[ir][spirv-writer] Implement loop instructions
We have to invent a header block and use that as the target for the back-edge, and also make sure we always emit the continuing block with a back-edge even when it is unreachable. Bug: tint:1906 Change-Id: I1e66f5e7a54a01fbd7ac74865fa25d179a7ef5f5 Reviewed-on: https://dawn-review.googlesource.com/c/dawn/+/134561 Reviewed-by: Ben Clayton <bclayton@google.com> Commit-Queue: James Price <jrprice@google.com> Kokoro: Kokoro <noreply+kokoro@google.com>
This commit is contained in:
parent
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commit
0b82a3ba15
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@ -1968,6 +1968,7 @@ if (tint_build_unittests) {
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"writer/spirv/ir/generator_impl_ir_constant_test.cc",
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"writer/spirv/ir/generator_impl_ir_function_test.cc",
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"writer/spirv/ir/generator_impl_ir_if_test.cc",
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"writer/spirv/ir/generator_impl_ir_loop_test.cc",
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"writer/spirv/ir/generator_impl_ir_test.cc",
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"writer/spirv/ir/generator_impl_ir_type_test.cc",
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"writer/spirv/ir/generator_impl_ir_var_test.cc",
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@ -1258,6 +1258,7 @@ if(TINT_BUILD_TESTS)
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writer/spirv/ir/generator_impl_ir_constant_test.cc
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writer/spirv/ir/generator_impl_ir_function_test.cc
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writer/spirv/ir/generator_impl_ir_if_test.cc
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writer/spirv/ir/generator_impl_ir_loop_test.cc
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writer/spirv/ir/generator_impl_ir_test.cc
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writer/spirv/ir/generator_impl_ir_type_test.cc
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writer/spirv/ir/generator_impl_ir_var_test.cc
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@ -20,11 +20,16 @@
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#include "spirv/unified1/spirv.h"
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#include "src/tint/ir/binary.h"
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#include "src/tint/ir/block.h"
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#include "src/tint/ir/break_if.h"
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#include "src/tint/ir/builtin.h"
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#include "src/tint/ir/continue.h"
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#include "src/tint/ir/exit_if.h"
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#include "src/tint/ir/exit_loop.h"
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#include "src/tint/ir/if.h"
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#include "src/tint/ir/load.h"
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#include "src/tint/ir/loop.h"
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#include "src/tint/ir/module.h"
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#include "src/tint/ir/next_iteration.h"
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#include "src/tint/ir/return.h"
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#include "src/tint/ir/store.h"
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#include "src/tint/ir/transform/add_empty_entry_point.h"
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@ -334,6 +339,10 @@ void GeneratorImplIr::EmitBlock(const ir::Block* block) {
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[&](const ir::Binary* b) { return EmitBinary(b); },
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[&](const ir::Builtin* b) { return EmitBuiltin(b); },
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[&](const ir::Load* l) { return EmitLoad(l); },
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[&](const ir::Loop* l) {
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EmitLoop(l);
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return 0u;
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},
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[&](const ir::Store* s) {
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EmitStore(s);
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return 0u;
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@ -371,9 +380,26 @@ void GeneratorImplIr::EmitBranch(const ir::Branch* b) {
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}
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return;
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},
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[&](const ir::BreakIf* breakif) {
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current_function_.push_inst(spv::Op::OpBranchConditional,
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{
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Value(breakif->Condition()),
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Label(breakif->Loop()->Merge()),
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Label(breakif->Loop()->Start()),
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});
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},
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[&](const ir::Continue* cont) {
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current_function_.push_inst(spv::Op::OpBranch, {Label(cont->Loop()->Continuing())});
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},
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[&](const ir::ExitIf* if_) {
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current_function_.push_inst(spv::Op::OpBranch, {Label(if_->If()->Merge())});
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},
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[&](const ir::ExitLoop* loop) {
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current_function_.push_inst(spv::Op::OpBranch, {Label(loop->Loop()->Merge())});
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},
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[&](const ir::NextIteration* loop) {
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current_function_.push_inst(spv::Op::OpBranch, {Label(loop->Loop()->Start())});
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},
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[&](Default) {
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TINT_ICE(Writer, diagnostics_) << "unimplemented branch: " << b->TypeInfo().name;
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});
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@ -594,6 +620,37 @@ uint32_t GeneratorImplIr::EmitLoad(const ir::Load* load) {
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return id;
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}
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void GeneratorImplIr::EmitLoop(const ir::Loop* loop) {
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auto header_label = module_.NextId();
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auto body_label = Label(loop->Start());
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auto continuing_label = Label(loop->Continuing());
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auto merge_label = Label(loop->Merge());
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// Branch to and emit the loop header, which contains OpLoopMerge and OpBranch instructions.
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current_function_.push_inst(spv::Op::OpBranch, {header_label});
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current_function_.push_inst(spv::Op::OpLabel, {header_label});
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current_function_.push_inst(
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spv::Op::OpLoopMerge, {merge_label, continuing_label, U32Operand(SpvLoopControlMaskNone)});
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current_function_.push_inst(spv::Op::OpBranch, {body_label});
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// Emit the loop body.
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EmitBlock(loop->Start());
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// Emit the loop continuing block.
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// The back-edge needs to go to the loop header, so update the label for the start block.
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block_labels_.Replace(loop->Start(), header_label);
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if (loop->Continuing()->HasBranchTarget()) {
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EmitBlock(loop->Continuing());
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} else {
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// We still need to emit a continuing block with a back-edge, even if it is unreachable.
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current_function_.push_inst(spv::Op::OpLabel, {continuing_label});
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current_function_.push_inst(spv::Op::OpBranch, {header_label});
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}
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// Emit the loop merge block.
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EmitBlock(loop->Merge());
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}
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void GeneratorImplIr::EmitStore(const ir::Store* store) {
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current_function_.push_inst(spv::Op::OpStore, {Value(store->To()), Value(store->From())});
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}
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@ -36,6 +36,7 @@ class Builtin;
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class If;
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class Function;
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class Load;
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class Loop;
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class Module;
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class Store;
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class UserCall;
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@ -121,6 +122,10 @@ class GeneratorImplIr {
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/// @returns the result ID of the instruction
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uint32_t EmitLoad(const ir::Load* load);
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/// Emit a loop instruction.
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/// @param loop the loop instruction to emit
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void EmitLoop(const ir::Loop* loop);
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/// Emit a store instruction.
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/// @param store the store instruction to emit
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void EmitStore(const ir::Store* store);
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@ -0,0 +1,334 @@
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// Copyright 2023 The Tint Authors.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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#include "src/tint/writer/spirv/ir/test_helper_ir.h"
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using namespace tint::number_suffixes; // NOLINT
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namespace tint::writer::spirv {
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namespace {
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TEST_F(SpvGeneratorImplTest, Loop_BreakIf) {
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auto* func = b.CreateFunction("foo", mod.Types().void_());
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auto* loop = b.CreateLoop();
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loop->Start()->Instructions().Push(b.Continue(loop));
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loop->Continuing()->Instructions().Push(b.BreakIf(b.Constant(true), loop));
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loop->Merge()->Instructions().Push(b.Return(func));
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func->StartTarget()->Instructions().Push(loop);
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generator_.EmitFunction(func);
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EXPECT_EQ(DumpModule(generator_.Module()), R"(OpName %1 "foo"
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%2 = OpTypeVoid
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%3 = OpTypeFunction %2
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%10 = OpTypeBool
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%9 = OpConstantTrue %10
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%1 = OpFunction %2 None %3
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%4 = OpLabel
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OpBranch %5
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%5 = OpLabel
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OpLoopMerge %8 %7 None
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OpBranch %6
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%6 = OpLabel
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OpBranch %7
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%7 = OpLabel
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OpBranchConditional %9 %8 %5
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%8 = OpLabel
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OpReturn
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OpFunctionEnd
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)");
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}
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// Test that we still emit the continuing block with a back-edge, even when it is unreachable.
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TEST_F(SpvGeneratorImplTest, Loop_UnconditionalBreakInBody) {
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auto* func = b.CreateFunction("foo", mod.Types().void_());
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auto* loop = b.CreateLoop();
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loop->Start()->Instructions().Push(b.ExitLoop(loop));
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loop->Merge()->Instructions().Push(b.Return(func));
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func->StartTarget()->Instructions().Push(loop);
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generator_.EmitFunction(func);
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EXPECT_EQ(DumpModule(generator_.Module()), R"(OpName %1 "foo"
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%2 = OpTypeVoid
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%3 = OpTypeFunction %2
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%1 = OpFunction %2 None %3
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%4 = OpLabel
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OpBranch %5
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%5 = OpLabel
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OpLoopMerge %8 %7 None
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OpBranch %6
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%6 = OpLabel
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OpBranch %8
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%7 = OpLabel
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OpBranch %5
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%8 = OpLabel
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OpReturn
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OpFunctionEnd
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)");
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}
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TEST_F(SpvGeneratorImplTest, Loop_ConditionalBreakInBody) {
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auto* func = b.CreateFunction("foo", mod.Types().void_());
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auto* loop = b.CreateLoop();
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auto* cond_break = b.CreateIf(b.Constant(true));
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cond_break->True()->Instructions().Push(b.ExitLoop(loop));
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cond_break->False()->Instructions().Push(b.ExitIf(cond_break));
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cond_break->Merge()->Instructions().Push(b.Continue(loop));
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loop->Start()->Instructions().Push(cond_break);
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loop->Continuing()->Instructions().Push(b.NextIteration(loop));
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loop->Merge()->Instructions().Push(b.Return(func));
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func->StartTarget()->Instructions().Push(loop);
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generator_.EmitFunction(func);
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EXPECT_EQ(DumpModule(generator_.Module()), R"(OpName %1 "foo"
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%2 = OpTypeVoid
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%3 = OpTypeFunction %2
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%12 = OpTypeBool
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%11 = OpConstantTrue %12
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%1 = OpFunction %2 None %3
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%4 = OpLabel
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OpBranch %5
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%5 = OpLabel
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OpLoopMerge %8 %7 None
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OpBranch %6
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%6 = OpLabel
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OpSelectionMerge %9 None
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OpBranchConditional %11 %10 %9
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%10 = OpLabel
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OpBranch %8
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%9 = OpLabel
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OpBranch %7
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%7 = OpLabel
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OpBranch %5
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%8 = OpLabel
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OpReturn
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OpFunctionEnd
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)");
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}
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TEST_F(SpvGeneratorImplTest, Loop_ConditionalContinueInBody) {
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auto* func = b.CreateFunction("foo", mod.Types().void_());
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auto* loop = b.CreateLoop();
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auto* cond_break = b.CreateIf(b.Constant(true));
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cond_break->True()->Instructions().Push(b.Continue(loop));
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cond_break->False()->Instructions().Push(b.ExitIf(cond_break));
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cond_break->Merge()->Instructions().Push(b.ExitLoop(loop));
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loop->Start()->Instructions().Push(cond_break);
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loop->Continuing()->Instructions().Push(b.NextIteration(loop));
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loop->Merge()->Instructions().Push(b.Return(func));
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func->StartTarget()->Instructions().Push(loop);
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generator_.EmitFunction(func);
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EXPECT_EQ(DumpModule(generator_.Module()), R"(OpName %1 "foo"
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%2 = OpTypeVoid
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%3 = OpTypeFunction %2
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%12 = OpTypeBool
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%11 = OpConstantTrue %12
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%1 = OpFunction %2 None %3
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%4 = OpLabel
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OpBranch %5
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%5 = OpLabel
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OpLoopMerge %8 %7 None
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OpBranch %6
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%6 = OpLabel
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OpSelectionMerge %9 None
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OpBranchConditional %11 %10 %9
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%10 = OpLabel
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OpBranch %7
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%9 = OpLabel
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OpBranch %8
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%7 = OpLabel
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OpBranch %5
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%8 = OpLabel
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OpReturn
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OpFunctionEnd
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)");
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}
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// Test that we still emit the continuing block with a back-edge, and the merge block, even when
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// they are unreachable.
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TEST_F(SpvGeneratorImplTest, Loop_UnconditionalReturnInBody) {
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auto* func = b.CreateFunction("foo", mod.Types().void_());
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auto* loop = b.CreateLoop();
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loop->Start()->Instructions().Push(b.Return(func));
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func->StartTarget()->Instructions().Push(loop);
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generator_.EmitFunction(func);
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EXPECT_EQ(DumpModule(generator_.Module()), R"(OpName %1 "foo"
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%2 = OpTypeVoid
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%3 = OpTypeFunction %2
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%1 = OpFunction %2 None %3
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%4 = OpLabel
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OpBranch %5
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%5 = OpLabel
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OpLoopMerge %8 %7 None
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OpBranch %6
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%6 = OpLabel
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OpReturn
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%7 = OpLabel
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OpBranch %5
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%8 = OpLabel
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OpUnreachable
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OpFunctionEnd
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)");
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}
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TEST_F(SpvGeneratorImplTest, Loop_UseResultFromBodyInContinuing) {
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auto* func = b.CreateFunction("foo", mod.Types().void_());
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auto* loop = b.CreateLoop();
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auto* result = b.Equal(mod.Types().i32(), b.Constant(1_i), b.Constant(2_i));
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loop->Start()->Instructions().Push(result);
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loop->Continuing()->Instructions().Push(b.BreakIf(result, loop));
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loop->Merge()->Instructions().Push(b.Return(func));
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func->StartTarget()->Instructions().Push(loop);
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generator_.EmitFunction(func);
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EXPECT_EQ(DumpModule(generator_.Module()), R"(OpName %1 "foo"
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%2 = OpTypeVoid
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%3 = OpTypeFunction %2
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%10 = OpTypeInt 32 1
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%11 = OpConstant %10 1
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%12 = OpConstant %10 2
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%1 = OpFunction %2 None %3
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%4 = OpLabel
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OpBranch %5
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%5 = OpLabel
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OpLoopMerge %8 %7 None
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OpBranch %6
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%6 = OpLabel
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%9 = OpIEqual %10 %11 %12
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%7 = OpLabel
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OpBranchConditional %9 %8 %5
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%8 = OpLabel
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OpReturn
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OpFunctionEnd
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)");
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}
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TEST_F(SpvGeneratorImplTest, Loop_NestedLoopInBody) {
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auto* func = b.CreateFunction("foo", mod.Types().void_());
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auto* outer_loop = b.CreateLoop();
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auto* inner_loop = b.CreateLoop();
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inner_loop->Start()->Instructions().Push(b.ExitLoop(inner_loop));
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inner_loop->Continuing()->Instructions().Push(b.NextIteration(inner_loop));
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inner_loop->Merge()->Instructions().Push(b.Continue(outer_loop));
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outer_loop->Start()->Instructions().Push(inner_loop);
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outer_loop->Continuing()->Instructions().Push(b.BreakIf(b.Constant(true), outer_loop));
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outer_loop->Merge()->Instructions().Push(b.Return(func));
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func->StartTarget()->Instructions().Push(outer_loop);
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generator_.EmitFunction(func);
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EXPECT_EQ(DumpModule(generator_.Module()), R"(OpName %1 "foo"
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%2 = OpTypeVoid
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%3 = OpTypeFunction %2
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%14 = OpTypeBool
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%13 = OpConstantTrue %14
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%1 = OpFunction %2 None %3
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%4 = OpLabel
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OpBranch %5
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%5 = OpLabel
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OpLoopMerge %8 %7 None
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OpBranch %6
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%6 = OpLabel
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OpBranch %9
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%9 = OpLabel
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OpLoopMerge %12 %11 None
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OpBranch %10
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%10 = OpLabel
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OpBranch %12
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%11 = OpLabel
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OpBranch %9
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%12 = OpLabel
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OpBranch %7
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%7 = OpLabel
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OpBranchConditional %13 %8 %5
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%8 = OpLabel
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OpReturn
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OpFunctionEnd
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)");
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}
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TEST_F(SpvGeneratorImplTest, Loop_NestedLoopInContinuing) {
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auto* func = b.CreateFunction("foo", mod.Types().void_());
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auto* outer_loop = b.CreateLoop();
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auto* inner_loop = b.CreateLoop();
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inner_loop->Start()->Instructions().Push(b.Continue(inner_loop));
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inner_loop->Continuing()->Instructions().Push(b.BreakIf(b.Constant(true), inner_loop));
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inner_loop->Merge()->Instructions().Push(b.BreakIf(b.Constant(true), outer_loop));
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outer_loop->Start()->Instructions().Push(b.Continue(outer_loop));
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outer_loop->Continuing()->Instructions().Push(inner_loop);
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outer_loop->Merge()->Instructions().Push(b.Return(func));
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func->StartTarget()->Instructions().Push(outer_loop);
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generator_.EmitFunction(func);
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EXPECT_EQ(DumpModule(generator_.Module()), R"(OpName %1 "foo"
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%2 = OpTypeVoid
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%3 = OpTypeFunction %2
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%14 = OpTypeBool
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%13 = OpConstantTrue %14
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%1 = OpFunction %2 None %3
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%4 = OpLabel
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OpBranch %5
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%5 = OpLabel
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OpLoopMerge %8 %7 None
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OpBranch %6
|
||||
%6 = OpLabel
|
||||
OpBranch %7
|
||||
%7 = OpLabel
|
||||
OpBranch %9
|
||||
%9 = OpLabel
|
||||
OpLoopMerge %12 %11 None
|
||||
OpBranch %10
|
||||
%10 = OpLabel
|
||||
OpBranch %11
|
||||
%11 = OpLabel
|
||||
OpBranchConditional %13 %12 %9
|
||||
%12 = OpLabel
|
||||
OpBranchConditional %13 %8 %5
|
||||
%8 = OpLabel
|
||||
OpReturn
|
||||
OpFunctionEnd
|
||||
)");
|
||||
}
|
||||
|
||||
} // namespace
|
||||
} // namespace tint::writer::spirv
|
Loading…
Reference in New Issue