##// END OF EJS Templates
repair: invalidate volatile sets after stripping...
repair: invalidate volatile sets after stripping Matt Harbison reported that some tests were broken on Windows after 1a09dad8b85a (evolution: report new unstable changesets, 2018-01-14). The failures were exactly as seen in this patch. The failures actually seemed correct, which made me wonder why they didn't fail the same way on Linux. It turned out to be a cache invalidation problem. The new orphan mentioned in the test case actually does get created when we're re-applying the temporary bundle that's created while stripping. However, without the invalidation, it appears that there was already an orphan before applying the temporary bundle. The warnings about unknown working parent appear because the aformentioned changeset means that we're now accessing the dirstate while it's invalid. We may want to suppress these messages that happen in the intermediate strip state, but they're technically correct (although confusing to the user), so I think just fixing the cache invalidation is fine for now. I haven't figured out why the caches seemed to get correctly invalidated on Windows. Differential Revision: https://phab.mercurial-scm.org/D1933

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bdiff.cc
49 lines | 1.2 KiB | text/x-c | CppLexer
/*
* bdiff.cc - fuzzer harness for bdiff.c
*
* Copyright 2018, Google Inc.
*
* This software may be used and distributed according to the terms of
* the GNU General Public License, incorporated herein by reference.
*/
#include <stdlib.h>
extern "C" {
#include "bdiff.h"
int LLVMFuzzerTestOneInput(const uint8_t *Data, size_t Size)
{
if (!Size) {
return 0;
}
// figure out a random point in [0, Size] to split our input.
size_t split = Data[0] / 255.0 * Size;
// left input to diff is data[1:split]
const uint8_t *left = Data + 1;
// which has len split-1
size_t left_size = split - 1;
// right starts at the next byte after left ends
const uint8_t *right = left + left_size;
size_t right_size = Size - split;
struct bdiff_line *a, *b;
int an = bdiff_splitlines((const char *)left, split - 1, &a);
int bn = bdiff_splitlines((const char *)right, right_size, &b);
struct bdiff_hunk l;
bdiff_diff(a, an, b, bn, &l);
free(a);
free(b);
bdiff_freehunks(l.next);
return 0; // Non-zero return values are reserved for future use.
}
#ifdef HG_FUZZER_INCLUDE_MAIN
int main(int argc, char **argv)
{
const char data[] = "asdf";
return LLVMFuzzerTestOneInput((const uint8_t *)data, 4);
}
#endif
} // extern "C"