forked from OSchip/llvm-project
245 lines
8.5 KiB
C
245 lines
8.5 KiB
C
//===-------- BasicOrcV2CBindings.c - Basic OrcV2 C Bindings Demo ---------===//
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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 "llvm-c/Core.h"
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#include "llvm-c/Error.h"
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#include "llvm-c/IRReader.h"
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#include "llvm-c/Initialization.h"
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#include "llvm-c/LLJIT.h"
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#include "llvm-c/Support.h"
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#include "llvm-c/Target.h"
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#include <stdio.h>
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int handleError(LLVMErrorRef Err) {
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char *ErrMsg = LLVMGetErrorMessage(Err);
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fprintf(stderr, "Error: %s\n", ErrMsg);
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LLVMDisposeErrorMessage(ErrMsg);
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return 1;
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}
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// Example IR modules.
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//
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// Note that in the conditionally compiled modules, FooMod and BarMod, functions
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// have been given an _body suffix. This is to ensure that their names do not
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// clash with their lazy-reexports.
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// For clients who do not wish to rename function bodies (e.g. because they want
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// to re-use cached objects between static and JIT compiles) techniques exist to
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// avoid renaming. See the lazy-reexports section of the ORCv2 design doc.
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const char FooMod[] = " define i32 @foo_body() { \n"
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" entry: \n"
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" ret i32 1 \n"
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" } \n";
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const char BarMod[] = " define i32 @bar_body() { \n"
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" entry: \n"
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" ret i32 2 \n"
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" } \n";
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const char MainMod[] =
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" define i32 @entry(i32 %argc) { \n"
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" entry: \n"
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" %and = and i32 %argc, 1 \n"
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" %tobool = icmp eq i32 %and, 0 \n"
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" br i1 %tobool, label %if.end, label %if.then \n"
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" \n"
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" if.then: \n"
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" %call = tail call i32 @foo() \n"
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" br label %return \n"
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" \n"
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" if.end: \n"
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" %call1 = tail call i32 @bar() \n"
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" br label %return \n"
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" \n"
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" return: \n"
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" %retval.0 = phi i32 [ %call, %if.then ], [ %call1, %if.end ] \n"
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" ret i32 %retval.0 \n"
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" } \n"
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" \n"
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" declare i32 @foo() \n"
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" declare i32 @bar() \n";
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LLVMErrorRef parseExampleModule(const char *Source, size_t Len,
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const char *Name,
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LLVMOrcThreadSafeModuleRef *TSM) {
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// Create a new ThreadSafeContext and underlying LLVMContext.
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LLVMOrcThreadSafeContextRef TSCtx = LLVMOrcCreateNewThreadSafeContext();
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// Get a reference to the underlying LLVMContext.
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LLVMContextRef Ctx = LLVMOrcThreadSafeContextGetContext(TSCtx);
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// Wrap Source in a MemoryBuffer
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LLVMMemoryBufferRef MB =
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LLVMCreateMemoryBufferWithMemoryRange(Source, Len, Name, 0);
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// Parse the LLVM module.
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LLVMModuleRef M;
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char *ErrMsg;
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if (LLVMParseIRInContext(Ctx, MB, &M, &ErrMsg)) {
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return LLVMCreateStringError(ErrMsg);
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// TODO: LLVMDisposeMessage(ErrMsg);
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}
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// Our module is now complete. Wrap it and our ThreadSafeContext in a
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// ThreadSafeModule.
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*TSM = LLVMOrcCreateNewThreadSafeModule(M, TSCtx);
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// Dispose of our local ThreadSafeContext value. The underlying LLVMContext
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// will be kept alive by our ThreadSafeModule, TSM.
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LLVMOrcDisposeThreadSafeContext(TSCtx);
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return LLVMErrorSuccess;
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}
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int main(int argc, char *argv[]) {
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int MainResult = 0;
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// Parse command line arguments and initialize LLVM Core.
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LLVMParseCommandLineOptions(argc, (const char **)argv, "");
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LLVMInitializeCore(LLVMGetGlobalPassRegistry());
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// Initialize native target codegen and asm printer.
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LLVMInitializeNativeTarget();
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LLVMInitializeNativeAsmPrinter();
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// Set up a JIT instance.
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LLVMOrcLLJITRef J;
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const char *TargetTriple;
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{
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LLVMErrorRef Err;
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if ((Err = LLVMOrcCreateLLJIT(&J, 0))) {
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MainResult = handleError(Err);
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goto llvm_shutdown;
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}
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TargetTriple = LLVMOrcLLJITGetTripleString(J);
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}
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// Add our demo modules to the JIT.
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{
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LLVMOrcJITDylibRef MainJD = LLVMOrcLLJITGetMainJITDylib(J);
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LLVMErrorRef Err;
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LLVMOrcThreadSafeModuleRef FooTSM;
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if ((Err =
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parseExampleModule(FooMod, sizeof(FooMod), "foo-mod", &FooTSM))) {
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MainResult = handleError(Err);
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goto jit_cleanup;
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}
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if ((Err = LLVMOrcLLJITAddLLVMIRModule(J, MainJD, FooTSM))) {
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// If adding the ThreadSafeModule fails then we need to clean it up
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// ourselves. If adding it succeeds the JIT will manage the memory.
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LLVMOrcDisposeThreadSafeModule(FooTSM);
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MainResult = handleError(Err);
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goto jit_cleanup;
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}
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LLVMOrcThreadSafeModuleRef BarTSM;
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if ((Err =
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parseExampleModule(BarMod, sizeof(BarMod), "bar-mod", &BarTSM))) {
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MainResult = handleError(Err);
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goto jit_cleanup;
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}
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if ((Err = LLVMOrcLLJITAddLLVMIRModule(J, MainJD, BarTSM))) {
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LLVMOrcDisposeThreadSafeModule(BarTSM);
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MainResult = handleError(Err);
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goto jit_cleanup;
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}
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LLVMOrcThreadSafeModuleRef MainTSM;
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if ((Err = parseExampleModule(MainMod, sizeof(MainMod), "main-mod",
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&MainTSM))) {
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MainResult = handleError(Err);
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goto jit_cleanup;
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}
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if ((Err = LLVMOrcLLJITAddLLVMIRModule(J, MainJD, MainTSM))) {
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LLVMOrcDisposeThreadSafeModule(MainTSM);
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MainResult = handleError(Err);
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goto jit_cleanup;
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}
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}
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// add lazy reexports
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LLVMOrcIndirectStubsManagerRef ISM =
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LLVMOrcCreateLocalIndirectStubsManager(TargetTriple);
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LLVMOrcLazyCallThroughManagerRef LCTM;
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{
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LLVMErrorRef Err;
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LLVMOrcExecutionSessionRef ES = LLVMOrcLLJITGetExecutionSession(J);
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if ((Err = LLVMOrcCreateLocalLazyCallThroughManager(TargetTriple, ES, 0,
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&LCTM))) {
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LLVMOrcDisposeIndirectStubsManager(ISM);
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MainResult = handleError(Err);
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goto jit_cleanup;
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}
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}
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LLVMJITSymbolFlags flag = {
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LLVMJITSymbolGenericFlagsExported | LLVMJITSymbolGenericFlagsCallable, 0};
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LLVMOrcCSymbolAliasMapPair ReExports[2] = {
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{LLVMOrcLLJITMangleAndIntern(J, "foo"),
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{LLVMOrcLLJITMangleAndIntern(J, "foo_body"), flag}},
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{LLVMOrcLLJITMangleAndIntern(J, "bar"),
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{LLVMOrcLLJITMangleAndIntern(J, "bar_body"), flag}},
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};
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{
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LLVMOrcJITDylibRef MainJD = LLVMOrcLLJITGetMainJITDylib(J);
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LLVMOrcMaterializationUnitRef MU =
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LLVMOrcLazyReexports(LCTM, ISM, MainJD, ReExports, 2);
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LLVMOrcJITDylibDefine(MainJD, MU);
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}
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// Look up the address of our demo entry point.
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LLVMOrcJITTargetAddress EntryAddr;
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{
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LLVMErrorRef Err;
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if ((Err = LLVMOrcLLJITLookup(J, &EntryAddr, "entry"))) {
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MainResult = handleError(Err);
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goto cleanup;
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}
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}
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// If we made it here then everything succeeded. Execute our JIT'd code.
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int32_t (*Entry)(int32_t) = (int32_t(*)(int32_t))EntryAddr;
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int32_t Result = Entry(argc);
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printf("--- Result ---\n");
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printf("entry(%i) = %i\n", argc, Result);
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cleanup : {
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LLVMOrcDisposeIndirectStubsManager(ISM);
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LLVMOrcDisposeLazyCallThroughManager(LCTM);
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}
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jit_cleanup:
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// Destroy our JIT instance. This will clean up any memory that the JIT has
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// taken ownership of. This operation is non-trivial (e.g. it may need to
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// JIT static destructors) and may also fail. In that case we want to render
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// the error to stderr, but not overwrite any existing return value.
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{
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LLVMErrorRef Err;
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if ((Err = LLVMOrcDisposeLLJIT(J))) {
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int NewFailureResult = handleError(Err);
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if (MainResult == 0)
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MainResult = NewFailureResult;
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}
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}
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llvm_shutdown:
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// Shut down LLVM.
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LLVMShutdown();
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return MainResult;
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}
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