Hash :
382bf288
Author :
Date :
2020-12-24T23:56:39
Organize AST transforms per backend Most of the AST transforms are written as a workaround to an issue that affects a single backend. This change identifies such transforms and organizes them by backend. They are then only built if the respective backend is. Additionally, about half of the GL transforms are due to mac workarounds, including the large RewriteRowMajorMatrices transform. Mac-specific workarounds are additionally only built on said platform. This change reduces the ANGLE binary size: - 106KB in a Vulkan-only build on Linux - 27KB in a GL-only build on Android (60KB on Linux) Bug: chromium:1084580 Bug: chromium:1161513 Change-Id: I64b334332c0d4f848756c6538af0d8d96864c7e9 Reviewed-on: https://chromium-review.googlesource.com/c/angle/angle/+/2601346 Commit-Queue: Shahbaz Youssefi <syoussefi@chromium.org> Reviewed-by: Jamie Madill <jmadill@chromium.org> Reviewed-by: Tim Van Patten <timvp@google.com>
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//
// Copyright 2018 The ANGLE Project Authors. All rights reserved.
// Use of this source code is governed by a BSD-style license that can be
// found in the LICENSE file.
//
// NameEmbeddedUniformStructs: Gives nameless uniform struct internal names.
//
#include "compiler/translator/tree_ops/vulkan/NameEmbeddedUniformStructs.h"
#include "compiler/translator/SymbolTable.h"
#include "compiler/translator/tree_util/IntermTraverse.h"
namespace sh
{
namespace
{
// This traverser translates embedded uniform structs into a specifier and declaration.
// This makes the declarations easier to move into uniform blocks.
class Traverser : public TIntermTraverser
{
public:
explicit Traverser(TSymbolTable *symbolTable)
: TIntermTraverser(true, false, false, symbolTable)
{}
bool visitDeclaration(Visit visit, TIntermDeclaration *decl) override
{
ASSERT(visit == PreVisit);
if (!mInGlobalScope)
{
return false;
}
const TIntermSequence &sequence = *(decl->getSequence());
ASSERT(sequence.size() == 1);
TIntermTyped *declarator = sequence.front()->getAsTyped();
const TType &type = declarator->getType();
if (type.isStructSpecifier() && type.getQualifier() == EvqUniform)
{
const TStructure *structure = type.getStruct();
if (structure->symbolType() == SymbolType::Empty)
{
doReplacement(decl, declarator, structure);
}
}
return false;
}
private:
void doReplacement(TIntermDeclaration *decl,
TIntermTyped *declarator,
const TStructure *oldStructure)
{
// struct <structName> { ... };
TStructure *structure = new TStructure(mSymbolTable, kEmptyImmutableString,
&oldStructure->fields(), SymbolType::AngleInternal);
TType *namedType = new TType(structure, true);
namedType->setQualifier(EvqGlobal);
TVariable *structVariable =
new TVariable(mSymbolTable, kEmptyImmutableString, namedType, SymbolType::Empty);
TIntermSymbol *structDeclarator = new TIntermSymbol(structVariable);
TIntermDeclaration *structDeclaration = new TIntermDeclaration;
structDeclaration->appendDeclarator(structDeclarator);
TIntermSequence *newSequence = new TIntermSequence;
newSequence->push_back(structDeclaration);
// uniform <structName> <structUniformName>;
TIntermSymbol *asSymbol = declarator->getAsSymbolNode();
if (asSymbol && asSymbol->variable().symbolType() != SymbolType::Empty)
{
TIntermDeclaration *namedDecl = new TIntermDeclaration;
TType *uniformType = new TType(structure, false);
uniformType->setQualifier(EvqUniform);
TVariable *newVar = new TVariable(mSymbolTable, asSymbol->getName(), uniformType,
asSymbol->variable().symbolType());
TIntermSymbol *newSymbol = new TIntermSymbol(newVar);
namedDecl->appendDeclarator(newSymbol);
newSequence->push_back(namedDecl);
}
mMultiReplacements.emplace_back(getParentNode()->getAsBlock(), decl, *newSequence);
}
};
} // anonymous namespace
bool NameEmbeddedStructUniforms(TCompiler *compiler, TIntermBlock *root, TSymbolTable *symbolTable)
{
Traverser nameStructs(symbolTable);
root->traverse(&nameStructs);
return nameStructs.updateTree(compiler, root);
}
} // namespace sh