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ae3a0be92e
integer and floating-point opcodes, introducing FAdd, FSub, and FMul. For now, the AsmParser, BitcodeReader, and IRBuilder all preserve backwards compatability, and the Core LLVM APIs preserve backwards compatibility for IR producers. Most front-ends won't need to change immediately. This implements the first step of the plan outlined here: http://nondot.org/sabre/LLVMNotes/IntegerOverflow.txt git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@72897 91177308-0d34-0410-b5e6-96231b3b80d8
33 lines
1.3 KiB
LLVM
33 lines
1.3 KiB
LLVM
; Verify that when @G is SROA'd that the new globals have correct
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; alignments. Elements 0 and 2 must be 16-byte aligned, and element
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; 1 must be at least 8 byte aligned (but could be more).
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; RUN: llvm-as < %s | opt -globalopt | llvm-dis | grep {@G.0 = internal global .*align 16}
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; RUN: llvm-as < %s | opt -globalopt | llvm-dis | grep {@G.1 = internal global .*align 8}
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; RUN: llvm-as < %s | opt -globalopt | llvm-dis | grep {@G.2 = internal global .*align 16}
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; rdar://5891920
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target datalayout = "e-p:64:64:64-i1:8:8-i8:8:8-i16:16:16-i32:32:32-i64:64:64-f32:32:32-f64:32:32-v64:64:64-v128:128:128-a0:0:64-s0:64:64-f80:128:128"
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target triple = "x86_64-apple-darwin8"
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%T = type { double, double, double }
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@G = internal global %T zeroinitializer, align 16
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define void @test() {
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store double 1.0, double* getelementptr (%T* @G, i32 0, i32 0), align 16
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store double 2.0, double* getelementptr (%T* @G, i32 0, i32 1), align 8
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store double 3.0, double* getelementptr (%T* @G, i32 0, i32 2), align 16
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ret void
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}
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define double @test2() {
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%V1 = load double* getelementptr (%T* @G, i32 0, i32 0), align 16
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%V2 = load double* getelementptr (%T* @G, i32 0, i32 1), align 8
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%V3 = load double* getelementptr (%T* @G, i32 0, i32 2), align 16
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%R = fadd double %V1, %V2
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%R2 = fadd double %R, %V3
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ret double %R2
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}
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