xhci.c revision 1.179 1 1.179 mlelstv /* $NetBSD: xhci.c,v 1.179 2023/06/05 03:44:47 mlelstv 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 1.34 skrll /*
30 1.41 skrll * USB rev 2.0 and rev 3.1 specification
31 1.41 skrll * http://www.usb.org/developers/docs/
32 1.34 skrll * xHCI rev 1.1 specification
33 1.41 skrll * http://www.intel.com/technology/usb/spec.htm
34 1.34 skrll */
35 1.34 skrll
36 1.1 jakllsch #include <sys/cdefs.h>
37 1.179 mlelstv __KERNEL_RCSID(0, "$NetBSD: xhci.c,v 1.179 2023/06/05 03:44:47 mlelstv Exp $");
38 1.27 skrll
39 1.46 pooka #ifdef _KERNEL_OPT
40 1.27 skrll #include "opt_usb.h"
41 1.46 pooka #endif
42 1.1 jakllsch
43 1.1 jakllsch #include <sys/param.h>
44 1.1 jakllsch #include <sys/systm.h>
45 1.1 jakllsch #include <sys/kernel.h>
46 1.1 jakllsch #include <sys/kmem.h>
47 1.1 jakllsch #include <sys/device.h>
48 1.1 jakllsch #include <sys/select.h>
49 1.1 jakllsch #include <sys/proc.h>
50 1.1 jakllsch #include <sys/queue.h>
51 1.1 jakllsch #include <sys/mutex.h>
52 1.1 jakllsch #include <sys/condvar.h>
53 1.1 jakllsch #include <sys/bus.h>
54 1.1 jakllsch #include <sys/cpu.h>
55 1.27 skrll #include <sys/sysctl.h>
56 1.1 jakllsch
57 1.1 jakllsch #include <machine/endian.h>
58 1.1 jakllsch
59 1.1 jakllsch #include <dev/usb/usb.h>
60 1.1 jakllsch #include <dev/usb/usbdi.h>
61 1.1 jakllsch #include <dev/usb/usbdivar.h>
62 1.34 skrll #include <dev/usb/usbdi_util.h>
63 1.27 skrll #include <dev/usb/usbhist.h>
64 1.1 jakllsch #include <dev/usb/usb_mem.h>
65 1.1 jakllsch #include <dev/usb/usb_quirks.h>
66 1.1 jakllsch
67 1.1 jakllsch #include <dev/usb/xhcireg.h>
68 1.1 jakllsch #include <dev/usb/xhcivar.h>
69 1.34 skrll #include <dev/usb/usbroothub.h>
70 1.1 jakllsch
71 1.27 skrll
72 1.27 skrll #ifdef USB_DEBUG
73 1.27 skrll #ifndef XHCI_DEBUG
74 1.27 skrll #define xhcidebug 0
75 1.34 skrll #else /* !XHCI_DEBUG */
76 1.79 christos #define HEXDUMP(a, b, c) \
77 1.79 christos do { \
78 1.79 christos if (xhcidebug > 0) \
79 1.80 christos hexdump(printf, a, b, c); \
80 1.79 christos } while (/*CONSTCOND*/0)
81 1.27 skrll static int xhcidebug = 0;
82 1.27 skrll
83 1.27 skrll SYSCTL_SETUP(sysctl_hw_xhci_setup, "sysctl hw.xhci setup")
84 1.27 skrll {
85 1.27 skrll int err;
86 1.27 skrll const struct sysctlnode *rnode;
87 1.27 skrll const struct sysctlnode *cnode;
88 1.27 skrll
89 1.27 skrll err = sysctl_createv(clog, 0, NULL, &rnode,
90 1.27 skrll CTLFLAG_PERMANENT, CTLTYPE_NODE, "xhci",
91 1.27 skrll SYSCTL_DESCR("xhci global controls"),
92 1.27 skrll NULL, 0, NULL, 0, CTL_HW, CTL_CREATE, CTL_EOL);
93 1.27 skrll
94 1.27 skrll if (err)
95 1.27 skrll goto fail;
96 1.27 skrll
97 1.27 skrll /* control debugging printfs */
98 1.27 skrll err = sysctl_createv(clog, 0, &rnode, &cnode,
99 1.27 skrll CTLFLAG_PERMANENT|CTLFLAG_READWRITE, CTLTYPE_INT,
100 1.27 skrll "debug", SYSCTL_DESCR("Enable debugging output"),
101 1.27 skrll NULL, 0, &xhcidebug, sizeof(xhcidebug), CTL_CREATE, CTL_EOL);
102 1.27 skrll if (err)
103 1.27 skrll goto fail;
104 1.27 skrll
105 1.27 skrll return;
106 1.27 skrll fail:
107 1.27 skrll aprint_error("%s: sysctl_createv failed (err = %d)\n", __func__, err);
108 1.27 skrll }
109 1.27 skrll
110 1.34 skrll #endif /* !XHCI_DEBUG */
111 1.27 skrll #endif /* USB_DEBUG */
112 1.27 skrll
113 1.79 christos #ifndef HEXDUMP
114 1.79 christos #define HEXDUMP(a, b, c)
115 1.79 christos #endif
116 1.79 christos
117 1.111 mrg #define DPRINTF(FMT,A,B,C,D) USBHIST_LOG(xhcidebug,FMT,A,B,C,D)
118 1.111 mrg #define DPRINTFN(N,FMT,A,B,C,D) USBHIST_LOGN(xhcidebug,N,FMT,A,B,C,D)
119 1.111 mrg #define XHCIHIST_FUNC() USBHIST_FUNC()
120 1.111 mrg #define XHCIHIST_CALLED(name) USBHIST_CALLED(xhcidebug)
121 1.111 mrg #define XHCIHIST_CALLARGS(FMT,A,B,C,D) \
122 1.111 mrg USBHIST_CALLARGS(xhcidebug,FMT,A,B,C,D)
123 1.1 jakllsch
124 1.1 jakllsch #define XHCI_DCI_SLOT 0
125 1.1 jakllsch #define XHCI_DCI_EP_CONTROL 1
126 1.1 jakllsch
127 1.1 jakllsch #define XHCI_ICI_INPUT_CONTROL 0
128 1.1 jakllsch
129 1.1 jakllsch struct xhci_pipe {
130 1.1 jakllsch struct usbd_pipe xp_pipe;
131 1.34 skrll struct usb_task xp_async_task;
132 1.134 jakllsch int16_t xp_isoc_next; /* next frame */
133 1.134 jakllsch uint8_t xp_maxb; /* max burst */
134 1.134 jakllsch uint8_t xp_mult;
135 1.1 jakllsch };
136 1.1 jakllsch
137 1.1 jakllsch #define XHCI_COMMAND_RING_TRBS 256
138 1.1 jakllsch #define XHCI_EVENT_RING_TRBS 256
139 1.1 jakllsch #define XHCI_EVENT_RING_SEGMENTS 1
140 1.1 jakllsch #define XHCI_TRB_3_ED_BIT XHCI_TRB_3_ISP_BIT
141 1.1 jakllsch
142 1.34 skrll static usbd_status xhci_open(struct usbd_pipe *);
143 1.34 skrll static void xhci_close_pipe(struct usbd_pipe *);
144 1.1 jakllsch static int xhci_intr1(struct xhci_softc * const);
145 1.1 jakllsch static void xhci_softintr(void *);
146 1.1 jakllsch static void xhci_poll(struct usbd_bus *);
147 1.34 skrll static struct usbd_xfer *xhci_allocx(struct usbd_bus *, unsigned int);
148 1.34 skrll static void xhci_freex(struct usbd_bus *, struct usbd_xfer *);
149 1.116 riastrad static void xhci_abortx(struct usbd_xfer *);
150 1.116 riastrad static bool xhci_dying(struct usbd_bus *);
151 1.1 jakllsch static void xhci_get_lock(struct usbd_bus *, kmutex_t **);
152 1.34 skrll static usbd_status xhci_new_device(device_t, struct usbd_bus *, int, int, int,
153 1.1 jakllsch struct usbd_port *);
154 1.34 skrll static int xhci_roothub_ctrl(struct usbd_bus *, usb_device_request_t *,
155 1.34 skrll void *, int);
156 1.1 jakllsch
157 1.155 riastrad static void xhci_pipe_restart(struct usbd_pipe *);
158 1.161 riastrad static void xhci_pipe_restart_async_task(void *);
159 1.161 riastrad static void xhci_pipe_restart_async(struct usbd_pipe *);
160 1.155 riastrad
161 1.34 skrll static usbd_status xhci_configure_endpoint(struct usbd_pipe *);
162 1.34 skrll //static usbd_status xhci_unconfigure_endpoint(struct usbd_pipe *);
163 1.155 riastrad static void xhci_reset_endpoint(struct usbd_pipe *);
164 1.140 riastrad static usbd_status xhci_stop_endpoint_cmd(struct xhci_softc *,
165 1.140 riastrad struct xhci_slot *, u_int, uint32_t);
166 1.34 skrll static usbd_status xhci_stop_endpoint(struct usbd_pipe *);
167 1.1 jakllsch
168 1.55 skrll static void xhci_host_dequeue(struct xhci_ring * const);
169 1.155 riastrad static void xhci_set_dequeue(struct usbd_pipe *);
170 1.1 jakllsch
171 1.1 jakllsch static usbd_status xhci_do_command(struct xhci_softc * const,
172 1.101 jakllsch struct xhci_soft_trb * const, int);
173 1.34 skrll static usbd_status xhci_do_command_locked(struct xhci_softc * const,
174 1.101 jakllsch struct xhci_soft_trb * const, int);
175 1.48 skrll static usbd_status xhci_init_slot(struct usbd_device *, uint32_t);
176 1.123 skrll static void xhci_free_slot(struct xhci_softc *, struct xhci_slot *);
177 1.51 skrll static usbd_status xhci_set_address(struct usbd_device *, uint32_t, bool);
178 1.1 jakllsch static usbd_status xhci_enable_slot(struct xhci_softc * const,
179 1.1 jakllsch uint8_t * const);
180 1.34 skrll static usbd_status xhci_disable_slot(struct xhci_softc * const, uint8_t);
181 1.1 jakllsch static usbd_status xhci_address_device(struct xhci_softc * const,
182 1.1 jakllsch uint64_t, uint8_t, bool);
183 1.34 skrll static void xhci_set_dcba(struct xhci_softc * const, uint64_t, int);
184 1.1 jakllsch static usbd_status xhci_update_ep0_mps(struct xhci_softc * const,
185 1.1 jakllsch struct xhci_slot * const, u_int);
186 1.1 jakllsch static usbd_status xhci_ring_init(struct xhci_softc * const,
187 1.123 skrll struct xhci_ring **, size_t, size_t);
188 1.123 skrll static void xhci_ring_free(struct xhci_softc * const,
189 1.123 skrll struct xhci_ring ** const);
190 1.1 jakllsch
191 1.51 skrll static void xhci_setup_ctx(struct usbd_pipe *);
192 1.51 skrll static void xhci_setup_route(struct usbd_pipe *, uint32_t *);
193 1.51 skrll static void xhci_setup_tthub(struct usbd_pipe *, uint32_t *);
194 1.51 skrll static void xhci_setup_maxburst(struct usbd_pipe *, uint32_t *);
195 1.179 mlelstv static uint32_t xhci_bival2ival(uint32_t, uint32_t, uint32_t);
196 1.51 skrll
197 1.34 skrll static void xhci_noop(struct usbd_pipe *);
198 1.1 jakllsch
199 1.34 skrll static usbd_status xhci_root_intr_transfer(struct usbd_xfer *);
200 1.34 skrll static usbd_status xhci_root_intr_start(struct usbd_xfer *);
201 1.34 skrll static void xhci_root_intr_abort(struct usbd_xfer *);
202 1.34 skrll static void xhci_root_intr_close(struct usbd_pipe *);
203 1.34 skrll static void xhci_root_intr_done(struct usbd_xfer *);
204 1.34 skrll
205 1.34 skrll static usbd_status xhci_device_ctrl_transfer(struct usbd_xfer *);
206 1.34 skrll static usbd_status xhci_device_ctrl_start(struct usbd_xfer *);
207 1.34 skrll static void xhci_device_ctrl_abort(struct usbd_xfer *);
208 1.34 skrll static void xhci_device_ctrl_close(struct usbd_pipe *);
209 1.34 skrll static void xhci_device_ctrl_done(struct usbd_xfer *);
210 1.34 skrll
211 1.134 jakllsch static usbd_status xhci_device_isoc_transfer(struct usbd_xfer *);
212 1.134 jakllsch static usbd_status xhci_device_isoc_enter(struct usbd_xfer *);
213 1.134 jakllsch static void xhci_device_isoc_abort(struct usbd_xfer *);
214 1.134 jakllsch static void xhci_device_isoc_close(struct usbd_pipe *);
215 1.134 jakllsch static void xhci_device_isoc_done(struct usbd_xfer *);
216 1.134 jakllsch
217 1.34 skrll static usbd_status xhci_device_intr_transfer(struct usbd_xfer *);
218 1.34 skrll static usbd_status xhci_device_intr_start(struct usbd_xfer *);
219 1.34 skrll static void xhci_device_intr_abort(struct usbd_xfer *);
220 1.34 skrll static void xhci_device_intr_close(struct usbd_pipe *);
221 1.34 skrll static void xhci_device_intr_done(struct usbd_xfer *);
222 1.34 skrll
223 1.34 skrll static usbd_status xhci_device_bulk_transfer(struct usbd_xfer *);
224 1.34 skrll static usbd_status xhci_device_bulk_start(struct usbd_xfer *);
225 1.34 skrll static void xhci_device_bulk_abort(struct usbd_xfer *);
226 1.34 skrll static void xhci_device_bulk_close(struct usbd_pipe *);
227 1.34 skrll static void xhci_device_bulk_done(struct usbd_xfer *);
228 1.1 jakllsch
229 1.1 jakllsch static const struct usbd_bus_methods xhci_bus_methods = {
230 1.34 skrll .ubm_open = xhci_open,
231 1.34 skrll .ubm_softint = xhci_softintr,
232 1.34 skrll .ubm_dopoll = xhci_poll,
233 1.34 skrll .ubm_allocx = xhci_allocx,
234 1.34 skrll .ubm_freex = xhci_freex,
235 1.116 riastrad .ubm_abortx = xhci_abortx,
236 1.116 riastrad .ubm_dying = xhci_dying,
237 1.34 skrll .ubm_getlock = xhci_get_lock,
238 1.34 skrll .ubm_newdev = xhci_new_device,
239 1.34 skrll .ubm_rhctrl = xhci_roothub_ctrl,
240 1.1 jakllsch };
241 1.1 jakllsch
242 1.1 jakllsch static const struct usbd_pipe_methods xhci_root_intr_methods = {
243 1.34 skrll .upm_transfer = xhci_root_intr_transfer,
244 1.34 skrll .upm_start = xhci_root_intr_start,
245 1.34 skrll .upm_abort = xhci_root_intr_abort,
246 1.34 skrll .upm_close = xhci_root_intr_close,
247 1.34 skrll .upm_cleartoggle = xhci_noop,
248 1.34 skrll .upm_done = xhci_root_intr_done,
249 1.1 jakllsch };
250 1.1 jakllsch
251 1.1 jakllsch
252 1.1 jakllsch static const struct usbd_pipe_methods xhci_device_ctrl_methods = {
253 1.34 skrll .upm_transfer = xhci_device_ctrl_transfer,
254 1.34 skrll .upm_start = xhci_device_ctrl_start,
255 1.34 skrll .upm_abort = xhci_device_ctrl_abort,
256 1.34 skrll .upm_close = xhci_device_ctrl_close,
257 1.34 skrll .upm_cleartoggle = xhci_noop,
258 1.34 skrll .upm_done = xhci_device_ctrl_done,
259 1.1 jakllsch };
260 1.1 jakllsch
261 1.1 jakllsch static const struct usbd_pipe_methods xhci_device_isoc_methods = {
262 1.134 jakllsch .upm_transfer = xhci_device_isoc_transfer,
263 1.134 jakllsch .upm_abort = xhci_device_isoc_abort,
264 1.134 jakllsch .upm_close = xhci_device_isoc_close,
265 1.34 skrll .upm_cleartoggle = xhci_noop,
266 1.134 jakllsch .upm_done = xhci_device_isoc_done,
267 1.1 jakllsch };
268 1.1 jakllsch
269 1.1 jakllsch static const struct usbd_pipe_methods xhci_device_bulk_methods = {
270 1.34 skrll .upm_transfer = xhci_device_bulk_transfer,
271 1.34 skrll .upm_start = xhci_device_bulk_start,
272 1.34 skrll .upm_abort = xhci_device_bulk_abort,
273 1.34 skrll .upm_close = xhci_device_bulk_close,
274 1.34 skrll .upm_cleartoggle = xhci_noop,
275 1.34 skrll .upm_done = xhci_device_bulk_done,
276 1.1 jakllsch };
277 1.1 jakllsch
278 1.1 jakllsch static const struct usbd_pipe_methods xhci_device_intr_methods = {
279 1.34 skrll .upm_transfer = xhci_device_intr_transfer,
280 1.34 skrll .upm_start = xhci_device_intr_start,
281 1.34 skrll .upm_abort = xhci_device_intr_abort,
282 1.34 skrll .upm_close = xhci_device_intr_close,
283 1.34 skrll .upm_cleartoggle = xhci_noop,
284 1.34 skrll .upm_done = xhci_device_intr_done,
285 1.1 jakllsch };
286 1.1 jakllsch
287 1.1 jakllsch static inline uint32_t
288 1.34 skrll xhci_read_1(const struct xhci_softc * const sc, bus_size_t offset)
289 1.34 skrll {
290 1.34 skrll return bus_space_read_1(sc->sc_iot, sc->sc_ioh, offset);
291 1.34 skrll }
292 1.34 skrll
293 1.34 skrll static inline uint32_t
294 1.130 skrll xhci_read_2(const struct xhci_softc * const sc, bus_size_t offset)
295 1.130 skrll {
296 1.130 skrll return bus_space_read_2(sc->sc_iot, sc->sc_ioh, offset);
297 1.130 skrll }
298 1.130 skrll
299 1.130 skrll static inline uint32_t
300 1.1 jakllsch xhci_read_4(const struct xhci_softc * const sc, bus_size_t offset)
301 1.1 jakllsch {
302 1.1 jakllsch return bus_space_read_4(sc->sc_iot, sc->sc_ioh, offset);
303 1.1 jakllsch }
304 1.1 jakllsch
305 1.34 skrll static inline void
306 1.34 skrll xhci_write_1(const struct xhci_softc * const sc, bus_size_t offset,
307 1.34 skrll uint32_t value)
308 1.34 skrll {
309 1.34 skrll bus_space_write_1(sc->sc_iot, sc->sc_ioh, offset, value);
310 1.34 skrll }
311 1.34 skrll
312 1.4 apb #if 0 /* unused */
313 1.1 jakllsch static inline void
314 1.1 jakllsch xhci_write_4(const struct xhci_softc * const sc, bus_size_t offset,
315 1.1 jakllsch uint32_t value)
316 1.1 jakllsch {
317 1.1 jakllsch bus_space_write_4(sc->sc_iot, sc->sc_ioh, offset, value);
318 1.1 jakllsch }
319 1.4 apb #endif /* unused */
320 1.1 jakllsch
321 1.1 jakllsch static inline uint32_t
322 1.1 jakllsch xhci_cap_read_4(const struct xhci_softc * const sc, bus_size_t offset)
323 1.1 jakllsch {
324 1.1 jakllsch return bus_space_read_4(sc->sc_iot, sc->sc_cbh, offset);
325 1.1 jakllsch }
326 1.1 jakllsch
327 1.1 jakllsch static inline uint32_t
328 1.1 jakllsch xhci_op_read_4(const struct xhci_softc * const sc, bus_size_t offset)
329 1.1 jakllsch {
330 1.1 jakllsch return bus_space_read_4(sc->sc_iot, sc->sc_obh, offset);
331 1.1 jakllsch }
332 1.1 jakllsch
333 1.1 jakllsch static inline void
334 1.1 jakllsch xhci_op_write_4(const struct xhci_softc * const sc, bus_size_t offset,
335 1.1 jakllsch uint32_t value)
336 1.1 jakllsch {
337 1.1 jakllsch bus_space_write_4(sc->sc_iot, sc->sc_obh, offset, value);
338 1.1 jakllsch }
339 1.1 jakllsch
340 1.1 jakllsch static inline uint64_t
341 1.1 jakllsch xhci_op_read_8(const struct xhci_softc * const sc, bus_size_t offset)
342 1.1 jakllsch {
343 1.1 jakllsch uint64_t value;
344 1.1 jakllsch
345 1.1 jakllsch #ifdef XHCI_USE_BUS_SPACE_8
346 1.150 jakllsch value = bus_space_read_8(sc->sc_iot, sc->sc_obh, offset);
347 1.1 jakllsch #else
348 1.150 jakllsch value = bus_space_read_4(sc->sc_iot, sc->sc_obh, offset);
349 1.150 jakllsch value |= (uint64_t)bus_space_read_4(sc->sc_iot, sc->sc_obh,
350 1.150 jakllsch offset + 4) << 32;
351 1.1 jakllsch #endif
352 1.1 jakllsch
353 1.1 jakllsch return value;
354 1.1 jakllsch }
355 1.1 jakllsch
356 1.1 jakllsch static inline void
357 1.1 jakllsch xhci_op_write_8(const struct xhci_softc * const sc, bus_size_t offset,
358 1.1 jakllsch uint64_t value)
359 1.1 jakllsch {
360 1.1 jakllsch #ifdef XHCI_USE_BUS_SPACE_8
361 1.150 jakllsch bus_space_write_8(sc->sc_iot, sc->sc_obh, offset, value);
362 1.1 jakllsch #else
363 1.150 jakllsch bus_space_write_4(sc->sc_iot, sc->sc_obh, offset + 0,
364 1.150 jakllsch (value >> 0) & 0xffffffff);
365 1.150 jakllsch bus_space_write_4(sc->sc_iot, sc->sc_obh, offset + 4,
366 1.150 jakllsch (value >> 32) & 0xffffffff);
367 1.1 jakllsch #endif
368 1.1 jakllsch }
369 1.1 jakllsch
370 1.1 jakllsch static inline uint32_t
371 1.1 jakllsch xhci_rt_read_4(const struct xhci_softc * const sc, bus_size_t offset)
372 1.1 jakllsch {
373 1.1 jakllsch return bus_space_read_4(sc->sc_iot, sc->sc_rbh, offset);
374 1.1 jakllsch }
375 1.1 jakllsch
376 1.1 jakllsch static inline void
377 1.1 jakllsch xhci_rt_write_4(const struct xhci_softc * const sc, bus_size_t offset,
378 1.1 jakllsch uint32_t value)
379 1.1 jakllsch {
380 1.1 jakllsch bus_space_write_4(sc->sc_iot, sc->sc_rbh, offset, value);
381 1.1 jakllsch }
382 1.1 jakllsch
383 1.1 jakllsch static inline uint64_t
384 1.1 jakllsch xhci_rt_read_8(const struct xhci_softc * const sc, bus_size_t offset)
385 1.1 jakllsch {
386 1.1 jakllsch uint64_t value;
387 1.1 jakllsch
388 1.1 jakllsch #ifdef XHCI_USE_BUS_SPACE_8
389 1.150 jakllsch value = bus_space_read_8(sc->sc_iot, sc->sc_rbh, offset);
390 1.1 jakllsch #else
391 1.150 jakllsch value = bus_space_read_4(sc->sc_iot, sc->sc_rbh, offset);
392 1.150 jakllsch value |= (uint64_t)bus_space_read_4(sc->sc_iot, sc->sc_rbh,
393 1.150 jakllsch offset + 4) << 32;
394 1.1 jakllsch #endif
395 1.1 jakllsch
396 1.1 jakllsch return value;
397 1.1 jakllsch }
398 1.1 jakllsch
399 1.1 jakllsch static inline void
400 1.1 jakllsch xhci_rt_write_8(const struct xhci_softc * const sc, bus_size_t offset,
401 1.1 jakllsch uint64_t value)
402 1.1 jakllsch {
403 1.1 jakllsch #ifdef XHCI_USE_BUS_SPACE_8
404 1.150 jakllsch bus_space_write_8(sc->sc_iot, sc->sc_rbh, offset, value);
405 1.1 jakllsch #else
406 1.150 jakllsch bus_space_write_4(sc->sc_iot, sc->sc_rbh, offset + 0,
407 1.150 jakllsch (value >> 0) & 0xffffffff);
408 1.150 jakllsch bus_space_write_4(sc->sc_iot, sc->sc_rbh, offset + 4,
409 1.150 jakllsch (value >> 32) & 0xffffffff);
410 1.1 jakllsch #endif
411 1.1 jakllsch }
412 1.1 jakllsch
413 1.4 apb #if 0 /* unused */
414 1.1 jakllsch static inline uint32_t
415 1.1 jakllsch xhci_db_read_4(const struct xhci_softc * const sc, bus_size_t offset)
416 1.1 jakllsch {
417 1.1 jakllsch return bus_space_read_4(sc->sc_iot, sc->sc_dbh, offset);
418 1.1 jakllsch }
419 1.4 apb #endif /* unused */
420 1.1 jakllsch
421 1.1 jakllsch static inline void
422 1.1 jakllsch xhci_db_write_4(const struct xhci_softc * const sc, bus_size_t offset,
423 1.1 jakllsch uint32_t value)
424 1.1 jakllsch {
425 1.1 jakllsch bus_space_write_4(sc->sc_iot, sc->sc_dbh, offset, value);
426 1.1 jakllsch }
427 1.1 jakllsch
428 1.1 jakllsch /* --- */
429 1.1 jakllsch
430 1.1 jakllsch static inline uint8_t
431 1.1 jakllsch xhci_ep_get_type(usb_endpoint_descriptor_t * const ed)
432 1.1 jakllsch {
433 1.34 skrll u_int eptype = 0;
434 1.1 jakllsch
435 1.1 jakllsch switch (UE_GET_XFERTYPE(ed->bmAttributes)) {
436 1.1 jakllsch case UE_CONTROL:
437 1.1 jakllsch eptype = 0x0;
438 1.1 jakllsch break;
439 1.1 jakllsch case UE_ISOCHRONOUS:
440 1.1 jakllsch eptype = 0x1;
441 1.1 jakllsch break;
442 1.1 jakllsch case UE_BULK:
443 1.1 jakllsch eptype = 0x2;
444 1.1 jakllsch break;
445 1.1 jakllsch case UE_INTERRUPT:
446 1.1 jakllsch eptype = 0x3;
447 1.1 jakllsch break;
448 1.1 jakllsch }
449 1.1 jakllsch
450 1.1 jakllsch if ((UE_GET_XFERTYPE(ed->bmAttributes) == UE_CONTROL) ||
451 1.1 jakllsch (UE_GET_DIR(ed->bEndpointAddress) == UE_DIR_IN))
452 1.1 jakllsch return eptype | 0x4;
453 1.1 jakllsch else
454 1.1 jakllsch return eptype;
455 1.1 jakllsch }
456 1.1 jakllsch
457 1.1 jakllsch static u_int
458 1.1 jakllsch xhci_ep_get_dci(usb_endpoint_descriptor_t * const ed)
459 1.1 jakllsch {
460 1.1 jakllsch /* xHCI 1.0 section 4.5.1 */
461 1.1 jakllsch u_int epaddr = UE_GET_ADDR(ed->bEndpointAddress);
462 1.1 jakllsch u_int in = 0;
463 1.1 jakllsch
464 1.1 jakllsch if ((UE_GET_XFERTYPE(ed->bmAttributes) == UE_CONTROL) ||
465 1.1 jakllsch (UE_GET_DIR(ed->bEndpointAddress) == UE_DIR_IN))
466 1.1 jakllsch in = 1;
467 1.1 jakllsch
468 1.1 jakllsch return epaddr * 2 + in;
469 1.1 jakllsch }
470 1.1 jakllsch
471 1.1 jakllsch static inline u_int
472 1.1 jakllsch xhci_dci_to_ici(const u_int i)
473 1.1 jakllsch {
474 1.1 jakllsch return i + 1;
475 1.1 jakllsch }
476 1.1 jakllsch
477 1.1 jakllsch static inline void *
478 1.1 jakllsch xhci_slot_get_dcv(struct xhci_softc * const sc, struct xhci_slot * const xs,
479 1.1 jakllsch const u_int dci)
480 1.1 jakllsch {
481 1.1 jakllsch return KERNADDR(&xs->xs_dc_dma, sc->sc_ctxsz * dci);
482 1.1 jakllsch }
483 1.1 jakllsch
484 1.4 apb #if 0 /* unused */
485 1.1 jakllsch static inline bus_addr_t
486 1.1 jakllsch xhci_slot_get_dcp(struct xhci_softc * const sc, struct xhci_slot * const xs,
487 1.1 jakllsch const u_int dci)
488 1.1 jakllsch {
489 1.1 jakllsch return DMAADDR(&xs->xs_dc_dma, sc->sc_ctxsz * dci);
490 1.1 jakllsch }
491 1.4 apb #endif /* unused */
492 1.1 jakllsch
493 1.1 jakllsch static inline void *
494 1.1 jakllsch xhci_slot_get_icv(struct xhci_softc * const sc, struct xhci_slot * const xs,
495 1.1 jakllsch const u_int ici)
496 1.1 jakllsch {
497 1.1 jakllsch return KERNADDR(&xs->xs_ic_dma, sc->sc_ctxsz * ici);
498 1.1 jakllsch }
499 1.1 jakllsch
500 1.1 jakllsch static inline bus_addr_t
501 1.1 jakllsch xhci_slot_get_icp(struct xhci_softc * const sc, struct xhci_slot * const xs,
502 1.1 jakllsch const u_int ici)
503 1.1 jakllsch {
504 1.1 jakllsch return DMAADDR(&xs->xs_ic_dma, sc->sc_ctxsz * ici);
505 1.1 jakllsch }
506 1.1 jakllsch
507 1.1 jakllsch static inline struct xhci_trb *
508 1.1 jakllsch xhci_ring_trbv(struct xhci_ring * const xr, u_int idx)
509 1.1 jakllsch {
510 1.1 jakllsch return KERNADDR(&xr->xr_dma, XHCI_TRB_SIZE * idx);
511 1.1 jakllsch }
512 1.1 jakllsch
513 1.1 jakllsch static inline bus_addr_t
514 1.1 jakllsch xhci_ring_trbp(struct xhci_ring * const xr, u_int idx)
515 1.1 jakllsch {
516 1.1 jakllsch return DMAADDR(&xr->xr_dma, XHCI_TRB_SIZE * idx);
517 1.1 jakllsch }
518 1.1 jakllsch
519 1.1 jakllsch static inline void
520 1.127 jakllsch xhci_xfer_put_trb(struct xhci_xfer * const xx, u_int idx,
521 1.101 jakllsch uint64_t parameter, uint32_t status, uint32_t control)
522 1.101 jakllsch {
523 1.128 jakllsch KASSERTMSG(idx < xx->xx_ntrb, "idx=%u xx_ntrb=%u", idx, xx->xx_ntrb);
524 1.127 jakllsch xx->xx_trb[idx].trb_0 = parameter;
525 1.127 jakllsch xx->xx_trb[idx].trb_2 = status;
526 1.127 jakllsch xx->xx_trb[idx].trb_3 = control;
527 1.101 jakllsch }
528 1.101 jakllsch
529 1.101 jakllsch static inline void
530 1.1 jakllsch xhci_trb_put(struct xhci_trb * const trb, uint64_t parameter, uint32_t status,
531 1.1 jakllsch uint32_t control)
532 1.1 jakllsch {
533 1.34 skrll trb->trb_0 = htole64(parameter);
534 1.34 skrll trb->trb_2 = htole32(status);
535 1.34 skrll trb->trb_3 = htole32(control);
536 1.1 jakllsch }
537 1.1 jakllsch
538 1.40 skrll static int
539 1.40 skrll xhci_trb_get_idx(struct xhci_ring *xr, uint64_t trb_0, int *idx)
540 1.40 skrll {
541 1.40 skrll /* base address of TRBs */
542 1.40 skrll bus_addr_t trbp = xhci_ring_trbp(xr, 0);
543 1.40 skrll
544 1.40 skrll /* trb_0 range sanity check */
545 1.40 skrll if (trb_0 == 0 || trb_0 < trbp ||
546 1.40 skrll (trb_0 - trbp) % sizeof(struct xhci_trb) != 0 ||
547 1.40 skrll (trb_0 - trbp) / sizeof(struct xhci_trb) >= xr->xr_ntrb) {
548 1.40 skrll return 1;
549 1.40 skrll }
550 1.40 skrll *idx = (trb_0 - trbp) / sizeof(struct xhci_trb);
551 1.40 skrll return 0;
552 1.40 skrll }
553 1.40 skrll
554 1.63 skrll static unsigned int
555 1.63 skrll xhci_get_epstate(struct xhci_softc * const sc, struct xhci_slot * const xs,
556 1.63 skrll u_int dci)
557 1.63 skrll {
558 1.63 skrll uint32_t *cp;
559 1.63 skrll
560 1.63 skrll usb_syncmem(&xs->xs_dc_dma, 0, sc->sc_pgsz, BUS_DMASYNC_POSTREAD);
561 1.63 skrll cp = xhci_slot_get_dcv(sc, xs, dci);
562 1.63 skrll return XHCI_EPCTX_0_EPSTATE_GET(le32toh(cp[0]));
563 1.63 skrll }
564 1.63 skrll
565 1.68 skrll static inline unsigned int
566 1.68 skrll xhci_ctlrport2bus(struct xhci_softc * const sc, unsigned int ctlrport)
567 1.68 skrll {
568 1.68 skrll const unsigned int port = ctlrport - 1;
569 1.68 skrll const uint8_t bit = __BIT(port % NBBY);
570 1.68 skrll
571 1.68 skrll return __SHIFTOUT(sc->sc_ctlrportbus[port / NBBY], bit);
572 1.68 skrll }
573 1.68 skrll
574 1.68 skrll /*
575 1.68 skrll * Return the roothub port for a controller port. Both are 1..n.
576 1.68 skrll */
577 1.68 skrll static inline unsigned int
578 1.68 skrll xhci_ctlrport2rhport(struct xhci_softc * const sc, unsigned int ctrlport)
579 1.68 skrll {
580 1.68 skrll
581 1.68 skrll return sc->sc_ctlrportmap[ctrlport - 1];
582 1.68 skrll }
583 1.68 skrll
584 1.68 skrll /*
585 1.68 skrll * Return the controller port for a bus roothub port. Both are 1..n.
586 1.68 skrll */
587 1.68 skrll static inline unsigned int
588 1.68 skrll xhci_rhport2ctlrport(struct xhci_softc * const sc, unsigned int bn,
589 1.68 skrll unsigned int rhport)
590 1.68 skrll {
591 1.68 skrll
592 1.68 skrll return sc->sc_rhportmap[bn][rhport - 1];
593 1.68 skrll }
594 1.68 skrll
595 1.1 jakllsch /* --- */
596 1.1 jakllsch
597 1.1 jakllsch void
598 1.1 jakllsch xhci_childdet(device_t self, device_t child)
599 1.1 jakllsch {
600 1.1 jakllsch struct xhci_softc * const sc = device_private(self);
601 1.1 jakllsch
602 1.171 riastrad mutex_enter(&sc->sc_intr_lock);
603 1.84 msaitoh KASSERT((sc->sc_child == child) || (sc->sc_child2 == child));
604 1.84 msaitoh if (child == sc->sc_child2)
605 1.84 msaitoh sc->sc_child2 = NULL;
606 1.84 msaitoh else if (child == sc->sc_child)
607 1.1 jakllsch sc->sc_child = NULL;
608 1.171 riastrad mutex_exit(&sc->sc_intr_lock);
609 1.1 jakllsch }
610 1.1 jakllsch
611 1.1 jakllsch int
612 1.1 jakllsch xhci_detach(struct xhci_softc *sc, int flags)
613 1.1 jakllsch {
614 1.1 jakllsch int rv = 0;
615 1.1 jakllsch
616 1.68 skrll if (sc->sc_child2 != NULL) {
617 1.68 skrll rv = config_detach(sc->sc_child2, flags);
618 1.68 skrll if (rv != 0)
619 1.68 skrll return rv;
620 1.88 jdolecek KASSERT(sc->sc_child2 == NULL);
621 1.68 skrll }
622 1.68 skrll
623 1.68 skrll if (sc->sc_child != NULL) {
624 1.1 jakllsch rv = config_detach(sc->sc_child, flags);
625 1.68 skrll if (rv != 0)
626 1.68 skrll return rv;
627 1.88 jdolecek KASSERT(sc->sc_child == NULL);
628 1.68 skrll }
629 1.1 jakllsch
630 1.1 jakllsch /* XXX unconfigure/free slots */
631 1.1 jakllsch
632 1.1 jakllsch /* verify: */
633 1.1 jakllsch xhci_rt_write_4(sc, XHCI_IMAN(0), 0);
634 1.1 jakllsch xhci_op_write_4(sc, XHCI_USBCMD, 0);
635 1.1 jakllsch /* do we need to wait for stop? */
636 1.1 jakllsch
637 1.1 jakllsch xhci_op_write_8(sc, XHCI_CRCR, 0);
638 1.1 jakllsch xhci_ring_free(sc, &sc->sc_cr);
639 1.1 jakllsch cv_destroy(&sc->sc_command_cv);
640 1.68 skrll cv_destroy(&sc->sc_cmdbusy_cv);
641 1.1 jakllsch
642 1.1 jakllsch xhci_rt_write_4(sc, XHCI_ERSTSZ(0), 0);
643 1.1 jakllsch xhci_rt_write_8(sc, XHCI_ERSTBA(0), 0);
644 1.132 skrll xhci_rt_write_8(sc, XHCI_ERDP(0), 0 | XHCI_ERDP_BUSY);
645 1.1 jakllsch xhci_ring_free(sc, &sc->sc_er);
646 1.1 jakllsch
647 1.151 skrll usb_freemem(&sc->sc_eventst_dma);
648 1.1 jakllsch
649 1.1 jakllsch xhci_op_write_8(sc, XHCI_DCBAAP, 0);
650 1.151 skrll usb_freemem(&sc->sc_dcbaa_dma);
651 1.1 jakllsch
652 1.1 jakllsch kmem_free(sc->sc_slots, sizeof(*sc->sc_slots) * sc->sc_maxslots);
653 1.1 jakllsch
654 1.82 skrll kmem_free(sc->sc_ctlrportbus,
655 1.70 skrll howmany(sc->sc_maxports * sizeof(uint8_t), NBBY));
656 1.68 skrll kmem_free(sc->sc_ctlrportmap, sc->sc_maxports * sizeof(int));
657 1.68 skrll
658 1.68 skrll for (size_t j = 0; j < __arraycount(sc->sc_rhportmap); j++) {
659 1.68 skrll kmem_free(sc->sc_rhportmap[j], sc->sc_maxports * sizeof(int));
660 1.68 skrll }
661 1.68 skrll
662 1.169 riastrad mutex_destroy(&sc->sc_rhlock);
663 1.1 jakllsch mutex_destroy(&sc->sc_lock);
664 1.1 jakllsch mutex_destroy(&sc->sc_intr_lock);
665 1.1 jakllsch
666 1.1 jakllsch pool_cache_destroy(sc->sc_xferpool);
667 1.1 jakllsch
668 1.1 jakllsch return rv;
669 1.1 jakllsch }
670 1.1 jakllsch
671 1.1 jakllsch int
672 1.1 jakllsch xhci_activate(device_t self, enum devact act)
673 1.1 jakllsch {
674 1.1 jakllsch struct xhci_softc * const sc = device_private(self);
675 1.1 jakllsch
676 1.1 jakllsch switch (act) {
677 1.1 jakllsch case DVACT_DEACTIVATE:
678 1.1 jakllsch sc->sc_dying = true;
679 1.1 jakllsch return 0;
680 1.1 jakllsch default:
681 1.1 jakllsch return EOPNOTSUPP;
682 1.1 jakllsch }
683 1.1 jakllsch }
684 1.1 jakllsch
685 1.1 jakllsch bool
686 1.139 riastrad xhci_suspend(device_t self, const pmf_qual_t *qual)
687 1.1 jakllsch {
688 1.139 riastrad struct xhci_softc * const sc = device_private(self);
689 1.140 riastrad size_t i, j, bn, dci;
690 1.139 riastrad int port;
691 1.139 riastrad uint32_t v;
692 1.140 riastrad usbd_status err;
693 1.140 riastrad bool ok = false;
694 1.139 riastrad
695 1.139 riastrad XHCIHIST_FUNC(); XHCIHIST_CALLED();
696 1.139 riastrad
697 1.140 riastrad /*
698 1.140 riastrad * Block issuance of new commands, and wait for all pending
699 1.140 riastrad * commands to complete.
700 1.140 riastrad */
701 1.160 riastrad mutex_enter(&sc->sc_lock);
702 1.140 riastrad KASSERT(sc->sc_suspender == NULL);
703 1.177 riastrad KASSERT(!sc->sc_suspendresume_failed);
704 1.140 riastrad sc->sc_suspender = curlwp;
705 1.140 riastrad while (sc->sc_command_addr != 0)
706 1.140 riastrad cv_wait(&sc->sc_cmdbusy_cv, &sc->sc_lock);
707 1.160 riastrad mutex_exit(&sc->sc_lock);
708 1.140 riastrad
709 1.140 riastrad /*
710 1.162 riastrad * Block roothub xfers which might touch portsc registers until
711 1.162 riastrad * we're done suspending.
712 1.162 riastrad */
713 1.162 riastrad mutex_enter(&sc->sc_rhlock);
714 1.162 riastrad
715 1.162 riastrad /*
716 1.140 riastrad * xHCI Requirements Specification 1.2, May 2019, Sec. 4.23.2:
717 1.140 riastrad * xHCI Power Management, p. 342
718 1.140 riastrad * https://www.intel.com/content/dam/www/public/us/en/documents/technical-specifications/extensible-host-controler-interface-usb-xhci.pdf#page=342
719 1.140 riastrad */
720 1.140 riastrad
721 1.140 riastrad /*
722 1.140 riastrad * `1. Stop all USB activity by issuing Stop Endpoint Commands
723 1.140 riastrad * for Busy endpoints in the Running state. If the Force
724 1.140 riastrad * Save Context Capability (FSC = ``0'') is not supported,
725 1.140 riastrad * then Stop Endpoint Commands shall be issued for all idle
726 1.140 riastrad * endpoints in the Running state as well. The Stop
727 1.140 riastrad * Endpoint Command causes the xHC to update the respective
728 1.140 riastrad * Endpoint or Stream Contexts in system memory, e.g. the
729 1.140 riastrad * TR Dequeue Pointer, DCS, etc. fields. Refer to
730 1.140 riastrad * Implementation Note "0".'
731 1.140 riastrad */
732 1.140 riastrad for (i = 0; i < sc->sc_maxslots; i++) {
733 1.140 riastrad struct xhci_slot *xs = &sc->sc_slots[i];
734 1.140 riastrad
735 1.140 riastrad /* Skip if the slot is not in use. */
736 1.140 riastrad if (xs->xs_idx == 0)
737 1.140 riastrad continue;
738 1.140 riastrad
739 1.140 riastrad for (dci = XHCI_DCI_SLOT; dci <= XHCI_MAX_DCI; dci++) {
740 1.140 riastrad /* Skip if the endpoint is not Running. */
741 1.140 riastrad /* XXX What about Busy? */
742 1.140 riastrad if (xhci_get_epstate(sc, xs, dci) !=
743 1.140 riastrad XHCI_EPSTATE_RUNNING)
744 1.140 riastrad continue;
745 1.140 riastrad
746 1.140 riastrad /* Stop endpoint. */
747 1.160 riastrad mutex_enter(&sc->sc_lock);
748 1.140 riastrad err = xhci_stop_endpoint_cmd(sc, xs, dci,
749 1.140 riastrad XHCI_TRB_3_SUSP_EP_BIT);
750 1.160 riastrad mutex_exit(&sc->sc_lock);
751 1.140 riastrad if (err) {
752 1.140 riastrad device_printf(self, "failed to stop endpoint"
753 1.140 riastrad " slot %zu dci %zu err %d\n",
754 1.140 riastrad i, dci, err);
755 1.140 riastrad goto out;
756 1.140 riastrad }
757 1.140 riastrad }
758 1.140 riastrad }
759 1.140 riastrad
760 1.139 riastrad /*
761 1.140 riastrad * Next, suspend all the ports:
762 1.139 riastrad *
763 1.139 riastrad * xHCI Requirements Specification 1.2, May 2019, Sec. 4.15:
764 1.139 riastrad * Suspend-Resume, pp. 276-283
765 1.139 riastrad * https://www.intel.com/content/dam/www/public/us/en/documents/technical-specifications/extensible-host-controler-interface-usb-xhci.pdf#page=276
766 1.139 riastrad */
767 1.139 riastrad for (bn = 0; bn < 2; bn++) {
768 1.139 riastrad for (i = 1; i <= sc->sc_rhportcount[bn]; i++) {
769 1.139 riastrad /* 4.15.1: Port Suspend. */
770 1.139 riastrad port = XHCI_PORTSC(xhci_rhport2ctlrport(sc, bn, i));
771 1.139 riastrad
772 1.139 riastrad /*
773 1.139 riastrad * `System software places individual ports
774 1.139 riastrad * into suspend mode by writing a ``3'' into
775 1.139 riastrad * the appropriate PORTSC register Port Link
776 1.139 riastrad * State (PLS) field (refer to Section 5.4.8).
777 1.139 riastrad * Software should only set the PLS field to
778 1.139 riastrad * ``3'' when the port is in the Enabled
779 1.139 riastrad * state.'
780 1.139 riastrad *
781 1.139 riastrad * `Software should not attempt to suspend a
782 1.139 riastrad * port unless the port reports that it is in
783 1.139 riastrad * the enabled (PED = ``1''; PLS < ``3'')
784 1.139 riastrad * state (refer to Section 5.4.8 for more
785 1.139 riastrad * information about PED and PLS).'
786 1.139 riastrad */
787 1.139 riastrad v = xhci_op_read_4(sc, port);
788 1.139 riastrad if (((v & XHCI_PS_PED) == 0) ||
789 1.139 riastrad XHCI_PS_PLS_GET(v) >= XHCI_PS_PLS_U3)
790 1.139 riastrad continue;
791 1.139 riastrad v &= ~(XHCI_PS_PLS_MASK | XHCI_PS_CLEAR);
792 1.139 riastrad v |= XHCI_PS_LWS | XHCI_PS_PLS_SET(XHCI_PS_PLS_SETU3);
793 1.139 riastrad xhci_op_write_4(sc, port, v);
794 1.139 riastrad
795 1.139 riastrad /*
796 1.139 riastrad * `When the PLS field is written with U3
797 1.139 riastrad * (``3''), the status of the PLS bit will not
798 1.139 riastrad * change to the target U state U3 until the
799 1.139 riastrad * suspend signaling has completed to the
800 1.139 riastrad * attached device (which may be as long as
801 1.139 riastrad * 10ms.).'
802 1.139 riastrad *
803 1.139 riastrad * `Software is required to wait for U3
804 1.139 riastrad * transitions to complete before it puts the
805 1.139 riastrad * xHC into a low power state, and before
806 1.139 riastrad * resuming the port.'
807 1.139 riastrad *
808 1.139 riastrad * XXX Take advantage of the technique to
809 1.139 riastrad * reduce polling on host controllers that
810 1.139 riastrad * support the U3C capability.
811 1.139 riastrad */
812 1.139 riastrad for (j = 0; j < XHCI_WAIT_PLS_U3; j++) {
813 1.139 riastrad v = xhci_op_read_4(sc, port);
814 1.139 riastrad if (XHCI_PS_PLS_GET(v) == XHCI_PS_PLS_U3)
815 1.139 riastrad break;
816 1.139 riastrad usb_delay_ms(&sc->sc_bus, 1);
817 1.139 riastrad }
818 1.139 riastrad if (j == XHCI_WAIT_PLS_U3) {
819 1.139 riastrad device_printf(self,
820 1.139 riastrad "suspend timeout on bus %zu port %zu\n",
821 1.139 riastrad bn, i);
822 1.140 riastrad goto out;
823 1.139 riastrad }
824 1.139 riastrad }
825 1.139 riastrad }
826 1.139 riastrad
827 1.139 riastrad /*
828 1.139 riastrad * `2. Ensure that the Command Ring is in the Stopped state
829 1.139 riastrad * (CRR = ``0'') or Idle (i.e. the Command Transfer Ring is
830 1.139 riastrad * empty), and all Command Completion Events associated
831 1.139 riastrad * with them have been received.'
832 1.139 riastrad *
833 1.139 riastrad * XXX
834 1.139 riastrad */
835 1.139 riastrad
836 1.139 riastrad /* `3. Stop the controller by setting Run/Stop (R/S) = ``0''.' */
837 1.139 riastrad xhci_op_write_4(sc, XHCI_USBCMD,
838 1.139 riastrad xhci_op_read_4(sc, XHCI_USBCMD) & ~XHCI_CMD_RS);
839 1.139 riastrad
840 1.139 riastrad /*
841 1.139 riastrad * `4. Read the Operational Runtime, and VTIO registers in the
842 1.139 riastrad * following order: USBCMD, DNCTRL, DCBAAP, CONFIG, ERSTSZ,
843 1.139 riastrad * ERSTBA, ERDP, IMAN, IMOD, and VTIO and save their
844 1.139 riastrad * state.'
845 1.139 riastrad *
846 1.139 riastrad * (We don't use VTIO here (XXX for now?).)
847 1.139 riastrad */
848 1.139 riastrad sc->sc_regs.usbcmd = xhci_op_read_4(sc, XHCI_USBCMD);
849 1.139 riastrad sc->sc_regs.dnctrl = xhci_op_read_4(sc, XHCI_DNCTRL);
850 1.139 riastrad sc->sc_regs.dcbaap = xhci_op_read_8(sc, XHCI_DCBAAP);
851 1.139 riastrad sc->sc_regs.config = xhci_op_read_4(sc, XHCI_CONFIG);
852 1.139 riastrad sc->sc_regs.erstsz0 = xhci_rt_read_4(sc, XHCI_ERSTSZ(0));
853 1.139 riastrad sc->sc_regs.erstba0 = xhci_rt_read_8(sc, XHCI_ERSTBA(0));
854 1.139 riastrad sc->sc_regs.erdp0 = xhci_rt_read_8(sc, XHCI_ERDP(0));
855 1.139 riastrad sc->sc_regs.iman0 = xhci_rt_read_4(sc, XHCI_IMAN(0));
856 1.139 riastrad sc->sc_regs.imod0 = xhci_rt_read_4(sc, XHCI_IMOD(0));
857 1.139 riastrad
858 1.139 riastrad /*
859 1.139 riastrad * `5. Set the Controller Save State (CSS) flag in the USBCMD
860 1.139 riastrad * register (5.4.1)...'
861 1.139 riastrad */
862 1.139 riastrad xhci_op_write_4(sc, XHCI_USBCMD,
863 1.139 riastrad xhci_op_read_4(sc, XHCI_USBCMD) | XHCI_CMD_CSS);
864 1.139 riastrad
865 1.139 riastrad /*
866 1.139 riastrad * `...and wait for the Save State Status (SSS) flag in the
867 1.139 riastrad * USBSTS register (5.4.2) to transition to ``0''.'
868 1.139 riastrad */
869 1.139 riastrad for (i = 0; i < XHCI_WAIT_SSS; i++) {
870 1.139 riastrad if ((xhci_op_read_4(sc, XHCI_USBSTS) & XHCI_STS_SSS) == 0)
871 1.139 riastrad break;
872 1.139 riastrad usb_delay_ms(&sc->sc_bus, 1);
873 1.139 riastrad }
874 1.139 riastrad if (i >= XHCI_WAIT_SSS) {
875 1.139 riastrad device_printf(self, "suspend timeout, USBSTS.SSS\n");
876 1.139 riastrad /*
877 1.139 riastrad * Just optimistically go on and check SRE anyway --
878 1.139 riastrad * what's the worst that could happen?
879 1.139 riastrad */
880 1.139 riastrad }
881 1.139 riastrad
882 1.139 riastrad /*
883 1.139 riastrad * `Note: After a Save or Restore operation completes, the
884 1.139 riastrad * Save/Restore Error (SRE) flag in the USBSTS register should
885 1.139 riastrad * be checked to ensure that the operation completed
886 1.139 riastrad * successfully.'
887 1.139 riastrad */
888 1.139 riastrad if (xhci_op_read_4(sc, XHCI_USBSTS) & XHCI_STS_SRE) {
889 1.139 riastrad device_printf(self, "suspend error, USBSTS.SRE\n");
890 1.140 riastrad goto out;
891 1.139 riastrad }
892 1.139 riastrad
893 1.140 riastrad /* Success! */
894 1.140 riastrad ok = true;
895 1.140 riastrad
896 1.162 riastrad out: mutex_exit(&sc->sc_rhlock);
897 1.168 riastrad if (!ok) {
898 1.168 riastrad /*
899 1.177 riastrad * If suspend failed, stop holding up command issuance
900 1.177 riastrad * and make it fail instead.
901 1.168 riastrad */
902 1.168 riastrad mutex_enter(&sc->sc_lock);
903 1.168 riastrad KASSERT(sc->sc_suspender == curlwp);
904 1.168 riastrad sc->sc_suspender = NULL;
905 1.177 riastrad sc->sc_suspendresume_failed = true;
906 1.168 riastrad cv_broadcast(&sc->sc_cmdbusy_cv);
907 1.168 riastrad mutex_exit(&sc->sc_lock);
908 1.168 riastrad }
909 1.162 riastrad return ok;
910 1.1 jakllsch }
911 1.1 jakllsch
912 1.1 jakllsch bool
913 1.139 riastrad xhci_resume(device_t self, const pmf_qual_t *qual)
914 1.1 jakllsch {
915 1.139 riastrad struct xhci_softc * const sc = device_private(self);
916 1.139 riastrad size_t i, j, bn, dci;
917 1.139 riastrad int port;
918 1.139 riastrad uint32_t v;
919 1.140 riastrad bool ok = false;
920 1.139 riastrad
921 1.139 riastrad XHCIHIST_FUNC(); XHCIHIST_CALLED();
922 1.139 riastrad
923 1.177 riastrad /*
924 1.177 riastrad * If resume had previously failed, just try again. Can't make
925 1.177 riastrad * things worse, probably.
926 1.177 riastrad */
927 1.177 riastrad mutex_enter(&sc->sc_lock);
928 1.177 riastrad if (sc->sc_suspendresume_failed) {
929 1.177 riastrad KASSERT(sc->sc_suspender == NULL);
930 1.177 riastrad sc->sc_suspender = curlwp;
931 1.177 riastrad sc->sc_suspendresume_failed = false;
932 1.177 riastrad }
933 1.140 riastrad KASSERT(sc->sc_suspender);
934 1.177 riastrad mutex_exit(&sc->sc_lock);
935 1.140 riastrad
936 1.139 riastrad /*
937 1.162 riastrad * Block roothub xfers which might touch portsc registers until
938 1.162 riastrad * we're done resuming.
939 1.162 riastrad */
940 1.162 riastrad mutex_enter(&sc->sc_rhlock);
941 1.162 riastrad
942 1.162 riastrad /*
943 1.139 riastrad * xHCI Requirements Specification 1.2, May 2019, Sec. 4.23.2:
944 1.139 riastrad * xHCI Power Management, p. 343
945 1.139 riastrad * https://www.intel.com/content/dam/www/public/us/en/documents/technical-specifications/extensible-host-controler-interface-usb-xhci.pdf#page=343
946 1.139 riastrad */
947 1.139 riastrad
948 1.139 riastrad /*
949 1.139 riastrad * `4. Restore the Operational Runtime, and VTIO registers with
950 1.139 riastrad * their previously saved state in the following order:
951 1.139 riastrad * DNCTRL, DCBAAP, CONFIG, ERSTSZ, ERSTBA, ERDP, IMAN,
952 1.139 riastrad * IMOD, and VTIO.'
953 1.139 riastrad *
954 1.139 riastrad * (We don't use VTIO here (for now?).)
955 1.139 riastrad */
956 1.139 riastrad xhci_op_write_4(sc, XHCI_USBCMD, sc->sc_regs.usbcmd);
957 1.139 riastrad xhci_op_write_4(sc, XHCI_DNCTRL, sc->sc_regs.dnctrl);
958 1.139 riastrad xhci_op_write_8(sc, XHCI_DCBAAP, sc->sc_regs.dcbaap);
959 1.139 riastrad xhci_op_write_4(sc, XHCI_CONFIG, sc->sc_regs.config);
960 1.139 riastrad xhci_rt_write_4(sc, XHCI_ERSTSZ(0), sc->sc_regs.erstsz0);
961 1.139 riastrad xhci_rt_write_8(sc, XHCI_ERSTBA(0), sc->sc_regs.erstba0);
962 1.139 riastrad xhci_rt_write_8(sc, XHCI_ERDP(0), sc->sc_regs.erdp0);
963 1.139 riastrad xhci_rt_write_4(sc, XHCI_IMAN(0), sc->sc_regs.iman0);
964 1.139 riastrad xhci_rt_write_4(sc, XHCI_IMOD(0), sc->sc_regs.imod0);
965 1.139 riastrad
966 1.139 riastrad memset(&sc->sc_regs, 0, sizeof(sc->sc_regs)); /* paranoia */
967 1.139 riastrad
968 1.139 riastrad /*
969 1.139 riastrad * `5. Set the Controller Restore State (CRS) flag in the
970 1.139 riastrad * USBCMD register (5.4.1) to ``1''...'
971 1.139 riastrad */
972 1.139 riastrad xhci_op_write_4(sc, XHCI_USBCMD,
973 1.139 riastrad xhci_op_read_4(sc, XHCI_USBCMD) | XHCI_CMD_CRS);
974 1.139 riastrad
975 1.139 riastrad /*
976 1.139 riastrad * `...and wait for the Restore State Status (RSS) in the
977 1.139 riastrad * USBSTS register (5.4.2) to transition to ``0''.'
978 1.139 riastrad */
979 1.139 riastrad for (i = 0; i < XHCI_WAIT_RSS; i++) {
980 1.139 riastrad if ((xhci_op_read_4(sc, XHCI_USBSTS) & XHCI_STS_RSS) == 0)
981 1.139 riastrad break;
982 1.139 riastrad usb_delay_ms(&sc->sc_bus, 1);
983 1.139 riastrad }
984 1.139 riastrad if (i >= XHCI_WAIT_RSS) {
985 1.152 riastrad device_printf(self, "resume timeout, USBSTS.RSS\n");
986 1.140 riastrad goto out;
987 1.139 riastrad }
988 1.139 riastrad
989 1.139 riastrad /*
990 1.139 riastrad * `6. Reinitialize the Command Ring, i.e. so its Cycle bits
991 1.139 riastrad * are consistent with the RCS values to be written to the
992 1.139 riastrad * CRCR.'
993 1.139 riastrad *
994 1.139 riastrad * XXX Hope just zeroing it is good enough!
995 1.139 riastrad */
996 1.139 riastrad xhci_host_dequeue(sc->sc_cr);
997 1.139 riastrad
998 1.139 riastrad /*
999 1.139 riastrad * `7. Write the CRCR with the address and RCS value of the
1000 1.139 riastrad * reinitialized Command Ring. Note that this write will
1001 1.139 riastrad * cause the Command Ring to restart at the address
1002 1.139 riastrad * specified by the CRCR.'
1003 1.139 riastrad */
1004 1.139 riastrad xhci_op_write_8(sc, XHCI_CRCR, xhci_ring_trbp(sc->sc_cr, 0) |
1005 1.139 riastrad sc->sc_cr->xr_cs);
1006 1.139 riastrad
1007 1.139 riastrad /*
1008 1.139 riastrad * `8. Enable the controller by setting Run/Stop (R/S) =
1009 1.139 riastrad * ``1''.'
1010 1.139 riastrad */
1011 1.139 riastrad xhci_op_write_4(sc, XHCI_USBCMD,
1012 1.139 riastrad xhci_op_read_4(sc, XHCI_USBCMD) | XHCI_CMD_RS);
1013 1.139 riastrad
1014 1.139 riastrad /*
1015 1.139 riastrad * `9. Software shall walk the USB topology and initialize each
1016 1.139 riastrad * of the xHC PORTSC, PORTPMSC, and PORTLI registers, and
1017 1.139 riastrad * external hub ports attached to USB devices.'
1018 1.139 riastrad *
1019 1.139 riastrad * This follows the procedure in 4.15 `Suspend-Resume', 4.15.2
1020 1.153 riastrad * `Port Resume', 4.15.2.2 `Host Initiated'.
1021 1.139 riastrad *
1022 1.139 riastrad * XXX We should maybe batch up initiating the state
1023 1.139 riastrad * transitions, and then wait for them to complete all at once.
1024 1.139 riastrad */
1025 1.139 riastrad for (bn = 0; bn < 2; bn++) {
1026 1.139 riastrad for (i = 1; i <= sc->sc_rhportcount[bn]; i++) {
1027 1.139 riastrad port = XHCI_PORTSC(xhci_rhport2ctlrport(sc, bn, i));
1028 1.139 riastrad
1029 1.139 riastrad /* `When a port is in the U3 state: ...' */
1030 1.139 riastrad v = xhci_op_read_4(sc, port);
1031 1.139 riastrad if (XHCI_PS_PLS_GET(v) != XHCI_PS_PLS_U3)
1032 1.139 riastrad continue;
1033 1.139 riastrad
1034 1.139 riastrad /*
1035 1.139 riastrad * `For a USB2 protocol port, software shall
1036 1.139 riastrad * write a ``15'' (Resume) to the PLS field to
1037 1.139 riastrad * initiate resume signaling. The port shall
1038 1.139 riastrad * transition to the Resume substate and the
1039 1.139 riastrad * xHC shall transmit the resume signaling
1040 1.139 riastrad * within 1ms (T_URSM). Software shall ensure
1041 1.139 riastrad * that resume is signaled for at least 20ms
1042 1.139 riastrad * (T_DRSMDN). Software shall start timing
1043 1.139 riastrad * T_DRSMDN from the write of ``15'' (Resume)
1044 1.139 riastrad * to PLS.'
1045 1.139 riastrad */
1046 1.139 riastrad if (bn == 1) {
1047 1.139 riastrad KASSERT(sc->sc_bus2.ub_revision == USBREV_2_0);
1048 1.139 riastrad v &= ~(XHCI_PS_PLS_MASK | XHCI_PS_CLEAR);
1049 1.139 riastrad v |= XHCI_PS_LWS;
1050 1.139 riastrad v |= XHCI_PS_PLS_SET(XHCI_PS_PLS_SETRESUME);
1051 1.139 riastrad xhci_op_write_4(sc, port, v);
1052 1.143 riastrad usb_delay_ms(&sc->sc_bus, USB_RESUME_WAIT);
1053 1.139 riastrad } else {
1054 1.139 riastrad KASSERT(sc->sc_bus.ub_revision > USBREV_2_0);
1055 1.139 riastrad }
1056 1.139 riastrad
1057 1.139 riastrad /*
1058 1.139 riastrad * `For a USB3 protocol port [and a USB2
1059 1.139 riastrad * protocol port after transitioning to
1060 1.139 riastrad * Resume], software shall write a ``0'' (U0)
1061 1.139 riastrad * to the PLS field...'
1062 1.139 riastrad */
1063 1.139 riastrad v = xhci_op_read_4(sc, port);
1064 1.139 riastrad v &= ~(XHCI_PS_PLS_MASK | XHCI_PS_CLEAR);
1065 1.139 riastrad v |= XHCI_PS_LWS | XHCI_PS_PLS_SET(XHCI_PS_PLS_SETU0);
1066 1.139 riastrad xhci_op_write_4(sc, port, v);
1067 1.139 riastrad
1068 1.139 riastrad for (j = 0; j < XHCI_WAIT_PLS_U0; j++) {
1069 1.139 riastrad v = xhci_op_read_4(sc, port);
1070 1.139 riastrad if (XHCI_PS_PLS_GET(v) == XHCI_PS_PLS_U0)
1071 1.139 riastrad break;
1072 1.139 riastrad usb_delay_ms(&sc->sc_bus, 1);
1073 1.139 riastrad }
1074 1.139 riastrad if (j == XHCI_WAIT_PLS_U0) {
1075 1.139 riastrad device_printf(self,
1076 1.139 riastrad "resume timeout on bus %zu port %zu\n",
1077 1.139 riastrad bn, i);
1078 1.140 riastrad goto out;
1079 1.139 riastrad }
1080 1.139 riastrad }
1081 1.139 riastrad }
1082 1.139 riastrad
1083 1.139 riastrad /*
1084 1.139 riastrad * `10. Restart each of the previously Running endpoints by
1085 1.139 riastrad * ringing their doorbells.'
1086 1.139 riastrad */
1087 1.139 riastrad for (i = 0; i < sc->sc_maxslots; i++) {
1088 1.139 riastrad struct xhci_slot *xs = &sc->sc_slots[i];
1089 1.139 riastrad
1090 1.139 riastrad /* Skip if the slot is not in use. */
1091 1.139 riastrad if (xs->xs_idx == 0)
1092 1.139 riastrad continue;
1093 1.139 riastrad
1094 1.139 riastrad for (dci = XHCI_DCI_SLOT; dci <= XHCI_MAX_DCI; dci++) {
1095 1.139 riastrad /* Skip if the endpoint is not Running. */
1096 1.139 riastrad if (xhci_get_epstate(sc, xs, dci) !=
1097 1.139 riastrad XHCI_EPSTATE_RUNNING)
1098 1.139 riastrad continue;
1099 1.139 riastrad
1100 1.139 riastrad /* Ring the doorbell. */
1101 1.139 riastrad xhci_db_write_4(sc, XHCI_DOORBELL(xs->xs_idx), dci);
1102 1.139 riastrad }
1103 1.139 riastrad }
1104 1.139 riastrad
1105 1.139 riastrad /*
1106 1.139 riastrad * `Note: After a Save or Restore operation completes, the
1107 1.139 riastrad * Save/Restore Error (SRE) flag in the USBSTS register should
1108 1.139 riastrad * be checked to ensure that the operation completed
1109 1.139 riastrad * successfully.'
1110 1.139 riastrad */
1111 1.139 riastrad if (xhci_op_read_4(sc, XHCI_USBSTS) & XHCI_STS_SRE) {
1112 1.139 riastrad device_printf(self, "resume error, USBSTS.SRE\n");
1113 1.140 riastrad goto out;
1114 1.139 riastrad }
1115 1.139 riastrad
1116 1.170 riastrad /* Success! */
1117 1.170 riastrad ok = true;
1118 1.170 riastrad
1119 1.170 riastrad out: /*
1120 1.170 riastrad * Resume command issuance. If the hardware failed to resume,
1121 1.170 riastrad * well, tough -- deadlocking because everything is held up on
1122 1.170 riastrad * the suspension, with no opportunity to detach, isn't better
1123 1.170 riastrad * than timing out waiting for dead hardware.
1124 1.170 riastrad */
1125 1.160 riastrad mutex_enter(&sc->sc_lock);
1126 1.160 riastrad KASSERT(sc->sc_suspender);
1127 1.140 riastrad sc->sc_suspender = NULL;
1128 1.177 riastrad sc->sc_suspendresume_failed = !ok;
1129 1.140 riastrad cv_broadcast(&sc->sc_cmdbusy_cv);
1130 1.160 riastrad mutex_exit(&sc->sc_lock);
1131 1.140 riastrad
1132 1.170 riastrad mutex_exit(&sc->sc_rhlock);
1133 1.162 riastrad return ok;
1134 1.1 jakllsch }
1135 1.1 jakllsch
1136 1.1 jakllsch bool
1137 1.1 jakllsch xhci_shutdown(device_t self, int flags)
1138 1.1 jakllsch {
1139 1.1 jakllsch return false;
1140 1.1 jakllsch }
1141 1.1 jakllsch
1142 1.40 skrll static int
1143 1.40 skrll xhci_hc_reset(struct xhci_softc * const sc)
1144 1.40 skrll {
1145 1.40 skrll uint32_t usbcmd, usbsts;
1146 1.40 skrll int i;
1147 1.40 skrll
1148 1.40 skrll /* Check controller not ready */
1149 1.42 skrll for (i = 0; i < XHCI_WAIT_CNR; i++) {
1150 1.40 skrll usbsts = xhci_op_read_4(sc, XHCI_USBSTS);
1151 1.40 skrll if ((usbsts & XHCI_STS_CNR) == 0)
1152 1.40 skrll break;
1153 1.40 skrll usb_delay_ms(&sc->sc_bus, 1);
1154 1.40 skrll }
1155 1.42 skrll if (i >= XHCI_WAIT_CNR) {
1156 1.40 skrll aprint_error_dev(sc->sc_dev, "controller not ready timeout\n");
1157 1.40 skrll return EIO;
1158 1.40 skrll }
1159 1.40 skrll
1160 1.40 skrll /* Halt controller */
1161 1.40 skrll usbcmd = 0;
1162 1.40 skrll xhci_op_write_4(sc, XHCI_USBCMD, usbcmd);
1163 1.40 skrll usb_delay_ms(&sc->sc_bus, 1);
1164 1.40 skrll
1165 1.40 skrll /* Reset controller */
1166 1.40 skrll usbcmd = XHCI_CMD_HCRST;
1167 1.40 skrll xhci_op_write_4(sc, XHCI_USBCMD, usbcmd);
1168 1.42 skrll for (i = 0; i < XHCI_WAIT_HCRST; i++) {
1169 1.76 msaitoh /*
1170 1.148 andvar * Wait 1ms first. Existing Intel xHCI requires 1ms delay to
1171 1.76 msaitoh * prevent system hang (Errata).
1172 1.76 msaitoh */
1173 1.76 msaitoh usb_delay_ms(&sc->sc_bus, 1);
1174 1.40 skrll usbcmd = xhci_op_read_4(sc, XHCI_USBCMD);
1175 1.40 skrll if ((usbcmd & XHCI_CMD_HCRST) == 0)
1176 1.40 skrll break;
1177 1.40 skrll }
1178 1.42 skrll if (i >= XHCI_WAIT_HCRST) {
1179 1.40 skrll aprint_error_dev(sc->sc_dev, "host controller reset timeout\n");
1180 1.40 skrll return EIO;
1181 1.40 skrll }
1182 1.40 skrll
1183 1.40 skrll /* Check controller not ready */
1184 1.42 skrll for (i = 0; i < XHCI_WAIT_CNR; i++) {
1185 1.40 skrll usbsts = xhci_op_read_4(sc, XHCI_USBSTS);
1186 1.40 skrll if ((usbsts & XHCI_STS_CNR) == 0)
1187 1.40 skrll break;
1188 1.40 skrll usb_delay_ms(&sc->sc_bus, 1);
1189 1.40 skrll }
1190 1.42 skrll if (i >= XHCI_WAIT_CNR) {
1191 1.40 skrll aprint_error_dev(sc->sc_dev,
1192 1.40 skrll "controller not ready timeout after reset\n");
1193 1.40 skrll return EIO;
1194 1.40 skrll }
1195 1.40 skrll
1196 1.40 skrll return 0;
1197 1.40 skrll }
1198 1.40 skrll
1199 1.68 skrll /* 7.2 xHCI Support Protocol Capability */
1200 1.68 skrll static void
1201 1.68 skrll xhci_id_protocols(struct xhci_softc *sc, bus_size_t ecp)
1202 1.68 skrll {
1203 1.109 mrg XHCIHIST_FUNC(); XHCIHIST_CALLED();
1204 1.109 mrg
1205 1.68 skrll /* XXX Cache this lot */
1206 1.68 skrll
1207 1.68 skrll const uint32_t w0 = xhci_read_4(sc, ecp);
1208 1.68 skrll const uint32_t w4 = xhci_read_4(sc, ecp + 4);
1209 1.68 skrll const uint32_t w8 = xhci_read_4(sc, ecp + 8);
1210 1.68 skrll const uint32_t wc = xhci_read_4(sc, ecp + 0xc);
1211 1.68 skrll
1212 1.68 skrll aprint_debug_dev(sc->sc_dev,
1213 1.121 christos " SP: 0x%08x 0x%08x 0x%08x 0x%08x\n", w0, w4, w8, wc);
1214 1.68 skrll
1215 1.68 skrll if (w4 != XHCI_XECP_USBID)
1216 1.68 skrll return;
1217 1.68 skrll
1218 1.68 skrll const int major = XHCI_XECP_SP_W0_MAJOR(w0);
1219 1.68 skrll const int minor = XHCI_XECP_SP_W0_MINOR(w0);
1220 1.68 skrll const uint8_t cpo = XHCI_XECP_SP_W8_CPO(w8);
1221 1.68 skrll const uint8_t cpc = XHCI_XECP_SP_W8_CPC(w8);
1222 1.68 skrll
1223 1.68 skrll const uint16_t mm = __SHIFTOUT(w0, __BITS(31, 16));
1224 1.68 skrll switch (mm) {
1225 1.68 skrll case 0x0200:
1226 1.68 skrll case 0x0300:
1227 1.68 skrll case 0x0301:
1228 1.109 mrg case 0x0310:
1229 1.154 msaitoh case 0x0320:
1230 1.68 skrll aprint_debug_dev(sc->sc_dev, " %s ports %d - %d\n",
1231 1.175 msaitoh major == 3 ? "ss" : "hs", cpo, cpo + cpc - 1);
1232 1.173 msaitoh if (major == 3)
1233 1.175 msaitoh sc->sc_usb3nports += cpo + cpc - 1;
1234 1.173 msaitoh else
1235 1.175 msaitoh sc->sc_usb2nports += cpo + cpc - 1;
1236 1.68 skrll break;
1237 1.68 skrll default:
1238 1.110 mrg aprint_error_dev(sc->sc_dev, " unknown major/minor (%d/%d)\n",
1239 1.68 skrll major, minor);
1240 1.68 skrll return;
1241 1.68 skrll }
1242 1.68 skrll
1243 1.68 skrll const size_t bus = (major == 3) ? 0 : 1;
1244 1.68 skrll
1245 1.68 skrll /* Index arrays with 0..n-1 where ports are numbered 1..n */
1246 1.68 skrll for (size_t cp = cpo - 1; cp < cpo + cpc - 1; cp++) {
1247 1.68 skrll if (sc->sc_ctlrportmap[cp] != 0) {
1248 1.108 skrll aprint_error_dev(sc->sc_dev, "controller port %zu "
1249 1.68 skrll "already assigned", cp);
1250 1.68 skrll continue;
1251 1.68 skrll }
1252 1.68 skrll
1253 1.68 skrll sc->sc_ctlrportbus[cp / NBBY] |=
1254 1.68 skrll bus == 0 ? 0 : __BIT(cp % NBBY);
1255 1.68 skrll
1256 1.68 skrll const size_t rhp = sc->sc_rhportcount[bus]++;
1257 1.68 skrll
1258 1.68 skrll KASSERTMSG(sc->sc_rhportmap[bus][rhp] == 0,
1259 1.68 skrll "bus %zu rhp %zu is %d", bus, rhp,
1260 1.68 skrll sc->sc_rhportmap[bus][rhp]);
1261 1.68 skrll
1262 1.68 skrll sc->sc_rhportmap[bus][rhp] = cp + 1;
1263 1.68 skrll sc->sc_ctlrportmap[cp] = rhp + 1;
1264 1.68 skrll }
1265 1.68 skrll }
1266 1.68 skrll
1267 1.40 skrll /* Process extended capabilities */
1268 1.40 skrll static void
1269 1.133 jakllsch xhci_ecp(struct xhci_softc *sc)
1270 1.40 skrll {
1271 1.40 skrll XHCIHIST_FUNC(); XHCIHIST_CALLED();
1272 1.40 skrll
1273 1.133 jakllsch bus_size_t ecp = XHCI_HCC_XECP(sc->sc_hcc) * 4;
1274 1.40 skrll while (ecp != 0) {
1275 1.68 skrll uint32_t ecr = xhci_read_4(sc, ecp);
1276 1.121 christos aprint_debug_dev(sc->sc_dev, "ECR: 0x%08x\n", ecr);
1277 1.40 skrll switch (XHCI_XECP_ID(ecr)) {
1278 1.40 skrll case XHCI_ID_PROTOCOLS: {
1279 1.68 skrll xhci_id_protocols(sc, ecp);
1280 1.40 skrll break;
1281 1.40 skrll }
1282 1.40 skrll case XHCI_ID_USB_LEGACY: {
1283 1.40 skrll uint8_t bios_sem;
1284 1.40 skrll
1285 1.40 skrll /* Take host controller ownership from BIOS */
1286 1.40 skrll bios_sem = xhci_read_1(sc, ecp + XHCI_XECP_BIOS_SEM);
1287 1.40 skrll if (bios_sem) {
1288 1.40 skrll /* sets xHCI to be owned by OS */
1289 1.40 skrll xhci_write_1(sc, ecp + XHCI_XECP_OS_SEM, 1);
1290 1.40 skrll aprint_debug_dev(sc->sc_dev,
1291 1.40 skrll "waiting for BIOS to give up control\n");
1292 1.40 skrll for (int i = 0; i < 5000; i++) {
1293 1.40 skrll bios_sem = xhci_read_1(sc, ecp +
1294 1.40 skrll XHCI_XECP_BIOS_SEM);
1295 1.40 skrll if (bios_sem == 0)
1296 1.40 skrll break;
1297 1.40 skrll DELAY(1000);
1298 1.40 skrll }
1299 1.40 skrll if (bios_sem) {
1300 1.40 skrll aprint_error_dev(sc->sc_dev,
1301 1.40 skrll "timed out waiting for BIOS\n");
1302 1.40 skrll }
1303 1.40 skrll }
1304 1.40 skrll break;
1305 1.40 skrll }
1306 1.40 skrll default:
1307 1.40 skrll break;
1308 1.40 skrll }
1309 1.40 skrll ecr = xhci_read_4(sc, ecp);
1310 1.40 skrll if (XHCI_XECP_NEXT(ecr) == 0) {
1311 1.40 skrll ecp = 0;
1312 1.40 skrll } else {
1313 1.40 skrll ecp += XHCI_XECP_NEXT(ecr) * 4;
1314 1.40 skrll }
1315 1.40 skrll }
1316 1.40 skrll }
1317 1.40 skrll
1318 1.34 skrll #define XHCI_HCCPREV1_BITS \
1319 1.34 skrll "\177\020" /* New bitmask */ \
1320 1.34 skrll "f\020\020XECP\0" \
1321 1.34 skrll "f\014\4MAXPSA\0" \
1322 1.34 skrll "b\013CFC\0" \
1323 1.34 skrll "b\012SEC\0" \
1324 1.34 skrll "b\011SBD\0" \
1325 1.34 skrll "b\010FSE\0" \
1326 1.34 skrll "b\7NSS\0" \
1327 1.34 skrll "b\6LTC\0" \
1328 1.34 skrll "b\5LHRC\0" \
1329 1.34 skrll "b\4PIND\0" \
1330 1.34 skrll "b\3PPC\0" \
1331 1.34 skrll "b\2CZC\0" \
1332 1.34 skrll "b\1BNC\0" \
1333 1.34 skrll "b\0AC64\0" \
1334 1.34 skrll "\0"
1335 1.34 skrll #define XHCI_HCCV1_x_BITS \
1336 1.34 skrll "\177\020" /* New bitmask */ \
1337 1.34 skrll "f\020\020XECP\0" \
1338 1.34 skrll "f\014\4MAXPSA\0" \
1339 1.34 skrll "b\013CFC\0" \
1340 1.34 skrll "b\012SEC\0" \
1341 1.34 skrll "b\011SPC\0" \
1342 1.34 skrll "b\010PAE\0" \
1343 1.34 skrll "b\7NSS\0" \
1344 1.34 skrll "b\6LTC\0" \
1345 1.34 skrll "b\5LHRC\0" \
1346 1.34 skrll "b\4PIND\0" \
1347 1.34 skrll "b\3PPC\0" \
1348 1.34 skrll "b\2CSZ\0" \
1349 1.34 skrll "b\1BNC\0" \
1350 1.34 skrll "b\0AC64\0" \
1351 1.34 skrll "\0"
1352 1.1 jakllsch
1353 1.95 msaitoh #define XHCI_HCC2_BITS \
1354 1.95 msaitoh "\177\020" /* New bitmask */ \
1355 1.95 msaitoh "b\7ETC_TSC\0" \
1356 1.95 msaitoh "b\6ETC\0" \
1357 1.95 msaitoh "b\5CIC\0" \
1358 1.95 msaitoh "b\4LEC\0" \
1359 1.95 msaitoh "b\3CTC\0" \
1360 1.95 msaitoh "b\2FSC\0" \
1361 1.95 msaitoh "b\1CMC\0" \
1362 1.95 msaitoh "b\0U3C\0" \
1363 1.95 msaitoh "\0"
1364 1.95 msaitoh
1365 1.74 jmcneill void
1366 1.74 jmcneill xhci_start(struct xhci_softc *sc)
1367 1.74 jmcneill {
1368 1.74 jmcneill xhci_rt_write_4(sc, XHCI_IMAN(0), XHCI_IMAN_INTR_ENA);
1369 1.74 jmcneill if ((sc->sc_quirks & XHCI_QUIRK_INTEL) != 0)
1370 1.74 jmcneill /* Intel xhci needs interrupt rate moderated. */
1371 1.74 jmcneill xhci_rt_write_4(sc, XHCI_IMOD(0), XHCI_IMOD_DEFAULT_LP);
1372 1.74 jmcneill else
1373 1.74 jmcneill xhci_rt_write_4(sc, XHCI_IMOD(0), 0);
1374 1.74 jmcneill aprint_debug_dev(sc->sc_dev, "current IMOD %u\n",
1375 1.74 jmcneill xhci_rt_read_4(sc, XHCI_IMOD(0)));
1376 1.74 jmcneill
1377 1.102 skrll /* Go! */
1378 1.102 skrll xhci_op_write_4(sc, XHCI_USBCMD, XHCI_CMD_INTE|XHCI_CMD_RS);
1379 1.121 christos aprint_debug_dev(sc->sc_dev, "USBCMD 0x%08"PRIx32"\n",
1380 1.74 jmcneill xhci_op_read_4(sc, XHCI_USBCMD));
1381 1.74 jmcneill }
1382 1.74 jmcneill
1383 1.15 skrll int
1384 1.1 jakllsch xhci_init(struct xhci_softc *sc)
1385 1.1 jakllsch {
1386 1.1 jakllsch bus_size_t bsz;
1387 1.133 jakllsch uint32_t hcs1, hcs2, hcs3, dboff, rtsoff;
1388 1.40 skrll uint32_t pagesize, config;
1389 1.40 skrll int i = 0;
1390 1.1 jakllsch uint16_t hciversion;
1391 1.1 jakllsch uint8_t caplength;
1392 1.1 jakllsch
1393 1.27 skrll XHCIHIST_FUNC(); XHCIHIST_CALLED();
1394 1.1 jakllsch
1395 1.68 skrll /* Set up the bus struct for the usb 3 and usb 2 buses */
1396 1.68 skrll sc->sc_bus.ub_methods = &xhci_bus_methods;
1397 1.68 skrll sc->sc_bus.ub_pipesize = sizeof(struct xhci_pipe);
1398 1.34 skrll sc->sc_bus.ub_usedma = true;
1399 1.68 skrll sc->sc_bus.ub_hcpriv = sc;
1400 1.68 skrll
1401 1.68 skrll sc->sc_bus2.ub_methods = &xhci_bus_methods;
1402 1.68 skrll sc->sc_bus2.ub_pipesize = sizeof(struct xhci_pipe);
1403 1.68 skrll sc->sc_bus2.ub_revision = USBREV_2_0;
1404 1.68 skrll sc->sc_bus2.ub_usedma = true;
1405 1.68 skrll sc->sc_bus2.ub_hcpriv = sc;
1406 1.68 skrll sc->sc_bus2.ub_dmatag = sc->sc_bus.ub_dmatag;
1407 1.1 jakllsch
1408 1.130 skrll caplength = xhci_read_1(sc, XHCI_CAPLENGTH);
1409 1.130 skrll hciversion = xhci_read_2(sc, XHCI_HCIVERSION);
1410 1.1 jakllsch
1411 1.34 skrll if (hciversion < XHCI_HCIVERSION_0_96 ||
1412 1.97 jakllsch hciversion >= 0x0200) {
1413 1.1 jakllsch aprint_normal_dev(sc->sc_dev,
1414 1.1 jakllsch "xHCI version %x.%x not known to be supported\n",
1415 1.1 jakllsch (hciversion >> 8) & 0xff, (hciversion >> 0) & 0xff);
1416 1.1 jakllsch } else {
1417 1.1 jakllsch aprint_verbose_dev(sc->sc_dev, "xHCI version %x.%x\n",
1418 1.1 jakllsch (hciversion >> 8) & 0xff, (hciversion >> 0) & 0xff);
1419 1.1 jakllsch }
1420 1.1 jakllsch
1421 1.1 jakllsch if (bus_space_subregion(sc->sc_iot, sc->sc_ioh, 0, caplength,
1422 1.1 jakllsch &sc->sc_cbh) != 0) {
1423 1.1 jakllsch aprint_error_dev(sc->sc_dev, "capability subregion failure\n");
1424 1.15 skrll return ENOMEM;
1425 1.1 jakllsch }
1426 1.1 jakllsch
1427 1.1 jakllsch hcs1 = xhci_cap_read_4(sc, XHCI_HCSPARAMS1);
1428 1.1 jakllsch sc->sc_maxslots = XHCI_HCS1_MAXSLOTS(hcs1);
1429 1.1 jakllsch sc->sc_maxintrs = XHCI_HCS1_MAXINTRS(hcs1);
1430 1.1 jakllsch sc->sc_maxports = XHCI_HCS1_MAXPORTS(hcs1);
1431 1.1 jakllsch hcs2 = xhci_cap_read_4(sc, XHCI_HCSPARAMS2);
1432 1.34 skrll hcs3 = xhci_cap_read_4(sc, XHCI_HCSPARAMS3);
1433 1.34 skrll aprint_debug_dev(sc->sc_dev,
1434 1.34 skrll "hcs1=%"PRIx32" hcs2=%"PRIx32" hcs3=%"PRIx32"\n", hcs1, hcs2, hcs3);
1435 1.34 skrll
1436 1.133 jakllsch sc->sc_hcc = xhci_cap_read_4(sc, XHCI_HCCPARAMS);
1437 1.133 jakllsch sc->sc_ctxsz = XHCI_HCC_CSZ(sc->sc_hcc) ? 64 : 32;
1438 1.1 jakllsch
1439 1.34 skrll char sbuf[128];
1440 1.34 skrll if (hciversion < XHCI_HCIVERSION_1_0)
1441 1.133 jakllsch snprintb(sbuf, sizeof(sbuf), XHCI_HCCPREV1_BITS, sc->sc_hcc);
1442 1.34 skrll else
1443 1.133 jakllsch snprintb(sbuf, sizeof(sbuf), XHCI_HCCV1_x_BITS, sc->sc_hcc);
1444 1.34 skrll aprint_debug_dev(sc->sc_dev, "hcc=%s\n", sbuf);
1445 1.131 skrll aprint_debug_dev(sc->sc_dev, "xECP %" __PRIxBITS "\n",
1446 1.133 jakllsch XHCI_HCC_XECP(sc->sc_hcc) * 4);
1447 1.95 msaitoh if (hciversion >= XHCI_HCIVERSION_1_1) {
1448 1.133 jakllsch sc->sc_hcc2 = xhci_cap_read_4(sc, XHCI_HCCPARAMS2);
1449 1.133 jakllsch snprintb(sbuf, sizeof(sbuf), XHCI_HCC2_BITS, sc->sc_hcc2);
1450 1.95 msaitoh aprint_debug_dev(sc->sc_dev, "hcc2=%s\n", sbuf);
1451 1.95 msaitoh }
1452 1.34 skrll
1453 1.68 skrll /* default all ports to bus 0, i.e. usb 3 */
1454 1.70 skrll sc->sc_ctlrportbus = kmem_zalloc(
1455 1.70 skrll howmany(sc->sc_maxports * sizeof(uint8_t), NBBY), KM_SLEEP);
1456 1.175 msaitoh sc->sc_ctlrportmap =
1457 1.175 msaitoh kmem_zalloc(sc->sc_maxports * sizeof(int), KM_SLEEP);
1458 1.68 skrll
1459 1.68 skrll /* controller port to bus roothub port map */
1460 1.68 skrll for (size_t j = 0; j < __arraycount(sc->sc_rhportmap); j++) {
1461 1.175 msaitoh sc->sc_rhportmap[j] =
1462 1.175 msaitoh kmem_zalloc(sc->sc_maxports * sizeof(int), KM_SLEEP);
1463 1.68 skrll }
1464 1.68 skrll
1465 1.68 skrll /*
1466 1.68 skrll * Process all Extended Capabilities
1467 1.68 skrll */
1468 1.133 jakllsch xhci_ecp(sc);
1469 1.1 jakllsch
1470 1.68 skrll bsz = XHCI_PORTSC(sc->sc_maxports);
1471 1.1 jakllsch if (bus_space_subregion(sc->sc_iot, sc->sc_ioh, caplength, bsz,
1472 1.1 jakllsch &sc->sc_obh) != 0) {
1473 1.1 jakllsch aprint_error_dev(sc->sc_dev, "operational subregion failure\n");
1474 1.15 skrll return ENOMEM;
1475 1.1 jakllsch }
1476 1.1 jakllsch
1477 1.1 jakllsch dboff = xhci_cap_read_4(sc, XHCI_DBOFF);
1478 1.1 jakllsch if (bus_space_subregion(sc->sc_iot, sc->sc_ioh, dboff,
1479 1.1 jakllsch sc->sc_maxslots * 4, &sc->sc_dbh) != 0) {
1480 1.1 jakllsch aprint_error_dev(sc->sc_dev, "doorbell subregion failure\n");
1481 1.15 skrll return ENOMEM;
1482 1.1 jakllsch }
1483 1.1 jakllsch
1484 1.1 jakllsch rtsoff = xhci_cap_read_4(sc, XHCI_RTSOFF);
1485 1.1 jakllsch if (bus_space_subregion(sc->sc_iot, sc->sc_ioh, rtsoff,
1486 1.1 jakllsch sc->sc_maxintrs * 0x20, &sc->sc_rbh) != 0) {
1487 1.1 jakllsch aprint_error_dev(sc->sc_dev, "runtime subregion failure\n");
1488 1.15 skrll return ENOMEM;
1489 1.1 jakllsch }
1490 1.1 jakllsch
1491 1.40 skrll int rv;
1492 1.40 skrll rv = xhci_hc_reset(sc);
1493 1.40 skrll if (rv != 0) {
1494 1.40 skrll return rv;
1495 1.37 skrll }
1496 1.1 jakllsch
1497 1.34 skrll if (sc->sc_vendor_init)
1498 1.34 skrll sc->sc_vendor_init(sc);
1499 1.34 skrll
1500 1.1 jakllsch pagesize = xhci_op_read_4(sc, XHCI_PAGESIZE);
1501 1.121 christos aprint_debug_dev(sc->sc_dev, "PAGESIZE 0x%08x\n", pagesize);
1502 1.1 jakllsch pagesize = ffs(pagesize);
1503 1.37 skrll if (pagesize == 0) {
1504 1.37 skrll aprint_error_dev(sc->sc_dev, "pagesize is 0\n");
1505 1.15 skrll return EIO;
1506 1.37 skrll }
1507 1.1 jakllsch sc->sc_pgsz = 1 << (12 + (pagesize - 1));
1508 1.121 christos aprint_debug_dev(sc->sc_dev, "sc_pgsz 0x%08x\n", (uint32_t)sc->sc_pgsz);
1509 1.121 christos aprint_debug_dev(sc->sc_dev, "sc_maxslots 0x%08x\n",
1510 1.1 jakllsch (uint32_t)sc->sc_maxslots);
1511 1.34 skrll aprint_debug_dev(sc->sc_dev, "sc_maxports %d\n", sc->sc_maxports);
1512 1.1 jakllsch
1513 1.138 skrll int err;
1514 1.5 matt sc->sc_maxspbuf = XHCI_HCS2_MAXSPBUF(hcs2);
1515 1.12 jakllsch aprint_debug_dev(sc->sc_dev, "sc_maxspbuf %d\n", sc->sc_maxspbuf);
1516 1.5 matt if (sc->sc_maxspbuf != 0) {
1517 1.151 skrll err = usb_allocmem(sc->sc_bus.ub_dmatag,
1518 1.5 matt sizeof(uint64_t) * sc->sc_maxspbuf, sizeof(uint64_t),
1519 1.137 jmcneill USBMALLOC_COHERENT | USBMALLOC_ZERO,
1520 1.137 jmcneill &sc->sc_spbufarray_dma);
1521 1.37 skrll if (err) {
1522 1.37 skrll aprint_error_dev(sc->sc_dev,
1523 1.37 skrll "spbufarray init fail, err %d\n", err);
1524 1.37 skrll return ENOMEM;
1525 1.37 skrll }
1526 1.30 skrll
1527 1.36 skrll sc->sc_spbuf_dma = kmem_zalloc(sizeof(*sc->sc_spbuf_dma) *
1528 1.36 skrll sc->sc_maxspbuf, KM_SLEEP);
1529 1.5 matt uint64_t *spbufarray = KERNADDR(&sc->sc_spbufarray_dma, 0);
1530 1.5 matt for (i = 0; i < sc->sc_maxspbuf; i++) {
1531 1.5 matt usb_dma_t * const dma = &sc->sc_spbuf_dma[i];
1532 1.5 matt /* allocate contexts */
1533 1.151 skrll err = usb_allocmem(sc->sc_bus.ub_dmatag, sc->sc_pgsz,
1534 1.137 jmcneill sc->sc_pgsz, USBMALLOC_COHERENT | USBMALLOC_ZERO,
1535 1.137 jmcneill dma);
1536 1.37 skrll if (err) {
1537 1.37 skrll aprint_error_dev(sc->sc_dev,
1538 1.37 skrll "spbufarray_dma init fail, err %d\n", err);
1539 1.37 skrll rv = ENOMEM;
1540 1.37 skrll goto bad1;
1541 1.37 skrll }
1542 1.5 matt spbufarray[i] = htole64(DMAADDR(dma, 0));
1543 1.5 matt usb_syncmem(dma, 0, sc->sc_pgsz,
1544 1.5 matt BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE);
1545 1.5 matt }
1546 1.5 matt
1547 1.30 skrll usb_syncmem(&sc->sc_spbufarray_dma, 0,
1548 1.5 matt sizeof(uint64_t) * sc->sc_maxspbuf, BUS_DMASYNC_PREWRITE);
1549 1.5 matt }
1550 1.5 matt
1551 1.1 jakllsch config = xhci_op_read_4(sc, XHCI_CONFIG);
1552 1.1 jakllsch config &= ~0xFF;
1553 1.1 jakllsch config |= sc->sc_maxslots & 0xFF;
1554 1.1 jakllsch xhci_op_write_4(sc, XHCI_CONFIG, config);
1555 1.1 jakllsch
1556 1.1 jakllsch err = xhci_ring_init(sc, &sc->sc_cr, XHCI_COMMAND_RING_TRBS,
1557 1.1 jakllsch XHCI_COMMAND_RING_SEGMENTS_ALIGN);
1558 1.1 jakllsch if (err) {
1559 1.37 skrll aprint_error_dev(sc->sc_dev, "command ring init fail, err %d\n",
1560 1.37 skrll err);
1561 1.37 skrll rv = ENOMEM;
1562 1.37 skrll goto bad1;
1563 1.1 jakllsch }
1564 1.1 jakllsch
1565 1.1 jakllsch err = xhci_ring_init(sc, &sc->sc_er, XHCI_EVENT_RING_TRBS,
1566 1.1 jakllsch XHCI_EVENT_RING_SEGMENTS_ALIGN);
1567 1.1 jakllsch if (err) {
1568 1.37 skrll aprint_error_dev(sc->sc_dev, "event ring init fail, err %d\n",
1569 1.37 skrll err);
1570 1.37 skrll rv = ENOMEM;
1571 1.37 skrll goto bad2;
1572 1.1 jakllsch }
1573 1.1 jakllsch
1574 1.16 skrll usb_dma_t *dma;
1575 1.16 skrll size_t size;
1576 1.16 skrll size_t align;
1577 1.16 skrll
1578 1.16 skrll dma = &sc->sc_eventst_dma;
1579 1.16 skrll size = roundup2(XHCI_EVENT_RING_SEGMENTS * XHCI_ERSTE_SIZE,
1580 1.16 skrll XHCI_EVENT_RING_SEGMENT_TABLE_ALIGN);
1581 1.37 skrll KASSERTMSG(size <= (512 * 1024), "eventst size %zu too large", size);
1582 1.16 skrll align = XHCI_EVENT_RING_SEGMENT_TABLE_ALIGN;
1583 1.151 skrll err = usb_allocmem(sc->sc_bus.ub_dmatag, size, align,
1584 1.137 jmcneill USBMALLOC_COHERENT | USBMALLOC_ZERO, dma);
1585 1.37 skrll if (err) {
1586 1.37 skrll aprint_error_dev(sc->sc_dev, "eventst init fail, err %d\n",
1587 1.37 skrll err);
1588 1.37 skrll rv = ENOMEM;
1589 1.37 skrll goto bad3;
1590 1.37 skrll }
1591 1.16 skrll
1592 1.121 christos aprint_debug_dev(sc->sc_dev, "eventst: 0x%016jx %p %zx\n",
1593 1.16 skrll (uintmax_t)DMAADDR(&sc->sc_eventst_dma, 0),
1594 1.16 skrll KERNADDR(&sc->sc_eventst_dma, 0),
1595 1.34 skrll sc->sc_eventst_dma.udma_block->size);
1596 1.16 skrll
1597 1.16 skrll dma = &sc->sc_dcbaa_dma;
1598 1.16 skrll size = (1 + sc->sc_maxslots) * sizeof(uint64_t);
1599 1.37 skrll KASSERTMSG(size <= 2048, "dcbaa size %zu too large", size);
1600 1.16 skrll align = XHCI_DEVICE_CONTEXT_BASE_ADDRESS_ARRAY_ALIGN;
1601 1.151 skrll err = usb_allocmem(sc->sc_bus.ub_dmatag, size, align,
1602 1.137 jmcneill USBMALLOC_COHERENT | USBMALLOC_ZERO, dma);
1603 1.37 skrll if (err) {
1604 1.37 skrll aprint_error_dev(sc->sc_dev, "dcbaa init fail, err %d\n", err);
1605 1.37 skrll rv = ENOMEM;
1606 1.37 skrll goto bad4;
1607 1.37 skrll }
1608 1.121 christos aprint_debug_dev(sc->sc_dev, "dcbaa: 0x%016jx %p %zx\n",
1609 1.37 skrll (uintmax_t)DMAADDR(&sc->sc_dcbaa_dma, 0),
1610 1.37 skrll KERNADDR(&sc->sc_dcbaa_dma, 0),
1611 1.37 skrll sc->sc_dcbaa_dma.udma_block->size);
1612 1.16 skrll
1613 1.16 skrll if (sc->sc_maxspbuf != 0) {
1614 1.16 skrll /*
1615 1.16 skrll * DCBA entry 0 hold the scratchbuf array pointer.
1616 1.16 skrll */
1617 1.16 skrll *(uint64_t *)KERNADDR(dma, 0) =
1618 1.16 skrll htole64(DMAADDR(&sc->sc_spbufarray_dma, 0));
1619 1.137 jmcneill usb_syncmem(dma, 0, size, BUS_DMASYNC_PREWRITE);
1620 1.1 jakllsch }
1621 1.1 jakllsch
1622 1.1 jakllsch sc->sc_slots = kmem_zalloc(sizeof(*sc->sc_slots) * sc->sc_maxslots,
1623 1.1 jakllsch KM_SLEEP);
1624 1.37 skrll if (sc->sc_slots == NULL) {
1625 1.37 skrll aprint_error_dev(sc->sc_dev, "slots init fail, err %d\n", err);
1626 1.37 skrll rv = ENOMEM;
1627 1.37 skrll goto bad;
1628 1.37 skrll }
1629 1.37 skrll
1630 1.37 skrll sc->sc_xferpool = pool_cache_init(sizeof(struct xhci_xfer), 0, 0, 0,
1631 1.37 skrll "xhcixfer", NULL, IPL_USB, NULL, NULL, NULL);
1632 1.37 skrll if (sc->sc_xferpool == NULL) {
1633 1.37 skrll aprint_error_dev(sc->sc_dev, "pool_cache init fail, err %d\n",
1634 1.37 skrll err);
1635 1.37 skrll rv = ENOMEM;
1636 1.37 skrll goto bad;
1637 1.37 skrll }
1638 1.1 jakllsch
1639 1.1 jakllsch cv_init(&sc->sc_command_cv, "xhcicmd");
1640 1.68 skrll cv_init(&sc->sc_cmdbusy_cv, "xhcicmdq");
1641 1.162 riastrad mutex_init(&sc->sc_rhlock, MUTEX_DEFAULT, IPL_NONE);
1642 1.34 skrll mutex_init(&sc->sc_lock, MUTEX_DEFAULT, IPL_SOFTUSB);
1643 1.34 skrll mutex_init(&sc->sc_intr_lock, MUTEX_DEFAULT, IPL_USB);
1644 1.34 skrll
1645 1.1 jakllsch struct xhci_erste *erst;
1646 1.1 jakllsch erst = KERNADDR(&sc->sc_eventst_dma, 0);
1647 1.123 skrll erst[0].erste_0 = htole64(xhci_ring_trbp(sc->sc_er, 0));
1648 1.123 skrll erst[0].erste_2 = htole32(sc->sc_er->xr_ntrb);
1649 1.1 jakllsch erst[0].erste_3 = htole32(0);
1650 1.1 jakllsch usb_syncmem(&sc->sc_eventst_dma, 0,
1651 1.1 jakllsch XHCI_ERSTE_SIZE * XHCI_EVENT_RING_SEGMENTS, BUS_DMASYNC_PREWRITE);
1652 1.1 jakllsch
1653 1.1 jakllsch xhci_rt_write_4(sc, XHCI_ERSTSZ(0), XHCI_EVENT_RING_SEGMENTS);
1654 1.1 jakllsch xhci_rt_write_8(sc, XHCI_ERSTBA(0), DMAADDR(&sc->sc_eventst_dma, 0));
1655 1.123 skrll xhci_rt_write_8(sc, XHCI_ERDP(0), xhci_ring_trbp(sc->sc_er, 0) |
1656 1.132 skrll XHCI_ERDP_BUSY);
1657 1.103 skrll
1658 1.1 jakllsch xhci_op_write_8(sc, XHCI_DCBAAP, DMAADDR(&sc->sc_dcbaa_dma, 0));
1659 1.123 skrll xhci_op_write_8(sc, XHCI_CRCR, xhci_ring_trbp(sc->sc_cr, 0) |
1660 1.123 skrll sc->sc_cr->xr_cs);
1661 1.1 jakllsch
1662 1.79 christos HEXDUMP("eventst", KERNADDR(&sc->sc_eventst_dma, 0),
1663 1.1 jakllsch XHCI_ERSTE_SIZE * XHCI_EVENT_RING_SEGMENTS);
1664 1.1 jakllsch
1665 1.74 jmcneill if ((sc->sc_quirks & XHCI_DEFERRED_START) == 0)
1666 1.74 jmcneill xhci_start(sc);
1667 1.1 jakllsch
1668 1.37 skrll return 0;
1669 1.37 skrll
1670 1.37 skrll bad:
1671 1.37 skrll if (sc->sc_xferpool) {
1672 1.37 skrll pool_cache_destroy(sc->sc_xferpool);
1673 1.37 skrll sc->sc_xferpool = NULL;
1674 1.37 skrll }
1675 1.37 skrll
1676 1.37 skrll if (sc->sc_slots) {
1677 1.37 skrll kmem_free(sc->sc_slots, sizeof(*sc->sc_slots) *
1678 1.37 skrll sc->sc_maxslots);
1679 1.37 skrll sc->sc_slots = NULL;
1680 1.37 skrll }
1681 1.37 skrll
1682 1.151 skrll usb_freemem(&sc->sc_dcbaa_dma);
1683 1.37 skrll bad4:
1684 1.151 skrll usb_freemem(&sc->sc_eventst_dma);
1685 1.37 skrll bad3:
1686 1.37 skrll xhci_ring_free(sc, &sc->sc_er);
1687 1.37 skrll bad2:
1688 1.37 skrll xhci_ring_free(sc, &sc->sc_cr);
1689 1.37 skrll i = sc->sc_maxspbuf;
1690 1.37 skrll bad1:
1691 1.37 skrll for (int j = 0; j < i; j++)
1692 1.151 skrll usb_freemem(&sc->sc_spbuf_dma[j]);
1693 1.151 skrll usb_freemem(&sc->sc_spbufarray_dma);
1694 1.37 skrll
1695 1.37 skrll return rv;
1696 1.1 jakllsch }
1697 1.1 jakllsch
1698 1.73 skrll static inline bool
1699 1.73 skrll xhci_polling_p(struct xhci_softc * const sc)
1700 1.73 skrll {
1701 1.73 skrll return sc->sc_bus.ub_usepolling || sc->sc_bus2.ub_usepolling;
1702 1.73 skrll }
1703 1.73 skrll
1704 1.1 jakllsch int
1705 1.1 jakllsch xhci_intr(void *v)
1706 1.1 jakllsch {
1707 1.1 jakllsch struct xhci_softc * const sc = v;
1708 1.25 skrll int ret = 0;
1709 1.1 jakllsch
1710 1.27 skrll XHCIHIST_FUNC(); XHCIHIST_CALLED();
1711 1.27 skrll
1712 1.25 skrll if (sc == NULL)
1713 1.1 jakllsch return 0;
1714 1.1 jakllsch
1715 1.25 skrll mutex_spin_enter(&sc->sc_intr_lock);
1716 1.25 skrll
1717 1.25 skrll if (sc->sc_dying || !device_has_power(sc->sc_dev))
1718 1.25 skrll goto done;
1719 1.25 skrll
1720 1.1 jakllsch /* If we get an interrupt while polling, then just ignore it. */
1721 1.73 skrll if (xhci_polling_p(sc)) {
1722 1.1 jakllsch #ifdef DIAGNOSTIC
1723 1.27 skrll DPRINTFN(16, "ignored interrupt while polling", 0, 0, 0, 0);
1724 1.1 jakllsch #endif
1725 1.25 skrll goto done;
1726 1.1 jakllsch }
1727 1.1 jakllsch
1728 1.25 skrll ret = xhci_intr1(sc);
1729 1.73 skrll if (ret) {
1730 1.89 jdolecek KASSERT(sc->sc_child || sc->sc_child2);
1731 1.89 jdolecek
1732 1.89 jdolecek /*
1733 1.89 jdolecek * One of child busses could be already detached. It doesn't
1734 1.89 jdolecek * matter on which of the two the softintr is scheduled.
1735 1.89 jdolecek */
1736 1.89 jdolecek if (sc->sc_child)
1737 1.89 jdolecek usb_schedsoftintr(&sc->sc_bus);
1738 1.89 jdolecek else
1739 1.89 jdolecek usb_schedsoftintr(&sc->sc_bus2);
1740 1.73 skrll }
1741 1.25 skrll done:
1742 1.25 skrll mutex_spin_exit(&sc->sc_intr_lock);
1743 1.25 skrll return ret;
1744 1.1 jakllsch }
1745 1.1 jakllsch
1746 1.1 jakllsch int
1747 1.1 jakllsch xhci_intr1(struct xhci_softc * const sc)
1748 1.1 jakllsch {
1749 1.1 jakllsch uint32_t usbsts;
1750 1.1 jakllsch uint32_t iman;
1751 1.1 jakllsch
1752 1.111 mrg XHCIHIST_FUNC();
1753 1.27 skrll
1754 1.1 jakllsch usbsts = xhci_op_read_4(sc, XHCI_USBSTS);
1755 1.121 christos XHCIHIST_CALLARGS("USBSTS 0x%08jx", usbsts, 0, 0, 0);
1756 1.90 jdolecek if ((usbsts & (XHCI_STS_HSE | XHCI_STS_EINT | XHCI_STS_PCD |
1757 1.90 jdolecek XHCI_STS_HCE)) == 0) {
1758 1.120 christos DPRINTFN(16, "ignored intr not for %jd",
1759 1.122 christos device_unit(sc->sc_dev), 0, 0, 0);
1760 1.1 jakllsch return 0;
1761 1.1 jakllsch }
1762 1.90 jdolecek
1763 1.90 jdolecek /*
1764 1.90 jdolecek * Clear EINT and other transient flags, to not misenterpret
1765 1.90 jdolecek * next shared interrupt. Also, to avoid race, EINT must be cleared
1766 1.90 jdolecek * before XHCI_IMAN_INTR_PEND is cleared.
1767 1.90 jdolecek */
1768 1.179 mlelstv xhci_op_write_4(sc, XHCI_USBSTS, usbsts & ~XHCI_STS_RSVDP0);
1769 1.90 jdolecek
1770 1.90 jdolecek #ifdef XHCI_DEBUG
1771 1.1 jakllsch usbsts = xhci_op_read_4(sc, XHCI_USBSTS);
1772 1.121 christos DPRINTFN(16, "USBSTS 0x%08jx", usbsts, 0, 0, 0);
1773 1.90 jdolecek #endif
1774 1.1 jakllsch
1775 1.1 jakllsch iman = xhci_rt_read_4(sc, XHCI_IMAN(0));
1776 1.121 christos DPRINTFN(16, "IMAN0 0x%08jx", iman, 0, 0, 0);
1777 1.34 skrll iman |= XHCI_IMAN_INTR_PEND;
1778 1.1 jakllsch xhci_rt_write_4(sc, XHCI_IMAN(0), iman);
1779 1.90 jdolecek
1780 1.90 jdolecek #ifdef XHCI_DEBUG
1781 1.1 jakllsch iman = xhci_rt_read_4(sc, XHCI_IMAN(0));
1782 1.121 christos DPRINTFN(16, "IMAN0 0x%08jx", iman, 0, 0, 0);
1783 1.1 jakllsch usbsts = xhci_op_read_4(sc, XHCI_USBSTS);
1784 1.121 christos DPRINTFN(16, "USBSTS 0x%08jx", usbsts, 0, 0, 0);
1785 1.90 jdolecek #endif
1786 1.1 jakllsch
1787 1.1 jakllsch return 1;
1788 1.1 jakllsch }
1789 1.1 jakllsch
1790 1.34 skrll /*
1791 1.34 skrll * 3 port speed types used in USB stack
1792 1.34 skrll *
1793 1.34 skrll * usbdi speed
1794 1.34 skrll * definition: USB_SPEED_* in usb.h
1795 1.34 skrll * They are used in struct usbd_device in USB stack.
1796 1.34 skrll * ioctl interface uses these values too.
1797 1.34 skrll * port_status speed
1798 1.34 skrll * definition: UPS_*_SPEED in usb.h
1799 1.34 skrll * They are used in usb_port_status_t and valid only for USB 2.0.
1800 1.34 skrll * Speed value is always 0 for Super Speed or more, and dwExtPortStatus
1801 1.34 skrll * of usb_port_status_ext_t indicates port speed.
1802 1.34 skrll * Note that some 3.0 values overlap with 2.0 values.
1803 1.34 skrll * (e.g. 0x200 means UPS_POER_POWER_SS in SS and
1804 1.34 skrll * means UPS_LOW_SPEED in HS.)
1805 1.34 skrll * port status returned from hub also uses these values.
1806 1.34 skrll * On NetBSD UPS_OTHER_SPEED indicates port speed is super speed
1807 1.34 skrll * or more.
1808 1.34 skrll * xspeed:
1809 1.34 skrll * definition: Protocol Speed ID (PSI) (xHCI 1.1 7.2.1)
1810 1.34 skrll * They are used in only slot context and PORTSC reg of xhci.
1811 1.34 skrll * The difference between usbdi speed and xspeed is
1812 1.34 skrll * that FS and LS values are swapped.
1813 1.34 skrll */
1814 1.34 skrll
1815 1.34 skrll /* convert usbdi speed to xspeed */
1816 1.34 skrll static int
1817 1.34 skrll xhci_speed2xspeed(int speed)
1818 1.34 skrll {
1819 1.34 skrll switch (speed) {
1820 1.34 skrll case USB_SPEED_LOW: return 2;
1821 1.34 skrll case USB_SPEED_FULL: return 1;
1822 1.34 skrll default: return speed;
1823 1.34 skrll }
1824 1.34 skrll }
1825 1.34 skrll
1826 1.34 skrll #if 0
1827 1.34 skrll /* convert xspeed to usbdi speed */
1828 1.34 skrll static int
1829 1.34 skrll xhci_xspeed2speed(int xspeed)
1830 1.34 skrll {
1831 1.34 skrll switch (xspeed) {
1832 1.34 skrll case 1: return USB_SPEED_FULL;
1833 1.34 skrll case 2: return USB_SPEED_LOW;
1834 1.34 skrll default: return xspeed;
1835 1.34 skrll }
1836 1.34 skrll }
1837 1.34 skrll #endif
1838 1.34 skrll
1839 1.34 skrll /* convert xspeed to port status speed */
1840 1.34 skrll static int
1841 1.34 skrll xhci_xspeed2psspeed(int xspeed)
1842 1.34 skrll {
1843 1.34 skrll switch (xspeed) {
1844 1.34 skrll case 0: return 0;
1845 1.34 skrll case 1: return UPS_FULL_SPEED;
1846 1.34 skrll case 2: return UPS_LOW_SPEED;
1847 1.34 skrll case 3: return UPS_HIGH_SPEED;
1848 1.34 skrll default: return UPS_OTHER_SPEED;
1849 1.34 skrll }
1850 1.34 skrll }
1851 1.34 skrll
1852 1.34 skrll /*
1853 1.54 skrll * Construct input contexts and issue TRB to open pipe.
1854 1.34 skrll */
1855 1.1 jakllsch static usbd_status
1856 1.34 skrll xhci_configure_endpoint(struct usbd_pipe *pipe)
1857 1.1 jakllsch {
1858 1.34 skrll struct xhci_softc * const sc = XHCI_PIPE2SC(pipe);
1859 1.34 skrll struct xhci_slot * const xs = pipe->up_dev->ud_hcpriv;
1860 1.81 hannken #ifdef USB_DEBUG
1861 1.34 skrll const u_int dci = xhci_ep_get_dci(pipe->up_endpoint->ue_edesc);
1862 1.79 christos #endif
1863 1.101 jakllsch struct xhci_soft_trb trb;
1864 1.1 jakllsch usbd_status err;
1865 1.1 jakllsch
1866 1.111 mrg XHCIHIST_FUNC();
1867 1.121 christos XHCIHIST_CALLARGS("slot %ju dci %ju epaddr 0x%02jx attr 0x%02jx",
1868 1.34 skrll xs->xs_idx, dci, pipe->up_endpoint->ue_edesc->bEndpointAddress,
1869 1.34 skrll pipe->up_endpoint->ue_edesc->bmAttributes);
1870 1.1 jakllsch
1871 1.1 jakllsch /* XXX ensure input context is available? */
1872 1.1 jakllsch
1873 1.1 jakllsch memset(xhci_slot_get_icv(sc, xs, 0), 0, sc->sc_pgsz);
1874 1.1 jakllsch
1875 1.51 skrll /* set up context */
1876 1.51 skrll xhci_setup_ctx(pipe);
1877 1.1 jakllsch
1878 1.79 christos HEXDUMP("input control context", xhci_slot_get_icv(sc, xs, 0),
1879 1.1 jakllsch sc->sc_ctxsz * 1);
1880 1.79 christos HEXDUMP("input endpoint context", xhci_slot_get_icv(sc, xs,
1881 1.1 jakllsch xhci_dci_to_ici(dci)), sc->sc_ctxsz * 1);
1882 1.1 jakllsch
1883 1.1 jakllsch trb.trb_0 = xhci_slot_get_icp(sc, xs, 0);
1884 1.1 jakllsch trb.trb_2 = 0;
1885 1.1 jakllsch trb.trb_3 = XHCI_TRB_3_SLOT_SET(xs->xs_idx) |
1886 1.1 jakllsch XHCI_TRB_3_TYPE_SET(XHCI_TRB_TYPE_CONFIGURE_EP);
1887 1.1 jakllsch
1888 1.1 jakllsch err = xhci_do_command(sc, &trb, USBD_DEFAULT_TIMEOUT);
1889 1.1 jakllsch
1890 1.1 jakllsch usb_syncmem(&xs->xs_dc_dma, 0, sc->sc_pgsz, BUS_DMASYNC_POSTREAD);
1891 1.79 christos HEXDUMP("output context", xhci_slot_get_dcv(sc, xs, dci),
1892 1.1 jakllsch sc->sc_ctxsz * 1);
1893 1.1 jakllsch
1894 1.1 jakllsch return err;
1895 1.1 jakllsch }
1896 1.1 jakllsch
1897 1.34 skrll #if 0
1898 1.1 jakllsch static usbd_status
1899 1.34 skrll xhci_unconfigure_endpoint(struct usbd_pipe *pipe)
1900 1.1 jakllsch {
1901 1.27 skrll #ifdef USB_DEBUG
1902 1.34 skrll struct xhci_slot * const xs = pipe->up_dev->ud_hcpriv;
1903 1.27 skrll #endif
1904 1.27 skrll
1905 1.111 mrg XHCIHIST_FUNC();
1906 1.111 mrg XHCIHIST_CALLARGS("slot %ju", xs->xs_idx, 0, 0, 0);
1907 1.27 skrll
1908 1.1 jakllsch return USBD_NORMAL_COMPLETION;
1909 1.1 jakllsch }
1910 1.34 skrll #endif
1911 1.1 jakllsch
1912 1.34 skrll /* 4.6.8, 6.4.3.7 */
1913 1.155 riastrad static void
1914 1.155 riastrad xhci_reset_endpoint(struct usbd_pipe *pipe)
1915 1.1 jakllsch {
1916 1.34 skrll struct xhci_softc * const sc = XHCI_PIPE2SC(pipe);
1917 1.34 skrll struct xhci_slot * const xs = pipe->up_dev->ud_hcpriv;
1918 1.34 skrll const u_int dci = xhci_ep_get_dci(pipe->up_endpoint->ue_edesc);
1919 1.101 jakllsch struct xhci_soft_trb trb;
1920 1.1 jakllsch
1921 1.111 mrg XHCIHIST_FUNC();
1922 1.111 mrg XHCIHIST_CALLARGS("slot %ju dci %ju", xs->xs_idx, dci, 0, 0);
1923 1.34 skrll
1924 1.63 skrll KASSERT(mutex_owned(&sc->sc_lock));
1925 1.63 skrll
1926 1.1 jakllsch trb.trb_0 = 0;
1927 1.1 jakllsch trb.trb_2 = 0;
1928 1.1 jakllsch trb.trb_3 = XHCI_TRB_3_SLOT_SET(xs->xs_idx) |
1929 1.1 jakllsch XHCI_TRB_3_EP_SET(dci) |
1930 1.1 jakllsch XHCI_TRB_3_TYPE_SET(XHCI_TRB_TYPE_RESET_EP);
1931 1.1 jakllsch
1932 1.155 riastrad if (xhci_do_command_locked(sc, &trb, USBD_DEFAULT_TIMEOUT)) {
1933 1.155 riastrad device_printf(sc->sc_dev, "%s: endpoint 0x%x: timed out\n",
1934 1.155 riastrad __func__, pipe->up_endpoint->ue_edesc->bEndpointAddress);
1935 1.155 riastrad }
1936 1.63 skrll }
1937 1.63 skrll
1938 1.34 skrll /*
1939 1.34 skrll * 4.6.9, 6.4.3.8
1940 1.34 skrll * Stop execution of TDs on xfer ring.
1941 1.34 skrll * Should be called with sc_lock held.
1942 1.34 skrll */
1943 1.1 jakllsch static usbd_status
1944 1.140 riastrad xhci_stop_endpoint_cmd(struct xhci_softc *sc, struct xhci_slot *xs, u_int dci,
1945 1.140 riastrad uint32_t trb3flags)
1946 1.1 jakllsch {
1947 1.101 jakllsch struct xhci_soft_trb trb;
1948 1.1 jakllsch usbd_status err;
1949 1.1 jakllsch
1950 1.111 mrg XHCIHIST_FUNC();
1951 1.111 mrg XHCIHIST_CALLARGS("slot %ju dci %ju", xs->xs_idx, dci, 0, 0);
1952 1.34 skrll
1953 1.34 skrll KASSERT(mutex_owned(&sc->sc_lock));
1954 1.1 jakllsch
1955 1.1 jakllsch trb.trb_0 = 0;
1956 1.1 jakllsch trb.trb_2 = 0;
1957 1.1 jakllsch trb.trb_3 = XHCI_TRB_3_SLOT_SET(xs->xs_idx) |
1958 1.1 jakllsch XHCI_TRB_3_EP_SET(dci) |
1959 1.140 riastrad XHCI_TRB_3_TYPE_SET(XHCI_TRB_TYPE_STOP_EP) |
1960 1.140 riastrad trb3flags;
1961 1.1 jakllsch
1962 1.34 skrll err = xhci_do_command_locked(sc, &trb, USBD_DEFAULT_TIMEOUT);
1963 1.1 jakllsch
1964 1.1 jakllsch return err;
1965 1.1 jakllsch }
1966 1.1 jakllsch
1967 1.140 riastrad static usbd_status
1968 1.140 riastrad xhci_stop_endpoint(struct usbd_pipe *pipe)
1969 1.140 riastrad {
1970 1.140 riastrad struct xhci_softc * const sc = XHCI_PIPE2SC(pipe);
1971 1.140 riastrad struct xhci_slot * const xs = pipe->up_dev->ud_hcpriv;
1972 1.140 riastrad const u_int dci = xhci_ep_get_dci(pipe->up_endpoint->ue_edesc);
1973 1.140 riastrad
1974 1.140 riastrad XHCIHIST_FUNC();
1975 1.140 riastrad XHCIHIST_CALLARGS("slot %ju dci %ju", xs->xs_idx, dci, 0, 0);
1976 1.140 riastrad
1977 1.140 riastrad KASSERT(mutex_owned(&sc->sc_lock));
1978 1.140 riastrad
1979 1.140 riastrad return xhci_stop_endpoint_cmd(sc, xs, dci, 0);
1980 1.140 riastrad }
1981 1.140 riastrad
1982 1.34 skrll /*
1983 1.34 skrll * Set TR Dequeue Pointer.
1984 1.54 skrll * xHCI 1.1 4.6.10 6.4.3.9
1985 1.54 skrll * Purge all of the TRBs on ring and reinitialize ring.
1986 1.147 andvar * Set TR dequeue Pointer to 0 and Cycle State to 1.
1987 1.54 skrll * EPSTATE of endpoint must be ERROR or STOPPED, otherwise CONTEXT_STATE
1988 1.54 skrll * error will be generated.
1989 1.34 skrll */
1990 1.155 riastrad static void
1991 1.155 riastrad xhci_set_dequeue(struct usbd_pipe *pipe)
1992 1.1 jakllsch {
1993 1.34 skrll struct xhci_softc * const sc = XHCI_PIPE2SC(pipe);
1994 1.34 skrll struct xhci_slot * const xs = pipe->up_dev->ud_hcpriv;
1995 1.34 skrll const u_int dci = xhci_ep_get_dci(pipe->up_endpoint->ue_edesc);
1996 1.123 skrll struct xhci_ring * const xr = xs->xs_xr[dci];
1997 1.101 jakllsch struct xhci_soft_trb trb;
1998 1.1 jakllsch
1999 1.111 mrg XHCIHIST_FUNC();
2000 1.111 mrg XHCIHIST_CALLARGS("slot %ju dci %ju", xs->xs_idx, dci, 0, 0);
2001 1.1 jakllsch
2002 1.63 skrll KASSERT(mutex_owned(&sc->sc_lock));
2003 1.123 skrll KASSERT(xr != NULL);
2004 1.63 skrll
2005 1.56 skrll xhci_host_dequeue(xr);
2006 1.1 jakllsch
2007 1.34 skrll /* set DCS */
2008 1.1 jakllsch trb.trb_0 = xhci_ring_trbp(xr, 0) | 1; /* XXX */
2009 1.1 jakllsch trb.trb_2 = 0;
2010 1.1 jakllsch trb.trb_3 = XHCI_TRB_3_SLOT_SET(xs->xs_idx) |
2011 1.1 jakllsch XHCI_TRB_3_EP_SET(dci) |
2012 1.1 jakllsch XHCI_TRB_3_TYPE_SET(XHCI_TRB_TYPE_SET_TR_DEQUEUE);
2013 1.1 jakllsch
2014 1.155 riastrad if (xhci_do_command_locked(sc, &trb, USBD_DEFAULT_TIMEOUT)) {
2015 1.155 riastrad device_printf(sc->sc_dev, "%s: endpoint 0x%x: timed out\n",
2016 1.155 riastrad __func__, pipe->up_endpoint->ue_edesc->bEndpointAddress);
2017 1.155 riastrad }
2018 1.63 skrll }
2019 1.63 skrll
2020 1.34 skrll /*
2021 1.34 skrll * Open new pipe: called from usbd_setup_pipe_flags.
2022 1.34 skrll * Fills methods of pipe.
2023 1.34 skrll * If pipe is not for ep0, calls configure_endpoint.
2024 1.34 skrll */
2025 1.1 jakllsch static usbd_status
2026 1.34 skrll xhci_open(struct usbd_pipe *pipe)
2027 1.1 jakllsch {
2028 1.34 skrll struct usbd_device * const dev = pipe->up_dev;
2029 1.134 jakllsch struct xhci_pipe * const xpipe = (struct xhci_pipe *)pipe;
2030 1.34 skrll struct xhci_softc * const sc = XHCI_BUS2SC(dev->ud_bus);
2031 1.123 skrll struct xhci_slot * const xs = pipe->up_dev->ud_hcpriv;
2032 1.34 skrll usb_endpoint_descriptor_t * const ed = pipe->up_endpoint->ue_edesc;
2033 1.123 skrll const u_int dci = xhci_ep_get_dci(ed);
2034 1.1 jakllsch const uint8_t xfertype = UE_GET_XFERTYPE(ed->bmAttributes);
2035 1.123 skrll usbd_status err;
2036 1.1 jakllsch
2037 1.111 mrg XHCIHIST_FUNC();
2038 1.111 mrg XHCIHIST_CALLARGS("addr %jd depth %jd port %jd speed %jd", dev->ud_addr,
2039 1.53 skrll dev->ud_depth, dev->ud_powersrc->up_portno, dev->ud_speed);
2040 1.121 christos DPRINTFN(1, " dci %ju type 0x%02jx epaddr 0x%02jx attr 0x%02jx",
2041 1.53 skrll xhci_ep_get_dci(ed), ed->bDescriptorType, ed->bEndpointAddress,
2042 1.53 skrll ed->bmAttributes);
2043 1.75 pgoyette DPRINTFN(1, " mps %ju ival %ju", UGETW(ed->wMaxPacketSize),
2044 1.75 pgoyette ed->bInterval, 0, 0);
2045 1.1 jakllsch
2046 1.1 jakllsch if (sc->sc_dying)
2047 1.1 jakllsch return USBD_IOERROR;
2048 1.1 jakllsch
2049 1.1 jakllsch /* Root Hub */
2050 1.34 skrll if (dev->ud_depth == 0 && dev->ud_powersrc->up_portno == 0) {
2051 1.1 jakllsch switch (ed->bEndpointAddress) {
2052 1.1 jakllsch case USB_CONTROL_ENDPOINT:
2053 1.34 skrll pipe->up_methods = &roothub_ctrl_methods;
2054 1.1 jakllsch break;
2055 1.34 skrll case UE_DIR_IN | USBROOTHUB_INTR_ENDPT:
2056 1.34 skrll pipe->up_methods = &xhci_root_intr_methods;
2057 1.1 jakllsch break;
2058 1.1 jakllsch default:
2059 1.34 skrll pipe->up_methods = NULL;
2060 1.121 christos DPRINTFN(0, "bad bEndpointAddress 0x%02jx",
2061 1.27 skrll ed->bEndpointAddress, 0, 0, 0);
2062 1.1 jakllsch return USBD_INVAL;
2063 1.1 jakllsch }
2064 1.1 jakllsch return USBD_NORMAL_COMPLETION;
2065 1.1 jakllsch }
2066 1.1 jakllsch
2067 1.161 riastrad usb_init_task(&xpipe->xp_async_task, xhci_pipe_restart_async_task,
2068 1.161 riastrad pipe, USB_TASKQ_MPSAFE);
2069 1.155 riastrad
2070 1.1 jakllsch switch (xfertype) {
2071 1.1 jakllsch case UE_CONTROL:
2072 1.34 skrll pipe->up_methods = &xhci_device_ctrl_methods;
2073 1.1 jakllsch break;
2074 1.1 jakllsch case UE_ISOCHRONOUS:
2075 1.34 skrll pipe->up_methods = &xhci_device_isoc_methods;
2076 1.134 jakllsch pipe->up_serialise = false;
2077 1.134 jakllsch xpipe->xp_isoc_next = -1;
2078 1.1 jakllsch break;
2079 1.1 jakllsch case UE_BULK:
2080 1.34 skrll pipe->up_methods = &xhci_device_bulk_methods;
2081 1.1 jakllsch break;
2082 1.1 jakllsch case UE_INTERRUPT:
2083 1.34 skrll pipe->up_methods = &xhci_device_intr_methods;
2084 1.1 jakllsch break;
2085 1.1 jakllsch default:
2086 1.1 jakllsch return USBD_IOERROR;
2087 1.1 jakllsch break;
2088 1.1 jakllsch }
2089 1.1 jakllsch
2090 1.123 skrll KASSERT(xs != NULL);
2091 1.123 skrll KASSERT(xs->xs_xr[dci] == NULL);
2092 1.123 skrll
2093 1.123 skrll /* allocate transfer ring */
2094 1.123 skrll err = xhci_ring_init(sc, &xs->xs_xr[dci], XHCI_TRANSFER_RING_TRBS,
2095 1.123 skrll XHCI_TRB_ALIGN);
2096 1.123 skrll if (err) {
2097 1.123 skrll DPRINTFN(1, "ring alloc failed %jd", err, 0, 0, 0);
2098 1.123 skrll return err;
2099 1.123 skrll }
2100 1.123 skrll
2101 1.1 jakllsch if (ed->bEndpointAddress != USB_CONTROL_ENDPOINT)
2102 1.34 skrll return xhci_configure_endpoint(pipe);
2103 1.1 jakllsch
2104 1.1 jakllsch return USBD_NORMAL_COMPLETION;
2105 1.1 jakllsch }
2106 1.1 jakllsch
2107 1.34 skrll /*
2108 1.34 skrll * Closes pipe, called from usbd_kill_pipe via close methods.
2109 1.34 skrll * If the endpoint to be closed is ep0, disable_slot.
2110 1.34 skrll * Should be called with sc_lock held.
2111 1.34 skrll */
2112 1.1 jakllsch static void
2113 1.34 skrll xhci_close_pipe(struct usbd_pipe *pipe)
2114 1.1 jakllsch {
2115 1.155 riastrad struct xhci_pipe * const xp =
2116 1.155 riastrad container_of(pipe, struct xhci_pipe, xp_pipe);
2117 1.34 skrll struct xhci_softc * const sc = XHCI_PIPE2SC(pipe);
2118 1.34 skrll struct xhci_slot * const xs = pipe->up_dev->ud_hcpriv;
2119 1.34 skrll usb_endpoint_descriptor_t * const ed = pipe->up_endpoint->ue_edesc;
2120 1.34 skrll const u_int dci = xhci_ep_get_dci(ed);
2121 1.101 jakllsch struct xhci_soft_trb trb;
2122 1.34 skrll uint32_t *cp;
2123 1.1 jakllsch
2124 1.111 mrg XHCIHIST_FUNC();
2125 1.1 jakllsch
2126 1.155 riastrad usb_rem_task_wait(pipe->up_dev, &xp->xp_async_task, USB_TASKQ_HC,
2127 1.155 riastrad &sc->sc_lock);
2128 1.155 riastrad
2129 1.34 skrll if (sc->sc_dying)
2130 1.1 jakllsch return;
2131 1.1 jakllsch
2132 1.41 skrll /* xs is uninitialized before xhci_init_slot */
2133 1.34 skrll if (xs == NULL || xs->xs_idx == 0)
2134 1.1 jakllsch return;
2135 1.1 jakllsch
2136 1.111 mrg XHCIHIST_CALLARGS("pipe %#jx slot %ju dci %ju",
2137 1.111 mrg (uintptr_t)pipe, xs->xs_idx, dci, 0);
2138 1.1 jakllsch
2139 1.34 skrll KASSERTMSG(!cpu_intr_p() && !cpu_softintr_p(), "called from intr ctx");
2140 1.34 skrll KASSERT(mutex_owned(&sc->sc_lock));
2141 1.1 jakllsch
2142 1.34 skrll if (pipe->up_dev->ud_depth == 0)
2143 1.34 skrll return;
2144 1.1 jakllsch
2145 1.34 skrll if (dci == XHCI_DCI_EP_CONTROL) {
2146 1.34 skrll DPRINTFN(4, "closing ep0", 0, 0, 0, 0);
2147 1.123 skrll /* This frees all rings */
2148 1.34 skrll xhci_disable_slot(sc, xs->xs_idx);
2149 1.34 skrll return;
2150 1.34 skrll }
2151 1.1 jakllsch
2152 1.66 skrll if (xhci_get_epstate(sc, xs, dci) != XHCI_EPSTATE_STOPPED)
2153 1.66 skrll (void)xhci_stop_endpoint(pipe);
2154 1.1 jakllsch
2155 1.34 skrll /*
2156 1.34 skrll * set appropriate bit to be dropped.
2157 1.34 skrll * don't set DC bit to 1, otherwise all endpoints
2158 1.34 skrll * would be deconfigured.
2159 1.34 skrll */
2160 1.34 skrll cp = xhci_slot_get_icv(sc, xs, XHCI_ICI_INPUT_CONTROL);
2161 1.34 skrll cp[0] = htole32(XHCI_INCTX_0_DROP_MASK(dci));
2162 1.34 skrll cp[1] = htole32(0);
2163 1.1 jakllsch
2164 1.34 skrll /* XXX should be most significant one, not dci? */
2165 1.34 skrll cp = xhci_slot_get_icv(sc, xs, xhci_dci_to_ici(XHCI_DCI_SLOT));
2166 1.34 skrll cp[0] = htole32(XHCI_SCTX_0_CTX_NUM_SET(dci));
2167 1.1 jakllsch
2168 1.55 skrll /* configure ep context performs an implicit dequeue */
2169 1.123 skrll xhci_host_dequeue(xs->xs_xr[dci]);
2170 1.55 skrll
2171 1.34 skrll /* sync input contexts before they are read from memory */
2172 1.34 skrll usb_syncmem(&xs->xs_ic_dma, 0, sc->sc_pgsz, BUS_DMASYNC_PREWRITE);
2173 1.1 jakllsch
2174 1.34 skrll trb.trb_0 = xhci_slot_get_icp(sc, xs, 0);
2175 1.34 skrll trb.trb_2 = 0;
2176 1.34 skrll trb.trb_3 = XHCI_TRB_3_SLOT_SET(xs->xs_idx) |
2177 1.34 skrll XHCI_TRB_3_TYPE_SET(XHCI_TRB_TYPE_CONFIGURE_EP);
2178 1.1 jakllsch
2179 1.34 skrll (void)xhci_do_command_locked(sc, &trb, USBD_DEFAULT_TIMEOUT);
2180 1.34 skrll usb_syncmem(&xs->xs_dc_dma, 0, sc->sc_pgsz, BUS_DMASYNC_POSTREAD);
2181 1.123 skrll
2182 1.123 skrll xhci_ring_free(sc, &xs->xs_xr[dci]);
2183 1.144 jdolecek xs->xs_xr[dci] = NULL;
2184 1.34 skrll }
2185 1.1 jakllsch
2186 1.34 skrll /*
2187 1.161 riastrad * Abort transfer. Must be called with sc_lock held. Releases and
2188 1.161 riastrad * reacquires sc_lock to sleep until hardware acknowledges abort.
2189 1.34 skrll */
2190 1.34 skrll static void
2191 1.116 riastrad xhci_abortx(struct usbd_xfer *xfer)
2192 1.34 skrll {
2193 1.111 mrg XHCIHIST_FUNC();
2194 1.34 skrll struct xhci_softc * const sc = XHCI_XFER2SC(xfer);
2195 1.1 jakllsch
2196 1.116 riastrad XHCIHIST_CALLARGS("xfer %#jx pipe %#jx",
2197 1.116 riastrad (uintptr_t)xfer, (uintptr_t)xfer->ux_pipe, 0, 0);
2198 1.1 jakllsch
2199 1.34 skrll KASSERT(mutex_owned(&sc->sc_lock));
2200 1.116 riastrad KASSERTMSG((xfer->ux_status == USBD_CANCELLED ||
2201 1.116 riastrad xfer->ux_status == USBD_TIMEOUT),
2202 1.116 riastrad "bad abort status: %d", xfer->ux_status);
2203 1.63 skrll
2204 1.155 riastrad xhci_pipe_restart(xfer->ux_pipe);
2205 1.63 skrll
2206 1.34 skrll DPRINTFN(14, "end", 0, 0, 0, 0);
2207 1.1 jakllsch }
2208 1.1 jakllsch
2209 1.55 skrll static void
2210 1.55 skrll xhci_host_dequeue(struct xhci_ring * const xr)
2211 1.55 skrll {
2212 1.55 skrll /* When dequeueing the controller, update our struct copy too */
2213 1.55 skrll memset(xr->xr_trb, 0, xr->xr_ntrb * XHCI_TRB_SIZE);
2214 1.55 skrll usb_syncmem(&xr->xr_dma, 0, xr->xr_ntrb * XHCI_TRB_SIZE,
2215 1.55 skrll BUS_DMASYNC_PREWRITE);
2216 1.55 skrll memset(xr->xr_cookies, 0, xr->xr_ntrb * sizeof(*xr->xr_cookies));
2217 1.55 skrll
2218 1.55 skrll xr->xr_ep = 0;
2219 1.55 skrll xr->xr_cs = 1;
2220 1.55 skrll }
2221 1.55 skrll
2222 1.34 skrll /*
2223 1.155 riastrad * Recover STALLed endpoint, or stop endpoint to abort a pipe.
2224 1.34 skrll * xHCI 1.1 sect 4.10.2.1
2225 1.34 skrll * Issue RESET_EP to recover halt condition and SET_TR_DEQUEUE to remove
2226 1.34 skrll * all transfers on transfer ring.
2227 1.34 skrll */
2228 1.1 jakllsch static void
2229 1.161 riastrad xhci_pipe_restart(struct usbd_pipe *pipe)
2230 1.1 jakllsch {
2231 1.155 riastrad struct xhci_softc * const sc = XHCI_PIPE2SC(pipe);
2232 1.155 riastrad struct xhci_slot * const xs = pipe->up_dev->ud_hcpriv;
2233 1.155 riastrad const u_int dci = xhci_ep_get_dci(pipe->up_endpoint->ue_edesc);
2234 1.1 jakllsch
2235 1.111 mrg XHCIHIST_FUNC();
2236 1.155 riastrad XHCIHIST_CALLARGS("pipe %#jx slot %ju dci %ju",
2237 1.155 riastrad (uintptr_t)pipe, xs->xs_idx, dci, 0);
2238 1.155 riastrad
2239 1.161 riastrad KASSERT(xhci_polling_p(sc) || mutex_owned(&sc->sc_lock));
2240 1.155 riastrad
2241 1.155 riastrad /*
2242 1.155 riastrad * - If the endpoint is halted, indicating a stall, reset it.
2243 1.155 riastrad * - If the endpoint is stopped, we're already good.
2244 1.155 riastrad * - Otherwise, someone wanted to abort the pipe, so stop the
2245 1.155 riastrad * endpoint.
2246 1.155 riastrad *
2247 1.155 riastrad * In any case, clear the ring.
2248 1.155 riastrad */
2249 1.155 riastrad switch (xhci_get_epstate(sc, xs, dci)) {
2250 1.155 riastrad case XHCI_EPSTATE_HALTED:
2251 1.155 riastrad xhci_reset_endpoint(pipe);
2252 1.155 riastrad break;
2253 1.155 riastrad case XHCI_EPSTATE_STOPPED:
2254 1.155 riastrad break;
2255 1.155 riastrad default:
2256 1.155 riastrad xhci_stop_endpoint(pipe);
2257 1.155 riastrad break;
2258 1.155 riastrad }
2259 1.161 riastrad
2260 1.155 riastrad switch (xhci_get_epstate(sc, xs, dci)) {
2261 1.155 riastrad case XHCI_EPSTATE_STOPPED:
2262 1.155 riastrad break;
2263 1.155 riastrad case XHCI_EPSTATE_ERROR:
2264 1.155 riastrad device_printf(sc->sc_dev, "endpoint 0x%x error\n",
2265 1.155 riastrad pipe->up_endpoint->ue_edesc->bEndpointAddress);
2266 1.155 riastrad break;
2267 1.155 riastrad default:
2268 1.155 riastrad device_printf(sc->sc_dev, "endpoint 0x%x failed to stop\n",
2269 1.155 riastrad pipe->up_endpoint->ue_edesc->bEndpointAddress);
2270 1.155 riastrad }
2271 1.161 riastrad
2272 1.155 riastrad xhci_set_dequeue(pipe);
2273 1.1 jakllsch
2274 1.161 riastrad DPRINTFN(4, "ends", 0, 0, 0, 0);
2275 1.161 riastrad }
2276 1.161 riastrad
2277 1.161 riastrad static void
2278 1.161 riastrad xhci_pipe_restart_async_task(void *cookie)
2279 1.161 riastrad {
2280 1.161 riastrad struct usbd_pipe * const pipe = cookie;
2281 1.161 riastrad struct xhci_softc * const sc = XHCI_PIPE2SC(pipe);
2282 1.161 riastrad struct xhci_slot * const xs = pipe->up_dev->ud_hcpriv;
2283 1.161 riastrad const u_int dci = xhci_ep_get_dci(pipe->up_endpoint->ue_edesc);
2284 1.161 riastrad struct xhci_ring * const tr = xs->xs_xr[dci];
2285 1.161 riastrad struct usbd_xfer *xfer;
2286 1.161 riastrad
2287 1.166 riastrad XHCIHIST_FUNC();
2288 1.166 riastrad XHCIHIST_CALLARGS("sc=%#jx pipe=%#jx",
2289 1.166 riastrad (uintptr_t)sc, (uintptr_t)pipe, 0, 0);
2290 1.166 riastrad
2291 1.161 riastrad mutex_enter(&sc->sc_lock);
2292 1.161 riastrad
2293 1.161 riastrad xhci_pipe_restart(pipe);
2294 1.161 riastrad
2295 1.107 mrg /*
2296 1.161 riastrad * We halted our own queue because it stalled. Mark it no
2297 1.158 riastrad * longer halted and start issuing queued transfers again.
2298 1.107 mrg */
2299 1.161 riastrad tr->is_halted = false;
2300 1.161 riastrad xfer = SIMPLEQ_FIRST(&pipe->up_queue);
2301 1.166 riastrad if (xfer) {
2302 1.166 riastrad /*
2303 1.166 riastrad * If the first xfer of the queue is not in progress,
2304 1.166 riastrad * though, there may be a concurrent software abort
2305 1.166 riastrad * that has already cancelled it and is now in the
2306 1.166 riastrad * middle of a concurrent xhci_pipe_restart waiting to
2307 1.166 riastrad * reacquire the pipe (bus) lock. So only restart the
2308 1.166 riastrad * xfer if it's still USBD_IN_PROGRESS.
2309 1.166 riastrad *
2310 1.166 riastrad * Either way, xfers on the queue can't be in
2311 1.166 riastrad * USBD_NOT_STARTED.
2312 1.166 riastrad */
2313 1.166 riastrad KASSERT(xfer->ux_status != USBD_NOT_STARTED);
2314 1.166 riastrad if (xfer->ux_status == USBD_IN_PROGRESS) {
2315 1.166 riastrad (*pipe->up_methods->upm_start)(xfer);
2316 1.166 riastrad } else {
2317 1.166 riastrad DPRINTF("pipe restart race xfer=%#jx status=%jd",
2318 1.166 riastrad (uintptr_t)xfer, xfer->ux_status, 0, 0);
2319 1.166 riastrad }
2320 1.166 riastrad }
2321 1.107 mrg
2322 1.155 riastrad mutex_exit(&sc->sc_lock);
2323 1.34 skrll }
2324 1.34 skrll
2325 1.155 riastrad static void
2326 1.161 riastrad xhci_pipe_restart_async(struct usbd_pipe *pipe)
2327 1.34 skrll {
2328 1.155 riastrad struct xhci_pipe * const xp =
2329 1.155 riastrad container_of(pipe, struct xhci_pipe, xp_pipe);
2330 1.161 riastrad struct xhci_softc * const sc = XHCI_PIPE2SC(pipe);
2331 1.161 riastrad struct xhci_slot * const xs = pipe->up_dev->ud_hcpriv;
2332 1.161 riastrad const u_int dci = xhci_ep_get_dci(pipe->up_endpoint->ue_edesc);
2333 1.161 riastrad struct xhci_ring * const tr = xs->xs_xr[dci];
2334 1.34 skrll
2335 1.111 mrg XHCIHIST_FUNC();
2336 1.155 riastrad XHCIHIST_CALLARGS("pipe %#jx", (uintptr_t)pipe, 0, 0, 0);
2337 1.34 skrll
2338 1.161 riastrad KASSERT(xhci_polling_p(sc) || mutex_owned(&sc->sc_lock));
2339 1.161 riastrad
2340 1.161 riastrad tr->is_halted = true;
2341 1.155 riastrad usb_add_task(pipe->up_dev, &xp->xp_async_task, USB_TASKQ_HC);
2342 1.34 skrll
2343 1.34 skrll DPRINTFN(4, "ends", 0, 0, 0, 0);
2344 1.34 skrll }
2345 1.34 skrll
2346 1.34 skrll /* Process roothub port status/change events and notify to uhub_intr. */
2347 1.34 skrll static void
2348 1.68 skrll xhci_rhpsc(struct xhci_softc * const sc, u_int ctlrport)
2349 1.34 skrll {
2350 1.111 mrg XHCIHIST_FUNC();
2351 1.111 mrg XHCIHIST_CALLARGS("xhci%jd: port %ju status change",
2352 1.111 mrg device_unit(sc->sc_dev), ctlrport, 0, 0);
2353 1.34 skrll
2354 1.68 skrll if (ctlrport > sc->sc_maxports)
2355 1.34 skrll return;
2356 1.34 skrll
2357 1.68 skrll const size_t bn = xhci_ctlrport2bus(sc, ctlrport);
2358 1.68 skrll const size_t rhp = xhci_ctlrport2rhport(sc, ctlrport);
2359 1.68 skrll struct usbd_xfer * const xfer = sc->sc_intrxfer[bn];
2360 1.68 skrll
2361 1.75 pgoyette DPRINTFN(4, "xhci%jd: bus %jd bp %ju xfer %#jx status change",
2362 1.75 pgoyette device_unit(sc->sc_dev), bn, rhp, (uintptr_t)xfer);
2363 1.68 skrll
2364 1.68 skrll if (xfer == NULL)
2365 1.34 skrll return;
2366 1.118 riastrad KASSERT(xfer->ux_status == USBD_IN_PROGRESS);
2367 1.34 skrll
2368 1.68 skrll uint8_t *p = xfer->ux_buf;
2369 1.176 riastrad if (!xhci_polling_p(sc) || !sc->sc_intrxfer_deferred[bn])
2370 1.176 riastrad memset(p, 0, xfer->ux_length);
2371 1.68 skrll p[rhp / NBBY] |= 1 << (rhp % NBBY);
2372 1.34 skrll xfer->ux_actlen = xfer->ux_length;
2373 1.34 skrll xfer->ux_status = USBD_NORMAL_COMPLETION;
2374 1.176 riastrad if (xhci_polling_p(sc))
2375 1.176 riastrad sc->sc_intrxfer_deferred[bn] = true;
2376 1.176 riastrad else
2377 1.176 riastrad usb_transfer_complete(xfer);
2378 1.34 skrll }
2379 1.34 skrll
2380 1.34 skrll /* Process Transfer Events */
2381 1.34 skrll static void
2382 1.34 skrll xhci_event_transfer(struct xhci_softc * const sc,
2383 1.34 skrll const struct xhci_trb * const trb)
2384 1.34 skrll {
2385 1.34 skrll uint64_t trb_0;
2386 1.34 skrll uint32_t trb_2, trb_3;
2387 1.34 skrll uint8_t trbcode;
2388 1.34 skrll u_int slot, dci;
2389 1.34 skrll struct xhci_slot *xs;
2390 1.34 skrll struct xhci_ring *xr;
2391 1.34 skrll struct xhci_xfer *xx;
2392 1.34 skrll struct usbd_xfer *xfer;
2393 1.34 skrll usbd_status err;
2394 1.34 skrll
2395 1.34 skrll XHCIHIST_FUNC(); XHCIHIST_CALLED();
2396 1.34 skrll
2397 1.34 skrll trb_0 = le64toh(trb->trb_0);
2398 1.34 skrll trb_2 = le32toh(trb->trb_2);
2399 1.34 skrll trb_3 = le32toh(trb->trb_3);
2400 1.34 skrll trbcode = XHCI_TRB_2_ERROR_GET(trb_2);
2401 1.34 skrll slot = XHCI_TRB_3_SLOT_GET(trb_3);
2402 1.34 skrll dci = XHCI_TRB_3_EP_GET(trb_3);
2403 1.34 skrll xs = &sc->sc_slots[slot];
2404 1.123 skrll xr = xs->xs_xr[dci];
2405 1.34 skrll
2406 1.34 skrll /* sanity check */
2407 1.123 skrll KASSERT(xr != NULL);
2408 1.34 skrll KASSERTMSG(xs->xs_idx != 0 && xs->xs_idx <= sc->sc_maxslots,
2409 1.34 skrll "invalid xs_idx %u slot %u", xs->xs_idx, slot);
2410 1.34 skrll
2411 1.40 skrll int idx = 0;
2412 1.34 skrll if ((trb_3 & XHCI_TRB_3_ED_BIT) == 0) {
2413 1.40 skrll if (xhci_trb_get_idx(xr, trb_0, &idx)) {
2414 1.120 christos DPRINTFN(0, "invalid trb_0 %#jx", trb_0, 0, 0, 0);
2415 1.34 skrll return;
2416 1.34 skrll }
2417 1.34 skrll xx = xr->xr_cookies[idx];
2418 1.34 skrll
2419 1.63 skrll /* clear cookie of consumed TRB */
2420 1.63 skrll xr->xr_cookies[idx] = NULL;
2421 1.63 skrll
2422 1.34 skrll /*
2423 1.63 skrll * xx is NULL if pipe is opened but xfer is not started.
2424 1.63 skrll * It happens when stopping idle pipe.
2425 1.34 skrll */
2426 1.34 skrll if (xx == NULL || trbcode == XHCI_TRB_ERROR_LENGTH) {
2427 1.75 pgoyette DPRINTFN(1, "Ignore #%ju: cookie %#jx cc %ju dci %ju",
2428 1.75 pgoyette idx, (uintptr_t)xx, trbcode, dci);
2429 1.120 christos DPRINTFN(1, " orig TRB %#jx type %ju", trb_0,
2430 1.53 skrll XHCI_TRB_3_TYPE_GET(le32toh(xr->xr_trb[idx].trb_3)),
2431 1.53 skrll 0, 0);
2432 1.63 skrll return;
2433 1.34 skrll }
2434 1.34 skrll } else {
2435 1.54 skrll /* When ED != 0, trb_0 is virtual addr of struct xhci_xfer. */
2436 1.34 skrll xx = (void *)(uintptr_t)(trb_0 & ~0x3);
2437 1.34 skrll }
2438 1.34 skrll /* XXX this may not happen */
2439 1.34 skrll if (xx == NULL) {
2440 1.34 skrll DPRINTFN(1, "xfer done: xx is NULL", 0, 0, 0, 0);
2441 1.34 skrll return;
2442 1.34 skrll }
2443 1.34 skrll xfer = &xx->xx_xfer;
2444 1.34 skrll /* XXX this may happen when detaching */
2445 1.34 skrll if (xfer == NULL) {
2446 1.75 pgoyette DPRINTFN(1, "xx(%#jx)->xx_xfer is NULL trb_0 %#jx",
2447 1.75 pgoyette (uintptr_t)xx, trb_0, 0, 0);
2448 1.34 skrll return;
2449 1.34 skrll }
2450 1.75 pgoyette DPRINTFN(14, "xfer %#jx", (uintptr_t)xfer, 0, 0, 0);
2451 1.34 skrll /* XXX I dunno why this happens */
2452 1.34 skrll KASSERTMSG(xfer->ux_pipe != NULL, "xfer(%p)->ux_pipe is NULL", xfer);
2453 1.34 skrll
2454 1.34 skrll if (!xfer->ux_pipe->up_repeat &&
2455 1.34 skrll SIMPLEQ_EMPTY(&xfer->ux_pipe->up_queue)) {
2456 1.75 pgoyette DPRINTFN(1, "xfer(%#jx)->pipe not queued", (uintptr_t)xfer,
2457 1.75 pgoyette 0, 0, 0);
2458 1.34 skrll return;
2459 1.34 skrll }
2460 1.34 skrll
2461 1.134 jakllsch const uint8_t xfertype =
2462 1.134 jakllsch UE_GET_XFERTYPE(xfer->ux_pipe->up_endpoint->ue_edesc->bmAttributes);
2463 1.134 jakllsch
2464 1.34 skrll /* 4.11.5.2 Event Data TRB */
2465 1.34 skrll if ((trb_3 & XHCI_TRB_3_ED_BIT) != 0) {
2466 1.121 christos DPRINTFN(14, "transfer Event Data: 0x%016jx 0x%08jx"
2467 1.75 pgoyette " %02jx", trb_0, XHCI_TRB_2_REM_GET(trb_2), trbcode, 0);
2468 1.34 skrll if ((trb_0 & 0x3) == 0x3) {
2469 1.34 skrll xfer->ux_actlen = XHCI_TRB_2_REM_GET(trb_2);
2470 1.34 skrll }
2471 1.34 skrll }
2472 1.34 skrll
2473 1.34 skrll switch (trbcode) {
2474 1.34 skrll case XHCI_TRB_ERROR_SHORT_PKT:
2475 1.34 skrll case XHCI_TRB_ERROR_SUCCESS:
2476 1.54 skrll /*
2477 1.63 skrll * A ctrl transfer can generate two events if it has a Data
2478 1.63 skrll * stage. A short data stage can be OK and should not
2479 1.63 skrll * complete the transfer as the status stage needs to be
2480 1.63 skrll * performed.
2481 1.54 skrll *
2482 1.54 skrll * Note: Data and Status stage events point at same xfer.
2483 1.54 skrll * ux_actlen and ux_dmabuf will be passed to
2484 1.54 skrll * usb_transfer_complete after the Status stage event.
2485 1.54 skrll *
2486 1.167 andvar * It can be distinguished which stage generates the event:
2487 1.54 skrll * + by checking least 3 bits of trb_0 if ED==1.
2488 1.54 skrll * (see xhci_device_ctrl_start).
2489 1.54 skrll * + by checking the type of original TRB if ED==0.
2490 1.54 skrll *
2491 1.54 skrll * In addition, intr, bulk, and isoc transfer currently
2492 1.54 skrll * consists of single TD, so the "skip" is not needed.
2493 1.54 skrll * ctrl xfer uses EVENT_DATA, and others do not.
2494 1.54 skrll * Thus driver can switch the flow by checking ED bit.
2495 1.54 skrll */
2496 1.134 jakllsch if (xfertype == UE_ISOCHRONOUS) {
2497 1.134 jakllsch xfer->ux_frlengths[xx->xx_isoc_done] -=
2498 1.134 jakllsch XHCI_TRB_2_REM_GET(trb_2);
2499 1.134 jakllsch xfer->ux_actlen += xfer->ux_frlengths[xx->xx_isoc_done];
2500 1.134 jakllsch } else
2501 1.63 skrll if ((trb_3 & XHCI_TRB_3_ED_BIT) == 0) {
2502 1.63 skrll if (xfer->ux_actlen == 0)
2503 1.63 skrll xfer->ux_actlen = xfer->ux_length -
2504 1.63 skrll XHCI_TRB_2_REM_GET(trb_2);
2505 1.63 skrll if (XHCI_TRB_3_TYPE_GET(le32toh(xr->xr_trb[idx].trb_3))
2506 1.63 skrll == XHCI_TRB_TYPE_DATA_STAGE) {
2507 1.63 skrll return;
2508 1.63 skrll }
2509 1.63 skrll } else if ((trb_0 & 0x3) == 0x3) {
2510 1.63 skrll return;
2511 1.63 skrll }
2512 1.34 skrll err = USBD_NORMAL_COMPLETION;
2513 1.34 skrll break;
2514 1.63 skrll case XHCI_TRB_ERROR_STOPPED:
2515 1.63 skrll case XHCI_TRB_ERROR_LENGTH:
2516 1.63 skrll case XHCI_TRB_ERROR_STOPPED_SHORT:
2517 1.116 riastrad err = USBD_IOERROR;
2518 1.63 skrll break;
2519 1.34 skrll case XHCI_TRB_ERROR_STALL:
2520 1.34 skrll case XHCI_TRB_ERROR_BABBLE:
2521 1.75 pgoyette DPRINTFN(1, "ERR %ju slot %ju dci %ju", trbcode, slot, dci, 0);
2522 1.161 riastrad xhci_pipe_restart_async(xfer->ux_pipe);
2523 1.155 riastrad err = USBD_STALLED;
2524 1.155 riastrad break;
2525 1.34 skrll default:
2526 1.75 pgoyette DPRINTFN(1, "ERR %ju slot %ju dci %ju", trbcode, slot, dci, 0);
2527 1.34 skrll err = USBD_IOERROR;
2528 1.34 skrll break;
2529 1.34 skrll }
2530 1.96 mrg
2531 1.179 mlelstv if (xfertype == UE_ISOCHRONOUS) {
2532 1.179 mlelstv switch (trbcode) {
2533 1.179 mlelstv case XHCI_TRB_ERROR_SHORT_PKT:
2534 1.179 mlelstv case XHCI_TRB_ERROR_SUCCESS:
2535 1.179 mlelstv break;
2536 1.179 mlelstv case XHCI_TRB_ERROR_MISSED_SERVICE:
2537 1.179 mlelstv case XHCI_TRB_ERROR_RING_UNDERRUN:
2538 1.179 mlelstv case XHCI_TRB_ERROR_RING_OVERRUN:
2539 1.179 mlelstv default:
2540 1.179 mlelstv xfer->ux_frlengths[xx->xx_isoc_done] = 0;
2541 1.179 mlelstv break;
2542 1.179 mlelstv }
2543 1.179 mlelstv if (++xx->xx_isoc_done < xfer->ux_nframes)
2544 1.179 mlelstv return;
2545 1.179 mlelstv }
2546 1.179 mlelstv
2547 1.165 riastrad if ((trb_3 & XHCI_TRB_3_ED_BIT) == 0 ||
2548 1.165 riastrad (trb_0 & 0x3) == 0x0) {
2549 1.165 riastrad /*
2550 1.165 riastrad * Try to claim this xfer for completion. If it has
2551 1.165 riastrad * already completed or aborted, drop it on the floor.
2552 1.165 riastrad */
2553 1.165 riastrad if (!usbd_xfer_trycomplete(xfer))
2554 1.165 riastrad return;
2555 1.129 jakllsch
2556 1.165 riastrad /* Set the status. */
2557 1.165 riastrad xfer->ux_status = err;
2558 1.34 skrll
2559 1.34 skrll usb_transfer_complete(xfer);
2560 1.34 skrll }
2561 1.34 skrll }
2562 1.34 skrll
2563 1.34 skrll /* Process Command complete events */
2564 1.34 skrll static void
2565 1.50 skrll xhci_event_cmd(struct xhci_softc * const sc, const struct xhci_trb * const trb)
2566 1.34 skrll {
2567 1.34 skrll uint64_t trb_0;
2568 1.34 skrll uint32_t trb_2, trb_3;
2569 1.34 skrll
2570 1.34 skrll XHCIHIST_FUNC(); XHCIHIST_CALLED();
2571 1.34 skrll
2572 1.68 skrll KASSERT(mutex_owned(&sc->sc_lock));
2573 1.68 skrll
2574 1.34 skrll trb_0 = le64toh(trb->trb_0);
2575 1.34 skrll trb_2 = le32toh(trb->trb_2);
2576 1.34 skrll trb_3 = le32toh(trb->trb_3);
2577 1.34 skrll
2578 1.34 skrll if (trb_0 == sc->sc_command_addr) {
2579 1.68 skrll sc->sc_resultpending = false;
2580 1.68 skrll
2581 1.34 skrll sc->sc_result_trb.trb_0 = trb_0;
2582 1.34 skrll sc->sc_result_trb.trb_2 = trb_2;
2583 1.34 skrll sc->sc_result_trb.trb_3 = trb_3;
2584 1.34 skrll if (XHCI_TRB_2_ERROR_GET(trb_2) !=
2585 1.34 skrll XHCI_TRB_ERROR_SUCCESS) {
2586 1.34 skrll DPRINTFN(1, "command completion "
2587 1.121 christos "failure: 0x%016jx 0x%08jx 0x%08jx",
2588 1.75 pgoyette trb_0, trb_2, trb_3, 0);
2589 1.34 skrll }
2590 1.34 skrll cv_signal(&sc->sc_command_cv);
2591 1.34 skrll } else {
2592 1.121 christos DPRINTFN(1, "spurious event: %#jx 0x%016jx "
2593 1.121 christos "0x%08jx 0x%08jx", (uintptr_t)trb, trb_0, trb_2, trb_3);
2594 1.34 skrll }
2595 1.34 skrll }
2596 1.34 skrll
2597 1.34 skrll /*
2598 1.34 skrll * Process events.
2599 1.34 skrll * called from xhci_softintr
2600 1.34 skrll */
2601 1.34 skrll static void
2602 1.34 skrll xhci_handle_event(struct xhci_softc * const sc,
2603 1.34 skrll const struct xhci_trb * const trb)
2604 1.34 skrll {
2605 1.34 skrll uint64_t trb_0;
2606 1.34 skrll uint32_t trb_2, trb_3;
2607 1.34 skrll
2608 1.111 mrg XHCIHIST_FUNC();
2609 1.34 skrll
2610 1.34 skrll trb_0 = le64toh(trb->trb_0);
2611 1.34 skrll trb_2 = le32toh(trb->trb_2);
2612 1.34 skrll trb_3 = le32toh(trb->trb_3);
2613 1.34 skrll
2614 1.121 christos XHCIHIST_CALLARGS("event: %#jx 0x%016jx 0x%08jx 0x%08jx",
2615 1.75 pgoyette (uintptr_t)trb, trb_0, trb_2, trb_3);
2616 1.34 skrll
2617 1.34 skrll /*
2618 1.34 skrll * 4.11.3.1, 6.4.2.1
2619 1.34 skrll * TRB Pointer is invalid for these completion codes.
2620 1.34 skrll */
2621 1.34 skrll switch (XHCI_TRB_2_ERROR_GET(trb_2)) {
2622 1.34 skrll case XHCI_TRB_ERROR_RING_UNDERRUN:
2623 1.34 skrll case XHCI_TRB_ERROR_RING_OVERRUN:
2624 1.34 skrll case XHCI_TRB_ERROR_VF_RING_FULL:
2625 1.34 skrll return;
2626 1.34 skrll default:
2627 1.34 skrll if (trb_0 == 0) {
2628 1.34 skrll return;
2629 1.34 skrll }
2630 1.34 skrll break;
2631 1.34 skrll }
2632 1.34 skrll
2633 1.34 skrll switch (XHCI_TRB_3_TYPE_GET(trb_3)) {
2634 1.34 skrll case XHCI_TRB_EVENT_TRANSFER:
2635 1.34 skrll xhci_event_transfer(sc, trb);
2636 1.34 skrll break;
2637 1.34 skrll case XHCI_TRB_EVENT_CMD_COMPLETE:
2638 1.34 skrll xhci_event_cmd(sc, trb);
2639 1.34 skrll break;
2640 1.34 skrll case XHCI_TRB_EVENT_PORT_STS_CHANGE:
2641 1.34 skrll xhci_rhpsc(sc, (uint32_t)((trb_0 >> 24) & 0xff));
2642 1.34 skrll break;
2643 1.34 skrll default:
2644 1.34 skrll break;
2645 1.34 skrll }
2646 1.34 skrll }
2647 1.34 skrll
2648 1.34 skrll static void
2649 1.34 skrll xhci_softintr(void *v)
2650 1.34 skrll {
2651 1.34 skrll struct usbd_bus * const bus = v;
2652 1.34 skrll struct xhci_softc * const sc = XHCI_BUS2SC(bus);
2653 1.123 skrll struct xhci_ring * const er = sc->sc_er;
2654 1.34 skrll struct xhci_trb *trb;
2655 1.176 riastrad int i, j, k, bn;
2656 1.34 skrll
2657 1.111 mrg XHCIHIST_FUNC();
2658 1.34 skrll
2659 1.73 skrll KASSERT(xhci_polling_p(sc) || mutex_owned(&sc->sc_lock));
2660 1.34 skrll
2661 1.34 skrll i = er->xr_ep;
2662 1.34 skrll j = er->xr_cs;
2663 1.1 jakllsch
2664 1.111 mrg XHCIHIST_CALLARGS("er: xr_ep %jd xr_cs %jd", i, j, 0, 0);
2665 1.27 skrll
2666 1.176 riastrad /*
2667 1.176 riastrad * Handle deferred root intr xfer, in case we just switched off
2668 1.176 riastrad * polling. It's not safe to complete root intr xfers while
2669 1.176 riastrad * polling -- too much kernel machinery gets involved.
2670 1.176 riastrad */
2671 1.176 riastrad if (!xhci_polling_p(sc)) {
2672 1.176 riastrad for (bn = 0; bn < 2; bn++) {
2673 1.176 riastrad if (__predict_false(sc->sc_intrxfer_deferred[bn])) {
2674 1.176 riastrad sc->sc_intrxfer_deferred[bn] = false;
2675 1.176 riastrad usb_transfer_complete(sc->sc_intrxfer[bn]);
2676 1.176 riastrad }
2677 1.176 riastrad }
2678 1.176 riastrad }
2679 1.176 riastrad
2680 1.1 jakllsch while (1) {
2681 1.1 jakllsch usb_syncmem(&er->xr_dma, XHCI_TRB_SIZE * i, XHCI_TRB_SIZE,
2682 1.1 jakllsch BUS_DMASYNC_POSTREAD);
2683 1.1 jakllsch trb = &er->xr_trb[i];
2684 1.1 jakllsch k = (le32toh(trb->trb_3) & XHCI_TRB_3_CYCLE_BIT) ? 1 : 0;
2685 1.1 jakllsch
2686 1.1 jakllsch if (j != k)
2687 1.1 jakllsch break;
2688 1.1 jakllsch
2689 1.1 jakllsch xhci_handle_event(sc, trb);
2690 1.1 jakllsch
2691 1.1 jakllsch i++;
2692 1.52 skrll if (i == er->xr_ntrb) {
2693 1.1 jakllsch i = 0;
2694 1.1 jakllsch j ^= 1;
2695 1.1 jakllsch }
2696 1.1 jakllsch }
2697 1.1 jakllsch
2698 1.1 jakllsch er->xr_ep = i;
2699 1.1 jakllsch er->xr_cs = j;
2700 1.1 jakllsch
2701 1.1 jakllsch xhci_rt_write_8(sc, XHCI_ERDP(0), xhci_ring_trbp(er, er->xr_ep) |
2702 1.132 skrll XHCI_ERDP_BUSY);
2703 1.1 jakllsch
2704 1.27 skrll DPRINTFN(16, "ends", 0, 0, 0, 0);
2705 1.1 jakllsch
2706 1.1 jakllsch return;
2707 1.1 jakllsch }
2708 1.1 jakllsch
2709 1.1 jakllsch static void
2710 1.1 jakllsch xhci_poll(struct usbd_bus *bus)
2711 1.1 jakllsch {
2712 1.34 skrll struct xhci_softc * const sc = XHCI_BUS2SC(bus);
2713 1.1 jakllsch
2714 1.27 skrll XHCIHIST_FUNC(); XHCIHIST_CALLED();
2715 1.1 jakllsch
2716 1.94 christos mutex_enter(&sc->sc_intr_lock);
2717 1.73 skrll int ret = xhci_intr1(sc);
2718 1.73 skrll if (ret) {
2719 1.73 skrll xhci_softintr(bus);
2720 1.73 skrll }
2721 1.94 christos mutex_exit(&sc->sc_intr_lock);
2722 1.1 jakllsch
2723 1.1 jakllsch return;
2724 1.1 jakllsch }
2725 1.1 jakllsch
2726 1.34 skrll static struct usbd_xfer *
2727 1.34 skrll xhci_allocx(struct usbd_bus *bus, unsigned int nframes)
2728 1.1 jakllsch {
2729 1.34 skrll struct xhci_softc * const sc = XHCI_BUS2SC(bus);
2730 1.125 jakllsch struct xhci_xfer *xx;
2731 1.128 jakllsch u_int ntrbs;
2732 1.1 jakllsch
2733 1.27 skrll XHCIHIST_FUNC(); XHCIHIST_CALLED();
2734 1.1 jakllsch
2735 1.134 jakllsch ntrbs = uimax(3, nframes);
2736 1.128 jakllsch const size_t trbsz = sizeof(*xx->xx_trb) * ntrbs;
2737 1.128 jakllsch
2738 1.125 jakllsch xx = pool_cache_get(sc->sc_xferpool, PR_WAITOK);
2739 1.125 jakllsch if (xx != NULL) {
2740 1.125 jakllsch memset(xx, 0, sizeof(*xx));
2741 1.128 jakllsch if (ntrbs > 0) {
2742 1.128 jakllsch xx->xx_trb = kmem_alloc(trbsz, KM_SLEEP);
2743 1.128 jakllsch xx->xx_ntrb = ntrbs;
2744 1.128 jakllsch }
2745 1.1 jakllsch #ifdef DIAGNOSTIC
2746 1.125 jakllsch xx->xx_xfer.ux_state = XFER_BUSY;
2747 1.1 jakllsch #endif
2748 1.1 jakllsch }
2749 1.1 jakllsch
2750 1.125 jakllsch return &xx->xx_xfer;
2751 1.1 jakllsch }
2752 1.1 jakllsch
2753 1.1 jakllsch static void
2754 1.34 skrll xhci_freex(struct usbd_bus *bus, struct usbd_xfer *xfer)
2755 1.1 jakllsch {
2756 1.34 skrll struct xhci_softc * const sc = XHCI_BUS2SC(bus);
2757 1.125 jakllsch struct xhci_xfer * const xx = XHCI_XFER2XXFER(xfer);
2758 1.1 jakllsch
2759 1.27 skrll XHCIHIST_FUNC(); XHCIHIST_CALLED();
2760 1.1 jakllsch
2761 1.1 jakllsch #ifdef DIAGNOSTIC
2762 1.106 rin if (xfer->ux_state != XFER_BUSY &&
2763 1.106 rin xfer->ux_status != USBD_NOT_STARTED) {
2764 1.121 christos DPRINTFN(0, "xfer=%#jx not busy, 0x%08jx",
2765 1.75 pgoyette (uintptr_t)xfer, xfer->ux_state, 0, 0);
2766 1.1 jakllsch }
2767 1.34 skrll xfer->ux_state = XFER_FREE;
2768 1.1 jakllsch #endif
2769 1.128 jakllsch if (xx->xx_ntrb > 0) {
2770 1.128 jakllsch kmem_free(xx->xx_trb, xx->xx_ntrb * sizeof(*xx->xx_trb));
2771 1.128 jakllsch xx->xx_trb = NULL;
2772 1.128 jakllsch xx->xx_ntrb = 0;
2773 1.128 jakllsch }
2774 1.125 jakllsch pool_cache_put(sc->sc_xferpool, xx);
2775 1.1 jakllsch }
2776 1.1 jakllsch
2777 1.116 riastrad static bool
2778 1.116 riastrad xhci_dying(struct usbd_bus *bus)
2779 1.116 riastrad {
2780 1.116 riastrad struct xhci_softc * const sc = XHCI_BUS2SC(bus);
2781 1.116 riastrad
2782 1.116 riastrad return sc->sc_dying;
2783 1.116 riastrad }
2784 1.116 riastrad
2785 1.1 jakllsch static void
2786 1.1 jakllsch xhci_get_lock(struct usbd_bus *bus, kmutex_t **lock)
2787 1.1 jakllsch {
2788 1.34 skrll struct xhci_softc * const sc = XHCI_BUS2SC(bus);
2789 1.1 jakllsch
2790 1.1 jakllsch *lock = &sc->sc_lock;
2791 1.1 jakllsch }
2792 1.1 jakllsch
2793 1.34 skrll extern uint32_t usb_cookie_no;
2794 1.1 jakllsch
2795 1.34 skrll /*
2796 1.41 skrll * xHCI 4.3
2797 1.41 skrll * Called when uhub_explore finds a new device (via usbd_new_device).
2798 1.41 skrll * Port initialization and speed detection (4.3.1) are already done in uhub.c.
2799 1.41 skrll * This function does:
2800 1.41 skrll * Allocate and construct dev structure of default endpoint (ep0).
2801 1.41 skrll * Allocate and open pipe of ep0.
2802 1.41 skrll * Enable slot and initialize slot context.
2803 1.41 skrll * Set Address.
2804 1.41 skrll * Read initial device descriptor.
2805 1.34 skrll * Determine initial MaxPacketSize (mps) by speed.
2806 1.41 skrll * Read full device descriptor.
2807 1.41 skrll * Register this device.
2808 1.54 skrll * Finally state of device transitions ADDRESSED.
2809 1.34 skrll */
2810 1.1 jakllsch static usbd_status
2811 1.34 skrll xhci_new_device(device_t parent, struct usbd_bus *bus, int depth,
2812 1.1 jakllsch int speed, int port, struct usbd_port *up)
2813 1.1 jakllsch {
2814 1.34 skrll struct xhci_softc * const sc = XHCI_BUS2SC(bus);
2815 1.34 skrll struct usbd_device *dev;
2816 1.1 jakllsch usbd_status err;
2817 1.1 jakllsch usb_device_descriptor_t *dd;
2818 1.1 jakllsch struct xhci_slot *xs;
2819 1.1 jakllsch uint32_t *cp;
2820 1.1 jakllsch
2821 1.111 mrg XHCIHIST_FUNC();
2822 1.111 mrg XHCIHIST_CALLARGS("port %ju depth %ju speed %ju up %#jx",
2823 1.75 pgoyette port, depth, speed, (uintptr_t)up);
2824 1.27 skrll
2825 1.145 riastrad KASSERT(KERNEL_LOCKED_P());
2826 1.145 riastrad
2827 1.34 skrll dev = kmem_zalloc(sizeof(*dev), KM_SLEEP);
2828 1.34 skrll dev->ud_bus = bus;
2829 1.51 skrll dev->ud_quirks = &usbd_no_quirk;
2830 1.51 skrll dev->ud_addr = 0;
2831 1.51 skrll dev->ud_ddesc.bMaxPacketSize = 0;
2832 1.51 skrll dev->ud_depth = depth;
2833 1.51 skrll dev->ud_powersrc = up;
2834 1.51 skrll dev->ud_myhub = up->up_parent;
2835 1.51 skrll dev->ud_speed = speed;
2836 1.51 skrll dev->ud_langid = USBD_NOLANG;
2837 1.51 skrll dev->ud_cookie.cookie = ++usb_cookie_no;
2838 1.1 jakllsch
2839 1.1 jakllsch /* Set up default endpoint handle. */
2840 1.34 skrll dev->ud_ep0.ue_edesc = &dev->ud_ep0desc;
2841 1.51 skrll /* doesn't matter, just don't let it uninitialized */
2842 1.51 skrll dev->ud_ep0.ue_toggle = 0;
2843 1.1 jakllsch
2844 1.1 jakllsch /* Set up default endpoint descriptor. */
2845 1.34 skrll dev->ud_ep0desc.bLength = USB_ENDPOINT_DESCRIPTOR_SIZE;
2846 1.34 skrll dev->ud_ep0desc.bDescriptorType = UDESC_ENDPOINT;
2847 1.34 skrll dev->ud_ep0desc.bEndpointAddress = USB_CONTROL_ENDPOINT;
2848 1.34 skrll dev->ud_ep0desc.bmAttributes = UE_CONTROL;
2849 1.51 skrll dev->ud_ep0desc.bInterval = 0;
2850 1.50 skrll
2851 1.34 skrll /* 4.3, 4.8.2.1 */
2852 1.34 skrll switch (speed) {
2853 1.34 skrll case USB_SPEED_SUPER:
2854 1.34 skrll case USB_SPEED_SUPER_PLUS:
2855 1.34 skrll USETW(dev->ud_ep0desc.wMaxPacketSize, USB_3_MAX_CTRL_PACKET);
2856 1.34 skrll break;
2857 1.34 skrll case USB_SPEED_FULL:
2858 1.34 skrll /* XXX using 64 as initial mps of ep0 in FS */
2859 1.34 skrll case USB_SPEED_HIGH:
2860 1.34 skrll USETW(dev->ud_ep0desc.wMaxPacketSize, USB_2_MAX_CTRL_PACKET);
2861 1.34 skrll break;
2862 1.34 skrll case USB_SPEED_LOW:
2863 1.34 skrll default:
2864 1.34 skrll USETW(dev->ud_ep0desc.wMaxPacketSize, USB_MAX_IPACKET);
2865 1.34 skrll break;
2866 1.34 skrll }
2867 1.1 jakllsch
2868 1.51 skrll up->up_dev = dev;
2869 1.51 skrll
2870 1.51 skrll dd = &dev->ud_ddesc;
2871 1.1 jakllsch
2872 1.68 skrll if (depth == 0 && port == 0) {
2873 1.68 skrll KASSERT(bus->ub_devices[USB_ROOTHUB_INDEX] == NULL);
2874 1.68 skrll bus->ub_devices[USB_ROOTHUB_INDEX] = dev;
2875 1.123 skrll
2876 1.123 skrll /* Establish the default pipe. */
2877 1.123 skrll err = usbd_setup_pipe(dev, 0, &dev->ud_ep0,
2878 1.123 skrll USBD_DEFAULT_INTERVAL, &dev->ud_pipe0);
2879 1.61 skrll if (err) {
2880 1.123 skrll DPRINTFN(1, "setup default pipe failed %jd", err,0,0,0);
2881 1.34 skrll goto bad;
2882 1.61 skrll }
2883 1.123 skrll err = usbd_get_initial_ddesc(dev, dd);
2884 1.61 skrll if (err) {
2885 1.123 skrll DPRINTFN(1, "get_initial_ddesc %ju", err, 0, 0, 0);
2886 1.34 skrll goto bad;
2887 1.61 skrll }
2888 1.1 jakllsch } else {
2889 1.49 skrll uint8_t slot = 0;
2890 1.49 skrll
2891 1.48 skrll /* 4.3.2 */
2892 1.1 jakllsch err = xhci_enable_slot(sc, &slot);
2893 1.63 skrll if (err) {
2894 1.75 pgoyette DPRINTFN(1, "enable slot %ju", err, 0, 0, 0);
2895 1.34 skrll goto bad;
2896 1.63 skrll }
2897 1.50 skrll
2898 1.1 jakllsch xs = &sc->sc_slots[slot];
2899 1.34 skrll dev->ud_hcpriv = xs;
2900 1.50 skrll
2901 1.48 skrll /* 4.3.3 initialize slot structure */
2902 1.48 skrll err = xhci_init_slot(dev, slot);
2903 1.34 skrll if (err) {
2904 1.75 pgoyette DPRINTFN(1, "init slot %ju", err, 0, 0, 0);
2905 1.34 skrll dev->ud_hcpriv = NULL;
2906 1.34 skrll /*
2907 1.34 skrll * We have to disable_slot here because
2908 1.34 skrll * xs->xs_idx == 0 when xhci_init_slot fails,
2909 1.34 skrll * in that case usbd_remove_dev won't work.
2910 1.34 skrll */
2911 1.34 skrll mutex_enter(&sc->sc_lock);
2912 1.34 skrll xhci_disable_slot(sc, slot);
2913 1.34 skrll mutex_exit(&sc->sc_lock);
2914 1.34 skrll goto bad;
2915 1.34 skrll }
2916 1.34 skrll
2917 1.123 skrll /*
2918 1.123 skrll * We have to establish the default pipe _after_ slot
2919 1.123 skrll * structure has been prepared.
2920 1.123 skrll */
2921 1.123 skrll err = usbd_setup_pipe(dev, 0, &dev->ud_ep0,
2922 1.123 skrll USBD_DEFAULT_INTERVAL, &dev->ud_pipe0);
2923 1.123 skrll if (err) {
2924 1.123 skrll DPRINTFN(1, "setup default pipe failed %jd", err, 0, 0,
2925 1.123 skrll 0);
2926 1.123 skrll goto bad;
2927 1.123 skrll }
2928 1.123 skrll
2929 1.48 skrll /* 4.3.4 Address Assignment */
2930 1.51 skrll err = xhci_set_address(dev, slot, false);
2931 1.61 skrll if (err) {
2932 1.111 mrg DPRINTFN(1, "failed! to set address: %ju", err, 0, 0, 0);
2933 1.48 skrll goto bad;
2934 1.61 skrll }
2935 1.48 skrll
2936 1.34 skrll /* Allow device time to set new address */
2937 1.34 skrll usbd_delay_ms(dev, USB_SET_ADDRESS_SETTLE);
2938 1.50 skrll
2939 1.92 jakllsch usb_syncmem(&xs->xs_dc_dma, 0, sc->sc_pgsz, BUS_DMASYNC_POSTREAD);
2940 1.1 jakllsch cp = xhci_slot_get_dcv(sc, xs, XHCI_DCI_SLOT);
2941 1.79 christos HEXDUMP("slot context", cp, sc->sc_ctxsz);
2942 1.64 skrll uint8_t addr = XHCI_SCTX_3_DEV_ADDR_GET(le32toh(cp[3]));
2943 1.75 pgoyette DPRINTFN(4, "device address %ju", addr, 0, 0, 0);
2944 1.68 skrll /*
2945 1.68 skrll * XXX ensure we know when the hardware does something
2946 1.68 skrll * we can't yet cope with
2947 1.68 skrll */
2948 1.59 maya KASSERTMSG(addr >= 1 && addr <= 127, "addr %d", addr);
2949 1.34 skrll dev->ud_addr = addr;
2950 1.68 skrll
2951 1.68 skrll KASSERTMSG(bus->ub_devices[usb_addr2dindex(dev->ud_addr)] == NULL,
2952 1.68 skrll "addr %d already allocated", dev->ud_addr);
2953 1.68 skrll /*
2954 1.68 skrll * The root hub is given its own slot
2955 1.68 skrll */
2956 1.68 skrll bus->ub_devices[usb_addr2dindex(dev->ud_addr)] = dev;
2957 1.1 jakllsch
2958 1.1 jakllsch err = usbd_get_initial_ddesc(dev, dd);
2959 1.61 skrll if (err) {
2960 1.75 pgoyette DPRINTFN(1, "get_initial_ddesc %ju", err, 0, 0, 0);
2961 1.34 skrll goto bad;
2962 1.61 skrll }
2963 1.50 skrll
2964 1.24 skrll /* 4.8.2.1 */
2965 1.34 skrll if (USB_IS_SS(speed)) {
2966 1.34 skrll if (dd->bMaxPacketSize != 9) {
2967 1.34 skrll printf("%s: invalid mps 2^%u for SS ep0,"
2968 1.34 skrll " using 512\n",
2969 1.34 skrll device_xname(sc->sc_dev),
2970 1.34 skrll dd->bMaxPacketSize);
2971 1.34 skrll dd->bMaxPacketSize = 9;
2972 1.34 skrll }
2973 1.34 skrll USETW(dev->ud_ep0desc.wMaxPacketSize,
2974 1.24 skrll (1 << dd->bMaxPacketSize));
2975 1.34 skrll } else
2976 1.34 skrll USETW(dev->ud_ep0desc.wMaxPacketSize,
2977 1.24 skrll dd->bMaxPacketSize);
2978 1.75 pgoyette DPRINTFN(4, "bMaxPacketSize %ju", dd->bMaxPacketSize, 0, 0, 0);
2979 1.62 skrll err = xhci_update_ep0_mps(sc, xs,
2980 1.34 skrll UGETW(dev->ud_ep0desc.wMaxPacketSize));
2981 1.62 skrll if (err) {
2982 1.75 pgoyette DPRINTFN(1, "update mps of ep0 %ju", err, 0, 0, 0);
2983 1.62 skrll goto bad;
2984 1.62 skrll }
2985 1.123 skrll }
2986 1.50 skrll
2987 1.123 skrll err = usbd_reload_device_desc(dev);
2988 1.123 skrll if (err) {
2989 1.123 skrll DPRINTFN(1, "reload desc %ju", err, 0, 0, 0);
2990 1.123 skrll goto bad;
2991 1.1 jakllsch }
2992 1.1 jakllsch
2993 1.75 pgoyette DPRINTFN(1, "adding unit addr=%jd, rev=%02jx,",
2994 1.34 skrll dev->ud_addr, UGETW(dd->bcdUSB), 0, 0);
2995 1.75 pgoyette DPRINTFN(1, " class=%jd, subclass=%jd, protocol=%jd,",
2996 1.27 skrll dd->bDeviceClass, dd->bDeviceSubClass,
2997 1.27 skrll dd->bDeviceProtocol, 0);
2998 1.75 pgoyette DPRINTFN(1, " mps=%jd, len=%jd, noconf=%jd, speed=%jd",
2999 1.27 skrll dd->bMaxPacketSize, dd->bLength, dd->bNumConfigurations,
3000 1.34 skrll dev->ud_speed);
3001 1.1 jakllsch
3002 1.33 skrll usbd_get_device_strings(dev);
3003 1.33 skrll
3004 1.1 jakllsch usbd_add_dev_event(USB_EVENT_DEVICE_ATTACH, dev);
3005 1.1 jakllsch
3006 1.68 skrll if (depth == 0 && port == 0) {
3007 1.1 jakllsch usbd_attach_roothub(parent, dev);
3008 1.75 pgoyette DPRINTFN(1, "root hub %#jx", (uintptr_t)dev, 0, 0, 0);
3009 1.1 jakllsch return USBD_NORMAL_COMPLETION;
3010 1.1 jakllsch }
3011 1.1 jakllsch
3012 1.34 skrll err = usbd_probe_and_attach(parent, dev, port, dev->ud_addr);
3013 1.34 skrll bad:
3014 1.34 skrll if (err != USBD_NORMAL_COMPLETION) {
3015 1.146 riastrad if (depth == 0 && port == 0 && dev->ud_pipe0)
3016 1.146 riastrad usbd_kill_pipe(dev->ud_pipe0);
3017 1.1 jakllsch usbd_remove_device(dev, up);
3018 1.1 jakllsch }
3019 1.1 jakllsch
3020 1.34 skrll return err;
3021 1.1 jakllsch }
3022 1.1 jakllsch
3023 1.1 jakllsch static usbd_status
3024 1.123 skrll xhci_ring_init(struct xhci_softc * const sc, struct xhci_ring **xrp,
3025 1.1 jakllsch size_t ntrb, size_t align)
3026 1.1 jakllsch {
3027 1.1 jakllsch size_t size = ntrb * XHCI_TRB_SIZE;
3028 1.123 skrll struct xhci_ring *xr;
3029 1.1 jakllsch
3030 1.111 mrg XHCIHIST_FUNC();
3031 1.111 mrg XHCIHIST_CALLARGS("xr %#jx ntrb %#jx align %#jx",
3032 1.123 skrll (uintptr_t)*xrp, ntrb, align, 0);
3033 1.123 skrll
3034 1.123 skrll xr = kmem_zalloc(sizeof(struct xhci_ring), KM_SLEEP);
3035 1.123 skrll DPRINTFN(1, "ring %#jx", (uintptr_t)xr, 0, 0, 0);
3036 1.27 skrll
3037 1.151 skrll int err = usb_allocmem(sc->sc_bus.ub_dmatag, size, align,
3038 1.137 jmcneill USBMALLOC_COHERENT | USBMALLOC_ZERO, &xr->xr_dma);
3039 1.123 skrll if (err) {
3040 1.123 skrll kmem_free(xr, sizeof(struct xhci_ring));
3041 1.123 skrll DPRINTFN(1, "alloc xr_dma failed %jd", err, 0, 0, 0);
3042 1.1 jakllsch return err;
3043 1.123 skrll }
3044 1.1 jakllsch mutex_init(&xr->xr_lock, MUTEX_DEFAULT, IPL_SOFTUSB);
3045 1.1 jakllsch xr->xr_cookies = kmem_zalloc(sizeof(*xr->xr_cookies) * ntrb, KM_SLEEP);
3046 1.1 jakllsch xr->xr_trb = xhci_ring_trbv(xr, 0);
3047 1.1 jakllsch xr->xr_ntrb = ntrb;
3048 1.1 jakllsch xr->is_halted = false;
3049 1.55 skrll xhci_host_dequeue(xr);
3050 1.123 skrll *xrp = xr;
3051 1.1 jakllsch
3052 1.1 jakllsch return USBD_NORMAL_COMPLETION;
3053 1.1 jakllsch }
3054 1.1 jakllsch
3055 1.1 jakllsch static void
3056 1.123 skrll xhci_ring_free(struct xhci_softc * const sc, struct xhci_ring ** const xr)
3057 1.1 jakllsch {
3058 1.123 skrll if (*xr == NULL)
3059 1.123 skrll return;
3060 1.123 skrll
3061 1.151 skrll usb_freemem(&(*xr)->xr_dma);
3062 1.123 skrll mutex_destroy(&(*xr)->xr_lock);
3063 1.123 skrll kmem_free((*xr)->xr_cookies,
3064 1.123 skrll sizeof(*(*xr)->xr_cookies) * (*xr)->xr_ntrb);
3065 1.123 skrll kmem_free(*xr, sizeof(struct xhci_ring));
3066 1.123 skrll *xr = NULL;
3067 1.1 jakllsch }
3068 1.1 jakllsch
3069 1.1 jakllsch static void
3070 1.1 jakllsch xhci_ring_put(struct xhci_softc * const sc, struct xhci_ring * const xr,
3071 1.101 jakllsch void *cookie, struct xhci_soft_trb * const trbs, size_t ntrbs)
3072 1.1 jakllsch {
3073 1.1 jakllsch size_t i;
3074 1.1 jakllsch u_int ri;
3075 1.1 jakllsch u_int cs;
3076 1.1 jakllsch uint64_t parameter;
3077 1.1 jakllsch uint32_t status;
3078 1.1 jakllsch uint32_t control;
3079 1.1 jakllsch
3080 1.111 mrg XHCIHIST_FUNC();
3081 1.120 christos XHCIHIST_CALLARGS("%#jx xr_ep %#jx xr_cs %ju",
3082 1.111 mrg (uintptr_t)xr, xr->xr_ep, xr->xr_cs, 0);
3083 1.27 skrll
3084 1.127 jakllsch KASSERTMSG(ntrbs < xr->xr_ntrb, "ntrbs %zu, xr->xr_ntrb %u",
3085 1.127 jakllsch ntrbs, xr->xr_ntrb);
3086 1.1 jakllsch for (i = 0; i < ntrbs; i++) {
3087 1.75 pgoyette DPRINTFN(12, "xr %#jx trbs %#jx num %ju", (uintptr_t)xr,
3088 1.75 pgoyette (uintptr_t)trbs, i, 0);
3089 1.121 christos DPRINTFN(12, " 0x%016jx 0x%08jx 0x%08jx",
3090 1.27 skrll trbs[i].trb_0, trbs[i].trb_2, trbs[i].trb_3, 0);
3091 1.59 maya KASSERTMSG(XHCI_TRB_3_TYPE_GET(trbs[i].trb_3) !=
3092 1.63 skrll XHCI_TRB_TYPE_LINK, "trbs[%zu].trb3 %#x", i, trbs[i].trb_3);
3093 1.1 jakllsch }
3094 1.1 jakllsch
3095 1.1 jakllsch ri = xr->xr_ep;
3096 1.1 jakllsch cs = xr->xr_cs;
3097 1.1 jakllsch
3098 1.11 dsl /*
3099 1.11 dsl * Although the xhci hardware can do scatter/gather dma from
3100 1.11 dsl * arbitrary sized buffers, there is a non-obvious restriction
3101 1.11 dsl * that a LINK trb is only allowed at the end of a burst of
3102 1.11 dsl * transfers - which might be 16kB.
3103 1.11 dsl * Arbitrary aligned LINK trb definitely fail on Ivy bridge.
3104 1.11 dsl * The simple solution is not to allow a LINK trb in the middle
3105 1.11 dsl * of anything - as here.
3106 1.13 dsl * XXX: (dsl) There are xhci controllers out there (eg some made by
3107 1.13 dsl * ASMedia) that seem to lock up if they process a LINK trb but
3108 1.13 dsl * cannot process the linked-to trb yet.
3109 1.13 dsl * The code should write the 'cycle' bit on the link trb AFTER
3110 1.13 dsl * adding the other trb.
3111 1.11 dsl */
3112 1.65 skrll u_int firstep = xr->xr_ep;
3113 1.65 skrll u_int firstcs = xr->xr_cs;
3114 1.1 jakllsch
3115 1.65 skrll for (i = 0; i < ntrbs; ) {
3116 1.65 skrll u_int oldri = ri;
3117 1.65 skrll u_int oldcs = cs;
3118 1.65 skrll
3119 1.65 skrll if (ri >= (xr->xr_ntrb - 1)) {
3120 1.65 skrll /* Put Link TD at the end of ring */
3121 1.65 skrll parameter = xhci_ring_trbp(xr, 0);
3122 1.65 skrll status = 0;
3123 1.65 skrll control = XHCI_TRB_3_TYPE_SET(XHCI_TRB_TYPE_LINK) |
3124 1.65 skrll XHCI_TRB_3_TC_BIT;
3125 1.65 skrll xr->xr_cookies[ri] = NULL;
3126 1.65 skrll xr->xr_ep = 0;
3127 1.65 skrll xr->xr_cs ^= 1;
3128 1.65 skrll ri = xr->xr_ep;
3129 1.65 skrll cs = xr->xr_cs;
3130 1.1 jakllsch } else {
3131 1.65 skrll parameter = trbs[i].trb_0;
3132 1.65 skrll status = trbs[i].trb_2;
3133 1.65 skrll control = trbs[i].trb_3;
3134 1.65 skrll
3135 1.65 skrll xr->xr_cookies[ri] = cookie;
3136 1.65 skrll ri++;
3137 1.65 skrll i++;
3138 1.1 jakllsch }
3139 1.65 skrll /*
3140 1.65 skrll * If this is a first TRB, mark it invalid to prevent
3141 1.65 skrll * xHC from running it immediately.
3142 1.65 skrll */
3143 1.65 skrll if (oldri == firstep) {
3144 1.65 skrll if (oldcs) {
3145 1.65 skrll control &= ~XHCI_TRB_3_CYCLE_BIT;
3146 1.65 skrll } else {
3147 1.65 skrll control |= XHCI_TRB_3_CYCLE_BIT;
3148 1.65 skrll }
3149 1.65 skrll } else {
3150 1.65 skrll if (oldcs) {
3151 1.65 skrll control |= XHCI_TRB_3_CYCLE_BIT;
3152 1.65 skrll } else {
3153 1.65 skrll control &= ~XHCI_TRB_3_CYCLE_BIT;
3154 1.65 skrll }
3155 1.65 skrll }
3156 1.65 skrll xhci_trb_put(&xr->xr_trb[oldri], parameter, status, control);
3157 1.65 skrll usb_syncmem(&xr->xr_dma, XHCI_TRB_SIZE * oldri,
3158 1.65 skrll XHCI_TRB_SIZE * 1, BUS_DMASYNC_PREWRITE);
3159 1.1 jakllsch }
3160 1.1 jakllsch
3161 1.65 skrll /* Now invert cycle bit of first TRB */
3162 1.65 skrll if (firstcs) {
3163 1.65 skrll xr->xr_trb[firstep].trb_3 |= htole32(XHCI_TRB_3_CYCLE_BIT);
3164 1.34 skrll } else {
3165 1.65 skrll xr->xr_trb[firstep].trb_3 &= ~htole32(XHCI_TRB_3_CYCLE_BIT);
3166 1.34 skrll }
3167 1.65 skrll usb_syncmem(&xr->xr_dma, XHCI_TRB_SIZE * firstep,
3168 1.65 skrll XHCI_TRB_SIZE * 1, BUS_DMASYNC_PREWRITE);
3169 1.1 jakllsch
3170 1.1 jakllsch xr->xr_ep = ri;
3171 1.1 jakllsch xr->xr_cs = cs;
3172 1.1 jakllsch
3173 1.120 christos DPRINTFN(12, "%#jx xr_ep %#jx xr_cs %ju", (uintptr_t)xr, xr->xr_ep,
3174 1.75 pgoyette xr->xr_cs, 0);
3175 1.1 jakllsch }
3176 1.1 jakllsch
3177 1.127 jakllsch static inline void
3178 1.127 jakllsch xhci_ring_put_xfer(struct xhci_softc * const sc, struct xhci_ring * const tr,
3179 1.127 jakllsch struct xhci_xfer *xx, u_int ntrb)
3180 1.127 jakllsch {
3181 1.128 jakllsch KASSERT(ntrb <= xx->xx_ntrb);
3182 1.127 jakllsch xhci_ring_put(sc, tr, xx, xx->xx_trb, ntrb);
3183 1.127 jakllsch }
3184 1.127 jakllsch
3185 1.34 skrll /*
3186 1.39 skrll * Stop execution commands, purge all commands on command ring, and
3187 1.54 skrll * rewind dequeue pointer.
3188 1.39 skrll */
3189 1.39 skrll static void
3190 1.39 skrll xhci_abort_command(struct xhci_softc *sc)
3191 1.39 skrll {
3192 1.123 skrll struct xhci_ring * const cr = sc->sc_cr;
3193 1.39 skrll uint64_t crcr;
3194 1.39 skrll int i;
3195 1.39 skrll
3196 1.111 mrg XHCIHIST_FUNC();
3197 1.111 mrg XHCIHIST_CALLARGS("command %#jx timeout, aborting",
3198 1.39 skrll sc->sc_command_addr, 0, 0, 0);
3199 1.39 skrll
3200 1.39 skrll mutex_enter(&cr->xr_lock);
3201 1.39 skrll
3202 1.39 skrll /* 4.6.1.2 Aborting a Command */
3203 1.39 skrll crcr = xhci_op_read_8(sc, XHCI_CRCR);
3204 1.39 skrll xhci_op_write_8(sc, XHCI_CRCR, crcr | XHCI_CRCR_LO_CA);
3205 1.39 skrll
3206 1.39 skrll for (i = 0; i < 500; i++) {
3207 1.39 skrll crcr = xhci_op_read_8(sc, XHCI_CRCR);
3208 1.39 skrll if ((crcr & XHCI_CRCR_LO_CRR) == 0)
3209 1.39 skrll break;
3210 1.39 skrll usb_delay_ms(&sc->sc_bus, 1);
3211 1.39 skrll }
3212 1.39 skrll if ((crcr & XHCI_CRCR_LO_CRR) != 0) {
3213 1.39 skrll DPRINTFN(1, "Command Abort timeout", 0, 0, 0, 0);
3214 1.39 skrll /* reset HC here? */
3215 1.39 skrll }
3216 1.39 skrll
3217 1.39 skrll /* reset command ring dequeue pointer */
3218 1.39 skrll cr->xr_ep = 0;
3219 1.39 skrll cr->xr_cs = 1;
3220 1.39 skrll xhci_op_write_8(sc, XHCI_CRCR, xhci_ring_trbp(cr, 0) | cr->xr_cs);
3221 1.39 skrll
3222 1.39 skrll mutex_exit(&cr->xr_lock);
3223 1.39 skrll }
3224 1.39 skrll
3225 1.39 skrll /*
3226 1.34 skrll * Put a command on command ring, ring bell, set timer, and cv_timedwait.
3227 1.54 skrll * Command completion is notified by cv_signal from xhci_event_cmd()
3228 1.54 skrll * (called from xhci_softint), or timed-out.
3229 1.54 skrll * The completion code is copied to sc->sc_result_trb in xhci_event_cmd(),
3230 1.54 skrll * then do_command examines it.
3231 1.34 skrll */
3232 1.1 jakllsch static usbd_status
3233 1.50 skrll xhci_do_command_locked(struct xhci_softc * const sc,
3234 1.101 jakllsch struct xhci_soft_trb * const trb, int timeout)
3235 1.1 jakllsch {
3236 1.123 skrll struct xhci_ring * const cr = sc->sc_cr;
3237 1.1 jakllsch usbd_status err;
3238 1.1 jakllsch
3239 1.111 mrg XHCIHIST_FUNC();
3240 1.121 christos XHCIHIST_CALLARGS("input: 0x%016jx 0x%08jx 0x%08jx",
3241 1.27 skrll trb->trb_0, trb->trb_2, trb->trb_3, 0);
3242 1.1 jakllsch
3243 1.34 skrll KASSERTMSG(!cpu_intr_p() && !cpu_softintr_p(), "called from intr ctx");
3244 1.34 skrll KASSERT(mutex_owned(&sc->sc_lock));
3245 1.1 jakllsch
3246 1.141 riastrad while (sc->sc_command_addr != 0 ||
3247 1.141 riastrad (sc->sc_suspender != NULL && sc->sc_suspender != curlwp))
3248 1.68 skrll cv_wait(&sc->sc_cmdbusy_cv, &sc->sc_lock);
3249 1.177 riastrad if (sc->sc_suspendresume_failed)
3250 1.177 riastrad return USBD_IOERROR;
3251 1.68 skrll
3252 1.67 skrll /*
3253 1.67 skrll * If enqueue pointer points at last of ring, it's Link TRB,
3254 1.67 skrll * command TRB will be stored in 0th TRB.
3255 1.67 skrll */
3256 1.67 skrll if (cr->xr_ep == cr->xr_ntrb - 1)
3257 1.67 skrll sc->sc_command_addr = xhci_ring_trbp(cr, 0);
3258 1.67 skrll else
3259 1.67 skrll sc->sc_command_addr = xhci_ring_trbp(cr, cr->xr_ep);
3260 1.1 jakllsch
3261 1.68 skrll sc->sc_resultpending = true;
3262 1.68 skrll
3263 1.1 jakllsch mutex_enter(&cr->xr_lock);
3264 1.1 jakllsch xhci_ring_put(sc, cr, NULL, trb, 1);
3265 1.1 jakllsch mutex_exit(&cr->xr_lock);
3266 1.1 jakllsch
3267 1.1 jakllsch xhci_db_write_4(sc, XHCI_DOORBELL(0), 0);
3268 1.1 jakllsch
3269 1.68 skrll while (sc->sc_resultpending) {
3270 1.68 skrll if (cv_timedwait(&sc->sc_command_cv, &sc->sc_lock,
3271 1.68 skrll MAX(1, mstohz(timeout))) == EWOULDBLOCK) {
3272 1.68 skrll xhci_abort_command(sc);
3273 1.68 skrll err = USBD_TIMEOUT;
3274 1.68 skrll goto timedout;
3275 1.68 skrll }
3276 1.1 jakllsch }
3277 1.1 jakllsch
3278 1.1 jakllsch trb->trb_0 = sc->sc_result_trb.trb_0;
3279 1.1 jakllsch trb->trb_2 = sc->sc_result_trb.trb_2;
3280 1.1 jakllsch trb->trb_3 = sc->sc_result_trb.trb_3;
3281 1.1 jakllsch
3282 1.121 christos DPRINTFN(12, "output: 0x%016jx 0x%08jx 0x%08jx",
3283 1.27 skrll trb->trb_0, trb->trb_2, trb->trb_3, 0);
3284 1.1 jakllsch
3285 1.1 jakllsch switch (XHCI_TRB_2_ERROR_GET(trb->trb_2)) {
3286 1.1 jakllsch case XHCI_TRB_ERROR_SUCCESS:
3287 1.1 jakllsch err = USBD_NORMAL_COMPLETION;
3288 1.1 jakllsch break;
3289 1.1 jakllsch default:
3290 1.1 jakllsch case 192 ... 223:
3291 1.120 christos DPRINTFN(5, "error %#jx",
3292 1.111 mrg XHCI_TRB_2_ERROR_GET(trb->trb_2), 0, 0, 0);
3293 1.1 jakllsch err = USBD_IOERROR;
3294 1.1 jakllsch break;
3295 1.1 jakllsch case 224 ... 255:
3296 1.1 jakllsch err = USBD_NORMAL_COMPLETION;
3297 1.1 jakllsch break;
3298 1.1 jakllsch }
3299 1.1 jakllsch
3300 1.1 jakllsch timedout:
3301 1.68 skrll sc->sc_resultpending = false;
3302 1.1 jakllsch sc->sc_command_addr = 0;
3303 1.68 skrll cv_broadcast(&sc->sc_cmdbusy_cv);
3304 1.68 skrll
3305 1.34 skrll return err;
3306 1.34 skrll }
3307 1.34 skrll
3308 1.34 skrll static usbd_status
3309 1.101 jakllsch xhci_do_command(struct xhci_softc * const sc, struct xhci_soft_trb * const trb,
3310 1.34 skrll int timeout)
3311 1.34 skrll {
3312 1.34 skrll
3313 1.34 skrll mutex_enter(&sc->sc_lock);
3314 1.38 skrll usbd_status ret = xhci_do_command_locked(sc, trb, timeout);
3315 1.1 jakllsch mutex_exit(&sc->sc_lock);
3316 1.34 skrll
3317 1.34 skrll return ret;
3318 1.1 jakllsch }
3319 1.1 jakllsch
3320 1.1 jakllsch static usbd_status
3321 1.1 jakllsch xhci_enable_slot(struct xhci_softc * const sc, uint8_t * const slotp)
3322 1.1 jakllsch {
3323 1.101 jakllsch struct xhci_soft_trb trb;
3324 1.1 jakllsch usbd_status err;
3325 1.1 jakllsch
3326 1.27 skrll XHCIHIST_FUNC(); XHCIHIST_CALLED();
3327 1.27 skrll
3328 1.1 jakllsch trb.trb_0 = 0;
3329 1.1 jakllsch trb.trb_2 = 0;
3330 1.1 jakllsch trb.trb_3 = XHCI_TRB_3_TYPE_SET(XHCI_TRB_TYPE_ENABLE_SLOT);
3331 1.1 jakllsch
3332 1.1 jakllsch err = xhci_do_command(sc, &trb, USBD_DEFAULT_TIMEOUT);
3333 1.1 jakllsch if (err != USBD_NORMAL_COMPLETION) {
3334 1.1 jakllsch return err;
3335 1.1 jakllsch }
3336 1.1 jakllsch
3337 1.1 jakllsch *slotp = XHCI_TRB_3_SLOT_GET(trb.trb_3);
3338 1.1 jakllsch
3339 1.1 jakllsch return err;
3340 1.1 jakllsch }
3341 1.1 jakllsch
3342 1.34 skrll /*
3343 1.41 skrll * xHCI 4.6.4
3344 1.41 skrll * Deallocate ring and device/input context DMA buffers, and disable_slot.
3345 1.41 skrll * All endpoints in the slot should be stopped.
3346 1.34 skrll * Should be called with sc_lock held.
3347 1.34 skrll */
3348 1.34 skrll static usbd_status
3349 1.34 skrll xhci_disable_slot(struct xhci_softc * const sc, uint8_t slot)
3350 1.34 skrll {
3351 1.101 jakllsch struct xhci_soft_trb trb;
3352 1.34 skrll struct xhci_slot *xs;
3353 1.34 skrll usbd_status err;
3354 1.34 skrll
3355 1.34 skrll XHCIHIST_FUNC(); XHCIHIST_CALLED();
3356 1.34 skrll
3357 1.34 skrll if (sc->sc_dying)
3358 1.34 skrll return USBD_IOERROR;
3359 1.34 skrll
3360 1.34 skrll trb.trb_0 = 0;
3361 1.34 skrll trb.trb_2 = 0;
3362 1.101 jakllsch trb.trb_3 = XHCI_TRB_3_SLOT_SET(slot) |
3363 1.101 jakllsch XHCI_TRB_3_TYPE_SET(XHCI_TRB_TYPE_DISABLE_SLOT);
3364 1.34 skrll
3365 1.34 skrll err = xhci_do_command_locked(sc, &trb, USBD_DEFAULT_TIMEOUT);
3366 1.34 skrll
3367 1.34 skrll if (!err) {
3368 1.34 skrll xs = &sc->sc_slots[slot];
3369 1.34 skrll if (xs->xs_idx != 0) {
3370 1.123 skrll xhci_free_slot(sc, xs);
3371 1.34 skrll xhci_set_dcba(sc, 0, slot);
3372 1.34 skrll memset(xs, 0, sizeof(*xs));
3373 1.34 skrll }
3374 1.34 skrll }
3375 1.34 skrll
3376 1.34 skrll return err;
3377 1.34 skrll }
3378 1.34 skrll
3379 1.34 skrll /*
3380 1.41 skrll * Set address of device and transition slot state from ENABLED to ADDRESSED
3381 1.41 skrll * if Block Setaddress Request (BSR) is false.
3382 1.41 skrll * If BSR==true, transition slot state from ENABLED to DEFAULT.
3383 1.34 skrll * see xHCI 1.1 4.5.3, 3.3.4
3384 1.41 skrll * Should be called without sc_lock held.
3385 1.34 skrll */
3386 1.1 jakllsch static usbd_status
3387 1.1 jakllsch xhci_address_device(struct xhci_softc * const sc,
3388 1.1 jakllsch uint64_t icp, uint8_t slot_id, bool bsr)
3389 1.1 jakllsch {
3390 1.101 jakllsch struct xhci_soft_trb trb;
3391 1.1 jakllsch usbd_status err;
3392 1.1 jakllsch
3393 1.111 mrg XHCIHIST_FUNC();
3394 1.114 mrg if (bsr) {
3395 1.120 christos XHCIHIST_CALLARGS("icp %#jx slot %#jx with bsr",
3396 1.112 mrg icp, slot_id, 0, 0);
3397 1.114 mrg } else {
3398 1.120 christos XHCIHIST_CALLARGS("icp %#jx slot %#jx nobsr",
3399 1.112 mrg icp, slot_id, 0, 0);
3400 1.114 mrg }
3401 1.27 skrll
3402 1.1 jakllsch trb.trb_0 = icp;
3403 1.1 jakllsch trb.trb_2 = 0;
3404 1.1 jakllsch trb.trb_3 = XHCI_TRB_3_SLOT_SET(slot_id) |
3405 1.1 jakllsch XHCI_TRB_3_TYPE_SET(XHCI_TRB_TYPE_ADDRESS_DEVICE) |
3406 1.1 jakllsch (bsr ? XHCI_TRB_3_BSR_BIT : 0);
3407 1.1 jakllsch
3408 1.1 jakllsch err = xhci_do_command(sc, &trb, USBD_DEFAULT_TIMEOUT);
3409 1.34 skrll
3410 1.34 skrll if (XHCI_TRB_2_ERROR_GET(trb.trb_2) == XHCI_TRB_ERROR_NO_SLOTS)
3411 1.34 skrll err = USBD_NO_ADDR;
3412 1.34 skrll
3413 1.1 jakllsch return err;
3414 1.1 jakllsch }
3415 1.1 jakllsch
3416 1.1 jakllsch static usbd_status
3417 1.1 jakllsch xhci_update_ep0_mps(struct xhci_softc * const sc,
3418 1.1 jakllsch struct xhci_slot * const xs, u_int mps)
3419 1.1 jakllsch {
3420 1.101 jakllsch struct xhci_soft_trb trb;
3421 1.1 jakllsch usbd_status err;
3422 1.1 jakllsch uint32_t * cp;
3423 1.1 jakllsch
3424 1.111 mrg XHCIHIST_FUNC();
3425 1.111 mrg XHCIHIST_CALLARGS("slot %ju mps %ju", xs->xs_idx, mps, 0, 0);
3426 1.1 jakllsch
3427 1.1 jakllsch cp = xhci_slot_get_icv(sc, xs, XHCI_ICI_INPUT_CONTROL);
3428 1.1 jakllsch cp[0] = htole32(0);
3429 1.1 jakllsch cp[1] = htole32(XHCI_INCTX_1_ADD_MASK(XHCI_DCI_EP_CONTROL));
3430 1.1 jakllsch
3431 1.1 jakllsch cp = xhci_slot_get_icv(sc, xs, xhci_dci_to_ici(XHCI_DCI_EP_CONTROL));
3432 1.1 jakllsch cp[1] = htole32(XHCI_EPCTX_1_MAXP_SIZE_SET(mps));
3433 1.1 jakllsch
3434 1.1 jakllsch /* sync input contexts before they are read from memory */
3435 1.1 jakllsch usb_syncmem(&xs->xs_ic_dma, 0, sc->sc_pgsz, BUS_DMASYNC_PREWRITE);
3436 1.79 christos HEXDUMP("input context", xhci_slot_get_icv(sc, xs, 0),
3437 1.1 jakllsch sc->sc_ctxsz * 4);
3438 1.1 jakllsch
3439 1.1 jakllsch trb.trb_0 = xhci_slot_get_icp(sc, xs, 0);
3440 1.1 jakllsch trb.trb_2 = 0;
3441 1.1 jakllsch trb.trb_3 = XHCI_TRB_3_SLOT_SET(xs->xs_idx) |
3442 1.1 jakllsch XHCI_TRB_3_TYPE_SET(XHCI_TRB_TYPE_EVALUATE_CTX);
3443 1.1 jakllsch
3444 1.1 jakllsch err = xhci_do_command(sc, &trb, USBD_DEFAULT_TIMEOUT);
3445 1.1 jakllsch return err;
3446 1.1 jakllsch }
3447 1.1 jakllsch
3448 1.1 jakllsch static void
3449 1.1 jakllsch xhci_set_dcba(struct xhci_softc * const sc, uint64_t dcba, int si)
3450 1.1 jakllsch {
3451 1.1 jakllsch uint64_t * const dcbaa = KERNADDR(&sc->sc_dcbaa_dma, 0);
3452 1.1 jakllsch
3453 1.111 mrg XHCIHIST_FUNC();
3454 1.121 christos XHCIHIST_CALLARGS("dcbaa %#jx dc 0x%016jx slot %jd",
3455 1.75 pgoyette (uintptr_t)&dcbaa[si], dcba, si, 0);
3456 1.1 jakllsch
3457 1.5 matt dcbaa[si] = htole64(dcba);
3458 1.1 jakllsch usb_syncmem(&sc->sc_dcbaa_dma, si * sizeof(uint64_t), sizeof(uint64_t),
3459 1.1 jakllsch BUS_DMASYNC_PREWRITE);
3460 1.1 jakllsch }
3461 1.1 jakllsch
3462 1.34 skrll /*
3463 1.48 skrll * Allocate device and input context DMA buffer, and
3464 1.48 skrll * TRB DMA buffer for each endpoint.
3465 1.34 skrll */
3466 1.1 jakllsch static usbd_status
3467 1.48 skrll xhci_init_slot(struct usbd_device *dev, uint32_t slot)
3468 1.1 jakllsch {
3469 1.34 skrll struct xhci_softc * const sc = XHCI_BUS2SC(dev->ud_bus);
3470 1.1 jakllsch struct xhci_slot *xs;
3471 1.1 jakllsch
3472 1.111 mrg XHCIHIST_FUNC();
3473 1.111 mrg XHCIHIST_CALLARGS("slot %ju", slot, 0, 0, 0);
3474 1.1 jakllsch
3475 1.1 jakllsch xs = &sc->sc_slots[slot];
3476 1.1 jakllsch
3477 1.1 jakllsch /* allocate contexts */
3478 1.151 skrll int err = usb_allocmem(sc->sc_bus.ub_dmatag, sc->sc_pgsz, sc->sc_pgsz,
3479 1.137 jmcneill USBMALLOC_COHERENT | USBMALLOC_ZERO, &xs->xs_dc_dma);
3480 1.123 skrll if (err) {
3481 1.123 skrll DPRINTFN(1, "failed to allocmem output device context %jd",
3482 1.123 skrll err, 0, 0, 0);
3483 1.138 skrll return USBD_NOMEM;
3484 1.123 skrll }
3485 1.1 jakllsch
3486 1.151 skrll err = usb_allocmem(sc->sc_bus.ub_dmatag, sc->sc_pgsz, sc->sc_pgsz,
3487 1.137 jmcneill USBMALLOC_COHERENT | USBMALLOC_ZERO, &xs->xs_ic_dma);
3488 1.123 skrll if (err) {
3489 1.123 skrll DPRINTFN(1, "failed to allocmem input device context %jd",
3490 1.123 skrll err, 0, 0, 0);
3491 1.142 skrll goto bad1;
3492 1.123 skrll }
3493 1.1 jakllsch
3494 1.123 skrll memset(&xs->xs_xr[0], 0, sizeof(xs->xs_xr));
3495 1.123 skrll xs->xs_idx = slot;
3496 1.48 skrll
3497 1.123 skrll return USBD_NORMAL_COMPLETION;
3498 1.48 skrll
3499 1.142 skrll bad1:
3500 1.151 skrll usb_freemem(&xs->xs_dc_dma);
3501 1.48 skrll xs->xs_idx = 0;
3502 1.138 skrll return USBD_NOMEM;
3503 1.48 skrll }
3504 1.48 skrll
3505 1.48 skrll static void
3506 1.123 skrll xhci_free_slot(struct xhci_softc *sc, struct xhci_slot *xs)
3507 1.48 skrll {
3508 1.48 skrll u_int dci;
3509 1.48 skrll
3510 1.111 mrg XHCIHIST_FUNC();
3511 1.123 skrll XHCIHIST_CALLARGS("slot %ju", xs->xs_idx, 0, 0, 0);
3512 1.48 skrll
3513 1.123 skrll /* deallocate all allocated rings in the slot */
3514 1.123 skrll for (dci = XHCI_DCI_SLOT; dci <= XHCI_MAX_DCI; dci++) {
3515 1.123 skrll if (xs->xs_xr[dci] != NULL)
3516 1.123 skrll xhci_ring_free(sc, &xs->xs_xr[dci]);
3517 1.48 skrll }
3518 1.151 skrll usb_freemem(&xs->xs_ic_dma);
3519 1.151 skrll usb_freemem(&xs->xs_dc_dma);
3520 1.48 skrll xs->xs_idx = 0;
3521 1.48 skrll }
3522 1.48 skrll
3523 1.48 skrll /*
3524 1.48 skrll * Setup slot context, set Device Context Base Address, and issue
3525 1.48 skrll * Set Address Device command.
3526 1.48 skrll */
3527 1.48 skrll static usbd_status
3528 1.51 skrll xhci_set_address(struct usbd_device *dev, uint32_t slot, bool bsr)
3529 1.48 skrll {
3530 1.48 skrll struct xhci_softc * const sc = XHCI_BUS2SC(dev->ud_bus);
3531 1.48 skrll struct xhci_slot *xs;
3532 1.48 skrll usbd_status err;
3533 1.51 skrll
3534 1.111 mrg XHCIHIST_FUNC();
3535 1.111 mrg XHCIHIST_CALLARGS("slot %ju bsr %ju", slot, bsr, 0, 0);
3536 1.51 skrll
3537 1.51 skrll xs = &sc->sc_slots[slot];
3538 1.51 skrll
3539 1.51 skrll xhci_setup_ctx(dev->ud_pipe0);
3540 1.51 skrll
3541 1.79 christos HEXDUMP("input context", xhci_slot_get_icv(sc, xs, 0),
3542 1.51 skrll sc->sc_ctxsz * 3);
3543 1.51 skrll
3544 1.51 skrll xhci_set_dcba(sc, DMAADDR(&xs->xs_dc_dma, 0), slot);
3545 1.51 skrll
3546 1.51 skrll err = xhci_address_device(sc, xhci_slot_get_icp(sc, xs, 0), slot, bsr);
3547 1.51 skrll
3548 1.51 skrll usb_syncmem(&xs->xs_dc_dma, 0, sc->sc_pgsz, BUS_DMASYNC_POSTREAD);
3549 1.79 christos HEXDUMP("output context", xhci_slot_get_dcv(sc, xs, 0),
3550 1.51 skrll sc->sc_ctxsz * 2);
3551 1.51 skrll
3552 1.51 skrll return err;
3553 1.51 skrll }
3554 1.51 skrll
3555 1.51 skrll /*
3556 1.51 skrll * 4.8.2, 6.2.3.2
3557 1.51 skrll * construct slot/endpoint context parameters and do syncmem
3558 1.51 skrll */
3559 1.51 skrll static void
3560 1.51 skrll xhci_setup_ctx(struct usbd_pipe *pipe)
3561 1.51 skrll {
3562 1.51 skrll struct xhci_softc * const sc = XHCI_PIPE2SC(pipe);
3563 1.51 skrll struct usbd_device *dev = pipe->up_dev;
3564 1.51 skrll struct xhci_slot * const xs = dev->ud_hcpriv;
3565 1.51 skrll usb_endpoint_descriptor_t * const ed = pipe->up_endpoint->ue_edesc;
3566 1.51 skrll const u_int dci = xhci_ep_get_dci(ed);
3567 1.51 skrll const uint8_t xfertype = UE_GET_XFERTYPE(ed->bmAttributes);
3568 1.48 skrll uint32_t *cp;
3569 1.51 skrll uint8_t speed = dev->ud_speed;
3570 1.48 skrll
3571 1.111 mrg XHCIHIST_FUNC();
3572 1.111 mrg XHCIHIST_CALLARGS("pipe %#jx: slot %ju dci %ju speed %ju",
3573 1.75 pgoyette (uintptr_t)pipe, xs->xs_idx, dci, speed);
3574 1.48 skrll
3575 1.1 jakllsch /* set up initial input control context */
3576 1.1 jakllsch cp = xhci_slot_get_icv(sc, xs, XHCI_ICI_INPUT_CONTROL);
3577 1.1 jakllsch cp[0] = htole32(0);
3578 1.51 skrll cp[1] = htole32(XHCI_INCTX_1_ADD_MASK(dci));
3579 1.71 skrll cp[1] |= htole32(XHCI_INCTX_1_ADD_MASK(XHCI_DCI_SLOT));
3580 1.51 skrll cp[7] = htole32(0);
3581 1.1 jakllsch
3582 1.1 jakllsch /* set up input slot context */
3583 1.1 jakllsch cp = xhci_slot_get_icv(sc, xs, xhci_dci_to_ici(XHCI_DCI_SLOT));
3584 1.51 skrll cp[0] =
3585 1.51 skrll XHCI_SCTX_0_CTX_NUM_SET(dci) |
3586 1.51 skrll XHCI_SCTX_0_SPEED_SET(xhci_speed2xspeed(speed));
3587 1.51 skrll cp[1] = 0;
3588 1.51 skrll cp[2] = XHCI_SCTX_2_IRQ_TARGET_SET(0);
3589 1.51 skrll cp[3] = 0;
3590 1.51 skrll xhci_setup_route(pipe, cp);
3591 1.51 skrll xhci_setup_tthub(pipe, cp);
3592 1.51 skrll
3593 1.51 skrll cp[0] = htole32(cp[0]);
3594 1.51 skrll cp[1] = htole32(cp[1]);
3595 1.51 skrll cp[2] = htole32(cp[2]);
3596 1.51 skrll cp[3] = htole32(cp[3]);
3597 1.51 skrll
3598 1.51 skrll /* set up input endpoint context */
3599 1.51 skrll cp = xhci_slot_get_icv(sc, xs, xhci_dci_to_ici(dci));
3600 1.51 skrll cp[0] =
3601 1.51 skrll XHCI_EPCTX_0_EPSTATE_SET(0) |
3602 1.51 skrll XHCI_EPCTX_0_MULT_SET(0) |
3603 1.51 skrll XHCI_EPCTX_0_MAXP_STREAMS_SET(0) |
3604 1.51 skrll XHCI_EPCTX_0_LSA_SET(0) |
3605 1.51 skrll XHCI_EPCTX_0_MAX_ESIT_PAYLOAD_HI_SET(0);
3606 1.51 skrll cp[1] =
3607 1.51 skrll XHCI_EPCTX_1_EPTYPE_SET(xhci_ep_get_type(ed)) |
3608 1.51 skrll XHCI_EPCTX_1_HID_SET(0) |
3609 1.51 skrll XHCI_EPCTX_1_MAXB_SET(0);
3610 1.51 skrll
3611 1.51 skrll if (xfertype != UE_ISOCHRONOUS)
3612 1.51 skrll cp[1] |= XHCI_EPCTX_1_CERR_SET(3);
3613 1.51 skrll
3614 1.51 skrll xhci_setup_maxburst(pipe, cp);
3615 1.51 skrll
3616 1.179 mlelstv DPRINTFN(4, "setting on dci %ju ival %ju mult %ju mps %#jx",
3617 1.179 mlelstv dci, XHCI_EPCTX_0_IVAL_GET(cp[0]), XHCI_EPCTX_0_MULT_GET(cp[0]),
3618 1.179 mlelstv XHCI_EPCTX_1_MAXP_SIZE_GET(cp[1]));
3619 1.179 mlelstv DPRINTFN(4, " maxburst %ju mep %#jx atl %#jx",
3620 1.179 mlelstv XHCI_EPCTX_1_MAXB_GET(cp[1]),
3621 1.179 mlelstv (XHCI_EPCTX_0_MAX_ESIT_PAYLOAD_HI_GET(cp[0]) << 16) +
3622 1.179 mlelstv XHCI_EPCTX_4_MAX_ESIT_PAYLOAD_GET(cp[4]),
3623 1.179 mlelstv XHCI_EPCTX_4_AVG_TRB_LEN_GET(cp[4]), 0);
3624 1.1 jakllsch
3625 1.55 skrll /* rewind TR dequeue pointer in xHC */
3626 1.1 jakllsch /* can't use xhci_ep_get_dci() yet? */
3627 1.1 jakllsch *(uint64_t *)(&cp[2]) = htole64(
3628 1.123 skrll xhci_ring_trbp(xs->xs_xr[dci], 0) |
3629 1.1 jakllsch XHCI_EPCTX_2_DCS_SET(1));
3630 1.51 skrll
3631 1.51 skrll cp[0] = htole32(cp[0]);
3632 1.51 skrll cp[1] = htole32(cp[1]);
3633 1.51 skrll cp[4] = htole32(cp[4]);
3634 1.1 jakllsch
3635 1.55 skrll /* rewind TR dequeue pointer in driver */
3636 1.123 skrll struct xhci_ring *xr = xs->xs_xr[dci];
3637 1.55 skrll mutex_enter(&xr->xr_lock);
3638 1.55 skrll xhci_host_dequeue(xr);
3639 1.55 skrll mutex_exit(&xr->xr_lock);
3640 1.55 skrll
3641 1.1 jakllsch /* sync input contexts before they are read from memory */
3642 1.1 jakllsch usb_syncmem(&xs->xs_ic_dma, 0, sc->sc_pgsz, BUS_DMASYNC_PREWRITE);
3643 1.51 skrll }
3644 1.51 skrll
3645 1.51 skrll /*
3646 1.51 skrll * Setup route string and roothub port of given device for slot context
3647 1.51 skrll */
3648 1.51 skrll static void
3649 1.51 skrll xhci_setup_route(struct usbd_pipe *pipe, uint32_t *cp)
3650 1.51 skrll {
3651 1.68 skrll struct xhci_softc * const sc = XHCI_PIPE2SC(pipe);
3652 1.51 skrll struct usbd_device *dev = pipe->up_dev;
3653 1.51 skrll struct usbd_port *up = dev->ud_powersrc;
3654 1.51 skrll struct usbd_device *hub;
3655 1.51 skrll struct usbd_device *adev;
3656 1.51 skrll uint8_t rhport = 0;
3657 1.51 skrll uint32_t route = 0;
3658 1.51 skrll
3659 1.51 skrll XHCIHIST_FUNC(); XHCIHIST_CALLED();
3660 1.51 skrll
3661 1.51 skrll /* Locate root hub port and Determine route string */
3662 1.51 skrll /* 4.3.3 route string does not include roothub port */
3663 1.51 skrll for (hub = dev; hub != NULL; hub = hub->ud_myhub) {
3664 1.51 skrll uint32_t dep;
3665 1.51 skrll
3666 1.122 christos DPRINTFN(4, "hub %#jx depth %jd upport %#jx upportno %jd",
3667 1.75 pgoyette (uintptr_t)hub, hub->ud_depth, (uintptr_t)hub->ud_powersrc,
3668 1.75 pgoyette hub->ud_powersrc ? (uintptr_t)hub->ud_powersrc->up_portno :
3669 1.75 pgoyette -1);
3670 1.51 skrll
3671 1.51 skrll if (hub->ud_powersrc == NULL)
3672 1.51 skrll break;
3673 1.51 skrll dep = hub->ud_depth;
3674 1.51 skrll if (dep == 0)
3675 1.51 skrll break;
3676 1.51 skrll rhport = hub->ud_powersrc->up_portno;
3677 1.51 skrll if (dep > USB_HUB_MAX_DEPTH)
3678 1.51 skrll continue;
3679 1.51 skrll
3680 1.51 skrll route |=
3681 1.51 skrll (rhport > UHD_SS_NPORTS_MAX ? UHD_SS_NPORTS_MAX : rhport)
3682 1.51 skrll << ((dep - 1) * 4);
3683 1.51 skrll }
3684 1.51 skrll route = route >> 4;
3685 1.68 skrll size_t bn = hub == sc->sc_bus.ub_roothub ? 0 : 1;
3686 1.51 skrll
3687 1.51 skrll /* Locate port on upstream high speed hub */
3688 1.51 skrll for (adev = dev, hub = up->up_parent;
3689 1.51 skrll hub != NULL && hub->ud_speed != USB_SPEED_HIGH;
3690 1.51 skrll adev = hub, hub = hub->ud_myhub)
3691 1.51 skrll ;
3692 1.51 skrll if (hub) {
3693 1.51 skrll int p;
3694 1.119 skrll for (p = 1; p <= hub->ud_hub->uh_hubdesc.bNbrPorts; p++) {
3695 1.119 skrll if (hub->ud_hub->uh_ports[p - 1].up_dev == adev) {
3696 1.119 skrll dev->ud_myhsport = &hub->ud_hub->uh_ports[p - 1];
3697 1.51 skrll goto found;
3698 1.51 skrll }
3699 1.51 skrll }
3700 1.68 skrll panic("%s: cannot find HS port", __func__);
3701 1.51 skrll found:
3702 1.75 pgoyette DPRINTFN(4, "high speed port %jd", p, 0, 0, 0);
3703 1.51 skrll } else {
3704 1.51 skrll dev->ud_myhsport = NULL;
3705 1.51 skrll }
3706 1.51 skrll
3707 1.68 skrll const size_t ctlrport = xhci_rhport2ctlrport(sc, bn, rhport);
3708 1.68 skrll
3709 1.75 pgoyette DPRINTFN(4, "rhport %ju ctlrport %ju Route %05jx hub %#jx", rhport,
3710 1.75 pgoyette ctlrport, route, (uintptr_t)hub);
3711 1.68 skrll
3712 1.51 skrll cp[0] |= XHCI_SCTX_0_ROUTE_SET(route);
3713 1.68 skrll cp[1] |= XHCI_SCTX_1_RH_PORT_SET(ctlrport);
3714 1.51 skrll }
3715 1.51 skrll
3716 1.51 skrll /*
3717 1.51 skrll * Setup whether device is hub, whether device uses MTT, and
3718 1.51 skrll * TT informations if it uses MTT.
3719 1.51 skrll */
3720 1.51 skrll static void
3721 1.51 skrll xhci_setup_tthub(struct usbd_pipe *pipe, uint32_t *cp)
3722 1.51 skrll {
3723 1.51 skrll struct usbd_device *dev = pipe->up_dev;
3724 1.78 christos struct usbd_port *myhsport = dev->ud_myhsport;
3725 1.51 skrll usb_device_descriptor_t * const dd = &dev->ud_ddesc;
3726 1.51 skrll uint32_t speed = dev->ud_speed;
3727 1.83 skrll uint8_t rhaddr = dev->ud_bus->ub_rhaddr;
3728 1.51 skrll uint8_t tthubslot, ttportnum;
3729 1.51 skrll bool ishub;
3730 1.51 skrll bool usemtt;
3731 1.51 skrll
3732 1.111 mrg XHCIHIST_FUNC();
3733 1.51 skrll
3734 1.51 skrll /*
3735 1.51 skrll * 6.2.2, Table 57-60, 6.2.2.1, 6.2.2.2
3736 1.51 skrll * tthubslot:
3737 1.51 skrll * This is the slot ID of parent HS hub
3738 1.51 skrll * if LS/FS device is connected && connected through HS hub.
3739 1.51 skrll * This is 0 if device is not LS/FS device ||
3740 1.51 skrll * parent hub is not HS hub ||
3741 1.51 skrll * attached to root hub.
3742 1.51 skrll * ttportnum:
3743 1.51 skrll * This is the downstream facing port of parent HS hub
3744 1.51 skrll * if LS/FS device is connected.
3745 1.51 skrll * This is 0 if device is not LS/FS device ||
3746 1.51 skrll * parent hub is not HS hub ||
3747 1.51 skrll * attached to root hub.
3748 1.51 skrll */
3749 1.83 skrll if (myhsport &&
3750 1.83 skrll myhsport->up_parent->ud_addr != rhaddr &&
3751 1.51 skrll (speed == USB_SPEED_LOW || speed == USB_SPEED_FULL)) {
3752 1.78 christos ttportnum = myhsport->up_portno;
3753 1.78 christos tthubslot = myhsport->up_parent->ud_addr;
3754 1.51 skrll } else {
3755 1.51 skrll ttportnum = 0;
3756 1.51 skrll tthubslot = 0;
3757 1.51 skrll }
3758 1.111 mrg XHCIHIST_CALLARGS("myhsport %#jx ttportnum=%jd tthubslot=%jd",
3759 1.78 christos (uintptr_t)myhsport, ttportnum, tthubslot, 0);
3760 1.51 skrll
3761 1.51 skrll /* ishub is valid after reading UDESC_DEVICE */
3762 1.51 skrll ishub = (dd->bDeviceClass == UDCLASS_HUB);
3763 1.51 skrll
3764 1.51 skrll /* dev->ud_hub is valid after reading UDESC_HUB */
3765 1.51 skrll if (ishub && dev->ud_hub) {
3766 1.51 skrll usb_hub_descriptor_t *hd = &dev->ud_hub->uh_hubdesc;
3767 1.51 skrll uint8_t ttt =
3768 1.51 skrll __SHIFTOUT(UGETW(hd->wHubCharacteristics), UHD_TT_THINK);
3769 1.51 skrll
3770 1.51 skrll cp[1] |= XHCI_SCTX_1_NUM_PORTS_SET(hd->bNbrPorts);
3771 1.51 skrll cp[2] |= XHCI_SCTX_2_TT_THINK_TIME_SET(ttt);
3772 1.75 pgoyette DPRINTFN(4, "nports=%jd ttt=%jd", hd->bNbrPorts, ttt, 0, 0);
3773 1.51 skrll }
3774 1.51 skrll
3775 1.83 skrll #define IS_MTTHUB(dd) \
3776 1.83 skrll ((dd)->bDeviceProtocol == UDPROTO_HSHUBMTT)
3777 1.51 skrll
3778 1.51 skrll /*
3779 1.51 skrll * MTT flag is set if
3780 1.83 skrll * 1. this is HS hub && MTTs are supported and enabled; or
3781 1.83 skrll * 2. this is LS or FS device && there is a parent HS hub where MTTs
3782 1.83 skrll * are supported and enabled.
3783 1.83 skrll *
3784 1.83 skrll * XXX enabled is not tested yet
3785 1.51 skrll */
3786 1.83 skrll if (ishub && speed == USB_SPEED_HIGH && IS_MTTHUB(dd))
3787 1.51 skrll usemtt = true;
3788 1.83 skrll else if ((speed == USB_SPEED_LOW || speed == USB_SPEED_FULL) &&
3789 1.83 skrll myhsport &&
3790 1.83 skrll myhsport->up_parent->ud_addr != rhaddr &&
3791 1.83 skrll IS_MTTHUB(&myhsport->up_parent->ud_ddesc))
3792 1.51 skrll usemtt = true;
3793 1.51 skrll else
3794 1.51 skrll usemtt = false;
3795 1.75 pgoyette DPRINTFN(4, "class %ju proto %ju ishub %jd usemtt %jd",
3796 1.51 skrll dd->bDeviceClass, dd->bDeviceProtocol, ishub, usemtt);
3797 1.51 skrll
3798 1.83 skrll #undef IS_MTTHUB
3799 1.51 skrll
3800 1.51 skrll cp[0] |=
3801 1.51 skrll XHCI_SCTX_0_HUB_SET(ishub ? 1 : 0) |
3802 1.51 skrll XHCI_SCTX_0_MTT_SET(usemtt ? 1 : 0);
3803 1.51 skrll cp[2] |=
3804 1.51 skrll XHCI_SCTX_2_TT_HUB_SID_SET(tthubslot) |
3805 1.51 skrll XHCI_SCTX_2_TT_PORT_NUM_SET(ttportnum);
3806 1.51 skrll }
3807 1.51 skrll
3808 1.179 mlelstv static const usb_endpoint_ss_comp_descriptor_t *
3809 1.179 mlelstv xhci_get_essc_desc(struct usbd_pipe *pipe)
3810 1.51 skrll {
3811 1.51 skrll struct usbd_device *dev = pipe->up_dev;
3812 1.51 skrll usb_endpoint_descriptor_t * const ed = pipe->up_endpoint->ue_edesc;
3813 1.179 mlelstv const usb_cdc_descriptor_t *cdcd;
3814 1.164 mlelstv usbd_desc_iter_t iter;
3815 1.51 skrll uint8_t ep;
3816 1.51 skrll
3817 1.51 skrll /* config desc is NULL when opening ep0 */
3818 1.51 skrll if (dev == NULL || dev->ud_cdesc == NULL)
3819 1.179 mlelstv return NULL;
3820 1.179 mlelstv
3821 1.51 skrll cdcd = (const usb_cdc_descriptor_t *)usb_find_desc(dev,
3822 1.51 skrll UDESC_INTERFACE, USBD_CDCSUBTYPE_ANY);
3823 1.51 skrll if (cdcd == NULL)
3824 1.179 mlelstv return NULL;
3825 1.179 mlelstv
3826 1.51 skrll usb_desc_iter_init(dev, &iter);
3827 1.51 skrll iter.cur = (const void *)cdcd;
3828 1.51 skrll
3829 1.51 skrll /* find endpoint_ss_comp desc for ep of this pipe */
3830 1.51 skrll for (ep = 0;;) {
3831 1.51 skrll cdcd = (const usb_cdc_descriptor_t *)usb_desc_iter_next(&iter);
3832 1.51 skrll if (cdcd == NULL)
3833 1.51 skrll break;
3834 1.51 skrll if (ep == 0 && cdcd->bDescriptorType == UDESC_ENDPOINT) {
3835 1.51 skrll ep = ((const usb_endpoint_descriptor_t *)cdcd)->
3836 1.51 skrll bEndpointAddress;
3837 1.51 skrll if (UE_GET_ADDR(ep) ==
3838 1.51 skrll UE_GET_ADDR(ed->bEndpointAddress)) {
3839 1.51 skrll cdcd = (const usb_cdc_descriptor_t *)
3840 1.51 skrll usb_desc_iter_next(&iter);
3841 1.51 skrll break;
3842 1.51 skrll }
3843 1.51 skrll ep = 0;
3844 1.51 skrll }
3845 1.51 skrll }
3846 1.51 skrll if (cdcd != NULL && cdcd->bDescriptorType == UDESC_ENDPOINT_SS_COMP) {
3847 1.179 mlelstv return (const usb_endpoint_ss_comp_descriptor_t *)cdcd;
3848 1.51 skrll }
3849 1.179 mlelstv return NULL;
3850 1.179 mlelstv }
3851 1.51 skrll
3852 1.179 mlelstv /* set up params for periodic endpoint */
3853 1.179 mlelstv static void
3854 1.179 mlelstv xhci_setup_maxburst(struct usbd_pipe *pipe, uint32_t *cp)
3855 1.179 mlelstv {
3856 1.179 mlelstv struct xhci_pipe * const xpipe = (struct xhci_pipe *)pipe;
3857 1.179 mlelstv struct xhci_softc * const sc = XHCI_PIPE2SC(pipe);
3858 1.179 mlelstv struct usbd_device * const dev = pipe->up_dev;
3859 1.179 mlelstv usb_endpoint_descriptor_t * const ed = pipe->up_endpoint->ue_edesc;
3860 1.179 mlelstv const uint8_t xfertype = UE_GET_XFERTYPE(ed->bmAttributes);
3861 1.179 mlelstv uint16_t mps = UGETW(ed->wMaxPacketSize);
3862 1.179 mlelstv uint8_t speed = dev->ud_speed;
3863 1.179 mlelstv uint32_t maxb, mep, atl;
3864 1.179 mlelstv uint8_t ival, mult;
3865 1.179 mlelstv
3866 1.179 mlelstv const usb_endpoint_ss_comp_descriptor_t * esscd =
3867 1.179 mlelstv xhci_get_essc_desc(pipe);
3868 1.179 mlelstv
3869 1.179 mlelstv /* USB 2.0 9.6.6, xHCI 4.8.2.4, 6.2.3.2 - 6.2.3.8 */
3870 1.179 mlelstv switch (xfertype) {
3871 1.179 mlelstv case UE_ISOCHRONOUS:
3872 1.179 mlelstv case UE_INTERRUPT:
3873 1.179 mlelstv if (USB_IS_SS(speed)) {
3874 1.179 mlelstv maxb = esscd ? esscd->bMaxBurst : UE_GET_TRANS(mps);
3875 1.179 mlelstv mep = esscd ? UGETW(esscd->wBytesPerInterval) :
3876 1.179 mlelstv UE_GET_SIZE(mps) * (maxb + 1);
3877 1.179 mlelstv if (esscd && xfertype == UE_ISOCHRONOUS &&
3878 1.179 mlelstv XHCI_HCC2_LEC(sc->sc_hcc2) == 0) {
3879 1.179 mlelstv mult = UE_GET_SS_ISO_MULT(esscd->bmAttributes);
3880 1.179 mlelstv mult = (mult > 2) ? 2 : mult;
3881 1.179 mlelstv } else
3882 1.179 mlelstv mult = 0;
3883 1.51 skrll
3884 1.51 skrll } else {
3885 1.179 mlelstv switch (speed) {
3886 1.179 mlelstv case USB_SPEED_HIGH:
3887 1.179 mlelstv maxb = UE_GET_TRANS(mps);
3888 1.179 mlelstv mep = UE_GET_SIZE(mps) * (maxb + 1);
3889 1.179 mlelstv break;
3890 1.179 mlelstv case USB_SPEED_FULL:
3891 1.179 mlelstv maxb = 0;
3892 1.179 mlelstv mep = UE_GET_SIZE(mps);
3893 1.179 mlelstv break;
3894 1.179 mlelstv default:
3895 1.179 mlelstv maxb = 0;
3896 1.179 mlelstv mep = 0;
3897 1.179 mlelstv break;
3898 1.179 mlelstv }
3899 1.179 mlelstv mult = 0;
3900 1.51 skrll }
3901 1.179 mlelstv mps = UE_GET_SIZE(mps);
3902 1.179 mlelstv
3903 1.179 mlelstv if (pipe->up_interval == USBD_DEFAULT_INTERVAL)
3904 1.179 mlelstv ival = ed->bInterval;
3905 1.179 mlelstv else
3906 1.179 mlelstv ival = pipe->up_interval;
3907 1.163 mlelstv
3908 1.179 mlelstv ival = xhci_bival2ival(ival, speed, xfertype);
3909 1.179 mlelstv atl = mep;
3910 1.179 mlelstv break;
3911 1.179 mlelstv case UE_CONTROL:
3912 1.179 mlelstv case UE_BULK:
3913 1.179 mlelstv default:
3914 1.179 mlelstv if (USB_IS_SS(speed)) {
3915 1.179 mlelstv maxb = esscd ? esscd->bMaxBurst : 0;
3916 1.179 mlelstv } else
3917 1.51 skrll maxb = 0;
3918 1.179 mlelstv
3919 1.179 mlelstv mps = UE_GET_SIZE(mps);
3920 1.179 mlelstv mep = 0;
3921 1.179 mlelstv mult = 0;
3922 1.179 mlelstv ival = 0;
3923 1.179 mlelstv if (xfertype == UE_CONTROL)
3924 1.179 mlelstv atl = 8; /* 6.2.3 */
3925 1.179 mlelstv else
3926 1.179 mlelstv atl = mps;
3927 1.179 mlelstv break;
3928 1.179 mlelstv }
3929 1.179 mlelstv
3930 1.179 mlelstv switch (speed) {
3931 1.179 mlelstv case USB_SPEED_LOW:
3932 1.179 mlelstv break;
3933 1.179 mlelstv case USB_SPEED_FULL:
3934 1.179 mlelstv if (xfertype == UE_INTERRUPT)
3935 1.179 mlelstv if (mep > XHCI_EPCTX_MEP_FS_INTR)
3936 1.179 mlelstv mep = XHCI_EPCTX_MEP_FS_INTR;
3937 1.179 mlelstv if (xfertype == UE_ISOCHRONOUS)
3938 1.179 mlelstv if (mep > XHCI_EPCTX_MEP_FS_ISOC)
3939 1.179 mlelstv mep = XHCI_EPCTX_MEP_FS_ISOC;
3940 1.179 mlelstv break;
3941 1.179 mlelstv case USB_SPEED_HIGH:
3942 1.179 mlelstv if (xfertype == UE_INTERRUPT)
3943 1.179 mlelstv if (mep > XHCI_EPCTX_MEP_HS_INTR)
3944 1.179 mlelstv mep = XHCI_EPCTX_MEP_HS_INTR;
3945 1.179 mlelstv if (xfertype == UE_ISOCHRONOUS)
3946 1.179 mlelstv if (mep > XHCI_EPCTX_MEP_HS_ISOC)
3947 1.179 mlelstv mep = XHCI_EPCTX_MEP_HS_ISOC;
3948 1.179 mlelstv break;
3949 1.179 mlelstv case USB_SPEED_SUPER:
3950 1.179 mlelstv case USB_SPEED_SUPER_PLUS:
3951 1.179 mlelstv default:
3952 1.179 mlelstv if (xfertype == UE_INTERRUPT)
3953 1.179 mlelstv if (mep > XHCI_EPCTX_MEP_SS_INTR)
3954 1.179 mlelstv mep = XHCI_EPCTX_MEP_SS_INTR;
3955 1.179 mlelstv if (xfertype == UE_ISOCHRONOUS) {
3956 1.179 mlelstv if (speed == USB_SPEED_SUPER ||
3957 1.179 mlelstv XHCI_HCC2_LEC(sc->sc_hcc2) == 0) {
3958 1.179 mlelstv if (mep > XHCI_EPCTX_MEP_SS_ISOC)
3959 1.179 mlelstv mep = XHCI_EPCTX_MEP_SS_ISOC;
3960 1.179 mlelstv } else {
3961 1.179 mlelstv if (mep > XHCI_EPCTX_MEP_SS_ISOC_LEC)
3962 1.179 mlelstv mep = XHCI_EPCTX_MEP_SS_ISOC_LEC;
3963 1.179 mlelstv }
3964 1.51 skrll }
3965 1.179 mlelstv break;
3966 1.51 skrll }
3967 1.179 mlelstv
3968 1.134 jakllsch xpipe->xp_maxb = maxb + 1;
3969 1.134 jakllsch xpipe->xp_mult = mult + 1;
3970 1.179 mlelstv
3971 1.179 mlelstv cp[0] |= XHCI_EPCTX_0_MAX_ESIT_PAYLOAD_HI_SET(mep >> 16);
3972 1.179 mlelstv cp[0] |= XHCI_EPCTX_0_IVAL_SET(ival);
3973 1.179 mlelstv cp[0] |= XHCI_EPCTX_0_MULT_SET(mult);
3974 1.179 mlelstv cp[1] |= XHCI_EPCTX_1_MAXP_SIZE_SET(mps);
3975 1.179 mlelstv cp[1] |= XHCI_EPCTX_1_MAXB_SET(maxb);
3976 1.179 mlelstv cp[4] |= XHCI_EPCTX_4_MAX_ESIT_PAYLOAD_SET(mep & 0xffff);
3977 1.179 mlelstv cp[4] |= XHCI_EPCTX_4_AVG_TRB_LEN_SET(atl);
3978 1.51 skrll }
3979 1.1 jakllsch
3980 1.51 skrll /*
3981 1.179 mlelstv * Convert usbdi bInterval value to xhci endpoint context interval value
3982 1.179 mlelstv * for periodic pipe.
3983 1.51 skrll * xHCI 6.2.3.6 Table 65, USB 2.0 9.6.6
3984 1.51 skrll */
3985 1.51 skrll static uint32_t
3986 1.179 mlelstv xhci_bival2ival(uint32_t ival, uint32_t speed, uint32_t xfertype)
3987 1.51 skrll {
3988 1.179 mlelstv if (xfertype != UE_INTERRUPT && xfertype != UE_ISOCHRONOUS)
3989 1.179 mlelstv return 0;
3990 1.179 mlelstv
3991 1.179 mlelstv if (xfertype == UE_INTERRUPT &&
3992 1.179 mlelstv (speed == USB_SPEED_LOW || speed == USB_SPEED_FULL)) {
3993 1.179 mlelstv u_int i;
3994 1.1 jakllsch
3995 1.51 skrll /*
3996 1.51 skrll * round ival down to "the nearest base 2 multiple of
3997 1.51 skrll * bInterval * 8".
3998 1.51 skrll * bInterval is at most 255 as its type is uByte.
3999 1.51 skrll * 255(ms) = 2040(x 125us) < 2^11, so start with 10.
4000 1.51 skrll */
4001 1.51 skrll for (i = 10; i > 0; i--) {
4002 1.51 skrll if ((ival * 8) >= (1 << i))
4003 1.51 skrll break;
4004 1.51 skrll }
4005 1.51 skrll ival = i;
4006 1.179 mlelstv
4007 1.179 mlelstv /* 3 - 10 */
4008 1.179 mlelstv ival = (ival < 3) ? 3 : ival;
4009 1.179 mlelstv } else if (speed == USB_SPEED_FULL) {
4010 1.179 mlelstv /* FS isoc */
4011 1.179 mlelstv ival += 3; /* 1ms -> 125us */
4012 1.179 mlelstv ival--; /* Interval = bInterval-1 */
4013 1.179 mlelstv /* 3 - 18 */
4014 1.179 mlelstv ival = (ival > 18) ? 18 : ival;
4015 1.179 mlelstv ival = (ival < 3) ? 3 : ival;
4016 1.51 skrll } else {
4017 1.179 mlelstv /* SS/HS intr/isoc */
4018 1.179 mlelstv if (ival > 0)
4019 1.179 mlelstv ival--; /* Interval = bInterval-1 */
4020 1.179 mlelstv /* 0 - 15 */
4021 1.179 mlelstv ival = (ival > 15) ? 15 : ival;
4022 1.51 skrll }
4023 1.1 jakllsch
4024 1.51 skrll return ival;
4025 1.1 jakllsch }
4026 1.1 jakllsch
4027 1.1 jakllsch /* ----- */
4028 1.1 jakllsch
4029 1.1 jakllsch static void
4030 1.34 skrll xhci_noop(struct usbd_pipe *pipe)
4031 1.1 jakllsch {
4032 1.27 skrll XHCIHIST_FUNC(); XHCIHIST_CALLED();
4033 1.1 jakllsch }
4034 1.1 jakllsch
4035 1.34 skrll /*
4036 1.34 skrll * Process root hub request.
4037 1.34 skrll */
4038 1.34 skrll static int
4039 1.162 riastrad xhci_roothub_ctrl_locked(struct usbd_bus *bus, usb_device_request_t *req,
4040 1.34 skrll void *buf, int buflen)
4041 1.1 jakllsch {
4042 1.34 skrll struct xhci_softc * const sc = XHCI_BUS2SC(bus);
4043 1.1 jakllsch usb_port_status_t ps;
4044 1.1 jakllsch int l, totlen = 0;
4045 1.34 skrll uint16_t len, value, index;
4046 1.1 jakllsch int port, i;
4047 1.1 jakllsch uint32_t v;
4048 1.1 jakllsch
4049 1.111 mrg XHCIHIST_FUNC();
4050 1.1 jakllsch
4051 1.162 riastrad KASSERT(mutex_owned(&sc->sc_rhlock));
4052 1.162 riastrad
4053 1.1 jakllsch if (sc->sc_dying)
4054 1.34 skrll return -1;
4055 1.1 jakllsch
4056 1.68 skrll size_t bn = bus == &sc->sc_bus ? 0 : 1;
4057 1.68 skrll
4058 1.34 skrll len = UGETW(req->wLength);
4059 1.1 jakllsch value = UGETW(req->wValue);
4060 1.1 jakllsch index = UGETW(req->wIndex);
4061 1.1 jakllsch
4062 1.111 mrg XHCIHIST_CALLARGS("rhreq: %04jx %04jx %04jx %04jx",
4063 1.27 skrll req->bmRequestType | (req->bRequest << 8), value, index, len);
4064 1.1 jakllsch
4065 1.1 jakllsch #define C(x,y) ((x) | ((y) << 8))
4066 1.34 skrll switch (C(req->bRequest, req->bmRequestType)) {
4067 1.1 jakllsch case C(UR_GET_DESCRIPTOR, UT_READ_DEVICE):
4068 1.121 christos DPRINTFN(8, "getdesc: wValue=0x%04jx", value, 0, 0, 0);
4069 1.1 jakllsch if (len == 0)
4070 1.1 jakllsch break;
4071 1.34 skrll switch (value) {
4072 1.34 skrll #define sd ((usb_string_descriptor_t *)buf)
4073 1.34 skrll case C(2, UDESC_STRING):
4074 1.34 skrll /* Product */
4075 1.91 jmcneill totlen = usb_makestrdesc(sd, len, "xHCI root hub");
4076 1.1 jakllsch break;
4077 1.1 jakllsch #undef sd
4078 1.1 jakllsch default:
4079 1.34 skrll /* default from usbroothub */
4080 1.34 skrll return buflen;
4081 1.1 jakllsch }
4082 1.1 jakllsch break;
4083 1.34 skrll
4084 1.1 jakllsch /* Hub requests */
4085 1.1 jakllsch case C(UR_CLEAR_FEATURE, UT_WRITE_CLASS_DEVICE):
4086 1.1 jakllsch break;
4087 1.34 skrll /* Clear Port Feature request */
4088 1.68 skrll case C(UR_CLEAR_FEATURE, UT_WRITE_CLASS_OTHER): {
4089 1.68 skrll const size_t cp = xhci_rhport2ctlrport(sc, bn, index);
4090 1.68 skrll
4091 1.75 pgoyette DPRINTFN(4, "UR_CLEAR_PORT_FEAT bp=%jd feat=%jd bus=%jd cp=%jd",
4092 1.68 skrll index, value, bn, cp);
4093 1.68 skrll if (index < 1 || index > sc->sc_rhportcount[bn]) {
4094 1.34 skrll return -1;
4095 1.1 jakllsch }
4096 1.68 skrll port = XHCI_PORTSC(cp);
4097 1.1 jakllsch v = xhci_op_read_4(sc, port);
4098 1.121 christos DPRINTFN(4, "portsc=0x%08jx", v, 0, 0, 0);
4099 1.1 jakllsch v &= ~XHCI_PS_CLEAR;
4100 1.1 jakllsch switch (value) {
4101 1.1 jakllsch case UHF_PORT_ENABLE:
4102 1.34 skrll xhci_op_write_4(sc, port, v & ~XHCI_PS_PED);
4103 1.1 jakllsch break;
4104 1.1 jakllsch case UHF_PORT_SUSPEND:
4105 1.34 skrll return -1;
4106 1.1 jakllsch case UHF_PORT_POWER:
4107 1.1 jakllsch break;
4108 1.1 jakllsch case UHF_PORT_TEST:
4109 1.1 jakllsch case UHF_PORT_INDICATOR:
4110 1.34 skrll return -1;
4111 1.1 jakllsch case UHF_C_PORT_CONNECTION:
4112 1.1 jakllsch xhci_op_write_4(sc, port, v | XHCI_PS_CSC);
4113 1.1 jakllsch break;
4114 1.1 jakllsch case UHF_C_PORT_ENABLE:
4115 1.1 jakllsch case UHF_C_PORT_SUSPEND:
4116 1.1 jakllsch case UHF_C_PORT_OVER_CURRENT:
4117 1.34 skrll return -1;
4118 1.34 skrll case UHF_C_BH_PORT_RESET:
4119 1.34 skrll xhci_op_write_4(sc, port, v | XHCI_PS_WRC);
4120 1.34 skrll break;
4121 1.1 jakllsch case UHF_C_PORT_RESET:
4122 1.1 jakllsch xhci_op_write_4(sc, port, v | XHCI_PS_PRC);
4123 1.1 jakllsch break;
4124 1.34 skrll case UHF_C_PORT_LINK_STATE:
4125 1.34 skrll xhci_op_write_4(sc, port, v | XHCI_PS_PLC);
4126 1.34 skrll break;
4127 1.34 skrll case UHF_C_PORT_CONFIG_ERROR:
4128 1.34 skrll xhci_op_write_4(sc, port, v | XHCI_PS_CEC);
4129 1.34 skrll break;
4130 1.1 jakllsch default:
4131 1.34 skrll return -1;
4132 1.1 jakllsch }
4133 1.1 jakllsch break;
4134 1.68 skrll }
4135 1.1 jakllsch case C(UR_GET_DESCRIPTOR, UT_READ_CLASS_DEVICE):
4136 1.1 jakllsch if (len == 0)
4137 1.1 jakllsch break;
4138 1.1 jakllsch if ((value & 0xff) != 0) {
4139 1.34 skrll return -1;
4140 1.1 jakllsch }
4141 1.34 skrll usb_hub_descriptor_t hubd;
4142 1.34 skrll
4143 1.98 riastrad totlen = uimin(buflen, sizeof(hubd));
4144 1.34 skrll memcpy(&hubd, buf, totlen);
4145 1.68 skrll hubd.bNbrPorts = sc->sc_rhportcount[bn];
4146 1.1 jakllsch USETW(hubd.wHubCharacteristics, UHD_PWR_NO_SWITCH);
4147 1.1 jakllsch hubd.bPwrOn2PwrGood = 200;
4148 1.68 skrll for (i = 0, l = sc->sc_rhportcount[bn]; l > 0; i++, l -= 8) {
4149 1.68 skrll /* XXX can't find out? */
4150 1.68 skrll hubd.DeviceRemovable[i++] = 0;
4151 1.68 skrll }
4152 1.3 skrll hubd.bDescLength = USB_HUB_DESCRIPTOR_SIZE + i;
4153 1.98 riastrad totlen = uimin(totlen, hubd.bDescLength);
4154 1.34 skrll memcpy(buf, &hubd, totlen);
4155 1.1 jakllsch break;
4156 1.1 jakllsch case C(UR_GET_STATUS, UT_READ_CLASS_DEVICE):
4157 1.1 jakllsch if (len != 4) {
4158 1.34 skrll return -1;
4159 1.1 jakllsch }
4160 1.1 jakllsch memset(buf, 0, len); /* ? XXX */
4161 1.1 jakllsch totlen = len;
4162 1.1 jakllsch break;
4163 1.34 skrll /* Get Port Status request */
4164 1.68 skrll case C(UR_GET_STATUS, UT_READ_CLASS_OTHER): {
4165 1.68 skrll const size_t cp = xhci_rhport2ctlrport(sc, bn, index);
4166 1.68 skrll
4167 1.75 pgoyette DPRINTFN(8, "get port status bn=%jd i=%jd cp=%ju",
4168 1.75 pgoyette bn, index, cp, 0);
4169 1.68 skrll if (index < 1 || index > sc->sc_rhportcount[bn]) {
4170 1.111 mrg DPRINTFN(5, "bad get port status: index=%jd bn=%jd "
4171 1.111 mrg "portcount=%jd",
4172 1.111 mrg index, bn, sc->sc_rhportcount[bn], 0);
4173 1.34 skrll return -1;
4174 1.1 jakllsch }
4175 1.1 jakllsch if (len != 4) {
4176 1.120 christos DPRINTFN(5, "bad get port status: len %jd != 4",
4177 1.111 mrg len, 0, 0, 0);
4178 1.34 skrll return -1;
4179 1.1 jakllsch }
4180 1.68 skrll v = xhci_op_read_4(sc, XHCI_PORTSC(cp));
4181 1.121 christos DPRINTFN(4, "getrhportsc %jd 0x%08jx", cp, v, 0, 0);
4182 1.34 skrll i = xhci_xspeed2psspeed(XHCI_PS_SPEED_GET(v));
4183 1.1 jakllsch if (v & XHCI_PS_CCS) i |= UPS_CURRENT_CONNECT_STATUS;
4184 1.1 jakllsch if (v & XHCI_PS_PED) i |= UPS_PORT_ENABLED;
4185 1.1 jakllsch if (v & XHCI_PS_OCA) i |= UPS_OVERCURRENT_INDICATOR;
4186 1.1 jakllsch //if (v & XHCI_PS_SUSP) i |= UPS_SUSPEND;
4187 1.1 jakllsch if (v & XHCI_PS_PR) i |= UPS_RESET;
4188 1.34 skrll if (v & XHCI_PS_PP) {
4189 1.34 skrll if (i & UPS_OTHER_SPEED)
4190 1.34 skrll i |= UPS_PORT_POWER_SS;
4191 1.34 skrll else
4192 1.34 skrll i |= UPS_PORT_POWER;
4193 1.34 skrll }
4194 1.34 skrll if (i & UPS_OTHER_SPEED)
4195 1.34 skrll i |= UPS_PORT_LS_SET(XHCI_PS_PLS_GET(v));
4196 1.34 skrll if (sc->sc_vendor_port_status)
4197 1.34 skrll i = sc->sc_vendor_port_status(sc, v, i);
4198 1.1 jakllsch USETW(ps.wPortStatus, i);
4199 1.1 jakllsch i = 0;
4200 1.1 jakllsch if (v & XHCI_PS_CSC) i |= UPS_C_CONNECT_STATUS;
4201 1.1 jakllsch if (v & XHCI_PS_PEC) i |= UPS_C_PORT_ENABLED;
4202 1.1 jakllsch if (v & XHCI_PS_OCC) i |= UPS_C_OVERCURRENT_INDICATOR;
4203 1.1 jakllsch if (v & XHCI_PS_PRC) i |= UPS_C_PORT_RESET;
4204 1.34 skrll if (v & XHCI_PS_WRC) i |= UPS_C_BH_PORT_RESET;
4205 1.34 skrll if (v & XHCI_PS_PLC) i |= UPS_C_PORT_LINK_STATE;
4206 1.34 skrll if (v & XHCI_PS_CEC) i |= UPS_C_PORT_CONFIG_ERROR;
4207 1.1 jakllsch USETW(ps.wPortChange, i);
4208 1.98 riastrad totlen = uimin(len, sizeof(ps));
4209 1.34 skrll memcpy(buf, &ps, totlen);
4210 1.120 christos DPRINTFN(5, "get port status: wPortStatus %#jx wPortChange %#jx"
4211 1.120 christos " totlen %jd",
4212 1.111 mrg UGETW(ps.wPortStatus), UGETW(ps.wPortChange), totlen, 0);
4213 1.1 jakllsch break;
4214 1.68 skrll }
4215 1.1 jakllsch case C(UR_SET_DESCRIPTOR, UT_WRITE_CLASS_DEVICE):
4216 1.34 skrll return -1;
4217 1.34 skrll case C(UR_SET_HUB_DEPTH, UT_WRITE_CLASS_DEVICE):
4218 1.34 skrll break;
4219 1.1 jakllsch case C(UR_SET_FEATURE, UT_WRITE_CLASS_DEVICE):
4220 1.1 jakllsch break;
4221 1.34 skrll /* Set Port Feature request */
4222 1.34 skrll case C(UR_SET_FEATURE, UT_WRITE_CLASS_OTHER): {
4223 1.34 skrll int optval = (index >> 8) & 0xff;
4224 1.34 skrll index &= 0xff;
4225 1.68 skrll if (index < 1 || index > sc->sc_rhportcount[bn]) {
4226 1.34 skrll return -1;
4227 1.1 jakllsch }
4228 1.68 skrll
4229 1.68 skrll const size_t cp = xhci_rhport2ctlrport(sc, bn, index);
4230 1.68 skrll
4231 1.68 skrll port = XHCI_PORTSC(cp);
4232 1.1 jakllsch v = xhci_op_read_4(sc, port);
4233 1.121 christos DPRINTFN(4, "index %jd cp %jd portsc=0x%08jx", index, cp, v, 0);
4234 1.1 jakllsch v &= ~XHCI_PS_CLEAR;
4235 1.1 jakllsch switch (value) {
4236 1.1 jakllsch case UHF_PORT_ENABLE:
4237 1.1 jakllsch xhci_op_write_4(sc, port, v | XHCI_PS_PED);
4238 1.1 jakllsch break;
4239 1.1 jakllsch case UHF_PORT_SUSPEND:
4240 1.1 jakllsch /* XXX suspend */
4241 1.1 jakllsch break;
4242 1.1 jakllsch case UHF_PORT_RESET:
4243 1.1 jakllsch xhci_op_write_4(sc, port, v | XHCI_PS_PR);
4244 1.1 jakllsch /* Wait for reset to complete. */
4245 1.149 jmcneill for (i = 0; i < USB_PORT_ROOT_RESET_DELAY / 10; i++) {
4246 1.149 jmcneill if (sc->sc_dying) {
4247 1.149 jmcneill return -1;
4248 1.149 jmcneill }
4249 1.149 jmcneill v = xhci_op_read_4(sc, port);
4250 1.149 jmcneill if ((v & XHCI_PS_PR) == 0) {
4251 1.149 jmcneill break;
4252 1.149 jmcneill }
4253 1.1 jakllsch usb_delay_ms(&sc->sc_bus, 10);
4254 1.1 jakllsch }
4255 1.1 jakllsch break;
4256 1.1 jakllsch case UHF_PORT_POWER:
4257 1.1 jakllsch /* XXX power control */
4258 1.1 jakllsch break;
4259 1.1 jakllsch /* XXX more */
4260 1.1 jakllsch case UHF_C_PORT_RESET:
4261 1.1 jakllsch xhci_op_write_4(sc, port, v | XHCI_PS_PRC);
4262 1.1 jakllsch break;
4263 1.34 skrll case UHF_PORT_U1_TIMEOUT:
4264 1.34 skrll if (XHCI_PS_SPEED_GET(v) < XHCI_PS_SPEED_SS) {
4265 1.34 skrll return -1;
4266 1.34 skrll }
4267 1.68 skrll port = XHCI_PORTPMSC(cp);
4268 1.34 skrll v = xhci_op_read_4(sc, port);
4269 1.121 christos DPRINTFN(4, "index %jd cp %jd portpmsc=0x%08jx",
4270 1.75 pgoyette index, cp, v, 0);
4271 1.34 skrll v &= ~XHCI_PM3_U1TO_SET(0xff);
4272 1.34 skrll v |= XHCI_PM3_U1TO_SET(optval);
4273 1.34 skrll xhci_op_write_4(sc, port, v);
4274 1.34 skrll break;
4275 1.34 skrll case UHF_PORT_U2_TIMEOUT:
4276 1.34 skrll if (XHCI_PS_SPEED_GET(v) < XHCI_PS_SPEED_SS) {
4277 1.34 skrll return -1;
4278 1.34 skrll }
4279 1.68 skrll port = XHCI_PORTPMSC(cp);
4280 1.34 skrll v = xhci_op_read_4(sc, port);
4281 1.121 christos DPRINTFN(4, "index %jd cp %jd portpmsc=0x%08jx",
4282 1.75 pgoyette index, cp, v, 0);
4283 1.34 skrll v &= ~XHCI_PM3_U2TO_SET(0xff);
4284 1.34 skrll v |= XHCI_PM3_U2TO_SET(optval);
4285 1.34 skrll xhci_op_write_4(sc, port, v);
4286 1.34 skrll break;
4287 1.1 jakllsch default:
4288 1.34 skrll return -1;
4289 1.1 jakllsch }
4290 1.34 skrll }
4291 1.1 jakllsch break;
4292 1.1 jakllsch case C(UR_CLEAR_TT_BUFFER, UT_WRITE_CLASS_OTHER):
4293 1.1 jakllsch case C(UR_RESET_TT, UT_WRITE_CLASS_OTHER):
4294 1.1 jakllsch case C(UR_GET_TT_STATE, UT_READ_CLASS_OTHER):
4295 1.1 jakllsch case C(UR_STOP_TT, UT_WRITE_CLASS_OTHER):
4296 1.1 jakllsch break;
4297 1.1 jakllsch default:
4298 1.34 skrll /* default from usbroothub */
4299 1.34 skrll return buflen;
4300 1.1 jakllsch }
4301 1.27 skrll
4302 1.34 skrll return totlen;
4303 1.1 jakllsch }
4304 1.1 jakllsch
4305 1.162 riastrad static int
4306 1.162 riastrad xhci_roothub_ctrl(struct usbd_bus *bus, usb_device_request_t *req,
4307 1.162 riastrad void *buf, int buflen)
4308 1.162 riastrad {
4309 1.162 riastrad struct xhci_softc *sc = XHCI_BUS2SC(bus);
4310 1.162 riastrad int actlen;
4311 1.162 riastrad
4312 1.162 riastrad mutex_enter(&sc->sc_rhlock);
4313 1.162 riastrad actlen = xhci_roothub_ctrl_locked(bus, req, buf, buflen);
4314 1.162 riastrad mutex_exit(&sc->sc_rhlock);
4315 1.162 riastrad
4316 1.162 riastrad return actlen;
4317 1.162 riastrad }
4318 1.162 riastrad
4319 1.28 skrll /* root hub interrupt */
4320 1.1 jakllsch
4321 1.1 jakllsch static usbd_status
4322 1.34 skrll xhci_root_intr_transfer(struct usbd_xfer *xfer)
4323 1.1 jakllsch {
4324 1.27 skrll XHCIHIST_FUNC(); XHCIHIST_CALLED();
4325 1.27 skrll
4326 1.1 jakllsch /* Pipe isn't running, start first */
4327 1.34 skrll return xhci_root_intr_start(SIMPLEQ_FIRST(&xfer->ux_pipe->up_queue));
4328 1.1 jakllsch }
4329 1.1 jakllsch
4330 1.34 skrll /* Wait for roothub port status/change */
4331 1.1 jakllsch static usbd_status
4332 1.34 skrll xhci_root_intr_start(struct usbd_xfer *xfer)
4333 1.1 jakllsch {
4334 1.34 skrll struct xhci_softc * const sc = XHCI_XFER2SC(xfer);
4335 1.68 skrll const size_t bn = XHCI_XFER2BUS(xfer) == &sc->sc_bus ? 0 : 1;
4336 1.1 jakllsch
4337 1.27 skrll XHCIHIST_FUNC(); XHCIHIST_CALLED();
4338 1.27 skrll
4339 1.158 riastrad KASSERT(xhci_polling_p(sc) || mutex_owned(&sc->sc_lock));
4340 1.158 riastrad
4341 1.1 jakllsch if (sc->sc_dying)
4342 1.1 jakllsch return USBD_IOERROR;
4343 1.1 jakllsch
4344 1.117 riastrad KASSERT(sc->sc_intrxfer[bn] == NULL);
4345 1.68 skrll sc->sc_intrxfer[bn] = xfer;
4346 1.118 riastrad xfer->ux_status = USBD_IN_PROGRESS;
4347 1.1 jakllsch
4348 1.1 jakllsch return USBD_IN_PROGRESS;
4349 1.1 jakllsch }
4350 1.1 jakllsch
4351 1.1 jakllsch static void
4352 1.34 skrll xhci_root_intr_abort(struct usbd_xfer *xfer)
4353 1.1 jakllsch {
4354 1.117 riastrad struct xhci_softc * const sc = XHCI_XFER2SC(xfer);
4355 1.117 riastrad const size_t bn = XHCI_XFER2BUS(xfer) == &sc->sc_bus ? 0 : 1;
4356 1.1 jakllsch
4357 1.27 skrll XHCIHIST_FUNC(); XHCIHIST_CALLED();
4358 1.27 skrll
4359 1.1 jakllsch KASSERT(mutex_owned(&sc->sc_lock));
4360 1.34 skrll KASSERT(xfer->ux_pipe->up_intrxfer == xfer);
4361 1.21 skrll
4362 1.117 riastrad /* If xfer has already completed, nothing to do here. */
4363 1.117 riastrad if (sc->sc_intrxfer[bn] == NULL)
4364 1.117 riastrad return;
4365 1.117 riastrad
4366 1.117 riastrad /*
4367 1.117 riastrad * Otherwise, sc->sc_intrxfer[bn] had better be this transfer.
4368 1.117 riastrad * Cancel it.
4369 1.117 riastrad */
4370 1.117 riastrad KASSERT(sc->sc_intrxfer[bn] == xfer);
4371 1.34 skrll xfer->ux_status = USBD_CANCELLED;
4372 1.1 jakllsch usb_transfer_complete(xfer);
4373 1.1 jakllsch }
4374 1.1 jakllsch
4375 1.1 jakllsch static void
4376 1.34 skrll xhci_root_intr_close(struct usbd_pipe *pipe)
4377 1.1 jakllsch {
4378 1.117 riastrad struct xhci_softc * const sc __diagused = XHCI_PIPE2SC(pipe);
4379 1.117 riastrad const struct usbd_xfer *xfer __diagused = pipe->up_intrxfer;
4380 1.117 riastrad const size_t bn __diagused = XHCI_XFER2BUS(xfer) == &sc->sc_bus ? 0 : 1;
4381 1.1 jakllsch
4382 1.27 skrll XHCIHIST_FUNC(); XHCIHIST_CALLED();
4383 1.27 skrll
4384 1.1 jakllsch KASSERT(mutex_owned(&sc->sc_lock));
4385 1.1 jakllsch
4386 1.117 riastrad /*
4387 1.117 riastrad * Caller must guarantee the xfer has completed first, by
4388 1.117 riastrad * closing the pipe only after normal completion or an abort.
4389 1.117 riastrad */
4390 1.117 riastrad KASSERT(sc->sc_intrxfer[bn] == NULL);
4391 1.1 jakllsch }
4392 1.1 jakllsch
4393 1.1 jakllsch static void
4394 1.34 skrll xhci_root_intr_done(struct usbd_xfer *xfer)
4395 1.1 jakllsch {
4396 1.117 riastrad struct xhci_softc * const sc = XHCI_XFER2SC(xfer);
4397 1.117 riastrad const size_t bn = XHCI_XFER2BUS(xfer) == &sc->sc_bus ? 0 : 1;
4398 1.117 riastrad
4399 1.27 skrll XHCIHIST_FUNC(); XHCIHIST_CALLED();
4400 1.27 skrll
4401 1.117 riastrad KASSERT(mutex_owned(&sc->sc_lock));
4402 1.117 riastrad
4403 1.117 riastrad /* Claim the xfer so it doesn't get completed again. */
4404 1.117 riastrad KASSERT(sc->sc_intrxfer[bn] == xfer);
4405 1.117 riastrad KASSERT(xfer->ux_status != USBD_IN_PROGRESS);
4406 1.117 riastrad sc->sc_intrxfer[bn] = NULL;
4407 1.1 jakllsch }
4408 1.1 jakllsch
4409 1.1 jakllsch /* -------------- */
4410 1.1 jakllsch /* device control */
4411 1.1 jakllsch
4412 1.1 jakllsch static usbd_status
4413 1.34 skrll xhci_device_ctrl_transfer(struct usbd_xfer *xfer)
4414 1.1 jakllsch {
4415 1.27 skrll XHCIHIST_FUNC(); XHCIHIST_CALLED();
4416 1.27 skrll
4417 1.1 jakllsch /* Pipe isn't running, start first */
4418 1.34 skrll return xhci_device_ctrl_start(SIMPLEQ_FIRST(&xfer->ux_pipe->up_queue));
4419 1.1 jakllsch }
4420 1.1 jakllsch
4421 1.1 jakllsch static usbd_status
4422 1.34 skrll xhci_device_ctrl_start(struct usbd_xfer *xfer)
4423 1.1 jakllsch {
4424 1.34 skrll struct xhci_softc * const sc = XHCI_XFER2SC(xfer);
4425 1.34 skrll struct xhci_slot * const xs = xfer->ux_pipe->up_dev->ud_hcpriv;
4426 1.34 skrll const u_int dci = xhci_ep_get_dci(xfer->ux_pipe->up_endpoint->ue_edesc);
4427 1.123 skrll struct xhci_ring * const tr = xs->xs_xr[dci];
4428 1.35 skrll struct xhci_xfer * const xx = XHCI_XFER2XXFER(xfer);
4429 1.34 skrll usb_device_request_t * const req = &xfer->ux_request;
4430 1.124 skrll const bool isread = usbd_xfer_isread(xfer);
4431 1.1 jakllsch const uint32_t len = UGETW(req->wLength);
4432 1.34 skrll usb_dma_t * const dma = &xfer->ux_dmabuf;
4433 1.1 jakllsch uint64_t parameter;
4434 1.1 jakllsch uint32_t status;
4435 1.1 jakllsch uint32_t control;
4436 1.1 jakllsch u_int i;
4437 1.100 mrg const bool polling = xhci_polling_p(sc);
4438 1.1 jakllsch
4439 1.111 mrg XHCIHIST_FUNC();
4440 1.111 mrg XHCIHIST_CALLARGS("req: %04jx %04jx %04jx %04jx",
4441 1.27 skrll req->bmRequestType | (req->bRequest << 8), UGETW(req->wValue),
4442 1.27 skrll UGETW(req->wIndex), UGETW(req->wLength));
4443 1.1 jakllsch
4444 1.158 riastrad KASSERT(polling || mutex_owned(&sc->sc_lock));
4445 1.158 riastrad
4446 1.1 jakllsch /* we rely on the bottom bits for extra info */
4447 1.178 skrll KASSERTMSG(((uintptr_t)xfer & 0x3) == 0x0, "xfer %p", xfer);
4448 1.1 jakllsch
4449 1.34 skrll KASSERT((xfer->ux_rqflags & URQ_REQUEST) != 0);
4450 1.1 jakllsch
4451 1.155 riastrad if (tr->is_halted)
4452 1.155 riastrad goto out;
4453 1.155 riastrad
4454 1.1 jakllsch i = 0;
4455 1.1 jakllsch
4456 1.1 jakllsch /* setup phase */
4457 1.126 jakllsch parameter = le64dec(req); /* to keep USB endian after xhci_trb_put() */
4458 1.1 jakllsch status = XHCI_TRB_2_IRQ_SET(0) | XHCI_TRB_2_BYTES_SET(sizeof(*req));
4459 1.1 jakllsch control = ((len == 0) ? XHCI_TRB_3_TRT_NONE :
4460 1.1 jakllsch (isread ? XHCI_TRB_3_TRT_IN : XHCI_TRB_3_TRT_OUT)) |
4461 1.1 jakllsch XHCI_TRB_3_TYPE_SET(XHCI_TRB_TYPE_SETUP_STAGE) |
4462 1.1 jakllsch XHCI_TRB_3_IDT_BIT;
4463 1.127 jakllsch xhci_xfer_put_trb(xx, i++, parameter, status, control);
4464 1.1 jakllsch
4465 1.34 skrll if (len != 0) {
4466 1.34 skrll /* data phase */
4467 1.34 skrll parameter = DMAADDR(dma, 0);
4468 1.59 maya KASSERTMSG(len <= 0x10000, "len %d", len);
4469 1.34 skrll status = XHCI_TRB_2_IRQ_SET(0) |
4470 1.113 mrg XHCI_TRB_2_TDSZ_SET(0) |
4471 1.34 skrll XHCI_TRB_2_BYTES_SET(len);
4472 1.34 skrll control = (isread ? XHCI_TRB_3_DIR_IN : 0) |
4473 1.34 skrll XHCI_TRB_3_TYPE_SET(XHCI_TRB_TYPE_DATA_STAGE) |
4474 1.124 skrll (isread ? XHCI_TRB_3_ISP_BIT : 0) |
4475 1.34 skrll XHCI_TRB_3_IOC_BIT;
4476 1.127 jakllsch xhci_xfer_put_trb(xx, i++, parameter, status, control);
4477 1.124 skrll
4478 1.124 skrll usb_syncmem(dma, 0, len,
4479 1.124 skrll isread ? BUS_DMASYNC_PREREAD : BUS_DMASYNC_PREWRITE);
4480 1.34 skrll }
4481 1.1 jakllsch
4482 1.1 jakllsch parameter = 0;
4483 1.28 skrll status = XHCI_TRB_2_IRQ_SET(0);
4484 1.1 jakllsch /* the status stage has inverted direction */
4485 1.28 skrll control = ((isread && (len > 0)) ? 0 : XHCI_TRB_3_DIR_IN) |
4486 1.1 jakllsch XHCI_TRB_3_TYPE_SET(XHCI_TRB_TYPE_STATUS_STAGE) |
4487 1.1 jakllsch XHCI_TRB_3_IOC_BIT;
4488 1.127 jakllsch xhci_xfer_put_trb(xx, i++, parameter, status, control);
4489 1.1 jakllsch
4490 1.99 mrg if (!polling)
4491 1.99 mrg mutex_enter(&tr->xr_lock);
4492 1.127 jakllsch xhci_ring_put_xfer(sc, tr, xx, i);
4493 1.99 mrg if (!polling)
4494 1.99 mrg mutex_exit(&tr->xr_lock);
4495 1.1 jakllsch
4496 1.1 jakllsch xhci_db_write_4(sc, XHCI_DOORBELL(xs->xs_idx), dci);
4497 1.155 riastrad
4498 1.155 riastrad out: if (xfer->ux_status == USBD_NOT_STARTED) {
4499 1.155 riastrad usbd_xfer_schedule_timeout(xfer);
4500 1.155 riastrad xfer->ux_status = USBD_IN_PROGRESS;
4501 1.155 riastrad } else {
4502 1.155 riastrad /*
4503 1.155 riastrad * We must be coming from xhci_pipe_restart -- timeout
4504 1.155 riastrad * already set up, nothing to do.
4505 1.155 riastrad */
4506 1.155 riastrad }
4507 1.155 riastrad KASSERT(xfer->ux_status == USBD_IN_PROGRESS);
4508 1.1 jakllsch
4509 1.1 jakllsch return USBD_IN_PROGRESS;
4510 1.1 jakllsch }
4511 1.1 jakllsch
4512 1.1 jakllsch static void
4513 1.34 skrll xhci_device_ctrl_done(struct usbd_xfer *xfer)
4514 1.1 jakllsch {
4515 1.27 skrll XHCIHIST_FUNC(); XHCIHIST_CALLED();
4516 1.34 skrll usb_device_request_t *req = &xfer->ux_request;
4517 1.34 skrll int len = UGETW(req->wLength);
4518 1.34 skrll int rd = req->bmRequestType & UT_READ;
4519 1.1 jakllsch
4520 1.34 skrll if (len)
4521 1.34 skrll usb_syncmem(&xfer->ux_dmabuf, 0, len,
4522 1.34 skrll rd ? BUS_DMASYNC_POSTREAD : BUS_DMASYNC_POSTWRITE);
4523 1.1 jakllsch }
4524 1.1 jakllsch
4525 1.1 jakllsch static void
4526 1.34 skrll xhci_device_ctrl_abort(struct usbd_xfer *xfer)
4527 1.1 jakllsch {
4528 1.27 skrll XHCIHIST_FUNC(); XHCIHIST_CALLED();
4529 1.34 skrll
4530 1.116 riastrad usbd_xfer_abort(xfer);
4531 1.1 jakllsch }
4532 1.1 jakllsch
4533 1.1 jakllsch static void
4534 1.34 skrll xhci_device_ctrl_close(struct usbd_pipe *pipe)
4535 1.1 jakllsch {
4536 1.27 skrll XHCIHIST_FUNC(); XHCIHIST_CALLED();
4537 1.34 skrll
4538 1.34 skrll xhci_close_pipe(pipe);
4539 1.1 jakllsch }
4540 1.1 jakllsch
4541 1.34 skrll /* ------------------ */
4542 1.34 skrll /* device isochronous */
4543 1.1 jakllsch
4544 1.134 jakllsch static usbd_status
4545 1.134 jakllsch xhci_device_isoc_transfer(struct usbd_xfer *xfer)
4546 1.134 jakllsch {
4547 1.134 jakllsch XHCIHIST_FUNC(); XHCIHIST_CALLED();
4548 1.134 jakllsch
4549 1.134 jakllsch return xhci_device_isoc_enter(xfer);
4550 1.134 jakllsch }
4551 1.134 jakllsch
4552 1.134 jakllsch static usbd_status
4553 1.134 jakllsch xhci_device_isoc_enter(struct usbd_xfer *xfer)
4554 1.134 jakllsch {
4555 1.134 jakllsch struct xhci_softc * const sc = XHCI_XFER2SC(xfer);
4556 1.134 jakllsch struct xhci_slot * const xs = xfer->ux_pipe->up_dev->ud_hcpriv;
4557 1.134 jakllsch const u_int dci = xhci_ep_get_dci(xfer->ux_pipe->up_endpoint->ue_edesc);
4558 1.134 jakllsch struct xhci_ring * const tr = xs->xs_xr[dci];
4559 1.134 jakllsch struct xhci_xfer * const xx = XHCI_XFER2XXFER(xfer);
4560 1.134 jakllsch struct xhci_pipe * const xpipe = (struct xhci_pipe *)xfer->ux_pipe;
4561 1.134 jakllsch uint32_t len = xfer->ux_length;
4562 1.134 jakllsch usb_dma_t * const dma = &xfer->ux_dmabuf;
4563 1.134 jakllsch uint64_t parameter;
4564 1.134 jakllsch uint32_t status;
4565 1.134 jakllsch uint32_t control;
4566 1.134 jakllsch uint32_t mfindex;
4567 1.134 jakllsch uint32_t offs;
4568 1.134 jakllsch int i, ival;
4569 1.134 jakllsch const bool polling = xhci_polling_p(sc);
4570 1.134 jakllsch const uint16_t MPS = UGETW(xfer->ux_pipe->up_endpoint->ue_edesc->wMaxPacketSize);
4571 1.134 jakllsch const uint16_t mps = UE_GET_SIZE(MPS);
4572 1.134 jakllsch const uint8_t maxb = xpipe->xp_maxb;
4573 1.134 jakllsch u_int tdpc, tbc, tlbpc;
4574 1.134 jakllsch
4575 1.134 jakllsch XHCIHIST_FUNC();
4576 1.134 jakllsch XHCIHIST_CALLARGS("%#jx slot %ju dci %ju",
4577 1.134 jakllsch (uintptr_t)xfer, xs->xs_idx, dci, 0);
4578 1.134 jakllsch
4579 1.158 riastrad KASSERT(polling || mutex_owned(&sc->sc_lock));
4580 1.158 riastrad
4581 1.134 jakllsch if (sc->sc_dying)
4582 1.134 jakllsch return USBD_IOERROR;
4583 1.134 jakllsch
4584 1.134 jakllsch KASSERT(xfer->ux_nframes != 0 && xfer->ux_frlengths);
4585 1.134 jakllsch KASSERT((xfer->ux_rqflags & URQ_REQUEST) == 0);
4586 1.134 jakllsch
4587 1.134 jakllsch const bool isread = usbd_xfer_isread(xfer);
4588 1.134 jakllsch if (xfer->ux_length)
4589 1.134 jakllsch usb_syncmem(dma, 0, xfer->ux_length,
4590 1.134 jakllsch isread ? BUS_DMASYNC_PREREAD : BUS_DMASYNC_PREWRITE);
4591 1.134 jakllsch
4592 1.134 jakllsch ival = xfer->ux_pipe->up_endpoint->ue_edesc->bInterval;
4593 1.134 jakllsch if (ival >= 1 && ival <= 16)
4594 1.134 jakllsch ival = 1 << (ival - 1);
4595 1.134 jakllsch else
4596 1.134 jakllsch ival = 1; /* fake something up */
4597 1.134 jakllsch
4598 1.134 jakllsch if (xpipe->xp_isoc_next == -1) {
4599 1.134 jakllsch mfindex = xhci_rt_read_4(sc, XHCI_MFINDEX);
4600 1.134 jakllsch DPRINTF("mfindex %jx", (uintmax_t)mfindex, 0, 0, 0);
4601 1.134 jakllsch mfindex = XHCI_MFINDEX_GET(mfindex + 1);
4602 1.134 jakllsch mfindex /= USB_UFRAMES_PER_FRAME;
4603 1.134 jakllsch mfindex += 7; /* 7 frames is max possible IST */
4604 1.134 jakllsch xpipe->xp_isoc_next = roundup2(mfindex, ival);
4605 1.134 jakllsch }
4606 1.134 jakllsch
4607 1.134 jakllsch offs = 0;
4608 1.134 jakllsch for (i = 0; i < xfer->ux_nframes; i++) {
4609 1.134 jakllsch len = xfer->ux_frlengths[i];
4610 1.134 jakllsch
4611 1.134 jakllsch tdpc = howmany(len, mps);
4612 1.134 jakllsch tbc = howmany(tdpc, maxb) - 1;
4613 1.134 jakllsch tlbpc = tdpc % maxb;
4614 1.134 jakllsch tlbpc = tlbpc ? tlbpc - 1 : maxb - 1;
4615 1.134 jakllsch
4616 1.134 jakllsch KASSERTMSG(len <= 0x10000, "len %d", len);
4617 1.134 jakllsch parameter = DMAADDR(dma, offs);
4618 1.134 jakllsch status = XHCI_TRB_2_IRQ_SET(0) |
4619 1.134 jakllsch XHCI_TRB_2_TDSZ_SET(0) |
4620 1.134 jakllsch XHCI_TRB_2_BYTES_SET(len);
4621 1.134 jakllsch control = XHCI_TRB_3_TYPE_SET(XHCI_TRB_TYPE_ISOCH) |
4622 1.134 jakllsch (isread ? XHCI_TRB_3_ISP_BIT : 0) |
4623 1.134 jakllsch XHCI_TRB_3_TBC_SET(tbc) |
4624 1.134 jakllsch XHCI_TRB_3_TLBPC_SET(tlbpc) |
4625 1.134 jakllsch XHCI_TRB_3_IOC_BIT;
4626 1.134 jakllsch if (XHCI_HCC_CFC(sc->sc_hcc)) {
4627 1.134 jakllsch control |= XHCI_TRB_3_FRID_SET(xpipe->xp_isoc_next);
4628 1.134 jakllsch #if 0
4629 1.134 jakllsch } else if (xpipe->xp_isoc_next == -1) {
4630 1.134 jakllsch control |= XHCI_TRB_3_FRID_SET(xpipe->xp_isoc_next);
4631 1.134 jakllsch #endif
4632 1.134 jakllsch } else {
4633 1.134 jakllsch control |= XHCI_TRB_3_ISO_SIA_BIT;
4634 1.134 jakllsch }
4635 1.134 jakllsch #if 0
4636 1.134 jakllsch if (i != xfer->ux_nframes - 1)
4637 1.134 jakllsch control |= XHCI_TRB_3_BEI_BIT;
4638 1.134 jakllsch #endif
4639 1.134 jakllsch xhci_xfer_put_trb(xx, i, parameter, status, control);
4640 1.134 jakllsch
4641 1.134 jakllsch xpipe->xp_isoc_next += ival;
4642 1.134 jakllsch offs += len;
4643 1.134 jakllsch }
4644 1.134 jakllsch
4645 1.134 jakllsch xx->xx_isoc_done = 0;
4646 1.134 jakllsch
4647 1.134 jakllsch if (!polling)
4648 1.134 jakllsch mutex_enter(&tr->xr_lock);
4649 1.134 jakllsch xhci_ring_put_xfer(sc, tr, xx, i);
4650 1.134 jakllsch if (!polling)
4651 1.134 jakllsch mutex_exit(&tr->xr_lock);
4652 1.134 jakllsch
4653 1.134 jakllsch xfer->ux_status = USBD_IN_PROGRESS;
4654 1.134 jakllsch xhci_db_write_4(sc, XHCI_DOORBELL(xs->xs_idx), dci);
4655 1.134 jakllsch usbd_xfer_schedule_timeout(xfer);
4656 1.134 jakllsch
4657 1.134 jakllsch return USBD_IN_PROGRESS;
4658 1.134 jakllsch }
4659 1.134 jakllsch
4660 1.134 jakllsch static void
4661 1.134 jakllsch xhci_device_isoc_abort(struct usbd_xfer *xfer)
4662 1.134 jakllsch {
4663 1.134 jakllsch XHCIHIST_FUNC(); XHCIHIST_CALLED();
4664 1.134 jakllsch
4665 1.134 jakllsch usbd_xfer_abort(xfer);
4666 1.134 jakllsch }
4667 1.134 jakllsch
4668 1.134 jakllsch static void
4669 1.134 jakllsch xhci_device_isoc_close(struct usbd_pipe *pipe)
4670 1.134 jakllsch {
4671 1.134 jakllsch XHCIHIST_FUNC(); XHCIHIST_CALLED();
4672 1.134 jakllsch
4673 1.134 jakllsch xhci_close_pipe(pipe);
4674 1.134 jakllsch }
4675 1.134 jakllsch
4676 1.134 jakllsch static void
4677 1.134 jakllsch xhci_device_isoc_done(struct usbd_xfer *xfer)
4678 1.134 jakllsch {
4679 1.134 jakllsch #ifdef USB_DEBUG
4680 1.134 jakllsch struct xhci_slot * const xs = xfer->ux_pipe->up_dev->ud_hcpriv;
4681 1.134 jakllsch const u_int dci = xhci_ep_get_dci(xfer->ux_pipe->up_endpoint->ue_edesc);
4682 1.134 jakllsch #endif
4683 1.134 jakllsch const bool isread = usbd_xfer_isread(xfer);
4684 1.134 jakllsch
4685 1.134 jakllsch XHCIHIST_FUNC();
4686 1.134 jakllsch XHCIHIST_CALLARGS("%#jx slot %ju dci %ju",
4687 1.134 jakllsch (uintptr_t)xfer, xs->xs_idx, dci, 0);
4688 1.134 jakllsch
4689 1.134 jakllsch usb_syncmem(&xfer->ux_dmabuf, 0, xfer->ux_length,
4690 1.134 jakllsch isread ? BUS_DMASYNC_POSTREAD : BUS_DMASYNC_POSTWRITE);
4691 1.134 jakllsch }
4692 1.134 jakllsch
4693 1.1 jakllsch /* ----------- */
4694 1.1 jakllsch /* device bulk */
4695 1.1 jakllsch
4696 1.1 jakllsch static usbd_status
4697 1.34 skrll xhci_device_bulk_transfer(struct usbd_xfer *xfer)
4698 1.1 jakllsch {
4699 1.27 skrll XHCIHIST_FUNC(); XHCIHIST_CALLED();
4700 1.27 skrll
4701 1.156 riastrad /* Pipe isn't running, so start it first. */
4702 1.34 skrll return xhci_device_bulk_start(SIMPLEQ_FIRST(&xfer->ux_pipe->up_queue));
4703 1.1 jakllsch }
4704 1.1 jakllsch
4705 1.1 jakllsch static usbd_status
4706 1.34 skrll xhci_device_bulk_start(struct usbd_xfer *xfer)
4707 1.1 jakllsch {
4708 1.34 skrll struct xhci_softc * const sc = XHCI_XFER2SC(xfer);
4709 1.34 skrll struct xhci_slot * const xs = xfer->ux_pipe->up_dev->ud_hcpriv;
4710 1.34 skrll const u_int dci = xhci_ep_get_dci(xfer->ux_pipe->up_endpoint->ue_edesc);
4711 1.123 skrll struct xhci_ring * const tr = xs->xs_xr[dci];
4712 1.35 skrll struct xhci_xfer * const xx = XHCI_XFER2XXFER(xfer);
4713 1.34 skrll const uint32_t len = xfer->ux_length;
4714 1.34 skrll usb_dma_t * const dma = &xfer->ux_dmabuf;
4715 1.1 jakllsch uint64_t parameter;
4716 1.1 jakllsch uint32_t status;
4717 1.1 jakllsch uint32_t control;
4718 1.1 jakllsch u_int i = 0;
4719 1.100 mrg const bool polling = xhci_polling_p(sc);
4720 1.1 jakllsch
4721 1.111 mrg XHCIHIST_FUNC();
4722 1.111 mrg XHCIHIST_CALLARGS("%#jx slot %ju dci %ju",
4723 1.111 mrg (uintptr_t)xfer, xs->xs_idx, dci, 0);
4724 1.1 jakllsch
4725 1.158 riastrad KASSERT(polling || mutex_owned(&sc->sc_lock));
4726 1.158 riastrad
4727 1.1 jakllsch if (sc->sc_dying)
4728 1.1 jakllsch return USBD_IOERROR;
4729 1.1 jakllsch
4730 1.34 skrll KASSERT((xfer->ux_rqflags & URQ_REQUEST) == 0);
4731 1.1 jakllsch
4732 1.155 riastrad if (tr->is_halted)
4733 1.155 riastrad goto out;
4734 1.155 riastrad
4735 1.1 jakllsch parameter = DMAADDR(dma, 0);
4736 1.124 skrll const bool isread = usbd_xfer_isread(xfer);
4737 1.124 skrll if (len)
4738 1.124 skrll usb_syncmem(dma, 0, len,
4739 1.124 skrll isread ? BUS_DMASYNC_PREREAD : BUS_DMASYNC_PREWRITE);
4740 1.124 skrll
4741 1.11 dsl /*
4742 1.13 dsl * XXX: (dsl) The physical buffer must not cross a 64k boundary.
4743 1.11 dsl * If the user supplied buffer crosses such a boundary then 2
4744 1.11 dsl * (or more) TRB should be used.
4745 1.11 dsl * If multiple TRB are used the td_size field must be set correctly.
4746 1.11 dsl * For v1.0 devices (like ivy bridge) this is the number of usb data
4747 1.11 dsl * blocks needed to complete the transfer.
4748 1.11 dsl * Setting it to 1 in the last TRB causes an extra zero-length
4749 1.11 dsl * data block be sent.
4750 1.11 dsl * The earlier documentation differs, I don't know how it behaves.
4751 1.11 dsl */
4752 1.59 maya KASSERTMSG(len <= 0x10000, "len %d", len);
4753 1.1 jakllsch status = XHCI_TRB_2_IRQ_SET(0) |
4754 1.113 mrg XHCI_TRB_2_TDSZ_SET(0) |
4755 1.1 jakllsch XHCI_TRB_2_BYTES_SET(len);
4756 1.1 jakllsch control = XHCI_TRB_3_TYPE_SET(XHCI_TRB_TYPE_NORMAL) |
4757 1.124 skrll (isread ? XHCI_TRB_3_ISP_BIT : 0) |
4758 1.63 skrll XHCI_TRB_3_IOC_BIT;
4759 1.127 jakllsch xhci_xfer_put_trb(xx, i++, parameter, status, control);
4760 1.1 jakllsch
4761 1.99 mrg if (!polling)
4762 1.99 mrg mutex_enter(&tr->xr_lock);
4763 1.127 jakllsch xhci_ring_put_xfer(sc, tr, xx, i);
4764 1.99 mrg if (!polling)
4765 1.99 mrg mutex_exit(&tr->xr_lock);
4766 1.1 jakllsch
4767 1.1 jakllsch xhci_db_write_4(sc, XHCI_DOORBELL(xs->xs_idx), dci);
4768 1.155 riastrad
4769 1.155 riastrad out: if (xfer->ux_status == USBD_NOT_STARTED) {
4770 1.155 riastrad xfer->ux_status = USBD_IN_PROGRESS;
4771 1.155 riastrad usbd_xfer_schedule_timeout(xfer);
4772 1.155 riastrad } else {
4773 1.155 riastrad /*
4774 1.155 riastrad * We must be coming from xhci_pipe_restart -- timeout
4775 1.155 riastrad * already set up, nothing to do.
4776 1.155 riastrad */
4777 1.155 riastrad }
4778 1.155 riastrad KASSERT(xfer->ux_status == USBD_IN_PROGRESS);
4779 1.34 skrll
4780 1.1 jakllsch return USBD_IN_PROGRESS;
4781 1.1 jakllsch }
4782 1.1 jakllsch
4783 1.1 jakllsch static void
4784 1.34 skrll xhci_device_bulk_done(struct usbd_xfer *xfer)
4785 1.1 jakllsch {
4786 1.27 skrll #ifdef USB_DEBUG
4787 1.34 skrll struct xhci_slot * const xs = xfer->ux_pipe->up_dev->ud_hcpriv;
4788 1.34 skrll const u_int dci = xhci_ep_get_dci(xfer->ux_pipe->up_endpoint->ue_edesc);
4789 1.27 skrll #endif
4790 1.124 skrll const bool isread = usbd_xfer_isread(xfer);
4791 1.1 jakllsch
4792 1.111 mrg XHCIHIST_FUNC();
4793 1.111 mrg XHCIHIST_CALLARGS("%#jx slot %ju dci %ju",
4794 1.111 mrg (uintptr_t)xfer, xs->xs_idx, dci, 0);
4795 1.1 jakllsch
4796 1.34 skrll usb_syncmem(&xfer->ux_dmabuf, 0, xfer->ux_length,
4797 1.1 jakllsch isread ? BUS_DMASYNC_POSTREAD : BUS_DMASYNC_POSTWRITE);
4798 1.1 jakllsch }
4799 1.1 jakllsch
4800 1.1 jakllsch static void
4801 1.34 skrll xhci_device_bulk_abort(struct usbd_xfer *xfer)
4802 1.1 jakllsch {
4803 1.27 skrll XHCIHIST_FUNC(); XHCIHIST_CALLED();
4804 1.34 skrll
4805 1.116 riastrad usbd_xfer_abort(xfer);
4806 1.1 jakllsch }
4807 1.1 jakllsch
4808 1.1 jakllsch static void
4809 1.34 skrll xhci_device_bulk_close(struct usbd_pipe *pipe)
4810 1.1 jakllsch {
4811 1.27 skrll XHCIHIST_FUNC(); XHCIHIST_CALLED();
4812 1.34 skrll
4813 1.34 skrll xhci_close_pipe(pipe);
4814 1.1 jakllsch }
4815 1.1 jakllsch
4816 1.34 skrll /* ---------------- */
4817 1.34 skrll /* device interrupt */
4818 1.1 jakllsch
4819 1.1 jakllsch static usbd_status
4820 1.34 skrll xhci_device_intr_transfer(struct usbd_xfer *xfer)
4821 1.1 jakllsch {
4822 1.27 skrll XHCIHIST_FUNC(); XHCIHIST_CALLED();
4823 1.27 skrll
4824 1.156 riastrad /* Pipe isn't running, so start it first. */
4825 1.34 skrll return xhci_device_intr_start(SIMPLEQ_FIRST(&xfer->ux_pipe->up_queue));
4826 1.1 jakllsch }
4827 1.1 jakllsch
4828 1.1 jakllsch static usbd_status
4829 1.34 skrll xhci_device_intr_start(struct usbd_xfer *xfer)
4830 1.1 jakllsch {
4831 1.34 skrll struct xhci_softc * const sc = XHCI_XFER2SC(xfer);
4832 1.34 skrll struct xhci_slot * const xs = xfer->ux_pipe->up_dev->ud_hcpriv;
4833 1.34 skrll const u_int dci = xhci_ep_get_dci(xfer->ux_pipe->up_endpoint->ue_edesc);
4834 1.123 skrll struct xhci_ring * const tr = xs->xs_xr[dci];
4835 1.35 skrll struct xhci_xfer * const xx = XHCI_XFER2XXFER(xfer);
4836 1.34 skrll const uint32_t len = xfer->ux_length;
4837 1.94 christos const bool polling = xhci_polling_p(sc);
4838 1.34 skrll usb_dma_t * const dma = &xfer->ux_dmabuf;
4839 1.1 jakllsch uint64_t parameter;
4840 1.1 jakllsch uint32_t status;
4841 1.1 jakllsch uint32_t control;
4842 1.1 jakllsch u_int i = 0;
4843 1.1 jakllsch
4844 1.111 mrg XHCIHIST_FUNC();
4845 1.111 mrg XHCIHIST_CALLARGS("%#jx slot %ju dci %ju",
4846 1.111 mrg (uintptr_t)xfer, xs->xs_idx, dci, 0);
4847 1.1 jakllsch
4848 1.158 riastrad KASSERT(polling || mutex_owned(&sc->sc_lock));
4849 1.158 riastrad
4850 1.1 jakllsch if (sc->sc_dying)
4851 1.1 jakllsch return USBD_IOERROR;
4852 1.1 jakllsch
4853 1.155 riastrad if (tr->is_halted)
4854 1.155 riastrad goto out;
4855 1.155 riastrad
4856 1.34 skrll KASSERT((xfer->ux_rqflags & URQ_REQUEST) == 0);
4857 1.1 jakllsch
4858 1.124 skrll const bool isread = usbd_xfer_isread(xfer);
4859 1.124 skrll if (len)
4860 1.124 skrll usb_syncmem(dma, 0, len,
4861 1.124 skrll isread ? BUS_DMASYNC_PREREAD : BUS_DMASYNC_PREWRITE);
4862 1.124 skrll
4863 1.1 jakllsch parameter = DMAADDR(dma, 0);
4864 1.59 maya KASSERTMSG(len <= 0x10000, "len %d", len);
4865 1.1 jakllsch status = XHCI_TRB_2_IRQ_SET(0) |
4866 1.113 mrg XHCI_TRB_2_TDSZ_SET(0) |
4867 1.1 jakllsch XHCI_TRB_2_BYTES_SET(len);
4868 1.1 jakllsch control = XHCI_TRB_3_TYPE_SET(XHCI_TRB_TYPE_NORMAL) |
4869 1.124 skrll (isread ? XHCI_TRB_3_ISP_BIT : 0) | XHCI_TRB_3_IOC_BIT;
4870 1.127 jakllsch xhci_xfer_put_trb(xx, i++, parameter, status, control);
4871 1.1 jakllsch
4872 1.94 christos if (!polling)
4873 1.94 christos mutex_enter(&tr->xr_lock);
4874 1.127 jakllsch xhci_ring_put_xfer(sc, tr, xx, i);
4875 1.94 christos if (!polling)
4876 1.94 christos mutex_exit(&tr->xr_lock);
4877 1.1 jakllsch
4878 1.1 jakllsch xhci_db_write_4(sc, XHCI_DOORBELL(xs->xs_idx), dci);
4879 1.155 riastrad
4880 1.155 riastrad out: if (xfer->ux_status == USBD_NOT_STARTED) {
4881 1.155 riastrad xfer->ux_status = USBD_IN_PROGRESS;
4882 1.155 riastrad usbd_xfer_schedule_timeout(xfer);
4883 1.155 riastrad } else {
4884 1.155 riastrad /*
4885 1.155 riastrad * We must be coming from xhci_pipe_restart -- timeout
4886 1.155 riastrad * already set up, nothing to do.
4887 1.155 riastrad */
4888 1.155 riastrad }
4889 1.155 riastrad KASSERT(xfer->ux_status == USBD_IN_PROGRESS);
4890 1.34 skrll
4891 1.1 jakllsch return USBD_IN_PROGRESS;
4892 1.1 jakllsch }
4893 1.1 jakllsch
4894 1.1 jakllsch static void
4895 1.34 skrll xhci_device_intr_done(struct usbd_xfer *xfer)
4896 1.1 jakllsch {
4897 1.34 skrll struct xhci_softc * const sc __diagused = XHCI_XFER2SC(xfer);
4898 1.27 skrll #ifdef USB_DEBUG
4899 1.34 skrll struct xhci_slot * const xs = xfer->ux_pipe->up_dev->ud_hcpriv;
4900 1.34 skrll const u_int dci = xhci_ep_get_dci(xfer->ux_pipe->up_endpoint->ue_edesc);
4901 1.19 ozaki #endif
4902 1.124 skrll const bool isread = usbd_xfer_isread(xfer);
4903 1.1 jakllsch
4904 1.111 mrg XHCIHIST_FUNC();
4905 1.111 mrg XHCIHIST_CALLARGS("%#jx slot %ju dci %ju",
4906 1.111 mrg (uintptr_t)xfer, xs->xs_idx, dci, 0);
4907 1.1 jakllsch
4908 1.73 skrll KASSERT(xhci_polling_p(sc) || mutex_owned(&sc->sc_lock));
4909 1.1 jakllsch
4910 1.34 skrll usb_syncmem(&xfer->ux_dmabuf, 0, xfer->ux_length,
4911 1.1 jakllsch isread ? BUS_DMASYNC_POSTREAD : BUS_DMASYNC_POSTWRITE);
4912 1.1 jakllsch }
4913 1.1 jakllsch
4914 1.1 jakllsch static void
4915 1.34 skrll xhci_device_intr_abort(struct usbd_xfer *xfer)
4916 1.1 jakllsch {
4917 1.34 skrll struct xhci_softc * const sc __diagused = XHCI_XFER2SC(xfer);
4918 1.27 skrll
4919 1.111 mrg XHCIHIST_FUNC();
4920 1.111 mrg XHCIHIST_CALLARGS("%#jx", (uintptr_t)xfer, 0, 0, 0);
4921 1.10 skrll
4922 1.10 skrll KASSERT(mutex_owned(&sc->sc_lock));
4923 1.116 riastrad usbd_xfer_abort(xfer);
4924 1.1 jakllsch }
4925 1.1 jakllsch
4926 1.1 jakllsch static void
4927 1.34 skrll xhci_device_intr_close(struct usbd_pipe *pipe)
4928 1.1 jakllsch {
4929 1.34 skrll //struct xhci_softc * const sc = XHCI_PIPE2SC(pipe);
4930 1.27 skrll
4931 1.111 mrg XHCIHIST_FUNC();
4932 1.111 mrg XHCIHIST_CALLARGS("%#jx", (uintptr_t)pipe, 0, 0, 0);
4933 1.27 skrll
4934 1.34 skrll xhci_close_pipe(pipe);
4935 1.1 jakllsch }
4936