2 * Intel Wireless WiMAX Connection 2400m
3 * Firmware uploader's USB specifics
6 * Copyright (C) 2007-2008 Intel Corporation. All rights reserved.
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35 * Intel Corporation <linux-wimax@intel.com>
36 * Yanir Lubetkin <yanirx.lubetkin@intel.com>
37 * Inaky Perez-Gonzalez <inaky.perez-gonzalez@intel.com>
38 * - Initial implementation
40 * Inaky Perez-Gonzalez <inaky.perez-gonzalez@intel.com>
41 * - bus generic/specific split
45 * See fw.c for the generic description of this procedure.
47 * This file implements only the USB specifics. It boils down to how
48 * to send a command and waiting for an acknowledgement from the
51 * This code (and process) is single threaded. It assumes it is the
52 * only thread poking around (guaranteed by fw.c).
56 * A write URB is posted with the buffer to the bulk output endpoint.
60 * We just post a URB to the notification endpoint and wait for
61 * data. We repeat until we get all the data we expect (as indicated
62 * by the call from the bus generic code).
64 * The data is not read from the bulk in endpoint for boot mode.
68 * i2400mu_bus_bm_cmd_send
69 * i2400m_bm_cmd_prepare...
72 * i2400mu_bus_bm_wait_for_ack
75 #include <linux/usb.h>
76 #include "i2400m-usb.h"
79 #define D_SUBMODULE fw
80 #include "usb-debug-levels.h"
84 * Synchronous write to the device
86 * Takes care of updating EDC counts and thus, handle device errors.
89 ssize_t i2400mu_tx_bulk_out(struct i2400mu *i2400mu, void *buf, size_t buf_size)
92 struct device *dev = &i2400mu->usb_iface->dev;
94 struct usb_endpoint_descriptor *epd;
95 int pipe, do_autopm = 1;
97 result = usb_autopm_get_interface(i2400mu->usb_iface);
99 dev_err(dev, "BM-CMD: can't get autopm: %d\n", result);
102 epd = usb_get_epd(i2400mu->usb_iface, I2400MU_EP_BULK_OUT);
103 pipe = usb_sndbulkpipe(i2400mu->usb_dev, epd->bEndpointAddress);
105 result = usb_bulk_msg(i2400mu->usb_dev, pipe, buf, buf_size, &len, HZ);
108 if (len != buf_size) {
109 dev_err(dev, "BM-CMD: short write (%u B vs %zu "
110 "expected)\n", len, buf_size);
116 case -EINVAL: /* while removing driver */
117 case -ENODEV: /* dev disconnect ... */
118 case -ENOENT: /* just ignore it */
119 case -ESHUTDOWN: /* and exit */
123 case -ETIMEDOUT: /* bah... */
125 default: /* any other? */
126 if (edc_inc(&i2400mu->urb_edc,
127 EDC_MAX_ERRORS, EDC_ERROR_TIMEFRAME)) {
128 dev_err(dev, "BM-CMD: maximum errors in "
129 "URB exceeded; resetting device\n");
130 usb_queue_reset_device(i2400mu->usb_iface);
134 dev_err(dev, "BM-CMD: URB error %d, retrying\n",
140 usb_autopm_put_interface(i2400mu->usb_iface);
146 * Send a boot-mode command over the bulk-out pipe
148 * Command can be a raw command, which requires no preparation (and
149 * which might not even be following the command format). Checks that
150 * the right amount of data was transfered.
152 * To satisfy USB requirements (no onstack, vmalloc or in data segment
153 * buffers), we copy the command to i2400m->bm_cmd_buf and send it from
156 * @flags: pass thru from i2400m_bm_cmd()
157 * @return: cmd_size if ok, < 0 errno code on error.
159 ssize_t i2400mu_bus_bm_cmd_send(struct i2400m *i2400m,
160 const struct i2400m_bootrom_header *_cmd,
161 size_t cmd_size, int flags)
164 struct device *dev = i2400m_dev(i2400m);
165 struct i2400mu *i2400mu = container_of(i2400m, struct i2400mu, i2400m);
166 int opcode = _cmd == NULL ? -1 : i2400m_brh_get_opcode(_cmd);
167 struct i2400m_bootrom_header *cmd;
168 size_t cmd_size_a = ALIGN(cmd_size, 16); /* USB restriction */
170 d_fnstart(8, dev, "(i2400m %p cmd %p size %zu)\n",
171 i2400m, _cmd, cmd_size);
173 if (cmd_size > I2400M_BM_CMD_BUF_SIZE)
175 memcpy(i2400m->bm_cmd_buf, _cmd, cmd_size);
176 cmd = i2400m->bm_cmd_buf;
177 if (cmd_size_a > cmd_size) /* Zero pad space */
178 memset(i2400m->bm_cmd_buf + cmd_size, 0, cmd_size_a - cmd_size);
179 if ((flags & I2400M_BM_CMD_RAW) == 0) {
180 if (WARN_ON(i2400m_brh_get_response_required(cmd) == 0))
181 dev_warn(dev, "SW BUG: response_required == 0\n");
182 i2400m_bm_cmd_prepare(cmd);
184 result = i2400mu_tx_bulk_out(i2400mu, i2400m->bm_cmd_buf, cmd_size);
186 dev_err(dev, "boot-mode cmd %d: cannot send: %zd\n",
190 if (result != cmd_size) { /* all was transferred? */
191 dev_err(dev, "boot-mode cmd %d: incomplete transfer "
192 "(%zu vs %zu submitted)\n", opcode, result, cmd_size);
199 d_fnend(8, dev, "(i2400m %p cmd %p size %zu) = %zd\n",
200 i2400m, _cmd, cmd_size, result);
206 void __i2400mu_bm_notif_cb(struct urb *urb)
208 complete(urb->context);
213 * submit a read to the notification endpoint
215 * @i2400m: device descriptor
217 * @completion: completion varible to complete when done
219 * Data is always read to i2400m->bm_ack_buf
222 int i2400mu_notif_submit(struct i2400mu *i2400mu, struct urb *urb,
223 struct completion *completion)
225 struct i2400m *i2400m = &i2400mu->i2400m;
226 struct usb_endpoint_descriptor *epd;
229 epd = usb_get_epd(i2400mu->usb_iface, I2400MU_EP_NOTIFICATION);
230 pipe = usb_rcvintpipe(i2400mu->usb_dev, epd->bEndpointAddress);
231 usb_fill_int_urb(urb, i2400mu->usb_dev, pipe,
232 i2400m->bm_ack_buf, I2400M_BM_ACK_BUF_SIZE,
233 __i2400mu_bm_notif_cb, completion,
235 return usb_submit_urb(urb, GFP_KERNEL);
240 * Read an ack from the notification endpoint
243 * @_ack: pointer to where to store the read data
244 * @ack_size: how many bytes we should read
246 * Returns: < 0 errno code on error; otherwise, amount of received bytes.
248 * Submits a notification read, appends the read data to the given ack
249 * buffer and then repeats (until @ack_size bytes have been
252 ssize_t i2400mu_bus_bm_wait_for_ack(struct i2400m *i2400m,
253 struct i2400m_bootrom_header *_ack,
256 ssize_t result = -ENOMEM;
257 struct device *dev = i2400m_dev(i2400m);
258 struct i2400mu *i2400mu = container_of(i2400m, struct i2400mu, i2400m);
259 struct urb notif_urb;
264 DECLARE_COMPLETION_ONSTACK(notif_completion);
266 d_fnstart(8, dev, "(i2400m %p ack %p size %zu)\n",
267 i2400m, ack, ack_size);
268 BUG_ON(_ack == i2400m->bm_ack_buf);
269 result = usb_autopm_get_interface(i2400mu->usb_iface);
271 dev_err(dev, "BM-ACK: can't get autopm: %d\n", (int) result);
274 usb_init_urb(¬if_urb); /* ready notifications */
275 usb_get_urb(¬if_urb);
277 while (offset < ack_size) {
278 init_completion(¬if_completion);
279 result = i2400mu_notif_submit(i2400mu, ¬if_urb,
282 goto error_notif_urb_submit;
283 val = wait_for_completion_interruptible_timeout(
284 ¬if_completion, HZ);
287 usb_kill_urb(¬if_urb); /* Timedout */
288 goto error_notif_wait;
290 if (val == -ERESTARTSYS) {
291 result = -EINTR; /* Interrupted */
292 usb_kill_urb(¬if_urb);
293 goto error_notif_wait;
295 result = notif_urb.status; /* How was the ack? */
299 case -EINVAL: /* while removing driver */
300 case -ENODEV: /* dev disconnect ... */
301 case -ENOENT: /* just ignore it */
302 case -ESHUTDOWN: /* and exit */
306 default: /* any other? */
307 usb_kill_urb(¬if_urb); /* Timedout */
308 if (edc_inc(&i2400mu->urb_edc,
309 EDC_MAX_ERRORS, EDC_ERROR_TIMEFRAME))
311 dev_err(dev, "BM-ACK: URB error %d, "
312 "retrying\n", notif_urb.status);
313 continue; /* retry */
315 if (notif_urb.actual_length == 0) {
316 d_printf(6, dev, "ZLP received, retrying\n");
319 /* Got data, append it to the buffer */
320 len = min(ack_size - offset, (size_t) notif_urb.actual_length);
321 memcpy(ack + offset, i2400m->bm_ack_buf, len);
325 error_notif_urb_submit:
330 usb_autopm_put_interface(i2400mu->usb_iface);
331 d_fnend(8, dev, "(i2400m %p ack %p size %zu) = %zd\n",
332 i2400m, ack, ack_size, result);
336 dev_err(dev, "bm: maximum errors in notification URB exceeded; "
337 "resetting device\n");
338 usb_queue_reset_device(i2400mu->usb_iface);