umcs.c revision 1.3 1 1.3 martin /* $NetBSD: umcs.c,v 1.3 2014/03/17 19:59:42 martin Exp $ */
2 1.1 martin /* $FreeBSD: head/sys/dev/usb/serial/umcs.c 260559 2014-01-12 11:44:28Z hselasky $ */
3 1.1 martin
4 1.1 martin /*-
5 1.1 martin * Copyright (c) 2010 Lev Serebryakov <lev (at) FreeBSD.org>.
6 1.1 martin * All rights reserved.
7 1.1 martin *
8 1.1 martin * Redistribution and use in source and binary forms, with or without
9 1.1 martin * modification, are permitted provided that the following conditions
10 1.1 martin * are met:
11 1.1 martin * 1. Redistributions of source code must retain the above copyright
12 1.1 martin * notice, this list of conditions and the following disclaimer.
13 1.1 martin * 2. Redistributions in binary form must reproduce the above copyright
14 1.1 martin * notice, this list of conditions and the following disclaimer in the
15 1.1 martin * documentation and/or other materials provided with the distribution.
16 1.1 martin *
17 1.1 martin * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
18 1.1 martin * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
19 1.1 martin * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
20 1.1 martin * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
21 1.1 martin * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
22 1.1 martin * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
23 1.1 martin * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
24 1.1 martin * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
25 1.1 martin * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
26 1.1 martin * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
27 1.1 martin * SUCH DAMAGE.
28 1.1 martin */
29 1.1 martin
30 1.1 martin /*
31 1.1 martin * This driver supports several multiport USB-to-RS232 serial adapters driven
32 1.1 martin * by MosChip mos7820 and mos7840, bridge chips.
33 1.1 martin * The adapters are sold under many different brand names.
34 1.1 martin *
35 1.1 martin * Datasheets are available at MosChip www site at
36 1.1 martin * http://www.moschip.com. The datasheets don't contain full
37 1.1 martin * programming information for the chip.
38 1.1 martin *
39 1.1 martin * It is nornal to have only two enabled ports in devices, based on
40 1.1 martin * quad-port mos7840.
41 1.1 martin *
42 1.1 martin */
43 1.1 martin #include <sys/cdefs.h>
44 1.3 martin __KERNEL_RCSID(0, "$NetBSD: umcs.c,v 1.3 2014/03/17 19:59:42 martin Exp $");
45 1.1 martin
46 1.1 martin #include <sys/param.h>
47 1.1 martin #include <sys/systm.h>
48 1.1 martin #include <sys/atomic.h>
49 1.1 martin #include <sys/kernel.h>
50 1.1 martin #include <sys/conf.h>
51 1.1 martin #include <sys/tty.h>
52 1.1 martin #include <sys/device.h>
53 1.3 martin #include <sys/kmem.h>
54 1.1 martin #include <sys/workqueue.h>
55 1.1 martin
56 1.1 martin #include <dev/usb/usb.h>
57 1.1 martin #include <dev/usb/usbdi.h>
58 1.1 martin #include <dev/usb/usbdi_util.h>
59 1.1 martin #include <dev/usb/usbdevs.h>
60 1.1 martin
61 1.1 martin #include <dev/usb/usbdevs.h>
62 1.1 martin #include <dev/usb/ucomvar.h>
63 1.1 martin
64 1.1 martin #include "umcs.h"
65 1.1 martin
66 1.1 martin #if 0
67 1.1 martin #define DPRINTF(ARG) printf ARG
68 1.1 martin #else
69 1.1 martin #define DPRINTF(ARG)
70 1.1 martin #endif
71 1.1 martin
72 1.1 martin /*
73 1.1 martin * Two-port devices (both with 7820 chip and 7840 chip configured as two-port)
74 1.1 martin * have ports 0 and 2, with ports 1 and 3 omitted.
75 1.1 martin * So, PHYSICAL port numbers on two-port device will be 0 and 2.
76 1.1 martin *
77 1.1 martin * We use an array of the following struct, indexed by ucom port index,
78 1.1 martin * and include the physical port number in it.
79 1.1 martin */
80 1.1 martin struct umcs7840_softc_oneport {
81 1.1 martin device_t sc_port_ucom; /* ucom subdevice */
82 1.1 martin uint32_t sc_port_changed; /* call ucom_status_change() */
83 1.1 martin unsigned int sc_port_phys; /* physical port number */
84 1.1 martin uint8_t sc_port_lcr; /* local line control register */
85 1.1 martin uint8_t sc_port_mcr; /* local modem control register */
86 1.1 martin };
87 1.1 martin
88 1.1 martin struct umcs7840_softc {
89 1.1 martin device_t sc_dev; /* ourself */
90 1.1 martin usbd_interface_handle sc_iface; /* the usb interface */
91 1.1 martin usbd_device_handle sc_udev; /* the usb device */
92 1.1 martin usbd_pipe_handle sc_intr_pipe; /* interrupt pipe */
93 1.1 martin uint8_t *sc_intr_buf; /* buffer for interrupt xfer */
94 1.3 martin unsigned int sc_intr_buflen; /* size of buffer */
95 1.1 martin struct workqueue *sc_change_wq; /* workqueue for status changes */
96 1.1 martin struct work sc_work; /* work for said workqueue. */
97 1.1 martin struct umcs7840_softc_oneport sc_ports[UMCS7840_MAX_PORTS];
98 1.1 martin /* data for each port */
99 1.1 martin uint8_t sc_numports; /* number of ports (subunits) */
100 1.1 martin bool sc_init_done; /* special one time init in open */
101 1.1 martin bool sc_dying; /* we have been deactivated */
102 1.1 martin };
103 1.1 martin
104 1.1 martin static int umcs7840_get_reg(struct umcs7840_softc *sc, uint8_t reg, uint8_t *data);
105 1.1 martin static int umcs7840_set_reg(struct umcs7840_softc *sc, uint8_t reg, uint8_t data);
106 1.1 martin static int umcs7840_get_UART_reg(struct umcs7840_softc *sc, uint8_t portno, uint8_t reg, uint8_t *data);
107 1.1 martin static int umcs7840_set_UART_reg(struct umcs7840_softc *sc, uint8_t portno, uint8_t reg, uint8_t data);
108 1.1 martin static int umcs7840_calc_baudrate(uint32_t rate, uint16_t *divisor, uint8_t *clk);
109 1.1 martin static void umcs7840_dtr(struct umcs7840_softc *sc, int portno, bool onoff);
110 1.1 martin static void umcs7840_rts(struct umcs7840_softc *sc, int portno, bool onoff);
111 1.1 martin static void umcs7840_break(struct umcs7840_softc *sc, int portno, bool onoff);
112 1.1 martin
113 1.1 martin static int umcs7840_match(device_t, cfdata_t, void *);
114 1.1 martin static void umcs7840_attach(device_t, device_t, void *);
115 1.1 martin static int umcs7840_detach(device_t, int);
116 1.1 martin static void umcs7840_intr(usbd_xfer_handle xfer, usbd_private_handle priv, usbd_status status);
117 1.1 martin static void umcs7840_change_worker(struct work *w, void *arg);
118 1.1 martin static int umcs7840_activate(device_t, enum devact);
119 1.1 martin static void umcs7840_childdet(device_t, device_t);
120 1.1 martin
121 1.1 martin static void umcs7840_get_status(void *, int, u_char *, u_char *);
122 1.1 martin static void umcs7840_set(void *, int, int, int);
123 1.1 martin static int umcs7840_param(void *, int, struct termios *);
124 1.1 martin static int umcs7840_port_open(void *sc, int portno);
125 1.1 martin static void umcs7840_port_close(void *sc, int portno);
126 1.1 martin
127 1.1 martin struct ucom_methods umcs7840_methods = {
128 1.2 martin .ucom_get_status = umcs7840_get_status,
129 1.2 martin .ucom_set = umcs7840_set,
130 1.2 martin .ucom_param = umcs7840_param,
131 1.2 martin .ucom_open = umcs7840_port_open,
132 1.2 martin .ucom_close = umcs7840_port_close,
133 1.1 martin };
134 1.1 martin
135 1.1 martin static const struct usb_devno umcs7840_devs[] = {
136 1.1 martin { USB_VENDOR_MOSCHIP, USB_PRODUCT_MOSCHIP_MCS7703 },
137 1.1 martin { USB_VENDOR_MOSCHIP, USB_PRODUCT_MOSCHIP_MCS7810 },
138 1.1 martin { USB_VENDOR_MOSCHIP, USB_PRODUCT_MOSCHIP_MCS7820 },
139 1.1 martin { USB_VENDOR_MOSCHIP, USB_PRODUCT_MOSCHIP_MCS7840 },
140 1.1 martin { USB_VENDOR_ATEN, USB_PRODUCT_ATEN_UC2324 }
141 1.1 martin };
142 1.1 martin #define umcs7840_lookup(v, p) usb_lookup(umcs7840_devs, v, p)
143 1.1 martin
144 1.1 martin CFATTACH_DECL2_NEW(umcs, sizeof(struct umcs7840_softc), umcs7840_match,
145 1.1 martin umcs7840_attach, umcs7840_detach, umcs7840_activate, NULL,
146 1.1 martin umcs7840_childdet);
147 1.1 martin
148 1.1 martin static inline int
149 1.1 martin umcs7840_reg_sp(int phyport)
150 1.1 martin {
151 1.1 martin KASSERT(phyport >= 0 && phyport < 4);
152 1.1 martin switch (phyport) {
153 1.1 martin default:
154 1.1 martin case 0: return MCS7840_DEV_REG_SP1;
155 1.1 martin case 1: return MCS7840_DEV_REG_SP2;
156 1.1 martin case 2: return MCS7840_DEV_REG_SP3;
157 1.1 martin case 3: return MCS7840_DEV_REG_SP4;
158 1.1 martin }
159 1.1 martin }
160 1.1 martin
161 1.1 martin static inline int
162 1.1 martin umcs7840_reg_ctrl(int phyport)
163 1.1 martin {
164 1.1 martin KASSERT(phyport >= 0 && phyport < 4);
165 1.1 martin switch (phyport) {
166 1.1 martin default:
167 1.1 martin case 0: return MCS7840_DEV_REG_CONTROL1;
168 1.1 martin case 1: return MCS7840_DEV_REG_CONTROL2;
169 1.1 martin case 2: return MCS7840_DEV_REG_CONTROL3;
170 1.1 martin case 3: return MCS7840_DEV_REG_CONTROL4;
171 1.1 martin }
172 1.1 martin }
173 1.1 martin
174 1.1 martin static inline int
175 1.1 martin umcs7840_reg_dcr0(int phyport)
176 1.1 martin {
177 1.1 martin KASSERT(phyport >= 0 && phyport < 4);
178 1.1 martin switch (phyport) {
179 1.1 martin default:
180 1.1 martin case 0: return MCS7840_DEV_REG_DCR0_1;
181 1.1 martin case 1: return MCS7840_DEV_REG_DCR0_2;
182 1.1 martin case 2: return MCS7840_DEV_REG_DCR0_3;
183 1.1 martin case 3: return MCS7840_DEV_REG_DCR0_4;
184 1.1 martin }
185 1.1 martin }
186 1.1 martin
187 1.1 martin static int
188 1.1 martin umcs7840_match(device_t dev, cfdata_t match, void *aux)
189 1.1 martin {
190 1.1 martin struct usb_attach_arg *uaa = aux;
191 1.1 martin
192 1.1 martin return (umcs7840_lookup(uaa->vendor, uaa->product) != NULL ?
193 1.1 martin UMATCH_VENDOR_PRODUCT : UMATCH_NONE);
194 1.1 martin }
195 1.1 martin
196 1.1 martin static void
197 1.1 martin umcs7840_attach(device_t parent, device_t self, void * aux)
198 1.1 martin {
199 1.1 martin struct umcs7840_softc *sc = device_private(self);
200 1.1 martin struct usb_attach_arg *uaa = aux;
201 1.1 martin usbd_device_handle dev = uaa->device;
202 1.1 martin usb_interface_descriptor_t *id;
203 1.1 martin usb_endpoint_descriptor_t *ed;
204 1.1 martin char *devinfop;
205 1.1 martin struct ucom_attach_args uca;
206 1.1 martin int error, i, intr_addr;
207 1.1 martin uint8_t data;
208 1.1 martin
209 1.1 martin sc->sc_dev = self;
210 1.1 martin sc->sc_udev = uaa->device;
211 1.1 martin
212 1.1 martin if (usbd_set_config_index(sc->sc_udev, MCS7840_CONFIG_INDEX, 1) != 0) {
213 1.1 martin aprint_error(": could not set configuration no\n");
214 1.1 martin return;
215 1.1 martin }
216 1.1 martin
217 1.1 martin /* get the first interface handle */
218 1.1 martin error = usbd_device2interface_handle(sc->sc_udev, MCS7840_IFACE_INDEX,
219 1.1 martin &sc->sc_iface);
220 1.1 martin if (error != 0) {
221 1.1 martin aprint_error(": could not get interface handle\n");
222 1.1 martin return;
223 1.1 martin }
224 1.1 martin
225 1.1 martin /*
226 1.1 martin * Get number of ports
227 1.1 martin * Documentation (full datasheet) says, that number of ports is
228 1.1 martin * set as MCS7840_DEV_MODE_SELECT24S bit in MODE R/Only
229 1.1 martin * register. But vendor driver uses these undocumented
230 1.1 martin * register & bit.
231 1.1 martin *
232 1.1 martin * Experiments show, that MODE register can have `0'
233 1.1 martin * (4 ports) bit on 2-port device, so use vendor driver's way.
234 1.1 martin *
235 1.1 martin * Also, see notes in header file for these constants.
236 1.1 martin */
237 1.1 martin umcs7840_get_reg(sc, MCS7840_DEV_REG_GPIO, &data);
238 1.1 martin if (data & MCS7840_DEV_GPIO_4PORTS) {
239 1.1 martin sc->sc_numports = 4;
240 1.1 martin /* physical port no are : 0, 1, 2, 3 */
241 1.1 martin } else {
242 1.1 martin if (uaa->product == USB_PRODUCT_MOSCHIP_MCS7810)
243 1.1 martin sc->sc_numports = 1;
244 1.1 martin else {
245 1.1 martin sc->sc_numports = 2;
246 1.1 martin /* physical port no are : 0 and 2 */
247 1.1 martin }
248 1.1 martin }
249 1.1 martin devinfop = usbd_devinfo_alloc(dev, 0);
250 1.1 martin aprint_normal(": %s\n", devinfop);
251 1.1 martin usbd_devinfo_free(devinfop);
252 1.1 martin aprint_verbose_dev(self, "found %d active ports\n", sc->sc_numports);
253 1.1 martin
254 1.1 martin if (!umcs7840_get_reg(sc, MCS7840_DEV_REG_MODE, &data)) {
255 1.1 martin aprint_verbose_dev(self, "On-die confguration: RST: active %s, "
256 1.1 martin "HRD: %s, PLL: %s, POR: %s, Ports: %s, EEPROM write %s, "
257 1.1 martin "IrDA is %savailable\n",
258 1.1 martin (data & MCS7840_DEV_MODE_RESET) ? "low" : "high",
259 1.1 martin (data & MCS7840_DEV_MODE_SER_PRSNT) ? "yes" : "no",
260 1.1 martin (data & MCS7840_DEV_MODE_PLLBYPASS) ? "bypassed" : "avail",
261 1.1 martin (data & MCS7840_DEV_MODE_PORBYPASS) ? "bypassed" : "avail",
262 1.1 martin (data & MCS7840_DEV_MODE_SELECT24S) ? "2" : "4",
263 1.1 martin (data & MCS7840_DEV_MODE_EEPROMWR) ? "enabled" : "disabled",
264 1.1 martin (data & MCS7840_DEV_MODE_IRDA) ? "" : "not ");
265 1.1 martin }
266 1.1 martin
267 1.1 martin /*
268 1.1 martin * Set up the interrupt pipe
269 1.1 martin */
270 1.1 martin id = usbd_get_interface_descriptor(sc->sc_iface);
271 1.1 martin intr_addr = -1;
272 1.1 martin for (i = 0 ; i < id->bNumEndpoints ; i++) {
273 1.1 martin ed = usbd_interface2endpoint_descriptor(sc->sc_iface, i);
274 1.1 martin if (ed == NULL) continue;
275 1.1 martin if (UE_GET_DIR(ed->bEndpointAddress) != UE_DIR_IN
276 1.1 martin || UE_GET_XFERTYPE(ed->bmAttributes) != UE_INTERRUPT)
277 1.1 martin continue;
278 1.3 martin sc->sc_intr_buflen = UGETW(ed->wMaxPacketSize);
279 1.1 martin intr_addr = ed->bEndpointAddress;
280 1.1 martin break;
281 1.1 martin }
282 1.1 martin if (intr_addr < 0) {
283 1.1 martin aprint_error_dev(self, "interrupt pipe not found\n");
284 1.1 martin return;
285 1.1 martin }
286 1.3 martin sc->sc_intr_buf = kmem_alloc(sc->sc_intr_buflen, KM_SLEEP);
287 1.1 martin
288 1.1 martin error = usbd_open_pipe_intr(sc->sc_iface, intr_addr,
289 1.1 martin USBD_SHORT_XFER_OK, &sc->sc_intr_pipe, sc, sc->sc_intr_buf,
290 1.3 martin sc->sc_intr_buflen, umcs7840_intr, 100);
291 1.1 martin if (error) {
292 1.1 martin aprint_error_dev(self, "cannot open interrupt pipe "
293 1.1 martin "(addr %d)\n", intr_addr);
294 1.1 martin return;
295 1.1 martin }
296 1.1 martin
297 1.1 martin if (workqueue_create(&sc->sc_change_wq, "umcsq",
298 1.1 martin umcs7840_change_worker, sc, PRI_NONE, IPL_USB, WQ_MPSAFE)) {
299 1.1 martin aprint_error_dev(self, "workqueue creation failed\n");
300 1.1 martin return;
301 1.1 martin }
302 1.1 martin
303 1.1 martin usbd_add_drv_event(USB_EVENT_DRIVER_ATTACH, sc->sc_udev,
304 1.1 martin sc->sc_dev);
305 1.1 martin
306 1.1 martin memset(&uca, 0, sizeof uca);
307 1.1 martin uca.ibufsize = 256;
308 1.1 martin uca.obufsize = 256;
309 1.1 martin uca.ibufsizepad = 256;
310 1.1 martin uca.opkthdrlen = 0;
311 1.1 martin uca.device = sc->sc_udev;
312 1.1 martin uca.iface = sc->sc_iface;
313 1.1 martin uca.methods = &umcs7840_methods;
314 1.1 martin uca.arg = sc;
315 1.1 martin
316 1.1 martin for (i = 0; i < sc->sc_numports; i++) {
317 1.1 martin uca.bulkin = uca.bulkout = -1;
318 1.1 martin
319 1.1 martin /*
320 1.1 martin * On four port cards, endpoints are 0/1 for first,
321 1.1 martin * 2/3 for second, ...
322 1.1 martin * On two port cards, they are 0/1 for first, 4/5 for second.
323 1.1 martin * On single port, just 0/1 will be used.
324 1.1 martin */
325 1.1 martin int phyport = i * (sc->sc_numports == 2 ? 2 : 1);
326 1.1 martin
327 1.1 martin ed = usbd_interface2endpoint_descriptor(sc->sc_iface,
328 1.1 martin phyport*2);
329 1.1 martin if (ed == NULL) {
330 1.1 martin aprint_error_dev(self,
331 1.1 martin "no bulk in endpoint found for %d\n", i);
332 1.1 martin return;
333 1.1 martin }
334 1.1 martin uca.bulkin = ed->bEndpointAddress;
335 1.1 martin
336 1.1 martin ed = usbd_interface2endpoint_descriptor(sc->sc_iface,
337 1.1 martin phyport*2 + 1);
338 1.1 martin if (ed == NULL) {
339 1.1 martin aprint_error_dev(self,
340 1.1 martin "no bulk out endpoint found for %d\n", i);
341 1.1 martin return;
342 1.1 martin }
343 1.1 martin uca.bulkout = ed->bEndpointAddress;
344 1.1 martin uca.portno = i;
345 1.1 martin DPRINTF(("port %d physical port %d bulk-in %d bulk-out %d\n",
346 1.1 martin i, phyport, uca.bulkin, uca.bulkout));
347 1.1 martin
348 1.1 martin sc->sc_ports[i].sc_port_phys = phyport;
349 1.1 martin sc->sc_ports[i].sc_port_ucom =
350 1.1 martin config_found_sm_loc(self, "ucombus", NULL, &uca,
351 1.1 martin ucomprint, ucomsubmatch);
352 1.1 martin }
353 1.1 martin }
354 1.1 martin
355 1.1 martin static int
356 1.1 martin umcs7840_get_reg(struct umcs7840_softc *sc, uint8_t reg, uint8_t *data)
357 1.1 martin {
358 1.1 martin usb_device_request_t req;
359 1.1 martin int err;
360 1.1 martin
361 1.1 martin req.bmRequestType = UT_READ_VENDOR_DEVICE;
362 1.1 martin req.bRequest = MCS7840_RDREQ;
363 1.1 martin USETW(req.wValue, 0);
364 1.1 martin USETW(req.wIndex, reg);
365 1.1 martin USETW(req.wLength, UMCS7840_READ_LENGTH);
366 1.1 martin
367 1.1 martin err = usbd_do_request(sc->sc_udev, &req, data);
368 1.1 martin if (err)
369 1.1 martin aprint_normal_dev(sc->sc_dev,
370 1.1 martin "Reading register %d failed: %s\n", reg, usbd_errstr(err));
371 1.1 martin return err;
372 1.1 martin }
373 1.1 martin
374 1.1 martin static int
375 1.1 martin umcs7840_set_reg(struct umcs7840_softc *sc, uint8_t reg, uint8_t data)
376 1.1 martin {
377 1.1 martin usb_device_request_t req;
378 1.1 martin int err;
379 1.1 martin
380 1.1 martin req.bmRequestType = UT_WRITE_VENDOR_DEVICE;
381 1.1 martin req.bRequest = MCS7840_WRREQ;
382 1.1 martin USETW(req.wValue, data);
383 1.1 martin USETW(req.wIndex, reg);
384 1.1 martin USETW(req.wLength, 0);
385 1.1 martin
386 1.1 martin err = usbd_do_request(sc->sc_udev, &req, 0);
387 1.1 martin if (err)
388 1.1 martin aprint_normal_dev(sc->sc_dev, "Writing register %d failed: %s\n", reg, usbd_errstr(err));
389 1.1 martin
390 1.1 martin return err;
391 1.1 martin }
392 1.1 martin
393 1.1 martin static int
394 1.1 martin umcs7840_get_UART_reg(struct umcs7840_softc *sc, uint8_t portno,
395 1.1 martin uint8_t reg, uint8_t *data)
396 1.1 martin {
397 1.1 martin usb_device_request_t req;
398 1.1 martin uint16_t wVal;
399 1.1 martin int err;
400 1.1 martin
401 1.1 martin /* portno is port number */
402 1.1 martin wVal = ((uint16_t)(portno + 1)) << 8;
403 1.1 martin
404 1.1 martin req.bmRequestType = UT_READ_VENDOR_DEVICE;
405 1.1 martin req.bRequest = MCS7840_RDREQ;
406 1.1 martin USETW(req.wValue, wVal);
407 1.1 martin USETW(req.wIndex, reg);
408 1.1 martin USETW(req.wLength, UMCS7840_READ_LENGTH);
409 1.1 martin
410 1.1 martin err = usbd_do_request(sc->sc_udev, &req, data);
411 1.1 martin if (err)
412 1.1 martin aprint_normal_dev(sc->sc_dev, "Reading UART %d register %d failed: %s\n", portno, reg, usbd_errstr(err));
413 1.1 martin return err;
414 1.1 martin }
415 1.1 martin
416 1.1 martin static int
417 1.1 martin umcs7840_set_UART_reg(struct umcs7840_softc *sc, uint8_t portno, uint8_t reg, uint8_t data)
418 1.1 martin {
419 1.1 martin usb_device_request_t req;
420 1.1 martin int err;
421 1.1 martin uint16_t wVal;
422 1.1 martin
423 1.1 martin /* portno is the physical port number */
424 1.1 martin wVal = ((uint16_t)(portno + 1)) << 8 | data;
425 1.1 martin
426 1.1 martin req.bmRequestType = UT_WRITE_VENDOR_DEVICE;
427 1.1 martin req.bRequest = MCS7840_WRREQ;
428 1.1 martin USETW(req.wValue, wVal);
429 1.1 martin USETW(req.wIndex, reg);
430 1.1 martin USETW(req.wLength, 0);
431 1.1 martin
432 1.1 martin err = usbd_do_request(sc->sc_udev, &req, NULL);
433 1.1 martin if (err)
434 1.3 martin aprint_error_dev(sc->sc_dev,
435 1.3 martin "Writing UART %d register %d failed: %s\n",
436 1.3 martin portno, reg, usbd_errstr(err));
437 1.1 martin return err;
438 1.1 martin }
439 1.1 martin
440 1.1 martin static int
441 1.1 martin umcs7840_set_baudrate(struct umcs7840_softc *sc, uint8_t portno, uint32_t rate)
442 1.1 martin {
443 1.1 martin int err;
444 1.1 martin uint16_t divisor;
445 1.1 martin uint8_t clk;
446 1.1 martin uint8_t data;
447 1.1 martin uint8_t physport = sc->sc_ports[portno].sc_port_phys;
448 1.1 martin int spreg = umcs7840_reg_sp(physport);
449 1.1 martin
450 1.1 martin if (umcs7840_calc_baudrate(rate, &divisor, &clk)) {
451 1.1 martin DPRINTF(("Port %d bad speed: %d\n", portno, rate));
452 1.1 martin return (-1);
453 1.1 martin }
454 1.1 martin if (divisor == 0 || (clk & MCS7840_DEV_SPx_CLOCK_MASK) != clk) {
455 1.1 martin DPRINTF(("Port %d bad speed calculation: %d\n", portno, rate));
456 1.1 martin return (-1);
457 1.1 martin }
458 1.1 martin DPRINTF(("Port %d set speed: %d (%02x / %d)\n", portno, rate, clk, divisor));
459 1.1 martin
460 1.1 martin /* Set clock source for standard BAUD frequences */
461 1.1 martin err = umcs7840_get_reg(sc, spreg, &data);
462 1.1 martin if (err)
463 1.1 martin return err;
464 1.1 martin data &= MCS7840_DEV_SPx_CLOCK_MASK;
465 1.1 martin data |= clk;
466 1.1 martin err = umcs7840_set_reg(sc, spreg, data);
467 1.1 martin if (err)
468 1.1 martin return err;
469 1.1 martin
470 1.1 martin /* Set divider */
471 1.1 martin sc->sc_ports[portno].sc_port_lcr |= MCS7840_UART_LCR_DIVISORS;
472 1.1 martin err = umcs7840_set_UART_reg(sc, physport, MCS7840_UART_REG_LCR, sc->sc_ports[portno].sc_port_lcr);
473 1.1 martin if (err)
474 1.1 martin return err;
475 1.1 martin
476 1.1 martin err = umcs7840_set_UART_reg(sc, physport, MCS7840_UART_REG_DLL, (uint8_t)(divisor & 0xff));
477 1.1 martin if (err)
478 1.1 martin return err;
479 1.1 martin err = umcs7840_set_UART_reg(sc, physport, MCS7840_UART_REG_DLM, (uint8_t)((divisor >> 8) & 0xff));
480 1.1 martin if (err)
481 1.1 martin return err;
482 1.1 martin
483 1.1 martin /* Turn off access to DLL/DLM registers of UART */
484 1.1 martin sc->sc_ports[portno].sc_port_lcr &= ~MCS7840_UART_LCR_DIVISORS;
485 1.1 martin err = umcs7840_set_UART_reg(sc, physport, MCS7840_UART_REG_LCR, sc->sc_ports[portno].sc_port_lcr);
486 1.1 martin if (err)
487 1.1 martin return err;
488 1.1 martin return (0);
489 1.1 martin }
490 1.1 martin
491 1.1 martin static int
492 1.1 martin umcs7840_calc_baudrate(uint32_t rate, uint16_t *divisor, uint8_t *clk)
493 1.1 martin {
494 1.1 martin /* Maximum speeds for standard frequences, when PLL is not used */
495 1.1 martin static const uint32_t umcs7840_baudrate_divisors[] =
496 1.1 martin {0, 115200, 230400, 403200, 460800, 806400, 921600,
497 1.1 martin 1572864, 3145728,};
498 1.1 martin static const uint8_t umcs7840_baudrate_divisors_len =
499 1.1 martin __arraycount(umcs7840_baudrate_divisors);
500 1.1 martin uint8_t i = 0;
501 1.1 martin
502 1.1 martin if (rate > umcs7840_baudrate_divisors[umcs7840_baudrate_divisors_len - 1])
503 1.1 martin return (-1);
504 1.1 martin
505 1.1 martin for (i = 0; i < umcs7840_baudrate_divisors_len - 1
506 1.1 martin && !(rate > umcs7840_baudrate_divisors[i]
507 1.1 martin && rate <= umcs7840_baudrate_divisors[i + 1]); ++i);
508 1.1 martin *divisor = umcs7840_baudrate_divisors[i + 1] / rate;
509 1.1 martin /* 0x00 .. 0x70 */
510 1.1 martin *clk = i << MCS7840_DEV_SPx_CLOCK_SHIFT;
511 1.1 martin return (0);
512 1.1 martin }
513 1.1 martin
514 1.1 martin static int
515 1.1 martin umcs7840_detach(device_t self, int flags)
516 1.1 martin {
517 1.1 martin struct umcs7840_softc *sc = device_private(self);
518 1.1 martin int rv = 0, i;
519 1.1 martin
520 1.3 martin /* detach children */
521 1.3 martin for (i = 0; i < sc->sc_numports; i++) {
522 1.3 martin if (sc->sc_ports[i].sc_port_ucom) {
523 1.3 martin rv = config_detach(sc->sc_ports[i].sc_port_ucom,
524 1.3 martin flags);
525 1.3 martin if (rv)
526 1.3 martin break;
527 1.3 martin }
528 1.3 martin }
529 1.3 martin
530 1.1 martin /* close interrupt pipe */
531 1.1 martin if (sc->sc_intr_pipe != NULL) {
532 1.1 martin rv = usbd_abort_pipe(sc->sc_intr_pipe);
533 1.1 martin if (rv)
534 1.1 martin aprint_error_dev(sc->sc_dev,
535 1.1 martin "abort interrupt pipe failed: %s\n",
536 1.1 martin usbd_errstr(rv));
537 1.1 martin rv = usbd_close_pipe(sc->sc_intr_pipe);
538 1.1 martin if (rv)
539 1.1 martin aprint_error_dev(sc->sc_dev,
540 1.3 martin "failed to close interrupt pipe: %s\n",
541 1.1 martin usbd_errstr(rv));
542 1.3 martin kmem_free(sc->sc_intr_buf, sc->sc_intr_buflen);
543 1.1 martin sc->sc_intr_pipe = NULL;
544 1.1 martin }
545 1.1 martin if (sc->sc_change_wq != NULL)
546 1.1 martin workqueue_destroy(sc->sc_change_wq);
547 1.1 martin
548 1.1 martin usbd_add_drv_event(USB_EVENT_DRIVER_DETACH, sc->sc_udev,
549 1.1 martin sc->sc_dev);
550 1.1 martin
551 1.1 martin return rv;
552 1.1 martin }
553 1.1 martin
554 1.1 martin int
555 1.1 martin umcs7840_activate(device_t self, enum devact act)
556 1.1 martin {
557 1.1 martin struct umcs7840_softc *sc = device_private(self);
558 1.1 martin
559 1.1 martin switch (act) {
560 1.1 martin case DVACT_DEACTIVATE:
561 1.1 martin sc->sc_dying = true;
562 1.1 martin return 0;
563 1.1 martin default:
564 1.1 martin return EOPNOTSUPP;
565 1.1 martin }
566 1.1 martin }
567 1.1 martin
568 1.1 martin static void
569 1.1 martin umcs7840_childdet(device_t self, device_t child)
570 1.1 martin {
571 1.1 martin struct umcs7840_softc *sc = device_private(self);
572 1.1 martin int i;
573 1.1 martin
574 1.1 martin for (i = 0; i < sc->sc_numports; i++) {
575 1.1 martin if (child == sc->sc_ports[i].sc_port_ucom) {
576 1.1 martin sc->sc_ports[i].sc_port_ucom = NULL;
577 1.1 martin return;
578 1.1 martin }
579 1.1 martin }
580 1.1 martin }
581 1.1 martin
582 1.1 martin static void
583 1.1 martin umcs7840_get_status(void *self, int portno, u_char *lsr, u_char *msr)
584 1.1 martin {
585 1.1 martin struct umcs7840_softc *sc = self;
586 1.1 martin uint8_t pn = sc->sc_ports[portno].sc_port_phys;
587 1.1 martin uint8_t hw_lsr = 0; /* local line status register */
588 1.1 martin uint8_t hw_msr = 0; /* local modem status register */
589 1.1 martin
590 1.1 martin /* Read LSR & MSR */
591 1.1 martin umcs7840_get_UART_reg(sc, pn, MCS7840_UART_REG_LSR, &hw_lsr);
592 1.1 martin umcs7840_get_UART_reg(sc, pn, MCS7840_UART_REG_MSR, &hw_msr);
593 1.1 martin
594 1.1 martin *lsr = hw_lsr;
595 1.1 martin *msr = hw_msr;
596 1.1 martin }
597 1.1 martin
598 1.1 martin static void
599 1.1 martin umcs7840_set(void *self, int portno, int reg, int onoff)
600 1.1 martin {
601 1.1 martin struct umcs7840_softc *sc = self;
602 1.1 martin int pn = sc->sc_ports[portno].sc_port_phys;
603 1.1 martin
604 1.1 martin if (sc->sc_dying)
605 1.1 martin return;
606 1.1 martin
607 1.1 martin switch (reg) {
608 1.1 martin case UCOM_SET_DTR:
609 1.1 martin umcs7840_dtr(sc, pn, onoff);
610 1.1 martin break;
611 1.1 martin case UCOM_SET_RTS:
612 1.1 martin umcs7840_rts(sc, pn, onoff);
613 1.1 martin break;
614 1.1 martin case UCOM_SET_BREAK:
615 1.1 martin umcs7840_break(sc, pn, onoff);
616 1.1 martin break;
617 1.1 martin default:
618 1.1 martin break;
619 1.1 martin }
620 1.1 martin }
621 1.1 martin
622 1.1 martin static int
623 1.1 martin umcs7840_param(void *self, int portno, struct termios *t)
624 1.1 martin {
625 1.1 martin struct umcs7840_softc *sc = self;
626 1.1 martin int pn = sc->sc_ports[portno].sc_port_phys;
627 1.1 martin uint8_t lcr = sc->sc_ports[portno].sc_port_lcr;
628 1.1 martin uint8_t mcr = sc->sc_ports[portno].sc_port_mcr;
629 1.1 martin
630 1.1 martin if (t->c_cflag & CSTOPB) {
631 1.1 martin lcr |= MCS7840_UART_LCR_STOPB2;
632 1.1 martin } else {
633 1.1 martin lcr |= MCS7840_UART_LCR_STOPB1;
634 1.1 martin }
635 1.1 martin
636 1.1 martin lcr &= ~MCS7840_UART_LCR_PARITYMASK;
637 1.1 martin if (t->c_cflag & PARENB) {
638 1.1 martin lcr |= MCS7840_UART_LCR_PARITYON;
639 1.1 martin if (t->c_cflag & PARODD) {
640 1.1 martin lcr = MCS7840_UART_LCR_PARITYODD;
641 1.1 martin } else {
642 1.1 martin lcr = MCS7840_UART_LCR_PARITYEVEN;
643 1.1 martin }
644 1.1 martin } else {
645 1.1 martin lcr &= ~MCS7840_UART_LCR_PARITYON;
646 1.1 martin }
647 1.1 martin
648 1.1 martin lcr &= ~MCS7840_UART_LCR_DATALENMASK;
649 1.1 martin switch (t->c_cflag & CSIZE) {
650 1.1 martin case CS5:
651 1.1 martin lcr |= MCS7840_UART_LCR_DATALEN5;
652 1.1 martin break;
653 1.1 martin case CS6:
654 1.1 martin lcr |= MCS7840_UART_LCR_DATALEN6;
655 1.1 martin break;
656 1.1 martin case CS7:
657 1.1 martin lcr |= MCS7840_UART_LCR_DATALEN7;
658 1.1 martin break;
659 1.1 martin case CS8:
660 1.1 martin lcr |= MCS7840_UART_LCR_DATALEN8;
661 1.1 martin break;
662 1.1 martin }
663 1.1 martin
664 1.1 martin if (t->c_cflag & CRTSCTS)
665 1.1 martin mcr |= MCS7840_UART_MCR_CTSRTS;
666 1.1 martin else
667 1.1 martin mcr &= ~MCS7840_UART_MCR_CTSRTS;
668 1.1 martin
669 1.1 martin if (t->c_cflag & CLOCAL)
670 1.1 martin mcr &= ~MCS7840_UART_MCR_DTRDSR;
671 1.1 martin else
672 1.1 martin mcr |= MCS7840_UART_MCR_DTRDSR;
673 1.1 martin
674 1.1 martin sc->sc_ports[portno].sc_port_lcr = lcr;
675 1.1 martin umcs7840_set_UART_reg(sc, pn, MCS7840_UART_REG_LCR,
676 1.1 martin sc->sc_ports[pn].sc_port_lcr);
677 1.1 martin
678 1.1 martin sc->sc_ports[portno].sc_port_mcr = mcr;
679 1.1 martin umcs7840_set_UART_reg(sc, pn, MCS7840_UART_REG_MCR,
680 1.1 martin sc->sc_ports[pn].sc_port_mcr);
681 1.1 martin
682 1.1 martin if (umcs7840_set_baudrate(sc, pn, t->c_ospeed))
683 1.1 martin return EIO;
684 1.1 martin
685 1.1 martin return 0;
686 1.1 martin }
687 1.1 martin
688 1.1 martin static void
689 1.1 martin umcs7840_dtr(struct umcs7840_softc *sc, int portno, bool onoff)
690 1.1 martin {
691 1.1 martin int pn = sc->sc_ports[portno].sc_port_phys;
692 1.1 martin uint8_t mcr = sc->sc_ports[portno].sc_port_mcr;
693 1.1 martin
694 1.1 martin if (onoff)
695 1.1 martin mcr |= MCS7840_UART_MCR_DTR;
696 1.1 martin else
697 1.1 martin mcr &= ~MCS7840_UART_MCR_DTR;
698 1.1 martin
699 1.1 martin sc->sc_ports[portno].sc_port_mcr = mcr;
700 1.1 martin umcs7840_set_UART_reg(sc, pn, MCS7840_UART_REG_MCR,
701 1.1 martin sc->sc_ports[pn].sc_port_mcr);
702 1.1 martin }
703 1.1 martin
704 1.1 martin static void
705 1.1 martin umcs7840_rts(struct umcs7840_softc *sc, int portno, bool onoff)
706 1.1 martin {
707 1.1 martin int pn = sc->sc_ports[portno].sc_port_phys;
708 1.1 martin uint8_t mcr = sc->sc_ports[portno].sc_port_mcr;
709 1.1 martin
710 1.1 martin if (onoff)
711 1.1 martin mcr |= MCS7840_UART_MCR_RTS;
712 1.1 martin else
713 1.1 martin mcr &= ~MCS7840_UART_MCR_RTS;
714 1.1 martin
715 1.1 martin sc->sc_ports[portno].sc_port_mcr = mcr;
716 1.1 martin umcs7840_set_UART_reg(sc, pn, MCS7840_UART_REG_MCR,
717 1.1 martin sc->sc_ports[pn].sc_port_mcr);
718 1.1 martin }
719 1.1 martin
720 1.1 martin static void
721 1.1 martin umcs7840_break(struct umcs7840_softc *sc, int portno, bool onoff)
722 1.1 martin {
723 1.1 martin int pn = sc->sc_ports[portno].sc_port_phys;
724 1.1 martin uint8_t lcr = sc->sc_ports[portno].sc_port_lcr;
725 1.1 martin
726 1.1 martin if (onoff)
727 1.1 martin lcr |= MCS7840_UART_LCR_BREAK;
728 1.1 martin else
729 1.1 martin lcr &= ~MCS7840_UART_LCR_BREAK;
730 1.1 martin
731 1.1 martin sc->sc_ports[portno].sc_port_lcr = lcr;
732 1.1 martin umcs7840_set_UART_reg(sc, pn, MCS7840_UART_REG_LCR,
733 1.1 martin sc->sc_ports[pn].sc_port_lcr);
734 1.1 martin }
735 1.1 martin
736 1.1 martin static int
737 1.1 martin umcs7840_port_open(void *self, int portno)
738 1.1 martin {
739 1.1 martin struct umcs7840_softc *sc = self;
740 1.1 martin int pn = sc->sc_ports[portno].sc_port_phys;
741 1.1 martin int spreg = umcs7840_reg_sp(pn);
742 1.1 martin int ctrlreg = umcs7840_reg_ctrl(pn);
743 1.1 martin uint8_t data;
744 1.1 martin
745 1.1 martin if (sc->sc_dying)
746 1.1 martin return EIO;
747 1.1 martin
748 1.1 martin /* If it very first open, finish global configuration */
749 1.1 martin if (!sc->sc_init_done) {
750 1.1 martin if (umcs7840_get_reg(sc, MCS7840_DEV_REG_CONTROL1, &data))
751 1.1 martin return EIO;
752 1.1 martin data |= MCS7840_DEV_CONTROL1_DRIVER_DONE;
753 1.1 martin if (umcs7840_set_reg(sc, MCS7840_DEV_REG_CONTROL1, data))
754 1.1 martin return EIO;
755 1.1 martin sc->sc_init_done = 1;
756 1.1 martin }
757 1.1 martin
758 1.1 martin /* Toggle reset bit on-off */
759 1.1 martin if (umcs7840_get_reg(sc, spreg, &data))
760 1.1 martin return EIO;
761 1.1 martin data |= MCS7840_DEV_SPx_UART_RESET;
762 1.1 martin if (umcs7840_set_reg(sc, spreg, data))
763 1.1 martin return EIO;
764 1.1 martin data &= ~MCS7840_DEV_SPx_UART_RESET;
765 1.1 martin if (umcs7840_set_reg(sc, spreg, data))
766 1.1 martin return EIO;
767 1.1 martin
768 1.1 martin /* Set RS-232 mode */
769 1.1 martin if (umcs7840_set_UART_reg(sc, pn, MCS7840_UART_REG_SCRATCHPAD,
770 1.1 martin MCS7840_UART_SCRATCHPAD_RS232))
771 1.1 martin return EIO;
772 1.1 martin
773 1.1 martin /* Disable RX on time of initialization */
774 1.1 martin if (umcs7840_get_reg(sc, ctrlreg, &data))
775 1.1 martin return EIO;
776 1.1 martin data |= MCS7840_DEV_CONTROLx_RX_DISABLE;
777 1.1 martin if (umcs7840_set_reg(sc, ctrlreg, data))
778 1.1 martin return EIO;
779 1.1 martin
780 1.1 martin /* Disable all interrupts */
781 1.1 martin if (umcs7840_set_UART_reg(sc, pn, MCS7840_UART_REG_IER, 0))
782 1.1 martin return EIO;
783 1.1 martin
784 1.1 martin /* Reset FIFO -- documented */
785 1.1 martin if (umcs7840_set_UART_reg(sc, pn, MCS7840_UART_REG_FCR, 0))
786 1.1 martin return EIO;
787 1.1 martin if (umcs7840_set_UART_reg(sc, pn, MCS7840_UART_REG_FCR,
788 1.1 martin MCS7840_UART_FCR_ENABLE | MCS7840_UART_FCR_FLUSHRHR |
789 1.1 martin MCS7840_UART_FCR_FLUSHTHR | MCS7840_UART_FCR_RTL_1_14))
790 1.1 martin return EIO;
791 1.1 martin
792 1.1 martin /* Set 8 bit, no parity, 1 stop bit -- documented */
793 1.1 martin sc->sc_ports[pn].sc_port_lcr =
794 1.1 martin MCS7840_UART_LCR_DATALEN8 | MCS7840_UART_LCR_STOPB1;
795 1.1 martin if (umcs7840_set_UART_reg(sc, pn, MCS7840_UART_REG_LCR,
796 1.1 martin sc->sc_ports[pn].sc_port_lcr))
797 1.1 martin return EIO;
798 1.1 martin
799 1.1 martin /*
800 1.1 martin * Enable DTR/RTS on modem control, enable modem interrupts --
801 1.1 martin * documented
802 1.1 martin */
803 1.1 martin sc->sc_ports[pn].sc_port_mcr = MCS7840_UART_MCR_DTR
804 1.1 martin | MCS7840_UART_MCR_RTS | MCS7840_UART_MCR_IE;
805 1.1 martin if (umcs7840_set_UART_reg(sc, pn, MCS7840_UART_REG_MCR,
806 1.1 martin sc->sc_ports[pn].sc_port_mcr))
807 1.1 martin return EIO;
808 1.1 martin
809 1.1 martin /* Clearing Bulkin and Bulkout FIFO */
810 1.1 martin if (umcs7840_get_reg(sc, spreg, &data))
811 1.1 martin return EIO;
812 1.1 martin data |= MCS7840_DEV_SPx_RESET_OUT_FIFO | MCS7840_DEV_SPx_RESET_IN_FIFO;
813 1.1 martin if (umcs7840_set_reg(sc, spreg, data))
814 1.1 martin return EIO;
815 1.1 martin data &= ~(MCS7840_DEV_SPx_RESET_OUT_FIFO
816 1.1 martin | MCS7840_DEV_SPx_RESET_IN_FIFO);
817 1.1 martin if (umcs7840_set_reg(sc, spreg, data))
818 1.1 martin return EIO;
819 1.1 martin
820 1.1 martin /* Set speed 9600 */
821 1.1 martin if (umcs7840_set_baudrate(sc, pn, 9600))
822 1.1 martin return EIO;
823 1.1 martin
824 1.1 martin
825 1.1 martin /* Finally enable all interrupts -- documented */
826 1.1 martin /*
827 1.1 martin * Copied from vendor driver, I don't know why we should read LCR
828 1.1 martin * here
829 1.1 martin */
830 1.1 martin if (umcs7840_get_UART_reg(sc, pn, MCS7840_UART_REG_LCR,
831 1.1 martin &sc->sc_ports[pn].sc_port_lcr))
832 1.1 martin return EIO;
833 1.1 martin if (umcs7840_set_UART_reg(sc, pn, MCS7840_UART_REG_IER,
834 1.1 martin MCS7840_UART_IER_RXSTAT | MCS7840_UART_IER_MODEM))
835 1.1 martin return EIO;
836 1.1 martin
837 1.1 martin /* Enable RX */
838 1.1 martin if (umcs7840_get_reg(sc, ctrlreg, &data))
839 1.1 martin return EIO;
840 1.1 martin data &= ~MCS7840_DEV_CONTROLx_RX_DISABLE;
841 1.1 martin if (umcs7840_set_reg(sc, ctrlreg, data))
842 1.1 martin return EIO;
843 1.1 martin return 0;
844 1.1 martin }
845 1.1 martin
846 1.1 martin static void
847 1.1 martin umcs7840_port_close(void *self, int portno)
848 1.1 martin {
849 1.1 martin struct umcs7840_softc *sc = self;
850 1.1 martin int pn = sc->sc_ports[portno].sc_port_phys;
851 1.1 martin int ctrlreg = umcs7840_reg_ctrl(pn);
852 1.1 martin uint8_t data;
853 1.1 martin
854 1.1 martin atomic_swap_32(&sc->sc_ports[portno].sc_port_changed, 0);
855 1.1 martin
856 1.1 martin umcs7840_set_UART_reg(sc, pn, MCS7840_UART_REG_MCR, 0);
857 1.1 martin umcs7840_set_UART_reg(sc, pn, MCS7840_UART_REG_IER, 0);
858 1.1 martin
859 1.1 martin /* Disable RX */
860 1.1 martin if (umcs7840_get_reg(sc, ctrlreg, &data))
861 1.1 martin return;
862 1.1 martin data |= MCS7840_DEV_CONTROLx_RX_DISABLE;
863 1.1 martin if (umcs7840_set_reg(sc, ctrlreg, data))
864 1.1 martin return;
865 1.1 martin }
866 1.1 martin
867 1.1 martin static void
868 1.1 martin umcs7840_intr(usbd_xfer_handle xfer, usbd_private_handle priv,
869 1.1 martin usbd_status status)
870 1.1 martin {
871 1.1 martin struct umcs7840_softc *sc = priv;
872 1.1 martin u_char *buf = sc->sc_intr_buf;
873 1.1 martin int actlen;
874 1.1 martin int subunit, found;
875 1.1 martin
876 1.1 martin if (sc->sc_dying)
877 1.1 martin return;
878 1.1 martin
879 1.1 martin found = 0;
880 1.1 martin if (status != USBD_NORMAL_COMPLETION) {
881 1.1 martin if (status == USBD_NOT_STARTED || status == USBD_CANCELLED)
882 1.1 martin return;
883 1.1 martin
884 1.1 martin aprint_error_dev(sc->sc_dev,
885 1.1 martin "umcs7840_intr: abnormal status: %s\n",
886 1.1 martin usbd_errstr(status));
887 1.1 martin usbd_clear_endpoint_stall_async(sc->sc_intr_pipe);
888 1.1 martin return;
889 1.1 martin }
890 1.1 martin
891 1.1 martin usbd_get_xfer_status(xfer, NULL, NULL, &actlen, NULL);
892 1.1 martin if (actlen == 5 || actlen == 13) {
893 1.1 martin /* Check status of all ports */
894 1.1 martin for (subunit = 0; subunit < sc->sc_numports; subunit++) {
895 1.1 martin uint8_t pn = sc->sc_ports[subunit].sc_port_phys;
896 1.1 martin if (buf[pn] & MCS7840_UART_ISR_NOPENDING)
897 1.1 martin continue;
898 1.1 martin DPRINTF(("Port %d has pending interrupt: %02x "
899 1.1 martin "(FIFO: %02x)\n", pn,
900 1.1 martin buf[pn] & MCS7840_UART_ISR_INTMASK,
901 1.1 martin buf[pn] & (~MCS7840_UART_ISR_INTMASK)));
902 1.1 martin switch (buf[pn] & MCS7840_UART_ISR_INTMASK) {
903 1.1 martin case MCS7840_UART_ISR_RXERR:
904 1.1 martin case MCS7840_UART_ISR_RXHASDATA:
905 1.1 martin case MCS7840_UART_ISR_RXTIMEOUT:
906 1.1 martin case MCS7840_UART_ISR_MSCHANGE:
907 1.1 martin atomic_swap_32(
908 1.1 martin &sc->sc_ports[subunit].sc_port_changed,
909 1.1 martin 1);
910 1.1 martin found++;
911 1.1 martin break;
912 1.1 martin default:
913 1.1 martin /* Do nothing */
914 1.1 martin break;
915 1.1 martin }
916 1.1 martin }
917 1.1 martin if (found)
918 1.1 martin workqueue_enqueue(sc->sc_change_wq, &sc->sc_work,
919 1.1 martin NULL);
920 1.1 martin } else {
921 1.3 martin aprint_error_dev(sc->sc_dev,
922 1.3 martin "Invalid interrupt data length %d", actlen);
923 1.1 martin }
924 1.1 martin }
925 1.1 martin
926 1.1 martin static void
927 1.1 martin umcs7840_change_worker(struct work *w, void *arg)
928 1.1 martin {
929 1.1 martin struct umcs7840_softc *sc = arg;
930 1.1 martin int i;
931 1.1 martin
932 1.1 martin for (i = 0; i < sc->sc_numports; i++) {
933 1.1 martin if (sc->sc_ports[i].sc_port_changed) {
934 1.1 martin ucom_status_change(device_private(
935 1.1 martin sc->sc_ports[i].sc_port_ucom));
936 1.1 martin atomic_swap_32(&sc->sc_ports[i].sc_port_changed, 0);
937 1.1 martin }
938 1.1 martin }
939 1.1 martin }
940