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disorder-udplog exits more reliably when parent dies
[disorder] / lib / eclient.c
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460b9539 1/*
2 * This file is part of DisOrder.
1020001c 3 * Copyright (C) 2006, 2007 Richard Kettlewell
460b9539 4 *
5 * This program is free software; you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License as published by
7 * the Free Software Foundation; either version 2 of the License, or
8 * (at your option) any later version.
9 *
10 * This program is distributed in the hope that it will be useful, but
11 * WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
13 * General Public License for more details.
14 *
15 * You should have received a copy of the GNU General Public License
16 * along with this program; if not, write to the Free Software
17 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307
18 * USA
19 */
0e4472a0 20/** @file lib/eclient.c
21 * @brief Client code for event-driven programs
22 */
460b9539 23
24#include <config.h>
25#include "types.h"
26
27#include <sys/types.h>
28#include <sys/socket.h>
29#include <netinet/in.h>
30#include <sys/un.h>
31#include <string.h>
32#include <stdio.h>
33#include <unistd.h>
34#include <errno.h>
35#include <netdb.h>
36#include <stdlib.h>
37#include <assert.h>
38#include <inttypes.h>
39#include <stddef.h>
8b2e9303 40#include <time.h>
460b9539 41
42#include "log.h"
43#include "mem.h"
44#include "configuration.h"
45#include "queue.h"
46#include "eclient.h"
47#include "charset.h"
48#include "hex.h"
49#include "split.h"
50#include "vector.h"
51#include "inputline.h"
52#include "kvp.h"
53#include "syscalls.h"
54#include "printf.h"
55#include "addr.h"
56#include "authhash.h"
57#include "table.h"
58#include "client-common.h"
59
60/* TODO: more commands */
61
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62/** @brief How often to send data to the server when receiving logs */
63#define LOG_PROD_INTERVAL 10
64
460b9539 65/* Types *********************************************************************/
66
0e4472a0 67/** @brief Client state */
460b9539 68enum client_state {
0e4472a0 69 state_disconnected, /**< @brief not connected */
70 state_connecting, /**< @brief waiting for connect() */
71 state_connected, /**< @brief connected but not authenticated */
72 state_idle, /**< @brief not doing anything */
73 state_cmdresponse, /**< @brief waiting for command resonse */
74 state_body, /**< @brief accumulating body */
75 state_log, /**< @brief monitoring log */
460b9539 76};
77
0e4472a0 78/** @brief Names for @ref client_state */
460b9539 79static const char *const states[] = {
80 "disconnected",
81 "connecting",
82 "connected",
83 "idle",
84 "cmdresponse",
85 "body",
86 "log"
87};
88
89struct operation; /* forward decl */
90
0e4472a0 91/** @brief Type of an operation callback */
460b9539 92typedef void operation_callback(disorder_eclient *c, struct operation *op);
93
0e4472a0 94/** @brief A pending operation.
95 *
96 * This can be either a command or part of the authentication protocol. In the
97 * former case new commands are appended to the list, in the latter case they
98 * are inserted at the front. */
460b9539 99struct operation {
0e4472a0 100 struct operation *next; /**< @brief next operation */
101 char *cmd; /**< @brief command to send or 0 */
102 operation_callback *opcallback; /**< @brief internal completion callback */
103 void (*completed)(); /**< @brief user completion callback or 0 */
104 void *v; /**< @brief data for COMPLETED */
105 disorder_eclient *client; /**< @brief owning client */
ad58ebcc 106
107 /** @brief true if sent to server
108 *
109 * This is cleared by disorder_eclient_close(), forcing all queued
110 * commands to be transparently resent.
111 */
112 int sent;
460b9539 113};
114
0e4472a0 115/** @brief Client structure */
460b9539 116struct disorder_eclient {
117 const char *ident;
0e4472a0 118 int fd; /**< @brief connection to server */
119 enum client_state state; /**< @brief current state */
120 int authenticated; /**< @brief true when authenicated */
121 struct dynstr output; /**< @brief output buffer */
122 struct dynstr input; /**< @brief input buffer */
123 int eof; /**< @brief input buffer is at EOF */
124 const disorder_eclient_callbacks *callbacks; /**< @brief error callbacks */
125 void *u; /**< @brief user data */
126 struct operation *ops; /**< @brief queue of operations */
127 struct operation **opstail; /**< @brief queue tail */
460b9539 128 /* accumulated response */
0e4472a0 129 int rc; /**< @brief response code */
130 char *line; /**< @brief complete line */
131 struct vector vec; /**< @brief body */
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132
133 const disorder_eclient_log_callbacks *log_callbacks;
134 /**< @brief log callbacks
135 *
136 * Once disorder_eclient_log() has been issued this is always set. When we
137 * re-connect it is checked to re-issue the log command.
138 */
0e4472a0 139 void *log_v; /**< @brief user data */
8f763f1b 140 unsigned long statebits; /**< @brief latest state */
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141
142 time_t last_prod;
143 /**< @brief last time we sent a prod
144 *
145 * When we are receiving log data we send a "prod" byte to the server from
146 * time to time so that we detect broken connections reasonably quickly. The
147 * server just ignores these bytes.
148 */
460b9539 149};
150
151/* Forward declarations ******************************************************/
152
153static int start_connect(void *cc,
154 const struct sockaddr *sa,
155 socklen_t len,
156 const char *ident);
157static void process_line(disorder_eclient *c, char *line);
158static int start_connect(void *cc,
159 const struct sockaddr *sa,
160 socklen_t len,
161 const char *ident);
162static void maybe_connected(disorder_eclient *c);
163static void authbanner_opcallback(disorder_eclient *c,
164 struct operation *op);
165static void authuser_opcallback(disorder_eclient *c,
166 struct operation *op);
167static void complete(disorder_eclient *c);
168static void send_output(disorder_eclient *c);
169static void put(disorder_eclient *c, const char *s, size_t n);
170static void read_input(disorder_eclient *c);
171static void stash_command(disorder_eclient *c,
172 int queuejump,
173 operation_callback *opcallback,
174 void (*completed)(),
175 void *v,
176 const char *cmd,
177 ...);
178static void log_opcallback(disorder_eclient *c, struct operation *op);
179static void logline(disorder_eclient *c, const char *line);
180static void logentry_completed(disorder_eclient *c, int nvec, char **vec);
181static void logentry_failed(disorder_eclient *c, int nvec, char **vec);
182static void logentry_moved(disorder_eclient *c, int nvec, char **vec);
183static void logentry_playing(disorder_eclient *c, int nvec, char **vec);
184static void logentry_queue(disorder_eclient *c, int nvec, char **vec);
185static void logentry_recent_added(disorder_eclient *c, int nvec, char **vec);
186static void logentry_recent_removed(disorder_eclient *c, int nvec, char **vec);
187static void logentry_removed(disorder_eclient *c, int nvec, char **vec);
188static void logentry_scratched(disorder_eclient *c, int nvec, char **vec);
189static void logentry_state(disorder_eclient *c, int nvec, char **vec);
190static void logentry_volume(disorder_eclient *c, int nvec, char **vec);
e025abff 191static void logentry_rescanned(disorder_eclient *c, int nvec, char **vec);
460b9539 192
193/* Tables ********************************************************************/
194
0e4472a0 195/** @brief One possible log entry */
196struct logentry_handler {
197 const char *name; /**< @brief Entry name */
198 int min; /**< @brief Minimum arguments */
199 int max; /**< @brief Maximum arguments */
460b9539 200 void (*handler)(disorder_eclient *c,
201 int nvec,
0e4472a0 202 char **vec); /**< @brief Handler function */
203};
204
205/** @brief Table for parsing log entries */
206static const struct logentry_handler logentry_handlers[] = {
460b9539 207#define LE(X, MIN, MAX) { #X, MIN, MAX, logentry_##X }
208 LE(completed, 1, 1),
209 LE(failed, 2, 2),
210 LE(moved, 1, 1),
211 LE(playing, 1, 2),
212 LE(queue, 2, INT_MAX),
213 LE(recent_added, 2, INT_MAX),
214 LE(recent_removed, 1, 1),
215 LE(removed, 1, 2),
e025abff 216 LE(rescanned, 0, 0),
460b9539 217 LE(scratched, 2, 2),
218 LE(state, 1, 1),
219 LE(volume, 2, 2)
220};
221
222/* Setup and teardown ********************************************************/
223
0e4472a0 224/** @brief Create a new client
225 *
226 * Does NOT connect the client - connections are made (and re-made) on demand.
227 */
460b9539 228disorder_eclient *disorder_eclient_new(const disorder_eclient_callbacks *cb,
229 void *u) {
230 disorder_eclient *c = xmalloc(sizeof *c);
231 D(("disorder_eclient_new"));
232 c->fd = -1;
233 c->callbacks = cb;
234 c->u = u;
235 c->opstail = &c->ops;
236 vector_init(&c->vec);
237 dynstr_init(&c->input);
238 dynstr_init(&c->output);
239 return c;
240}
241
ad58ebcc 242/** @brief Disconnect a client
243 * @param c Client to disconnect
244 *
245 * NB that this routine just disconnnects the TCP connection. It does not
246 * destroy the client! If you continue to use it then it will attempt to
247 * reconnect.
248 */
460b9539 249void disorder_eclient_close(disorder_eclient *c) {
250 struct operation *op;
251
252 D(("disorder_eclient_close"));
253 if(c->fd != -1) {
254 D(("disorder_eclient_close closing fd %d", c->fd));
255 c->callbacks->poll(c->u, c, c->fd, 0);
256 xclose(c->fd);
257 c->fd = -1;
258 c->state = state_disconnected;
8f763f1b 259 c->statebits = 0;
460b9539 260 }
261 c->output.nvec = 0;
262 c->input.nvec = 0;
263 c->eof = 0;
264 c->authenticated = 0;
265 /* We'll need to resend all operations */
266 for(op = c->ops; op; op = op->next)
267 op->sent = 0;
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268 /* Drop our use a hint that we're disconnected */
269 if(c->log_callbacks && c->log_callbacks->state)
270 c->log_callbacks->state(c->log_v, c->statebits);
460b9539 271}
272
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273/** @brief Return current state */
274unsigned long disorder_eclient_state(const disorder_eclient *c) {
275 return c->statebits | (c->state > state_connected ? DISORDER_CONNECTED : 0);
ad58ebcc 276}
277
460b9539 278/* Error reporting ***********************************************************/
279
ad58ebcc 280/** @brief called when a connection error occurs
281 *
282 * After this called we will be disconnected (by disorder_eclient_close()),
283 * so there will be a reconnection before any commands can be sent.
284 */
460b9539 285static int comms_error(disorder_eclient *c, const char *fmt, ...) {
286 va_list ap;
287 char *s;
288
289 D(("comms_error"));
290 va_start(ap, fmt);
291 byte_xvasprintf(&s, fmt, ap);
292 va_end(ap);
293 disorder_eclient_close(c);
294 c->callbacks->comms_error(c->u, s);
295 return -1;
296}
297
0e4472a0 298/** @brief called when the server reports an error */
460b9539 299static int protocol_error(disorder_eclient *c, struct operation *op,
300 int code, const char *fmt, ...) {
301 va_list ap;
302 char *s;
303
304 D(("protocol_error"));
305 va_start(ap, fmt);
306 byte_xvasprintf(&s, fmt, ap);
307 va_end(ap);
308 c->callbacks->protocol_error(c->u, op->v, code, s);
309 return -1;
310}
311
312/* State machine *************************************************************/
313
0e4472a0 314/** @brief Called when there's something to do
315 * @param c Client
316 * @param mode bitmap of @ref DISORDER_POLL_READ and/or @ref DISORDER_POLL_WRITE.
317 *
318 * This should be called from by your code when the file descriptor is readable
319 * or writable (as requested by the @c poll callback, see @ref
320 * disorder_eclient_callbacks) and in any case from time to time (with @p mode
321 * = 0) to allow for retries to work.
322 */
460b9539 323void disorder_eclient_polled(disorder_eclient *c, unsigned mode) {
324 struct operation *op;
3f74b5dc 325 time_t now;
ad58ebcc 326
460b9539 327 D(("disorder_eclient_polled fd=%d state=%s mode=[%s %s]",
328 c->fd, states[c->state],
329 mode & DISORDER_POLL_READ ? "READ" : "",
330 mode & DISORDER_POLL_WRITE ? "WRITE" : ""));
331 /* The pattern here is to check each possible state in turn and try to
332 * advance (though on error we might go back). If we advance we leave open
333 * the possibility of falling through to the next state, but we set the mode
334 * bits to 0, to avoid false positives (which matter more in some cases than
335 * others). */
336
337 if(c->state == state_disconnected) {
338 D(("state_disconnected"));
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339 /* If there is no password yet then we cannot connect */
340 if(!config->password) {
341 comms_error(c, "no password is configured");
342 return;
343 }
460b9539 344 with_sockaddr(c, start_connect);
345 /* might now be state_disconnected (on error), state_connecting (slow
346 * connect) or state_connected (fast connect). If state_disconnected then
347 * we just rely on a periodic callback from the event loop sometime. */
348 mode = 0;
349 }
350
351 if(c->state == state_connecting && mode) {
352 D(("state_connecting"));
353 maybe_connected(c);
354 /* Might be state_disconnected (on error) or state_connected (on success).
355 * In the former case we rely on the event loop for a periodic callback to
356 * retry. */
357 mode = 0;
358 }
359
360 if(c->state == state_connected) {
361 D(("state_connected"));
362 /* We just connected. Initiate the authentication protocol. */
363 stash_command(c, 1/*queuejump*/, authbanner_opcallback,
364 0/*completed*/, 0/*v*/, 0/*cmd*/);
365 /* We never stay is state_connected very long. We could in principle jump
366 * straight to state_cmdresponse since there's actually no command to
367 * send, but that would arguably be cheating. */
368 c->state = state_idle;
369 }
370
371 if(c->state == state_idle) {
372 D(("state_idle"));
373 /* We are connected, and have finished any command we set off, look for
374 * some work to do */
375 if(c->ops) {
376 D(("have ops"));
377 if(c->authenticated) {
378 /* Transmit all unsent operations */
379 for(op = c->ops; op; op = op->next) {
380 if(!op->sent) {
381 put(c, op->cmd, strlen(op->cmd));
382 op->sent = 1;
383 }
384 }
385 } else {
386 /* Just send the head operation */
387 if(c->ops->cmd && !c->ops->sent) {
388 put(c, c->ops->cmd, strlen(c->ops->cmd));
389 c->ops->sent = 1;
390 }
391 }
392 /* Awaiting response for the operation at the head of the list */
393 c->state = state_cmdresponse;
394 } else
395 /* genuinely idle */
396 c->callbacks->report(c->u, 0);
397 }
398
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399 /* Queue up a byte to send */
400 if(c->state == state_log
401 && c->output.nvec == 0
402 && time(&now) - c->last_prod > LOG_PROD_INTERVAL) {
403 put(c, "x", 1);
404 c->last_prod = now;
405 }
406
460b9539 407 if(c->state == state_cmdresponse
408 || c->state == state_body
409 || c->state == state_log) {
410 D(("state_%s", states[c->state]));
411 /* We are awaiting a response */
412 if(mode & DISORDER_POLL_WRITE) send_output(c);
413 if(mode & DISORDER_POLL_READ) read_input(c);
414 /* There are a couple of reasons we might want to re-enter the state
415 * machine from the top. state_idle is obvious: there may be further
416 * commands to process. Re-entering on state_disconnected means that we
417 * immediately retry connection if a comms error occurs during a command.
418 * This is different to the case where a connection fails, where we await a
419 * spontaneous call to initiate the retry. */
420 switch(c->state) {
421 case state_disconnected: /* lost connection */
422 case state_idle: /* completed a command */
423 D(("retrying"));
424 disorder_eclient_polled(c, 0);
425 return;
426 default:
427 break;
428 }
429 }
430
431 /* Figure out what to set the mode to */
432 switch(c->state) {
433 case state_disconnected:
434 D(("state_disconnected (2)"));
435 /* Probably an error occurred. Await a retry. */
436 mode = 0;
437 break;
438 case state_connecting:
439 D(("state_connecting (2)"));
440 /* Waiting for connect to complete */
441 mode = DISORDER_POLL_READ|DISORDER_POLL_WRITE;
442 break;
443 case state_connected:
444 D(("state_connected (2)"));
445 assert(!"should never be in state_connected here");
446 break;
447 case state_idle:
448 D(("state_idle (2)"));
449 /* Connected but nothing to do. */
450 mode = 0;
451 break;
452 case state_cmdresponse:
453 case state_body:
454 case state_log:
455 D(("state_%s (2)", states[c->state]));
456 /* Gathering a response. Wait for input. */
457 mode = DISORDER_POLL_READ;
458 /* Flush any pending output. */
459 if(c->output.nvec) mode |= DISORDER_POLL_WRITE;
460 break;
461 }
462 D(("fd=%d new mode [%s %s]",
463 c->fd,
464 mode & DISORDER_POLL_READ ? "READ" : "",
465 mode & DISORDER_POLL_WRITE ? "WRITE" : ""));
466 if(c->fd != -1) c->callbacks->poll(c->u, c, c->fd, mode);
467}
468
0e4472a0 469/** @brief Called to start connecting */
460b9539 470static int start_connect(void *cc,
471 const struct sockaddr *sa,
472 socklen_t len,
473 const char *ident) {
474 disorder_eclient *c = cc;
475
476 D(("start_connect"));
477 c->ident = xstrdup(ident);
478 if(c->fd != -1) {
479 xclose(c->fd);
480 c->fd = -1;
481 }
482 if((c->fd = socket(sa->sa_family, SOCK_STREAM, 0)) < 0)
483 return comms_error(c, "socket: %s", strerror(errno));
484 c->eof = 0;
485 nonblock(c->fd);
3f74b5dc 486 cloexec(c->fd);
460b9539 487 if(connect(c->fd, sa, len) < 0) {
488 switch(errno) {
489 case EINTR:
490 case EINPROGRESS:
491 c->state = state_connecting;
492 /* We are called from _polled so the state machine will get to do its
493 * thing */
494 return 0;
495 default:
496 /* Signal the error to the caller. */
497 return comms_error(c, "connecting to %s: %s", ident, strerror(errno));
498 }
499 } else
500 c->state = state_connected;
501 return 0;
502}
503
ad58ebcc 504/** @brief Called when poll triggers while waiting for a connection */
460b9539 505static void maybe_connected(disorder_eclient *c) {
506 /* We either connected, or got an error. */
507 int err;
508 socklen_t len = sizeof err;
509
510 D(("maybe_connected"));
511 /* Work around over-enthusiastic error slippage */
512 if(getsockopt(c->fd, SOL_SOCKET, SO_ERROR, &err, &len) < 0)
513 err = errno;
514 if(err) {
515 /* The connection failed */
516 comms_error(c, "connecting to %s: %s", c->ident, strerror(err));
517 /* sets state_disconnected */
518 } else {
e836b1aa 519 char *r;
520
460b9539 521 /* The connection succeeded */
522 c->state = state_connected;
e836b1aa 523 byte_xasprintf(&r, "connected to %s", c->ident);
524 c->callbacks->report(c->u, r);
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525 /* If this is a log client we expect to get a bunch of updates from the
526 * server straight away */
460b9539 527 }
528}
529
530/* Authentication ************************************************************/
531
532static void authbanner_opcallback(disorder_eclient *c,
533 struct operation *op) {
534 size_t nonce_len;
535 const unsigned char *nonce;
536 const char *res;
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537 char **rvec;
538 int nrvec;
539 const char *algo = "SHA1";
460b9539 540
541 D(("authbanner_opcallback"));
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542 if(c->rc / 100 != 2
543 || !(rvec = split(c->line + 4, &nrvec, SPLIT_QUOTES, 0, 0))
544 || nrvec < 1) {
545 /* Banner told us to go away, or was malformed. We cannot proceed. */
460b9539 546 protocol_error(c, op, c->rc, "%s: %s", c->ident, c->line);
547 disorder_eclient_close(c);
548 return;
549 }
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550 if(nrvec > 1) {
551 algo = *rvec++;
552 --nrvec;
553 }
d7167e89 554 nonce = unhex(rvec[0], &nonce_len);
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555 res = authhash(nonce, nonce_len, config->password, algo);
556 if(!res) {
557 protocol_error(c, op, c->rc, "%s: unknown authentication algorithm '%s'",
558 c->ident, algo);
559 disorder_eclient_close(c);
560 return;
561 }
460b9539 562 stash_command(c, 1/*queuejump*/, authuser_opcallback, 0/*completed*/, 0/*v*/,
563 "user", quoteutf8(config->username), quoteutf8(res),
564 (char *)0);
565}
566
567static void authuser_opcallback(disorder_eclient *c,
568 struct operation *op) {
e836b1aa 569 char *r;
570
460b9539 571 D(("authuser_opcallback"));
572 if(c->rc / 100 != 2) {
573 /* Wrong password or something. We cannot proceed. */
574 protocol_error(c, op, c->rc, "%s: %s", c->ident, c->line);
575 disorder_eclient_close(c);
576 return;
577 }
578 /* OK, we're authenticated now. */
579 c->authenticated = 1;
e836b1aa 580 byte_xasprintf(&r, "authenticated with %s", c->ident);
581 c->callbacks->report(c->u, r);
460b9539 582 if(c->log_callbacks && !(c->ops && c->ops->opcallback == log_opcallback))
583 /* We are a log client, switch to logging mode */
584 stash_command(c, 0/*queuejump*/, log_opcallback, 0/*completed*/, c->log_v,
585 "log", (char *)0);
586}
587
588/* Output ********************************************************************/
589
590/* Chop N bytes off the front of a dynstr */
591static void consume(struct dynstr *d, int n) {
592 D(("consume %d", n));
593 assert(d->nvec >= n);
594 memmove(d->vec, d->vec + n, d->nvec - n);
595 d->nvec -= n;
596}
597
598/* Write some bytes */
599static void put(disorder_eclient *c, const char *s, size_t n) {
600 D(("put %d %.*s", c->fd, (int)n, s));
601 dynstr_append_bytes(&c->output, s, n);
602}
603
604/* Called when we can write to our FD, or at any other time */
605static void send_output(disorder_eclient *c) {
606 int n;
607
608 D(("send_output %d bytes pending", c->output.nvec));
609 if(c->state > state_connecting && c->output.nvec) {
610 n = write(c->fd, c->output.vec, c->output.nvec);
611 if(n < 0) {
612 switch(errno) {
613 case EINTR:
614 case EAGAIN:
615 break;
616 default:
617 comms_error(c, "writing to %s: %s", c->ident, strerror(errno));
618 break;
619 }
620 } else
621 consume(&c->output, n);
622 }
623}
624
625/* Input *********************************************************************/
626
627/* Called when c->fd might be readable, or at any other time */
628static void read_input(disorder_eclient *c) {
629 char *nl;
630 int n;
631 char buffer[512];
632
633 D(("read_input in state %s", states[c->state]));
634 if(c->state <= state_connected) return; /* ignore bogus calls */
635 /* read some more input */
636 n = read(c->fd, buffer, sizeof buffer);
637 if(n < 0) {
638 switch(errno) {
639 case EINTR:
640 case EAGAIN:
641 break;
642 default:
643 comms_error(c, "reading from %s: %s", c->ident, strerror(errno));
644 break;
645 }
646 return; /* no new input to process */
647 } else if(n) {
648 D(("read %d bytes: [%.*s]", n, n, buffer));
649 dynstr_append_bytes(&c->input, buffer, n);
650 } else
651 c->eof = 1;
652 /* might have more than one line to process */
653 while(c->state > state_connecting
654 && (nl = memchr(c->input.vec, '\n', c->input.nvec))) {
655 process_line(c, xstrndup(c->input.vec, nl - c->input.vec));
656 /* we might have disconnected along the way, which zogs the input buffer */
657 if(c->state > state_connecting)
658 consume(&c->input, (nl - c->input.vec) + 1);
659 }
346ba8d5 660 if(c->eof) {
460b9539 661 comms_error(c, "reading from %s: server disconnected", c->ident);
346ba8d5 662 c->authenticated = 0;
663 }
460b9539 664}
665
666/* called with a line that has just been read */
667static void process_line(disorder_eclient *c, char *line) {
668 D(("process_line %d [%s]", c->fd, line));
669 switch(c->state) {
670 case state_cmdresponse:
671 /* This is the first line of a response */
672 if(!(line[0] >= '0' && line[0] <= '9'
673 && line[1] >= '0' && line[1] <= '9'
674 && line[2] >= '0' && line[2] <= '9'
675 && line[3] == ' '))
676 fatal(0, "invalid response from server: %s", line);
677 c->rc = (line[0] * 10 + line[1]) * 10 + line[2] - 111 * '0';
678 c->line = line;
679 switch(c->rc % 10) {
680 case 3:
681 /* We need to collect the body. */
682 c->state = state_body;
6a06a735 683 vector_init(&c->vec);
460b9539 684 break;
685 case 4:
686 assert(c->log_callbacks != 0);
687 if(c->log_callbacks->connected)
688 c->log_callbacks->connected(c->log_v);
689 c->state = state_log;
690 break;
691 default:
692 /* We've got the whole response. Go into the idle state so the state
693 * machine knows we're done and then call the operation callback. */
694 complete(c);
695 break;
696 }
697 break;
698 case state_body:
699 if(strcmp(line, ".")) {
700 /* A line from the body */
701 vector_append(&c->vec, line + (line[0] == '.'));
702 } else {
703 /* End of the body. */
704 vector_terminate(&c->vec);
705 complete(c);
706 }
707 break;
708 case state_log:
709 if(strcmp(line, ".")) {
710 logline(c, line + (line[0] == '.'));
711 } else
712 complete(c);
713 break;
714 default:
715 assert(!"wrong state for location");
716 break;
717 }
718}
719
720/* Called when an operation completes */
721static void complete(disorder_eclient *c) {
722 struct operation *op;
723
724 D(("complete"));
725 /* Pop the operation off the queue */
726 op = c->ops;
727 c->ops = op->next;
728 if(c->opstail == &op->next)
729 c->opstail = &c->ops;
730 /* If we've pipelined a command ahead then we go straight to cmdresponser.
731 * Otherwise we go to idle, which will arrange further sends. */
732 c->state = c->ops && c->ops->sent ? state_cmdresponse : state_idle;
733 op->opcallback(c, op);
734 /* Note that we always call the opcallback even on error, though command
735 * opcallbacks generally always do the same error handling, i.e. just call
736 * protocol_error(). It's the auth* opcallbacks that have different
737 * behaviour. */
738}
739
740/* Operation setup ***********************************************************/
741
742static void stash_command_vector(disorder_eclient *c,
743 int queuejump,
744 operation_callback *opcallback,
745 void (*completed)(),
746 void *v,
747 int ncmd,
748 char **cmd) {
749 struct operation *op = xmalloc(sizeof *op);
750 struct dynstr d;
751 int n;
752
753 if(cmd) {
754 dynstr_init(&d);
755 for(n = 0; n < ncmd; ++n) {
756 if(n)
757 dynstr_append(&d, ' ');
758 dynstr_append_string(&d, quoteutf8(cmd[n]));
759 }
760 dynstr_append(&d, '\n');
761 dynstr_terminate(&d);
762 op->cmd = d.vec;
763 } else
764 op->cmd = 0; /* usually, awaiting challenge */
765 op->opcallback = opcallback;
766 op->completed = completed;
767 op->v = v;
768 op->next = 0;
769 op->client = c;
770 assert(op->sent == 0);
771 if(queuejump) {
772 /* Authentication operations jump the queue of useful commands */
773 op->next = c->ops;
774 c->ops = op;
775 if(c->opstail == &c->ops)
776 c->opstail = &op->next;
777 for(op = c->ops; op; op = op->next)
778 assert(!op->sent);
779 } else {
780 *c->opstail = op;
781 c->opstail = &op->next;
782 }
783}
784
785static void vstash_command(disorder_eclient *c,
786 int queuejump,
787 operation_callback *opcallback,
788 void (*completed)(),
789 void *v,
790 const char *cmd, va_list ap) {
791 char *arg;
792 struct vector vec;
793
794 D(("vstash_command %s", cmd ? cmd : "NULL"));
795 if(cmd) {
796 vector_init(&vec);
797 vector_append(&vec, (char *)cmd);
798 while((arg = va_arg(ap, char *)))
799 vector_append(&vec, arg);
800 stash_command_vector(c, queuejump, opcallback, completed, v,
801 vec.nvec, vec.vec);
802 } else
803 stash_command_vector(c, queuejump, opcallback, completed, v, 0, 0);
804}
805
806static void stash_command(disorder_eclient *c,
807 int queuejump,
808 operation_callback *opcallback,
809 void (*completed)(),
810 void *v,
811 const char *cmd,
812 ...) {
813 va_list ap;
814
815 va_start(ap, cmd);
816 vstash_command(c, queuejump, opcallback, completed, v, cmd, ap);
817 va_end(ap);
818}
819
820/* Command support ***********************************************************/
821
822/* for commands with a simple string response */
823static void string_response_opcallback(disorder_eclient *c,
824 struct operation *op) {
825 D(("string_response_callback"));
826 if(c->rc / 100 == 2) {
827 if(op->completed)
828 ((disorder_eclient_string_response *)op->completed)(op->v, c->line + 4);
829 } else
830 protocol_error(c, op, c->rc, "%s: %s", c->ident, c->line);
831}
832
833/* for commands with a simple integer response */
834static void integer_response_opcallback(disorder_eclient *c,
835 struct operation *op) {
836 D(("string_response_callback"));
837 if(c->rc / 100 == 2) {
838 if(op->completed)
839 ((disorder_eclient_integer_response *)op->completed)
840 (op->v, strtol(c->line + 4, 0, 10));
841 } else
842 protocol_error(c, op, c->rc, "%s: %s", c->ident, c->line);
843}
844
845/* for commands with no response */
846static void no_response_opcallback(disorder_eclient *c,
847 struct operation *op) {
848 D(("no_response_callback"));
849 if(c->rc / 100 == 2) {
850 if(op->completed)
851 ((disorder_eclient_no_response *)op->completed)(op->v);
852 } else
853 protocol_error(c, op, c->rc, "%s: %s", c->ident, c->line);
854}
855
856/* error callback for queue_unmarshall */
857static void eclient_queue_error(const char *msg,
858 void *u) {
859 struct operation *op = u;
860
861 protocol_error(op->client, op, -1, "error parsing queue entry: %s", msg);
862}
863
864/* for commands that expect a queue dump */
865static void queue_response_opcallback(disorder_eclient *c,
866 struct operation *op) {
867 int n;
868 struct queue_entry *q, *qh = 0, **qtail = &qh, *qlast = 0;
869
870 D(("queue_response_callback"));
871 if(c->rc / 100 == 2) {
872 /* parse the queue */
873 for(n = 0; n < c->vec.nvec; ++n) {
874 q = xmalloc(sizeof *q);
875 D(("queue_unmarshall %s", c->vec.vec[n]));
876 if(!queue_unmarshall(q, c->vec.vec[n], eclient_queue_error, op)) {
877 q->prev = qlast;
878 *qtail = q;
879 qtail = &q->next;
880 qlast = q;
881 }
882 }
883 if(op->completed)
884 ((disorder_eclient_queue_response *)op->completed)(op->v, qh);
885 } else
886 protocol_error(c, op, c->rc, "%s: %s", c->ident, c->line);
887}
888
889/* for 'playing' */
890static void playing_response_opcallback(disorder_eclient *c,
891 struct operation *op) {
892 struct queue_entry *q;
893
894 D(("playing_response_callback"));
895 if(c->rc / 100 == 2) {
896 switch(c->rc % 10) {
897 case 2:
898 if(queue_unmarshall(q = xmalloc(sizeof *q), c->line + 4,
899 eclient_queue_error, c))
900 return;
901 break;
902 case 9:
903 q = 0;
904 break;
905 default:
906 protocol_error(c, op, c->rc, "%s: %s", c->ident, c->line);
907 return;
908 }
909 if(op->completed)
910 ((disorder_eclient_queue_response *)op->completed)(op->v, q);
911 } else
912 protocol_error(c, op, c->rc, "%s: %s", c->ident, c->line);
913}
914
915/* for commands that expect a list of some sort */
916static void list_response_opcallback(disorder_eclient *c,
917 struct operation *op) {
918 D(("list_response_callback"));
919 if(c->rc / 100 == 2) {
920 if(op->completed)
921 ((disorder_eclient_list_response *)op->completed)(op->v,
922 c->vec.nvec,
923 c->vec.vec);
924 } else
925 protocol_error(c, op, c->rc, "%s: %s", c->ident, c->line);
926}
927
928/* for volume */
929static void volume_response_opcallback(disorder_eclient *c,
930 struct operation *op) {
931 int l, r;
932
933 D(("volume_response_callback"));
934 if(c->rc / 100 == 2) {
935 if(op->completed) {
936 if(sscanf(c->line + 4, "%d %d", &l, &r) != 2 || l < 0 || r < 0)
937 protocol_error(c, op, -1, "%s: invalid volume response: %s",
938 c->ident, c->line);
939 else
940 ((disorder_eclient_volume_response *)op->completed)(op->v, l, r);
941 }
942 } else
943 protocol_error(c, op, c->rc, "%s: %s", c->ident, c->line);
944}
945
946static int simple(disorder_eclient *c,
947 operation_callback *opcallback,
948 void (*completed)(),
949 void *v,
950 const char *cmd, ...) {
951 va_list ap;
952
953 va_start(ap, cmd);
954 vstash_command(c, 0/*queuejump*/, opcallback, completed, v, cmd, ap);
955 va_end(ap);
956 /* Give the state machine a kick, since we might be in state_idle */
957 disorder_eclient_polled(c, 0);
958 return 0;
959}
960
961/* Commands ******************************************************************/
962
963int disorder_eclient_version(disorder_eclient *c,
964 disorder_eclient_string_response *completed,
965 void *v) {
966 return simple(c, string_response_opcallback, (void (*)())completed, v,
967 "version", (char *)0);
968}
969
970int disorder_eclient_namepart(disorder_eclient *c,
971 disorder_eclient_string_response *completed,
972 const char *track,
973 const char *context,
974 const char *part,
975 void *v) {
976 return simple(c, string_response_opcallback, (void (*)())completed, v,
977 "part", track, context, part, (char *)0);
978}
979
980int disorder_eclient_play(disorder_eclient *c,
981 const char *track,
982 disorder_eclient_no_response *completed,
983 void *v) {
984 return simple(c, no_response_opcallback, (void (*)())completed, v,
985 "play", track, (char *)0);
986}
987
988int disorder_eclient_pause(disorder_eclient *c,
989 disorder_eclient_no_response *completed,
990 void *v) {
991 return simple(c, no_response_opcallback, (void (*)())completed, v,
992 "pause", (char *)0);
993}
994
995int disorder_eclient_resume(disorder_eclient *c,
996 disorder_eclient_no_response *completed,
997 void *v) {
998 return simple(c, no_response_opcallback, (void (*)())completed, v,
999 "resume", (char *)0);
1000}
1001
1002int disorder_eclient_scratch(disorder_eclient *c,
1003 const char *id,
1004 disorder_eclient_no_response *completed,
1005 void *v) {
1006 return simple(c, no_response_opcallback, (void (*)())completed, v,
1007 "scratch", id, (char *)0);
1008}
1009
1010int disorder_eclient_scratch_playing(disorder_eclient *c,
1011 disorder_eclient_no_response *completed,
1012 void *v) {
1013 return disorder_eclient_scratch(c, 0, completed, v);
1014}
1015
1016int disorder_eclient_remove(disorder_eclient *c,
1017 const char *id,
1018 disorder_eclient_no_response *completed,
1019 void *v) {
1020 return simple(c, no_response_opcallback, (void (*)())completed, v,
1021 "remove", id, (char *)0);
1022}
1023
1024int disorder_eclient_moveafter(disorder_eclient *c,
1025 const char *target,
1026 int nids,
1027 const char **ids,
1028 disorder_eclient_no_response *completed,
1029 void *v) {
1030 struct vector vec;
1031 int n;
1032
1033 vector_init(&vec);
1034 vector_append(&vec, (char *)"moveafter");
1035 vector_append(&vec, (char *)target);
1036 for(n = 0; n < nids; ++n)
1037 vector_append(&vec, (char *)ids[n]);
1038 stash_command_vector(c, 0/*queuejump*/, no_response_opcallback, completed, v,
1039 vec.nvec, vec.vec);
1040 disorder_eclient_polled(c, 0);
1041 return 0;
1042}
1043
1044int disorder_eclient_recent(disorder_eclient *c,
1045 disorder_eclient_queue_response *completed,
1046 void *v) {
1047 return simple(c, queue_response_opcallback, (void (*)())completed, v,
1048 "recent", (char *)0);
1049}
1050
1051int disorder_eclient_queue(disorder_eclient *c,
1052 disorder_eclient_queue_response *completed,
1053 void *v) {
1054 return simple(c, queue_response_opcallback, (void (*)())completed, v,
1055 "queue", (char *)0);
1056}
1057
1058int disorder_eclient_files(disorder_eclient *c,
1059 disorder_eclient_list_response *completed,
1060 const char *dir,
1061 const char *re,
1062 void *v) {
1063 return simple(c, list_response_opcallback, (void (*)())completed, v,
1064 "files", dir, re, (char *)0);
1065}
1066
1067int disorder_eclient_dirs(disorder_eclient *c,
1068 disorder_eclient_list_response *completed,
1069 const char *dir,
1070 const char *re,
1071 void *v) {
1072 return simple(c, list_response_opcallback, (void (*)())completed, v,
1073 "dirs", dir, re, (char *)0);
1074}
1075
1076int disorder_eclient_playing(disorder_eclient *c,
1077 disorder_eclient_queue_response *completed,
1078 void *v) {
1079 return simple(c, playing_response_opcallback, (void (*)())completed, v,
1080 "playing", (char *)0);
1081}
1082
1083int disorder_eclient_length(disorder_eclient *c,
1084 disorder_eclient_integer_response *completed,
1085 const char *track,
1086 void *v) {
1087 return simple(c, integer_response_opcallback, (void (*)())completed, v,
1088 "length", track, (char *)0);
1089}
1090
1091int disorder_eclient_volume(disorder_eclient *c,
1092 disorder_eclient_volume_response *completed,
1093 int l, int r,
1094 void *v) {
1095 char sl[64], sr[64];
1096
1097 if(l < 0 && r < 0) {
1098 return simple(c, volume_response_opcallback, (void (*)())completed, v,
1099 "volume", (char *)0);
1100 } else if(l >= 0 && r >= 0) {
1101 assert(l <= 100);
1102 assert(r <= 100);
1103 byte_snprintf(sl, sizeof sl, "%d", l);
1104 byte_snprintf(sr, sizeof sr, "%d", r);
1105 return simple(c, volume_response_opcallback, (void (*)())completed, v,
1106 "volume", sl, sr, (char *)0);
1107 } else {
1108 assert(!"invalid arguments to disorder_eclient_volume");
1109 return -1; /* gcc is being dim */
1110 }
1111}
1112
1113int disorder_eclient_enable(disorder_eclient *c,
1114 disorder_eclient_no_response *completed,
1115 void *v) {
1116 return simple(c, no_response_opcallback, (void (*)())completed, v,
1117 "enable", (char *)0);
1118}
1119
1120int disorder_eclient_disable(disorder_eclient *c,
1121 disorder_eclient_no_response *completed,
1122 void *v){
1123 return simple(c, no_response_opcallback, (void (*)())completed, v,
1124 "disable", (char *)0);
1125}
1126
1127int disorder_eclient_random_enable(disorder_eclient *c,
1128 disorder_eclient_no_response *completed,
1129 void *v){
1130 return simple(c, no_response_opcallback, (void (*)())completed, v,
1131 "random-enable", (char *)0);
1132}
1133
1134int disorder_eclient_random_disable(disorder_eclient *c,
1135 disorder_eclient_no_response *completed,
1136 void *v){
1137 return simple(c, no_response_opcallback, (void (*)())completed, v,
1138 "random-disable", (char *)0);
1139}
1140
1141int disorder_eclient_get(disorder_eclient *c,
1142 disorder_eclient_string_response *completed,
1143 const char *track, const char *pref,
1144 void *v) {
1145 return simple(c, string_response_opcallback, (void (*)())completed, v,
1146 "get", track, pref, (char *)0);
1147}
1148
1149int disorder_eclient_set(disorder_eclient *c,
1150 disorder_eclient_no_response *completed,
1151 const char *track, const char *pref,
1152 const char *value,
1153 void *v) {
1154 return simple(c, no_response_opcallback, (void (*)())completed, v,
1155 "set", track, pref, value, (char *)0);
1156}
1157
1158int disorder_eclient_unset(disorder_eclient *c,
1159 disorder_eclient_no_response *completed,
1160 const char *track, const char *pref,
1161 void *v) {
1162 return simple(c, no_response_opcallback, (void (*)())completed, v,
1163 "unset", track, pref, (char *)0);
1164}
1165
1166int disorder_eclient_resolve(disorder_eclient *c,
1167 disorder_eclient_string_response *completed,
1168 const char *track,
1169 void *v) {
1170 return simple(c, string_response_opcallback, (void (*)())completed, v,
1171 "resolve", track, (char *)0);
1172}
1173
1174int disorder_eclient_search(disorder_eclient *c,
1175 disorder_eclient_list_response *completed,
1176 const char *terms,
1177 void *v) {
1178 if(!split(terms, 0, SPLIT_QUOTES, 0, 0)) return -1;
1179 return simple(c, list_response_opcallback, (void (*)())completed, v,
1180 "search", terms, (char *)0);
1181}
1182
7858930d 1183int disorder_eclient_nop(disorder_eclient *c,
1184 disorder_eclient_no_response *completed,
1185 void *v) {
1186 return simple(c, no_response_opcallback, (void (*)())completed, v,
1187 "nop", (char *)0);
1188}
1189
2a10b70b
RK
1190/** @brief Get the last @p max added tracks
1191 * @param c Client
1192 * @param completed Called with list
1193 * @param max Number of tracks to get, 0 for all
1194 * @param v Passed to @p completed
1195 *
1196 * The first track in the list is the most recently added.
1197 */
1198int disorder_eclient_new_tracks(disorder_eclient *c,
1199 disorder_eclient_list_response *completed,
1200 int max,
1201 void *v) {
1202 char limit[32];
1203
1204 sprintf(limit, "%d", max);
1205 return simple(c, list_response_opcallback, (void (*)())completed, v,
1206 "new", limit, (char *)0);
1207}
1208
a99c4e9a
RK
1209static void rtp_response_opcallback(disorder_eclient *c,
1210 struct operation *op) {
1211 D(("rtp_response_opcallback"));
1212 if(c->rc / 100 == 2) {
1213 if(op->completed) {
1214 int nvec;
1215 char **vec = split(c->line + 4, &nvec, SPLIT_QUOTES, 0, 0);
1216
1217 ((disorder_eclient_list_response *)op->completed)(op->v, nvec, vec);
1218 }
1219 } else
1220 protocol_error(c, op, c->rc, "%s: %s", c->ident, c->line);
1221}
1222
1223/** @brief Determine the RTP target address
1224 * @param c Client
1225 * @param completed Called with address details
1226 * @param v Passed to @p completed
1227 *
1228 * The address details will be two elements, the first being the hostname and
1229 * the second the service (port).
1230 */
1231int disorder_eclient_rtp_address(disorder_eclient *c,
1232 disorder_eclient_list_response *completed,
1233 void *v) {
1234 return simple(c, rtp_response_opcallback, (void (*)())completed, v,
1235 "rtp-address", (char *)0);
1236}
1237
460b9539 1238/* Log clients ***************************************************************/
1239
60b95b6e 1240/** @brief Monitor the server log
1241 * @param c Client
1242 * @param callbacks Functions to call when anything happens
1243 * @param v Passed to @p callbacks functions
1244 *
1245 * Once a client is being used for logging it cannot be used for anything else.
1246 * There is magic in authuser_opcallback() to re-submit the @c log command
1247 * after reconnection.
6d1302f0
RK
1248 *
1249 * NB that the @c state callback may be called from within this function,
1250 * i.e. not solely later on from the event loop callback.
60b95b6e 1251 */
460b9539 1252int disorder_eclient_log(disorder_eclient *c,
1253 const disorder_eclient_log_callbacks *callbacks,
1254 void *v) {
1255 if(c->log_callbacks) return -1;
1256 c->log_callbacks = callbacks;
1257 c->log_v = v;
6d1302f0
RK
1258 /* Repoort initial state */
1259 if(c->log_callbacks->state)
1260 c->log_callbacks->state(c->log_v, c->statebits);
460b9539 1261 stash_command(c, 0/*queuejump*/, log_opcallback, 0/*completed*/, v,
1262 "log", (char *)0);
1263 return 0;
1264}
1265
1266/* If we get here we've stopped being a log client */
1267static void log_opcallback(disorder_eclient *c,
1268 struct operation attribute((unused)) *op) {
1269 D(("log_opcallback"));
1270 c->log_callbacks = 0;
1271 c->log_v = 0;
1272}
1273
1274/* error callback for log line parsing */
1275static void logline_error(const char *msg, void *u) {
1276 disorder_eclient *c = u;
1277 protocol_error(c, c->ops, -1, "error parsing log line: %s", msg);
1278}
1279
1280/* process a single log line */
1281static void logline(disorder_eclient *c, const char *line) {
1282 int nvec, n;
1283 char **vec;
1284 uintmax_t when;
1285
6cd155a8 1286 D(("logline [%s]", line));
460b9539 1287 vec = split(line, &nvec, SPLIT_QUOTES, logline_error, c);
1288 if(nvec < 2) return; /* probably an error, already
1289 * reported */
1290 if(sscanf(vec[0], "%"SCNxMAX, &when) != 1) {
1291 /* probably the wrong side of a format change */
1292 protocol_error(c, c->ops, -1, "invalid log timestamp '%s'", vec[0]);
1293 return;
1294 }
1295 /* TODO: do something with the time */
1296 n = TABLE_FIND(logentry_handlers, struct logentry_handler, name, vec[1]);
1297 if(n < 0) return; /* probably a future command */
1298 vec += 2;
1299 nvec -= 2;
1300 if(nvec < logentry_handlers[n].min || nvec > logentry_handlers[n].max)
1301 return;
1302 logentry_handlers[n].handler(c, nvec, vec);
1303}
1304
1305static void logentry_completed(disorder_eclient *c,
1306 int attribute((unused)) nvec, char **vec) {
1307 if(!c->log_callbacks->completed) return;
277f7f59 1308 c->statebits &= ~DISORDER_PLAYING;
460b9539 1309 c->log_callbacks->completed(c->log_v, vec[0]);
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RK
1310 if(c->log_callbacks->state)
1311 c->log_callbacks->state(c->log_v, c->statebits | DISORDER_CONNECTED);
460b9539 1312}
1313
1314static void logentry_failed(disorder_eclient *c,
1315 int attribute((unused)) nvec, char **vec) {
1316 if(!c->log_callbacks->failed)return;
277f7f59 1317 c->statebits &= ~DISORDER_PLAYING;
460b9539 1318 c->log_callbacks->failed(c->log_v, vec[0], vec[1]);
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RK
1319 if(c->log_callbacks->state)
1320 c->log_callbacks->state(c->log_v, c->statebits | DISORDER_CONNECTED);
460b9539 1321}
1322
1323static void logentry_moved(disorder_eclient *c,
1324 int attribute((unused)) nvec, char **vec) {
1325 if(!c->log_callbacks->moved) return;
1326 c->log_callbacks->moved(c->log_v, vec[0]);
1327}
1328
1329static void logentry_playing(disorder_eclient *c,
1330 int attribute((unused)) nvec, char **vec) {
1331 if(!c->log_callbacks->playing) return;
277f7f59 1332 c->statebits |= DISORDER_PLAYING;
460b9539 1333 c->log_callbacks->playing(c->log_v, vec[0], vec[1]);
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RK
1334 if(c->log_callbacks->state)
1335 c->log_callbacks->state(c->log_v, c->statebits | DISORDER_CONNECTED);
460b9539 1336}
1337
1338static void logentry_queue(disorder_eclient *c,
1339 int attribute((unused)) nvec, char **vec) {
1340 struct queue_entry *q;
1341
1342 if(!c->log_callbacks->completed) return;
1343 q = xmalloc(sizeof *q);
1344 if(queue_unmarshall_vec(q, nvec, vec, eclient_queue_error, c))
1345 return; /* bogus */
1346 c->log_callbacks->queue(c->log_v, q);
1347}
1348
1349static void logentry_recent_added(disorder_eclient *c,
1350 int attribute((unused)) nvec, char **vec) {
1351 struct queue_entry *q;
1352
1353 if(!c->log_callbacks->recent_added) return;
1354 q = xmalloc(sizeof *q);
1355 if(queue_unmarshall_vec(q, nvec, vec, eclient_queue_error, c))
1356 return; /* bogus */
1357 c->log_callbacks->recent_added(c->log_v, q);
1358}
1359
1360static void logentry_recent_removed(disorder_eclient *c,
1361 int attribute((unused)) nvec, char **vec) {
1362 if(!c->log_callbacks->recent_removed) return;
1363 c->log_callbacks->recent_removed(c->log_v, vec[0]);
1364}
1365
1366static void logentry_removed(disorder_eclient *c,
1367 int attribute((unused)) nvec, char **vec) {
1368 if(!c->log_callbacks->removed) return;
1369 c->log_callbacks->removed(c->log_v, vec[0], vec[1]);
1370}
1371
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RK
1372static void logentry_rescanned(disorder_eclient *c,
1373 int attribute((unused)) nvec,
1374 char attribute((unused)) **vec) {
1375 if(!c->log_callbacks->rescanned) return;
1376 c->log_callbacks->rescanned(c->log_v);
1377}
1378
460b9539 1379static void logentry_scratched(disorder_eclient *c,
1380 int attribute((unused)) nvec, char **vec) {
1381 if(!c->log_callbacks->scratched) return;
277f7f59 1382 c->statebits &= ~DISORDER_PLAYING;
460b9539 1383 c->log_callbacks->scratched(c->log_v, vec[0], vec[1]);
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RK
1384 if(c->log_callbacks->state)
1385 c->log_callbacks->state(c->log_v, c->statebits | DISORDER_CONNECTED);
460b9539 1386}
1387
1388static const struct {
1389 unsigned long bit;
1390 const char *enable;
1391 const char *disable;
1392} statestrings[] = {
1393 { DISORDER_PLAYING_ENABLED, "enable_play", "disable_play" },
1394 { DISORDER_RANDOM_ENABLED, "enable_random", "disable_random" },
1395 { DISORDER_TRACK_PAUSED, "pause", "resume" },
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RK
1396 { DISORDER_PLAYING, "playing", "completed" },
1397 { DISORDER_PLAYING, 0, "scratched" },
1398 { DISORDER_PLAYING, 0, "failed" },
460b9539 1399};
6cd155a8 1400#define NSTATES (int)(sizeof statestrings / sizeof *statestrings)
460b9539 1401
1402static void logentry_state(disorder_eclient *c,
1403 int attribute((unused)) nvec, char **vec) {
1404 int n;
1405
1406 for(n = 0; n < NSTATES; ++n)
e56e1cc0 1407 if(statestrings[n].enable && !strcmp(vec[0], statestrings[n].enable)) {
460b9539 1408 c->statebits |= statestrings[n].bit;
1409 break;
e56e1cc0 1410 } else if(statestrings[n].disable && !strcmp(vec[0], statestrings[n].disable)) {
460b9539 1411 c->statebits &= ~statestrings[n].bit;
1412 break;
1413 }
1414 if(!c->log_callbacks->state) return;
8f763f1b 1415 c->log_callbacks->state(c->log_v, c->statebits | DISORDER_CONNECTED);
460b9539 1416}
1417
1418static void logentry_volume(disorder_eclient *c,
1419 int attribute((unused)) nvec, char **vec) {
1420 long l, r;
1421
1422 if(!c->log_callbacks->volume) return;
1423 if(xstrtol(&l, vec[0], 0, 10)
1424 || xstrtol(&r, vec[1], 0, 10)
1425 || l < 0 || l > INT_MAX
1426 || r < 0 || r > INT_MAX)
1427 return; /* bogus */
1428 c->log_callbacks->volume(c->log_v, (int)l, (int)r);
1429}
1430
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RK
1431/** @brief Convert @p statebits to a string */
1432char *disorder_eclient_interpret_state(unsigned long statebits) {
1433 struct dynstr d[1];
1434 size_t n;
1435
1436 static const struct {
1437 unsigned long bit;
1438 const char *name;
1439 } bits[] = {
1440 { DISORDER_PLAYING_ENABLED, "playing_enabled" },
1441 { DISORDER_RANDOM_ENABLED, "random_enabled" },
1442 { DISORDER_TRACK_PAUSED, "track_paused" },
1443 { DISORDER_PLAYING, "playing" },
1444 { DISORDER_CONNECTED, "connected" },
1445 };
1446#define NBITS (sizeof bits / sizeof *bits)
1447
1448 dynstr_init(d);
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RK
1449 if(!statebits)
1450 dynstr_append(d, '0');
00959300
RK
1451 for(n = 0; n < NBITS; ++n)
1452 if(statebits & bits[n].bit) {
1453 if(d->nvec)
1454 dynstr_append(d, '|');
1455 dynstr_append_string(d, bits[n].name);
1456 statebits ^= bits[n].bit;
1457 }
1458 if(statebits) {
1459 char s[20];
1460
1461 if(d->nvec)
1462 dynstr_append(d, '|');
1463 sprintf(s, "%#lx", statebits);
1464 dynstr_append_string(d, s);
1465 }
1466 dynstr_terminate(d);
1467 return d->vec;
1468}
1469
460b9539 1470/*
1471Local Variables:
1472c-basic-offset:2
1473comment-column:40
1474fill-column:79
1475indent-tabs-mode:nil
1476End:
1477*/