blob: e3dbd1f02531a6e789de893b1af2feea8a8ebbd9 [file]
; NOTE: Assertions have been autogenerated by utils/update_test_checks.py UTC_ARGS: --include-generated-funcs --version 6
; Check that we can handle spills of array allocas.
; Verify that the array alloca is stored as an array field,
; and we use the correct index to access prefix, data, and suffix.
; RUN: opt < %s -passes='cgscc(coro-split),simplifycfg,early-cse' -S | FileCheck %s
target datalayout = "e-m:e-p:64:64-i64:64-f80:128-n8:16:32:64-S128"
declare void @consume.double.ptr(ptr)
declare void @consume.i32.ptr(ptr)
define ptr @f() presplitcoroutine {
entry:
%prefix = alloca double
%data = alloca i32, i32 4
%suffix = alloca double
%id = call token @llvm.coro.id(i32 0, ptr null, ptr @f, ptr null)
%size = call i32 @llvm.coro.size.i32()
%alloc = call ptr @malloc(i32 %size)
%hdl = call ptr @llvm.coro.begin(token %id, ptr %alloc)
call void @consume.double.ptr(ptr %prefix)
call void @consume.i32.ptr(ptr %data)
call void @consume.double.ptr(ptr %suffix)
%0 = call i8 @llvm.coro.suspend(token none, i1 false)
switch i8 %0, label %suspend [i8 0, label %resume
i8 1, label %cleanup]
resume:
call void @consume.double.ptr(ptr %prefix)
call void @consume.i32.ptr(ptr %data)
call void @consume.double.ptr(ptr %suffix)
br label %cleanup
cleanup:
%mem = call ptr @llvm.coro.free(token %id, ptr %hdl)
call void @free(ptr %mem)
br label %suspend
suspend:
call void @llvm.coro.end(ptr %hdl, i1 0, token none)
ret ptr %hdl
}
declare ptr @llvm.coro.free(token, ptr)
declare i32 @llvm.coro.size.i32()
declare i8 @llvm.coro.suspend(token, i1)
declare void @llvm.coro.resume(ptr)
declare void @llvm.coro.destroy(ptr)
declare token @llvm.coro.id(i32, ptr, ptr, ptr)
declare i1 @llvm.coro.alloc(token)
declare ptr @llvm.coro.begin(token, ptr)
declare void @llvm.coro.end(ptr, i1, token)
declare noalias ptr @malloc(i32)
declare double @print(double)
declare void @free(ptr)
; CHECK-LABEL: define ptr @f() {
; CHECK-NEXT: [[ENTRY:.*:]]
; CHECK-NEXT: [[ID:%.*]] = call token @llvm.coro.id(i32 0, ptr null, ptr @f, ptr @f.resumers)
; CHECK-NEXT: [[ALLOC:%.*]] = call ptr @malloc(i32 56)
; CHECK-NEXT: [[HDL:%.*]] = call noalias nonnull ptr @llvm.coro.begin(token [[ID]], ptr [[ALLOC]])
; CHECK-NEXT: store ptr @f.resume, ptr [[HDL]], align 8
; CHECK-NEXT: [[DESTROY_ADDR:%.*]] = getelementptr inbounds i8, ptr [[HDL]], i64 8
; CHECK-NEXT: store ptr @f.destroy, ptr [[DESTROY_ADDR]], align 8
; CHECK-NEXT: [[PREFIX_RELOAD_ADDR:%.*]] = getelementptr inbounds i8, ptr [[HDL]], i64 16
; CHECK-NEXT: [[DATA_RELOAD_ADDR:%.*]] = getelementptr inbounds i8, ptr [[HDL]], i64 32
; CHECK-NEXT: [[SUFFIX_RELOAD_ADDR:%.*]] = getelementptr inbounds i8, ptr [[HDL]], i64 24
; CHECK-NEXT: call void @consume.double.ptr(ptr [[PREFIX_RELOAD_ADDR]])
; CHECK-NEXT: call void @consume.i32.ptr(ptr [[DATA_RELOAD_ADDR]])
; CHECK-NEXT: call void @consume.double.ptr(ptr [[SUFFIX_RELOAD_ADDR]])
; CHECK-NEXT: [[INDEX_ADDR1:%.*]] = getelementptr inbounds i8, ptr [[HDL]], i64 48
; CHECK-NEXT: store i1 false, ptr [[INDEX_ADDR1]], align 1
; CHECK-NEXT: ret ptr [[HDL]]
;
;
; CHECK-LABEL: define internal fastcc void @f.resume(
; CHECK-SAME: ptr noundef nonnull align 8 dereferenceable(56) [[HDL:%.*]]) {
; CHECK-NEXT: [[ENTRY_RESUME:.*:]]
; CHECK-NEXT: [[PREFIX_RELOAD_ADDR:%.*]] = getelementptr inbounds i8, ptr [[HDL]], i64 16
; CHECK-NEXT: [[DATA_RELOAD_ADDR:%.*]] = getelementptr inbounds i8, ptr [[HDL]], i64 32
; CHECK-NEXT: [[SUFFIX_RELOAD_ADDR:%.*]] = getelementptr inbounds i8, ptr [[HDL]], i64 24
; CHECK-NEXT: call void @consume.double.ptr(ptr [[PREFIX_RELOAD_ADDR]])
; CHECK-NEXT: call void @consume.i32.ptr(ptr [[DATA_RELOAD_ADDR]])
; CHECK-NEXT: call void @consume.double.ptr(ptr [[SUFFIX_RELOAD_ADDR]])
; CHECK-NEXT: [[MEM:%.*]] = call ptr @llvm.coro.free(token poison, ptr [[HDL]])
; CHECK-NEXT: call void @free(ptr [[MEM]])
; CHECK-NEXT: ret void
;
;
; CHECK-LABEL: define internal fastcc void @f.destroy(
; CHECK-SAME: ptr noundef nonnull align 8 dereferenceable(56) [[HDL:%.*]]) {
; CHECK-NEXT: [[ENTRY_DESTROY:.*:]]
; CHECK-NEXT: [[MEM:%.*]] = call ptr @llvm.coro.free(token poison, ptr [[HDL]])
; CHECK-NEXT: call void @free(ptr [[MEM]])
; CHECK-NEXT: ret void
;
;
; CHECK-LABEL: define internal fastcc void @f.cleanup(
; CHECK-SAME: ptr noundef nonnull align 8 dereferenceable(56) [[HDL:%.*]]) {
; CHECK-NEXT: [[ENTRY_CLEANUP:.*:]]
; CHECK-NEXT: call void @free(ptr null)
; CHECK-NEXT: ret void
;