m[worst] = *o;
}
+static int too_many_rename_candidates(int num_create,
+ struct diff_options *options)
+{
+ int rename_limit = options->rename_limit;
+ int num_src = rename_src_nr;
+
+ options->needed_rename_limit = 0;
+
+ /*
+ * This basically does a test for the rename matrix not
+ * growing larger than a "rename_limit" square matrix, ie:
+ *
+ * num_create * num_src > rename_limit * rename_limit
+ *
+ * but handles the potential overflow case specially (and we
+ * assume at least 32-bit integers)
+ */
+ if (rename_limit <= 0 || rename_limit > 32767)
+ rename_limit = 32767;
+ if ((num_create <= rename_limit || num_src <= rename_limit) &&
+ (num_create * num_src <= rename_limit * rename_limit))
+ return 0;
+
+ options->needed_rename_limit =
+ num_src > num_create ? num_src : num_create;
+ return 1;
+}
+
static int find_renames(struct diff_score *mx, int dst_cnt, int minimum_score, int copies)
{
int count = 0, i;
{
int detect_rename = options->detect_rename;
int minimum_score = options->rename_score;
- int rename_limit = options->rename_limit;
struct diff_queue_struct *q = &diff_queued_diff;
struct diff_queue_struct outq;
struct diff_score *mx;
if (!num_create)
goto cleanup;
- /*
- * This basically does a test for the rename matrix not
- * growing larger than a "rename_limit" square matrix, ie:
- *
- * num_create * num_src > rename_limit * rename_limit
- *
- * but handles the potential overflow case specially (and we
- * assume at least 32-bit integers)
- */
- options->needed_rename_limit = 0;
- if (rename_limit <= 0 || rename_limit > 32767)
- rename_limit = 32767;
- if ((num_create > rename_limit && num_src > rename_limit) ||
- (num_create * num_src > rename_limit * rename_limit)) {
- options->needed_rename_limit =
- num_src > num_create ? num_src : num_create;
+ if (too_many_rename_candidates(num_create, options))
goto cleanup;
- }
if (options->show_rename_progress) {
progress = start_progress_delay(