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Through the new `-foffload-via-llvm` flag, CUDA kernels can now be lowered to the LLVM/Offload API. On the Clang side, this is simply done by using the OpenMP offload toolchain and emitting calls to `llvm*` functions to orchestrate the kernel launch rather than `cuda*` functions. These `llvm*` functions are implemented on top of the existing LLVM/Offload API. As we are about to redefine the Offload API, this wil help us in the design process as a second offload language. We do not support any CUDA APIs yet, however, we could: https://www.osti.gov/servlets/purl/1892137 For proper host execution we need to resurrect/rebase https://tianshilei.me/wp-content/uploads/2021/12/llpp-2021.pdf (which was designed for debugging). ``` ❯❯❯ cat test.cu extern "C" { void *llvm_omp_target_alloc_shared(size_t Size, int DeviceNum); void llvm_omp_target_free_shared(void *DevicePtr, int DeviceNum); } __global__ void square(int *A) { *A = 42; } int main(int argc, char **argv) { int DevNo = 0; int *Ptr = reinterpret_cast<int *>(llvm_omp_target_alloc_shared(4, DevNo)); *Ptr = 7; printf("Ptr %p, *Ptr %i\n", Ptr, *Ptr); square<<<1, 1>>>(Ptr); printf("Ptr %p, *Ptr %i\n", Ptr, *Ptr); llvm_omp_target_free_shared(Ptr, DevNo); } ❯❯❯ clang++ test.cu -O3 -o test123 -foffload-via-llvm --offload-arch=native ❯❯❯ llvm-objdump --offloading test123 test123: file format elf64-x86-64 OFFLOADING IMAGE [0]: kind elf arch gfx90a triple amdgcn-amd-amdhsa producer openmp ❯❯❯ LIBOMPTARGET_INFO=16 ./test123 Ptr 0x155448ac8000, *Ptr 7 Ptr 0x155448ac8000, *Ptr 42 ```
This provides the header overlay for cuda_runtime.h which is found before any CUDA installation (none is necessary). Some basic APIs are defined in terms of the omp_target_* ones, but with the API redesign the requirements of CUDA should be taken into account. Based on: llvm#94549
The offload APIs, and the CUDA wrappers in clang, now support "default streams" per thread (and per device). It should be per context but we don't really expose that concept yet. The KernelArguments allow an LLVM/Offload user to provide a "AsyncInfoQueue", which is plugin dependent and can later also be created outside or queried from the runtime. User managed "queues" are kept persistent, thus not returned to the pool once synchronized. The CUDA tests will synchronize via `cudaDeviceSynchronize` before checking the results. Based on: llvm#94821
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jdoerfert
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Aug 30, 2024
…104523) Compilers and language runtimes often use helper functions that are fundamentally uninteresting when debugging anything but the compiler/runtime itself. This patch introduces a user-extensible mechanism that allows for these frames to be hidden from backtraces and automatically skipped over when navigating the stack with `up` and `down`. This does not affect the numbering of frames, so `f <N>` will still provide access to the hidden frames. The `bt` output will also print a hint that frames have been hidden. My primary motivation for this feature is to hide thunks in the Swift programming language, but I'm including an example recognizer for `std::function::operator()` that I wished for myself many times while debugging LLDB. rdar://126629381 Example output. (Yes, my proof-of-concept recognizer could hide even more frames if we had a method that returned the function name without the return type or I used something that isn't based off regex, but it's really only meant as an example). before: ``` (lldb) thread backtrace --filtered=false * thread #1, queue = 'com.apple.main-thread', stop reason = breakpoint 1.1 * frame #0: 0x0000000100001f04 a.out`foo(x=1, y=1) at main.cpp:4:10 frame #1: 0x0000000100003a00 a.out`decltype(std::declval<int (*&)(int, int)>()(std::declval<int>(), std::declval<int>())) std::__1::__invoke[abi:se200000]<int (*&)(int, int), int, int>(__f=0x000000016fdff280, __args=0x000000016fdff224, __args=0x000000016fdff220) at invoke.h:149:25 frame #2: 0x000000010000399c a.out`int std::__1::__invoke_void_return_wrapper<int, false>::__call[abi:se200000]<int (*&)(int, int), int, int>(__args=0x000000016fdff280, __args=0x000000016fdff224, __args=0x000000016fdff220) at invoke.h:216:12 frame #3: 0x0000000100003968 a.out`std::__1::__function::__alloc_func<int (*)(int, int), std::__1::allocator<int (*)(int, int)>, int (int, int)>::operator()[abi:se200000](this=0x000000016fdff280, __arg=0x000000016fdff224, __arg=0x000000016fdff220) at function.h:171:12 frame #4: 0x00000001000026bc a.out`std::__1::__function::__func<int (*)(int, int), std::__1::allocator<int (*)(int, int)>, int (int, int)>::operator()(this=0x000000016fdff278, __arg=0x000000016fdff224, __arg=0x000000016fdff220) at function.h:313:10 frame #5: 0x0000000100003c38 a.out`std::__1::__function::__value_func<int (int, int)>::operator()[abi:se200000](this=0x000000016fdff278, __args=0x000000016fdff224, __args=0x000000016fdff220) const at function.h:430:12 frame #6: 0x0000000100002038 a.out`std::__1::function<int (int, int)>::operator()(this= Function = foo(int, int) , __arg=1, __arg=1) const at function.h:989:10 frame #7: 0x0000000100001f64 a.out`main(argc=1, argv=0x000000016fdff4f8) at main.cpp:9:10 frame #8: 0x0000000183cdf154 dyld`start + 2476 (lldb) ``` after ``` (lldb) bt * thread #1, queue = 'com.apple.main-thread', stop reason = breakpoint 1.1 * frame #0: 0x0000000100001f04 a.out`foo(x=1, y=1) at main.cpp:4:10 frame #1: 0x0000000100003a00 a.out`decltype(std::declval<int (*&)(int, int)>()(std::declval<int>(), std::declval<int>())) std::__1::__invoke[abi:se200000]<int (*&)(int, int), int, int>(__f=0x000000016fdff280, __args=0x000000016fdff224, __args=0x000000016fdff220) at invoke.h:149:25 frame #2: 0x000000010000399c a.out`int std::__1::__invoke_void_return_wrapper<int, false>::__call[abi:se200000]<int (*&)(int, int), int, int>(__args=0x000000016fdff280, __args=0x000000016fdff224, __args=0x000000016fdff220) at invoke.h:216:12 frame #6: 0x0000000100002038 a.out`std::__1::function<int (int, int)>::operator()(this= Function = foo(int, int) , __arg=1, __arg=1) const at function.h:989:10 frame #7: 0x0000000100001f64 a.out`main(argc=1, argv=0x000000016fdff4f8) at main.cpp:9:10 frame #8: 0x0000000183cdf154 dyld`start + 2476 Note: Some frames were hidden by frame recognizers ```
jdoerfert
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Sep 20, 2024
…lvm#107294) Random testing revealed it's possible to crash the analyzer with the command line invocation: clang -cc1 -analyze -analyzer-checker=nullability empty.c where the source file, empty.c is an empty source file. ``` clang: <root>/clang/lib/StaticAnalyzer/Core/CheckerManager.cpp:56: void clang::ento::CheckerManager::finishedCheckerRegistration(): Assertion `Event.second.HasDispatcher && "No dispatcher registered for an event"' failed. PLEASE submit a bug report to https://github.com/llvm/llvm-project/issues/ Stack dump: 0. Program arguments: clang -cc1 -analyze -analyzer-checker=nullability nullability-nocrash.c #0 ... ... #7 <addr> clang::ento::CheckerManager::finishedCheckerRegistration() #8 <addr> clang::ento::CheckerManager::CheckerManager(clang::ASTContext&, clang::AnalyzerOptions&, clang::Preprocessor const&, llvm::ArrayRef<std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char>>>, llvm::ArrayRef<std::function<void (clang::ento::CheckerRegistry&)>>) ``` This commit removes the assertion which failed here, because it was logically incorrect: it required that if an Event is handled by some (enabled) checker, then there must be an **enabled** checker which can emit that kind of Event. It should be OK to disable the event-producing checkers but enable an event-consuming checker which has different responsibilities in addition to handling the events. Note that this assertion was in an `#ifndef NDEBUG` block, so this change does not impact the non-debug builds. Co-authored-by: Vince Bridgers <vince.a.bridgers@ericsson.com>
jdoerfert
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Sep 20, 2024
Random testing found that the Z3 wrapper does not support UnarySymExpr, which was added recently and not included in the original Z3 wrapper. For now, just avoid submitting expressions to Z3 to avoid compiler crashes. Some crash context ... clang -cc1 -analyze -analyzer-checker=core z3-unarysymexpr.c -analyzer-constraints=z3 Unsupported expression to reason about! UNREACHABLE executed at clang/include/clang/StaticAnalyzer/Core/PathSensitive/SMTConstraintManager.h:297! Stack dump: 3. <root>/clang/test/Analysis/z3-unarysymexpr.c:13:7: Error evaluating branch #0 <addr> llvm::sys::PrintStackTrace(llvm::raw_ostream&, int) #1 <addr> llvm::sys::RunSignalHandlers() #8 <addr> clang::ento::SimpleConstraintManager::assumeAux( llvm::IntrusiveRefCntPtr<clang::ento::ProgramState const>, clang::ento::NonLoc, bool) #9 <addr> clang::ento::SimpleConstraintManager::assume( llvm::IntrusiveRefCntPtr<clang::ento::ProgramState const>, clang::ento::NonLoc, bool) Co-authored-by: einvbri <vince.a.bridgers@ericsson.com>
jdoerfert
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May 9, 2025
The mcmodel=tiny memory model is only valid on ARM targets. While trying this on X86 compiler throws an internal error along with stack dump. llvm#125641 This patch resolves the issue. Reduced test case: ``` #include <stdio.h> int main( void ) { printf( "Hello, World!\n" ); return 0; } ``` ``` 0. Program arguments: /opt/compiler-explorer/clang-trunk/bin/clang++ -gdwarf-4 -g -o /app/output.s -fno-verbose-asm -S --gcc-toolchain=/opt/compiler-explorer/gcc-snapshot -fcolor-diagnostics -fno-crash-diagnostics -mcmodel=tiny <source> 1. <eof> parser at end of file #0 0x0000000003b10218 llvm::sys::PrintStackTrace(llvm::raw_ostream&, int) (/opt/compiler-explorer/clang-trunk/bin/clang+++0x3b10218) #1 0x0000000003b0e35c llvm::sys::CleanupOnSignal(unsigned long) (/opt/compiler-explorer/clang-trunk/bin/clang+++0x3b0e35c) #2 0x0000000003a5dbc3 llvm::CrashRecoveryContext::HandleExit(int) (/opt/compiler-explorer/clang-trunk/bin/clang+++0x3a5dbc3) #3 0x0000000003b05cfe llvm::sys::Process::Exit(int, bool) (/opt/compiler-explorer/clang-trunk/bin/clang+++0x3b05cfe) #4 0x0000000000d4e3eb LLVMErrorHandler(void*, char const*, bool) cc1_main.cpp:0:0 #5 0x0000000003a67c93 llvm::report_fatal_error(llvm::Twine const&, bool) (/opt/compiler-explorer/clang-trunk/bin/clang+++0x3a67c93) #6 0x0000000003a67df8 (/opt/compiler-explorer/clang-trunk/bin/clang+++0x3a67df8) #7 0x0000000002549148 llvm::X86TargetMachine::X86TargetMachine(llvm::Target const&, llvm::Triple const&, llvm::StringRef, llvm::StringRef, llvm::TargetOptions const&, std::optional<llvm::Reloc::Model>, std::optional<llvm::CodeModel::Model>, llvm::CodeGenOptLevel, bool) (/opt/compiler-explorer/clang-trunk/bin/clang+++0x2549148) #8 0x00000000025491fc llvm::RegisterTargetMachine<llvm::X86TargetMachine>::Allocator(llvm::Target const&, llvm::Triple const&, llvm::StringRef, llvm::StringRef, llvm::TargetOptions const&, std::optional<llvm::Reloc::Model>, std::optional<llvm::CodeModel::Model>, llvm::CodeGenOptLevel, bool) (/opt/compiler-explorer/clang-trunk/bin/clang+++0x25491fc) #9 0x0000000003db74cc clang::emitBackendOutput(clang::CompilerInstance&, clang::CodeGenOptions&, llvm::StringRef, llvm::Module*, clang::BackendAction, llvm::IntrusiveRefCntPtr<llvm::vfs::FileSystem>, std::unique_ptr<llvm::raw_pwrite_stream, std::default_delete<llvm::raw_pwrite_stream>>, clang::BackendConsumer*) (/opt/compiler-explorer/clang-trunk/bin/clang+++0x3db74cc) #10 0x0000000004460d95 clang::BackendConsumer::HandleTranslationUnit(clang::ASTContext&) (/opt/compiler-explorer/clang-trunk/bin/clang+++0x4460d95) #11 0x00000000060005ec clang::ParseAST(clang::Sema&, bool, bool) (/opt/compiler-explorer/clang-trunk/bin/clang+++0x60005ec) #12 0x00000000044614b5 clang::CodeGenAction::ExecuteAction() (/opt/compiler-explorer/clang-trunk/bin/clang+++0x44614b5) #13 0x0000000004737121 clang::FrontendAction::Execute() (/opt/compiler-explorer/clang-trunk/bin/clang+++0x4737121) #14 0x00000000046b777b clang::CompilerInstance::ExecuteAction(clang::FrontendAction&) (/opt/compiler-explorer/clang-trunk/bin/clang+++0x46b777b) #15 0x00000000048229e3 clang::ExecuteCompilerInvocation(clang::CompilerInstance*) (/opt/compiler-explorer/clang-trunk/bin/clang+++0x48229e3) #16 0x0000000000d50621 cc1_main(llvm::ArrayRef<char const*>, char const*, void*) (/opt/compiler-explorer/clang-trunk/bin/clang+++0xd50621) #17 0x0000000000d48e2d ExecuteCC1Tool(llvm::SmallVectorImpl<char const*>&, llvm::ToolContext const&) driver.cpp:0:0 #18 0x00000000044acc99 void llvm::function_ref<void ()>::callback_fn<clang::driver::CC1Command::Execute(llvm::ArrayRef<std::optional<llvm::StringRef>>, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char>>*, bool*) const::'lambda'()>(long) Job.cpp:0:0 #19 0x0000000003a5dac3 llvm::CrashRecoveryContext::RunSafely(llvm::function_ref<void ()>) (/opt/compiler-explorer/clang-trunk/bin/clang+++0x3a5dac3) #20 0x00000000044aceb9 clang::driver::CC1Command::Execute(llvm::ArrayRef<std::optional<llvm::StringRef>>, std::__cxx11::basic_string<char, std::char_traits<char>, std::allocator<char>>*, bool*) const (.part.0) Job.cpp:0:0 #21 0x00000000044710dd clang::driver::Compilation::ExecuteCommand(clang::driver::Command const&, clang::driver::Command const*&, bool) const (/opt/compiler-explorer/clang-trunk/bin/clang+++0x44710dd) #22 0x0000000004472071 clang::driver::Compilation::ExecuteJobs(clang::driver::JobList const&, llvm::SmallVectorImpl<std::pair<int, clang::driver::Command const*>>&, bool) const (/opt/compiler-explorer/clang-trunk/bin/clang+++0x4472071) #23 0x000000000447c3fc clang::driver::Driver::ExecuteCompilation(clang::driver::Compilation&, llvm::SmallVectorImpl<std::pair<int, clang::driver::Command const*>>&) (/opt/compiler-explorer/clang-trunk/bin/clang+++0x447c3fc) llvm#24 0x0000000000d4d2b1 clang_main(int, char**, llvm::ToolContext const&) (/opt/compiler-explorer/clang-trunk/bin/clang+++0xd4d2b1) llvm#25 0x0000000000c12464 main (/opt/compiler-explorer/clang-trunk/bin/clang+++0xc12464) llvm#26 0x00007ae43b029d90 (/lib/x86_64-linux-gnu/libc.so.6+0x29d90) llvm#27 0x00007ae43b029e40 __libc_start_main (/lib/x86_64-linux-gnu/libc.so.6+0x29e40) llvm#28 0x0000000000d488c5 _start (/opt/compiler-explorer/clang-trunk/bin/clang+++0xd488c5) ``` --------- Co-authored-by: Shashwathi N <nshashwa@pe31.hpc.amslabs.hpecorp.net>
jdoerfert
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Feb 25, 2026
…lvm#178069) Kernel panic is a special case, and there is no signal or exception for that so we need to rely on special workaround called `dumptid`. FreeBSDKernel plugin is supposed to find this thread and set it manually through `SetStopInfo()` in `CalculateStopInfo()` like Mach core plugin does. Before (We had to find and select crashed thread list otherwise thread 1 was selected by default): ``` ➜ sudo lldb /boot/panic/kernel -c /var/crash/vmcore.last (lldb) target create "/boot/panic/kernel" --core "/var/crash/vmcore.last" Core file '/var/crash/vmcore.last' (x86_64) was loaded. (lldb) bt * thread #1, name = '(pid 12991) dtrace' * frame #0: 0xffffffff80bf9322 kernel`sched_switch(td=0xfffff8015882f780, flags=259) at sched_ule.c:2448:26 frame #1: 0xffffffff80bd38d2 kernel`mi_switch(flags=259) at kern_synch.c:530:2 frame #2: 0xffffffff80c29799 kernel`sleepq_switch(wchan=0xfffff8014edff300, pri=0) at subr_sleepqueue.c:608:2 frame #3: 0xffffffff80c29b76 kernel`sleepq_catch_signals(wchan=0xfffff8014edff300, pri=0) at subr_sleepqueue.c:523:3 frame #4: 0xffffffff80c29d32 kernel`sleepq_timedwait_sig(wchan=<unavailable>, pri=<unavailable>) at subr_sleepqueue.c:704:11 frame #5: 0xffffffff80bd2e2d kernel`_sleep(ident=0xfffff8014edff300, lock=0xffffffff81df2880, priority=768, wmesg="uwait", sbt=2573804118162, pr=0, flags=512) at kern_synch.c:215:10 frame #6: 0xffffffff80be8622 kernel`umtxq_sleep(uq=0xfffff8014edff300, wmesg="uwait", timo=0xfffffe0279cb3d20) at kern_umtx.c:843:11 frame #7: 0xffffffff80bef87a kernel`do_wait(td=0xfffff8015882f780, addr=<unavailable>, id=0, timeout=0xfffffe0279cb3d90, compat32=1, is_private=1) at kern_umtx.c:1316:12 frame #8: 0xffffffff80bed264 kernel`__umtx_op_wait_uint_private(td=0xfffff8015882f780, uap=0xfffffe0279cb3dd8, ops=<unavailable>) at kern_umtx.c:3990:10 frame #9: 0xffffffff80beaabe kernel`sys__umtx_op [inlined] kern__umtx_op(td=<unavailable>, obj=<unavailable>, op=<unavailable>, val=<unavailable>, uaddr1=<unavailable>, uaddr2=<unavailable>, ops=<unavailable>) at kern_umtx.c:4999:10 frame #10: 0xffffffff80beaa89 kernel`sys__umtx_op(td=<unavailable>, uap=<unavailable>) at kern_umtx.c:5024:10 frame #11: 0xffffffff81122cd1 kernel`amd64_syscall [inlined] syscallenter(td=0xfffff8015882f780) at subr_syscall.c:165:11 frame #12: 0xffffffff81122c19 kernel`amd64_syscall(td=0xfffff8015882f780, traced=0) at trap.c:1208:2 frame #13: 0xffffffff810f1dbb kernel`fast_syscall_common at exception.S:570 ``` After: ``` ➜ sudo ./build/bin/lldb /boot/panic/kernel -c /var/crash/vmcore.last (lldb) target create "/boot/panic/kernel" --core "/var/crash/vmcore.last" Core file '/var/crash/vmcore.last' (x86_64) was loaded. (lldb) bt * thread #18, name = '(pid 5409) powerd (crashed)', stop reason = kernel panic * frame #0: 0xffffffff80bc6c91 kernel`__curthread at pcpu_aux.h:57:2 [inlined] frame #1: 0xffffffff80bc6c91 kernel`doadump(textdump=0) at kern_shutdown.c:399:2 frame #2: 0xffffffff804b3b7a kernel`db_dump(dummy=<unavailable>, dummy2=<unavailable>, dummy3=<unavailable>, dummy4=<unavailable>) at db_command.c:596:10 frame #3: 0xffffffff804b396d kernel`db_command(last_cmdp=<unavailable>, cmd_table=<unavailable>, dopager=true) at db_command.c:508:3 frame #4: 0xffffffff804b362d kernel`db_command_loop at db_command.c:555:3 frame #5: 0xffffffff804b7026 kernel`db_trap(type=<unavailable>, code=<unavailable>) at db_main.c:267:3 frame #6: 0xffffffff80c16aaf kernel`kdb_trap(type=3, code=0, tf=0xfffffe01b605b930) at subr_kdb.c:790:13 frame #7: 0xffffffff8112154e kernel`trap(frame=<unavailable>) at trap.c:614:8 frame #8: 0xffffffff810f14c8 kernel`calltrap at exception.S:285 frame #9: 0xffffffff81da2290 kernel`cn_devtab + 64 frame #10: 0xfffffe01b605b8b0 frame #11: 0xffffffff84001c43 dtrace.ko`dtrace_panic(format=<unavailable>) at dtrace.c:652:2 frame #12: 0xffffffff84005524 dtrace.ko`dtrace_action_panic(ecb=0xfffff80539cad580) at dtrace.c:7022:2 [inlined] frame #13: 0xffffffff840054de dtrace.ko`dtrace_probe(id=88998, arg0=14343377283488, arg1=<unavailable>, arg2=<unavailable>, arg3=<unavailable>, arg4=<unavailable>) at dtrace.c:7665:6 frame #14: 0xffffffff83e5213d systrace.ko`systrace_probe(sa=<unavailable>, type=<unavailable>, retval=<unavailable>) at systrace.c:226:2 frame #15: 0xffffffff8112318d kernel`syscallenter(td=0xfffff801318d5780) at subr_syscall.c:160:4 [inlined] frame #16: 0xffffffff81123112 kernel`amd64_syscall(td=0xfffff801318d5780, traced=0) at trap.c:1208:2 frame #17: 0xffffffff810f1dbb kernel`fast_syscall_common at exception.S:570 ```
jdoerfert
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Feb 25, 2026
…n splitBlockBefore() (llvm#178895) (llvm#179392) llvm#178895 caused a clang crash(see https://lab.llvm.org/buildbot/#/builders/210/builds/8229), reverted in 6d52d26. The crash is assertion `DT && "DT should be available to update LoopInfo!"' failed. https://github.com/llvm/llvm-project/blob/ad8d5349d46734826aaeae4a2ebdc6f427a5bad8/llvm/lib/Transforms/Utils/BasicBlockUtils.cpp#L1106 ``` #7 0x00007f5a380254e3 __assert_perror_fail (/usr/lib/libc.so.6+0x254e3) #8 0x0000563df5d8fde1 UpdateAnalysisInformation(llvm::BasicBlock*, llvm::BasicBlock*, llvm::ArrayRef<llvm::BasicBlock*>, llvm::DomTreeUpdater*, llvm::DominatorTree*, llvm::LoopInfo*, llvm::MemorySSAUpdater*, bool, bool&) BasicBlockUtils.cpp:0:0 #9 0x0000563df5d8f3bb llvm::splitBlockBefore(llvm::BasicBlock*, llvm::ilist_iterator_w_bits<llvm::ilist_detail::node_options<llvm::Instruction, true, false, void, true, llvm::BasicBlock>, false, false>, llvm::DomTreeUpdater*, llvm::LoopInfo*, llvm::MemorySSAUpdater*, llvm::Twine const&) #10 0x0000563df5d8cb08 llvm::SplitEdge(llvm::BasicBlock*, llvm::BasicBlock*, llvm::DominatorTree*, llvm::LoopInfo*, llvm::MemorySSAUpdater*, llvm::Twine const&) #11 0x0000563df4ff5b59 (anonymous namespace)::CodeGenPrepare::splitLargeGEPOffsets()::$_1::operator()(long, llvm::Value*, llvm::GetElementPtrInst*) const CodeGenPrepare.cpp:0:0 #12 0x0000563df4fc0ec8 (anonymous namespace)::CodeGenPrepare::_run(llvm::Function&) CodeGenPrepare.cpp:0:0 #13 0x0000563df4fbb36c (anonymous namespace)::CodeGenPrepareLegacyPass::runOnFunction(llvm::Function&) CodeGenPrepare.cpp:0:0 ``` I think this happened when we get DominatorTree with `DT.get()` in `splitLargeGEPOffsets()` but `DT.reset()` already setting it to nullptr in https://github.com/llvm/llvm-project/blob/ad8d5349d46734826aaeae4a2ebdc6f427a5bad8/llvm/lib/CodeGen/CodeGenPrepare.cpp#L660. To fix this assertion failure, use `getDT()` for `splitLargeGEPOffsets()` to build the DominatorTree if it is set to nullptr by `DT.reset()`. I don't have a RSIC-V environment, so no reproducer. Checked that the crash is fixed by rerunning buildbot with this patch https://lab.llvm.org/buildbot/#/builders/210/builds/8248
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