blob: 80fd658fc5b153ba365d2fbf8617fa80152aa4ba [file] [edit]
; NOTE: Assertions have been autogenerated by utils/update_test_checks.py UTC_ARGS: --check-globals none --version 6
; Non-reduction LCSSA PHIs in the inner-loop exit must still be validated
; even when a reduction LCSSA PHI is present. Used to crash.
;
; RUN: opt < %s -passes=loop-interchange -loop-interchange-reduction-to-mem \
; RUN: -pass-remarks-missed=loop-interchange -pass-remarks-output=%t -S \
; RUN: | FileCheck -check-prefix=IR %s
; RUN: FileCheck --input-file=%t %s
; CHECK: --- !Missed
; CHECK-NEXT: Pass: loop-interchange
; CHECK-NEXT: Name: UnsupportedExitPHI
; CHECK-NEXT: Function: reduction_lcssa_with_non_phi_user
; CHECK-NEXT: Args:
; CHECK-NEXT: - String: Found unsupported PHI node in loop exit.
@A = common global [100 x [100 x i32]] zeroinitializer
@sum = common global [100 x i32] zeroinitializer
define void @reduction_lcssa_with_non_phi_user() {
; IR-LABEL: define void @reduction_lcssa_with_non_phi_user() {
; IR-NEXT: [[ENTRY:.*]]:
; IR-NEXT: br label %[[OUTER_HEADER:.*]]
; IR: [[OUTER_HEADER]]:
; IR-NEXT: [[I:%.*]] = phi i64 [ 0, %[[ENTRY]] ], [ [[I_NEXT:%.*]], %[[OUTER_LATCH:.*]] ]
; IR-NEXT: [[SUM_PTR:%.*]] = getelementptr inbounds i32, ptr @sum, i64 [[I]]
; IR-NEXT: br label %[[INNER:.*]]
; IR: [[INNER]]:
; IR-NEXT: [[J:%.*]] = phi i64 [ 0, %[[OUTER_HEADER]] ], [ [[J_NEXT:%.*]], %[[INNER]] ]
; IR-NEXT: [[RED:%.*]] = phi i32 [ 0, %[[OUTER_HEADER]] ], [ [[ADD:%.*]], %[[INNER]] ]
; IR-NEXT: [[PTR:%.*]] = getelementptr inbounds [100 x i32], ptr @A, i64 [[J]], i64 [[I]]
; IR-NEXT: [[VAL:%.*]] = load i32, ptr [[PTR]], align 4
; IR-NEXT: [[ADD]] = add i32 [[RED]], [[VAL]]
; IR-NEXT: [[J_NEXT]] = add nuw nsw i64 [[J]], 1
; IR-NEXT: [[EXITCOND_INNER:%.*]] = icmp eq i64 [[J]], 99
; IR-NEXT: br i1 [[EXITCOND_INNER]], label %[[INNER_EXIT:.*]], label %[[INNER]]
; IR: [[INNER_EXIT]]:
; IR-NEXT: [[RED_LCSSA:%.*]] = phi i32 [ [[ADD]], %[[INNER]] ]
; IR-NEXT: [[J_LCSSA:%.*]] = phi i64 [ [[J]], %[[INNER]] ]
; IR-NEXT: store i32 [[RED_LCSSA]], ptr [[SUM_PTR]], align 4
; IR-NEXT: [[USE_J:%.*]] = add i64 [[J_LCSSA]], 1
; IR-NEXT: br label %[[OUTER_LATCH]]
; IR: [[OUTER_LATCH]]:
; IR-NEXT: [[I_NEXT]] = add nuw nsw i64 [[I]], 1
; IR-NEXT: [[EXITCOND_OUTER:%.*]] = icmp eq i64 [[I]], 99
; IR-NEXT: br i1 [[EXITCOND_OUTER]], label %[[EXIT:.*]], label %[[OUTER_HEADER]]
; IR: [[EXIT]]:
; IR-NEXT: ret void
;
entry:
br label %outer.header
outer.header:
%i = phi i64 [ 0, %entry ], [ %i.next, %outer.latch ]
%sum.ptr = getelementptr inbounds i32, ptr @sum, i64 %i
br label %inner
inner:
%j = phi i64 [ 0, %outer.header ], [ %j.next, %inner ]
%red = phi i32 [ 0, %outer.header ], [ %add, %inner ]
%ptr = getelementptr inbounds [100 x i32], ptr @A, i64 %j, i64 %i
%val = load i32, ptr %ptr
%add = add i32 %red, %val
%j.next = add nuw nsw i64 %j, 1
%exitcond.inner = icmp eq i64 %j, 99
br i1 %exitcond.inner, label %inner.exit, label %inner
inner.exit:
%red.lcssa = phi i32 [ %add, %inner ]
%j.lcssa = phi i64 [ %j, %inner ]
store i32 %red.lcssa, ptr %sum.ptr
%use.j = add i64 %j.lcssa, 1
br label %outer.latch
outer.latch:
%i.next = add nuw nsw i64 %i, 1
%exitcond.outer = icmp eq i64 %i, 99
br i1 %exitcond.outer, label %exit, label %outer.header
exit:
ret void
}