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https://github.com/RPCS3/llvm-mirror.git
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94cdac52e5
The MicroBlaze is a highly configurable 32-bit soft-microprocessor for use on Xilinx FPGAs. For more information see: http://www.xilinx.com/tools/microblaze.htm http://en.wikipedia.org/wiki/MicroBlaze The current LLVM MicroBlaze backend generates assembly which can be compiled using the an appropriate binutils assembler. llvm-svn: 96969
324 lines
12 KiB
LLVM
324 lines
12 KiB
LLVM
; Ensure that the FSL instrinsic instruction generate single FSL instructions
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; at the machine level. Additionally, ensure that dynamic values use the
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; dynamic version of the instructions and that constant values use the
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; constant version of the instructions.
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;
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; RUN: llc < %s -march=mblaze | FileCheck %s
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declare i32 @llvm.mblaze.fsl.get(i32 %port)
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declare i32 @llvm.mblaze.fsl.aget(i32 %port)
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declare i32 @llvm.mblaze.fsl.cget(i32 %port)
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declare i32 @llvm.mblaze.fsl.caget(i32 %port)
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declare i32 @llvm.mblaze.fsl.eget(i32 %port)
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declare i32 @llvm.mblaze.fsl.eaget(i32 %port)
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declare i32 @llvm.mblaze.fsl.ecget(i32 %port)
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declare i32 @llvm.mblaze.fsl.ecaget(i32 %port)
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declare i32 @llvm.mblaze.fsl.nget(i32 %port)
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declare i32 @llvm.mblaze.fsl.naget(i32 %port)
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declare i32 @llvm.mblaze.fsl.ncget(i32 %port)
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declare i32 @llvm.mblaze.fsl.ncaget(i32 %port)
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declare i32 @llvm.mblaze.fsl.neget(i32 %port)
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declare i32 @llvm.mblaze.fsl.neaget(i32 %port)
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declare i32 @llvm.mblaze.fsl.necget(i32 %port)
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declare i32 @llvm.mblaze.fsl.necaget(i32 %port)
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declare i32 @llvm.mblaze.fsl.tget(i32 %port)
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declare i32 @llvm.mblaze.fsl.taget(i32 %port)
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declare i32 @llvm.mblaze.fsl.tcget(i32 %port)
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declare i32 @llvm.mblaze.fsl.tcaget(i32 %port)
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declare i32 @llvm.mblaze.fsl.teget(i32 %port)
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declare i32 @llvm.mblaze.fsl.teaget(i32 %port)
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declare i32 @llvm.mblaze.fsl.tecget(i32 %port)
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declare i32 @llvm.mblaze.fsl.tecaget(i32 %port)
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declare i32 @llvm.mblaze.fsl.tnget(i32 %port)
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declare i32 @llvm.mblaze.fsl.tnaget(i32 %port)
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declare i32 @llvm.mblaze.fsl.tncget(i32 %port)
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declare i32 @llvm.mblaze.fsl.tncaget(i32 %port)
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declare i32 @llvm.mblaze.fsl.tneget(i32 %port)
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declare i32 @llvm.mblaze.fsl.tneaget(i32 %port)
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declare i32 @llvm.mblaze.fsl.tnecget(i32 %port)
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declare i32 @llvm.mblaze.fsl.tnecaget(i32 %port)
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declare void @llvm.mblaze.fsl.put(i32 %value, i32 %port)
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declare void @llvm.mblaze.fsl.aput(i32 %value, i32 %port)
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declare void @llvm.mblaze.fsl.cput(i32 %value, i32 %port)
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declare void @llvm.mblaze.fsl.caput(i32 %value, i32 %port)
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declare void @llvm.mblaze.fsl.nput(i32 %value, i32 %port)
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declare void @llvm.mblaze.fsl.naput(i32 %value, i32 %port)
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declare void @llvm.mblaze.fsl.ncput(i32 %value, i32 %port)
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declare void @llvm.mblaze.fsl.ncaput(i32 %value, i32 %port)
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declare void @llvm.mblaze.fsl.tput(i32 %port)
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declare void @llvm.mblaze.fsl.taput(i32 %port)
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declare void @llvm.mblaze.fsl.tcput(i32 %port)
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declare void @llvm.mblaze.fsl.tcaput(i32 %port)
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declare void @llvm.mblaze.fsl.tnput(i32 %port)
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declare void @llvm.mblaze.fsl.tnaput(i32 %port)
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declare void @llvm.mblaze.fsl.tncput(i32 %port)
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declare void @llvm.mblaze.fsl.tncaput(i32 %port)
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define i32 @fsl_get(i32 %port)
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{
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; CHECK: fsl_get:
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%v0 = call i32 @llvm.mblaze.fsl.get(i32 %port)
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; CHECK: getd
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%v1 = call i32 @llvm.mblaze.fsl.aget(i32 %port)
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; CHECK-NEXT: agetd
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%v2 = call i32 @llvm.mblaze.fsl.cget(i32 %port)
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; CHECK-NEXT: cgetd
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%v3 = call i32 @llvm.mblaze.fsl.caget(i32 %port)
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; CHECK-NEXT: cagetd
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%v4 = call i32 @llvm.mblaze.fsl.eget(i32 %port)
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; CHECK-NEXT: egetd
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%v5 = call i32 @llvm.mblaze.fsl.eaget(i32 %port)
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; CHECK-NEXT: eagetd
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%v6 = call i32 @llvm.mblaze.fsl.ecget(i32 %port)
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; CHECK-NEXT: ecgetd
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%v7 = call i32 @llvm.mblaze.fsl.ecaget(i32 %port)
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; CHECK-NEXT: ecagetd
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%v8 = call i32 @llvm.mblaze.fsl.nget(i32 %port)
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; CHECK-NEXT: ngetd
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%v9 = call i32 @llvm.mblaze.fsl.naget(i32 %port)
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; CHECK-NEXT: nagetd
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%v10 = call i32 @llvm.mblaze.fsl.ncget(i32 %port)
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; CHECK-NEXT: ncgetd
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%v11 = call i32 @llvm.mblaze.fsl.ncaget(i32 %port)
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; CHECK-NEXT: ncagetd
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%v12 = call i32 @llvm.mblaze.fsl.neget(i32 %port)
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; CHECK-NEXT: negetd
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%v13 = call i32 @llvm.mblaze.fsl.neaget(i32 %port)
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; CHECK-NEXT: neagetd
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%v14 = call i32 @llvm.mblaze.fsl.necget(i32 %port)
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; CHECK-NEXT: necgetd
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%v15 = call i32 @llvm.mblaze.fsl.necaget(i32 %port)
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; CHECK-NEXT: necagetd
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%v16 = call i32 @llvm.mblaze.fsl.tget(i32 %port)
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; CHECK-NEXT: tgetd
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%v17 = call i32 @llvm.mblaze.fsl.taget(i32 %port)
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; CHECK-NEXT: tagetd
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%v18 = call i32 @llvm.mblaze.fsl.tcget(i32 %port)
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; CHECK-NEXT: tcgetd
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%v19 = call i32 @llvm.mblaze.fsl.tcaget(i32 %port)
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; CHECK-NEXT: tcagetd
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%v20 = call i32 @llvm.mblaze.fsl.teget(i32 %port)
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; CHECK-NEXT: tegetd
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%v21 = call i32 @llvm.mblaze.fsl.teaget(i32 %port)
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; CHECK-NEXT: teagetd
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%v22 = call i32 @llvm.mblaze.fsl.tecget(i32 %port)
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; CHECK-NEXT: tecgetd
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%v23 = call i32 @llvm.mblaze.fsl.tecaget(i32 %port)
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; CHECK-NEXT: tecagetd
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%v24 = call i32 @llvm.mblaze.fsl.tnget(i32 %port)
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; CHECK-NEXT: tngetd
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%v25 = call i32 @llvm.mblaze.fsl.tnaget(i32 %port)
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; CHECK-NEXT: tnagetd
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%v26 = call i32 @llvm.mblaze.fsl.tncget(i32 %port)
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; CHECK-NEXT: tncgetd
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%v27 = call i32 @llvm.mblaze.fsl.tncaget(i32 %port)
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; CHECK-NEXT: tncagetd
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%v28 = call i32 @llvm.mblaze.fsl.tneget(i32 %port)
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; CHECK-NEXT: tnegetd
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%v29 = call i32 @llvm.mblaze.fsl.tneaget(i32 %port)
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; CHECK-NEXT: tneagetd
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%v30 = call i32 @llvm.mblaze.fsl.tnecget(i32 %port)
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; CHECK-NEXT: tnecgetd
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%v31 = call i32 @llvm.mblaze.fsl.tnecaget(i32 %port)
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; CHECK-NEXT: tnecagetd
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ret i32 1
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; CHECK: rtsd
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}
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define i32 @fslc_get()
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{
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; CHECK: fslc_get:
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%v0 = call i32 @llvm.mblaze.fsl.get(i32 1)
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; CHECK: get
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%v1 = call i32 @llvm.mblaze.fsl.aget(i32 1)
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; CHECK-NOT: agetd
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; CHECK: aget
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%v2 = call i32 @llvm.mblaze.fsl.cget(i32 1)
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; CHECK-NOT: cgetd
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; CHECK: cget
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%v3 = call i32 @llvm.mblaze.fsl.caget(i32 1)
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; CHECK-NOT: cagetd
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; CHECK: caget
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%v4 = call i32 @llvm.mblaze.fsl.eget(i32 1)
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; CHECK-NOT: egetd
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; CHECK: eget
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%v5 = call i32 @llvm.mblaze.fsl.eaget(i32 1)
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; CHECK-NOT: eagetd
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; CHECK: eaget
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%v6 = call i32 @llvm.mblaze.fsl.ecget(i32 1)
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; CHECK-NOT: ecgetd
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; CHECK: ecget
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%v7 = call i32 @llvm.mblaze.fsl.ecaget(i32 1)
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; CHECK-NOT: ecagetd
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; CHECK: ecaget
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%v8 = call i32 @llvm.mblaze.fsl.nget(i32 1)
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; CHECK-NOT: ngetd
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; CHECK: nget
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%v9 = call i32 @llvm.mblaze.fsl.naget(i32 1)
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; CHECK-NOT: nagetd
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; CHECK: naget
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%v10 = call i32 @llvm.mblaze.fsl.ncget(i32 1)
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; CHECK-NOT: ncgetd
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; CHECK: ncget
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%v11 = call i32 @llvm.mblaze.fsl.ncaget(i32 1)
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; CHECK-NOT: ncagetd
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; CHECK: ncaget
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%v12 = call i32 @llvm.mblaze.fsl.neget(i32 1)
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; CHECK-NOT: negetd
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; CHECK: neget
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%v13 = call i32 @llvm.mblaze.fsl.neaget(i32 1)
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; CHECK-NOT: neagetd
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; CHECK: neaget
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%v14 = call i32 @llvm.mblaze.fsl.necget(i32 1)
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; CHECK-NOT: necgetd
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; CHECK: necget
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%v15 = call i32 @llvm.mblaze.fsl.necaget(i32 1)
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; CHECK-NOT: necagetd
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; CHECK: necaget
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%v16 = call i32 @llvm.mblaze.fsl.tget(i32 1)
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; CHECK-NOT: tgetd
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; CHECK: tget
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%v17 = call i32 @llvm.mblaze.fsl.taget(i32 1)
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; CHECK-NOT: tagetd
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; CHECK: taget
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%v18 = call i32 @llvm.mblaze.fsl.tcget(i32 1)
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; CHECK-NOT: tcgetd
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; CHECK: tcget
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%v19 = call i32 @llvm.mblaze.fsl.tcaget(i32 1)
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; CHECK-NOT: tcagetd
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; CHECK: tcaget
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%v20 = call i32 @llvm.mblaze.fsl.teget(i32 1)
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; CHECK-NOT: tegetd
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; CHECK: teget
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%v21 = call i32 @llvm.mblaze.fsl.teaget(i32 1)
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; CHECK-NOT: teagetd
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; CHECK: teaget
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%v22 = call i32 @llvm.mblaze.fsl.tecget(i32 1)
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; CHECK-NOT: tecgetd
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; CHECK: tecget
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%v23 = call i32 @llvm.mblaze.fsl.tecaget(i32 1)
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; CHECK-NOT: tecagetd
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; CHECK: tecaget
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%v24 = call i32 @llvm.mblaze.fsl.tnget(i32 1)
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; CHECK-NOT: tngetd
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; CHECK: tnget
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%v25 = call i32 @llvm.mblaze.fsl.tnaget(i32 1)
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; CHECK-NOT: tnagetd
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; CHECK: tnaget
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%v26 = call i32 @llvm.mblaze.fsl.tncget(i32 1)
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; CHECK-NOT: tncgetd
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; CHECK: tncget
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%v27 = call i32 @llvm.mblaze.fsl.tncaget(i32 1)
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; CHECK-NOT: tncagetd
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; CHECK: tncaget
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%v28 = call i32 @llvm.mblaze.fsl.tneget(i32 1)
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; CHECK-NOT: tnegetd
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; CHECK: tneget
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%v29 = call i32 @llvm.mblaze.fsl.tneaget(i32 1)
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; CHECK-NOT: tneagetd
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; CHECK: tneaget
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%v30 = call i32 @llvm.mblaze.fsl.tnecget(i32 1)
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; CHECK-NOT: tnecgetd
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; CHECK: tnecget
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%v31 = call i32 @llvm.mblaze.fsl.tnecaget(i32 1)
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; CHECK-NOT: tnecagetd
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; CHECK: tnecaget
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ret i32 1
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; CHECK: rtsd
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}
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define void @putfsl(i32 %value, i32 %port)
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{
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; CHECK: putfsl:
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call void @llvm.mblaze.fsl.put(i32 %value, i32 %port)
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; CHECK: putd
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call void @llvm.mblaze.fsl.aput(i32 %value, i32 %port)
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; CHECK-NEXT: aputd
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call void @llvm.mblaze.fsl.cput(i32 %value, i32 %port)
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; CHECK-NEXT: cputd
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call void @llvm.mblaze.fsl.caput(i32 %value, i32 %port)
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; CHECK-NEXT: caputd
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call void @llvm.mblaze.fsl.nput(i32 %value, i32 %port)
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; CHECK-NEXT: nputd
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call void @llvm.mblaze.fsl.naput(i32 %value, i32 %port)
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; CHECK-NEXT: naputd
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call void @llvm.mblaze.fsl.ncput(i32 %value, i32 %port)
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; CHECK-NEXT: ncputd
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call void @llvm.mblaze.fsl.ncaput(i32 %value, i32 %port)
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; CHECK-NEXT: ncaputd
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call void @llvm.mblaze.fsl.tput(i32 %port)
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; CHECK-NEXT: tputd
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call void @llvm.mblaze.fsl.taput(i32 %port)
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; CHECK-NEXT: taputd
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call void @llvm.mblaze.fsl.tcput(i32 %port)
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; CHECK-NEXT: tcputd
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call void @llvm.mblaze.fsl.tcaput(i32 %port)
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; CHECK-NEXT: tcaputd
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call void @llvm.mblaze.fsl.tnput(i32 %port)
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; CHECK-NEXT: tnputd
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call void @llvm.mblaze.fsl.tnaput(i32 %port)
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; CHECK-NEXT: tnaputd
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call void @llvm.mblaze.fsl.tncput(i32 %port)
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; CHECK-NEXT: tncputd
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call void @llvm.mblaze.fsl.tncaput(i32 %port)
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; CHECK-NEXT: tncaputd
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ret void
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; CHECK: rtsd
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}
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define void @putfsl_const(i32 %value)
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{
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; CHECK: putfsl_const:
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call void @llvm.mblaze.fsl.put(i32 %value, i32 1)
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; CHECK-NOT: putd
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; CHECK: put
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call void @llvm.mblaze.fsl.aput(i32 %value, i32 1)
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; CHECK-NOT: aputd
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; CHECK: aput
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call void @llvm.mblaze.fsl.cput(i32 %value, i32 1)
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; CHECK-NOT: cputd
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; CHECK: cput
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call void @llvm.mblaze.fsl.caput(i32 %value, i32 1)
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; CHECK-NOT: caputd
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; CHECK: caput
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call void @llvm.mblaze.fsl.nput(i32 %value, i32 1)
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; CHECK-NOT: nputd
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; CHECK: nput
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call void @llvm.mblaze.fsl.naput(i32 %value, i32 1)
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; CHECK-NOT: naputd
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; CHECK: naput
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call void @llvm.mblaze.fsl.ncput(i32 %value, i32 1)
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; CHECK-NOT: ncputd
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; CHECK: ncput
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call void @llvm.mblaze.fsl.ncaput(i32 %value, i32 1)
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; CHECK-NOT: ncaputd
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; CHECK: ncaput
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call void @llvm.mblaze.fsl.tput(i32 1)
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; CHECK-NOT: tputd
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; CHECK: tput
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call void @llvm.mblaze.fsl.taput(i32 1)
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; CHECK-NOT: taputd
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; CHECK: taput
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call void @llvm.mblaze.fsl.tcput(i32 1)
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; CHECK-NOT: tcputd
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; CHECK: tcput
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call void @llvm.mblaze.fsl.tcaput(i32 1)
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; CHECK-NOT: tcaputd
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; CHECK: tcaput
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call void @llvm.mblaze.fsl.tnput(i32 1)
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; CHECK-NOT: tnputd
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; CHECK: tnput
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call void @llvm.mblaze.fsl.tnaput(i32 1)
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; CHECK-NOT: tnaputd
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; CHECK: tnaput
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call void @llvm.mblaze.fsl.tncput(i32 1)
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; CHECK-NOT: tncputd
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; CHECK: tncput
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call void @llvm.mblaze.fsl.tncaput(i32 1)
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; CHECK-NOT: tncaputd
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; CHECK: tncaput
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ret void
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; CHECK: rtsd
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}
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