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https://github.com/KhronosGroup/SPIRV-Tools
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d2938e4842
NFC. This just makes sure every file is formatted following the formatting definition in .clang-format. Re-formatted with: $ clang-format -i $(find source tools include -name '*.cpp') $ clang-format -i $(find source tools include -name '*.h')
188 lines
5.8 KiB
C++
188 lines
5.8 KiB
C++
// Copyright (c) 2016 Google Inc.
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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 "bin_to_dot.h"
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#include <cassert>
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#include <iostream>
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#include <utility>
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#include <vector>
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#include "assembly_grammar.h"
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#include "name_mapper.h"
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namespace {
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const char* kMergeStyle = "style=dashed";
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const char* kContinueStyle = "style=dotted";
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// A DotConverter can be used to dump the GraphViz "dot" graph for
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// a SPIR-V module.
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class DotConverter {
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public:
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DotConverter(libspirv::NameMapper name_mapper, std::iostream* out)
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: name_mapper_(std::move(name_mapper)), out_(*out) {}
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// Emits the graph preamble.
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void Begin() const {
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out_ << "digraph {\n";
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// Emit a simple legend
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out_ << "legend_merge_src [shape=plaintext, label=\"\"];\n"
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<< "legend_merge_dest [shape=plaintext, label=\"\"];\n"
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<< "legend_merge_src -> legend_merge_dest [label=\" merge\","
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<< kMergeStyle << "];\n"
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<< "legend_continue_src [shape=plaintext, label=\"\"];\n"
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<< "legend_continue_dest [shape=plaintext, label=\"\"];\n"
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<< "legend_continue_src -> legend_continue_dest [label=\" continue\","
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<< kContinueStyle << "];\n";
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}
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// Emits the graph postamble.
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void End() const { out_ << "}\n"; }
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// Emits the Dot commands for the given instruction.
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spv_result_t HandleInstruction(const spv_parsed_instruction_t& inst);
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private:
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// Ends processing for the current block, emitting its dot code.
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void FlushBlock(const std::vector<uint32_t>& successors);
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// The ID of the current functio, or 0 if outside of a function.
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uint32_t current_function_id_ = 0;
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// The ID of the current basic block, or 0 if outside of a block.
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uint32_t current_block_id_ = 0;
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// Have we completed processing for the entry block to this fuction?
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bool seen_function_entry_block_ = false;
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// The Id of the merge block for this block if it exists, or 0 otherwise.
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uint32_t merge_ = 0;
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// The Id of the continue target block for this block if it exists, or 0
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// otherwise.
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uint32_t continue_target_ = 0;
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// An object for mapping Ids to names.
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libspirv::NameMapper name_mapper_;
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// The output stream.
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std::ostream& out_;
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};
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spv_result_t DotConverter::HandleInstruction(
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const spv_parsed_instruction_t& inst) {
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switch (inst.opcode) {
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case SpvOpFunction:
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current_function_id_ = inst.result_id;
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seen_function_entry_block_ = false;
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break;
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case SpvOpFunctionEnd:
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current_function_id_ = 0;
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break;
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case SpvOpLabel:
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current_block_id_ = inst.result_id;
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break;
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case SpvOpBranch:
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FlushBlock({inst.words[1]});
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break;
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case SpvOpBranchConditional:
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FlushBlock({inst.words[2], inst.words[3]});
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break;
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case SpvOpSwitch: {
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std::vector<uint32_t> successors{inst.words[2]};
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for (size_t i = 3; i < inst.num_operands; i += 2) {
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successors.push_back(inst.words[inst.operands[i].offset]);
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}
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FlushBlock(successors);
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} break;
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case SpvOpKill:
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case SpvOpReturn:
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case SpvOpUnreachable:
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case SpvOpReturnValue:
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FlushBlock({});
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break;
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case SpvOpLoopMerge:
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merge_ = inst.words[1];
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continue_target_ = inst.words[2];
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break;
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case SpvOpSelectionMerge:
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merge_ = inst.words[1];
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break;
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default:
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break;
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}
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return SPV_SUCCESS;
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}
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void DotConverter::FlushBlock(const std::vector<uint32_t>& successors) {
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out_ << current_block_id_;
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if (!seen_function_entry_block_) {
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out_ << " [label=\"" << name_mapper_(current_block_id_) << "\nFn "
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<< name_mapper_(current_function_id_) << " entry\", shape=box];\n";
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} else {
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out_ << " [label=\"" << name_mapper_(current_block_id_) << "\"];\n";
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}
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for (auto successor : successors) {
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out_ << current_block_id_ << " -> " << successor << ";\n";
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}
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if (merge_) {
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out_ << current_block_id_ << " -> " << merge_ << " [" << kMergeStyle
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<< "];\n";
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}
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if (continue_target_) {
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out_ << current_block_id_ << " -> " << continue_target_ << " ["
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<< kContinueStyle << "];\n";
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}
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// Reset the book-keeping for a block.
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seen_function_entry_block_ = true;
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merge_ = 0;
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continue_target_ = 0;
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}
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spv_result_t HandleInstruction(
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void* user_data, const spv_parsed_instruction_t* parsed_instruction) {
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assert(user_data);
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auto converter = static_cast<DotConverter*>(user_data);
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return converter->HandleInstruction(*parsed_instruction);
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}
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} // anonymous namespace
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spv_result_t BinaryToDot(const spv_const_context context, const uint32_t* words,
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size_t num_words, std::iostream* out,
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spv_diagnostic* diagnostic) {
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// Invalid arguments return error codes, but don't necessarily generate
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// diagnostics. These are programmer errors, not user errors.
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if (!diagnostic) return SPV_ERROR_INVALID_DIAGNOSTIC;
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const libspirv::AssemblyGrammar grammar(context);
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if (!grammar.isValid()) return SPV_ERROR_INVALID_TABLE;
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libspirv::FriendlyNameMapper friendly_mapper(context, words, num_words);
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DotConverter converter(friendly_mapper.GetNameMapper(), out);
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converter.Begin();
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if (auto error = spvBinaryParse(context, &converter, words, num_words,
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nullptr, HandleInstruction, diagnostic)) {
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return error;
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}
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converter.End();
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return SPV_SUCCESS;
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}
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