forked from OSchip/llvm-project
141 lines
5.9 KiB
C
141 lines
5.9 KiB
C
// RUN: %clang_cc1 -triple wasm32-unknown-unknown -o - -emit-llvm %s | FileCheck %s
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#include <stdarg.h>
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int test_i32(char *fmt, ...) {
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va_list va;
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va_start(va, fmt);
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int v = va_arg(va, int);
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va_end(va);
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return v;
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}
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// CHECK-LABEL: define i32 @test_i32(i8*{{.*}} %fmt, ...) {{.*}} {
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// CHECK: [[FMT_ADDR:%[^,=]+]] = alloca i8*, align 4
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// CHECK: [[VA:%[^,=]+]] = alloca i8*, align 4
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// CHECK: [[V:%[^,=]+]] = alloca i32, align 4
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// CHECK: store i8* %fmt, i8** [[FMT_ADDR]], align 4
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// CHECK: [[VA1:%[^,=]+]] = bitcast i8** [[VA]] to i8*
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// CHECK: call void @llvm.va_start(i8* [[VA1]])
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// CHECK: [[ARGP_CUR:%[^,=]+]] = load i8*, i8** [[VA]], align 4
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// CHECK: [[ARGP_NEXT:%[^,=]+]] = getelementptr inbounds i8, i8* [[ARGP_CUR]], i32 4
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// CHECK: store i8* [[ARGP_NEXT]], i8** [[VA]], align 4
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// CHECK: [[R3:%[^,=]+]] = bitcast i8* [[ARGP_CUR]] to i32*
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// CHECK: [[R4:%[^,=]+]] = load i32, i32* [[R3]], align 4
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// CHECK: store i32 [[R4]], i32* [[V]], align 4
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// CHECK: [[VA2:%[^,=]+]] = bitcast i8** [[VA]] to i8*
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// CHECK: call void @llvm.va_end(i8* [[VA2]])
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// CHECK: [[R5:%[^,=]+]] = load i32, i32* [[V]], align 4
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// CHECK: ret i32 [[R5]]
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// CHECK: }
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long long test_i64(char *fmt, ...) {
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va_list va;
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va_start(va, fmt);
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long long v = va_arg(va, long long);
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va_end(va);
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return v;
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}
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// CHECK-LABEL: define i64 @test_i64(i8*{{.*}} %fmt, ...) {{.*}} {
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// CHECK: [[FMT_ADDR:%[^,=]+]] = alloca i8*, align 4
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// CHECK: [[VA:%[^,=]+]] = alloca i8*, align 4
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// CHECK: [[V:%[^,=]+]] = alloca i64, align 8
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// CHECK: store i8* %fmt, i8** [[FMT_ADDR]], align 4
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// CHECK: [[VA1:%[^,=]+]] = bitcast i8** [[VA]] to i8*
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// CHECK: call void @llvm.va_start(i8* [[VA1]])
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// CHECK: [[ARGP_CUR:%[^,=]+]] = load i8*, i8** [[VA]], align 4
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// CHECK: [[R0:%[^,=]+]] = ptrtoint i8* [[ARGP_CUR]] to i32
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// CHECK: [[R1:%[^,=]+]] = add i32 [[R0]], 7
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// CHECK: [[R2:%[^,=]+]] = and i32 [[R1]], -8
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// CHECK: [[ARGP_CUR_ALIGNED:%[^,=]+]] = inttoptr i32 [[R2]] to i8*
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// CHECK: [[ARGP_NEXT:%[^,=]+]] = getelementptr inbounds i8, i8* [[ARGP_CUR_ALIGNED]], i32 8
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// CHECK: store i8* [[ARGP_NEXT]], i8** [[VA]], align 4
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// CHECK: [[R3:%[^,=]+]] = bitcast i8* [[ARGP_CUR_ALIGNED]] to i64*
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// CHECK: [[R4:%[^,=]+]] = load i64, i64* [[R3]], align 8
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// CHECK: store i64 [[R4]], i64* [[V]], align 8
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// CHECK: [[VA2:%[^,=]+]] = bitcast i8** [[VA]] to i8*
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// CHECK: call void @llvm.va_end(i8* [[VA2]])
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// CHECK: [[R5:%[^,=]+]] = load i64, i64* [[V]], align 8
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// CHECK: ret i64 [[R5]]
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// CHECK: }
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struct S {
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int x;
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int y;
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int z;
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};
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struct S test_struct(char *fmt, ...) {
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va_list va;
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va_start(va, fmt);
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struct S v = va_arg(va, struct S);
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va_end(va);
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return v;
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}
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// CHECK: define void @test_struct([[STRUCT_S:%[^,=]+]]*{{.*}} noalias sret({{.*}}) align 4 [[AGG_RESULT:%.*]], i8*{{.*}} %fmt, ...) {{.*}} {
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// CHECK: [[FMT_ADDR:%[^,=]+]] = alloca i8*, align 4
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// CHECK-NEXT: [[VA:%[^,=]+]] = alloca i8*, align 4
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// CHECK-NEXT: store i8* %fmt, i8** [[FMT_ADDR]], align 4
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// CHECK-NEXT: [[VA1:%[^,=]+]] = bitcast i8** [[VA]] to i8*
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// CHECK-NEXT: call void @llvm.va_start(i8* [[VA1]])
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// CHECK-NEXT: [[ARGP_CUR:%[^,=]+]] = load i8*, i8** [[VA]], align 4
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// CHECK-NEXT: [[ARGP_NEXT:%[^,=]+]] = getelementptr inbounds i8, i8* [[ARGP_CUR]], i32 4
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// CHECK-NEXT: store i8* [[ARGP_NEXT]], i8** [[VA]], align 4
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// CHECK-NEXT: [[R3:%[^,=]+]] = bitcast i8* [[ARGP_CUR]] to [[STRUCT_S]]**
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// CHECK-NEXT: [[R4:%[^,=]+]] = load [[STRUCT_S]]*, [[STRUCT_S]]** [[R3]], align 4
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// CHECK-NEXT: [[R5:%[^,=]+]] = bitcast [[STRUCT_S]]* [[AGG_RESULT]] to i8*
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// CHECK-NEXT: [[R6:%[^,=]+]] = bitcast [[STRUCT_S]]* [[R4]] to i8*
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// CHECK-NEXT: call void @llvm.memcpy.p0i8.p0i8.i32(i8* align 4 [[R5]], i8* align 4 [[R6]], i32 12, i1 false)
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// CHECK-NEXT: [[VA2:%[^,=]+]] = bitcast i8** [[VA]] to i8*
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// CHECK-NEXT: call void @llvm.va_end(i8* [[VA2]])
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// CHECK-NEXT: ret void
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// CHECK-NEXT: }
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struct Z {};
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struct S test_empty_struct(char *fmt, ...) {
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va_list va;
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va_start(va, fmt);
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struct Z u = va_arg(va, struct Z);
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struct S v = va_arg(va, struct S);
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va_end(va);
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return v;
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}
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// CHECK: define void @test_empty_struct([[STRUCT_S:%[^,=]+]]*{{.*}} noalias sret([[STRUCT_S]]) align 4 [[AGG_RESULT:%.*]], i8*{{.*}} %fmt, ...) {{.*}} {
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// CHECK: [[FMT_ADDR:%[^,=]+]] = alloca i8*, align 4
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// CHECK-NEXT: [[VA:%[^,=]+]] = alloca i8*, align 4
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// CHECK-NEXT: [[U:%[^,=]+]] = alloca [[STRUCT_Z:%[^,=]+]], align 1
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// CHECK-NEXT: store i8* %fmt, i8** [[FMT_ADDR]], align 4
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// CHECK-NEXT: [[VA1:%[^,=]+]] = bitcast i8** [[VA]] to i8*
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// CHECK-NEXT: call void @llvm.va_start(i8* [[VA1]])
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// CHECK-NEXT: [[ARGP_CUR:%[^,=]+]] = load i8*, i8** [[VA]], align 4
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// CHECK-NEXT: [[ARGP_NEXT:%[^,=]+]] = getelementptr inbounds i8, i8* [[ARGP_CUR]], i32 0
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// CHECK-NEXT: store i8* [[ARGP_NEXT]], i8** [[VA]], align 4
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// CHECK-NEXT: [[R0:%[^,=]+]] = bitcast i8* [[ARGP_CUR]] to [[STRUCT_Z]]*
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// CHECK-NEXT: [[R1:%[^,=]+]] = bitcast [[STRUCT_Z]]* [[U]] to i8*
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// CHECK-NEXT: [[R2:%[^,=]+]] = bitcast [[STRUCT_Z]]* [[R0]] to i8*
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// CHECK-NEXT: call void @llvm.memcpy.p0i8.p0i8.i32(i8* align 1 [[R1]], i8* align 4 [[R2]], i32 0, i1 false)
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// CHECK-NEXT: [[ARGP_CUR2:%[^,=]+]] = load i8*, i8** [[VA]], align 4
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// CHECK-NEXT: [[ARGP_NEXT2:%[^,=]+]] = getelementptr inbounds i8, i8* [[ARGP_CUR2]], i32 4
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// CHECK-NEXT: store i8* [[ARGP_NEXT2]], i8** [[VA]], align 4
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// CHECK-NEXT: [[R3:%[^,=]+]] = bitcast i8* [[ARGP_CUR2]] to [[STRUCT_S]]**
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// CHECK-NEXT: [[R4:%[^,=]+]] = load [[STRUCT_S]]*, [[STRUCT_S]]** [[R3]], align 4
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// CHECK-NEXT: [[R5:%[^,=]+]] = bitcast [[STRUCT_S]]* [[AGG_RESULT]] to i8*
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// CHECK-NEXT: [[R6:%[^,=]+]] = bitcast [[STRUCT_S]]* [[R4]] to i8*
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// CHECK-NEXT: call void @llvm.memcpy.p0i8.p0i8.i32(i8* align 4 [[R5]], i8* align 4 [[R6]], i32 12, i1 false)
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// CHECK-NEXT: [[VA2:%[^,=]+]] = bitcast i8** [[VA]] to i8*
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// CHECK-NEXT: call void @llvm.va_end(i8* [[VA2]])
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// CHECK-NEXT: ret void
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// CHECK-NEXT: }
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