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John Stiles44e96be2020-08-31 13:16:04 -04001/*
2 * Copyright 2020 Google LLC
3 *
4 * Use of this source code is governed by a BSD-style license that can be
5 * found in the LICENSE file.
6 */
7
8#include "src/sksl/SkSLInliner.h"
9
John Stiles2d7973a2020-10-02 15:01:03 -040010#include <limits.h>
John Stiles44e96be2020-08-31 13:16:04 -040011#include <memory>
12#include <unordered_set>
13
14#include "src/sksl/SkSLAnalysis.h"
15#include "src/sksl/ir/SkSLBinaryExpression.h"
16#include "src/sksl/ir/SkSLBoolLiteral.h"
17#include "src/sksl/ir/SkSLBreakStatement.h"
18#include "src/sksl/ir/SkSLConstructor.h"
19#include "src/sksl/ir/SkSLContinueStatement.h"
20#include "src/sksl/ir/SkSLDiscardStatement.h"
21#include "src/sksl/ir/SkSLDoStatement.h"
22#include "src/sksl/ir/SkSLEnum.h"
23#include "src/sksl/ir/SkSLExpressionStatement.h"
24#include "src/sksl/ir/SkSLExternalFunctionCall.h"
25#include "src/sksl/ir/SkSLExternalValueReference.h"
26#include "src/sksl/ir/SkSLField.h"
27#include "src/sksl/ir/SkSLFieldAccess.h"
28#include "src/sksl/ir/SkSLFloatLiteral.h"
29#include "src/sksl/ir/SkSLForStatement.h"
30#include "src/sksl/ir/SkSLFunctionCall.h"
31#include "src/sksl/ir/SkSLFunctionDeclaration.h"
32#include "src/sksl/ir/SkSLFunctionDefinition.h"
33#include "src/sksl/ir/SkSLFunctionReference.h"
34#include "src/sksl/ir/SkSLIfStatement.h"
35#include "src/sksl/ir/SkSLIndexExpression.h"
John Stiles98c1f822020-09-09 14:18:53 -040036#include "src/sksl/ir/SkSLInlineMarker.h"
John Stiles44e96be2020-08-31 13:16:04 -040037#include "src/sksl/ir/SkSLIntLiteral.h"
38#include "src/sksl/ir/SkSLInterfaceBlock.h"
39#include "src/sksl/ir/SkSLLayout.h"
40#include "src/sksl/ir/SkSLNop.h"
41#include "src/sksl/ir/SkSLNullLiteral.h"
42#include "src/sksl/ir/SkSLPostfixExpression.h"
43#include "src/sksl/ir/SkSLPrefixExpression.h"
44#include "src/sksl/ir/SkSLReturnStatement.h"
45#include "src/sksl/ir/SkSLSetting.h"
46#include "src/sksl/ir/SkSLSwitchCase.h"
47#include "src/sksl/ir/SkSLSwitchStatement.h"
48#include "src/sksl/ir/SkSLSwizzle.h"
49#include "src/sksl/ir/SkSLTernaryExpression.h"
50#include "src/sksl/ir/SkSLUnresolvedFunction.h"
51#include "src/sksl/ir/SkSLVarDeclarations.h"
John Stiles44e96be2020-08-31 13:16:04 -040052#include "src/sksl/ir/SkSLVariable.h"
53#include "src/sksl/ir/SkSLVariableReference.h"
54#include "src/sksl/ir/SkSLWhileStatement.h"
55
56namespace SkSL {
57namespace {
58
John Stiles44dff4f2020-09-21 12:28:01 -040059static bool contains_returns_above_limit(const FunctionDefinition& funcDef, int limit) {
60 class CountReturnsWithLimit : public ProgramVisitor {
John Stiles44e96be2020-08-31 13:16:04 -040061 public:
John Stiles44dff4f2020-09-21 12:28:01 -040062 CountReturnsWithLimit(const FunctionDefinition& funcDef, int limit) : fLimit(limit) {
John Stiles44e96be2020-08-31 13:16:04 -040063 this->visitProgramElement(funcDef);
64 }
65
66 bool visitStatement(const Statement& stmt) override {
Ethan Nicholase6592142020-09-08 10:22:09 -040067 switch (stmt.kind()) {
68 case Statement::Kind::kReturn:
John Stiles44e96be2020-08-31 13:16:04 -040069 ++fNumReturns;
John Stiles44dff4f2020-09-21 12:28:01 -040070 return (fNumReturns > fLimit) || INHERITED::visitStatement(stmt);
John Stiles44e96be2020-08-31 13:16:04 -040071
72 default:
John Stiles93442622020-09-11 12:11:27 -040073 return INHERITED::visitStatement(stmt);
John Stiles44e96be2020-08-31 13:16:04 -040074 }
75 }
76
77 int fNumReturns = 0;
John Stiles44dff4f2020-09-21 12:28:01 -040078 int fLimit = 0;
John Stiles44e96be2020-08-31 13:16:04 -040079 using INHERITED = ProgramVisitor;
80 };
81
John Stiles44dff4f2020-09-21 12:28:01 -040082 return CountReturnsWithLimit{funcDef, limit}.fNumReturns > limit;
John Stiles44e96be2020-08-31 13:16:04 -040083}
84
85static int count_returns_at_end_of_control_flow(const FunctionDefinition& funcDef) {
86 class CountReturnsAtEndOfControlFlow : public ProgramVisitor {
87 public:
88 CountReturnsAtEndOfControlFlow(const FunctionDefinition& funcDef) {
89 this->visitProgramElement(funcDef);
90 }
91
92 bool visitStatement(const Statement& stmt) override {
Ethan Nicholase6592142020-09-08 10:22:09 -040093 switch (stmt.kind()) {
94 case Statement::Kind::kBlock: {
John Stiles44e96be2020-08-31 13:16:04 -040095 // Check only the last statement of a block.
Ethan Nicholas7bd60432020-09-25 14:31:59 -040096 const auto& block = stmt.as<Block>();
97 return block.children().size() &&
98 this->visitStatement(*block.children().back());
John Stiles44e96be2020-08-31 13:16:04 -040099 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400100 case Statement::Kind::kSwitch:
101 case Statement::Kind::kWhile:
102 case Statement::Kind::kDo:
103 case Statement::Kind::kFor:
John Stiles44e96be2020-08-31 13:16:04 -0400104 // Don't introspect switches or loop structures at all.
105 return false;
106
Ethan Nicholase6592142020-09-08 10:22:09 -0400107 case Statement::Kind::kReturn:
John Stiles44e96be2020-08-31 13:16:04 -0400108 ++fNumReturns;
109 [[fallthrough]];
110
111 default:
John Stiles93442622020-09-11 12:11:27 -0400112 return INHERITED::visitStatement(stmt);
John Stiles44e96be2020-08-31 13:16:04 -0400113 }
114 }
115
116 int fNumReturns = 0;
117 using INHERITED = ProgramVisitor;
118 };
119
120 return CountReturnsAtEndOfControlFlow{funcDef}.fNumReturns;
121}
122
123static int count_returns_in_breakable_constructs(const FunctionDefinition& funcDef) {
124 class CountReturnsInBreakableConstructs : public ProgramVisitor {
125 public:
126 CountReturnsInBreakableConstructs(const FunctionDefinition& funcDef) {
127 this->visitProgramElement(funcDef);
128 }
129
130 bool visitStatement(const Statement& stmt) override {
Ethan Nicholase6592142020-09-08 10:22:09 -0400131 switch (stmt.kind()) {
132 case Statement::Kind::kSwitch:
133 case Statement::Kind::kWhile:
134 case Statement::Kind::kDo:
135 case Statement::Kind::kFor: {
John Stiles44e96be2020-08-31 13:16:04 -0400136 ++fInsideBreakableConstruct;
John Stiles93442622020-09-11 12:11:27 -0400137 bool result = INHERITED::visitStatement(stmt);
John Stiles44e96be2020-08-31 13:16:04 -0400138 --fInsideBreakableConstruct;
139 return result;
140 }
141
Ethan Nicholase6592142020-09-08 10:22:09 -0400142 case Statement::Kind::kReturn:
John Stiles44e96be2020-08-31 13:16:04 -0400143 fNumReturns += (fInsideBreakableConstruct > 0) ? 1 : 0;
144 [[fallthrough]];
145
146 default:
John Stiles93442622020-09-11 12:11:27 -0400147 return INHERITED::visitStatement(stmt);
John Stiles44e96be2020-08-31 13:16:04 -0400148 }
149 }
150
151 int fNumReturns = 0;
152 int fInsideBreakableConstruct = 0;
153 using INHERITED = ProgramVisitor;
154 };
155
156 return CountReturnsInBreakableConstructs{funcDef}.fNumReturns;
157}
158
159static bool has_early_return(const FunctionDefinition& funcDef) {
John Stiles44e96be2020-08-31 13:16:04 -0400160 int returnsAtEndOfControlFlow = count_returns_at_end_of_control_flow(funcDef);
John Stiles44dff4f2020-09-21 12:28:01 -0400161 return contains_returns_above_limit(funcDef, returnsAtEndOfControlFlow);
John Stiles44e96be2020-08-31 13:16:04 -0400162}
163
John Stiles991b09d2020-09-10 13:33:40 -0400164static bool contains_recursive_call(const FunctionDeclaration& funcDecl) {
165 class ContainsRecursiveCall : public ProgramVisitor {
166 public:
167 bool visit(const FunctionDeclaration& funcDecl) {
168 fFuncDecl = &funcDecl;
Ethan Nicholased84b732020-10-08 11:45:44 -0400169 return funcDecl.definition() ? this->visitProgramElement(*funcDecl.definition())
170 : false;
John Stiles991b09d2020-09-10 13:33:40 -0400171 }
172
173 bool visitExpression(const Expression& expr) override {
Ethan Nicholas0dec9922020-10-05 15:51:52 -0400174 if (expr.is<FunctionCall>() && expr.as<FunctionCall>().function().matches(*fFuncDecl)) {
John Stiles991b09d2020-09-10 13:33:40 -0400175 return true;
176 }
177 return INHERITED::visitExpression(expr);
178 }
179
180 bool visitStatement(const Statement& stmt) override {
181 if (stmt.is<InlineMarker>() && stmt.as<InlineMarker>().fFuncDecl->matches(*fFuncDecl)) {
182 return true;
183 }
184 return INHERITED::visitStatement(stmt);
185 }
186
187 const FunctionDeclaration* fFuncDecl;
188 using INHERITED = ProgramVisitor;
189 };
190
191 return ContainsRecursiveCall{}.visit(funcDecl);
192}
193
John Stiles44e96be2020-08-31 13:16:04 -0400194static const Type* copy_if_needed(const Type* src, SymbolTable& symbolTable) {
Ethan Nicholase6592142020-09-08 10:22:09 -0400195 if (src->typeKind() == Type::TypeKind::kArray) {
Ethan Nicholase2c49992020-10-05 11:49:11 -0400196 return symbolTable.takeOwnershipOfSymbol(std::make_unique<Type>(src->name(),
197 src->typeKind(),
198 src->componentType(),
199 src->columns()));
John Stiles44e96be2020-08-31 13:16:04 -0400200 }
201 return src;
202}
203
John Stiles6d696082020-10-01 10:18:54 -0400204static std::unique_ptr<Statement>* find_parent_statement(
205 const std::vector<std::unique_ptr<Statement>*>& stmtStack) {
John Stiles915a38c2020-09-14 09:38:13 -0400206 SkASSERT(!stmtStack.empty());
207
208 // Walk the statement stack from back to front, ignoring the last element (which is the
209 // enclosing statement).
210 auto iter = stmtStack.rbegin();
211 ++iter;
212
213 // Anything counts as a parent statement other than a scopeless Block.
214 for (; iter != stmtStack.rend(); ++iter) {
John Stiles6d696082020-10-01 10:18:54 -0400215 std::unique_ptr<Statement>* stmt = *iter;
216 if (!(*stmt)->is<Block>() || (*stmt)->as<Block>().isScope()) {
John Stiles915a38c2020-09-14 09:38:13 -0400217 return stmt;
218 }
219 }
220
221 // There wasn't any parent statement to be found.
222 return nullptr;
223}
224
John Stilese41b4ee2020-09-28 12:28:16 -0400225std::unique_ptr<Expression> clone_with_ref_kind(const Expression& expr,
226 VariableReference::RefKind refKind) {
227 std::unique_ptr<Expression> clone = expr.clone();
John Stiles70b82422020-09-30 10:55:12 -0400228 class SetRefKindInExpression : public ProgramWriter {
John Stilese41b4ee2020-09-28 12:28:16 -0400229 public:
230 SetRefKindInExpression(VariableReference::RefKind refKind) : fRefKind(refKind) {}
John Stiles70b82422020-09-30 10:55:12 -0400231 bool visitExpression(Expression& expr) override {
John Stilese41b4ee2020-09-28 12:28:16 -0400232 if (expr.is<VariableReference>()) {
John Stiles70b82422020-09-30 10:55:12 -0400233 expr.as<VariableReference>().setRefKind(fRefKind);
John Stilese41b4ee2020-09-28 12:28:16 -0400234 }
235 return INHERITED::visitExpression(expr);
236 }
237
238 private:
239 VariableReference::RefKind fRefKind;
240
John Stiles70b82422020-09-30 10:55:12 -0400241 using INHERITED = ProgramWriter;
John Stilese41b4ee2020-09-28 12:28:16 -0400242 };
243
244 SetRefKindInExpression{refKind}.visitExpression(*clone);
245 return clone;
246}
247
John Stiles44733aa2020-09-29 17:42:23 -0400248bool is_trivial_argument(const Expression& argument) {
249 return argument.is<VariableReference>() ||
250 (argument.is<Swizzle>() && is_trivial_argument(*argument.as<Swizzle>().fBase)) ||
251 (argument.is<FieldAccess>() && is_trivial_argument(*argument.as<FieldAccess>().fBase)) ||
John Stiles80ccdbd2020-09-30 11:58:16 -0400252 (argument.is<Constructor>() &&
253 argument.as<Constructor>().arguments().size() == 1 &&
254 is_trivial_argument(*argument.as<Constructor>().arguments().front())) ||
John Stiles44733aa2020-09-29 17:42:23 -0400255 (argument.is<IndexExpression>() &&
Ethan Nicholas2a4952d2020-10-08 15:35:56 -0400256 argument.as<IndexExpression>().index()->is<IntLiteral>() &&
257 is_trivial_argument(*argument.as<IndexExpression>().base()));
John Stiles44733aa2020-09-29 17:42:23 -0400258}
259
John Stiles44e96be2020-08-31 13:16:04 -0400260} // namespace
261
John Stilesb61ee902020-09-21 12:26:59 -0400262void Inliner::ensureScopedBlocks(Statement* inlinedBody, Statement* parentStmt) {
263 // No changes necessary if this statement isn't actually a block.
264 if (!inlinedBody || !inlinedBody->is<Block>()) {
265 return;
266 }
267
268 // No changes necessary if the parent statement doesn't require a scope.
269 if (!parentStmt || !(parentStmt->is<IfStatement>() || parentStmt->is<ForStatement>() ||
270 parentStmt->is<DoStatement>() || parentStmt->is<WhileStatement>())) {
271 return;
272 }
273
274 Block& block = inlinedBody->as<Block>();
275
276 // The inliner will create inlined function bodies as a Block containing multiple statements,
277 // but no scope. Normally, this is fine, but if this block is used as the statement for a
278 // do/for/if/while, this isn't actually possible to represent textually; a scope must be added
279 // for the generated code to match the intent. In the case of Blocks nested inside other Blocks,
280 // we add the scope to the outermost block if needed. Zero-statement blocks have similar
281 // issues--if we don't represent the Block textually somehow, we run the risk of accidentally
282 // absorbing the following statement into our loop--so we also add a scope to these.
283 for (Block* nestedBlock = &block;; ) {
Ethan Nicholas7bd60432020-09-25 14:31:59 -0400284 if (nestedBlock->isScope()) {
John Stilesb61ee902020-09-21 12:26:59 -0400285 // We found an explicit scope; all is well.
286 return;
287 }
Ethan Nicholas7bd60432020-09-25 14:31:59 -0400288 if (nestedBlock->children().size() != 1) {
John Stilesb61ee902020-09-21 12:26:59 -0400289 // We found a block with multiple (or zero) statements, but no scope? Let's add a scope
290 // to the outermost block.
Ethan Nicholas7bd60432020-09-25 14:31:59 -0400291 block.setIsScope(true);
John Stilesb61ee902020-09-21 12:26:59 -0400292 return;
293 }
Ethan Nicholas7bd60432020-09-25 14:31:59 -0400294 if (!nestedBlock->children()[0]->is<Block>()) {
John Stilesb61ee902020-09-21 12:26:59 -0400295 // This block has exactly one thing inside, and it's not another block. No need to scope
296 // it.
297 return;
298 }
299 // We have to go deeper.
Ethan Nicholas7bd60432020-09-25 14:31:59 -0400300 nestedBlock = &nestedBlock->children()[0]->as<Block>();
John Stilesb61ee902020-09-21 12:26:59 -0400301 }
302}
303
Ethan Nicholas041fd0a2020-10-07 16:42:04 -0400304void Inliner::reset(const Context* context, ModifiersPool* modifiers,
305 const Program::Settings* settings) {
306 fContext = context;
307 fModifiers = modifiers;
308 fSettings = settings;
John Stiles44e96be2020-08-31 13:16:04 -0400309 fInlineVarCounter = 0;
310}
311
John Stilesc75abb82020-09-14 18:24:12 -0400312String Inliner::uniqueNameForInlineVar(const String& baseName, SymbolTable* symbolTable) {
313 // If the base name starts with an underscore, like "_coords", we can't append another
314 // underscore, because OpenGL disallows two consecutive underscores anywhere in the string. But
315 // in the general case, using the underscore as a splitter reads nicely enough that it's worth
316 // putting in this special case.
317 const char* splitter = baseName.startsWith("_") ? "" : "_";
318
319 // Append a unique numeric prefix to avoid name overlap. Check the symbol table to make sure
320 // we're not reusing an existing name. (Note that within a single compilation pass, this check
321 // isn't fully comprehensive, as code isn't always generated in top-to-bottom order.)
322 String uniqueName;
323 for (;;) {
324 uniqueName = String::printf("_%d%s%s", fInlineVarCounter++, splitter, baseName.c_str());
325 StringFragment frag{uniqueName.data(), uniqueName.length()};
326 if ((*symbolTable)[frag] == nullptr) {
327 break;
328 }
329 }
330
331 return uniqueName;
332}
333
John Stiles44e96be2020-08-31 13:16:04 -0400334std::unique_ptr<Expression> Inliner::inlineExpression(int offset,
335 VariableRewriteMap* varMap,
336 const Expression& expression) {
337 auto expr = [&](const std::unique_ptr<Expression>& e) -> std::unique_ptr<Expression> {
338 if (e) {
339 return this->inlineExpression(offset, varMap, *e);
340 }
341 return nullptr;
342 };
343 auto argList = [&](const std::vector<std::unique_ptr<Expression>>& originalArgs)
344 -> std::vector<std::unique_ptr<Expression>> {
345 std::vector<std::unique_ptr<Expression>> args;
346 args.reserve(originalArgs.size());
347 for (const std::unique_ptr<Expression>& arg : originalArgs) {
348 args.push_back(expr(arg));
349 }
350 return args;
351 };
352
Ethan Nicholase6592142020-09-08 10:22:09 -0400353 switch (expression.kind()) {
354 case Expression::Kind::kBinary: {
John Stiles44e96be2020-08-31 13:16:04 -0400355 const BinaryExpression& b = expression.as<BinaryExpression>();
356 return std::make_unique<BinaryExpression>(offset,
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -0400357 expr(b.leftPointer()),
358 b.getOperator(),
359 expr(b.rightPointer()),
Ethan Nicholas30d30222020-09-11 12:27:26 -0400360 &b.type());
John Stiles44e96be2020-08-31 13:16:04 -0400361 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400362 case Expression::Kind::kBoolLiteral:
363 case Expression::Kind::kIntLiteral:
364 case Expression::Kind::kFloatLiteral:
365 case Expression::Kind::kNullLiteral:
John Stiles44e96be2020-08-31 13:16:04 -0400366 return expression.clone();
Ethan Nicholase6592142020-09-08 10:22:09 -0400367 case Expression::Kind::kConstructor: {
John Stiles44e96be2020-08-31 13:16:04 -0400368 const Constructor& constructor = expression.as<Constructor>();
Ethan Nicholas30d30222020-09-11 12:27:26 -0400369 return std::make_unique<Constructor>(offset, &constructor.type(),
Ethan Nicholasf70f0442020-09-29 12:41:35 -0400370 argList(constructor.arguments()));
John Stiles44e96be2020-08-31 13:16:04 -0400371 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400372 case Expression::Kind::kExternalFunctionCall: {
John Stiles44e96be2020-08-31 13:16:04 -0400373 const ExternalFunctionCall& externalCall = expression.as<ExternalFunctionCall>();
Ethan Nicholas444ccc62020-10-09 10:16:22 -0400374 return std::make_unique<ExternalFunctionCall>(offset, &externalCall.function(),
Ethan Nicholas6e86ec92020-09-30 14:29:56 -0400375 argList(externalCall.arguments()));
John Stiles44e96be2020-08-31 13:16:04 -0400376 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400377 case Expression::Kind::kExternalValue:
John Stiles44e96be2020-08-31 13:16:04 -0400378 return expression.clone();
Ethan Nicholase6592142020-09-08 10:22:09 -0400379 case Expression::Kind::kFieldAccess: {
John Stiles44e96be2020-08-31 13:16:04 -0400380 const FieldAccess& f = expression.as<FieldAccess>();
381 return std::make_unique<FieldAccess>(expr(f.fBase), f.fFieldIndex, f.fOwnerKind);
382 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400383 case Expression::Kind::kFunctionCall: {
John Stiles44e96be2020-08-31 13:16:04 -0400384 const FunctionCall& funcCall = expression.as<FunctionCall>();
Ethan Nicholas0dec9922020-10-05 15:51:52 -0400385 return std::make_unique<FunctionCall>(offset, &funcCall.type(), &funcCall.function(),
386 argList(funcCall.arguments()));
John Stiles44e96be2020-08-31 13:16:04 -0400387 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400388 case Expression::Kind::kFunctionReference:
Brian Osman2b3b35f2020-09-08 09:17:36 -0400389 return expression.clone();
Ethan Nicholase6592142020-09-08 10:22:09 -0400390 case Expression::Kind::kIndex: {
John Stiles44e96be2020-08-31 13:16:04 -0400391 const IndexExpression& idx = expression.as<IndexExpression>();
Ethan Nicholas2a4952d2020-10-08 15:35:56 -0400392 return std::make_unique<IndexExpression>(*fContext, expr(idx.base()),
393 expr(idx.index()));
John Stiles44e96be2020-08-31 13:16:04 -0400394 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400395 case Expression::Kind::kPrefix: {
John Stiles44e96be2020-08-31 13:16:04 -0400396 const PrefixExpression& p = expression.as<PrefixExpression>();
Ethan Nicholas444ccc62020-10-09 10:16:22 -0400397 return std::make_unique<PrefixExpression>(p.getOperator(), expr(p.operand()));
John Stiles44e96be2020-08-31 13:16:04 -0400398 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400399 case Expression::Kind::kPostfix: {
John Stiles44e96be2020-08-31 13:16:04 -0400400 const PostfixExpression& p = expression.as<PostfixExpression>();
Ethan Nicholas444ccc62020-10-09 10:16:22 -0400401 return std::make_unique<PostfixExpression>(expr(p.operand()), p.getOperator());
John Stiles44e96be2020-08-31 13:16:04 -0400402 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400403 case Expression::Kind::kSetting:
John Stiles44e96be2020-08-31 13:16:04 -0400404 return expression.clone();
Ethan Nicholase6592142020-09-08 10:22:09 -0400405 case Expression::Kind::kSwizzle: {
John Stiles44e96be2020-08-31 13:16:04 -0400406 const Swizzle& s = expression.as<Swizzle>();
407 return std::make_unique<Swizzle>(*fContext, expr(s.fBase), s.fComponents);
408 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400409 case Expression::Kind::kTernary: {
John Stiles44e96be2020-08-31 13:16:04 -0400410 const TernaryExpression& t = expression.as<TernaryExpression>();
Ethan Nicholasdd218162020-10-08 05:48:01 -0400411 return std::make_unique<TernaryExpression>(offset, expr(t.test()),
412 expr(t.ifTrue()), expr(t.ifFalse()));
John Stiles44e96be2020-08-31 13:16:04 -0400413 }
Brian Osman83ba9302020-09-11 13:33:46 -0400414 case Expression::Kind::kTypeReference:
415 return expression.clone();
Ethan Nicholase6592142020-09-08 10:22:09 -0400416 case Expression::Kind::kVariableReference: {
John Stiles44e96be2020-08-31 13:16:04 -0400417 const VariableReference& v = expression.as<VariableReference>();
Ethan Nicholas78686922020-10-08 06:46:27 -0400418 auto varMapIter = varMap->find(v.variable());
John Stilese41b4ee2020-09-28 12:28:16 -0400419 if (varMapIter != varMap->end()) {
Ethan Nicholas78686922020-10-08 06:46:27 -0400420 return clone_with_ref_kind(*varMapIter->second, v.refKind());
John Stiles44e96be2020-08-31 13:16:04 -0400421 }
422 return v.clone();
423 }
424 default:
425 SkASSERT(false);
426 return nullptr;
427 }
428}
429
430std::unique_ptr<Statement> Inliner::inlineStatement(int offset,
431 VariableRewriteMap* varMap,
432 SymbolTable* symbolTableForStatement,
John Stilese41b4ee2020-09-28 12:28:16 -0400433 const Expression* resultExpr,
John Stiles44e96be2020-08-31 13:16:04 -0400434 bool haveEarlyReturns,
Brian Osman3887a012020-09-30 13:22:27 -0400435 const Statement& statement,
436 bool isBuiltinCode) {
John Stiles44e96be2020-08-31 13:16:04 -0400437 auto stmt = [&](const std::unique_ptr<Statement>& s) -> std::unique_ptr<Statement> {
438 if (s) {
John Stilesa5f3c312020-09-22 12:05:16 -0400439 return this->inlineStatement(offset, varMap, symbolTableForStatement, resultExpr,
Brian Osman3887a012020-09-30 13:22:27 -0400440 haveEarlyReturns, *s, isBuiltinCode);
John Stiles44e96be2020-08-31 13:16:04 -0400441 }
442 return nullptr;
443 };
Ethan Nicholas7bd60432020-09-25 14:31:59 -0400444 auto blockStmts = [&](const Block& block) {
445 std::vector<std::unique_ptr<Statement>> result;
446 for (const std::unique_ptr<Statement>& child : block.children()) {
447 result.push_back(stmt(child));
448 }
449 return result;
450 };
John Stiles44e96be2020-08-31 13:16:04 -0400451 auto stmts = [&](const std::vector<std::unique_ptr<Statement>>& ss) {
452 std::vector<std::unique_ptr<Statement>> result;
453 for (const auto& s : ss) {
454 result.push_back(stmt(s));
455 }
456 return result;
457 };
458 auto expr = [&](const std::unique_ptr<Expression>& e) -> std::unique_ptr<Expression> {
459 if (e) {
460 return this->inlineExpression(offset, varMap, *e);
461 }
462 return nullptr;
463 };
Ethan Nicholase6592142020-09-08 10:22:09 -0400464 switch (statement.kind()) {
465 case Statement::Kind::kBlock: {
John Stiles44e96be2020-08-31 13:16:04 -0400466 const Block& b = statement.as<Block>();
Ethan Nicholas7bd60432020-09-25 14:31:59 -0400467 return std::make_unique<Block>(offset, blockStmts(b), b.symbolTable(), b.isScope());
John Stiles44e96be2020-08-31 13:16:04 -0400468 }
469
Ethan Nicholase6592142020-09-08 10:22:09 -0400470 case Statement::Kind::kBreak:
471 case Statement::Kind::kContinue:
472 case Statement::Kind::kDiscard:
John Stiles44e96be2020-08-31 13:16:04 -0400473 return statement.clone();
474
Ethan Nicholase6592142020-09-08 10:22:09 -0400475 case Statement::Kind::kDo: {
John Stiles44e96be2020-08-31 13:16:04 -0400476 const DoStatement& d = statement.as<DoStatement>();
Ethan Nicholas1fd61162020-09-28 13:14:19 -0400477 return std::make_unique<DoStatement>(offset, stmt(d.statement()), expr(d.test()));
John Stiles44e96be2020-08-31 13:16:04 -0400478 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400479 case Statement::Kind::kExpression: {
John Stiles44e96be2020-08-31 13:16:04 -0400480 const ExpressionStatement& e = statement.as<ExpressionStatement>();
Ethan Nicholasd503a5a2020-09-30 09:29:55 -0400481 return std::make_unique<ExpressionStatement>(expr(e.expression()));
John Stiles44e96be2020-08-31 13:16:04 -0400482 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400483 case Statement::Kind::kFor: {
John Stiles44e96be2020-08-31 13:16:04 -0400484 const ForStatement& f = statement.as<ForStatement>();
485 // need to ensure initializer is evaluated first so that we've already remapped its
486 // declarations by the time we evaluate test & next
Ethan Nicholas0d31ed52020-10-05 14:47:09 -0400487 std::unique_ptr<Statement> initializer = stmt(f.initializer());
488 return std::make_unique<ForStatement>(offset, std::move(initializer), expr(f.test()),
489 expr(f.next()), stmt(f.statement()), f.symbols());
John Stiles44e96be2020-08-31 13:16:04 -0400490 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400491 case Statement::Kind::kIf: {
John Stiles44e96be2020-08-31 13:16:04 -0400492 const IfStatement& i = statement.as<IfStatement>();
Ethan Nicholas8c44eca2020-10-07 16:47:09 -0400493 return std::make_unique<IfStatement>(offset, i.isStatic(), expr(i.test()),
494 stmt(i.ifTrue()), stmt(i.ifFalse()));
John Stiles44e96be2020-08-31 13:16:04 -0400495 }
John Stiles98c1f822020-09-09 14:18:53 -0400496 case Statement::Kind::kInlineMarker:
Ethan Nicholase6592142020-09-08 10:22:09 -0400497 case Statement::Kind::kNop:
John Stiles44e96be2020-08-31 13:16:04 -0400498 return statement.clone();
Ethan Nicholase6592142020-09-08 10:22:09 -0400499 case Statement::Kind::kReturn: {
John Stiles44e96be2020-08-31 13:16:04 -0400500 const ReturnStatement& r = statement.as<ReturnStatement>();
Ethan Nicholas2a4952d2020-10-08 15:35:56 -0400501 if (r.expression()) {
John Stilese41b4ee2020-09-28 12:28:16 -0400502 SkASSERT(resultExpr);
John Stilesa5f3c312020-09-22 12:05:16 -0400503 auto assignment =
504 std::make_unique<ExpressionStatement>(std::make_unique<BinaryExpression>(
505 offset,
John Stilese41b4ee2020-09-28 12:28:16 -0400506 clone_with_ref_kind(*resultExpr, VariableReference::kWrite_RefKind),
John Stilesa5f3c312020-09-22 12:05:16 -0400507 Token::Kind::TK_EQ,
Ethan Nicholas2a4952d2020-10-08 15:35:56 -0400508 expr(r.expression()),
John Stilese41b4ee2020-09-28 12:28:16 -0400509 &resultExpr->type()));
John Stiles44e96be2020-08-31 13:16:04 -0400510 if (haveEarlyReturns) {
511 std::vector<std::unique_ptr<Statement>> block;
512 block.push_back(std::move(assignment));
513 block.emplace_back(new BreakStatement(offset));
514 return std::make_unique<Block>(offset, std::move(block), /*symbols=*/nullptr,
515 /*isScope=*/true);
516 } else {
517 return std::move(assignment);
518 }
519 } else {
520 if (haveEarlyReturns) {
521 return std::make_unique<BreakStatement>(offset);
522 } else {
523 return std::make_unique<Nop>();
524 }
525 }
526 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400527 case Statement::Kind::kSwitch: {
John Stiles44e96be2020-08-31 13:16:04 -0400528 const SwitchStatement& ss = statement.as<SwitchStatement>();
529 std::vector<std::unique_ptr<SwitchCase>> cases;
530 for (const auto& sc : ss.fCases) {
531 cases.emplace_back(new SwitchCase(offset, expr(sc->fValue),
532 stmts(sc->fStatements)));
533 }
534 return std::make_unique<SwitchStatement>(offset, ss.fIsStatic, expr(ss.fValue),
535 std::move(cases), ss.fSymbols);
536 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400537 case Statement::Kind::kVarDeclaration: {
John Stiles44e96be2020-08-31 13:16:04 -0400538 const VarDeclaration& decl = statement.as<VarDeclaration>();
539 std::vector<std::unique_ptr<Expression>> sizes;
540 for (const auto& size : decl.fSizes) {
541 sizes.push_back(expr(size));
542 }
543 std::unique_ptr<Expression> initialValue = expr(decl.fValue);
544 const Variable* old = decl.fVar;
John Stilesc75abb82020-09-14 18:24:12 -0400545 // We assign unique names to inlined variables--scopes hide most of the problems in this
546 // regard, but see `InlinerAvoidsVariableNameOverlap` for a counterexample where unique
547 // names are important.
548 auto name = std::make_unique<String>(
Ethan Nicholase2c49992020-10-05 11:49:11 -0400549 this->uniqueNameForInlineVar(String(old->name()), symbolTableForStatement));
John Stiles44e96be2020-08-31 13:16:04 -0400550 const String* namePtr = symbolTableForStatement->takeOwnershipOfString(std::move(name));
Brian Osmanc0213602020-10-06 14:43:32 -0400551 const Type* baseTypePtr = copy_if_needed(&decl.fBaseType, *symbolTableForStatement);
Ethan Nicholas30d30222020-09-11 12:27:26 -0400552 const Type* typePtr = copy_if_needed(&old->type(), *symbolTableForStatement);
John Stiles44e96be2020-08-31 13:16:04 -0400553 const Variable* clone = symbolTableForStatement->takeOwnershipOfSymbol(
554 std::make_unique<Variable>(offset,
Ethan Nicholas041fd0a2020-10-07 16:42:04 -0400555 old->modifiersHandle(),
John Stiles44e96be2020-08-31 13:16:04 -0400556 namePtr->c_str(),
Ethan Nicholas30d30222020-09-11 12:27:26 -0400557 typePtr,
Brian Osman3887a012020-09-30 13:22:27 -0400558 isBuiltinCode,
Ethan Nicholas041fd0a2020-10-07 16:42:04 -0400559 old->storage(),
John Stiles44e96be2020-08-31 13:16:04 -0400560 initialValue.get()));
John Stilese41b4ee2020-09-28 12:28:16 -0400561 (*varMap)[old] = std::make_unique<VariableReference>(offset, clone);
Brian Osmanc0213602020-10-06 14:43:32 -0400562 return std::make_unique<VarDeclaration>(clone, baseTypePtr, std::move(sizes),
John Stiles44e96be2020-08-31 13:16:04 -0400563 std::move(initialValue));
564 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400565 case Statement::Kind::kWhile: {
John Stiles44e96be2020-08-31 13:16:04 -0400566 const WhileStatement& w = statement.as<WhileStatement>();
Ethan Nicholas2a4952d2020-10-08 15:35:56 -0400567 return std::make_unique<WhileStatement>(offset, expr(w.test()), stmt(w.statement()));
John Stiles44e96be2020-08-31 13:16:04 -0400568 }
569 default:
570 SkASSERT(false);
571 return nullptr;
572 }
573}
574
John Stiles6eadf132020-09-08 10:16:10 -0400575Inliner::InlinedCall Inliner::inlineCall(FunctionCall* call,
Brian Osman3887a012020-09-30 13:22:27 -0400576 SymbolTable* symbolTableForCall,
577 const FunctionDeclaration* caller) {
John Stiles44e96be2020-08-31 13:16:04 -0400578 // Inlining is more complicated here than in a typical compiler, because we have to have a
579 // high-level IR and can't just drop statements into the middle of an expression or even use
580 // gotos.
581 //
582 // Since we can't insert statements into an expression, we run the inline function as extra
583 // statements before the statement we're currently processing, relying on a lack of execution
584 // order guarantees. Since we can't use gotos (which are normally used to replace return
585 // statements), we wrap the whole function in a loop and use break statements to jump to the
586 // end.
587 SkASSERT(fSettings);
588 SkASSERT(fContext);
589 SkASSERT(call);
Ethan Nicholased84b732020-10-08 11:45:44 -0400590 SkASSERT(this->isSafeToInline(call->function().definition()));
John Stiles44e96be2020-08-31 13:16:04 -0400591
Ethan Nicholas0dec9922020-10-05 15:51:52 -0400592 std::vector<std::unique_ptr<Expression>>& arguments = call->arguments();
John Stiles6eadf132020-09-08 10:16:10 -0400593 const int offset = call->fOffset;
Ethan Nicholased84b732020-10-08 11:45:44 -0400594 const FunctionDefinition& function = *call->function().definition();
John Stiles6eadf132020-09-08 10:16:10 -0400595 const bool hasEarlyReturn = has_early_return(function);
596
John Stiles44e96be2020-08-31 13:16:04 -0400597 InlinedCall inlinedCall;
John Stiles6eadf132020-09-08 10:16:10 -0400598 inlinedCall.fInlinedBody = std::make_unique<Block>(offset,
599 std::vector<std::unique_ptr<Statement>>{},
600 /*symbols=*/nullptr,
601 /*isScope=*/false);
John Stiles98c1f822020-09-09 14:18:53 -0400602
Ethan Nicholas7bd60432020-09-25 14:31:59 -0400603 Block& inlinedBody = *inlinedCall.fInlinedBody;
604 inlinedBody.children().reserve(1 + // Inline marker
605 1 + // Result variable
606 arguments.size() + // Function arguments (passing in)
John Stilese41b4ee2020-09-28 12:28:16 -0400607 arguments.size() + // Function arguments (copy out-params back)
608 1); // Inlined code (Block or do-while loop)
John Stiles98c1f822020-09-09 14:18:53 -0400609
Ethan Nicholas0dec9922020-10-05 15:51:52 -0400610 inlinedBody.children().push_back(std::make_unique<InlineMarker>(call->function()));
John Stiles44e96be2020-08-31 13:16:04 -0400611
John Stilese41b4ee2020-09-28 12:28:16 -0400612 auto makeInlineVar =
613 [&](const String& baseName, const Type* type, Modifiers modifiers,
614 std::unique_ptr<Expression>* initialValue) -> std::unique_ptr<Expression> {
John Stilesa003e812020-09-11 09:43:49 -0400615 // $floatLiteral or $intLiteral aren't real types that we can use for scratch variables, so
616 // replace them if they ever appear here. If this happens, we likely forgot to coerce a type
617 // somewhere during compilation.
618 if (type == fContext->fFloatLiteral_Type.get()) {
John Stilesd2be5c52020-09-11 14:58:06 -0400619 SkDEBUGFAIL("found a $floatLiteral type while inlining");
John Stilesa003e812020-09-11 09:43:49 -0400620 type = fContext->fFloat_Type.get();
621 } else if (type == fContext->fIntLiteral_Type.get()) {
John Stilesd2be5c52020-09-11 14:58:06 -0400622 SkDEBUGFAIL("found an $intLiteral type while inlining");
John Stilesa003e812020-09-11 09:43:49 -0400623 type = fContext->fInt_Type.get();
624 }
625
John Stilesc75abb82020-09-14 18:24:12 -0400626 // Provide our new variable with a unique name, and add it to our symbol table.
627 String uniqueName = this->uniqueNameForInlineVar(baseName, symbolTableForCall);
John Stilescf936f92020-08-31 17:18:45 -0400628 const String* namePtr = symbolTableForCall->takeOwnershipOfString(
629 std::make_unique<String>(std::move(uniqueName)));
John Stiles44e96be2020-08-31 13:16:04 -0400630 StringFragment nameFrag{namePtr->c_str(), namePtr->length()};
631
632 // Add our new variable to the symbol table.
John Stilesb8cc6652020-10-08 09:12:07 -0400633 const Variable* variableSymbol = symbolTableForCall->add(std::make_unique<Variable>(
634 /*offset=*/-1, fModifiers->handle(Modifiers()),
Ethan Nicholased84b732020-10-08 11:45:44 -0400635 nameFrag, type, caller->isBuiltin(),
John Stilesb8cc6652020-10-08 09:12:07 -0400636 Variable::kLocal_Storage, initialValue->get()));
John Stiles44e96be2020-08-31 13:16:04 -0400637
638 // Prepare the variable declaration (taking extra care with `out` params to not clobber any
639 // initial value).
Brian Osmanc0213602020-10-06 14:43:32 -0400640 std::unique_ptr<Statement> variable;
John Stiles44e96be2020-08-31 13:16:04 -0400641 if (initialValue && (modifiers.fFlags & Modifiers::kOut_Flag)) {
Brian Osmanc0213602020-10-06 14:43:32 -0400642 variable = std::make_unique<VarDeclaration>(
643 variableSymbol, type, /*sizes=*/std::vector<std::unique_ptr<Expression>>{},
644 (*initialValue)->clone());
John Stiles44e96be2020-08-31 13:16:04 -0400645 } else {
Brian Osmanc0213602020-10-06 14:43:32 -0400646 variable = std::make_unique<VarDeclaration>(
647 variableSymbol, type, /*sizes=*/std::vector<std::unique_ptr<Expression>>{},
648 std::move(*initialValue));
John Stiles44e96be2020-08-31 13:16:04 -0400649 }
650
651 // Add the new variable-declaration statement to our block of extra statements.
Brian Osmanc0213602020-10-06 14:43:32 -0400652 inlinedBody.children().push_back(std::move(variable));
John Stiles44e96be2020-08-31 13:16:04 -0400653
John Stilese41b4ee2020-09-28 12:28:16 -0400654 return std::make_unique<VariableReference>(offset, variableSymbol);
John Stiles44e96be2020-08-31 13:16:04 -0400655 };
656
657 // Create a variable to hold the result in the extra statements (excepting void).
John Stilese41b4ee2020-09-28 12:28:16 -0400658 std::unique_ptr<Expression> resultExpr;
Ethan Nicholased84b732020-10-08 11:45:44 -0400659 if (function.fDeclaration.returnType() != *fContext->fVoid_Type) {
John Stiles44e96be2020-08-31 13:16:04 -0400660 std::unique_ptr<Expression> noInitialValue;
Ethan Nicholase2c49992020-10-05 11:49:11 -0400661 resultExpr = makeInlineVar(String(function.fDeclaration.name()),
Ethan Nicholased84b732020-10-08 11:45:44 -0400662 &function.fDeclaration.returnType(),
John Stilese41b4ee2020-09-28 12:28:16 -0400663 Modifiers{}, &noInitialValue);
664 }
John Stiles44e96be2020-08-31 13:16:04 -0400665
666 // Create variables in the extra statements to hold the arguments, and assign the arguments to
667 // them.
668 VariableRewriteMap varMap;
John Stilese41b4ee2020-09-28 12:28:16 -0400669 std::vector<int> argsToCopyBack;
John Stiles44e96be2020-08-31 13:16:04 -0400670 for (int i = 0; i < (int) arguments.size(); ++i) {
Ethan Nicholased84b732020-10-08 11:45:44 -0400671 const Variable* param = function.fDeclaration.parameters()[i];
Ethan Nicholas041fd0a2020-10-07 16:42:04 -0400672 bool isOutParam = param->modifiers().fFlags & Modifiers::kOut_Flag;
John Stiles44e96be2020-08-31 13:16:04 -0400673
John Stiles44733aa2020-09-29 17:42:23 -0400674 // If this argument can be inlined trivially (e.g. a swizzle, or a constant array index)...
675 if (is_trivial_argument(*arguments[i])) {
John Stilese41b4ee2020-09-28 12:28:16 -0400676 // ... and it's an `out` param, or it isn't written to within the inline function...
677 if (isOutParam || !Analysis::StatementWritesToVariable(*function.fBody, *param)) {
John Stilesf201af82020-09-29 16:57:55 -0400678 // ... we don't need to copy it at all! We can just use the existing expression.
679 varMap[param] = arguments[i]->clone();
John Stiles44e96be2020-08-31 13:16:04 -0400680 continue;
681 }
682 }
683
John Stilese41b4ee2020-09-28 12:28:16 -0400684 if (isOutParam) {
685 argsToCopyBack.push_back(i);
686 }
687
Ethan Nicholase2c49992020-10-05 11:49:11 -0400688 varMap[param] = makeInlineVar(String(param->name()), &arguments[i]->type(),
Ethan Nicholas041fd0a2020-10-07 16:42:04 -0400689 param->modifiers(), &arguments[i]);
John Stiles44e96be2020-08-31 13:16:04 -0400690 }
691
692 const Block& body = function.fBody->as<Block>();
John Stiles44e96be2020-08-31 13:16:04 -0400693 auto inlineBlock = std::make_unique<Block>(offset, std::vector<std::unique_ptr<Statement>>{});
Ethan Nicholas7bd60432020-09-25 14:31:59 -0400694 inlineBlock->children().reserve(body.children().size());
695 for (const std::unique_ptr<Statement>& stmt : body.children()) {
Brian Osman3887a012020-09-30 13:22:27 -0400696 inlineBlock->children().push_back(this->inlineStatement(offset, &varMap, symbolTableForCall,
697 resultExpr.get(), hasEarlyReturn,
Ethan Nicholased84b732020-10-08 11:45:44 -0400698 *stmt, caller->isBuiltin()));
John Stiles44e96be2020-08-31 13:16:04 -0400699 }
700 if (hasEarlyReturn) {
701 // Since we output to backends that don't have a goto statement (which would normally be
702 // used to perform an early return), we fake it by wrapping the function in a
703 // do { } while (false); and then use break statements to jump to the end in order to
704 // emulate a goto.
Ethan Nicholas7bd60432020-09-25 14:31:59 -0400705 inlinedBody.children().push_back(std::make_unique<DoStatement>(
John Stiles44e96be2020-08-31 13:16:04 -0400706 /*offset=*/-1,
707 std::move(inlineBlock),
708 std::make_unique<BoolLiteral>(*fContext, offset, /*value=*/false)));
709 } else {
John Stiles6eadf132020-09-08 10:16:10 -0400710 // No early returns, so we can just dump the code in. We still need to keep the block so we
711 // don't get name conflicts with locals.
Ethan Nicholas7bd60432020-09-25 14:31:59 -0400712 inlinedBody.children().push_back(std::move(inlineBlock));
John Stiles44e96be2020-08-31 13:16:04 -0400713 }
714
John Stilese41b4ee2020-09-28 12:28:16 -0400715 // Copy back the values of `out` parameters into their real destinations.
716 for (int i : argsToCopyBack) {
Ethan Nicholased84b732020-10-08 11:45:44 -0400717 const Variable* p = function.fDeclaration.parameters()[i];
John Stilese41b4ee2020-09-28 12:28:16 -0400718 SkASSERT(varMap.find(p) != varMap.end());
719 inlinedBody.children().push_back(
720 std::make_unique<ExpressionStatement>(std::make_unique<BinaryExpression>(
721 offset,
722 clone_with_ref_kind(*arguments[i], VariableReference::kWrite_RefKind),
723 Token::Kind::TK_EQ,
724 std::move(varMap[p]),
725 &arguments[i]->type())));
John Stiles44e96be2020-08-31 13:16:04 -0400726 }
727
John Stilese41b4ee2020-09-28 12:28:16 -0400728 if (resultExpr != nullptr) {
729 // Return our result variable as our replacement expression.
Ethan Nicholas78686922020-10-08 06:46:27 -0400730 SkASSERT(resultExpr->as<VariableReference>().refKind() == VariableReference::kRead_RefKind);
John Stilese41b4ee2020-09-28 12:28:16 -0400731 inlinedCall.fReplacementExpr = std::move(resultExpr);
John Stiles44e96be2020-08-31 13:16:04 -0400732 } else {
733 // It's a void function, so it doesn't actually result in anything, but we have to return
734 // something non-null as a standin.
Ethan Nicholas041fd0a2020-10-07 16:42:04 -0400735 inlinedCall.fReplacementExpr = std::make_unique<BoolLiteral>(*fContext,
736 offset,
John Stiles44e96be2020-08-31 13:16:04 -0400737 /*value=*/false);
738 }
739
John Stiles44e96be2020-08-31 13:16:04 -0400740 return inlinedCall;
741}
742
John Stiles2d7973a2020-10-02 15:01:03 -0400743bool Inliner::isSafeToInline(const FunctionDefinition* functionDef) {
John Stiles44e96be2020-08-31 13:16:04 -0400744 SkASSERT(fSettings);
745
John Stiles2d7973a2020-10-02 15:01:03 -0400746 if (functionDef == nullptr) {
John Stiles44e96be2020-08-31 13:16:04 -0400747 // Can't inline something if we don't actually have its definition.
748 return false;
749 }
John Stiles2d7973a2020-10-02 15:01:03 -0400750
John Stiles44e96be2020-08-31 13:16:04 -0400751 if (!fSettings->fCaps || !fSettings->fCaps->canUseDoLoops()) {
752 // We don't have do-while loops. We use do-while loops to simulate early returns, so we
753 // can't inline functions that have an early return.
John Stiles2d7973a2020-10-02 15:01:03 -0400754 bool hasEarlyReturn = has_early_return(*functionDef);
John Stiles44e96be2020-08-31 13:16:04 -0400755
756 // If we didn't detect an early return, there shouldn't be any returns in breakable
757 // constructs either.
John Stiles2d7973a2020-10-02 15:01:03 -0400758 SkASSERT(hasEarlyReturn || count_returns_in_breakable_constructs(*functionDef) == 0);
John Stiles44e96be2020-08-31 13:16:04 -0400759 return !hasEarlyReturn;
760 }
761 // We have do-while loops, but we don't have any mechanism to simulate early returns within a
762 // breakable construct (switch/for/do/while), so we can't inline if there's a return inside one.
John Stiles2d7973a2020-10-02 15:01:03 -0400763 bool hasReturnInBreakableConstruct = (count_returns_in_breakable_constructs(*functionDef) > 0);
John Stiles44e96be2020-08-31 13:16:04 -0400764
765 // If we detected returns in breakable constructs, we should also detect an early return.
John Stiles2d7973a2020-10-02 15:01:03 -0400766 SkASSERT(!hasReturnInBreakableConstruct || has_early_return(*functionDef));
John Stiles44e96be2020-08-31 13:16:04 -0400767 return !hasReturnInBreakableConstruct;
768}
769
John Stiles2d7973a2020-10-02 15:01:03 -0400770// A candidate function for inlining, containing everything that `inlineCall` needs.
771struct InlineCandidate {
772 SymbolTable* fSymbols; // the SymbolTable of the candidate
773 std::unique_ptr<Statement>* fParentStmt; // the parent Statement of the enclosing stmt
774 std::unique_ptr<Statement>* fEnclosingStmt; // the Statement containing the candidate
775 std::unique_ptr<Expression>* fCandidateExpr; // the candidate FunctionCall to be inlined
776 FunctionDefinition* fEnclosingFunction; // the Function containing the candidate
777 bool fIsLargeFunction; // does candidate exceed the inline threshold?
778};
John Stiles93442622020-09-11 12:11:27 -0400779
John Stiles2d7973a2020-10-02 15:01:03 -0400780struct InlineCandidateList {
781 std::vector<InlineCandidate> fCandidates;
782};
783
784class InlineCandidateAnalyzer {
John Stiles70957c82020-10-02 16:42:10 -0400785public:
786 // A list of all the inlining candidates we found during analysis.
787 InlineCandidateList* fCandidateList;
John Stiles2d7973a2020-10-02 15:01:03 -0400788
John Stiles70957c82020-10-02 16:42:10 -0400789 // A stack of the symbol tables; since most nodes don't have one, expected to be shallower than
790 // the enclosing-statement stack.
791 std::vector<SymbolTable*> fSymbolTableStack;
792 // A stack of "enclosing" statements--these would be suitable for the inliner to use for adding
793 // new instructions. Not all statements are suitable (e.g. a for-loop's initializer). The
794 // inliner might replace a statement with a block containing the statement.
795 std::vector<std::unique_ptr<Statement>*> fEnclosingStmtStack;
796 // The function that we're currently processing (i.e. inlining into).
797 FunctionDefinition* fEnclosingFunction = nullptr;
John Stiles93442622020-09-11 12:11:27 -0400798
John Stiles70957c82020-10-02 16:42:10 -0400799 void visit(Program& program, InlineCandidateList* candidateList) {
800 fCandidateList = candidateList;
801 fSymbolTableStack.push_back(program.fSymbols.get());
John Stiles93442622020-09-11 12:11:27 -0400802
Brian Osman1179fcf2020-10-08 16:04:40 -0400803 for (const auto& pe : program.elements()) {
804 this->visitProgramElement(pe.get());
John Stiles93442622020-09-11 12:11:27 -0400805 }
806
John Stiles70957c82020-10-02 16:42:10 -0400807 fSymbolTableStack.pop_back();
808 fCandidateList = nullptr;
809 }
810
811 void visitProgramElement(ProgramElement* pe) {
812 switch (pe->kind()) {
813 case ProgramElement::Kind::kFunction: {
814 FunctionDefinition& funcDef = pe->as<FunctionDefinition>();
815 fEnclosingFunction = &funcDef;
816 this->visitStatement(&funcDef.fBody);
817 break;
John Stiles93442622020-09-11 12:11:27 -0400818 }
John Stiles70957c82020-10-02 16:42:10 -0400819 default:
820 // The inliner can't operate outside of a function's scope.
821 break;
822 }
823 }
824
825 void visitStatement(std::unique_ptr<Statement>* stmt,
826 bool isViableAsEnclosingStatement = true) {
827 if (!*stmt) {
828 return;
John Stiles93442622020-09-11 12:11:27 -0400829 }
830
John Stiles70957c82020-10-02 16:42:10 -0400831 size_t oldEnclosingStmtStackSize = fEnclosingStmtStack.size();
832 size_t oldSymbolStackSize = fSymbolTableStack.size();
John Stiles93442622020-09-11 12:11:27 -0400833
John Stiles70957c82020-10-02 16:42:10 -0400834 if (isViableAsEnclosingStatement) {
835 fEnclosingStmtStack.push_back(stmt);
John Stiles93442622020-09-11 12:11:27 -0400836 }
837
John Stiles70957c82020-10-02 16:42:10 -0400838 switch ((*stmt)->kind()) {
839 case Statement::Kind::kBreak:
840 case Statement::Kind::kContinue:
841 case Statement::Kind::kDiscard:
842 case Statement::Kind::kInlineMarker:
843 case Statement::Kind::kNop:
844 break;
845
846 case Statement::Kind::kBlock: {
847 Block& block = (*stmt)->as<Block>();
848 if (block.symbolTable()) {
849 fSymbolTableStack.push_back(block.symbolTable().get());
850 }
851
852 for (std::unique_ptr<Statement>& stmt : block.children()) {
853 this->visitStatement(&stmt);
854 }
855 break;
John Stiles93442622020-09-11 12:11:27 -0400856 }
John Stiles70957c82020-10-02 16:42:10 -0400857 case Statement::Kind::kDo: {
858 DoStatement& doStmt = (*stmt)->as<DoStatement>();
859 // The loop body is a candidate for inlining.
860 this->visitStatement(&doStmt.statement());
861 // The inliner isn't smart enough to inline the test-expression for a do-while
862 // loop at this time. There are two limitations:
863 // - We would need to insert the inlined-body block at the very end of the do-
864 // statement's inner fStatement. We don't support that today, but it's doable.
865 // - We cannot inline the test expression if the loop uses `continue` anywhere; that
866 // would skip over the inlined block that evaluates the test expression. There
867 // isn't a good fix for this--any workaround would be more complex than the cost
868 // of a function call. However, loops that don't use `continue` would still be
869 // viable candidates for inlining.
870 break;
John Stiles93442622020-09-11 12:11:27 -0400871 }
John Stiles70957c82020-10-02 16:42:10 -0400872 case Statement::Kind::kExpression: {
873 ExpressionStatement& expr = (*stmt)->as<ExpressionStatement>();
874 this->visitExpression(&expr.expression());
875 break;
876 }
877 case Statement::Kind::kFor: {
878 ForStatement& forStmt = (*stmt)->as<ForStatement>();
Ethan Nicholas0d31ed52020-10-05 14:47:09 -0400879 if (forStmt.symbols()) {
880 fSymbolTableStack.push_back(forStmt.symbols().get());
John Stiles70957c82020-10-02 16:42:10 -0400881 }
882
883 // The initializer and loop body are candidates for inlining.
Ethan Nicholas0d31ed52020-10-05 14:47:09 -0400884 this->visitStatement(&forStmt.initializer(),
John Stiles70957c82020-10-02 16:42:10 -0400885 /*isViableAsEnclosingStatement=*/false);
Ethan Nicholas0d31ed52020-10-05 14:47:09 -0400886 this->visitStatement(&forStmt.statement());
John Stiles70957c82020-10-02 16:42:10 -0400887
888 // The inliner isn't smart enough to inline the test- or increment-expressions
889 // of a for loop loop at this time. There are a handful of limitations:
890 // - We would need to insert the test-expression block at the very beginning of the
891 // for-loop's inner fStatement, and the increment-expression block at the very
892 // end. We don't support that today, but it's doable.
893 // - The for-loop's built-in test-expression would need to be dropped entirely,
894 // and the loop would be halted via a break statement at the end of the inlined
895 // test-expression. This is again something we don't support today, but it could
896 // be implemented.
897 // - We cannot inline the increment-expression if the loop uses `continue` anywhere;
898 // that would skip over the inlined block that evaluates the increment expression.
899 // There isn't a good fix for this--any workaround would be more complex than the
900 // cost of a function call. However, loops that don't use `continue` would still
901 // be viable candidates for increment-expression inlining.
902 break;
903 }
904 case Statement::Kind::kIf: {
905 IfStatement& ifStmt = (*stmt)->as<IfStatement>();
Ethan Nicholas8c44eca2020-10-07 16:47:09 -0400906 this->visitExpression(&ifStmt.test());
907 this->visitStatement(&ifStmt.ifTrue());
908 this->visitStatement(&ifStmt.ifFalse());
John Stiles70957c82020-10-02 16:42:10 -0400909 break;
910 }
911 case Statement::Kind::kReturn: {
912 ReturnStatement& returnStmt = (*stmt)->as<ReturnStatement>();
Ethan Nicholas2a4952d2020-10-08 15:35:56 -0400913 this->visitExpression(&returnStmt.expression());
John Stiles70957c82020-10-02 16:42:10 -0400914 break;
915 }
916 case Statement::Kind::kSwitch: {
917 SwitchStatement& switchStmt = (*stmt)->as<SwitchStatement>();
918 if (switchStmt.fSymbols) {
919 fSymbolTableStack.push_back(switchStmt.fSymbols.get());
920 }
921
922 this->visitExpression(&switchStmt.fValue);
923 for (std::unique_ptr<SwitchCase>& switchCase : switchStmt.fCases) {
924 // The switch-case's fValue cannot be a FunctionCall; skip it.
925 for (std::unique_ptr<Statement>& caseBlock : switchCase->fStatements) {
926 this->visitStatement(&caseBlock);
927 }
928 }
929 break;
930 }
931 case Statement::Kind::kVarDeclaration: {
932 VarDeclaration& varDeclStmt = (*stmt)->as<VarDeclaration>();
933 // Don't need to scan the declaration's sizes; those are always IntLiterals.
934 this->visitExpression(&varDeclStmt.fValue);
935 break;
936 }
John Stiles70957c82020-10-02 16:42:10 -0400937 case Statement::Kind::kWhile: {
938 WhileStatement& whileStmt = (*stmt)->as<WhileStatement>();
939 // The loop body is a candidate for inlining.
Ethan Nicholas2a4952d2020-10-08 15:35:56 -0400940 this->visitStatement(&whileStmt.statement());
John Stiles70957c82020-10-02 16:42:10 -0400941 // The inliner isn't smart enough to inline the test-expression for a while loop at
942 // this time. There are two limitations:
943 // - We would need to insert the inlined-body block at the very beginning of the
944 // while loop's inner fStatement. We don't support that today, but it's doable.
945 // - The while-loop's built-in test-expression would need to be replaced with a
946 // `true` BoolLiteral, and the loop would be halted via a break statement at the
947 // end of the inlined test-expression. This is again something we don't support
948 // today, but it could be implemented.
949 break;
950 }
951 default:
952 SkUNREACHABLE;
John Stiles93442622020-09-11 12:11:27 -0400953 }
954
John Stiles70957c82020-10-02 16:42:10 -0400955 // Pop our symbol and enclosing-statement stacks.
956 fSymbolTableStack.resize(oldSymbolStackSize);
957 fEnclosingStmtStack.resize(oldEnclosingStmtStackSize);
958 }
959
960 void visitExpression(std::unique_ptr<Expression>* expr) {
961 if (!*expr) {
962 return;
John Stiles93442622020-09-11 12:11:27 -0400963 }
John Stiles70957c82020-10-02 16:42:10 -0400964
965 switch ((*expr)->kind()) {
966 case Expression::Kind::kBoolLiteral:
967 case Expression::Kind::kDefined:
968 case Expression::Kind::kExternalValue:
969 case Expression::Kind::kFieldAccess:
970 case Expression::Kind::kFloatLiteral:
971 case Expression::Kind::kFunctionReference:
972 case Expression::Kind::kIntLiteral:
973 case Expression::Kind::kNullLiteral:
974 case Expression::Kind::kSetting:
975 case Expression::Kind::kTypeReference:
976 case Expression::Kind::kVariableReference:
977 // Nothing to scan here.
978 break;
979
980 case Expression::Kind::kBinary: {
981 BinaryExpression& binaryExpr = (*expr)->as<BinaryExpression>();
982 this->visitExpression(&binaryExpr.leftPointer());
983
984 // Logical-and and logical-or binary expressions do not inline the right side,
985 // because that would invalidate short-circuiting. That is, when evaluating
986 // expressions like these:
987 // (false && x()) // always false
988 // (true || y()) // always true
989 // It is illegal for side-effects from x() or y() to occur. The simplest way to
990 // enforce that rule is to avoid inlining the right side entirely. However, it is
991 // safe for other types of binary expression to inline both sides.
992 Token::Kind op = binaryExpr.getOperator();
993 bool shortCircuitable = (op == Token::Kind::TK_LOGICALAND ||
994 op == Token::Kind::TK_LOGICALOR);
995 if (!shortCircuitable) {
996 this->visitExpression(&binaryExpr.rightPointer());
997 }
998 break;
999 }
1000 case Expression::Kind::kConstructor: {
1001 Constructor& constructorExpr = (*expr)->as<Constructor>();
1002 for (std::unique_ptr<Expression>& arg : constructorExpr.arguments()) {
1003 this->visitExpression(&arg);
1004 }
1005 break;
1006 }
1007 case Expression::Kind::kExternalFunctionCall: {
1008 ExternalFunctionCall& funcCallExpr = (*expr)->as<ExternalFunctionCall>();
1009 for (std::unique_ptr<Expression>& arg : funcCallExpr.arguments()) {
1010 this->visitExpression(&arg);
1011 }
1012 break;
1013 }
1014 case Expression::Kind::kFunctionCall: {
1015 FunctionCall& funcCallExpr = (*expr)->as<FunctionCall>();
Ethan Nicholas0dec9922020-10-05 15:51:52 -04001016 for (std::unique_ptr<Expression>& arg : funcCallExpr.arguments()) {
John Stiles70957c82020-10-02 16:42:10 -04001017 this->visitExpression(&arg);
1018 }
1019 this->addInlineCandidate(expr);
1020 break;
1021 }
1022 case Expression::Kind::kIndex:{
1023 IndexExpression& indexExpr = (*expr)->as<IndexExpression>();
Ethan Nicholas2a4952d2020-10-08 15:35:56 -04001024 this->visitExpression(&indexExpr.base());
1025 this->visitExpression(&indexExpr.index());
John Stiles70957c82020-10-02 16:42:10 -04001026 break;
1027 }
1028 case Expression::Kind::kPostfix: {
1029 PostfixExpression& postfixExpr = (*expr)->as<PostfixExpression>();
Ethan Nicholas444ccc62020-10-09 10:16:22 -04001030 this->visitExpression(&postfixExpr.operand());
John Stiles70957c82020-10-02 16:42:10 -04001031 break;
1032 }
1033 case Expression::Kind::kPrefix: {
1034 PrefixExpression& prefixExpr = (*expr)->as<PrefixExpression>();
Ethan Nicholas444ccc62020-10-09 10:16:22 -04001035 this->visitExpression(&prefixExpr.operand());
John Stiles70957c82020-10-02 16:42:10 -04001036 break;
1037 }
1038 case Expression::Kind::kSwizzle: {
1039 Swizzle& swizzleExpr = (*expr)->as<Swizzle>();
1040 this->visitExpression(&swizzleExpr.fBase);
1041 break;
1042 }
1043 case Expression::Kind::kTernary: {
1044 TernaryExpression& ternaryExpr = (*expr)->as<TernaryExpression>();
1045 // The test expression is a candidate for inlining.
Ethan Nicholasdd218162020-10-08 05:48:01 -04001046 this->visitExpression(&ternaryExpr.test());
John Stiles70957c82020-10-02 16:42:10 -04001047 // The true- and false-expressions cannot be inlined, because we are only allowed to
1048 // evaluate one side.
1049 break;
1050 }
1051 default:
1052 SkUNREACHABLE;
1053 }
1054 }
1055
1056 void addInlineCandidate(std::unique_ptr<Expression>* candidate) {
1057 fCandidateList->fCandidates.push_back(
1058 InlineCandidate{fSymbolTableStack.back(),
1059 find_parent_statement(fEnclosingStmtStack),
1060 fEnclosingStmtStack.back(),
1061 candidate,
1062 fEnclosingFunction,
1063 /*isLargeFunction=*/false});
1064 }
John Stiles2d7973a2020-10-02 15:01:03 -04001065};
John Stiles93442622020-09-11 12:11:27 -04001066
John Stiles2d7973a2020-10-02 15:01:03 -04001067bool Inliner::candidateCanBeInlined(const InlineCandidate& candidate, InlinabilityCache* cache) {
Ethan Nicholas0dec9922020-10-05 15:51:52 -04001068 const FunctionDeclaration& funcDecl =
1069 (*candidate.fCandidateExpr)->as<FunctionCall>().function();
John Stiles915a38c2020-09-14 09:38:13 -04001070
John Stiles2d7973a2020-10-02 15:01:03 -04001071 auto [iter, wasInserted] = cache->insert({&funcDecl, false});
1072 if (wasInserted) {
1073 // Recursion is forbidden here to avoid an infinite death spiral of inlining.
Ethan Nicholased84b732020-10-08 11:45:44 -04001074 iter->second = this->isSafeToInline(funcDecl.definition()) &&
John Stiles2d7973a2020-10-02 15:01:03 -04001075 !contains_recursive_call(funcDecl);
John Stiles93442622020-09-11 12:11:27 -04001076 }
1077
John Stiles2d7973a2020-10-02 15:01:03 -04001078 return iter->second;
1079}
1080
1081bool Inliner::isLargeFunction(const FunctionDefinition* functionDef) {
1082 return Analysis::NodeCountExceeds(*functionDef, fSettings->fInlineThreshold);
1083}
1084
1085bool Inliner::isLargeFunction(const InlineCandidate& candidate, LargeFunctionCache* cache) {
Ethan Nicholas0dec9922020-10-05 15:51:52 -04001086 const FunctionDeclaration& funcDecl =
1087 (*candidate.fCandidateExpr)->as<FunctionCall>().function();
John Stiles2d7973a2020-10-02 15:01:03 -04001088
1089 auto [iter, wasInserted] = cache->insert({&funcDecl, false});
1090 if (wasInserted) {
Ethan Nicholased84b732020-10-08 11:45:44 -04001091 iter->second = this->isLargeFunction(funcDecl.definition());
John Stiles2d7973a2020-10-02 15:01:03 -04001092 }
1093
1094 return iter->second;
1095}
1096
1097void Inliner::buildCandidateList(Program& program, InlineCandidateList* candidateList) {
1098 // This is structured much like a ProgramVisitor, but does not actually use ProgramVisitor.
1099 // The analyzer needs to keep track of the `unique_ptr<T>*` of statements and expressions so
1100 // that they can later be replaced, and ProgramVisitor does not provide this; it only provides a
1101 // `const T&`.
1102 InlineCandidateAnalyzer analyzer;
1103 analyzer.visit(program, candidateList);
1104
1105 // Remove candidates that are not safe to inline.
1106 std::vector<InlineCandidate>& candidates = candidateList->fCandidates;
1107 InlinabilityCache cache;
1108 candidates.erase(std::remove_if(candidates.begin(),
1109 candidates.end(),
1110 [&](const InlineCandidate& candidate) {
1111 return !this->candidateCanBeInlined(candidate, &cache);
1112 }),
1113 candidates.end());
1114
1115 // Determine whether each candidate function exceeds our inlining size threshold or not. These
1116 // can still be valid candidates if they are only called one time, so we don't remove them from
1117 // the candidate list, but they will not be inlined if they're called more than once.
1118 LargeFunctionCache largeFunctionCache;
1119 for (InlineCandidate& candidate : candidates) {
1120 candidate.fIsLargeFunction = this->isLargeFunction(candidate, &largeFunctionCache);
1121 }
1122}
1123
1124bool Inliner::analyze(Program& program) {
1125 InlineCandidateList candidateList;
1126 this->buildCandidateList(program, &candidateList);
1127
John Stiles915a38c2020-09-14 09:38:13 -04001128 // Inline the candidates where we've determined that it's safe to do so.
1129 std::unordered_set<const std::unique_ptr<Statement>*> enclosingStmtSet;
1130 bool madeChanges = false;
John Stiles2d7973a2020-10-02 15:01:03 -04001131 for (const InlineCandidate& candidate : candidateList.fCandidates) {
John Stiles915a38c2020-09-14 09:38:13 -04001132 FunctionCall& funcCall = (*candidate.fCandidateExpr)->as<FunctionCall>();
Ethan Nicholas0dec9922020-10-05 15:51:52 -04001133 const FunctionDeclaration* funcDecl = &funcCall.function();
John Stiles915a38c2020-09-14 09:38:13 -04001134
John Stiles2d7973a2020-10-02 15:01:03 -04001135 // If the function is large, not marked `inline`, and is called more than once, it's a bad
1136 // idea to inline it.
1137 if (candidate.fIsLargeFunction &&
Ethan Nicholased84b732020-10-08 11:45:44 -04001138 !(funcDecl->modifiers().fFlags & Modifiers::kInline_Flag) &&
1139 funcDecl->callCount() > 1) {
John Stiles915a38c2020-09-14 09:38:13 -04001140 continue;
1141 }
1142
1143 // Inlining two expressions using the same enclosing statement in the same inlining pass
1144 // does not work properly. If this happens, skip it; we'll get it in the next pass.
1145 auto [unusedIter, inserted] = enclosingStmtSet.insert(candidate.fEnclosingStmt);
1146 if (!inserted) {
1147 continue;
1148 }
1149
1150 // Convert the function call to its inlined equivalent.
Brian Osman3887a012020-09-30 13:22:27 -04001151 InlinedCall inlinedCall = this->inlineCall(&funcCall, candidate.fSymbols,
1152 &candidate.fEnclosingFunction->fDeclaration);
John Stiles915a38c2020-09-14 09:38:13 -04001153 if (inlinedCall.fInlinedBody) {
1154 // Ensure that the inlined body has a scope if it needs one.
John Stiles6d696082020-10-01 10:18:54 -04001155 this->ensureScopedBlocks(inlinedCall.fInlinedBody.get(), candidate.fParentStmt->get());
John Stiles915a38c2020-09-14 09:38:13 -04001156
1157 // Move the enclosing statement to the end of the unscoped Block containing the inlined
1158 // function, then replace the enclosing statement with that Block.
1159 // Before:
1160 // fInlinedBody = Block{ stmt1, stmt2, stmt3 }
1161 // fEnclosingStmt = stmt4
1162 // After:
1163 // fInlinedBody = null
1164 // fEnclosingStmt = Block{ stmt1, stmt2, stmt3, stmt4 }
Ethan Nicholas7bd60432020-09-25 14:31:59 -04001165 inlinedCall.fInlinedBody->children().push_back(std::move(*candidate.fEnclosingStmt));
John Stiles915a38c2020-09-14 09:38:13 -04001166 *candidate.fEnclosingStmt = std::move(inlinedCall.fInlinedBody);
1167 }
1168
1169 // Replace the candidate function call with our replacement expression.
1170 *candidate.fCandidateExpr = std::move(inlinedCall.fReplacementExpr);
1171 madeChanges = true;
1172
1173 // Note that nothing was destroyed except for the FunctionCall. All other nodes should
1174 // remain valid.
1175 }
1176
1177 return madeChanges;
John Stiles93442622020-09-11 12:11:27 -04001178}
1179
John Stiles44e96be2020-08-31 13:16:04 -04001180} // namespace SkSL