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58226c6585
Step 1 in eliminating the 'code' type. Differential Revision: https://reviews.llvm.org/D91932
184 lines
6.0 KiB
C++
184 lines
6.0 KiB
C++
//===- llvm/unittest/TableGen/CodeExpanderTest.cpp - Tests ----------------===//
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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 "GlobalISel/CodeExpander.h"
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#include "GlobalISel/CodeExpansions.h"
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#include "llvm/Support/raw_ostream.h"
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#include "llvm/TableGen/Error.h"
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#include "gtest/gtest.h"
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using namespace llvm;
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static StringRef bufferize(StringRef Str) {
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std::unique_ptr<MemoryBuffer> Buffer =
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MemoryBuffer::getMemBufferCopy(Str, "TestBuffer");
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StringRef StrBufferRef = Buffer->getBuffer();
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SrcMgr.AddNewSourceBuffer(std::move(Buffer), SMLoc());
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return StrBufferRef;
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}
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class RAIIDiagnosticChecker {
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std::string EmittedDiags;
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raw_string_ostream OS;
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std::vector<SMDiagnostic> Expected;
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std::vector<SMDiagnostic> Received;
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public:
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RAIIDiagnosticChecker() : OS(EmittedDiags) {
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SrcMgr.setDiagHandler(handler, this);
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}
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~RAIIDiagnosticChecker() {
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SrcMgr.setDiagHandler(nullptr);
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EXPECT_EQ(Received.size(), Expected.size());
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for (unsigned i = 0; i < Received.size() && i < Expected.size(); ++i) {
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EXPECT_EQ(Received[i].getLoc(), Expected[i].getLoc());
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EXPECT_EQ(Received[i].getFilename(), Expected[i].getFilename());
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EXPECT_EQ(Received[i].getKind(), Expected[i].getKind());
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EXPECT_EQ(Received[i].getLineNo(), Expected[i].getLineNo());
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EXPECT_EQ(Received[i].getColumnNo(), Expected[i].getColumnNo());
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EXPECT_EQ(Received[i].getMessage(), Expected[i].getMessage());
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EXPECT_EQ(Received[i].getLineContents(), Expected[i].getLineContents());
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EXPECT_EQ(Received[i].getRanges(), Expected[i].getRanges());
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}
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if (testing::Test::HasFailure())
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errs() << "Emitted diagnostic:\n" << OS.str();
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}
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void expect(SMDiagnostic D) { Expected.push_back(D); }
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void diag(const SMDiagnostic &D) {
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Received.push_back(D);
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}
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static void handler(const SMDiagnostic &D, void *Context) {
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RAIIDiagnosticChecker *Self = static_cast<RAIIDiagnosticChecker *>(Context);
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Self->diag(D);
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SrcMgr.setDiagHandler(nullptr);
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SrcMgr.PrintMessage(Self->OS, D);
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SrcMgr.setDiagHandler(handler, Context);
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};
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};
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TEST(CodeExpander, NoExpansions) {
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std::string Result;
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raw_string_ostream OS(Result);
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CodeExpansions Expansions;
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RAIIDiagnosticChecker DiagChecker;
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CodeExpander("No expansions", Expansions, SMLoc(), false).emit(OS);
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EXPECT_EQ(OS.str(), "No expansions");
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}
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// Indentation is applied to all lines except the first
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TEST(CodeExpander, Indentation) {
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std::string Result;
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raw_string_ostream OS(Result);
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CodeExpansions Expansions;
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RAIIDiagnosticChecker DiagChecker;
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CodeExpander("No expansions\nsecond line\nthird line", Expansions, SMLoc(),
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false, " ")
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.emit(OS);
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EXPECT_EQ(OS.str(), "No expansions\n second line\n third line");
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}
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// \ is an escape character that removes special meanings from the next
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// character.
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TEST(CodeExpander, Escape) {
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std::string Result;
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raw_string_ostream OS(Result);
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CodeExpansions Expansions;
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RAIIDiagnosticChecker DiagChecker;
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CodeExpander("\\\\\\a\\$", Expansions, SMLoc(), false).emit(OS);
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EXPECT_EQ(OS.str(), "\\a$");
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}
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// $foo is not an expansion. It should warn though.
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TEST(CodeExpander, NotAnExpansion) {
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std::string Result;
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raw_string_ostream OS(Result);
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CodeExpansions Expansions;
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RAIIDiagnosticChecker DiagChecker;
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StringRef In = bufferize(" $foo");
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CodeExpander(" $foo", Expansions, SMLoc::getFromPointer(In.data()), false)
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.emit(OS);
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EXPECT_EQ(OS.str(), " $foo");
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DiagChecker.expect(SMDiagnostic(
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SrcMgr, SMLoc::getFromPointer(In.data()), "TestBuffer", 1, 0,
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SourceMgr::DK_Warning, "Assuming missing escape character: \\$", " $foo", {}));
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}
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// \$foo is not an expansion but shouldn't warn as it's using the escape.
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TEST(CodeExpander, EscapedNotAnExpansion) {
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std::string Result;
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raw_string_ostream OS(Result);
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CodeExpansions Expansions;
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RAIIDiagnosticChecker DiagChecker;
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CodeExpander("\\$foo", Expansions, SMLoc(), false).emit(OS);
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EXPECT_EQ(OS.str(), "$foo");
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}
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// \${foo is not an expansion but shouldn't warn as it's using the escape.
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TEST(CodeExpander, EscapedUnterminatedExpansion) {
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std::string Result;
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raw_string_ostream OS(Result);
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CodeExpansions Expansions;
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RAIIDiagnosticChecker DiagChecker;
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CodeExpander("\\${foo", Expansions, SMLoc(), false).emit(OS);
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EXPECT_EQ(OS.str(), "${foo");
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}
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// \${foo is not an expansion but shouldn't warn as it's using the escape.
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TEST(CodeExpander, EscapedExpansion) {
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std::string Result;
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raw_string_ostream OS(Result);
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CodeExpansions Expansions;
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RAIIDiagnosticChecker DiagChecker;
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CodeExpander("\\${foo}", Expansions, SMLoc(), false).emit(OS);
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EXPECT_EQ(OS.str(), "${foo}");
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}
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// ${foo} is an undefined expansion and should error.
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TEST(CodeExpander, UndefinedExpansion) {
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std::string Result;
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raw_string_ostream OS(Result);
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CodeExpansions Expansions;
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Expansions.declare("bar", "expansion");
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RAIIDiagnosticChecker DiagChecker;
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CodeExpander("${foo}${bar}", Expansions, SMLoc(), false).emit(OS);
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EXPECT_EQ(OS.str(), "expansion");
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DiagChecker.expect(
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SMDiagnostic(SrcMgr, SMLoc(), "<unknown>", 0, -1, SourceMgr::DK_Error,
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"Attempt to expand an undeclared variable 'foo'", "", {}));
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}
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// ${bar is an unterminated expansion. Warn and implicitly terminate it.
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TEST(CodeExpander, UnterminatedExpansion) {
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std::string Result;
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raw_string_ostream OS(Result);
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CodeExpansions Expansions;
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Expansions.declare("bar", "expansion");
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RAIIDiagnosticChecker DiagChecker;
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StringRef In = bufferize(" ${bar");
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CodeExpander(In, Expansions, SMLoc::getFromPointer(In.data()), false)
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.emit(OS);
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EXPECT_EQ(OS.str(), " expansion");
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DiagChecker.expect(SMDiagnostic(SrcMgr, SMLoc::getFromPointer(In.data()),
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"TestBuffer", 1, 0, SourceMgr::DK_Warning,
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"Unterminated expansion '${bar'", " ${bar", {}));
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}
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