patch 8.2.4627: flatten() does not use maxdepth correctly
Problem: flatten() does not use maxdepth correctly. Solution: Use a recursive implementation. (closes #10020)
This commit is contained in:
45
src/list.c
45
src/list.c
@ -916,35 +916,40 @@ list_assign_range(
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}
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/*
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* Flatten "list" to depth "maxdepth".
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* Flatten up to "maxitems" in "list", starting at "first" to depth "maxdepth".
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* When "first" is NULL use the first item.
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* It does nothing if "maxdepth" is 0.
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* Returns FAIL when out of memory.
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*/
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static void
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list_flatten(list_T *list, long maxdepth)
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list_flatten(list_T *list, listitem_T *first, long maxitems, long maxdepth)
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{
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listitem_T *item;
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listitem_T *tofree;
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int n;
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int done = 0;
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if (maxdepth == 0)
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return;
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CHECK_LIST_MATERIALIZE(list);
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if (first == NULL)
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item = list->lv_first;
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else
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item = first;
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n = 0;
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item = list->lv_first;
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while (item != NULL)
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while (item != NULL && done < maxitems)
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{
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listitem_T *next = item->li_next;
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fast_breakcheck();
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if (got_int)
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return;
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if (item->li_tv.v_type == VAR_LIST)
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{
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listitem_T *next = item->li_next;
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list_T *itemlist = item->li_tv.vval.v_list;
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vimlist_remove(list, item, item);
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if (list_extend(list, item->li_tv.vval.v_list, next) == FAIL)
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if (list_extend(list, itemlist, next) == FAIL)
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{
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list_free_item(list, item);
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return;
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@ -952,23 +957,15 @@ list_flatten(list_T *list, long maxdepth)
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clear_tv(&item->li_tv);
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tofree = item;
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if (item->li_prev == NULL)
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item = list->lv_first;
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else
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item = item->li_prev->li_next;
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if (maxdepth > 0)
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list_flatten(list, item->li_prev == NULL
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? list->lv_first : item->li_prev->li_next,
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itemlist->lv_len, maxdepth - 1);
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list_free_item(list, tofree);
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}
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if (++n >= maxdepth)
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{
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n = 0;
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item = next;
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}
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}
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else
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{
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n = 0;
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item = item->li_next;
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}
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++done;
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item = next;
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}
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}
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@ -1031,7 +1028,7 @@ flatten_common(typval_T *argvars, typval_T *rettv, int make_copy)
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++l->lv_refcount;
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}
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list_flatten(l, maxdepth);
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list_flatten(l, NULL, l->lv_len, maxdepth);
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}
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/*
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@ -79,6 +79,14 @@ func Test_flatten()
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call add(y, x) " l:y = [2, [1, [...]]]
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call assert_equal([1, 2, 1, 2], flatten(l:x, 2))
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call assert_equal([2, l:x], l:y)
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let l4 = [ 1, [ 11, [ 101, [ 1001 ] ] ] ]
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call assert_equal(l4, flatten(deepcopy(l4), 0))
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call assert_equal([1, 11, [101, [1001]]], flatten(deepcopy(l4), 1))
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call assert_equal([1, 11, 101, [1001]], flatten(deepcopy(l4), 2))
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call assert_equal([1, 11, 101, 1001], flatten(deepcopy(l4), 3))
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call assert_equal([1, 11, 101, 1001], flatten(deepcopy(l4), 4))
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call assert_equal([1, 11, 101, 1001], flatten(deepcopy(l4)))
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endfunc
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func Test_flattennew()
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@ -88,6 +96,14 @@ func Test_flattennew()
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call assert_equal([1, 2, [3, 4], 5], flattennew(l, 1))
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call assert_equal([1, [2, [3, 4]], 5], l)
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let l4 = [ 1, [ 11, [ 101, [ 1001 ] ] ] ]
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call assert_equal(l4, flatten(deepcopy(l4), 0))
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call assert_equal([1, 11, [101, [1001]]], flattennew(l4, 1))
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call assert_equal([1, 11, 101, [1001]], flattennew(l4, 2))
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call assert_equal([1, 11, 101, 1001], flattennew(l4, 3))
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call assert_equal([1, 11, 101, 1001], flattennew(l4, 4))
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call assert_equal([1, 11, 101, 1001], flattennew(l4))
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endfunc
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" vim: shiftwidth=2 sts=2 expandtab
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@ -750,6 +750,8 @@ static char *(features[]) =
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static int included_patches[] =
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{ /* Add new patch number below this line */
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/**/
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4627,
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/**/
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4626,
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/**/
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