xhci.c revision 1.21 1 1.21 skrll /* $NetBSD: xhci.c,v 1.21 2014/08/05 06:35:24 skrll Exp $ */
2 1.1 jakllsch
3 1.1 jakllsch /*
4 1.1 jakllsch * Copyright (c) 2013 Jonathan A. Kollasch
5 1.1 jakllsch * All rights reserved.
6 1.1 jakllsch *
7 1.1 jakllsch * Redistribution and use in source and binary forms, with or without
8 1.1 jakllsch * modification, are permitted provided that the following conditions
9 1.1 jakllsch * are met:
10 1.1 jakllsch * 1. Redistributions of source code must retain the above copyright
11 1.1 jakllsch * notice, this list of conditions and the following disclaimer.
12 1.1 jakllsch * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 jakllsch * notice, this list of conditions and the following disclaimer in the
14 1.1 jakllsch * documentation and/or other materials provided with the distribution.
15 1.1 jakllsch *
16 1.1 jakllsch * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
17 1.1 jakllsch * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
18 1.1 jakllsch * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
19 1.1 jakllsch * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR
20 1.1 jakllsch * CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
21 1.1 jakllsch * EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
22 1.1 jakllsch * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
23 1.1 jakllsch * OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
24 1.1 jakllsch * WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
25 1.1 jakllsch * OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
26 1.1 jakllsch * ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27 1.1 jakllsch */
28 1.1 jakllsch
29 1.1 jakllsch #include <sys/cdefs.h>
30 1.21 skrll __KERNEL_RCSID(0, "$NetBSD: xhci.c,v 1.21 2014/08/05 06:35:24 skrll Exp $");
31 1.1 jakllsch
32 1.1 jakllsch #include <sys/param.h>
33 1.1 jakllsch #include <sys/systm.h>
34 1.1 jakllsch #include <sys/kernel.h>
35 1.1 jakllsch #include <sys/kmem.h>
36 1.1 jakllsch #include <sys/malloc.h>
37 1.1 jakllsch #include <sys/device.h>
38 1.1 jakllsch #include <sys/select.h>
39 1.1 jakllsch #include <sys/proc.h>
40 1.1 jakllsch #include <sys/queue.h>
41 1.1 jakllsch #include <sys/mutex.h>
42 1.1 jakllsch #include <sys/condvar.h>
43 1.1 jakllsch #include <sys/bus.h>
44 1.1 jakllsch #include <sys/cpu.h>
45 1.1 jakllsch
46 1.1 jakllsch #include <machine/endian.h>
47 1.1 jakllsch
48 1.1 jakllsch #include <dev/usb/usb.h>
49 1.1 jakllsch #include <dev/usb/usbdi.h>
50 1.1 jakllsch #include <dev/usb/usbdivar.h>
51 1.1 jakllsch #include <dev/usb/usb_mem.h>
52 1.1 jakllsch #include <dev/usb/usb_quirks.h>
53 1.1 jakllsch
54 1.1 jakllsch #include <dev/usb/xhcireg.h>
55 1.1 jakllsch #include <dev/usb/xhcivar.h>
56 1.1 jakllsch #include <dev/usb/usbroothub_subr.h>
57 1.1 jakllsch
58 1.1 jakllsch #ifdef XHCI_DEBUG
59 1.1 jakllsch int xhcidebug = 0;
60 1.1 jakllsch #define DPRINTF(x) do { if (xhcidebug) printf x; } while(0)
61 1.1 jakllsch #define DPRINTFN(n,x) do { if (xhcidebug>(n)) printf x; } while (0)
62 1.1 jakllsch #else
63 1.1 jakllsch #define DPRINTF(x)
64 1.1 jakllsch #define DPRINTFN(n,x)
65 1.1 jakllsch #endif
66 1.1 jakllsch
67 1.1 jakllsch #define XHCI_DCI_SLOT 0
68 1.1 jakllsch #define XHCI_DCI_EP_CONTROL 1
69 1.1 jakllsch
70 1.1 jakllsch #define XHCI_ICI_INPUT_CONTROL 0
71 1.1 jakllsch
72 1.1 jakllsch struct xhci_pipe {
73 1.1 jakllsch struct usbd_pipe xp_pipe;
74 1.1 jakllsch };
75 1.1 jakllsch
76 1.1 jakllsch #define XHCI_INTR_ENDPT 1
77 1.1 jakllsch #define XHCI_COMMAND_RING_TRBS 256
78 1.1 jakllsch #define XHCI_EVENT_RING_TRBS 256
79 1.1 jakllsch #define XHCI_EVENT_RING_SEGMENTS 1
80 1.1 jakllsch #define XHCI_TRB_3_ED_BIT XHCI_TRB_3_ISP_BIT
81 1.1 jakllsch
82 1.1 jakllsch static usbd_status xhci_open(usbd_pipe_handle);
83 1.1 jakllsch static int xhci_intr1(struct xhci_softc * const);
84 1.1 jakllsch static void xhci_softintr(void *);
85 1.1 jakllsch static void xhci_poll(struct usbd_bus *);
86 1.1 jakllsch static usbd_status xhci_allocm(struct usbd_bus *, usb_dma_t *, uint32_t);
87 1.1 jakllsch static void xhci_freem(struct usbd_bus *, usb_dma_t *);
88 1.1 jakllsch static usbd_xfer_handle xhci_allocx(struct usbd_bus *);
89 1.1 jakllsch static void xhci_freex(struct usbd_bus *, usbd_xfer_handle);
90 1.1 jakllsch static void xhci_get_lock(struct usbd_bus *, kmutex_t **);
91 1.1 jakllsch static usbd_status xhci_new_device(device_t, usbd_bus_handle, int, int, int,
92 1.1 jakllsch struct usbd_port *);
93 1.1 jakllsch
94 1.1 jakllsch static usbd_status xhci_configure_endpoint(usbd_pipe_handle);
95 1.1 jakllsch static usbd_status xhci_unconfigure_endpoint(usbd_pipe_handle);
96 1.1 jakllsch static usbd_status xhci_reset_endpoint(usbd_pipe_handle);
97 1.1 jakllsch //static usbd_status xhci_stop_endpoint(usbd_pipe_handle);
98 1.1 jakllsch
99 1.1 jakllsch static usbd_status xhci_set_dequeue(usbd_pipe_handle);
100 1.1 jakllsch
101 1.1 jakllsch static usbd_status xhci_do_command(struct xhci_softc * const,
102 1.1 jakllsch struct xhci_trb * const, int);
103 1.1 jakllsch static usbd_status xhci_init_slot(struct xhci_softc * const, uint32_t,
104 1.1 jakllsch int, int, int, int);
105 1.1 jakllsch static usbd_status xhci_enable_slot(struct xhci_softc * const,
106 1.1 jakllsch uint8_t * const);
107 1.1 jakllsch static usbd_status xhci_address_device(struct xhci_softc * const,
108 1.1 jakllsch uint64_t, uint8_t, bool);
109 1.1 jakllsch static usbd_status xhci_update_ep0_mps(struct xhci_softc * const,
110 1.1 jakllsch struct xhci_slot * const, u_int);
111 1.1 jakllsch static usbd_status xhci_ring_init(struct xhci_softc * const,
112 1.1 jakllsch struct xhci_ring * const, size_t, size_t);
113 1.1 jakllsch static void xhci_ring_free(struct xhci_softc * const, struct xhci_ring * const);
114 1.1 jakllsch
115 1.1 jakllsch static void xhci_noop(usbd_pipe_handle);
116 1.1 jakllsch
117 1.1 jakllsch static usbd_status xhci_root_ctrl_transfer(usbd_xfer_handle);
118 1.1 jakllsch static usbd_status xhci_root_ctrl_start(usbd_xfer_handle);
119 1.1 jakllsch static void xhci_root_ctrl_abort(usbd_xfer_handle);
120 1.1 jakllsch static void xhci_root_ctrl_close(usbd_pipe_handle);
121 1.1 jakllsch static void xhci_root_ctrl_done(usbd_xfer_handle);
122 1.1 jakllsch
123 1.1 jakllsch static usbd_status xhci_root_intr_transfer(usbd_xfer_handle);
124 1.1 jakllsch static usbd_status xhci_root_intr_start(usbd_xfer_handle);
125 1.1 jakllsch static void xhci_root_intr_abort(usbd_xfer_handle);
126 1.1 jakllsch static void xhci_root_intr_close(usbd_pipe_handle);
127 1.1 jakllsch static void xhci_root_intr_done(usbd_xfer_handle);
128 1.1 jakllsch
129 1.1 jakllsch static usbd_status xhci_device_ctrl_transfer(usbd_xfer_handle);
130 1.1 jakllsch static usbd_status xhci_device_ctrl_start(usbd_xfer_handle);
131 1.1 jakllsch static void xhci_device_ctrl_abort(usbd_xfer_handle);
132 1.1 jakllsch static void xhci_device_ctrl_close(usbd_pipe_handle);
133 1.1 jakllsch static void xhci_device_ctrl_done(usbd_xfer_handle);
134 1.1 jakllsch
135 1.1 jakllsch static usbd_status xhci_device_intr_transfer(usbd_xfer_handle);
136 1.1 jakllsch static usbd_status xhci_device_intr_start(usbd_xfer_handle);
137 1.1 jakllsch static void xhci_device_intr_abort(usbd_xfer_handle);
138 1.1 jakllsch static void xhci_device_intr_close(usbd_pipe_handle);
139 1.1 jakllsch static void xhci_device_intr_done(usbd_xfer_handle);
140 1.1 jakllsch
141 1.1 jakllsch static usbd_status xhci_device_bulk_transfer(usbd_xfer_handle);
142 1.1 jakllsch static usbd_status xhci_device_bulk_start(usbd_xfer_handle);
143 1.1 jakllsch static void xhci_device_bulk_abort(usbd_xfer_handle);
144 1.1 jakllsch static void xhci_device_bulk_close(usbd_pipe_handle);
145 1.1 jakllsch static void xhci_device_bulk_done(usbd_xfer_handle);
146 1.1 jakllsch
147 1.1 jakllsch static void xhci_timeout(void *);
148 1.1 jakllsch static void xhci_timeout_task(void *);
149 1.1 jakllsch
150 1.1 jakllsch static const struct usbd_bus_methods xhci_bus_methods = {
151 1.1 jakllsch .open_pipe = xhci_open,
152 1.1 jakllsch .soft_intr = xhci_softintr,
153 1.1 jakllsch .do_poll = xhci_poll,
154 1.1 jakllsch .allocm = xhci_allocm,
155 1.1 jakllsch .freem = xhci_freem,
156 1.1 jakllsch .allocx = xhci_allocx,
157 1.1 jakllsch .freex = xhci_freex,
158 1.1 jakllsch .get_lock = xhci_get_lock,
159 1.1 jakllsch .new_device = xhci_new_device,
160 1.1 jakllsch };
161 1.1 jakllsch
162 1.1 jakllsch static const struct usbd_pipe_methods xhci_root_ctrl_methods = {
163 1.1 jakllsch .transfer = xhci_root_ctrl_transfer,
164 1.1 jakllsch .start = xhci_root_ctrl_start,
165 1.1 jakllsch .abort = xhci_root_ctrl_abort,
166 1.1 jakllsch .close = xhci_root_ctrl_close,
167 1.1 jakllsch .cleartoggle = xhci_noop,
168 1.1 jakllsch .done = xhci_root_ctrl_done,
169 1.1 jakllsch };
170 1.1 jakllsch
171 1.1 jakllsch static const struct usbd_pipe_methods xhci_root_intr_methods = {
172 1.1 jakllsch .transfer = xhci_root_intr_transfer,
173 1.1 jakllsch .start = xhci_root_intr_start,
174 1.1 jakllsch .abort = xhci_root_intr_abort,
175 1.1 jakllsch .close = xhci_root_intr_close,
176 1.1 jakllsch .cleartoggle = xhci_noop,
177 1.1 jakllsch .done = xhci_root_intr_done,
178 1.1 jakllsch };
179 1.1 jakllsch
180 1.1 jakllsch
181 1.1 jakllsch static const struct usbd_pipe_methods xhci_device_ctrl_methods = {
182 1.1 jakllsch .transfer = xhci_device_ctrl_transfer,
183 1.1 jakllsch .start = xhci_device_ctrl_start,
184 1.1 jakllsch .abort = xhci_device_ctrl_abort,
185 1.1 jakllsch .close = xhci_device_ctrl_close,
186 1.1 jakllsch .cleartoggle = xhci_noop,
187 1.1 jakllsch .done = xhci_device_ctrl_done,
188 1.1 jakllsch };
189 1.1 jakllsch
190 1.1 jakllsch static const struct usbd_pipe_methods xhci_device_isoc_methods = {
191 1.1 jakllsch .cleartoggle = xhci_noop,
192 1.1 jakllsch };
193 1.1 jakllsch
194 1.1 jakllsch static const struct usbd_pipe_methods xhci_device_bulk_methods = {
195 1.1 jakllsch .transfer = xhci_device_bulk_transfer,
196 1.1 jakllsch .start = xhci_device_bulk_start,
197 1.1 jakllsch .abort = xhci_device_bulk_abort,
198 1.1 jakllsch .close = xhci_device_bulk_close,
199 1.1 jakllsch .cleartoggle = xhci_noop,
200 1.1 jakllsch .done = xhci_device_bulk_done,
201 1.1 jakllsch };
202 1.1 jakllsch
203 1.1 jakllsch static const struct usbd_pipe_methods xhci_device_intr_methods = {
204 1.1 jakllsch .transfer = xhci_device_intr_transfer,
205 1.1 jakllsch .start = xhci_device_intr_start,
206 1.1 jakllsch .abort = xhci_device_intr_abort,
207 1.1 jakllsch .close = xhci_device_intr_close,
208 1.1 jakllsch .cleartoggle = xhci_noop,
209 1.1 jakllsch .done = xhci_device_intr_done,
210 1.1 jakllsch };
211 1.1 jakllsch
212 1.1 jakllsch static inline uint32_t
213 1.1 jakllsch xhci_read_4(const struct xhci_softc * const sc, bus_size_t offset)
214 1.1 jakllsch {
215 1.1 jakllsch return bus_space_read_4(sc->sc_iot, sc->sc_ioh, offset);
216 1.1 jakllsch }
217 1.1 jakllsch
218 1.4 apb #if 0 /* unused */
219 1.1 jakllsch static inline void
220 1.1 jakllsch xhci_write_4(const struct xhci_softc * const sc, bus_size_t offset,
221 1.1 jakllsch uint32_t value)
222 1.1 jakllsch {
223 1.1 jakllsch bus_space_write_4(sc->sc_iot, sc->sc_ioh, offset, value);
224 1.1 jakllsch }
225 1.4 apb #endif /* unused */
226 1.1 jakllsch
227 1.1 jakllsch static inline uint32_t
228 1.1 jakllsch xhci_cap_read_4(const struct xhci_softc * const sc, bus_size_t offset)
229 1.1 jakllsch {
230 1.1 jakllsch return bus_space_read_4(sc->sc_iot, sc->sc_cbh, offset);
231 1.1 jakllsch }
232 1.1 jakllsch
233 1.1 jakllsch static inline uint32_t
234 1.1 jakllsch xhci_op_read_4(const struct xhci_softc * const sc, bus_size_t offset)
235 1.1 jakllsch {
236 1.1 jakllsch return bus_space_read_4(sc->sc_iot, sc->sc_obh, offset);
237 1.1 jakllsch }
238 1.1 jakllsch
239 1.1 jakllsch static inline void
240 1.1 jakllsch xhci_op_write_4(const struct xhci_softc * const sc, bus_size_t offset,
241 1.1 jakllsch uint32_t value)
242 1.1 jakllsch {
243 1.1 jakllsch bus_space_write_4(sc->sc_iot, sc->sc_obh, offset, value);
244 1.1 jakllsch }
245 1.1 jakllsch
246 1.4 apb #if 0 /* unused */
247 1.1 jakllsch static inline uint64_t
248 1.1 jakllsch xhci_op_read_8(const struct xhci_softc * const sc, bus_size_t offset)
249 1.1 jakllsch {
250 1.1 jakllsch uint64_t value;
251 1.1 jakllsch
252 1.1 jakllsch if (sc->sc_ac64) {
253 1.1 jakllsch #ifdef XHCI_USE_BUS_SPACE_8
254 1.1 jakllsch value = bus_space_read_8(sc->sc_iot, sc->sc_obh, offset);
255 1.1 jakllsch #else
256 1.1 jakllsch value = bus_space_read_4(sc->sc_iot, sc->sc_obh, offset);
257 1.1 jakllsch value |= (uint64_t)bus_space_read_4(sc->sc_iot, sc->sc_obh,
258 1.1 jakllsch offset + 4) << 32;
259 1.1 jakllsch #endif
260 1.1 jakllsch } else {
261 1.1 jakllsch value = bus_space_read_4(sc->sc_iot, sc->sc_obh, offset);
262 1.1 jakllsch }
263 1.1 jakllsch
264 1.1 jakllsch return value;
265 1.1 jakllsch }
266 1.4 apb #endif /* unused */
267 1.1 jakllsch
268 1.1 jakllsch static inline void
269 1.1 jakllsch xhci_op_write_8(const struct xhci_softc * const sc, bus_size_t offset,
270 1.1 jakllsch uint64_t value)
271 1.1 jakllsch {
272 1.1 jakllsch if (sc->sc_ac64) {
273 1.1 jakllsch #ifdef XHCI_USE_BUS_SPACE_8
274 1.1 jakllsch bus_space_write_8(sc->sc_iot, sc->sc_obh, offset, value);
275 1.1 jakllsch #else
276 1.1 jakllsch bus_space_write_4(sc->sc_iot, sc->sc_obh, offset + 0,
277 1.1 jakllsch (value >> 0) & 0xffffffff);
278 1.1 jakllsch bus_space_write_4(sc->sc_iot, sc->sc_obh, offset + 4,
279 1.1 jakllsch (value >> 32) & 0xffffffff);
280 1.1 jakllsch #endif
281 1.1 jakllsch } else {
282 1.1 jakllsch bus_space_write_4(sc->sc_iot, sc->sc_obh, offset, value);
283 1.1 jakllsch }
284 1.1 jakllsch }
285 1.1 jakllsch
286 1.1 jakllsch static inline uint32_t
287 1.1 jakllsch xhci_rt_read_4(const struct xhci_softc * const sc, bus_size_t offset)
288 1.1 jakllsch {
289 1.1 jakllsch return bus_space_read_4(sc->sc_iot, sc->sc_rbh, offset);
290 1.1 jakllsch }
291 1.1 jakllsch
292 1.1 jakllsch static inline void
293 1.1 jakllsch xhci_rt_write_4(const struct xhci_softc * const sc, bus_size_t offset,
294 1.1 jakllsch uint32_t value)
295 1.1 jakllsch {
296 1.1 jakllsch bus_space_write_4(sc->sc_iot, sc->sc_rbh, offset, value);
297 1.1 jakllsch }
298 1.1 jakllsch
299 1.4 apb #if 0 /* unused */
300 1.1 jakllsch static inline uint64_t
301 1.1 jakllsch xhci_rt_read_8(const struct xhci_softc * const sc, bus_size_t offset)
302 1.1 jakllsch {
303 1.1 jakllsch uint64_t value;
304 1.1 jakllsch
305 1.1 jakllsch if (sc->sc_ac64) {
306 1.1 jakllsch #ifdef XHCI_USE_BUS_SPACE_8
307 1.1 jakllsch value = bus_space_read_8(sc->sc_iot, sc->sc_rbh, offset);
308 1.1 jakllsch #else
309 1.1 jakllsch value = bus_space_read_4(sc->sc_iot, sc->sc_rbh, offset);
310 1.1 jakllsch value |= (uint64_t)bus_space_read_4(sc->sc_iot, sc->sc_rbh,
311 1.1 jakllsch offset + 4) << 32;
312 1.1 jakllsch #endif
313 1.1 jakllsch } else {
314 1.1 jakllsch value = bus_space_read_4(sc->sc_iot, sc->sc_rbh, offset);
315 1.1 jakllsch }
316 1.1 jakllsch
317 1.1 jakllsch return value;
318 1.1 jakllsch }
319 1.4 apb #endif /* unused */
320 1.1 jakllsch
321 1.1 jakllsch static inline void
322 1.1 jakllsch xhci_rt_write_8(const struct xhci_softc * const sc, bus_size_t offset,
323 1.1 jakllsch uint64_t value)
324 1.1 jakllsch {
325 1.1 jakllsch if (sc->sc_ac64) {
326 1.1 jakllsch #ifdef XHCI_USE_BUS_SPACE_8
327 1.1 jakllsch bus_space_write_8(sc->sc_iot, sc->sc_rbh, offset, value);
328 1.1 jakllsch #else
329 1.1 jakllsch bus_space_write_4(sc->sc_iot, sc->sc_rbh, offset + 0,
330 1.1 jakllsch (value >> 0) & 0xffffffff);
331 1.1 jakllsch bus_space_write_4(sc->sc_iot, sc->sc_rbh, offset + 4,
332 1.1 jakllsch (value >> 32) & 0xffffffff);
333 1.1 jakllsch #endif
334 1.1 jakllsch } else {
335 1.1 jakllsch bus_space_write_4(sc->sc_iot, sc->sc_rbh, offset, value);
336 1.1 jakllsch }
337 1.1 jakllsch }
338 1.1 jakllsch
339 1.4 apb #if 0 /* unused */
340 1.1 jakllsch static inline uint32_t
341 1.1 jakllsch xhci_db_read_4(const struct xhci_softc * const sc, bus_size_t offset)
342 1.1 jakllsch {
343 1.1 jakllsch return bus_space_read_4(sc->sc_iot, sc->sc_dbh, offset);
344 1.1 jakllsch }
345 1.4 apb #endif /* unused */
346 1.1 jakllsch
347 1.1 jakllsch static inline void
348 1.1 jakllsch xhci_db_write_4(const struct xhci_softc * const sc, bus_size_t offset,
349 1.1 jakllsch uint32_t value)
350 1.1 jakllsch {
351 1.1 jakllsch bus_space_write_4(sc->sc_iot, sc->sc_dbh, offset, value);
352 1.1 jakllsch }
353 1.1 jakllsch
354 1.1 jakllsch /* --- */
355 1.1 jakllsch
356 1.1 jakllsch static inline uint8_t
357 1.1 jakllsch xhci_ep_get_type(usb_endpoint_descriptor_t * const ed)
358 1.1 jakllsch {
359 1.1 jakllsch u_int eptype;
360 1.1 jakllsch
361 1.1 jakllsch switch (UE_GET_XFERTYPE(ed->bmAttributes)) {
362 1.1 jakllsch case UE_CONTROL:
363 1.1 jakllsch eptype = 0x0;
364 1.1 jakllsch break;
365 1.1 jakllsch case UE_ISOCHRONOUS:
366 1.1 jakllsch eptype = 0x1;
367 1.1 jakllsch break;
368 1.1 jakllsch case UE_BULK:
369 1.1 jakllsch eptype = 0x2;
370 1.1 jakllsch break;
371 1.1 jakllsch case UE_INTERRUPT:
372 1.1 jakllsch eptype = 0x3;
373 1.1 jakllsch break;
374 1.1 jakllsch }
375 1.1 jakllsch
376 1.1 jakllsch if ((UE_GET_XFERTYPE(ed->bmAttributes) == UE_CONTROL) ||
377 1.1 jakllsch (UE_GET_DIR(ed->bEndpointAddress) == UE_DIR_IN))
378 1.1 jakllsch return eptype | 0x4;
379 1.1 jakllsch else
380 1.1 jakllsch return eptype;
381 1.1 jakllsch }
382 1.1 jakllsch
383 1.1 jakllsch static u_int
384 1.1 jakllsch xhci_ep_get_dci(usb_endpoint_descriptor_t * const ed)
385 1.1 jakllsch {
386 1.1 jakllsch /* xHCI 1.0 section 4.5.1 */
387 1.1 jakllsch u_int epaddr = UE_GET_ADDR(ed->bEndpointAddress);
388 1.1 jakllsch u_int in = 0;
389 1.1 jakllsch
390 1.1 jakllsch if ((UE_GET_XFERTYPE(ed->bmAttributes) == UE_CONTROL) ||
391 1.1 jakllsch (UE_GET_DIR(ed->bEndpointAddress) == UE_DIR_IN))
392 1.1 jakllsch in = 1;
393 1.1 jakllsch
394 1.1 jakllsch return epaddr * 2 + in;
395 1.1 jakllsch }
396 1.1 jakllsch
397 1.1 jakllsch static inline u_int
398 1.1 jakllsch xhci_dci_to_ici(const u_int i)
399 1.1 jakllsch {
400 1.1 jakllsch return i + 1;
401 1.1 jakllsch }
402 1.1 jakllsch
403 1.1 jakllsch static inline void *
404 1.1 jakllsch xhci_slot_get_dcv(struct xhci_softc * const sc, struct xhci_slot * const xs,
405 1.1 jakllsch const u_int dci)
406 1.1 jakllsch {
407 1.1 jakllsch return KERNADDR(&xs->xs_dc_dma, sc->sc_ctxsz * dci);
408 1.1 jakllsch }
409 1.1 jakllsch
410 1.4 apb #if 0 /* unused */
411 1.1 jakllsch static inline bus_addr_t
412 1.1 jakllsch xhci_slot_get_dcp(struct xhci_softc * const sc, struct xhci_slot * const xs,
413 1.1 jakllsch const u_int dci)
414 1.1 jakllsch {
415 1.1 jakllsch return DMAADDR(&xs->xs_dc_dma, sc->sc_ctxsz * dci);
416 1.1 jakllsch }
417 1.4 apb #endif /* unused */
418 1.1 jakllsch
419 1.1 jakllsch static inline void *
420 1.1 jakllsch xhci_slot_get_icv(struct xhci_softc * const sc, struct xhci_slot * const xs,
421 1.1 jakllsch const u_int ici)
422 1.1 jakllsch {
423 1.1 jakllsch return KERNADDR(&xs->xs_ic_dma, sc->sc_ctxsz * ici);
424 1.1 jakllsch }
425 1.1 jakllsch
426 1.1 jakllsch static inline bus_addr_t
427 1.1 jakllsch xhci_slot_get_icp(struct xhci_softc * const sc, struct xhci_slot * const xs,
428 1.1 jakllsch const u_int ici)
429 1.1 jakllsch {
430 1.1 jakllsch return DMAADDR(&xs->xs_ic_dma, sc->sc_ctxsz * ici);
431 1.1 jakllsch }
432 1.1 jakllsch
433 1.1 jakllsch static inline struct xhci_trb *
434 1.1 jakllsch xhci_ring_trbv(struct xhci_ring * const xr, u_int idx)
435 1.1 jakllsch {
436 1.1 jakllsch return KERNADDR(&xr->xr_dma, XHCI_TRB_SIZE * idx);
437 1.1 jakllsch }
438 1.1 jakllsch
439 1.1 jakllsch static inline bus_addr_t
440 1.1 jakllsch xhci_ring_trbp(struct xhci_ring * const xr, u_int idx)
441 1.1 jakllsch {
442 1.1 jakllsch return DMAADDR(&xr->xr_dma, XHCI_TRB_SIZE * idx);
443 1.1 jakllsch }
444 1.1 jakllsch
445 1.1 jakllsch static inline void
446 1.1 jakllsch xhci_trb_put(struct xhci_trb * const trb, uint64_t parameter, uint32_t status,
447 1.1 jakllsch uint32_t control)
448 1.1 jakllsch {
449 1.1 jakllsch trb->trb_0 = parameter;
450 1.1 jakllsch trb->trb_2 = status;
451 1.1 jakllsch trb->trb_3 = control;
452 1.1 jakllsch }
453 1.1 jakllsch
454 1.1 jakllsch /* --- */
455 1.1 jakllsch
456 1.1 jakllsch void
457 1.1 jakllsch xhci_childdet(device_t self, device_t child)
458 1.1 jakllsch {
459 1.1 jakllsch struct xhci_softc * const sc = device_private(self);
460 1.1 jakllsch
461 1.1 jakllsch KASSERT(sc->sc_child == child);
462 1.1 jakllsch if (child == sc->sc_child)
463 1.1 jakllsch sc->sc_child = NULL;
464 1.1 jakllsch }
465 1.1 jakllsch
466 1.1 jakllsch int
467 1.1 jakllsch xhci_detach(struct xhci_softc *sc, int flags)
468 1.1 jakllsch {
469 1.1 jakllsch int rv = 0;
470 1.1 jakllsch
471 1.1 jakllsch if (sc->sc_child != NULL)
472 1.1 jakllsch rv = config_detach(sc->sc_child, flags);
473 1.1 jakllsch
474 1.1 jakllsch if (rv != 0)
475 1.1 jakllsch return (rv);
476 1.1 jakllsch
477 1.1 jakllsch /* XXX unconfigure/free slots */
478 1.1 jakllsch
479 1.1 jakllsch /* verify: */
480 1.1 jakllsch xhci_rt_write_4(sc, XHCI_IMAN(0), 0);
481 1.1 jakllsch xhci_op_write_4(sc, XHCI_USBCMD, 0);
482 1.1 jakllsch /* do we need to wait for stop? */
483 1.1 jakllsch
484 1.1 jakllsch xhci_op_write_8(sc, XHCI_CRCR, 0);
485 1.1 jakllsch xhci_ring_free(sc, &sc->sc_cr);
486 1.1 jakllsch cv_destroy(&sc->sc_command_cv);
487 1.1 jakllsch
488 1.1 jakllsch xhci_rt_write_4(sc, XHCI_ERSTSZ(0), 0);
489 1.1 jakllsch xhci_rt_write_8(sc, XHCI_ERSTBA(0), 0);
490 1.1 jakllsch xhci_rt_write_8(sc, XHCI_ERDP(0), 0|XHCI_ERDP_LO_BUSY);
491 1.1 jakllsch xhci_ring_free(sc, &sc->sc_er);
492 1.1 jakllsch
493 1.1 jakllsch usb_freemem(&sc->sc_bus, &sc->sc_eventst_dma);
494 1.1 jakllsch
495 1.1 jakllsch xhci_op_write_8(sc, XHCI_DCBAAP, 0);
496 1.1 jakllsch usb_freemem(&sc->sc_bus, &sc->sc_dcbaa_dma);
497 1.1 jakllsch
498 1.1 jakllsch kmem_free(sc->sc_slots, sizeof(*sc->sc_slots) * sc->sc_maxslots);
499 1.1 jakllsch
500 1.1 jakllsch mutex_destroy(&sc->sc_lock);
501 1.1 jakllsch mutex_destroy(&sc->sc_intr_lock);
502 1.1 jakllsch
503 1.1 jakllsch pool_cache_destroy(sc->sc_xferpool);
504 1.1 jakllsch
505 1.1 jakllsch return rv;
506 1.1 jakllsch }
507 1.1 jakllsch
508 1.1 jakllsch int
509 1.1 jakllsch xhci_activate(device_t self, enum devact act)
510 1.1 jakllsch {
511 1.1 jakllsch struct xhci_softc * const sc = device_private(self);
512 1.1 jakllsch
513 1.1 jakllsch switch (act) {
514 1.1 jakllsch case DVACT_DEACTIVATE:
515 1.1 jakllsch sc->sc_dying = true;
516 1.1 jakllsch return 0;
517 1.1 jakllsch default:
518 1.1 jakllsch return EOPNOTSUPP;
519 1.1 jakllsch }
520 1.1 jakllsch }
521 1.1 jakllsch
522 1.1 jakllsch bool
523 1.1 jakllsch xhci_suspend(device_t dv, const pmf_qual_t *qual)
524 1.1 jakllsch {
525 1.1 jakllsch return false;
526 1.1 jakllsch }
527 1.1 jakllsch
528 1.1 jakllsch bool
529 1.1 jakllsch xhci_resume(device_t dv, const pmf_qual_t *qual)
530 1.1 jakllsch {
531 1.1 jakllsch return false;
532 1.1 jakllsch }
533 1.1 jakllsch
534 1.1 jakllsch bool
535 1.1 jakllsch xhci_shutdown(device_t self, int flags)
536 1.1 jakllsch {
537 1.1 jakllsch return false;
538 1.1 jakllsch }
539 1.1 jakllsch
540 1.1 jakllsch
541 1.1 jakllsch static void
542 1.1 jakllsch hexdump(const char *msg, const void *base, size_t len)
543 1.1 jakllsch {
544 1.1 jakllsch #if 0
545 1.1 jakllsch size_t cnt;
546 1.1 jakllsch const uint32_t *p;
547 1.1 jakllsch extern paddr_t vtophys(vaddr_t);
548 1.1 jakllsch
549 1.1 jakllsch p = base;
550 1.1 jakllsch cnt = 0;
551 1.1 jakllsch
552 1.1 jakllsch printf("*** %s (%zu bytes @ %p %p)\n", msg, len, base,
553 1.1 jakllsch (void *)vtophys((vaddr_t)base));
554 1.1 jakllsch
555 1.1 jakllsch while (cnt < len) {
556 1.1 jakllsch if (cnt % 16 == 0)
557 1.1 jakllsch printf("%p: ", p);
558 1.1 jakllsch else if (cnt % 8 == 0)
559 1.1 jakllsch printf(" |");
560 1.1 jakllsch printf(" %08x", *p++);
561 1.1 jakllsch cnt += 4;
562 1.1 jakllsch if (cnt % 16 == 0)
563 1.1 jakllsch printf("\n");
564 1.1 jakllsch }
565 1.1 jakllsch #endif
566 1.1 jakllsch }
567 1.1 jakllsch
568 1.1 jakllsch
569 1.15 skrll int
570 1.1 jakllsch xhci_init(struct xhci_softc *sc)
571 1.1 jakllsch {
572 1.1 jakllsch bus_size_t bsz;
573 1.7 christos uint32_t cap, hcs1, hcs2, hcc, dboff, rtsoff;
574 1.1 jakllsch uint32_t ecp, ecr;
575 1.1 jakllsch uint32_t usbcmd, usbsts, pagesize, config;
576 1.1 jakllsch int i;
577 1.1 jakllsch uint16_t hciversion;
578 1.1 jakllsch uint8_t caplength;
579 1.1 jakllsch
580 1.1 jakllsch DPRINTF(("%s\n", __func__));
581 1.1 jakllsch
582 1.14 skrll /* XXX Low/Full/High speeds for now */
583 1.14 skrll sc->sc_bus.usbrev = USBREV_2_0;
584 1.1 jakllsch
585 1.1 jakllsch cap = xhci_read_4(sc, XHCI_CAPLENGTH);
586 1.1 jakllsch caplength = XHCI_CAP_CAPLENGTH(cap);
587 1.1 jakllsch hciversion = XHCI_CAP_HCIVERSION(cap);
588 1.1 jakllsch
589 1.1 jakllsch if ((hciversion < 0x0096) || (hciversion > 0x0100)) {
590 1.1 jakllsch aprint_normal_dev(sc->sc_dev,
591 1.1 jakllsch "xHCI version %x.%x not known to be supported\n",
592 1.1 jakllsch (hciversion >> 8) & 0xff, (hciversion >> 0) & 0xff);
593 1.1 jakllsch } else {
594 1.1 jakllsch aprint_verbose_dev(sc->sc_dev, "xHCI version %x.%x\n",
595 1.1 jakllsch (hciversion >> 8) & 0xff, (hciversion >> 0) & 0xff);
596 1.1 jakllsch }
597 1.1 jakllsch
598 1.1 jakllsch if (bus_space_subregion(sc->sc_iot, sc->sc_ioh, 0, caplength,
599 1.1 jakllsch &sc->sc_cbh) != 0) {
600 1.1 jakllsch aprint_error_dev(sc->sc_dev, "capability subregion failure\n");
601 1.15 skrll return ENOMEM;
602 1.1 jakllsch }
603 1.1 jakllsch
604 1.1 jakllsch hcs1 = xhci_cap_read_4(sc, XHCI_HCSPARAMS1);
605 1.1 jakllsch sc->sc_maxslots = XHCI_HCS1_MAXSLOTS(hcs1);
606 1.1 jakllsch sc->sc_maxintrs = XHCI_HCS1_MAXINTRS(hcs1);
607 1.1 jakllsch sc->sc_maxports = XHCI_HCS1_MAXPORTS(hcs1);
608 1.1 jakllsch hcs2 = xhci_cap_read_4(sc, XHCI_HCSPARAMS2);
609 1.7 christos (void)xhci_cap_read_4(sc, XHCI_HCSPARAMS3);
610 1.1 jakllsch hcc = xhci_cap_read_4(sc, XHCI_HCCPARAMS);
611 1.1 jakllsch
612 1.1 jakllsch sc->sc_ac64 = XHCI_HCC_AC64(hcc);
613 1.1 jakllsch sc->sc_ctxsz = XHCI_HCC_CSZ(hcc) ? 64 : 32;
614 1.12 jakllsch aprint_debug_dev(sc->sc_dev, "ac64 %d ctxsz %d\n", sc->sc_ac64,
615 1.1 jakllsch sc->sc_ctxsz);
616 1.1 jakllsch
617 1.12 jakllsch aprint_debug_dev(sc->sc_dev, "xECP %x\n", XHCI_HCC_XECP(hcc) * 4);
618 1.1 jakllsch ecp = XHCI_HCC_XECP(hcc) * 4;
619 1.1 jakllsch while (ecp != 0) {
620 1.1 jakllsch ecr = xhci_read_4(sc, ecp);
621 1.12 jakllsch aprint_debug_dev(sc->sc_dev, "ECR %x: %08x\n", ecp, ecr);
622 1.1 jakllsch switch (XHCI_XECP_ID(ecr)) {
623 1.1 jakllsch case XHCI_ID_PROTOCOLS: {
624 1.1 jakllsch uint32_t w0, w4, w8;
625 1.1 jakllsch uint16_t w2;
626 1.1 jakllsch w0 = xhci_read_4(sc, ecp + 0);
627 1.1 jakllsch w2 = (w0 >> 16) & 0xffff;
628 1.1 jakllsch w4 = xhci_read_4(sc, ecp + 4);
629 1.1 jakllsch w8 = xhci_read_4(sc, ecp + 8);
630 1.12 jakllsch aprint_debug_dev(sc->sc_dev, "SP: %08x %08x %08x\n",
631 1.1 jakllsch w0, w4, w8);
632 1.1 jakllsch if (w4 == 0x20425355 && w2 == 0x0300) {
633 1.1 jakllsch sc->sc_ss_port_start = (w8 >> 0) & 0xff;;
634 1.1 jakllsch sc->sc_ss_port_count = (w8 >> 8) & 0xff;;
635 1.1 jakllsch }
636 1.1 jakllsch if (w4 == 0x20425355 && w2 == 0x0200) {
637 1.1 jakllsch sc->sc_hs_port_start = (w8 >> 0) & 0xff;
638 1.1 jakllsch sc->sc_hs_port_count = (w8 >> 8) & 0xff;
639 1.1 jakllsch }
640 1.1 jakllsch break;
641 1.1 jakllsch }
642 1.1 jakllsch default:
643 1.1 jakllsch break;
644 1.1 jakllsch }
645 1.1 jakllsch ecr = xhci_read_4(sc, ecp);
646 1.1 jakllsch if (XHCI_XECP_NEXT(ecr) == 0) {
647 1.1 jakllsch ecp = 0;
648 1.1 jakllsch } else {
649 1.1 jakllsch ecp += XHCI_XECP_NEXT(ecr) * 4;
650 1.1 jakllsch }
651 1.1 jakllsch }
652 1.1 jakllsch
653 1.1 jakllsch bsz = XHCI_PORTSC(sc->sc_maxports + 1);
654 1.1 jakllsch if (bus_space_subregion(sc->sc_iot, sc->sc_ioh, caplength, bsz,
655 1.1 jakllsch &sc->sc_obh) != 0) {
656 1.1 jakllsch aprint_error_dev(sc->sc_dev, "operational subregion failure\n");
657 1.15 skrll return ENOMEM;
658 1.1 jakllsch }
659 1.1 jakllsch
660 1.1 jakllsch dboff = xhci_cap_read_4(sc, XHCI_DBOFF);
661 1.1 jakllsch if (bus_space_subregion(sc->sc_iot, sc->sc_ioh, dboff,
662 1.1 jakllsch sc->sc_maxslots * 4, &sc->sc_dbh) != 0) {
663 1.1 jakllsch aprint_error_dev(sc->sc_dev, "doorbell subregion failure\n");
664 1.15 skrll return ENOMEM;
665 1.1 jakllsch }
666 1.1 jakllsch
667 1.1 jakllsch rtsoff = xhci_cap_read_4(sc, XHCI_RTSOFF);
668 1.1 jakllsch if (bus_space_subregion(sc->sc_iot, sc->sc_ioh, rtsoff,
669 1.1 jakllsch sc->sc_maxintrs * 0x20, &sc->sc_rbh) != 0) {
670 1.1 jakllsch aprint_error_dev(sc->sc_dev, "runtime subregion failure\n");
671 1.15 skrll return ENOMEM;
672 1.1 jakllsch }
673 1.1 jakllsch
674 1.1 jakllsch for (i = 0; i < 100; i++) {
675 1.1 jakllsch usbsts = xhci_op_read_4(sc, XHCI_USBSTS);
676 1.1 jakllsch if ((usbsts & XHCI_STS_CNR) == 0)
677 1.1 jakllsch break;
678 1.1 jakllsch usb_delay_ms(&sc->sc_bus, 1);
679 1.1 jakllsch }
680 1.1 jakllsch if (i >= 100)
681 1.15 skrll return EIO;
682 1.1 jakllsch
683 1.1 jakllsch usbcmd = 0;
684 1.1 jakllsch xhci_op_write_4(sc, XHCI_USBCMD, usbcmd);
685 1.1 jakllsch usb_delay_ms(&sc->sc_bus, 1);
686 1.1 jakllsch
687 1.1 jakllsch usbcmd = XHCI_CMD_HCRST;
688 1.1 jakllsch xhci_op_write_4(sc, XHCI_USBCMD, usbcmd);
689 1.1 jakllsch for (i = 0; i < 100; i++) {
690 1.1 jakllsch usbcmd = xhci_op_read_4(sc, XHCI_USBCMD);
691 1.1 jakllsch if ((usbcmd & XHCI_CMD_HCRST) == 0)
692 1.1 jakllsch break;
693 1.1 jakllsch usb_delay_ms(&sc->sc_bus, 1);
694 1.1 jakllsch }
695 1.1 jakllsch if (i >= 100)
696 1.15 skrll return EIO;
697 1.1 jakllsch
698 1.1 jakllsch for (i = 0; i < 100; i++) {
699 1.1 jakllsch usbsts = xhci_op_read_4(sc, XHCI_USBSTS);
700 1.1 jakllsch if ((usbsts & XHCI_STS_CNR) == 0)
701 1.1 jakllsch break;
702 1.1 jakllsch usb_delay_ms(&sc->sc_bus, 1);
703 1.1 jakllsch }
704 1.1 jakllsch if (i >= 100)
705 1.15 skrll return EIO;
706 1.1 jakllsch
707 1.1 jakllsch pagesize = xhci_op_read_4(sc, XHCI_PAGESIZE);
708 1.12 jakllsch aprint_debug_dev(sc->sc_dev, "PAGESIZE 0x%08x\n", pagesize);
709 1.1 jakllsch pagesize = ffs(pagesize);
710 1.1 jakllsch if (pagesize == 0)
711 1.15 skrll return EIO;
712 1.1 jakllsch sc->sc_pgsz = 1 << (12 + (pagesize - 1));
713 1.12 jakllsch aprint_debug_dev(sc->sc_dev, "sc_pgsz 0x%08x\n", (uint32_t)sc->sc_pgsz);
714 1.12 jakllsch aprint_debug_dev(sc->sc_dev, "sc_maxslots 0x%08x\n",
715 1.1 jakllsch (uint32_t)sc->sc_maxslots);
716 1.1 jakllsch
717 1.5 matt usbd_status err;
718 1.5 matt
719 1.5 matt sc->sc_maxspbuf = XHCI_HCS2_MAXSPBUF(hcs2);
720 1.12 jakllsch aprint_debug_dev(sc->sc_dev, "sc_maxspbuf %d\n", sc->sc_maxspbuf);
721 1.5 matt if (sc->sc_maxspbuf != 0) {
722 1.5 matt err = usb_allocmem(&sc->sc_bus,
723 1.5 matt sizeof(uint64_t) * sc->sc_maxspbuf, sizeof(uint64_t),
724 1.5 matt &sc->sc_spbufarray_dma);
725 1.5 matt if (err)
726 1.5 matt return err;
727 1.5 matt
728 1.5 matt sc->sc_spbuf_dma = kmem_zalloc(sizeof(*sc->sc_spbuf_dma) * sc->sc_maxspbuf, KM_SLEEP);
729 1.5 matt uint64_t *spbufarray = KERNADDR(&sc->sc_spbufarray_dma, 0);
730 1.5 matt for (i = 0; i < sc->sc_maxspbuf; i++) {
731 1.5 matt usb_dma_t * const dma = &sc->sc_spbuf_dma[i];
732 1.5 matt /* allocate contexts */
733 1.5 matt err = usb_allocmem(&sc->sc_bus, sc->sc_pgsz,
734 1.5 matt sc->sc_pgsz, dma);
735 1.5 matt if (err)
736 1.5 matt return err;
737 1.5 matt spbufarray[i] = htole64(DMAADDR(dma, 0));
738 1.5 matt usb_syncmem(dma, 0, sc->sc_pgsz,
739 1.5 matt BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE);
740 1.5 matt }
741 1.5 matt
742 1.5 matt usb_syncmem(&sc->sc_spbufarray_dma, 0,
743 1.5 matt sizeof(uint64_t) * sc->sc_maxspbuf, BUS_DMASYNC_PREWRITE);
744 1.5 matt }
745 1.5 matt
746 1.1 jakllsch config = xhci_op_read_4(sc, XHCI_CONFIG);
747 1.1 jakllsch config &= ~0xFF;
748 1.1 jakllsch config |= sc->sc_maxslots & 0xFF;
749 1.1 jakllsch xhci_op_write_4(sc, XHCI_CONFIG, config);
750 1.1 jakllsch
751 1.1 jakllsch err = xhci_ring_init(sc, &sc->sc_cr, XHCI_COMMAND_RING_TRBS,
752 1.1 jakllsch XHCI_COMMAND_RING_SEGMENTS_ALIGN);
753 1.1 jakllsch if (err) {
754 1.1 jakllsch aprint_error_dev(sc->sc_dev, "command ring init fail\n");
755 1.1 jakllsch return err;
756 1.1 jakllsch }
757 1.1 jakllsch
758 1.1 jakllsch err = xhci_ring_init(sc, &sc->sc_er, XHCI_EVENT_RING_TRBS,
759 1.1 jakllsch XHCI_EVENT_RING_SEGMENTS_ALIGN);
760 1.1 jakllsch if (err) {
761 1.1 jakllsch aprint_error_dev(sc->sc_dev, "event ring init fail\n");
762 1.1 jakllsch return err;
763 1.1 jakllsch }
764 1.1 jakllsch
765 1.16 skrll usb_dma_t *dma;
766 1.16 skrll size_t size;
767 1.16 skrll size_t align;
768 1.16 skrll
769 1.16 skrll dma = &sc->sc_eventst_dma;
770 1.16 skrll size = roundup2(XHCI_EVENT_RING_SEGMENTS * XHCI_ERSTE_SIZE,
771 1.16 skrll XHCI_EVENT_RING_SEGMENT_TABLE_ALIGN);
772 1.16 skrll KASSERT(size <= (512 * 1024));
773 1.16 skrll align = XHCI_EVENT_RING_SEGMENT_TABLE_ALIGN;
774 1.16 skrll err = usb_allocmem(&sc->sc_bus, size, align, dma);
775 1.16 skrll
776 1.16 skrll memset(KERNADDR(dma, 0), 0, size);
777 1.16 skrll usb_syncmem(dma, 0, size, BUS_DMASYNC_PREWRITE);
778 1.16 skrll aprint_debug_dev(sc->sc_dev, "eventst: %s %016jx %p %zx\n",
779 1.16 skrll usbd_errstr(err),
780 1.16 skrll (uintmax_t)DMAADDR(&sc->sc_eventst_dma, 0),
781 1.16 skrll KERNADDR(&sc->sc_eventst_dma, 0),
782 1.16 skrll sc->sc_eventst_dma.block->size);
783 1.16 skrll
784 1.16 skrll dma = &sc->sc_dcbaa_dma;
785 1.16 skrll size = (1 + sc->sc_maxslots) * sizeof(uint64_t);
786 1.16 skrll KASSERT(size <= 2048);
787 1.16 skrll align = XHCI_DEVICE_CONTEXT_BASE_ADDRESS_ARRAY_ALIGN;
788 1.16 skrll err = usb_allocmem(&sc->sc_bus, size, align, dma);
789 1.16 skrll
790 1.16 skrll memset(KERNADDR(dma, 0), 0, size);
791 1.16 skrll if (sc->sc_maxspbuf != 0) {
792 1.16 skrll /*
793 1.16 skrll * DCBA entry 0 hold the scratchbuf array pointer.
794 1.16 skrll */
795 1.16 skrll *(uint64_t *)KERNADDR(dma, 0) =
796 1.16 skrll htole64(DMAADDR(&sc->sc_spbufarray_dma, 0));
797 1.1 jakllsch }
798 1.16 skrll usb_syncmem(dma, 0, size, BUS_DMASYNC_PREWRITE);
799 1.16 skrll aprint_debug_dev(sc->sc_dev, "dcbaa: %s %016jx %p %zx\n",
800 1.16 skrll usbd_errstr(err),
801 1.16 skrll (uintmax_t)DMAADDR(&sc->sc_dcbaa_dma, 0),
802 1.16 skrll KERNADDR(&sc->sc_dcbaa_dma, 0),
803 1.16 skrll sc->sc_dcbaa_dma.block->size);
804 1.1 jakllsch
805 1.1 jakllsch sc->sc_slots = kmem_zalloc(sizeof(*sc->sc_slots) * sc->sc_maxslots,
806 1.1 jakllsch KM_SLEEP);
807 1.1 jakllsch
808 1.1 jakllsch cv_init(&sc->sc_command_cv, "xhcicmd");
809 1.1 jakllsch
810 1.1 jakllsch struct xhci_erste *erst;
811 1.1 jakllsch erst = KERNADDR(&sc->sc_eventst_dma, 0);
812 1.1 jakllsch erst[0].erste_0 = htole64(xhci_ring_trbp(&sc->sc_er, 0));
813 1.1 jakllsch erst[0].erste_2 = htole32(XHCI_EVENT_RING_TRBS);
814 1.1 jakllsch erst[0].erste_3 = htole32(0);
815 1.1 jakllsch usb_syncmem(&sc->sc_eventst_dma, 0,
816 1.1 jakllsch XHCI_ERSTE_SIZE * XHCI_EVENT_RING_SEGMENTS, BUS_DMASYNC_PREWRITE);
817 1.1 jakllsch
818 1.1 jakllsch xhci_rt_write_4(sc, XHCI_ERSTSZ(0), XHCI_EVENT_RING_SEGMENTS);
819 1.1 jakllsch xhci_rt_write_8(sc, XHCI_ERSTBA(0), DMAADDR(&sc->sc_eventst_dma, 0));
820 1.1 jakllsch xhci_rt_write_8(sc, XHCI_ERDP(0), xhci_ring_trbp(&sc->sc_er, 0) |
821 1.1 jakllsch XHCI_ERDP_LO_BUSY);
822 1.1 jakllsch xhci_op_write_8(sc, XHCI_DCBAAP, DMAADDR(&sc->sc_dcbaa_dma, 0));
823 1.1 jakllsch xhci_op_write_8(sc, XHCI_CRCR, xhci_ring_trbp(&sc->sc_cr, 0) |
824 1.1 jakllsch sc->sc_cr.xr_cs);
825 1.1 jakllsch
826 1.1 jakllsch #if 0
827 1.1 jakllsch hexdump("eventst", KERNADDR(&sc->sc_eventst_dma, 0),
828 1.1 jakllsch XHCI_ERSTE_SIZE * XHCI_EVENT_RING_SEGMENTS);
829 1.1 jakllsch #endif
830 1.1 jakllsch
831 1.1 jakllsch xhci_rt_write_4(sc, XHCI_IMAN(0), XHCI_IMAN_INTR_ENA);
832 1.1 jakllsch xhci_rt_write_4(sc, XHCI_IMOD(0), 0);
833 1.1 jakllsch
834 1.1 jakllsch xhci_op_write_4(sc, XHCI_USBCMD, XHCI_CMD_INTE|XHCI_CMD_RS); /* Go! */
835 1.12 jakllsch aprint_debug_dev(sc->sc_dev, "USBCMD %08"PRIx32"\n",
836 1.1 jakllsch xhci_op_read_4(sc, XHCI_USBCMD));
837 1.1 jakllsch
838 1.1 jakllsch mutex_init(&sc->sc_lock, MUTEX_DEFAULT, IPL_SOFTUSB);
839 1.1 jakllsch mutex_init(&sc->sc_intr_lock, MUTEX_DEFAULT, IPL_SCHED);
840 1.1 jakllsch cv_init(&sc->sc_softwake_cv, "xhciab");
841 1.1 jakllsch
842 1.1 jakllsch sc->sc_xferpool = pool_cache_init(sizeof(struct xhci_xfer), 0, 0, 0,
843 1.1 jakllsch "xhcixfer", NULL, IPL_USB, NULL, NULL, NULL);
844 1.1 jakllsch
845 1.1 jakllsch /* Set up the bus struct. */
846 1.1 jakllsch sc->sc_bus.methods = &xhci_bus_methods;
847 1.1 jakllsch sc->sc_bus.pipe_size = sizeof(struct xhci_pipe);
848 1.1 jakllsch
849 1.1 jakllsch return USBD_NORMAL_COMPLETION;
850 1.1 jakllsch }
851 1.1 jakllsch
852 1.1 jakllsch int
853 1.1 jakllsch xhci_intr(void *v)
854 1.1 jakllsch {
855 1.1 jakllsch struct xhci_softc * const sc = v;
856 1.1 jakllsch
857 1.1 jakllsch if (sc == NULL || sc->sc_dying || !device_has_power(sc->sc_dev))
858 1.1 jakllsch return 0;
859 1.1 jakllsch
860 1.1 jakllsch DPRINTF(("%s: %s\n", __func__, device_xname(sc->sc_dev)));
861 1.1 jakllsch
862 1.1 jakllsch /* If we get an interrupt while polling, then just ignore it. */
863 1.1 jakllsch if (sc->sc_bus.use_polling) {
864 1.1 jakllsch #ifdef DIAGNOSTIC
865 1.1 jakllsch DPRINTFN(16, ("xhci_intr: ignored interrupt while polling\n"));
866 1.1 jakllsch #endif
867 1.1 jakllsch return 0;
868 1.1 jakllsch }
869 1.1 jakllsch
870 1.1 jakllsch return xhci_intr1(sc);
871 1.1 jakllsch }
872 1.1 jakllsch
873 1.1 jakllsch int
874 1.1 jakllsch xhci_intr1(struct xhci_softc * const sc)
875 1.1 jakllsch {
876 1.1 jakllsch uint32_t usbsts;
877 1.1 jakllsch uint32_t iman;
878 1.1 jakllsch
879 1.1 jakllsch usbsts = xhci_op_read_4(sc, XHCI_USBSTS);
880 1.1 jakllsch //device_printf(sc->sc_dev, "%s USBSTS %08x\n", __func__, usbsts);
881 1.1 jakllsch #if 0
882 1.1 jakllsch if ((usbsts & (XHCI_STS_EINT|XHCI_STS_PCD)) == 0) {
883 1.1 jakllsch return 0;
884 1.1 jakllsch }
885 1.1 jakllsch #endif
886 1.1 jakllsch xhci_op_write_4(sc, XHCI_USBSTS,
887 1.1 jakllsch usbsts & (2|XHCI_STS_EINT|XHCI_STS_PCD)); /* XXX */
888 1.1 jakllsch usbsts = xhci_op_read_4(sc, XHCI_USBSTS);
889 1.1 jakllsch //device_printf(sc->sc_dev, "%s USBSTS %08x\n", __func__, usbsts);
890 1.1 jakllsch
891 1.1 jakllsch iman = xhci_rt_read_4(sc, XHCI_IMAN(0));
892 1.1 jakllsch //device_printf(sc->sc_dev, "%s IMAN0 %08x\n", __func__, iman);
893 1.1 jakllsch if ((iman & XHCI_IMAN_INTR_PEND) == 0) {
894 1.1 jakllsch return 0;
895 1.1 jakllsch }
896 1.1 jakllsch xhci_rt_write_4(sc, XHCI_IMAN(0), iman);
897 1.1 jakllsch iman = xhci_rt_read_4(sc, XHCI_IMAN(0));
898 1.1 jakllsch //device_printf(sc->sc_dev, "%s IMAN0 %08x\n", __func__, iman);
899 1.1 jakllsch usbsts = xhci_op_read_4(sc, XHCI_USBSTS);
900 1.1 jakllsch //device_printf(sc->sc_dev, "%s USBSTS %08x\n", __func__, usbsts);
901 1.1 jakllsch
902 1.1 jakllsch sc->sc_bus.no_intrs++;
903 1.1 jakllsch usb_schedsoftintr(&sc->sc_bus);
904 1.1 jakllsch
905 1.1 jakllsch return 1;
906 1.1 jakllsch }
907 1.1 jakllsch
908 1.1 jakllsch static usbd_status
909 1.1 jakllsch xhci_configure_endpoint(usbd_pipe_handle pipe)
910 1.1 jakllsch {
911 1.1 jakllsch struct xhci_softc * const sc = pipe->device->bus->hci_private;
912 1.1 jakllsch struct xhci_slot * const xs = pipe->device->hci_private;
913 1.1 jakllsch const u_int dci = xhci_ep_get_dci(pipe->endpoint->edesc);
914 1.1 jakllsch usb_endpoint_descriptor_t * const ed = pipe->endpoint->edesc;
915 1.1 jakllsch const uint8_t xfertype = UE_GET_XFERTYPE(ed->bmAttributes);
916 1.1 jakllsch struct xhci_trb trb;
917 1.1 jakllsch usbd_status err;
918 1.1 jakllsch uint32_t *cp;
919 1.1 jakllsch
920 1.1 jakllsch device_printf(sc->sc_dev, "%s dci %u (0x%x)\n", __func__, dci,
921 1.1 jakllsch pipe->endpoint->edesc->bEndpointAddress);
922 1.1 jakllsch
923 1.1 jakllsch /* XXX ensure input context is available? */
924 1.1 jakllsch
925 1.1 jakllsch memset(xhci_slot_get_icv(sc, xs, 0), 0, sc->sc_pgsz);
926 1.1 jakllsch
927 1.1 jakllsch cp = xhci_slot_get_icv(sc, xs, XHCI_ICI_INPUT_CONTROL);
928 1.1 jakllsch cp[0] = htole32(0);
929 1.1 jakllsch cp[1] = htole32(XHCI_INCTX_1_ADD_MASK(dci));
930 1.1 jakllsch
931 1.1 jakllsch /* set up input slot context */
932 1.1 jakllsch cp = xhci_slot_get_icv(sc, xs, xhci_dci_to_ici(XHCI_DCI_SLOT));
933 1.1 jakllsch cp[0] = htole32(XHCI_SCTX_0_CTX_NUM_SET(dci));
934 1.1 jakllsch cp[1] = htole32(0);
935 1.1 jakllsch cp[2] = htole32(0);
936 1.1 jakllsch cp[3] = htole32(0);
937 1.1 jakllsch
938 1.1 jakllsch cp = xhci_slot_get_icv(sc, xs, xhci_dci_to_ici(dci));
939 1.1 jakllsch if (xfertype == UE_INTERRUPT) {
940 1.1 jakllsch cp[0] = htole32(
941 1.1 jakllsch XHCI_EPCTX_0_IVAL_SET(3) /* XXX */
942 1.1 jakllsch );
943 1.1 jakllsch cp[1] = htole32(
944 1.1 jakllsch XHCI_EPCTX_1_CERR_SET(3) |
945 1.1 jakllsch XHCI_EPCTX_1_EPTYPE_SET(xhci_ep_get_type(pipe->endpoint->edesc)) |
946 1.1 jakllsch XHCI_EPCTX_1_MAXB_SET(0) |
947 1.1 jakllsch XHCI_EPCTX_1_MAXP_SIZE_SET(8) /* XXX */
948 1.1 jakllsch );
949 1.1 jakllsch cp[4] = htole32(
950 1.1 jakllsch XHCI_EPCTX_4_AVG_TRB_LEN_SET(8)
951 1.1 jakllsch );
952 1.1 jakllsch } else {
953 1.1 jakllsch cp[0] = htole32(0);
954 1.1 jakllsch cp[1] = htole32(
955 1.1 jakllsch XHCI_EPCTX_1_CERR_SET(3) |
956 1.1 jakllsch XHCI_EPCTX_1_EPTYPE_SET(xhci_ep_get_type(pipe->endpoint->edesc)) |
957 1.1 jakllsch XHCI_EPCTX_1_MAXB_SET(0) |
958 1.1 jakllsch XHCI_EPCTX_1_MAXP_SIZE_SET(512) /* XXX */
959 1.1 jakllsch );
960 1.1 jakllsch }
961 1.1 jakllsch *(uint64_t *)(&cp[2]) = htole64(
962 1.1 jakllsch xhci_ring_trbp(&xs->xs_ep[dci].xe_tr, 0) |
963 1.1 jakllsch XHCI_EPCTX_2_DCS_SET(1));
964 1.1 jakllsch
965 1.1 jakllsch /* sync input contexts before they are read from memory */
966 1.1 jakllsch usb_syncmem(&xs->xs_ic_dma, 0, sc->sc_pgsz, BUS_DMASYNC_PREWRITE);
967 1.1 jakllsch hexdump("input control context", xhci_slot_get_icv(sc, xs, 0),
968 1.1 jakllsch sc->sc_ctxsz * 1);
969 1.1 jakllsch hexdump("input endpoint context", xhci_slot_get_icv(sc, xs,
970 1.1 jakllsch xhci_dci_to_ici(dci)), sc->sc_ctxsz * 1);
971 1.1 jakllsch
972 1.1 jakllsch trb.trb_0 = xhci_slot_get_icp(sc, xs, 0);
973 1.1 jakllsch trb.trb_2 = 0;
974 1.1 jakllsch trb.trb_3 = XHCI_TRB_3_SLOT_SET(xs->xs_idx) |
975 1.1 jakllsch XHCI_TRB_3_TYPE_SET(XHCI_TRB_TYPE_CONFIGURE_EP);
976 1.1 jakllsch
977 1.1 jakllsch err = xhci_do_command(sc, &trb, USBD_DEFAULT_TIMEOUT);
978 1.1 jakllsch
979 1.1 jakllsch usb_syncmem(&xs->xs_dc_dma, 0, sc->sc_pgsz, BUS_DMASYNC_POSTREAD);
980 1.1 jakllsch hexdump("output context", xhci_slot_get_dcv(sc, xs, dci),
981 1.1 jakllsch sc->sc_ctxsz * 1);
982 1.1 jakllsch
983 1.1 jakllsch return err;
984 1.1 jakllsch }
985 1.1 jakllsch
986 1.1 jakllsch static usbd_status
987 1.1 jakllsch xhci_unconfigure_endpoint(usbd_pipe_handle pipe)
988 1.1 jakllsch {
989 1.1 jakllsch return USBD_NORMAL_COMPLETION;
990 1.1 jakllsch }
991 1.1 jakllsch
992 1.1 jakllsch static usbd_status
993 1.1 jakllsch xhci_reset_endpoint(usbd_pipe_handle pipe)
994 1.1 jakllsch {
995 1.1 jakllsch struct xhci_softc * const sc = pipe->device->bus->hci_private;
996 1.1 jakllsch struct xhci_slot * const xs = pipe->device->hci_private;
997 1.1 jakllsch const u_int dci = xhci_ep_get_dci(pipe->endpoint->edesc);
998 1.1 jakllsch struct xhci_trb trb;
999 1.1 jakllsch usbd_status err;
1000 1.1 jakllsch
1001 1.1 jakllsch device_printf(sc->sc_dev, "%s\n", __func__);
1002 1.1 jakllsch
1003 1.1 jakllsch trb.trb_0 = 0;
1004 1.1 jakllsch trb.trb_2 = 0;
1005 1.1 jakllsch trb.trb_3 = XHCI_TRB_3_SLOT_SET(xs->xs_idx) |
1006 1.1 jakllsch XHCI_TRB_3_EP_SET(dci) |
1007 1.1 jakllsch XHCI_TRB_3_TYPE_SET(XHCI_TRB_TYPE_RESET_EP);
1008 1.1 jakllsch
1009 1.1 jakllsch err = xhci_do_command(sc, &trb, USBD_DEFAULT_TIMEOUT);
1010 1.1 jakllsch
1011 1.1 jakllsch return err;
1012 1.1 jakllsch }
1013 1.1 jakllsch
1014 1.1 jakllsch #if 0
1015 1.1 jakllsch static usbd_status
1016 1.1 jakllsch xhci_stop_endpoint(usbd_pipe_handle pipe)
1017 1.1 jakllsch {
1018 1.1 jakllsch struct xhci_softc * const sc = pipe->device->bus->hci_private;
1019 1.1 jakllsch struct xhci_slot * const xs = pipe->device->hci_private;
1020 1.1 jakllsch struct xhci_trb trb;
1021 1.1 jakllsch usbd_status err;
1022 1.1 jakllsch const u_int dci = xhci_ep_get_dci(pipe->endpoint->edesc);
1023 1.1 jakllsch
1024 1.1 jakllsch device_printf(sc->sc_dev, "%s\n", __func__);
1025 1.1 jakllsch
1026 1.1 jakllsch trb.trb_0 = 0;
1027 1.1 jakllsch trb.trb_2 = 0;
1028 1.1 jakllsch trb.trb_3 = XHCI_TRB_3_SLOT_SET(xs->xs_idx) |
1029 1.1 jakllsch XHCI_TRB_3_EP_SET(dci) |
1030 1.1 jakllsch XHCI_TRB_3_TYPE_SET(XHCI_TRB_TYPE_STOP_EP);
1031 1.1 jakllsch
1032 1.1 jakllsch err = xhci_do_command(sc, &trb, USBD_DEFAULT_TIMEOUT);
1033 1.1 jakllsch
1034 1.1 jakllsch return err;
1035 1.1 jakllsch }
1036 1.1 jakllsch #endif
1037 1.1 jakllsch
1038 1.1 jakllsch static usbd_status
1039 1.1 jakllsch xhci_set_dequeue(usbd_pipe_handle pipe)
1040 1.1 jakllsch {
1041 1.1 jakllsch struct xhci_softc * const sc = pipe->device->bus->hci_private;
1042 1.1 jakllsch struct xhci_slot * const xs = pipe->device->hci_private;
1043 1.1 jakllsch const u_int dci = xhci_ep_get_dci(pipe->endpoint->edesc);
1044 1.1 jakllsch struct xhci_ring * const xr = &xs->xs_ep[dci].xe_tr;
1045 1.1 jakllsch struct xhci_trb trb;
1046 1.1 jakllsch usbd_status err;
1047 1.1 jakllsch
1048 1.1 jakllsch device_printf(sc->sc_dev, "%s\n", __func__);
1049 1.1 jakllsch
1050 1.1 jakllsch memset(xr->xr_trb, 0, xr->xr_ntrb * XHCI_TRB_SIZE);
1051 1.1 jakllsch usb_syncmem(&xr->xr_dma, 0, xr->xr_ntrb * XHCI_TRB_SIZE,
1052 1.1 jakllsch BUS_DMASYNC_PREWRITE);
1053 1.1 jakllsch
1054 1.1 jakllsch xr->xr_ep = 0;
1055 1.1 jakllsch xr->xr_cs = 1;
1056 1.1 jakllsch
1057 1.1 jakllsch trb.trb_0 = xhci_ring_trbp(xr, 0) | 1; /* XXX */
1058 1.1 jakllsch trb.trb_2 = 0;
1059 1.1 jakllsch trb.trb_3 = XHCI_TRB_3_SLOT_SET(xs->xs_idx) |
1060 1.1 jakllsch XHCI_TRB_3_EP_SET(dci) |
1061 1.1 jakllsch XHCI_TRB_3_TYPE_SET(XHCI_TRB_TYPE_SET_TR_DEQUEUE);
1062 1.1 jakllsch
1063 1.1 jakllsch err = xhci_do_command(sc, &trb, USBD_DEFAULT_TIMEOUT);
1064 1.1 jakllsch
1065 1.1 jakllsch return err;
1066 1.1 jakllsch }
1067 1.1 jakllsch
1068 1.1 jakllsch static usbd_status
1069 1.1 jakllsch xhci_open(usbd_pipe_handle pipe)
1070 1.1 jakllsch {
1071 1.1 jakllsch usbd_device_handle const dev = pipe->device;
1072 1.1 jakllsch struct xhci_softc * const sc = dev->bus->hci_private;
1073 1.1 jakllsch usb_endpoint_descriptor_t * const ed = pipe->endpoint->edesc;
1074 1.1 jakllsch const int8_t addr = dev->address;
1075 1.1 jakllsch const uint8_t xfertype = UE_GET_XFERTYPE(ed->bmAttributes);
1076 1.1 jakllsch
1077 1.1 jakllsch DPRINTF(("%s\n", __func__));
1078 1.1 jakllsch DPRINTF(("addr %d\n", addr));
1079 1.1 jakllsch device_printf(sc->sc_dev, "%s addr %d depth %d port %d speed %d\n",
1080 1.1 jakllsch __func__, addr, dev->depth, dev->powersrc->portno, dev->speed);
1081 1.1 jakllsch
1082 1.1 jakllsch if (sc->sc_dying)
1083 1.1 jakllsch return USBD_IOERROR;
1084 1.1 jakllsch
1085 1.1 jakllsch /* Root Hub */
1086 1.1 jakllsch if (dev->depth == 0 && dev->powersrc->portno == 0 &&
1087 1.1 jakllsch dev->speed != USB_SPEED_SUPER) {
1088 1.1 jakllsch switch (ed->bEndpointAddress) {
1089 1.1 jakllsch case USB_CONTROL_ENDPOINT:
1090 1.1 jakllsch pipe->methods = &xhci_root_ctrl_methods;
1091 1.1 jakllsch break;
1092 1.1 jakllsch case UE_DIR_IN | XHCI_INTR_ENDPT:
1093 1.1 jakllsch pipe->methods = &xhci_root_intr_methods;
1094 1.1 jakllsch break;
1095 1.1 jakllsch default:
1096 1.1 jakllsch pipe->methods = NULL;
1097 1.1 jakllsch DPRINTF(("xhci_open: bad bEndpointAddress 0x%02x\n",
1098 1.1 jakllsch ed->bEndpointAddress));
1099 1.1 jakllsch return USBD_INVAL;
1100 1.1 jakllsch }
1101 1.1 jakllsch return USBD_NORMAL_COMPLETION;
1102 1.1 jakllsch }
1103 1.1 jakllsch
1104 1.1 jakllsch switch (xfertype) {
1105 1.1 jakllsch case UE_CONTROL:
1106 1.1 jakllsch pipe->methods = &xhci_device_ctrl_methods;
1107 1.1 jakllsch break;
1108 1.1 jakllsch case UE_ISOCHRONOUS:
1109 1.1 jakllsch pipe->methods = &xhci_device_isoc_methods;
1110 1.1 jakllsch return USBD_INVAL;
1111 1.1 jakllsch break;
1112 1.1 jakllsch case UE_BULK:
1113 1.1 jakllsch pipe->methods = &xhci_device_bulk_methods;
1114 1.1 jakllsch break;
1115 1.1 jakllsch case UE_INTERRUPT:
1116 1.1 jakllsch pipe->methods = &xhci_device_intr_methods;
1117 1.1 jakllsch break;
1118 1.1 jakllsch default:
1119 1.1 jakllsch return USBD_IOERROR;
1120 1.1 jakllsch break;
1121 1.1 jakllsch }
1122 1.1 jakllsch
1123 1.1 jakllsch if (ed->bEndpointAddress != USB_CONTROL_ENDPOINT)
1124 1.1 jakllsch xhci_configure_endpoint(pipe);
1125 1.1 jakllsch
1126 1.1 jakllsch return USBD_NORMAL_COMPLETION;
1127 1.1 jakllsch }
1128 1.1 jakllsch
1129 1.1 jakllsch static void
1130 1.1 jakllsch xhci_rhpsc(struct xhci_softc * const sc, u_int port)
1131 1.1 jakllsch {
1132 1.1 jakllsch usbd_xfer_handle const xfer = sc->sc_intrxfer;
1133 1.1 jakllsch uint8_t *p;
1134 1.1 jakllsch
1135 1.1 jakllsch device_printf(sc->sc_dev, "port %u status change\n", port);
1136 1.1 jakllsch
1137 1.1 jakllsch if (xfer == NULL)
1138 1.1 jakllsch return;
1139 1.1 jakllsch
1140 1.1 jakllsch if (!(port >= sc->sc_hs_port_start &&
1141 1.1 jakllsch port < sc->sc_hs_port_start + sc->sc_hs_port_count))
1142 1.1 jakllsch return;
1143 1.1 jakllsch
1144 1.1 jakllsch port -= sc->sc_hs_port_start;
1145 1.1 jakllsch port += 1;
1146 1.1 jakllsch device_printf(sc->sc_dev, "hs port %u status change\n", port);
1147 1.1 jakllsch
1148 1.1 jakllsch p = KERNADDR(&xfer->dmabuf, 0);
1149 1.1 jakllsch memset(p, 0, xfer->length);
1150 1.1 jakllsch p[port/NBBY] |= 1 << (port%NBBY);
1151 1.1 jakllsch xfer->actlen = xfer->length;
1152 1.1 jakllsch xfer->status = USBD_NORMAL_COMPLETION;
1153 1.1 jakllsch usb_transfer_complete(xfer);
1154 1.1 jakllsch }
1155 1.1 jakllsch
1156 1.1 jakllsch static void
1157 1.1 jakllsch xhci_handle_event(struct xhci_softc * const sc, const struct xhci_trb * const trb)
1158 1.1 jakllsch {
1159 1.1 jakllsch uint64_t trb_0;
1160 1.1 jakllsch uint32_t trb_2, trb_3;
1161 1.1 jakllsch
1162 1.1 jakllsch DPRINTF(("%s: %s\n", __func__, device_xname(sc->sc_dev)));
1163 1.1 jakllsch
1164 1.1 jakllsch trb_0 = le64toh(trb->trb_0);
1165 1.1 jakllsch trb_2 = le32toh(trb->trb_2);
1166 1.1 jakllsch trb_3 = le32toh(trb->trb_3);
1167 1.1 jakllsch
1168 1.1 jakllsch #if 0
1169 1.1 jakllsch device_printf(sc->sc_dev,
1170 1.1 jakllsch "event: %p 0x%016"PRIx64" 0x%08"PRIx32" 0x%08"PRIx32"\n", trb,
1171 1.1 jakllsch trb_0, trb_2, trb_3);
1172 1.1 jakllsch #endif
1173 1.1 jakllsch
1174 1.1 jakllsch switch (XHCI_TRB_3_TYPE_GET(trb_3)){
1175 1.1 jakllsch case XHCI_TRB_EVENT_TRANSFER: {
1176 1.1 jakllsch u_int slot, dci;
1177 1.1 jakllsch struct xhci_slot *xs;
1178 1.1 jakllsch struct xhci_ring *xr;
1179 1.1 jakllsch struct xhci_xfer *xx;
1180 1.1 jakllsch usbd_xfer_handle xfer;
1181 1.1 jakllsch usbd_status err;
1182 1.1 jakllsch
1183 1.1 jakllsch slot = XHCI_TRB_3_SLOT_GET(trb_3);
1184 1.1 jakllsch dci = XHCI_TRB_3_EP_GET(trb_3);
1185 1.1 jakllsch
1186 1.1 jakllsch xs = &sc->sc_slots[slot];
1187 1.1 jakllsch xr = &xs->xs_ep[dci].xe_tr;
1188 1.1 jakllsch
1189 1.1 jakllsch if ((trb_3 & XHCI_TRB_3_ED_BIT) == 0) {
1190 1.1 jakllsch xx = xr->xr_cookies[(trb_0 - xhci_ring_trbp(xr, 0))/
1191 1.1 jakllsch sizeof(struct xhci_trb)];
1192 1.1 jakllsch } else {
1193 1.1 jakllsch xx = (void *)(uintptr_t)(trb_0 & ~0x3);
1194 1.1 jakllsch }
1195 1.1 jakllsch xfer = &xx->xx_xfer;
1196 1.1 jakllsch #if 0
1197 1.1 jakllsch device_printf(sc->sc_dev, "%s xfer %p\n", __func__, xfer);
1198 1.1 jakllsch #endif
1199 1.1 jakllsch
1200 1.1 jakllsch if ((trb_3 & XHCI_TRB_3_ED_BIT) != 0) {
1201 1.1 jakllsch #if 0
1202 1.1 jakllsch device_printf(sc->sc_dev, "transfer event data: "
1203 1.1 jakllsch "0x%016"PRIx64" 0x%08"PRIx32" %02x\n",
1204 1.1 jakllsch trb_0, XHCI_TRB_2_REM_GET(trb_2),
1205 1.1 jakllsch XHCI_TRB_2_ERROR_GET(trb_2));
1206 1.1 jakllsch #endif
1207 1.1 jakllsch if ((trb_0 & 0x3) == 0x3) {
1208 1.1 jakllsch xfer->actlen = XHCI_TRB_2_REM_GET(trb_2);
1209 1.1 jakllsch }
1210 1.1 jakllsch }
1211 1.1 jakllsch
1212 1.1 jakllsch if (XHCI_TRB_2_ERROR_GET(trb_2) ==
1213 1.1 jakllsch XHCI_TRB_ERROR_SUCCESS) {
1214 1.1 jakllsch xfer->actlen = xfer->length - XHCI_TRB_2_REM_GET(trb_2);
1215 1.1 jakllsch err = USBD_NORMAL_COMPLETION;
1216 1.1 jakllsch } else if (XHCI_TRB_2_ERROR_GET(trb_2) ==
1217 1.1 jakllsch XHCI_TRB_ERROR_SHORT_PKT) {
1218 1.1 jakllsch xfer->actlen = xfer->length - XHCI_TRB_2_REM_GET(trb_2);
1219 1.1 jakllsch err = USBD_NORMAL_COMPLETION;
1220 1.1 jakllsch } else if (XHCI_TRB_2_ERROR_GET(trb_2) ==
1221 1.1 jakllsch XHCI_TRB_ERROR_STALL) {
1222 1.1 jakllsch err = USBD_STALLED;
1223 1.1 jakllsch xr->is_halted = true;
1224 1.1 jakllsch } else {
1225 1.1 jakllsch err = USBD_IOERROR;
1226 1.1 jakllsch }
1227 1.1 jakllsch xfer->status = err;
1228 1.1 jakllsch
1229 1.1 jakllsch //mutex_enter(&sc->sc_lock); /* XXX ??? */
1230 1.1 jakllsch if ((trb_3 & XHCI_TRB_3_ED_BIT) != 0) {
1231 1.1 jakllsch if ((trb_0 & 0x3) == 0x0) {
1232 1.1 jakllsch usb_transfer_complete(xfer);
1233 1.1 jakllsch }
1234 1.1 jakllsch } else {
1235 1.1 jakllsch usb_transfer_complete(xfer);
1236 1.1 jakllsch }
1237 1.1 jakllsch //mutex_exit(&sc->sc_lock); /* XXX ??? */
1238 1.1 jakllsch
1239 1.1 jakllsch }
1240 1.1 jakllsch break;
1241 1.1 jakllsch case XHCI_TRB_EVENT_CMD_COMPLETE:
1242 1.1 jakllsch if (trb_0 == sc->sc_command_addr) {
1243 1.1 jakllsch sc->sc_result_trb.trb_0 = trb_0;
1244 1.1 jakllsch sc->sc_result_trb.trb_2 = trb_2;
1245 1.1 jakllsch sc->sc_result_trb.trb_3 = trb_3;
1246 1.1 jakllsch if (XHCI_TRB_2_ERROR_GET(trb_2) !=
1247 1.1 jakllsch XHCI_TRB_ERROR_SUCCESS) {
1248 1.1 jakllsch device_printf(sc->sc_dev, "command completion "
1249 1.1 jakllsch "failure: 0x%016"PRIx64" 0x%08"PRIx32" "
1250 1.1 jakllsch "0x%08"PRIx32"\n", trb_0, trb_2, trb_3);
1251 1.1 jakllsch }
1252 1.1 jakllsch cv_signal(&sc->sc_command_cv);
1253 1.1 jakllsch } else {
1254 1.1 jakllsch device_printf(sc->sc_dev, "event: %p 0x%016"PRIx64" "
1255 1.1 jakllsch "0x%08"PRIx32" 0x%08"PRIx32"\n", trb, trb_0,
1256 1.1 jakllsch trb_2, trb_3);
1257 1.1 jakllsch }
1258 1.1 jakllsch break;
1259 1.1 jakllsch case XHCI_TRB_EVENT_PORT_STS_CHANGE:
1260 1.1 jakllsch xhci_rhpsc(sc, (uint32_t)((trb_0 >> 24) & 0xff));
1261 1.1 jakllsch break;
1262 1.1 jakllsch default:
1263 1.1 jakllsch break;
1264 1.1 jakllsch }
1265 1.1 jakllsch }
1266 1.1 jakllsch
1267 1.1 jakllsch static void
1268 1.1 jakllsch xhci_softintr(void *v)
1269 1.1 jakllsch {
1270 1.1 jakllsch struct usbd_bus * const bus = v;
1271 1.1 jakllsch struct xhci_softc * const sc = bus->hci_private;
1272 1.1 jakllsch struct xhci_ring * const er = &sc->sc_er;
1273 1.1 jakllsch struct xhci_trb *trb;
1274 1.1 jakllsch int i, j, k;
1275 1.1 jakllsch
1276 1.1 jakllsch DPRINTF(("%s: %s\n", __func__, device_xname(sc->sc_dev)));
1277 1.1 jakllsch
1278 1.1 jakllsch i = er->xr_ep;
1279 1.1 jakllsch j = er->xr_cs;
1280 1.1 jakllsch
1281 1.1 jakllsch while (1) {
1282 1.1 jakllsch usb_syncmem(&er->xr_dma, XHCI_TRB_SIZE * i, XHCI_TRB_SIZE,
1283 1.1 jakllsch BUS_DMASYNC_POSTREAD);
1284 1.1 jakllsch trb = &er->xr_trb[i];
1285 1.1 jakllsch k = (le32toh(trb->trb_3) & XHCI_TRB_3_CYCLE_BIT) ? 1 : 0;
1286 1.1 jakllsch
1287 1.1 jakllsch if (j != k)
1288 1.1 jakllsch break;
1289 1.1 jakllsch
1290 1.1 jakllsch xhci_handle_event(sc, trb);
1291 1.1 jakllsch
1292 1.1 jakllsch i++;
1293 1.1 jakllsch if (i == XHCI_EVENT_RING_TRBS) {
1294 1.1 jakllsch i = 0;
1295 1.1 jakllsch j ^= 1;
1296 1.1 jakllsch }
1297 1.1 jakllsch }
1298 1.1 jakllsch
1299 1.1 jakllsch er->xr_ep = i;
1300 1.1 jakllsch er->xr_cs = j;
1301 1.1 jakllsch
1302 1.1 jakllsch xhci_rt_write_8(sc, XHCI_ERDP(0), xhci_ring_trbp(er, er->xr_ep) |
1303 1.1 jakllsch XHCI_ERDP_LO_BUSY);
1304 1.1 jakllsch
1305 1.1 jakllsch DPRINTF(("%s: %s ends\n", __func__, device_xname(sc->sc_dev)));
1306 1.1 jakllsch
1307 1.1 jakllsch return;
1308 1.1 jakllsch }
1309 1.1 jakllsch
1310 1.1 jakllsch static void
1311 1.1 jakllsch xhci_poll(struct usbd_bus *bus)
1312 1.1 jakllsch {
1313 1.1 jakllsch struct xhci_softc * const sc = bus->hci_private;
1314 1.1 jakllsch
1315 1.1 jakllsch DPRINTF(("%s: %s\n", __func__, device_xname(sc->sc_dev)));
1316 1.1 jakllsch
1317 1.1 jakllsch xhci_intr1(sc);
1318 1.1 jakllsch
1319 1.1 jakllsch return;
1320 1.1 jakllsch }
1321 1.1 jakllsch
1322 1.1 jakllsch static usbd_status
1323 1.1 jakllsch xhci_allocm(struct usbd_bus *bus, usb_dma_t *dma, uint32_t size)
1324 1.1 jakllsch {
1325 1.1 jakllsch struct xhci_softc * const sc = bus->hci_private;
1326 1.1 jakllsch usbd_status err;
1327 1.1 jakllsch
1328 1.1 jakllsch DPRINTF(("%s\n", __func__));
1329 1.1 jakllsch
1330 1.1 jakllsch err = usb_allocmem_flags(&sc->sc_bus, size, 0, dma, 0);
1331 1.1 jakllsch #if 0
1332 1.1 jakllsch if (err == USBD_NOMEM)
1333 1.1 jakllsch err = usb_reserve_allocm(&sc->sc_dma_reserve, dma, size);
1334 1.1 jakllsch #endif
1335 1.1 jakllsch #ifdef XHCI_DEBUG
1336 1.1 jakllsch if (err)
1337 1.1 jakllsch device_printf(sc->sc_dev, "xhci_allocm: usb_allocmem()=%d\n",
1338 1.1 jakllsch err);
1339 1.1 jakllsch #endif
1340 1.1 jakllsch
1341 1.1 jakllsch return err;
1342 1.1 jakllsch }
1343 1.1 jakllsch
1344 1.1 jakllsch static void
1345 1.1 jakllsch xhci_freem(struct usbd_bus *bus, usb_dma_t *dma)
1346 1.1 jakllsch {
1347 1.1 jakllsch struct xhci_softc * const sc = bus->hci_private;
1348 1.1 jakllsch
1349 1.1 jakllsch // DPRINTF(("%s\n", __func__));
1350 1.1 jakllsch
1351 1.1 jakllsch #if 0
1352 1.1 jakllsch if (dma->block->flags & USB_DMA_RESERVE) {
1353 1.1 jakllsch usb_reserve_freem(&sc->sc_dma_reserve, dma);
1354 1.1 jakllsch return;
1355 1.1 jakllsch }
1356 1.1 jakllsch #endif
1357 1.1 jakllsch usb_freemem(&sc->sc_bus, dma);
1358 1.1 jakllsch }
1359 1.1 jakllsch
1360 1.1 jakllsch static usbd_xfer_handle
1361 1.1 jakllsch xhci_allocx(struct usbd_bus *bus)
1362 1.1 jakllsch {
1363 1.1 jakllsch struct xhci_softc * const sc = bus->hci_private;
1364 1.1 jakllsch usbd_xfer_handle xfer;
1365 1.1 jakllsch
1366 1.1 jakllsch // DPRINTF(("%s\n", __func__));
1367 1.1 jakllsch
1368 1.1 jakllsch xfer = pool_cache_get(sc->sc_xferpool, PR_NOWAIT);
1369 1.1 jakllsch if (xfer != NULL) {
1370 1.6 skrll memset(xfer, 0, sizeof(struct xhci_xfer));
1371 1.1 jakllsch #ifdef DIAGNOSTIC
1372 1.1 jakllsch xfer->busy_free = XFER_BUSY;
1373 1.1 jakllsch #endif
1374 1.1 jakllsch }
1375 1.1 jakllsch
1376 1.1 jakllsch return xfer;
1377 1.1 jakllsch }
1378 1.1 jakllsch
1379 1.1 jakllsch static void
1380 1.1 jakllsch xhci_freex(struct usbd_bus *bus, usbd_xfer_handle xfer)
1381 1.1 jakllsch {
1382 1.1 jakllsch struct xhci_softc * const sc = bus->hci_private;
1383 1.1 jakllsch
1384 1.1 jakllsch // DPRINTF(("%s\n", __func__));
1385 1.1 jakllsch
1386 1.1 jakllsch #ifdef DIAGNOSTIC
1387 1.1 jakllsch if (xfer->busy_free != XFER_BUSY) {
1388 1.1 jakllsch device_printf(sc->sc_dev, "xhci_freex: xfer=%p "
1389 1.1 jakllsch "not busy, 0x%08x\n", xfer, xfer->busy_free);
1390 1.1 jakllsch }
1391 1.1 jakllsch xfer->busy_free = XFER_FREE;
1392 1.1 jakllsch #endif
1393 1.1 jakllsch pool_cache_put(sc->sc_xferpool, xfer);
1394 1.1 jakllsch }
1395 1.1 jakllsch
1396 1.1 jakllsch static void
1397 1.1 jakllsch xhci_get_lock(struct usbd_bus *bus, kmutex_t **lock)
1398 1.1 jakllsch {
1399 1.1 jakllsch struct xhci_softc * const sc = bus->hci_private;
1400 1.1 jakllsch
1401 1.1 jakllsch *lock = &sc->sc_lock;
1402 1.1 jakllsch }
1403 1.1 jakllsch
1404 1.1 jakllsch extern u_int32_t usb_cookie_no;
1405 1.1 jakllsch
1406 1.1 jakllsch static usbd_status
1407 1.1 jakllsch xhci_new_device(device_t parent, usbd_bus_handle bus, int depth,
1408 1.1 jakllsch int speed, int port, struct usbd_port *up)
1409 1.1 jakllsch {
1410 1.1 jakllsch struct xhci_softc * const sc = bus->hci_private;
1411 1.1 jakllsch usbd_device_handle dev;
1412 1.1 jakllsch usbd_status err;
1413 1.1 jakllsch usb_device_descriptor_t *dd;
1414 1.1 jakllsch struct usbd_device *hub;
1415 1.1 jakllsch struct usbd_device *adev;
1416 1.1 jakllsch int rhport = 0;
1417 1.1 jakllsch struct xhci_slot *xs;
1418 1.1 jakllsch uint32_t *cp;
1419 1.1 jakllsch uint8_t slot;
1420 1.1 jakllsch uint8_t addr;
1421 1.1 jakllsch
1422 1.1 jakllsch dev = malloc(sizeof *dev, M_USB, M_NOWAIT|M_ZERO);
1423 1.1 jakllsch if (dev == NULL)
1424 1.1 jakllsch return USBD_NOMEM;
1425 1.1 jakllsch
1426 1.1 jakllsch dev->bus = bus;
1427 1.1 jakllsch
1428 1.1 jakllsch /* Set up default endpoint handle. */
1429 1.1 jakllsch dev->def_ep.edesc = &dev->def_ep_desc;
1430 1.1 jakllsch
1431 1.1 jakllsch /* Set up default endpoint descriptor. */
1432 1.1 jakllsch dev->def_ep_desc.bLength = USB_ENDPOINT_DESCRIPTOR_SIZE;
1433 1.1 jakllsch dev->def_ep_desc.bDescriptorType = UDESC_ENDPOINT;
1434 1.1 jakllsch dev->def_ep_desc.bEndpointAddress = USB_CONTROL_ENDPOINT;
1435 1.1 jakllsch dev->def_ep_desc.bmAttributes = UE_CONTROL;
1436 1.1 jakllsch /* XXX */
1437 1.1 jakllsch USETW(dev->def_ep_desc.wMaxPacketSize, 64);
1438 1.1 jakllsch dev->def_ep_desc.bInterval = 0;
1439 1.1 jakllsch
1440 1.1 jakllsch /* doesn't matter, just don't let it uninitialized */
1441 1.1 jakllsch dev->def_ep.datatoggle = 0;
1442 1.1 jakllsch
1443 1.1 jakllsch device_printf(sc->sc_dev, "%s up %p portno %d\n", __func__, up,
1444 1.1 jakllsch up->portno);
1445 1.1 jakllsch
1446 1.1 jakllsch dev->quirks = &usbd_no_quirk;
1447 1.1 jakllsch dev->address = 0;
1448 1.1 jakllsch dev->ddesc.bMaxPacketSize = 0;
1449 1.1 jakllsch dev->depth = depth;
1450 1.1 jakllsch dev->powersrc = up;
1451 1.1 jakllsch dev->myhub = up->parent;
1452 1.1 jakllsch
1453 1.1 jakllsch up->device = dev;
1454 1.1 jakllsch
1455 1.1 jakllsch /* Locate root hub port */
1456 1.1 jakllsch for (adev = dev, hub = dev;
1457 1.1 jakllsch hub != NULL;
1458 1.1 jakllsch adev = hub, hub = hub->myhub) {
1459 1.1 jakllsch device_printf(sc->sc_dev, "%s hub %p\n", __func__, hub);
1460 1.1 jakllsch }
1461 1.1 jakllsch device_printf(sc->sc_dev, "%s hub %p\n", __func__, hub);
1462 1.1 jakllsch
1463 1.1 jakllsch if (hub != NULL) {
1464 1.1 jakllsch for (int p = 0; p < hub->hub->hubdesc.bNbrPorts; p++) {
1465 1.1 jakllsch if (hub->hub->ports[p].device == adev) {
1466 1.1 jakllsch rhport = p;
1467 1.1 jakllsch }
1468 1.1 jakllsch }
1469 1.1 jakllsch } else {
1470 1.1 jakllsch rhport = port;
1471 1.1 jakllsch }
1472 1.1 jakllsch if (speed == USB_SPEED_SUPER) {
1473 1.1 jakllsch rhport += sc->sc_ss_port_start - 1;
1474 1.1 jakllsch } else {
1475 1.1 jakllsch rhport += sc->sc_hs_port_start - 1;
1476 1.1 jakllsch }
1477 1.1 jakllsch device_printf(sc->sc_dev, "%s rhport %d\n", __func__, rhport);
1478 1.1 jakllsch
1479 1.1 jakllsch dev->speed = speed;
1480 1.1 jakllsch dev->langid = USBD_NOLANG;
1481 1.1 jakllsch dev->cookie.cookie = ++usb_cookie_no;
1482 1.1 jakllsch
1483 1.1 jakllsch /* Establish the default pipe. */
1484 1.1 jakllsch err = usbd_setup_pipe(dev, 0, &dev->def_ep, USBD_DEFAULT_INTERVAL,
1485 1.1 jakllsch &dev->default_pipe);
1486 1.1 jakllsch if (err) {
1487 1.1 jakllsch usbd_remove_device(dev, up);
1488 1.1 jakllsch return (err);
1489 1.1 jakllsch }
1490 1.1 jakllsch
1491 1.1 jakllsch dd = &dev->ddesc;
1492 1.1 jakllsch
1493 1.1 jakllsch if ((depth == 0) && (port == 0)) {
1494 1.1 jakllsch KASSERT(bus->devices[dev->address] == NULL);
1495 1.1 jakllsch bus->devices[dev->address] = dev;
1496 1.1 jakllsch err = usbd_get_initial_ddesc(dev, dd);
1497 1.1 jakllsch if (err)
1498 1.1 jakllsch return err;
1499 1.1 jakllsch err = usbd_reload_device_desc(dev);
1500 1.1 jakllsch if (err)
1501 1.1 jakllsch return err;
1502 1.1 jakllsch } else {
1503 1.1 jakllsch err = xhci_enable_slot(sc, &slot);
1504 1.1 jakllsch if (err)
1505 1.1 jakllsch return err;
1506 1.1 jakllsch err = xhci_init_slot(sc, slot, depth, speed, port, rhport);
1507 1.1 jakllsch if (err)
1508 1.1 jakllsch return err;
1509 1.1 jakllsch xs = &sc->sc_slots[slot];
1510 1.1 jakllsch dev->hci_private = xs;
1511 1.1 jakllsch cp = xhci_slot_get_dcv(sc, xs, XHCI_DCI_SLOT);
1512 1.1 jakllsch //hexdump("slot context", cp, sc->sc_ctxsz);
1513 1.1 jakllsch addr = XHCI_SCTX_3_DEV_ADDR_GET(cp[3]);
1514 1.1 jakllsch device_printf(sc->sc_dev, "%s device address %u\n",
1515 1.1 jakllsch __func__, addr);
1516 1.1 jakllsch /* XXX ensure we know when the hardware does something
1517 1.1 jakllsch we can't yet cope with */
1518 1.1 jakllsch KASSERT(addr >= 1 && addr <= 127);
1519 1.1 jakllsch dev->address = addr;
1520 1.1 jakllsch /* XXX dev->address not necessarily unique on bus */
1521 1.1 jakllsch KASSERT(bus->devices[dev->address] == NULL);
1522 1.1 jakllsch bus->devices[dev->address] = dev;
1523 1.1 jakllsch
1524 1.1 jakllsch err = usbd_get_initial_ddesc(dev, dd);
1525 1.1 jakllsch if (err)
1526 1.1 jakllsch return err;
1527 1.1 jakllsch USETW(dev->def_ep_desc.wMaxPacketSize, dd->bMaxPacketSize);
1528 1.3 skrll device_printf(sc->sc_dev, "%s bMaxPacketSize %u\n", __func__,
1529 1.3 skrll dd->bMaxPacketSize);
1530 1.1 jakllsch xhci_update_ep0_mps(sc, xs, dd->bMaxPacketSize);
1531 1.1 jakllsch err = usbd_reload_device_desc(dev);
1532 1.1 jakllsch if (err)
1533 1.1 jakllsch return err;
1534 1.1 jakllsch
1535 1.1 jakllsch usbd_kill_pipe(dev->default_pipe);
1536 1.1 jakllsch err = usbd_setup_pipe(dev, 0, &dev->def_ep,
1537 1.1 jakllsch USBD_DEFAULT_INTERVAL, &dev->default_pipe);
1538 1.1 jakllsch }
1539 1.1 jakllsch
1540 1.1 jakllsch DPRINTF(("usbd_new_device: adding unit addr=%d, rev=%02x, class=%d, "
1541 1.1 jakllsch "subclass=%d, protocol=%d, maxpacket=%d, len=%d, noconf=%d, "
1542 1.1 jakllsch "speed=%d\n", dev->address,UGETW(dd->bcdUSB),
1543 1.1 jakllsch dd->bDeviceClass, dd->bDeviceSubClass, dd->bDeviceProtocol,
1544 1.1 jakllsch dd->bMaxPacketSize, dd->bLength, dd->bNumConfigurations,
1545 1.1 jakllsch dev->speed));
1546 1.1 jakllsch
1547 1.1 jakllsch usbd_add_dev_event(USB_EVENT_DEVICE_ATTACH, dev);
1548 1.1 jakllsch
1549 1.1 jakllsch if ((depth == 0) && (port == 0)) {
1550 1.1 jakllsch usbd_attach_roothub(parent, dev);
1551 1.1 jakllsch device_printf(sc->sc_dev, "root_hub %p\n", bus->root_hub);
1552 1.1 jakllsch return USBD_NORMAL_COMPLETION;
1553 1.1 jakllsch }
1554 1.1 jakllsch
1555 1.1 jakllsch
1556 1.1 jakllsch err = usbd_probe_and_attach(parent, dev, port, dev->address);
1557 1.1 jakllsch if (err) {
1558 1.1 jakllsch usbd_remove_device(dev, up);
1559 1.1 jakllsch return (err);
1560 1.1 jakllsch }
1561 1.1 jakllsch
1562 1.1 jakllsch return USBD_NORMAL_COMPLETION;
1563 1.1 jakllsch }
1564 1.1 jakllsch
1565 1.1 jakllsch static usbd_status
1566 1.1 jakllsch xhci_ring_init(struct xhci_softc * const sc, struct xhci_ring * const xr,
1567 1.1 jakllsch size_t ntrb, size_t align)
1568 1.1 jakllsch {
1569 1.1 jakllsch usbd_status err;
1570 1.1 jakllsch size_t size = ntrb * XHCI_TRB_SIZE;
1571 1.1 jakllsch
1572 1.1 jakllsch err = usb_allocmem(&sc->sc_bus, size, align, &xr->xr_dma);
1573 1.1 jakllsch if (err)
1574 1.1 jakllsch return err;
1575 1.1 jakllsch mutex_init(&xr->xr_lock, MUTEX_DEFAULT, IPL_SOFTUSB);
1576 1.1 jakllsch xr->xr_cookies = kmem_zalloc(sizeof(*xr->xr_cookies) * ntrb, KM_SLEEP);
1577 1.1 jakllsch xr->xr_trb = xhci_ring_trbv(xr, 0);
1578 1.1 jakllsch xr->xr_ntrb = ntrb;
1579 1.1 jakllsch xr->xr_ep = 0;
1580 1.1 jakllsch xr->xr_cs = 1;
1581 1.1 jakllsch memset(xr->xr_trb, 0, size);
1582 1.1 jakllsch usb_syncmem(&xr->xr_dma, 0, size, BUS_DMASYNC_PREWRITE);
1583 1.1 jakllsch xr->is_halted = false;
1584 1.1 jakllsch
1585 1.1 jakllsch return USBD_NORMAL_COMPLETION;
1586 1.1 jakllsch }
1587 1.1 jakllsch
1588 1.1 jakllsch static void
1589 1.1 jakllsch xhci_ring_free(struct xhci_softc * const sc, struct xhci_ring * const xr)
1590 1.1 jakllsch {
1591 1.1 jakllsch usb_freemem(&sc->sc_bus, &xr->xr_dma);
1592 1.1 jakllsch mutex_destroy(&xr->xr_lock);
1593 1.1 jakllsch kmem_free(xr->xr_cookies, sizeof(*xr->xr_cookies) * xr->xr_ntrb);
1594 1.1 jakllsch }
1595 1.1 jakllsch
1596 1.1 jakllsch static void
1597 1.1 jakllsch xhci_ring_put(struct xhci_softc * const sc, struct xhci_ring * const xr,
1598 1.1 jakllsch void *cookie, struct xhci_trb * const trbs, size_t ntrbs)
1599 1.1 jakllsch {
1600 1.1 jakllsch size_t i;
1601 1.1 jakllsch u_int ri;
1602 1.1 jakllsch u_int cs;
1603 1.1 jakllsch uint64_t parameter;
1604 1.1 jakllsch uint32_t status;
1605 1.1 jakllsch uint32_t control;
1606 1.1 jakllsch
1607 1.1 jakllsch for (i = 0; i < ntrbs; i++) {
1608 1.1 jakllsch #if 0
1609 1.1 jakllsch device_printf(sc->sc_dev, "%s %p %p %zu "
1610 1.1 jakllsch "%016"PRIx64" %08"PRIx32" %08"PRIx32"\n", __func__, xr,
1611 1.1 jakllsch trbs, i, trbs[i].trb_0, trbs[i].trb_2, trbs[i].trb_3);
1612 1.1 jakllsch #endif
1613 1.1 jakllsch KASSERT(XHCI_TRB_3_TYPE_GET(trbs[i].trb_3) !=
1614 1.1 jakllsch XHCI_TRB_TYPE_LINK);
1615 1.1 jakllsch }
1616 1.1 jakllsch
1617 1.1 jakllsch #if 0
1618 1.1 jakllsch device_printf(sc->sc_dev, "%s %p xr_ep 0x%x xr_cs %u\n", __func__,
1619 1.1 jakllsch xr, xr->xr_ep, xr->xr_cs);
1620 1.1 jakllsch #endif
1621 1.1 jakllsch
1622 1.1 jakllsch ri = xr->xr_ep;
1623 1.1 jakllsch cs = xr->xr_cs;
1624 1.1 jakllsch
1625 1.11 dsl /*
1626 1.11 dsl * Although the xhci hardware can do scatter/gather dma from
1627 1.11 dsl * arbitrary sized buffers, there is a non-obvious restriction
1628 1.11 dsl * that a LINK trb is only allowed at the end of a burst of
1629 1.11 dsl * transfers - which might be 16kB.
1630 1.11 dsl * Arbitrary aligned LINK trb definitely fail on Ivy bridge.
1631 1.11 dsl * The simple solution is not to allow a LINK trb in the middle
1632 1.11 dsl * of anything - as here.
1633 1.13 dsl * XXX: (dsl) There are xhci controllers out there (eg some made by
1634 1.13 dsl * ASMedia) that seem to lock up if they process a LINK trb but
1635 1.13 dsl * cannot process the linked-to trb yet.
1636 1.13 dsl * The code should write the 'cycle' bit on the link trb AFTER
1637 1.13 dsl * adding the other trb.
1638 1.11 dsl */
1639 1.1 jakllsch if (ri + ntrbs >= (xr->xr_ntrb - 1)) {
1640 1.1 jakllsch parameter = xhci_ring_trbp(xr, 0);
1641 1.1 jakllsch status = 0;
1642 1.1 jakllsch control = XHCI_TRB_3_TYPE_SET(XHCI_TRB_TYPE_LINK) |
1643 1.1 jakllsch XHCI_TRB_3_TC_BIT | (cs ? XHCI_TRB_3_CYCLE_BIT : 0);
1644 1.1 jakllsch xhci_trb_put(&xr->xr_trb[ri], htole64(parameter),
1645 1.1 jakllsch htole32(status), htole32(control));
1646 1.1 jakllsch usb_syncmem(&xr->xr_dma, XHCI_TRB_SIZE * ri, XHCI_TRB_SIZE * 1,
1647 1.1 jakllsch BUS_DMASYNC_PREWRITE);
1648 1.1 jakllsch xr->xr_cookies[ri] = NULL;
1649 1.1 jakllsch xr->xr_ep = 0;
1650 1.1 jakllsch xr->xr_cs ^= 1;
1651 1.1 jakllsch ri = xr->xr_ep;
1652 1.1 jakllsch cs = xr->xr_cs;
1653 1.1 jakllsch }
1654 1.1 jakllsch
1655 1.1 jakllsch ri++;
1656 1.1 jakllsch
1657 1.11 dsl /* Write any subsequent TRB first */
1658 1.1 jakllsch for (i = 1; i < ntrbs; i++) {
1659 1.1 jakllsch parameter = trbs[i].trb_0;
1660 1.1 jakllsch status = trbs[i].trb_2;
1661 1.1 jakllsch control = trbs[i].trb_3;
1662 1.1 jakllsch
1663 1.1 jakllsch if (cs) {
1664 1.1 jakllsch control |= XHCI_TRB_3_CYCLE_BIT;
1665 1.1 jakllsch } else {
1666 1.1 jakllsch control &= ~XHCI_TRB_3_CYCLE_BIT;
1667 1.1 jakllsch }
1668 1.1 jakllsch
1669 1.1 jakllsch xhci_trb_put(&xr->xr_trb[ri], htole64(parameter),
1670 1.1 jakllsch htole32(status), htole32(control));
1671 1.1 jakllsch usb_syncmem(&xr->xr_dma, XHCI_TRB_SIZE * ri, XHCI_TRB_SIZE * 1,
1672 1.1 jakllsch BUS_DMASYNC_PREWRITE);
1673 1.1 jakllsch xr->xr_cookies[ri] = cookie;
1674 1.1 jakllsch ri++;
1675 1.1 jakllsch }
1676 1.1 jakllsch
1677 1.11 dsl /* Write the first TRB last */
1678 1.1 jakllsch i = 0;
1679 1.1 jakllsch {
1680 1.1 jakllsch parameter = trbs[i].trb_0;
1681 1.1 jakllsch status = trbs[i].trb_2;
1682 1.1 jakllsch control = trbs[i].trb_3;
1683 1.1 jakllsch
1684 1.1 jakllsch if (xr->xr_cs) {
1685 1.1 jakllsch control |= XHCI_TRB_3_CYCLE_BIT;
1686 1.1 jakllsch } else {
1687 1.1 jakllsch control &= ~XHCI_TRB_3_CYCLE_BIT;
1688 1.1 jakllsch }
1689 1.1 jakllsch
1690 1.1 jakllsch xhci_trb_put(&xr->xr_trb[xr->xr_ep], htole64(parameter),
1691 1.1 jakllsch htole32(status), htole32(control));
1692 1.1 jakllsch usb_syncmem(&xr->xr_dma, XHCI_TRB_SIZE * ri, XHCI_TRB_SIZE * 1,
1693 1.1 jakllsch BUS_DMASYNC_PREWRITE);
1694 1.1 jakllsch xr->xr_cookies[xr->xr_ep] = cookie;
1695 1.1 jakllsch }
1696 1.1 jakllsch
1697 1.1 jakllsch xr->xr_ep = ri;
1698 1.1 jakllsch xr->xr_cs = cs;
1699 1.1 jakllsch
1700 1.1 jakllsch #if 0
1701 1.1 jakllsch device_printf(sc->sc_dev, "%s %p xr_ep 0x%x xr_cs %u\n", __func__,
1702 1.1 jakllsch xr, xr->xr_ep, xr->xr_cs);
1703 1.1 jakllsch #endif
1704 1.1 jakllsch }
1705 1.1 jakllsch
1706 1.1 jakllsch static usbd_status
1707 1.1 jakllsch xhci_do_command(struct xhci_softc * const sc, struct xhci_trb * const trb,
1708 1.1 jakllsch int timeout)
1709 1.1 jakllsch {
1710 1.1 jakllsch struct xhci_ring * const cr = &sc->sc_cr;
1711 1.1 jakllsch usbd_status err;
1712 1.1 jakllsch
1713 1.1 jakllsch device_printf(sc->sc_dev, "%s input: "
1714 1.1 jakllsch "0x%016"PRIx64" 0x%08"PRIx32" 0x%08"PRIx32"\n", __func__,
1715 1.1 jakllsch trb->trb_0, trb->trb_2, trb->trb_3);
1716 1.1 jakllsch
1717 1.1 jakllsch mutex_enter(&sc->sc_lock);
1718 1.1 jakllsch
1719 1.1 jakllsch KASSERT(sc->sc_command_addr == 0);
1720 1.1 jakllsch sc->sc_command_addr = xhci_ring_trbp(cr, cr->xr_ep);
1721 1.1 jakllsch
1722 1.1 jakllsch mutex_enter(&cr->xr_lock);
1723 1.1 jakllsch xhci_ring_put(sc, cr, NULL, trb, 1);
1724 1.1 jakllsch mutex_exit(&cr->xr_lock);
1725 1.1 jakllsch
1726 1.1 jakllsch xhci_db_write_4(sc, XHCI_DOORBELL(0), 0);
1727 1.1 jakllsch
1728 1.1 jakllsch if (cv_timedwait(&sc->sc_command_cv, &sc->sc_lock,
1729 1.1 jakllsch MAX(1, mstohz(timeout))) == EWOULDBLOCK) {
1730 1.1 jakllsch err = USBD_TIMEOUT;
1731 1.1 jakllsch goto timedout;
1732 1.1 jakllsch }
1733 1.1 jakllsch
1734 1.1 jakllsch trb->trb_0 = sc->sc_result_trb.trb_0;
1735 1.1 jakllsch trb->trb_2 = sc->sc_result_trb.trb_2;
1736 1.1 jakllsch trb->trb_3 = sc->sc_result_trb.trb_3;
1737 1.1 jakllsch
1738 1.1 jakllsch device_printf(sc->sc_dev, "%s output: "
1739 1.1 jakllsch "0x%016"PRIx64" 0x%08"PRIx32" 0x%08"PRIx32"\n", __func__,
1740 1.1 jakllsch trb->trb_0, trb->trb_2, trb->trb_3);
1741 1.1 jakllsch
1742 1.1 jakllsch switch (XHCI_TRB_2_ERROR_GET(trb->trb_2)) {
1743 1.1 jakllsch case XHCI_TRB_ERROR_SUCCESS:
1744 1.1 jakllsch err = USBD_NORMAL_COMPLETION;
1745 1.1 jakllsch break;
1746 1.1 jakllsch default:
1747 1.1 jakllsch case 192 ... 223:
1748 1.1 jakllsch err = USBD_IOERROR;
1749 1.1 jakllsch break;
1750 1.1 jakllsch case 224 ... 255:
1751 1.1 jakllsch err = USBD_NORMAL_COMPLETION;
1752 1.1 jakllsch break;
1753 1.1 jakllsch }
1754 1.1 jakllsch
1755 1.1 jakllsch timedout:
1756 1.1 jakllsch sc->sc_command_addr = 0;
1757 1.1 jakllsch mutex_exit(&sc->sc_lock);
1758 1.1 jakllsch return err;
1759 1.1 jakllsch }
1760 1.1 jakllsch
1761 1.1 jakllsch static usbd_status
1762 1.1 jakllsch xhci_enable_slot(struct xhci_softc * const sc, uint8_t * const slotp)
1763 1.1 jakllsch {
1764 1.1 jakllsch struct xhci_trb trb;
1765 1.1 jakllsch usbd_status err;
1766 1.1 jakllsch
1767 1.1 jakllsch trb.trb_0 = 0;
1768 1.1 jakllsch trb.trb_2 = 0;
1769 1.1 jakllsch trb.trb_3 = XHCI_TRB_3_TYPE_SET(XHCI_TRB_TYPE_ENABLE_SLOT);
1770 1.1 jakllsch
1771 1.1 jakllsch err = xhci_do_command(sc, &trb, USBD_DEFAULT_TIMEOUT);
1772 1.1 jakllsch if (err != USBD_NORMAL_COMPLETION) {
1773 1.1 jakllsch return err;
1774 1.1 jakllsch }
1775 1.1 jakllsch
1776 1.1 jakllsch *slotp = XHCI_TRB_3_SLOT_GET(trb.trb_3);
1777 1.1 jakllsch
1778 1.1 jakllsch return err;
1779 1.1 jakllsch }
1780 1.1 jakllsch
1781 1.1 jakllsch static usbd_status
1782 1.1 jakllsch xhci_address_device(struct xhci_softc * const sc,
1783 1.1 jakllsch uint64_t icp, uint8_t slot_id, bool bsr)
1784 1.1 jakllsch {
1785 1.1 jakllsch struct xhci_trb trb;
1786 1.1 jakllsch usbd_status err;
1787 1.1 jakllsch
1788 1.1 jakllsch trb.trb_0 = icp;
1789 1.1 jakllsch trb.trb_2 = 0;
1790 1.1 jakllsch trb.trb_3 = XHCI_TRB_3_SLOT_SET(slot_id) |
1791 1.1 jakllsch XHCI_TRB_3_TYPE_SET(XHCI_TRB_TYPE_ADDRESS_DEVICE) |
1792 1.1 jakllsch (bsr ? XHCI_TRB_3_BSR_BIT : 0);
1793 1.1 jakllsch
1794 1.1 jakllsch err = xhci_do_command(sc, &trb, USBD_DEFAULT_TIMEOUT);
1795 1.1 jakllsch return err;
1796 1.1 jakllsch }
1797 1.1 jakllsch
1798 1.1 jakllsch static usbd_status
1799 1.1 jakllsch xhci_update_ep0_mps(struct xhci_softc * const sc,
1800 1.1 jakllsch struct xhci_slot * const xs, u_int mps)
1801 1.1 jakllsch {
1802 1.1 jakllsch struct xhci_trb trb;
1803 1.1 jakllsch usbd_status err;
1804 1.1 jakllsch uint32_t * cp;
1805 1.1 jakllsch
1806 1.1 jakllsch device_printf(sc->sc_dev, "%s\n", __func__);
1807 1.1 jakllsch
1808 1.1 jakllsch cp = xhci_slot_get_icv(sc, xs, XHCI_ICI_INPUT_CONTROL);
1809 1.1 jakllsch cp[0] = htole32(0);
1810 1.1 jakllsch cp[1] = htole32(XHCI_INCTX_1_ADD_MASK(XHCI_DCI_EP_CONTROL));
1811 1.1 jakllsch
1812 1.1 jakllsch cp = xhci_slot_get_icv(sc, xs, xhci_dci_to_ici(XHCI_DCI_EP_CONTROL));
1813 1.1 jakllsch cp[1] = htole32(XHCI_EPCTX_1_MAXP_SIZE_SET(mps));
1814 1.1 jakllsch
1815 1.1 jakllsch /* sync input contexts before they are read from memory */
1816 1.1 jakllsch usb_syncmem(&xs->xs_ic_dma, 0, sc->sc_pgsz, BUS_DMASYNC_PREWRITE);
1817 1.1 jakllsch hexdump("input context", xhci_slot_get_icv(sc, xs, 0),
1818 1.1 jakllsch sc->sc_ctxsz * 4);
1819 1.1 jakllsch
1820 1.1 jakllsch trb.trb_0 = xhci_slot_get_icp(sc, xs, 0);
1821 1.1 jakllsch trb.trb_2 = 0;
1822 1.1 jakllsch trb.trb_3 = XHCI_TRB_3_SLOT_SET(xs->xs_idx) |
1823 1.1 jakllsch XHCI_TRB_3_TYPE_SET(XHCI_TRB_TYPE_EVALUATE_CTX);
1824 1.1 jakllsch
1825 1.1 jakllsch err = xhci_do_command(sc, &trb, USBD_DEFAULT_TIMEOUT);
1826 1.1 jakllsch KASSERT(err == USBD_NORMAL_COMPLETION); /* XXX */
1827 1.1 jakllsch return err;
1828 1.1 jakllsch }
1829 1.1 jakllsch
1830 1.1 jakllsch static void
1831 1.1 jakllsch xhci_set_dcba(struct xhci_softc * const sc, uint64_t dcba, int si)
1832 1.1 jakllsch {
1833 1.1 jakllsch uint64_t * const dcbaa = KERNADDR(&sc->sc_dcbaa_dma, 0);
1834 1.1 jakllsch
1835 1.1 jakllsch device_printf(sc->sc_dev, "dcbaa %p dc %016"PRIx64" slot %d\n",
1836 1.1 jakllsch &dcbaa[si], dcba, si);
1837 1.1 jakllsch
1838 1.5 matt dcbaa[si] = htole64(dcba);
1839 1.1 jakllsch usb_syncmem(&sc->sc_dcbaa_dma, si * sizeof(uint64_t), sizeof(uint64_t),
1840 1.1 jakllsch BUS_DMASYNC_PREWRITE);
1841 1.1 jakllsch }
1842 1.1 jakllsch
1843 1.1 jakllsch static usbd_status
1844 1.1 jakllsch xhci_init_slot(struct xhci_softc * const sc, uint32_t slot, int depth,
1845 1.1 jakllsch int speed, int port, int rhport)
1846 1.1 jakllsch {
1847 1.1 jakllsch struct xhci_slot *xs;
1848 1.1 jakllsch usbd_status err;
1849 1.1 jakllsch u_int dci;
1850 1.1 jakllsch uint32_t *cp;
1851 1.1 jakllsch uint32_t mps;
1852 1.1 jakllsch uint32_t xspeed;
1853 1.1 jakllsch
1854 1.1 jakllsch switch (speed) {
1855 1.1 jakllsch case USB_SPEED_LOW:
1856 1.1 jakllsch xspeed = 2;
1857 1.1 jakllsch mps = USB_MAX_IPACKET;
1858 1.1 jakllsch break;
1859 1.1 jakllsch case USB_SPEED_FULL:
1860 1.1 jakllsch xspeed = 1;
1861 1.1 jakllsch mps = 64;
1862 1.1 jakllsch break;
1863 1.1 jakllsch case USB_SPEED_HIGH:
1864 1.1 jakllsch xspeed = 3;
1865 1.1 jakllsch mps = USB_2_MAX_CTRL_PACKET;
1866 1.1 jakllsch break;
1867 1.1 jakllsch case USB_SPEED_SUPER:
1868 1.1 jakllsch xspeed = 4;
1869 1.1 jakllsch mps = USB_3_MAX_CTRL_PACKET;
1870 1.1 jakllsch break;
1871 1.8 mrg default:
1872 1.8 mrg device_printf(sc->sc_dev, "%s: impossible speed: %x",
1873 1.8 mrg __func__, speed);
1874 1.8 mrg return USBD_INVAL;
1875 1.1 jakllsch }
1876 1.1 jakllsch
1877 1.1 jakllsch xs = &sc->sc_slots[slot];
1878 1.1 jakllsch xs->xs_idx = slot;
1879 1.1 jakllsch
1880 1.1 jakllsch /* allocate contexts */
1881 1.1 jakllsch err = usb_allocmem(&sc->sc_bus, sc->sc_pgsz, sc->sc_pgsz,
1882 1.1 jakllsch &xs->xs_dc_dma);
1883 1.1 jakllsch if (err)
1884 1.1 jakllsch return err;
1885 1.1 jakllsch memset(KERNADDR(&xs->xs_dc_dma, 0), 0, sc->sc_pgsz);
1886 1.1 jakllsch
1887 1.1 jakllsch err = usb_allocmem(&sc->sc_bus, sc->sc_pgsz, sc->sc_pgsz,
1888 1.1 jakllsch &xs->xs_ic_dma);
1889 1.1 jakllsch if (err)
1890 1.1 jakllsch return err;
1891 1.1 jakllsch memset(KERNADDR(&xs->xs_ic_dma, 0), 0, sc->sc_pgsz);
1892 1.1 jakllsch
1893 1.1 jakllsch for (dci = 0; dci < 32; dci++) {
1894 1.1 jakllsch //CTASSERT(sizeof(xs->xs_ep[dci]) == sizeof(struct xhci_endpoint));
1895 1.1 jakllsch memset(&xs->xs_ep[dci], 0, sizeof(xs->xs_ep[dci]));
1896 1.1 jakllsch if (dci == XHCI_DCI_SLOT)
1897 1.1 jakllsch continue;
1898 1.1 jakllsch err = xhci_ring_init(sc, &xs->xs_ep[dci].xe_tr,
1899 1.1 jakllsch XHCI_TRANSFER_RING_TRBS, XHCI_TRB_ALIGN);
1900 1.1 jakllsch if (err) {
1901 1.1 jakllsch device_printf(sc->sc_dev, "ring init failure\n");
1902 1.1 jakllsch return err;
1903 1.1 jakllsch }
1904 1.1 jakllsch }
1905 1.1 jakllsch
1906 1.1 jakllsch /* set up initial input control context */
1907 1.1 jakllsch cp = xhci_slot_get_icv(sc, xs, XHCI_ICI_INPUT_CONTROL);
1908 1.1 jakllsch cp[0] = htole32(0);
1909 1.1 jakllsch cp[1] = htole32(XHCI_INCTX_1_ADD_MASK(XHCI_DCI_EP_CONTROL)|
1910 1.1 jakllsch XHCI_INCTX_1_ADD_MASK(XHCI_DCI_SLOT));
1911 1.1 jakllsch
1912 1.1 jakllsch /* set up input slot context */
1913 1.1 jakllsch cp = xhci_slot_get_icv(sc, xs, xhci_dci_to_ici(XHCI_DCI_SLOT));
1914 1.1 jakllsch cp[0] = htole32(
1915 1.1 jakllsch XHCI_SCTX_0_CTX_NUM_SET(1) |
1916 1.1 jakllsch XHCI_SCTX_0_SPEED_SET(xspeed)
1917 1.1 jakllsch );
1918 1.1 jakllsch cp[1] = htole32(
1919 1.1 jakllsch XHCI_SCTX_1_RH_PORT_SET(rhport)
1920 1.1 jakllsch );
1921 1.1 jakllsch cp[2] = htole32(
1922 1.1 jakllsch XHCI_SCTX_2_IRQ_TARGET_SET(0)
1923 1.1 jakllsch );
1924 1.1 jakllsch cp[3] = htole32(0);
1925 1.1 jakllsch
1926 1.1 jakllsch /* set up input EP0 context */
1927 1.1 jakllsch cp = xhci_slot_get_icv(sc, xs, xhci_dci_to_ici(XHCI_DCI_EP_CONTROL));
1928 1.1 jakllsch cp[0] = htole32(0);
1929 1.1 jakllsch cp[1] = htole32(
1930 1.1 jakllsch XHCI_EPCTX_1_MAXP_SIZE_SET(mps) |
1931 1.1 jakllsch XHCI_EPCTX_1_EPTYPE_SET(4) |
1932 1.1 jakllsch XHCI_EPCTX_1_CERR_SET(3)
1933 1.1 jakllsch );
1934 1.1 jakllsch /* can't use xhci_ep_get_dci() yet? */
1935 1.1 jakllsch *(uint64_t *)(&cp[2]) = htole64(
1936 1.1 jakllsch xhci_ring_trbp(&xs->xs_ep[XHCI_DCI_EP_CONTROL].xe_tr, 0) |
1937 1.1 jakllsch XHCI_EPCTX_2_DCS_SET(1));
1938 1.1 jakllsch cp[4] = htole32(
1939 1.1 jakllsch XHCI_EPCTX_4_AVG_TRB_LEN_SET(8)
1940 1.1 jakllsch );
1941 1.1 jakllsch
1942 1.1 jakllsch /* sync input contexts before they are read from memory */
1943 1.1 jakllsch usb_syncmem(&xs->xs_ic_dma, 0, sc->sc_pgsz, BUS_DMASYNC_PREWRITE);
1944 1.1 jakllsch hexdump("input context", xhci_slot_get_icv(sc, xs, 0),
1945 1.1 jakllsch sc->sc_ctxsz * 3);
1946 1.1 jakllsch
1947 1.1 jakllsch xhci_set_dcba(sc, DMAADDR(&xs->xs_dc_dma, 0), slot);
1948 1.1 jakllsch
1949 1.1 jakllsch err = xhci_address_device(sc, xhci_slot_get_icp(sc, xs, 0), slot,
1950 1.1 jakllsch false);
1951 1.1 jakllsch
1952 1.1 jakllsch usb_syncmem(&xs->xs_dc_dma, 0, sc->sc_pgsz, BUS_DMASYNC_POSTREAD);
1953 1.1 jakllsch hexdump("output context", xhci_slot_get_dcv(sc, xs, 0),
1954 1.1 jakllsch sc->sc_ctxsz * 2);
1955 1.1 jakllsch
1956 1.1 jakllsch return err;
1957 1.1 jakllsch }
1958 1.1 jakllsch
1959 1.1 jakllsch /* ----- */
1960 1.1 jakllsch
1961 1.1 jakllsch static void
1962 1.1 jakllsch xhci_noop(usbd_pipe_handle pipe)
1963 1.1 jakllsch {
1964 1.1 jakllsch DPRINTF(("%s\n", __func__));
1965 1.1 jakllsch }
1966 1.1 jakllsch
1967 1.1 jakllsch /* root hub descriptors */
1968 1.1 jakllsch
1969 1.1 jakllsch static const usb_device_descriptor_t xhci_devd = {
1970 1.1 jakllsch USB_DEVICE_DESCRIPTOR_SIZE,
1971 1.1 jakllsch UDESC_DEVICE, /* type */
1972 1.1 jakllsch {0x00, 0x02}, /* USB version */
1973 1.1 jakllsch UDCLASS_HUB, /* class */
1974 1.1 jakllsch UDSUBCLASS_HUB, /* subclass */
1975 1.1 jakllsch UDPROTO_HSHUBSTT, /* protocol */
1976 1.1 jakllsch 64, /* max packet */
1977 1.1 jakllsch {0},{0},{0x00,0x01}, /* device id */
1978 1.1 jakllsch 1,2,0, /* string indexes */
1979 1.1 jakllsch 1 /* # of configurations */
1980 1.1 jakllsch };
1981 1.1 jakllsch
1982 1.1 jakllsch static const usb_device_qualifier_t xhci_odevd = {
1983 1.1 jakllsch USB_DEVICE_DESCRIPTOR_SIZE,
1984 1.1 jakllsch UDESC_DEVICE_QUALIFIER, /* type */
1985 1.1 jakllsch {0x00, 0x02}, /* USB version */
1986 1.1 jakllsch UDCLASS_HUB, /* class */
1987 1.1 jakllsch UDSUBCLASS_HUB, /* subclass */
1988 1.1 jakllsch UDPROTO_FSHUB, /* protocol */
1989 1.1 jakllsch 64, /* max packet */
1990 1.1 jakllsch 1, /* # of configurations */
1991 1.1 jakllsch 0
1992 1.1 jakllsch };
1993 1.1 jakllsch
1994 1.1 jakllsch static const usb_config_descriptor_t xhci_confd = {
1995 1.1 jakllsch USB_CONFIG_DESCRIPTOR_SIZE,
1996 1.1 jakllsch UDESC_CONFIG,
1997 1.1 jakllsch {USB_CONFIG_DESCRIPTOR_SIZE +
1998 1.1 jakllsch USB_INTERFACE_DESCRIPTOR_SIZE +
1999 1.1 jakllsch USB_ENDPOINT_DESCRIPTOR_SIZE},
2000 1.1 jakllsch 1,
2001 1.1 jakllsch 1,
2002 1.1 jakllsch 0,
2003 1.1 jakllsch UC_ATTR_MBO | UC_SELF_POWERED,
2004 1.1 jakllsch 0 /* max power */
2005 1.1 jakllsch };
2006 1.1 jakllsch
2007 1.1 jakllsch static const usb_interface_descriptor_t xhci_ifcd = {
2008 1.1 jakllsch USB_INTERFACE_DESCRIPTOR_SIZE,
2009 1.1 jakllsch UDESC_INTERFACE,
2010 1.1 jakllsch 0,
2011 1.1 jakllsch 0,
2012 1.1 jakllsch 1,
2013 1.1 jakllsch UICLASS_HUB,
2014 1.1 jakllsch UISUBCLASS_HUB,
2015 1.1 jakllsch UIPROTO_HSHUBSTT,
2016 1.1 jakllsch 0
2017 1.1 jakllsch };
2018 1.1 jakllsch
2019 1.1 jakllsch static const usb_endpoint_descriptor_t xhci_endpd = {
2020 1.1 jakllsch USB_ENDPOINT_DESCRIPTOR_SIZE,
2021 1.1 jakllsch UDESC_ENDPOINT,
2022 1.1 jakllsch UE_DIR_IN | XHCI_INTR_ENDPT,
2023 1.1 jakllsch UE_INTERRUPT,
2024 1.1 jakllsch {8, 0}, /* max packet */
2025 1.1 jakllsch 12
2026 1.1 jakllsch };
2027 1.1 jakllsch
2028 1.1 jakllsch static const usb_hub_descriptor_t xhci_hubd = {
2029 1.1 jakllsch USB_HUB_DESCRIPTOR_SIZE,
2030 1.1 jakllsch UDESC_HUB,
2031 1.1 jakllsch 0,
2032 1.1 jakllsch {0,0},
2033 1.1 jakllsch 0,
2034 1.1 jakllsch 0,
2035 1.1 jakllsch {""},
2036 1.1 jakllsch {""},
2037 1.1 jakllsch };
2038 1.1 jakllsch
2039 1.1 jakllsch /* root hub control */
2040 1.1 jakllsch
2041 1.1 jakllsch static usbd_status
2042 1.1 jakllsch xhci_root_ctrl_transfer(usbd_xfer_handle xfer)
2043 1.1 jakllsch {
2044 1.1 jakllsch struct xhci_softc * const sc = xfer->pipe->device->bus->hci_private;
2045 1.1 jakllsch usbd_status err;
2046 1.1 jakllsch
2047 1.1 jakllsch DPRINTF(("%s\n", __func__));
2048 1.1 jakllsch
2049 1.1 jakllsch /* Insert last in queue. */
2050 1.1 jakllsch mutex_enter(&sc->sc_lock);
2051 1.1 jakllsch err = usb_insert_transfer(xfer);
2052 1.1 jakllsch mutex_exit(&sc->sc_lock);
2053 1.1 jakllsch if (err)
2054 1.1 jakllsch return err;
2055 1.1 jakllsch
2056 1.1 jakllsch /* Pipe isn't running, start first */
2057 1.1 jakllsch return (xhci_root_ctrl_start(SIMPLEQ_FIRST(&xfer->pipe->queue)));
2058 1.1 jakllsch }
2059 1.1 jakllsch
2060 1.1 jakllsch static usbd_status
2061 1.1 jakllsch xhci_root_ctrl_start(usbd_xfer_handle xfer)
2062 1.1 jakllsch {
2063 1.1 jakllsch struct xhci_softc * const sc = xfer->pipe->device->bus->hci_private;
2064 1.1 jakllsch usb_port_status_t ps;
2065 1.1 jakllsch usb_device_request_t *req;
2066 1.1 jakllsch void *buf = NULL;
2067 1.1 jakllsch usb_hub_descriptor_t hubd;
2068 1.1 jakllsch usbd_status err;
2069 1.1 jakllsch int len, value, index;
2070 1.1 jakllsch int l, totlen = 0;
2071 1.1 jakllsch int port, i;
2072 1.1 jakllsch uint32_t v;
2073 1.1 jakllsch
2074 1.1 jakllsch DPRINTF(("%s\n", __func__));
2075 1.1 jakllsch
2076 1.1 jakllsch if (sc->sc_dying)
2077 1.1 jakllsch return USBD_IOERROR;
2078 1.1 jakllsch
2079 1.1 jakllsch req = &xfer->request;
2080 1.1 jakllsch
2081 1.1 jakllsch value = UGETW(req->wValue);
2082 1.1 jakllsch index = UGETW(req->wIndex);
2083 1.1 jakllsch len = UGETW(req->wLength);
2084 1.1 jakllsch
2085 1.1 jakllsch if (len != 0)
2086 1.1 jakllsch buf = KERNADDR(&xfer->dmabuf, 0);
2087 1.1 jakllsch
2088 1.1 jakllsch DPRINTF(("root req: %02x %02x %04x %04x %04x\n", req->bmRequestType,
2089 1.1 jakllsch req->bRequest, value, index, len));
2090 1.1 jakllsch
2091 1.1 jakllsch #define C(x,y) ((x) | ((y) << 8))
2092 1.1 jakllsch switch(C(req->bRequest, req->bmRequestType)) {
2093 1.1 jakllsch case C(UR_CLEAR_FEATURE, UT_WRITE_DEVICE):
2094 1.1 jakllsch case C(UR_CLEAR_FEATURE, UT_WRITE_INTERFACE):
2095 1.1 jakllsch case C(UR_CLEAR_FEATURE, UT_WRITE_ENDPOINT):
2096 1.1 jakllsch /*
2097 1.1 jakllsch * DEVICE_REMOTE_WAKEUP and ENDPOINT_HALT are no-ops
2098 1.1 jakllsch * for the integrated root hub.
2099 1.1 jakllsch */
2100 1.1 jakllsch break;
2101 1.1 jakllsch case C(UR_GET_CONFIG, UT_READ_DEVICE):
2102 1.1 jakllsch if (len > 0) {
2103 1.1 jakllsch *(uint8_t *)buf = sc->sc_conf;
2104 1.1 jakllsch totlen = 1;
2105 1.1 jakllsch }
2106 1.1 jakllsch break;
2107 1.1 jakllsch case C(UR_GET_DESCRIPTOR, UT_READ_DEVICE):
2108 1.1 jakllsch DPRINTFN(8,("xhci_root_ctrl_start: wValue=0x%04x\n", value));
2109 1.1 jakllsch if (len == 0)
2110 1.1 jakllsch break;
2111 1.1 jakllsch switch(value >> 8) {
2112 1.1 jakllsch case UDESC_DEVICE:
2113 1.1 jakllsch if ((value & 0xff) != 0) {
2114 1.1 jakllsch err = USBD_IOERROR;
2115 1.1 jakllsch goto ret;
2116 1.1 jakllsch }
2117 1.1 jakllsch totlen = l = min(len, USB_DEVICE_DESCRIPTOR_SIZE);
2118 1.9 christos memcpy(buf, &xhci_devd, min(l, sizeof(xhci_devd)));
2119 1.1 jakllsch break;
2120 1.1 jakllsch case UDESC_DEVICE_QUALIFIER:
2121 1.1 jakllsch if ((value & 0xff) != 0) {
2122 1.1 jakllsch }
2123 1.1 jakllsch totlen = l = min(len, USB_DEVICE_DESCRIPTOR_SIZE);
2124 1.9 christos memcpy(buf, &xhci_odevd, min(l, sizeof(xhci_odevd)));
2125 1.1 jakllsch break;
2126 1.1 jakllsch case UDESC_OTHER_SPEED_CONFIGURATION:
2127 1.1 jakllsch case UDESC_CONFIG:
2128 1.1 jakllsch if ((value & 0xff) != 0) {
2129 1.1 jakllsch err = USBD_IOERROR;
2130 1.1 jakllsch goto ret;
2131 1.1 jakllsch }
2132 1.1 jakllsch totlen = l = min(len, USB_CONFIG_DESCRIPTOR_SIZE);
2133 1.9 christos memcpy(buf, &xhci_confd, min(l, sizeof(xhci_confd)));
2134 1.1 jakllsch ((usb_config_descriptor_t *)buf)->bDescriptorType =
2135 1.1 jakllsch value >> 8;
2136 1.1 jakllsch buf = (char *)buf + l;
2137 1.1 jakllsch len -= l;
2138 1.1 jakllsch l = min(len, USB_INTERFACE_DESCRIPTOR_SIZE);
2139 1.1 jakllsch totlen += l;
2140 1.9 christos memcpy(buf, &xhci_ifcd, min(l, sizeof(xhci_ifcd)));
2141 1.1 jakllsch buf = (char *)buf + l;
2142 1.1 jakllsch len -= l;
2143 1.1 jakllsch l = min(len, USB_ENDPOINT_DESCRIPTOR_SIZE);
2144 1.1 jakllsch totlen += l;
2145 1.9 christos memcpy(buf, &xhci_endpd, min(l, sizeof(xhci_endpd)));
2146 1.1 jakllsch break;
2147 1.1 jakllsch case UDESC_STRING:
2148 1.1 jakllsch #define sd ((usb_string_descriptor_t *)buf)
2149 1.1 jakllsch switch (value & 0xff) {
2150 1.1 jakllsch case 0: /* Language table */
2151 1.1 jakllsch totlen = usb_makelangtbl(sd, len);
2152 1.1 jakllsch break;
2153 1.1 jakllsch case 1: /* Vendor */
2154 1.1 jakllsch totlen = usb_makestrdesc(sd, len, "NetBSD");
2155 1.1 jakllsch break;
2156 1.1 jakllsch case 2: /* Product */
2157 1.1 jakllsch totlen = usb_makestrdesc(sd, len,
2158 1.1 jakllsch "xHCI Root Hub");
2159 1.1 jakllsch break;
2160 1.1 jakllsch }
2161 1.1 jakllsch #undef sd
2162 1.1 jakllsch break;
2163 1.1 jakllsch default:
2164 1.1 jakllsch err = USBD_IOERROR;
2165 1.1 jakllsch goto ret;
2166 1.1 jakllsch }
2167 1.1 jakllsch break;
2168 1.1 jakllsch case C(UR_GET_INTERFACE, UT_READ_INTERFACE):
2169 1.1 jakllsch if (len > 0) {
2170 1.1 jakllsch *(uint8_t *)buf = 0;
2171 1.1 jakllsch totlen = 1;
2172 1.1 jakllsch }
2173 1.1 jakllsch break;
2174 1.1 jakllsch case C(UR_GET_STATUS, UT_READ_DEVICE):
2175 1.1 jakllsch if (len > 1) {
2176 1.1 jakllsch USETW(((usb_status_t *)buf)->wStatus,UDS_SELF_POWERED);
2177 1.1 jakllsch totlen = 2;
2178 1.1 jakllsch }
2179 1.1 jakllsch break;
2180 1.1 jakllsch case C(UR_GET_STATUS, UT_READ_INTERFACE):
2181 1.1 jakllsch case C(UR_GET_STATUS, UT_READ_ENDPOINT):
2182 1.1 jakllsch if (len > 1) {
2183 1.1 jakllsch USETW(((usb_status_t *)buf)->wStatus, 0);
2184 1.1 jakllsch totlen = 2;
2185 1.1 jakllsch }
2186 1.1 jakllsch break;
2187 1.1 jakllsch case C(UR_SET_ADDRESS, UT_WRITE_DEVICE):
2188 1.1 jakllsch if (value >= USB_MAX_DEVICES) {
2189 1.1 jakllsch err = USBD_IOERROR;
2190 1.1 jakllsch goto ret;
2191 1.1 jakllsch }
2192 1.1 jakllsch //sc->sc_addr = value;
2193 1.1 jakllsch break;
2194 1.1 jakllsch case C(UR_SET_CONFIG, UT_WRITE_DEVICE):
2195 1.1 jakllsch if (value != 0 && value != 1) {
2196 1.1 jakllsch err = USBD_IOERROR;
2197 1.1 jakllsch goto ret;
2198 1.1 jakllsch }
2199 1.1 jakllsch sc->sc_conf = value;
2200 1.1 jakllsch break;
2201 1.1 jakllsch case C(UR_SET_DESCRIPTOR, UT_WRITE_DEVICE):
2202 1.1 jakllsch break;
2203 1.1 jakllsch case C(UR_SET_FEATURE, UT_WRITE_DEVICE):
2204 1.1 jakllsch case C(UR_SET_FEATURE, UT_WRITE_INTERFACE):
2205 1.1 jakllsch case C(UR_SET_FEATURE, UT_WRITE_ENDPOINT):
2206 1.1 jakllsch err = USBD_IOERROR;
2207 1.1 jakllsch goto ret;
2208 1.1 jakllsch case C(UR_SET_INTERFACE, UT_WRITE_INTERFACE):
2209 1.1 jakllsch break;
2210 1.1 jakllsch case C(UR_SYNCH_FRAME, UT_WRITE_ENDPOINT):
2211 1.1 jakllsch break;
2212 1.1 jakllsch /* Hub requests */
2213 1.1 jakllsch case C(UR_CLEAR_FEATURE, UT_WRITE_CLASS_DEVICE):
2214 1.1 jakllsch break;
2215 1.1 jakllsch case C(UR_CLEAR_FEATURE, UT_WRITE_CLASS_OTHER):
2216 1.1 jakllsch DPRINTFN(4, ("xhci_root_ctrl_start: UR_CLEAR_PORT_FEATURE "
2217 1.1 jakllsch "port=%d feature=%d\n",
2218 1.1 jakllsch index, value));
2219 1.1 jakllsch if (index < 1 || index > sc->sc_hs_port_count) {
2220 1.1 jakllsch err = USBD_IOERROR;
2221 1.1 jakllsch goto ret;
2222 1.1 jakllsch }
2223 1.1 jakllsch port = XHCI_PORTSC(sc->sc_hs_port_start - 1 + index);
2224 1.1 jakllsch v = xhci_op_read_4(sc, port);
2225 1.1 jakllsch DPRINTFN(4, ("xhci_root_ctrl_start: portsc=0x%08x\n", v));
2226 1.1 jakllsch v &= ~XHCI_PS_CLEAR;
2227 1.1 jakllsch switch (value) {
2228 1.1 jakllsch case UHF_PORT_ENABLE:
2229 1.1 jakllsch xhci_op_write_4(sc, port, v &~ XHCI_PS_PED);
2230 1.1 jakllsch break;
2231 1.1 jakllsch case UHF_PORT_SUSPEND:
2232 1.1 jakllsch err = USBD_IOERROR;
2233 1.1 jakllsch goto ret;
2234 1.1 jakllsch case UHF_PORT_POWER:
2235 1.1 jakllsch break;
2236 1.1 jakllsch case UHF_PORT_TEST:
2237 1.1 jakllsch case UHF_PORT_INDICATOR:
2238 1.1 jakllsch err = USBD_IOERROR;
2239 1.1 jakllsch goto ret;
2240 1.1 jakllsch case UHF_C_PORT_CONNECTION:
2241 1.1 jakllsch xhci_op_write_4(sc, port, v | XHCI_PS_CSC);
2242 1.1 jakllsch break;
2243 1.1 jakllsch case UHF_C_PORT_ENABLE:
2244 1.1 jakllsch case UHF_C_PORT_SUSPEND:
2245 1.1 jakllsch case UHF_C_PORT_OVER_CURRENT:
2246 1.1 jakllsch err = USBD_IOERROR;
2247 1.1 jakllsch goto ret;
2248 1.1 jakllsch case UHF_C_PORT_RESET:
2249 1.1 jakllsch xhci_op_write_4(sc, port, v | XHCI_PS_PRC);
2250 1.1 jakllsch break;
2251 1.1 jakllsch default:
2252 1.1 jakllsch err = USBD_IOERROR;
2253 1.1 jakllsch goto ret;
2254 1.1 jakllsch }
2255 1.1 jakllsch
2256 1.1 jakllsch break;
2257 1.1 jakllsch case C(UR_GET_DESCRIPTOR, UT_READ_CLASS_DEVICE):
2258 1.1 jakllsch if (len == 0)
2259 1.1 jakllsch break;
2260 1.1 jakllsch if ((value & 0xff) != 0) {
2261 1.1 jakllsch err = USBD_IOERROR;
2262 1.1 jakllsch goto ret;
2263 1.1 jakllsch }
2264 1.1 jakllsch hubd = xhci_hubd;
2265 1.1 jakllsch hubd.bNbrPorts = sc->sc_hs_port_count;
2266 1.1 jakllsch USETW(hubd.wHubCharacteristics, UHD_PWR_NO_SWITCH);
2267 1.1 jakllsch hubd.bPwrOn2PwrGood = 200;
2268 1.2 apb for (i = 0, l = sc->sc_maxports; l > 0; i++, l -= 8)
2269 1.3 skrll hubd.DeviceRemovable[i++] = 0; /* XXX can't find out? */
2270 1.3 skrll hubd.bDescLength = USB_HUB_DESCRIPTOR_SIZE + i;
2271 1.1 jakllsch l = min(len, hubd.bDescLength);
2272 1.1 jakllsch totlen = l;
2273 1.1 jakllsch memcpy(buf, &hubd, l);
2274 1.1 jakllsch break;
2275 1.1 jakllsch case C(UR_GET_STATUS, UT_READ_CLASS_DEVICE):
2276 1.1 jakllsch if (len != 4) {
2277 1.1 jakllsch err = USBD_IOERROR;
2278 1.1 jakllsch goto ret;
2279 1.1 jakllsch }
2280 1.1 jakllsch memset(buf, 0, len); /* ? XXX */
2281 1.1 jakllsch totlen = len;
2282 1.1 jakllsch break;
2283 1.1 jakllsch case C(UR_GET_STATUS, UT_READ_CLASS_OTHER):
2284 1.1 jakllsch DPRINTFN(8,("xhci_root_ctrl_start: get port status i=%d\n",
2285 1.1 jakllsch index));
2286 1.1 jakllsch if (index < 1 || index > sc->sc_maxports) {
2287 1.1 jakllsch err = USBD_IOERROR;
2288 1.1 jakllsch goto ret;
2289 1.1 jakllsch }
2290 1.1 jakllsch if (len != 4) {
2291 1.1 jakllsch err = USBD_IOERROR;
2292 1.1 jakllsch goto ret;
2293 1.1 jakllsch }
2294 1.1 jakllsch v = xhci_op_read_4(sc, XHCI_PORTSC(sc->sc_hs_port_start - 1 +
2295 1.1 jakllsch index));
2296 1.1 jakllsch DPRINTF(("%s READ_CLASS_OTHER GET_STATUS PORTSC %d (%d) %08x\n",
2297 1.1 jakllsch __func__, index, sc->sc_hs_port_start - 1 + index, v));
2298 1.1 jakllsch switch (XHCI_PS_SPEED_GET(v)) {
2299 1.1 jakllsch case 1:
2300 1.1 jakllsch i = UPS_FULL_SPEED;
2301 1.1 jakllsch break;
2302 1.1 jakllsch case 2:
2303 1.1 jakllsch i = UPS_LOW_SPEED;
2304 1.1 jakllsch break;
2305 1.1 jakllsch case 3:
2306 1.1 jakllsch i = UPS_HIGH_SPEED;
2307 1.1 jakllsch break;
2308 1.1 jakllsch default:
2309 1.1 jakllsch i = 0;
2310 1.1 jakllsch break;
2311 1.1 jakllsch }
2312 1.1 jakllsch if (v & XHCI_PS_CCS) i |= UPS_CURRENT_CONNECT_STATUS;
2313 1.1 jakllsch if (v & XHCI_PS_PED) i |= UPS_PORT_ENABLED;
2314 1.1 jakllsch if (v & XHCI_PS_OCA) i |= UPS_OVERCURRENT_INDICATOR;
2315 1.1 jakllsch //if (v & XHCI_PS_SUSP) i |= UPS_SUSPEND;
2316 1.1 jakllsch if (v & XHCI_PS_PR) i |= UPS_RESET;
2317 1.1 jakllsch if (v & XHCI_PS_PP) i |= UPS_PORT_POWER;
2318 1.1 jakllsch USETW(ps.wPortStatus, i);
2319 1.1 jakllsch i = 0;
2320 1.1 jakllsch if (v & XHCI_PS_CSC) i |= UPS_C_CONNECT_STATUS;
2321 1.1 jakllsch if (v & XHCI_PS_PEC) i |= UPS_C_PORT_ENABLED;
2322 1.1 jakllsch if (v & XHCI_PS_OCC) i |= UPS_C_OVERCURRENT_INDICATOR;
2323 1.1 jakllsch if (v & XHCI_PS_PRC) i |= UPS_C_PORT_RESET;
2324 1.1 jakllsch USETW(ps.wPortChange, i);
2325 1.1 jakllsch l = min(len, sizeof ps);
2326 1.1 jakllsch memcpy(buf, &ps, l);
2327 1.1 jakllsch totlen = l;
2328 1.1 jakllsch break;
2329 1.1 jakllsch case C(UR_SET_DESCRIPTOR, UT_WRITE_CLASS_DEVICE):
2330 1.1 jakllsch err = USBD_IOERROR;
2331 1.1 jakllsch goto ret;
2332 1.1 jakllsch case C(UR_SET_FEATURE, UT_WRITE_CLASS_DEVICE):
2333 1.1 jakllsch break;
2334 1.1 jakllsch case C(UR_SET_FEATURE, UT_WRITE_CLASS_OTHER):
2335 1.1 jakllsch if (index < 1 || index > sc->sc_hs_port_count) {
2336 1.1 jakllsch err = USBD_IOERROR;
2337 1.1 jakllsch goto ret;
2338 1.1 jakllsch }
2339 1.1 jakllsch port = XHCI_PORTSC(sc->sc_hs_port_start - 1 + index);
2340 1.1 jakllsch v = xhci_op_read_4(sc, port);
2341 1.1 jakllsch DPRINTFN(4, ("xhci_root_ctrl_start: portsc=0x%08x\n", v));
2342 1.1 jakllsch v &= ~XHCI_PS_CLEAR;
2343 1.1 jakllsch switch (value) {
2344 1.1 jakllsch case UHF_PORT_ENABLE:
2345 1.1 jakllsch xhci_op_write_4(sc, port, v | XHCI_PS_PED);
2346 1.1 jakllsch break;
2347 1.1 jakllsch case UHF_PORT_SUSPEND:
2348 1.1 jakllsch /* XXX suspend */
2349 1.1 jakllsch break;
2350 1.1 jakllsch case UHF_PORT_RESET:
2351 1.1 jakllsch v &= ~ (XHCI_PS_PED | XHCI_PS_PR);
2352 1.1 jakllsch xhci_op_write_4(sc, port, v | XHCI_PS_PR);
2353 1.1 jakllsch /* Wait for reset to complete. */
2354 1.1 jakllsch usb_delay_ms(&sc->sc_bus, USB_PORT_ROOT_RESET_DELAY);
2355 1.1 jakllsch if (sc->sc_dying) {
2356 1.1 jakllsch err = USBD_IOERROR;
2357 1.1 jakllsch goto ret;
2358 1.1 jakllsch }
2359 1.1 jakllsch v = xhci_op_read_4(sc, port);
2360 1.1 jakllsch if (v & XHCI_PS_PR) {
2361 1.1 jakllsch xhci_op_write_4(sc, port, v & ~XHCI_PS_PR);
2362 1.1 jakllsch usb_delay_ms(&sc->sc_bus, 10);
2363 1.1 jakllsch /* XXX */
2364 1.1 jakllsch }
2365 1.1 jakllsch break;
2366 1.1 jakllsch case UHF_PORT_POWER:
2367 1.1 jakllsch /* XXX power control */
2368 1.1 jakllsch break;
2369 1.1 jakllsch /* XXX more */
2370 1.1 jakllsch case UHF_C_PORT_RESET:
2371 1.1 jakllsch xhci_op_write_4(sc, port, v | XHCI_PS_PRC);
2372 1.1 jakllsch break;
2373 1.1 jakllsch default:
2374 1.1 jakllsch err = USBD_IOERROR;
2375 1.1 jakllsch goto ret;
2376 1.1 jakllsch }
2377 1.1 jakllsch break;
2378 1.1 jakllsch case C(UR_CLEAR_TT_BUFFER, UT_WRITE_CLASS_OTHER):
2379 1.1 jakllsch case C(UR_RESET_TT, UT_WRITE_CLASS_OTHER):
2380 1.1 jakllsch case C(UR_GET_TT_STATE, UT_READ_CLASS_OTHER):
2381 1.1 jakllsch case C(UR_STOP_TT, UT_WRITE_CLASS_OTHER):
2382 1.1 jakllsch break;
2383 1.1 jakllsch default:
2384 1.1 jakllsch err = USBD_IOERROR;
2385 1.1 jakllsch goto ret;
2386 1.1 jakllsch }
2387 1.1 jakllsch xfer->actlen = totlen;
2388 1.1 jakllsch err = USBD_NORMAL_COMPLETION;
2389 1.1 jakllsch ret:
2390 1.1 jakllsch xfer->status = err;
2391 1.1 jakllsch mutex_enter(&sc->sc_lock);
2392 1.1 jakllsch usb_transfer_complete(xfer);
2393 1.1 jakllsch mutex_exit(&sc->sc_lock);
2394 1.1 jakllsch return USBD_IN_PROGRESS;
2395 1.1 jakllsch }
2396 1.1 jakllsch
2397 1.1 jakllsch
2398 1.1 jakllsch static void
2399 1.1 jakllsch xhci_root_ctrl_abort(usbd_xfer_handle xfer)
2400 1.1 jakllsch {
2401 1.1 jakllsch /* Nothing to do, all transfers are synchronous. */
2402 1.1 jakllsch }
2403 1.1 jakllsch
2404 1.1 jakllsch
2405 1.1 jakllsch static void
2406 1.1 jakllsch xhci_root_ctrl_close(usbd_pipe_handle pipe)
2407 1.1 jakllsch {
2408 1.1 jakllsch DPRINTF(("%s\n", __func__));
2409 1.1 jakllsch /* Nothing to do. */
2410 1.1 jakllsch }
2411 1.1 jakllsch
2412 1.1 jakllsch static void
2413 1.1 jakllsch xhci_root_ctrl_done(usbd_xfer_handle xfer)
2414 1.1 jakllsch {
2415 1.1 jakllsch xfer->hcpriv = NULL;
2416 1.1 jakllsch }
2417 1.1 jakllsch
2418 1.1 jakllsch /* root hub intrerrupt */
2419 1.1 jakllsch
2420 1.1 jakllsch static usbd_status
2421 1.1 jakllsch xhci_root_intr_transfer(usbd_xfer_handle xfer)
2422 1.1 jakllsch {
2423 1.1 jakllsch struct xhci_softc * const sc = xfer->pipe->device->bus->hci_private;
2424 1.1 jakllsch usbd_status err;
2425 1.1 jakllsch
2426 1.1 jakllsch /* Insert last in queue. */
2427 1.1 jakllsch mutex_enter(&sc->sc_lock);
2428 1.1 jakllsch err = usb_insert_transfer(xfer);
2429 1.1 jakllsch mutex_exit(&sc->sc_lock);
2430 1.1 jakllsch if (err)
2431 1.1 jakllsch return err;
2432 1.1 jakllsch
2433 1.1 jakllsch /* Pipe isn't running, start first */
2434 1.1 jakllsch return (xhci_root_intr_start(SIMPLEQ_FIRST(&xfer->pipe->queue)));
2435 1.1 jakllsch }
2436 1.1 jakllsch
2437 1.1 jakllsch static usbd_status
2438 1.1 jakllsch xhci_root_intr_start(usbd_xfer_handle xfer)
2439 1.1 jakllsch {
2440 1.1 jakllsch struct xhci_softc * const sc = xfer->pipe->device->bus->hci_private;
2441 1.1 jakllsch
2442 1.1 jakllsch if (sc->sc_dying)
2443 1.1 jakllsch return USBD_IOERROR;
2444 1.1 jakllsch
2445 1.1 jakllsch mutex_enter(&sc->sc_lock);
2446 1.1 jakllsch sc->sc_intrxfer = xfer;
2447 1.1 jakllsch mutex_exit(&sc->sc_lock);
2448 1.1 jakllsch
2449 1.1 jakllsch return USBD_IN_PROGRESS;
2450 1.1 jakllsch }
2451 1.1 jakllsch
2452 1.1 jakllsch static void
2453 1.1 jakllsch xhci_root_intr_abort(usbd_xfer_handle xfer)
2454 1.1 jakllsch {
2455 1.1 jakllsch #ifdef DIAGNOSTIC
2456 1.1 jakllsch struct xhci_softc * const sc = xfer->pipe->device->bus->hci_private;
2457 1.1 jakllsch #endif
2458 1.1 jakllsch
2459 1.1 jakllsch KASSERT(mutex_owned(&sc->sc_lock));
2460 1.21 skrll KASSERT(xfer->pipe->intrxfer == xfer);
2461 1.21 skrll
2462 1.21 skrll DPRINTF(("%s: remove\n", __func__));
2463 1.21 skrll
2464 1.1 jakllsch xfer->status = USBD_CANCELLED;
2465 1.1 jakllsch usb_transfer_complete(xfer);
2466 1.1 jakllsch }
2467 1.1 jakllsch
2468 1.1 jakllsch static void
2469 1.1 jakllsch xhci_root_intr_close(usbd_pipe_handle pipe)
2470 1.1 jakllsch {
2471 1.1 jakllsch struct xhci_softc * const sc = pipe->device->bus->hci_private;
2472 1.1 jakllsch
2473 1.1 jakllsch KASSERT(mutex_owned(&sc->sc_lock));
2474 1.1 jakllsch
2475 1.1 jakllsch DPRINTF(("%s\n", __func__));
2476 1.1 jakllsch
2477 1.1 jakllsch sc->sc_intrxfer = NULL;
2478 1.1 jakllsch }
2479 1.1 jakllsch
2480 1.1 jakllsch static void
2481 1.1 jakllsch xhci_root_intr_done(usbd_xfer_handle xfer)
2482 1.1 jakllsch {
2483 1.1 jakllsch xfer->hcpriv = NULL;
2484 1.1 jakllsch }
2485 1.1 jakllsch
2486 1.1 jakllsch /* -------------- */
2487 1.1 jakllsch /* device control */
2488 1.1 jakllsch
2489 1.1 jakllsch static usbd_status
2490 1.1 jakllsch xhci_device_ctrl_transfer(usbd_xfer_handle xfer)
2491 1.1 jakllsch {
2492 1.1 jakllsch struct xhci_softc * const sc = xfer->pipe->device->bus->hci_private;
2493 1.1 jakllsch usbd_status err;
2494 1.1 jakllsch
2495 1.1 jakllsch /* Insert last in queue. */
2496 1.1 jakllsch mutex_enter(&sc->sc_lock);
2497 1.1 jakllsch err = usb_insert_transfer(xfer);
2498 1.1 jakllsch mutex_exit(&sc->sc_lock);
2499 1.1 jakllsch if (err)
2500 1.1 jakllsch return (err);
2501 1.1 jakllsch
2502 1.1 jakllsch /* Pipe isn't running, start first */
2503 1.1 jakllsch return (xhci_device_ctrl_start(SIMPLEQ_FIRST(&xfer->pipe->queue)));
2504 1.1 jakllsch }
2505 1.1 jakllsch
2506 1.1 jakllsch static usbd_status
2507 1.1 jakllsch xhci_device_ctrl_start(usbd_xfer_handle xfer)
2508 1.1 jakllsch {
2509 1.1 jakllsch struct xhci_softc * const sc = xfer->pipe->device->bus->hci_private;
2510 1.1 jakllsch struct xhci_slot * const xs = xfer->pipe->device->hci_private;
2511 1.1 jakllsch const u_int dci = xhci_ep_get_dci(xfer->pipe->endpoint->edesc);
2512 1.1 jakllsch struct xhci_ring * const tr = &xs->xs_ep[dci].xe_tr;
2513 1.1 jakllsch struct xhci_xfer * const xx = (void *)xfer;
2514 1.1 jakllsch usb_device_request_t * const req = &xfer->request;
2515 1.1 jakllsch const bool isread = UT_GET_DIR(req->bmRequestType) == UT_READ;
2516 1.1 jakllsch const uint32_t len = UGETW(req->wLength);
2517 1.1 jakllsch usb_dma_t * const dma = &xfer->dmabuf;
2518 1.1 jakllsch uint64_t parameter;
2519 1.1 jakllsch uint32_t status;
2520 1.1 jakllsch uint32_t control;
2521 1.1 jakllsch u_int i;
2522 1.1 jakllsch
2523 1.1 jakllsch DPRINTF(("%s\n", __func__));
2524 1.1 jakllsch DPRINTF(("req: %02x %02x %04x %04x %04x\n", req->bmRequestType,
2525 1.1 jakllsch req->bRequest, UGETW(req->wValue), UGETW(req->wIndex),
2526 1.1 jakllsch UGETW(req->wLength)));
2527 1.1 jakllsch
2528 1.1 jakllsch /* XXX */
2529 1.1 jakllsch if (tr->is_halted) {
2530 1.1 jakllsch xhci_reset_endpoint(xfer->pipe);
2531 1.1 jakllsch tr->is_halted = false;
2532 1.1 jakllsch xhci_set_dequeue(xfer->pipe);
2533 1.1 jakllsch }
2534 1.1 jakllsch
2535 1.1 jakllsch /* we rely on the bottom bits for extra info */
2536 1.1 jakllsch KASSERT(((uintptr_t)xfer & 0x3) == 0x0);
2537 1.1 jakllsch
2538 1.1 jakllsch KASSERT((xfer->rqflags & URQ_REQUEST) != 0);
2539 1.1 jakllsch
2540 1.1 jakllsch i = 0;
2541 1.1 jakllsch
2542 1.1 jakllsch /* setup phase */
2543 1.1 jakllsch memcpy(¶meter, req, sizeof(*req));
2544 1.1 jakllsch parameter = le64toh(parameter);
2545 1.1 jakllsch status = XHCI_TRB_2_IRQ_SET(0) | XHCI_TRB_2_BYTES_SET(sizeof(*req));
2546 1.1 jakllsch control = ((len == 0) ? XHCI_TRB_3_TRT_NONE :
2547 1.1 jakllsch (isread ? XHCI_TRB_3_TRT_IN : XHCI_TRB_3_TRT_OUT)) |
2548 1.1 jakllsch XHCI_TRB_3_TYPE_SET(XHCI_TRB_TYPE_SETUP_STAGE) |
2549 1.1 jakllsch XHCI_TRB_3_IDT_BIT;
2550 1.1 jakllsch xhci_trb_put(&xx->xx_trb[i++], parameter, status, control);
2551 1.1 jakllsch
2552 1.1 jakllsch if (len == 0)
2553 1.1 jakllsch goto no_data;
2554 1.1 jakllsch
2555 1.1 jakllsch /* data phase */
2556 1.1 jakllsch parameter = DMAADDR(dma, 0);
2557 1.1 jakllsch KASSERT(len <= 0x10000);
2558 1.1 jakllsch status = XHCI_TRB_2_IRQ_SET(0) |
2559 1.1 jakllsch XHCI_TRB_2_TDSZ_SET(1) |
2560 1.1 jakllsch XHCI_TRB_2_BYTES_SET(len);
2561 1.1 jakllsch control = (isread ? XHCI_TRB_3_DIR_IN : 0) |
2562 1.1 jakllsch XHCI_TRB_3_TYPE_SET(XHCI_TRB_TYPE_DATA_STAGE) |
2563 1.1 jakllsch XHCI_TRB_3_CHAIN_BIT | XHCI_TRB_3_ENT_BIT;
2564 1.1 jakllsch xhci_trb_put(&xx->xx_trb[i++], parameter, status, control);
2565 1.1 jakllsch
2566 1.1 jakllsch parameter = (uintptr_t)xfer | 0x3;
2567 1.1 jakllsch status = XHCI_TRB_2_IRQ_SET(0);
2568 1.1 jakllsch control = XHCI_TRB_3_TYPE_SET(XHCI_TRB_TYPE_EVENT_DATA) |
2569 1.1 jakllsch XHCI_TRB_3_IOC_BIT;
2570 1.1 jakllsch xhci_trb_put(&xx->xx_trb[i++], parameter, status, control);
2571 1.1 jakllsch
2572 1.1 jakllsch no_data:
2573 1.1 jakllsch parameter = 0;
2574 1.1 jakllsch status = XHCI_TRB_2_IRQ_SET(0) | XHCI_TRB_2_TDSZ_SET(1);
2575 1.1 jakllsch /* the status stage has inverted direction */
2576 1.1 jakllsch control = (isread ? 0 : XHCI_TRB_3_DIR_IN) |
2577 1.1 jakllsch XHCI_TRB_3_TYPE_SET(XHCI_TRB_TYPE_STATUS_STAGE) |
2578 1.1 jakllsch XHCI_TRB_3_CHAIN_BIT | XHCI_TRB_3_ENT_BIT;
2579 1.1 jakllsch xhci_trb_put(&xx->xx_trb[i++], parameter, status, control);
2580 1.1 jakllsch
2581 1.1 jakllsch parameter = (uintptr_t)xfer | 0x0;
2582 1.1 jakllsch status = XHCI_TRB_2_IRQ_SET(0);
2583 1.1 jakllsch control = XHCI_TRB_3_TYPE_SET(XHCI_TRB_TYPE_EVENT_DATA) |
2584 1.1 jakllsch XHCI_TRB_3_IOC_BIT;
2585 1.1 jakllsch xhci_trb_put(&xx->xx_trb[i++], parameter, status, control);
2586 1.1 jakllsch
2587 1.1 jakllsch mutex_enter(&tr->xr_lock);
2588 1.1 jakllsch xhci_ring_put(sc, tr, xfer, xx->xx_trb, i);
2589 1.1 jakllsch mutex_exit(&tr->xr_lock);
2590 1.1 jakllsch
2591 1.1 jakllsch xhci_db_write_4(sc, XHCI_DOORBELL(xs->xs_idx), dci);
2592 1.1 jakllsch
2593 1.1 jakllsch if (xfer->timeout && !sc->sc_bus.use_polling) {
2594 1.1 jakllsch callout_reset(&xfer->timeout_handle, mstohz(xfer->timeout),
2595 1.1 jakllsch xhci_timeout, xfer);
2596 1.1 jakllsch }
2597 1.1 jakllsch
2598 1.1 jakllsch if (sc->sc_bus.use_polling) {
2599 1.1 jakllsch device_printf(sc->sc_dev, "%s polling\n", __func__);
2600 1.1 jakllsch //xhci_waitintr(sc, xfer);
2601 1.1 jakllsch }
2602 1.1 jakllsch
2603 1.1 jakllsch return USBD_IN_PROGRESS;
2604 1.1 jakllsch }
2605 1.1 jakllsch
2606 1.1 jakllsch static void
2607 1.1 jakllsch xhci_device_ctrl_done(usbd_xfer_handle xfer)
2608 1.1 jakllsch {
2609 1.1 jakllsch DPRINTF(("%s\n", __func__));
2610 1.1 jakllsch
2611 1.1 jakllsch callout_stop(&xfer->timeout_handle); /* XXX wrong place */
2612 1.1 jakllsch
2613 1.1 jakllsch }
2614 1.1 jakllsch
2615 1.1 jakllsch static void
2616 1.1 jakllsch xhci_device_ctrl_abort(usbd_xfer_handle xfer)
2617 1.1 jakllsch {
2618 1.1 jakllsch DPRINTF(("%s\n", __func__));
2619 1.1 jakllsch }
2620 1.1 jakllsch
2621 1.1 jakllsch static void
2622 1.1 jakllsch xhci_device_ctrl_close(usbd_pipe_handle pipe)
2623 1.1 jakllsch {
2624 1.1 jakllsch DPRINTF(("%s\n", __func__));
2625 1.1 jakllsch }
2626 1.1 jakllsch
2627 1.1 jakllsch /* ----------------- */
2628 1.1 jakllsch /* device isochronus */
2629 1.1 jakllsch
2630 1.1 jakllsch /* ----------- */
2631 1.1 jakllsch /* device bulk */
2632 1.1 jakllsch
2633 1.1 jakllsch static usbd_status
2634 1.1 jakllsch xhci_device_bulk_transfer(usbd_xfer_handle xfer)
2635 1.1 jakllsch {
2636 1.1 jakllsch struct xhci_softc * const sc = xfer->pipe->device->bus->hci_private;
2637 1.1 jakllsch usbd_status err;
2638 1.1 jakllsch
2639 1.1 jakllsch /* Insert last in queue. */
2640 1.1 jakllsch mutex_enter(&sc->sc_lock);
2641 1.1 jakllsch err = usb_insert_transfer(xfer);
2642 1.1 jakllsch mutex_exit(&sc->sc_lock);
2643 1.1 jakllsch if (err)
2644 1.1 jakllsch return err;
2645 1.1 jakllsch
2646 1.1 jakllsch /*
2647 1.1 jakllsch * Pipe isn't running (otherwise err would be USBD_INPROG),
2648 1.1 jakllsch * so start it first.
2649 1.1 jakllsch */
2650 1.1 jakllsch return (xhci_device_bulk_start(SIMPLEQ_FIRST(&xfer->pipe->queue)));
2651 1.1 jakllsch }
2652 1.1 jakllsch
2653 1.1 jakllsch static usbd_status
2654 1.1 jakllsch xhci_device_bulk_start(usbd_xfer_handle xfer)
2655 1.1 jakllsch {
2656 1.1 jakllsch struct xhci_softc * const sc = xfer->pipe->device->bus->hci_private;
2657 1.1 jakllsch struct xhci_slot * const xs = xfer->pipe->device->hci_private;
2658 1.1 jakllsch const u_int dci = xhci_ep_get_dci(xfer->pipe->endpoint->edesc);
2659 1.1 jakllsch struct xhci_ring * const tr = &xs->xs_ep[dci].xe_tr;
2660 1.1 jakllsch struct xhci_xfer * const xx = (void *)xfer;
2661 1.1 jakllsch const uint32_t len = xfer->length;
2662 1.1 jakllsch usb_dma_t * const dma = &xfer->dmabuf;
2663 1.1 jakllsch uint64_t parameter;
2664 1.1 jakllsch uint32_t status;
2665 1.1 jakllsch uint32_t control;
2666 1.1 jakllsch u_int i = 0;
2667 1.1 jakllsch
2668 1.1 jakllsch #if 0
2669 1.1 jakllsch device_printf(sc->sc_dev, "%s %p slot %u dci %u\n", __func__, xfer,
2670 1.1 jakllsch xs->xs_idx, dci);
2671 1.1 jakllsch #endif
2672 1.1 jakllsch
2673 1.1 jakllsch if (sc->sc_dying)
2674 1.1 jakllsch return USBD_IOERROR;
2675 1.1 jakllsch
2676 1.1 jakllsch KASSERT((xfer->rqflags & URQ_REQUEST) == 0);
2677 1.1 jakllsch
2678 1.1 jakllsch parameter = DMAADDR(dma, 0);
2679 1.11 dsl /*
2680 1.13 dsl * XXX: (dsl) The physical buffer must not cross a 64k boundary.
2681 1.11 dsl * If the user supplied buffer crosses such a boundary then 2
2682 1.11 dsl * (or more) TRB should be used.
2683 1.11 dsl * If multiple TRB are used the td_size field must be set correctly.
2684 1.11 dsl * For v1.0 devices (like ivy bridge) this is the number of usb data
2685 1.11 dsl * blocks needed to complete the transfer.
2686 1.11 dsl * Setting it to 1 in the last TRB causes an extra zero-length
2687 1.11 dsl * data block be sent.
2688 1.11 dsl * The earlier documentation differs, I don't know how it behaves.
2689 1.11 dsl */
2690 1.1 jakllsch KASSERT(len <= 0x10000);
2691 1.1 jakllsch status = XHCI_TRB_2_IRQ_SET(0) |
2692 1.1 jakllsch XHCI_TRB_2_TDSZ_SET(1) |
2693 1.1 jakllsch XHCI_TRB_2_BYTES_SET(len);
2694 1.1 jakllsch control = XHCI_TRB_3_TYPE_SET(XHCI_TRB_TYPE_NORMAL) |
2695 1.1 jakllsch XHCI_TRB_3_ISP_BIT | XHCI_TRB_3_IOC_BIT;
2696 1.1 jakllsch xhci_trb_put(&xx->xx_trb[i++], parameter, status, control);
2697 1.1 jakllsch
2698 1.1 jakllsch mutex_enter(&tr->xr_lock);
2699 1.1 jakllsch xhci_ring_put(sc, tr, xfer, xx->xx_trb, i);
2700 1.1 jakllsch mutex_exit(&tr->xr_lock);
2701 1.1 jakllsch
2702 1.1 jakllsch xhci_db_write_4(sc, XHCI_DOORBELL(xs->xs_idx), dci);
2703 1.1 jakllsch
2704 1.1 jakllsch if (sc->sc_bus.use_polling) {
2705 1.1 jakllsch device_printf(sc->sc_dev, "%s polling\n", __func__);
2706 1.1 jakllsch //xhci_waitintr(sc, xfer);
2707 1.1 jakllsch }
2708 1.1 jakllsch
2709 1.1 jakllsch return USBD_IN_PROGRESS;
2710 1.1 jakllsch }
2711 1.1 jakllsch
2712 1.1 jakllsch static void
2713 1.1 jakllsch xhci_device_bulk_done(usbd_xfer_handle xfer)
2714 1.1 jakllsch {
2715 1.1 jakllsch //struct xhci_softc * const sc = xfer->pipe->device->bus->hci_private;
2716 1.1 jakllsch //struct xhci_slot * const xs = xfer->pipe->device->hci_private;
2717 1.1 jakllsch //const u_int dci = xhci_ep_get_dci(xfer->pipe->endpoint->edesc);
2718 1.1 jakllsch const u_int endpt = xfer->pipe->endpoint->edesc->bEndpointAddress;
2719 1.1 jakllsch const bool isread = UE_GET_DIR(endpt) == UE_DIR_IN;
2720 1.1 jakllsch
2721 1.1 jakllsch DPRINTF(("%s\n", __func__));
2722 1.1 jakllsch
2723 1.1 jakllsch #if 0
2724 1.1 jakllsch device_printf(sc->sc_dev, "%s %p slot %u dci %u\n", __func__, xfer,
2725 1.1 jakllsch xs->xs_idx, dci);
2726 1.1 jakllsch #endif
2727 1.1 jakllsch
2728 1.1 jakllsch callout_stop(&xfer->timeout_handle); /* XXX wrong place */
2729 1.1 jakllsch
2730 1.1 jakllsch usb_syncmem(&xfer->dmabuf, 0, xfer->length,
2731 1.1 jakllsch isread ? BUS_DMASYNC_POSTREAD : BUS_DMASYNC_POSTWRITE);
2732 1.1 jakllsch
2733 1.1 jakllsch
2734 1.1 jakllsch }
2735 1.1 jakllsch
2736 1.1 jakllsch static void
2737 1.1 jakllsch xhci_device_bulk_abort(usbd_xfer_handle xfer)
2738 1.1 jakllsch {
2739 1.1 jakllsch DPRINTF(("%s\n", __func__));
2740 1.1 jakllsch }
2741 1.1 jakllsch
2742 1.1 jakllsch static void
2743 1.1 jakllsch xhci_device_bulk_close(usbd_pipe_handle pipe)
2744 1.1 jakllsch {
2745 1.1 jakllsch DPRINTF(("%s\n", __func__));
2746 1.1 jakllsch }
2747 1.1 jakllsch
2748 1.1 jakllsch /* --------------- */
2749 1.1 jakllsch /* device intrrupt */
2750 1.1 jakllsch
2751 1.1 jakllsch static usbd_status
2752 1.1 jakllsch xhci_device_intr_transfer(usbd_xfer_handle xfer)
2753 1.1 jakllsch {
2754 1.1 jakllsch struct xhci_softc * const sc = xfer->pipe->device->bus->hci_private;
2755 1.1 jakllsch usbd_status err;
2756 1.1 jakllsch
2757 1.1 jakllsch /* Insert last in queue. */
2758 1.1 jakllsch mutex_enter(&sc->sc_lock);
2759 1.1 jakllsch err = usb_insert_transfer(xfer);
2760 1.1 jakllsch mutex_exit(&sc->sc_lock);
2761 1.1 jakllsch if (err)
2762 1.1 jakllsch return err;
2763 1.1 jakllsch
2764 1.1 jakllsch /*
2765 1.1 jakllsch * Pipe isn't running (otherwise err would be USBD_INPROG),
2766 1.1 jakllsch * so start it first.
2767 1.1 jakllsch */
2768 1.1 jakllsch return (xhci_device_intr_start(SIMPLEQ_FIRST(&xfer->pipe->queue)));
2769 1.1 jakllsch }
2770 1.1 jakllsch
2771 1.1 jakllsch static usbd_status
2772 1.1 jakllsch xhci_device_intr_start(usbd_xfer_handle xfer)
2773 1.1 jakllsch {
2774 1.1 jakllsch struct xhci_softc * const sc = xfer->pipe->device->bus->hci_private;
2775 1.1 jakllsch struct xhci_slot * const xs = xfer->pipe->device->hci_private;
2776 1.1 jakllsch const u_int dci = xhci_ep_get_dci(xfer->pipe->endpoint->edesc);
2777 1.1 jakllsch struct xhci_ring * const tr = &xs->xs_ep[dci].xe_tr;
2778 1.1 jakllsch struct xhci_xfer * const xx = (void *)xfer;
2779 1.1 jakllsch const uint32_t len = xfer->length;
2780 1.1 jakllsch usb_dma_t * const dma = &xfer->dmabuf;
2781 1.1 jakllsch uint64_t parameter;
2782 1.1 jakllsch uint32_t status;
2783 1.1 jakllsch uint32_t control;
2784 1.1 jakllsch u_int i = 0;
2785 1.1 jakllsch
2786 1.1 jakllsch #if 0
2787 1.1 jakllsch device_printf(sc->sc_dev, "%s %p slot %u dci %u\n", __func__, xfer,
2788 1.1 jakllsch xs->xs_idx, dci);
2789 1.1 jakllsch #endif
2790 1.1 jakllsch
2791 1.1 jakllsch if (sc->sc_dying)
2792 1.1 jakllsch return USBD_IOERROR;
2793 1.1 jakllsch
2794 1.1 jakllsch KASSERT((xfer->rqflags & URQ_REQUEST) == 0);
2795 1.1 jakllsch
2796 1.1 jakllsch parameter = DMAADDR(dma, 0);
2797 1.1 jakllsch KASSERT(len <= 0x10000);
2798 1.1 jakllsch status = XHCI_TRB_2_IRQ_SET(0) |
2799 1.1 jakllsch XHCI_TRB_2_TDSZ_SET(1) |
2800 1.1 jakllsch XHCI_TRB_2_BYTES_SET(len);
2801 1.1 jakllsch control = XHCI_TRB_3_TYPE_SET(XHCI_TRB_TYPE_NORMAL) |
2802 1.1 jakllsch XHCI_TRB_3_ISP_BIT | XHCI_TRB_3_IOC_BIT;
2803 1.1 jakllsch xhci_trb_put(&xx->xx_trb[i++], parameter, status, control);
2804 1.1 jakllsch
2805 1.1 jakllsch mutex_enter(&tr->xr_lock);
2806 1.1 jakllsch xhci_ring_put(sc, tr, xfer, xx->xx_trb, i);
2807 1.1 jakllsch mutex_exit(&tr->xr_lock);
2808 1.1 jakllsch
2809 1.1 jakllsch xhci_db_write_4(sc, XHCI_DOORBELL(xs->xs_idx), dci);
2810 1.1 jakllsch
2811 1.1 jakllsch if (sc->sc_bus.use_polling) {
2812 1.18 ozaki #ifdef XHCI_DEBUG
2813 1.1 jakllsch device_printf(sc->sc_dev, "%s polling\n", __func__);
2814 1.18 ozaki #endif
2815 1.1 jakllsch //xhci_waitintr(sc, xfer);
2816 1.1 jakllsch }
2817 1.1 jakllsch
2818 1.1 jakllsch return USBD_IN_PROGRESS;
2819 1.1 jakllsch }
2820 1.1 jakllsch
2821 1.1 jakllsch static void
2822 1.1 jakllsch xhci_device_intr_done(usbd_xfer_handle xfer)
2823 1.1 jakllsch {
2824 1.20 pgoyette struct xhci_softc * const sc __diagused =
2825 1.20 pgoyette xfer->pipe->device->bus->hci_private;
2826 1.19 ozaki #ifdef XHCI_DEBUG
2827 1.19 ozaki struct xhci_slot * const xs = xfer->pipe->device->hci_private;
2828 1.19 ozaki const u_int dci = xhci_ep_get_dci(xfer->pipe->endpoint->edesc);
2829 1.19 ozaki #endif
2830 1.1 jakllsch const u_int endpt = xfer->pipe->endpoint->edesc->bEndpointAddress;
2831 1.1 jakllsch const bool isread = UE_GET_DIR(endpt) == UE_DIR_IN;
2832 1.1 jakllsch DPRINTF(("%s\n", __func__));
2833 1.1 jakllsch
2834 1.18 ozaki #ifdef XHCI_DEBUG
2835 1.1 jakllsch device_printf(sc->sc_dev, "%s %p slot %u dci %u\n", __func__, xfer,
2836 1.1 jakllsch xs->xs_idx, dci);
2837 1.17 ozaki #endif
2838 1.1 jakllsch
2839 1.1 jakllsch KASSERT(sc->sc_bus.use_polling || mutex_owned(&sc->sc_lock));
2840 1.1 jakllsch
2841 1.1 jakllsch usb_syncmem(&xfer->dmabuf, 0, xfer->length,
2842 1.1 jakllsch isread ? BUS_DMASYNC_POSTREAD : BUS_DMASYNC_POSTWRITE);
2843 1.1 jakllsch
2844 1.1 jakllsch #if 0
2845 1.1 jakllsch device_printf(sc->sc_dev, "");
2846 1.1 jakllsch for (size_t i = 0; i < xfer->length; i++) {
2847 1.1 jakllsch printf(" %02x", ((uint8_t const *)xfer->buffer)[i]);
2848 1.1 jakllsch }
2849 1.1 jakllsch printf("\n");
2850 1.1 jakllsch #endif
2851 1.1 jakllsch
2852 1.1 jakllsch if (xfer->pipe->repeat) {
2853 1.1 jakllsch xfer->status = xhci_device_intr_start(xfer);
2854 1.1 jakllsch } else {
2855 1.1 jakllsch callout_stop(&xfer->timeout_handle); /* XXX */
2856 1.1 jakllsch }
2857 1.1 jakllsch
2858 1.1 jakllsch }
2859 1.1 jakllsch
2860 1.1 jakllsch static void
2861 1.1 jakllsch xhci_device_intr_abort(usbd_xfer_handle xfer)
2862 1.1 jakllsch {
2863 1.1 jakllsch struct xhci_softc * const sc = xfer->pipe->device->bus->hci_private;
2864 1.1 jakllsch DPRINTF(("%s\n", __func__));
2865 1.10 skrll
2866 1.10 skrll KASSERT(mutex_owned(&sc->sc_lock));
2867 1.1 jakllsch device_printf(sc->sc_dev, "%s %p\n", __func__, xfer);
2868 1.21 skrll KASSERT(xfer->pipe->intrxfer == xfer);
2869 1.1 jakllsch xfer->status = USBD_CANCELLED;
2870 1.1 jakllsch usb_transfer_complete(xfer);
2871 1.1 jakllsch }
2872 1.1 jakllsch
2873 1.1 jakllsch static void
2874 1.1 jakllsch xhci_device_intr_close(usbd_pipe_handle pipe)
2875 1.1 jakllsch {
2876 1.1 jakllsch struct xhci_softc * const sc = pipe->device->bus->hci_private;
2877 1.1 jakllsch DPRINTF(("%s\n", __func__));
2878 1.1 jakllsch device_printf(sc->sc_dev, "%s %p\n", __func__, pipe);
2879 1.1 jakllsch xhci_unconfigure_endpoint(pipe);
2880 1.1 jakllsch }
2881 1.1 jakllsch
2882 1.1 jakllsch /* ------------ */
2883 1.1 jakllsch
2884 1.1 jakllsch static void
2885 1.1 jakllsch xhci_timeout(void *addr)
2886 1.1 jakllsch {
2887 1.1 jakllsch struct xhci_xfer * const xx = addr;
2888 1.1 jakllsch usbd_xfer_handle const xfer = &xx->xx_xfer;
2889 1.1 jakllsch struct xhci_softc * const sc = xfer->pipe->device->bus->hci_private;
2890 1.1 jakllsch
2891 1.1 jakllsch if (sc->sc_dying) {
2892 1.1 jakllsch return;
2893 1.1 jakllsch }
2894 1.1 jakllsch
2895 1.1 jakllsch usb_init_task(&xx->xx_abort_task, xhci_timeout_task, addr,
2896 1.1 jakllsch USB_TASKQ_MPSAFE);
2897 1.1 jakllsch usb_add_task(xx->xx_xfer.pipe->device, &xx->xx_abort_task,
2898 1.1 jakllsch USB_TASKQ_HC);
2899 1.1 jakllsch }
2900 1.1 jakllsch
2901 1.1 jakllsch static void
2902 1.1 jakllsch xhci_timeout_task(void *addr)
2903 1.1 jakllsch {
2904 1.1 jakllsch usbd_xfer_handle const xfer = addr;
2905 1.1 jakllsch struct xhci_softc * const sc = xfer->pipe->device->bus->hci_private;
2906 1.1 jakllsch
2907 1.1 jakllsch mutex_enter(&sc->sc_lock);
2908 1.1 jakllsch #if 0
2909 1.1 jakllsch xhci_abort_xfer(xfer, USBD_TIMEOUT);
2910 1.1 jakllsch #else
2911 1.1 jakllsch xfer->status = USBD_TIMEOUT;
2912 1.1 jakllsch usb_transfer_complete(xfer);
2913 1.1 jakllsch #endif
2914 1.1 jakllsch mutex_exit(&sc->sc_lock);
2915 1.1 jakllsch }
2916