Existing ISel patterns match setne/seteq following SIMD boolean reductions any_true and all_true, and drop the ones that are redundant (because the reductions always return 1 or 0). This adds patterns to also produce eqz instructions instead of a comparison with a const.
490 lines
16 KiB
LLVM
490 lines
16 KiB
LLVM
; RUN: llc < %s -asm-verbose=false -verify-machineinstrs -disable-wasm-fallthrough-return-opt -wasm-disable-explicit-locals -wasm-keep-registers -mattr=+simd128 | FileCheck %s
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; Tests that redundant masking and conversions are folded out
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; following SIMD reduction instructions.
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target triple = "wasm32-unknown-unknown"
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; ==============================================================================
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; 16 x i8
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; ==============================================================================
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declare i32 @llvm.wasm.anytrue.v16i8(<16 x i8>)
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declare i32 @llvm.wasm.alltrue.v16i8(<16 x i8>)
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; CHECK-LABEL: any_v16i8_trunc:
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; CHECK-NEXT: .functype any_v16i8_trunc (v128) -> (i32){{$}}
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; CHECK-NEXT: v128.any_true $push[[R:[0-9]+]]=, $0{{$}}
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; CHECK-NEXT: return $pop[[R]]{{$}}
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define i32 @any_v16i8_trunc(<16 x i8> %x) {
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%a = call i32 @llvm.wasm.anytrue.v16i8(<16 x i8> %x)
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%b = trunc i32 %a to i1
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%c = zext i1 %b to i32
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ret i32 %c
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}
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; CHECK-LABEL: any_v16i8_ne_0:
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; CHECK-NEXT: .functype any_v16i8_ne_0 (v128) -> (i32){{$}}
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; CHECK-NEXT: v128.any_true $push[[R:[0-9]+]]=, $0{{$}}
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; CHECK-NEXT: return $pop[[R]]{{$}}
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define i32 @any_v16i8_ne_0(<16 x i8> %x) {
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%a = call i32 @llvm.wasm.anytrue.v16i8(<16 x i8> %x)
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%b = icmp ne i32 %a, 0
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%c = zext i1 %b to i32
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ret i32 %c
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}
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; CHECK-LABEL: any_v16i8_ne_1:
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; CHECK-NEXT: .functype any_v16i8_ne_1 (v128) -> (i32){{$}}
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; CHECK-NEXT: v128.any_true $push[[T:[0-9]+]]=, $0{{$}}
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; CHECK-NEXT: i32.eqz $push[[R:[0-9]+]]=, $pop[[T]]{{$}}
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; CHECK-NEXT: return $pop[[R]]{{$}}
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define i32 @any_v16i8_ne_1(<16 x i8> %x) {
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%a = call i32 @llvm.wasm.anytrue.v16i8(<16 x i8> %x)
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%b = icmp ne i32 %a, 1
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%c = zext i1 %b to i32
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ret i32 %c
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}
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; CHECK-LABEL: any_v16i8_eq_0:
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; CHECK-NEXT: .functype any_v16i8_eq_0 (v128) -> (i32){{$}}
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; CHECK-NEXT: v128.any_true $push[[T:[0-9]+]]=, $0{{$}}
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; CHECK-NEXT: i32.eqz $push[[R:[0-9]+]]=, $pop[[T]]{{$}}
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; CHECK-NEXT: return $pop[[R]]{{$}}
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define i32 @any_v16i8_eq_0(<16 x i8> %x) {
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%a = call i32 @llvm.wasm.anytrue.v16i8(<16 x i8> %x)
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%b = icmp eq i32 %a, 0
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%c = zext i1 %b to i32
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ret i32 %c
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}
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; CHECK-LABEL: any_v16i8_eq_1:
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; CHECK-NEXT: .functype any_v16i8_eq_1 (v128) -> (i32){{$}}
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; CHECK-NEXT: v128.any_true $push[[R:[0-9]+]]=, $0{{$}}
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; CHECK-NEXT: return $pop[[R]]{{$}}
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define i32 @any_v16i8_eq_1(<16 x i8> %x) {
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%a = call i32 @llvm.wasm.anytrue.v16i8(<16 x i8> %x)
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%b = icmp eq i32 %a, 1
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%c = zext i1 %b to i32
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ret i32 %c
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}
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; CHECK-LABEL: all_v16i8_trunc:
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; CHECK-NEXT: .functype all_v16i8_trunc (v128) -> (i32){{$}}
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; CHECK-NEXT: i8x16.all_true $push[[R:[0-9]+]]=, $0{{$}}
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; CHECK-NEXT: return $pop[[R]]{{$}}
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define i32 @all_v16i8_trunc(<16 x i8> %x) {
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%a = call i32 @llvm.wasm.alltrue.v16i8(<16 x i8> %x)
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%b = trunc i32 %a to i1
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%c = zext i1 %b to i32
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ret i32 %c
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}
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; CHECK-LABEL: all_v16i8_ne_0:
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; CHECK-NEXT: .functype all_v16i8_ne_0 (v128) -> (i32){{$}}
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; CHECK-NEXT: i8x16.all_true $push[[R:[0-9]+]]=, $0{{$}}
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; CHECK-NEXT: return $pop[[R]]{{$}}
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define i32 @all_v16i8_ne_0(<16 x i8> %x) {
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%a = call i32 @llvm.wasm.alltrue.v16i8(<16 x i8> %x)
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%b = icmp ne i32 %a, 0
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%c = zext i1 %b to i32
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ret i32 %c
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}
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; CHECK-LABEL: all_v16i8_ne_1:
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; CHECK-NEXT: .functype all_v16i8_ne_1 (v128) -> (i32){{$}}
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; CHECK-NEXT: i8x16.all_true $push[[T:[0-9]+]]=, $0{{$}}
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; CHECK-NEXT: i32.eqz $push[[R:[0-9]+]]=, $pop[[T]]{{$}}
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; CHECK-NEXT: return $pop[[R]]{{$}}
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define i32 @all_v16i8_ne_1(<16 x i8> %x) {
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%a = call i32 @llvm.wasm.alltrue.v16i8(<16 x i8> %x)
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%b = icmp ne i32 %a, 1
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%c = zext i1 %b to i32
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ret i32 %c
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}
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; CHECK-LABEL: all_v16i8_eq_0:
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; CHECK-NEXT: .functype all_v16i8_eq_0 (v128) -> (i32){{$}}
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; CHECK-NEXT: i8x16.all_true $push[[T:[0-9]+]]=, $0{{$}}
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; CHECK-NEXT: i32.eqz $push[[R:[0-9]+]]=, $pop[[T]]{{$}}
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; CHECK-NEXT: return $pop[[R]]{{$}}
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define i32 @all_v16i8_eq_0(<16 x i8> %x) {
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%a = call i32 @llvm.wasm.alltrue.v16i8(<16 x i8> %x)
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%b = icmp eq i32 %a, 0
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%c = zext i1 %b to i32
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ret i32 %c
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}
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; CHECK-LABEL: all_v16i8_eq_1:
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; CHECK-NEXT: .functype all_v16i8_eq_1 (v128) -> (i32){{$}}
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; CHECK-NEXT: i8x16.all_true $push[[R:[0-9]+]]=, $0{{$}}
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; CHECK-NEXT: return $pop[[R]]{{$}}
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define i32 @all_v16i8_eq_1(<16 x i8> %x) {
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%a = call i32 @llvm.wasm.alltrue.v16i8(<16 x i8> %x)
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%b = icmp eq i32 %a, 1
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%c = zext i1 %b to i32
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ret i32 %c
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}
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; ==============================================================================
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; 8 x i16
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; ==============================================================================
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declare i32 @llvm.wasm.anytrue.v8i16(<8 x i16>)
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declare i32 @llvm.wasm.alltrue.v8i16(<8 x i16>)
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; CHECK-LABEL: any_v8i16_trunc:
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; CHECK-NEXT: .functype any_v8i16_trunc (v128) -> (i32){{$}}
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; CHECK-NEXT: v128.any_true $push[[R:[0-9]+]]=, $0{{$}}
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; CHECK-NEXT: return $pop[[R]]{{$}}
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define i32 @any_v8i16_trunc(<8 x i16> %x) {
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%a = call i32 @llvm.wasm.anytrue.v8i16(<8 x i16> %x)
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%b = trunc i32 %a to i1
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%c = zext i1 %b to i32
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ret i32 %c
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}
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; CHECK-LABEL: any_v8i16_ne_0:
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; CHECK-NEXT: .functype any_v8i16_ne_0 (v128) -> (i32){{$}}
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; CHECK-NEXT: v128.any_true $push[[R:[0-9]+]]=, $0{{$}}
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; CHECK-NEXT: return $pop[[R]]{{$}}
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define i32 @any_v8i16_ne_0(<8 x i16> %x) {
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%a = call i32 @llvm.wasm.anytrue.v8i16(<8 x i16> %x)
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%b = icmp ne i32 %a, 0
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%c = zext i1 %b to i32
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ret i32 %c
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}
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; CHECK-LABEL: any_v8i16_ne_1:
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; CHECK-NEXT: .functype any_v8i16_ne_1 (v128) -> (i32){{$}}
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; CHECK-NEXT: v128.any_true $push[[T:[0-9]+]]=, $0{{$}}
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; CHECK-NEXT: i32.eqz $push[[R:[0-9]+]]=, $pop[[T]]{{$}}
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; CHECK-NEXT: return $pop[[R]]{{$}}
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define i32 @any_v8i16_ne_1(<8 x i16> %x) {
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%a = call i32 @llvm.wasm.anytrue.v8i16(<8 x i16> %x)
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%b = icmp ne i32 %a, 1
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%c = zext i1 %b to i32
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ret i32 %c
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}
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; CHECK-LABEL: any_v8i16_eq_0:
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; CHECK-NEXT: .functype any_v8i16_eq_0 (v128) -> (i32){{$}}
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; CHECK-NEXT: v128.any_true $push[[T:[0-9]+]]=, $0{{$}}
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; CHECK-NEXT: i32.eqz $push[[R:[0-9]+]]=, $pop[[T]]{{$}}
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; CHECK-NEXT: return $pop[[R]]{{$}}
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define i32 @any_v8i16_eq_0(<8 x i16> %x) {
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%a = call i32 @llvm.wasm.anytrue.v8i16(<8 x i16> %x)
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%b = icmp eq i32 %a, 0
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%c = zext i1 %b to i32
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ret i32 %c
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}
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; CHECK-LABEL: any_v8i16_eq_1:
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; CHECK-NEXT: .functype any_v8i16_eq_1 (v128) -> (i32){{$}}
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; CHECK-NEXT: v128.any_true $push[[R:[0-9]+]]=, $0{{$}}
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; CHECK-NEXT: return $pop[[R]]{{$}}
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define i32 @any_v8i16_eq_1(<8 x i16> %x) {
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%a = call i32 @llvm.wasm.anytrue.v8i16(<8 x i16> %x)
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%b = icmp eq i32 %a, 1
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%c = zext i1 %b to i32
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ret i32 %c
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}
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; CHECK-LABEL: all_v8i16_trunc:
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; CHECK-NEXT: .functype all_v8i16_trunc (v128) -> (i32){{$}}
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; CHECK-NEXT: i16x8.all_true $push[[R:[0-9]+]]=, $0{{$}}
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; CHECK-NEXT: return $pop[[R]]{{$}}
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define i32 @all_v8i16_trunc(<8 x i16> %x) {
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%a = call i32 @llvm.wasm.alltrue.v8i16(<8 x i16> %x)
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%b = trunc i32 %a to i1
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%c = zext i1 %b to i32
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ret i32 %c
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}
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; CHECK-LABEL: all_v8i16_ne_0:
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; CHECK-NEXT: .functype all_v8i16_ne_0 (v128) -> (i32){{$}}
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; CHECK-NEXT: i16x8.all_true $push[[R:[0-9]+]]=, $0{{$}}
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; CHECK-NEXT: return $pop[[R]]{{$}}
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define i32 @all_v8i16_ne_0(<8 x i16> %x) {
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%a = call i32 @llvm.wasm.alltrue.v8i16(<8 x i16> %x)
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%b = icmp ne i32 %a, 0
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%c = zext i1 %b to i32
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ret i32 %c
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}
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; CHECK-LABEL: all_v8i16_ne_1:
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; CHECK-NEXT: .functype all_v8i16_ne_1 (v128) -> (i32){{$}}
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; CHECK-NEXT: i16x8.all_true $push[[T:[0-9]+]]=, $0{{$}}
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; CHECK-NEXT: i32.eqz $push[[R:[0-9]+]]=, $pop[[T]]{{$}}
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; CHECK-NEXT: return $pop[[R]]{{$}}
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define i32 @all_v8i16_ne_1(<8 x i16> %x) {
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%a = call i32 @llvm.wasm.alltrue.v8i16(<8 x i16> %x)
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%b = icmp ne i32 %a, 1
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%c = zext i1 %b to i32
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ret i32 %c
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}
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; CHECK-LABEL: all_v8i16_eq_0:
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; CHECK-NEXT: .functype all_v8i16_eq_0 (v128) -> (i32){{$}}
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; CHECK-NEXT: i16x8.all_true $push[[T:[0-9]+]]=, $0{{$}}
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; CHECK-NEXT: i32.eqz $push[[R:[0-9]+]]=, $pop[[T]]{{$}}
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; CHECK-NEXT: return $pop[[R]]{{$}}
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define i32 @all_v8i16_eq_0(<8 x i16> %x) {
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%a = call i32 @llvm.wasm.alltrue.v8i16(<8 x i16> %x)
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%b = icmp eq i32 %a, 0
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%c = zext i1 %b to i32
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ret i32 %c
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}
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; CHECK-LABEL: all_v8i16_eq_1:
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; CHECK-NEXT: .functype all_v8i16_eq_1 (v128) -> (i32){{$}}
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; CHECK-NEXT: i16x8.all_true $push[[R:[0-9]+]]=, $0{{$}}
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; CHECK-NEXT: return $pop[[R]]{{$}}
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define i32 @all_v8i16_eq_1(<8 x i16> %x) {
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%a = call i32 @llvm.wasm.alltrue.v8i16(<8 x i16> %x)
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%b = icmp eq i32 %a, 1
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%c = zext i1 %b to i32
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ret i32 %c
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}
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; ==============================================================================
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; 4 x i32
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; ==============================================================================
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declare i32 @llvm.wasm.anytrue.v4i32(<4 x i32>)
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declare i32 @llvm.wasm.alltrue.v4i32(<4 x i32>)
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; CHECK-LABEL: any_v4i32_trunc:
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; CHECK-NEXT: .functype any_v4i32_trunc (v128) -> (i32){{$}}
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; CHECK-NEXT: v128.any_true $push[[R:[0-9]+]]=, $0{{$}}
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; CHECK-NEXT: return $pop[[R]]{{$}}
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define i32 @any_v4i32_trunc(<4 x i32> %x) {
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%a = call i32 @llvm.wasm.anytrue.v4i32(<4 x i32> %x)
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%b = trunc i32 %a to i1
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%c = zext i1 %b to i32
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ret i32 %c
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}
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; CHECK-LABEL: any_v4i32_ne_0:
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; CHECK-NEXT: .functype any_v4i32_ne_0 (v128) -> (i32){{$}}
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; CHECK-NEXT: v128.any_true $push[[R:[0-9]+]]=, $0{{$}}
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; CHECK-NEXT: return $pop[[R]]{{$}}
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define i32 @any_v4i32_ne_0(<4 x i32> %x) {
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%a = call i32 @llvm.wasm.anytrue.v4i32(<4 x i32> %x)
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%b = icmp ne i32 %a, 0
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%c = zext i1 %b to i32
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ret i32 %c
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}
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; CHECK-LABEL: any_v4i32_ne_1:
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; CHECK-NEXT: .functype any_v4i32_ne_1 (v128) -> (i32){{$}}
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; CHECK-NEXT: v128.any_true $push[[T:[0-9]+]]=, $0{{$}}
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; CHECK-NEXT: i32.eqz $push[[R:[0-9]+]]=, $pop[[T]]{{$}}
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; CHECK-NEXT: return $pop[[R]]{{$}}
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define i32 @any_v4i32_ne_1(<4 x i32> %x) {
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%a = call i32 @llvm.wasm.anytrue.v4i32(<4 x i32> %x)
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%b = icmp ne i32 %a, 1
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%c = zext i1 %b to i32
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ret i32 %c
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}
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; CHECK-LABEL: any_v4i32_eq_0:
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; CHECK-NEXT: .functype any_v4i32_eq_0 (v128) -> (i32){{$}}
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; CHECK-NEXT: v128.any_true $push[[T:[0-9]+]]=, $0{{$}}
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; CHECK-NEXT: i32.eqz $push[[R:[0-9]+]]=, $pop[[T]]{{$}}
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; CHECK-NEXT: return $pop[[R]]{{$}}
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define i32 @any_v4i32_eq_0(<4 x i32> %x) {
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%a = call i32 @llvm.wasm.anytrue.v4i32(<4 x i32> %x)
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%b = icmp eq i32 %a, 0
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%c = zext i1 %b to i32
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ret i32 %c
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}
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; CHECK-LABEL: any_v4i32_eq_1:
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; CHECK-NEXT: .functype any_v4i32_eq_1 (v128) -> (i32){{$}}
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; CHECK-NEXT: v128.any_true $push[[R:[0-9]+]]=, $0{{$}}
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; CHECK-NEXT: return $pop[[R]]{{$}}
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define i32 @any_v4i32_eq_1(<4 x i32> %x) {
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%a = call i32 @llvm.wasm.anytrue.v4i32(<4 x i32> %x)
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%b = icmp eq i32 %a, 1
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%c = zext i1 %b to i32
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ret i32 %c
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}
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; CHECK-LABEL: all_v4i32_trunc:
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; CHECK-NEXT: .functype all_v4i32_trunc (v128) -> (i32){{$}}
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; CHECK-NEXT: i32x4.all_true $push[[R:[0-9]+]]=, $0{{$}}
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; CHECK-NEXT: return $pop[[R]]{{$}}
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define i32 @all_v4i32_trunc(<4 x i32> %x) {
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%a = call i32 @llvm.wasm.alltrue.v4i32(<4 x i32> %x)
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%b = trunc i32 %a to i1
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%c = zext i1 %b to i32
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ret i32 %c
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}
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; CHECK-LABEL: all_v4i32_ne_0:
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; CHECK-NEXT: .functype all_v4i32_ne_0 (v128) -> (i32){{$}}
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; CHECK-NEXT: i32x4.all_true $push[[R:[0-9]+]]=, $0{{$}}
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; CHECK-NEXT: return $pop[[R]]{{$}}
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define i32 @all_v4i32_ne_0(<4 x i32> %x) {
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%a = call i32 @llvm.wasm.alltrue.v4i32(<4 x i32> %x)
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%b = icmp ne i32 %a, 0
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%c = zext i1 %b to i32
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ret i32 %c
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}
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; CHECK-LABEL: all_v4i32_ne_1:
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; CHECK-NEXT: .functype all_v4i32_ne_1 (v128) -> (i32){{$}}
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; CHECK-NEXT: i32x4.all_true $push[[T:[0-9]+]]=, $0{{$}}
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; CHECK-NEXT: i32.eqz $push[[R:[0-9]+]]=, $pop[[T]]{{$}}
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; CHECK-NEXT: return $pop[[R]]{{$}}
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define i32 @all_v4i32_ne_1(<4 x i32> %x) {
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%a = call i32 @llvm.wasm.alltrue.v4i32(<4 x i32> %x)
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%b = icmp ne i32 %a, 1
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%c = zext i1 %b to i32
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ret i32 %c
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}
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; CHECK-LABEL: all_v4i32_eq_0:
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; CHECK-NEXT: .functype all_v4i32_eq_0 (v128) -> (i32){{$}}
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; CHECK-NEXT: i32x4.all_true $push[[T:[0-9]+]]=, $0{{$}}
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; CHECK-NEXT: i32.eqz $push[[R:[0-9]+]]=, $pop[[T]]{{$}}
|
|
; CHECK-NEXT: return $pop[[R]]{{$}}
|
|
define i32 @all_v4i32_eq_0(<4 x i32> %x) {
|
|
%a = call i32 @llvm.wasm.alltrue.v4i32(<4 x i32> %x)
|
|
%b = icmp eq i32 %a, 0
|
|
%c = zext i1 %b to i32
|
|
ret i32 %c
|
|
}
|
|
|
|
; CHECK-LABEL: all_v4i32_eq_1:
|
|
; CHECK-NEXT: .functype all_v4i32_eq_1 (v128) -> (i32){{$}}
|
|
; CHECK-NEXT: i32x4.all_true $push[[R:[0-9]+]]=, $0{{$}}
|
|
; CHECK-NEXT: return $pop[[R]]{{$}}
|
|
define i32 @all_v4i32_eq_1(<4 x i32> %x) {
|
|
%a = call i32 @llvm.wasm.alltrue.v4i32(<4 x i32> %x)
|
|
%b = icmp eq i32 %a, 1
|
|
%c = zext i1 %b to i32
|
|
ret i32 %c
|
|
}
|
|
|
|
|
|
; ==============================================================================
|
|
; 2 x i64
|
|
; ==============================================================================
|
|
declare i32 @llvm.wasm.anytrue.v2i64(<2 x i64>)
|
|
declare i32 @llvm.wasm.alltrue.v2i64(<2 x i64>)
|
|
|
|
; CHECK-LABEL: any_v2i64_trunc:
|
|
; CHECK-NEXT: .functype any_v2i64_trunc (v128) -> (i32){{$}}
|
|
; CHECK-NEXT: v128.any_true $push[[R:[0-9]+]]=, $0{{$}}
|
|
; CHECK-NEXT: return $pop[[R]]{{$}}
|
|
define i32 @any_v2i64_trunc(<2 x i64> %x) {
|
|
%a = call i32 @llvm.wasm.anytrue.v2i64(<2 x i64> %x)
|
|
%b = trunc i32 %a to i1
|
|
%c = zext i1 %b to i32
|
|
ret i32 %c
|
|
}
|
|
|
|
; CHECK-LABEL: any_v2i64_ne_0:
|
|
; CHECK-NEXT: .functype any_v2i64_ne_0 (v128) -> (i32){{$}}
|
|
; CHECK-NEXT: v128.any_true $push[[R:[0-9]+]]=, $0{{$}}
|
|
; CHECK-NEXT: return $pop[[R]]{{$}}
|
|
define i32 @any_v2i64_ne_0(<2 x i64> %x) {
|
|
%a = call i32 @llvm.wasm.anytrue.v2i64(<2 x i64> %x)
|
|
%b = icmp ne i32 %a, 0
|
|
%c = zext i1 %b to i32
|
|
ret i32 %c
|
|
}
|
|
|
|
; CHECK-LABEL: any_v2i64_ne_1:
|
|
; CHECK-NEXT: .functype any_v2i64_ne_1 (v128) -> (i32){{$}}
|
|
; CHECK-NEXT: v128.any_true $push[[T:[0-9]+]]=, $0{{$}}
|
|
; CHECK-NEXT: i32.eqz $push[[R:[0-9]+]]=, $pop[[T]]{{$}}
|
|
; CHECK-NEXT: return $pop[[R]]{{$}}
|
|
define i32 @any_v2i64_ne_1(<2 x i64> %x) {
|
|
%a = call i32 @llvm.wasm.anytrue.v2i64(<2 x i64> %x)
|
|
%b = icmp ne i32 %a, 1
|
|
%c = zext i1 %b to i32
|
|
ret i32 %c
|
|
}
|
|
|
|
; CHECK-LABEL: any_v2i64_eq_0:
|
|
; CHECK-NEXT: .functype any_v2i64_eq_0 (v128) -> (i32){{$}}
|
|
; CHECK-NEXT: v128.any_true $push[[T:[0-9]+]]=, $0{{$}}
|
|
; CHECK-NEXT: i32.eqz $push[[R:[0-9]+]]=, $pop[[T]]{{$}}
|
|
; CHECK-NEXT: return $pop[[R]]{{$}}
|
|
define i32 @any_v2i64_eq_0(<2 x i64> %x) {
|
|
%a = call i32 @llvm.wasm.anytrue.v2i64(<2 x i64> %x)
|
|
%b = icmp eq i32 %a, 0
|
|
%c = zext i1 %b to i32
|
|
ret i32 %c
|
|
}
|
|
|
|
; CHECK-LABEL: any_v2i64_eq_1:
|
|
; CHECK-NEXT: .functype any_v2i64_eq_1 (v128) -> (i32){{$}}
|
|
; CHECK-NEXT: v128.any_true $push[[R:[0-9]+]]=, $0{{$}}
|
|
; CHECK-NEXT: return $pop[[R]]{{$}}
|
|
define i32 @any_v2i64_eq_1(<2 x i64> %x) {
|
|
%a = call i32 @llvm.wasm.anytrue.v2i64(<2 x i64> %x)
|
|
%b = icmp eq i32 %a, 1
|
|
%c = zext i1 %b to i32
|
|
ret i32 %c
|
|
}
|
|
|
|
; CHECK-LABEL: all_v2i64_trunc:
|
|
; CHECK-NEXT: .functype all_v2i64_trunc (v128) -> (i32){{$}}
|
|
; CHECK-NEXT: i64x2.all_true $push[[R:[0-9]+]]=, $0{{$}}
|
|
; CHECK-NEXT: return $pop[[R]]{{$}}
|
|
define i32 @all_v2i64_trunc(<2 x i64> %x) {
|
|
%a = call i32 @llvm.wasm.alltrue.v2i64(<2 x i64> %x)
|
|
%b = trunc i32 %a to i1
|
|
%c = zext i1 %b to i32
|
|
ret i32 %c
|
|
}
|
|
|
|
; CHECK-LABEL: all_v2i64_ne_0:
|
|
; CHECK-NEXT: .functype all_v2i64_ne_0 (v128) -> (i32){{$}}
|
|
; CHECK-NEXT: i64x2.all_true $push[[R:[0-9]+]]=, $0{{$}}
|
|
; CHECK-NEXT: return $pop[[R]]{{$}}
|
|
define i32 @all_v2i64_ne_0(<2 x i64> %x) {
|
|
%a = call i32 @llvm.wasm.alltrue.v2i64(<2 x i64> %x)
|
|
%b = icmp ne i32 %a, 0
|
|
%c = zext i1 %b to i32
|
|
ret i32 %c
|
|
}
|
|
|
|
; CHECK-LABEL: all_v2i64_ne_1:
|
|
; CHECK-NEXT: .functype all_v2i64_ne_1 (v128) -> (i32){{$}}
|
|
; CHECK-NEXT: i64x2.all_true $push[[T:[0-9]+]]=, $0{{$}}
|
|
; CHECK-NEXT: i32.eqz $push[[R:[0-9]+]]=, $pop[[T]]{{$}}
|
|
; CHECK-NEXT: return $pop[[R]]{{$}}
|
|
define i32 @all_v2i64_ne_1(<2 x i64> %x) {
|
|
%a = call i32 @llvm.wasm.alltrue.v2i64(<2 x i64> %x)
|
|
%b = icmp ne i32 %a, 1
|
|
%c = zext i1 %b to i32
|
|
ret i32 %c
|
|
}
|
|
|
|
; CHECK-LABEL: all_v2i64_eq_0:
|
|
; CHECK-NEXT: .functype all_v2i64_eq_0 (v128) -> (i32){{$}}
|
|
; CHECK-NEXT: i64x2.all_true $push[[T:[0-9]+]]=, $0{{$}}
|
|
; CHECK-NEXT: i32.eqz $push[[R:[0-9]+]]=, $pop[[T]]{{$}}
|
|
; CHECK-NEXT: return $pop[[R]]{{$}}
|
|
define i32 @all_v2i64_eq_0(<2 x i64> %x) {
|
|
%a = call i32 @llvm.wasm.alltrue.v2i64(<2 x i64> %x)
|
|
%b = icmp eq i32 %a, 0
|
|
%c = zext i1 %b to i32
|
|
ret i32 %c
|
|
}
|
|
|
|
; CHECK-LABEL: all_v2i64_eq_1:
|
|
; CHECK-NEXT: .functype all_v2i64_eq_1 (v128) -> (i32){{$}}
|
|
; CHECK-NEXT: i64x2.all_true $push[[R:[0-9]+]]=, $0{{$}}
|
|
; CHECK-NEXT: return $pop[[R]]{{$}}
|
|
define i32 @all_v2i64_eq_1(<2 x i64> %x) {
|
|
%a = call i32 @llvm.wasm.alltrue.v2i64(<2 x i64> %x)
|
|
%b = icmp eq i32 %a, 1
|
|
%c = zext i1 %b to i32
|
|
ret i32 %c
|
|
}
|