#include "source/opt/inline_opaque_pass.h"
#include <utility>
namespace spvtools {
namespace opt {
namespace {
constexpr uint32_t kTypePointerTypeIdInIdx = 1;
}
bool InlineOpaquePass::IsOpaqueType(uint32_t typeId) {
const Instruction* typeInst = get_def_use_mgr()->GetDef(typeId);
switch (typeInst->opcode()) {
case spv::Op::OpTypeSampler:
case spv::Op::OpTypeImage:
case spv::Op::OpTypeSampledImage:
return true;
case spv::Op::OpTypePointer:
return IsOpaqueType(
typeInst->GetSingleWordInOperand(kTypePointerTypeIdInIdx));
default:
break;
}
if (typeInst->opcode() != spv::Op::OpTypeStruct) return false;
return !typeInst->WhileEachInId([this](const uint32_t* tid) {
if (IsOpaqueType(*tid)) return false;
return true;
});
}
bool InlineOpaquePass::HasOpaqueArgsOrReturn(const Instruction* callInst) {
if (IsOpaqueType(callInst->type_id())) return true;
int icnt = 0;
return !callInst->WhileEachInId([&icnt, this](const uint32_t* iid) {
if (icnt > 0) {
const Instruction* argInst = get_def_use_mgr()->GetDef(*iid);
if (IsOpaqueType(argInst->type_id())) return false;
}
++icnt;
return true;
});
}
Pass::Status InlineOpaquePass::InlineOpaque(Function* func) {
bool modified = false;
for (auto bi = func->begin(); bi != func->end(); ++bi) {
for (auto ii = bi->begin(); ii != bi->end();) {
if (IsInlinableFunctionCall(&*ii) && HasOpaqueArgsOrReturn(&*ii)) {
std::vector<std::unique_ptr<BasicBlock>> newBlocks;
std::vector<std::unique_ptr<Instruction>> newVars;
if (!GenInlineCode(&newBlocks, &newVars, ii, bi)) {
return Status::Failure;
}
if (newBlocks.size() > 1) UpdateSucceedingPhis(newBlocks);
bi = bi.Erase();
bi = bi.InsertBefore(&newBlocks);
if (newVars.size() > 0)
func->begin()->begin().InsertBefore(std::move(newVars));
ii = bi->begin();
modified = true;
} else {
++ii;
}
}
}
return (modified ? Status::SuccessWithChange : Status::SuccessWithoutChange);
}
void InlineOpaquePass::Initialize() { InitializeInline(); }
Pass::Status InlineOpaquePass::ProcessImpl() {
Status status = Status::SuccessWithoutChange;
ProcessFunction pfn = [&status, this](Function* fp) {
status = CombineStatus(status, InlineOpaque(fp));
return false;
};
context()->ProcessReachableCallTree(pfn);
return status;
}
InlineOpaquePass::InlineOpaquePass() = default;
Pass::Status InlineOpaquePass::Process() {
Initialize();
return ProcessImpl();
}
} }