422 lines
12 KiB
C++
422 lines
12 KiB
C++
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//===- CoverageExporterJson.cpp - Code coverage export --------------------===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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//
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// This file implements export of code coverage data to JSON.
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//
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//===----------------------------------------------------------------------===//
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//===----------------------------------------------------------------------===//
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//
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// The json code coverage export follows the following format
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// Root: dict => Root Element containing metadata
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// -- Data: array => Homogeneous array of one or more export objects
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// ---- Export: dict => Json representation of one CoverageMapping
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// ------ Files: array => List of objects describing coverage for files
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// -------- File: dict => Coverage for a single file
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// ---------- Segments: array => List of Segments contained in the file
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// ------------ Segment: dict => Describes a segment of the file with a counter
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// ---------- Expansions: array => List of expansion records
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// ------------ Expansion: dict => Object that descibes a single expansion
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// -------------- CountedRegion: dict => The region to be expanded
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// -------------- TargetRegions: array => List of Regions in the expansion
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// ---------------- CountedRegion: dict => Single Region in the expansion
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// ---------- Summary: dict => Object summarizing the coverage for this file
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// ------------ LineCoverage: dict => Object summarizing line coverage
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// ------------ FunctionCoverage: dict => Object summarizing function coverage
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// ------------ RegionCoverage: dict => Object summarizing region coverage
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// ------ Functions: array => List of objects describing coverage for functions
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// -------- Function: dict => Coverage info for a single function
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// ---------- Filenames: array => List of filenames that the function relates to
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// ---- Summary: dict => Object summarizing the coverage for the entire binary
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// ------ LineCoverage: dict => Object summarizing line coverage
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// ------ FunctionCoverage: dict => Object summarizing function coverage
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// ------ InstantiationCoverage: dict => Object summarizing inst. coverage
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// ------ RegionCoverage: dict => Object summarizing region coverage
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//
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//===----------------------------------------------------------------------===//
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#include "CoverageReport.h"
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#include "CoverageSummaryInfo.h"
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#include "CoverageViewOptions.h"
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#include "llvm/ProfileData/Coverage/CoverageMapping.h"
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#include <stack>
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/// \brief The semantic version combined as a string.
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#define LLVM_COVERAGE_EXPORT_JSON_STR "2.0.0"
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/// \brief Unique type identifier for JSON coverage export.
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#define LLVM_COVERAGE_EXPORT_JSON_TYPE_STR "llvm.coverage.json.export"
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using namespace llvm;
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using namespace coverage;
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class CoverageExporterJson {
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/// \brief Output stream to print JSON to.
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raw_ostream &OS;
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/// \brief The full CoverageMapping object to export.
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const CoverageMapping &Coverage;
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/// \brief States that the JSON rendering machine can be in.
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enum JsonState { None, NonEmptyElement, EmptyElement };
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/// \brief Tracks state of the JSON output.
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std::stack<JsonState> State;
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/// \brief Emit a serialized scalar.
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void emitSerialized(const int64_t Value) { OS << Value; }
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/// \brief Emit a serialized string.
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void emitSerialized(const std::string &Value) {
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OS << "\"";
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for (char C : Value) {
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if (C != '\\')
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OS << C;
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else
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OS << "\\\\";
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}
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OS << "\"";
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}
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/// \brief Emit a comma if there is a previous element to delimit.
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void emitComma() {
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if (State.top() == JsonState::NonEmptyElement) {
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OS << ",";
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} else if (State.top() == JsonState::EmptyElement) {
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State.pop();
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assert((State.size() >= 1) && "Closed too many JSON elements");
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State.push(JsonState::NonEmptyElement);
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}
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}
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/// \brief Emit a starting dictionary/object character.
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void emitDictStart() {
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emitComma();
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State.push(JsonState::EmptyElement);
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OS << "{";
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}
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/// \brief Emit a dictionary/object key but no value.
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void emitDictKey(const std::string &Key) {
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emitComma();
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emitSerialized(Key);
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OS << ":";
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State.pop();
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assert((State.size() >= 1) && "Closed too many JSON elements");
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// We do not want to emit a comma after this key.
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State.push(JsonState::EmptyElement);
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}
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/// \brief Emit a dictionary/object key/value pair.
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template <typename V>
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void emitDictElement(const std::string &Key, const V &Value) {
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emitComma();
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emitSerialized(Key);
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OS << ":";
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emitSerialized(Value);
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}
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/// \brief Emit a closing dictionary/object character.
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void emitDictEnd() {
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State.pop();
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assert((State.size() >= 1) && "Closed too many JSON elements");
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OS << "}";
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}
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/// \brief Emit a starting array character.
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void emitArrayStart() {
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emitComma();
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State.push(JsonState::EmptyElement);
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OS << "[";
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}
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/// \brief Emit an array element.
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template <typename V> void emitArrayElement(const V &Value) {
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emitComma();
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emitSerialized(Value);
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}
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/// \brief emit a closing array character.
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void emitArrayEnd() {
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State.pop();
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assert((State.size() >= 1) && "Closed too many JSON elements");
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OS << "]";
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}
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/// \brief Render the CoverageMapping object.
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void renderRoot() {
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// Start Root of JSON object.
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emitDictStart();
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emitDictElement("version", LLVM_COVERAGE_EXPORT_JSON_STR);
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emitDictElement("type", LLVM_COVERAGE_EXPORT_JSON_TYPE_STR);
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emitDictKey("data");
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// Start List of Exports.
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emitArrayStart();
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// Start Export.
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emitDictStart();
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emitDictKey("files");
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FileCoverageSummary Totals = FileCoverageSummary("Totals");
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std::vector<std::string> SourceFiles;
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for (StringRef SF : Coverage.getUniqueSourceFiles())
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SourceFiles.emplace_back(SF);
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auto FileReports =
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CoverageReport::prepareFileReports(Coverage, Totals, SourceFiles);
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renderFiles(SourceFiles, FileReports);
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emitDictKey("functions");
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renderFunctions(Coverage.getCoveredFunctions());
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emitDictKey("totals");
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renderSummary(Totals);
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// End Export.
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emitDictEnd();
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// End List of Exports.
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emitArrayEnd();
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// End Root of JSON Object.
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emitDictEnd();
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assert((State.top() == JsonState::None) &&
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"All Elements In JSON were Closed");
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}
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/// \brief Render an array of all the given functions.
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void
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renderFunctions(const iterator_range<FunctionRecordIterator> &Functions) {
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// Start List of Functions.
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emitArrayStart();
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for (const auto &Function : Functions) {
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// Start Function.
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emitDictStart();
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emitDictElement("name", Function.Name);
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emitDictElement("count", Function.ExecutionCount);
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emitDictKey("regions");
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renderRegions(Function.CountedRegions);
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emitDictKey("filenames");
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// Start Filenames for Function.
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emitArrayStart();
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for (const auto &FileName : Function.Filenames)
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emitArrayElement(FileName);
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// End Filenames for Function.
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emitArrayEnd();
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// End Function.
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emitDictEnd();
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}
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// End List of Functions.
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emitArrayEnd();
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}
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/// \brief Render an array of all the source files, also pass back a Summary.
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void renderFiles(ArrayRef<std::string> SourceFiles,
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ArrayRef<FileCoverageSummary> FileReports) {
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// Start List of Files.
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emitArrayStart();
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for (unsigned I = 0, E = SourceFiles.size(); I < E; ++I) {
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// Render the file.
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auto FileCoverage = Coverage.getCoverageForFile(SourceFiles[I]);
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renderFile(FileCoverage, FileReports[I]);
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}
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// End List of Files.
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emitArrayEnd();
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}
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/// \brief Render a single file.
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void renderFile(const CoverageData &FileCoverage,
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const FileCoverageSummary &FileReport) {
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// Start File.
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emitDictStart();
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emitDictElement("filename", FileCoverage.getFilename());
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emitDictKey("segments");
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// Start List of Segments.
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emitArrayStart();
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for (const auto &Segment : FileCoverage)
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renderSegment(Segment);
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// End List of Segments.
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emitArrayEnd();
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emitDictKey("expansions");
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// Start List of Expansions.
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emitArrayStart();
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for (const auto &Expansion : FileCoverage.getExpansions())
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renderExpansion(Expansion);
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// End List of Expansions.
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emitArrayEnd();
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emitDictKey("summary");
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renderSummary(FileReport);
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// End File.
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emitDictEnd();
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}
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/// \brief Render a CoverageSegment.
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void renderSegment(const CoverageSegment &Segment) {
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// Start Segment.
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emitArrayStart();
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emitArrayElement(Segment.Line);
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emitArrayElement(Segment.Col);
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emitArrayElement(Segment.Count);
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emitArrayElement(Segment.HasCount);
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emitArrayElement(Segment.IsRegionEntry);
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// End Segment.
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emitArrayEnd();
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}
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/// \brief Render an ExpansionRecord.
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void renderExpansion(const ExpansionRecord &Expansion) {
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// Start Expansion.
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emitDictStart();
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// Mark the beginning and end of this expansion in the source file.
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emitDictKey("source_region");
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renderRegion(Expansion.Region);
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// Enumerate the coverage information for the expansion.
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emitDictKey("target_regions");
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renderRegions(Expansion.Function.CountedRegions);
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emitDictKey("filenames");
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// Start List of Filenames to map the fileIDs.
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emitArrayStart();
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for (const auto &Filename : Expansion.Function.Filenames)
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emitArrayElement(Filename);
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// End List of Filenames.
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emitArrayEnd();
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// End Expansion.
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emitDictEnd();
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}
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/// \brief Render a list of CountedRegions.
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void renderRegions(ArrayRef<CountedRegion> Regions) {
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// Start List of Regions.
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emitArrayStart();
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for (const auto &Region : Regions)
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renderRegion(Region);
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// End List of Regions.
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emitArrayEnd();
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}
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/// \brief Render a single CountedRegion.
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void renderRegion(const CountedRegion &Region) {
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// Start CountedRegion.
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emitArrayStart();
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emitArrayElement(Region.LineStart);
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emitArrayElement(Region.ColumnStart);
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emitArrayElement(Region.LineEnd);
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emitArrayElement(Region.ColumnEnd);
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emitArrayElement(Region.ExecutionCount);
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emitArrayElement(Region.FileID);
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emitArrayElement(Region.ExpandedFileID);
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emitArrayElement(Region.Kind);
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// End CountedRegion.
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emitArrayEnd();
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}
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/// \brief Render a FileCoverageSummary.
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void renderSummary(const FileCoverageSummary &Summary) {
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// Start Summary for the file.
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emitDictStart();
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emitDictKey("lines");
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// Start Line Coverage Summary.
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emitDictStart();
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emitDictElement("count", Summary.LineCoverage.NumLines);
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emitDictElement("covered", Summary.LineCoverage.Covered);
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emitDictElement("percent", Summary.LineCoverage.getPercentCovered());
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// End Line Coverage Summary.
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emitDictEnd();
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emitDictKey("functions");
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// Start Function Coverage Summary.
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emitDictStart();
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emitDictElement("count", Summary.FunctionCoverage.NumFunctions);
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emitDictElement("covered", Summary.FunctionCoverage.Executed);
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emitDictElement("percent", Summary.FunctionCoverage.getPercentCovered());
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// End Function Coverage Summary.
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emitDictEnd();
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emitDictKey("instantiations");
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// Start Instantiation Coverage Summary.
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emitDictStart();
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emitDictElement("count", Summary.InstantiationCoverage.NumFunctions);
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emitDictElement("covered", Summary.InstantiationCoverage.Executed);
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emitDictElement("percent",
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Summary.InstantiationCoverage.getPercentCovered());
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// End Function Coverage Summary.
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emitDictEnd();
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emitDictKey("regions");
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// Start Region Coverage Summary.
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emitDictStart();
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emitDictElement("count", Summary.RegionCoverage.NumRegions);
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emitDictElement("covered", Summary.RegionCoverage.Covered);
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emitDictElement("notcovered", Summary.RegionCoverage.NotCovered);
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emitDictElement("percent", Summary.RegionCoverage.getPercentCovered());
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// End Region Coverage Summary.
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emitDictEnd();
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// End Summary for the file.
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emitDictEnd();
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}
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public:
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CoverageExporterJson(const CoverageMapping &CoverageMapping, raw_ostream &OS)
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: OS(OS), Coverage(CoverageMapping) {
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State.push(JsonState::None);
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}
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/// \brief Print the CoverageMapping.
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void print() { renderRoot(); }
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};
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/// \brief Export the given CoverageMapping to a JSON Format.
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void exportCoverageDataToJson(const CoverageMapping &CoverageMapping,
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raw_ostream &OS) {
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auto Exporter = CoverageExporterJson(CoverageMapping, OS);
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Exporter.print();
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}
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