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[/] [openrisc/] [trunk/] [gnu-stable/] [gcc-4.5.1/] [gcc/] [testsuite/] [gcc.dg/] [tree-ssa/] [loop-4.c] - Blame information for rev 298

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1 298 jeremybenn
/* A test for strength reduction and induction variable elimination.  */
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/* { dg-do compile } */
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/* { dg-options "-O1 -fdump-tree-optimized" } */
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/* { dg-require-effective-target size32plus } */
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/* Size of this structure should be sufficiently weird so that no memory
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   addressing mode applies.  */
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struct bla
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{
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  char x[187];
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  int y;
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  char z[253];
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} arr_base[100];
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int foo(void);
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void xxx(void)
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{
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  int iter;
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  for (iter = 0; iter < 100; iter++)
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    arr_base[iter].y = foo ();
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}
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/* Access to arr_base[iter].y should be strength reduced.  Depending on
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   whether we have an addressing mode of type [base + offset], one of the
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   following forms might get chosen:
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   -- induction variable with base &arr_base[0].y, the memory access of
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      form *iv = ...
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   -- induction variable with base 0, the memory access of form
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      *(iv + &arr_base[0].y) = ...
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   In any case, we should not have any multiplication.  */
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/* { dg-final { scan-tree-dump-times " \\* \[^\\n\\r\]*=" 0 "optimized" } } */
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/* { dg-final { scan-tree-dump-times "\[^\\n\\r\]*= \\* " 0 "optimized" } } */
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/* { dg-final { scan-tree-dump-times "MEM" 1 "optimized" } } */
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/* And the original induction variable should be eliminated.  */
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/* { dg-final { scan-tree-dump-times "iter" 0 "optimized" } } */
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/* { dg-final { cleanup-tree-dump "optimized" } } */

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