647 lines
13 KiB
LLVM
647 lines
13 KiB
LLVM
; RUN: llc -mtriple=mips64el-unknown-unknown -mcpu=mips64 -soft-float -O1 \
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; RUN: -disable-mips-delay-filler < %s | FileCheck %s
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@gld0 = external global fp128
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@gld1 = external global fp128
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@gld2 = external global fp128
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@gf1 = external global float
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@gd1 = external global double
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; CHECK: addLD:
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; CHECK: ld $25, %call16(__addtf3)
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define fp128 @addLD() {
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entry:
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%0 = load fp128* @gld0, align 16
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%1 = load fp128* @gld1, align 16
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%add = fadd fp128 %0, %1
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ret fp128 %add
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}
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; CHECK: subLD:
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; CHECK: ld $25, %call16(__subtf3)
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define fp128 @subLD() {
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entry:
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%0 = load fp128* @gld0, align 16
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%1 = load fp128* @gld1, align 16
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%sub = fsub fp128 %0, %1
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ret fp128 %sub
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}
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; CHECK: mulLD:
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; CHECK: ld $25, %call16(__multf3)
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define fp128 @mulLD() {
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entry:
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%0 = load fp128* @gld0, align 16
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%1 = load fp128* @gld1, align 16
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%mul = fmul fp128 %0, %1
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ret fp128 %mul
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}
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; CHECK: divLD:
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; CHECK: ld $25, %call16(__divtf3)
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define fp128 @divLD() {
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entry:
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%0 = load fp128* @gld0, align 16
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%1 = load fp128* @gld1, align 16
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%div = fdiv fp128 %0, %1
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ret fp128 %div
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}
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; CHECK: conv_LD_char:
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; CHECK: ld $25, %call16(__floatsitf)
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define fp128 @conv_LD_char(i8 signext %a) {
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entry:
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%conv = sitofp i8 %a to fp128
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ret fp128 %conv
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}
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; CHECK: conv_LD_short:
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; CHECK: ld $25, %call16(__floatsitf)
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define fp128 @conv_LD_short(i16 signext %a) {
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entry:
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%conv = sitofp i16 %a to fp128
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ret fp128 %conv
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}
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; CHECK: conv_LD_int:
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; CHECK: ld $25, %call16(__floatsitf)
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define fp128 @conv_LD_int(i32 %a) {
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entry:
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%conv = sitofp i32 %a to fp128
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ret fp128 %conv
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}
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; CHECK: conv_LD_LL:
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; CHECK: ld $25, %call16(__floatditf)
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define fp128 @conv_LD_LL(i64 %a) {
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entry:
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%conv = sitofp i64 %a to fp128
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ret fp128 %conv
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}
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; CHECK: conv_LD_UChar:
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; CHECK: ld $25, %call16(__floatunsitf)
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define fp128 @conv_LD_UChar(i8 zeroext %a) {
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entry:
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%conv = uitofp i8 %a to fp128
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ret fp128 %conv
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}
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; CHECK: conv_LD_UShort:
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; CHECK: ld $25, %call16(__floatunsitf)
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define fp128 @conv_LD_UShort(i16 zeroext %a) {
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entry:
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%conv = uitofp i16 %a to fp128
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ret fp128 %conv
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}
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; CHECK: conv_LD_UInt:
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; CHECK: ld $25, %call16(__floatunsitf)
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define fp128 @conv_LD_UInt(i32 %a) {
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entry:
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%conv = uitofp i32 %a to fp128
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ret fp128 %conv
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}
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; CHECK: conv_LD_ULL:
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; CHECK: ld $25, %call16(__floatunditf)
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define fp128 @conv_LD_ULL(i64 %a) {
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entry:
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%conv = uitofp i64 %a to fp128
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ret fp128 %conv
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}
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; CHECK: conv_char_LD:
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; CHECK: ld $25, %call16(__fixtfsi)
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define signext i8 @conv_char_LD(fp128 %a) {
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entry:
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%conv = fptosi fp128 %a to i8
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ret i8 %conv
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}
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; CHECK: conv_short_LD:
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; CHECK: ld $25, %call16(__fixtfsi)
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define signext i16 @conv_short_LD(fp128 %a) {
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entry:
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%conv = fptosi fp128 %a to i16
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ret i16 %conv
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}
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; CHECK: conv_int_LD:
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; CHECK: ld $25, %call16(__fixtfsi)
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define i32 @conv_int_LD(fp128 %a) {
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entry:
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%conv = fptosi fp128 %a to i32
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ret i32 %conv
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}
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; CHECK: conv_LL_LD:
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; CHECK: ld $25, %call16(__fixtfdi)
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define i64 @conv_LL_LD(fp128 %a) {
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entry:
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%conv = fptosi fp128 %a to i64
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ret i64 %conv
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}
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; CHECK: conv_UChar_LD:
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; CHECK: ld $25, %call16(__fixtfsi)
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define zeroext i8 @conv_UChar_LD(fp128 %a) {
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entry:
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%conv = fptoui fp128 %a to i8
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ret i8 %conv
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}
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; CHECK: conv_UShort_LD:
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; CHECK: ld $25, %call16(__fixtfsi)
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define zeroext i16 @conv_UShort_LD(fp128 %a) {
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entry:
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%conv = fptoui fp128 %a to i16
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ret i16 %conv
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}
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; CHECK: conv_UInt_LD:
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; CHECK: ld $25, %call16(__fixunstfsi)
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define i32 @conv_UInt_LD(fp128 %a) {
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entry:
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%conv = fptoui fp128 %a to i32
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ret i32 %conv
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}
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; CHECK: conv_ULL_LD:
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; CHECK: ld $25, %call16(__fixunstfdi)
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define i64 @conv_ULL_LD(fp128 %a) {
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entry:
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%conv = fptoui fp128 %a to i64
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ret i64 %conv
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}
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; CHECK: conv_LD_float:
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; CHECK: ld $25, %call16(__extendsftf2)
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define fp128 @conv_LD_float(float %a) {
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entry:
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%conv = fpext float %a to fp128
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ret fp128 %conv
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}
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; CHECK: conv_LD_double:
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; CHECK: ld $25, %call16(__extenddftf2)
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define fp128 @conv_LD_double(double %a) {
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entry:
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%conv = fpext double %a to fp128
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ret fp128 %conv
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}
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; CHECK: conv_float_LD:
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; CHECK: ld $25, %call16(__trunctfsf2)
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define float @conv_float_LD(fp128 %a) {
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entry:
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%conv = fptrunc fp128 %a to float
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ret float %conv
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}
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; CHECK: conv_double_LD:
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; CHECK: ld $25, %call16(__trunctfdf2)
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define double @conv_double_LD(fp128 %a) {
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entry:
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%conv = fptrunc fp128 %a to double
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ret double %conv
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}
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; CHECK: libcall1_fabsl:
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; CHECK: ld $[[R0:[0-9]+]], 8($[[R4:[0-9]+]])
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; CHECK: daddiu $[[R1:[0-9]+]], $zero, 1
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; CHECK: dsll $[[R2:[0-9]+]], $[[R1]], 63
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; CHECK: daddiu $[[R3:[0-9]+]], $[[R2]], -1
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; CHECK: and $4, $[[R0]], $[[R3]]
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; CHECK: ld $2, 0($[[R4]])
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define fp128 @libcall1_fabsl() {
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entry:
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%0 = load fp128* @gld0, align 16
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%call = tail call fp128 @fabsl(fp128 %0) nounwind readnone
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ret fp128 %call
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}
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declare fp128 @fabsl(fp128) #1
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; CHECK: libcall1_ceill:
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; CHECK: ld $25, %call16(ceill)
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define fp128 @libcall1_ceill() {
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entry:
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%0 = load fp128* @gld0, align 16
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%call = tail call fp128 @ceill(fp128 %0) nounwind readnone
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ret fp128 %call
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}
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declare fp128 @ceill(fp128) #1
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; CHECK: libcall1_sinl:
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; CHECK: ld $25, %call16(sinl)
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define fp128 @libcall1_sinl() {
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entry:
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%0 = load fp128* @gld0, align 16
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%call = tail call fp128 @sinl(fp128 %0) nounwind
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ret fp128 %call
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}
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declare fp128 @sinl(fp128) #2
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; CHECK: libcall1_cosl:
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; CHECK: ld $25, %call16(cosl)
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define fp128 @libcall1_cosl() {
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entry:
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%0 = load fp128* @gld0, align 16
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%call = tail call fp128 @cosl(fp128 %0) nounwind
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ret fp128 %call
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}
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declare fp128 @cosl(fp128) #2
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; CHECK: libcall1_expl:
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; CHECK: ld $25, %call16(expl)
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define fp128 @libcall1_expl() {
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entry:
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%0 = load fp128* @gld0, align 16
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%call = tail call fp128 @expl(fp128 %0) nounwind
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ret fp128 %call
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}
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declare fp128 @expl(fp128) #2
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; CHECK: libcall1_exp2l:
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; CHECK: ld $25, %call16(exp2l)
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define fp128 @libcall1_exp2l() {
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entry:
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%0 = load fp128* @gld0, align 16
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%call = tail call fp128 @exp2l(fp128 %0) nounwind
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ret fp128 %call
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}
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declare fp128 @exp2l(fp128) #2
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; CHECK: libcall1_logl:
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; CHECK: ld $25, %call16(logl)
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define fp128 @libcall1_logl() {
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entry:
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%0 = load fp128* @gld0, align 16
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%call = tail call fp128 @logl(fp128 %0) nounwind
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ret fp128 %call
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}
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declare fp128 @logl(fp128) #2
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; CHECK: libcall1_log2l:
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; CHECK: ld $25, %call16(log2l)
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define fp128 @libcall1_log2l() {
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entry:
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%0 = load fp128* @gld0, align 16
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%call = tail call fp128 @log2l(fp128 %0) nounwind
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ret fp128 %call
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}
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declare fp128 @log2l(fp128) #2
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; CHECK: libcall1_log10l:
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; CHECK: ld $25, %call16(log10l)
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define fp128 @libcall1_log10l() {
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entry:
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%0 = load fp128* @gld0, align 16
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%call = tail call fp128 @log10l(fp128 %0) nounwind
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ret fp128 %call
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}
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declare fp128 @log10l(fp128) #2
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; CHECK: libcall1_nearbyintl:
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; CHECK: ld $25, %call16(nearbyintl)
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define fp128 @libcall1_nearbyintl() {
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entry:
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%0 = load fp128* @gld0, align 16
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%call = tail call fp128 @nearbyintl(fp128 %0) nounwind readnone
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ret fp128 %call
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}
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declare fp128 @nearbyintl(fp128) #1
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; CHECK: libcall1_floorl:
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; CHECK: ld $25, %call16(floorl)
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define fp128 @libcall1_floorl() {
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entry:
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%0 = load fp128* @gld0, align 16
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%call = tail call fp128 @floorl(fp128 %0) nounwind readnone
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ret fp128 %call
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}
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declare fp128 @floorl(fp128) #1
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; CHECK: libcall1_sqrtl:
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; CHECK: ld $25, %call16(sqrtl)
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define fp128 @libcall1_sqrtl() {
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entry:
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%0 = load fp128* @gld0, align 16
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%call = tail call fp128 @sqrtl(fp128 %0) nounwind
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ret fp128 %call
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}
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declare fp128 @sqrtl(fp128) #2
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; CHECK: libcall1_rintl:
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; CHECK: ld $25, %call16(rintl)
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define fp128 @libcall1_rintl() {
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entry:
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%0 = load fp128* @gld0, align 16
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%call = tail call fp128 @rintl(fp128 %0) nounwind readnone
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ret fp128 %call
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}
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declare fp128 @rintl(fp128) #1
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; CHECK: libcall_powil:
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; CHECK: ld $25, %call16(__powitf2)
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define fp128 @libcall_powil(fp128 %a, i32 %b) {
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entry:
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%0 = tail call fp128 @llvm.powi.f128(fp128 %a, i32 %b)
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ret fp128 %0
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}
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declare fp128 @llvm.powi.f128(fp128, i32) #3
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; CHECK: libcall2_copysignl:
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; CHECK: daddiu $[[R2:[0-9]+]], $zero, 1
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; CHECK: dsll $[[R3:[0-9]+]], $[[R2]], 63
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; CHECK: ld $[[R0:[0-9]+]], %got_disp(gld1)
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; CHECK: ld $[[R1:[0-9]+]], 8($[[R0]])
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; CHECK: and $[[R4:[0-9]+]], $[[R1]], $[[R3]]
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; CHECK: ld $[[R5:[0-9]+]], %got_disp(gld0)
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; CHECK: ld $[[R6:[0-9]+]], 8($[[R5]])
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; CHECK: daddiu $[[R7:[0-9]+]], $[[R3]], -1
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; CHECK: and $[[R8:[0-9]+]], $[[R6]], $[[R7]]
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; CHECK: or $4, $[[R8]], $[[R4]]
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; CHECK: ld $2, 0($[[R5]])
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define fp128 @libcall2_copysignl() {
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entry:
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%0 = load fp128* @gld0, align 16
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%1 = load fp128* @gld1, align 16
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%call = tail call fp128 @copysignl(fp128 %0, fp128 %1) nounwind readnone
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ret fp128 %call
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}
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declare fp128 @copysignl(fp128, fp128) #1
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; CHECK: libcall2_powl:
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; CHECK: ld $25, %call16(powl)
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define fp128 @libcall2_powl() {
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entry:
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%0 = load fp128* @gld0, align 16
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%1 = load fp128* @gld1, align 16
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%call = tail call fp128 @powl(fp128 %0, fp128 %1) nounwind
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ret fp128 %call
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}
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declare fp128 @powl(fp128, fp128) #2
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; CHECK: libcall2_fmodl:
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; CHECK: ld $25, %call16(fmodl)
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define fp128 @libcall2_fmodl() {
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entry:
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%0 = load fp128* @gld0, align 16
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%1 = load fp128* @gld1, align 16
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%call = tail call fp128 @fmodl(fp128 %0, fp128 %1) nounwind
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ret fp128 %call
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}
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declare fp128 @fmodl(fp128, fp128) #2
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; CHECK: libcall3_fmal:
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; CHECK: ld $25, %call16(fmal)
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define fp128 @libcall3_fmal() {
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entry:
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%0 = load fp128* @gld0, align 16
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%1 = load fp128* @gld2, align 16
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%2 = load fp128* @gld1, align 16
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%3 = tail call fp128 @llvm.fma.f128(fp128 %0, fp128 %2, fp128 %1)
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ret fp128 %3
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}
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declare fp128 @llvm.fma.f128(fp128, fp128, fp128) #4
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; CHECK: cmp_lt:
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; CHECK: ld $25, %call16(__lttf2)
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define i32 @cmp_lt(fp128 %a, fp128 %b) {
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entry:
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%cmp = fcmp olt fp128 %a, %b
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%conv = zext i1 %cmp to i32
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ret i32 %conv
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}
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; CHECK: cmp_le:
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; CHECK: ld $25, %call16(__letf2)
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define i32 @cmp_le(fp128 %a, fp128 %b) {
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entry:
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%cmp = fcmp ole fp128 %a, %b
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%conv = zext i1 %cmp to i32
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ret i32 %conv
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}
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; CHECK: cmp_gt:
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; CHECK: ld $25, %call16(__gttf2)
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define i32 @cmp_gt(fp128 %a, fp128 %b) {
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entry:
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%cmp = fcmp ogt fp128 %a, %b
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%conv = zext i1 %cmp to i32
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ret i32 %conv
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}
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; CHECK: cmp_ge:
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; CHECK: ld $25, %call16(__getf2)
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define i32 @cmp_ge(fp128 %a, fp128 %b) {
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entry:
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%cmp = fcmp oge fp128 %a, %b
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%conv = zext i1 %cmp to i32
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ret i32 %conv
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}
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; CHECK: cmp_eq:
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; CHECK: ld $25, %call16(__eqtf2)
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define i32 @cmp_eq(fp128 %a, fp128 %b) {
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entry:
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%cmp = fcmp oeq fp128 %a, %b
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%conv = zext i1 %cmp to i32
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ret i32 %conv
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}
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; CHECK: cmp_ne:
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; CHECK: ld $25, %call16(__netf2)
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define i32 @cmp_ne(fp128 %a, fp128 %b) {
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entry:
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%cmp = fcmp une fp128 %a, %b
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%conv = zext i1 %cmp to i32
|
|
ret i32 %conv
|
|
}
|
|
|
|
; CHECK: load_LD_LD:
|
|
; CHECK: ld $[[R0:[0-9]+]], %got_disp(gld1)
|
|
; CHECK: ld $2, 0($[[R0]])
|
|
; CHECK: ld $4, 8($[[R0]])
|
|
|
|
define fp128 @load_LD_LD() {
|
|
entry:
|
|
%0 = load fp128* @gld1, align 16
|
|
ret fp128 %0
|
|
}
|
|
|
|
; CHECK: load_LD_float:
|
|
; CHECK: ld $[[R0:[0-9]+]], %got_disp(gf1)
|
|
; CHECK: lw $4, 0($[[R0]])
|
|
; CHECK: ld $25, %call16(__extendsftf2)
|
|
; CHECK: jalr $25
|
|
|
|
define fp128 @load_LD_float() {
|
|
entry:
|
|
%0 = load float* @gf1, align 4
|
|
%conv = fpext float %0 to fp128
|
|
ret fp128 %conv
|
|
}
|
|
|
|
; CHECK: load_LD_double:
|
|
; CHECK: ld $[[R0:[0-9]+]], %got_disp(gd1)
|
|
; CHECK: ld $4, 0($[[R0]])
|
|
; CHECK: ld $25, %call16(__extenddftf2)
|
|
; CHECK: jalr $25
|
|
|
|
define fp128 @load_LD_double() {
|
|
entry:
|
|
%0 = load double* @gd1, align 8
|
|
%conv = fpext double %0 to fp128
|
|
ret fp128 %conv
|
|
}
|
|
|
|
; CHECK: store_LD_LD:
|
|
; CHECK: ld $[[R0:[0-9]+]], %got_disp(gld1)
|
|
; CHECK: ld $[[R1:[0-9]+]], 0($[[R0]])
|
|
; CHECK: ld $[[R2:[0-9]+]], 8($[[R0]])
|
|
; CHECK: ld $[[R3:[0-9]+]], %got_disp(gld0)
|
|
; CHECK: sd $[[R2]], 8($[[R3]])
|
|
; CHECK: sd $[[R1]], 0($[[R3]])
|
|
|
|
define void @store_LD_LD() {
|
|
entry:
|
|
%0 = load fp128* @gld1, align 16
|
|
store fp128 %0, fp128* @gld0, align 16
|
|
ret void
|
|
}
|
|
|
|
; CHECK: store_LD_float:
|
|
; CHECK: ld $[[R0:[0-9]+]], %got_disp(gld1)
|
|
; CHECK: ld $4, 0($[[R0]])
|
|
; CHECK: ld $5, 8($[[R0]])
|
|
; CHECK: ld $25, %call16(__trunctfsf2)
|
|
; CHECK: jalr $25
|
|
; CHECK: ld $[[R1:[0-9]+]], %got_disp(gf1)
|
|
; CHECK: sw $2, 0($[[R1]])
|
|
|
|
define void @store_LD_float() {
|
|
entry:
|
|
%0 = load fp128* @gld1, align 16
|
|
%conv = fptrunc fp128 %0 to float
|
|
store float %conv, float* @gf1, align 4
|
|
ret void
|
|
}
|
|
|
|
; CHECK: store_LD_double:
|
|
; CHECK: ld $[[R0:[0-9]+]], %got_disp(gld1)
|
|
; CHECK: ld $4, 0($[[R0]])
|
|
; CHECK: ld $5, 8($[[R0]])
|
|
; CHECK: ld $25, %call16(__trunctfdf2)
|
|
; CHECK: jalr $25
|
|
; CHECK: ld $[[R1:[0-9]+]], %got_disp(gd1)
|
|
; CHECK: sd $2, 0($[[R1]])
|
|
|
|
define void @store_LD_double() {
|
|
entry:
|
|
%0 = load fp128* @gld1, align 16
|
|
%conv = fptrunc fp128 %0 to double
|
|
store double %conv, double* @gd1, align 8
|
|
ret void
|
|
}
|
|
|
|
; CHECK: select_LD:
|
|
; CHECK: movn $8, $6, $4
|
|
; CHECK: movn $9, $7, $4
|
|
; CHECK: move $2, $8
|
|
; CHECK: move $4, $9
|
|
|
|
define fp128 @select_LD(i32 %a, i64, fp128 %b, fp128 %c) {
|
|
entry:
|
|
%tobool = icmp ne i32 %a, 0
|
|
%cond = select i1 %tobool, fp128 %b, fp128 %c
|
|
ret fp128 %cond
|
|
}
|
|
|
|
; CHECK: selectCC_LD:
|
|
; CHECK: move $[[R0:[0-9]+]], $11
|
|
; CHECK: move $[[R1:[0-9]+]], $10
|
|
; CHECK: move $[[R2:[0-9]+]], $9
|
|
; CHECK: move $[[R3:[0-9]+]], $8
|
|
; CHECK: ld $25, %call16(__gttf2)($gp)
|
|
; CHECK: jalr $25
|
|
; CHECK: slti $1, $2, 1
|
|
; CHECK: movz $[[R1]], $[[R3]], $1
|
|
; CHECK: movz $[[R0]], $[[R2]], $1
|
|
; CHECK: move $2, $[[R1]]
|
|
; CHECK: move $4, $[[R0]]
|
|
|
|
define fp128 @selectCC_LD(fp128 %a, fp128 %b, fp128 %c, fp128 %d) {
|
|
entry:
|
|
%cmp = fcmp ogt fp128 %a, %b
|
|
%cond = select i1 %cmp, fp128 %c, fp128 %d
|
|
ret fp128 %cond
|
|
}
|