imxusb.c revision 1.6.2.1 1 1.6.2.1 snj /* $NetBSD: imxusb.c,v 1.6.2.1 2017/04/05 19:54:16 snj Exp $ */
2 1.1 bsh /*
3 1.1 bsh * Copyright (c) 2009, 2010 Genetec Corporation. All rights reserved.
4 1.1 bsh * Written by Hashimoto Kenichi and Hiroyuki Bessho for Genetec Corporation.
5 1.1 bsh *
6 1.1 bsh * Redistribution and use in source and binary forms, with or without
7 1.1 bsh * modification, are permitted provided that the following conditions
8 1.1 bsh * are met:
9 1.1 bsh * 1. Redistributions of source code must retain the above copyright
10 1.1 bsh * notice, this list of conditions and the following disclaimer.
11 1.1 bsh * 2. Redistributions in binary form must reproduce the above copyright
12 1.1 bsh * notice, this list of conditions and the following disclaimer in the
13 1.1 bsh * documentation and/or other materials provided with the distribution.
14 1.1 bsh *
15 1.1 bsh * THIS SOFTWARE IS PROVIDED BY GENETEC CORPORATION ``AS IS'' AND
16 1.1 bsh * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
17 1.1 bsh * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
18 1.1 bsh * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL GENETEC CORPORATION
19 1.1 bsh * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
20 1.1 bsh * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
21 1.1 bsh * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
22 1.1 bsh * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
23 1.1 bsh * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
24 1.1 bsh * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
25 1.1 bsh * POSSIBILITY OF SUCH DAMAGE.
26 1.1 bsh */
27 1.1 bsh #include <sys/cdefs.h>
28 1.6.2.1 snj __KERNEL_RCSID(0, "$NetBSD: imxusb.c,v 1.6.2.1 2017/04/05 19:54:16 snj Exp $");
29 1.6 hkenken
30 1.6 hkenken #include "opt_imx.h"
31 1.1 bsh
32 1.1 bsh #include <sys/param.h>
33 1.1 bsh #include <sys/systm.h>
34 1.1 bsh #include <sys/conf.h>
35 1.1 bsh #include <sys/kernel.h>
36 1.1 bsh #include <sys/device.h>
37 1.1 bsh #include <sys/intr.h>
38 1.1 bsh #include <sys/bus.h>
39 1.1 bsh
40 1.1 bsh #include <dev/usb/usb.h>
41 1.1 bsh #include <dev/usb/usbdi.h>
42 1.1 bsh #include <dev/usb/usbdivar.h>
43 1.1 bsh #include <dev/usb/usb_mem.h>
44 1.1 bsh
45 1.1 bsh #include <dev/usb/ehcireg.h>
46 1.1 bsh #include <dev/usb/ehcivar.h>
47 1.1 bsh
48 1.5 matt #include <arm/pic/picvar.h> /* XXX: for intr_establish! */
49 1.5 matt
50 1.1 bsh #include <arm/imx/imxusbreg.h>
51 1.1 bsh #include <arm/imx/imxusbvar.h>
52 1.1 bsh #include <arm/imx/imxgpiovar.h>
53 1.1 bsh #include "locators.h"
54 1.1 bsh
55 1.1 bsh #include <dev/usb/ulpireg.h> /* for test */
56 1.1 bsh
57 1.1 bsh static int imxehci_match(device_t, cfdata_t, void *);
58 1.1 bsh static void imxehci_attach(device_t, device_t, void *);
59 1.1 bsh
60 1.1 bsh uint8_t imxusb_ulpi_read(struct imxehci_softc *sc, int addr);
61 1.1 bsh void imxusb_ulpi_write(struct imxehci_softc *sc, int addr, uint8_t data);
62 1.1 bsh static void ulpi_reset(struct imxehci_softc *sc);
63 1.1 bsh
64 1.6.2.1 snj void imxehci_select_interface(struct imxehci_softc *, enum imx_usb_if);
65 1.6.2.1 snj static void imxehci_init(struct ehci_softc *);
66 1.1 bsh
67 1.1 bsh /* attach structures */
68 1.1 bsh CFATTACH_DECL_NEW(imxehci, sizeof(struct imxehci_softc),
69 1.1 bsh imxehci_match, imxehci_attach, NULL, NULL);
70 1.1 bsh
71 1.1 bsh static int
72 1.1 bsh imxehci_match(device_t parent, cfdata_t cf, void *aux)
73 1.1 bsh {
74 1.1 bsh struct imxusbc_attach_args *aa = aux;
75 1.1 bsh
76 1.1 bsh if (aa->aa_unit < 0 || 3 < aa->aa_unit) {
77 1.1 bsh return 0;
78 1.1 bsh }
79 1.1 bsh
80 1.1 bsh return 1;
81 1.1 bsh }
82 1.1 bsh
83 1.1 bsh static void
84 1.1 bsh imxehci_attach(device_t parent, device_t self, void *aux)
85 1.1 bsh {
86 1.1 bsh struct imxusbc_attach_args *aa = aux;
87 1.1 bsh struct imxusbc_softc *usbc = device_private(parent);
88 1.1 bsh struct imxehci_softc *sc = device_private(self);
89 1.1 bsh ehci_softc_t *hsc = &sc->sc_hsc;
90 1.1 bsh bus_space_tag_t iot;
91 1.1 bsh uint16_t hcirev;
92 1.1 bsh uint32_t id, hwhost, hwdevice;
93 1.1 bsh const char *comma;
94 1.1 bsh
95 1.1 bsh sc->sc_hsc.sc_dev = self;
96 1.1 bsh iot = sc->sc_iot = sc->sc_hsc.iot = aa->aa_iot;
97 1.1 bsh sc->sc_unit = aa->aa_unit;
98 1.1 bsh sc->sc_usbc = usbc;
99 1.6.2.1 snj hsc->sc_bus.ub_hcpriv = sc;
100 1.4 matt hsc->sc_flags |= EHCIF_ETTF;
101 1.6.2.1 snj hsc->sc_vendor_init = imxehci_init;
102 1.1 bsh
103 1.1 bsh aprint_normal("\n");
104 1.1 bsh
105 1.1 bsh /* per unit registers */
106 1.1 bsh if (bus_space_subregion(iot, aa->aa_ioh,
107 1.1 bsh aa->aa_unit * IMXUSB_EHCI_SIZE, IMXUSB_EHCI_SIZE,
108 1.1 bsh &sc->sc_ioh) ||
109 1.1 bsh bus_space_subregion(iot, aa->aa_ioh,
110 1.1 bsh aa->aa_unit * IMXUSB_EHCI_SIZE + IMXUSB_EHCIREGS,
111 1.1 bsh IMXUSB_EHCI_SIZE - IMXUSB_EHCIREGS,
112 1.1 bsh &sc->sc_hsc.ioh)) {
113 1.1 bsh
114 1.1 bsh aprint_error_dev(self, "can't subregion\n");
115 1.1 bsh return;
116 1.1 bsh }
117 1.1 bsh
118 1.1 bsh id = bus_space_read_4(iot, sc->sc_ioh, IMXUSB_ID);
119 1.1 bsh hcirev = bus_space_read_2(iot, sc->sc_hsc.ioh, EHCI_HCIVERSION);
120 1.1 bsh
121 1.1 bsh aprint_normal_dev(self,
122 1.1 bsh "i.MX USB Controller id=%d revision=%d HCI revision=0x%x\n",
123 1.6 hkenken (int)__SHIFTOUT(id, IMXUSB_ID_ID),
124 1.6 hkenken (int)__SHIFTOUT(id, IMXUSB_ID_REVISION),
125 1.1 bsh hcirev);
126 1.1 bsh
127 1.1 bsh hwhost = bus_space_read_4(iot, sc->sc_ioh, IMXUSB_HWHOST);
128 1.1 bsh hwdevice = bus_space_read_4(iot, sc->sc_ioh, IMXUSB_HWDEVICE);
129 1.1 bsh
130 1.1 bsh aprint_normal_dev(self, "");
131 1.1 bsh
132 1.1 bsh comma = "";
133 1.1 bsh if (hwhost & HWHOST_HC) {
134 1.6 hkenken int n_ports = 1 + __SHIFTOUT(hwhost, HWHOST_NPORT);
135 1.1 bsh aprint_normal("%d host port%s",
136 1.1 bsh n_ports, n_ports > 1 ? "s" : "");
137 1.1 bsh comma = ", ";
138 1.1 bsh }
139 1.1 bsh
140 1.1 bsh if (hwdevice & HWDEVICE_DC) {
141 1.6 hkenken int n_endpoints = __SHIFTOUT(hwdevice, HWDEVICE_DEVEP);
142 1.1 bsh aprint_normal("%sdevice capable, %d endpoint%s",
143 1.1 bsh comma,
144 1.1 bsh n_endpoints, n_endpoints > 1 ? "s" : "");
145 1.1 bsh }
146 1.1 bsh aprint_normal("\n");
147 1.1 bsh
148 1.6.2.1 snj sc->sc_hsc.sc_bus.ub_dmatag = aa->aa_dmat;
149 1.1 bsh
150 1.1 bsh sc->sc_hsc.sc_offs = bus_space_read_1(iot, sc->sc_hsc.ioh,
151 1.1 bsh EHCI_CAPLENGTH);
152 1.1 bsh
153 1.1 bsh /* Platform dependent setup */
154 1.1 bsh if (usbc->sc_init_md_hook)
155 1.1 bsh usbc->sc_init_md_hook(sc);
156 1.1 bsh
157 1.1 bsh
158 1.1 bsh imxehci_reset(sc);
159 1.1 bsh imxehci_select_interface(sc, sc->sc_iftype);
160 1.1 bsh
161 1.1 bsh if (sc->sc_iftype == IMXUSBC_IF_ULPI) {
162 1.1 bsh bus_space_write_4(sc->sc_iot, sc->sc_ioh, IMXUSB_ULPIVIEW, 0);
163 1.1 bsh
164 1.1 bsh aprint_normal_dev(hsc->sc_dev,
165 1.1 bsh "ULPI phy VID 0x%04x PID 0x%04x\n",
166 1.1 bsh (imxusb_ulpi_read(sc, ULPI_VENDOR_ID_LOW) |
167 1.1 bsh imxusb_ulpi_read(sc, ULPI_VENDOR_ID_HIGH) << 8),
168 1.1 bsh (imxusb_ulpi_read(sc, ULPI_PRODUCT_ID_LOW) |
169 1.1 bsh imxusb_ulpi_read(sc, ULPI_PRODUCT_ID_HIGH) << 8));
170 1.1 bsh
171 1.1 bsh ulpi_reset(sc);
172 1.1 bsh
173 1.1 bsh }
174 1.1 bsh
175 1.1 bsh if (usbc->sc_setup_md_hook)
176 1.1 bsh usbc->sc_setup_md_hook(sc, IMXUSB_HOST);
177 1.6 hkenken
178 1.6 hkenken if (sc->sc_iftype == IMXUSBC_IF_ULPI) {
179 1.6 hkenken #if 0
180 1.6.2.1 snj if(hsc->sc_bus.ub_revision == USBREV_2_0)
181 1.6 hkenken ulpi_write(hsc, ULPI_FUNCTION_CONTROL + ULPI_REG_CLEAR, (1 << 0));
182 1.6 hkenken else
183 1.6 hkenken ulpi_write(hsc, ULPI_FUNCTION_CONTROL + ULPI_REG_SET, (1 << 2));
184 1.6 hkenken #endif
185 1.6 hkenken
186 1.1 bsh imxusb_ulpi_write(sc, ULPI_FUNCTION_CONTROL + ULPI_REG_CLEAR,
187 1.1 bsh OTG_CONTROL_IDPULLUP);
188 1.1 bsh
189 1.1 bsh imxusb_ulpi_write(sc, ULPI_OTG_CONTROL + ULPI_REG_SET,
190 1.1 bsh OTG_CONTROL_USEEXTVBUSIND |
191 1.1 bsh OTG_CONTROL_DRVVBUSEXT |
192 1.1 bsh OTG_CONTROL_DRVVBUS |
193 1.1 bsh OTG_CONTROL_CHRGVBUS
194 1.1 bsh );
195 1.1 bsh }
196 1.1 bsh
197 1.1 bsh /* Disable interrupts, so we don't get any spurious ones. */
198 1.2 matt EOWRITE4(hsc, EHCI_USBINTR, 0);
199 1.1 bsh
200 1.1 bsh intr_establish(aa->aa_irq, IPL_USB, IST_LEVEL, ehci_intr, hsc);
201 1.1 bsh
202 1.1 bsh /* Figure out vendor for root hub descriptor. */
203 1.1 bsh strlcpy(hsc->sc_vendor, "i.MX", sizeof(hsc->sc_vendor));
204 1.1 bsh
205 1.6.2.1 snj int err = ehci_init(hsc);
206 1.6.2.1 snj if (err) {
207 1.6.2.1 snj aprint_error_dev(self, "init failed, error=%d\n", err);
208 1.1 bsh return;
209 1.1 bsh }
210 1.1 bsh
211 1.1 bsh /* Attach usb device. */
212 1.1 bsh hsc->sc_child = config_found(self, &hsc->sc_bus, usbctlprint);
213 1.1 bsh }
214 1.1 bsh
215 1.1 bsh
216 1.1 bsh
217 1.1 bsh
218 1.1 bsh void
219 1.1 bsh imxehci_select_interface(struct imxehci_softc *sc, enum imx_usb_if interface)
220 1.1 bsh {
221 1.1 bsh uint32_t reg;
222 1.1 bsh struct ehci_softc *hsc = &sc->sc_hsc;
223 1.1 bsh
224 1.1 bsh reg = EOREAD4(hsc, EHCI_PORTSC(1));
225 1.6 hkenken reg &= ~(PORTSC_PTS | PORTSC_PTW);
226 1.6 hkenken switch (interface) {
227 1.6 hkenken case IMXUSBC_IF_UTMI_WIDE:
228 1.6 hkenken reg |= PORTSC_PTW_16;
229 1.6 hkenken case IMXUSBC_IF_UTMI:
230 1.6 hkenken reg |= PORTSC_PTS_UTMI;
231 1.6 hkenken break;
232 1.6 hkenken case IMXUSBC_IF_PHILIPS:
233 1.6 hkenken reg |= PORTSC_PTS_PHILIPS;
234 1.6 hkenken break;
235 1.6 hkenken case IMXUSBC_IF_ULPI:
236 1.6 hkenken reg |= PORTSC_PTS_ULPI;
237 1.6 hkenken break;
238 1.6 hkenken case IMXUSBC_IF_SERIAL:
239 1.6 hkenken reg |= PORTSC_PTS_SERIAL;
240 1.6 hkenken break;
241 1.6 hkenken }
242 1.1 bsh EOWRITE4(hsc, EHCI_PORTSC(1), reg);
243 1.1 bsh }
244 1.1 bsh
245 1.1 bsh
246 1.1 bsh static uint32_t
247 1.1 bsh ulpi_wakeup(struct imxehci_softc *sc, int tout)
248 1.1 bsh {
249 1.1 bsh uint32_t ulpi_view;
250 1.1 bsh int i = 0;
251 1.1 bsh ulpi_view = bus_space_read_4(sc->sc_iot, sc->sc_ioh, IMXUSB_ULPIVIEW);
252 1.1 bsh
253 1.1 bsh if ( !(ulpi_view & ULPI_SS) ) {
254 1.1 bsh bus_space_write_4(sc->sc_iot, sc->sc_ioh,
255 1.1 bsh IMXUSB_ULPIVIEW, ULPI_WU);
256 1.1 bsh for (i = 0; (tout < 0) || (i < tout); i++) {
257 1.1 bsh ulpi_view = bus_space_read_4(sc->sc_iot,
258 1.1 bsh sc->sc_ioh, IMXUSB_ULPIVIEW);
259 1.1 bsh if ( !(ulpi_view & ULPI_WU) )
260 1.1 bsh break;
261 1.1 bsh delay(1);
262 1.1 bsh };
263 1.1 bsh }
264 1.1 bsh
265 1.1 bsh if ((tout > 0) && (i >= tout)) {
266 1.1 bsh aprint_error_dev(sc->sc_hsc.sc_dev, "%s: timeout\n", __func__);
267 1.1 bsh }
268 1.1 bsh
269 1.1 bsh return ulpi_view;
270 1.1 bsh }
271 1.1 bsh
272 1.1 bsh static uint32_t
273 1.1 bsh ulpi_wait(struct imxehci_softc *sc, int tout)
274 1.1 bsh {
275 1.1 bsh uint32_t ulpi_view;
276 1.1 bsh int i;
277 1.1 bsh ulpi_view = bus_space_read_4(sc->sc_iot, sc->sc_ioh, IMXUSB_ULPIVIEW);
278 1.1 bsh
279 1.1 bsh for (i = 0; (tout < 0) | (i < tout); i++) {
280 1.1 bsh ulpi_view = bus_space_read_4(sc->sc_iot, sc->sc_ioh,
281 1.1 bsh IMXUSB_ULPIVIEW);
282 1.1 bsh if (!(ulpi_view & ULPI_RUN))
283 1.1 bsh break;
284 1.1 bsh delay(1);
285 1.1 bsh }
286 1.1 bsh
287 1.1 bsh if ((tout > 0) && (i >= tout)) {
288 1.1 bsh aprint_error_dev(sc->sc_hsc.sc_dev, "%s: timeout\n", __func__);
289 1.1 bsh }
290 1.1 bsh
291 1.1 bsh return ulpi_view;
292 1.1 bsh }
293 1.1 bsh
294 1.1 bsh #define TIMEOUT 100000
295 1.1 bsh
296 1.1 bsh uint8_t
297 1.1 bsh imxusb_ulpi_read(struct imxehci_softc *sc, int addr)
298 1.1 bsh {
299 1.1 bsh uint32_t data;
300 1.1 bsh
301 1.1 bsh ulpi_wakeup(sc, TIMEOUT);
302 1.1 bsh
303 1.6 hkenken data = ULPI_RUN | __SHIFTIN(addr, ULPI_ADDR);
304 1.1 bsh bus_space_write_4(sc->sc_iot, sc->sc_ioh, IMXUSB_ULPIVIEW, data);
305 1.1 bsh
306 1.1 bsh data = ulpi_wait(sc, TIMEOUT);
307 1.1 bsh
308 1.6 hkenken return __SHIFTOUT(data, ULPI_DATRD);
309 1.1 bsh }
310 1.1 bsh
311 1.1 bsh void
312 1.1 bsh imxusb_ulpi_write(struct imxehci_softc *sc, int addr, uint8_t data)
313 1.1 bsh {
314 1.1 bsh uint32_t reg;
315 1.1 bsh
316 1.1 bsh ulpi_wakeup(sc, TIMEOUT);
317 1.1 bsh
318 1.6 hkenken reg = ULPI_RUN | ULPI_RW | __SHIFTIN(addr, ULPI_ADDR) | __SHIFTIN(data, ULPI_DATWR);
319 1.1 bsh bus_space_write_4(sc->sc_iot, sc->sc_ioh, IMXUSB_ULPIVIEW, reg);
320 1.1 bsh
321 1.1 bsh ulpi_wait(sc, TIMEOUT);
322 1.1 bsh
323 1.1 bsh return;
324 1.1 bsh }
325 1.1 bsh
326 1.1 bsh #if 0
327 1.1 bsh static int
328 1.1 bsh ulpi_scratch_test(struct imxehci_softc *sc)
329 1.1 bsh {
330 1.1 bsh uint32_t ulpi_view;
331 1.1 bsh
332 1.1 bsh ulpi_view = ulpi_wakeup(sc, 1000);
333 1.1 bsh if (ulpi_view & ULPI_WU) {
334 1.1 bsh return -1;
335 1.1 bsh }
336 1.1 bsh
337 1.1 bsh bus_space_write_4(sc->sc_iot, sc->sc_ioh, IMXUSB_ULPIVIEW,
338 1.1 bsh (ULPI_RUN | ULPI_RW |
339 1.1 bsh (ULPI_SCRATCH << ULPI_ADDR_SHIFT) | 0xAA));
340 1.1 bsh
341 1.1 bsh ulpi_view = ulpi_wait(sc, 1000);
342 1.1 bsh
343 1.1 bsh if (ulpi_view & ULPI_RUN) {
344 1.1 bsh return -1;
345 1.1 bsh }
346 1.1 bsh
347 1.1 bsh return 0;
348 1.1 bsh }
349 1.1 bsh #endif
350 1.1 bsh
351 1.1 bsh static void
352 1.1 bsh ulpi_reset(struct imxehci_softc *sc)
353 1.1 bsh {
354 1.1 bsh uint8_t data;
355 1.1 bsh int timo = 1000 * 1000; /* XXXX: 1sec */
356 1.1 bsh
357 1.1 bsh imxusb_ulpi_write(sc, ULPI_FUNCTION_CONTROL + ULPI_REG_SET,
358 1.1 bsh FUNCTION_CONTROL_RESET /*0x20*/);
359 1.1 bsh do {
360 1.1 bsh data = imxusb_ulpi_read(sc, ULPI_FUNCTION_CONTROL);
361 1.1 bsh if (!(data & FUNCTION_CONTROL_RESET))
362 1.1 bsh break;
363 1.1 bsh delay(100);
364 1.1 bsh timo -= 100;
365 1.1 bsh } while (timo > 0);
366 1.1 bsh if (timo <= 0) {
367 1.1 bsh aprint_error_dev(sc->sc_hsc.sc_dev, "%s: reset failed!!\n",
368 1.1 bsh __func__);
369 1.1 bsh return;
370 1.1 bsh }
371 1.1 bsh
372 1.1 bsh return;
373 1.1 bsh }
374 1.1 bsh
375 1.1 bsh void
376 1.1 bsh imxehci_reset(struct imxehci_softc *sc)
377 1.1 bsh {
378 1.3 skrll uint32_t reg;
379 1.1 bsh int i;
380 1.1 bsh struct ehci_softc *hsc = &sc->sc_hsc;
381 1.1 bsh #define RESET_TIMEOUT 100
382 1.1 bsh
383 1.1 bsh reg = EOREAD4(hsc, EHCI_USBCMD);
384 1.1 bsh reg &= ~EHCI_CMD_RS;
385 1.1 bsh EOWRITE4(hsc, EHCI_USBCMD, reg);
386 1.1 bsh
387 1.1 bsh for (i=0; i < RESET_TIMEOUT; ++i) {
388 1.1 bsh reg = EOREAD4(hsc, EHCI_USBCMD);
389 1.1 bsh if ((reg & EHCI_CMD_RS) == 0)
390 1.1 bsh break;
391 1.1 bsh usb_delay_ms(&hsc->sc_bus, 1);
392 1.1 bsh }
393 1.1 bsh
394 1.1 bsh EOWRITE4(hsc, EHCI_USBCMD, reg | EHCI_CMD_HCRESET);
395 1.1 bsh for (i = 0; i < RESET_TIMEOUT; i++) {
396 1.1 bsh reg = EOREAD4(hsc, EHCI_USBCMD);
397 1.1 bsh if ((reg & EHCI_CMD_HCRESET) == 0)
398 1.1 bsh break;
399 1.1 bsh usb_delay_ms(&hsc->sc_bus, 1);
400 1.1 bsh }
401 1.1 bsh if (i >= RESET_TIMEOUT) {
402 1.1 bsh aprint_error_dev(hsc->sc_dev, "reset timeout (%x)\n", reg);
403 1.1 bsh }
404 1.1 bsh
405 1.1 bsh usb_delay_ms(&hsc->sc_bus, 100);
406 1.1 bsh }
407 1.1 bsh
408 1.6.2.1 snj static void
409 1.6.2.1 snj imxehci_init(struct ehci_softc *hsc)
410 1.1 bsh {
411 1.6.2.1 snj struct imxehci_softc *sc = device_private(hsc->sc_dev);
412 1.1 bsh uint32_t reg;
413 1.1 bsh
414 1.1 bsh reg = EOREAD4(hsc, EHCI_PORTSC(1));
415 1.1 bsh reg &= ~(EHCI_PS_CSC | EHCI_PS_PEC | EHCI_PS_OCC);
416 1.1 bsh reg |= EHCI_PS_PP | EHCI_PS_PE;
417 1.1 bsh EOWRITE4(hsc, EHCI_PORTSC(1), reg);
418 1.1 bsh
419 1.1 bsh reg = bus_space_read_4(sc->sc_iot, sc->sc_ioh, IMXUSB_OTGSC);
420 1.1 bsh reg |= OTGSC_IDPU;
421 1.5 matt /* disable IDIE not to conflict with SSP1_DETECT. */
422 1.5 matt //reg |= OTGSC_DPIE | OTGSC_IDIE;
423 1.5 matt reg |= OTGSC_DPIE;
424 1.1 bsh bus_space_write_4(sc->sc_iot, sc->sc_ioh, IMXUSB_OTGSC, reg);
425 1.1 bsh
426 1.6.2.1 snj reg = bus_space_read_4(sc->sc_iot, sc->sc_ioh, IMXUSB_USBMODE);
427 1.6.2.1 snj reg &= ~USBMODE_CM;
428 1.6 hkenken reg |= USBMODE_CM_HOST;
429 1.6.2.1 snj bus_space_write_4(sc->sc_iot, sc->sc_ioh, IMXUSB_USBMODE, reg);
430 1.1 bsh }
431