1 | /*
|
---|
2 | * Copyright (c) 2017 Ondrej Hlavaty <aearsis@eideo.cz>
|
---|
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 libusbhost
|
---|
29 | * @{
|
---|
30 | */
|
---|
31 | /** @file
|
---|
32 | * HC Endpoint management.
|
---|
33 | */
|
---|
34 |
|
---|
35 | #include <usb/host/utility.h>
|
---|
36 | #include <usb/host/ddf_helpers.h>
|
---|
37 | #include <usb/host/endpoint.h>
|
---|
38 | #include <usb/host/hcd.h>
|
---|
39 | #include <usb/host/utility.h>
|
---|
40 | #include <usb/classes/classes.h>
|
---|
41 | #include <usb/classes/hub.h>
|
---|
42 | #include <usb/descriptor.h>
|
---|
43 | #include <usb/debug.h>
|
---|
44 |
|
---|
45 | #include <assert.h>
|
---|
46 | #include <errno.h>
|
---|
47 | #include <str_error.h>
|
---|
48 | #include <macros.h>
|
---|
49 | #include <stdbool.h>
|
---|
50 |
|
---|
51 | #include "hc.h"
|
---|
52 | #include "bus.h"
|
---|
53 | #include "endpoint.h"
|
---|
54 | #include "hw_struct/context.h"
|
---|
55 |
|
---|
56 | #include "device.h"
|
---|
57 |
|
---|
58 | /** Initial descriptor used for control endpoint 0 before more configuration is retrieved. */
|
---|
59 | static const usb_endpoint_descriptors_t ep0_initial_desc = {
|
---|
60 | .endpoint.max_packet_size = CTRL_PIPE_MIN_PACKET_SIZE,
|
---|
61 | };
|
---|
62 |
|
---|
63 | /**
|
---|
64 | * Assign address and control endpoint to a new XHCI device. Once this function
|
---|
65 | * successfully returns, the device is online.
|
---|
66 | *
|
---|
67 | * @param[in] bus XHCI bus, in which the address is assigned.
|
---|
68 | * @param[in] dev New device to address and configure./e
|
---|
69 | * @return Error code.
|
---|
70 | */
|
---|
71 | static int address_device(xhci_device_t *dev)
|
---|
72 | {
|
---|
73 | int err;
|
---|
74 |
|
---|
75 | /* Enable new slot. */
|
---|
76 | if ((err = hc_enable_slot(dev)) != EOK)
|
---|
77 | return err;
|
---|
78 | usb_log_debug("Obtained slot ID: %u.", dev->slot_id);
|
---|
79 |
|
---|
80 | /* Create and configure control endpoint. */
|
---|
81 | endpoint_t *ep0_base = xhci_endpoint_create(&dev->base, &ep0_initial_desc);
|
---|
82 | if (!ep0_base)
|
---|
83 | goto err_slot;
|
---|
84 |
|
---|
85 | /* Bus reference */
|
---|
86 | endpoint_add_ref(ep0_base);
|
---|
87 | dev->base.endpoints[0] = ep0_base;
|
---|
88 |
|
---|
89 | usb_log_debug("Looking up new device initial MPS: %s", usb_str_speed(dev->base.speed));
|
---|
90 | ep0_base->max_packet_size = hc_get_ep0_initial_mps(dev->base.speed);
|
---|
91 |
|
---|
92 | /* Address device */
|
---|
93 | if ((err = hc_address_device(dev)))
|
---|
94 | goto err_added;
|
---|
95 |
|
---|
96 | return EOK;
|
---|
97 |
|
---|
98 | err_added:
|
---|
99 | /* Bus reference */
|
---|
100 | endpoint_del_ref(ep0_base);
|
---|
101 | dev->base.endpoints[0] = NULL;
|
---|
102 | err_slot:
|
---|
103 | hc_disable_slot(dev);
|
---|
104 | return err;
|
---|
105 | }
|
---|
106 |
|
---|
107 | /**
|
---|
108 | * Retrieve and set maximum packet size for endpoint zero of a XHCI device.
|
---|
109 | *
|
---|
110 | * @param[in] hc Host controller, which manages the device.
|
---|
111 | * @param[in] dev Device with operational endpoint zero.
|
---|
112 | * @return Error code.
|
---|
113 | */
|
---|
114 | static int setup_ep0_packet_size(xhci_hc_t *hc, xhci_device_t *dev)
|
---|
115 | {
|
---|
116 | int err;
|
---|
117 |
|
---|
118 | uint16_t max_packet_size;
|
---|
119 | if ((err = hc_get_ep0_max_packet_size(&max_packet_size, (bus_t *) &hc->bus, &dev->base)))
|
---|
120 | return err;
|
---|
121 |
|
---|
122 | xhci_endpoint_t *ep0 = xhci_endpoint_get(dev->base.endpoints[0]);
|
---|
123 | assert(ep0);
|
---|
124 |
|
---|
125 | if (ep0->base.max_packet_size == max_packet_size)
|
---|
126 | return EOK;
|
---|
127 |
|
---|
128 | ep0->base.max_packet_size = max_packet_size;
|
---|
129 | ep0->base.max_transfer_size = max_packet_size * ep0->base.packets_per_uframe;
|
---|
130 |
|
---|
131 | if ((err = hc_update_endpoint(ep0)))
|
---|
132 | return err;
|
---|
133 |
|
---|
134 | return EOK;
|
---|
135 | }
|
---|
136 |
|
---|
137 | /**
|
---|
138 | * Check whether the device is a hub and if so, fill its characterstics.
|
---|
139 | *
|
---|
140 | * If this fails, it does not necessarily mean the device is unusable.
|
---|
141 | * Just the TT will not work correctly.
|
---|
142 | */
|
---|
143 | static int setup_hub(xhci_device_t *dev, usb_standard_device_descriptor_t *desc)
|
---|
144 | {
|
---|
145 | if (desc->device_class != USB_CLASS_HUB)
|
---|
146 | return EOK;
|
---|
147 |
|
---|
148 | usb_hub_descriptor_header_t hub_desc = { 0 };
|
---|
149 | const int err = hc_get_hub_desc(&dev->base, &hub_desc);
|
---|
150 | if (err)
|
---|
151 | return err;
|
---|
152 |
|
---|
153 | dev->is_hub = 1;
|
---|
154 | dev->num_ports = hub_desc.port_count;
|
---|
155 |
|
---|
156 | if (dev->base.speed == USB_SPEED_HIGH) {
|
---|
157 | dev->tt_think_time = 8 +
|
---|
158 | 8 * !!(hub_desc.characteristics & HUB_CHAR_TT_THINK_8) +
|
---|
159 | 16 * !!(hub_desc.characteristics & HUB_CHAR_TT_THINK_16);
|
---|
160 | }
|
---|
161 |
|
---|
162 | usb_log_debug("Device(%u): recognised USB hub with %u ports", dev->base.address, dev->num_ports);
|
---|
163 | return EOK;
|
---|
164 | }
|
---|
165 |
|
---|
166 | /**
|
---|
167 | * Respond to a new device on the XHCI bus. Address it, negotiate packet size
|
---|
168 | * and retrieve USB descriptors.
|
---|
169 | *
|
---|
170 | * @param[in] bus XHCI bus, where the new device emerged.
|
---|
171 | * @param[in] dev XHCI device, which has appeared on the bus.
|
---|
172 | *
|
---|
173 | * @return Error code.
|
---|
174 | */
|
---|
175 | int xhci_device_enumerate(device_t *dev)
|
---|
176 | {
|
---|
177 | int err;
|
---|
178 | xhci_bus_t *bus = bus_to_xhci_bus(dev->bus);
|
---|
179 | xhci_device_t *xhci_dev = xhci_device_get(dev);
|
---|
180 |
|
---|
181 | /* Calculate route string */
|
---|
182 | xhci_device_t *xhci_hub = xhci_device_get(dev->hub);
|
---|
183 | xhci_dev->route_str = xhci_hub->route_str;
|
---|
184 |
|
---|
185 | /* Roothub port is not part of the route string */
|
---|
186 | if (dev->tier >= 2) {
|
---|
187 | const unsigned offset = 4 * (dev->tier - 2);
|
---|
188 | xhci_dev->route_str |= (dev->port & 0xf) << offset;
|
---|
189 | xhci_dev->rh_port = xhci_hub->rh_port;
|
---|
190 | }
|
---|
191 |
|
---|
192 | int retries = 3;
|
---|
193 | do {
|
---|
194 | /* Assign an address to the device */
|
---|
195 | err = address_device(xhci_dev);
|
---|
196 | } while (err == ESTALL && --retries > 0);
|
---|
197 |
|
---|
198 | if (err) {
|
---|
199 | usb_log_error("Failed to setup address of the new device: %s", str_error(err));
|
---|
200 | return err;
|
---|
201 | }
|
---|
202 |
|
---|
203 | /* Setup EP0 might already need to issue a transfer. */
|
---|
204 | fibril_mutex_lock(&bus->base.guard);
|
---|
205 | assert(bus->devices_by_slot[xhci_dev->slot_id] == NULL);
|
---|
206 | bus->devices_by_slot[xhci_dev->slot_id] = xhci_dev;
|
---|
207 | fibril_mutex_unlock(&bus->base.guard);
|
---|
208 |
|
---|
209 | if ((err = setup_ep0_packet_size(bus->hc, xhci_dev))) {
|
---|
210 | usb_log_error("Failed to setup control endpoint of the new device: %s", str_error(err));
|
---|
211 | goto err_address;
|
---|
212 | }
|
---|
213 |
|
---|
214 | usb_standard_device_descriptor_t desc = { 0 };
|
---|
215 |
|
---|
216 | if ((err = hc_get_device_desc(dev, &desc))) {
|
---|
217 | usb_log_error("Device(%d): failed to get devices descriptor: %s", dev->address, str_error(err));
|
---|
218 | goto err_address;
|
---|
219 | }
|
---|
220 |
|
---|
221 | if ((err = setup_hub(xhci_dev, &desc)))
|
---|
222 | usb_log_warning("Device(%d): failed to setup hub characteristics: %s. "
|
---|
223 | " Continuing anyway.", dev->address, str_error(err));
|
---|
224 |
|
---|
225 | if ((err = hcd_ddf_setup_match_ids(dev, &desc))) {
|
---|
226 | usb_log_error("Device(%d): failed to setup match IDs: %s", dev->address, str_error(err));
|
---|
227 | goto err_address;
|
---|
228 | }
|
---|
229 |
|
---|
230 | return EOK;
|
---|
231 |
|
---|
232 | err_address:
|
---|
233 | return err;
|
---|
234 | }
|
---|
235 |
|
---|
236 | /**
|
---|
237 | * Remove device from XHCI bus. Transition it to the offline state, abort all
|
---|
238 | * ongoing transfers and unregister all of its endpoints.
|
---|
239 | *
|
---|
240 | * Bus callback.
|
---|
241 | *
|
---|
242 | * @param[in] bus XHCI bus, from which the device is removed.
|
---|
243 | * @param[in] dev XHCI device, which is removed from the bus.
|
---|
244 | * @return Error code.
|
---|
245 | */
|
---|
246 | void xhci_device_gone(device_t *dev)
|
---|
247 | {
|
---|
248 | int err;
|
---|
249 | xhci_bus_t *bus = bus_to_xhci_bus(dev->bus);
|
---|
250 | xhci_device_t *xhci_dev = xhci_device_get(dev);
|
---|
251 |
|
---|
252 | /* Disable the slot, dropping all endpoints. */
|
---|
253 | const uint32_t slot_id = xhci_dev->slot_id;
|
---|
254 | if ((err = hc_disable_slot(xhci_dev))) {
|
---|
255 | usb_log_warning("Failed to disable slot of device " XHCI_DEV_FMT ": %s",
|
---|
256 | XHCI_DEV_ARGS(*xhci_dev), str_error(err));
|
---|
257 | }
|
---|
258 |
|
---|
259 | bus->devices_by_slot[slot_id] = NULL;
|
---|
260 | }
|
---|
261 |
|
---|
262 | /**
|
---|
263 | * Reverts things device_offline did, getting the device back up.
|
---|
264 | *
|
---|
265 | * Bus callback.
|
---|
266 | */
|
---|
267 | int xhci_device_online(device_t *dev_base)
|
---|
268 | {
|
---|
269 | int err;
|
---|
270 |
|
---|
271 | xhci_bus_t *bus = bus_to_xhci_bus(dev_base->bus);
|
---|
272 | assert(bus);
|
---|
273 |
|
---|
274 | xhci_device_t *dev = xhci_device_get(dev_base);
|
---|
275 | assert(dev);
|
---|
276 |
|
---|
277 | /* Transition the device from the Addressed to the Configured state. */
|
---|
278 | if ((err = hc_configure_device(dev))) {
|
---|
279 | usb_log_warning("Failed to configure device " XHCI_DEV_FMT ".", XHCI_DEV_ARGS(*dev));
|
---|
280 | return err;
|
---|
281 | }
|
---|
282 |
|
---|
283 | return EOK;
|
---|
284 | }
|
---|
285 |
|
---|
286 | /**
|
---|
287 | * Make given device offline. Offline the DDF function, tear down all
|
---|
288 | * endpoints, issue Deconfigure Device command to xHC.
|
---|
289 | *
|
---|
290 | * Bus callback.
|
---|
291 | */
|
---|
292 | void xhci_device_offline(device_t *dev_base)
|
---|
293 | {
|
---|
294 | int err;
|
---|
295 |
|
---|
296 | xhci_bus_t *bus = bus_to_xhci_bus(dev_base->bus);
|
---|
297 | assert(bus);
|
---|
298 |
|
---|
299 | xhci_device_t *dev = xhci_device_get(dev_base);
|
---|
300 | assert(dev);
|
---|
301 |
|
---|
302 | /* Issue one HC command to simultaneously drop all endpoints except zero. */
|
---|
303 | if ((err = hc_deconfigure_device(dev))) {
|
---|
304 | usb_log_warning("Failed to deconfigure device " XHCI_DEV_FMT ".",
|
---|
305 | XHCI_DEV_ARGS(*dev));
|
---|
306 | }
|
---|
307 | }
|
---|
308 |
|
---|
309 | /**
|
---|
310 | * Fill a slot context that is part of an Input Context with appropriate
|
---|
311 | * values.
|
---|
312 | *
|
---|
313 | * @param ctx Slot context, zeroed out.
|
---|
314 | */
|
---|
315 | void xhci_setup_slot_context(xhci_device_t *dev, xhci_slot_ctx_t *ctx)
|
---|
316 | {
|
---|
317 | /* Initialize slot_ctx according to section 4.3.3 point 3. */
|
---|
318 | XHCI_SLOT_ROOT_HUB_PORT_SET(*ctx, dev->rh_port);
|
---|
319 | XHCI_SLOT_ROUTE_STRING_SET(*ctx, dev->route_str);
|
---|
320 | XHCI_SLOT_SPEED_SET(*ctx, hc_speed_to_psiv(dev->base.speed));
|
---|
321 |
|
---|
322 | /*
|
---|
323 | * Note: This function is used even before this flag can be set, to
|
---|
324 | * issue the address device command. It is OK, because these
|
---|
325 | * flags are not required to be valid for that command.
|
---|
326 | */
|
---|
327 | if (dev->is_hub) {
|
---|
328 | XHCI_SLOT_HUB_SET(*ctx, 1);
|
---|
329 | XHCI_SLOT_NUM_PORTS_SET(*ctx, dev->num_ports);
|
---|
330 | XHCI_SLOT_TT_THINK_TIME_SET(*ctx, dev->tt_think_time);
|
---|
331 | XHCI_SLOT_MTT_SET(*ctx, 0); // MTT not supported yet
|
---|
332 | }
|
---|
333 |
|
---|
334 | /* Setup Transaction Translation. TODO: Test this with HS hub. */
|
---|
335 | if (dev->base.tt.dev != NULL) {
|
---|
336 | xhci_device_t *hub = xhci_device_get(dev->base.tt.dev);
|
---|
337 | XHCI_SLOT_TT_HUB_SLOT_ID_SET(*ctx, hub->slot_id);
|
---|
338 | XHCI_SLOT_TT_HUB_PORT_SET(*ctx, dev->base.tt.port);
|
---|
339 | }
|
---|
340 |
|
---|
341 | // As we always allocate space for whole input context, we can set this to maximum
|
---|
342 | XHCI_SLOT_CTX_ENTRIES_SET(*ctx, 31);
|
---|
343 | }
|
---|
344 |
|
---|
345 |
|
---|
346 | /**
|
---|
347 | * @}
|
---|
348 | */
|
---|