source: mainline/uspace/drv/bus/usb/uhci/uhci_batch.c@ 6b2930b

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since 6b2930b was 58ac3ec, checked in by Ondřej Hlavatý <aearsis@…>, 8 years ago

uhci: finished forgotten refactoring to generic batch

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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
29/** @addtogroup drvusbuhcihc
30 * @{
31 */
32/** @file
33 * @brief UHCI driver USB transfer structure
34 */
35
36#include <assert.h>
37#include <errno.h>
38#include <macros.h>
39#include <mem.h>
40#include <stdlib.h>
41
42#include <usb/usb.h>
43#include <usb/debug.h>
44#include <usb/host/endpoint.h>
45#include <usb/host/utils/malloc32.h>
46
47#include "uhci_batch.h"
48#include "hw_struct/transfer_descriptor.h"
49
50#define DEFAULT_ERROR_COUNT 3
51
52/** Transfer batch setup table. */
53static void (*const batch_setup[])(uhci_transfer_batch_t*);
54
55/** Destroys uhci_transfer_batch_t structure.
56 *
57 * @param[in] uhci_batch Instance to destroy.
58 */
59void uhci_transfer_batch_destroy(uhci_transfer_batch_t *uhci_batch)
60{
61 assert(uhci_batch);
62 free32(uhci_batch->device_buffer);
63 free(uhci_batch);
64}
65
66/** Allocate memory and initialize internal data structure.
67 *
68 * @param[in] usb_batch Pointer to generic USB batch structure.
69 * @return Valid pointer if all structures were successfully created,
70 * NULL otherwise.
71 */
72uhci_transfer_batch_t * uhci_transfer_batch_create(endpoint_t *ep)
73{
74 uhci_transfer_batch_t *uhci_batch =
75 calloc(1, sizeof(uhci_transfer_batch_t));
76 if (!uhci_batch) {
77 usb_log_error("Failed to allocate UHCI batch.\n");
78 return NULL;
79 }
80
81 usb_transfer_batch_init(&uhci_batch->base, ep);
82
83 link_initialize(&uhci_batch->link);
84 return uhci_batch;
85}
86
87/* Prepares batch for commiting.
88 *
89 * Determines the number of needed transfer descriptors (TDs).
90 * Prepares a transport buffer (that is accessible by the hardware).
91 * Initializes parameters needed for the transfer and callback.
92 */
93int uhci_transfer_batch_prepare(uhci_transfer_batch_t *uhci_batch)
94{
95 static_assert((sizeof(td_t) % 16) == 0);
96
97 usb_transfer_batch_t *usb_batch = &uhci_batch->base;
98
99 uhci_batch->td_count = (usb_batch->buffer_size + usb_batch->ep->max_packet_size - 1)
100 / usb_batch->ep->max_packet_size;
101
102 if (usb_batch->ep->transfer_type == USB_TRANSFER_CONTROL) {
103 uhci_batch->td_count += 2;
104 }
105
106 const size_t setup_size = (uhci_batch->base.ep->transfer_type == USB_TRANSFER_CONTROL)
107 ? USB_SETUP_PACKET_SIZE
108 : 0;
109
110 const size_t total_size = (sizeof(td_t) * uhci_batch->td_count)
111 + sizeof(qh_t) + setup_size + usb_batch->buffer_size;
112 uhci_batch->device_buffer = malloc32(total_size);
113 if (!uhci_batch->device_buffer) {
114 usb_log_error("Failed to allocate UHCI buffer.\n");
115 return ENOMEM;
116 }
117 memset(uhci_batch->device_buffer, 0, total_size);
118
119 uhci_batch->tds = uhci_batch->device_buffer;
120 uhci_batch->qh =
121 (uhci_batch->device_buffer + (sizeof(td_t) * uhci_batch->td_count));
122
123 qh_init(uhci_batch->qh);
124 qh_set_element_td(uhci_batch->qh, &uhci_batch->tds[0]);
125
126 void *dest =
127 uhci_batch->device_buffer + (sizeof(td_t) * uhci_batch->td_count)
128 + sizeof(qh_t);
129 /* Copy SETUP packet data to the device buffer */
130 memcpy(dest, usb_batch->setup.buffer, setup_size);
131 dest += setup_size;
132 /* Copy generic data unless they are provided by the device */
133 if (usb_batch->ep->direction != USB_DIRECTION_IN) {
134 memcpy(dest, usb_batch->buffer, usb_batch->buffer_size);
135 }
136 usb_log_debug2("Batch %p " USB_TRANSFER_BATCH_FMT
137 " memory structures ready.\n", usb_batch,
138 USB_TRANSFER_BATCH_ARGS(*usb_batch));
139
140 assert(batch_setup[usb_batch->ep->transfer_type]);
141 batch_setup[usb_batch->ep->transfer_type](uhci_batch);
142
143 return EOK;
144}
145
146/** Check batch TDs for activity.
147 *
148 * @param[in] uhci_batch Batch structure to use.
149 * @return False, if there is an active TD, true otherwise.
150 *
151 * Walk all TDs. Stop with false if there is an active one (it is to be
152 * processed). Stop with true if an error is found. Return true if the last TD
153 * is reached.
154 */
155bool uhci_transfer_batch_check_completed(uhci_transfer_batch_t *uhci_batch)
156{
157 assert(uhci_batch);
158
159 usb_log_debug2("Batch %p " USB_TRANSFER_BATCH_FMT
160 " checking %zu transfer(s) for completion.\n",
161 uhci_batch, USB_TRANSFER_BATCH_ARGS(uhci_batch->base),
162 uhci_batch->td_count);
163 uhci_batch->base.transfered_size = 0;
164
165 for (size_t i = 0;i < uhci_batch->td_count; ++i) {
166 if (td_is_active(&uhci_batch->tds[i])) {
167 return false;
168 }
169
170 uhci_batch->base.error = td_status(&uhci_batch->tds[i]);
171 if (uhci_batch->base.error != EOK) {
172 assert(uhci_batch->base.ep != NULL);
173
174 usb_log_debug("Batch %p found error TD(%zu->%p):%"
175 PRIx32 ".\n", uhci_batch, i,
176 &uhci_batch->tds[i], uhci_batch->tds[i].status);
177 td_print_status(&uhci_batch->tds[i]);
178
179 endpoint_toggle_set(uhci_batch->base.ep,
180 td_toggle(&uhci_batch->tds[i]));
181 if (i > 0)
182 goto substract_ret;
183 return true;
184 }
185
186 uhci_batch->base.transfered_size
187 += td_act_size(&uhci_batch->tds[i]);
188 if (td_is_short(&uhci_batch->tds[i]))
189 goto substract_ret;
190 }
191substract_ret:
192 if (uhci_batch->base.ep->transfer_type == USB_TRANSFER_CONTROL)
193 uhci_batch->base.transfered_size -= USB_SETUP_PACKET_SIZE;
194 return true;
195}
196
197/** Direction to pid conversion table */
198static const usb_packet_id direction_pids[] = {
199 [USB_DIRECTION_IN] = USB_PID_IN,
200 [USB_DIRECTION_OUT] = USB_PID_OUT,
201};
202
203/** Prepare generic data transfer
204 *
205 * @param[in] uhci_batch Batch structure to use.
206 * @param[in] dir Communication direction.
207 *
208 * Transactions with alternating toggle bit and supplied pid value.
209 * The last transfer is marked with IOC flag.
210 */
211static void batch_data(uhci_transfer_batch_t *uhci_batch)
212{
213 assert(uhci_batch);
214
215 usb_direction_t dir = uhci_batch->base.dir;
216 assert(dir == USB_DIRECTION_OUT || dir == USB_DIRECTION_IN);
217
218
219 const usb_packet_id pid = direction_pids[dir];
220 const bool low_speed =
221 uhci_batch->base.ep->speed == USB_SPEED_LOW;
222 const size_t mps = uhci_batch->base.ep->max_packet_size;
223
224 int toggle = endpoint_toggle_get(uhci_batch->base.ep);
225 assert(toggle == 0 || toggle == 1);
226
227 size_t td = 0;
228 size_t remain_size = uhci_batch->base.buffer_size;
229 char *buffer = uhci_transfer_batch_data_buffer(uhci_batch);
230
231 while (remain_size > 0) {
232 const size_t packet_size = min(remain_size, mps);
233
234 const td_t *next_td = (td + 1 < uhci_batch->td_count)
235 ? &uhci_batch->tds[td + 1] : NULL;
236
237 assert(td < uhci_batch->td_count);
238 td_init(
239 &uhci_batch->tds[td], DEFAULT_ERROR_COUNT, packet_size,
240 toggle, false, low_speed, uhci_batch->base.target, pid, buffer, next_td);
241
242 ++td;
243 toggle = 1 - toggle;
244 buffer += packet_size;
245 remain_size -= packet_size;
246 }
247 td_set_ioc(&uhci_batch->tds[td - 1]);
248 endpoint_toggle_set(uhci_batch->base.ep, toggle);
249 usb_log_debug2(
250 "Batch %p %s %s " USB_TRANSFER_BATCH_FMT " initialized.\n", \
251 uhci_batch,
252 usb_str_transfer_type(uhci_batch->base.ep->transfer_type),
253 usb_str_direction(uhci_batch->base.ep->direction),
254 USB_TRANSFER_BATCH_ARGS(uhci_batch->base));
255}
256
257/** Prepare generic control transfer
258 *
259 * @param[in] uhci_batch Batch structure to use.
260 * @param[in] dir Communication direction.
261 *
262 * Setup stage with toggle 0 and USB_PID_SETUP.
263 * Data stage with alternating toggle and pid determined by the communication
264 * direction.
265 * Status stage with toggle 1 and pid determined by the communication direction.
266 * The last transfer is marked with IOC.
267 */
268static void batch_control(uhci_transfer_batch_t *uhci_batch)
269{
270 assert(uhci_batch);
271
272 usb_direction_t dir = uhci_batch->base.dir;
273 assert(dir == USB_DIRECTION_OUT || dir == USB_DIRECTION_IN);
274 assert(uhci_batch->td_count >= 2);
275 static const usb_packet_id status_stage_pids[] = {
276 [USB_DIRECTION_IN] = USB_PID_OUT,
277 [USB_DIRECTION_OUT] = USB_PID_IN,
278 };
279
280 const usb_packet_id data_stage_pid = direction_pids[dir];
281 const usb_packet_id status_stage_pid = status_stage_pids[dir];
282 const bool low_speed =
283 uhci_batch->base.ep->speed == USB_SPEED_LOW;
284 const size_t mps = uhci_batch->base.ep->max_packet_size;
285 const usb_target_t target = uhci_batch->base.target;
286
287 /* setup stage */
288 td_init(
289 &uhci_batch->tds[0], DEFAULT_ERROR_COUNT,
290 USB_SETUP_PACKET_SIZE, 0, false,
291 low_speed, target, USB_PID_SETUP,
292 uhci_transfer_batch_setup_buffer(uhci_batch), &uhci_batch->tds[1]);
293
294 /* data stage */
295 size_t td = 1;
296 unsigned toggle = 1;
297 size_t remain_size = uhci_batch->base.buffer_size;
298 char *buffer = uhci_transfer_batch_data_buffer(uhci_batch);
299
300 while (remain_size > 0) {
301 const size_t packet_size = min(remain_size, mps);
302
303 td_init(
304 &uhci_batch->tds[td], DEFAULT_ERROR_COUNT, packet_size,
305 toggle, false, low_speed, target, data_stage_pid,
306 buffer, &uhci_batch->tds[td + 1]);
307
308 ++td;
309 toggle = 1 - toggle;
310 buffer += packet_size;
311 remain_size -= packet_size;
312 assert(td < uhci_batch->td_count);
313 }
314
315 /* status stage */
316 assert(td == uhci_batch->td_count - 1);
317
318 td_init(
319 &uhci_batch->tds[td], DEFAULT_ERROR_COUNT, 0, 1, false, low_speed,
320 target, status_stage_pid, NULL, NULL);
321 td_set_ioc(&uhci_batch->tds[td]);
322
323 usb_log_debug2("Control last TD status: %x.\n",
324 uhci_batch->tds[td].status);
325}
326
327static void (*const batch_setup[])(uhci_transfer_batch_t*) =
328{
329 [USB_TRANSFER_CONTROL] = batch_control,
330 [USB_TRANSFER_BULK] = batch_data,
331 [USB_TRANSFER_INTERRUPT] = batch_data,
332 [USB_TRANSFER_ISOCHRONOUS] = NULL,
333};
334/**
335 * @}
336 */
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