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Revision 1.13 by root, Fri Dec 15 19:59:20 2006 UTC vs.
Revision 1.51 by root, Tue Jul 24 04:58:25 2007 UTC

1/* 1/*
2 CrossFire, A Multiplayer game for X-windows 2 * This file is part of Crossfire TRT, the Roguelike Realtime MORPG.
3 3 *
4 * Copyright (©) 2005,2006,2007 Marc Alexander Lehmann / Robin Redeker / the Crossfire TRT team
4 Copyright (C) 2001 Mark Wedel 5 * Copyright (©) 2001,2007 Mark Wedel
5 Copyright (C) 1992 Frank Tore Johansen 6 * Copyright (©) 1992,2007 Frank Tore Johansen
6 7 *
7 This program is free software; you can redistribute it and/or modify 8 * Crossfire TRT is free software: you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by 9 * it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 2 of the License, or 10 * the Free Software Foundation, either version 3 of the License, or
10 (at your option) any later version. 11 * (at your option) any later version.
11 12 *
12 This program is distributed in the hope that it will be useful, 13 * This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of 14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details. 16 * GNU General Public License for more details.
16 17 *
17 You should have received a copy of the GNU General Public License 18 * You should have received a copy of the GNU General Public License
18 along with this program; if not, write to the Free Software 19 * along with this program. If not, see <http://www.gnu.org/licenses/>.
19 Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA. 20 *
20
21 The author can be reached via e-mail to <crossfire@schmorp.de> 21 * The authors can be reached via e-mail to <crossfire@schmorp.de>
22*/ 22 */
23 23
24/** \file 24/** \file
25 * Image related communication 25 * Image related communication
26 * 26 *
27 * \date 2003-12-02 27 * \date 2003-12-02
33 */ 33 */
34 34
35#include <global.h> 35#include <global.h>
36#include <sproto.h> 36#include <sproto.h>
37 37
38#define MAX_FACE_SETS 20 /**< Maximum number of image sets the program will handle */ 38#include "crc.h"
39
40/** Information about one image */
41typedef struct FaceInfo
42{
43
44 uint8 *data; /**< image data */
45 uint16 datalen; /**< length of the xpm data */
46 uint32 checksum; /**< Checksum of face data */
47} FaceInfo;
48
49/** Information about one face set */
50typedef struct
51{
52
53 char *prefix; /**< */
54 char *fullname;
55
56 uint8 fallback; /**< faceset to use when an image is not found in this faceset */
57 char *size;
58 char *extension;
59 char *comment;
60
61 FaceInfo *faces; /**< images in this faceset */
62} FaceSets;
63
64static FaceSets facesets[MAX_FACE_SETS]; /**< All facesets */
65
66/**
67 * Checks specified faceset is valid
68 * \param fsn faceset number
69 */
70int
71is_valid_faceset (int fsn)
72{
73 if (fsn >= 0 && fsn < MAX_FACE_SETS && facesets[fsn].prefix)
74 return TRUE;
75 return FALSE;
76}
77
78/**
79 * Frees all faceset information
80 */
81void
82free_socket_images (void)
83{
84 int num, q;
85
86 for (num = 0; num < MAX_FACE_SETS; num++)
87 {
88 if (facesets[num].prefix)
89 {
90 for (q = 0; q < nrofpixmaps; q++)
91 if (facesets[num].faces[q].data)
92 free (facesets[num].faces[q].data);
93 free (facesets[num].prefix);
94 free (facesets[num].fullname);
95 free (facesets[num].size);
96 free (facesets[num].extension);
97 free (facesets[num].comment);
98 free (facesets[num].faces);
99 }
100 }
101}
102
103/**
104 * This returns the set we will actually use when sending
105 * a face. This is used because the image files may be sparse.
106 * This function is recursive. imageno is the face number we are
107 * trying to send
108 *
109 * If face is not found in specified faceset, tries with 'fallback' faceset.
110 *
111 * \param faceset faceset to check
112 * \param imageno image number
113 *
114 */
115static int
116get_face_fallback (int faceset, int imageno)
117{
118 /* faceset 0 is supposed to have every image, so just return. Doing
119 * so also prevents infinite loops in the case if it not having
120 * the face, but in that case, we are likely to crash when we try
121 * to access the data, but that is probably preferable to an infinite
122 * loop.
123 */
124 if (faceset == 0)
125 return 0;
126
127 if (!facesets[faceset].prefix)
128 {
129 LOG (llevError, "get_face_fallback called with unused set (%d)?\n", faceset);
130 return 0; /* use default set */
131 }
132 if (facesets[faceset].faces[imageno].data)
133 return faceset;
134 return get_face_fallback (facesets[faceset].fallback, imageno);
135}
136
137/**
138 * Checks fallback are correctly defined.
139 * This is a simple recursive function that makes sure the fallbacks
140 * are all proper (eg, the fall back to defined sets, and also
141 * eventually fall back to 0). At the top level, togo is set to MAX_FACE_SETS,
142 * if togo gets to zero, it means we have a loop.
143 * This is only run when we first load the facesets.
144 */
145static void
146check_faceset_fallback (int faceset, int togo)
147{
148 int fallback = facesets[faceset].fallback;
149
150 /* proper case - falls back to base set */
151 if (fallback == 0)
152 return;
153
154 if (!facesets[fallback].prefix)
155 {
156 LOG (llevError, "Face set %d falls to non set faceset %d\n", faceset, fallback);
157 abort ();
158 }
159 togo--;
160 if (togo == 0)
161 {
162 LOG (llevError, "Infinite loop found in facesets. aborting.\n");
163 abort ();
164 }
165 check_faceset_fallback (fallback, togo);
166}
167 39
168#define MAX_IMAGE_SIZE 10000 40#define MAX_IMAGE_SIZE 10000
169
170/**
171 * Loads all the image types into memory.
172 *
173 * This way, we can easily send them to the client. We should really do something
174 * better than abort on any errors - on the other hand, these are all fatal
175 * to the server (can't work around them), but the abort just seems a bit
176 * messy (exit would probably be better.)
177 *
178 * Couple of notes: We assume that the faces are in a continous block.
179 * This works fine for now, but this could perhaps change in the future
180 *
181 * Function largely rewritten May 2000 to be more general purpose.
182 * The server itself does not care what the image data is - to the server,
183 * it is just data it needs to allocate. As such, the code is written
184 * to do such.
185 */
186
187void
188read_client_images (void)
189{
190 char filename[400];
191 char buf[HUGE_BUF];
192 char *cp, *cps[7];
193 FILE *infile;
194 int num, len, compressed, fileno, i, badline;
195
196 memset (facesets, 0, sizeof (facesets));
197 sprintf (filename, "%s/image_info", settings.datadir);
198 if ((infile = open_and_uncompress (filename, 0, &compressed)) == NULL)
199 {
200 LOG (llevError, "Unable to open %s\n", filename);
201 abort ();
202 }
203 while (fgets (buf, HUGE_BUF - 1, infile) != NULL)
204 {
205 badline = 0;
206
207 if (buf[0] == '#')
208 continue;
209 if (!(cps[0] = strtok (buf, ":")))
210 badline = 1;
211 for (i = 1; i < 7; i++)
212 {
213 if (!(cps[i] = strtok (NULL, ":")))
214 badline = 1;
215 }
216 if (badline)
217 {
218 LOG (llevError, "Bad line in image_info file, ignoring line:\n %s", buf);
219 }
220 else
221 {
222 len = atoi (cps[0]);
223 if (len >= MAX_FACE_SETS)
224 {
225 LOG (llevError, "To high a setnum in image_info file: %d > %d\n", len, MAX_FACE_SETS);
226 abort ();
227 }
228 facesets[len].prefix = strdup (cps[1]);
229 facesets[len].fullname = strdup (cps[2]);
230 facesets[len].fallback = atoi (cps[3]);
231 facesets[len].size = strdup (cps[4]);
232 facesets[len].extension = strdup (cps[5]);
233 facesets[len].comment = strdup (cps[6]);
234 }
235 }
236 close_and_delete (infile, compressed);
237 for (i = 0; i < MAX_FACE_SETS; i++)
238 {
239 if (facesets[i].prefix)
240 check_faceset_fallback (i, MAX_FACE_SETS);
241 }
242 /* Loaded the faceset information - now need to load up the
243 * actual faces.
244 */
245
246 for (fileno = 0; fileno < MAX_FACE_SETS; fileno++)
247 {
248 /* if prefix is not set, this is not used */
249 if (!facesets[fileno].prefix)
250 continue;
251 facesets[fileno].faces = (FaceInfo *) calloc (nrofpixmaps, sizeof (FaceInfo));
252
253 sprintf (filename, "%s/crossfire.%d", settings.datadir, fileno);
254 LOG (llevDebug, "Loading image file %s\n", filename);
255
256 if ((infile = open_and_uncompress (filename, 0, &compressed)) == NULL)
257 {
258 LOG (llevError, "Unable to open %s\n", filename);
259 abort ();
260 }
261 while (fgets (buf, HUGE_BUF - 1, infile) != NULL)
262 {
263 if (strncmp (buf, "IMAGE ", 6) != 0)
264 {
265 LOG (llevError, "read_client_images:Bad image line - not IMAGE, instead\n%s", buf);
266 abort ();
267 }
268 num = atoi (buf + 6);
269 if (num < 0 || num >= nrofpixmaps)
270 {
271 LOG (llevError, "read_client_images: Image num %d not in 0..%d\n%s", num, nrofpixmaps, buf);
272 abort ();
273 }
274 /* Skip accross the number data */
275 for (cp = buf + 6; *cp != ' '; cp++);
276 len = atoi (cp);
277 if (len == 0 || len > MAX_IMAGE_SIZE)
278 {
279 LOG (llevError, "read_client_images: length not valid: %d > %d \n%s", len, MAX_IMAGE_SIZE, buf);
280 abort ();
281 }
282 /* We don't actualy care about the name of the image that
283 * is embedded in the image file, so just ignore it.
284 */
285 facesets[fileno].faces[num].datalen = len;
286 facesets[fileno].faces[num].data = (uint8 *) malloc (len);
287 if ((i = fread (facesets[fileno].faces[num].data, len, 1, infile)) != 1)
288 {
289 LOG (llevError, "read_client_images: Did not read desired amount of data, wanted %d, got %d\n%s", len, i, buf);
290 abort ();
291 }
292 facesets[fileno].faces[num].checksum = 0;
293 for (i = 0; i < len; i++)
294 {
295 ROTATE_RIGHT (facesets[fileno].faces[num].checksum);
296 facesets[fileno].faces[num].checksum += facesets[fileno].faces[num].data[i];
297 facesets[fileno].faces[num].checksum &= 0xffffffff;
298 }
299 }
300 close_and_delete (infile, compressed);
301 } /* For fileno < MAX_FACE_SETS */
302}
303 41
304/** 42/**
305 * Client tells us what type of faces it wants. Also sets 43 * Client tells us what type of faces it wants. Also sets
306 * the caching attribute. 44 * the caching attribute.
307 * 45 *
308 */ 46 */
309
310void 47void
311SetFaceMode (char *buf, int len, client *ns) 48SetFaceMode (char *buf, int len, client *ns)
312{ 49{
313 int mask = (atoi (buf) & CF_FACE_CACHE), mode = (atoi (buf) & ~CF_FACE_CACHE); 50 int mask = (atoi (buf) & CF_FACE_CACHE), mode = (atoi (buf) & ~CF_FACE_CACHE);
314 51
315 if (mode == CF_FACE_NONE) 52 if (mode == CF_FACE_NONE)
316 ns->facecache = 1; 53 ns->facecache = 1;
317 else if (mode != CF_FACE_PNG) 54 else if (mode != CF_FACE_PNG)
318 {
319 packet sl;
320 sl.printf ("drawinfo %d %s", NDI_RED, "Warning - send unsupported face mode. Will use Png"); 55 ns->send_packet_printf ("drawinfo %d %s", NDI_RED, "Warning - send unsupported face mode. Will use Png");
321 ns->send_packet (sl);
322 }
323 56
324 if (mask) 57 if (mask)
325 ns->facecache = 1; 58 ns->facecache = 1;
326} 59}
327 60
328/** 61/**
329 * Client has requested pixmap that it somehow missed getting. 62 * client requested an image. send it rate-limited
330 * This will be called often if the client is 63 * before flushing.
331 * caching images.
332 */ 64 */
333
334void 65void
335SendFaceCmd (char *buff, int len, client * ns) 66AskFaceCmd (char *buf, int len, client *ns)
336{ 67{
337 long tmpnum = atoi (buff); 68 int idx = 0, pri = 0;
338 short facenum = tmpnum & 0xffff;
339 69
340 if (facenum != 0) 70 sscanf (buf, "%d %d", &idx, &pri);
341 esrv_send_face (ns, facenum, 1); 71
72 //TODO: somehow fetch default priority from send_fx here
73
74 const facedata *d = face_data (idx, ns->faceset);
75
76 if (!d)
77 return; // doh
78
79 client::ixsend ix;
80
81 ix.pri = pri;
82 ix.idx = idx;
83 ix.ofs = d->data.size ();
84
85 auto (pos, ns->ixface.end ());
86
87 if (ns->fxix < 2)
88 {
89 // gcfclient does not support prioritising, older cfplus versions
90 // do not support interleaved transfers.
91 if (!ns->ixface.empty ())
92 pos = ns->ixface.end () - 1;
93 }
94 else
95 {
96 // the by far most common case will be to insert
97 // near the end, so little looping.
98 while (pos != ns->ixface.begin ())
99 {
100 --pos;
101
102 // sort within 2k bins, to slightly prefer smaller images
103 if (pri > pos->pri || (pri == pos->pri && (ix.ofs >> 11) <= (pos->ofs >> 11)))
104 {
105 ++pos;
106 break;
107 }
108 }
109 }
110
111 ns->ixface.insert (pos, ix);
112
113#if 0
114 for (auto (i, ns->ixface.begin ()); i != ns->ixface.end (); ++i)
115 fprintf (stderr, "<%d,%d> ", i->pri, i->ofs);
116 fprintf (stderr, "\n");
117#endif
118}
119
120/**
121 * Tells client the picture it has to use
122 * to smooth a picture number given as argument.
123 */
124void
125AskSmooth (char *buf, int len, client *ns)
126{
127 ns->send_face (atoi (buf), -100);
128 ns->flush_fx ();
129}
130
131// how lame
132static void print_facename (packet &sl, const facedata &d)
133{
134 for (int i = 0; i < CHKSUM_SIZE; ++i)
135 sl.printf ("%02x", d.chksum [i]);
136}
137
138// gcfclient uses the server-provided checksum for comparison, but always
139// writes a broken checksum to its cache file, so we have to provide
140// gcfclient with the same broken (and useless) checksum just to have it
141// cache the image despite its bugs.
142static uint32 gcfclient_checksum (const facedata *d)
143{
144 uint32 csum = 0;
145
146 for (std::string::const_iterator i = d->data.begin ();
147 i != d->data.end ();
148 ++i)
149 {
150 csum = rotate_right (csum);
151 csum += *(uint8 *)&*i;
152 }
153
154 return csum;
342} 155}
343 156
344/** 157/**
345 * Sends a face to a client if they are in pixmap mode 158 * Sends a face to a client if they are in pixmap mode
346 * nothing gets sent in bitmap mode. 159 * nothing gets sent in bitmap mode.
347 * If nocache is true (nonzero), ignore the cache setting from the client - 160 * If nocache is true (nonzero), ignore the cache setting from the client -
348 * this is needed for the askface, in which we really do want to send the 161 * this is needed for the askface, in which we really do want to send the
349 * face (and askface is the only place that should be setting it). Otherwise, 162 * face (and askface is the only place that should be setting it). Otherwise,
350 * we look at the facecache, and if set, send the image name. 163 * we look at the facecache, and if set, send the image name.
351 */ 164 */
352
353void 165void
354esrv_send_face (client *ns, short face_num, int nocache) 166client::send_face (faceidx facenum, int pri)
355{ 167{
356 char fallback; 168 // never send face 0. ever. it does not exist.
169 if (!facenum)
170 return;
357 171
358 if (face_num <= 0 || face_num >= nrofpixmaps) 172 faceinfo *f = face_info (facenum);
173
174 if (!f)
359 { 175 {
360 LOG (llevError, "esrv_send_face (%d) out of bounds??\n", face_num); 176 LOG (llevError, "client::send_face (%d) out of bounds??\n", facenum);
361 return; 177 return;
362 } 178 }
363 179
180 // refuse to send non-image faces
181 if (!fx_want [f->type])
182 return;
183
184 if (faces_sent [facenum])
185 return;
186
187 faces_sent[facenum] = true;
188
189 // if for some reason we let a client without face caching connect,
190 // we better support that decision here and implement it.
191 if (!facecache)
192 return send_image (facenum);
193
194 if (fxix)
195 {
196 fxface.push_back (facenum);
197 return;
198 }
199
200 const facedata *d = f->data (faceset);
201
364 packet sl; 202 packet sl;
365 fallback = get_face_fallback (ns->faceset, face_num);
366 203
367 if (facesets[fallback].faces[face_num].data == NULL) 204 if (force_face0)
205 sl << "face " << uint16 (facenum);
206 else if (image2)
207 sl << "face2 " << uint16 (facenum) << uint8 (0) << uint32 (force_bad_checksum ? gcfclient_checksum (d) : 0);
208 else
209 sl << "face1 " << uint16 (facenum) << uint32 (force_bad_checksum ? gcfclient_checksum (d) : 0);
210
211 // how lame
212 print_facename (sl, *d);
213 send_packet (sl);
214
215 if (EMI_smooth)
216 {
217 if (f->smooth)
218 {
219 send_face (f->smooth);
220
221 packet sl ("smooth");
222
223 sl << uint16 (facenum)
224 << uint16 (f->smooth);
225
226 send_packet (sl);
227 }
368 { 228 }
369 LOG (llevError, "esrv_send_face: faces[%d].data == NULL\n", face_num); 229}
230
231void client::flush_fx ()
232{
233 while (!fxface.empty ())
234 {
235 packet fx ("fx");
236 packet sx ("sx");
237 int type = 0;
238
239 do
240 {
241 faceidx facenum = fxface.back (); fxface.pop_back ();
242
243 if (const faceinfo *f = face_info (facenum))
244 {
245 if (f->type != type)
246 {
247 type = f->type;
248
249 fx << ber32 (0)
250 << uint8 (1) << uint8 (type);
251 }
252
253 const facedata *d = f->data (faceset);
254
255 fx << ber32 (facenum)
256 << data8 (d->chksum, CHKSUM_SIZE);
257
258 if (smoothing)
259 {
260 faceinfo *f = face_info (facenum);
261
262 if (f->smooth)
263 {
264 send_face (f->smooth, -110);
265
266 sx << ber32 (facenum)
267 << ber32 (f->smooth)
268 << ber32 (f->smoothlevel);
269 }
270 }
271 }
272 }
273 while (!fxface.empty ()
274 && fx.room () > ber32::size + CHKSUM_SIZE + 1 + 3 /* type switch */
275 && sx.room () > ber32::size * 3);
276
277 send_packet (fx);
278 if (sx.length () > 3) send_packet (sx);
279 }
280}
281
282void
283client::send_image (faceidx facenum)
284{
285 // never send face 0. ever. it does not exist.
286 if (!facenum)
287 return;
288
289 const facedata *d = face_data (facenum, faceset);
290
291 faces_sent[facenum] = true;
292
293 if (!d)
294 {
295 LOG (llevError, "client::send_image (%d) out of bounds??\n", facenum);
370 return; 296 return;
371 } 297 }
298
299 if (force_image_newmap)
300 force_newmap = true;
372 301
373 if (ns->facecache && !nocache) 302 packet sl;
374 {
375 sl << (ns->image2 ? "face2 " : "face1 ")
376 << uint16 (face_num);
377 303
378 if (ns->image2)
379 sl << uint8 (fallback);
380
381 sl << uint32 (facesets[fallback].faces[face_num].checksum)
382 << new_faces[face_num].name;
383
384 ns->send_packet (sl);
385 }
386 else
387 {
388 sl << (ns->image2 ? "image2 " : "image ") 304 sl << (image2 ? "image2 " : "image ")
389 << uint32 (face_num); 305 << uint32 (facenum);
390 306
391 if (ns->image2) 307 if (image2)
392 sl << uint8 (fallback); 308 sl << uint8 (0);
393 309
394 sl << uint32 (facesets[fallback].faces[face_num].datalen) 310 sl << uint32 (d->data.size ())
395 << data (facesets[fallback].faces[face_num].data, facesets[fallback].faces[face_num].datalen); 311 << data (d->data.data (), d->data.size ());
396 312
397 ns->send_packet (sl); 313 send_packet (sl);
314}
315
316// send all faces of this object to the client
317// this uses more bandwidth initially, but makes
318// animations look much smoother, and every client
319// is supposed to do client-side caching anyways.
320void
321client::send_faces (object *ob)
322{
323 send_face (ob->face, 10);
324
325 if (ob->animation_id)
398 } 326 {
327 animation &anim = animations [ob->animation_id];
399 328
400 ns->faces_sent[face_num] |= NS_FACESENT_FACE; 329 for (int i = 0; i < anim.num_animations; i++)
330 send_face (anim.faces [i], -10);
331 }
332}
333
334/**
335 * Need to send an animation sequence to the client.
336 * We will send appropriate face commands to the client if we haven't
337 * sent them the face yet (this can become quite costly in terms of
338 * how much we are sending - on the other hand, this should only happen
339 * when the player logs in and picks stuff up.
340 */
341void
342client::send_animation (short anim_num)
343{
344 /* Do some checking on the anim_num we got. Note that the animations
345 * are added in contigous order, so if the number is in the valid
346 * range, it must be a valid animation.
347 */
348 if (anim_num < 0 || anim_num >= animations.size ())
349 {
350 LOG (llevError, "esrv_send_anim (%d) out of bounds??\n", anim_num);
351 return;
352 }
353
354 packet sl ("anim");
355
356 sl << uint16 (anim_num)
357 << uint16 (0); /* flags - not used right now */
358
359 /* Build up the list of faces. Also, send any information (ie, the
360 * the face itself) down to the client.
361 */
362 for (int i = 0; i < animations[anim_num].num_animations; i++)
363 {
364 send_face (animations[anim_num].faces[i], -20);
365 sl << uint16 (animations[anim_num].faces[i]); /* flags - not used right now */
366 }
367
368 send_packet (sl);
369
370 anims_sent[anim_num] = 1;
401} 371}
402 372
403/** 373/**
404 * Sends the number of images, checksum of the face file, 374 * Sends the number of images, checksum of the face file,
405 * and the image_info file information. See the doc/Developers/protocol 375 * and the image_info file information. See the doc/Developers/protocol
406 * if you want further detail. 376 * if you want further detail.
407 */ 377 */
408
409void 378void
410send_image_info (client * ns, char *params) 379send_image_info (client *ns, char *params)
411{ 380{
412 packet sl; 381 packet sl;
413 382
414 sl.printf ("replyinfo image_info\n%d\n%d\n", nrofpixmaps - 1, bmaps_checksum); 383 //TODO: second parameter is a checksum, but it makes no sense in this current framework
384 sl.printf ("replyinfo image_info\n%d\n%u\n", MAX_FACES, 0);
415 385
416 for (int i = 0; i < MAX_FACE_SETS; i++) 386 sl << "0:base:standard:0:32x32:none:The old 32x32 faceset.\n";
417 if (facesets[i].prefix)
418 sl.printf ("%d:%s:%s:%d:%s:%s:%s",
419 i, facesets[i].prefix, facesets[i].fullname, facesets[i].fallback,
420 facesets[i].size, facesets[i].extension, facesets[i].comment);
421 387
422 ns->send_packet (sl); 388 ns->send_packet (sl);
423} 389}
424 390
425/** 391/**
430 * For each image in [start..stop] sends 396 * For each image in [start..stop] sends
431 * - checksum 397 * - checksum
432 * - name 398 * - name
433 */ 399 */
434void 400void
435send_image_sums (client * ns, char *params) 401send_image_sums (client *ns, char *params)
436{ 402{
437 int start, stop; 403 int start, stop;
438 char *cp, buf[MAX_BUF]; 404 char *cp;
439 405
440 packet sl; 406 packet sl;
441 407
442 start = atoi (params); 408 start = atoi (params);
443 for (cp = params; *cp != '\0'; cp++) 409 for (cp = params; *cp != '\0'; cp++)
444 if (*cp == ' ') 410 if (*cp == ' ')
445 break; 411 break;
446 412
447 stop = atoi (cp); 413 stop = atoi (cp);
448 if (stop < start || *cp == '\0' || (stop - start) > 1000 || stop >= nrofpixmaps) 414 if (stop < start || *cp == '\0' || (stop - start) > 1000 || stop >= MAX_FACES)
449 { 415 {
450 sl.printf ("replyinfo image_sums %d %d", start, stop); 416 sl.printf ("replyinfo image_sums %d %d", start, stop);
451 ns->send_packet (sl); 417 ns->send_packet (sl);
452 sl.reset (); 418 sl.reset ();
453 return; 419 return;
454 } 420 }
455 421
456 sl.printf ("replyinfo image_sums %d %d ", start, stop); 422 sl.printf ("replyinfo image_sums %d %d ", start, stop);
457 423
458 for (int i = start; i <= stop; i++) 424 for (int i = start; i <= stop && i < faces.size (); i++)
459 { 425 {
460 ns->faces_sent[i] |= NS_FACESENT_FACE; 426 ns->faces_sent[i] = true;
461 427
462 int qq = get_face_fallback (ns->faceset, i); 428 const facedata *d = face_data (i, ns->faceset);
429
430 if (sl.room () < 2 + 4 + 1 + d->data.size () + 1)
431 break;
463 432
464 sl << uint16 (i) 433 sl << uint16 (i)
465 << uint32 (facesets[qq].faces[i].checksum) 434 << uint32 (0) // checksum
466 << uint8 (qq) 435 << uint8 (ns->faceset);
467 << data8 (&new_faces[i].name, new_faces[i].name.length () + 1); 436
437 print_facename (sl, *d); sl << uint8 (0);
468 } 438 }
469 439
470 /* It would make more sense to catch this pre-emptively in the code above. 440 /* It would make more sense to catch this pre-emptively in the code above.
471 * however, if this really happens, we probably just want to cut down the 441 * however, if this really happens, we probably just want to cut down the
472 * size to less than 1000, since that is what we claim the protocol would 442 * size to less than 1000, since that is what we claim the protocol would
473 * support. 443 * support.
474 */ 444 */
445 //TODO: taken care of above, should simply abort or make sure the above code is correct
475 if (sl.length () >= MAXSOCKBUF) 446 if (sl.length () >= MAXSOCKBUF)
476 { 447 {
477 LOG (llevError, "send_image_send: buffer overrun, %d > %d\n", sl.length (), MAXSOCKBUF); 448 LOG (llevError, "send_image_send: buffer overrun, %d > %d\n", sl.length (), MAXSOCKBUF);
478 abort (); 449 abort ();
479 } 450 }

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