forked from OSchip/llvm-project
351 lines
12 KiB
LLVM
351 lines
12 KiB
LLVM
; RUN: llc < %s -mtriple=i386-pc-win32 -mattr=+avx512bw | FileCheck --check-prefix=CHECK --check-prefix=X32 %s
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; RUN: llc < %s -mtriple=x86_64-win32 -mattr=+avx512bw | FileCheck --check-prefix=CHECK --check-prefix=CHECK64 --check-prefix=WIN64 %s
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; RUN: llc < %s -mtriple=x86_64-linux-gnu -mattr=+avx512bw | FileCheck --check-prefix=CHECK --check-prefix=CHECK64 --check-prefix=LINUXOSX64 %s
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; X32-LABEL: test_argv64i1:
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; X32: kmovd %edx, %k0
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; X32: kmovd %edi, %k1
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; X32: kmovd %eax, %k1
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; X32: kmovd %ecx, %k2
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; X32: ad{{d|c}}l {{([0-9])*}}(%ebp), %e{{a|c}}x
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; X32: ad{{d|c}}l {{([0-9])*}}(%ebp), %e{{a|c}}x
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; X32: ad{{d|c}}l {{([0-9])*}}(%ebp), %e{{a|c}}x
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; X32: ad{{d|c}}l {{([0-9])*}}(%ebp), %e{{a|c}}x
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; X32: ad{{d|c}}l {{([0-9])*}}(%ebp), %e{{a|c}}x
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; X32: ad{{d|c}}l {{([0-9])*}}(%ebp), %e{{a|c}}x
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; X32: ad{{d|c}}l {{([0-9])*}}(%ebp), %e{{a|c}}x
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; X32: ad{{d|c}}l {{([0-9])*}}(%ebp), %e{{a|c}}x
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; X32: ad{{d|c}}l {{([0-9])*}}(%ebp), %e{{a|c}}x
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; X32: ad{{d|c}}l {{([0-9])*}}(%ebp), %e{{a|c}}x
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; X32: ad{{d|c}}l {{([0-9])*}}(%ebp), %e{{a|c}}x
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; X32: ad{{d|c}}l {{([0-9])*}}(%ebp), %e{{a|c}}x
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; X32: ad{{d|c}}l {{([0-9])*}}(%ebp), %e{{a|c}}x
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; X32: ad{{d|c}}l {{([0-9])*}}(%ebp), %e{{a|c}}x
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; X32: ad{{d|c}}l {{([0-9])*}}(%ebp), %e{{a|c}}x
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; X32: ad{{d|c}}l {{([0-9])*}}(%ebp), %e{{a|c}}x
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; X32: ad{{d|c}}l {{([0-9])*}}(%ebp), %e{{a|c}}x
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; X32: ad{{d|c}}l {{([0-9])*}}(%ebp), %e{{a|c}}x
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; X32: ad{{d|c}}l {{([0-9])*}}(%ebp), %e{{a|c}}x
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; X32: ad{{d|c}}l {{([0-9])*}}(%ebp), %e{{a|c}}x
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; X32: ad{{d|c}}l {{([0-9])*}}(%ebp), %e{{a|c}}x
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; X32: ad{{d|c}}l {{([0-9])*}}(%ebp), %e{{a|c}}x
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; X32: retl
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; WIN64-LABEL: test_argv64i1:
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; WIN64: addq %rcx, %rax
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; WIN64: addq %rdx, %rax
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; WIN64: addq %rdi, %rax
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; WIN64: addq %rsi, %rax
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; WIN64: addq %r8, %rax
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; WIN64: addq %r9, %rax
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; WIN64: addq %r10, %rax
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; WIN64: addq %r11, %rax
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; WIN64: addq %r12, %rax
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; WIN64: addq %r14, %rax
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; WIN64: addq %r15, %rax
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; WIN64: addq {{([0-9])*}}(%rsp), %rax
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; WIN64: retq
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; LINUXOSX64-LABEL: test_argv64i1:
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; LINUXOSX64: addq %rcx, %rax
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; LINUXOSX64: addq %rdx, %rax
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; LINUXOSX64: addq %rdi, %rax
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; LINUXOSX64: addq %rsi, %rax
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; LINUXOSX64: addq %r8, %rax
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; LINUXOSX64: addq %r9, %rax
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; LINUXOSX64: addq %r12, %rax
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; LINUXOSX64: addq %r13, %rax
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; LINUXOSX64: addq %r14, %rax
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; LINUXOSX64: addq %r15, %rax
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; LINUXOSX64: addq {{([0-9])*}}(%rsp), %rax
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; LINUXOSX64: addq {{([0-9])*}}(%rsp), %rax
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; LINUXOSX64: retq
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; Test regcall when receiving arguments of v64i1 type
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define x86_regcallcc i64 @test_argv64i1(<64 x i1> %x0, <64 x i1> %x1, <64 x i1> %x2,
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<64 x i1> %x3, <64 x i1> %x4, <64 x i1> %x5,
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<64 x i1> %x6, <64 x i1> %x7, <64 x i1> %x8,
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<64 x i1> %x9, <64 x i1> %x10, <64 x i1> %x11,
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<64 x i1> %x12) {
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%y0 = bitcast <64 x i1> %x0 to i64
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%y1 = bitcast <64 x i1> %x1 to i64
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%y2 = bitcast <64 x i1> %x2 to i64
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%y3 = bitcast <64 x i1> %x3 to i64
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%y4 = bitcast <64 x i1> %x4 to i64
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%y5 = bitcast <64 x i1> %x5 to i64
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%y6 = bitcast <64 x i1> %x6 to i64
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%y7 = bitcast <64 x i1> %x7 to i64
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%y8 = bitcast <64 x i1> %x8 to i64
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%y9 = bitcast <64 x i1> %x9 to i64
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%y10 = bitcast <64 x i1> %x10 to i64
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%y11 = bitcast <64 x i1> %x11 to i64
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%y12 = bitcast <64 x i1> %x12 to i64
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%add1 = add i64 %y0, %y1
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%add2 = add i64 %add1, %y2
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%add3 = add i64 %add2, %y3
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%add4 = add i64 %add3, %y4
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%add5 = add i64 %add4, %y5
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%add6 = add i64 %add5, %y6
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%add7 = add i64 %add6, %y7
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%add8 = add i64 %add7, %y8
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%add9 = add i64 %add8, %y9
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%add10 = add i64 %add9, %y10
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%add11 = add i64 %add10, %y11
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%add12 = add i64 %add11, %y12
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ret i64 %add12
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}
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; X32-LABEL: caller_argv64i1:
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; X32: movl $2, %eax
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; X32: movl $1, %ecx
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; X32: movl $2, %edx
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; X32: movl $1, %edi
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; X32: pushl ${{1|2}}
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; X32: pushl ${{1|2}}
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; X32: pushl ${{1|2}}
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; X32: pushl ${{1|2}}
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; X32: pushl ${{1|2}}
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; X32: pushl ${{1|2}}
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; X32: pushl ${{1|2}}
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; X32: pushl ${{1|2}}
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; X32: pushl ${{1|2}}
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; X32: pushl ${{1|2}}
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; X32: pushl ${{1|2}}
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; X32: pushl ${{1|2}}
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; X32: pushl ${{1|2}}
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; X32: pushl ${{1|2}}
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; X32: pushl ${{1|2}}
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; X32: pushl ${{1|2}}
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; X32: pushl ${{1|2}}
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; X32: pushl ${{1|2}}
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; X32: pushl ${{1|2}}
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; X32: pushl ${{1|2}}
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; X32: pushl ${{1|2}}
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; X32: pushl ${{1|2}}
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; X32: call{{.*}} _test_argv64i1
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; WIN64-LABEL: caller_argv64i1:
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; WIN64: movabsq $4294967298, %rax
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; WIN64: movq %rax, (%rsp)
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; WIN64: movq %rax, %rcx
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; WIN64: movq %rax, %rdx
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; WIN64: movq %rax, %rdi
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; WIN64: movq %rax, %rsi
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; WIN64: movq %rax, %r8
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; WIN64: movq %rax, %r9
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; WIN64: movq %rax, %r10
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; WIN64: movq %rax, %r11
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; WIN64: movq %rax, %r12
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; WIN64: movq %rax, %r14
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; WIN64: movq %rax, %r15
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; WIN64: callq test_argv64i1
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; LINUXOSX64-LABEL: caller_argv64i1:
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; LINUXOSX64: movabsq $4294967298, %rax
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; LINUXOSX64: movq %rax, %rcx
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; LINUXOSX64: movq %rax, %rdx
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; LINUXOSX64: movq %rax, %rdi
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; LINUXOSX64: movq %rax, %rsi
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; LINUXOSX64: movq %rax, %r8
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; LINUXOSX64: movq %rax, %r9
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; LINUXOSX64: movq %rax, %r12
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; LINUXOSX64: movq %rax, %r13
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; LINUXOSX64: movq %rax, %r14
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; LINUXOSX64: movq %rax, %r15
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; LINUXOSX64: call{{.*}} test_argv64i1
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; Test regcall when passing arguments of v64i1 type
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define i64 @caller_argv64i1() #0 {
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entry:
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%v0 = bitcast i64 4294967298 to <64 x i1>
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%call = call x86_regcallcc i64 @test_argv64i1(<64 x i1> %v0, <64 x i1> %v0, <64 x i1> %v0,
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<64 x i1> %v0, <64 x i1> %v0, <64 x i1> %v0,
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<64 x i1> %v0, <64 x i1> %v0, <64 x i1> %v0,
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<64 x i1> %v0, <64 x i1> %v0, <64 x i1> %v0,
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<64 x i1> %v0)
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ret i64 %call
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}
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; X32-LABEL: test_retv64i1:
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; X32: mov{{.*}} $2, %eax
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; X32: mov{{.*}} $1, %ecx
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; X32: ret{{.*}}
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; CHECK64-LABEL: test_retv64i1:
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; CHECK64: mov{{.*}} $4294967298, %rax
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; CHECK64: ret{{.*}}
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; Test regcall when returning v64i1 type
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define x86_regcallcc <64 x i1> @test_retv64i1() {
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%a = bitcast i64 4294967298 to <64 x i1>
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ret <64 x i1> %a
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}
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; X32-LABEL: caller_retv64i1:
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; X32: call{{.*}} _test_retv64i1
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; X32: kmov{{.*}} %eax, %k0
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; X32: kmov{{.*}} %ecx, %k1
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; X32: kunpckdq %k0, %k1, %k0
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; CHECK64-LABEL: caller_retv64i1:
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; CHECK64: call{{.*}} {{_*}}test_retv64i1
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; CHECK64: kmovq %rax, %k0
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; CHECK64: ret{{.*}}
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; Test regcall when processing result of v64i1 type
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define <64 x i1> @caller_retv64i1() #0 {
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entry:
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%call = call x86_regcallcc <64 x i1> @test_retv64i1()
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ret <64 x i1> %call
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}
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; CHECK-LABEL: test_argv32i1:
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; CHECK: kmovd %edx, %k{{[0-9]+}}
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; CHECK: kmovd %ecx, %k{{[0-9]+}}
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; CHECK: kmovd %eax, %k{{[0-9]+}}
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; CHECK: ret{{l|q}}
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; Test regcall when receiving arguments of v32i1 type
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declare i32 @test_argv32i1helper(<32 x i1> %x0, <32 x i1> %x1, <32 x i1> %x2)
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define x86_regcallcc i32 @test_argv32i1(<32 x i1> %x0, <32 x i1> %x1, <32 x i1> %x2) {
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entry:
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%res = call i32 @test_argv32i1helper(<32 x i1> %x0, <32 x i1> %x1, <32 x i1> %x2)
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ret i32 %res
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}
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; CHECK-LABEL: caller_argv32i1:
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; CHECK: mov{{.*}} $1, %eax
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; CHECK: mov{{.*}} $1, %ecx
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; CHECK: mov{{.*}} $1, %edx
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; CHECK: call{{.*}} {{_*}}test_argv32i1
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; Test regcall when passing arguments of v32i1 type
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define i32 @caller_argv32i1() #0 {
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entry:
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%v0 = bitcast i32 1 to <32 x i1>
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%call = call x86_regcallcc i32 @test_argv32i1(<32 x i1> %v0, <32 x i1> %v0, <32 x i1> %v0)
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ret i32 %call
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}
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; CHECK-LABEL: test_retv32i1:
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; CHECK: movl $1, %eax
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; CHECK: ret{{l|q}}
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; Test regcall when returning v32i1 type
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define x86_regcallcc <32 x i1> @test_retv32i1() {
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%a = bitcast i32 1 to <32 x i1>
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ret <32 x i1> %a
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}
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; CHECK-LABEL: caller_retv32i1:
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; CHECK: call{{.*}} {{_*}}test_retv32i1
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; CHECK: incl %eax
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; Test regcall when processing result of v32i1 type
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define i32 @caller_retv32i1() #0 {
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entry:
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%call = call x86_regcallcc <32 x i1> @test_retv32i1()
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%c = bitcast <32 x i1> %call to i32
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%add = add i32 %c, 1
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ret i32 %add
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}
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; CHECK-LABEL: test_argv16i1:
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; CHECK: kmovw %edx, %k{{[0-9]+}}
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; CHECK: kmovw %ecx, %k{{[0-9]+}}
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; CHECK: kmovw %eax, %k{{[0-9]+}}
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; CHECK: ret{{l|q}}
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; Test regcall when receiving arguments of v16i1 type
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declare i16 @test_argv16i1helper(<16 x i1> %x0, <16 x i1> %x1, <16 x i1> %x2)
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define x86_regcallcc i16 @test_argv16i1(<16 x i1> %x0, <16 x i1> %x1, <16 x i1> %x2) {
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%res = call i16 @test_argv16i1helper(<16 x i1> %x0, <16 x i1> %x1, <16 x i1> %x2)
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ret i16 %res
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}
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; CHECK-LABEL: caller_argv16i1:
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; CHECK: movl $1, %eax
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; CHECK: movl $1, %ecx
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; CHECK: movl $1, %edx
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; CHECK: call{{l|q}} {{_*}}test_argv16i1
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; Test regcall when passing arguments of v16i1 type
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define i16 @caller_argv16i1() #0 {
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entry:
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%v0 = bitcast i16 1 to <16 x i1>
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%call = call x86_regcallcc i16 @test_argv16i1(<16 x i1> %v0, <16 x i1> %v0, <16 x i1> %v0)
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ret i16 %call
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}
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; CHECK-LABEL: test_retv16i1:
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; CHECK: movw $1, %ax
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; CHECK: ret{{l|q}}
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; Test regcall when returning v16i1 type
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define x86_regcallcc <16 x i1> @test_retv16i1() {
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%a = bitcast i16 1 to <16 x i1>
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ret <16 x i1> %a
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}
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; CHECK-LABEL: caller_retv16i1:
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; CHECK: call{{l|q}} {{_*}}test_retv16i1
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; CHECK: incl %eax
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; Test regcall when processing result of v16i1 type
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define i16 @caller_retv16i1() #0 {
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entry:
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%call = call x86_regcallcc <16 x i1> @test_retv16i1()
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%c = bitcast <16 x i1> %call to i16
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%add = add i16 %c, 1
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ret i16 %add
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}
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; CHECK-LABEL: test_argv8i1:
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; CHECK: kmovw %edx, %k{{[0-9]+}}
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; CHECK: kmovw %ecx, %k{{[0-9]+}}
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; CHECK: kmovw %eax, %k{{[0-9]+}}
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; CHECK: ret{{l|q}}
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; Test regcall when receiving arguments of v8i1 type
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declare i8 @test_argv8i1helper(<8 x i1> %x0, <8 x i1> %x1, <8 x i1> %x2)
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define x86_regcallcc i8 @test_argv8i1(<8 x i1> %x0, <8 x i1> %x1, <8 x i1> %x2) {
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%res = call i8 @test_argv8i1helper(<8 x i1> %x0, <8 x i1> %x1, <8 x i1> %x2)
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ret i8 %res
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}
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; CHECK-LABEL: caller_argv8i1:
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; CHECK: movl $1, %eax
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; CHECK: movl $1, %ecx
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; CHECK: movl $1, %edx
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; CHECK: call{{l|q}} {{_*}}test_argv8i1
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; Test regcall when passing arguments of v8i1 type
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define i8 @caller_argv8i1() #0 {
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entry:
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%v0 = bitcast i8 1 to <8 x i1>
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%call = call x86_regcallcc i8 @test_argv8i1(<8 x i1> %v0, <8 x i1> %v0, <8 x i1> %v0)
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ret i8 %call
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}
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; CHECK-LABEL: test_retv8i1:
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; CHECK: movb $1, %al
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; CHECK: ret{{q|l}}
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; Test regcall when returning v8i1 type
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define x86_regcallcc <8 x i1> @test_retv8i1() {
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%a = bitcast i8 1 to <8 x i1>
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ret <8 x i1> %a
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}
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; CHECK-LABEL: caller_retv8i1:
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; CHECK: call{{l|q}} {{_*}}test_retv8i1
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; CHECK: kmovw %eax, %k{{[0-9]+}}
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; CHECK: ret{{l|q}}
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; Test regcall when processing result of v8i1 type
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define <8 x i1> @caller_retv8i1() #0 {
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entry:
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%call = call x86_regcallcc <8 x i1> @test_retv8i1()
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ret <8 x i1> %call
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}
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