return this->convertBreak((ASTBreakStatement&) statement);
210 case ASTStatement::kContinue_Kind:
211 return this->convertContinue((ASTContinueStatement&) statement);
212 case ASTStatement::kDiscard_Kind:
213 return this->convertDiscard((ASTDiscardStatement&) statement);
214 default:
215 ABORT("unsupported statement type: %d\n", statement.fKind);
216 }
217}
218
219std::unique_ptr<Block> IRGenerator::convertBlock(const ASTBlock& block) {
220 AutoSymbolTable table(this);
221 std::vector<std::unique_ptr<Statement>> statements;
222 for (size_t i = 0; i < block.fStatements.size(); i++) {
223 std::unique_ptr<Statement> statement = this->convertStatement(*block.fStatements[i]);
224 if (!statement) {
225 return nullptr;
226 }
227 statements.push_back(std::move(statement));
228 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700229 return std::unique_ptr<Block>(new Block(block.fOffset, std::move(statements), fSymbolTable));
ethannicholasb3058bd2016-07-01 08:22:01 -0700230}
231
232std::unique_ptr<Statement> IRGenerator::convertVarDeclarationStatement(
233 const ASTVarDeclarationStatement& s) {
ethannicholas14fe8cc2016-09-07 13:37:16 -0700234 auto decl = this->convertVarDeclarations(*s.fDeclarations, Variable::kLocal_Storage);
ethannicholasb3058bd2016-07-01 08:22:01 -0700235 if (!decl) {
236 return nullptr;
237 }
ethannicholas14fe8cc2016-09-07 13:37:16 -0700238 return std::unique_ptr<Statement>(new VarDeclarationsStatement(std::move(decl)));
ethannicholasb3058bd2016-07-01 08:22:01 -0700239}
240
ethannicholas14fe8cc2016-09-07 13:37:16 -0700241std::unique_ptr<VarDeclarations> IRGenerator::convertVarDeclarations(const ASTVarDeclarations& decl,
242 Variable::Storage storage) {
Ethan Nicholas82a62d22017-11-07 14:42:10 +0000243 std::vector<std::unique_ptr<VarDeclaration>> variables;
ethannicholasd598f792016-07-25 10:08:54 -0700244 const Type* baseType = this->convertType(*decl.fType);
ethannicholasb3058bd2016-07-01 08:22:01 -0700245 if (!baseType) {
246 return nullptr;
247 }
ethannicholas14fe8cc2016-09-07 13:37:16 -0700248 for (const auto& varDecl : decl.fVars) {
ethannicholasd598f792016-07-25 10:08:54 -0700249 const Type* type = baseType;
ethannicholas14fe8cc2016-09-07 13:37:16 -0700250 std::vector<std::unique_ptr<Expression>> sizes;
251 for (const auto& rawSize : varDecl.fSizes) {
252 if (rawSize) {
253 auto size = this->coerce(this->convertExpression(*rawSize), *fContext.fInt_Type);
ethannicholasb3058bd2016-07-01 08:22:01 -0700254 if (!size) {
255 return nullptr;
256 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700257 String name(type->fName);
Ethan Nicholas50afc172017-02-16 14:49:57 -0500258 int64_t count;
ethannicholasb3058bd2016-07-01 08:22:01 -0700259 if (size->fKind == Expression::kIntLiteral_Kind) {
260 count = ((IntLiteral&) *size).fValue;
261 if (count <= 0) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700262 fErrors.error(size->fOffset, "array size must be positive");
ethannicholasb3058bd2016-07-01 08:22:01 -0700263 }
264 name += "[" + to_string(count) + "]";
265 } else {
266 count = -1;
267 name += "[]";
268 }
ethannicholasd598f792016-07-25 10:08:54 -0700269 type = new Type(name, Type::kArray_Kind, *type, (int) count);
270 fSymbolTable->takeOwnership((Type*) type);
ethannicholas14fe8cc2016-09-07 13:37:16 -0700271 sizes.push_back(std::move(size));
ethannicholasb3058bd2016-07-01 08:22:01 -0700272 } else {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700273 type = new Type(type->name() + "[]", Type::kArray_Kind, *type, -1);
ethannicholasd598f792016-07-25 10:08:54 -0700274 fSymbolTable->takeOwnership((Type*) type);
ethannicholas14fe8cc2016-09-07 13:37:16 -0700275 sizes.push_back(nullptr);
ethannicholasb3058bd2016-07-01 08:22:01 -0700276 }
277 }
Ethan Nicholas82a62d22017-11-07 14:42:10 +0000278 auto var = std::unique_ptr<Variable>(new Variable(decl.fOffset, decl.fModifiers,
279 varDecl.fName, *type, storage));
Robert Phillipsfe8da172018-01-24 14:52:02 +0000280 if (var->fName == Compiler::RTADJUST_NAME) {
281 ASSERT(!fRTAdjust);
282 ASSERT(var->fType == *fContext.fFloat4_Type);
283 fRTAdjust = var.get();
284 }
ethannicholasb3058bd2016-07-01 08:22:01 -0700285 std::unique_ptr<Expression> value;
ethannicholas14fe8cc2016-09-07 13:37:16 -0700286 if (varDecl.fValue) {
287 value = this->convertExpression(*varDecl.fValue);
ethannicholasb3058bd2016-07-01 08:22:01 -0700288 if (!value) {
289 return nullptr;
290 }
ethannicholasd598f792016-07-25 10:08:54 -0700291 value = this->coerce(std::move(value), *type);
Ethan Nicholascb670962017-04-20 19:31:52 -0400292 var->fWriteCount = 1;
Ethan Nicholas8f6c2ab2018-01-17 13:51:52 -0500293 var->fInitialValue = value.get();
ethannicholasb3058bd2016-07-01 08:22:01 -0700294 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700295 if (storage == Variable::kGlobal_Storage && varDecl.fName == "sk_FragColor" &&
ethannicholasea4567c2016-10-17 11:24:37 -0700296 (*fSymbolTable)[varDecl.fName]) {
ethannicholas5961bc92016-10-12 06:39:56 -0700297 // already defined, ignore
ethannicholasea4567c2016-10-17 11:24:37 -0700298 } else if (storage == Variable::kGlobal_Storage && (*fSymbolTable)[varDecl.fName] &&
299 (*fSymbolTable)[varDecl.fName]->fKind == Symbol::kVariable_Kind &&
ethannicholas5961bc92016-10-12 06:39:56 -0700300 ((Variable*) (*fSymbolTable)[varDecl.fName])->fModifiers.fLayout.fBuiltin >= 0) {
ethannicholasf789b382016-08-03 12:43:36 -0700301 // already defined, just update the modifiers
ethannicholas14fe8cc2016-09-07 13:37:16 -0700302 Variable* old = (Variable*) (*fSymbolTable)[varDecl.fName];
ethannicholasf789b382016-08-03 12:43:36 -0700303 old->fModifiers = var->fModifiers;
304 } else {
Ethan Nicholas82a62d22017-11-07 14:42:10 +0000305 variables.emplace_back(new VarDeclaration(var.get(), std::move(sizes),
306 std::move(value)));
ethannicholas14fe8cc2016-09-07 13:37:16 -0700307 fSymbolTable->add(varDecl.fName, std::move(var));
ethannicholasf789b382016-08-03 12:43:36 -0700308 }
ethannicholasb3058bd2016-07-01 08:22:01 -0700309 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700310 return std::unique_ptr<VarDeclarations>(new VarDeclarations(decl.fOffset,
ethannicholas14fe8cc2016-09-07 13:37:16 -0700311 baseType,
312 std::move(variables)));
ethannicholasb3058bd2016-07-01 08:22:01 -0700313}
314
ethannicholas5961bc92016-10-12 06:39:56 -0700315std::unique_ptr<ModifiersDeclaration> IRGenerator::convertModifiersDeclaration(
316 const ASTModifiersDeclaration& m) {
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -0400317 Modifiers modifiers = m.fModifiers;
318 if (modifiers.fLayout.fInvocations != -1) {
319 fInvocations = modifiers.fLayout.fInvocations;
Chris Daltonf1b47bb2017-10-06 11:57:51 -0600320 if (fSettings->fCaps && !fSettings->fCaps->gsInvocationsSupport()) {
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -0400321 modifiers.fLayout.fInvocations = -1;
322 Variable* invocationId = (Variable*) (*fSymbolTable)["sk_InvocationID"];
323 ASSERT(invocationId);
324 invocationId->fModifiers.fLayout.fBuiltin = -1;
325 if (modifiers.fLayout.description() == "") {
326 return nullptr;
327 }
328 }
329 }
330 if (modifiers.fLayout.fMaxVertices != -1 && fInvocations > 0 && fSettings->fCaps &&
Chris Daltonf1b47bb2017-10-06 11:57:51 -0600331 !fSettings->fCaps->gsInvocationsSupport()) {
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -0400332 modifiers.fLayout.fMaxVertices *= fInvocations;
333 }
334 return std::unique_ptr<ModifiersDeclaration>(new ModifiersDeclaration(modifiers));
ethannicholas5961bc92016-10-12 06:39:56 -0700335}
336
ethannicholasb3058bd2016-07-01 08:22:01 -0700337std::unique_ptr<Statement> IRGenerator::convertIf(const ASTIfStatement& s) {
Ethan Nicholas11d53972016-11-28 11:23:23 -0500338 std::unique_ptr<Expression> test = this->coerce(this->convertExpression(*s.fTest),
ethannicholasd598f792016-07-25 10:08:54 -0700339 *fContext.fBool_Type);
ethannicholasb3058bd2016-07-01 08:22:01 -0700340 if (!test) {
341 return nullptr;
342 }
343 std::unique_ptr<Statement> ifTrue = this->convertStatement(*s.fIfTrue);
344 if (!ifTrue) {
345 return nullptr;
346 }
347 std::unique_ptr<Statement> ifFalse;
348 if (s.fIfFalse) {
349 ifFalse = this->convertStatement(*s.fIfFalse);
350 if (!ifFalse) {
351 return nullptr;
352 }
353 }
ethannicholas08a92112016-11-09 13:26:45 -0800354 if (test->fKind == Expression::kBoolLiteral_Kind) {
355 // static boolean value, fold down to a single branch
356 if (((BoolLiteral&) *test).fValue) {
357 return ifTrue;
358 } else if (s.fIfFalse) {
359 return ifFalse;
360 } else {
361 // False & no else clause. Not an error, so don't return null!
362 std::vector<std::unique_ptr<Statement>> empty;
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700363 return std::unique_ptr<Statement>(new Block(s.fOffset, std::move(empty),
ethannicholas08a92112016-11-09 13:26:45 -0800364 fSymbolTable));
365 }
366 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700367 return std::unique_ptr<Statement>(new IfStatement(s.fOffset, s.fIsStatic, std::move(test),
ethannicholasb3058bd2016-07-01 08:22:01 -0700368 std::move(ifTrue), std::move(ifFalse)));
369}
370
371std::unique_ptr<Statement> IRGenerator::convertFor(const ASTForStatement& f) {
ethannicholas22f939e2016-10-13 13:25:34 -0700372 AutoLoopLevel level(this);
ethannicholasb3058bd2016-07-01 08:22:01 -0700373 AutoSymbolTable table(this);
ethannicholas22f939e2016-10-13 13:25:34 -0700374 std::unique_ptr<Statement> initializer;
375 if (f.fInitializer) {
376 initializer = this->convertStatement(*f.fInitializer);
377 if (!initializer) {
378 return nullptr;
379 }
ethannicholasb3058bd2016-07-01 08:22:01 -0700380 }
ethannicholas22f939e2016-10-13 13:25:34 -0700381 std::unique_ptr<Expression> test;
382 if (f.fTest) {
383 test = this->coerce(this->convertExpression(*f.fTest), *fContext.fBool_Type);
384 if (!test) {
385 return nullptr;
386 }
ethannicholasb3058bd2016-07-01 08:22:01 -0700387 }
ethannicholas22f939e2016-10-13 13:25:34 -0700388 std::unique_ptr<Expression> next;
389 if (f.fNext) {
390 next = this->convertExpression(*f.fNext);
391 if (!next) {
392 return nullptr;
393 }
394 this->checkValid(*next);
ethannicholasb3058bd2016-07-01 08:22:01 -0700395 }
ethannicholasb3058bd2016-07-01 08:22:01 -0700396 std::unique_ptr<Statement> statement = this->convertStatement(*f.fStatement);
397 if (!statement) {
398 return nullptr;
399 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700400 return std::unique_ptr<Statement>(new ForStatement(f.fOffset, std::move(initializer),
ethannicholasb3058bd2016-07-01 08:22:01 -0700401 std::move(test), std::move(next),
ethannicholasd598f792016-07-25 10:08:54 -0700402 std::move(statement), fSymbolTable));
ethannicholasb3058bd2016-07-01 08:22:01 -0700403}
404
405std::unique_ptr<Statement> IRGenerator::convertWhile(const ASTWhileStatement& w) {
ethannicholas22f939e2016-10-13 13:25:34 -0700406 AutoLoopLevel level(this);
Ethan Nicholas11d53972016-11-28 11:23:23 -0500407 std::unique_ptr<Expression> test = this->coerce(this->convertExpression(*w.fTest),
ethannicholasd598f792016-07-25 10:08:54 -0700408 *fContext.fBool_Type);
ethannicholasb3058bd2016-07-01 08:22:01 -0700409 if (!test) {
410 return nullptr;
411 }
412 std::unique_ptr<Statement> statement = this->convertStatement(*w.fStatement);
413 if (!statement) {
414 return nullptr;
415 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700416 return std::unique_ptr<Statement>(new WhileStatement(w.fOffset, std::move(test),
ethannicholasb3058bd2016-07-01 08:22:01 -0700417 std::move(statement)));
418}
419
420std::unique_ptr<Statement> IRGenerator::convertDo(const ASTDoStatement& d) {
ethannicholas22f939e2016-10-13 13:25:34 -0700421 AutoLoopLevel level(this);
ethannicholasd598f792016-07-25 10:08:54 -0700422 std::unique_ptr<Expression> test = this->coerce(this->convertExpression(*d.fTest),
423 *fContext.fBool_Type);
ethannicholasb3058bd2016-07-01 08:22:01 -0700424 if (!test) {
425 return nullptr;
426 }
427 std::unique_ptr<Statement> statement = this->convertStatement(*d.fStatement);
428 if (!statement) {
429 return nullptr;
430 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700431 return std::unique_ptr<Statement>(new DoStatement(d.fOffset, std::move(statement),
ethannicholasb3058bd2016-07-01 08:22:01 -0700432 std::move(test)));
433}
434
Ethan Nicholasaf197692017-02-27 13:26:45 -0500435std::unique_ptr<Statement> IRGenerator::convertSwitch(const ASTSwitchStatement& s) {
436 AutoSwitchLevel level(this);
437 std::unique_ptr<Expression> value = this->convertExpression(*s.fValue);
438 if (!value) {
439 return nullptr;
440 }
Ethan Nicholasaae47c82017-11-10 15:34:03 -0500441 if (value->fType != *fContext.fUInt_Type && value->fType.kind() != Type::kEnum_Kind) {
Ethan Nicholasaf197692017-02-27 13:26:45 -0500442 value = this->coerce(std::move(value), *fContext.fInt_Type);
443 if (!value) {
444 return nullptr;
445 }
446 }
447 AutoSymbolTable table(this);
448 std::unordered_set<int> caseValues;
449 std::vector<std::unique_ptr<SwitchCase>> cases;
450 for (const auto& c : s.fCases) {
451 std::unique_ptr<Expression> caseValue;
452 if (c->fValue) {
453 caseValue = this->convertExpression(*c->fValue);
454 if (!caseValue) {
455 return nullptr;
456 }
Ethan Nicholasaae47c82017-11-10 15:34:03 -0500457 caseValue = this->coerce(std::move(caseValue), value->fType);
458 if (!caseValue) {
459 return nullptr;
Ethan Nicholasaf197692017-02-27 13:26:45 -0500460 }
461 if (!caseValue->isConstant()) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700462 fErrors.error(caseValue->fOffset, "case value must be a constant");
Ethan Nicholasaf197692017-02-27 13:26:45 -0500463 return nullptr;
464 }
Ethan Nicholasaae47c82017-11-10 15:34:03 -0500465 int64_t v;
466 this->getConstantInt(*caseValue, &v);
Ethan Nicholasaf197692017-02-27 13:26:45 -0500467 if (caseValues.find(v) != caseValues.end()) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700468 fErrors.error(caseValue->fOffset, "duplicate case value");
Ethan Nicholasaf197692017-02-27 13:26:45 -0500469 }
470 caseValues.insert(v);
471 }
472 std::vector<std::unique_ptr<Statement>> statements;
473 for (const auto& s : c->fStatements) {
474 std::unique_ptr<Statement> converted = this->convertStatement(*s);
475 if (!converted) {
476 return nullptr;
477 }
478 statements.push_back(std::move(converted));
479 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700480 cases.emplace_back(new SwitchCase(c->fOffset, std::move(caseValue),
Ethan Nicholasaf197692017-02-27 13:26:45 -0500481 std::move(statements)));
482 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700483 return std::unique_ptr<Statement>(new SwitchStatement(s.fOffset, s.fIsStatic,
Ethan Nicholasc432b0c2017-07-18 13:22:37 -0400484 std::move(value), std::move(cases),
485 fSymbolTable));
Ethan Nicholasaf197692017-02-27 13:26:45 -0500486}
487
ethannicholasb3058bd2016-07-01 08:22:01 -0700488std::unique_ptr<Statement> IRGenerator::convertExpressionStatement(
489 const ASTExpressionStatement& s) {
490 std::unique_ptr<Expression> e = this->convertExpression(*s.fExpression);
491 if (!e) {
492 return nullptr;
493 }
494 this->checkValid(*e);
495 return std::unique_ptr<Statement>(new ExpressionStatement(std::move(e)));
496}
497
498std::unique_ptr<Statement> IRGenerator::convertReturn(const ASTReturnStatement& r) {
499 ASSERT(fCurrentFunction);
Robert Phillipsfe8da172018-01-24 14:52:02 +0000500 // early returns from a vertex main function will bypass the sk_Position normalization, so
501 // assert that we aren't doing that. It is of course possible to fix this by adding a
502 // normalization before each return, but it will probably never actually be necessary.
503 ASSERT(Program::kVertex_Kind != fKind || !fRTAdjust || "main" != fCurrentFunction->fName);
ethannicholasb3058bd2016-07-01 08:22:01 -0700504 if (r.fExpression) {
505 std::unique_ptr<Expression> result = this->convertExpression(*r.fExpression);
506 if (!result) {
507 return nullptr;
508 }
ethannicholasd598f792016-07-25 10:08:54 -0700509 if (fCurrentFunction->fReturnType == *fContext.fVoid_Type) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700510 fErrors.error(result->fOffset, "may not return a value from a void function");
ethannicholasb3058bd2016-07-01 08:22:01 -0700511 } else {
512 result = this->coerce(std::move(result), fCurrentFunction->fReturnType);
513 if (!result) {
514 return nullptr;
515 }
516 }
517 return std::unique_ptr<Statement>(new ReturnStatement(std::move(result)));
518 } else {
ethannicholasd598f792016-07-25 10:08:54 -0700519 if (fCurrentFunction->fReturnType != *fContext.fVoid_Type) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700520 fErrors.error(r.fOffset, "expected function to return '" +
521 fCurrentFunction->fReturnType.description() + "'");
ethannicholasb3058bd2016-07-01 08:22:01 -0700522 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700523 return std::unique_ptr<Statement>(new ReturnStatement(r.fOffset));
ethannicholasb3058bd2016-07-01 08:22:01 -0700524 }
525}
526
527std::unique_ptr<Statement> IRGenerator::convertBreak(const ASTBreakStatement& b) {
Ethan Nicholasaf197692017-02-27 13:26:45 -0500528 if (fLoopLevel > 0 || fSwitchLevel > 0) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700529 return std::unique_ptr<Statement>(new BreakStatement(b.fOffset));
ethannicholas22f939e2016-10-13 13:25:34 -0700530 } else {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700531 fErrors.error(b.fOffset, "break statement must be inside a loop or switch");
ethannicholas22f939e2016-10-13 13:25:34 -0700532 return nullptr;
533 }
ethannicholasb3058bd2016-07-01 08:22:01 -0700534}
535
536std::unique_ptr<Statement> IRGenerator::convertContinue(const ASTContinueStatement& c) {
ethannicholas22f939e2016-10-13 13:25:34 -0700537 if (fLoopLevel > 0) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700538 return std::unique_ptr<Statement>(new ContinueStatement(c.fOffset));
ethannicholas22f939e2016-10-13 13:25:34 -0700539 } else {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700540 fErrors.error(c.fOffset, "continue statement must be inside a loop");
ethannicholas22f939e2016-10-13 13:25:34 -0700541 return nullptr;
542 }
ethannicholasb3058bd2016-07-01 08:22:01 -0700543}
544
545std::unique_ptr<Statement> IRGenerator::convertDiscard(const ASTDiscardStatement& d) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700546 return std::unique_ptr<Statement>(new DiscardStatement(d.fOffset));
ethannicholasb3058bd2016-07-01 08:22:01 -0700547}
548
Ethan Nicholasaae47c82017-11-10 15:34:03 -0500549std::unique_ptr<Block> IRGenerator::applyInvocationIDWorkaround(std::unique_ptr<Block> main) {
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -0400550 Layout invokeLayout;
551 Modifiers invokeModifiers(invokeLayout, Modifiers::kHasSideEffects_Flag);
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700552 FunctionDeclaration* invokeDecl = new FunctionDeclaration(-1,
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -0400553 invokeModifiers,
554 "_invoke",
555 std::vector<const Variable*>(),
556 *fContext.fVoid_Type);
Ethan Nicholasaae47c82017-11-10 15:34:03 -0500557 fProgramElements->push_back(std::unique_ptr<ProgramElement>(
558 new FunctionDefinition(-1, *invokeDecl, std::move(main))));
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -0400559 fSymbolTable->add(invokeDecl->fName, std::unique_ptr<FunctionDeclaration>(invokeDecl));
560
Ethan Nicholas82a62d22017-11-07 14:42:10 +0000561 std::vector<std::unique_ptr<VarDeclaration>> variables;
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -0400562 Variable* loopIdx = (Variable*) (*fSymbolTable)["sk_InvocationID"];
563 ASSERT(loopIdx);
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700564 std::unique_ptr<Expression> test(new BinaryExpression(-1,
565 std::unique_ptr<Expression>(new VariableReference(-1, *loopIdx)),
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -0400566 Token::LT,
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700567 std::unique_ptr<IntLiteral>(new IntLiteral(fContext, -1, fInvocations)),
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -0400568 *fContext.fBool_Type));
569 std::unique_ptr<Expression> next(new PostfixExpression(
570 std::unique_ptr<Expression>(
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700571 new VariableReference(-1,
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -0400572 *loopIdx,
573 VariableReference::kReadWrite_RefKind)),
574 Token::PLUSPLUS));
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700575 ASTIdentifier endPrimitiveID = ASTIdentifier(-1, "EndPrimitive");
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -0400576 std::unique_ptr<Expression> endPrimitive = this->convertExpression(endPrimitiveID);
577 ASSERT(endPrimitive);
578
579 std::vector<std::unique_ptr<Statement>> loopBody;
580 std::vector<std::unique_ptr<Expression>> invokeArgs;
581 loopBody.push_back(std::unique_ptr<Statement>(new ExpressionStatement(
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700582 this->call(-1,
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -0400583 *invokeDecl,
584 std::vector<std::unique_ptr<Expression>>()))));
585 loopBody.push_back(std::unique_ptr<Statement>(new ExpressionStatement(
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700586 this->call(-1,
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -0400587 std::move(endPrimitive),
588 std::vector<std::unique_ptr<Expression>>()))));
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700589 std::unique_ptr<Expression> assignment(new BinaryExpression(-1,
590 std::unique_ptr<Expression>(new VariableReference(-1, *loopIdx)),
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -0400591 Token::EQ,
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700592 std::unique_ptr<IntLiteral>(new IntLiteral(fContext, -1, 0)),
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -0400593 *fContext.fInt_Type));
594 std::unique_ptr<Statement> initializer(new ExpressionStatement(std::move(assignment)));
595 std::unique_ptr<Statement> loop = std::unique_ptr<Statement>(
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700596 new ForStatement(-1,
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -0400597 std::move(initializer),
598 std::move(test),
599 std::move(next),
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700600 std::unique_ptr<Block>(new Block(-1, std::move(loopBody))),
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -0400601 fSymbolTable));
602 std::vector<std::unique_ptr<Statement>> children;
603 children.push_back(std::move(loop));
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700604 return std::unique_ptr<Block>(new Block(-1, std::move(children)));
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -0400605}
606
Robert Phillipsfe8da172018-01-24 14:52:02 +0000607std::unique_ptr<Statement> IRGenerator::getNormalizeSkPositionCode() {
608 // sk_Position = float4(sk_Position.x * rtAdjust.x + sk_Position.w * rtAdjust.y,
609 // sk_Position.y * rtAdjust.z + sk_Position.w * rtAdjust.w,
610 // 0,
611 // sk_Position.w);
612 ASSERT(fSkPerVertex && fRTAdjust);
613 #define REF(var) std::unique_ptr<Expression>(\
614 new VariableReference(-1, *var, VariableReference::kRead_RefKind))
615 #define FIELD(var, idx) std::unique_ptr<Expression>(\
616 new FieldAccess(REF(var), idx, FieldAccess::kAnonymousInterfaceBlock_OwnerKind))
617 #define POS std::unique_ptr<Expression>(new FieldAccess(REF(fSkPerVertex), 0, \
618 FieldAccess::kAnonymousInterfaceBlock_OwnerKind))
619 #define ADJUST (fRTAdjustInterfaceBlock ? \
620 FIELD(fRTAdjustInterfaceBlock, fRTAdjustFieldIndex) : \
621 REF(fRTAdjust))
622 #define SWIZZLE(expr, field) std::unique_ptr<Expression>(new Swizzle(fContext, expr, { field }))
623 #define OP(left, op, right) std::unique_ptr<Expression>(\
624 new BinaryExpression(-1, left, op, right, *fContext.fFloat_Type))
625 std::vector<std::unique_ptr<Expression>> children;
626 children.push_back(OP(OP(SWIZZLE(POS, 0), Token::STAR, SWIZZLE(ADJUST, 0)),
627 Token::PLUS,
628 OP(SWIZZLE(POS, 3), Token::STAR, SWIZZLE(ADJUST, 1))));
629 children.push_back(OP(OP(SWIZZLE(POS, 1), Token::STAR, SWIZZLE(ADJUST, 2)),
630 Token::PLUS,
631 OP(SWIZZLE(POS, 3), Token::STAR, SWIZZLE(ADJUST, 3))));
632 children.push_back(std::unique_ptr<Expression>(new FloatLiteral(fContext, -1, 0.0)));
633 children.push_back(SWIZZLE(POS, 3));
634 std::unique_ptr<Expression> result = OP(POS, Token::EQ,
635 std::unique_ptr<Expression>(new Constructor(-1,
636 *fContext.fFloat4_Type,
637 std::move(children))));
638 return std::unique_ptr<Statement>(new ExpressionStatement(std::move(result)));
639}
640
Ethan Nicholasaae47c82017-11-10 15:34:03 -0500641void IRGenerator::convertFunction(const ASTFunction& f) {
ethannicholasd598f792016-07-25 10:08:54 -0700642 const Type* returnType = this->convertType(*f.fReturnType);
ethannicholasb3058bd2016-07-01 08:22:01 -0700643 if (!returnType) {
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -0400644 return;
ethannicholasb3058bd2016-07-01 08:22:01 -0700645 }
ethannicholasd598f792016-07-25 10:08:54 -0700646 std::vector<const Variable*> parameters;
ethannicholasb3058bd2016-07-01 08:22:01 -0700647 for (const auto& param : f.fParameters) {
ethannicholasd598f792016-07-25 10:08:54 -0700648 const Type* type = this->convertType(*param->fType);
ethannicholasb3058bd2016-07-01 08:22:01 -0700649 if (!type) {
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -0400650 return;
ethannicholasb3058bd2016-07-01 08:22:01 -0700651 }
652 for (int j = (int) param->fSizes.size() - 1; j >= 0; j--) {
653 int size = param->fSizes[j];
Ethan Nicholas0df1b042017-03-31 13:56:23 -0400654 String name = type->name() + "[" + to_string(size) + "]";
ethannicholasd598f792016-07-25 10:08:54 -0700655 Type* newType = new Type(std::move(name), Type::kArray_Kind, *type, size);
656 fSymbolTable->takeOwnership(newType);
657 type = newType;
ethannicholasb3058bd2016-07-01 08:22:01 -0700658 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700659 StringFragment name = param->fName;
660 Variable* var = new Variable(param->fOffset, param->fModifiers, name, *type,
Ethan Nicholas82a62d22017-11-07 14:42:10 +0000661 Variable::kParameter_Storage);
ethannicholasd598f792016-07-25 10:08:54 -0700662 fSymbolTable->takeOwnership(var);
663 parameters.push_back(var);
ethannicholasb3058bd2016-07-01 08:22:01 -0700664 }
665
666 // find existing declaration
ethannicholasd598f792016-07-25 10:08:54 -0700667 const FunctionDeclaration* decl = nullptr;
668 auto entry = (*fSymbolTable)[f.fName];
ethannicholasb3058bd2016-07-01 08:22:01 -0700669 if (entry) {
ethannicholasd598f792016-07-25 10:08:54 -0700670 std::vector<const FunctionDeclaration*> functions;
ethannicholasb3058bd2016-07-01 08:22:01 -0700671 switch (entry->fKind) {
672 case Symbol::kUnresolvedFunction_Kind:
ethannicholasd598f792016-07-25 10:08:54 -0700673 functions = ((UnresolvedFunction*) entry)->fFunctions;
ethannicholasb3058bd2016-07-01 08:22:01 -0700674 break;
675 case Symbol::kFunctionDeclaration_Kind:
ethannicholasd598f792016-07-25 10:08:54 -0700676 functions.push_back((FunctionDeclaration*) entry);
ethannicholasb3058bd2016-07-01 08:22:01 -0700677 break;
678 default:
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700679 fErrors.error(f.fOffset, "symbol '" + f.fName + "' was already defined");
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -0400680 return;
ethannicholasb3058bd2016-07-01 08:22:01 -0700681 }
682 for (const auto& other : functions) {
683 ASSERT(other->fName == f.fName);
684 if (parameters.size() == other->fParameters.size()) {
685 bool match = true;
686 for (size_t i = 0; i < parameters.size(); i++) {
687 if (parameters[i]->fType != other->fParameters[i]->fType) {
688 match = false;
689 break;
690 }
691 }
692 if (match) {
ethannicholasd598f792016-07-25 10:08:54 -0700693 if (*returnType != other->fReturnType) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700694 FunctionDeclaration newDecl(f.fOffset, f.fModifiers, f.fName, parameters,
Ethan Nicholascb670962017-04-20 19:31:52 -0400695 *returnType);
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700696 fErrors.error(f.fOffset, "functions '" + newDecl.description() +
697 "' and '" + other->description() +
698 "' differ only in return type");
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -0400699 return;
ethannicholasb3058bd2016-07-01 08:22:01 -0700700 }
701 decl = other;
702 for (size_t i = 0; i < parameters.size(); i++) {
703 if (parameters[i]->fModifiers != other->fParameters[i]->fModifiers) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700704 fErrors.error(f.fOffset, "modifiers on parameter " +
705 to_string((uint64_t) i + 1) +
706 " differ between declaration and "
707 "definition");
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -0400708 return;
ethannicholasb3058bd2016-07-01 08:22:01 -0700709 }
ethannicholasb3058bd2016-07-01 08:22:01 -0700710 }
711 if (other->fDefined) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700712 fErrors.error(f.fOffset, "duplicate definition of " +
713 other->description());
ethannicholasb3058bd2016-07-01 08:22:01 -0700714 }
715 break;
716 }
717 }
718 }
719 }
720 if (!decl) {
721 // couldn't find an existing declaration
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700722 auto newDecl = std::unique_ptr<FunctionDeclaration>(new FunctionDeclaration(f.fOffset,
Ethan Nicholascb670962017-04-20 19:31:52 -0400723 f.fModifiers,
ethannicholas471e8942016-10-28 09:02:46 -0700724 f.fName,
725 parameters,
726 *returnType));
727 decl = newDecl.get();
728 fSymbolTable->add(decl->fName, std::move(newDecl));
ethannicholasb3058bd2016-07-01 08:22:01 -0700729 }
ethannicholasd598f792016-07-25 10:08:54 -0700730 if (f.fBody) {
731 ASSERT(!fCurrentFunction);
732 fCurrentFunction = decl;
733 decl->fDefined = true;
734 std::shared_ptr<SymbolTable> old = fSymbolTable;
735 AutoSymbolTable table(this);
736 for (size_t i = 0; i < parameters.size(); i++) {
737 fSymbolTable->addWithoutOwnership(parameters[i]->fName, decl->fParameters[i]);
ethannicholasb3058bd2016-07-01 08:22:01 -0700738 }
Chris Daltonf1b47bb2017-10-06 11:57:51 -0600739 bool needInvocationIDWorkaround = fInvocations != -1 && f.fName == "main" &&
740 fSettings->fCaps &&
741 !fSettings->fCaps->gsInvocationsSupport();
Ethan Nicholas762466e2017-06-29 10:03:38 -0400742 ASSERT(!fExtraVars.size());
ethannicholasd598f792016-07-25 10:08:54 -0700743 std::unique_ptr<Block> body = this->convertBlock(*f.fBody);
Ethan Nicholas762466e2017-06-29 10:03:38 -0400744 for (auto& v : fExtraVars) {
745 body->fStatements.insert(body->fStatements.begin(), std::move(v));
746 }
747 fExtraVars.clear();
ethannicholasd598f792016-07-25 10:08:54 -0700748 fCurrentFunction = nullptr;
749 if (!body) {
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -0400750 return;
751 }
752 if (needInvocationIDWorkaround) {
Ethan Nicholasaae47c82017-11-10 15:34:03 -0500753 body = this->applyInvocationIDWorkaround(std::move(body));
ethannicholasd598f792016-07-25 10:08:54 -0700754 }
Ethan Nicholascb670962017-04-20 19:31:52 -0400755 // conservatively assume all user-defined functions have side effects
756 ((Modifiers&) decl->fModifiers).fFlags |= Modifiers::kHasSideEffects_Flag;
Robert Phillipsfe8da172018-01-24 14:52:02 +0000757 if (Program::kVertex_Kind == fKind && f.fName == "main" && fRTAdjust) {
758 body->fStatements.insert(body->fStatements.end(), this->getNormalizeSkPositionCode());
759 }
Ethan Nicholasaae47c82017-11-10 15:34:03 -0500760 fProgramElements->push_back(std::unique_ptr<FunctionDefinition>(
761 new FunctionDefinition(f.fOffset, *decl, std::move(body))));
ethannicholasb3058bd2016-07-01 08:22:01 -0700762 }
ethannicholasb3058bd2016-07-01 08:22:01 -0700763}
764
765std::unique_ptr<InterfaceBlock> IRGenerator::convertInterfaceBlock(const ASTInterfaceBlock& intf) {
766 std::shared_ptr<SymbolTable> old = fSymbolTable;
767 AutoSymbolTable table(this);
ethannicholasb3058bd2016-07-01 08:22:01 -0700768 std::vector<Type::Field> fields;
Ethan Nicholas0dd30d92017-05-01 16:57:07 -0400769 bool haveRuntimeArray = false;
Robert Phillipsfe8da172018-01-24 14:52:02 +0000770 bool foundRTAdjust = false;
ethannicholasb3058bd2016-07-01 08:22:01 -0700771 for (size_t i = 0; i < intf.fDeclarations.size(); i++) {
ethannicholas14fe8cc2016-09-07 13:37:16 -0700772 std::unique_ptr<VarDeclarations> decl = this->convertVarDeclarations(
Ethan Nicholas11d53972016-11-28 11:23:23 -0500773 *intf.fDeclarations[i],
ethannicholasb3058bd2016-07-01 08:22:01 -0700774 Variable::kGlobal_Storage);
ethannicholas7effa7a2016-10-14 09:56:33 -0700775 if (!decl) {
776 return nullptr;
777 }
Ethan Nicholas82a62d22017-11-07 14:42:10 +0000778 for (const auto& stmt : decl->fVars) {
779 VarDeclaration& vd = (VarDeclaration&) *stmt;
Ethan Nicholas0dd30d92017-05-01 16:57:07 -0400780 if (haveRuntimeArray) {
Ethan Nicholas82a62d22017-11-07 14:42:10 +0000781 fErrors.error(decl->fOffset,
Ethan Nicholas0dd30d92017-05-01 16:57:07 -0400782 "only the last entry in an interface block may be a runtime-sized "
783 "array");
784 }
Robert Phillipsfe8da172018-01-24 14:52:02 +0000785 if (vd.fVar == fRTAdjust) {
786 foundRTAdjust = true;
787 ASSERT(vd.fVar->fType == *fContext.fFloat4_Type);
788 fRTAdjustFieldIndex = fields.size();
789 }
Ethan Nicholas82a62d22017-11-07 14:42:10 +0000790 fields.push_back(Type::Field(vd.fVar->fModifiers, vd.fVar->fName,
791 &vd.fVar->fType));
792 if (vd.fValue) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700793 fErrors.error(decl->fOffset,
ethannicholasb3058bd2016-07-01 08:22:01 -0700794 "initializers are not permitted on interface block fields");
795 }
Ethan Nicholas82a62d22017-11-07 14:42:10 +0000796 if (vd.fVar->fModifiers.fFlags & (Modifiers::kIn_Flag |
797 Modifiers::kOut_Flag |
798 Modifiers::kUniform_Flag |
799 Modifiers::kBuffer_Flag |
800 Modifiers::kConst_Flag)) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700801 fErrors.error(decl->fOffset,
ethannicholasb3058bd2016-07-01 08:22:01 -0700802 "interface block fields may not have storage qualifiers");
803 }
Ethan Nicholas82a62d22017-11-07 14:42:10 +0000804 if (vd.fVar->fType.kind() == Type::kArray_Kind &&
805 vd.fVar->fType.columns() == -1) {
Ethan Nicholas0dd30d92017-05-01 16:57:07 -0400806 haveRuntimeArray = true;
807 }
Ethan Nicholas11d53972016-11-28 11:23:23 -0500808 }
ethannicholasb3058bd2016-07-01 08:22:01 -0700809 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700810 Type* type = new Type(intf.fOffset, intf.fTypeName, fields);
Ethan Nicholas86a43402017-01-19 13:32:00 -0500811 old->takeOwnership(type);
Ethan Nicholas50afc172017-02-16 14:49:57 -0500812 std::vector<std::unique_ptr<Expression>> sizes;
813 for (const auto& size : intf.fSizes) {
814 if (size) {
815 std::unique_ptr<Expression> converted = this->convertExpression(*size);
816 if (!converted) {
817 return nullptr;
818 }
Ethan Nicholas0df1b042017-03-31 13:56:23 -0400819 String name = type->fName;
Ethan Nicholas50afc172017-02-16 14:49:57 -0500820 int64_t count;
821 if (converted->fKind == Expression::kIntLiteral_Kind) {
822 count = ((IntLiteral&) *converted).fValue;
823 if (count <= 0) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700824 fErrors.error(converted->fOffset, "array size must be positive");
Ethan Nicholas50afc172017-02-16 14:49:57 -0500825 }
826 name += "[" + to_string(count) + "]";
827 } else {
828 count = -1;
829 name += "[]";
830 }
831 type = new Type(name, Type::kArray_Kind, *type, (int) count);
832 fSymbolTable->takeOwnership((Type*) type);
833 sizes.push_back(std::move(converted));
834 } else {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700835 type = new Type(type->name() + "[]", Type::kArray_Kind, *type, -1);
Ethan Nicholas50afc172017-02-16 14:49:57 -0500836 fSymbolTable->takeOwnership((Type*) type);
837 sizes.push_back(nullptr);
838 }
839 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700840 Variable* var = new Variable(intf.fOffset, intf.fModifiers,
841 intf.fInstanceName.fLength ? intf.fInstanceName : intf.fTypeName,
Ethan Nicholas82a62d22017-11-07 14:42:10 +0000842 *type, Variable::kGlobal_Storage);
Robert Phillipsfe8da172018-01-24 14:52:02 +0000843 if (foundRTAdjust) {
844 fRTAdjustInterfaceBlock = var;
845 }
Ethan Nicholas86a43402017-01-19 13:32:00 -0500846 old->takeOwnership(var);
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700847 if (intf.fInstanceName.fLength) {
Ethan Nicholas50afc172017-02-16 14:49:57 -0500848 old->addWithoutOwnership(intf.fInstanceName, var);
ethannicholasb3058bd2016-07-01 08:22:01 -0700849 } else {
850 for (size_t i = 0; i < fields.size(); i++) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700851 old->add(fields[i].fName, std::unique_ptr<Field>(new Field(intf.fOffset, *var,
ethannicholasd598f792016-07-25 10:08:54 -0700852 (int) i)));
ethannicholasb3058bd2016-07-01 08:22:01 -0700853 }
854 }
Robert Phillipsfe8da172018-01-24 14:52:02 +0000855 if (var->fName == Compiler::PERVERTEX_NAME) {
856 ASSERT(!fSkPerVertex);
857 fSkPerVertex = var;
858 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700859 return std::unique_ptr<InterfaceBlock>(new InterfaceBlock(intf.fOffset,
Ethan Nicholas8feeff92017-03-30 14:11:58 -0400860 var,
Ethan Nicholas50afc172017-02-16 14:49:57 -0500861 intf.fTypeName,
862 intf.fInstanceName,
863 std::move(sizes),
864 fSymbolTable));
ethannicholasb3058bd2016-07-01 08:22:01 -0700865}
866
Ethan Nicholasaae47c82017-11-10 15:34:03 -0500867void IRGenerator::getConstantInt(const Expression& value, int64_t* out) {
868 switch (value.fKind) {
869 case Expression::kIntLiteral_Kind:
870 *out = ((const IntLiteral&) value).fValue;
871 break;
872 case Expression::kVariableReference_Kind: {
873 const Variable& var = ((VariableReference&) value).fVariable;
874 if ((var.fModifiers.fFlags & Modifiers::kConst_Flag) &&
875 var.fInitialValue) {
876 this->getConstantInt(*var.fInitialValue, out);
877 }
878 break;
879 }
880 default:
881 fErrors.error(value.fOffset, "expected a constant int");
882 }
883}
884
885void IRGenerator::convertEnum(const ASTEnum& e) {
886 std::vector<Variable*> variables;
887 int64_t currentValue = 0;
888 Layout layout;
889 ASTType enumType(e.fOffset, e.fTypeName, ASTType::kIdentifier_Kind, {});
890 const Type* type = this->convertType(enumType);
891 Modifiers modifiers(layout, Modifiers::kConst_Flag);
892 std::shared_ptr<SymbolTable> symbols(new SymbolTable(fSymbolTable, &fErrors));
893 fSymbolTable = symbols;
894 for (size_t i = 0; i < e.fNames.size(); i++) {
895 std::unique_ptr<Expression> value;
896 if (e.fValues[i]) {
897 value = this->convertExpression(*e.fValues[i]);
898 if (!value) {
899 fSymbolTable = symbols->fParent;
900 return;
901 }
902 this->getConstantInt(*value, &currentValue);
903 }
904 value = std::unique_ptr<Expression>(new IntLiteral(fContext, e.fOffset, currentValue));
905 ++currentValue;
906 auto var = std::unique_ptr<Variable>(new Variable(e.fOffset, modifiers, e.fNames[i],
907 *type, Variable::kGlobal_Storage,
908 value.get()));
909 variables.push_back(var.get());
910 symbols->add(e.fNames[i], std::move(var));
911 symbols->takeOwnership(value.release());
912 }
913 fProgramElements->push_back(std::unique_ptr<ProgramElement>(new Enum(e.fOffset, e.fTypeName,
914 symbols)));
915 fSymbolTable = symbols->fParent;
916}
917
ethannicholasd598f792016-07-25 10:08:54 -0700918const Type* IRGenerator::convertType(const ASTType& type) {
919 const Symbol* result = (*fSymbolTable)[type.fName];
ethannicholasb3058bd2016-07-01 08:22:01 -0700920 if (result && result->fKind == Symbol::kType_Kind) {
Ethan Nicholas50afc172017-02-16 14:49:57 -0500921 for (int size : type.fSizes) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700922 String name(result->fName);
923 name += "[";
Ethan Nicholas50afc172017-02-16 14:49:57 -0500924 if (size != -1) {
925 name += to_string(size);
926 }
927 name += "]";
928 result = new Type(name, Type::kArray_Kind, (const Type&) *result, size);
929 fSymbolTable->takeOwnership((Type*) result);
930 }
ethannicholasd598f792016-07-25 10:08:54 -0700931 return (const Type*) result;
ethannicholasb3058bd2016-07-01 08:22:01 -0700932 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700933 fErrors.error(type.fOffset, "unknown type '" + type.fName + "'");
ethannicholasb3058bd2016-07-01 08:22:01 -0700934 return nullptr;
935}
936
937std::unique_ptr<Expression> IRGenerator::convertExpression(const ASTExpression& expr) {
938 switch (expr.fKind) {
939 case ASTExpression::kIdentifier_Kind:
940 return this->convertIdentifier((ASTIdentifier&) expr);
941 case ASTExpression::kBool_Kind:
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700942 return std::unique_ptr<Expression>(new BoolLiteral(fContext, expr.fOffset,
ethannicholasb3058bd2016-07-01 08:22:01 -0700943 ((ASTBoolLiteral&) expr).fValue));
944 case ASTExpression::kInt_Kind:
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700945 return std::unique_ptr<Expression>(new IntLiteral(fContext, expr.fOffset,
ethannicholasb3058bd2016-07-01 08:22:01 -0700946 ((ASTIntLiteral&) expr).fValue));
947 case ASTExpression::kFloat_Kind:
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700948 return std::unique_ptr<Expression>(new FloatLiteral(fContext, expr.fOffset,
ethannicholasb3058bd2016-07-01 08:22:01 -0700949 ((ASTFloatLiteral&) expr).fValue));
950 case ASTExpression::kBinary_Kind:
951 return this->convertBinaryExpression((ASTBinaryExpression&) expr);
952 case ASTExpression::kPrefix_Kind:
953 return this->convertPrefixExpression((ASTPrefixExpression&) expr);
954 case ASTExpression::kSuffix_Kind:
955 return this->convertSuffixExpression((ASTSuffixExpression&) expr);
956 case ASTExpression::kTernary_Kind:
957 return this->convertTernaryExpression((ASTTernaryExpression&) expr);
958 default:
959 ABORT("unsupported expression type: %d\n", expr.fKind);
960 }
961}
962
963std::unique_ptr<Expression> IRGenerator::convertIdentifier(const ASTIdentifier& identifier) {
ethannicholasd598f792016-07-25 10:08:54 -0700964 const Symbol* result = (*fSymbolTable)[identifier.fText];
ethannicholasb3058bd2016-07-01 08:22:01 -0700965 if (!result) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700966 fErrors.error(identifier.fOffset, "unknown identifier '" + identifier.fText + "'");
ethannicholasb3058bd2016-07-01 08:22:01 -0700967 return nullptr;
968 }
969 switch (result->fKind) {
970 case Symbol::kFunctionDeclaration_Kind: {
ethannicholasd598f792016-07-25 10:08:54 -0700971 std::vector<const FunctionDeclaration*> f = {
972 (const FunctionDeclaration*) result
ethannicholasb3058bd2016-07-01 08:22:01 -0700973 };
ethannicholasd598f792016-07-25 10:08:54 -0700974 return std::unique_ptr<FunctionReference>(new FunctionReference(fContext,
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700975 identifier.fOffset,
ethannicholasd598f792016-07-25 10:08:54 -0700976 f));
ethannicholasb3058bd2016-07-01 08:22:01 -0700977 }
978 case Symbol::kUnresolvedFunction_Kind: {
ethannicholasd598f792016-07-25 10:08:54 -0700979 const UnresolvedFunction* f = (const UnresolvedFunction*) result;
980 return std::unique_ptr<FunctionReference>(new FunctionReference(fContext,
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700981 identifier.fOffset,
ethannicholasb3058bd2016-07-01 08:22:01 -0700982 f->fFunctions));
983 }
984 case Symbol::kVariable_Kind: {
Ethan Nicholas38657112017-02-09 17:01:22 -0500985 const Variable* var = (const Variable*) result;
Ethan Nicholas762466e2017-06-29 10:03:38 -0400986#ifndef SKSL_STANDALONE
Ethan Nicholas38657112017-02-09 17:01:22 -0500987 if (var->fModifiers.fLayout.fBuiltin == SK_FRAGCOORD_BUILTIN) {
988 fInputs.fFlipY = true;
989 if (fSettings->fFlipY &&
990 (!fSettings->fCaps ||
991 !fSettings->fCaps->fragCoordConventionsExtensionString())) {
992 fInputs.fRTHeight = true;
993 }
Ethan Nicholas941e7e22016-12-12 15:33:30 -0500994 }
Ethan Nicholas762466e2017-06-29 10:03:38 -0400995#endif
Ethan Nicholas86a43402017-01-19 13:32:00 -0500996 // default to kRead_RefKind; this will be corrected later if the variable is written to
997 return std::unique_ptr<VariableReference>(new VariableReference(
Ethan Nicholas5b5f0962017-09-11 13:50:14 -0700998 identifier.fOffset,
Ethan Nicholas86a43402017-01-19 13:32:00 -0500999 *var,
1000 VariableReference::kRead_RefKind));
ethannicholasb3058bd2016-07-01 08:22:01 -07001001 }
1002 case Symbol::kField_Kind: {
ethannicholasd598f792016-07-25 10:08:54 -07001003 const Field* field = (const Field*) result;
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001004 VariableReference* base = new VariableReference(identifier.fOffset, field->fOwner,
Ethan Nicholas86a43402017-01-19 13:32:00 -05001005 VariableReference::kRead_RefKind);
ethannicholasf789b382016-08-03 12:43:36 -07001006 return std::unique_ptr<Expression>(new FieldAccess(
1007 std::unique_ptr<Expression>(base),
1008 field->fFieldIndex,
1009 FieldAccess::kAnonymousInterfaceBlock_OwnerKind));
ethannicholasb3058bd2016-07-01 08:22:01 -07001010 }
1011 case Symbol::kType_Kind: {
ethannicholasd598f792016-07-25 10:08:54 -07001012 const Type* t = (const Type*) result;
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001013 return std::unique_ptr<TypeReference>(new TypeReference(fContext, identifier.fOffset,
ethannicholasd598f792016-07-25 10:08:54 -07001014 *t));
ethannicholasb3058bd2016-07-01 08:22:01 -07001015 }
1016 default:
1017 ABORT("unsupported symbol type %d\n", result->fKind);
1018 }
Ethan Nicholasc0709392017-06-27 11:20:22 -04001019}
1020
Ethan Nicholas762466e2017-06-29 10:03:38 -04001021std::unique_ptr<Section> IRGenerator::convertSection(const ASTSection& s) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001022 return std::unique_ptr<Section>(new Section(s.fOffset, s.fName, s.fArgument, s.fText));
Ethan Nicholas762466e2017-06-29 10:03:38 -04001023}
1024
1025
Ethan Nicholas11d53972016-11-28 11:23:23 -05001026std::unique_ptr<Expression> IRGenerator::coerce(std::unique_ptr<Expression> expr,
ethannicholasd598f792016-07-25 10:08:54 -07001027 const Type& type) {
ethannicholasb3058bd2016-07-01 08:22:01 -07001028 if (!expr) {
1029 return nullptr;
1030 }
ethannicholasd598f792016-07-25 10:08:54 -07001031 if (expr->fType == type) {
ethannicholasb3058bd2016-07-01 08:22:01 -07001032 return expr;
1033 }
1034 this->checkValid(*expr);
ethannicholasd598f792016-07-25 10:08:54 -07001035 if (expr->fType == *fContext.fInvalid_Type) {
ethannicholasb3058bd2016-07-01 08:22:01 -07001036 return nullptr;
1037 }
Ethan Nicholasdcba08e2017-08-02 10:52:54 -04001038 if (expr->coercionCost(type) == INT_MAX) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001039 fErrors.error(expr->fOffset, "expected '" + type.description() + "', but found '" +
ethannicholasd598f792016-07-25 10:08:54 -07001040 expr->fType.description() + "'");
ethannicholasb3058bd2016-07-01 08:22:01 -07001041 return nullptr;
1042 }
ethannicholasd598f792016-07-25 10:08:54 -07001043 if (type.kind() == Type::kScalar_Kind) {
ethannicholasb3058bd2016-07-01 08:22:01 -07001044 std::vector<std::unique_ptr<Expression>> args;
1045 args.push_back(std::move(expr));
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001046 ASTIdentifier id(-1, type.fName);
ethannicholasb3058bd2016-07-01 08:22:01 -07001047 std::unique_ptr<Expression> ctor = this->convertIdentifier(id);
1048 ASSERT(ctor);
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001049 return this->call(-1, std::move(ctor), std::move(args));
ethannicholasb3058bd2016-07-01 08:22:01 -07001050 }
ethannicholas5961bc92016-10-12 06:39:56 -07001051 std::vector<std::unique_ptr<Expression>> args;
1052 args.push_back(std::move(expr));
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001053 return std::unique_ptr<Expression>(new Constructor(-1, type, std::move(args)));
ethannicholasb3058bd2016-07-01 08:22:01 -07001054}
1055
ethannicholasf789b382016-08-03 12:43:36 -07001056static bool is_matrix_multiply(const Type& left, const Type& right) {
1057 if (left.kind() == Type::kMatrix_Kind) {
1058 return right.kind() == Type::kMatrix_Kind || right.kind() == Type::kVector_Kind;
1059 }
1060 return left.kind() == Type::kVector_Kind && right.kind() == Type::kMatrix_Kind;
1061}
ethannicholasea4567c2016-10-17 11:24:37 -07001062
ethannicholasb3058bd2016-07-01 08:22:01 -07001063/**
1064 * Determines the operand and result types of a binary expression. Returns true if the expression is
1065 * legal, false otherwise. If false, the values of the out parameters are undefined.
1066 */
Ethan Nicholas11d53972016-11-28 11:23:23 -05001067static bool determine_binary_type(const Context& context,
1068 Token::Kind op,
1069 const Type& left,
1070 const Type& right,
ethannicholasd598f792016-07-25 10:08:54 -07001071 const Type** outLeftType,
1072 const Type** outRightType,
1073 const Type** outResultType,
ethannicholasb3058bd2016-07-01 08:22:01 -07001074 bool tryFlipped) {
1075 bool isLogical;
ethannicholasea4567c2016-10-17 11:24:37 -07001076 bool validMatrixOrVectorOp;
ethannicholasb3058bd2016-07-01 08:22:01 -07001077 switch (op) {
ethannicholasea4567c2016-10-17 11:24:37 -07001078 case Token::EQ:
1079 *outLeftType = &left;
1080 *outRightType = &left;
1081 *outResultType = &left;
1082 return right.canCoerceTo(left);
ethannicholasb3058bd2016-07-01 08:22:01 -07001083 case Token::EQEQ: // fall through
ethannicholasea4567c2016-10-17 11:24:37 -07001084 case Token::NEQ:
Ethan Nicholasaae47c82017-11-10 15:34:03 -05001085 if (left == right) {
1086 *outLeftType = &left;
1087 *outRightType = &right;
1088 *outResultType = context.fBool_Type.get();
1089 return true;
1090 }
ethannicholasea4567c2016-10-17 11:24:37 -07001091 isLogical = true;
1092 validMatrixOrVectorOp = true;
1093 break;
ethannicholasb3058bd2016-07-01 08:22:01 -07001094 case Token::LT: // fall through
1095 case Token::GT: // fall through
1096 case Token::LTEQ: // fall through
1097 case Token::GTEQ:
1098 isLogical = true;
ethannicholasea4567c2016-10-17 11:24:37 -07001099 validMatrixOrVectorOp = false;
ethannicholasb3058bd2016-07-01 08:22:01 -07001100 break;
1101 case Token::LOGICALOR: // fall through
1102 case Token::LOGICALAND: // fall through
1103 case Token::LOGICALXOR: // fall through
1104 case Token::LOGICALOREQ: // fall through
1105 case Token::LOGICALANDEQ: // fall through
1106 case Token::LOGICALXOREQ:
ethannicholasd598f792016-07-25 10:08:54 -07001107 *outLeftType = context.fBool_Type.get();
1108 *outRightType = context.fBool_Type.get();
1109 *outResultType = context.fBool_Type.get();
Ethan Nicholas11d53972016-11-28 11:23:23 -05001110 return left.canCoerceTo(*context.fBool_Type) &&
ethannicholasd598f792016-07-25 10:08:54 -07001111 right.canCoerceTo(*context.fBool_Type);
Ethan Nicholas11d53972016-11-28 11:23:23 -05001112 case Token::STAREQ:
Ethan Nicholasf7b88202017-09-18 14:10:39 -04001113 if (left.kind() == Type::kScalar_Kind) {
1114 *outLeftType = &left;
1115 *outRightType = &left;
1116 *outResultType = &left;
1117 return right.canCoerceTo(left);
1118 }
1119 // fall through
1120 case Token::STAR:
ethannicholasf789b382016-08-03 12:43:36 -07001121 if (is_matrix_multiply(left, right)) {
1122 // determine final component type
1123 if (determine_binary_type(context, Token::STAR, left.componentType(),
1124 right.componentType(), outLeftType, outRightType,
1125 outResultType, false)) {
Ethan Nicholas11d53972016-11-28 11:23:23 -05001126 *outLeftType = &(*outResultType)->toCompound(context, left.columns(),
ethannicholasf789b382016-08-03 12:43:36 -07001127 left.rows());;
Ethan Nicholas11d53972016-11-28 11:23:23 -05001128 *outRightType = &(*outResultType)->toCompound(context, right.columns(),
ethannicholasf789b382016-08-03 12:43:36 -07001129 right.rows());;
1130 int leftColumns = left.columns();
1131 int leftRows = left.rows();
1132 int rightColumns;
1133 int rightRows;
1134 if (right.kind() == Type::kVector_Kind) {
1135 // matrix * vector treats the vector as a column vector, so we need to
1136 // transpose it
1137 rightColumns = right.rows();
1138 rightRows = right.columns();
1139 ASSERT(rightColumns == 1);
1140 } else {
1141 rightColumns = right.columns();
1142 rightRows = right.rows();
1143 }
1144 if (rightColumns > 1) {
1145 *outResultType = &(*outResultType)->toCompound(context, rightColumns,
1146 leftRows);
1147 } else {
1148 // result was a column vector, transpose it back to a row
1149 *outResultType = &(*outResultType)->toCompound(context, leftRows,
1150 rightColumns);
1151 }
1152 return leftColumns == rightRows;
1153 } else {
1154 return false;
1155 }
ethannicholasb3058bd2016-07-01 08:22:01 -07001156 }
ethannicholasea4567c2016-10-17 11:24:37 -07001157 isLogical = false;
1158 validMatrixOrVectorOp = true;
1159 break;
Ethan Nicholasf7b88202017-09-18 14:10:39 -04001160 case Token::PLUSEQ:
1161 case Token::MINUSEQ:
1162 case Token::SLASHEQ:
1163 case Token::PERCENTEQ:
1164 case Token::SHLEQ:
1165 case Token::SHREQ:
1166 if (left.kind() == Type::kScalar_Kind) {
1167 *outLeftType = &left;
1168 *outRightType = &left;
1169 *outResultType = &left;
1170 return right.canCoerceTo(left);
1171 }
1172 // fall through
ethannicholasea4567c2016-10-17 11:24:37 -07001173 case Token::PLUS: // fall through
ethannicholasea4567c2016-10-17 11:24:37 -07001174 case Token::MINUS: // fall through
ethannicholasea4567c2016-10-17 11:24:37 -07001175 case Token::SLASH: // fall through
ethannicholasea4567c2016-10-17 11:24:37 -07001176 isLogical = false;
1177 validMatrixOrVectorOp = true;
1178 break;
Ethan Nicholas4b330df2017-05-17 10:52:55 -04001179 case Token::COMMA:
1180 *outLeftType = &left;
1181 *outRightType = &right;
1182 *outResultType = &right;
1183 return true;
ethannicholasb3058bd2016-07-01 08:22:01 -07001184 default:
1185 isLogical = false;
ethannicholasea4567c2016-10-17 11:24:37 -07001186 validMatrixOrVectorOp = false;
ethannicholasb3058bd2016-07-01 08:22:01 -07001187 }
ethannicholasea4567c2016-10-17 11:24:37 -07001188 bool isVectorOrMatrix = left.kind() == Type::kVector_Kind || left.kind() == Type::kMatrix_Kind;
Ethan Nicholasf7b88202017-09-18 14:10:39 -04001189 if (left.kind() == Type::kScalar_Kind && right.kind() == Type::kScalar_Kind &&
1190 right.canCoerceTo(left)) {
1191 if (left.priority() > right.priority()) {
1192 *outLeftType = &left;
1193 *outRightType = &left;
1194 } else {
1195 *outLeftType = &right;
1196 *outRightType = &right;
1197 }
1198 if (isLogical) {
1199 *outResultType = context.fBool_Type.get();
1200 } else {
1201 *outResultType = &left;
1202 }
1203 return true;
1204 }
1205 if (right.canCoerceTo(left) && isVectorOrMatrix && validMatrixOrVectorOp) {
ethannicholasd598f792016-07-25 10:08:54 -07001206 *outLeftType = &left;
1207 *outRightType = &left;
ethannicholasb3058bd2016-07-01 08:22:01 -07001208 if (isLogical) {
ethannicholasd598f792016-07-25 10:08:54 -07001209 *outResultType = context.fBool_Type.get();
ethannicholasb3058bd2016-07-01 08:22:01 -07001210 } else {
ethannicholasd598f792016-07-25 10:08:54 -07001211 *outResultType = &left;
ethannicholasb3058bd2016-07-01 08:22:01 -07001212 }
1213 return true;
1214 }
Ethan Nicholas11d53972016-11-28 11:23:23 -05001215 if ((left.kind() == Type::kVector_Kind || left.kind() == Type::kMatrix_Kind) &&
ethannicholasd598f792016-07-25 10:08:54 -07001216 (right.kind() == Type::kScalar_Kind)) {
Ethan Nicholas11d53972016-11-28 11:23:23 -05001217 if (determine_binary_type(context, op, left.componentType(), right, outLeftType,
ethannicholasd598f792016-07-25 10:08:54 -07001218 outRightType, outResultType, false)) {
1219 *outLeftType = &(*outLeftType)->toCompound(context, left.columns(), left.rows());
ethannicholasb3058bd2016-07-01 08:22:01 -07001220 if (!isLogical) {
Ethan Nicholas11d53972016-11-28 11:23:23 -05001221 *outResultType = &(*outResultType)->toCompound(context, left.columns(),
ethannicholasd598f792016-07-25 10:08:54 -07001222 left.rows());
ethannicholasb3058bd2016-07-01 08:22:01 -07001223 }
1224 return true;
1225 }
1226 return false;
1227 }
1228 if (tryFlipped) {
Ethan Nicholas11d53972016-11-28 11:23:23 -05001229 return determine_binary_type(context, op, right, left, outRightType, outLeftType,
ethannicholasd598f792016-07-25 10:08:54 -07001230 outResultType, false);
ethannicholasb3058bd2016-07-01 08:22:01 -07001231 }
1232 return false;
1233}
1234
ethannicholas08a92112016-11-09 13:26:45 -08001235std::unique_ptr<Expression> IRGenerator::constantFold(const Expression& left,
1236 Token::Kind op,
Ethan Nicholas86a43402017-01-19 13:32:00 -05001237 const Expression& right) const {
Ethan Nicholascb670962017-04-20 19:31:52 -04001238 if (!left.isConstant() || !right.isConstant()) {
1239 return nullptr;
1240 }
ethannicholas08a92112016-11-09 13:26:45 -08001241 // Note that we expressly do not worry about precision and overflow here -- we use the maximum
1242 // precision to calculate the results and hope the result makes sense. The plan is to move the
1243 // Skia caps into SkSL, so we have access to all of them including the precisions of the various
1244 // types, which will let us be more intelligent about this.
Ethan Nicholas11d53972016-11-28 11:23:23 -05001245 if (left.fKind == Expression::kBoolLiteral_Kind &&
ethannicholas08a92112016-11-09 13:26:45 -08001246 right.fKind == Expression::kBoolLiteral_Kind) {
1247 bool leftVal = ((BoolLiteral&) left).fValue;
1248 bool rightVal = ((BoolLiteral&) right).fValue;
1249 bool result;
1250 switch (op) {
1251 case Token::LOGICALAND: result = leftVal && rightVal; break;
1252 case Token::LOGICALOR: result = leftVal || rightVal; break;
1253 case Token::LOGICALXOR: result = leftVal ^ rightVal; break;
1254 default: return nullptr;
1255 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001256 return std::unique_ptr<Expression>(new BoolLiteral(fContext, left.fOffset, result));
ethannicholas08a92112016-11-09 13:26:45 -08001257 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001258 #define RESULT(t, op) std::unique_ptr<Expression>(new t ## Literal(fContext, left.fOffset, \
ethannicholas08a92112016-11-09 13:26:45 -08001259 leftVal op rightVal))
1260 if (left.fKind == Expression::kIntLiteral_Kind && right.fKind == Expression::kIntLiteral_Kind) {
1261 int64_t leftVal = ((IntLiteral&) left).fValue;
1262 int64_t rightVal = ((IntLiteral&) right).fValue;
1263 switch (op) {
Ethan Nicholascb670962017-04-20 19:31:52 -04001264 case Token::PLUS: return RESULT(Int, +);
1265 case Token::MINUS: return RESULT(Int, -);
1266 case Token::STAR: return RESULT(Int, *);
Ethan Nicholas9a5610e2017-01-03 15:16:29 -05001267 case Token::SLASH:
1268 if (rightVal) {
1269 return RESULT(Int, /);
1270 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001271 fErrors.error(right.fOffset, "division by zero");
Ethan Nicholas9a5610e2017-01-03 15:16:29 -05001272 return nullptr;
Ethan Nicholas2503ab62017-01-05 10:44:25 -05001273 case Token::PERCENT:
1274 if (rightVal) {
1275 return RESULT(Int, %);
1276 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001277 fErrors.error(right.fOffset, "division by zero");
Ethan Nicholas2503ab62017-01-05 10:44:25 -05001278 return nullptr;
ethannicholas08a92112016-11-09 13:26:45 -08001279 case Token::BITWISEAND: return RESULT(Int, &);
1280 case Token::BITWISEOR: return RESULT(Int, |);
1281 case Token::BITWISEXOR: return RESULT(Int, ^);
1282 case Token::SHL: return RESULT(Int, <<);
1283 case Token::SHR: return RESULT(Int, >>);
1284 case Token::EQEQ: return RESULT(Bool, ==);
1285 case Token::NEQ: return RESULT(Bool, !=);
1286 case Token::GT: return RESULT(Bool, >);
1287 case Token::GTEQ: return RESULT(Bool, >=);
1288 case Token::LT: return RESULT(Bool, <);
1289 case Token::LTEQ: return RESULT(Bool, <=);
1290 default: return nullptr;
1291 }
1292 }
Ethan Nicholas11d53972016-11-28 11:23:23 -05001293 if (left.fKind == Expression::kFloatLiteral_Kind &&
ethannicholas08a92112016-11-09 13:26:45 -08001294 right.fKind == Expression::kFloatLiteral_Kind) {
1295 double leftVal = ((FloatLiteral&) left).fValue;
1296 double rightVal = ((FloatLiteral&) right).fValue;
1297 switch (op) {
1298 case Token::PLUS: return RESULT(Float, +);
1299 case Token::MINUS: return RESULT(Float, -);
1300 case Token::STAR: return RESULT(Float, *);
Ethan Nicholas9a5610e2017-01-03 15:16:29 -05001301 case Token::SLASH:
1302 if (rightVal) {
1303 return RESULT(Float, /);
1304 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001305 fErrors.error(right.fOffset, "division by zero");
Ethan Nicholas9a5610e2017-01-03 15:16:29 -05001306 return nullptr;
Ethan Nicholascb670962017-04-20 19:31:52 -04001307 case Token::EQEQ: return RESULT(Bool, ==);
1308 case Token::NEQ: return RESULT(Bool, !=);
1309 case Token::GT: return RESULT(Bool, >);
1310 case Token::GTEQ: return RESULT(Bool, >=);
1311 case Token::LT: return RESULT(Bool, <);
1312 case Token::LTEQ: return RESULT(Bool, <=);
ethannicholas08a92112016-11-09 13:26:45 -08001313 default: return nullptr;
1314 }
1315 }
Ethan Nicholascb670962017-04-20 19:31:52 -04001316 if (left.fType.kind() == Type::kVector_Kind &&
1317 left.fType.componentType() == *fContext.fFloat_Type &&
1318 left.fType == right.fType) {
1319 ASSERT(left.fKind == Expression::kConstructor_Kind);
1320 ASSERT(right.fKind == Expression::kConstructor_Kind);
1321 std::vector<std::unique_ptr<Expression>> args;
1322 #define RETURN_VEC_COMPONENTWISE_RESULT(op) \
1323 for (int i = 0; i < left.fType.columns(); i++) { \
1324 float value = ((Constructor&) left).getFVecComponent(i) op \
1325 ((Constructor&) right).getFVecComponent(i); \
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001326 args.emplace_back(new FloatLiteral(fContext, -1, value)); \
Ethan Nicholascb670962017-04-20 19:31:52 -04001327 } \
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001328 return std::unique_ptr<Expression>(new Constructor(-1, left.fType, \
Ethan Nicholascb670962017-04-20 19:31:52 -04001329 std::move(args)));
1330 switch (op) {
Ethan Nicholas3deaeb22017-04-25 14:42:11 -04001331 case Token::EQEQ:
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001332 return std::unique_ptr<Expression>(new BoolLiteral(fContext, -1,
Ethan Nicholas3deaeb22017-04-25 14:42:11 -04001333 left.compareConstant(fContext, right)));
1334 case Token::NEQ:
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001335 return std::unique_ptr<Expression>(new BoolLiteral(fContext, -1,
Ethan Nicholas3deaeb22017-04-25 14:42:11 -04001336 !left.compareConstant(fContext, right)));
Ethan Nicholascb670962017-04-20 19:31:52 -04001337 case Token::PLUS: RETURN_VEC_COMPONENTWISE_RESULT(+);
1338 case Token::MINUS: RETURN_VEC_COMPONENTWISE_RESULT(-);
1339 case Token::STAR: RETURN_VEC_COMPONENTWISE_RESULT(*);
1340 case Token::SLASH: RETURN_VEC_COMPONENTWISE_RESULT(/);
1341 default: return nullptr;
1342 }
1343 }
Ethan Nicholas3deaeb22017-04-25 14:42:11 -04001344 if (left.fType.kind() == Type::kMatrix_Kind &&
1345 right.fType.kind() == Type::kMatrix_Kind &&
1346 left.fKind == right.fKind) {
1347 switch (op) {
1348 case Token::EQEQ:
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001349 return std::unique_ptr<Expression>(new BoolLiteral(fContext, -1,
Ethan Nicholas3deaeb22017-04-25 14:42:11 -04001350 left.compareConstant(fContext, right)));
1351 case Token::NEQ:
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001352 return std::unique_ptr<Expression>(new BoolLiteral(fContext, -1,
Ethan Nicholas3deaeb22017-04-25 14:42:11 -04001353 !left.compareConstant(fContext, right)));
1354 default:
1355 return nullptr;
1356 }
1357 }
ethannicholas08a92112016-11-09 13:26:45 -08001358 #undef RESULT
1359 return nullptr;
1360}
1361
ethannicholasb3058bd2016-07-01 08:22:01 -07001362std::unique_ptr<Expression> IRGenerator::convertBinaryExpression(
1363 const ASTBinaryExpression& expression) {
1364 std::unique_ptr<Expression> left = this->convertExpression(*expression.fLeft);
1365 if (!left) {
1366 return nullptr;
1367 }
1368 std::unique_ptr<Expression> right = this->convertExpression(*expression.fRight);
1369 if (!right) {
1370 return nullptr;
1371 }
ethannicholasd598f792016-07-25 10:08:54 -07001372 const Type* leftType;
1373 const Type* rightType;
1374 const Type* resultType;
Ethan Nicholasdcba08e2017-08-02 10:52:54 -04001375 const Type* rawLeftType;
1376 if (left->fKind == Expression::kIntLiteral_Kind && right->fType.isInteger()) {
1377 rawLeftType = &right->fType;
1378 } else {
1379 rawLeftType = &left->fType;
1380 }
1381 const Type* rawRightType;
1382 if (right->fKind == Expression::kIntLiteral_Kind && left->fType.isInteger()) {
1383 rawRightType = &left->fType;
1384 } else {
1385 rawRightType = &right->fType;
1386 }
1387 if (!determine_binary_type(fContext, expression.fOperator, *rawLeftType, *rawRightType,
1388 &leftType, &rightType, &resultType,
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001389 !Compiler::IsAssignment(expression.fOperator))) {
1390 fErrors.error(expression.fOffset, String("type mismatch: '") +
1391 Compiler::OperatorName(expression.fOperator) +
1392 "' cannot operate on '" + left->fType.fName +
1393 "', '" + right->fType.fName + "'");
ethannicholasb3058bd2016-07-01 08:22:01 -07001394 return nullptr;
1395 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001396 if (Compiler::IsAssignment(expression.fOperator)) {
Ethan Nicholas86a43402017-01-19 13:32:00 -05001397 this->markWrittenTo(*left, expression.fOperator != Token::EQ);
ethannicholasea4567c2016-10-17 11:24:37 -07001398 }
1399 left = this->coerce(std::move(left), *leftType);
1400 right = this->coerce(std::move(right), *rightType);
1401 if (!left || !right) {
1402 return nullptr;
ethannicholasb3058bd2016-07-01 08:22:01 -07001403 }
Ethan Nicholas11d53972016-11-28 11:23:23 -05001404 std::unique_ptr<Expression> result = this->constantFold(*left.get(), expression.fOperator,
ethannicholas08a92112016-11-09 13:26:45 -08001405 *right.get());
1406 if (!result) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001407 result = std::unique_ptr<Expression>(new BinaryExpression(expression.fOffset,
ethannicholas08a92112016-11-09 13:26:45 -08001408 std::move(left),
1409 expression.fOperator,
1410 std::move(right),
1411 *resultType));
1412 }
1413 return result;
ethannicholasb3058bd2016-07-01 08:22:01 -07001414}
1415
Ethan Nicholas11d53972016-11-28 11:23:23 -05001416std::unique_ptr<Expression> IRGenerator::convertTernaryExpression(
ethannicholasb3058bd2016-07-01 08:22:01 -07001417 const ASTTernaryExpression& expression) {
Ethan Nicholas11d53972016-11-28 11:23:23 -05001418 std::unique_ptr<Expression> test = this->coerce(this->convertExpression(*expression.fTest),
ethannicholasd598f792016-07-25 10:08:54 -07001419 *fContext.fBool_Type);
ethannicholasb3058bd2016-07-01 08:22:01 -07001420 if (!test) {
1421 return nullptr;
1422 }
1423 std::unique_ptr<Expression> ifTrue = this->convertExpression(*expression.fIfTrue);
1424 if (!ifTrue) {
1425 return nullptr;
1426 }
1427 std::unique_ptr<Expression> ifFalse = this->convertExpression(*expression.fIfFalse);
1428 if (!ifFalse) {
1429 return nullptr;
1430 }
ethannicholasd598f792016-07-25 10:08:54 -07001431 const Type* trueType;
1432 const Type* falseType;
1433 const Type* resultType;
1434 if (!determine_binary_type(fContext, Token::EQEQ, ifTrue->fType, ifFalse->fType, &trueType,
Ethan Nicholas2be687a2017-01-03 16:44:39 -05001435 &falseType, &resultType, true) || trueType != falseType) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001436 fErrors.error(expression.fOffset, "ternary operator result mismatch: '" +
1437 ifTrue->fType.fName + "', '" +
1438 ifFalse->fType.fName + "'");
ethannicholasb3058bd2016-07-01 08:22:01 -07001439 return nullptr;
1440 }
ethannicholasd598f792016-07-25 10:08:54 -07001441 ifTrue = this->coerce(std::move(ifTrue), *trueType);
Ethan Nicholas2be687a2017-01-03 16:44:39 -05001442 if (!ifTrue) {
1443 return nullptr;
1444 }
ethannicholasd598f792016-07-25 10:08:54 -07001445 ifFalse = this->coerce(std::move(ifFalse), *falseType);
Ethan Nicholas2be687a2017-01-03 16:44:39 -05001446 if (!ifFalse) {
1447 return nullptr;
1448 }
ethannicholas08a92112016-11-09 13:26:45 -08001449 if (test->fKind == Expression::kBoolLiteral_Kind) {
1450 // static boolean test, just return one of the branches
1451 if (((BoolLiteral&) *test).fValue) {
1452 return ifTrue;
1453 } else {
1454 return ifFalse;
1455 }
1456 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001457 return std::unique_ptr<Expression>(new TernaryExpression(expression.fOffset,
ethannicholasb3058bd2016-07-01 08:22:01 -07001458 std::move(test),
Ethan Nicholas11d53972016-11-28 11:23:23 -05001459 std::move(ifTrue),
ethannicholasb3058bd2016-07-01 08:22:01 -07001460 std::move(ifFalse)));
1461}
1462
Ethan Nicholas5338f992017-04-19 15:54:07 -04001463// scales the texture coordinates by the texture size for sampling rectangle textures.
Ethan Nicholas5af9ea32017-07-28 15:19:46 -04001464// For float2coordinates, implements the transformation:
Ethan Nicholas5338f992017-04-19 15:54:07 -04001465// texture(sampler, coord) -> texture(sampler, textureSize(sampler) * coord)
Ethan Nicholas5af9ea32017-07-28 15:19:46 -04001466// For float3coordinates, implements the transformation:
1467// texture(sampler, coord) -> texture(sampler, float3textureSize(sampler), 1.0) * coord))
Ethan Nicholas5338f992017-04-19 15:54:07 -04001468void IRGenerator::fixRectSampling(std::vector<std::unique_ptr<Expression>>& arguments) {
1469 ASSERT(arguments.size() == 2);
1470 ASSERT(arguments[0]->fType == *fContext.fSampler2DRect_Type);
1471 ASSERT(arguments[0]->fKind == Expression::kVariableReference_Kind);
1472 const Variable& sampler = ((VariableReference&) *arguments[0]).fVariable;
1473 const Symbol* textureSizeSymbol = (*fSymbolTable)["textureSize"];
1474 ASSERT(textureSizeSymbol->fKind == Symbol::kFunctionDeclaration_Kind);
1475 const FunctionDeclaration& textureSize = (FunctionDeclaration&) *textureSizeSymbol;
1476 std::vector<std::unique_ptr<Expression>> sizeArguments;
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001477 sizeArguments.emplace_back(new VariableReference(-1, sampler));
1478 std::unique_ptr<Expression> float2ize = call(-1, textureSize, std::move(sizeArguments));
Ethan Nicholas5338f992017-04-19 15:54:07 -04001479 const Type& type = arguments[1]->fType;
1480 std::unique_ptr<Expression> scale;
Ethan Nicholas5af9ea32017-07-28 15:19:46 -04001481 if (type == *fContext.fFloat2_Type) {
1482 scale = std::move(float2ize);
Ethan Nicholas5338f992017-04-19 15:54:07 -04001483 } else {
Ethan Nicholas5af9ea32017-07-28 15:19:46 -04001484 ASSERT(type == *fContext.fFloat3_Type);
1485 std::vector<std::unique_ptr<Expression>> float3rguments;
1486 float3rguments.push_back(std::move(float2ize));
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001487 float3rguments.emplace_back(new FloatLiteral(fContext, -1, 1.0));
1488 scale.reset(new Constructor(-1, *fContext.fFloat3_Type, std::move(float3rguments)));
Ethan Nicholas5338f992017-04-19 15:54:07 -04001489 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001490 arguments[1].reset(new BinaryExpression(-1, std::move(scale), Token::STAR,
Ethan Nicholas5338f992017-04-19 15:54:07 -04001491 std::move(arguments[1]), type));
1492}
1493
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001494std::unique_ptr<Expression> IRGenerator::call(int offset,
Ethan Nicholas11d53972016-11-28 11:23:23 -05001495 const FunctionDeclaration& function,
ethannicholasd598f792016-07-25 10:08:54 -07001496 std::vector<std::unique_ptr<Expression>> arguments) {
1497 if (function.fParameters.size() != arguments.size()) {
Ethan Nicholas0df1b042017-03-31 13:56:23 -04001498 String msg = "call to '" + function.fName + "' expected " +
Ethan Nicholas11d53972016-11-28 11:23:23 -05001499 to_string((uint64_t) function.fParameters.size()) +
ethannicholasb3058bd2016-07-01 08:22:01 -07001500 " argument";
ethannicholasd598f792016-07-25 10:08:54 -07001501 if (function.fParameters.size() != 1) {
ethannicholasb3058bd2016-07-01 08:22:01 -07001502 msg += "s";
1503 }
ethannicholas5961bc92016-10-12 06:39:56 -07001504 msg += ", but found " + to_string((uint64_t) arguments.size());
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001505 fErrors.error(offset, msg);
ethannicholasb3058bd2016-07-01 08:22:01 -07001506 return nullptr;
1507 }
ethannicholas471e8942016-10-28 09:02:46 -07001508 std::vector<const Type*> types;
1509 const Type* returnType;
1510 if (!function.determineFinalTypes(arguments, &types, &returnType)) {
Ethan Nicholas0df1b042017-03-31 13:56:23 -04001511 String msg = "no match for " + function.fName + "(";
1512 String separator;
ethannicholas471e8942016-10-28 09:02:46 -07001513 for (size_t i = 0; i < arguments.size(); i++) {
1514 msg += separator;
1515 separator = ", ";
1516 msg += arguments[i]->fType.description();
1517 }
1518 msg += ")";
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001519 fErrors.error(offset, msg);
ethannicholas471e8942016-10-28 09:02:46 -07001520 return nullptr;
1521 }
ethannicholasb3058bd2016-07-01 08:22:01 -07001522 for (size_t i = 0; i < arguments.size(); i++) {
ethannicholas471e8942016-10-28 09:02:46 -07001523 arguments[i] = this->coerce(std::move(arguments[i]), *types[i]);
ethannicholasea4567c2016-10-17 11:24:37 -07001524 if (!arguments[i]) {
1525 return nullptr;
1526 }
ethannicholasd598f792016-07-25 10:08:54 -07001527 if (arguments[i] && (function.fParameters[i]->fModifiers.fFlags & Modifiers::kOut_Flag)) {
Ethan Nicholas762466e2017-06-29 10:03:38 -04001528 this->markWrittenTo(*arguments[i],
Ethan Nicholascb670962017-04-20 19:31:52 -04001529 function.fParameters[i]->fModifiers.fFlags & Modifiers::kIn_Flag);
ethannicholasb3058bd2016-07-01 08:22:01 -07001530 }
1531 }
Ethan Nicholas5338f992017-04-19 15:54:07 -04001532 if (function.fBuiltin && function.fName == "texture" &&
1533 arguments[0]->fType == *fContext.fSampler2DRect_Type) {
1534 this->fixRectSampling(arguments);
1535 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001536 return std::unique_ptr<FunctionCall>(new FunctionCall(offset, *returnType, function,
ethannicholasb3058bd2016-07-01 08:22:01 -07001537 std::move(arguments)));
1538}
1539
1540/**
Ethan Nicholasdcba08e2017-08-02 10:52:54 -04001541 * Determines the cost of coercing the arguments of a function to the required types. Cost has no
1542 * particular meaning other than "lower costs are preferred". Returns INT_MAX if the call is not
1543 * valid.
ethannicholasb3058bd2016-07-01 08:22:01 -07001544 */
Ethan Nicholasdcba08e2017-08-02 10:52:54 -04001545int IRGenerator::callCost(const FunctionDeclaration& function,
1546 const std::vector<std::unique_ptr<Expression>>& arguments) {
ethannicholasd598f792016-07-25 10:08:54 -07001547 if (function.fParameters.size() != arguments.size()) {
Ethan Nicholasdcba08e2017-08-02 10:52:54 -04001548 return INT_MAX;
ethannicholasb3058bd2016-07-01 08:22:01 -07001549 }
1550 int total = 0;
ethannicholas471e8942016-10-28 09:02:46 -07001551 std::vector<const Type*> types;
1552 const Type* ignored;
1553 if (!function.determineFinalTypes(arguments, &types, &ignored)) {
Ethan Nicholasdcba08e2017-08-02 10:52:54 -04001554 return INT_MAX;
ethannicholas471e8942016-10-28 09:02:46 -07001555 }
ethannicholasb3058bd2016-07-01 08:22:01 -07001556 for (size_t i = 0; i < arguments.size(); i++) {
Ethan Nicholasdcba08e2017-08-02 10:52:54 -04001557 int cost = arguments[i]->coercionCost(*types[i]);
1558 if (cost != INT_MAX) {
ethannicholasb3058bd2016-07-01 08:22:01 -07001559 total += cost;
1560 } else {
Ethan Nicholasdcba08e2017-08-02 10:52:54 -04001561 return INT_MAX;
ethannicholasb3058bd2016-07-01 08:22:01 -07001562 }
1563 }
Ethan Nicholasdcba08e2017-08-02 10:52:54 -04001564 return total;
ethannicholasb3058bd2016-07-01 08:22:01 -07001565}
1566
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001567std::unique_ptr<Expression> IRGenerator::call(int offset,
Ethan Nicholas11d53972016-11-28 11:23:23 -05001568 std::unique_ptr<Expression> functionValue,
ethannicholasb3058bd2016-07-01 08:22:01 -07001569 std::vector<std::unique_ptr<Expression>> arguments) {
1570 if (functionValue->fKind == Expression::kTypeReference_Kind) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001571 return this->convertConstructor(offset,
Ethan Nicholas11d53972016-11-28 11:23:23 -05001572 ((TypeReference&) *functionValue).fValue,
ethannicholasb3058bd2016-07-01 08:22:01 -07001573 std::move(arguments));
1574 }
1575 if (functionValue->fKind != Expression::kFunctionReference_Kind) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001576 fErrors.error(offset, "'" + functionValue->description() + "' is not a function");
ethannicholasb3058bd2016-07-01 08:22:01 -07001577 return nullptr;
1578 }
1579 FunctionReference* ref = (FunctionReference*) functionValue.get();
1580 int bestCost = INT_MAX;
ethannicholasd598f792016-07-25 10:08:54 -07001581 const FunctionDeclaration* best = nullptr;
ethannicholasb3058bd2016-07-01 08:22:01 -07001582 if (ref->fFunctions.size() > 1) {
1583 for (const auto& f : ref->fFunctions) {
Ethan Nicholasdcba08e2017-08-02 10:52:54 -04001584 int cost = this->callCost(*f, arguments);
1585 if (cost < bestCost) {
ethannicholasb3058bd2016-07-01 08:22:01 -07001586 bestCost = cost;
1587 best = f;
1588 }
1589 }
1590 if (best) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001591 return this->call(offset, *best, std::move(arguments));
ethannicholasb3058bd2016-07-01 08:22:01 -07001592 }
Ethan Nicholas0df1b042017-03-31 13:56:23 -04001593 String msg = "no match for " + ref->fFunctions[0]->fName + "(";
1594 String separator;
ethannicholasb3058bd2016-07-01 08:22:01 -07001595 for (size_t i = 0; i < arguments.size(); i++) {
1596 msg += separator;
1597 separator = ", ";
ethannicholasd598f792016-07-25 10:08:54 -07001598 msg += arguments[i]->fType.description();
ethannicholasb3058bd2016-07-01 08:22:01 -07001599 }
1600 msg += ")";
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001601 fErrors.error(offset, msg);
ethannicholasb3058bd2016-07-01 08:22:01 -07001602 return nullptr;
1603 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001604 return this->call(offset, *ref->fFunctions[0], std::move(arguments));
ethannicholasb3058bd2016-07-01 08:22:01 -07001605}
1606
Ethan Nicholas84645e32017-02-09 13:57:14 -05001607std::unique_ptr<Expression> IRGenerator::convertNumberConstructor(
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001608 int offset,
Ethan Nicholas11d53972016-11-28 11:23:23 -05001609 const Type& type,
ethannicholasb3058bd2016-07-01 08:22:01 -07001610 std::vector<std::unique_ptr<Expression>> args) {
Ethan Nicholas84645e32017-02-09 13:57:14 -05001611 ASSERT(type.isNumber());
1612 if (args.size() != 1) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001613 fErrors.error(offset, "invalid arguments to '" + type.description() +
1614 "' constructor, (expected exactly 1 argument, but found " +
1615 to_string((uint64_t) args.size()) + ")");
ethannicholasb3058bd2016-07-01 08:22:01 -07001616 return nullptr;
1617 }
Ethan Nicholasf7b88202017-09-18 14:10:39 -04001618 if (type == args[0]->fType) {
Ethan Nicholasdcba08e2017-08-02 10:52:54 -04001619 return std::move(args[0]);
1620 }
Ethan Nicholasf7b88202017-09-18 14:10:39 -04001621 if (type.isFloat() && args.size() == 1 && args[0]->fKind == Expression::kFloatLiteral_Kind) {
1622 double value = ((FloatLiteral&) *args[0]).fValue;
1623 return std::unique_ptr<Expression>(new FloatLiteral(fContext, offset, value, &type));
Ethan Nicholasdcba08e2017-08-02 10:52:54 -04001624 }
1625 if (type.isFloat() && args.size() == 1 && args[0]->fKind == Expression::kIntLiteral_Kind) {
ethannicholasb3058bd2016-07-01 08:22:01 -07001626 int64_t value = ((IntLiteral&) *args[0]).fValue;
Ethan Nicholasf7b88202017-09-18 14:10:39 -04001627 return std::unique_ptr<Expression>(new FloatLiteral(fContext, offset, (double) value,
1628 &type));
ethannicholasb3058bd2016-07-01 08:22:01 -07001629 }
Ethan Nicholas84645e32017-02-09 13:57:14 -05001630 if (args[0]->fKind == Expression::kIntLiteral_Kind && (type == *fContext.fInt_Type ||
1631 type == *fContext.fUInt_Type)) {
1632 return std::unique_ptr<Expression>(new IntLiteral(fContext,
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001633 offset,
Ethan Nicholas84645e32017-02-09 13:57:14 -05001634 ((IntLiteral&) *args[0]).fValue,
1635 &type));
ethannicholasb3058bd2016-07-01 08:22:01 -07001636 }
Ethan Nicholas84645e32017-02-09 13:57:14 -05001637 if (args[0]->fType == *fContext.fBool_Type) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001638 std::unique_ptr<IntLiteral> zero(new IntLiteral(fContext, offset, 0));
1639 std::unique_ptr<IntLiteral> one(new IntLiteral(fContext, offset, 1));
Ethan Nicholas84645e32017-02-09 13:57:14 -05001640 return std::unique_ptr<Expression>(
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001641 new TernaryExpression(offset, std::move(args[0]),
Ethan Nicholas84645e32017-02-09 13:57:14 -05001642 this->coerce(std::move(one), type),
1643 this->coerce(std::move(zero),
1644 type)));
1645 }
1646 if (!args[0]->fType.isNumber()) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001647 fErrors.error(offset, "invalid argument to '" + type.description() +
1648 "' constructor (expected a number or bool, but found '" +
1649 args[0]->fType.description() + "')");
Ethan Nicholas84645e32017-02-09 13:57:14 -05001650 return nullptr;
1651 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001652 return std::unique_ptr<Expression>(new Constructor(offset, type, std::move(args)));
Ethan Nicholas84645e32017-02-09 13:57:14 -05001653}
1654
1655int component_count(const Type& type) {
1656 switch (type.kind()) {
1657 case Type::kVector_Kind:
1658 return type.columns();
1659 case Type::kMatrix_Kind:
1660 return type.columns() * type.rows();
1661 default:
1662 return 1;
1663 }
1664}
1665
1666std::unique_ptr<Expression> IRGenerator::convertCompoundConstructor(
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001667 int offset,
Ethan Nicholas84645e32017-02-09 13:57:14 -05001668 const Type& type,
1669 std::vector<std::unique_ptr<Expression>> args) {
1670 ASSERT(type.kind() == Type::kVector_Kind || type.kind() == Type::kMatrix_Kind);
1671 if (type.kind() == Type::kMatrix_Kind && args.size() == 1 &&
1672 args[0]->fType.kind() == Type::kMatrix_Kind) {
1673 // matrix from matrix is always legal
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001674 return std::unique_ptr<Expression>(new Constructor(offset, type, std::move(args)));
Ethan Nicholas84645e32017-02-09 13:57:14 -05001675 }
1676 int actual = 0;
1677 int expected = type.rows() * type.columns();
1678 if (args.size() != 1 || expected != component_count(args[0]->fType) ||
1679 type.componentType().isNumber() != args[0]->fType.componentType().isNumber()) {
ethannicholas5961bc92016-10-12 06:39:56 -07001680 for (size_t i = 0; i < args.size(); i++) {
Ethan Nicholas84645e32017-02-09 13:57:14 -05001681 if (args[i]->fType.kind() == Type::kVector_Kind) {
Ethan Nicholas49a36ba2017-02-09 17:04:23 +00001682 if (type.componentType().isNumber() !=
1683 args[i]->fType.componentType().isNumber()) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001684 fErrors.error(offset, "'" + args[i]->fType.description() + "' is not a valid "
1685 "parameter to '" + type.description() +
1686 "' constructor");
Ethan Nicholas49a36ba2017-02-09 17:04:23 +00001687 return nullptr;
1688 }
Ethan Nicholas84645e32017-02-09 13:57:14 -05001689 actual += args[i]->fType.columns();
Ethan Nicholas49a36ba2017-02-09 17:04:23 +00001690 } else if (args[i]->fType.kind() == Type::kScalar_Kind) {
1691 actual += 1;
1692 if (type.kind() != Type::kScalar_Kind) {
1693 args[i] = this->coerce(std::move(args[i]), type.componentType());
1694 if (!args[i]) {
1695 return nullptr;
1696 }
1697 }
1698 } else {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001699 fErrors.error(offset, "'" + args[i]->fType.description() + "' is not a valid "
1700 "parameter to '" + type.description() + "' constructor");
Ethan Nicholas49a36ba2017-02-09 17:04:23 +00001701 return nullptr;
1702 }
1703 }
Ethan Nicholas84645e32017-02-09 13:57:14 -05001704 if (actual != 1 && actual != expected) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001705 fErrors.error(offset, "invalid arguments to '" + type.description() +
1706 "' constructor (expected " + to_string(expected) +
1707 " scalars, but found " + to_string(actual) + ")");
Ethan Nicholas49a36ba2017-02-09 17:04:23 +00001708 return nullptr;
1709 }
ethannicholasb3058bd2016-07-01 08:22:01 -07001710 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001711 return std::unique_ptr<Expression>(new Constructor(offset, type, std::move(args)));
ethannicholasb3058bd2016-07-01 08:22:01 -07001712}
1713
Ethan Nicholas84645e32017-02-09 13:57:14 -05001714std::unique_ptr<Expression> IRGenerator::convertConstructor(
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001715 int offset,
Ethan Nicholas84645e32017-02-09 13:57:14 -05001716 const Type& type,
1717 std::vector<std::unique_ptr<Expression>> args) {
1718 // FIXME: add support for structs
1719 Type::Kind kind = type.kind();
1720 if (args.size() == 1 && args[0]->fType == type) {
1721 // argument is already the right type, just return it
1722 return std::move(args[0]);
1723 }
1724 if (type.isNumber()) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001725 return this->convertNumberConstructor(offset, type, std::move(args));
Ethan Nicholas84645e32017-02-09 13:57:14 -05001726 } else if (kind == Type::kArray_Kind) {
1727 const Type& base = type.componentType();
1728 for (size_t i = 0; i < args.size(); i++) {
1729 args[i] = this->coerce(std::move(args[i]), base);
1730 if (!args[i]) {
1731 return nullptr;
1732 }
1733 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001734 return std::unique_ptr<Expression>(new Constructor(offset, type, std::move(args)));
Ethan Nicholas84645e32017-02-09 13:57:14 -05001735 } else if (kind == Type::kVector_Kind || kind == Type::kMatrix_Kind) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001736 return this->convertCompoundConstructor(offset, type, std::move(args));
Ethan Nicholas84645e32017-02-09 13:57:14 -05001737 } else {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001738 fErrors.error(offset, "cannot construct '" + type.description() + "'");
Ethan Nicholas84645e32017-02-09 13:57:14 -05001739 return nullptr;
1740 }
1741}
1742
ethannicholasb3058bd2016-07-01 08:22:01 -07001743std::unique_ptr<Expression> IRGenerator::convertPrefixExpression(
1744 const ASTPrefixExpression& expression) {
1745 std::unique_ptr<Expression> base = this->convertExpression(*expression.fOperand);
1746 if (!base) {
1747 return nullptr;
1748 }
1749 switch (expression.fOperator) {
1750 case Token::PLUS:
ethannicholasd598f792016-07-25 10:08:54 -07001751 if (!base->fType.isNumber() && base->fType.kind() != Type::kVector_Kind) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001752 fErrors.error(expression.fOffset,
ethannicholasd598f792016-07-25 10:08:54 -07001753 "'+' cannot operate on '" + base->fType.description() + "'");
ethannicholasb3058bd2016-07-01 08:22:01 -07001754 return nullptr;
1755 }
1756 return base;
1757 case Token::MINUS:
ethannicholasd598f792016-07-25 10:08:54 -07001758 if (!base->fType.isNumber() && base->fType.kind() != Type::kVector_Kind) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001759 fErrors.error(expression.fOffset,
ethannicholasd598f792016-07-25 10:08:54 -07001760 "'-' cannot operate on '" + base->fType.description() + "'");
ethannicholasb3058bd2016-07-01 08:22:01 -07001761 return nullptr;
1762 }
1763 if (base->fKind == Expression::kIntLiteral_Kind) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001764 return std::unique_ptr<Expression>(new IntLiteral(fContext, base->fOffset,
ethannicholasb3058bd2016-07-01 08:22:01 -07001765 -((IntLiteral&) *base).fValue));
1766 }
1767 if (base->fKind == Expression::kFloatLiteral_Kind) {
1768 double value = -((FloatLiteral&) *base).fValue;
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001769 return std::unique_ptr<Expression>(new FloatLiteral(fContext, base->fOffset,
ethannicholasd598f792016-07-25 10:08:54 -07001770 value));
ethannicholasb3058bd2016-07-01 08:22:01 -07001771 }
1772 return std::unique_ptr<Expression>(new PrefixExpression(Token::MINUS, std::move(base)));
1773 case Token::PLUSPLUS:
ethannicholasd598f792016-07-25 10:08:54 -07001774 if (!base->fType.isNumber()) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001775 fErrors.error(expression.fOffset,
1776 String("'") + Compiler::OperatorName(expression.fOperator) +
ethannicholasd598f792016-07-25 10:08:54 -07001777 "' cannot operate on '" + base->fType.description() + "'");
ethannicholasb3058bd2016-07-01 08:22:01 -07001778 return nullptr;
1779 }
Ethan Nicholas86a43402017-01-19 13:32:00 -05001780 this->markWrittenTo(*base, true);
ethannicholasb3058bd2016-07-01 08:22:01 -07001781 break;
Ethan Nicholas11d53972016-11-28 11:23:23 -05001782 case Token::MINUSMINUS:
ethannicholasd598f792016-07-25 10:08:54 -07001783 if (!base->fType.isNumber()) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001784 fErrors.error(expression.fOffset,
1785 String("'") + Compiler::OperatorName(expression.fOperator) +
ethannicholasd598f792016-07-25 10:08:54 -07001786 "' cannot operate on '" + base->fType.description() + "'");
ethannicholasb3058bd2016-07-01 08:22:01 -07001787 return nullptr;
1788 }
Ethan Nicholas86a43402017-01-19 13:32:00 -05001789 this->markWrittenTo(*base, true);
ethannicholasb3058bd2016-07-01 08:22:01 -07001790 break;
ethannicholas5961bc92016-10-12 06:39:56 -07001791 case Token::LOGICALNOT:
ethannicholasd598f792016-07-25 10:08:54 -07001792 if (base->fType != *fContext.fBool_Type) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001793 fErrors.error(expression.fOffset,
1794 String("'") + Compiler::OperatorName(expression.fOperator) +
ethannicholasd598f792016-07-25 10:08:54 -07001795 "' cannot operate on '" + base->fType.description() + "'");
ethannicholasb3058bd2016-07-01 08:22:01 -07001796 return nullptr;
1797 }
ethannicholas08a92112016-11-09 13:26:45 -08001798 if (base->fKind == Expression::kBoolLiteral_Kind) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001799 return std::unique_ptr<Expression>(new BoolLiteral(fContext, base->fOffset,
ethannicholas08a92112016-11-09 13:26:45 -08001800 !((BoolLiteral&) *base).fValue));
1801 }
ethannicholasb3058bd2016-07-01 08:22:01 -07001802 break;
ethannicholas5961bc92016-10-12 06:39:56 -07001803 case Token::BITWISENOT:
1804 if (base->fType != *fContext.fInt_Type) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001805 fErrors.error(expression.fOffset,
1806 String("'") + Compiler::OperatorName(expression.fOperator) +
ethannicholas5961bc92016-10-12 06:39:56 -07001807 "' cannot operate on '" + base->fType.description() + "'");
1808 return nullptr;
1809 }
1810 break;
Ethan Nicholas11d53972016-11-28 11:23:23 -05001811 default:
ethannicholasb3058bd2016-07-01 08:22:01 -07001812 ABORT("unsupported prefix operator\n");
1813 }
Ethan Nicholas11d53972016-11-28 11:23:23 -05001814 return std::unique_ptr<Expression>(new PrefixExpression(expression.fOperator,
ethannicholasb3058bd2016-07-01 08:22:01 -07001815 std::move(base)));
1816}
1817
1818std::unique_ptr<Expression> IRGenerator::convertIndex(std::unique_ptr<Expression> base,
1819 const ASTExpression& index) {
Ethan Nicholas50afc172017-02-16 14:49:57 -05001820 if (base->fKind == Expression::kTypeReference_Kind) {
1821 if (index.fKind == ASTExpression::kInt_Kind) {
1822 const Type& oldType = ((TypeReference&) *base).fValue;
1823 int64_t size = ((const ASTIntLiteral&) index).fValue;
1824 Type* newType = new Type(oldType.name() + "[" + to_string(size) + "]",
1825 Type::kArray_Kind, oldType, size);
1826 fSymbolTable->takeOwnership(newType);
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001827 return std::unique_ptr<Expression>(new TypeReference(fContext, base->fOffset,
Ethan Nicholas50afc172017-02-16 14:49:57 -05001828 *newType));
1829
1830 } else {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001831 fErrors.error(base->fOffset, "array size must be a constant");
Ethan Nicholas50afc172017-02-16 14:49:57 -05001832 return nullptr;
1833 }
1834 }
ethannicholas5961bc92016-10-12 06:39:56 -07001835 if (base->fType.kind() != Type::kArray_Kind && base->fType.kind() != Type::kMatrix_Kind &&
1836 base->fType.kind() != Type::kVector_Kind) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001837 fErrors.error(base->fOffset, "expected array, but found '" + base->fType.description() +
1838 "'");
ethannicholasb3058bd2016-07-01 08:22:01 -07001839 return nullptr;
1840 }
1841 std::unique_ptr<Expression> converted = this->convertExpression(index);
1842 if (!converted) {
1843 return nullptr;
1844 }
ethannicholas5961bc92016-10-12 06:39:56 -07001845 if (converted->fType != *fContext.fUInt_Type) {
1846 converted = this->coerce(std::move(converted), *fContext.fInt_Type);
1847 if (!converted) {
1848 return nullptr;
1849 }
ethannicholasb3058bd2016-07-01 08:22:01 -07001850 }
Ethan Nicholas11d53972016-11-28 11:23:23 -05001851 return std::unique_ptr<Expression>(new IndexExpression(fContext, std::move(base),
ethannicholasd598f792016-07-25 10:08:54 -07001852 std::move(converted)));
ethannicholasb3058bd2016-07-01 08:22:01 -07001853}
1854
1855std::unique_ptr<Expression> IRGenerator::convertField(std::unique_ptr<Expression> base,
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001856 StringFragment field) {
ethannicholasd598f792016-07-25 10:08:54 -07001857 auto fields = base->fType.fields();
ethannicholasb3058bd2016-07-01 08:22:01 -07001858 for (size_t i = 0; i < fields.size(); i++) {
1859 if (fields[i].fName == field) {
1860 return std::unique_ptr<Expression>(new FieldAccess(std::move(base), (int) i));
1861 }
1862 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001863 fErrors.error(base->fOffset, "type '" + base->fType.description() + "' does not have a "
1864 "field named '" + field + "");
ethannicholasb3058bd2016-07-01 08:22:01 -07001865 return nullptr;
1866}
1867
1868std::unique_ptr<Expression> IRGenerator::convertSwizzle(std::unique_ptr<Expression> base,
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001869 StringFragment fields) {
ethannicholasd598f792016-07-25 10:08:54 -07001870 if (base->fType.kind() != Type::kVector_Kind) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001871 fErrors.error(base->fOffset, "cannot swizzle type '" + base->fType.description() + "'");
ethannicholasb3058bd2016-07-01 08:22:01 -07001872 return nullptr;
1873 }
1874 std::vector<int> swizzleComponents;
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001875 for (size_t i = 0; i < fields.fLength; i++) {
Ethan Nicholas9e1138d2016-11-21 10:39:35 -05001876 switch (fields[i]) {
ethannicholasb3058bd2016-07-01 08:22:01 -07001877 case 'x': // fall through
1878 case 'r': // fall through
Ethan Nicholas11d53972016-11-28 11:23:23 -05001879 case 's':
ethannicholasb3058bd2016-07-01 08:22:01 -07001880 swizzleComponents.push_back(0);
1881 break;
1882 case 'y': // fall through
1883 case 'g': // fall through
1884 case 't':
ethannicholasd598f792016-07-25 10:08:54 -07001885 if (base->fType.columns() >= 2) {
ethannicholasb3058bd2016-07-01 08:22:01 -07001886 swizzleComponents.push_back(1);
1887 break;
1888 }
1889 // fall through
1890 case 'z': // fall through
1891 case 'b': // fall through
Ethan Nicholas11d53972016-11-28 11:23:23 -05001892 case 'p':
ethannicholasd598f792016-07-25 10:08:54 -07001893 if (base->fType.columns() >= 3) {
ethannicholasb3058bd2016-07-01 08:22:01 -07001894 swizzleComponents.push_back(2);
1895 break;
1896 }
1897 // fall through
1898 case 'w': // fall through
1899 case 'a': // fall through
1900 case 'q':
ethannicholasd598f792016-07-25 10:08:54 -07001901 if (base->fType.columns() >= 4) {
ethannicholasb3058bd2016-07-01 08:22:01 -07001902 swizzleComponents.push_back(3);
1903 break;
1904 }
1905 // fall through
1906 default:
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001907 fErrors.error(base->fOffset, String::printf("invalid swizzle component '%c'",
1908 fields[i]));
ethannicholasb3058bd2016-07-01 08:22:01 -07001909 return nullptr;
1910 }
1911 }
1912 ASSERT(swizzleComponents.size() > 0);
1913 if (swizzleComponents.size() > 4) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001914 fErrors.error(base->fOffset, "too many components in swizzle mask '" + fields + "'");
ethannicholasb3058bd2016-07-01 08:22:01 -07001915 return nullptr;
1916 }
ethannicholasd598f792016-07-25 10:08:54 -07001917 return std::unique_ptr<Expression>(new Swizzle(fContext, std::move(base), swizzleComponents));
ethannicholasb3058bd2016-07-01 08:22:01 -07001918}
1919
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001920std::unique_ptr<Expression> IRGenerator::getCap(int offset, String name) {
Ethan Nicholas941e7e22016-12-12 15:33:30 -05001921 auto found = fCapsMap.find(name);
1922 if (found == fCapsMap.end()) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001923 fErrors.error(offset, "unknown capability flag '" + name + "'");
Ethan Nicholas3605ace2016-11-21 15:59:48 -05001924 return nullptr;
1925 }
Ethan Nicholas762466e2017-06-29 10:03:38 -04001926 String fullName = "sk_Caps." + name;
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001927 return std::unique_ptr<Expression>(new Setting(offset, fullName,
1928 found->second.literal(fContext, offset)));
Ethan Nicholas762466e2017-06-29 10:03:38 -04001929}
1930
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001931std::unique_ptr<Expression> IRGenerator::getArg(int offset, String name) {
Ethan Nicholas762466e2017-06-29 10:03:38 -04001932 auto found = fSettings->fArgs.find(name);
1933 if (found == fSettings->fArgs.end()) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001934 fErrors.error(offset, "unknown argument '" + name + "'");
Ethan Nicholas762466e2017-06-29 10:03:38 -04001935 return nullptr;
Ethan Nicholas3605ace2016-11-21 15:59:48 -05001936 }
Ethan Nicholas762466e2017-06-29 10:03:38 -04001937 String fullName = "sk_Args." + name;
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001938 return std::unique_ptr<Expression>(new Setting(offset,
Ethan Nicholas762466e2017-06-29 10:03:38 -04001939 fullName,
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001940 found->second.literal(fContext, offset)));
Ethan Nicholas3605ace2016-11-21 15:59:48 -05001941}
1942
Ethan Nicholasaae47c82017-11-10 15:34:03 -05001943std::unique_ptr<Expression> IRGenerator::convertTypeField(int offset, const Type& type,
1944 StringFragment field) {
1945 std::unique_ptr<Expression> result;
1946 for (const auto& e : *fProgramElements) {
1947 if (e->fKind == ProgramElement::kEnum_Kind && type.name() == ((Enum&) *e).fTypeName) {
1948 std::shared_ptr<SymbolTable> old = fSymbolTable;
1949 fSymbolTable = ((Enum&) *e).fSymbols;
1950 result = convertIdentifier(ASTIdentifier(offset, field));
1951 fSymbolTable = old;
1952 }
1953 }
1954 if (!result) {
1955 fErrors.error(offset, "type '" + type.fName + "' does not have a field named '" + field +
1956 "'");
1957 }
1958 return result;
1959}
1960
ethannicholasb3058bd2016-07-01 08:22:01 -07001961std::unique_ptr<Expression> IRGenerator::convertSuffixExpression(
1962 const ASTSuffixExpression& expression) {
1963 std::unique_ptr<Expression> base = this->convertExpression(*expression.fBase);
1964 if (!base) {
1965 return nullptr;
1966 }
1967 switch (expression.fSuffix->fKind) {
ethannicholas5961bc92016-10-12 06:39:56 -07001968 case ASTSuffix::kIndex_Kind: {
1969 const ASTExpression* expr = ((ASTIndexSuffix&) *expression.fSuffix).fExpression.get();
1970 if (expr) {
1971 return this->convertIndex(std::move(base), *expr);
1972 } else if (base->fKind == Expression::kTypeReference_Kind) {
1973 const Type& oldType = ((TypeReference&) *base).fValue;
Ethan Nicholas11d53972016-11-28 11:23:23 -05001974 Type* newType = new Type(oldType.name() + "[]", Type::kArray_Kind, oldType,
ethannicholas5961bc92016-10-12 06:39:56 -07001975 -1);
1976 fSymbolTable->takeOwnership(newType);
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001977 return std::unique_ptr<Expression>(new TypeReference(fContext, base->fOffset,
ethannicholas5961bc92016-10-12 06:39:56 -07001978 *newType));
1979 } else {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001980 fErrors.error(expression.fOffset, "'[]' must follow a type name");
ethannicholasa54401d2016-10-14 08:37:32 -07001981 return nullptr;
ethannicholas5961bc92016-10-12 06:39:56 -07001982 }
1983 }
ethannicholasb3058bd2016-07-01 08:22:01 -07001984 case ASTSuffix::kCall_Kind: {
1985 auto rawArguments = &((ASTCallSuffix&) *expression.fSuffix).fArguments;
1986 std::vector<std::unique_ptr<Expression>> arguments;
1987 for (size_t i = 0; i < rawArguments->size(); i++) {
Ethan Nicholas11d53972016-11-28 11:23:23 -05001988 std::unique_ptr<Expression> converted =
ethannicholasb3058bd2016-07-01 08:22:01 -07001989 this->convertExpression(*(*rawArguments)[i]);
1990 if (!converted) {
1991 return nullptr;
1992 }
1993 arguments.push_back(std::move(converted));
1994 }
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07001995 return this->call(expression.fOffset, std::move(base), std::move(arguments));
ethannicholasb3058bd2016-07-01 08:22:01 -07001996 }
1997 case ASTSuffix::kField_Kind: {
Ethan Nicholasaae47c82017-11-10 15:34:03 -05001998 StringFragment field = ((ASTFieldSuffix&) *expression.fSuffix).fField;
Ethan Nicholas3605ace2016-11-21 15:59:48 -05001999 if (base->fType == *fContext.fSkCaps_Type) {
Ethan Nicholasaae47c82017-11-10 15:34:03 -05002000 return this->getCap(expression.fOffset, field);
Ethan Nicholas3605ace2016-11-21 15:59:48 -05002001 }
Ethan Nicholas762466e2017-06-29 10:03:38 -04002002 if (base->fType == *fContext.fSkArgs_Type) {
Ethan Nicholasaae47c82017-11-10 15:34:03 -05002003 return this->getArg(expression.fOffset, field);
2004 }
2005 if (base->fKind == Expression::kTypeReference_Kind) {
2006 return this->convertTypeField(base->fOffset, ((TypeReference&) *base).fValue,
2007 field);
Ethan Nicholas762466e2017-06-29 10:03:38 -04002008 }
ethannicholasd598f792016-07-25 10:08:54 -07002009 switch (base->fType.kind()) {
ethannicholasb3058bd2016-07-01 08:22:01 -07002010 case Type::kVector_Kind:
Ethan Nicholasaae47c82017-11-10 15:34:03 -05002011 return this->convertSwizzle(std::move(base), field);
ethannicholasb3058bd2016-07-01 08:22:01 -07002012 case Type::kStruct_Kind:
Ethan Nicholasaae47c82017-11-10 15:34:03 -05002013 return this->convertField(std::move(base), field);
ethannicholasb3058bd2016-07-01 08:22:01 -07002014 default:
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07002015 fErrors.error(base->fOffset, "cannot swizzle value of type '" +
2016 base->fType.description() + "'");
ethannicholasb3058bd2016-07-01 08:22:01 -07002017 return nullptr;
2018 }
2019 }
2020 case ASTSuffix::kPostIncrement_Kind:
ethannicholasd598f792016-07-25 10:08:54 -07002021 if (!base->fType.isNumber()) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07002022 fErrors.error(expression.fOffset,
ethannicholasd598f792016-07-25 10:08:54 -07002023 "'++' cannot operate on '" + base->fType.description() + "'");
ethannicholasb3058bd2016-07-01 08:22:01 -07002024 return nullptr;
2025 }
Ethan Nicholas86a43402017-01-19 13:32:00 -05002026 this->markWrittenTo(*base, true);
Ethan Nicholas11d53972016-11-28 11:23:23 -05002027 return std::unique_ptr<Expression>(new PostfixExpression(std::move(base),
ethannicholasb3058bd2016-07-01 08:22:01 -07002028 Token::PLUSPLUS));
2029 case ASTSuffix::kPostDecrement_Kind:
ethannicholasd598f792016-07-25 10:08:54 -07002030 if (!base->fType.isNumber()) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07002031 fErrors.error(expression.fOffset,
ethannicholasd598f792016-07-25 10:08:54 -07002032 "'--' cannot operate on '" + base->fType.description() + "'");
ethannicholasb3058bd2016-07-01 08:22:01 -07002033 return nullptr;
2034 }
Ethan Nicholas86a43402017-01-19 13:32:00 -05002035 this->markWrittenTo(*base, true);
Ethan Nicholas11d53972016-11-28 11:23:23 -05002036 return std::unique_ptr<Expression>(new PostfixExpression(std::move(base),
ethannicholasb3058bd2016-07-01 08:22:01 -07002037 Token::MINUSMINUS));
2038 default:
2039 ABORT("unsupported suffix operator");
2040 }
2041}
2042
2043void IRGenerator::checkValid(const Expression& expr) {
2044 switch (expr.fKind) {
2045 case Expression::kFunctionReference_Kind:
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07002046 fErrors.error(expr.fOffset, "expected '(' to begin function call");
ethannicholasb3058bd2016-07-01 08:22:01 -07002047 break;
2048 case Expression::kTypeReference_Kind:
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07002049 fErrors.error(expr.fOffset, "expected '(' to begin constructor invocation");
ethannicholasb3058bd2016-07-01 08:22:01 -07002050 break;
2051 default:
ethannicholasea4567c2016-10-17 11:24:37 -07002052 if (expr.fType == *fContext.fInvalid_Type) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07002053 fErrors.error(expr.fOffset, "invalid expression");
ethannicholasea4567c2016-10-17 11:24:37 -07002054 }
ethannicholasb3058bd2016-07-01 08:22:01 -07002055 }
2056}
2057
ethannicholasb3058bd2016-07-01 08:22:01 -07002058static bool has_duplicates(const Swizzle& swizzle) {
2059 int bits = 0;
2060 for (int idx : swizzle.fComponents) {
2061 ASSERT(idx >= 0 && idx <= 3);
2062 int bit = 1 << idx;
2063 if (bits & bit) {
2064 return true;
2065 }
2066 bits |= bit;
2067 }
2068 return false;
2069}
2070
Ethan Nicholas86a43402017-01-19 13:32:00 -05002071void IRGenerator::markWrittenTo(const Expression& expr, bool readWrite) {
ethannicholasb3058bd2016-07-01 08:22:01 -07002072 switch (expr.fKind) {
2073 case Expression::kVariableReference_Kind: {
ethannicholasd598f792016-07-25 10:08:54 -07002074 const Variable& var = ((VariableReference&) expr).fVariable;
ethannicholasb3058bd2016-07-01 08:22:01 -07002075 if (var.fModifiers.fFlags & (Modifiers::kConst_Flag | Modifiers::kUniform_Flag)) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07002076 fErrors.error(expr.fOffset,
ethannicholasb3058bd2016-07-01 08:22:01 -07002077 "cannot modify immutable variable '" + var.fName + "'");
2078 }
Ethan Nicholas86a43402017-01-19 13:32:00 -05002079 ((VariableReference&) expr).setRefKind(readWrite ? VariableReference::kReadWrite_RefKind
2080 : VariableReference::kWrite_RefKind);
ethannicholasb3058bd2016-07-01 08:22:01 -07002081 break;
2082 }
2083 case Expression::kFieldAccess_Kind:
Ethan Nicholas86a43402017-01-19 13:32:00 -05002084 this->markWrittenTo(*((FieldAccess&) expr).fBase, readWrite);
ethannicholasb3058bd2016-07-01 08:22:01 -07002085 break;
2086 case Expression::kSwizzle_Kind:
2087 if (has_duplicates((Swizzle&) expr)) {
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07002088 fErrors.error(expr.fOffset,
ethannicholasb3058bd2016-07-01 08:22:01 -07002089 "cannot write to the same swizzle field more than once");
2090 }
Ethan Nicholas86a43402017-01-19 13:32:00 -05002091 this->markWrittenTo(*((Swizzle&) expr).fBase, readWrite);
ethannicholasb3058bd2016-07-01 08:22:01 -07002092 break;
2093 case Expression::kIndex_Kind:
Ethan Nicholas86a43402017-01-19 13:32:00 -05002094 this->markWrittenTo(*((IndexExpression&) expr).fBase, readWrite);
ethannicholasb3058bd2016-07-01 08:22:01 -07002095 break;
Ethan Nicholasa583b812018-01-18 13:32:11 -05002096 case Expression::kTernary_Kind: {
2097 TernaryExpression& t = (TernaryExpression&) expr;
2098 this->markWrittenTo(*t.fIfTrue, readWrite);
2099 this->markWrittenTo(*t.fIfFalse, readWrite);
2100 break;
2101 }
ethannicholasb3058bd2016-07-01 08:22:01 -07002102 default:
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07002103 fErrors.error(expr.fOffset, "cannot assign to '" + expr.description() + "'");
ethannicholasb3058bd2016-07-01 08:22:01 -07002104 break;
2105 }
2106}
2107
Robert Phillipsfe8da172018-01-24 14:52:02 +00002108void IRGenerator::convertProgram(Program::Kind kind,
2109 const char* text,
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07002110 size_t length,
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -04002111 SymbolTable& types,
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -04002112 std::vector<std::unique_ptr<ProgramElement>>* out) {
Robert Phillipsfe8da172018-01-24 14:52:02 +00002113 fKind = kind;
Ethan Nicholasaae47c82017-11-10 15:34:03 -05002114 fProgramElements = out;
Ethan Nicholas5b5f0962017-09-11 13:50:14 -07002115 Parser parser(text, length, types, fErrors);
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -04002116 std::vector<std::unique_ptr<ASTDeclaration>> parsed = parser.file();
2117 if (fErrors.errorCount()) {
2118 return;
2119 }
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -04002120 for (size_t i = 0; i < parsed.size(); i++) {
2121 ASTDeclaration& decl = *parsed[i];
2122 switch (decl.fKind) {
2123 case ASTDeclaration::kVar_Kind: {
2124 std::unique_ptr<VarDeclarations> s = this->convertVarDeclarations(
2125 (ASTVarDeclarations&) decl,
2126 Variable::kGlobal_Storage);
2127 if (s) {
Ethan Nicholasaae47c82017-11-10 15:34:03 -05002128 fProgramElements->push_back(std::move(s));
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -04002129 }
2130 break;
2131 }
Ethan Nicholasaae47c82017-11-10 15:34:03 -05002132 case ASTDeclaration::kEnum_Kind: {
2133 this->convertEnum((ASTEnum&) decl);
2134 break;
2135 }
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -04002136 case ASTDeclaration::kFunction_Kind: {
Ethan Nicholasaae47c82017-11-10 15:34:03 -05002137 this->convertFunction((ASTFunction&) decl);
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -04002138 break;
2139 }
2140 case ASTDeclaration::kModifiers_Kind: {
2141 std::unique_ptr<ModifiersDeclaration> f = this->convertModifiersDeclaration(
2142 (ASTModifiersDeclaration&) decl);
2143 if (f) {
Ethan Nicholasaae47c82017-11-10 15:34:03 -05002144 fProgramElements->push_back(std::move(f));
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -04002145 }
2146 break;
2147 }
2148 case ASTDeclaration::kInterfaceBlock_Kind: {
2149 std::unique_ptr<InterfaceBlock> i = this->convertInterfaceBlock(
2150 (ASTInterfaceBlock&) decl);
2151 if (i) {
Ethan Nicholasaae47c82017-11-10 15:34:03 -05002152 fProgramElements->push_back(std::move(i));
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -04002153 }
2154 break;
2155 }
2156 case ASTDeclaration::kExtension_Kind: {
2157 std::unique_ptr<Extension> e = this->convertExtension((ASTExtension&) decl);
2158 if (e) {
Ethan Nicholasaae47c82017-11-10 15:34:03 -05002159 fProgramElements->push_back(std::move(e));
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -04002160 }
2161 break;
2162 }
Ethan Nicholas762466e2017-06-29 10:03:38 -04002163 case ASTDeclaration::kSection_Kind: {
2164 std::unique_ptr<Section> s = this->convertSection((ASTSection&) decl);
2165 if (s) {
Ethan Nicholasaae47c82017-11-10 15:34:03 -05002166 fProgramElements->push_back(std::move(s));
Ethan Nicholas762466e2017-06-29 10:03:38 -04002167 }
2168 break;
2169 }
Ethan Nicholas7da6dfa2017-06-21 11:25:18 -04002170 default:
2171 ABORT("unsupported declaration: %s\n", decl.description().c_str());
2172 }
2173 }
2174}
2175
2176
ethannicholasb3058bd2016-07-01 08:22:01 -07002177}