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rather than two callbacks. The asynchronous lookup API (which the synchronous lookup API wraps for convenience) used to take two callbacks: OnResolved (called once all requested symbols had an address assigned) and OnReady to be called once all requested symbols were safe to access). This patch updates the asynchronous lookup API to take a single 'OnComplete' callback and a required state (SymbolState) to determine when the callback should be made. This simplifies the common use case (where the client is interested in a specific state) and will generalize neatly as new states are introduced to track runtime initialization of symbols. Clients who were making use of both callbacks in a single query will now need to issue two queries (one for SymbolState::Resolved and another for SymbolState::Ready). Synchronous lookup API clients who were explicitly passing the WaitOnReady argument will now need neeed to pass a SymbolState instead (for 'WaitOnReady == true' use SymbolState::Ready, for 'WaitOnReady == false' use SymbolState::Resolved). Synchronous lookup API clients who were using default arugment values should see no change. llvm-svn: 362832
913 lines
33 KiB
C++
913 lines
33 KiB
C++
//===----------- CoreAPIsTest.cpp - Unit tests for Core ORC APIs ----------===//
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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 "OrcTestCommon.h"
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#include "llvm/Config/llvm-config.h"
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#include "llvm/ExecutionEngine/Orc/Core.h"
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#include "llvm/ExecutionEngine/Orc/OrcError.h"
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#include "llvm/Testing/Support/Error.h"
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#include <set>
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#include <thread>
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using namespace llvm;
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using namespace llvm::orc;
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class CoreAPIsStandardTest : public CoreAPIsBasedStandardTest {};
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namespace {
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TEST_F(CoreAPIsStandardTest, BasicSuccessfulLookup) {
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bool OnCompletionRun = false;
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auto OnCompletion = [&](Expected<SymbolMap> Result) {
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EXPECT_TRUE(!!Result) << "Resolution unexpectedly returned error";
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auto &Resolved = *Result;
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auto I = Resolved.find(Foo);
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EXPECT_NE(I, Resolved.end()) << "Could not find symbol definition";
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EXPECT_EQ(I->second.getAddress(), FooAddr)
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<< "Resolution returned incorrect result";
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OnCompletionRun = true;
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};
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std::shared_ptr<MaterializationResponsibility> FooMR;
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cantFail(JD.define(llvm::make_unique<SimpleMaterializationUnit>(
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SymbolFlagsMap({{Foo, FooSym.getFlags()}}),
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[&](MaterializationResponsibility R) {
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FooMR = std::make_shared<MaterializationResponsibility>(std::move(R));
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})));
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ES.lookup(JITDylibSearchList({{&JD, false}}), {Foo}, SymbolState::Ready,
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OnCompletion, NoDependenciesToRegister);
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EXPECT_FALSE(OnCompletionRun) << "Should not have been resolved yet";
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FooMR->resolve({{Foo, FooSym}});
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EXPECT_FALSE(OnCompletionRun) << "Should not be ready yet";
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FooMR->emit();
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EXPECT_TRUE(OnCompletionRun) << "Should have been marked ready";
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}
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TEST_F(CoreAPIsStandardTest, ExecutionSessionFailQuery) {
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bool OnCompletionRun = false;
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auto OnCompletion = [&](Expected<SymbolMap> Result) {
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EXPECT_FALSE(!!Result) << "Resolution unexpectedly returned success";
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auto Msg = toString(Result.takeError());
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EXPECT_EQ(Msg, "xyz") << "Resolution returned incorrect result";
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OnCompletionRun = true;
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};
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AsynchronousSymbolQuery Q(SymbolNameSet({Foo}), SymbolState::Ready,
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OnCompletion);
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ES.legacyFailQuery(Q,
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make_error<StringError>("xyz", inconvertibleErrorCode()));
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EXPECT_TRUE(OnCompletionRun) << "OnCompletionCallback was not run";
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}
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TEST_F(CoreAPIsStandardTest, EmptyLookup) {
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bool OnCompletionRun = false;
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auto OnCompletion = [&](Expected<SymbolMap> Result) {
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cantFail(std::move(Result));
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OnCompletionRun = true;
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};
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ES.lookup(JITDylibSearchList({{&JD, false}}), {}, SymbolState::Ready,
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OnCompletion, NoDependenciesToRegister);
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EXPECT_TRUE(OnCompletionRun) << "OnCompletion was not run for empty query";
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}
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TEST_F(CoreAPIsStandardTest, RemoveSymbolsTest) {
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// Test that:
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// (1) Missing symbols generate a SymbolsNotFound error.
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// (2) Materializing symbols generate a SymbolCouldNotBeRemoved error.
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// (3) Removal of unmaterialized symbols triggers discard on the
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// materialization unit.
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// (4) Removal of symbols destroys empty materialization units.
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// (5) Removal of materialized symbols works.
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// Foo will be fully materialized.
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cantFail(JD.define(absoluteSymbols({{Foo, FooSym}})));
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// Bar will be unmaterialized.
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bool BarDiscarded = false;
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bool BarMaterializerDestructed = false;
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cantFail(JD.define(llvm::make_unique<SimpleMaterializationUnit>(
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SymbolFlagsMap({{Bar, BarSym.getFlags()}}),
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[this](MaterializationResponsibility R) {
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ADD_FAILURE() << "Unexpected materialization of \"Bar\"";
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R.resolve({{Bar, BarSym}});
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R.emit();
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},
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[&](const JITDylib &JD, const SymbolStringPtr &Name) {
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EXPECT_EQ(Name, Bar) << "Expected \"Bar\" to be discarded";
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if (Name == Bar)
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BarDiscarded = true;
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},
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[&]() { BarMaterializerDestructed = true; })));
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// Baz will be in the materializing state initially, then
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// materialized for the final removal attempt.
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Optional<MaterializationResponsibility> BazR;
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cantFail(JD.define(llvm::make_unique<SimpleMaterializationUnit>(
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SymbolFlagsMap({{Baz, BazSym.getFlags()}}),
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[&](MaterializationResponsibility R) { BazR.emplace(std::move(R)); },
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[](const JITDylib &JD, const SymbolStringPtr &Name) {
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ADD_FAILURE() << "\"Baz\" discarded unexpectedly";
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})));
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bool OnCompletionRun = false;
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ES.lookup(
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JITDylibSearchList({{&JD, false}}), {Foo, Baz}, SymbolState::Ready,
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[&](Expected<SymbolMap> Result) {
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cantFail(Result.takeError());
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OnCompletionRun = true;
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},
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NoDependenciesToRegister);
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{
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// Attempt 1: Search for a missing symbol, Qux.
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auto Err = JD.remove({Foo, Bar, Baz, Qux});
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EXPECT_TRUE(!!Err) << "Expected failure";
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EXPECT_TRUE(Err.isA<SymbolsNotFound>())
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<< "Expected a SymbolsNotFound error";
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consumeError(std::move(Err));
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}
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{
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// Attempt 2: Search for a symbol that is still materializing, Baz.
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auto Err = JD.remove({Foo, Bar, Baz});
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EXPECT_TRUE(!!Err) << "Expected failure";
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EXPECT_TRUE(Err.isA<SymbolsCouldNotBeRemoved>())
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<< "Expected a SymbolsNotFound error";
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consumeError(std::move(Err));
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}
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BazR->resolve({{Baz, BazSym}});
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BazR->emit();
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{
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// Attempt 3: Search now that all symbols are fully materialized
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// (Foo, Baz), or not yet materialized (Bar).
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auto Err = JD.remove({Foo, Bar, Baz});
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EXPECT_FALSE(!!Err) << "Expected failure";
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}
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EXPECT_TRUE(BarDiscarded) << "\"Bar\" should have been discarded";
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EXPECT_TRUE(BarMaterializerDestructed)
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<< "\"Bar\"'s materializer should have been destructed";
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EXPECT_TRUE(OnCompletionRun) << "OnCompletion should have been run";
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}
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TEST_F(CoreAPIsStandardTest, ChainedJITDylibLookup) {
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cantFail(JD.define(absoluteSymbols({{Foo, FooSym}})));
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auto &JD2 = ES.createJITDylib("JD2");
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bool OnCompletionRun = false;
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auto Q = std::make_shared<AsynchronousSymbolQuery>(
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SymbolNameSet({Foo}), SymbolState::Ready,
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[&](Expected<SymbolMap> Result) {
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cantFail(std::move(Result));
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OnCompletionRun = true;
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});
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cantFail(JD2.legacyLookup(Q, cantFail(JD.legacyLookup(Q, {Foo}))));
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EXPECT_TRUE(OnCompletionRun) << "OnCompletion was not run for empty query";
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}
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TEST_F(CoreAPIsStandardTest, LookupWithHiddenSymbols) {
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auto BarHiddenFlags = BarSym.getFlags() & ~JITSymbolFlags::Exported;
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auto BarHiddenSym = JITEvaluatedSymbol(BarSym.getAddress(), BarHiddenFlags);
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cantFail(JD.define(absoluteSymbols({{Foo, FooSym}, {Bar, BarHiddenSym}})));
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auto &JD2 = ES.createJITDylib("JD2");
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cantFail(JD2.define(absoluteSymbols({{Bar, QuxSym}})));
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/// Try a blocking lookup.
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auto Result = cantFail(
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ES.lookup(JITDylibSearchList({{&JD, false}, {&JD2, false}}), {Foo, Bar}));
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EXPECT_EQ(Result.size(), 2U) << "Unexpected number of results";
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EXPECT_EQ(Result.count(Foo), 1U) << "Missing result for \"Foo\"";
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EXPECT_EQ(Result.count(Bar), 1U) << "Missing result for \"Bar\"";
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EXPECT_EQ(Result[Bar].getAddress(), QuxSym.getAddress())
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<< "Wrong result for \"Bar\"";
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}
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TEST_F(CoreAPIsStandardTest, LookupFlagsTest) {
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// Test that lookupFlags works on a predefined symbol, and does not trigger
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// materialization of a lazy symbol. Make the lazy symbol weak to test that
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// the weak flag is propagated correctly.
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BarSym.setFlags(static_cast<JITSymbolFlags::FlagNames>(
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JITSymbolFlags::Exported | JITSymbolFlags::Weak));
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auto MU = llvm::make_unique<SimpleMaterializationUnit>(
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SymbolFlagsMap({{Bar, BarSym.getFlags()}}),
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[](MaterializationResponsibility R) {
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llvm_unreachable("Symbol materialized on flags lookup");
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});
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cantFail(JD.define(absoluteSymbols({{Foo, FooSym}})));
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cantFail(JD.define(std::move(MU)));
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SymbolNameSet Names({Foo, Bar, Baz});
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auto SymbolFlags = cantFail(JD.lookupFlags(Names));
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EXPECT_EQ(SymbolFlags.size(), 2U)
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<< "Returned symbol flags contains unexpected results";
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EXPECT_EQ(SymbolFlags.count(Foo), 1U) << "Missing lookupFlags result for Foo";
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EXPECT_EQ(SymbolFlags[Foo], FooSym.getFlags())
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<< "Incorrect flags returned for Foo";
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EXPECT_EQ(SymbolFlags.count(Bar), 1U)
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<< "Missing lookupFlags result for Bar";
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EXPECT_EQ(SymbolFlags[Bar], BarSym.getFlags())
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<< "Incorrect flags returned for Bar";
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}
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TEST_F(CoreAPIsStandardTest, LookupWithGeneratorFailure) {
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class BadGenerator {
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public:
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Expected<SymbolNameSet> operator()(JITDylib &, const SymbolNameSet &) {
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return make_error<StringError>("BadGenerator", inconvertibleErrorCode());
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}
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};
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JD.setGenerator(BadGenerator());
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EXPECT_THAT_ERROR(JD.lookupFlags({Foo}).takeError(), Failed<StringError>())
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<< "Generator failure did not propagate through lookupFlags";
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EXPECT_THAT_ERROR(
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ES.lookup(JITDylibSearchList({{&JD, false}}), SymbolNameSet({Foo}))
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.takeError(),
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Failed<StringError>())
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<< "Generator failure did not propagate through lookup";
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}
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TEST_F(CoreAPIsStandardTest, TestBasicAliases) {
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cantFail(JD.define(absoluteSymbols({{Foo, FooSym}, {Bar, BarSym}})));
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cantFail(JD.define(symbolAliases({{Baz, {Foo, JITSymbolFlags::Exported}},
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{Qux, {Bar, JITSymbolFlags::Weak}}})));
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cantFail(JD.define(absoluteSymbols({{Qux, QuxSym}})));
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auto Result = ES.lookup(JITDylibSearchList({{&JD, false}}), {Baz, Qux});
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EXPECT_TRUE(!!Result) << "Unexpected lookup failure";
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EXPECT_EQ(Result->count(Baz), 1U) << "No result for \"baz\"";
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EXPECT_EQ(Result->count(Qux), 1U) << "No result for \"qux\"";
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EXPECT_EQ((*Result)[Baz].getAddress(), FooSym.getAddress())
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<< "\"Baz\"'s address should match \"Foo\"'s";
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EXPECT_EQ((*Result)[Qux].getAddress(), QuxSym.getAddress())
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<< "The \"Qux\" alias should have been overriden";
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}
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TEST_F(CoreAPIsStandardTest, TestChainedAliases) {
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cantFail(JD.define(absoluteSymbols({{Foo, FooSym}})));
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cantFail(JD.define(symbolAliases(
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{{Baz, {Bar, BazSym.getFlags()}}, {Bar, {Foo, BarSym.getFlags()}}})));
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auto Result = ES.lookup(JITDylibSearchList({{&JD, false}}), {Bar, Baz});
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EXPECT_TRUE(!!Result) << "Unexpected lookup failure";
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EXPECT_EQ(Result->count(Bar), 1U) << "No result for \"bar\"";
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EXPECT_EQ(Result->count(Baz), 1U) << "No result for \"baz\"";
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EXPECT_EQ((*Result)[Bar].getAddress(), FooSym.getAddress())
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<< "\"Bar\"'s address should match \"Foo\"'s";
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EXPECT_EQ((*Result)[Baz].getAddress(), FooSym.getAddress())
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<< "\"Baz\"'s address should match \"Foo\"'s";
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}
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TEST_F(CoreAPIsStandardTest, TestBasicReExports) {
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// Test that the basic use case of re-exporting a single symbol from another
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// JITDylib works.
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cantFail(JD.define(absoluteSymbols({{Foo, FooSym}})));
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auto &JD2 = ES.createJITDylib("JD2");
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cantFail(JD2.define(reexports(JD, {{Bar, {Foo, BarSym.getFlags()}}})));
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auto Result = cantFail(ES.lookup(JITDylibSearchList({{&JD2, false}}), Bar));
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EXPECT_EQ(Result.getAddress(), FooSym.getAddress())
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<< "Re-export Bar for symbol Foo should match FooSym's address";
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}
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TEST_F(CoreAPIsStandardTest, TestThatReExportsDontUnnecessarilyMaterialize) {
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// Test that re-exports do not materialize symbols that have not been queried
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// for.
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cantFail(JD.define(absoluteSymbols({{Foo, FooSym}})));
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bool BarMaterialized = false;
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auto BarMU = llvm::make_unique<SimpleMaterializationUnit>(
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SymbolFlagsMap({{Bar, BarSym.getFlags()}}),
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[&](MaterializationResponsibility R) {
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BarMaterialized = true;
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R.resolve({{Bar, BarSym}});
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R.emit();
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});
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cantFail(JD.define(BarMU));
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auto &JD2 = ES.createJITDylib("JD2");
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cantFail(JD2.define(reexports(
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JD, {{Baz, {Foo, BazSym.getFlags()}}, {Qux, {Bar, QuxSym.getFlags()}}})));
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auto Result = cantFail(ES.lookup(JITDylibSearchList({{&JD2, false}}), Baz));
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EXPECT_EQ(Result.getAddress(), FooSym.getAddress())
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<< "Re-export Baz for symbol Foo should match FooSym's address";
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EXPECT_FALSE(BarMaterialized) << "Bar should not have been materialized";
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}
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TEST_F(CoreAPIsStandardTest, TestReexportsGenerator) {
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// Test that a re-exports generator can dynamically generate reexports.
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auto &JD2 = ES.createJITDylib("JD2");
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cantFail(JD2.define(absoluteSymbols({{Foo, FooSym}, {Bar, BarSym}})));
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auto Filter = [this](SymbolStringPtr Name) { return Name != Bar; };
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JD.setGenerator(ReexportsGenerator(JD2, false, Filter));
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auto Flags = cantFail(JD.lookupFlags({Foo, Bar, Baz}));
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EXPECT_EQ(Flags.size(), 1U) << "Unexpected number of results";
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EXPECT_EQ(Flags[Foo], FooSym.getFlags()) << "Unexpected flags for Foo";
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auto Result = cantFail(ES.lookup(JITDylibSearchList({{&JD, false}}), Foo));
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EXPECT_EQ(Result.getAddress(), FooSym.getAddress())
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<< "Incorrect reexported symbol address";
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}
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TEST_F(CoreAPIsStandardTest, TestTrivialCircularDependency) {
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Optional<MaterializationResponsibility> FooR;
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auto FooMU = llvm::make_unique<SimpleMaterializationUnit>(
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SymbolFlagsMap({{Foo, FooSym.getFlags()}}),
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[&](MaterializationResponsibility R) { FooR.emplace(std::move(R)); });
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cantFail(JD.define(FooMU));
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bool FooReady = false;
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auto OnCompletion = [&](Expected<SymbolMap> Result) {
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cantFail(std::move(Result));
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FooReady = true;
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};
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ES.lookup(JITDylibSearchList({{&JD, false}}), {Foo}, SymbolState::Ready,
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OnCompletion, NoDependenciesToRegister);
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FooR->resolve({{Foo, FooSym}});
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FooR->emit();
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EXPECT_TRUE(FooReady)
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<< "Self-dependency prevented symbol from being marked ready";
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}
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TEST_F(CoreAPIsStandardTest, TestCircularDependenceInOneJITDylib) {
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// Test that a circular symbol dependency between three symbols in a JITDylib
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// does not prevent any symbol from becoming 'ready' once all symbols are
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// emitted.
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// Create three MaterializationResponsibility objects: one for each of Foo,
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// Bar and Baz. These are optional because MaterializationResponsibility
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// does not have a default constructor).
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Optional<MaterializationResponsibility> FooR;
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Optional<MaterializationResponsibility> BarR;
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Optional<MaterializationResponsibility> BazR;
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// Create a MaterializationUnit for each symbol that moves the
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// MaterializationResponsibility into one of the locals above.
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auto FooMU = llvm::make_unique<SimpleMaterializationUnit>(
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SymbolFlagsMap({{Foo, FooSym.getFlags()}}),
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[&](MaterializationResponsibility R) { FooR.emplace(std::move(R)); });
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auto BarMU = llvm::make_unique<SimpleMaterializationUnit>(
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SymbolFlagsMap({{Bar, BarSym.getFlags()}}),
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[&](MaterializationResponsibility R) { BarR.emplace(std::move(R)); });
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auto BazMU = llvm::make_unique<SimpleMaterializationUnit>(
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SymbolFlagsMap({{Baz, BazSym.getFlags()}}),
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[&](MaterializationResponsibility R) { BazR.emplace(std::move(R)); });
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// Define the symbols.
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cantFail(JD.define(FooMU));
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cantFail(JD.define(BarMU));
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cantFail(JD.define(BazMU));
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// Query each of the symbols to trigger materialization.
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bool FooResolved = false;
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bool FooReady = false;
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auto OnFooResolution = [&](Expected<SymbolMap> Result) {
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cantFail(std::move(Result));
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FooResolved = true;
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};
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auto OnFooReady = [&](Expected<SymbolMap> Result) {
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cantFail(std::move(Result));
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FooReady = true;
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};
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// Issue lookups for Foo. Use NoDependenciesToRegister: We're going to add
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// the dependencies manually below.
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ES.lookup(JITDylibSearchList({{&JD, false}}), {Foo}, SymbolState::Resolved,
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std::move(OnFooResolution), NoDependenciesToRegister);
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ES.lookup(JITDylibSearchList({{&JD, false}}), {Foo}, SymbolState::Ready,
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std::move(OnFooReady), NoDependenciesToRegister);
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bool BarResolved = false;
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bool BarReady = false;
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auto OnBarResolution = [&](Expected<SymbolMap> Result) {
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cantFail(std::move(Result));
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BarResolved = true;
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};
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auto OnBarReady = [&](Expected<SymbolMap> Result) {
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cantFail(std::move(Result));
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BarReady = true;
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};
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|
|
ES.lookup(JITDylibSearchList({{&JD, false}}), {Bar}, SymbolState::Resolved,
|
|
std::move(OnBarResolution), NoDependenciesToRegister);
|
|
|
|
ES.lookup(JITDylibSearchList({{&JD, false}}), {Bar}, SymbolState::Ready,
|
|
std::move(OnBarReady), NoDependenciesToRegister);
|
|
|
|
bool BazResolved = false;
|
|
bool BazReady = false;
|
|
|
|
auto OnBazResolution = [&](Expected<SymbolMap> Result) {
|
|
cantFail(std::move(Result));
|
|
BazResolved = true;
|
|
};
|
|
|
|
auto OnBazReady = [&](Expected<SymbolMap> Result) {
|
|
cantFail(std::move(Result));
|
|
BazReady = true;
|
|
};
|
|
|
|
ES.lookup(JITDylibSearchList({{&JD, false}}), {Baz}, SymbolState::Resolved,
|
|
std::move(OnBazResolution), NoDependenciesToRegister);
|
|
|
|
ES.lookup(JITDylibSearchList({{&JD, false}}), {Baz}, SymbolState::Ready,
|
|
std::move(OnBazReady), NoDependenciesToRegister);
|
|
|
|
// Add a circular dependency: Foo -> Bar, Bar -> Baz, Baz -> Foo.
|
|
FooR->addDependenciesForAll({{&JD, SymbolNameSet({Bar})}});
|
|
BarR->addDependenciesForAll({{&JD, SymbolNameSet({Baz})}});
|
|
BazR->addDependenciesForAll({{&JD, SymbolNameSet({Foo})}});
|
|
|
|
// Add self-dependencies for good measure. This tests that the implementation
|
|
// of addDependencies filters these out.
|
|
FooR->addDependenciesForAll({{&JD, SymbolNameSet({Foo})}});
|
|
BarR->addDependenciesForAll({{&JD, SymbolNameSet({Bar})}});
|
|
BazR->addDependenciesForAll({{&JD, SymbolNameSet({Baz})}});
|
|
|
|
// Check that nothing has been resolved yet.
|
|
EXPECT_FALSE(FooResolved) << "\"Foo\" should not be resolved yet";
|
|
EXPECT_FALSE(BarResolved) << "\"Bar\" should not be resolved yet";
|
|
EXPECT_FALSE(BazResolved) << "\"Baz\" should not be resolved yet";
|
|
|
|
// Resolve the symbols (but do not emit them).
|
|
FooR->resolve({{Foo, FooSym}});
|
|
BarR->resolve({{Bar, BarSym}});
|
|
BazR->resolve({{Baz, BazSym}});
|
|
|
|
// Verify that the symbols have been resolved, but are not ready yet.
|
|
EXPECT_TRUE(FooResolved) << "\"Foo\" should be resolved now";
|
|
EXPECT_TRUE(BarResolved) << "\"Bar\" should be resolved now";
|
|
EXPECT_TRUE(BazResolved) << "\"Baz\" should be resolved now";
|
|
|
|
EXPECT_FALSE(FooReady) << "\"Foo\" should not be ready yet";
|
|
EXPECT_FALSE(BarReady) << "\"Bar\" should not be ready yet";
|
|
EXPECT_FALSE(BazReady) << "\"Baz\" should not be ready yet";
|
|
|
|
// Emit two of the symbols.
|
|
FooR->emit();
|
|
BarR->emit();
|
|
|
|
// Verify that nothing is ready until the circular dependence is resolved.
|
|
EXPECT_FALSE(FooReady) << "\"Foo\" still should not be ready";
|
|
EXPECT_FALSE(BarReady) << "\"Bar\" still should not be ready";
|
|
EXPECT_FALSE(BazReady) << "\"Baz\" still should not be ready";
|
|
|
|
// Emit the last symbol.
|
|
BazR->emit();
|
|
|
|
// Verify that everything becomes ready once the circular dependence resolved.
|
|
EXPECT_TRUE(FooReady) << "\"Foo\" should be ready now";
|
|
EXPECT_TRUE(BarReady) << "\"Bar\" should be ready now";
|
|
EXPECT_TRUE(BazReady) << "\"Baz\" should be ready now";
|
|
}
|
|
|
|
TEST_F(CoreAPIsStandardTest, DropMaterializerWhenEmpty) {
|
|
bool DestructorRun = false;
|
|
|
|
JITSymbolFlags WeakExported(JITSymbolFlags::Exported);
|
|
WeakExported |= JITSymbolFlags::Weak;
|
|
|
|
auto MU = llvm::make_unique<SimpleMaterializationUnit>(
|
|
SymbolFlagsMap({{Foo, WeakExported}, {Bar, WeakExported}}),
|
|
[](MaterializationResponsibility R) {
|
|
llvm_unreachable("Unexpected call to materialize");
|
|
},
|
|
[&](const JITDylib &JD, SymbolStringPtr Name) {
|
|
EXPECT_TRUE(Name == Foo || Name == Bar)
|
|
<< "Discard of unexpected symbol?";
|
|
},
|
|
[&]() { DestructorRun = true; });
|
|
|
|
cantFail(JD.define(MU));
|
|
|
|
cantFail(JD.define(absoluteSymbols({{Foo, FooSym}})));
|
|
|
|
EXPECT_FALSE(DestructorRun)
|
|
<< "MaterializationUnit should not have been destroyed yet";
|
|
|
|
cantFail(JD.define(absoluteSymbols({{Bar, BarSym}})));
|
|
|
|
EXPECT_TRUE(DestructorRun)
|
|
<< "MaterializationUnit should have been destroyed";
|
|
}
|
|
|
|
TEST_F(CoreAPIsStandardTest, AddAndMaterializeLazySymbol) {
|
|
bool FooMaterialized = false;
|
|
bool BarDiscarded = false;
|
|
|
|
JITSymbolFlags WeakExported(JITSymbolFlags::Exported);
|
|
WeakExported |= JITSymbolFlags::Weak;
|
|
|
|
auto MU = llvm::make_unique<SimpleMaterializationUnit>(
|
|
SymbolFlagsMap({{Foo, JITSymbolFlags::Exported}, {Bar, WeakExported}}),
|
|
[&](MaterializationResponsibility R) {
|
|
assert(BarDiscarded && "Bar should have been discarded by this point");
|
|
R.resolve(SymbolMap({{Foo, FooSym}}));
|
|
R.emit();
|
|
FooMaterialized = true;
|
|
},
|
|
[&](const JITDylib &JD, SymbolStringPtr Name) {
|
|
EXPECT_EQ(Name, Bar) << "Expected Name to be Bar";
|
|
BarDiscarded = true;
|
|
});
|
|
|
|
cantFail(JD.define(MU));
|
|
cantFail(JD.define(absoluteSymbols({{Bar, BarSym}})));
|
|
|
|
SymbolNameSet Names({Foo});
|
|
|
|
bool OnCompletionRun = false;
|
|
|
|
auto OnCompletion = [&](Expected<SymbolMap> Result) {
|
|
EXPECT_TRUE(!!Result) << "Resolution unexpectedly returned error";
|
|
auto I = Result->find(Foo);
|
|
EXPECT_NE(I, Result->end()) << "Could not find symbol definition";
|
|
EXPECT_EQ(I->second.getAddress(), FooSym.getAddress())
|
|
<< "Resolution returned incorrect result";
|
|
OnCompletionRun = true;
|
|
};
|
|
|
|
ES.lookup(JITDylibSearchList({{&JD, false}}), Names, SymbolState::Ready,
|
|
std::move(OnCompletion), NoDependenciesToRegister);
|
|
|
|
EXPECT_TRUE(FooMaterialized) << "Foo was not materialized";
|
|
EXPECT_TRUE(BarDiscarded) << "Bar was not discarded";
|
|
EXPECT_TRUE(OnCompletionRun) << "OnResolutionCallback was not run";
|
|
}
|
|
|
|
TEST_F(CoreAPIsStandardTest, TestBasicWeakSymbolMaterialization) {
|
|
// Test that weak symbols are materialized correctly when we look them up.
|
|
BarSym.setFlags(BarSym.getFlags() | JITSymbolFlags::Weak);
|
|
|
|
bool BarMaterialized = false;
|
|
auto MU1 = llvm::make_unique<SimpleMaterializationUnit>(
|
|
SymbolFlagsMap({{Foo, FooSym.getFlags()}, {Bar, BarSym.getFlags()}}),
|
|
[&](MaterializationResponsibility R) {
|
|
R.resolve(SymbolMap({{Foo, FooSym}, {Bar, BarSym}})), R.emit();
|
|
BarMaterialized = true;
|
|
});
|
|
|
|
bool DuplicateBarDiscarded = false;
|
|
auto MU2 = llvm::make_unique<SimpleMaterializationUnit>(
|
|
SymbolFlagsMap({{Bar, BarSym.getFlags()}}),
|
|
[&](MaterializationResponsibility R) {
|
|
ADD_FAILURE() << "Attempt to materialize Bar from the wrong unit";
|
|
R.failMaterialization();
|
|
},
|
|
[&](const JITDylib &JD, SymbolStringPtr Name) {
|
|
EXPECT_EQ(Name, Bar) << "Expected \"Bar\" to be discarded";
|
|
DuplicateBarDiscarded = true;
|
|
});
|
|
|
|
cantFail(JD.define(MU1));
|
|
cantFail(JD.define(MU2));
|
|
|
|
bool OnCompletionRun = false;
|
|
|
|
auto OnCompletion = [&](Expected<SymbolMap> Result) {
|
|
cantFail(std::move(Result));
|
|
OnCompletionRun = true;
|
|
};
|
|
|
|
ES.lookup(JITDylibSearchList({{&JD, false}}), {Bar}, SymbolState::Ready,
|
|
std::move(OnCompletion), NoDependenciesToRegister);
|
|
|
|
EXPECT_TRUE(OnCompletionRun) << "OnCompletion not run";
|
|
EXPECT_TRUE(BarMaterialized) << "Bar was not materialized at all";
|
|
EXPECT_TRUE(DuplicateBarDiscarded)
|
|
<< "Duplicate bar definition not discarded";
|
|
}
|
|
|
|
TEST_F(CoreAPIsStandardTest, DefineMaterializingSymbol) {
|
|
bool ExpectNoMoreMaterialization = false;
|
|
ES.setDispatchMaterialization(
|
|
[&](JITDylib &JD, std::unique_ptr<MaterializationUnit> MU) {
|
|
if (ExpectNoMoreMaterialization)
|
|
ADD_FAILURE() << "Unexpected materialization";
|
|
MU->doMaterialize(JD);
|
|
});
|
|
|
|
auto MU = llvm::make_unique<SimpleMaterializationUnit>(
|
|
SymbolFlagsMap({{Foo, FooSym.getFlags()}}),
|
|
[&](MaterializationResponsibility R) {
|
|
cantFail(
|
|
R.defineMaterializing(SymbolFlagsMap({{Bar, BarSym.getFlags()}})));
|
|
R.resolve(SymbolMap({{Foo, FooSym}, {Bar, BarSym}}));
|
|
R.emit();
|
|
});
|
|
|
|
cantFail(JD.define(MU));
|
|
cantFail(ES.lookup(JITDylibSearchList({{&JD, false}}), Foo));
|
|
|
|
// Assert that materialization is complete by now.
|
|
ExpectNoMoreMaterialization = true;
|
|
|
|
// Look up bar to verify that no further materialization happens.
|
|
auto BarResult = cantFail(ES.lookup(JITDylibSearchList({{&JD, false}}), Bar));
|
|
EXPECT_EQ(BarResult.getAddress(), BarSym.getAddress())
|
|
<< "Expected Bar == BarSym";
|
|
}
|
|
|
|
TEST_F(CoreAPIsStandardTest, GeneratorTest) {
|
|
cantFail(JD.define(absoluteSymbols({{Foo, FooSym}})));
|
|
|
|
JD.setGenerator([&](JITDylib &JD2, const SymbolNameSet &Names) {
|
|
cantFail(JD2.define(absoluteSymbols({{Bar, BarSym}})));
|
|
return SymbolNameSet({Bar});
|
|
});
|
|
|
|
auto Result =
|
|
cantFail(ES.lookup(JITDylibSearchList({{&JD, false}}), {Foo, Bar}));
|
|
|
|
EXPECT_EQ(Result.count(Bar), 1U) << "Expected to find fallback def for 'bar'";
|
|
EXPECT_EQ(Result[Bar].getAddress(), BarSym.getAddress())
|
|
<< "Expected fallback def for Bar to be equal to BarSym";
|
|
}
|
|
|
|
TEST_F(CoreAPIsStandardTest, FailResolution) {
|
|
auto MU = llvm::make_unique<SimpleMaterializationUnit>(
|
|
SymbolFlagsMap({{Foo, JITSymbolFlags::Exported | JITSymbolFlags::Weak},
|
|
{Bar, JITSymbolFlags::Exported | JITSymbolFlags::Weak}}),
|
|
[&](MaterializationResponsibility R) {
|
|
dbgs() << "Before failMat:\n";
|
|
ES.dump(dbgs());
|
|
R.failMaterialization();
|
|
});
|
|
|
|
cantFail(JD.define(MU));
|
|
|
|
SymbolNameSet Names({Foo, Bar});
|
|
auto Result = ES.lookup(JITDylibSearchList({{&JD, false}}), Names);
|
|
|
|
EXPECT_FALSE(!!Result) << "Expected failure";
|
|
if (!Result) {
|
|
handleAllErrors(Result.takeError(),
|
|
[&](FailedToMaterialize &F) {
|
|
EXPECT_EQ(F.getSymbols(), Names)
|
|
<< "Expected to fail on symbols in Names";
|
|
},
|
|
[](ErrorInfoBase &EIB) {
|
|
std::string ErrMsg;
|
|
{
|
|
raw_string_ostream ErrOut(ErrMsg);
|
|
EIB.log(ErrOut);
|
|
}
|
|
ADD_FAILURE()
|
|
<< "Expected a FailedToResolve error. Got:\n"
|
|
<< ErrMsg;
|
|
});
|
|
}
|
|
}
|
|
|
|
TEST_F(CoreAPIsStandardTest, FailEmissionEarly) {
|
|
|
|
cantFail(JD.define(absoluteSymbols({{Baz, BazSym}})));
|
|
|
|
auto MU = llvm::make_unique<SimpleMaterializationUnit>(
|
|
SymbolFlagsMap({{Foo, FooSym.getFlags()}, {Bar, BarSym.getFlags()}}),
|
|
[&](MaterializationResponsibility R) {
|
|
R.resolve(SymbolMap({{Foo, FooSym}, {Bar, BarSym}}));
|
|
|
|
ES.lookup(
|
|
JITDylibSearchList({{&JD, false}}), SymbolNameSet({Baz}),
|
|
SymbolState::Resolved,
|
|
[&R](Expected<SymbolMap> Result) {
|
|
// Called when "baz" is resolved. We don't actually depend
|
|
// on or care about baz, but use it to trigger failure of
|
|
// this materialization before Baz has been finalized in
|
|
// order to test that error propagation is correct in this
|
|
// scenario.
|
|
cantFail(std::move(Result));
|
|
R.failMaterialization();
|
|
},
|
|
[&](const SymbolDependenceMap &Deps) {
|
|
R.addDependenciesForAll(Deps);
|
|
});
|
|
});
|
|
|
|
cantFail(JD.define(MU));
|
|
|
|
SymbolNameSet Names({Foo, Bar});
|
|
auto Result = ES.lookup(JITDylibSearchList({{&JD, false}}), Names);
|
|
|
|
EXPECT_THAT_EXPECTED(std::move(Result), Failed())
|
|
<< "Unexpected success while trying to test error propagation";
|
|
}
|
|
|
|
TEST_F(CoreAPIsStandardTest, TestLookupWithUnthreadedMaterialization) {
|
|
auto MU = llvm::make_unique<SimpleMaterializationUnit>(
|
|
SymbolFlagsMap({{Foo, JITSymbolFlags::Exported}}),
|
|
[&](MaterializationResponsibility R) {
|
|
R.resolve({{Foo, FooSym}});
|
|
R.emit();
|
|
});
|
|
|
|
cantFail(JD.define(MU));
|
|
|
|
auto FooLookupResult =
|
|
cantFail(ES.lookup(JITDylibSearchList({{&JD, false}}), Foo));
|
|
|
|
EXPECT_EQ(FooLookupResult.getAddress(), FooSym.getAddress())
|
|
<< "lookup returned an incorrect address";
|
|
EXPECT_EQ(FooLookupResult.getFlags(), FooSym.getFlags())
|
|
<< "lookup returned incorrect flags";
|
|
}
|
|
|
|
TEST_F(CoreAPIsStandardTest, TestLookupWithThreadedMaterialization) {
|
|
#if LLVM_ENABLE_THREADS
|
|
|
|
std::thread MaterializationThread;
|
|
ES.setDispatchMaterialization(
|
|
[&](JITDylib &JD, std::unique_ptr<MaterializationUnit> MU) {
|
|
auto SharedMU = std::shared_ptr<MaterializationUnit>(std::move(MU));
|
|
MaterializationThread =
|
|
std::thread([SharedMU, &JD]() { SharedMU->doMaterialize(JD); });
|
|
});
|
|
|
|
cantFail(JD.define(absoluteSymbols({{Foo, FooSym}})));
|
|
|
|
auto FooLookupResult =
|
|
cantFail(ES.lookup(JITDylibSearchList({{&JD, false}}), Foo));
|
|
|
|
EXPECT_EQ(FooLookupResult.getAddress(), FooSym.getAddress())
|
|
<< "lookup returned an incorrect address";
|
|
EXPECT_EQ(FooLookupResult.getFlags(), FooSym.getFlags())
|
|
<< "lookup returned incorrect flags";
|
|
MaterializationThread.join();
|
|
#endif
|
|
}
|
|
|
|
TEST_F(CoreAPIsStandardTest, TestGetRequestedSymbolsAndReplace) {
|
|
// Test that GetRequestedSymbols returns the set of symbols that currently
|
|
// have pending queries, and test that MaterializationResponsibility's
|
|
// replace method can be used to return definitions to the JITDylib in a new
|
|
// MaterializationUnit.
|
|
SymbolNameSet Names({Foo, Bar});
|
|
|
|
bool FooMaterialized = false;
|
|
bool BarMaterialized = false;
|
|
|
|
auto MU = llvm::make_unique<SimpleMaterializationUnit>(
|
|
SymbolFlagsMap({{Foo, FooSym.getFlags()}, {Bar, BarSym.getFlags()}}),
|
|
[&](MaterializationResponsibility R) {
|
|
auto Requested = R.getRequestedSymbols();
|
|
EXPECT_EQ(Requested.size(), 1U) << "Expected one symbol requested";
|
|
EXPECT_EQ(*Requested.begin(), Foo) << "Expected \"Foo\" requested";
|
|
|
|
auto NewMU = llvm::make_unique<SimpleMaterializationUnit>(
|
|
SymbolFlagsMap({{Bar, BarSym.getFlags()}}),
|
|
[&](MaterializationResponsibility R2) {
|
|
R2.resolve(SymbolMap({{Bar, BarSym}}));
|
|
R2.emit();
|
|
BarMaterialized = true;
|
|
});
|
|
|
|
R.replace(std::move(NewMU));
|
|
|
|
R.resolve(SymbolMap({{Foo, FooSym}}));
|
|
R.emit();
|
|
|
|
FooMaterialized = true;
|
|
});
|
|
|
|
cantFail(JD.define(MU));
|
|
|
|
EXPECT_FALSE(FooMaterialized) << "Foo should not be materialized yet";
|
|
EXPECT_FALSE(BarMaterialized) << "Bar should not be materialized yet";
|
|
|
|
auto FooSymResult =
|
|
cantFail(ES.lookup(JITDylibSearchList({{&JD, false}}), Foo));
|
|
EXPECT_EQ(FooSymResult.getAddress(), FooSym.getAddress())
|
|
<< "Address mismatch for Foo";
|
|
|
|
EXPECT_TRUE(FooMaterialized) << "Foo should be materialized now";
|
|
EXPECT_FALSE(BarMaterialized) << "Bar still should not be materialized";
|
|
|
|
auto BarSymResult =
|
|
cantFail(ES.lookup(JITDylibSearchList({{&JD, false}}), Bar));
|
|
EXPECT_EQ(BarSymResult.getAddress(), BarSym.getAddress())
|
|
<< "Address mismatch for Bar";
|
|
EXPECT_TRUE(BarMaterialized) << "Bar should be materialized now";
|
|
}
|
|
|
|
TEST_F(CoreAPIsStandardTest, TestMaterializationResponsibilityDelegation) {
|
|
auto MU = llvm::make_unique<SimpleMaterializationUnit>(
|
|
SymbolFlagsMap({{Foo, FooSym.getFlags()}, {Bar, BarSym.getFlags()}}),
|
|
[&](MaterializationResponsibility R) {
|
|
auto R2 = R.delegate({Bar});
|
|
|
|
R.resolve({{Foo, FooSym}});
|
|
R.emit();
|
|
R2.resolve({{Bar, BarSym}});
|
|
R2.emit();
|
|
});
|
|
|
|
cantFail(JD.define(MU));
|
|
|
|
auto Result = ES.lookup(JITDylibSearchList({{&JD, false}}), {Foo, Bar});
|
|
|
|
EXPECT_TRUE(!!Result) << "Result should be a success value";
|
|
EXPECT_EQ(Result->count(Foo), 1U) << "\"Foo\" entry missing";
|
|
EXPECT_EQ(Result->count(Bar), 1U) << "\"Bar\" entry missing";
|
|
EXPECT_EQ((*Result)[Foo].getAddress(), FooSym.getAddress())
|
|
<< "Address mismatch for \"Foo\"";
|
|
EXPECT_EQ((*Result)[Bar].getAddress(), BarSym.getAddress())
|
|
<< "Address mismatch for \"Bar\"";
|
|
}
|
|
|
|
TEST_F(CoreAPIsStandardTest, TestMaterializeWeakSymbol) {
|
|
// Confirm that once a weak definition is selected for materialization it is
|
|
// treated as strong.
|
|
JITSymbolFlags WeakExported = JITSymbolFlags::Exported;
|
|
WeakExported &= JITSymbolFlags::Weak;
|
|
|
|
std::unique_ptr<MaterializationResponsibility> FooResponsibility;
|
|
auto MU = llvm::make_unique<SimpleMaterializationUnit>(
|
|
SymbolFlagsMap({{Foo, FooSym.getFlags()}}),
|
|
[&](MaterializationResponsibility R) {
|
|
FooResponsibility =
|
|
llvm::make_unique<MaterializationResponsibility>(std::move(R));
|
|
});
|
|
|
|
cantFail(JD.define(MU));
|
|
auto OnCompletion = [](Expected<SymbolMap> Result) {
|
|
cantFail(std::move(Result));
|
|
};
|
|
|
|
ES.lookup(JITDylibSearchList({{&JD, false}}), {Foo}, SymbolState::Ready,
|
|
std::move(OnCompletion), NoDependenciesToRegister);
|
|
|
|
auto MU2 = llvm::make_unique<SimpleMaterializationUnit>(
|
|
SymbolFlagsMap({{Foo, JITSymbolFlags::Exported}}),
|
|
[](MaterializationResponsibility R) {
|
|
llvm_unreachable("This unit should never be materialized");
|
|
});
|
|
|
|
auto Err = JD.define(MU2);
|
|
EXPECT_TRUE(!!Err) << "Expected failure value";
|
|
EXPECT_TRUE(Err.isA<DuplicateDefinition>())
|
|
<< "Expected a duplicate definition error";
|
|
consumeError(std::move(Err));
|
|
|
|
FooResponsibility->resolve(SymbolMap({{Foo, FooSym}}));
|
|
FooResponsibility->emit();
|
|
}
|
|
|
|
} // namespace
|