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Avoid divide by zero and NaNs in scale_array_elements_to_u64
Patch from teor; part of 13104
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@ -1802,7 +1802,7 @@ scale_array_elements_to_u64(u64_dbl_t *entries, int n_entries,
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uint64_t *total_out)
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{
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double total = 0.0;
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double scale_factor;
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double scale_factor = 0.0;
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int i;
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/* big, but far away from overflowing an int64_t */
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#define SCALE_TO_U64_MAX (INT64_MAX / 4)
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@ -1810,7 +1810,8 @@ scale_array_elements_to_u64(u64_dbl_t *entries, int n_entries,
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for (i = 0; i < n_entries; ++i)
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total += entries[i].dbl;
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scale_factor = SCALE_TO_U64_MAX / total;
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if (total > 0.0)
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scale_factor = SCALE_TO_U64_MAX / total;
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for (i = 0; i < n_entries; ++i)
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entries[i].u64 = tor_llround(entries[i].dbl * scale_factor);
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@ -1749,10 +1749,37 @@ test_dir_scale_bw(void *testdata)
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tt_assert(total <= (U64_LITERAL(1)<<62));
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for (i=0; i<8; ++i) {
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/* vals[2].u64 is the scaled value of 1.0 */
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double ratio = ((double)vals[i].u64) / vals[2].u64;
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tt_double_op(fabs(ratio - v[i]), <, .00001);
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}
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/* test handling of no entries */
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total = 1;
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scale_array_elements_to_u64(vals, 0, &total);
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tt_assert(total == 0);
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/* make sure we don't read the array when we have no entries
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* may require compiler flags to catch NULL dereferences */
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total = 1;
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scale_array_elements_to_u64(NULL, 0, &total);
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tt_assert(total == 0);
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scale_array_elements_to_u64(NULL, 0, NULL);
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/* test handling of zero totals */
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total = 1;
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vals[0].dbl = 0.0;
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scale_array_elements_to_u64(vals, 1, &total);
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tt_assert(total == 0);
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tt_assert(vals[0].u64 == 0);
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vals[0].dbl = 0.0;
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vals[1].dbl = 0.0;
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scale_array_elements_to_u64(vals, 2, NULL);
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tt_assert(vals[0].u64 == 0);
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tt_assert(vals[1].u64 == 0);
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done:
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;
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}
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