source: mainline/uspace/lib/libc/generic/async.c@ e3fa92aa

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since e3fa92aa was 953769f, checked in by Jakub Jermar <jakub@…>, 16 years ago

Handle pending input using only one fibril.
Relax serialization in console, keep your fingers crossed.
Do not create a new "pending" fibril after each received call.

  • Property mode set to 100644
File size: 27.3 KB
RevLine 
[06502f7d]1/*
[df4ed85]2 * Copyright (c) 2006 Ondrej Palkovsky
[06502f7d]3 * All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 *
9 * - Redistributions of source code must retain the above copyright
10 * notice, this list of conditions and the following disclaimer.
11 * - Redistributions in binary form must reproduce the above copyright
12 * notice, this list of conditions and the following disclaimer in the
13 * documentation and/or other materials provided with the distribution.
14 * - The name of the author may not be used to endorse or promote products
15 * derived from this software without specific prior written permission.
16 *
17 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
[b2951e2]27 */
28
[a46da63]29/** @addtogroup libc
[b2951e2]30 * @{
31 */
32/** @file
[c07544d3]33 */
[06502f7d]34
[80649a91]35/**
36 * Asynchronous library
37 *
[c07544d3]38 * The aim of this library is to provide a facility for writing programs which
39 * utilize the asynchronous nature of HelenOS IPC, yet using a normal way of
40 * programming.
[80649a91]41 *
[9591265]42 * You should be able to write very simple multithreaded programs, the async
43 * framework will automatically take care of most synchronization problems.
[80649a91]44 *
45 * Default semantics:
[c07544d3]46 * - async_send_*(): Send asynchronously. If the kernel refuses to send
47 * more messages, [ try to get responses from kernel, if
48 * nothing found, might try synchronous ]
[80649a91]49 *
[9591265]50 * Example of use (pseudo C):
[c07544d3]51 *
[80649a91]52 * 1) Multithreaded client application
[9591265]53 *
[c07544d3]54 * fibril_create(fibril1, ...);
55 * fibril_create(fibril2, ...);
56 * ...
57 *
58 * int fibril1(void *arg)
59 * {
60 * conn = ipc_connect_me_to();
61 * c1 = async_send(conn);
62 * c2 = async_send(conn);
63 * async_wait_for(c1);
64 * async_wait_for(c2);
65 * ...
66 * }
[80649a91]67 *
68 *
69 * 2) Multithreaded server application
70 *
[c07544d3]71 * main()
72 * {
73 * async_manager();
74 * }
75 *
76 * my_client_connection(icallid, *icall)
77 * {
78 * if (want_refuse) {
79 * ipc_answer_0(icallid, ELIMIT);
80 * return;
81 * }
82 * ipc_answer_0(icallid, EOK);
[80649a91]83 *
[c07544d3]84 * callid = async_get_call(&call);
85 * handle_call(callid, call);
86 * ipc_answer_2(callid, 1, 2, 3);
[53ca318]87 *
[c07544d3]88 * callid = async_get_call(&call);
89 * ...
90 * }
[a2cd194]91 *
[80649a91]92 */
[9591265]93
[80649a91]94#include <futex.h>
95#include <async.h>
[bc1f1c2]96#include <fibril.h>
[80649a91]97#include <stdio.h>
[d9c8c81]98#include <adt/hash_table.h>
99#include <adt/list.h>
[80649a91]100#include <ipc/ipc.h>
101#include <assert.h>
102#include <errno.h>
[daa90e8]103#include <sys/time.h>
[c042bdd]104#include <arch/barrier.h>
[0cc4313]105#include <bool.h>
[80649a91]106
[fc42b28]107atomic_t async_futex = FUTEX_INITIALIZER;
[80649a91]108
[e70bfa5]109/** Structures of this type represent a waiting fibril. */
[01ff41c]110typedef struct {
[e70bfa5]111 /** Expiration time. */
[c07544d3]112 struct timeval expires;
113
[bc1f1c2]114 /** If true, this struct is in the timeout list. */
[c07544d3]115 bool inlist;
116
[e70bfa5]117 /** Timeout list link. */
[49d072e]118 link_t link;
[c07544d3]119
[36c9234]120 /** Identification of and link to the waiting fibril. */
[bc1f1c2]121 fid_t fid;
[c07544d3]122
[e70bfa5]123 /** If true, this fibril is currently active. */
[c07544d3]124 bool active;
125
[e70bfa5]126 /** If true, we have timed out. */
[c07544d3]127 bool timedout;
[49d072e]128} awaiter_t;
129
130typedef struct {
131 awaiter_t wdata;
[e70bfa5]132
133 /** If reply was received. */
[c07544d3]134 bool done;
135
[e70bfa5]136 /** Pointer to where the answer data is stored. */
[c07544d3]137 ipc_call_t *dataptr;
138
[01ff41c]139 ipcarg_t retval;
140} amsg_t;
141
[36c9234]142/**
143 * Structures of this type are used to group information about a call and a
144 * message queue link.
145 */
[80649a91]146typedef struct {
147 link_t link;
148 ipc_callid_t callid;
149 ipc_call_t call;
150} msg_t;
151
152typedef struct {
[49d072e]153 awaiter_t wdata;
[c07544d3]154
[e70bfa5]155 /** Hash table link. */
156 link_t link;
[c07544d3]157
[e70bfa5]158 /** Incoming phone hash. */
[c07544d3]159 ipcarg_t in_phone_hash;
160
[e70bfa5]161 /** Messages that should be delivered to this fibril. */
[c07544d3]162 link_t msg_queue;
163
[e70bfa5]164 /** Identification of the opening call. */
[80649a91]165 ipc_callid_t callid;
[e70bfa5]166 /** Call data of the opening call. */
[80649a91]167 ipc_call_t call;
[c07544d3]168
[e70bfa5]169 /** Identification of the closing call. */
170 ipc_callid_t close_callid;
[c07544d3]171
[e70bfa5]172 /** Fibril function that will be used to handle the connection. */
[bc1f1c2]173 void (*cfibril)(ipc_callid_t, ipc_call_t *);
[80649a91]174} connection_t;
175
[bc1f1c2]176/** Identifier of the incoming connection handled by the current fibril. */
[26360f7]177fibril_local connection_t *FIBRIL_connection;
[e70bfa5]178
[da0c91e7]179static void default_client_connection(ipc_callid_t callid, ipc_call_t *call);
[51dbadf3]180static void default_interrupt_received(ipc_callid_t callid, ipc_call_t *call);
[36c9234]181
182/**
183 * Pointer to a fibril function that will be used to handle connections.
184 */
[da0c91e7]185static async_client_conn_t client_connection = default_client_connection;
[c07544d3]186
[36c9234]187/**
188 * Pointer to a fibril function that will be used to handle interrupt
189 * notifications.
190 */
[51dbadf3]191static async_client_conn_t interrupt_received = default_interrupt_received;
[da0c91e7]192
[c07544d3]193static hash_table_t conn_hash_table;
194static LIST_INITIALIZE(timeout_list);
195
196#define CONN_HASH_TABLE_CHAINS 32
[80649a91]197
[e70bfa5]198/** Compute hash into the connection hash table based on the source phone hash.
199 *
[c07544d3]200 * @param key Pointer to source phone hash.
201 *
202 * @return Index into the connection hash table.
[e70bfa5]203 *
204 */
[80649a91]205static hash_index_t conn_hash(unsigned long *key)
[450cd3a]206{
[80649a91]207 assert(key);
[c07544d3]208 return (((*key) >> 4) % CONN_HASH_TABLE_CHAINS);
[450cd3a]209}
[06502f7d]210
[e70bfa5]211/** Compare hash table item with a key.
212 *
[c07544d3]213 * @param key Array containing the source phone hash as the only item.
214 * @param keys Expected 1 but ignored.
215 * @param item Connection hash table item.
216 *
217 * @return True on match, false otherwise.
[e70bfa5]218 *
219 */
[80649a91]220static int conn_compare(unsigned long key[], hash_count_t keys, link_t *item)
[450cd3a]221{
[c07544d3]222 connection_t *hs = hash_table_get_instance(item, connection_t, link);
223 return (key[0] == hs->in_phone_hash);
[450cd3a]224}
[06502f7d]225
[e70bfa5]226/** Connection hash table removal callback function.
227 *
228 * This function is called whenever a connection is removed from the connection
229 * hash table.
230 *
[c07544d3]231 * @param item Connection hash table item being removed.
232 *
[e70bfa5]233 */
[80649a91]234static void conn_remove(link_t *item)
[450cd3a]235{
[80649a91]236 free(hash_table_get_instance(item, connection_t, link));
[450cd3a]237}
238
[80649a91]239
[e70bfa5]240/** Operations for the connection hash table. */
[80649a91]241static hash_table_operations_t conn_hash_table_ops = {
242 .hash = conn_hash,
243 .compare = conn_compare,
244 .remove_callback = conn_remove
245};
246
[e70bfa5]247/** Sort in current fibril's timeout request.
[49d072e]248 *
[c07544d3]249 * @param wd Wait data of the current fibril.
250 *
[49d072e]251 */
252static void insert_timeout(awaiter_t *wd)
253{
[c07544d3]254 wd->timedout = false;
255 wd->inlist = true;
256
257 link_t *tmp = timeout_list.next;
[49d072e]258 while (tmp != &timeout_list) {
[c07544d3]259 awaiter_t *cur = list_get_instance(tmp, awaiter_t, link);
260
[49d072e]261 if (tv_gteq(&cur->expires, &wd->expires))
262 break;
[c07544d3]263
[49d072e]264 tmp = tmp->next;
265 }
[c07544d3]266
[49d072e]267 list_append(&wd->link, tmp);
268}
269
[e70bfa5]270/** Try to route a call to an appropriate connection fibril.
[80649a91]271 *
[36c9234]272 * If the proper connection fibril is found, a message with the call is added to
273 * its message queue. If the fibril was not active, it is activated and all
274 * timeouts are unregistered.
275 *
[c07544d3]276 * @param callid Hash of the incoming call.
277 * @param call Data of the incoming call.
278 *
279 * @return False if the call doesn't match any connection.
280 * True if the call was passed to the respective connection fibril.
[36c9234]281 *
[80649a91]282 */
[c07544d3]283static bool route_call(ipc_callid_t callid, ipc_call_t *call)
[450cd3a]284{
[01ff41c]285 futex_down(&async_futex);
[c07544d3]286
287 unsigned long key = call->in_phone_hash;
288 link_t *hlp = hash_table_find(&conn_hash_table, &key);
289
[80649a91]290 if (!hlp) {
[01ff41c]291 futex_up(&async_futex);
[c07544d3]292 return false;
[450cd3a]293 }
[c07544d3]294
295 connection_t *conn = hash_table_get_instance(hlp, connection_t, link);
296
297 msg_t *msg = malloc(sizeof(*msg));
298 if (!msg) {
299 futex_up(&async_futex);
300 return false;
301 }
302
[80649a91]303 msg->callid = callid;
304 msg->call = *call;
305 list_append(&msg->link, &conn->msg_queue);
[c07544d3]306
[41269bd]307 if (IPC_GET_METHOD(*call) == IPC_M_PHONE_HUNGUP)
308 conn->close_callid = callid;
[80649a91]309
[36c9234]310 /* If the connection fibril is waiting for an event, activate it */
[49d072e]311 if (!conn->wdata.active) {
[c07544d3]312
[49d072e]313 /* If in timeout list, remove it */
314 if (conn->wdata.inlist) {
[c07544d3]315 conn->wdata.inlist = false;
[49d072e]316 list_remove(&conn->wdata.link);
317 }
[c07544d3]318
319 conn->wdata.active = true;
[bc1f1c2]320 fibril_add_ready(conn->wdata.fid);
[80649a91]321 }
[c07544d3]322
[01ff41c]323 futex_up(&async_futex);
[c07544d3]324 return true;
325}
[80649a91]326
[c07544d3]327/** Notification fibril.
328 *
329 * When a notification arrives, a fibril with this implementing function is
330 * created. It calls interrupt_received() and does the final cleanup.
331 *
332 * @param arg Message structure pointer.
333 *
334 * @return Always zero.
335 *
336 */
337static int notification_fibril(void *arg)
338{
339 msg_t *msg = (msg_t *) arg;
340 interrupt_received(msg->callid, &msg->call);
341
342 free(msg);
343 return 0;
344}
345
346/** Process interrupt notification.
347 *
348 * A new fibril is created which would process the notification.
349 *
350 * @param callid Hash of the incoming call.
351 * @param call Data of the incoming call.
352 *
353 * @return False if an error occured.
354 * True if the call was passed to the notification fibril.
355 *
356 */
357static bool process_notification(ipc_callid_t callid, ipc_call_t *call)
358{
359 futex_down(&async_futex);
360
361 msg_t *msg = malloc(sizeof(*msg));
362 if (!msg) {
363 futex_up(&async_futex);
364 return false;
365 }
366
367 msg->callid = callid;
368 msg->call = *call;
369
370 fid_t fid = fibril_create(notification_fibril, msg);
371 fibril_add_ready(fid);
372
373 futex_up(&async_futex);
374 return true;
[80649a91]375}
376
[e70bfa5]377/** Return new incoming message for the current (fibril-local) connection.
378 *
[c07544d3]379 * @param call Storage where the incoming call data will be stored.
380 * @param usecs Timeout in microseconds. Zero denotes no timeout.
381 *
382 * @return If no timeout was specified, then a hash of the
383 * incoming call is returned. If a timeout is specified,
384 * then a hash of the incoming call is returned unless
385 * the timeout expires prior to receiving a message. In
386 * that case zero is returned.
[e70bfa5]387 *
388 */
[49d072e]389ipc_callid_t async_get_call_timeout(ipc_call_t *call, suseconds_t usecs)
[80649a91]390{
[bc1f1c2]391 assert(FIBRIL_connection);
[c07544d3]392
393 /* Why doing this?
394 * GCC 4.1.0 coughs on FIBRIL_connection-> dereference.
[6c46350]395 * GCC 4.1.1 happilly puts the rdhwr instruction in delay slot.
[c07544d3]396 * I would never expect to find so many errors in
397 * a compiler.
[6c46350]398 */
[c07544d3]399 connection_t *conn = FIBRIL_connection;
400
[01ff41c]401 futex_down(&async_futex);
[c07544d3]402
[49d072e]403 if (usecs) {
[6c46350]404 gettimeofday(&conn->wdata.expires, NULL);
405 tv_add(&conn->wdata.expires, usecs);
[c07544d3]406 } else
407 conn->wdata.inlist = false;
408
[e70bfa5]409 /* If nothing in queue, wait until something arrives */
[6c46350]410 while (list_empty(&conn->msg_queue)) {
[085bd54]411 if (usecs)
[6c46350]412 insert_timeout(&conn->wdata);
[c07544d3]413
414 conn->wdata.active = false;
415
[c7509e5]416 /*
417 * Note: the current fibril will be rescheduled either due to a
418 * timeout or due to an arriving message destined to it. In the
419 * former case, handle_expired_timeouts() and, in the latter
420 * case, route_call() will perform the wakeup.
421 */
[116d3f6f]422 fibril_switch(FIBRIL_TO_MANAGER);
[c07544d3]423
[e70bfa5]424 /*
[c07544d3]425 * Futex is up after getting back from async_manager.
426 * Get it again.
[c7509e5]427 */
[49d072e]428 futex_down(&async_futex);
[c07544d3]429 if ((usecs) && (conn->wdata.timedout)
430 && (list_empty(&conn->msg_queue))) {
[e70bfa5]431 /* If we timed out -> exit */
[49d072e]432 futex_up(&async_futex);
433 return 0;
434 }
[450cd3a]435 }
436
[c07544d3]437 msg_t *msg = list_get_instance(conn->msg_queue.next, msg_t, link);
[80649a91]438 list_remove(&msg->link);
[c07544d3]439
440 ipc_callid_t callid = msg->callid;
[80649a91]441 *call = msg->call;
442 free(msg);
443
[01ff41c]444 futex_up(&async_futex);
[80649a91]445 return callid;
446}
447
[36c9234]448/** Default fibril function that gets called to handle new connection.
[a2cd194]449 *
[e70bfa5]450 * This function is defined as a weak symbol - to be redefined in user code.
[36c9234]451 *
[c07544d3]452 * @param callid Hash of the incoming call.
453 * @param call Data of the incoming call.
454 *
[a2cd194]455 */
[da0c91e7]456static void default_client_connection(ipc_callid_t callid, ipc_call_t *call)
[80649a91]457{
[b74959bd]458 ipc_answer_0(callid, ENOENT);
[80649a91]459}
[36c9234]460
461/** Default fibril function that gets called to handle interrupt notifications.
462 *
[c07544d3]463 * This function is defined as a weak symbol - to be redefined in user code.
464 *
465 * @param callid Hash of the incoming call.
466 * @param call Data of the incoming call.
467 *
[36c9234]468 */
[51dbadf3]469static void default_interrupt_received(ipc_callid_t callid, ipc_call_t *call)
[44c6d88d]470{
471}
472
[f2f0392]473/** Wrapper for client connection fibril.
474 *
[36c9234]475 * When a new connection arrives, a fibril with this implementing function is
[f2f0392]476 * created. It calls client_connection() and does the final cleanup.
[a2cd194]477 *
[c07544d3]478 * @param arg Connection structure pointer.
479 *
480 * @return Always zero.
[a2cd194]481 *
482 */
[c07544d3]483static int connection_fibril(void *arg)
[80649a91]484{
[c07544d3]485 /*
486 * Setup fibril-local connection pointer and call client_connection().
487 *
488 */
[bc1f1c2]489 FIBRIL_connection = (connection_t *) arg;
490 FIBRIL_connection->cfibril(FIBRIL_connection->callid,
491 &FIBRIL_connection->call);
[a46da63]492
[36c9234]493 /* Remove myself from the connection hash table */
[01ff41c]494 futex_down(&async_futex);
[c07544d3]495 unsigned long key = FIBRIL_connection->in_phone_hash;
[a2cd194]496 hash_table_remove(&conn_hash_table, &key, 1);
[01ff41c]497 futex_up(&async_futex);
[a46da63]498
[36c9234]499 /* Answer all remaining messages with EHANGUP */
[bc1f1c2]500 while (!list_empty(&FIBRIL_connection->msg_queue)) {
[cc27c8c5]501 msg_t *msg;
[c07544d3]502
[cc27c8c5]503 msg = list_get_instance(FIBRIL_connection->msg_queue.next,
504 msg_t, link);
[a2cd194]505 list_remove(&msg->link);
[b74959bd]506 ipc_answer_0(msg->callid, EHANGUP);
[a2cd194]507 free(msg);
508 }
[c07544d3]509
[bc1f1c2]510 if (FIBRIL_connection->close_callid)
[b74959bd]511 ipc_answer_0(FIBRIL_connection->close_callid, EOK);
[a46da63]512
513 return 0;
[80649a91]514}
515
[f2f0392]516/** Create a new fibril for a new connection.
[80649a91]517 *
[c07544d3]518 * Create new fibril for connection, fill in connection structures and inserts
[f2f0392]519 * it into the hash table, so that later we can easily do routing of messages to
520 * particular fibrils.
[53ca318]521 *
[c07544d3]522 * @param in_phone_hash Identification of the incoming connection.
523 * @param callid Hash of the opening IPC_M_CONNECT_ME_TO call.
524 * If callid is zero, the connection was opened by
525 * accepting the IPC_M_CONNECT_TO_ME call and this function
526 * is called directly by the server.
527 * @param call Call data of the opening call.
528 * @param cfibril Fibril function that should be called upon opening the
529 * connection.
530 *
531 * @return New fibril id or NULL on failure.
[36c9234]532 *
[80649a91]533 */
[bc1f1c2]534fid_t async_new_connection(ipcarg_t in_phone_hash, ipc_callid_t callid,
535 ipc_call_t *call, void (*cfibril)(ipc_callid_t, ipc_call_t *))
[80649a91]536{
[c07544d3]537 connection_t *conn = malloc(sizeof(*conn));
[80649a91]538 if (!conn) {
[6675c70]539 if (callid)
[b74959bd]540 ipc_answer_0(callid, ENOMEM);
[53ca318]541 return NULL;
[80649a91]542 }
[c07544d3]543
[44c6d88d]544 conn->in_phone_hash = in_phone_hash;
[80649a91]545 list_initialize(&conn->msg_queue);
546 conn->callid = callid;
[c07544d3]547 conn->close_callid = false;
548
[eaf34f7]549 if (call)
550 conn->call = *call;
[6b21292]551
[c07544d3]552 /* We will activate the fibril ASAP */
553 conn->wdata.active = true;
554 conn->cfibril = cfibril;
[bc1f1c2]555 conn->wdata.fid = fibril_create(connection_fibril, conn);
[c07544d3]556
[bc1f1c2]557 if (!conn->wdata.fid) {
[80649a91]558 free(conn);
[6675c70]559 if (callid)
[b74959bd]560 ipc_answer_0(callid, ENOMEM);
[53ca318]561 return NULL;
[80649a91]562 }
[6b21292]563
[36c9234]564 /* Add connection to the connection hash table */
[9db9b10]565 unsigned long key = conn->in_phone_hash;
[c07544d3]566
[01ff41c]567 futex_down(&async_futex);
[80649a91]568 hash_table_insert(&conn_hash_table, &key, &conn->link);
[01ff41c]569 futex_up(&async_futex);
[6b21292]570
[bc1f1c2]571 fibril_add_ready(conn->wdata.fid);
[6b21292]572
[bc1f1c2]573 return conn->wdata.fid;
[80649a91]574}
575
[36c9234]576/** Handle a call that was received.
577 *
578 * If the call has the IPC_M_CONNECT_ME_TO method, a new connection is created.
579 * Otherwise the call is routed to its connection fibril.
580 *
[c07544d3]581 * @param callid Hash of the incoming call.
582 * @param call Data of the incoming call.
[6b21292]583 *
[36c9234]584 */
[80649a91]585static void handle_call(ipc_callid_t callid, ipc_call_t *call)
586{
[44c6d88d]587 /* Unrouted call - do some default behaviour */
[15039b67]588 if ((callid & IPC_CALLID_NOTIFICATION)) {
[c07544d3]589 process_notification(callid, call);
[9db9b10]590 goto out;
[6b21292]591 }
592
[15039b67]593 switch (IPC_GET_METHOD(*call)) {
[2c0e5d2]594 case IPC_M_CONNECT_ME:
[80649a91]595 case IPC_M_CONNECT_ME_TO:
[f2f0392]596 /* Open new connection with fibril etc. */
[b61d47d]597 async_new_connection(IPC_GET_ARG5(*call), callid, call,
[bc1f1c2]598 client_connection);
[9db9b10]599 goto out;
[80649a91]600 }
[6b21292]601
[36c9234]602 /* Try to route the call through the connection hash table */
[44c6d88d]603 if (route_call(callid, call))
[9db9b10]604 goto out;
[6b21292]605
[44c6d88d]606 /* Unknown call from unknown phone - hang it up */
[b74959bd]607 ipc_answer_0(callid, EHANGUP);
[9db9b10]608 return;
609
610out:
[953769f]611 ;
[450cd3a]612}
613
[f2f0392]614/** Fire all timeouts that expired. */
[c042bdd]615static void handle_expired_timeouts(void)
616{
617 struct timeval tv;
[36c9234]618 gettimeofday(&tv, NULL);
[c07544d3]619
[c042bdd]620 futex_down(&async_futex);
[c07544d3]621
622 link_t *cur = timeout_list.next;
[c042bdd]623 while (cur != &timeout_list) {
[c07544d3]624 awaiter_t *waiter = list_get_instance(cur, awaiter_t, link);
625
[49d072e]626 if (tv_gt(&waiter->expires, &tv))
[c042bdd]627 break;
[c07544d3]628
[c042bdd]629 cur = cur->next;
[c07544d3]630
[49d072e]631 list_remove(&waiter->link);
[c07544d3]632 waiter->inlist = false;
633 waiter->timedout = true;
634
[36c9234]635 /*
[c07544d3]636 * Redundant condition?
637 * The fibril should not be active when it gets here.
[c042bdd]638 */
[49d072e]639 if (!waiter->active) {
[c07544d3]640 waiter->active = true;
[bc1f1c2]641 fibril_add_ready(waiter->fid);
[c042bdd]642 }
643 }
[c07544d3]644
[c042bdd]645 futex_up(&async_futex);
646}
647
[36c9234]648/** Endless loop dispatching incoming calls and answers.
649 *
[c07544d3]650 * @return Never returns.
651 *
[36c9234]652 */
[085bd54]653static int async_manager_worker(void)
[80649a91]654{
[c07544d3]655 while (true) {
[116d3f6f]656 if (fibril_switch(FIBRIL_FROM_MANAGER)) {
[a46da63]657 futex_up(&async_futex);
[36c9234]658 /*
659 * async_futex is always held when entering a manager
660 * fibril.
[a46da63]661 */
[80649a91]662 continue;
663 }
[c07544d3]664
[c042bdd]665 futex_down(&async_futex);
[c07544d3]666
667 suseconds_t timeout;
[c042bdd]668 if (!list_empty(&timeout_list)) {
[cc27c8c5]669 awaiter_t *waiter = list_get_instance(timeout_list.next,
670 awaiter_t, link);
[c07544d3]671
672 struct timeval tv;
[bc1f1c2]673 gettimeofday(&tv, NULL);
[c07544d3]674
[49d072e]675 if (tv_gteq(&tv, &waiter->expires)) {
[6c46350]676 futex_up(&async_futex);
[c042bdd]677 handle_expired_timeouts();
678 continue;
679 } else
[49d072e]680 timeout = tv_sub(&waiter->expires, &tv);
[c042bdd]681 } else
[0b99e40]682 timeout = SYNCH_NO_TIMEOUT;
[c07544d3]683
[c042bdd]684 futex_up(&async_futex);
[c07544d3]685
686 ipc_call_t call;
[cc27c8c5]687 ipc_callid_t callid = ipc_wait_cycle(&call, timeout,
688 SYNCH_FLAGS_NONE);
[c07544d3]689
[0b99e40]690 if (!callid) {
[c042bdd]691 handle_expired_timeouts();
[0b99e40]692 continue;
693 }
[c07544d3]694
695 if (callid & IPC_CALLID_ANSWERED)
[80649a91]696 continue;
[c07544d3]697
[80649a91]698 handle_call(callid, &call);
699 }
[a46da63]700
701 return 0;
[80649a91]702}
703
[36c9234]704/** Function to start async_manager as a standalone fibril.
[c07544d3]705 *
[36c9234]706 * When more kernel threads are used, one async manager should exist per thread.
707 *
[c07544d3]708 * @param arg Unused.
709 * @return Never returns.
[36c9234]710 *
[a2cd194]711 */
[9591265]712static int async_manager_fibril(void *arg)
[80649a91]713{
[a46da63]714 futex_up(&async_futex);
[c07544d3]715
[36c9234]716 /*
717 * async_futex is always locked when entering manager
718 */
[085bd54]719 async_manager_worker();
[a46da63]720
721 return 0;
[80649a91]722}
[450cd3a]723
[36c9234]724/** Add one manager to manager list. */
[80649a91]725void async_create_manager(void)
[450cd3a]726{
[c07544d3]727 fid_t fid = fibril_create(async_manager_fibril, NULL);
[bc1f1c2]728 fibril_add_manager(fid);
[80649a91]729}
730
731/** Remove one manager from manager list */
732void async_destroy_manager(void)
733{
[bc1f1c2]734 fibril_remove_manager();
[80649a91]735}
736
[36c9234]737/** Initialize the async framework.
738 *
[c07544d3]739 * @return Zero on success or an error code.
[36c9234]740 */
[80649a91]741int _async_init(void)
742{
[bc1f1c2]743 if (!hash_table_create(&conn_hash_table, CONN_HASH_TABLE_CHAINS, 1,
744 &conn_hash_table_ops)) {
[80649a91]745 printf("%s: cannot create hash table\n", "async");
746 return ENOMEM;
747 }
748
[a46da63]749 return 0;
[450cd3a]750}
[01ff41c]751
[36c9234]752/** Reply received callback.
[01ff41c]753 *
[36c9234]754 * This function is called whenever a reply for an asynchronous message sent out
755 * by the asynchronous framework is received.
756 *
757 * Notify the fibril which is waiting for this message that it has arrived.
758 *
[c07544d3]759 * @param arg Pointer to the asynchronous message record.
760 * @param retval Value returned in the answer.
761 * @param data Call data of the answer.
[01ff41c]762 */
[c07544d3]763static void reply_received(void *arg, int retval, ipc_call_t *data)
[01ff41c]764{
[9db9b10]765 futex_down(&async_futex);
766
[c07544d3]767 amsg_t *msg = (amsg_t *) arg;
[01ff41c]768 msg->retval = retval;
[c07544d3]769
[36c9234]770 /* Copy data after futex_down, just in case the call was detached */
[9db9b10]771 if ((msg->dataptr) && (data))
[c07544d3]772 *msg->dataptr = *data;
773
[c042bdd]774 write_barrier();
[c07544d3]775
[c042bdd]776 /* Remove message from timeout list */
[49d072e]777 if (msg->wdata.inlist)
778 list_remove(&msg->wdata.link);
[c07544d3]779
780 msg->done = true;
[36c9234]781 if (!msg->wdata.active) {
[c07544d3]782 msg->wdata.active = true;
[bc1f1c2]783 fibril_add_ready(msg->wdata.fid);
[01ff41c]784 }
[c07544d3]785
[01ff41c]786 futex_up(&async_futex);
787}
788
[36c9234]789/** Send message and return id of the sent message.
790 *
791 * The return value can be used as input for async_wait() to wait for
792 * completion.
[01ff41c]793 *
[c07544d3]794 * @param phoneid Handle of the phone that will be used for the send.
795 * @param method Service-defined method.
796 * @param arg1 Service-defined payload argument.
797 * @param arg2 Service-defined payload argument.
798 * @param arg3 Service-defined payload argument.
799 * @param arg4 Service-defined payload argument.
800 * @param dataptr If non-NULL, storage where the reply data will be
801 * stored.
802 *
803 * @return Hash of the sent message or 0 on error.
[36c9234]804 *
[01ff41c]805 */
[0cc4313]806aid_t async_send_fast(int phoneid, ipcarg_t method, ipcarg_t arg1,
807 ipcarg_t arg2, ipcarg_t arg3, ipcarg_t arg4, ipc_call_t *dataptr)
[01ff41c]808{
[c07544d3]809 amsg_t *msg = malloc(sizeof(*msg));
810
811 if (!msg)
812 return 0;
[6b21292]813
[c07544d3]814 msg->done = false;
[01ff41c]815 msg->dataptr = dataptr;
[6b21292]816
[cc99bcd]817 msg->wdata.inlist = false;
[36c9234]818 /* We may sleep in the next method, but it will use its own mechanism */
[c07544d3]819 msg->wdata.active = true;
820
[0cc4313]821 ipc_call_async_4(phoneid, method, arg1, arg2, arg3, arg4, msg,
[c07544d3]822 reply_received, true);
[6b21292]823
[01ff41c]824 return (aid_t) msg;
825}
826
[90f5d64]827/** Send message and return id of the sent message
828 *
[36c9234]829 * The return value can be used as input for async_wait() to wait for
830 * completion.
831 *
[c07544d3]832 * @param phoneid Handle of the phone that will be used for the send.
833 * @param method Service-defined method.
834 * @param arg1 Service-defined payload argument.
835 * @param arg2 Service-defined payload argument.
836 * @param arg3 Service-defined payload argument.
837 * @param arg4 Service-defined payload argument.
838 * @param arg5 Service-defined payload argument.
839 * @param dataptr If non-NULL, storage where the reply data will be
840 * stored.
841 *
842 * @return Hash of the sent message or 0 on error.
[36c9234]843 *
[90f5d64]844 */
[0cc4313]845aid_t async_send_slow(int phoneid, ipcarg_t method, ipcarg_t arg1,
846 ipcarg_t arg2, ipcarg_t arg3, ipcarg_t arg4, ipcarg_t arg5,
847 ipc_call_t *dataptr)
[90f5d64]848{
[c07544d3]849 amsg_t *msg = malloc(sizeof(*msg));
[6b21292]850
[c07544d3]851 if (!msg)
852 return 0;
853
854 msg->done = false;
[90f5d64]855 msg->dataptr = dataptr;
[6b21292]856
[cc99bcd]857 msg->wdata.inlist = false;
[36c9234]858 /* We may sleep in next method, but it will use its own mechanism */
[c07544d3]859 msg->wdata.active = true;
[6b21292]860
[0cc4313]861 ipc_call_async_5(phoneid, method, arg1, arg2, arg3, arg4, arg5, msg,
[c07544d3]862 reply_received, true);
[6b21292]863
[90f5d64]864 return (aid_t) msg;
865}
866
[36c9234]867/** Wait for a message sent by the async framework.
[01ff41c]868 *
[c07544d3]869 * @param amsgid Hash of the message to wait for.
870 * @param retval Pointer to storage where the retval of the answer will
871 * be stored.
872 *
[01ff41c]873 */
874void async_wait_for(aid_t amsgid, ipcarg_t *retval)
875{
876 amsg_t *msg = (amsg_t *) amsgid;
[c07544d3]877
[01ff41c]878 futex_down(&async_futex);
879 if (msg->done) {
880 futex_up(&async_futex);
881 goto done;
882 }
[c07544d3]883
[bc1f1c2]884 msg->wdata.fid = fibril_get_id();
[c07544d3]885 msg->wdata.active = false;
886 msg->wdata.inlist = false;
887
[36c9234]888 /* Leave the async_futex locked when entering this function */
[116d3f6f]889 fibril_switch(FIBRIL_TO_MANAGER);
[c07544d3]890
891 /* Futex is up automatically after fibril_switch */
892
[01ff41c]893done:
894 if (retval)
895 *retval = msg->retval;
[c07544d3]896
[01ff41c]897 free(msg);
898}
[0b99e40]899
[36c9234]900/** Wait for a message sent by the async framework, timeout variant.
[c042bdd]901 *
[c07544d3]902 * @param amsgid Hash of the message to wait for.
903 * @param retval Pointer to storage where the retval of the answer will
904 * be stored.
905 * @param timeout Timeout in microseconds.
906 *
907 * @return Zero on success, ETIMEOUT if the timeout has expired.
[c042bdd]908 *
909 */
910int async_wait_timeout(aid_t amsgid, ipcarg_t *retval, suseconds_t timeout)
911{
912 amsg_t *msg = (amsg_t *) amsgid;
[c07544d3]913
[86029498]914 /* TODO: Let it go through the event read at least once */
915 if (timeout < 0)
916 return ETIMEOUT;
[c07544d3]917
[c042bdd]918 futex_down(&async_futex);
919 if (msg->done) {
920 futex_up(&async_futex);
921 goto done;
922 }
[c07544d3]923
[49d072e]924 gettimeofday(&msg->wdata.expires, NULL);
925 tv_add(&msg->wdata.expires, timeout);
[c07544d3]926
[bc1f1c2]927 msg->wdata.fid = fibril_get_id();
[c07544d3]928 msg->wdata.active = false;
[49d072e]929 insert_timeout(&msg->wdata);
[c07544d3]930
[36c9234]931 /* Leave the async_futex locked when entering this function */
[116d3f6f]932 fibril_switch(FIBRIL_TO_MANAGER);
[c07544d3]933
934 /* Futex is up automatically after fibril_switch */
935
[c042bdd]936 if (!msg->done)
937 return ETIMEOUT;
[c07544d3]938
[c042bdd]939done:
940 if (retval)
941 *retval = msg->retval;
[c07544d3]942
[c042bdd]943 free(msg);
[c07544d3]944
[c042bdd]945 return 0;
946}
[0b99e40]947
[36c9234]948/** Wait for specified time.
[44c6d88d]949 *
[36c9234]950 * The current fibril is suspended but the thread continues to execute.
951 *
[c07544d3]952 * @param timeout Duration of the wait in microseconds.
953 *
[44c6d88d]954 */
955void async_usleep(suseconds_t timeout)
956{
[c07544d3]957 amsg_t *msg = malloc(sizeof(*msg));
[44c6d88d]958
959 if (!msg)
960 return;
[6b21292]961
[bc1f1c2]962 msg->wdata.fid = fibril_get_id();
[c07544d3]963 msg->wdata.active = false;
[6b21292]964
[49d072e]965 gettimeofday(&msg->wdata.expires, NULL);
966 tv_add(&msg->wdata.expires, timeout);
[6b21292]967
[44c6d88d]968 futex_down(&async_futex);
[c07544d3]969
[49d072e]970 insert_timeout(&msg->wdata);
[c07544d3]971
[36c9234]972 /* Leave the async_futex locked when entering this function */
[116d3f6f]973 fibril_switch(FIBRIL_TO_MANAGER);
[c07544d3]974
975 /* Futex is up automatically after fibril_switch() */
976
[44c6d88d]977 free(msg);
978}
[da0c91e7]979
[36c9234]980/** Setter for client_connection function pointer.
[da0c91e7]981 *
[c07544d3]982 * @param conn Function that will implement a new connection fibril.
983 *
[da0c91e7]984 */
985void async_set_client_connection(async_client_conn_t conn)
986{
987 client_connection = conn;
988}
[36c9234]989
990/** Setter for interrupt_received function pointer.
991 *
[c07544d3]992 * @param intr Function that will implement a new interrupt
993 * notification fibril.
[36c9234]994 */
[c07544d3]995void async_set_interrupt_received(async_client_conn_t intr)
[51dbadf3]996{
[c07544d3]997 interrupt_received = intr;
[51dbadf3]998}
[085bd54]999
[0cc4313]1000/** Pseudo-synchronous message sending - fast version.
1001 *
1002 * Send message asynchronously and return only after the reply arrives.
1003 *
1004 * This function can only transfer 4 register payload arguments. For
1005 * transferring more arguments, see the slower async_req_slow().
1006 *
[c07544d3]1007 * @param phoneid Hash of the phone through which to make the call.
1008 * @param method Method of the call.
1009 * @param arg1 Service-defined payload argument.
1010 * @param arg2 Service-defined payload argument.
1011 * @param arg3 Service-defined payload argument.
1012 * @param arg4 Service-defined payload argument.
1013 * @param r1 If non-NULL, storage for the 1st reply argument.
1014 * @param r2 If non-NULL, storage for the 2nd reply argument.
1015 * @param r3 If non-NULL, storage for the 3rd reply argument.
1016 * @param r4 If non-NULL, storage for the 4th reply argument.
1017 * @param r5 If non-NULL, storage for the 5th reply argument.
1018 *
1019 * @return Return code of the reply or a negative error code.
1020 *
[0cc4313]1021 */
1022ipcarg_t async_req_fast(int phoneid, ipcarg_t method, ipcarg_t arg1,
1023 ipcarg_t arg2, ipcarg_t arg3, ipcarg_t arg4, ipcarg_t *r1, ipcarg_t *r2,
1024 ipcarg_t *r3, ipcarg_t *r4, ipcarg_t *r5)
[085bd54]1025{
[0cc4313]1026 ipc_call_t result;
1027 aid_t eid = async_send_4(phoneid, method, arg1, arg2, arg3, arg4,
1028 &result);
[c07544d3]1029
1030 ipcarg_t rc;
[0cc4313]1031 async_wait_for(eid, &rc);
[c07544d3]1032
1033 if (r1)
[0cc4313]1034 *r1 = IPC_GET_ARG1(result);
[c07544d3]1035
[0cc4313]1036 if (r2)
1037 *r2 = IPC_GET_ARG2(result);
[c07544d3]1038
[0cc4313]1039 if (r3)
1040 *r3 = IPC_GET_ARG3(result);
[c07544d3]1041
[0cc4313]1042 if (r4)
1043 *r4 = IPC_GET_ARG4(result);
[c07544d3]1044
[0cc4313]1045 if (r5)
1046 *r5 = IPC_GET_ARG5(result);
[c07544d3]1047
[0cc4313]1048 return rc;
[085bd54]1049}
1050
[0cc4313]1051/** Pseudo-synchronous message sending - slow version.
1052 *
1053 * Send message asynchronously and return only after the reply arrives.
1054 *
[c07544d3]1055 * @param phoneid Hash of the phone through which to make the call.
1056 * @param method Method of the call.
1057 * @param arg1 Service-defined payload argument.
1058 * @param arg2 Service-defined payload argument.
1059 * @param arg3 Service-defined payload argument.
1060 * @param arg4 Service-defined payload argument.
1061 * @param arg5 Service-defined payload argument.
1062 * @param r1 If non-NULL, storage for the 1st reply argument.
1063 * @param r2 If non-NULL, storage for the 2nd reply argument.
1064 * @param r3 If non-NULL, storage for the 3rd reply argument.
1065 * @param r4 If non-NULL, storage for the 4th reply argument.
1066 * @param r5 If non-NULL, storage for the 5th reply argument.
1067 *
1068 * @return Return code of the reply or a negative error code.
1069 *
[0cc4313]1070 */
1071ipcarg_t async_req_slow(int phoneid, ipcarg_t method, ipcarg_t arg1,
1072 ipcarg_t arg2, ipcarg_t arg3, ipcarg_t arg4, ipcarg_t arg5, ipcarg_t *r1,
1073 ipcarg_t *r2, ipcarg_t *r3, ipcarg_t *r4, ipcarg_t *r5)
[085bd54]1074{
[0cc4313]1075 ipc_call_t result;
1076 aid_t eid = async_send_5(phoneid, method, arg1, arg2, arg3, arg4, arg5,
1077 &result);
[c07544d3]1078
1079 ipcarg_t rc;
[0cc4313]1080 async_wait_for(eid, &rc);
[c07544d3]1081
1082 if (r1)
[0cc4313]1083 *r1 = IPC_GET_ARG1(result);
[c07544d3]1084
[0cc4313]1085 if (r2)
1086 *r2 = IPC_GET_ARG2(result);
[c07544d3]1087
[0cc4313]1088 if (r3)
1089 *r3 = IPC_GET_ARG3(result);
[c07544d3]1090
[0cc4313]1091 if (r4)
1092 *r4 = IPC_GET_ARG4(result);
[c07544d3]1093
[0cc4313]1094 if (r5)
1095 *r5 = IPC_GET_ARG5(result);
[c07544d3]1096
[0cc4313]1097 return rc;
[085bd54]1098}
[b2951e2]1099
[a46da63]1100/** @}
[b2951e2]1101 */
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