forked from OSchip/llvm-project
243 lines
10 KiB
LLVM
243 lines
10 KiB
LLVM
; NOTE: Assertions have been autogenerated by utils/update_llc_test_checks.py
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; RUN: llc < %s -mtriple=x86_64-unknown-unknown -print-schedule -mcpu=x86-64 -mattr=+sha | FileCheck %s --check-prefix=CHECK --check-prefix=GENERIC
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; RUN: llc < %s -mtriple=x86_64-unknown-unknown -print-schedule -mcpu=goldmont | FileCheck %s --check-prefix=CHECK --check-prefix=GOLDMONT
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; RUN: llc < %s -mtriple=x86_64-unknown-unknown -print-schedule -mcpu=cannonlake | FileCheck %s --check-prefix=CHECK --check-prefix=CANNONLAKE
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; RUN: llc < %s -mtriple=x86_64-unknown-unknown -print-schedule -mcpu=znver1 | FileCheck %s --check-prefix=CHECK --check-prefix=ZNVER1
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;
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; SHA1
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;
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define <4 x i32> @test_sha1msg1(<4 x i32> %a0, <4 x i32> %a1, <4 x i32> *%a2) {
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; GENERIC-LABEL: test_sha1msg1:
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; GENERIC: # %bb.0:
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; GENERIC-NEXT: sha1msg1 %xmm1, %xmm0 # sched: [5:1.00]
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; GENERIC-NEXT: sha1msg1 (%rdi), %xmm0 # sched: [10:1.00]
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; GENERIC-NEXT: retq # sched: [1:1.00]
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;
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; GOLDMONT-LABEL: test_sha1msg1:
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; GOLDMONT: # %bb.0:
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; GOLDMONT-NEXT: sha1msg1 %xmm1, %xmm0 # sched: [4:1.00]
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; GOLDMONT-NEXT: sha1msg1 (%rdi), %xmm0 # sched: [7:1.00]
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; GOLDMONT-NEXT: retq # sched: [4:1.00]
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;
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; CANNONLAKE-LABEL: test_sha1msg1:
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; CANNONLAKE: # %bb.0:
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; CANNONLAKE-NEXT: sha1msg1 %xmm1, %xmm0 # sched: [5:1.00]
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; CANNONLAKE-NEXT: sha1msg1 (%rdi), %xmm0 # sched: [10:1.00]
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; CANNONLAKE-NEXT: retq # sched: [7:1.00]
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;
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; ZNVER1-LABEL: test_sha1msg1:
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; ZNVER1: # %bb.0:
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; ZNVER1-NEXT: sha1msg1 %xmm1, %xmm0 # sched: [2:1.00]
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; ZNVER1-NEXT: sha1msg1 (%rdi), %xmm0 # sched: [9:1.00]
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; ZNVER1-NEXT: retq # sched: [1:0.50]
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%1 = load <4 x i32>, <4 x i32>* %a2
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%2 = tail call <4 x i32> @llvm.x86.sha1msg1(<4 x i32> %a0, <4 x i32> %a1)
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%3 = tail call <4 x i32> @llvm.x86.sha1msg1(<4 x i32> %2, <4 x i32> %1)
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ret <4 x i32> %3
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}
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declare <4 x i32> @llvm.x86.sha1msg1(<4 x i32>, <4 x i32>)
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define <4 x i32> @test_sha1msg2(<4 x i32> %a0, <4 x i32> %a1, <4 x i32> *%a2) {
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; GENERIC-LABEL: test_sha1msg2:
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; GENERIC: # %bb.0:
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; GENERIC-NEXT: sha1msg2 %xmm1, %xmm0 # sched: [5:1.00]
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; GENERIC-NEXT: sha1msg2 (%rdi), %xmm0 # sched: [10:1.00]
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; GENERIC-NEXT: retq # sched: [1:1.00]
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;
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; GOLDMONT-LABEL: test_sha1msg2:
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; GOLDMONT: # %bb.0:
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; GOLDMONT-NEXT: sha1msg2 %xmm1, %xmm0 # sched: [4:1.00]
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; GOLDMONT-NEXT: sha1msg2 (%rdi), %xmm0 # sched: [7:1.00]
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; GOLDMONT-NEXT: retq # sched: [4:1.00]
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;
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; CANNONLAKE-LABEL: test_sha1msg2:
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; CANNONLAKE: # %bb.0:
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; CANNONLAKE-NEXT: sha1msg2 %xmm1, %xmm0 # sched: [5:1.00]
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; CANNONLAKE-NEXT: sha1msg2 (%rdi), %xmm0 # sched: [10:1.00]
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; CANNONLAKE-NEXT: retq # sched: [7:1.00]
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;
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; ZNVER1-LABEL: test_sha1msg2:
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; ZNVER1: # %bb.0:
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; ZNVER1-NEXT: sha1msg2 %xmm1, %xmm0 # sched: [1:0.50]
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; ZNVER1-NEXT: sha1msg2 (%rdi), %xmm0 # sched: [8:0.50]
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; ZNVER1-NEXT: retq # sched: [1:0.50]
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%1 = load <4 x i32>, <4 x i32>* %a2
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%2 = tail call <4 x i32> @llvm.x86.sha1msg2(<4 x i32> %a0, <4 x i32> %a1)
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%3 = tail call <4 x i32> @llvm.x86.sha1msg2(<4 x i32> %2, <4 x i32> %1)
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ret <4 x i32> %3
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}
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declare <4 x i32> @llvm.x86.sha1msg2(<4 x i32>, <4 x i32>)
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define <4 x i32> @test_sha1nexte(<4 x i32> %a0, <4 x i32> %a1, <4 x i32> *%a2) {
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; GENERIC-LABEL: test_sha1nexte:
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; GENERIC: # %bb.0:
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; GENERIC-NEXT: sha1nexte %xmm1, %xmm0 # sched: [5:1.00]
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; GENERIC-NEXT: sha1nexte (%rdi), %xmm0 # sched: [10:1.00]
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; GENERIC-NEXT: retq # sched: [1:1.00]
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;
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; GOLDMONT-LABEL: test_sha1nexte:
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; GOLDMONT: # %bb.0:
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; GOLDMONT-NEXT: sha1nexte %xmm1, %xmm0 # sched: [4:1.00]
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; GOLDMONT-NEXT: sha1nexte (%rdi), %xmm0 # sched: [7:1.00]
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; GOLDMONT-NEXT: retq # sched: [4:1.00]
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;
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; CANNONLAKE-LABEL: test_sha1nexte:
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; CANNONLAKE: # %bb.0:
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; CANNONLAKE-NEXT: sha1nexte %xmm1, %xmm0 # sched: [5:1.00]
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; CANNONLAKE-NEXT: sha1nexte (%rdi), %xmm0 # sched: [10:1.00]
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; CANNONLAKE-NEXT: retq # sched: [7:1.00]
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;
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; ZNVER1-LABEL: test_sha1nexte:
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; ZNVER1: # %bb.0:
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; ZNVER1-NEXT: sha1nexte %xmm1, %xmm0 # sched: [1:1.00]
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; ZNVER1-NEXT: sha1nexte (%rdi), %xmm0 # sched: [8:1.00]
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; ZNVER1-NEXT: retq # sched: [1:0.50]
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%1 = load <4 x i32>, <4 x i32>* %a2
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%2 = tail call <4 x i32> @llvm.x86.sha1nexte(<4 x i32> %a0, <4 x i32> %a1)
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%3 = tail call <4 x i32> @llvm.x86.sha1nexte(<4 x i32> %2, <4 x i32> %1)
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ret <4 x i32> %3
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}
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declare <4 x i32> @llvm.x86.sha1nexte(<4 x i32>, <4 x i32>)
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define <4 x i32> @test_sha1rnds4(<4 x i32> %a0, <4 x i32> %a1, <4 x i32> *%a2) {
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; GENERIC-LABEL: test_sha1rnds4:
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; GENERIC: # %bb.0:
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; GENERIC-NEXT: sha1rnds4 $3, %xmm1, %xmm0 # sched: [5:1.00]
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; GENERIC-NEXT: sha1rnds4 $3, (%rdi), %xmm0 # sched: [10:1.00]
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; GENERIC-NEXT: retq # sched: [1:1.00]
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;
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; GOLDMONT-LABEL: test_sha1rnds4:
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; GOLDMONT: # %bb.0:
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; GOLDMONT-NEXT: sha1rnds4 $3, %xmm1, %xmm0 # sched: [4:1.00]
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; GOLDMONT-NEXT: sha1rnds4 $3, (%rdi), %xmm0 # sched: [7:1.00]
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; GOLDMONT-NEXT: retq # sched: [4:1.00]
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;
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; CANNONLAKE-LABEL: test_sha1rnds4:
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; CANNONLAKE: # %bb.0:
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; CANNONLAKE-NEXT: sha1rnds4 $3, %xmm1, %xmm0 # sched: [5:1.00]
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; CANNONLAKE-NEXT: sha1rnds4 $3, (%rdi), %xmm0 # sched: [10:1.00]
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; CANNONLAKE-NEXT: retq # sched: [7:1.00]
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;
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; ZNVER1-LABEL: test_sha1rnds4:
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; ZNVER1: # %bb.0:
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; ZNVER1-NEXT: sha1rnds4 $3, %xmm1, %xmm0 # sched: [6:1.00]
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; ZNVER1-NEXT: sha1rnds4 $3, (%rdi), %xmm0 # sched: [13:1.00]
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; ZNVER1-NEXT: retq # sched: [1:0.50]
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%1 = load <4 x i32>, <4 x i32>* %a2
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%2 = tail call <4 x i32> @llvm.x86.sha1rnds4(<4 x i32> %a0, <4 x i32> %a1, i8 3)
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%3 = tail call <4 x i32> @llvm.x86.sha1rnds4(<4 x i32> %2, <4 x i32> %1, i8 3)
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ret <4 x i32> %3
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}
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declare <4 x i32> @llvm.x86.sha1rnds4(<4 x i32>, <4 x i32>, i8)
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;
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; SHA256
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;
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define <4 x i32> @test_sha256msg1(<4 x i32> %a0, <4 x i32> %a1, <4 x i32> *%a2) {
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; GENERIC-LABEL: test_sha256msg1:
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; GENERIC: # %bb.0:
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; GENERIC-NEXT: sha256msg1 %xmm1, %xmm0 # sched: [5:1.00]
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; GENERIC-NEXT: sha256msg1 (%rdi), %xmm0 # sched: [10:1.00]
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; GENERIC-NEXT: retq # sched: [1:1.00]
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;
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; GOLDMONT-LABEL: test_sha256msg1:
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; GOLDMONT: # %bb.0:
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; GOLDMONT-NEXT: sha256msg1 %xmm1, %xmm0 # sched: [4:1.00]
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; GOLDMONT-NEXT: sha256msg1 (%rdi), %xmm0 # sched: [7:1.00]
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; GOLDMONT-NEXT: retq # sched: [4:1.00]
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;
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; CANNONLAKE-LABEL: test_sha256msg1:
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; CANNONLAKE: # %bb.0:
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; CANNONLAKE-NEXT: sha256msg1 %xmm1, %xmm0 # sched: [5:1.00]
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; CANNONLAKE-NEXT: sha256msg1 (%rdi), %xmm0 # sched: [10:1.00]
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; CANNONLAKE-NEXT: retq # sched: [7:1.00]
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;
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; ZNVER1-LABEL: test_sha256msg1:
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; ZNVER1: # %bb.0:
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; ZNVER1-NEXT: sha256msg1 %xmm1, %xmm0 # sched: [2:1.00]
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; ZNVER1-NEXT: sha256msg1 (%rdi), %xmm0 # sched: [9:1.00]
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; ZNVER1-NEXT: retq # sched: [1:0.50]
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%1 = load <4 x i32>, <4 x i32>* %a2
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%2 = tail call <4 x i32> @llvm.x86.sha256msg1(<4 x i32> %a0, <4 x i32> %a1)
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%3 = tail call <4 x i32> @llvm.x86.sha256msg1(<4 x i32> %2, <4 x i32> %1)
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ret <4 x i32> %3
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}
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declare <4 x i32> @llvm.x86.sha256msg1(<4 x i32>, <4 x i32>)
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define <4 x i32> @test_sha256msg2(<4 x i32> %a0, <4 x i32> %a1, <4 x i32> *%a2) {
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; GENERIC-LABEL: test_sha256msg2:
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; GENERIC: # %bb.0:
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; GENERIC-NEXT: sha256msg2 %xmm1, %xmm0 # sched: [5:1.00]
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; GENERIC-NEXT: sha256msg2 (%rdi), %xmm0 # sched: [10:1.00]
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; GENERIC-NEXT: retq # sched: [1:1.00]
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;
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; GOLDMONT-LABEL: test_sha256msg2:
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; GOLDMONT: # %bb.0:
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; GOLDMONT-NEXT: sha256msg2 %xmm1, %xmm0 # sched: [4:1.00]
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; GOLDMONT-NEXT: sha256msg2 (%rdi), %xmm0 # sched: [7:1.00]
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; GOLDMONT-NEXT: retq # sched: [4:1.00]
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;
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; CANNONLAKE-LABEL: test_sha256msg2:
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; CANNONLAKE: # %bb.0:
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; CANNONLAKE-NEXT: sha256msg2 %xmm1, %xmm0 # sched: [5:1.00]
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; CANNONLAKE-NEXT: sha256msg2 (%rdi), %xmm0 # sched: [10:1.00]
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; CANNONLAKE-NEXT: retq # sched: [7:1.00]
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;
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; ZNVER1-LABEL: test_sha256msg2:
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; ZNVER1: # %bb.0:
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; ZNVER1-NEXT: sha256msg2 %xmm1, %xmm0 # sched: [100:?]
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; ZNVER1-NEXT: sha256msg2 (%rdi), %xmm0 # sched: [100:?]
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; ZNVER1-NEXT: retq # sched: [1:0.50]
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%1 = load <4 x i32>, <4 x i32>* %a2
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%2 = tail call <4 x i32> @llvm.x86.sha256msg2(<4 x i32> %a0, <4 x i32> %a1)
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%3 = tail call <4 x i32> @llvm.x86.sha256msg2(<4 x i32> %2, <4 x i32> %1)
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ret <4 x i32> %3
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}
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declare <4 x i32> @llvm.x86.sha256msg2(<4 x i32>, <4 x i32>)
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define <4 x i32> @test_sha256rnds2(<4 x i32> %a0, <4 x i32> %a1, <4 x i32> %a2, <4 x i32> *%a3) {
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; GENERIC-LABEL: test_sha256rnds2:
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; GENERIC: # %bb.0:
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; GENERIC-NEXT: movaps %xmm0, %xmm3 # sched: [1:1.00]
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; GENERIC-NEXT: movaps %xmm2, %xmm0 # sched: [1:1.00]
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; GENERIC-NEXT: sha256rnds2 %xmm0, %xmm1, %xmm3 # sched: [5:1.00]
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; GENERIC-NEXT: sha256rnds2 %xmm0, (%rdi), %xmm3 # sched: [10:1.00]
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; GENERIC-NEXT: movaps %xmm3, %xmm0 # sched: [1:1.00]
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; GENERIC-NEXT: retq # sched: [1:1.00]
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;
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; GOLDMONT-LABEL: test_sha256rnds2:
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; GOLDMONT: # %bb.0:
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; GOLDMONT-NEXT: movaps %xmm0, %xmm3 # sched: [1:0.50]
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; GOLDMONT-NEXT: movaps %xmm2, %xmm0 # sched: [1:0.50]
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; GOLDMONT-NEXT: sha256rnds2 %xmm0, %xmm1, %xmm3 # sched: [4:1.00]
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; GOLDMONT-NEXT: sha256rnds2 %xmm0, (%rdi), %xmm3 # sched: [7:1.00]
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; GOLDMONT-NEXT: movaps %xmm3, %xmm0 # sched: [1:0.50]
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; GOLDMONT-NEXT: retq # sched: [4:1.00]
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;
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; CANNONLAKE-LABEL: test_sha256rnds2:
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; CANNONLAKE: # %bb.0:
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; CANNONLAKE-NEXT: vmovaps %xmm0, %xmm3 # sched: [1:0.33]
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; CANNONLAKE-NEXT: vmovaps %xmm2, %xmm0 # sched: [1:0.33]
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; CANNONLAKE-NEXT: sha256rnds2 %xmm0, %xmm1, %xmm3 # sched: [5:1.00]
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; CANNONLAKE-NEXT: sha256rnds2 %xmm0, (%rdi), %xmm3 # sched: [10:1.00]
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; CANNONLAKE-NEXT: vmovaps %xmm3, %xmm0 # sched: [1:0.33]
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; CANNONLAKE-NEXT: retq # sched: [7:1.00]
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;
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; ZNVER1-LABEL: test_sha256rnds2:
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; ZNVER1: # %bb.0:
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; ZNVER1-NEXT: vmovaps %xmm0, %xmm3 # sched: [1:0.25]
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; ZNVER1-NEXT: vmovaps %xmm2, %xmm0 # sched: [1:0.25]
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; ZNVER1-NEXT: sha256rnds2 %xmm0, %xmm1, %xmm3 # sched: [4:1.00]
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; ZNVER1-NEXT: sha256rnds2 %xmm0, (%rdi), %xmm3 # sched: [11:1.00]
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; ZNVER1-NEXT: vmovaps %xmm3, %xmm0 # sched: [1:0.25]
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; ZNVER1-NEXT: retq # sched: [1:0.50]
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%1 = load <4 x i32>, <4 x i32>* %a3
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%2 = tail call <4 x i32> @llvm.x86.sha256rnds2(<4 x i32> %a0, <4 x i32> %a1, <4 x i32> %a2)
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%3 = tail call <4 x i32> @llvm.x86.sha256rnds2(<4 x i32> %2, <4 x i32> %1, <4 x i32> %a2)
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ret <4 x i32> %3
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}
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declare <4 x i32> @llvm.x86.sha256rnds2(<4 x i32>, <4 x i32>, <4 x i32>)
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