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@ -365,13 +365,13 @@ hist_assign_samples_1 (histogram *r) |
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bfd_vma sym_low_pc, sym_high_pc; |
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bfd_vma overlap, addr; |
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unsigned int bin_count; |
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unsigned int i, j; |
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unsigned int i, j, k; |
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double count_time, credit; |
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bfd_vma lowpc = r->lowpc / sizeof (UNIT); |
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/* Iterate over all sample bins. */ |
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for (i = 0, j = 1; i < r->num_bins; ++i) |
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for (i = 0, k = 1; i < r->num_bins; ++i) |
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{ |
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bin_count = r->sample[i]; |
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if (! bin_count) |
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@ -390,7 +390,8 @@ hist_assign_samples_1 (histogram *r) |
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total_time += count_time; |
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/* Credit all symbols that are covered by bin I. */ |
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for (j = j - 1; j < symtab.len; ++j) |
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/* PR gprof/13325: Make sure that J does not go below I. */ |
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for (j = k - 1; j < symtab.len; k = ++j) |
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{ |
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sym_low_pc = symtab.base[j].hist.scaled_addr; |
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sym_high_pc = symtab.base[j + 1].hist.scaled_addr; |
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@ -398,12 +399,7 @@ hist_assign_samples_1 (histogram *r) |
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/* If high end of bin is below entry address,
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go for next bin. */ |
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if (bin_high_pc < sym_low_pc) |
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{ |
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/* PR gprof/13325: Make sure that j does not go below 1. */ |
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if (j < 1) |
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j = 1; |
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break; |
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} |
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break; |
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/* If low end of bin is above high end of symbol,
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go for next symbol. */ |
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