Revision tags: llvmorg-18.1.8, llvmorg-18.1.7, llvmorg-18.1.6, llvmorg-18.1.5, llvmorg-18.1.4, llvmorg-18.1.3, llvmorg-18.1.2, llvmorg-18.1.1, llvmorg-18.1.0, llvmorg-18.1.0-rc4, llvmorg-18.1.0-rc3, llvmorg-18.1.0-rc2, llvmorg-18.1.0-rc1, llvmorg-19-init, llvmorg-17.0.6, llvmorg-17.0.5, llvmorg-17.0.4, llvmorg-17.0.3, llvmorg-17.0.2, llvmorg-17.0.1, llvmorg-17.0.0, llvmorg-17.0.0-rc4, llvmorg-17.0.0-rc3, llvmorg-17.0.0-rc2, llvmorg-17.0.0-rc1, llvmorg-18-init, llvmorg-16.0.6, llvmorg-16.0.5, llvmorg-16.0.4, llvmorg-16.0.3, llvmorg-16.0.2, llvmorg-16.0.1, llvmorg-16.0.0, llvmorg-16.0.0-rc4, llvmorg-16.0.0-rc3, llvmorg-16.0.0-rc2, llvmorg-16.0.0-rc1, llvmorg-17-init, llvmorg-15.0.7 |
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79e3e65b |
| 14-Dec-2022 |
Fangrui Song <i@maskray.me> |
[ExecutionEngine] llvm::Optional => std::optional
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Revision tags: llvmorg-15.0.6, llvmorg-15.0.5, llvmorg-15.0.4, llvmorg-15.0.3, working, llvmorg-15.0.2, llvmorg-15.0.1, llvmorg-15.0.0, llvmorg-15.0.0-rc3 |
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7260cdd2 |
| 11-Aug-2022 |
Sunho Kim <ksunhokim123@gmail.com> |
[ORC][COFF] Introduce COFFVCRuntimeBootstrapper.
Introduces COFFVCRuntimeBootstrapper that loads/initialize vc runtime libraries. In COFF, we *must* jit-link vc runtime libraries as COFF relocation
[ORC][COFF] Introduce COFFVCRuntimeBootstrapper.
Introduces COFFVCRuntimeBootstrapper that loads/initialize vc runtime libraries. In COFF, we *must* jit-link vc runtime libraries as COFF relocation types have no proper way to deal with out-of-reach data symbols ragardless of linking mode. (even dynamic version msvcrt.lib have tons of static data symbols that must be jit-linked) This class tries to load vc runtime library files from msvc installations with an option to override the path.
There are some complications when dealing with static version of vc runtimes. First, they need static initializers to be ran that requires COFFPlatform support but orc runtime will not be usable before vc runtimes are fully initialized. (as orc runtime will use msvc stl libraries) COFFPlatform that will be introduced in a following up patch will collect static initializers and run them manually in host before boostrapping itself. So, the user will have to do the following. 1. Create COFFPlatform that addes static initializer collecting passes. 2. LoadVCRuntime 3. InitializeVCRuntime 4. COFFPlatform.bootstrap() Second, the internal crt initialization function had to be reimplemented in orc side. There are other ways of doing this, but this is the simplest implementation that makes platform fully responsible for static initializer. The complication comes from the fact that crt initialization functions (such as acrt_initialize or dllmain_crt_process_attach) actually run all static initializers by traversing from `__xi_a` symbol to `__xi_z`. This requires symbols to be contiguously allocated in sections alphabetically sorted in memory, which is not possible right now and not practical in jit setting. We might ignore emission of `__xi_a` and `__xi_z` symbol and allocate them ourselves, but we have to take extra care after orc runtime boostrap has been done -- as that point orc runtime should be the one running the static initializers.
Reviewed By: lhames
Differential Revision: https://reviews.llvm.org/D130456
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Revision tags: llvmorg-15.0.0-rc2, llvmorg-15.0.0-rc1, llvmorg-16-init, llvmorg-14.0.6, llvmorg-14.0.5, llvmorg-14.0.4, llvmorg-14.0.3, llvmorg-14.0.2, llvmorg-14.0.1, llvmorg-14.0.0, llvmorg-14.0.0-rc4, llvmorg-14.0.0-rc3, llvmorg-14.0.0-rc2, llvmorg-14.0.0-rc1, llvmorg-15-init, llvmorg-13.0.1, llvmorg-13.0.1-rc3, llvmorg-13.0.1-rc2, llvmorg-13.0.1-rc1, llvmorg-13.0.0, llvmorg-13.0.0-rc4, llvmorg-13.0.0-rc3, llvmorg-13.0.0-rc2, llvmorg-13.0.0-rc1, llvmorg-14-init, llvmorg-12.0.1, llvmorg-12.0.1-rc4, llvmorg-12.0.1-rc3, llvmorg-12.0.1-rc2, llvmorg-12.0.1-rc1, llvmorg-12.0.0, llvmorg-12.0.0-rc5, llvmorg-12.0.0-rc4, llvmorg-12.0.0-rc3, llvmorg-12.0.0-rc2, llvmorg-11.1.0, llvmorg-11.1.0-rc3, llvmorg-12.0.0-rc1, llvmorg-13-init, llvmorg-11.1.0-rc2, llvmorg-11.1.0-rc1, llvmorg-11.0.1, llvmorg-11.0.1-rc2, llvmorg-11.0.1-rc1 |
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1d0676b5 |
| 11-Nov-2020 |
Lang Hames <lhames@gmail.com> |
[ORC] Break up OrcJIT library, add Orc-RPC based remote TargetProcessControl implementation.
This patch aims to improve support for out-of-process JITing using OrcV2. It introduces two new class tem
[ORC] Break up OrcJIT library, add Orc-RPC based remote TargetProcessControl implementation.
This patch aims to improve support for out-of-process JITing using OrcV2. It introduces two new class templates, OrcRPCTargetProcessControlBase and OrcRPCTPCServer, which together implement the TargetProcessControl API by forwarding operations to an execution process via an Orc-RPC Endpoint. These utilities are used to implement out-of-process JITing from llvm-jitlink to a new llvm-jitlink-executor tool.
This patch also breaks the OrcJIT library into three parts: -- OrcTargetProcess: Contains code needed by the JIT execution process. -- OrcShared: Contains code needed by the JIT execution and compiler processes -- OrcJIT: Everything else.
This break-up allows JIT executor processes to link against OrcTargetProcess and OrcShared only, without having to link in all of OrcJIT. Clients executing JIT'd code in-process should start linking against OrcTargetProcess as well as OrcJIT.
In the near future these changes will enable: -- Removal of the OrcRemoteTargetClient/OrcRemoteTargetServer class templates which provided similar functionality in OrcV1. -- Restoration of Chapter 5 of the Building-A-JIT tutorial series, which will serve as a simple usage example for these APIs. -- Implementation of lazy, cross-target compilation in lli's -jit-kind=orc-lazy mode.
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