source: mainline/uspace/lib/usbdev/src/devpoll.c@ d93f5afb

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since d93f5afb was d93f5afb, checked in by Jan Vesely <jano.vesely@…>, 12 years ago

libusbdev: Cleanup unused code.

  • Property mode set to 100644
File size: 10.4 KB
Line 
1/*
2 * Copyright (c) 2011 Vojtech Horky
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.
27 */
28
29/** @addtogroup libusbdev
30 * @{
31 */
32/** @file
33 * USB device driver framework - automatic interrupt polling.
34 */
35#include <usb/dev/poll.h>
36#include <usb/dev/request.h>
37#include <usb/debug.h>
38#include <usb/classes/classes.h>
39#include <errno.h>
40#include <str_error.h>
41#include <assert.h>
42
43/** Maximum number of failed consecutive requests before announcing failure. */
44#define MAX_FAILED_ATTEMPTS 3
45
46/** Data needed for polling. */
47typedef struct {
48 /** Parameters for automated polling. */
49 usb_device_auto_polling_t auto_polling;
50
51 /** USB device to poll. */
52 usb_device_t *dev;
53 /** Device enpoint mapping to use for polling. */
54 usb_endpoint_mapping_t *polling_mapping;
55 /** Size of the recieved data. */
56 size_t request_size;
57 /** Data buffer. */
58 uint8_t *buffer;
59} polling_data_t;
60
61
62/** Polling fibril.
63 *
64 * @param arg Pointer to polling_data_t.
65 * @return Always EOK.
66 */
67static int polling_fibril(void *arg)
68{
69 assert(arg);
70 const polling_data_t *data = arg;
71 /* Helper to reduce typing. */
72 const usb_device_auto_polling_t *params = &data->auto_polling;
73
74 usb_pipe_t *pipe = &data->polling_mapping->pipe;
75
76 if (params->debug > 0) {
77 const usb_endpoint_mapping_t *mapping
78 = data->polling_mapping;
79 usb_log_debug("Poll%p: started polling of `%s' - " \
80 "interface %d (%s,%d,%d), %zuB/%zu.\n",
81 data, usb_device_get_name(data->dev),
82 (int) mapping->interface->interface_number,
83 usb_str_class(mapping->interface->interface_class),
84 (int) mapping->interface->interface_subclass,
85 (int) mapping->interface->interface_protocol,
86 data->request_size, pipe->max_packet_size);
87 }
88
89 size_t failed_attempts = 0;
90 while (failed_attempts <= params->max_failures) {
91 size_t actual_size;
92 const int rc = usb_pipe_read(pipe, data->buffer,
93 data->request_size, &actual_size);
94
95 if (params->debug > 1) {
96 if (rc == EOK) {
97 usb_log_debug(
98 "Poll%p: received: '%s' (%zuB).\n",
99 data,
100 usb_debug_str_buffer(data->buffer,
101 actual_size, 16),
102 actual_size);
103 } else {
104 usb_log_debug(
105 "Poll%p: polling failed: %s.\n",
106 data, str_error(rc));
107 }
108 }
109
110 /* If the pipe stalled, we can try to reset the stall. */
111 if ((rc == ESTALL) && (params->auto_clear_halt)) {
112 /*
113 * We ignore error here as this is usually a futile
114 * attempt anyway.
115 */
116 usb_request_clear_endpoint_halt(
117 usb_device_get_default_pipe(data->dev),
118 pipe->endpoint_no);
119 }
120
121 if (rc != EOK) {
122 ++failed_attempts;
123 const bool cont = (params->on_error == NULL) ? true :
124 params->on_error(data->dev, rc, params->arg);
125 if (!cont) {
126 failed_attempts = params->max_failures;
127 }
128 continue;
129 }
130
131 /* We have the data, execute the callback now. */
132 assert(params->on_data);
133 const bool carry_on = params->on_data(
134 data->dev, data->buffer, actual_size, params->arg);
135
136 if (!carry_on) {
137 /* This is user requested abort, erases failures. */
138 failed_attempts = 0;
139 break;
140 }
141
142 /* Reset as something might be only a temporary problem. */
143 failed_attempts = 0;
144
145 /* Take a rest before next request. */
146 async_usleep(params->delay);
147 }
148
149 const bool failed = failed_attempts > 0;
150
151 if (params->on_polling_end != NULL) {
152 params->on_polling_end(data->dev, failed, params->arg);
153 }
154
155 if (params->debug > 0) {
156 if (failed) {
157 usb_log_error("Polling of device `%s' terminated: "
158 "recurring failures.\n",
159 usb_device_get_name(data->dev));
160 } else {
161 usb_log_debug("Polling of device `%s' terminated: "
162 "driver request.\n",
163 usb_device_get_name(data->dev));
164 }
165 }
166
167 /* Free the allocated memory. */
168 free(data->buffer);
169 free(data);
170
171 return EOK;
172}
173
174
175/** Start automatic device polling over interrupt in pipe.
176 *
177 * The polling settings is copied thus it is okay to destroy the structure
178 * after this function returns.
179 *
180 * @warning There is no guarantee when the request to the device
181 * will be sent for the first time (it is possible that this
182 * first request would be executed prior to return from this function).
183 *
184 * @param dev Device to be periodically polled.
185 * @param epm Endpoint mapping to use.
186 * @param polling Polling settings.
187 * @param request_size How many bytes to ask for in each request.
188 * @param arg Custom argument (passed as is to the callbacks).
189 * @return Error code.
190 * @retval EOK New fibril polling the device was already started.
191 */
192static int usb_device_auto_polling_internal(usb_device_t *dev,
193 usb_endpoint_mapping_t *epm, const usb_device_auto_polling_t *polling,
194 size_t request_size)
195{
196 if ((dev == NULL) || (polling == NULL) || (polling->on_data == NULL)) {
197 return EBADMEM;
198 }
199
200 if (request_size == 0)
201 return EINVAL;
202
203 if (!epm || (epm->pipe.transfer_type != USB_TRANSFER_INTERRUPT) ||
204 (epm->pipe.direction != USB_DIRECTION_IN))
205 return EINVAL;
206
207
208 polling_data_t *polling_data = malloc(sizeof(polling_data_t));
209 if (polling_data == NULL) {
210 return ENOMEM;
211 }
212
213 /* Fill-in the data. */
214 polling_data->buffer = malloc(sizeof(request_size));
215 if (polling_data->buffer == NULL) {
216 free(polling_data);
217 return ENOMEM;
218 }
219 polling_data->request_size = request_size;
220 polling_data->dev = dev;
221 polling_data->polling_mapping = epm;
222
223 /* Copy provided settings. */
224 polling_data->auto_polling = *polling;
225
226 /* Negative value means use descriptor provided value. */
227 if (polling->delay < 0) {
228 polling_data->auto_polling.delay =
229 epm->descriptor->poll_interval;
230 }
231
232 fid_t fibril = fibril_create(polling_fibril, polling_data);
233 if (fibril == 0) {
234 free(polling_data->buffer);
235 free(polling_data);
236 return ENOMEM;
237 }
238 fibril_add_ready(fibril);
239
240 /* Fibril launched. That fibril will free the allocated data. */
241
242 return EOK;
243}
244/** Start automatic device polling over interrupt in pipe.
245 *
246 * The polling settings is copied thus it is okay to destroy the structure
247 * after this function returns.
248 *
249 * @warning There is no guarantee when the request to the device
250 * will be sent for the first time (it is possible that this
251 * first request would be executed prior to return from this function).
252 *
253 * @param dev Device to be periodically polled.
254 * @param pipe_index Index of the endpoint pipe used for polling.
255 * @param polling Polling settings.
256 * @param req_size How many bytes to ask for in each request.
257 * @param arg Custom argument (passed as is to the callbacks).
258 * @return Error code.
259 * @retval EOK New fibril polling the device was already started.
260 */
261int usb_device_auto_polling(usb_device_t *usb_dev, usb_endpoint_t ep,
262 const usb_device_auto_polling_t *polling, size_t req_size)
263{
264 usb_endpoint_mapping_t *epm = usb_device_get_mapped_ep(usb_dev, ep);
265 return usb_device_auto_polling_internal(usb_dev, epm, polling, req_size);
266}
267
268/** Start automatic device polling over interrupt in pipe.
269 *
270 * @warning It is up to the callback to produce delays between individual
271 * requests.
272 *
273 * @warning There is no guarantee when the request to the device
274 * will be sent for the first time (it is possible that this
275 * first request would be executed prior to return from this function).
276 *
277 * @param dev Device to be periodically polled.
278 * @param ep Endpoint used for polling.
279 * @param callback Callback when data are available.
280 * @param request_size How many bytes to ask for in each request.
281 * @param delay NUmber of ms to wait between queries, -1 to use descriptor val.
282 * @param terminated_callback Callback when polling is terminated.
283 * @param arg Custom argument (passed as is to the callbacks).
284 * @return Error code.
285 * @retval EOK New fibril polling the device was already started.
286 */
287int usb_device_auto_poll(usb_device_t *dev, usb_endpoint_t ep,
288 usb_polling_callback_t callback, size_t request_size, int delay,
289 usb_polling_terminted_callback_t terminated_callback, void *arg)
290{
291 const usb_device_auto_polling_t auto_polling = {
292 .debug = 1,
293 .auto_clear_halt = true,
294 .delay = delay,
295 .max_failures = MAX_FAILED_ATTEMPTS,
296 .on_data = callback,
297 .on_polling_end = terminated_callback,
298 .on_error = NULL,
299 .arg = arg,
300 };
301
302 usb_endpoint_mapping_t *epm = usb_device_get_mapped_ep(dev, ep);
303 return usb_device_auto_polling_internal(
304 dev, epm, &auto_polling, request_size);
305}
306
307int usb_device_auto_polling_desc(usb_device_t *usb_dev,
308 const usb_endpoint_description_t *desc,
309 const usb_device_auto_polling_t *polling, size_t req_size)
310{
311 usb_endpoint_mapping_t *epm =
312 usb_device_get_mapped_ep_desc(usb_dev, desc);
313 return usb_device_auto_polling_internal(usb_dev, epm, polling, req_size);
314}
315
316int usb_device_auto_poll_desc(usb_device_t * usb_dev,
317 const usb_endpoint_description_t *desc, usb_polling_callback_t callback,
318 size_t req_size, int delay,
319 usb_polling_terminted_callback_t terminated_callback, void *arg)
320{
321 const usb_device_auto_polling_t auto_polling = {
322 .debug = 1,
323 .auto_clear_halt = true,
324 .delay = delay,
325 .max_failures = MAX_FAILED_ATTEMPTS,
326 .on_data = callback,
327 .on_polling_end = terminated_callback,
328 .on_error = NULL,
329 .arg = arg,
330 };
331
332 usb_endpoint_mapping_t *epm =
333 usb_device_get_mapped_ep_desc(usb_dev, desc);
334 return usb_device_auto_polling_internal(
335 usb_dev, epm, &auto_polling, req_size);
336}
337
338/**
339 * @}
340 */
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