ListUnique: Difference between revisions
O(n log n) implementation (verified with real world tests) |
m →Function: list ListSortedAndUnique(list {{LSL Param|input}}, integer {{LSL Param|ascending}}): typo |
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input = llListSort(input, 1, ascending); | input = llListSort(input, 1, ascending); | ||
integer index; | integer index; | ||
list last = llList2List(input, | list last = llList2List(input, 0, 0); | ||
list result = last; | list result = last; | ||
for (index = 1 - llGetListLength(input); index < 0; ++index) { | for (index = 1 - llGetListLength(input); index < 0; ++index) { | ||
| Line 62: | Line 62: | ||
</source> | </source> | ||
</div> | </div> | ||
The reason is that [[llListFindList]] performs a linear scan through the entire list, thus ListUnique compares every element with every other element. [[llListSort]] however compares each element only to a few others (the exact number depending on the sorting algorithm), and after sorting ListSortedAndUnique only compares neighboring elements. | |||
</div> | </div> | ||
{{LSLC|Examples|ListUnique}} | {{LSLC|Examples|ListUnique}} | ||
{{LSLC|Examples|ListSortedAndUnique}} | {{LSLC|Examples|ListSortedAndUnique}} | ||
[[Category:LSL_User-Defined Functions]] | [[Category:LSL_User-Defined Functions]] | ||
Latest revision as of 13:29, 13 October 2025
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Function: list ListUnique(list lAll);
Given a list of elements, strips out any duplicates in that list, and returns the de-duped list.
See also: Lists
list ListUnique( list lAll ) {
integer i;
list lFiltered = llList2List(lAll, 0, 0);
integer iAll = llGetListLength( lAll );
for (i = 1; i < iAll; ++i) {
if ( llListFindList(lFiltered, llList2List(lAll, i, i) ) == -1 ) {
lFiltered += llList2List(lAll, i, i);
}
}
return lFiltered;
}
Example:
list mylist = ListUnique(["A", "A", "B", "C", "C", "B"])
would return the list:
["A", "B", "C"]
Originated in a November 2004 thread led by Chromal Brodsky in the SL Scripting Forum. http://forums-archive.secondlife.com/54/30/28137/1.html
Function: list ListSortedAndUnique(list input, integer ascending)
If you don't need to maintain the order of items (or want them sorted anyway), the following code is consistently about 2x faster on short lists, and 3-5x faster on lists with hundreds of items.
list ListSortedAndUnique(list input, integer ascending) {
input = llListSort(input, 1, ascending);
integer index;
list last = llList2List(input, 0, 0);
list result = last;
for (index = 1 - llGetListLength(input); index < 0; ++index) {
list current = llList2List(input, index, index);
if (llListFindList(current, last) < 0) {
last = current;
result += last;
}
}
return result;
}
The reason is that llListFindList performs a linear scan through the entire list, thus ListUnique compares every element with every other element. llListSort however compares each element only to a few others (the exact number depending on the sorting algorithm), and after sorting ListSortedAndUnique only compares neighboring elements.