cb424d7448
verify-patch-sanity.py validates every active recipe .patch has internally- consistent hunk line counts — catching the 'malformed patch at line N' failure at commit/CI/preflight time instead of hours into a cook. This cycle hit that class three times (qtwaylandscanner, sddm, xwayland), each only discovered when cookbook tried to apply the patch. Running it across the repo found 29 latent malformed patches (validated against GNU patch: e.g. relibc/P3-sysv-ipc reproduces 'malformed patch at line 22'). They were harmless only because they sit in vendored recipes (baked, not re- applied) — but would fail on any version-bump re-derivation. --fix recounts the hunk headers (body untouched) and repaired all 29. Wired into build-preflight.sh (Phase 1.0D) and redbear-ci.yml, with a unit test (test-patch-sanity.sh). Skips archived/legacy trees and unvalidatable formats (empty placeholders, bare-@@ git hunks).
155 lines
5.2 KiB
C++
155 lines
5.2 KiB
C++
//===--- OpenCLOptions.cpp---------------------------------------*- C++ -*-===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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#include "clang/Basic/OpenCLOptions.h"
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#include "clang/Basic/Diagnostic.h"
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#include "clang/Basic/TargetInfo.h"
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namespace clang {
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// First feature in a pair requires the second one to be supported.
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static const std::pair<StringRef, StringRef> DependentFeaturesList[] = {
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{"__opencl_c_read_write_images", "__opencl_c_images"},
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{"__opencl_c_3d_image_writes", "__opencl_c_images"},
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{"__opencl_c_pipes", "__opencl_c_generic_address_space"},
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{"__opencl_c_device_enqueue", "__opencl_c_generic_address_space"},
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{"__opencl_c_device_enqueue", "__opencl_c_program_scope_global_variables"}};
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// Extensions and equivalent feature pairs.
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static const std::pair<StringRef, StringRef> FeatureExtensionMap[] = {
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{"cl_khr_fp64", "__opencl_c_fp64"},
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{"cl_khr_3d_image_writes", "__opencl_c_3d_image_writes"}};
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bool OpenCLOptions::isKnown(llvm::StringRef Ext) const {
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return OptMap.contains(Ext);
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}
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bool OpenCLOptions::isAvailableOption(llvm::StringRef Ext,
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const LangOptions &LO) const {
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if (!isKnown(Ext))
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return false;
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auto &OptInfo = OptMap.find(Ext)->getValue();
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if (OptInfo.isCoreIn(LO) || OptInfo.isOptionalCoreIn(LO))
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return isSupported(Ext, LO);
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return isEnabled(Ext);
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}
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bool OpenCLOptions::isEnabled(llvm::StringRef Ext) const {
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auto I = OptMap.find(Ext);
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return I != OptMap.end() && I->getValue().Enabled;
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}
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bool OpenCLOptions::isWithPragma(llvm::StringRef Ext) const {
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auto E = OptMap.find(Ext);
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return E != OptMap.end() && E->second.WithPragma;
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}
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bool OpenCLOptions::isSupported(llvm::StringRef Ext,
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const LangOptions &LO) const {
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auto I = OptMap.find(Ext);
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return I != OptMap.end() && I->getValue().Supported &&
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I->getValue().isAvailableIn(LO);
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}
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bool OpenCLOptions::isSupportedCore(llvm::StringRef Ext,
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const LangOptions &LO) const {
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auto I = OptMap.find(Ext);
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return I != OptMap.end() && I->getValue().Supported &&
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I->getValue().isCoreIn(LO);
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}
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bool OpenCLOptions::isSupportedOptionalCore(llvm::StringRef Ext,
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const LangOptions &LO) const {
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auto I = OptMap.find(Ext);
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return I != OptMap.end() && I->getValue().Supported &&
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I->getValue().isOptionalCoreIn(LO);
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}
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bool OpenCLOptions::isSupportedCoreOrOptionalCore(llvm::StringRef Ext,
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const LangOptions &LO) const {
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return isSupportedCore(Ext, LO) || isSupportedOptionalCore(Ext, LO);
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}
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bool OpenCLOptions::isSupportedExtension(llvm::StringRef Ext,
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const LangOptions &LO) const {
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auto I = OptMap.find(Ext);
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return I != OptMap.end() && I->getValue().Supported &&
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I->getValue().isAvailableIn(LO) &&
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!isSupportedCoreOrOptionalCore(Ext, LO);
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}
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void OpenCLOptions::enable(llvm::StringRef Ext, bool V) {
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OptMap[Ext].Enabled = V;
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}
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void OpenCLOptions::acceptsPragma(llvm::StringRef Ext, bool V) {
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OptMap[Ext].WithPragma = V;
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}
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void OpenCLOptions::support(llvm::StringRef Ext, bool V) {
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assert(!Ext.empty() && "Extension is empty.");
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assert(Ext[0] != '+' && Ext[0] != '-');
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OptMap[Ext].Supported = V;
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}
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OpenCLOptions::OpenCLOptions() {
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#define OPENCL_GENERIC_EXTENSION(Ext, ...) \
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OptMap.insert_or_assign(#Ext, OpenCLOptionInfo{__VA_ARGS__});
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#include "clang/Basic/OpenCLExtensions.def"
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}
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void OpenCLOptions::addSupport(const llvm::StringMap<bool> &FeaturesMap,
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const LangOptions &Opts) {
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for (const auto &F : FeaturesMap) {
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const auto &Name = F.getKey();
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if (F.getValue() && isKnown(Name) && OptMap[Name].isAvailableIn(Opts))
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support(Name);
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}
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}
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void OpenCLOptions::disableAll() {
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for (auto &Opt : OptMap)
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Opt.getValue().Enabled = false;
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}
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bool OpenCLOptions::diagnoseUnsupportedFeatureDependencies(
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const TargetInfo &TI, DiagnosticsEngine &Diags) {
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auto OpenCLFeaturesMap = TI.getSupportedOpenCLOpts();
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bool IsValid = true;
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for (auto &FeaturePair : DependentFeaturesList) {
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auto Feature = FeaturePair.first;
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auto Dep = FeaturePair.second;
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if (TI.hasFeatureEnabled(OpenCLFeaturesMap, Feature) &&
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!TI.hasFeatureEnabled(OpenCLFeaturesMap, Dep)) {
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IsValid = false;
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Diags.Report(diag::err_opencl_feature_requires) << Feature << Dep;
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}
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}
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return IsValid;
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}
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bool OpenCLOptions::diagnoseFeatureExtensionDifferences(
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const TargetInfo &TI, DiagnosticsEngine &Diags) {
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auto OpenCLFeaturesMap = TI.getSupportedOpenCLOpts();
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bool IsValid = true;
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for (auto &ExtAndFeat : FeatureExtensionMap)
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if (TI.hasFeatureEnabled(OpenCLFeaturesMap, ExtAndFeat.first) !=
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TI.hasFeatureEnabled(OpenCLFeaturesMap, ExtAndFeat.second)) {
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IsValid = false;
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Diags.Report(diag::err_opencl_extension_and_feature_differs)
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<< ExtAndFeat.first << ExtAndFeat.second;
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}
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return IsValid;
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}
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} // end namespace clang
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