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-rw-r--r--gcc/testsuite/gfortran.dg/vect/vect-4.f9010
1 files changed, 7 insertions, 3 deletions
diff --git a/gcc/testsuite/gfortran.dg/vect/vect-4.f90 b/gcc/testsuite/gfortran.dg/vect/vect-4.f90
index 77664f8fa08..e83c05c5e50 100644
--- a/gcc/testsuite/gfortran.dg/vect/vect-4.f90
+++ b/gcc/testsuite/gfortran.dg/vect/vect-4.f90
@@ -1,14 +1,18 @@
! { dg-do compile }
! { dg-require-effective-target vect_float }
+! Peeling to align the store to Y will also align the load from Y.
+! The load from X may still be misaligned.
+
SUBROUTINE SAXPY(X, Y, A)
DIMENSION X(64), Y(64)
Y = Y + A * X
END
-! fail to vectorize until the patch that ignores dependence-distance 0 is
-! brought from autovect.
+! fail to vectorize due to aliasing problems in dataref analysis that are
+! solved in autvect-branch but not yet in mainline.
! { dg-final { scan-tree-dump-times "vectorized 1 loops" 1 "vect" { xfail *-*-* } } }
! { dg-final { scan-tree-dump-times "Alignment of access forced using peeling" 1 "vect" { xfail *-*-* } } }
-! { dg-final { scan-tree-dump-times "Vectorizing an unaligned access" 2 "vect" { xfail *-*-* } } }
+! { dg-final { scan-tree-dump-times "Vectorizing an unaligned access" 1 "vect" { xfail *-*-* } } }
+! { dg-final { scan-tree-dump-times "accesses have the same alignment." 1 "vect" { xfail *-*-* } } }
! { dg-final { cleanup-tree-dump "vect" } }
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