source: mainline/uspace/lib/c/generic/async.c@ d92060f

Last change on this file since d92060f was 3bacee1, checked in by Jiri Svoboda <jiri@…>, 8 years ago

Make ccheck-fix again and commit more good files.

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File size: 80.1 KB
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[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 *
[79ae36dd]42 * You should be able to write very simple multithreaded programs. The async
43 * framework will automatically take care of most of the synchronization
44 * problems.
[80649a91]45 *
[9591265]46 * Example of use (pseudo C):
[c07544d3]47 *
[80649a91]48 * 1) Multithreaded client application
[9591265]49 *
[c07544d3]50 * fibril_create(fibril1, ...);
51 * fibril_create(fibril2, ...);
52 * ...
53 *
54 * int fibril1(void *arg)
55 * {
[79ae36dd]56 * conn = async_connect_me_to(...);
57 *
58 * exch = async_exchange_begin(conn);
59 * c1 = async_send(exch);
60 * async_exchange_end(exch);
61 *
62 * exch = async_exchange_begin(conn);
63 * c2 = async_send(exch);
64 * async_exchange_end(exch);
65 *
[c07544d3]66 * async_wait_for(c1);
67 * async_wait_for(c2);
68 * ...
69 * }
[80649a91]70 *
71 *
72 * 2) Multithreaded server application
73 *
[c07544d3]74 * main()
75 * {
76 * async_manager();
77 * }
78 *
[01c3bb4]79 * port_handler(ichandle, *icall)
[c07544d3]80 * {
81 * if (want_refuse) {
[01c3bb4]82 * async_answer_0(ichandle, ELIMIT);
[c07544d3]83 * return;
84 * }
[01c3bb4]85 * async_answer_0(ichandle, EOK);
[80649a91]86 *
[01c3bb4]87 * chandle = async_get_call(&call);
88 * somehow_handle_the_call(chandle, call);
89 * async_answer_2(chandle, 1, 2, 3);
[53ca318]90 *
[01c3bb4]91 * chandle = async_get_call(&call);
[c07544d3]92 * ...
93 * }
[a2cd194]94 *
[80649a91]95 */
[9591265]96
[64d2b10]97#define LIBC_ASYNC_C_
98#include <ipc/ipc.h>
[80649a91]99#include <async.h>
[b76a7329]100#include "private/async.h"
[64d2b10]101#undef LIBC_ASYNC_C_
102
[8820544]103#include <ipc/irq.h>
104#include <ipc/event.h>
[64d2b10]105#include <futex.h>
[bc1f1c2]106#include <fibril.h>
[d9c8c81]107#include <adt/hash_table.h>
[853802e]108#include <adt/hash.h>
[d9c8c81]109#include <adt/list.h>
[80649a91]110#include <assert.h>
111#include <errno.h>
[daa90e8]112#include <sys/time.h>
[c0699467]113#include <libarch/barrier.h>
[3e6a98c5]114#include <stdbool.h>
[38d150e]115#include <stdlib.h>
[79ae36dd]116#include <mem.h>
117#include <stdlib.h>
[e2ab36f1]118#include <macros.h>
[101516d]119#include <as.h>
[ae6021d]120#include <abi/mm/as.h>
[d7978525]121#include "private/libc.h"
[80649a91]122
[5da7199]123/** Session data */
124struct async_sess {
125 /** List of inactive exchanges */
126 list_t exch_list;
[a35b458]127
[566992e1]128 /** Session interface */
129 iface_t iface;
[a35b458]130
[5da7199]131 /** Exchange management style */
132 exch_mgmt_t mgmt;
[a35b458]133
[5da7199]134 /** Session identification */
[eadaeae8]135 cap_phone_handle_t phone;
[a35b458]136
[5da7199]137 /** First clone connection argument */
138 sysarg_t arg1;
[a35b458]139
[5da7199]140 /** Second clone connection argument */
141 sysarg_t arg2;
[a35b458]142
[5da7199]143 /** Third clone connection argument */
144 sysarg_t arg3;
[a35b458]145
[5da7199]146 /** Exchange mutex */
147 fibril_mutex_t mutex;
[a35b458]148
[5da7199]149 /** Number of opened exchanges */
150 atomic_t refcnt;
[a35b458]151
[5da7199]152 /** Mutex for stateful connections */
153 fibril_mutex_t remote_state_mtx;
[a35b458]154
[5da7199]155 /** Data for stateful connections */
156 void *remote_state_data;
157};
158
159/** Exchange data */
160struct async_exch {
161 /** Link into list of inactive exchanges */
162 link_t sess_link;
[a35b458]163
[5da7199]164 /** Link into global list of inactive exchanges */
165 link_t global_link;
[a35b458]166
[5da7199]167 /** Session pointer */
168 async_sess_t *sess;
[a35b458]169
[5da7199]170 /** Exchange identification */
[eadaeae8]171 cap_phone_handle_t phone;
[5da7199]172};
173
[79ae36dd]174/** Async framework global futex */
[927a181e]175futex_t async_futex = FUTEX_INITIALIZER;
[80649a91]176
[8619f25]177/** Number of threads waiting for IPC in the kernel. */
178atomic_t threads_in_ipc_wait = { 0 };
179
[79ae36dd]180/** Naming service session */
181async_sess_t *session_ns;
[01ff41c]182
[79ae36dd]183/** Call data */
[80649a91]184typedef struct {
185 link_t link;
[a35b458]186
[eadaeae8]187 cap_call_handle_t chandle;
[80649a91]188 ipc_call_t call;
189} msg_t;
190
[5da7199]191/** Message data */
192typedef struct {
193 awaiter_t wdata;
[a35b458]194
[5da7199]195 /** If reply was received. */
196 bool done;
[a35b458]197
[47c9a8c]198 /** If the message / reply should be discarded on arrival. */
199 bool forget;
[a35b458]200
[47c9a8c]201 /** If already destroyed. */
202 bool destroyed;
[a35b458]203
[5da7199]204 /** Pointer to where the answer data is stored. */
205 ipc_call_t *dataptr;
[a35b458]206
[b7fd2a0]207 errno_t retval;
[5da7199]208} amsg_t;
209
[79ae36dd]210/* Client connection data */
[c80fdd0]211typedef struct {
[062d900]212 ht_link_t link;
[a35b458]213
[649f087]214 task_id_t in_task_id;
[79ae36dd]215 atomic_t refcnt;
[c80fdd0]216 void *data;
217} client_t;
218
[79ae36dd]219/* Server connection data */
[80649a91]220typedef struct {
[49d072e]221 awaiter_t wdata;
[a35b458]222
[e70bfa5]223 /** Hash table link. */
[062d900]224 ht_link_t link;
[a35b458]225
[e2ab36f1]226 /** Incoming client task ID. */
227 task_id_t in_task_id;
[a35b458]228
[e70bfa5]229 /** Incoming phone hash. */
[96b02eb9]230 sysarg_t in_phone_hash;
[a35b458]231
[23882034]232 /** Link to the client tracking structure. */
233 client_t *client;
[a35b458]234
[e70bfa5]235 /** Messages that should be delivered to this fibril. */
[b72efe8]236 list_t msg_queue;
[a35b458]237
[e70bfa5]238 /** Identification of the opening call. */
[eadaeae8]239 cap_call_handle_t chandle;
[a35b458]240
[e70bfa5]241 /** Call data of the opening call. */
[80649a91]242 ipc_call_t call;
[a35b458]243
[e70bfa5]244 /** Identification of the closing call. */
[eadaeae8]245 cap_call_handle_t close_chandle;
[a35b458]246
[e70bfa5]247 /** Fibril function that will be used to handle the connection. */
[b688fd8]248 async_port_handler_t handler;
[a35b458]249
[b688fd8]250 /** Client data */
251 void *data;
[80649a91]252} connection_t;
253
[566992e1]254/** Interface data */
255typedef struct {
256 ht_link_t link;
[a35b458]257
[566992e1]258 /** Interface ID */
259 iface_t iface;
[a35b458]260
[566992e1]261 /** Futex protecting the hash table */
262 futex_t futex;
[a35b458]263
[566992e1]264 /** Interface ports */
265 hash_table_t port_hash_table;
[a35b458]266
[566992e1]267 /** Next available port ID */
268 port_id_t port_id_avail;
269} interface_t;
270
271/* Port data */
272typedef struct {
273 ht_link_t link;
[a35b458]274
[566992e1]275 /** Port ID */
276 port_id_t id;
[a35b458]277
[566992e1]278 /** Port connection handler */
279 async_port_handler_t handler;
[a35b458]280
[566992e1]281 /** Client data */
282 void *data;
283} port_t;
284
[8820544]285/* Notification data */
286typedef struct {
287 ht_link_t link;
[a35b458]288
[8820544]289 /** Notification method */
290 sysarg_t imethod;
[a35b458]291
[8820544]292 /** Notification handler */
293 async_notification_handler_t handler;
[a35b458]294
[8820544]295 /** Notification data */
296 void *data;
297} notification_t;
298
[bc1f1c2]299/** Identifier of the incoming connection handled by the current fibril. */
[79ae36dd]300static fibril_local connection_t *fibril_connection;
[e70bfa5]301
[47c9a8c]302static void to_event_initialize(to_event_t *to)
303{
[aeeddeb]304 struct timeval tv = { 0, 0 };
[a35b458]305
[47c9a8c]306 to->inlist = false;
307 to->occurred = false;
308 link_initialize(&to->link);
309 to->expires = tv;
310}
311
312static void wu_event_initialize(wu_event_t *wu)
313{
314 wu->inlist = false;
315 link_initialize(&wu->link);
316}
317
318void awaiter_initialize(awaiter_t *aw)
319{
320 aw->fid = 0;
321 aw->active = false;
322 to_event_initialize(&aw->to_event);
323 wu_event_initialize(&aw->wu_event);
324}
325
326static amsg_t *amsg_create(void)
327{
[57dea62]328 amsg_t *msg = malloc(sizeof(amsg_t));
[47c9a8c]329 if (msg) {
330 msg->done = false;
331 msg->forget = false;
332 msg->destroyed = false;
333 msg->dataptr = NULL;
[25a179e]334 msg->retval = EINVAL;
[47c9a8c]335 awaiter_initialize(&msg->wdata);
336 }
[a35b458]337
[47c9a8c]338 return msg;
339}
340
341static void amsg_destroy(amsg_t *msg)
342{
343 assert(!msg->destroyed);
344 msg->destroyed = true;
345 free(msg);
346}
347
[46eec3b]348static void *default_client_data_constructor(void)
349{
350 return NULL;
351}
352
353static void default_client_data_destructor(void *data)
354{
355}
356
357static async_client_data_ctor_t async_client_data_create =
358 default_client_data_constructor;
359static async_client_data_dtor_t async_client_data_destroy =
360 default_client_data_destructor;
361
362void async_set_client_data_constructor(async_client_data_ctor_t ctor)
363{
[f302586]364 assert(async_client_data_create == default_client_data_constructor);
[46eec3b]365 async_client_data_create = ctor;
366}
367
368void async_set_client_data_destructor(async_client_data_dtor_t dtor)
369{
[f302586]370 assert(async_client_data_destroy == default_client_data_destructor);
[46eec3b]371 async_client_data_destroy = dtor;
372}
373
[b688fd8]374/** Default fallback fibril function.
[47b7006]375 *
[01c3bb4]376 * This fallback fibril function gets called on incomming connections that do
377 * not have a specific handler defined.
[47b7006]378 *
[01c3bb4]379 * @param chandle Handle of the incoming call.
380 * @param call Data of the incoming call.
381 * @param arg Local argument
[47b7006]382 *
383 */
[eadaeae8]384static void default_fallback_port_handler(cap_call_handle_t chandle,
[01c3bb4]385 ipc_call_t *call, void *arg)
[47b7006]386{
[01c3bb4]387 ipc_answer_0(chandle, ENOENT);
[47b7006]388}
[36c9234]389
[b688fd8]390static async_port_handler_t fallback_port_handler =
391 default_fallback_port_handler;
392static void *fallback_port_data = NULL;
[da0c91e7]393
[566992e1]394static hash_table_t interface_hash_table;
395
396static size_t interface_key_hash(void *key)
397{
398 iface_t iface = *(iface_t *) key;
399 return iface;
400}
401
402static size_t interface_hash(const ht_link_t *item)
403{
404 interface_t *interface = hash_table_get_inst(item, interface_t, link);
405 return interface_key_hash(&interface->iface);
406}
407
408static bool interface_key_equal(void *key, const ht_link_t *item)
409{
410 iface_t iface = *(iface_t *) key;
411 interface_t *interface = hash_table_get_inst(item, interface_t, link);
412 return iface == interface->iface;
413}
414
415/** Operations for the port hash table. */
416static hash_table_ops_t interface_hash_table_ops = {
417 .hash = interface_hash,
418 .key_hash = interface_key_hash,
419 .key_equal = interface_key_equal,
420 .equal = NULL,
421 .remove_callback = NULL
422};
423
424static size_t port_key_hash(void *key)
425{
426 port_id_t port_id = *(port_id_t *) key;
427 return port_id;
428}
429
430static size_t port_hash(const ht_link_t *item)
431{
432 port_t *port = hash_table_get_inst(item, port_t, link);
433 return port_key_hash(&port->id);
434}
435
436static bool port_key_equal(void *key, const ht_link_t *item)
437{
438 port_id_t port_id = *(port_id_t *) key;
439 port_t *port = hash_table_get_inst(item, port_t, link);
440 return port_id == port->id;
441}
442
443/** Operations for the port hash table. */
444static hash_table_ops_t port_hash_table_ops = {
445 .hash = port_hash,
446 .key_hash = port_key_hash,
447 .key_equal = port_key_equal,
448 .equal = NULL,
449 .remove_callback = NULL
450};
451
452static interface_t *async_new_interface(iface_t iface)
453{
454 interface_t *interface =
455 (interface_t *) malloc(sizeof(interface_t));
456 if (!interface)
457 return NULL;
[a35b458]458
[566992e1]459 bool ret = hash_table_create(&interface->port_hash_table, 0, 0,
460 &port_hash_table_ops);
461 if (!ret) {
462 free(interface);
463 return NULL;
464 }
[a35b458]465
[566992e1]466 interface->iface = iface;
467 futex_initialize(&interface->futex, 1);
468 interface->port_id_avail = 0;
[a35b458]469
[566992e1]470 hash_table_insert(&interface_hash_table, &interface->link);
[a35b458]471
[566992e1]472 return interface;
473}
474
475static port_t *async_new_port(interface_t *interface,
476 async_port_handler_t handler, void *data)
477{
478 port_t *port = (port_t *) malloc(sizeof(port_t));
479 if (!port)
480 return NULL;
[a35b458]481
[566992e1]482 futex_down(&interface->futex);
[a35b458]483
[566992e1]484 port_id_t id = interface->port_id_avail;
485 interface->port_id_avail++;
[a35b458]486
[566992e1]487 port->id = id;
488 port->handler = handler;
489 port->data = data;
[a35b458]490
[566992e1]491 hash_table_insert(&interface->port_hash_table, &port->link);
[a35b458]492
[566992e1]493 futex_up(&interface->futex);
[a35b458]494
[566992e1]495 return port;
496}
497
[79ae36dd]498/** Mutex protecting inactive_exch_list and avail_phone_cv.
499 *
500 */
501static FIBRIL_MUTEX_INITIALIZE(async_sess_mutex);
502
503/** List of all currently inactive exchanges.
504 *
505 */
506static LIST_INITIALIZE(inactive_exch_list);
507
508/** Condition variable to wait for a phone to become available.
509 *
510 */
511static FIBRIL_CONDVAR_INITIALIZE(avail_phone_cv);
512
[b7fd2a0]513errno_t async_create_port(iface_t iface, async_port_handler_t handler,
[566992e1]514 void *data, port_id_t *port_id)
515{
516 if ((iface & IFACE_MOD_MASK) == IFACE_MOD_CALLBACK)
517 return EINVAL;
[a35b458]518
[566992e1]519 interface_t *interface;
[a35b458]520
[566992e1]521 futex_down(&async_futex);
[a35b458]522
[566992e1]523 ht_link_t *link = hash_table_find(&interface_hash_table, &iface);
524 if (link)
525 interface = hash_table_get_inst(link, interface_t, link);
526 else
527 interface = async_new_interface(iface);
[a35b458]528
[566992e1]529 if (!interface) {
530 futex_up(&async_futex);
531 return ENOMEM;
532 }
[a35b458]533
[566992e1]534 port_t *port = async_new_port(interface, handler, data);
535 if (!port) {
536 futex_up(&async_futex);
537 return ENOMEM;
538 }
[a35b458]539
[566992e1]540 *port_id = port->id;
[a35b458]541
[566992e1]542 futex_up(&async_futex);
[a35b458]543
[566992e1]544 return EOK;
545}
546
[b688fd8]547void async_set_fallback_port_handler(async_port_handler_t handler, void *data)
548{
549 assert(handler != NULL);
[a35b458]550
[b688fd8]551 fallback_port_handler = handler;
552 fallback_port_data = data;
553}
554
[c80fdd0]555static hash_table_t client_hash_table;
[c07544d3]556static hash_table_t conn_hash_table;
[8820544]557static hash_table_t notification_hash_table;
[c07544d3]558static LIST_INITIALIZE(timeout_list);
559
[8820544]560static sysarg_t notification_avail = 0;
561
562static size_t client_key_hash(void *key)
[c80fdd0]563{
[8820544]564 task_id_t in_task_id = *(task_id_t *) key;
565 return in_task_id;
[c80fdd0]566}
567
[062d900]568static size_t client_hash(const ht_link_t *item)
[c80fdd0]569{
[062d900]570 client_t *client = hash_table_get_inst(item, client_t, link);
571 return client_key_hash(&client->in_task_id);
[c80fdd0]572}
573
[8820544]574static bool client_key_equal(void *key, const ht_link_t *item)
[c80fdd0]575{
[8820544]576 task_id_t in_task_id = *(task_id_t *) key;
[062d900]577 client_t *client = hash_table_get_inst(item, client_t, link);
[8820544]578 return in_task_id == client->in_task_id;
[c80fdd0]579}
580
581/** Operations for the client hash table. */
[062d900]582static hash_table_ops_t client_hash_table_ops = {
[c80fdd0]583 .hash = client_hash,
[062d900]584 .key_hash = client_key_hash,
585 .key_equal = client_key_equal,
[4e00f87]586 .equal = NULL,
587 .remove_callback = NULL
[c80fdd0]588};
[80649a91]589
[853802e]590typedef struct {
591 task_id_t task_id;
592 sysarg_t phone_hash;
593} conn_key_t;
594
595/** Compute hash into the connection hash table
[e70bfa5]596 *
[853802e]597 * The hash is based on the source task ID and the source phone hash. The task
598 * ID is included in the hash because a phone hash alone might not be unique
599 * while we still track connections for killed tasks due to kernel's recycling
600 * of phone structures.
601 *
602 * @param key Pointer to the connection key structure.
[c07544d3]603 *
604 * @return Index into the connection hash table.
[e70bfa5]605 *
606 */
[062d900]607static size_t conn_key_hash(void *key)
[450cd3a]608{
[853802e]609 conn_key_t *ck = (conn_key_t *) key;
610
611 size_t hash = 0;
612 hash = hash_combine(hash, LOWER32(ck->task_id));
613 hash = hash_combine(hash, UPPER32(ck->task_id));
614 hash = hash_combine(hash, ck->phone_hash);
615 return hash;
[450cd3a]616}
[06502f7d]617
[062d900]618static size_t conn_hash(const ht_link_t *item)
[450cd3a]619{
[062d900]620 connection_t *conn = hash_table_get_inst(item, connection_t, link);
[853802e]621 return conn_key_hash(&(conn_key_t){
622 .task_id = conn->in_task_id,
623 .phone_hash = conn->in_phone_hash
624 });
[450cd3a]625}
[06502f7d]626
[062d900]627static bool conn_key_equal(void *key, const ht_link_t *item)
[450cd3a]628{
[853802e]629 conn_key_t *ck = (conn_key_t *) key;
[062d900]630 connection_t *conn = hash_table_get_inst(item, connection_t, link);
[853802e]631 return ((ck->task_id == conn->in_task_id) &&
632 (ck->phone_hash == conn->in_phone_hash));
[450cd3a]633}
634
[e70bfa5]635/** Operations for the connection hash table. */
[062d900]636static hash_table_ops_t conn_hash_table_ops = {
[80649a91]637 .hash = conn_hash,
[062d900]638 .key_hash = conn_key_hash,
639 .key_equal = conn_key_equal,
[4e00f87]640 .equal = NULL,
641 .remove_callback = NULL
[80649a91]642};
643
[9ef495f]644static client_t *async_client_get(task_id_t client_id, bool create)
645{
646 client_t *client = NULL;
[a35b458]647
[9ef495f]648 futex_down(&async_futex);
649 ht_link_t *link = hash_table_find(&client_hash_table, &client_id);
650 if (link) {
651 client = hash_table_get_inst(link, client_t, link);
652 atomic_inc(&client->refcnt);
653 } else if (create) {
654 client = malloc(sizeof(client_t));
655 if (client) {
656 client->in_task_id = client_id;
657 client->data = async_client_data_create();
[a35b458]658
[9ef495f]659 atomic_set(&client->refcnt, 1);
660 hash_table_insert(&client_hash_table, &client->link);
661 }
662 }
[a35b458]663
[9ef495f]664 futex_up(&async_futex);
665 return client;
666}
667
668static void async_client_put(client_t *client)
669{
670 bool destroy;
[a35b458]671
[9ef495f]672 futex_down(&async_futex);
[a35b458]673
[9ef495f]674 if (atomic_predec(&client->refcnt) == 0) {
675 hash_table_remove(&client_hash_table, &client->in_task_id);
676 destroy = true;
677 } else
678 destroy = false;
[a35b458]679
[9ef495f]680 futex_up(&async_futex);
[a35b458]681
[9ef495f]682 if (destroy) {
683 if (client->data)
684 async_client_data_destroy(client->data);
[a35b458]685
[9ef495f]686 free(client);
687 }
688}
689
690/** Wrapper for client connection fibril.
691 *
692 * When a new connection arrives, a fibril with this implementing
693 * function is created.
694 *
695 * @param arg Connection structure pointer.
696 *
697 * @return Always zero.
698 *
699 */
[b7fd2a0]700static errno_t connection_fibril(void *arg)
[9ef495f]701{
702 assert(arg);
[a35b458]703
[9ef495f]704 /*
705 * Setup fibril-local connection pointer.
706 */
707 fibril_connection = (connection_t *) arg;
[a35b458]708
[9ef495f]709 /*
710 * Add our reference for the current connection in the client task
711 * tracking structure. If this is the first reference, create and
712 * hash in a new tracking structure.
713 */
[a35b458]714
[9ef495f]715 client_t *client = async_client_get(fibril_connection->in_task_id, true);
716 if (!client) {
[01c3bb4]717 ipc_answer_0(fibril_connection->chandle, ENOMEM);
[9ef495f]718 return 0;
719 }
[a35b458]720
[9ef495f]721 fibril_connection->client = client;
[a35b458]722
[9ef495f]723 /*
724 * Call the connection handler function.
725 */
[01c3bb4]726 fibril_connection->handler(fibril_connection->chandle,
[9ef495f]727 &fibril_connection->call, fibril_connection->data);
[a35b458]728
[9ef495f]729 /*
730 * Remove the reference for this client task connection.
731 */
732 async_client_put(client);
[a35b458]733
[9ef495f]734 /*
735 * Remove myself from the connection hash table.
736 */
737 futex_down(&async_futex);
[853802e]738 hash_table_remove(&conn_hash_table, &(conn_key_t){
739 .task_id = fibril_connection->in_task_id,
740 .phone_hash = fibril_connection->in_phone_hash
741 });
[9ef495f]742 futex_up(&async_futex);
[a35b458]743
[9ef495f]744 /*
745 * Answer all remaining messages with EHANGUP.
746 */
747 while (!list_empty(&fibril_connection->msg_queue)) {
748 msg_t *msg =
749 list_get_instance(list_first(&fibril_connection->msg_queue),
750 msg_t, link);
[a35b458]751
[9ef495f]752 list_remove(&msg->link);
[01c3bb4]753 ipc_answer_0(msg->chandle, EHANGUP);
[9ef495f]754 free(msg);
755 }
[a35b458]756
[9ef495f]757 /*
758 * If the connection was hung-up, answer the last call,
759 * i.e. IPC_M_PHONE_HUNGUP.
760 */
[01c3bb4]761 if (fibril_connection->close_chandle)
762 ipc_answer_0(fibril_connection->close_chandle, EOK);
[a35b458]763
[9ef495f]764 free(fibril_connection);
[d5c1051]765 return EOK;
[9ef495f]766}
767
768/** Create a new fibril for a new connection.
769 *
[01c3bb4]770 * Create new fibril for connection, fill in connection structures and insert it
771 * into the hash table, so that later we can easily do routing of messages to
772 * particular fibrils.
[9ef495f]773 *
[01c3bb4]774 * @param in_task_id Identification of the incoming connection.
775 * @param in_phone_hash Identification of the incoming connection.
776 * @param chandle Handle of the opening IPC_M_CONNECT_ME_TO call.
777 * If chandle is CAP_NIL, the connection was opened by
778 * accepting the IPC_M_CONNECT_TO_ME call and this
779 * function is called directly by the server.
780 * @param call Call data of the opening call.
781 * @param handler Connection handler.
782 * @param data Client argument to pass to the connection handler.
[9ef495f]783 *
[01c3bb4]784 * @return New fibril id or NULL on failure.
[9ef495f]785 *
786 */
787static fid_t async_new_connection(task_id_t in_task_id, sysarg_t in_phone_hash,
[eadaeae8]788 cap_call_handle_t chandle, ipc_call_t *call, async_port_handler_t handler,
[9ef495f]789 void *data)
790{
791 connection_t *conn = malloc(sizeof(*conn));
792 if (!conn) {
[01c3bb4]793 if (chandle != CAP_NIL)
794 ipc_answer_0(chandle, ENOMEM);
[a35b458]795
[9ef495f]796 return (uintptr_t) NULL;
797 }
[a35b458]798
[9ef495f]799 conn->in_task_id = in_task_id;
800 conn->in_phone_hash = in_phone_hash;
801 list_initialize(&conn->msg_queue);
[01c3bb4]802 conn->chandle = chandle;
803 conn->close_chandle = CAP_NIL;
[9ef495f]804 conn->handler = handler;
805 conn->data = data;
[a35b458]806
[9ef495f]807 if (call)
808 conn->call = *call;
[a35b458]809
[9ef495f]810 /* We will activate the fibril ASAP */
811 conn->wdata.active = true;
812 conn->wdata.fid = fibril_create(connection_fibril, conn);
[a35b458]813
[9ef495f]814 if (conn->wdata.fid == 0) {
815 free(conn);
[a35b458]816
[01c3bb4]817 if (chandle != CAP_NIL)
818 ipc_answer_0(chandle, ENOMEM);
[a35b458]819
[9ef495f]820 return (uintptr_t) NULL;
821 }
[a35b458]822
[9ef495f]823 /* Add connection to the connection hash table */
[a35b458]824
[9ef495f]825 futex_down(&async_futex);
826 hash_table_insert(&conn_hash_table, &conn->link);
827 futex_up(&async_futex);
[a35b458]828
[9ef495f]829 fibril_add_ready(conn->wdata.fid);
[a35b458]830
[9ef495f]831 return conn->wdata.fid;
832}
833
[78bb04b]834/** Wrapper for making IPC_M_CONNECT_TO_ME calls using the async framework.
835 *
836 * Ask through phone for a new connection to some service.
837 *
838 * @param exch Exchange for sending the message.
839 * @param iface Callback interface.
840 * @param arg1 User defined argument.
841 * @param arg2 User defined argument.
842 * @param handler Callback handler.
843 * @param data Handler data.
844 * @param port_id ID of the newly created port.
845 *
[cde999a]846 * @return Zero on success or an error code.
[78bb04b]847 *
848 */
[b7fd2a0]849errno_t async_create_callback_port(async_exch_t *exch, iface_t iface, sysarg_t arg1,
[78bb04b]850 sysarg_t arg2, async_port_handler_t handler, void *data, port_id_t *port_id)
851{
852 if ((iface & IFACE_MOD_CALLBACK) != IFACE_MOD_CALLBACK)
853 return EINVAL;
[a35b458]854
[78bb04b]855 if (exch == NULL)
856 return ENOENT;
[a35b458]857
[78bb04b]858 ipc_call_t answer;
859 aid_t req = async_send_3(exch, IPC_M_CONNECT_TO_ME, iface, arg1, arg2,
860 &answer);
[a35b458]861
[b7fd2a0]862 errno_t ret;
[78bb04b]863 async_wait_for(req, &ret);
864 if (ret != EOK)
[b7fd2a0]865 return (errno_t) ret;
[a35b458]866
[78bb04b]867 sysarg_t phone_hash = IPC_GET_ARG5(answer);
868 interface_t *interface;
[a35b458]869
[78bb04b]870 futex_down(&async_futex);
[a35b458]871
[78bb04b]872 ht_link_t *link = hash_table_find(&interface_hash_table, &iface);
873 if (link)
874 interface = hash_table_get_inst(link, interface_t, link);
875 else
876 interface = async_new_interface(iface);
[a35b458]877
[78bb04b]878 if (!interface) {
879 futex_up(&async_futex);
880 return ENOMEM;
881 }
[a35b458]882
[78bb04b]883 port_t *port = async_new_port(interface, handler, data);
884 if (!port) {
885 futex_up(&async_futex);
886 return ENOMEM;
887 }
[a35b458]888
[78bb04b]889 *port_id = port->id;
[a35b458]890
[78bb04b]891 futex_up(&async_futex);
[a35b458]892
[78bb04b]893 fid_t fid = async_new_connection(answer.in_task_id, phone_hash,
[01c3bb4]894 CAP_NIL, NULL, handler, data);
[78bb04b]895 if (fid == (uintptr_t) NULL)
896 return ENOMEM;
[a35b458]897
[78bb04b]898 return EOK;
899}
900
[8820544]901static size_t notification_key_hash(void *key)
902{
903 sysarg_t id = *(sysarg_t *) key;
904 return id;
905}
906
907static size_t notification_hash(const ht_link_t *item)
908{
909 notification_t *notification =
910 hash_table_get_inst(item, notification_t, link);
911 return notification_key_hash(&notification->imethod);
912}
913
914static bool notification_key_equal(void *key, const ht_link_t *item)
915{
916 sysarg_t id = *(sysarg_t *) key;
917 notification_t *notification =
918 hash_table_get_inst(item, notification_t, link);
919 return id == notification->imethod;
920}
921
922/** Operations for the notification hash table. */
923static hash_table_ops_t notification_hash_table_ops = {
924 .hash = notification_hash,
925 .key_hash = notification_key_hash,
926 .key_equal = notification_key_equal,
927 .equal = NULL,
928 .remove_callback = NULL
929};
930
[e70bfa5]931/** Sort in current fibril's timeout request.
[49d072e]932 *
[c07544d3]933 * @param wd Wait data of the current fibril.
934 *
[49d072e]935 */
[b6ee5b1]936void async_insert_timeout(awaiter_t *wd)
[49d072e]937{
[79ae36dd]938 assert(wd);
[a35b458]939
[f53cc81]940 wd->to_event.occurred = false;
941 wd->to_event.inlist = true;
[a35b458]942
[b72efe8]943 link_t *tmp = timeout_list.head.next;
944 while (tmp != &timeout_list.head) {
[3bacee1]945 awaiter_t *cur =
946 list_get_instance(tmp, awaiter_t, to_event.link);
[a35b458]947
[f53cc81]948 if (tv_gteq(&cur->to_event.expires, &wd->to_event.expires))
[49d072e]949 break;
[a35b458]950
[49d072e]951 tmp = tmp->next;
952 }
[a35b458]953
[b72efe8]954 list_insert_before(&wd->to_event.link, tmp);
[49d072e]955}
956
[e70bfa5]957/** Try to route a call to an appropriate connection fibril.
[80649a91]958 *
[36c9234]959 * If the proper connection fibril is found, a message with the call is added to
960 * its message queue. If the fibril was not active, it is activated and all
961 * timeouts are unregistered.
962 *
[01c3bb4]963 * @param chandle Handle of the incoming call.
964 * @param call Data of the incoming call.
[c07544d3]965 *
966 * @return False if the call doesn't match any connection.
[47b7006]967 * @return True if the call was passed to the respective connection fibril.
[36c9234]968 *
[80649a91]969 */
[eadaeae8]970static bool route_call(cap_call_handle_t chandle, ipc_call_t *call)
[450cd3a]971{
[79ae36dd]972 assert(call);
[a35b458]973
[01ff41c]974 futex_down(&async_futex);
[a35b458]975
[853802e]976 ht_link_t *link = hash_table_find(&conn_hash_table, &(conn_key_t){
977 .task_id = call->in_task_id,
978 .phone_hash = call->in_phone_hash
979 });
[8820544]980 if (!link) {
[01ff41c]981 futex_up(&async_futex);
[c07544d3]982 return false;
[450cd3a]983 }
[a35b458]984
[8820544]985 connection_t *conn = hash_table_get_inst(link, connection_t, link);
[a35b458]986
[c07544d3]987 msg_t *msg = malloc(sizeof(*msg));
988 if (!msg) {
989 futex_up(&async_futex);
990 return false;
991 }
[a35b458]992
[01c3bb4]993 msg->chandle = chandle;
[80649a91]994 msg->call = *call;
995 list_append(&msg->link, &conn->msg_queue);
[a35b458]996
[228e490]997 if (IPC_GET_IMETHOD(*call) == IPC_M_PHONE_HUNGUP)
[01c3bb4]998 conn->close_chandle = chandle;
[a35b458]999
[36c9234]1000 /* If the connection fibril is waiting for an event, activate it */
[49d072e]1001 if (!conn->wdata.active) {
[a35b458]1002
[49d072e]1003 /* If in timeout list, remove it */
[f53cc81]1004 if (conn->wdata.to_event.inlist) {
1005 conn->wdata.to_event.inlist = false;
1006 list_remove(&conn->wdata.to_event.link);
[49d072e]1007 }
[a35b458]1008
[c07544d3]1009 conn->wdata.active = true;
[bc1f1c2]1010 fibril_add_ready(conn->wdata.fid);
[80649a91]1011 }
[a35b458]1012
[01ff41c]1013 futex_up(&async_futex);
[c07544d3]1014 return true;
1015}
[80649a91]1016
[c170438]1017/** Process notification.
[c07544d3]1018 *
[c170438]1019 * @param call Data of the incoming call.
[58563585]1020 *
[c07544d3]1021 */
[01c3bb4]1022static void process_notification(ipc_call_t *call)
[c07544d3]1023{
[8820544]1024 async_notification_handler_t handler = NULL;
1025 void *data = NULL;
[c170438]1026
1027 assert(call);
[a35b458]1028
[8820544]1029 futex_down(&async_futex);
[a35b458]1030
[8820544]1031 ht_link_t *link = hash_table_find(&notification_hash_table,
[c170438]1032 &IPC_GET_IMETHOD(*call));
[8820544]1033 if (link) {
1034 notification_t *notification =
1035 hash_table_get_inst(link, notification_t, link);
1036 handler = notification->handler;
1037 data = notification->data;
1038 }
[a35b458]1039
[8820544]1040 futex_up(&async_futex);
[a35b458]1041
[8820544]1042 if (handler)
[01c3bb4]1043 handler(call, data);
[80649a91]1044}
1045
[8820544]1046/** Subscribe to IRQ notification.
1047 *
1048 * @param inr IRQ number.
1049 * @param handler Notification handler.
1050 * @param data Notification handler client data.
1051 * @param ucode Top-half pseudocode handler.
1052 *
[071a1ddb]1053 * @param[out] handle IRQ capability handle on success.
1054 *
[cde999a]1055 * @return An error code.
[8820544]1056 *
1057 */
[b7fd2a0]1058errno_t async_irq_subscribe(int inr, async_notification_handler_t handler,
[eadaeae8]1059 void *data, const irq_code_t *ucode, cap_irq_handle_t *handle)
[8820544]1060{
1061 notification_t *notification =
1062 (notification_t *) malloc(sizeof(notification_t));
1063 if (!notification)
1064 return ENOMEM;
[a35b458]1065
[8820544]1066 futex_down(&async_futex);
[a35b458]1067
[8820544]1068 sysarg_t imethod = notification_avail;
1069 notification_avail++;
[a35b458]1070
[8820544]1071 notification->imethod = imethod;
1072 notification->handler = handler;
1073 notification->data = data;
[a35b458]1074
[8820544]1075 hash_table_insert(&notification_hash_table, &notification->link);
[a35b458]1076
[8820544]1077 futex_up(&async_futex);
[a35b458]1078
[eadaeae8]1079 cap_irq_handle_t ihandle;
1080 errno_t rc = ipc_irq_subscribe(inr, imethod, ucode, &ihandle);
[071a1ddb]1081 if (rc == EOK && handle != NULL) {
[eadaeae8]1082 *handle = ihandle;
[9233e9d]1083 }
[071a1ddb]1084 return rc;
[8820544]1085}
1086
1087/** Unsubscribe from IRQ notification.
1088 *
[eadaeae8]1089 * @param handle IRQ capability handle.
[8820544]1090 *
[cde999a]1091 * @return Zero on success or an error code.
[8820544]1092 *
1093 */
[eadaeae8]1094errno_t async_irq_unsubscribe(cap_irq_handle_t ihandle)
[8820544]1095{
1096 // TODO: Remove entry from hash table
1097 // to avoid memory leak
[a35b458]1098
[eadaeae8]1099 return ipc_irq_unsubscribe(ihandle);
[8820544]1100}
1101
1102/** Subscribe to event notifications.
1103 *
1104 * @param evno Event type to subscribe.
1105 * @param handler Notification handler.
1106 * @param data Notification handler client data.
1107 *
[cde999a]1108 * @return Zero on success or an error code.
[8820544]1109 *
1110 */
[b7fd2a0]1111errno_t async_event_subscribe(event_type_t evno,
[8820544]1112 async_notification_handler_t handler, void *data)
1113{
1114 notification_t *notification =
1115 (notification_t *) malloc(sizeof(notification_t));
1116 if (!notification)
1117 return ENOMEM;
[a35b458]1118
[8820544]1119 futex_down(&async_futex);
[a35b458]1120
[8820544]1121 sysarg_t imethod = notification_avail;
1122 notification_avail++;
[a35b458]1123
[8820544]1124 notification->imethod = imethod;
1125 notification->handler = handler;
1126 notification->data = data;
[a35b458]1127
[8820544]1128 hash_table_insert(&notification_hash_table, &notification->link);
[a35b458]1129
[8820544]1130 futex_up(&async_futex);
[a35b458]1131
[8820544]1132 return ipc_event_subscribe(evno, imethod);
1133}
1134
1135/** Subscribe to task event notifications.
1136 *
1137 * @param evno Event type to subscribe.
1138 * @param handler Notification handler.
1139 * @param data Notification handler client data.
1140 *
[cde999a]1141 * @return Zero on success or an error code.
[8820544]1142 *
1143 */
[b7fd2a0]1144errno_t async_event_task_subscribe(event_task_type_t evno,
[8820544]1145 async_notification_handler_t handler, void *data)
1146{
1147 notification_t *notification =
1148 (notification_t *) malloc(sizeof(notification_t));
1149 if (!notification)
1150 return ENOMEM;
[a35b458]1151
[8820544]1152 futex_down(&async_futex);
[a35b458]1153
[8820544]1154 sysarg_t imethod = notification_avail;
1155 notification_avail++;
[a35b458]1156
[8820544]1157 notification->imethod = imethod;
1158 notification->handler = handler;
1159 notification->data = data;
[a35b458]1160
[8820544]1161 hash_table_insert(&notification_hash_table, &notification->link);
[a35b458]1162
[8820544]1163 futex_up(&async_futex);
[a35b458]1164
[8820544]1165 return ipc_event_task_subscribe(evno, imethod);
1166}
1167
1168/** Unmask event notifications.
1169 *
1170 * @param evno Event type to unmask.
1171 *
1172 * @return Value returned by the kernel.
1173 *
1174 */
[b7fd2a0]1175errno_t async_event_unmask(event_type_t evno)
[8820544]1176{
1177 return ipc_event_unmask(evno);
1178}
1179
1180/** Unmask task event notifications.
1181 *
1182 * @param evno Event type to unmask.
1183 *
1184 * @return Value returned by the kernel.
1185 *
1186 */
[b7fd2a0]1187errno_t async_event_task_unmask(event_task_type_t evno)
[8820544]1188{
1189 return ipc_event_task_unmask(evno);
1190}
1191
[e70bfa5]1192/** Return new incoming message for the current (fibril-local) connection.
1193 *
[01c3bb4]1194 * @param call Storage where the incoming call data will be stored.
1195 * @param usecs Timeout in microseconds. Zero denotes no timeout.
[e70bfa5]1196 *
[01c3bb4]1197 * @return If no timeout was specified, then a handle of the incoming call is
1198 * returned. If a timeout is specified, then a handle of the incoming
1199 * call is returned unless the timeout expires prior to receiving a
1200 * message. In that case zero CAP_NIL is returned.
[e70bfa5]1201 */
[eadaeae8]1202cap_call_handle_t async_get_call_timeout(ipc_call_t *call, suseconds_t usecs)
[80649a91]1203{
[79ae36dd]1204 assert(call);
1205 assert(fibril_connection);
[a35b458]1206
[c07544d3]1207 /* Why doing this?
[79ae36dd]1208 * GCC 4.1.0 coughs on fibril_connection-> dereference.
[6c46350]1209 * GCC 4.1.1 happilly puts the rdhwr instruction in delay slot.
[c07544d3]1210 * I would never expect to find so many errors in
1211 * a compiler.
[6c46350]1212 */
[79ae36dd]1213 connection_t *conn = fibril_connection;
[a35b458]1214
[01ff41c]1215 futex_down(&async_futex);
[a35b458]1216
[49d072e]1217 if (usecs) {
[45cbcaf4]1218 getuptime(&conn->wdata.to_event.expires);
[7f9d97f3]1219 tv_add_diff(&conn->wdata.to_event.expires, usecs);
[c07544d3]1220 } else
[f53cc81]1221 conn->wdata.to_event.inlist = false;
[a35b458]1222
[e70bfa5]1223 /* If nothing in queue, wait until something arrives */
[6c46350]1224 while (list_empty(&conn->msg_queue)) {
[01c3bb4]1225 if (conn->close_chandle) {
[8c8f8d6]1226 /*
1227 * Handle the case when the connection was already
1228 * closed by the client but the server did not notice
1229 * the first IPC_M_PHONE_HUNGUP call and continues to
1230 * call async_get_call_timeout(). Repeat
[47b7006]1231 * IPC_M_PHONE_HUNGUP until the caller notices.
[8c8f8d6]1232 */
1233 memset(call, 0, sizeof(ipc_call_t));
[228e490]1234 IPC_SET_IMETHOD(*call, IPC_M_PHONE_HUNGUP);
[8c8f8d6]1235 futex_up(&async_futex);
[01c3bb4]1236 return conn->close_chandle;
[8c8f8d6]1237 }
[a35b458]1238
[085bd54]1239 if (usecs)
[b6ee5b1]1240 async_insert_timeout(&conn->wdata);
[a35b458]1241
[c07544d3]1242 conn->wdata.active = false;
[a35b458]1243
[c7509e5]1244 /*
1245 * Note: the current fibril will be rescheduled either due to a
1246 * timeout or due to an arriving message destined to it. In the
1247 * former case, handle_expired_timeouts() and, in the latter
1248 * case, route_call() will perform the wakeup.
1249 */
[116d3f6f]1250 fibril_switch(FIBRIL_TO_MANAGER);
[a35b458]1251
[e70bfa5]1252 /*
[c07544d3]1253 * Futex is up after getting back from async_manager.
1254 * Get it again.
[c7509e5]1255 */
[49d072e]1256 futex_down(&async_futex);
[3bacee1]1257 if ((usecs) && (conn->wdata.to_event.occurred) &&
1258 (list_empty(&conn->msg_queue))) {
[e70bfa5]1259 /* If we timed out -> exit */
[49d072e]1260 futex_up(&async_futex);
[01c3bb4]1261 return CAP_NIL;
[49d072e]1262 }
[450cd3a]1263 }
[a35b458]1264
[57dea62]1265 msg_t *msg = list_get_instance(list_first(&conn->msg_queue),
1266 msg_t, link);
[80649a91]1267 list_remove(&msg->link);
[a35b458]1268
[eadaeae8]1269 cap_call_handle_t chandle = msg->chandle;
[80649a91]1270 *call = msg->call;
1271 free(msg);
[a35b458]1272
[01ff41c]1273 futex_up(&async_futex);
[01c3bb4]1274 return chandle;
[80649a91]1275}
1276
[455f190]1277void *async_get_client_data(void)
1278{
1279 assert(fibril_connection);
1280 return fibril_connection->client->data;
1281}
1282
[e2ab36f1]1283void *async_get_client_data_by_id(task_id_t client_id)
[455f190]1284{
[e2ab36f1]1285 client_t *client = async_client_get(client_id, false);
[455f190]1286 if (!client)
1287 return NULL;
[a35b458]1288
[455f190]1289 if (!client->data) {
1290 async_client_put(client);
1291 return NULL;
1292 }
[a35b458]1293
[455f190]1294 return client->data;
1295}
1296
[e2ab36f1]1297void async_put_client_data_by_id(task_id_t client_id)
[455f190]1298{
[e2ab36f1]1299 client_t *client = async_client_get(client_id, false);
[a35b458]1300
[455f190]1301 assert(client);
1302 assert(client->data);
[a35b458]1303
[cdc8ee2d]1304 /* Drop the reference we got in async_get_client_data_by_hash(). */
1305 async_client_put(client);
[a35b458]1306
[cdc8ee2d]1307 /* Drop our own reference we got at the beginning of this function. */
[455f190]1308 async_client_put(client);
1309}
1310
[566992e1]1311static port_t *async_find_port(iface_t iface, port_id_t port_id)
1312{
1313 port_t *port = NULL;
[a35b458]1314
[566992e1]1315 futex_down(&async_futex);
[a35b458]1316
[566992e1]1317 ht_link_t *link = hash_table_find(&interface_hash_table, &iface);
1318 if (link) {
1319 interface_t *interface =
1320 hash_table_get_inst(link, interface_t, link);
[a35b458]1321
[566992e1]1322 link = hash_table_find(&interface->port_hash_table, &port_id);
1323 if (link)
1324 port = hash_table_get_inst(link, port_t, link);
1325 }
[a35b458]1326
[566992e1]1327 futex_up(&async_futex);
[a35b458]1328
[566992e1]1329 return port;
1330}
1331
[36c9234]1332/** Handle a call that was received.
1333 *
1334 * If the call has the IPC_M_CONNECT_ME_TO method, a new connection is created.
1335 * Otherwise the call is routed to its connection fibril.
1336 *
[01c3bb4]1337 * @param chandle Handle of the incoming call.
1338 * @param call Data of the incoming call.
[6b21292]1339 *
[36c9234]1340 */
[eadaeae8]1341static void handle_call(cap_call_handle_t chandle, ipc_call_t *call)
[80649a91]1342{
[79ae36dd]1343 assert(call);
[a35b458]1344
[b688fd8]1345 /* Kernel notification */
[addbce4]1346 if ((chandle == CAP_NIL) && (call->flags & IPC_CALL_NOTIF)) {
[c170438]1347 fibril_t *fibril = (fibril_t *) __tcb_get()->fibril_data;
1348 unsigned oldsw = fibril->switches;
[a35b458]1349
[01c3bb4]1350 process_notification(call);
[a35b458]1351
[c170438]1352 if (oldsw != fibril->switches) {
1353 /*
1354 * The notification handler did not execute atomically
1355 * and so the current manager fibril assumed the role of
1356 * a notification fibril. While waiting for its
1357 * resources, it switched to another manager fibril that
1358 * had already existed or it created a new one. We
1359 * therefore know there is at least yet another
1360 * manager fibril that can take over. We now kill the
1361 * current 'notification' fibril to prevent fibril
1362 * population explosion.
1363 */
1364 futex_down(&async_futex);
1365 fibril_switch(FIBRIL_FROM_DEAD);
1366 }
[a35b458]1367
[47b7006]1368 return;
[6b21292]1369 }
[a35b458]1370
[566992e1]1371 /* New connection */
1372 if (IPC_GET_IMETHOD(*call) == IPC_M_CONNECT_ME_TO) {
1373 iface_t iface = (iface_t) IPC_GET_ARG1(*call);
1374 sysarg_t in_phone_hash = IPC_GET_ARG5(*call);
[a35b458]1375
[01c3bb4]1376 async_port_handler_t handler = fallback_port_handler;
[566992e1]1377 void *data = fallback_port_data;
[a35b458]1378
[566992e1]1379 // TODO: Currently ignores all ports but the first one
1380 port_t *port = async_find_port(iface, 0);
1381 if (port) {
1382 handler = port->handler;
1383 data = port->data;
1384 }
[a35b458]1385
[01c3bb4]1386 async_new_connection(call->in_task_id, in_phone_hash, chandle,
[566992e1]1387 call, handler, data);
1388 return;
1389 }
[a35b458]1390
[36c9234]1391 /* Try to route the call through the connection hash table */
[01c3bb4]1392 if (route_call(chandle, call))
[47b7006]1393 return;
[a35b458]1394
[44c6d88d]1395 /* Unknown call from unknown phone - hang it up */
[01c3bb4]1396 ipc_answer_0(chandle, EHANGUP);
[450cd3a]1397}
1398
[f2f0392]1399/** Fire all timeouts that expired. */
[c042bdd]1400static void handle_expired_timeouts(void)
1401{
1402 struct timeval tv;
[45cbcaf4]1403 getuptime(&tv);
[a35b458]1404
[c042bdd]1405 futex_down(&async_futex);
[a35b458]1406
[b72efe8]1407 link_t *cur = list_first(&timeout_list);
1408 while (cur != NULL) {
[47b7006]1409 awaiter_t *waiter =
1410 list_get_instance(cur, awaiter_t, to_event.link);
[a35b458]1411
[f53cc81]1412 if (tv_gt(&waiter->to_event.expires, &tv))
[c042bdd]1413 break;
[a35b458]1414
[f53cc81]1415 list_remove(&waiter->to_event.link);
1416 waiter->to_event.inlist = false;
1417 waiter->to_event.occurred = true;
[a35b458]1418
[36c9234]1419 /*
[c07544d3]1420 * Redundant condition?
1421 * The fibril should not be active when it gets here.
[c042bdd]1422 */
[49d072e]1423 if (!waiter->active) {
[c07544d3]1424 waiter->active = true;
[bc1f1c2]1425 fibril_add_ready(waiter->fid);
[c042bdd]1426 }
[a35b458]1427
[b72efe8]1428 cur = list_first(&timeout_list);
[c042bdd]1429 }
[a35b458]1430
[c042bdd]1431 futex_up(&async_futex);
1432}
1433
[36c9234]1434/** Endless loop dispatching incoming calls and answers.
1435 *
[c07544d3]1436 * @return Never returns.
1437 *
[36c9234]1438 */
[b7fd2a0]1439static errno_t async_manager_worker(void)
[80649a91]1440{
[c07544d3]1441 while (true) {
[116d3f6f]1442 if (fibril_switch(FIBRIL_FROM_MANAGER)) {
[47b7006]1443 futex_up(&async_futex);
[36c9234]1444 /*
1445 * async_futex is always held when entering a manager
1446 * fibril.
[a46da63]1447 */
[80649a91]1448 continue;
1449 }
[a35b458]1450
[c042bdd]1451 futex_down(&async_futex);
[a35b458]1452
[c07544d3]1453 suseconds_t timeout;
[1db6dfd]1454 unsigned int flags = SYNCH_FLAGS_NONE;
[c042bdd]1455 if (!list_empty(&timeout_list)) {
[b72efe8]1456 awaiter_t *waiter = list_get_instance(
1457 list_first(&timeout_list), awaiter_t, to_event.link);
[a35b458]1458
[c07544d3]1459 struct timeval tv;
[45cbcaf4]1460 getuptime(&tv);
[a35b458]1461
[f53cc81]1462 if (tv_gteq(&tv, &waiter->to_event.expires)) {
[6c46350]1463 futex_up(&async_futex);
[c042bdd]1464 handle_expired_timeouts();
[1db6dfd]1465 /*
1466 * Notice that even if the event(s) already
1467 * expired (and thus the other fibril was
1468 * supposed to be running already),
1469 * we check for incoming IPC.
1470 *
1471 * Otherwise, a fibril that continuously
1472 * creates (almost) expired events could
1473 * prevent IPC retrieval from the kernel.
1474 */
1475 timeout = 0;
1476 flags = SYNCH_FLAGS_NON_BLOCKING;
1477
1478 } else {
[7f9d97f3]1479 timeout = tv_sub_diff(&waiter->to_event.expires,
1480 &tv);
[1db6dfd]1481 futex_up(&async_futex);
1482 }
1483 } else {
1484 futex_up(&async_futex);
[0b99e40]1485 timeout = SYNCH_NO_TIMEOUT;
[1db6dfd]1486 }
[a35b458]1487
[8619f25]1488 atomic_inc(&threads_in_ipc_wait);
[a35b458]1489
[c07544d3]1490 ipc_call_t call;
[b7fd2a0]1491 errno_t rc = ipc_wait_cycle(&call, timeout, flags);
[a35b458]1492
[8619f25]1493 atomic_dec(&threads_in_ipc_wait);
[a35b458]1494
[6deb2cd]1495 assert(rc == EOK);
[01c3bb4]1496
[6deb2cd]1497 if (call.cap_handle == CAP_NIL) {
[a1026da]1498 if ((call.flags &
1499 (IPC_CALL_NOTIF | IPC_CALL_ANSWERED)) == 0) {
1500 /* Neither a notification nor an answer. */
[01c3bb4]1501 handle_expired_timeouts();
1502 continue;
1503 }
[0b99e40]1504 }
[01c3bb4]1505
[addbce4]1506 if (call.flags & IPC_CALL_ANSWERED)
[80649a91]1507 continue;
[01c3bb4]1508
[6deb2cd]1509 handle_call(call.cap_handle, &call);
[80649a91]1510 }
[01c3bb4]1511
[a46da63]1512 return 0;
[80649a91]1513}
1514
[36c9234]1515/** Function to start async_manager as a standalone fibril.
[c07544d3]1516 *
[36c9234]1517 * When more kernel threads are used, one async manager should exist per thread.
1518 *
[c07544d3]1519 * @param arg Unused.
1520 * @return Never returns.
[36c9234]1521 *
[a2cd194]1522 */
[b7fd2a0]1523static errno_t async_manager_fibril(void *arg)
[80649a91]1524{
[a46da63]1525 futex_up(&async_futex);
[a35b458]1526
[36c9234]1527 /*
1528 * async_futex is always locked when entering manager
1529 */
[085bd54]1530 async_manager_worker();
[a35b458]1531
[a46da63]1532 return 0;
[80649a91]1533}
[450cd3a]1534
[36c9234]1535/** Add one manager to manager list. */
[80649a91]1536void async_create_manager(void)
[450cd3a]1537{
[c170438]1538 fid_t fid = fibril_create_generic(async_manager_fibril, NULL, PAGE_SIZE);
[86d7bfa]1539 if (fid != 0)
1540 fibril_add_manager(fid);
[80649a91]1541}
1542
1543/** Remove one manager from manager list */
1544void async_destroy_manager(void)
1545{
[bc1f1c2]1546 fibril_remove_manager();
[80649a91]1547}
1548
[36c9234]1549/** Initialize the async framework.
1550 *
1551 */
[47b7006]1552void __async_init(void)
[80649a91]1553{
[566992e1]1554 if (!hash_table_create(&interface_hash_table, 0, 0,
1555 &interface_hash_table_ops))
1556 abort();
[a35b458]1557
[062d900]1558 if (!hash_table_create(&client_hash_table, 0, 0, &client_hash_table_ops))
[47b7006]1559 abort();
[a35b458]1560
[062d900]1561 if (!hash_table_create(&conn_hash_table, 0, 0, &conn_hash_table_ops))
[47b7006]1562 abort();
[a35b458]1563
[8820544]1564 if (!hash_table_create(&notification_hash_table, 0, 0,
1565 &notification_hash_table_ops))
1566 abort();
[a35b458]1567
[79ae36dd]1568 session_ns = (async_sess_t *) malloc(sizeof(async_sess_t));
1569 if (session_ns == NULL)
1570 abort();
[a35b458]1571
[566992e1]1572 session_ns->iface = 0;
[79ae36dd]1573 session_ns->mgmt = EXCHANGE_ATOMIC;
1574 session_ns->phone = PHONE_NS;
1575 session_ns->arg1 = 0;
1576 session_ns->arg2 = 0;
1577 session_ns->arg3 = 0;
[a35b458]1578
[58cbf8d5]1579 fibril_mutex_initialize(&session_ns->remote_state_mtx);
1580 session_ns->remote_state_data = NULL;
[a35b458]1581
[79ae36dd]1582 list_initialize(&session_ns->exch_list);
1583 fibril_mutex_initialize(&session_ns->mutex);
1584 atomic_set(&session_ns->refcnt, 0);
[450cd3a]1585}
[01ff41c]1586
[36c9234]1587/** Reply received callback.
[01ff41c]1588 *
[36c9234]1589 * This function is called whenever a reply for an asynchronous message sent out
1590 * by the asynchronous framework is received.
1591 *
1592 * Notify the fibril which is waiting for this message that it has arrived.
1593 *
[c07544d3]1594 * @param arg Pointer to the asynchronous message record.
1595 * @param retval Value returned in the answer.
1596 * @param data Call data of the answer.
[47b7006]1597 *
[01ff41c]1598 */
[b7fd2a0]1599void reply_received(void *arg, errno_t retval, ipc_call_t *data)
[01ff41c]1600{
[79ae36dd]1601 assert(arg);
[a35b458]1602
[9db9b10]1603 futex_down(&async_futex);
[a35b458]1604
[c07544d3]1605 amsg_t *msg = (amsg_t *) arg;
[01ff41c]1606 msg->retval = retval;
[a35b458]1607
[36c9234]1608 /* Copy data after futex_down, just in case the call was detached */
[9db9b10]1609 if ((msg->dataptr) && (data))
[c07544d3]1610 *msg->dataptr = *data;
[a35b458]1611
[c042bdd]1612 write_barrier();
[a35b458]1613
[c042bdd]1614 /* Remove message from timeout list */
[f53cc81]1615 if (msg->wdata.to_event.inlist)
1616 list_remove(&msg->wdata.to_event.link);
[a35b458]1617
[c07544d3]1618 msg->done = true;
[a35b458]1619
[47c9a8c]1620 if (msg->forget) {
1621 assert(msg->wdata.active);
1622 amsg_destroy(msg);
1623 } else if (!msg->wdata.active) {
[c07544d3]1624 msg->wdata.active = true;
[bc1f1c2]1625 fibril_add_ready(msg->wdata.fid);
[01ff41c]1626 }
[a35b458]1627
[01ff41c]1628 futex_up(&async_futex);
1629}
1630
[36c9234]1631/** Send message and return id of the sent message.
1632 *
1633 * The return value can be used as input for async_wait() to wait for
1634 * completion.
[01ff41c]1635 *
[79ae36dd]1636 * @param exch Exchange for sending the message.
1637 * @param imethod Service-defined interface and method.
[c07544d3]1638 * @param arg1 Service-defined payload argument.
1639 * @param arg2 Service-defined payload argument.
1640 * @param arg3 Service-defined payload argument.
1641 * @param arg4 Service-defined payload argument.
[01c3bb4]1642 * @param dataptr If non-NULL, storage where the reply data will be stored.
[c07544d3]1643 *
1644 * @return Hash of the sent message or 0 on error.
[36c9234]1645 *
[01ff41c]1646 */
[79ae36dd]1647aid_t async_send_fast(async_exch_t *exch, sysarg_t imethod, sysarg_t arg1,
[96b02eb9]1648 sysarg_t arg2, sysarg_t arg3, sysarg_t arg4, ipc_call_t *dataptr)
[01ff41c]1649{
[79ae36dd]1650 if (exch == NULL)
1651 return 0;
[a35b458]1652
[47c9a8c]1653 amsg_t *msg = amsg_create();
[79ae36dd]1654 if (msg == NULL)
[c07544d3]1655 return 0;
[a35b458]1656
[01ff41c]1657 msg->dataptr = dataptr;
[c07544d3]1658 msg->wdata.active = true;
[a35b458]1659
[79ae36dd]1660 ipc_call_async_4(exch->phone, imethod, arg1, arg2, arg3, arg4, msg,
[dcc150cb]1661 reply_received);
[a35b458]1662
[01ff41c]1663 return (aid_t) msg;
1664}
1665
[90f5d64]1666/** Send message and return id of the sent message
1667 *
[36c9234]1668 * The return value can be used as input for async_wait() to wait for
1669 * completion.
1670 *
[79ae36dd]1671 * @param exch Exchange for sending the message.
1672 * @param imethod Service-defined interface and method.
[c07544d3]1673 * @param arg1 Service-defined payload argument.
1674 * @param arg2 Service-defined payload argument.
1675 * @param arg3 Service-defined payload argument.
1676 * @param arg4 Service-defined payload argument.
1677 * @param arg5 Service-defined payload argument.
1678 * @param dataptr If non-NULL, storage where the reply data will be
1679 * stored.
1680 *
1681 * @return Hash of the sent message or 0 on error.
[36c9234]1682 *
[90f5d64]1683 */
[79ae36dd]1684aid_t async_send_slow(async_exch_t *exch, sysarg_t imethod, sysarg_t arg1,
[96b02eb9]1685 sysarg_t arg2, sysarg_t arg3, sysarg_t arg4, sysarg_t arg5,
[0cc4313]1686 ipc_call_t *dataptr)
[90f5d64]1687{
[79ae36dd]1688 if (exch == NULL)
1689 return 0;
[a35b458]1690
[47c9a8c]1691 amsg_t *msg = amsg_create();
[79ae36dd]1692 if (msg == NULL)
[c07544d3]1693 return 0;
[a35b458]1694
[90f5d64]1695 msg->dataptr = dataptr;
[c07544d3]1696 msg->wdata.active = true;
[a35b458]1697
[79ae36dd]1698 ipc_call_async_5(exch->phone, imethod, arg1, arg2, arg3, arg4, arg5,
[dcc150cb]1699 msg, reply_received);
[a35b458]1700
[90f5d64]1701 return (aid_t) msg;
1702}
1703
[36c9234]1704/** Wait for a message sent by the async framework.
[01ff41c]1705 *
[c07544d3]1706 * @param amsgid Hash of the message to wait for.
1707 * @param retval Pointer to storage where the retval of the answer will
1708 * be stored.
1709 *
[01ff41c]1710 */
[b7fd2a0]1711void async_wait_for(aid_t amsgid, errno_t *retval)
[01ff41c]1712{
[79ae36dd]1713 assert(amsgid);
[a35b458]1714
[01ff41c]1715 amsg_t *msg = (amsg_t *) amsgid;
[a35b458]1716
[01ff41c]1717 futex_down(&async_futex);
[a35b458]1718
[47c9a8c]1719 assert(!msg->forget);
1720 assert(!msg->destroyed);
[a35b458]1721
[01ff41c]1722 if (msg->done) {
1723 futex_up(&async_futex);
1724 goto done;
1725 }
[a35b458]1726
[bc1f1c2]1727 msg->wdata.fid = fibril_get_id();
[c07544d3]1728 msg->wdata.active = false;
[f53cc81]1729 msg->wdata.to_event.inlist = false;
[a35b458]1730
[36c9234]1731 /* Leave the async_futex locked when entering this function */
[116d3f6f]1732 fibril_switch(FIBRIL_TO_MANAGER);
[a35b458]1733
[c07544d3]1734 /* Futex is up automatically after fibril_switch */
[a35b458]1735
[01ff41c]1736done:
1737 if (retval)
1738 *retval = msg->retval;
[a35b458]1739
[47c9a8c]1740 amsg_destroy(msg);
[01ff41c]1741}
[0b99e40]1742
[36c9234]1743/** Wait for a message sent by the async framework, timeout variant.
[47c9a8c]1744 *
1745 * If the wait times out, the caller may choose to either wait again by calling
1746 * async_wait_for() or async_wait_timeout(), or forget the message via
1747 * async_forget().
[c042bdd]1748 *
[c07544d3]1749 * @param amsgid Hash of the message to wait for.
1750 * @param retval Pointer to storage where the retval of the answer will
1751 * be stored.
1752 * @param timeout Timeout in microseconds.
1753 *
1754 * @return Zero on success, ETIMEOUT if the timeout has expired.
[c042bdd]1755 *
1756 */
[b7fd2a0]1757errno_t async_wait_timeout(aid_t amsgid, errno_t *retval, suseconds_t timeout)
[c042bdd]1758{
[79ae36dd]1759 assert(amsgid);
[a35b458]1760
[c042bdd]1761 amsg_t *msg = (amsg_t *) amsgid;
[a35b458]1762
[c042bdd]1763 futex_down(&async_futex);
[a35b458]1764
[47c9a8c]1765 assert(!msg->forget);
1766 assert(!msg->destroyed);
[a35b458]1767
[c042bdd]1768 if (msg->done) {
1769 futex_up(&async_futex);
1770 goto done;
1771 }
[a35b458]1772
[1db6dfd]1773 /*
1774 * Negative timeout is converted to zero timeout to avoid
1775 * using tv_add with negative augmenter.
1776 */
1777 if (timeout < 0)
1778 timeout = 0;
[a35b458]1779
[45cbcaf4]1780 getuptime(&msg->wdata.to_event.expires);
[7f9d97f3]1781 tv_add_diff(&msg->wdata.to_event.expires, timeout);
[a35b458]1782
[1db6dfd]1783 /*
1784 * Current fibril is inserted as waiting regardless of the
1785 * "size" of the timeout.
1786 *
1787 * Checking for msg->done and immediately bailing out when
1788 * timeout == 0 would mean that the manager fibril would never
1789 * run (consider single threaded program).
1790 * Thus the IPC answer would be never retrieved from the kernel.
1791 *
1792 * Notice that the actual delay would be very small because we
1793 * - switch to manager fibril
1794 * - the manager sees expired timeout
1795 * - and thus adds us back to ready queue
1796 * - manager switches back to some ready fibril
1797 * (prior it, it checks for incoming IPC).
1798 *
1799 */
[bc1f1c2]1800 msg->wdata.fid = fibril_get_id();
[c07544d3]1801 msg->wdata.active = false;
[b6ee5b1]1802 async_insert_timeout(&msg->wdata);
[a35b458]1803
[36c9234]1804 /* Leave the async_futex locked when entering this function */
[116d3f6f]1805 fibril_switch(FIBRIL_TO_MANAGER);
[a35b458]1806
[c07544d3]1807 /* Futex is up automatically after fibril_switch */
[a35b458]1808
[c042bdd]1809 if (!msg->done)
1810 return ETIMEOUT;
[a35b458]1811
[c042bdd]1812done:
1813 if (retval)
1814 *retval = msg->retval;
[a35b458]1815
[47c9a8c]1816 amsg_destroy(msg);
[a35b458]1817
[c042bdd]1818 return 0;
1819}
[a35b458]1820
[47c9a8c]1821/** Discard the message / reply on arrival.
1822 *
1823 * The message will be marked to be discarded once the reply arrives in
1824 * reply_received(). It is not allowed to call async_wait_for() or
1825 * async_wait_timeout() on this message after a call to this function.
1826 *
1827 * @param amsgid Hash of the message to forget.
1828 */
1829void async_forget(aid_t amsgid)
1830{
1831 amsg_t *msg = (amsg_t *) amsgid;
[a35b458]1832
[47c9a8c]1833 assert(msg);
1834 assert(!msg->forget);
1835 assert(!msg->destroyed);
[a35b458]1836
[47c9a8c]1837 futex_down(&async_futex);
[a35b458]1838
[375e501]1839 if (msg->done) {
[47c9a8c]1840 amsg_destroy(msg);
[375e501]1841 } else {
1842 msg->dataptr = NULL;
[47c9a8c]1843 msg->forget = true;
[375e501]1844 }
[a35b458]1845
[47c9a8c]1846 futex_up(&async_futex);
1847}
[0b99e40]1848
[36c9234]1849/** Wait for specified time.
[44c6d88d]1850 *
[36c9234]1851 * The current fibril is suspended but the thread continues to execute.
1852 *
[c07544d3]1853 * @param timeout Duration of the wait in microseconds.
1854 *
[44c6d88d]1855 */
1856void async_usleep(suseconds_t timeout)
1857{
[6a5d05b]1858 awaiter_t awaiter;
1859 awaiter_initialize(&awaiter);
[a35b458]1860
[6a5d05b]1861 awaiter.fid = fibril_get_id();
[a35b458]1862
[6a5d05b]1863 getuptime(&awaiter.to_event.expires);
1864 tv_add_diff(&awaiter.to_event.expires, timeout);
[a35b458]1865
[44c6d88d]1866 futex_down(&async_futex);
[a35b458]1867
[6a5d05b]1868 async_insert_timeout(&awaiter);
[a35b458]1869
[36c9234]1870 /* Leave the async_futex locked when entering this function */
[116d3f6f]1871 fibril_switch(FIBRIL_TO_MANAGER);
[a35b458]1872
[c07544d3]1873 /* Futex is up automatically after fibril_switch() */
[44c6d88d]1874}
[da0c91e7]1875
[39026d7c]1876/** Delay execution for the specified number of seconds
1877 *
1878 * @param sec Number of seconds to sleep
1879 */
1880void async_sleep(unsigned int sec)
1881{
1882 /*
1883 * Sleep in 1000 second steps to support
1884 * full argument range
1885 */
1886
1887 while (sec > 0) {
1888 unsigned int period = (sec > 1000) ? 1000 : sec;
1889
1890 async_usleep(period * 1000000);
1891 sec -= period;
1892 }
1893}
1894
[0cc4313]1895/** Pseudo-synchronous message sending - fast version.
1896 *
1897 * Send message asynchronously and return only after the reply arrives.
1898 *
1899 * This function can only transfer 4 register payload arguments. For
1900 * transferring more arguments, see the slower async_req_slow().
1901 *
[79ae36dd]1902 * @param exch Exchange for sending the message.
1903 * @param imethod Interface and method of the call.
[c07544d3]1904 * @param arg1 Service-defined payload argument.
1905 * @param arg2 Service-defined payload argument.
1906 * @param arg3 Service-defined payload argument.
1907 * @param arg4 Service-defined payload argument.
1908 * @param r1 If non-NULL, storage for the 1st reply argument.
1909 * @param r2 If non-NULL, storage for the 2nd reply argument.
1910 * @param r3 If non-NULL, storage for the 3rd reply argument.
1911 * @param r4 If non-NULL, storage for the 4th reply argument.
1912 * @param r5 If non-NULL, storage for the 5th reply argument.
1913 *
[cde999a]1914 * @return Return code of the reply or an error code.
[c07544d3]1915 *
[0cc4313]1916 */
[b7fd2a0]1917errno_t async_req_fast(async_exch_t *exch, sysarg_t imethod, sysarg_t arg1,
[96b02eb9]1918 sysarg_t arg2, sysarg_t arg3, sysarg_t arg4, sysarg_t *r1, sysarg_t *r2,
1919 sysarg_t *r3, sysarg_t *r4, sysarg_t *r5)
[085bd54]1920{
[79ae36dd]1921 if (exch == NULL)
1922 return ENOENT;
[a35b458]1923
[0cc4313]1924 ipc_call_t result;
[79ae36dd]1925 aid_t aid = async_send_4(exch, imethod, arg1, arg2, arg3, arg4,
[0cc4313]1926 &result);
[a35b458]1927
[b7fd2a0]1928 errno_t rc;
[79ae36dd]1929 async_wait_for(aid, &rc);
[a35b458]1930
[c07544d3]1931 if (r1)
[0cc4313]1932 *r1 = IPC_GET_ARG1(result);
[a35b458]1933
[0cc4313]1934 if (r2)
1935 *r2 = IPC_GET_ARG2(result);
[a35b458]1936
[0cc4313]1937 if (r3)
1938 *r3 = IPC_GET_ARG3(result);
[a35b458]1939
[0cc4313]1940 if (r4)
1941 *r4 = IPC_GET_ARG4(result);
[a35b458]1942
[0cc4313]1943 if (r5)
1944 *r5 = IPC_GET_ARG5(result);
[a35b458]1945
[0cc4313]1946 return rc;
[085bd54]1947}
1948
[0cc4313]1949/** Pseudo-synchronous message sending - slow version.
1950 *
1951 * Send message asynchronously and return only after the reply arrives.
1952 *
[79ae36dd]1953 * @param exch Exchange for sending the message.
1954 * @param imethod Interface and method of the call.
[c07544d3]1955 * @param arg1 Service-defined payload argument.
1956 * @param arg2 Service-defined payload argument.
1957 * @param arg3 Service-defined payload argument.
1958 * @param arg4 Service-defined payload argument.
1959 * @param arg5 Service-defined payload argument.
1960 * @param r1 If non-NULL, storage for the 1st reply argument.
1961 * @param r2 If non-NULL, storage for the 2nd reply argument.
1962 * @param r3 If non-NULL, storage for the 3rd reply argument.
1963 * @param r4 If non-NULL, storage for the 4th reply argument.
1964 * @param r5 If non-NULL, storage for the 5th reply argument.
1965 *
[cde999a]1966 * @return Return code of the reply or an error code.
[c07544d3]1967 *
[0cc4313]1968 */
[b7fd2a0]1969errno_t async_req_slow(async_exch_t *exch, sysarg_t imethod, sysarg_t arg1,
[96b02eb9]1970 sysarg_t arg2, sysarg_t arg3, sysarg_t arg4, sysarg_t arg5, sysarg_t *r1,
1971 sysarg_t *r2, sysarg_t *r3, sysarg_t *r4, sysarg_t *r5)
[085bd54]1972{
[79ae36dd]1973 if (exch == NULL)
1974 return ENOENT;
[a35b458]1975
[0cc4313]1976 ipc_call_t result;
[79ae36dd]1977 aid_t aid = async_send_5(exch, imethod, arg1, arg2, arg3, arg4, arg5,
[0cc4313]1978 &result);
[a35b458]1979
[b7fd2a0]1980 errno_t rc;
[79ae36dd]1981 async_wait_for(aid, &rc);
[a35b458]1982
[c07544d3]1983 if (r1)
[0cc4313]1984 *r1 = IPC_GET_ARG1(result);
[a35b458]1985
[0cc4313]1986 if (r2)
1987 *r2 = IPC_GET_ARG2(result);
[a35b458]1988
[0cc4313]1989 if (r3)
1990 *r3 = IPC_GET_ARG3(result);
[a35b458]1991
[0cc4313]1992 if (r4)
1993 *r4 = IPC_GET_ARG4(result);
[a35b458]1994
[0cc4313]1995 if (r5)
1996 *r5 = IPC_GET_ARG5(result);
[a35b458]1997
[0cc4313]1998 return rc;
[085bd54]1999}
[b2951e2]2000
[79ae36dd]2001void async_msg_0(async_exch_t *exch, sysarg_t imethod)
[64d2b10]2002{
[79ae36dd]2003 if (exch != NULL)
[dcc150cb]2004 ipc_call_async_0(exch->phone, imethod, NULL, NULL);
[64d2b10]2005}
2006
[79ae36dd]2007void async_msg_1(async_exch_t *exch, sysarg_t imethod, sysarg_t arg1)
[64d2b10]2008{
[79ae36dd]2009 if (exch != NULL)
[dcc150cb]2010 ipc_call_async_1(exch->phone, imethod, arg1, NULL, NULL);
[64d2b10]2011}
2012
[79ae36dd]2013void async_msg_2(async_exch_t *exch, sysarg_t imethod, sysarg_t arg1,
2014 sysarg_t arg2)
[64d2b10]2015{
[79ae36dd]2016 if (exch != NULL)
[dcc150cb]2017 ipc_call_async_2(exch->phone, imethod, arg1, arg2, NULL, NULL);
[64d2b10]2018}
2019
[79ae36dd]2020void async_msg_3(async_exch_t *exch, sysarg_t imethod, sysarg_t arg1,
2021 sysarg_t arg2, sysarg_t arg3)
[64d2b10]2022{
[79ae36dd]2023 if (exch != NULL)
2024 ipc_call_async_3(exch->phone, imethod, arg1, arg2, arg3, NULL,
[dcc150cb]2025 NULL);
[64d2b10]2026}
2027
[79ae36dd]2028void async_msg_4(async_exch_t *exch, sysarg_t imethod, sysarg_t arg1,
2029 sysarg_t arg2, sysarg_t arg3, sysarg_t arg4)
[64d2b10]2030{
[79ae36dd]2031 if (exch != NULL)
2032 ipc_call_async_4(exch->phone, imethod, arg1, arg2, arg3, arg4,
[dcc150cb]2033 NULL, NULL);
[64d2b10]2034}
2035
[79ae36dd]2036void async_msg_5(async_exch_t *exch, sysarg_t imethod, sysarg_t arg1,
2037 sysarg_t arg2, sysarg_t arg3, sysarg_t arg4, sysarg_t arg5)
[64d2b10]2038{
[79ae36dd]2039 if (exch != NULL)
2040 ipc_call_async_5(exch->phone, imethod, arg1, arg2, arg3, arg4,
[dcc150cb]2041 arg5, NULL, NULL);
[64d2b10]2042}
2043
[eadaeae8]2044errno_t async_answer_0(cap_call_handle_t chandle, errno_t retval)
[64d2b10]2045{
[01c3bb4]2046 return ipc_answer_0(chandle, retval);
[64d2b10]2047}
2048
[eadaeae8]2049errno_t async_answer_1(cap_call_handle_t chandle, errno_t retval, sysarg_t arg1)
[64d2b10]2050{
[01c3bb4]2051 return ipc_answer_1(chandle, retval, arg1);
[64d2b10]2052}
2053
[eadaeae8]2054errno_t async_answer_2(cap_call_handle_t chandle, errno_t retval, sysarg_t arg1,
[64d2b10]2055 sysarg_t arg2)
2056{
[01c3bb4]2057 return ipc_answer_2(chandle, retval, arg1, arg2);
[64d2b10]2058}
2059
[eadaeae8]2060errno_t async_answer_3(cap_call_handle_t chandle, errno_t retval, sysarg_t arg1,
[64d2b10]2061 sysarg_t arg2, sysarg_t arg3)
2062{
[01c3bb4]2063 return ipc_answer_3(chandle, retval, arg1, arg2, arg3);
[64d2b10]2064}
2065
[eadaeae8]2066errno_t async_answer_4(cap_call_handle_t chandle, errno_t retval, sysarg_t arg1,
[64d2b10]2067 sysarg_t arg2, sysarg_t arg3, sysarg_t arg4)
2068{
[01c3bb4]2069 return ipc_answer_4(chandle, retval, arg1, arg2, arg3, arg4);
[64d2b10]2070}
2071
[eadaeae8]2072errno_t async_answer_5(cap_call_handle_t chandle, errno_t retval, sysarg_t arg1,
[64d2b10]2073 sysarg_t arg2, sysarg_t arg3, sysarg_t arg4, sysarg_t arg5)
2074{
[01c3bb4]2075 return ipc_answer_5(chandle, retval, arg1, arg2, arg3, arg4, arg5);
[64d2b10]2076}
2077
[eadaeae8]2078errno_t async_forward_fast(cap_call_handle_t chandle, async_exch_t *exch,
[79ae36dd]2079 sysarg_t imethod, sysarg_t arg1, sysarg_t arg2, unsigned int mode)
[64d2b10]2080{
[79ae36dd]2081 if (exch == NULL)
2082 return ENOENT;
[a35b458]2083
[01c3bb4]2084 return ipc_forward_fast(chandle, exch->phone, imethod, arg1, arg2, mode);
[64d2b10]2085}
2086
[eadaeae8]2087errno_t async_forward_slow(cap_call_handle_t chandle, async_exch_t *exch,
[79ae36dd]2088 sysarg_t imethod, sysarg_t arg1, sysarg_t arg2, sysarg_t arg3,
2089 sysarg_t arg4, sysarg_t arg5, unsigned int mode)
[64d2b10]2090{
[79ae36dd]2091 if (exch == NULL)
2092 return ENOENT;
[a35b458]2093
[01c3bb4]2094 return ipc_forward_slow(chandle, exch->phone, imethod, arg1, arg2, arg3,
[79ae36dd]2095 arg4, arg5, mode);
[64d2b10]2096}
2097
[007e6efa]2098/** Wrapper for making IPC_M_CONNECT_TO_ME calls using the async framework.
2099 *
2100 * Ask through phone for a new connection to some service.
2101 *
[79ae36dd]2102 * @param exch Exchange for sending the message.
[007e6efa]2103 * @param arg1 User defined argument.
2104 * @param arg2 User defined argument.
2105 * @param arg3 User defined argument.
2106 *
[cde999a]2107 * @return Zero on success or an error code.
[007e6efa]2108 *
2109 */
[b7fd2a0]2110errno_t async_connect_to_me(async_exch_t *exch, sysarg_t arg1, sysarg_t arg2,
[f9b2cb4c]2111 sysarg_t arg3)
[007e6efa]2112{
[79ae36dd]2113 if (exch == NULL)
2114 return ENOENT;
[a35b458]2115
[ab34cc9]2116 ipc_call_t answer;
[f9b2cb4c]2117 aid_t req = async_send_3(exch, IPC_M_CONNECT_TO_ME, arg1, arg2, arg3,
[ab34cc9]2118 &answer);
[a35b458]2119
[b7fd2a0]2120 errno_t rc;
[ab34cc9]2121 async_wait_for(req, &rc);
[007e6efa]2122 if (rc != EOK)
[b7fd2a0]2123 return (errno_t) rc;
[a35b458]2124
[007e6efa]2125 return EOK;
2126}
2127
[eadaeae8]2128static errno_t async_connect_me_to_internal(cap_phone_handle_t phone,
2129 sysarg_t arg1, sysarg_t arg2, sysarg_t arg3, sysarg_t arg4,
2130 cap_phone_handle_t *out_phone)
[f74392f]2131{
[79ae36dd]2132 ipc_call_t result;
[a35b458]2133
[a99cbc1e]2134 // XXX: Workaround for GCC's inability to infer association between
2135 // rc == EOK and *out_phone being assigned.
[eadaeae8]2136 *out_phone = CAP_NIL;
[a35b458]2137
[47c9a8c]2138 amsg_t *msg = amsg_create();
2139 if (!msg)
[79ae36dd]2140 return ENOENT;
[a35b458]2141
[79ae36dd]2142 msg->dataptr = &result;
2143 msg->wdata.active = true;
[a35b458]2144
[79ae36dd]2145 ipc_call_async_4(phone, IPC_M_CONNECT_ME_TO, arg1, arg2, arg3, arg4,
[dcc150cb]2146 msg, reply_received);
[a35b458]2147
[b7fd2a0]2148 errno_t rc;
[79ae36dd]2149 async_wait_for((aid_t) msg, &rc);
[a35b458]2150
[007e6efa]2151 if (rc != EOK)
[f74392f]2152 return rc;
[a35b458]2153
[eadaeae8]2154 *out_phone = (cap_phone_handle_t) IPC_GET_ARG5(result);
[a99cbc1e]2155 return EOK;
[79ae36dd]2156}
2157
2158/** Wrapper for making IPC_M_CONNECT_ME_TO calls using the async framework.
2159 *
2160 * Ask through for a new connection to some service.
2161 *
2162 * @param mgmt Exchange management style.
2163 * @param exch Exchange for sending the message.
2164 * @param arg1 User defined argument.
2165 * @param arg2 User defined argument.
2166 * @param arg3 User defined argument.
2167 *
2168 * @return New session on success or NULL on error.
2169 *
2170 */
2171async_sess_t *async_connect_me_to(exch_mgmt_t mgmt, async_exch_t *exch,
2172 sysarg_t arg1, sysarg_t arg2, sysarg_t arg3)
2173{
2174 if (exch == NULL) {
2175 errno = ENOENT;
2176 return NULL;
2177 }
[a35b458]2178
[79ae36dd]2179 async_sess_t *sess = (async_sess_t *) malloc(sizeof(async_sess_t));
2180 if (sess == NULL) {
2181 errno = ENOMEM;
2182 return NULL;
2183 }
[a35b458]2184
[eadaeae8]2185 cap_phone_handle_t phone;
[b7fd2a0]2186 errno_t rc = async_connect_me_to_internal(exch->phone, arg1, arg2, arg3,
[a99cbc1e]2187 0, &phone);
2188 if (rc != EOK) {
2189 errno = rc;
[79ae36dd]2190 free(sess);
2191 return NULL;
2192 }
[a35b458]2193
[566992e1]2194 sess->iface = 0;
[79ae36dd]2195 sess->mgmt = mgmt;
2196 sess->phone = phone;
2197 sess->arg1 = arg1;
2198 sess->arg2 = arg2;
2199 sess->arg3 = arg3;
[a35b458]2200
[58cbf8d5]2201 fibril_mutex_initialize(&sess->remote_state_mtx);
2202 sess->remote_state_data = NULL;
[a35b458]2203
[79ae36dd]2204 list_initialize(&sess->exch_list);
2205 fibril_mutex_initialize(&sess->mutex);
2206 atomic_set(&sess->refcnt, 0);
[a35b458]2207
[79ae36dd]2208 return sess;
[f74392f]2209}
2210
[0dd16778]2211/** Wrapper for making IPC_M_CONNECT_ME_TO calls using the async framework.
2212 *
2213 * Ask through phone for a new connection to some service and block until
2214 * success.
2215 *
2216 * @param exch Exchange for sending the message.
2217 * @param iface Connection interface.
2218 * @param arg2 User defined argument.
2219 * @param arg3 User defined argument.
2220 *
2221 * @return New session on success or NULL on error.
2222 *
2223 */
2224async_sess_t *async_connect_me_to_iface(async_exch_t *exch, iface_t iface,
2225 sysarg_t arg2, sysarg_t arg3)
2226{
2227 if (exch == NULL) {
2228 errno = ENOENT;
2229 return NULL;
2230 }
[a35b458]2231
[0dd16778]2232 async_sess_t *sess = (async_sess_t *) malloc(sizeof(async_sess_t));
2233 if (sess == NULL) {
2234 errno = ENOMEM;
2235 return NULL;
2236 }
[a35b458]2237
[eadaeae8]2238 cap_phone_handle_t phone;
[b7fd2a0]2239 errno_t rc = async_connect_me_to_internal(exch->phone, iface, arg2,
[a99cbc1e]2240 arg3, 0, &phone);
2241 if (rc != EOK) {
2242 errno = rc;
[0dd16778]2243 free(sess);
2244 return NULL;
2245 }
[a35b458]2246
[0dd16778]2247 sess->iface = iface;
2248 sess->phone = phone;
2249 sess->arg1 = iface;
2250 sess->arg2 = arg2;
2251 sess->arg3 = arg3;
[a35b458]2252
[0dd16778]2253 fibril_mutex_initialize(&sess->remote_state_mtx);
2254 sess->remote_state_data = NULL;
[a35b458]2255
[0dd16778]2256 list_initialize(&sess->exch_list);
2257 fibril_mutex_initialize(&sess->mutex);
2258 atomic_set(&sess->refcnt, 0);
[a35b458]2259
[0dd16778]2260 return sess;
2261}
2262
[93ad49a8]2263/** Set arguments for new connections.
[0f4532e]2264 *
2265 * FIXME This is an ugly hack to work around the problem that parallel
2266 * exchanges are implemented using parallel connections. When we create
[93ad49a8]2267 * a callback session, the framework does not know arguments for the new
2268 * connections.
[0f4532e]2269 *
2270 * The proper solution seems to be to implement parallel exchanges using
2271 * tagging.
2272 */
[93ad49a8]2273void async_sess_args_set(async_sess_t *sess, sysarg_t arg1, sysarg_t arg2,
2274 sysarg_t arg3)
[0f4532e]2275{
[93ad49a8]2276 sess->arg1 = arg1;
2277 sess->arg2 = arg2;
2278 sess->arg3 = arg3;
[0f4532e]2279}
2280
[f74392f]2281/** Wrapper for making IPC_M_CONNECT_ME_TO calls using the async framework.
[007e6efa]2282 *
[f74392f]2283 * Ask through phone for a new connection to some service and block until
2284 * success.
2285 *
[79ae36dd]2286 * @param mgmt Exchange management style.
2287 * @param exch Exchange for sending the message.
2288 * @param arg1 User defined argument.
2289 * @param arg2 User defined argument.
2290 * @param arg3 User defined argument.
[007e6efa]2291 *
[79ae36dd]2292 * @return New session on success or NULL on error.
[f74392f]2293 *
2294 */
[79ae36dd]2295async_sess_t *async_connect_me_to_blocking(exch_mgmt_t mgmt, async_exch_t *exch,
2296 sysarg_t arg1, sysarg_t arg2, sysarg_t arg3)
[f74392f]2297{
[79ae36dd]2298 if (exch == NULL) {
2299 errno = ENOENT;
2300 return NULL;
2301 }
[a35b458]2302
[79ae36dd]2303 async_sess_t *sess = (async_sess_t *) malloc(sizeof(async_sess_t));
2304 if (sess == NULL) {
2305 errno = ENOMEM;
2306 return NULL;
2307 }
[a35b458]2308
[eadaeae8]2309 cap_phone_handle_t phone;
[b7fd2a0]2310 errno_t rc = async_connect_me_to_internal(exch->phone, arg1, arg2, arg3,
[a99cbc1e]2311 IPC_FLAG_BLOCKING, &phone);
[a35b458]2312
[a99cbc1e]2313 if (rc != EOK) {
2314 errno = rc;
[79ae36dd]2315 free(sess);
2316 return NULL;
2317 }
[a35b458]2318
[566992e1]2319 sess->iface = 0;
[79ae36dd]2320 sess->mgmt = mgmt;
2321 sess->phone = phone;
2322 sess->arg1 = arg1;
2323 sess->arg2 = arg2;
2324 sess->arg3 = arg3;
[a35b458]2325
[58cbf8d5]2326 fibril_mutex_initialize(&sess->remote_state_mtx);
2327 sess->remote_state_data = NULL;
[a35b458]2328
[79ae36dd]2329 list_initialize(&sess->exch_list);
2330 fibril_mutex_initialize(&sess->mutex);
2331 atomic_set(&sess->refcnt, 0);
[a35b458]2332
[79ae36dd]2333 return sess;
[f74392f]2334}
2335
[566992e1]2336/** Wrapper for making IPC_M_CONNECT_ME_TO calls using the async framework.
2337 *
2338 * Ask through phone for a new connection to some service and block until
2339 * success.
2340 *
2341 * @param exch Exchange for sending the message.
2342 * @param iface Connection interface.
2343 * @param arg2 User defined argument.
2344 * @param arg3 User defined argument.
2345 *
2346 * @return New session on success or NULL on error.
2347 *
2348 */
2349async_sess_t *async_connect_me_to_blocking_iface(async_exch_t *exch, iface_t iface,
2350 sysarg_t arg2, sysarg_t arg3)
2351{
2352 if (exch == NULL) {
2353 errno = ENOENT;
2354 return NULL;
2355 }
[a35b458]2356
[566992e1]2357 async_sess_t *sess = (async_sess_t *) malloc(sizeof(async_sess_t));
2358 if (sess == NULL) {
2359 errno = ENOMEM;
2360 return NULL;
2361 }
[a35b458]2362
[eadaeae8]2363 cap_phone_handle_t phone;
[b7fd2a0]2364 errno_t rc = async_connect_me_to_internal(exch->phone, iface, arg2,
[a99cbc1e]2365 arg3, IPC_FLAG_BLOCKING, &phone);
2366 if (rc != EOK) {
2367 errno = rc;
[566992e1]2368 free(sess);
2369 return NULL;
2370 }
[a35b458]2371
[566992e1]2372 sess->iface = iface;
2373 sess->phone = phone;
2374 sess->arg1 = iface;
2375 sess->arg2 = arg2;
2376 sess->arg3 = arg3;
[a35b458]2377
[566992e1]2378 fibril_mutex_initialize(&sess->remote_state_mtx);
2379 sess->remote_state_data = NULL;
[a35b458]2380
[566992e1]2381 list_initialize(&sess->exch_list);
2382 fibril_mutex_initialize(&sess->mutex);
2383 atomic_set(&sess->refcnt, 0);
[a35b458]2384
[566992e1]2385 return sess;
2386}
2387
[64d2b10]2388/** Connect to a task specified by id.
2389 *
2390 */
[79ae36dd]2391async_sess_t *async_connect_kbox(task_id_t id)
[64d2b10]2392{
[79ae36dd]2393 async_sess_t *sess = (async_sess_t *) malloc(sizeof(async_sess_t));
2394 if (sess == NULL) {
2395 errno = ENOMEM;
2396 return NULL;
2397 }
[a35b458]2398
[eadaeae8]2399 cap_phone_handle_t phone;
[b7fd2a0]2400 errno_t rc = ipc_connect_kbox(id, &phone);
[569a51a]2401 if (rc != EOK) {
2402 errno = rc;
[79ae36dd]2403 free(sess);
2404 return NULL;
2405 }
[a35b458]2406
[566992e1]2407 sess->iface = 0;
[79ae36dd]2408 sess->mgmt = EXCHANGE_ATOMIC;
2409 sess->phone = phone;
2410 sess->arg1 = 0;
2411 sess->arg2 = 0;
2412 sess->arg3 = 0;
[a35b458]2413
[58cbf8d5]2414 fibril_mutex_initialize(&sess->remote_state_mtx);
2415 sess->remote_state_data = NULL;
[a35b458]2416
[79ae36dd]2417 list_initialize(&sess->exch_list);
2418 fibril_mutex_initialize(&sess->mutex);
2419 atomic_set(&sess->refcnt, 0);
[a35b458]2420
[79ae36dd]2421 return sess;
2422}
2423
[eadaeae8]2424static errno_t async_hangup_internal(cap_phone_handle_t phone)
[79ae36dd]2425{
2426 return ipc_hangup(phone);
[64d2b10]2427}
2428
2429/** Wrapper for ipc_hangup.
2430 *
[79ae36dd]2431 * @param sess Session to hung up.
[64d2b10]2432 *
[cde999a]2433 * @return Zero on success or an error code.
[64d2b10]2434 *
2435 */
[b7fd2a0]2436errno_t async_hangup(async_sess_t *sess)
[64d2b10]2437{
[36e2b55]2438 async_exch_t *exch;
[a35b458]2439
[79ae36dd]2440 assert(sess);
[a35b458]2441
[79ae36dd]2442 if (atomic_get(&sess->refcnt) > 0)
2443 return EBUSY;
[a35b458]2444
[36e2b55]2445 fibril_mutex_lock(&async_sess_mutex);
[a35b458]2446
[b7fd2a0]2447 errno_t rc = async_hangup_internal(sess->phone);
[a35b458]2448
[36e2b55]2449 while (!list_empty(&sess->exch_list)) {
2450 exch = (async_exch_t *)
2451 list_get_instance(list_first(&sess->exch_list),
2452 async_exch_t, sess_link);
[a35b458]2453
[36e2b55]2454 list_remove(&exch->sess_link);
2455 list_remove(&exch->global_link);
2456 async_hangup_internal(exch->phone);
2457 free(exch);
2458 }
[4c50c8d]2459
2460 free(sess);
[a35b458]2461
[36e2b55]2462 fibril_mutex_unlock(&async_sess_mutex);
[a35b458]2463
[79ae36dd]2464 return rc;
[64d2b10]2465}
2466
2467/** Interrupt one thread of this task from waiting for IPC. */
2468void async_poke(void)
2469{
2470 ipc_poke();
2471}
2472
[79ae36dd]2473/** Start new exchange in a session.
2474 *
2475 * @param session Session.
2476 *
2477 * @return New exchange or NULL on error.
2478 *
2479 */
2480async_exch_t *async_exchange_begin(async_sess_t *sess)
2481{
2482 if (sess == NULL)
2483 return NULL;
[a35b458]2484
[566992e1]2485 exch_mgmt_t mgmt = sess->mgmt;
2486 if (sess->iface != 0)
2487 mgmt = sess->iface & IFACE_EXCHANGE_MASK;
[a35b458]2488
[566992e1]2489 async_exch_t *exch = NULL;
[a35b458]2490
[79ae36dd]2491 fibril_mutex_lock(&async_sess_mutex);
[a35b458]2492
[79ae36dd]2493 if (!list_empty(&sess->exch_list)) {
2494 /*
2495 * There are inactive exchanges in the session.
2496 */
2497 exch = (async_exch_t *)
[b72efe8]2498 list_get_instance(list_first(&sess->exch_list),
2499 async_exch_t, sess_link);
[a35b458]2500
[79ae36dd]2501 list_remove(&exch->sess_link);
2502 list_remove(&exch->global_link);
2503 } else {
2504 /*
2505 * There are no available exchanges in the session.
2506 */
[a35b458]2507
[566992e1]2508 if ((mgmt == EXCHANGE_ATOMIC) ||
2509 (mgmt == EXCHANGE_SERIALIZE)) {
[79ae36dd]2510 exch = (async_exch_t *) malloc(sizeof(async_exch_t));
2511 if (exch != NULL) {
[b72efe8]2512 link_initialize(&exch->sess_link);
2513 link_initialize(&exch->global_link);
[79ae36dd]2514 exch->sess = sess;
2515 exch->phone = sess->phone;
2516 }
[566992e1]2517 } else if (mgmt == EXCHANGE_PARALLEL) {
[eadaeae8]2518 cap_phone_handle_t phone;
[b7fd2a0]2519 errno_t rc;
[a35b458]2520
[566992e1]2521 retry:
[79ae36dd]2522 /*
2523 * Make a one-time attempt to connect a new data phone.
2524 */
[a99cbc1e]2525 rc = async_connect_me_to_internal(sess->phone, sess->arg1,
2526 sess->arg2, sess->arg3, 0, &phone);
2527 if (rc == EOK) {
[79ae36dd]2528 exch = (async_exch_t *) malloc(sizeof(async_exch_t));
2529 if (exch != NULL) {
[b72efe8]2530 link_initialize(&exch->sess_link);
2531 link_initialize(&exch->global_link);
[79ae36dd]2532 exch->sess = sess;
2533 exch->phone = phone;
2534 } else
2535 async_hangup_internal(phone);
2536 } else if (!list_empty(&inactive_exch_list)) {
2537 /*
2538 * We did not manage to connect a new phone. But we
2539 * can try to close some of the currently inactive
2540 * connections in other sessions and try again.
2541 */
2542 exch = (async_exch_t *)
[b72efe8]2543 list_get_instance(list_first(&inactive_exch_list),
2544 async_exch_t, global_link);
[a35b458]2545
[79ae36dd]2546 list_remove(&exch->sess_link);
2547 list_remove(&exch->global_link);
2548 async_hangup_internal(exch->phone);
2549 free(exch);
2550 goto retry;
2551 } else {
2552 /*
2553 * Wait for a phone to become available.
2554 */
2555 fibril_condvar_wait(&avail_phone_cv, &async_sess_mutex);
2556 goto retry;
2557 }
2558 }
2559 }
[a35b458]2560
[79ae36dd]2561 fibril_mutex_unlock(&async_sess_mutex);
[a35b458]2562
[79ae36dd]2563 if (exch != NULL) {
2564 atomic_inc(&sess->refcnt);
[a35b458]2565
[566992e1]2566 if (mgmt == EXCHANGE_SERIALIZE)
[79ae36dd]2567 fibril_mutex_lock(&sess->mutex);
2568 }
[a35b458]2569
[79ae36dd]2570 return exch;
2571}
2572
2573/** Finish an exchange.
2574 *
2575 * @param exch Exchange to finish.
2576 *
2577 */
2578void async_exchange_end(async_exch_t *exch)
2579{
2580 if (exch == NULL)
2581 return;
[a35b458]2582
[79ae36dd]2583 async_sess_t *sess = exch->sess;
[3ca2e36]2584 assert(sess != NULL);
[a35b458]2585
[566992e1]2586 exch_mgmt_t mgmt = sess->mgmt;
2587 if (sess->iface != 0)
2588 mgmt = sess->iface & IFACE_EXCHANGE_MASK;
[a35b458]2589
[1c6436a]2590 atomic_dec(&sess->refcnt);
[a35b458]2591
[566992e1]2592 if (mgmt == EXCHANGE_SERIALIZE)
[79ae36dd]2593 fibril_mutex_unlock(&sess->mutex);
[a35b458]2594
[79ae36dd]2595 fibril_mutex_lock(&async_sess_mutex);
[a35b458]2596
[79ae36dd]2597 list_append(&exch->sess_link, &sess->exch_list);
2598 list_append(&exch->global_link, &inactive_exch_list);
2599 fibril_condvar_signal(&avail_phone_cv);
[a35b458]2600
[79ae36dd]2601 fibril_mutex_unlock(&async_sess_mutex);
2602}
2603
[47b7006]2604/** Wrapper for IPC_M_SHARE_IN calls using the async framework.
2605 *
[79ae36dd]2606 * @param exch Exchange for sending the message.
2607 * @param size Size of the destination address space area.
2608 * @param arg User defined argument.
2609 * @param flags Storage for the received flags. Can be NULL.
[df956b9b]2610 * @param dst Address of the storage for the destination address space area
2611 * base address. Cannot be NULL.
[0da4e41]2612 *
[cde999a]2613 * @return Zero on success or an error code from errno.h.
[0da4e41]2614 *
2615 */
[b7fd2a0]2616errno_t async_share_in_start(async_exch_t *exch, size_t size, sysarg_t arg,
[fbcdeb8]2617 unsigned int *flags, void **dst)
[0da4e41]2618{
[79ae36dd]2619 if (exch == NULL)
2620 return ENOENT;
[a35b458]2621
[fbcdeb8]2622 sysarg_t _flags = 0;
2623 sysarg_t _dst = (sysarg_t) -1;
[b7fd2a0]2624 errno_t res = async_req_2_4(exch, IPC_M_SHARE_IN, (sysarg_t) size,
[fbcdeb8]2625 arg, NULL, &_flags, NULL, &_dst);
[a35b458]2626
[0da4e41]2627 if (flags)
[fbcdeb8]2628 *flags = (unsigned int) _flags;
[a35b458]2629
[fbcdeb8]2630 *dst = (void *) _dst;
[0da4e41]2631 return res;
2632}
2633
2634/** Wrapper for receiving the IPC_M_SHARE_IN calls using the async framework.
2635 *
[47b7006]2636 * This wrapper only makes it more comfortable to receive IPC_M_SHARE_IN
2637 * calls so that the user doesn't have to remember the meaning of each IPC
2638 * argument.
[0da4e41]2639 *
2640 * So far, this wrapper is to be used from within a connection fibril.
2641 *
[01c3bb4]2642 * @param chandle Storage for the handle of the IPC_M_SHARE_IN call.
2643 * @param size Destination address space area size.
[47b7006]2644 *
2645 * @return True on success, false on failure.
[0da4e41]2646 *
2647 */
[eadaeae8]2648bool async_share_in_receive(cap_call_handle_t *chandle, size_t *size)
[0da4e41]2649{
[01c3bb4]2650 assert(chandle);
[0da4e41]2651 assert(size);
[a35b458]2652
[47b7006]2653 ipc_call_t data;
[01c3bb4]2654 *chandle = async_get_call(&data);
[a35b458]2655
[228e490]2656 if (IPC_GET_IMETHOD(data) != IPC_M_SHARE_IN)
[47b7006]2657 return false;
[a35b458]2658
[fbcdeb8]2659 *size = (size_t) IPC_GET_ARG1(data);
[47b7006]2660 return true;
[0da4e41]2661}
2662
2663/** Wrapper for answering the IPC_M_SHARE_IN calls using the async framework.
2664 *
[fbcdeb8]2665 * This wrapper only makes it more comfortable to answer IPC_M_SHARE_IN
[47b7006]2666 * calls so that the user doesn't have to remember the meaning of each IPC
2667 * argument.
[0da4e41]2668 *
[01c3bb4]2669 * @param chandle Handle of the IPC_M_DATA_READ call to answer.
2670 * @param src Source address space base.
2671 * @param flags Flags to be used for sharing. Bits can be only cleared.
[47b7006]2672 *
2673 * @return Zero on success or a value from @ref errno.h on failure.
[0da4e41]2674 *
2675 */
[eadaeae8]2676errno_t async_share_in_finalize(cap_call_handle_t chandle, void *src,
2677 unsigned int flags)
[0da4e41]2678{
[a69d42e]2679 // FIXME: The source has no business deciding destination address.
[01c3bb4]2680 return ipc_answer_3(chandle, EOK, (sysarg_t) src, (sysarg_t) flags,
[a69d42e]2681 (sysarg_t) _end);
[0da4e41]2682}
2683
[47b7006]2684/** Wrapper for IPC_M_SHARE_OUT calls using the async framework.
[0da4e41]2685 *
[79ae36dd]2686 * @param exch Exchange for sending the message.
2687 * @param src Source address space area base address.
2688 * @param flags Flags to be used for sharing. Bits can be only cleared.
[47b7006]2689 *
[cde999a]2690 * @return Zero on success or an error code from errno.h.
[0da4e41]2691 *
2692 */
[b7fd2a0]2693errno_t async_share_out_start(async_exch_t *exch, void *src, unsigned int flags)
[0da4e41]2694{
[79ae36dd]2695 if (exch == NULL)
2696 return ENOENT;
[a35b458]2697
[79ae36dd]2698 return async_req_3_0(exch, IPC_M_SHARE_OUT, (sysarg_t) src, 0,
[96b02eb9]2699 (sysarg_t) flags);
[0da4e41]2700}
2701
2702/** Wrapper for receiving the IPC_M_SHARE_OUT calls using the async framework.
2703 *
[47b7006]2704 * This wrapper only makes it more comfortable to receive IPC_M_SHARE_OUT
2705 * calls so that the user doesn't have to remember the meaning of each IPC
2706 * argument.
[0da4e41]2707 *
2708 * So far, this wrapper is to be used from within a connection fibril.
2709 *
[01c3bb4]2710 * @param chandle Storage for the hash of the IPC_M_SHARE_OUT call.
2711 * @param size Storage for the source address space area size.
2712 * @param flags Storage for the sharing flags.
[47b7006]2713 *
2714 * @return True on success, false on failure.
[0da4e41]2715 *
2716 */
[eadaeae8]2717bool async_share_out_receive(cap_call_handle_t *chandle, size_t *size,
[01c3bb4]2718 unsigned int *flags)
[0da4e41]2719{
[01c3bb4]2720 assert(chandle);
[0da4e41]2721 assert(size);
2722 assert(flags);
[a35b458]2723
[47b7006]2724 ipc_call_t data;
[01c3bb4]2725 *chandle = async_get_call(&data);
[a35b458]2726
[228e490]2727 if (IPC_GET_IMETHOD(data) != IPC_M_SHARE_OUT)
[47b7006]2728 return false;
[a35b458]2729
[0da4e41]2730 *size = (size_t) IPC_GET_ARG2(data);
[47b7006]2731 *flags = (unsigned int) IPC_GET_ARG3(data);
2732 return true;
[0da4e41]2733}
2734
2735/** Wrapper for answering the IPC_M_SHARE_OUT calls using the async framework.
2736 *
[47b7006]2737 * This wrapper only makes it more comfortable to answer IPC_M_SHARE_OUT
2738 * calls so that the user doesn't have to remember the meaning of each IPC
2739 * argument.
[0da4e41]2740 *
[01c3bb4]2741 * @param chandle Handle of the IPC_M_DATA_WRITE call to answer.
2742 * @param dst Address of the storage for the destination address space area
2743 * base address.
[47b7006]2744 *
[01c3bb4]2745 * @return Zero on success or a value from @ref errno.h on failure.
[0da4e41]2746 *
2747 */
[eadaeae8]2748errno_t async_share_out_finalize(cap_call_handle_t chandle, void **dst)
[0da4e41]2749{
[a69d42e]2750 return ipc_answer_2(chandle, EOK, (sysarg_t) _end, (sysarg_t) dst);
[0da4e41]2751}
2752
[8bf1eeb]2753/** Start IPC_M_DATA_READ using the async framework.
2754 *
[79ae36dd]2755 * @param exch Exchange for sending the message.
2756 * @param dst Address of the beginning of the destination buffer.
2757 * @param size Size of the destination buffer (in bytes).
[8bf1eeb]2758 * @param dataptr Storage of call data (arg 2 holds actual data size).
[79ae36dd]2759 *
[8bf1eeb]2760 * @return Hash of the sent message or 0 on error.
[79ae36dd]2761 *
[8bf1eeb]2762 */
[79ae36dd]2763aid_t async_data_read(async_exch_t *exch, void *dst, size_t size,
2764 ipc_call_t *dataptr)
[8bf1eeb]2765{
[79ae36dd]2766 return async_send_2(exch, IPC_M_DATA_READ, (sysarg_t) dst,
[8bf1eeb]2767 (sysarg_t) size, dataptr);
2768}
2769
[47b7006]2770/** Wrapper for IPC_M_DATA_READ calls using the async framework.
[0da4e41]2771 *
[79ae36dd]2772 * @param exch Exchange for sending the message.
2773 * @param dst Address of the beginning of the destination buffer.
2774 * @param size Size of the destination buffer.
[47b7006]2775 *
[cde999a]2776 * @return Zero on success or an error code from errno.h.
[0da4e41]2777 *
2778 */
[b7fd2a0]2779errno_t async_data_read_start(async_exch_t *exch, void *dst, size_t size)
[0da4e41]2780{
[79ae36dd]2781 if (exch == NULL)
2782 return ENOENT;
[a35b458]2783
[79ae36dd]2784 return async_req_2_0(exch, IPC_M_DATA_READ, (sysarg_t) dst,
2785 (sysarg_t) size);
[0da4e41]2786}
2787
2788/** Wrapper for receiving the IPC_M_DATA_READ calls using the async framework.
2789 *
[47b7006]2790 * This wrapper only makes it more comfortable to receive IPC_M_DATA_READ
2791 * calls so that the user doesn't have to remember the meaning of each IPC
2792 * argument.
[0da4e41]2793 *
2794 * So far, this wrapper is to be used from within a connection fibril.
2795 *
[01c3bb4]2796 * @param chandle Storage for the handle of the IPC_M_DATA_READ.
2797 * @param size Storage for the maximum size. Can be NULL.
[47b7006]2798 *
2799 * @return True on success, false on failure.
[0da4e41]2800 *
2801 */
[eadaeae8]2802bool async_data_read_receive(cap_call_handle_t *chandle, size_t *size)
[d768d4c8]2803{
2804 ipc_call_t data;
[01c3bb4]2805 return async_data_read_receive_call(chandle, &data, size);
[d768d4c8]2806}
2807
2808/** Wrapper for receiving the IPC_M_DATA_READ calls using the async framework.
2809 *
2810 * This wrapper only makes it more comfortable to receive IPC_M_DATA_READ
2811 * calls so that the user doesn't have to remember the meaning of each IPC
2812 * argument.
2813 *
2814 * So far, this wrapper is to be used from within a connection fibril.
2815 *
[01c3bb4]2816 * @param chandle Storage for the handle of the IPC_M_DATA_READ.
2817 * @param size Storage for the maximum size. Can be NULL.
[d768d4c8]2818 *
2819 * @return True on success, false on failure.
2820 *
2821 */
[eadaeae8]2822bool async_data_read_receive_call(cap_call_handle_t *chandle, ipc_call_t *data,
[d768d4c8]2823 size_t *size)
[0da4e41]2824{
[01c3bb4]2825 assert(chandle);
[d768d4c8]2826 assert(data);
[a35b458]2827
[01c3bb4]2828 *chandle = async_get_call(data);
[a35b458]2829
[d768d4c8]2830 if (IPC_GET_IMETHOD(*data) != IPC_M_DATA_READ)
[47b7006]2831 return false;
[a35b458]2832
[0da4e41]2833 if (size)
[d768d4c8]2834 *size = (size_t) IPC_GET_ARG2(*data);
[a35b458]2835
[47b7006]2836 return true;
[0da4e41]2837}
2838
2839/** Wrapper for answering the IPC_M_DATA_READ calls using the async framework.
2840 *
[47b7006]2841 * This wrapper only makes it more comfortable to answer IPC_M_DATA_READ
2842 * calls so that the user doesn't have to remember the meaning of each IPC
2843 * argument.
[0da4e41]2844 *
[01c3bb4]2845 * @param chandle Handle of the IPC_M_DATA_READ call to answer.
2846 * @param src Source address for the IPC_M_DATA_READ call.
2847 * @param size Size for the IPC_M_DATA_READ call. Can be smaller than
2848 * the maximum size announced by the sender.
[47b7006]2849 *
[01c3bb4]2850 * @return Zero on success or a value from @ref errno.h on failure.
[0da4e41]2851 *
2852 */
[eadaeae8]2853errno_t async_data_read_finalize(cap_call_handle_t chandle, const void *src,
2854 size_t size)
[0da4e41]2855{
[01c3bb4]2856 return ipc_answer_2(chandle, EOK, (sysarg_t) src, (sysarg_t) size);
[0da4e41]2857}
2858
[b4cbef1]2859/** Wrapper for forwarding any read request
2860 *
2861 */
[b7fd2a0]2862errno_t async_data_read_forward_fast(async_exch_t *exch, sysarg_t imethod,
[79ae36dd]2863 sysarg_t arg1, sysarg_t arg2, sysarg_t arg3, sysarg_t arg4,
2864 ipc_call_t *dataptr)
[b4cbef1]2865{
[79ae36dd]2866 if (exch == NULL)
2867 return ENOENT;
[a35b458]2868
[eadaeae8]2869 cap_call_handle_t chandle;
[01c3bb4]2870 if (!async_data_read_receive(&chandle, NULL)) {
2871 ipc_answer_0(chandle, EINVAL);
[b4cbef1]2872 return EINVAL;
2873 }
[a35b458]2874
[79ae36dd]2875 aid_t msg = async_send_fast(exch, imethod, arg1, arg2, arg3, arg4,
[b4cbef1]2876 dataptr);
2877 if (msg == 0) {
[01c3bb4]2878 ipc_answer_0(chandle, EINVAL);
[b4cbef1]2879 return EINVAL;
2880 }
[a35b458]2881
[b7fd2a0]2882 errno_t retval = ipc_forward_fast(chandle, exch->phone, 0, 0, 0,
[b4cbef1]2883 IPC_FF_ROUTE_FROM_ME);
2884 if (retval != EOK) {
[ab9f443]2885 async_forget(msg);
[01c3bb4]2886 ipc_answer_0(chandle, retval);
[b4cbef1]2887 return retval;
2888 }
[a35b458]2889
[b7fd2a0]2890 errno_t rc;
[b4cbef1]2891 async_wait_for(msg, &rc);
[a35b458]2892
[b7fd2a0]2893 return (errno_t) rc;
[b4cbef1]2894}
2895
[47b7006]2896/** Wrapper for IPC_M_DATA_WRITE calls using the async framework.
[0da4e41]2897 *
[79ae36dd]2898 * @param exch Exchange for sending the message.
2899 * @param src Address of the beginning of the source buffer.
2900 * @param size Size of the source buffer.
[b4cbef1]2901 *
[cde999a]2902 * @return Zero on success or an error code from errno.h.
[0da4e41]2903 *
2904 */
[b7fd2a0]2905errno_t async_data_write_start(async_exch_t *exch, const void *src, size_t size)
[0da4e41]2906{
[79ae36dd]2907 if (exch == NULL)
2908 return ENOENT;
[a35b458]2909
[79ae36dd]2910 return async_req_2_0(exch, IPC_M_DATA_WRITE, (sysarg_t) src,
2911 (sysarg_t) size);
[0da4e41]2912}
2913
2914/** Wrapper for receiving the IPC_M_DATA_WRITE calls using the async framework.
2915 *
[47b7006]2916 * This wrapper only makes it more comfortable to receive IPC_M_DATA_WRITE
2917 * calls so that the user doesn't have to remember the meaning of each IPC
2918 * argument.
[0da4e41]2919 *
2920 * So far, this wrapper is to be used from within a connection fibril.
2921 *
[01c3bb4]2922 * @param chandle Storage for the handle of the IPC_M_DATA_WRITE.
2923 * @param size Storage for the suggested size. May be NULL.
[b4cbef1]2924 *
[01c3bb4]2925 * @return True on success, false on failure.
[0da4e41]2926 *
2927 */
[eadaeae8]2928bool async_data_write_receive(cap_call_handle_t *chandle, size_t *size)
[5ae1c51]2929{
2930 ipc_call_t data;
[01c3bb4]2931 return async_data_write_receive_call(chandle, &data, size);
[5ae1c51]2932}
2933
2934/** Wrapper for receiving the IPC_M_DATA_WRITE calls using the async framework.
2935 *
2936 * This wrapper only makes it more comfortable to receive IPC_M_DATA_WRITE
2937 * calls so that the user doesn't have to remember the meaning of each IPC
2938 * argument.
2939 *
2940 * So far, this wrapper is to be used from within a connection fibril.
2941 *
[01c3bb4]2942 * @param chandle Storage for the handle of the IPC_M_DATA_WRITE.
2943 * @param data Storage for the ipc call data.
2944 * @param size Storage for the suggested size. May be NULL.
[5ae1c51]2945 *
2946 * @return True on success, false on failure.
2947 *
2948 */
[eadaeae8]2949bool async_data_write_receive_call(cap_call_handle_t *chandle, ipc_call_t *data,
[5ae1c51]2950 size_t *size)
[0da4e41]2951{
[01c3bb4]2952 assert(chandle);
[5ae1c51]2953 assert(data);
[a35b458]2954
[01c3bb4]2955 *chandle = async_get_call(data);
[a35b458]2956
[5ae1c51]2957 if (IPC_GET_IMETHOD(*data) != IPC_M_DATA_WRITE)
[47b7006]2958 return false;
[a35b458]2959
[0da4e41]2960 if (size)
[5ae1c51]2961 *size = (size_t) IPC_GET_ARG2(*data);
[a35b458]2962
[47b7006]2963 return true;
[0da4e41]2964}
2965
2966/** Wrapper for answering the IPC_M_DATA_WRITE calls using the async framework.
2967 *
[47b7006]2968 * This wrapper only makes it more comfortable to answer IPC_M_DATA_WRITE
2969 * calls so that the user doesn't have to remember the meaning of each IPC
2970 * argument.
[0da4e41]2971 *
[01c3bb4]2972 * @param chandle Handle of the IPC_M_DATA_WRITE call to answer.
2973 * @param dst Final destination address for the IPC_M_DATA_WRITE call.
2974 * @param size Final size for the IPC_M_DATA_WRITE call.
[b4cbef1]2975 *
[01c3bb4]2976 * @return Zero on success or a value from @ref errno.h on failure.
[0da4e41]2977 *
2978 */
[eadaeae8]2979errno_t async_data_write_finalize(cap_call_handle_t chandle, void *dst,
2980 size_t size)
[0da4e41]2981{
[01c3bb4]2982 return ipc_answer_2(chandle, EOK, (sysarg_t) dst, (sysarg_t) size);
[0da4e41]2983}
2984
[eda925a]2985/** Wrapper for receiving binary data or strings
[8aa42e3]2986 *
2987 * This wrapper only makes it more comfortable to use async_data_write_*
[eda925a]2988 * functions to receive binary data or strings.
[8aa42e3]2989 *
[472c09d]2990 * @param data Pointer to data pointer (which should be later disposed
2991 * by free()). If the operation fails, the pointer is not
2992 * touched.
[eda925a]2993 * @param nullterm If true then the received data is always zero terminated.
2994 * This also causes to allocate one extra byte beyond the
2995 * raw transmitted data.
[b4cbef1]2996 * @param min_size Minimum size (in bytes) of the data to receive.
[472c09d]2997 * @param max_size Maximum size (in bytes) of the data to receive. 0 means
2998 * no limit.
[eda925a]2999 * @param granulariy If non-zero then the size of the received data has to
[472c09d]3000 * be divisible by this value.
3001 * @param received If not NULL, the size of the received data is stored here.
[8aa42e3]3002 *
3003 * @return Zero on success or a value from @ref errno.h on failure.
3004 *
3005 */
[b7fd2a0]3006errno_t async_data_write_accept(void **data, const bool nullterm,
[eda925a]3007 const size_t min_size, const size_t max_size, const size_t granularity,
3008 size_t *received)
[8aa42e3]3009{
[79ae36dd]3010 assert(data);
[a35b458]3011
[eadaeae8]3012 cap_call_handle_t chandle;
[8aa42e3]3013 size_t size;
[01c3bb4]3014 if (!async_data_write_receive(&chandle, &size)) {
3015 ipc_answer_0(chandle, EINVAL);
[8aa42e3]3016 return EINVAL;
3017 }
[a35b458]3018
[b4cbef1]3019 if (size < min_size) {
[01c3bb4]3020 ipc_answer_0(chandle, EINVAL);
[b4cbef1]3021 return EINVAL;
3022 }
[a35b458]3023
[8aa42e3]3024 if ((max_size > 0) && (size > max_size)) {
[01c3bb4]3025 ipc_answer_0(chandle, EINVAL);
[8aa42e3]3026 return EINVAL;
3027 }
[a35b458]3028
[472c09d]3029 if ((granularity > 0) && ((size % granularity) != 0)) {
[01c3bb4]3030 ipc_answer_0(chandle, EINVAL);
[472c09d]3031 return EINVAL;
3032 }
[a35b458]3033
[57dea62]3034 void *arg_data;
[a35b458]3035
[eda925a]3036 if (nullterm)
[57dea62]3037 arg_data = malloc(size + 1);
[eda925a]3038 else
[57dea62]3039 arg_data = malloc(size);
[a35b458]3040
[57dea62]3041 if (arg_data == NULL) {
[01c3bb4]3042 ipc_answer_0(chandle, ENOMEM);
[8aa42e3]3043 return ENOMEM;
3044 }
[a35b458]3045
[b7fd2a0]3046 errno_t rc = async_data_write_finalize(chandle, arg_data, size);
[8aa42e3]3047 if (rc != EOK) {
[57dea62]3048 free(arg_data);
[8aa42e3]3049 return rc;
3050 }
[a35b458]3051
[eda925a]3052 if (nullterm)
[57dea62]3053 ((char *) arg_data)[size] = 0;
[a35b458]3054
[57dea62]3055 *data = arg_data;
[472c09d]3056 if (received != NULL)
3057 *received = size;
[a35b458]3058
[8aa42e3]3059 return EOK;
3060}
3061
[b4cbef1]3062/** Wrapper for voiding any data that is about to be received
3063 *
3064 * This wrapper can be used to void any pending data
3065 *
3066 * @param retval Error value from @ref errno.h to be returned to the caller.
3067 *
3068 */
[b7fd2a0]3069void async_data_write_void(errno_t retval)
[b4cbef1]3070{
[eadaeae8]3071 cap_call_handle_t chandle;
[01c3bb4]3072 async_data_write_receive(&chandle, NULL);
3073 ipc_answer_0(chandle, retval);
[b4cbef1]3074}
3075
3076/** Wrapper for forwarding any data that is about to be received
3077 *
3078 */
[b7fd2a0]3079errno_t async_data_write_forward_fast(async_exch_t *exch, sysarg_t imethod,
[79ae36dd]3080 sysarg_t arg1, sysarg_t arg2, sysarg_t arg3, sysarg_t arg4,
3081 ipc_call_t *dataptr)
[b4cbef1]3082{
[79ae36dd]3083 if (exch == NULL)
3084 return ENOENT;
[a35b458]3085
[eadaeae8]3086 cap_call_handle_t chandle;
[01c3bb4]3087 if (!async_data_write_receive(&chandle, NULL)) {
3088 ipc_answer_0(chandle, EINVAL);
[b4cbef1]3089 return EINVAL;
3090 }
[a35b458]3091
[79ae36dd]3092 aid_t msg = async_send_fast(exch, imethod, arg1, arg2, arg3, arg4,
[b4cbef1]3093 dataptr);
3094 if (msg == 0) {
[01c3bb4]3095 ipc_answer_0(chandle, EINVAL);
[b4cbef1]3096 return EINVAL;
3097 }
[a35b458]3098
[b7fd2a0]3099 errno_t retval = ipc_forward_fast(chandle, exch->phone, 0, 0, 0,
[b4cbef1]3100 IPC_FF_ROUTE_FROM_ME);
3101 if (retval != EOK) {
[ab9f443]3102 async_forget(msg);
[01c3bb4]3103 ipc_answer_0(chandle, retval);
[b4cbef1]3104 return retval;
3105 }
[a35b458]3106
[b7fd2a0]3107 errno_t rc;
[b4cbef1]3108 async_wait_for(msg, &rc);
[a35b458]3109
[b7fd2a0]3110 return (errno_t) rc;
[b4cbef1]3111}
3112
[79ae36dd]3113/** Wrapper for receiving the IPC_M_CONNECT_TO_ME calls.
3114 *
3115 * If the current call is IPC_M_CONNECT_TO_ME then a new
3116 * async session is created for the accepted phone.
3117 *
3118 * @param mgmt Exchange management style.
3119 *
[8869f7b]3120 * @return New async session.
3121 * @return NULL on failure.
[79ae36dd]3122 *
3123 */
3124async_sess_t *async_callback_receive(exch_mgmt_t mgmt)
3125{
3126 /* Accept the phone */
3127 ipc_call_t call;
[eadaeae8]3128 cap_call_handle_t chandle = async_get_call(&call);
3129 cap_phone_handle_t phandle = (cap_handle_t) IPC_GET_ARG5(call);
[a35b458]3130
[eadaeae8]3131 if ((IPC_GET_IMETHOD(call) != IPC_M_CONNECT_TO_ME) ||
3132 !CAP_HANDLE_VALID((phandle))) {
[01c3bb4]3133 async_answer_0(chandle, EINVAL);
[79ae36dd]3134 return NULL;
3135 }
[a35b458]3136
[79ae36dd]3137 async_sess_t *sess = (async_sess_t *) malloc(sizeof(async_sess_t));
3138 if (sess == NULL) {
[01c3bb4]3139 async_answer_0(chandle, ENOMEM);
[79ae36dd]3140 return NULL;
3141 }
[a35b458]3142
[566992e1]3143 sess->iface = 0;
[79ae36dd]3144 sess->mgmt = mgmt;
[01c3bb4]3145 sess->phone = phandle;
[79ae36dd]3146 sess->arg1 = 0;
3147 sess->arg2 = 0;
3148 sess->arg3 = 0;
[a35b458]3149
[58cbf8d5]3150 fibril_mutex_initialize(&sess->remote_state_mtx);
3151 sess->remote_state_data = NULL;
[a35b458]3152
[79ae36dd]3153 list_initialize(&sess->exch_list);
3154 fibril_mutex_initialize(&sess->mutex);
3155 atomic_set(&sess->refcnt, 0);
[a35b458]3156
[79ae36dd]3157 /* Acknowledge the connected phone */
[01c3bb4]3158 async_answer_0(chandle, EOK);
[a35b458]3159
[79ae36dd]3160 return sess;
3161}
3162
[8869f7b]3163/** Wrapper for receiving the IPC_M_CONNECT_TO_ME calls.
3164 *
3165 * If the call is IPC_M_CONNECT_TO_ME then a new
3166 * async session is created. However, the phone is
3167 * not accepted automatically.
3168 *
3169 * @param mgmt Exchange management style.
3170 * @param call Call data.
3171 *
3172 * @return New async session.
3173 * @return NULL on failure.
3174 * @return NULL if the call is not IPC_M_CONNECT_TO_ME.
3175 *
3176 */
3177async_sess_t *async_callback_receive_start(exch_mgmt_t mgmt, ipc_call_t *call)
3178{
[eadaeae8]3179 cap_phone_handle_t phandle = (cap_handle_t) IPC_GET_ARG5(*call);
[a35b458]3180
[eadaeae8]3181 if ((IPC_GET_IMETHOD(*call) != IPC_M_CONNECT_TO_ME) ||
3182 !CAP_HANDLE_VALID((phandle)))
[8869f7b]3183 return NULL;
[a35b458]3184
[8869f7b]3185 async_sess_t *sess = (async_sess_t *) malloc(sizeof(async_sess_t));
3186 if (sess == NULL)
3187 return NULL;
[a35b458]3188
[566992e1]3189 sess->iface = 0;
[8869f7b]3190 sess->mgmt = mgmt;
[01c3bb4]3191 sess->phone = phandle;
[8869f7b]3192 sess->arg1 = 0;
3193 sess->arg2 = 0;
3194 sess->arg3 = 0;
[a35b458]3195
[58cbf8d5]3196 fibril_mutex_initialize(&sess->remote_state_mtx);
3197 sess->remote_state_data = NULL;
[a35b458]3198
[8869f7b]3199 list_initialize(&sess->exch_list);
3200 fibril_mutex_initialize(&sess->mutex);
3201 atomic_set(&sess->refcnt, 0);
[a35b458]3202
[8869f7b]3203 return sess;
3204}
3205
[b7fd2a0]3206errno_t async_state_change_start(async_exch_t *exch, sysarg_t arg1, sysarg_t arg2,
[2c4aa39]3207 sysarg_t arg3, async_exch_t *other_exch)
3208{
3209 return async_req_5_0(exch, IPC_M_STATE_CHANGE_AUTHORIZE,
[eadaeae8]3210 arg1, arg2, arg3, 0, CAP_HANDLE_RAW(other_exch->phone));
[2c4aa39]3211}
3212
[eadaeae8]3213bool async_state_change_receive(cap_call_handle_t *chandle, sysarg_t *arg1,
[2c4aa39]3214 sysarg_t *arg2, sysarg_t *arg3)
3215{
[01c3bb4]3216 assert(chandle);
[a35b458]3217
[2c4aa39]3218 ipc_call_t call;
[01c3bb4]3219 *chandle = async_get_call(&call);
[a35b458]3220
[2c4aa39]3221 if (IPC_GET_IMETHOD(call) != IPC_M_STATE_CHANGE_AUTHORIZE)
3222 return false;
[a35b458]3223
[2c4aa39]3224 if (arg1)
3225 *arg1 = IPC_GET_ARG1(call);
3226 if (arg2)
3227 *arg2 = IPC_GET_ARG2(call);
3228 if (arg3)
3229 *arg3 = IPC_GET_ARG3(call);
[a35b458]3230
[2c4aa39]3231 return true;
3232}
3233
[eadaeae8]3234errno_t async_state_change_finalize(cap_call_handle_t chandle,
3235 async_exch_t *other_exch)
[2c4aa39]3236{
[eadaeae8]3237 return ipc_answer_1(chandle, EOK, CAP_HANDLE_RAW(other_exch->phone));
[2c4aa39]3238}
3239
[58cbf8d5]3240/** Lock and get session remote state
3241 *
3242 * Lock and get the local replica of the remote state
3243 * in stateful sessions. The call should be paired
3244 * with async_remote_state_release*().
3245 *
3246 * @param[in] sess Stateful session.
3247 *
3248 * @return Local replica of the remote state.
3249 *
3250 */
3251void *async_remote_state_acquire(async_sess_t *sess)
3252{
3253 fibril_mutex_lock(&sess->remote_state_mtx);
3254 return sess->remote_state_data;
3255}
3256
3257/** Update the session remote state
3258 *
3259 * Update the local replica of the remote state
3260 * in stateful sessions. The remote state must
3261 * be already locked.
3262 *
3263 * @param[in] sess Stateful session.
3264 * @param[in] state New local replica of the remote state.
3265 *
3266 */
3267void async_remote_state_update(async_sess_t *sess, void *state)
3268{
3269 assert(fibril_mutex_is_locked(&sess->remote_state_mtx));
3270 sess->remote_state_data = state;
3271}
3272
3273/** Release the session remote state
3274 *
3275 * Unlock the local replica of the remote state
3276 * in stateful sessions.
3277 *
3278 * @param[in] sess Stateful session.
3279 *
3280 */
3281void async_remote_state_release(async_sess_t *sess)
3282{
3283 assert(fibril_mutex_is_locked(&sess->remote_state_mtx));
[a35b458]3284
[58cbf8d5]3285 fibril_mutex_unlock(&sess->remote_state_mtx);
3286}
3287
3288/** Release the session remote state and end an exchange
3289 *
3290 * Unlock the local replica of the remote state
3291 * in stateful sessions. This is convenience function
3292 * which gets the session pointer from the exchange
3293 * and also ends the exchange.
3294 *
3295 * @param[in] exch Stateful session's exchange.
3296 *
3297 */
3298void async_remote_state_release_exchange(async_exch_t *exch)
3299{
3300 if (exch == NULL)
3301 return;
[a35b458]3302
[58cbf8d5]3303 async_sess_t *sess = exch->sess;
3304 assert(fibril_mutex_is_locked(&sess->remote_state_mtx));
[a35b458]3305
[58cbf8d5]3306 async_exchange_end(exch);
3307 fibril_mutex_unlock(&sess->remote_state_mtx);
3308}
3309
[101516d]3310void *async_as_area_create(void *base, size_t size, unsigned int flags,
[ae6021d]3311 async_sess_t *pager, sysarg_t id1, sysarg_t id2, sysarg_t id3)
3312{
3313 as_area_pager_info_t pager_info = {
3314 .pager = pager->phone,
3315 .id1 = id1,
3316 .id2 = id2,
3317 .id3 = id3
3318 };
3319 return as_area_create(base, size, flags, &pager_info);
[101516d]3320}
3321
[a46da63]3322/** @}
[b2951e2]3323 */
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