LoongArch: testsuite:Give up the detection of the gcc.dg/fma-{3, 4, 6, 7}.c file.
On the LoongArch architecture, the above four test cases need to be waived during testing. There are two situations: 1. The function of fma-{3,6}.c test is to find the value of c-a*b, but on the LoongArch architecture, the function of the existing fnmsub instruction is to find the value of -(a*b - c); 2. The function of fma-{4,7}.c test is to find the value of -(a*b)-c, but on the LoongArch architecture, the function of the existing fnmadd instruction is to find the value of -(a*b + c); Through the analysis of the above two cases, there will be positive and negative zero inequality. gcc/testsuite/ChangeLog * gcc.dg/fma-3.c: The intermediate file corresponding to the function does not produce the corresponding FNMA symbol, so the test rules should be skipped when testing. * gcc.dg/fma-4.c: The intermediate file corresponding to the function does not produce the corresponding FNMS symbol, so skip the test rules when testing. * gcc.dg/fma-6.c: The cause is the same as fma-3.c. * gcc.dg/fma-7.c: The cause is the same as fma-4.c
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4 changed files with 4 additions and 4 deletions
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@ -12,4 +12,4 @@ f2 (double a, double b, double c)
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return c - a * b;
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}
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/* { dg-final { scan-tree-dump-times { = \.FNMA \(} 2 "widening_mul" { target scalar_all_fma } } } */
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/* { dg-final { scan-tree-dump-times { = \.FNMA \(} 2 "widening_mul" { target { scalar_all_fma && { ! loongarch*-*-* } } } } } */
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@ -12,4 +12,4 @@ f2 (double a, double b, double c)
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return -(a * b) - c;
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}
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/* { dg-final { scan-tree-dump-times { = \.FNMS \(} 2 "widening_mul" { target scalar_all_fma } } } */
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/* { dg-final { scan-tree-dump-times { = \.FNMS \(} 2 "widening_mul" { target { scalar_all_fma && { ! loongarch*-*-* } } } } } */
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@ -64,4 +64,4 @@ f10 (double a, double b, double c)
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return -__builtin_fma (a, b, -c);
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}
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/* { dg-final { scan-tree-dump-times { = \.FNMA \(} 14 "optimized" { target scalar_all_fma } } } */
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/* { dg-final { scan-tree-dump-times { = \.FNMA \(} 14 "optimized" { target { scalar_all_fma && { ! loongarch*-*-* } } } } } */
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@ -64,4 +64,4 @@ f10 (double a, double b, double c)
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return -__builtin_fma (a, b, c);
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}
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/* { dg-final { scan-tree-dump-times { = \.FNMS \(} 14 "optimized" { target scalar_all_fma } } } */
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/* { dg-final { scan-tree-dump-times { = \.FNMS \(} 14 "optimized" { target { scalar_all_fma && { ! loongarch*-*-* } } } } } */
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