[InstSimplify] add tests for implied cmp with zero (PR35790); NFC
llvm-svn: 322323
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; RUN: opt < %s -instsimplify -S | FileCheck %s
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; In the next 8 tests (4 commutes * 2 (and/or)), eliminate the simple (not) null
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; check because that compare is implied by the masked compare of the same operand.
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; Vary types between scalar and vector and weird for extra coverage.
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; or (icmp eq (and X, ?), 0), (icmp eq X, 0) --> icmp eq (and X, ?), 0
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define i1 @or_cmps_eq_zero_with_mask_commute1(i64 %x, i64 %y) {
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; CHECK-LABEL: @or_cmps_eq_zero_with_mask_commute1(
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; CHECK-NEXT: [[ISNULL:%.*]] = icmp eq i64 %x, 0
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; CHECK-NEXT: [[SOMEBITS:%.*]] = and i64 %x, %y
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; CHECK-NEXT: [[SOMEBITS_ARE_ZERO:%.*]] = icmp eq i64 [[SOMEBITS]], 0
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; CHECK-NEXT: [[R:%.*]] = or i1 [[SOMEBITS_ARE_ZERO]], [[ISNULL]]
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; CHECK-NEXT: ret i1 [[R]]
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;
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%isnull = icmp eq i64 %x, 0
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%somebits = and i64 %x, %y
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%somebits_are_zero = icmp eq i64 %somebits, 0
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%r = or i1 %somebits_are_zero, %isnull
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ret i1 %r
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}
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; or (icmp eq X, 0), (icmp eq (and X, ?), 0) --> icmp eq (and X, ?), 0
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define <2 x i1> @or_cmps_eq_zero_with_mask_commute2(<2 x i64> %x, <2 x i64> %y) {
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; CHECK-LABEL: @or_cmps_eq_zero_with_mask_commute2(
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; CHECK-NEXT: [[ISNULL:%.*]] = icmp eq <2 x i64> %x, zeroinitializer
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; CHECK-NEXT: [[SOMEBITS:%.*]] = and <2 x i64> %x, %y
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; CHECK-NEXT: [[SOMEBITS_ARE_ZERO:%.*]] = icmp eq <2 x i64> [[SOMEBITS]], zeroinitializer
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; CHECK-NEXT: [[R:%.*]] = or <2 x i1> [[ISNULL]], [[SOMEBITS_ARE_ZERO]]
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; CHECK-NEXT: ret <2 x i1> [[R]]
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;
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%isnull = icmp eq <2 x i64> %x, zeroinitializer
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%somebits = and <2 x i64> %x, %y
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%somebits_are_zero = icmp eq <2 x i64> %somebits, zeroinitializer
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%r = or <2 x i1> %isnull, %somebits_are_zero
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ret <2 x i1> %r
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}
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; or (icmp eq (and ?, X), 0), (icmp eq X, 0) --> icmp eq (and ?, X), 0
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define i1 @or_cmps_eq_zero_with_mask_commute3(i4 %x, i4 %y) {
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; CHECK-LABEL: @or_cmps_eq_zero_with_mask_commute3(
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; CHECK-NEXT: [[ISNULL:%.*]] = icmp eq i4 %x, 0
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; CHECK-NEXT: [[SOMEBITS:%.*]] = and i4 %y, %x
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; CHECK-NEXT: [[SOMEBITS_ARE_ZERO:%.*]] = icmp eq i4 [[SOMEBITS]], 0
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; CHECK-NEXT: [[R:%.*]] = or i1 [[SOMEBITS_ARE_ZERO]], [[ISNULL]]
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; CHECK-NEXT: ret i1 [[R]]
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;
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%isnull = icmp eq i4 %x, 0
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%somebits = and i4 %y, %x
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%somebits_are_zero = icmp eq i4 %somebits, 0
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%r = or i1 %somebits_are_zero, %isnull
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ret i1 %r
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}
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; or (icmp eq X, 0), (icmp eq (and ?, X), 0) --> icmp eq (and ?, X), 0
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define <2 x i1> @or_cmps_eq_zero_with_mask_commute4(<2 x i4> %x, <2 x i4> %y) {
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; CHECK-LABEL: @or_cmps_eq_zero_with_mask_commute4(
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; CHECK-NEXT: [[ISNULL:%.*]] = icmp eq <2 x i4> %x, zeroinitializer
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; CHECK-NEXT: [[SOMEBITS:%.*]] = and <2 x i4> %y, %x
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; CHECK-NEXT: [[SOMEBITS_ARE_ZERO:%.*]] = icmp eq <2 x i4> [[SOMEBITS]], zeroinitializer
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; CHECK-NEXT: [[R:%.*]] = or <2 x i1> [[ISNULL]], [[SOMEBITS_ARE_ZERO]]
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; CHECK-NEXT: ret <2 x i1> [[R]]
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;
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%isnull = icmp eq <2 x i4> %x, zeroinitializer
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%somebits = and <2 x i4> %y, %x
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%somebits_are_zero = icmp eq <2 x i4> %somebits, zeroinitializer
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%r = or <2 x i1> %isnull, %somebits_are_zero
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ret <2 x i1> %r
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}
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; and (icmp ne (and X, ?), 0), (icmp ne X, 0) --> icmp ne (and X, ?), 0
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define <3 x i1> @and_cmps_eq_zero_with_mask_commute1(<3 x i4> %x, <3 x i4> %y) {
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; CHECK-LABEL: @and_cmps_eq_zero_with_mask_commute1(
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; CHECK-NEXT: [[ISNOTNULL:%.*]] = icmp ne <3 x i4> %x, zeroinitializer
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; CHECK-NEXT: [[SOMEBITS:%.*]] = and <3 x i4> %x, %y
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; CHECK-NEXT: [[SOMEBITS_ARE_NOT_ZERO:%.*]] = icmp ne <3 x i4> [[SOMEBITS]], zeroinitializer
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; CHECK-NEXT: [[R:%.*]] = and <3 x i1> [[SOMEBITS_ARE_NOT_ZERO]], [[ISNOTNULL]]
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; CHECK-NEXT: ret <3 x i1> [[R]]
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;
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%isnotnull = icmp ne <3 x i4> %x, zeroinitializer
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%somebits = and <3 x i4> %x, %y
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%somebits_are_not_zero = icmp ne <3 x i4> %somebits, zeroinitializer
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%r = and <3 x i1> %somebits_are_not_zero, %isnotnull
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ret <3 x i1> %r
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}
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; and (icmp ne X, 0), (icmp ne (and X, ?), 0) --> icmp ne (and X, ?), 0
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define i1 @and_cmps_eq_zero_with_mask_commute2(i4 %x, i4 %y) {
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; CHECK-LABEL: @and_cmps_eq_zero_with_mask_commute2(
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; CHECK-NEXT: [[ISNOTNULL:%.*]] = icmp ne i4 %x, 0
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; CHECK-NEXT: [[SOMEBITS:%.*]] = and i4 %x, %y
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; CHECK-NEXT: [[SOMEBITS_ARE_NOT_ZERO:%.*]] = icmp ne i4 [[SOMEBITS]], 0
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; CHECK-NEXT: [[R:%.*]] = and i1 [[ISNOTNULL]], [[SOMEBITS_ARE_NOT_ZERO]]
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; CHECK-NEXT: ret i1 [[R]]
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;
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%isnotnull = icmp ne i4 %x, 0
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%somebits = and i4 %x, %y
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%somebits_are_not_zero = icmp ne i4 %somebits, 0
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%r = and i1 %isnotnull, %somebits_are_not_zero
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ret i1 %r
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}
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; and (icmp ne (and ?, X), 0), (icmp ne X, 0) --> icmp ne (and ?, X), 0
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define <3 x i1> @and_cmps_eq_zero_with_mask_commute3(<3 x i64> %x, <3 x i64> %y) {
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; CHECK-LABEL: @and_cmps_eq_zero_with_mask_commute3(
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; CHECK-NEXT: [[ISNOTNULL:%.*]] = icmp ne <3 x i64> %x, zeroinitializer
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; CHECK-NEXT: [[SOMEBITS:%.*]] = and <3 x i64> %y, %x
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; CHECK-NEXT: [[SOMEBITS_ARE_NOT_ZERO:%.*]] = icmp ne <3 x i64> [[SOMEBITS]], zeroinitializer
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; CHECK-NEXT: [[R:%.*]] = and <3 x i1> [[SOMEBITS_ARE_NOT_ZERO]], [[ISNOTNULL]]
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; CHECK-NEXT: ret <3 x i1> [[R]]
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;
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%isnotnull = icmp ne <3 x i64> %x, zeroinitializer
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%somebits = and <3 x i64> %y, %x
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%somebits_are_not_zero = icmp ne <3 x i64> %somebits, zeroinitializer
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%r = and <3 x i1> %somebits_are_not_zero, %isnotnull
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ret <3 x i1> %r
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}
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; and (icmp ne X, 0), (icmp ne (and ?, X), 0) --> icmp ne (and ?, X), 0
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define i1 @and_cmps_eq_zero_with_mask_commute4(i64 %x, i64 %y) {
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; CHECK-LABEL: @and_cmps_eq_zero_with_mask_commute4(
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; CHECK-NEXT: [[ISNOTNULL:%.*]] = icmp ne i64 %x, 0
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; CHECK-NEXT: [[SOMEBITS:%.*]] = and i64 %y, %x
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; CHECK-NEXT: [[SOMEBITS_ARE_NOT_ZERO:%.*]] = icmp ne i64 [[SOMEBITS]], 0
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; CHECK-NEXT: [[R:%.*]] = and i1 [[ISNOTNULL]], [[SOMEBITS_ARE_NOT_ZERO]]
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; CHECK-NEXT: ret i1 [[R]]
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;
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%isnotnull = icmp ne i64 %x, 0
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%somebits = and i64 %y, %x
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%somebits_are_not_zero = icmp ne i64 %somebits, 0
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%r = and i1 %isnotnull, %somebits_are_not_zero
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ret i1 %r
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}
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