2019-05-01 11:14:15 -07:00
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//===- Diagnostics.cpp - MLIR Diagnostics ---------------------------------===//
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//
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// Copyright 2019 The MLIR 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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// =============================================================================
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#include "mlir/IR/Diagnostics.h"
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#include "mlir/IR/Location.h"
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2019-05-03 10:01:01 -07:00
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#include "mlir/IR/Types.h"
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2019-05-01 11:14:15 -07:00
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#include "llvm/ADT/Twine.h"
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#include "llvm/Support/Mutex.h"
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#include "llvm/Support/raw_ostream.h"
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using namespace mlir;
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using namespace mlir::detail;
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2019-05-03 10:01:01 -07:00
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//===----------------------------------------------------------------------===//
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// DiagnosticArgument
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//===----------------------------------------------------------------------===//
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// Construct from a Type.
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DiagnosticArgument::DiagnosticArgument(Type val)
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: kind(DiagnosticArgumentKind::Type),
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opaqueVal(reinterpret_cast<intptr_t>(val.getAsOpaquePointer())) {}
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/// Returns this argument as a Type.
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Type DiagnosticArgument::getAsType() const {
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assert(getKind() == DiagnosticArgumentKind::Type);
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return Type::getFromOpaquePointer(reinterpret_cast<const void *>(opaqueVal));
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}
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/// Outputs this argument to a stream.
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void DiagnosticArgument::print(raw_ostream &os) const {
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switch (kind) {
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case DiagnosticArgumentKind::Integer:
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os << getAsInteger();
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break;
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case DiagnosticArgumentKind::String:
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os << getAsString();
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break;
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case DiagnosticArgumentKind::Type:
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os << getAsType();
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break;
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case DiagnosticArgumentKind::Unsigned:
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os << getAsUnsigned();
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break;
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}
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}
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//===----------------------------------------------------------------------===//
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// Diagnostic
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//===----------------------------------------------------------------------===//
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/// Outputs this diagnostic to a stream.
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void Diagnostic::print(raw_ostream &os) const {
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for (auto &arg : getArguments())
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arg.print(os);
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}
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/// Convert the diagnostic to a string.
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std::string Diagnostic::str() const {
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std::string str;
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llvm::raw_string_ostream os(str);
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print(os);
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return os.str();
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}
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//===----------------------------------------------------------------------===//
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// InFlightDiagnostic
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//===----------------------------------------------------------------------===//
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/// Allow an inflight diagnostic to be converted to 'failure', otherwise
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/// 'success' if this is an empty diagnostic.
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InFlightDiagnostic::operator LogicalResult() const {
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return failure(isInFlight());
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}
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/// Reports the diagnostic to the engine.
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void InFlightDiagnostic::report() {
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if (isInFlight()) {
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owner->emit(*impl);
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impl.reset();
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}
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}
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//===----------------------------------------------------------------------===//
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// DiagnosticEngineImpl
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//===----------------------------------------------------------------------===//
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namespace mlir {
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namespace detail {
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struct DiagnosticEngineImpl {
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/// Emit a diagnostic using the registered issue handle if present, or with
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/// the default behavior if not.
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void emit(Location loc, StringRef msg, DiagnosticSeverity severity);
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/// A mutex to ensure that diagnostics emission is thread-safe.
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llvm::sys::SmartMutex<true> mutex;
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/// This is the handler to use to report diagnostics, or null if not
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/// registered.
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DiagnosticEngine::HandlerTy handler;
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};
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} // namespace detail
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} // namespace mlir
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/// Emit a diagnostic using the registered issue handle if present, or with
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/// the default behavior if not.
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void DiagnosticEngineImpl::emit(Location loc, StringRef msg,
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DiagnosticSeverity severity) {
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// Lock access to the handler.
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llvm::sys::SmartScopedLock<true> lock(mutex);
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// If we had a handler registered, emit the diagnostic using it.
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if (handler) {
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// TODO(b/131756158) FusedLoc should be handled by the diagnostic handler
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// instead of here.
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// Check to see if we are emitting a diagnostic on a fused location.
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if (auto fusedLoc = loc.dyn_cast<FusedLoc>()) {
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auto fusedLocs = fusedLoc->getLocations();
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// Emit the original diagnostic with the first location in the fused list.
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emit(fusedLocs.front(), msg, severity);
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// Emit the rest of the locations as notes.
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for (Location subLoc : fusedLocs.drop_front())
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emit(subLoc, "fused from here", DiagnosticSeverity::Note);
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return;
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}
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2019-05-03 10:01:01 -07:00
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return handler(loc, msg, severity);
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}
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// Otherwise, if this is an error we emit it to stderr.
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if (severity != DiagnosticSeverity::Error)
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return;
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auto &os = llvm::errs();
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if (!loc.isa<UnknownLoc>())
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os << loc << ": ";
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os << "error: ";
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// The default behavior for errors is to emit them to stderr.
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os << msg << '\n';
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os.flush();
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}
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//===----------------------------------------------------------------------===//
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// DiagnosticEngine
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//===----------------------------------------------------------------------===//
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DiagnosticEngine::DiagnosticEngine() : impl(new DiagnosticEngineImpl()) {}
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DiagnosticEngine::~DiagnosticEngine() {}
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/// Set the diagnostic handler for this engine. The handler is passed
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/// location information if present (nullptr if not) along with a message and
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/// a severity that indicates whether this is an error, warning, etc. Note
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/// that this replaces any existing handler.
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void DiagnosticEngine::setHandler(const HandlerTy &handler) {
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llvm::sys::SmartScopedLock<true> lock(impl->mutex);
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impl->handler = handler;
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}
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/// Return the current diagnostic handler, or null if none is present.
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auto DiagnosticEngine::getHandler() -> HandlerTy {
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llvm::sys::SmartScopedLock<true> lock(impl->mutex);
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return impl->handler;
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}
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/// Emit a diagnostic using the registered issue handler if present, or with
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/// the default behavior if not.
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void DiagnosticEngine::emit(const Diagnostic &diag) {
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impl->emit(diag.getLocation(), diag.str(), diag.getSeverity());
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}
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