source: mainline/uspace/drv/uhci-hcd/batch.c@ 67352d2

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since 67352d2 was 67352d2, checked in by Jan Vesely <jano.vesely@…>, 14 years ago

Debug output fixes and refactoring (less spam, more readability)

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File size: 14.8 KB
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1/*
2 * Copyright (c) 2011 Jan Vesely
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/** @addtogroup usb
29 * @{
30 */
31/** @file
32 * @brief UHCI driver
33 */
34#include <errno.h>
35#include <str_error.h>
36
37#include <usb/usb.h>
38#include <usb/debug.h>
39
40#include "batch.h"
41#include "transfer_list.h"
42#include "uhci.h"
43#include "utils/malloc32.h"
44
45#define DEFAULT_ERROR_COUNT 3
46
47static int batch_schedule(batch_t *instance);
48
49static void batch_control(batch_t *instance,
50 usb_packet_id data_stage, usb_packet_id status_stage);
51static void batch_data(batch_t *instance, usb_packet_id pid);
52static void batch_call_in(batch_t *instance);
53static void batch_call_out(batch_t *instance);
54static void batch_call_in_and_dispose(batch_t *instance);
55static void batch_call_out_and_dispose(batch_t *instance);
56static void batch_dispose(batch_t *instance);
57
58
59/** Allocates memory and initializes internal data structures.
60 *
61 * @param[in] fun DDF function to pass to callback.
62 * @param[in] target Device and endpoint target of the transaction.
63 * @param[in] transfer_type Interrupt, Control or Bulk.
64 * @param[in] max_packet_size maximum allowed size of data packets.
65 * @param[in] speed Speed of the transaction.
66 * @param[in] buffer Data source/destination.
67 * @param[in] size Size of the buffer.
68 * @param[in] setup_buffer Setup data source (if not NULL)
69 * @param[in] setup_size Size of setup_buffer (should be always 8)
70 * @param[in] func_in function to call on inbound transaction completion
71 * @param[in] func_out function to call on outbound transaction completion
72 * @param[in] arg additional parameter to func_in or func_out
73 * @param[in] manager Pointer to toggle management structure.
74 * @return False, if there is an active TD, true otherwise.
75 */
76batch_t * batch_get(ddf_fun_t *fun, usb_target_t target,
77 usb_transfer_type_t transfer_type, size_t max_packet_size,
78 usb_speed_t speed, char *buffer, size_t size,
79 char* setup_buffer, size_t setup_size,
80 usbhc_iface_transfer_in_callback_t func_in,
81 usbhc_iface_transfer_out_callback_t func_out, void *arg,
82 device_keeper_t *manager
83 )
84{
85 assert(func_in == NULL || func_out == NULL);
86 assert(func_in != NULL || func_out != NULL);
87
88#define CHECK_NULL_DISPOSE_RETURN(ptr, message...) \
89 if (ptr == NULL) { \
90 usb_log_error(message); \
91 if (instance) { \
92 batch_dispose(instance); \
93 } \
94 return NULL; \
95 } else (void)0
96
97 batch_t *instance = malloc(sizeof(batch_t));
98 CHECK_NULL_DISPOSE_RETURN(instance,
99 "Failed to allocate batch instance.\n");
100 bzero(instance, sizeof(batch_t));
101
102 instance->qh = malloc32(sizeof(queue_head_t));
103 CHECK_NULL_DISPOSE_RETURN(instance->qh,
104 "Failed to allocate batch queue head.\n");
105 queue_head_init(instance->qh);
106
107 instance->packets = (size + max_packet_size - 1) / max_packet_size;
108 if (transfer_type == USB_TRANSFER_CONTROL) {
109 instance->packets += 2;
110 }
111
112 instance->tds = malloc32(sizeof(td_t) * instance->packets);
113 CHECK_NULL_DISPOSE_RETURN(
114 instance->tds, "Failed to allocate transfer descriptors.\n");
115 bzero(instance->tds, sizeof(td_t) * instance->packets);
116
117// const size_t transport_size = max_packet_size * instance->packets;
118
119 if (size > 0) {
120 instance->transport_buffer = malloc32(size);
121 CHECK_NULL_DISPOSE_RETURN(instance->transport_buffer,
122 "Failed to allocate device accessible buffer.\n");
123 }
124
125 if (setup_size > 0) {
126 instance->setup_buffer = malloc32(setup_size);
127 CHECK_NULL_DISPOSE_RETURN(instance->setup_buffer,
128 "Failed to allocate device accessible setup buffer.\n");
129 memcpy(instance->setup_buffer, setup_buffer, setup_size);
130 }
131
132
133 link_initialize(&instance->link);
134
135 instance->max_packet_size = max_packet_size;
136 instance->target = target;
137 instance->transfer_type = transfer_type;
138 instance->buffer = buffer;
139 instance->buffer_size = size;
140 instance->setup_size = setup_size;
141 instance->fun = fun;
142 instance->arg = arg;
143 instance->speed = speed;
144 instance->manager = manager;
145
146 if (func_out)
147 instance->callback_out = func_out;
148 if (func_in)
149 instance->callback_in = func_in;
150
151 queue_head_set_element_td(instance->qh, addr_to_phys(instance->tds));
152
153 usb_log_debug("Batch(%p) %d:%d memory structures ready.\n",
154 instance, target.address, target.endpoint);
155 return instance;
156}
157/*----------------------------------------------------------------------------*/
158/** Checks batch TDs for activity.
159 *
160 * @param[in] instance Batch structure to use.
161 * @return False, if there is an active TD, true otherwise.
162 */
163bool batch_is_complete(batch_t *instance)
164{
165 assert(instance);
166 usb_log_debug2("Batch(%p) checking %d packet(s) for completion.\n",
167 instance, instance->packets);
168 instance->transfered_size = 0;
169 size_t i = 0;
170 for (;i < instance->packets; ++i) {
171 if (td_is_active(&instance->tds[i])) {
172 return false;
173 }
174
175 instance->error = td_status(&instance->tds[i]);
176 if (instance->error != EOK) {
177 usb_log_debug("Batch(%p) found error TD(%d):%x.\n",
178 instance, i, instance->tds[i].status);
179 td_print_status(&instance->tds[i]);
180
181 device_keeper_set_toggle(instance->manager,
182 instance->target, td_toggle(&instance->tds[i]));
183 if (i > 0)
184 goto substract_ret;
185 return true;
186 }
187
188 instance->transfered_size += td_act_size(&instance->tds[i]);
189 if (td_is_short(&instance->tds[i]))
190 goto substract_ret;
191 }
192substract_ret:
193 instance->transfered_size -= instance->setup_size;
194 return true;
195}
196/*----------------------------------------------------------------------------*/
197/** Prepares control write transaction.
198 *
199 * @param[in] instance Batch structure to use.
200 */
201void batch_control_write(batch_t *instance)
202{
203 assert(instance);
204 /* we are data out, we are supposed to provide data */
205 memcpy(instance->transport_buffer, instance->buffer,
206 instance->buffer_size);
207 batch_control(instance, USB_PID_OUT, USB_PID_IN);
208 instance->next_step = batch_call_out_and_dispose;
209 usb_log_debug("Batch(%p) CONTROL WRITE initialized.\n", instance);
210 batch_schedule(instance);
211}
212/*----------------------------------------------------------------------------*/
213/** Prepares control read transaction.
214 *
215 * @param[in] instance Batch structure to use.
216 */
217void batch_control_read(batch_t *instance)
218{
219 assert(instance);
220 batch_control(instance, USB_PID_IN, USB_PID_OUT);
221 instance->next_step = batch_call_in_and_dispose;
222 usb_log_debug("Batch(%p) CONTROL READ initialized.\n", instance);
223 batch_schedule(instance);
224}
225/*----------------------------------------------------------------------------*/
226/** Prepares interrupt in transaction.
227 *
228 * @param[in] instance Batch structure to use.
229 */
230void batch_interrupt_in(batch_t *instance)
231{
232 assert(instance);
233 batch_data(instance, USB_PID_IN);
234 instance->next_step = batch_call_in_and_dispose;
235 usb_log_debug("Batch(%p) INTERRUPT IN initialized.\n", instance);
236 batch_schedule(instance);
237}
238/*----------------------------------------------------------------------------*/
239/** Prepares interrupt out transaction.
240 *
241 * @param[in] instance Batch structure to use.
242 */
243void batch_interrupt_out(batch_t *instance)
244{
245 assert(instance);
246 /* we are data out, we are supposed to provide data */
247 memcpy(instance->transport_buffer, instance->buffer, instance->buffer_size);
248 batch_data(instance, USB_PID_OUT);
249 instance->next_step = batch_call_out_and_dispose;
250 usb_log_debug("Batch(%p) INTERRUPT OUT initialized.\n", instance);
251 batch_schedule(instance);
252}
253/*----------------------------------------------------------------------------*/
254/** Prepares bulk in transaction.
255 *
256 * @param[in] instance Batch structure to use.
257 */
258void batch_bulk_in(batch_t *instance)
259{
260 assert(instance);
261 batch_data(instance, USB_PID_IN);
262 instance->next_step = batch_call_in_and_dispose;
263 usb_log_debug("Batch(%p) BULK IN initialized.\n", instance);
264 batch_schedule(instance);
265}
266/*----------------------------------------------------------------------------*/
267/** Prepares bulk out transaction.
268 *
269 * @param[in] instance Batch structure to use.
270 */
271void batch_bulk_out(batch_t *instance)
272{
273 assert(instance);
274 memcpy(instance->transport_buffer, instance->buffer, instance->buffer_size);
275 batch_data(instance, USB_PID_OUT);
276 instance->next_step = batch_call_out_and_dispose;
277 usb_log_debug("Batch(%p) BULK OUT initialized.\n", instance);
278 batch_schedule(instance);
279}
280/*----------------------------------------------------------------------------*/
281/** Prepares generic data transaction
282 *
283 * @param[in] instance Batch structure to use.
284 * @param[in] pid to use for data packets.
285 */
286void batch_data(batch_t *instance, usb_packet_id pid)
287{
288 assert(instance);
289 const bool low_speed = instance->speed == USB_SPEED_LOW;
290 int toggle =
291 device_keeper_get_toggle(instance->manager, instance->target);
292 assert(toggle == 0 || toggle == 1);
293
294 size_t packet = 0;
295 size_t remain_size = instance->buffer_size;
296 while (remain_size > 0) {
297 char *data =
298 instance->transport_buffer + instance->buffer_size
299 - remain_size;
300
301 const size_t packet_size =
302 (instance->max_packet_size > remain_size) ?
303 remain_size : instance->max_packet_size;
304
305 td_t *next_packet = (packet + 1 < instance->packets)
306 ? &instance->tds[packet + 1] : NULL;
307
308 assert(packet < instance->packets);
309 assert(packet_size <= remain_size);
310
311 td_init(
312 &instance->tds[packet], DEFAULT_ERROR_COUNT, packet_size,
313 toggle, false, low_speed, instance->target, pid, data,
314 next_packet);
315
316
317 toggle = 1 - toggle;
318 remain_size -= packet_size;
319 ++packet;
320 }
321 instance->tds[packet - 1].status |= TD_STATUS_IOC_FLAG;
322 device_keeper_set_toggle(instance->manager, instance->target, toggle);
323}
324/*----------------------------------------------------------------------------*/
325/** Prepares generic control transaction
326 *
327 * @param[in] instance Batch structure to use.
328 * @param[in] data_stage to use for data packets.
329 * @param[in] status_stage to use for data packets.
330 */
331void batch_control(batch_t *instance,
332 usb_packet_id data_stage, usb_packet_id status_stage)
333{
334 assert(instance);
335
336 const bool low_speed = instance->speed == USB_SPEED_LOW;
337 int toggle = 0;
338 /* setup stage */
339 td_init(instance->tds, DEFAULT_ERROR_COUNT,
340 instance->setup_size, toggle, false, low_speed, instance->target,
341 USB_PID_SETUP, instance->setup_buffer, &instance->tds[1]);
342
343 /* data stage */
344 size_t packet = 1;
345 size_t remain_size = instance->buffer_size;
346 while (remain_size > 0) {
347 char *data =
348 instance->transport_buffer + instance->buffer_size
349 - remain_size;
350
351 toggle = 1 - toggle;
352
353 const size_t packet_size =
354 (instance->max_packet_size > remain_size) ?
355 remain_size : instance->max_packet_size;
356
357 td_init(
358 &instance->tds[packet], DEFAULT_ERROR_COUNT, packet_size,
359 toggle, false, low_speed, instance->target, data_stage,
360 data, &instance->tds[packet + 1]);
361
362 ++packet;
363 assert(packet < instance->packets);
364 assert(packet_size <= remain_size);
365 remain_size -= packet_size;
366 }
367
368 /* status stage */
369 assert(packet == instance->packets - 1);
370 td_init(&instance->tds[packet], DEFAULT_ERROR_COUNT,
371 0, 1, false, low_speed, instance->target, status_stage, NULL, NULL);
372
373
374 instance->tds[packet].status |= TD_STATUS_IOC_FLAG;
375 usb_log_debug2("Control last TD status: %x.\n",
376 instance->tds[packet].status);
377}
378/*----------------------------------------------------------------------------*/
379/** Prepares data, gets error status and calls callback in.
380 *
381 * @param[in] instance Batch structure to use.
382 */
383void batch_call_in(batch_t *instance)
384{
385 assert(instance);
386 assert(instance->callback_in);
387
388 /* we are data in, we need data */
389 memcpy(instance->buffer, instance->transport_buffer,
390 instance->buffer_size);
391
392 int err = instance->error;
393 usb_log_debug("Batch(%p) callback IN(type:%d): %s(%d), %zu.\n",
394 instance, instance->transfer_type, str_error(err), err,
395 instance->transfered_size);
396
397 instance->callback_in(
398 instance->fun, err, instance->transfered_size, instance->arg);
399}
400/*----------------------------------------------------------------------------*/
401/** Gets error status and calls callback out.
402 *
403 * @param[in] instance Batch structure to use.
404 */
405void batch_call_out(batch_t *instance)
406{
407 assert(instance);
408 assert(instance->callback_out);
409
410 int err = instance->error;
411 usb_log_debug("Batch(%p) callback OUT(type:%d): %s(%d).\n",
412 instance, instance->transfer_type, str_error(err), err);
413 instance->callback_out(instance->fun,
414 err, instance->arg);
415}
416/*----------------------------------------------------------------------------*/
417/** Prepares data, gets error status, calls callback in and dispose.
418 *
419 * @param[in] instance Batch structure to use.
420 */
421void batch_call_in_and_dispose(batch_t *instance)
422{
423 assert(instance);
424 batch_call_in(instance);
425 batch_dispose(instance);
426}
427/*----------------------------------------------------------------------------*/
428/** Gets error status, calls callback out and dispose.
429 *
430 * @param[in] instance Batch structure to use.
431 */
432void batch_call_out_and_dispose(batch_t *instance)
433{
434 assert(instance);
435 batch_call_out(instance);
436 batch_dispose(instance);
437}
438/*----------------------------------------------------------------------------*/
439/** Correctly disposes all used data structures.
440 *
441 * @param[in] instance Batch structure to use.
442 */
443void batch_dispose(batch_t *instance)
444{
445 assert(instance);
446 usb_log_debug("Batch(%p) disposing.\n", instance);
447 /* free32 is NULL safe */
448 free32(instance->tds);
449 free32(instance->qh);
450 free32(instance->setup_buffer);
451 free32(instance->transport_buffer);
452 free(instance);
453}
454/*----------------------------------------------------------------------------*/
455int batch_schedule(batch_t *instance)
456{
457 assert(instance);
458 uhci_t *hc = fun_to_uhci(instance->fun);
459 assert(hc);
460 return uhci_schedule(hc, instance);
461}
462/**
463 * @}
464 */
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