1bf215546Sopenharmony_ci// [DEAR IMGUI]
2bf215546Sopenharmony_ci// This is a slightly modified version of stb_rect_pack.h 0.99.
3bf215546Sopenharmony_ci// Those changes would need to be pushed into nothings/stb:
4bf215546Sopenharmony_ci// - Added STBRP__CDECL
5bf215546Sopenharmony_ci// Grep for [DEAR IMGUI] to find the changes.
6bf215546Sopenharmony_ci
7bf215546Sopenharmony_ci// stb_rect_pack.h - v0.99 - public domain - rectangle packing
8bf215546Sopenharmony_ci// Sean Barrett 2014
9bf215546Sopenharmony_ci//
10bf215546Sopenharmony_ci// Useful for e.g. packing rectangular textures into an atlas.
11bf215546Sopenharmony_ci// Does not do rotation.
12bf215546Sopenharmony_ci//
13bf215546Sopenharmony_ci// Not necessarily the awesomest packing method, but better than
14bf215546Sopenharmony_ci// the totally naive one in stb_truetype (which is primarily what
15bf215546Sopenharmony_ci// this is meant to replace).
16bf215546Sopenharmony_ci//
17bf215546Sopenharmony_ci// Has only had a few tests run, may have issues.
18bf215546Sopenharmony_ci//
19bf215546Sopenharmony_ci// More docs to come.
20bf215546Sopenharmony_ci//
21bf215546Sopenharmony_ci// No memory allocations; uses qsort() and assert() from stdlib.
22bf215546Sopenharmony_ci// Can override those by defining STBRP_SORT and STBRP_ASSERT.
23bf215546Sopenharmony_ci//
24bf215546Sopenharmony_ci// This library currently uses the Skyline Bottom-Left algorithm.
25bf215546Sopenharmony_ci//
26bf215546Sopenharmony_ci// Please note: better rectangle packers are welcome! Please
27bf215546Sopenharmony_ci// implement them to the same API, but with a different init
28bf215546Sopenharmony_ci// function.
29bf215546Sopenharmony_ci//
30bf215546Sopenharmony_ci// Credits
31bf215546Sopenharmony_ci//
32bf215546Sopenharmony_ci//  Library
33bf215546Sopenharmony_ci//    Sean Barrett
34bf215546Sopenharmony_ci//  Minor features
35bf215546Sopenharmony_ci//    Martins Mozeiko
36bf215546Sopenharmony_ci//    github:IntellectualKitty
37bf215546Sopenharmony_ci//
38bf215546Sopenharmony_ci//  Bugfixes / warning fixes
39bf215546Sopenharmony_ci//    Jeremy Jaussaud
40bf215546Sopenharmony_ci//
41bf215546Sopenharmony_ci// Version history:
42bf215546Sopenharmony_ci//
43bf215546Sopenharmony_ci//     0.99  (2019-02-07)  warning fixes
44bf215546Sopenharmony_ci//     0.11  (2017-03-03)  return packing success/fail result
45bf215546Sopenharmony_ci//     0.10  (2016-10-25)  remove cast-away-const to avoid warnings
46bf215546Sopenharmony_ci//     0.09  (2016-08-27)  fix compiler warnings
47bf215546Sopenharmony_ci//     0.08  (2015-09-13)  really fix bug with empty rects (w=0 or h=0)
48bf215546Sopenharmony_ci//     0.07  (2015-09-13)  fix bug with empty rects (w=0 or h=0)
49bf215546Sopenharmony_ci//     0.06  (2015-04-15)  added STBRP_SORT to allow replacing qsort
50bf215546Sopenharmony_ci//     0.05:  added STBRP_ASSERT to allow replacing assert
51bf215546Sopenharmony_ci//     0.04:  fixed minor bug in STBRP_LARGE_RECTS support
52bf215546Sopenharmony_ci//     0.01:  initial release
53bf215546Sopenharmony_ci//
54bf215546Sopenharmony_ci// LICENSE
55bf215546Sopenharmony_ci//
56bf215546Sopenharmony_ci//   See end of file for license information.
57bf215546Sopenharmony_ci
58bf215546Sopenharmony_ci//////////////////////////////////////////////////////////////////////////////
59bf215546Sopenharmony_ci//
60bf215546Sopenharmony_ci//       INCLUDE SECTION
61bf215546Sopenharmony_ci//
62bf215546Sopenharmony_ci
63bf215546Sopenharmony_ci#ifndef STB_INCLUDE_STB_RECT_PACK_H
64bf215546Sopenharmony_ci#define STB_INCLUDE_STB_RECT_PACK_H
65bf215546Sopenharmony_ci
66bf215546Sopenharmony_ci#define STB_RECT_PACK_VERSION  1
67bf215546Sopenharmony_ci
68bf215546Sopenharmony_ci#ifdef STBRP_STATIC
69bf215546Sopenharmony_ci#define STBRP_DEF static
70bf215546Sopenharmony_ci#else
71bf215546Sopenharmony_ci#define STBRP_DEF extern
72bf215546Sopenharmony_ci#endif
73bf215546Sopenharmony_ci
74bf215546Sopenharmony_ci#ifdef __cplusplus
75bf215546Sopenharmony_ciextern "C" {
76bf215546Sopenharmony_ci#endif
77bf215546Sopenharmony_ci
78bf215546Sopenharmony_citypedef struct stbrp_context stbrp_context;
79bf215546Sopenharmony_citypedef struct stbrp_node    stbrp_node;
80bf215546Sopenharmony_citypedef struct stbrp_rect    stbrp_rect;
81bf215546Sopenharmony_ci
82bf215546Sopenharmony_ci#ifdef STBRP_LARGE_RECTS
83bf215546Sopenharmony_citypedef int            stbrp_coord;
84bf215546Sopenharmony_ci#else
85bf215546Sopenharmony_citypedef unsigned short stbrp_coord;
86bf215546Sopenharmony_ci#endif
87bf215546Sopenharmony_ci
88bf215546Sopenharmony_ciSTBRP_DEF int stbrp_pack_rects (stbrp_context *context, stbrp_rect *rects, int num_rects);
89bf215546Sopenharmony_ci// Assign packed locations to rectangles. The rectangles are of type
90bf215546Sopenharmony_ci// 'stbrp_rect' defined below, stored in the array 'rects', and there
91bf215546Sopenharmony_ci// are 'num_rects' many of them.
92bf215546Sopenharmony_ci//
93bf215546Sopenharmony_ci// Rectangles which are successfully packed have the 'was_packed' flag
94bf215546Sopenharmony_ci// set to a non-zero value and 'x' and 'y' store the minimum location
95bf215546Sopenharmony_ci// on each axis (i.e. bottom-left in cartesian coordinates, top-left
96bf215546Sopenharmony_ci// if you imagine y increasing downwards). Rectangles which do not fit
97bf215546Sopenharmony_ci// have the 'was_packed' flag set to 0.
98bf215546Sopenharmony_ci//
99bf215546Sopenharmony_ci// You should not try to access the 'rects' array from another thread
100bf215546Sopenharmony_ci// while this function is running, as the function temporarily reorders
101bf215546Sopenharmony_ci// the array while it executes.
102bf215546Sopenharmony_ci//
103bf215546Sopenharmony_ci// To pack into another rectangle, you need to call stbrp_init_target
104bf215546Sopenharmony_ci// again. To continue packing into the same rectangle, you can call
105bf215546Sopenharmony_ci// this function again. Calling this multiple times with multiple rect
106bf215546Sopenharmony_ci// arrays will probably produce worse packing results than calling it
107bf215546Sopenharmony_ci// a single time with the full rectangle array, but the option is
108bf215546Sopenharmony_ci// available.
109bf215546Sopenharmony_ci//
110bf215546Sopenharmony_ci// The function returns 1 if all of the rectangles were successfully
111bf215546Sopenharmony_ci// packed and 0 otherwise.
112bf215546Sopenharmony_ci
113bf215546Sopenharmony_cistruct stbrp_rect
114bf215546Sopenharmony_ci{
115bf215546Sopenharmony_ci   // reserved for your use:
116bf215546Sopenharmony_ci   int            id;
117bf215546Sopenharmony_ci
118bf215546Sopenharmony_ci   // input:
119bf215546Sopenharmony_ci   stbrp_coord    w, h;
120bf215546Sopenharmony_ci
121bf215546Sopenharmony_ci   // output:
122bf215546Sopenharmony_ci   stbrp_coord    x, y;
123bf215546Sopenharmony_ci   int            was_packed;  // non-zero if valid packing
124bf215546Sopenharmony_ci
125bf215546Sopenharmony_ci}; // 16 bytes, nominally
126bf215546Sopenharmony_ci
127bf215546Sopenharmony_ci
128bf215546Sopenharmony_ciSTBRP_DEF void stbrp_init_target (stbrp_context *context, int width, int height, stbrp_node *nodes, int num_nodes);
129bf215546Sopenharmony_ci// Initialize a rectangle packer to:
130bf215546Sopenharmony_ci//    pack a rectangle that is 'width' by 'height' in dimensions
131bf215546Sopenharmony_ci//    using temporary storage provided by the array 'nodes', which is 'num_nodes' long
132bf215546Sopenharmony_ci//
133bf215546Sopenharmony_ci// You must call this function every time you start packing into a new target.
134bf215546Sopenharmony_ci//
135bf215546Sopenharmony_ci// There is no "shutdown" function. The 'nodes' memory must stay valid for
136bf215546Sopenharmony_ci// the following stbrp_pack_rects() call (or calls), but can be freed after
137bf215546Sopenharmony_ci// the call (or calls) finish.
138bf215546Sopenharmony_ci//
139bf215546Sopenharmony_ci// Note: to guarantee best results, either:
140bf215546Sopenharmony_ci//       1. make sure 'num_nodes' >= 'width'
141bf215546Sopenharmony_ci//   or  2. call stbrp_allow_out_of_mem() defined below with 'allow_out_of_mem = 1'
142bf215546Sopenharmony_ci//
143bf215546Sopenharmony_ci// If you don't do either of the above things, widths will be quantized to multiples
144bf215546Sopenharmony_ci// of small integers to guarantee the algorithm doesn't run out of temporary storage.
145bf215546Sopenharmony_ci//
146bf215546Sopenharmony_ci// If you do #2, then the non-quantized algorithm will be used, but the algorithm
147bf215546Sopenharmony_ci// may run out of temporary storage and be unable to pack some rectangles.
148bf215546Sopenharmony_ci
149bf215546Sopenharmony_ciSTBRP_DEF void stbrp_setup_allow_out_of_mem (stbrp_context *context, int allow_out_of_mem);
150bf215546Sopenharmony_ci// Optionally call this function after init but before doing any packing to
151bf215546Sopenharmony_ci// change the handling of the out-of-temp-memory scenario, described above.
152bf215546Sopenharmony_ci// If you call init again, this will be reset to the default (false).
153bf215546Sopenharmony_ci
154bf215546Sopenharmony_ci
155bf215546Sopenharmony_ciSTBRP_DEF void stbrp_setup_heuristic (stbrp_context *context, int heuristic);
156bf215546Sopenharmony_ci// Optionally select which packing heuristic the library should use. Different
157bf215546Sopenharmony_ci// heuristics will produce better/worse results for different data sets.
158bf215546Sopenharmony_ci// If you call init again, this will be reset to the default.
159bf215546Sopenharmony_ci
160bf215546Sopenharmony_cienum
161bf215546Sopenharmony_ci{
162bf215546Sopenharmony_ci   STBRP_HEURISTIC_Skyline_default=0,
163bf215546Sopenharmony_ci   STBRP_HEURISTIC_Skyline_BL_sortHeight = STBRP_HEURISTIC_Skyline_default,
164bf215546Sopenharmony_ci   STBRP_HEURISTIC_Skyline_BF_sortHeight
165bf215546Sopenharmony_ci};
166bf215546Sopenharmony_ci
167bf215546Sopenharmony_ci
168bf215546Sopenharmony_ci//////////////////////////////////////////////////////////////////////////////
169bf215546Sopenharmony_ci//
170bf215546Sopenharmony_ci// the details of the following structures don't matter to you, but they must
171bf215546Sopenharmony_ci// be visible so you can handle the memory allocations for them
172bf215546Sopenharmony_ci
173bf215546Sopenharmony_cistruct stbrp_node
174bf215546Sopenharmony_ci{
175bf215546Sopenharmony_ci   stbrp_coord  x,y;
176bf215546Sopenharmony_ci   stbrp_node  *next;
177bf215546Sopenharmony_ci};
178bf215546Sopenharmony_ci
179bf215546Sopenharmony_cistruct stbrp_context
180bf215546Sopenharmony_ci{
181bf215546Sopenharmony_ci   int width;
182bf215546Sopenharmony_ci   int height;
183bf215546Sopenharmony_ci   int align;
184bf215546Sopenharmony_ci   int init_mode;
185bf215546Sopenharmony_ci   int heuristic;
186bf215546Sopenharmony_ci   int num_nodes;
187bf215546Sopenharmony_ci   stbrp_node *active_head;
188bf215546Sopenharmony_ci   stbrp_node *free_head;
189bf215546Sopenharmony_ci   stbrp_node extra[2]; // we allocate two extra nodes so optimal user-node-count is 'width' not 'width+2'
190bf215546Sopenharmony_ci};
191bf215546Sopenharmony_ci
192bf215546Sopenharmony_ci#ifdef __cplusplus
193bf215546Sopenharmony_ci}
194bf215546Sopenharmony_ci#endif
195bf215546Sopenharmony_ci
196bf215546Sopenharmony_ci#endif
197bf215546Sopenharmony_ci
198bf215546Sopenharmony_ci//////////////////////////////////////////////////////////////////////////////
199bf215546Sopenharmony_ci//
200bf215546Sopenharmony_ci//     IMPLEMENTATION SECTION
201bf215546Sopenharmony_ci//
202bf215546Sopenharmony_ci
203bf215546Sopenharmony_ci#ifdef STB_RECT_PACK_IMPLEMENTATION
204bf215546Sopenharmony_ci#ifndef STBRP_SORT
205bf215546Sopenharmony_ci#include <stdlib.h>
206bf215546Sopenharmony_ci#define STBRP_SORT qsort
207bf215546Sopenharmony_ci#endif
208bf215546Sopenharmony_ci
209bf215546Sopenharmony_ci#ifndef STBRP_ASSERT
210bf215546Sopenharmony_ci#include <assert.h>
211bf215546Sopenharmony_ci#define STBRP_ASSERT assert
212bf215546Sopenharmony_ci#endif
213bf215546Sopenharmony_ci
214bf215546Sopenharmony_ci// [DEAR IMGUI] Added STBRP__CDECL
215bf215546Sopenharmony_ci#ifdef _MSC_VER
216bf215546Sopenharmony_ci#define STBRP__NOTUSED(v)  (void)(v)
217bf215546Sopenharmony_ci#define STBRP__CDECL __cdecl
218bf215546Sopenharmony_ci#else
219bf215546Sopenharmony_ci#define STBRP__NOTUSED(v)  (void)sizeof(v)
220bf215546Sopenharmony_ci#define STBRP__CDECL
221bf215546Sopenharmony_ci#endif
222bf215546Sopenharmony_ci
223bf215546Sopenharmony_cienum
224bf215546Sopenharmony_ci{
225bf215546Sopenharmony_ci   STBRP__INIT_skyline = 1
226bf215546Sopenharmony_ci};
227bf215546Sopenharmony_ci
228bf215546Sopenharmony_ciSTBRP_DEF void stbrp_setup_heuristic(stbrp_context *context, int heuristic)
229bf215546Sopenharmony_ci{
230bf215546Sopenharmony_ci   switch (context->init_mode) {
231bf215546Sopenharmony_ci      case STBRP__INIT_skyline:
232bf215546Sopenharmony_ci         STBRP_ASSERT(heuristic == STBRP_HEURISTIC_Skyline_BL_sortHeight || heuristic == STBRP_HEURISTIC_Skyline_BF_sortHeight);
233bf215546Sopenharmony_ci         context->heuristic = heuristic;
234bf215546Sopenharmony_ci         break;
235bf215546Sopenharmony_ci      default:
236bf215546Sopenharmony_ci         STBRP_ASSERT(0);
237bf215546Sopenharmony_ci   }
238bf215546Sopenharmony_ci}
239bf215546Sopenharmony_ci
240bf215546Sopenharmony_ciSTBRP_DEF void stbrp_setup_allow_out_of_mem(stbrp_context *context, int allow_out_of_mem)
241bf215546Sopenharmony_ci{
242bf215546Sopenharmony_ci   if (allow_out_of_mem)
243bf215546Sopenharmony_ci      // if it's ok to run out of memory, then don't bother aligning them;
244bf215546Sopenharmony_ci      // this gives better packing, but may fail due to OOM (even though
245bf215546Sopenharmony_ci      // the rectangles easily fit). @TODO a smarter approach would be to only
246bf215546Sopenharmony_ci      // quantize once we've hit OOM, then we could get rid of this parameter.
247bf215546Sopenharmony_ci      context->align = 1;
248bf215546Sopenharmony_ci   else {
249bf215546Sopenharmony_ci      // if it's not ok to run out of memory, then quantize the widths
250bf215546Sopenharmony_ci      // so that num_nodes is always enough nodes.
251bf215546Sopenharmony_ci      //
252bf215546Sopenharmony_ci      // I.e. num_nodes * align >= width
253bf215546Sopenharmony_ci      //                  align >= width / num_nodes
254bf215546Sopenharmony_ci      //                  align = ceil(width/num_nodes)
255bf215546Sopenharmony_ci
256bf215546Sopenharmony_ci      context->align = (context->width + context->num_nodes-1) / context->num_nodes;
257bf215546Sopenharmony_ci   }
258bf215546Sopenharmony_ci}
259bf215546Sopenharmony_ci
260bf215546Sopenharmony_ciSTBRP_DEF void stbrp_init_target(stbrp_context *context, int width, int height, stbrp_node *nodes, int num_nodes)
261bf215546Sopenharmony_ci{
262bf215546Sopenharmony_ci   int i;
263bf215546Sopenharmony_ci#ifndef STBRP_LARGE_RECTS
264bf215546Sopenharmony_ci   STBRP_ASSERT(width <= 0xffff && height <= 0xffff);
265bf215546Sopenharmony_ci#endif
266bf215546Sopenharmony_ci
267bf215546Sopenharmony_ci   for (i=0; i < num_nodes-1; ++i)
268bf215546Sopenharmony_ci      nodes[i].next = &nodes[i+1];
269bf215546Sopenharmony_ci   nodes[i].next = NULL;
270bf215546Sopenharmony_ci   context->init_mode = STBRP__INIT_skyline;
271bf215546Sopenharmony_ci   context->heuristic = STBRP_HEURISTIC_Skyline_default;
272bf215546Sopenharmony_ci   context->free_head = &nodes[0];
273bf215546Sopenharmony_ci   context->active_head = &context->extra[0];
274bf215546Sopenharmony_ci   context->width = width;
275bf215546Sopenharmony_ci   context->height = height;
276bf215546Sopenharmony_ci   context->num_nodes = num_nodes;
277bf215546Sopenharmony_ci   stbrp_setup_allow_out_of_mem(context, 0);
278bf215546Sopenharmony_ci
279bf215546Sopenharmony_ci   // node 0 is the full width, node 1 is the sentinel (lets us not store width explicitly)
280bf215546Sopenharmony_ci   context->extra[0].x = 0;
281bf215546Sopenharmony_ci   context->extra[0].y = 0;
282bf215546Sopenharmony_ci   context->extra[0].next = &context->extra[1];
283bf215546Sopenharmony_ci   context->extra[1].x = (stbrp_coord) width;
284bf215546Sopenharmony_ci#ifdef STBRP_LARGE_RECTS
285bf215546Sopenharmony_ci   context->extra[1].y = (1<<30);
286bf215546Sopenharmony_ci#else
287bf215546Sopenharmony_ci   context->extra[1].y = 65535;
288bf215546Sopenharmony_ci#endif
289bf215546Sopenharmony_ci   context->extra[1].next = NULL;
290bf215546Sopenharmony_ci}
291bf215546Sopenharmony_ci
292bf215546Sopenharmony_ci// find minimum y position if it starts at x1
293bf215546Sopenharmony_cistatic int stbrp__skyline_find_min_y(stbrp_context *c, stbrp_node *first, int x0, int width, int *pwaste)
294bf215546Sopenharmony_ci{
295bf215546Sopenharmony_ci   stbrp_node *node = first;
296bf215546Sopenharmony_ci   int x1 = x0 + width;
297bf215546Sopenharmony_ci   int min_y, visited_width, waste_area;
298bf215546Sopenharmony_ci
299bf215546Sopenharmony_ci   STBRP__NOTUSED(c);
300bf215546Sopenharmony_ci
301bf215546Sopenharmony_ci   STBRP_ASSERT(first->x <= x0);
302bf215546Sopenharmony_ci
303bf215546Sopenharmony_ci   #if 0
304bf215546Sopenharmony_ci   // skip in case we're past the node
305bf215546Sopenharmony_ci   while (node->next->x <= x0)
306bf215546Sopenharmony_ci      ++node;
307bf215546Sopenharmony_ci   #else
308bf215546Sopenharmony_ci   STBRP_ASSERT(node->next->x > x0); // we ended up handling this in the caller for efficiency
309bf215546Sopenharmony_ci   #endif
310bf215546Sopenharmony_ci
311bf215546Sopenharmony_ci   STBRP_ASSERT(node->x <= x0);
312bf215546Sopenharmony_ci
313bf215546Sopenharmony_ci   min_y = 0;
314bf215546Sopenharmony_ci   waste_area = 0;
315bf215546Sopenharmony_ci   visited_width = 0;
316bf215546Sopenharmony_ci   while (node->x < x1) {
317bf215546Sopenharmony_ci      if (node->y > min_y) {
318bf215546Sopenharmony_ci         // raise min_y higher.
319bf215546Sopenharmony_ci         // we've accounted for all waste up to min_y,
320bf215546Sopenharmony_ci         // but we'll now add more waste for everything we've visted
321bf215546Sopenharmony_ci         waste_area += visited_width * (node->y - min_y);
322bf215546Sopenharmony_ci         min_y = node->y;
323bf215546Sopenharmony_ci         // the first time through, visited_width might be reduced
324bf215546Sopenharmony_ci         if (node->x < x0)
325bf215546Sopenharmony_ci            visited_width += node->next->x - x0;
326bf215546Sopenharmony_ci         else
327bf215546Sopenharmony_ci            visited_width += node->next->x - node->x;
328bf215546Sopenharmony_ci      } else {
329bf215546Sopenharmony_ci         // add waste area
330bf215546Sopenharmony_ci         int under_width = node->next->x - node->x;
331bf215546Sopenharmony_ci         if (under_width + visited_width > width)
332bf215546Sopenharmony_ci            under_width = width - visited_width;
333bf215546Sopenharmony_ci         waste_area += under_width * (min_y - node->y);
334bf215546Sopenharmony_ci         visited_width += under_width;
335bf215546Sopenharmony_ci      }
336bf215546Sopenharmony_ci      node = node->next;
337bf215546Sopenharmony_ci   }
338bf215546Sopenharmony_ci
339bf215546Sopenharmony_ci   *pwaste = waste_area;
340bf215546Sopenharmony_ci   return min_y;
341bf215546Sopenharmony_ci}
342bf215546Sopenharmony_ci
343bf215546Sopenharmony_citypedef struct
344bf215546Sopenharmony_ci{
345bf215546Sopenharmony_ci   int x,y;
346bf215546Sopenharmony_ci   stbrp_node **prev_link;
347bf215546Sopenharmony_ci} stbrp__findresult;
348bf215546Sopenharmony_ci
349bf215546Sopenharmony_cistatic stbrp__findresult stbrp__skyline_find_best_pos(stbrp_context *c, int width, int height)
350bf215546Sopenharmony_ci{
351bf215546Sopenharmony_ci   int best_waste = (1<<30), best_x, best_y = (1 << 30);
352bf215546Sopenharmony_ci   stbrp__findresult fr;
353bf215546Sopenharmony_ci   stbrp_node **prev, *node, *tail, **best = NULL;
354bf215546Sopenharmony_ci
355bf215546Sopenharmony_ci   // align to multiple of c->align
356bf215546Sopenharmony_ci   width = (width + c->align - 1);
357bf215546Sopenharmony_ci   width -= width % c->align;
358bf215546Sopenharmony_ci   STBRP_ASSERT(width % c->align == 0);
359bf215546Sopenharmony_ci
360bf215546Sopenharmony_ci   node = c->active_head;
361bf215546Sopenharmony_ci   prev = &c->active_head;
362bf215546Sopenharmony_ci   while (node->x + width <= c->width) {
363bf215546Sopenharmony_ci      int y,waste;
364bf215546Sopenharmony_ci      y = stbrp__skyline_find_min_y(c, node, node->x, width, &waste);
365bf215546Sopenharmony_ci      if (c->heuristic == STBRP_HEURISTIC_Skyline_BL_sortHeight) { // actually just want to test BL
366bf215546Sopenharmony_ci         // bottom left
367bf215546Sopenharmony_ci         if (y < best_y) {
368bf215546Sopenharmony_ci            best_y = y;
369bf215546Sopenharmony_ci            best = prev;
370bf215546Sopenharmony_ci         }
371bf215546Sopenharmony_ci      } else {
372bf215546Sopenharmony_ci         // best-fit
373bf215546Sopenharmony_ci         if (y + height <= c->height) {
374bf215546Sopenharmony_ci            // can only use it if it first vertically
375bf215546Sopenharmony_ci            if (y < best_y || (y == best_y && waste < best_waste)) {
376bf215546Sopenharmony_ci               best_y = y;
377bf215546Sopenharmony_ci               best_waste = waste;
378bf215546Sopenharmony_ci               best = prev;
379bf215546Sopenharmony_ci            }
380bf215546Sopenharmony_ci         }
381bf215546Sopenharmony_ci      }
382bf215546Sopenharmony_ci      prev = &node->next;
383bf215546Sopenharmony_ci      node = node->next;
384bf215546Sopenharmony_ci   }
385bf215546Sopenharmony_ci
386bf215546Sopenharmony_ci   best_x = (best == NULL) ? 0 : (*best)->x;
387bf215546Sopenharmony_ci
388bf215546Sopenharmony_ci   // if doing best-fit (BF), we also have to try aligning right edge to each node position
389bf215546Sopenharmony_ci   //
390bf215546Sopenharmony_ci   // e.g, if fitting
391bf215546Sopenharmony_ci   //
392bf215546Sopenharmony_ci   //     ____________________
393bf215546Sopenharmony_ci   //    |____________________|
394bf215546Sopenharmony_ci   //
395bf215546Sopenharmony_ci   //            into
396bf215546Sopenharmony_ci   //
397bf215546Sopenharmony_ci   //   |                         |
398bf215546Sopenharmony_ci   //   |             ____________|
399bf215546Sopenharmony_ci   //   |____________|
400bf215546Sopenharmony_ci   //
401bf215546Sopenharmony_ci   // then right-aligned reduces waste, but bottom-left BL is always chooses left-aligned
402bf215546Sopenharmony_ci   //
403bf215546Sopenharmony_ci   // This makes BF take about 2x the time
404bf215546Sopenharmony_ci
405bf215546Sopenharmony_ci   if (c->heuristic == STBRP_HEURISTIC_Skyline_BF_sortHeight) {
406bf215546Sopenharmony_ci      tail = c->active_head;
407bf215546Sopenharmony_ci      node = c->active_head;
408bf215546Sopenharmony_ci      prev = &c->active_head;
409bf215546Sopenharmony_ci      // find first node that's admissible
410bf215546Sopenharmony_ci      while (tail->x < width)
411bf215546Sopenharmony_ci         tail = tail->next;
412bf215546Sopenharmony_ci      while (tail) {
413bf215546Sopenharmony_ci         int xpos = tail->x - width;
414bf215546Sopenharmony_ci         int y,waste;
415bf215546Sopenharmony_ci         STBRP_ASSERT(xpos >= 0);
416bf215546Sopenharmony_ci         // find the left position that matches this
417bf215546Sopenharmony_ci         while (node->next->x <= xpos) {
418bf215546Sopenharmony_ci            prev = &node->next;
419bf215546Sopenharmony_ci            node = node->next;
420bf215546Sopenharmony_ci         }
421bf215546Sopenharmony_ci         STBRP_ASSERT(node->next->x > xpos && node->x <= xpos);
422bf215546Sopenharmony_ci         y = stbrp__skyline_find_min_y(c, node, xpos, width, &waste);
423bf215546Sopenharmony_ci         if (y + height < c->height) {
424bf215546Sopenharmony_ci            if (y <= best_y) {
425bf215546Sopenharmony_ci               if (y < best_y || waste < best_waste || (waste==best_waste && xpos < best_x)) {
426bf215546Sopenharmony_ci                  best_x = xpos;
427bf215546Sopenharmony_ci                  STBRP_ASSERT(y <= best_y);
428bf215546Sopenharmony_ci                  best_y = y;
429bf215546Sopenharmony_ci                  best_waste = waste;
430bf215546Sopenharmony_ci                  best = prev;
431bf215546Sopenharmony_ci               }
432bf215546Sopenharmony_ci            }
433bf215546Sopenharmony_ci         }
434bf215546Sopenharmony_ci         tail = tail->next;
435bf215546Sopenharmony_ci      }
436bf215546Sopenharmony_ci   }
437bf215546Sopenharmony_ci
438bf215546Sopenharmony_ci   fr.prev_link = best;
439bf215546Sopenharmony_ci   fr.x = best_x;
440bf215546Sopenharmony_ci   fr.y = best_y;
441bf215546Sopenharmony_ci   return fr;
442bf215546Sopenharmony_ci}
443bf215546Sopenharmony_ci
444bf215546Sopenharmony_cistatic stbrp__findresult stbrp__skyline_pack_rectangle(stbrp_context *context, int width, int height)
445bf215546Sopenharmony_ci{
446bf215546Sopenharmony_ci   // find best position according to heuristic
447bf215546Sopenharmony_ci   stbrp__findresult res = stbrp__skyline_find_best_pos(context, width, height);
448bf215546Sopenharmony_ci   stbrp_node *node, *cur;
449bf215546Sopenharmony_ci
450bf215546Sopenharmony_ci   // bail if:
451bf215546Sopenharmony_ci   //    1. it failed
452bf215546Sopenharmony_ci   //    2. the best node doesn't fit (we don't always check this)
453bf215546Sopenharmony_ci   //    3. we're out of memory
454bf215546Sopenharmony_ci   if (res.prev_link == NULL || res.y + height > context->height || context->free_head == NULL) {
455bf215546Sopenharmony_ci      res.prev_link = NULL;
456bf215546Sopenharmony_ci      return res;
457bf215546Sopenharmony_ci   }
458bf215546Sopenharmony_ci
459bf215546Sopenharmony_ci   // on success, create new node
460bf215546Sopenharmony_ci   node = context->free_head;
461bf215546Sopenharmony_ci   node->x = (stbrp_coord) res.x;
462bf215546Sopenharmony_ci   node->y = (stbrp_coord) (res.y + height);
463bf215546Sopenharmony_ci
464bf215546Sopenharmony_ci   context->free_head = node->next;
465bf215546Sopenharmony_ci
466bf215546Sopenharmony_ci   // insert the new node into the right starting point, and
467bf215546Sopenharmony_ci   // let 'cur' point to the remaining nodes needing to be
468bf215546Sopenharmony_ci   // stiched back in
469bf215546Sopenharmony_ci
470bf215546Sopenharmony_ci   cur = *res.prev_link;
471bf215546Sopenharmony_ci   if (cur->x < res.x) {
472bf215546Sopenharmony_ci      // preserve the existing one, so start testing with the next one
473bf215546Sopenharmony_ci      stbrp_node *next = cur->next;
474bf215546Sopenharmony_ci      cur->next = node;
475bf215546Sopenharmony_ci      cur = next;
476bf215546Sopenharmony_ci   } else {
477bf215546Sopenharmony_ci      *res.prev_link = node;
478bf215546Sopenharmony_ci   }
479bf215546Sopenharmony_ci
480bf215546Sopenharmony_ci   // from here, traverse cur and free the nodes, until we get to one
481bf215546Sopenharmony_ci   // that shouldn't be freed
482bf215546Sopenharmony_ci   while (cur->next && cur->next->x <= res.x + width) {
483bf215546Sopenharmony_ci      stbrp_node *next = cur->next;
484bf215546Sopenharmony_ci      // move the current node to the free list
485bf215546Sopenharmony_ci      cur->next = context->free_head;
486bf215546Sopenharmony_ci      context->free_head = cur;
487bf215546Sopenharmony_ci      cur = next;
488bf215546Sopenharmony_ci   }
489bf215546Sopenharmony_ci
490bf215546Sopenharmony_ci   // stitch the list back in
491bf215546Sopenharmony_ci   node->next = cur;
492bf215546Sopenharmony_ci
493bf215546Sopenharmony_ci   if (cur->x < res.x + width)
494bf215546Sopenharmony_ci      cur->x = (stbrp_coord) (res.x + width);
495bf215546Sopenharmony_ci
496bf215546Sopenharmony_ci#ifdef _DEBUG
497bf215546Sopenharmony_ci   cur = context->active_head;
498bf215546Sopenharmony_ci   while (cur->x < context->width) {
499bf215546Sopenharmony_ci      STBRP_ASSERT(cur->x < cur->next->x);
500bf215546Sopenharmony_ci      cur = cur->next;
501bf215546Sopenharmony_ci   }
502bf215546Sopenharmony_ci   STBRP_ASSERT(cur->next == NULL);
503bf215546Sopenharmony_ci
504bf215546Sopenharmony_ci   {
505bf215546Sopenharmony_ci      int count=0;
506bf215546Sopenharmony_ci      cur = context->active_head;
507bf215546Sopenharmony_ci      while (cur) {
508bf215546Sopenharmony_ci         cur = cur->next;
509bf215546Sopenharmony_ci         ++count;
510bf215546Sopenharmony_ci      }
511bf215546Sopenharmony_ci      cur = context->free_head;
512bf215546Sopenharmony_ci      while (cur) {
513bf215546Sopenharmony_ci         cur = cur->next;
514bf215546Sopenharmony_ci         ++count;
515bf215546Sopenharmony_ci      }
516bf215546Sopenharmony_ci      STBRP_ASSERT(count == context->num_nodes+2);
517bf215546Sopenharmony_ci   }
518bf215546Sopenharmony_ci#endif
519bf215546Sopenharmony_ci
520bf215546Sopenharmony_ci   return res;
521bf215546Sopenharmony_ci}
522bf215546Sopenharmony_ci
523bf215546Sopenharmony_ci// [DEAR IMGUI] Added STBRP__CDECL
524bf215546Sopenharmony_cistatic int STBRP__CDECL rect_height_compare(const void *a, const void *b)
525bf215546Sopenharmony_ci{
526bf215546Sopenharmony_ci   const stbrp_rect *p = (const stbrp_rect *) a;
527bf215546Sopenharmony_ci   const stbrp_rect *q = (const stbrp_rect *) b;
528bf215546Sopenharmony_ci   if (p->h > q->h)
529bf215546Sopenharmony_ci      return -1;
530bf215546Sopenharmony_ci   if (p->h < q->h)
531bf215546Sopenharmony_ci      return  1;
532bf215546Sopenharmony_ci   return (p->w > q->w) ? -1 : (p->w < q->w);
533bf215546Sopenharmony_ci}
534bf215546Sopenharmony_ci
535bf215546Sopenharmony_ci// [DEAR IMGUI] Added STBRP__CDECL
536bf215546Sopenharmony_cistatic int STBRP__CDECL rect_original_order(const void *a, const void *b)
537bf215546Sopenharmony_ci{
538bf215546Sopenharmony_ci   const stbrp_rect *p = (const stbrp_rect *) a;
539bf215546Sopenharmony_ci   const stbrp_rect *q = (const stbrp_rect *) b;
540bf215546Sopenharmony_ci   return (p->was_packed < q->was_packed) ? -1 : (p->was_packed > q->was_packed);
541bf215546Sopenharmony_ci}
542bf215546Sopenharmony_ci
543bf215546Sopenharmony_ci#ifdef STBRP_LARGE_RECTS
544bf215546Sopenharmony_ci#define STBRP__MAXVAL  0xffffffff
545bf215546Sopenharmony_ci#else
546bf215546Sopenharmony_ci#define STBRP__MAXVAL  0xffff
547bf215546Sopenharmony_ci#endif
548bf215546Sopenharmony_ci
549bf215546Sopenharmony_ciSTBRP_DEF int stbrp_pack_rects(stbrp_context *context, stbrp_rect *rects, int num_rects)
550bf215546Sopenharmony_ci{
551bf215546Sopenharmony_ci   int i, all_rects_packed = 1;
552bf215546Sopenharmony_ci
553bf215546Sopenharmony_ci   // we use the 'was_packed' field internally to allow sorting/unsorting
554bf215546Sopenharmony_ci   for (i=0; i < num_rects; ++i) {
555bf215546Sopenharmony_ci      rects[i].was_packed = i;
556bf215546Sopenharmony_ci   }
557bf215546Sopenharmony_ci
558bf215546Sopenharmony_ci   // sort according to heuristic
559bf215546Sopenharmony_ci   STBRP_SORT(rects, num_rects, sizeof(rects[0]), rect_height_compare);
560bf215546Sopenharmony_ci
561bf215546Sopenharmony_ci   for (i=0; i < num_rects; ++i) {
562bf215546Sopenharmony_ci      if (rects[i].w == 0 || rects[i].h == 0) {
563bf215546Sopenharmony_ci         rects[i].x = rects[i].y = 0;  // empty rect needs no space
564bf215546Sopenharmony_ci      } else {
565bf215546Sopenharmony_ci         stbrp__findresult fr = stbrp__skyline_pack_rectangle(context, rects[i].w, rects[i].h);
566bf215546Sopenharmony_ci         if (fr.prev_link) {
567bf215546Sopenharmony_ci            rects[i].x = (stbrp_coord) fr.x;
568bf215546Sopenharmony_ci            rects[i].y = (stbrp_coord) fr.y;
569bf215546Sopenharmony_ci         } else {
570bf215546Sopenharmony_ci            rects[i].x = rects[i].y = STBRP__MAXVAL;
571bf215546Sopenharmony_ci         }
572bf215546Sopenharmony_ci      }
573bf215546Sopenharmony_ci   }
574bf215546Sopenharmony_ci
575bf215546Sopenharmony_ci   // unsort
576bf215546Sopenharmony_ci   STBRP_SORT(rects, num_rects, sizeof(rects[0]), rect_original_order);
577bf215546Sopenharmony_ci
578bf215546Sopenharmony_ci   // set was_packed flags and all_rects_packed status
579bf215546Sopenharmony_ci   for (i=0; i < num_rects; ++i) {
580bf215546Sopenharmony_ci      rects[i].was_packed = !(rects[i].x == STBRP__MAXVAL && rects[i].y == STBRP__MAXVAL);
581bf215546Sopenharmony_ci      if (!rects[i].was_packed)
582bf215546Sopenharmony_ci         all_rects_packed = 0;
583bf215546Sopenharmony_ci   }
584bf215546Sopenharmony_ci
585bf215546Sopenharmony_ci   // return the all_rects_packed status
586bf215546Sopenharmony_ci   return all_rects_packed;
587bf215546Sopenharmony_ci}
588bf215546Sopenharmony_ci#endif
589bf215546Sopenharmony_ci
590bf215546Sopenharmony_ci/*
591bf215546Sopenharmony_ci------------------------------------------------------------------------------
592bf215546Sopenharmony_ciThis software is available under 2 licenses -- choose whichever you prefer.
593bf215546Sopenharmony_ci------------------------------------------------------------------------------
594bf215546Sopenharmony_ciALTERNATIVE A - MIT License
595bf215546Sopenharmony_ciCopyright (c) 2017 Sean Barrett
596bf215546Sopenharmony_ciPermission is hereby granted, free of charge, to any person obtaining a copy of
597bf215546Sopenharmony_cithis software and associated documentation files (the "Software"), to deal in
598bf215546Sopenharmony_cithe Software without restriction, including without limitation the rights to
599bf215546Sopenharmony_ciuse, copy, modify, merge, publish, distribute, sublicense, and/or sell copies
600bf215546Sopenharmony_ciof the Software, and to permit persons to whom the Software is furnished to do
601bf215546Sopenharmony_ciso, subject to the following conditions:
602bf215546Sopenharmony_ciThe above copyright notice and this permission notice shall be included in all
603bf215546Sopenharmony_cicopies or substantial portions of the Software.
604bf215546Sopenharmony_ciTHE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
605bf215546Sopenharmony_ciIMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
606bf215546Sopenharmony_ciFITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
607bf215546Sopenharmony_ciAUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
608bf215546Sopenharmony_ciLIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
609bf215546Sopenharmony_ciOUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
610bf215546Sopenharmony_ciSOFTWARE.
611bf215546Sopenharmony_ci------------------------------------------------------------------------------
612bf215546Sopenharmony_ciALTERNATIVE B - Public Domain (www.unlicense.org)
613bf215546Sopenharmony_ciThis is free and unencumbered software released into the public domain.
614bf215546Sopenharmony_ciAnyone is free to copy, modify, publish, use, compile, sell, or distribute this
615bf215546Sopenharmony_cisoftware, either in source code form or as a compiled binary, for any purpose,
616bf215546Sopenharmony_cicommercial or non-commercial, and by any means.
617bf215546Sopenharmony_ciIn jurisdictions that recognize copyright laws, the author or authors of this
618bf215546Sopenharmony_cisoftware dedicate any and all copyright interest in the software to the public
619bf215546Sopenharmony_cidomain. We make this dedication for the benefit of the public at large and to
620bf215546Sopenharmony_cithe detriment of our heirs and successors. We intend this dedication to be an
621bf215546Sopenharmony_ciovert act of relinquishment in perpetuity of all present and future rights to
622bf215546Sopenharmony_cithis software under copyright law.
623bf215546Sopenharmony_ciTHE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
624bf215546Sopenharmony_ciIMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
625bf215546Sopenharmony_ciFITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
626bf215546Sopenharmony_ciAUTHORS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
627bf215546Sopenharmony_ciACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION
628bf215546Sopenharmony_ciWITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
629bf215546Sopenharmony_ci------------------------------------------------------------------------------
630bf215546Sopenharmony_ci*/
631