123 lines
4.5 KiB
Plaintext
123 lines
4.5 KiB
Plaintext
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# NOTE: Assertions have been autogenerated by utils/update_mir_test_checks.py
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# RUN: llc -mtriple=mipsel-linux-gnu -mcpu=mips32r5 -mattr=+msa,+fp64,+nan2008 -run-pass=legalizer -verify-machineinstrs %s -o - | FileCheck %s -check-prefixes=P5600
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--- |
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define void @mul_v16i8(<16 x i8>* %a, <16 x i8>* %b, <16 x i8>* %c) { entry: ret void }
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define void @mul_v8i16(<8 x i16>* %a, <8 x i16>* %b, <8 x i16>* %c) { entry: ret void }
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define void @mul_v4i32(<4 x i32>* %a, <4 x i32>* %b, <4 x i32>* %c) { entry: ret void }
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define void @mul_v2i64(<2 x i64>* %a, <2 x i64>* %b, <2 x i64>* %c) { entry: ret void }
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...
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---
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name: mul_v16i8
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alignment: 4
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tracksRegLiveness: true
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body: |
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bb.1.entry:
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liveins: $a0, $a1, $a2
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; P5600-LABEL: name: mul_v16i8
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; P5600: liveins: $a0, $a1, $a2
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; P5600: [[COPY:%[0-9]+]]:_(p0) = COPY $a0
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; P5600: [[COPY1:%[0-9]+]]:_(p0) = COPY $a1
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; P5600: [[COPY2:%[0-9]+]]:_(p0) = COPY $a2
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; P5600: [[LOAD:%[0-9]+]]:_(<16 x s8>) = G_LOAD [[COPY]](p0) :: (load 16 from %ir.a)
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; P5600: [[LOAD1:%[0-9]+]]:_(<16 x s8>) = G_LOAD [[COPY1]](p0) :: (load 16 from %ir.b)
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; P5600: [[MUL:%[0-9]+]]:_(<16 x s8>) = G_MUL [[LOAD1]], [[LOAD]]
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; P5600: G_STORE [[MUL]](<16 x s8>), [[COPY2]](p0) :: (store 16 into %ir.c)
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; P5600: RetRA
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%0:_(p0) = COPY $a0
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%1:_(p0) = COPY $a1
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%2:_(p0) = COPY $a2
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%3:_(<16 x s8>) = G_LOAD %0(p0) :: (load 16 from %ir.a)
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%4:_(<16 x s8>) = G_LOAD %1(p0) :: (load 16 from %ir.b)
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%5:_(<16 x s8>) = G_MUL %4, %3
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G_STORE %5(<16 x s8>), %2(p0) :: (store 16 into %ir.c)
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RetRA
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...
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---
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name: mul_v8i16
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alignment: 4
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tracksRegLiveness: true
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body: |
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bb.1.entry:
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liveins: $a0, $a1, $a2
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; P5600-LABEL: name: mul_v8i16
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; P5600: liveins: $a0, $a1, $a2
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; P5600: [[COPY:%[0-9]+]]:_(p0) = COPY $a0
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; P5600: [[COPY1:%[0-9]+]]:_(p0) = COPY $a1
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; P5600: [[COPY2:%[0-9]+]]:_(p0) = COPY $a2
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; P5600: [[LOAD:%[0-9]+]]:_(<8 x s16>) = G_LOAD [[COPY]](p0) :: (load 16 from %ir.a)
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; P5600: [[LOAD1:%[0-9]+]]:_(<8 x s16>) = G_LOAD [[COPY1]](p0) :: (load 16 from %ir.b)
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; P5600: [[MUL:%[0-9]+]]:_(<8 x s16>) = G_MUL [[LOAD1]], [[LOAD]]
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; P5600: G_STORE [[MUL]](<8 x s16>), [[COPY2]](p0) :: (store 16 into %ir.c)
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; P5600: RetRA
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%0:_(p0) = COPY $a0
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%1:_(p0) = COPY $a1
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%2:_(p0) = COPY $a2
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%3:_(<8 x s16>) = G_LOAD %0(p0) :: (load 16 from %ir.a)
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%4:_(<8 x s16>) = G_LOAD %1(p0) :: (load 16 from %ir.b)
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%5:_(<8 x s16>) = G_MUL %4, %3
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G_STORE %5(<8 x s16>), %2(p0) :: (store 16 into %ir.c)
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RetRA
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...
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---
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name: mul_v4i32
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alignment: 4
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tracksRegLiveness: true
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body: |
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bb.1.entry:
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liveins: $a0, $a1, $a2
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; P5600-LABEL: name: mul_v4i32
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; P5600: liveins: $a0, $a1, $a2
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; P5600: [[COPY:%[0-9]+]]:_(p0) = COPY $a0
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; P5600: [[COPY1:%[0-9]+]]:_(p0) = COPY $a1
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; P5600: [[COPY2:%[0-9]+]]:_(p0) = COPY $a2
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; P5600: [[LOAD:%[0-9]+]]:_(<4 x s32>) = G_LOAD [[COPY]](p0) :: (load 16 from %ir.a)
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; P5600: [[LOAD1:%[0-9]+]]:_(<4 x s32>) = G_LOAD [[COPY1]](p0) :: (load 16 from %ir.b)
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; P5600: [[MUL:%[0-9]+]]:_(<4 x s32>) = G_MUL [[LOAD1]], [[LOAD]]
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; P5600: G_STORE [[MUL]](<4 x s32>), [[COPY2]](p0) :: (store 16 into %ir.c)
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; P5600: RetRA
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%0:_(p0) = COPY $a0
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%1:_(p0) = COPY $a1
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%2:_(p0) = COPY $a2
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%3:_(<4 x s32>) = G_LOAD %0(p0) :: (load 16 from %ir.a)
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%4:_(<4 x s32>) = G_LOAD %1(p0) :: (load 16 from %ir.b)
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%5:_(<4 x s32>) = G_MUL %4, %3
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G_STORE %5(<4 x s32>), %2(p0) :: (store 16 into %ir.c)
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RetRA
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...
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---
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name: mul_v2i64
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alignment: 4
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tracksRegLiveness: true
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body: |
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bb.1.entry:
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liveins: $a0, $a1, $a2
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; P5600-LABEL: name: mul_v2i64
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; P5600: liveins: $a0, $a1, $a2
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; P5600: [[COPY:%[0-9]+]]:_(p0) = COPY $a0
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; P5600: [[COPY1:%[0-9]+]]:_(p0) = COPY $a1
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; P5600: [[COPY2:%[0-9]+]]:_(p0) = COPY $a2
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; P5600: [[LOAD:%[0-9]+]]:_(<2 x s64>) = G_LOAD [[COPY]](p0) :: (load 16 from %ir.a)
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; P5600: [[LOAD1:%[0-9]+]]:_(<2 x s64>) = G_LOAD [[COPY1]](p0) :: (load 16 from %ir.b)
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; P5600: [[MUL:%[0-9]+]]:_(<2 x s64>) = G_MUL [[LOAD1]], [[LOAD]]
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; P5600: G_STORE [[MUL]](<2 x s64>), [[COPY2]](p0) :: (store 16 into %ir.c)
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; P5600: RetRA
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%0:_(p0) = COPY $a0
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%1:_(p0) = COPY $a1
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%2:_(p0) = COPY $a2
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%3:_(<2 x s64>) = G_LOAD %0(p0) :: (load 16 from %ir.a)
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%4:_(<2 x s64>) = G_LOAD %1(p0) :: (load 16 from %ir.b)
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%5:_(<2 x s64>) = G_MUL %4, %3
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G_STORE %5(<2 x s64>), %2(p0) :: (store 16 into %ir.c)
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RetRA
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...
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