3 #define _POSIX_C_SOURCE 199309L
5 #include <errno.h> /* global errno */
6 #include <limits.h> /* PIPE_BUF */
7 #include <stddef.h> /* size_t, NULL */
8 #include <stdint.h> /* uint8_t, uint16_t, uint32_t */
9 #include <stdio.h> /* defines EOF, FILE, sprintf(), fprintf() */
10 #include <stdlib.h> /* free() */
11 #include <string.h> /* strlen(), memcpy(), memset(), strchr() */
12 #include <sys/types.h> /* time_t */
13 #include <time.h> /* time(), nanosleep() */
14 #include "../common/readwrite.h" /* atomic_write_start(), atomic_write_finish(),
15 * try_fwrite(), try_fputc(), try_fgetc()
17 #include "../common/rexit.h" /* exit_trouble() */
18 #include "../common/try_malloc.h" /* try_malloc() */
19 #include "cleanup.h" /* set_cleanup_flag() */
20 #include "field_of_view.h" /* VISIBLE */
21 #include "hardcoded_strings.h" /* s */
22 #include "things.h" /* Thing, ThingType, ThingAction, get_thing_type(),
25 #include "world.h" /* global world */
29 /* Write to "file" god commands (one per line) to recreate thing "t". */
30 static void write_key_value(FILE * file, char * key, uint32_t value);
31 static void write_key_string(FILE * file, char * key, char * string);
33 /* Write to "file" \n-delimited line of "key" + space + "value" as string. */
34 static void write_thing(FILE * file, struct Thing * t);
36 /* Cut out and return first \0-terminated string from world.queue and
37 * appropriately reduce world.queue_size. Return NULL if queue is empty.
38 * Superfluous \0 bytes after the string are also cut out. Should the queue
39 * start with \0 bytes, those are cut out, but NULL is returned instead of "".
41 static char * get_message_from_queue();
43 /* Poll input file for world.queue input. Wait a few seconds until giving up;
44 * poll only every 0.03 seconds.. Translate '\n' chars in input file into '\0'.
46 static void read_file_into_queue();
48 /* Write world state as visible to clients to its file. Write single dot line to
49 * server output file to satisfy client ping mechanisms.
51 static void update_worldstate_file();
53 /* Write "value" to new \n-delimited line of "file". */
54 static void write_value_as_line(uint32_t value, FILE * file);
56 /* Write to "file" player's inventory, one item name per line. End in "%\n". */
57 static void write_inventory(struct Thing * player, FILE * file);
59 /* Return map cells sequence as visible to the "player", with invisible cells as
60 * whitespace. Super-impose over visible map cells things positioned there.
62 static char * build_visible_map(struct Thing * player);
64 /* Write to "file" game map as visible to "player", build_visible_map()-drawn.
65 * Write one row per \n-delimited line.
67 static void write_map(struct Thing * player, FILE * file);
71 static void write_key_value(FILE * file, char * key, uint32_t value)
73 try_fwrite(key, strlen(key), 1, file, __func__);
74 try_fputc(' ', file, __func__);
75 char * line = try_malloc(11, __func__);
76 exit_trouble(-1 == sprintf(line, "%u", value), __func__, s[S_FCN_SPRINTF]);
77 try_fwrite(line, strlen(line), 1, file, __func__);
79 try_fputc('\n', file, __func__);
84 static void write_key_string(FILE * file, char * key, char * string)
86 try_fwrite(key, strlen(key), 1, file, __func__);
87 try_fputc(' ', file, __func__);
88 uint8_t contains_space = NULL != strchr(string, ' ');
91 try_fputc('\'', file, __func__);
93 try_fwrite(string, strlen(string), 1, file, __func__);
96 try_fputc('\'', file, __func__);
98 try_fputc('\n', file, __func__);
103 static void write_thing(FILE * file, struct Thing * t)
106 for (o = t->owns; o; o = o->next)
108 write_thing(file, o);
110 write_key_value(file, s[S_CMD_T_ID], t->id);
111 write_key_value(file, s[S_CMD_T_TYPE], t->type);
112 write_key_value(file, s[S_CMD_T_POSY], t->pos.y);
113 write_key_value(file, s[S_CMD_T_POSX], t->pos.x);
114 write_key_value(file, s[S_CMD_T_COMMAND], t->command);
115 write_key_value(file, s[S_CMD_T_ARGUMENT], t->arg);
116 write_key_value(file, s[S_CMD_T_PROGRESS], t->progress);
117 write_key_value(file, s[S_CMD_T_HP], t->lifepoints);
118 for (o = t->owns; o; o = o->next)
120 write_key_value(file, s[S_CMD_T_CARRIES], o->id);
122 try_fputc('\n', file, __func__);
127 static char * get_message_from_queue()
129 char * message = NULL;
130 if (world.queue_size)
132 size_t cutout_len = strlen(world.queue);
136 message = try_malloc(cutout_len, __func__);
137 memcpy(message, world.queue, cutout_len);
140 cutout_len != world.queue_size && '\0' == world.queue[cutout_len];
142 world.queue_size = world.queue_size - cutout_len;
143 if (0 == world.queue_size)
145 free(world.queue); /* NULL so read_file_into_queue() may free() */
146 world.queue = NULL; /* this every time, even when it's */
147 } /* un-allocated first. */
150 char * new_queue = try_malloc(world.queue_size, __func__);
151 memcpy(new_queue, &(world.queue[cutout_len]), world.queue_size);
153 world.queue = new_queue;
161 static void read_file_into_queue()
163 uint8_t wait_seconds = 5;
164 time_t now = time(0);
167 dur.tv_nsec = 33333333;
169 while (EOF == (test = try_fgetc(world.file_in, __func__)))
171 nanosleep(&dur, NULL);
172 if (time(0) > now + wait_seconds)
179 char c = (char) test;
184 char * new_queue = try_malloc(world.queue_size + 1, __func__);
185 memcpy(new_queue, world.queue, world.queue_size);
186 char * new_pos = new_queue + world.queue_size;
190 world.queue = new_queue;
192 while (EOF != (test = try_fgetc(world.file_in, __func__)));
197 static void update_worldstate_file()
200 FILE * file = atomic_write_start(s[S_PATH_WORLDSTATE], &path_tmp);
201 struct Thing * player = get_player();
202 write_value_as_line(world.turn, file);
203 write_value_as_line(player->lifepoints, file);
204 write_inventory(player, file);
205 write_value_as_line(player->pos.y, file);
206 write_value_as_line(player->pos.x, file);
207 write_value_as_line(world.map.length, file);
208 write_map(player, file);
211 try_fwrite(world.log, strlen(world.log), 1, file, __func__);
213 atomic_write_finish(file, s[S_PATH_WORLDSTATE], path_tmp);
214 set_cleanup_flag(CLEANUP_WORLDSTATE);
216 try_fwrite(dot, strlen(dot), 1, world.file_out, __func__);
217 fflush(world.file_out);
222 static void write_value_as_line(uint32_t value, FILE * file)
224 char write_buf[12]; /* Holds 10 digits of uint32_t maximum + \n + \0. */
225 exit_trouble(sprintf(write_buf,"%u\n",value) < 0,__func__,s[S_FCN_SPRINTF]);
226 try_fwrite(write_buf, strlen(write_buf), 1, file, __func__);
231 static void write_inventory(struct Thing * player, FILE * file)
233 struct Thing * owned = player->owns;
236 char * empty = "(none)\n";
237 try_fwrite(empty, strlen(empty), 1, file, __func__);
242 for (q = 0; NULL != owned; q++)
244 struct ThingType * tt = get_thing_type(owned->type);
245 try_fwrite(tt->name, strlen(tt->name), 1, file, __func__);
246 try_fputc('\n', file, __func__);
250 try_fputc('%', file, __func__);
251 try_fputc('\n', file, __func__);
256 static char * build_visible_map(struct Thing * player)
258 uint32_t map_size = world.map.length * world.map.length;
259 char * visible_map = try_malloc(map_size, __func__);
260 memset(visible_map, ' ', map_size);
261 if (player->fov_map) /* May fail if player thing was created / positioned */
262 { /* by god command after turning off FOV building. */
264 for (pos_i = 0; pos_i < map_size; pos_i++)
266 if (player->fov_map[pos_i] & VISIBLE)
268 visible_map[pos_i] = world.map.cells[pos_i];
272 struct ThingType * tt;
275 for (i = 0; i < 2; i++)
277 for (t = world.things; t != 0; t = t->next)
279 if ( ( player->fov_map[t->pos.y * world.map.length +t->pos.x]
281 && ( (0 == i && 0 == t->lifepoints)
282 || (1 == i && 0 < t->lifepoints)))
284 tt = get_thing_type(t->type);
286 visible_map[t->pos.y * world.map.length + t->pos.x] = c;
296 static void write_map(struct Thing * player, FILE * file)
298 char * visible_map = build_visible_map(player);
300 for (y = 0; y < world.map.length; y++)
302 for (x = 0; x < world.map.length; x++)
304 try_fputc(visible_map[(y * world.map.length) + x], file, __func__);
306 try_fputc('\n', file, __func__);
313 extern char * io_round()
315 if (0 < world.queue_size)
317 return get_message_from_queue();
321 update_worldstate_file();
324 read_file_into_queue();
325 if (world.queue_size && '\0' != world.queue[world.queue_size - 1])
327 char * new_queue = try_malloc(world.queue_size + 1, __func__);
328 memcpy(new_queue, world.queue, world.queue_size);
329 new_queue[world.queue_size] = '\0';
332 world.queue = new_queue;
334 return get_message_from_queue();
339 extern void save_world()
342 FILE * file = atomic_write_start(s[S_PATH_SAVE], &path_tmp);
343 write_key_value(file, s[S_CMD_MAPLENGTH], world.map.length);
344 write_key_value(file, s[S_CMD_PLAYTYPE], world.player_type);
345 try_fputc('\n', file, __func__);
346 struct ThingAction * ta;
347 for (ta = world.thing_actions; ta; ta = ta->next)
349 write_key_value(file, s[S_CMD_TA_ID], ta->id);
350 write_key_value(file, s[S_CMD_TA_EFFORT], ta->effort);
351 write_key_string(file, s[S_CMD_TA_NAME], ta->name);
352 try_fputc('\n', file, __func__);
354 struct ThingType * tt;
355 for (tt = world.thing_types; tt; tt = tt->next)
357 write_key_value(file, s[S_CMD_TT_ID], tt->id);
358 write_key_value(file, s[S_CMD_TT_STARTN], tt->start_n);
359 write_key_value(file, s[S_CMD_TT_HP], tt->lifepoints);
360 int test = fprintf(file, "%s %c\n", s[S_CMD_TT_SYMB], tt->char_on_map);
361 exit_trouble(test < 0, __func__, "fprintf");
362 write_key_string(file, s[S_CMD_TT_NAME], tt->name);
363 write_key_value(file, s[S_CMD_TT_CONSUM], tt->consumable);
364 try_fputc('\n', file, __func__);
366 for (tt = world.thing_types; tt; tt = tt->next)
368 write_key_value(file, s[S_CMD_TT_ID], tt->id);
369 write_key_value(file, s[S_CMD_TT_CORPS], tt->corpse_id);
371 try_fputc('\n', file, __func__);
372 write_key_value(file, s[S_CMD_SEED_MAP], world.seed_map);
373 write_key_value(file, s[S_CMD_SEED_RAND], world.seed);
374 write_key_value(file, s[S_CMD_TURN], world.turn);
375 try_fputc('\n', file, __func__);
377 for (t = world.things; t; t = t->next)
379 write_thing(file, t);
381 write_key_value(file, s[S_CMD_WORLD_ACTIVE], 1);
382 atomic_write_finish(file, s[S_PATH_SAVE], path_tmp);