vrgiu.c revision 1.44 1 /* $NetBSD: vrgiu.c,v 1.44 2020/11/21 21:23:48 thorpej Exp $ */
2 /*-
3 * Copyright (c) 1999-2001
4 * Shin Takemura and PocketBSD Project. All rights reserved.
5 *
6 * Redistribution and use in source and binary forms, with or without
7 * modification, are permitted provided that the following conditions
8 * are met:
9 * 1. Redistributions of source code must retain the above copyright
10 * notice, this list of conditions and the following disclaimer.
11 * 2. Redistributions in binary form must reproduce the above copyright
12 * notice, this list of conditions and the following disclaimer in the
13 * documentation and/or other materials provided with the distribution.
14 * 3. All advertising materials mentioning features or use of this software
15 * must display the following acknowledgement:
16 * This product includes software developed by the PocketBSD project
17 * and its contributors.
18 * 4. Neither the name of the project nor the names of its contributors
19 * may be used to endorse or promote products derived from this software
20 * without specific prior written permission.
21 *
22 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
23 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
24 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
25 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
26 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
27 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
28 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
29 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
30 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
31 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
32 * SUCH DAMAGE.
33 *
34 */
35
36 #include <sys/cdefs.h>
37 __KERNEL_RCSID(0, "$NetBSD: vrgiu.c,v 1.44 2020/11/21 21:23:48 thorpej Exp $");
38
39 #include <sys/param.h>
40 #include <sys/systm.h>
41 #include <sys/device.h>
42 #include <sys/kmem.h>
43 #include <sys/queue.h>
44 #include <sys/reboot.h>
45
46 #include <mips/cpuregs.h>
47 #include <machine/bus.h>
48 #include <machine/config_hook.h>
49 #include <machine/debug.h>
50
51 #include <dev/hpc/hpciovar.h>
52
53 #include "opt_vr41xx.h"
54 #include <hpcmips/vr/vrcpudef.h>
55 #include <hpcmips/vr/vripif.h>
56 #include <hpcmips/vr/vripreg.h>
57 #include <hpcmips/vr/vrgiureg.h>
58
59 #include "locators.h"
60
61 /*
62 * constant and macro definitions
63 */
64 #define VRGIUDEBUG
65 #ifdef VRGIUDEBUG
66 #define DEBUG_IO 1
67 #define DEBUG_INTR 2
68 #ifndef VRGIUDEBUG_CONF
69 #define VRGIUDEBUG_CONF 0
70 #endif /* VRGIUDEBUG_CONF */
71 int vrgiu_debug = VRGIUDEBUG_CONF;
72 #define DPRINTF(flag, arg) if (vrgiu_debug & flag) printf arg;
73 #define DDUMP_IO(flag, sc) if (vrgiu_debug & flag) vrgiu_dump_io(sc);
74 #define DDUMP_IOSETTING(flag, sc) \
75 if (vrgiu_debug & flag) vrgiu_dump_iosetting(sc);
76 #define VPRINTF(flag, arg) \
77 if (bootverbose || vrgiu_debug & flag) printf arg;
78 #define VDUMP_IO(flag, sc) \
79 if (bootverbose || vrgiu_debug & flag) vrgiu_dump_io(sc);
80 #define VDUMP_IOSETTING(flag, sc) \
81 if (bootverbose || vrgiu_debug & flag) vrgiu_dump_iosetting(sc);
82 #else
83 #define DPRINTF(flag, arg)
84 #define DDUMP_IO(flag, sc)
85 #define DDUMP_IOSETTING(flag, sc)
86 #define VPRINTF(flag, arg) if (bootverbose) printf arg;
87 #define VDUMP_IO(flag, sc) if (bootverbose) vrgiu_dump_io(sc);
88 #define VDUMP_IOSETTING(flag, sc) \
89 if (bootverbose) vrgiu_dump_iosetting(sc);
90 #endif
91
92 #ifdef VRGIU_INTR_NOLED
93 int vrgiu_intr_led = 0;
94 #else /* VRGIU_INTR_NOLED */
95 int vrgiu_intr_led = 1;
96 #endif /* VRGIU_INTR_NOLED */
97
98 #define MAX_GPIO_OUT 50 /* port 32:49 are output only port */
99 #define MAX_GPIO_INOUT 32 /* input/output port(0:31) */
100
101 #define LEGAL_INTR_PORT(x) ((x) >= 0 && (x) < MAX_GPIO_INOUT)
102 #define LEGAL_OUT_PORT(x) ((x) >= 0 && (x) < MAX_GPIO_OUT)
103
104 /*
105 * type declarations
106 */
107 struct vrgiu_intr_entry {
108 int ih_port;
109 int (*ih_fun)(void *);
110 void *ih_arg;
111 TAILQ_ENTRY(vrgiu_intr_entry) ih_link;
112 };
113
114 struct vrgiu_softc {
115 device_t sc_dev;
116 bus_space_tag_t sc_iot;
117 bus_space_handle_t sc_ioh;
118 /* Interrupt */
119 vrip_chipset_tag_t sc_vc;
120 void *sc_ih;
121 u_int32_t sc_intr_mask;
122 u_int32_t sc_intr_mode[MAX_GPIO_INOUT];
123 TAILQ_HEAD(, vrgiu_intr_entry) sc_intr_head[MAX_GPIO_INOUT];
124 struct hpcio_chip sc_iochip;
125 #ifndef SINGLE_VRIP_BASE
126 int sc_useupdn_reg, sc_termupdn_reg;
127 #endif /* SINGLE_VRIP_BASE */
128 };
129
130 #ifndef SINGLE_VRIP_BASE
131 #define GIUUSEUPDN_REG_W (sc->sc_useupdn_reg)
132 #define GIUTERMUPDN_REG_W (sc->sc_termupdn_reg)
133 #endif /* SINGLE_VRIP_BASE */
134
135 /*
136 * prototypes
137 */
138 int vrgiu_match(device_t, cfdata_t, void *);
139 void vrgiu_attach(device_t, device_t, void *);
140 int vrgiu_intr(void *);
141 int vrgiu_print(void *, const char *);
142 void vrgiu_callback(device_t);
143
144 void vrgiu_dump_regs(struct vrgiu_softc *);
145 void vrgiu_dump_io(struct vrgiu_softc *);
146 void vrgiu_diff_io(void);
147 void vrgiu_dump_iosetting(struct vrgiu_softc *);
148 void vrgiu_diff_iosetting(void);
149 u_int32_t vrgiu_regread_4(struct vrgiu_softc *, bus_addr_t);
150 u_int16_t vrgiu_regread(struct vrgiu_softc *, bus_addr_t);
151 void vrgiu_regwrite_4(struct vrgiu_softc *, bus_addr_t, u_int32_t);
152 void vrgiu_regwrite(struct vrgiu_softc *, bus_addr_t, u_int16_t);
153
154 static int vrgiu_port_read(hpcio_chip_t, int);
155 static void vrgiu_port_write(hpcio_chip_t, int, int);
156 static void *vrgiu_intr_establish(hpcio_chip_t, int, int, int (*)(void *), void *);
157 static void vrgiu_intr_disestablish(hpcio_chip_t, void *);
158 static void vrgiu_intr_clear(hpcio_chip_t, void *);
159 static void vrgiu_register_iochip(hpcio_chip_t, hpcio_chip_t);
160 static void vrgiu_update(hpcio_chip_t);
161 static void vrgiu_dump(hpcio_chip_t);
162 static hpcio_chip_t vrgiu_getchip(void *, int);
163
164 /*
165 * variables
166 */
167 static struct hpcio_chip vrgiu_iochip = {
168 .hc_portread = vrgiu_port_read,
169 .hc_portwrite = vrgiu_port_write,
170 .hc_intr_establish = vrgiu_intr_establish,
171 .hc_intr_disestablish = vrgiu_intr_disestablish,
172 .hc_intr_clear = vrgiu_intr_clear,
173 .hc_register_iochip = vrgiu_register_iochip,
174 .hc_update = vrgiu_update,
175 .hc_dump = vrgiu_dump,
176 };
177
178 CFATTACH_DECL_NEW(vrgiu, sizeof(struct vrgiu_softc),
179 vrgiu_match, vrgiu_attach, NULL, NULL);
180
181 struct vrgiu_softc *this_giu;
182
183 /*
184 * function bodies
185 */
186 int
187 vrgiu_match(device_t parent, cfdata_t cf, void *aux)
188 {
189
190 return (2); /* 1st attach group of vrip */
191 }
192
193 void
194 vrgiu_attach(device_t parent, device_t self, void *aux)
195 {
196 struct vrip_attach_args *va = aux;
197 struct vrgiu_softc *sc = device_private(self);
198 struct hpcio_attach_args haa;
199 int i;
200
201 sc->sc_dev = self;
202
203 #ifndef SINGLE_VRIP_BASE
204 if (va->va_addr == VR4102_GIU_ADDR) {
205 sc->sc_useupdn_reg = VR4102_GIUUSEUPDN_REG_W;
206 sc->sc_termupdn_reg = VR4102_GIUTERMUPDN_REG_W;
207 } else
208 if (va->va_addr == VR4122_GIU_ADDR) {
209 sc->sc_useupdn_reg = VR4122_GIUUSEUPDN_REG_W;
210 sc->sc_termupdn_reg = VR4122_GIUTERMUPDN_REG_W;
211 } else {
212 panic("%s: unknown base address 0x%lx",
213 device_xname(sc->sc_dev), va->va_addr);
214 }
215 #endif /* SINGLE_VRIP_BASE */
216
217 this_giu = sc;
218 sc->sc_vc = va->va_vc;
219 sc->sc_iot = va->va_iot;
220 bus_space_map(sc->sc_iot, va->va_addr, va->va_size,
221 0 /* no cache */, &sc->sc_ioh);
222 /*
223 * Disable all interrupts.
224 */
225 sc->sc_intr_mask = 0;
226 printf("\n");
227 #ifdef WINCE_DEFAULT_SETTING
228 #warning WINCE_DEFAULT_SETTING
229 #else
230 VPRINTF(DEBUG_IO, (" "
231 " 3 2 1\n"));
232 VPRINTF(DEBUG_IO, (" "
233 "10987654321098765432109876543210\n"));
234 VPRINTF(DEBUG_IO, ("WIN setting: "));
235 VDUMP_IOSETTING(DEBUG_IO, sc);
236 VPRINTF(DEBUG_IO, ("\n"));
237 vrgiu_regwrite_4(sc, GIUINTEN_REG, sc->sc_intr_mask);
238 #endif
239
240 for (i = 0; i < MAX_GPIO_INOUT; i++)
241 TAILQ_INIT(&sc->sc_intr_head[i]);
242 if (!(sc->sc_ih = vrip_intr_establish(va->va_vc, va->va_unit, 0,
243 IPL_BIO, vrgiu_intr, sc))) {
244 printf("%s: can't establish interrupt\n", device_xname(sc->sc_dev));
245 return;
246 }
247 /*
248 * fill hpcio_chip structure
249 */
250 sc->sc_iochip = vrgiu_iochip; /* structure copy */
251 sc->sc_iochip.hc_chipid = VRIP_IOCHIP_VRGIU;
252 sc->sc_iochip.hc_name = device_xname(sc->sc_dev);
253 sc->sc_iochip.hc_sc = sc;
254 /* Register functions to upper interface */
255 vrip_register_gpio(va->va_vc, &sc->sc_iochip);
256
257 /* Display port status (Input/Output) for debugging */
258 VPRINTF(DEBUG_IO, ("I/O setting: "));
259 VDUMP_IOSETTING(DEBUG_IO, sc);
260 VPRINTF(DEBUG_IO, ("\n"));
261 VPRINTF(DEBUG_IO, (" data:"));
262 VDUMP_IO(DEBUG_IO, sc);
263
264 /*
265 * hpcio I/F
266 */
267 haa.haa_busname = HPCIO_BUSNAME;
268 haa.haa_sc = sc;
269 haa.haa_getchip = vrgiu_getchip;
270 haa.haa_iot = sc->sc_iot;
271 while (config_found(self, &haa, vrgiu_print)) ;
272 /*
273 * GIU-ISA bridge
274 */
275 #if 1 /* XXX Sometimes mounting root device failed. Why? XXX*/
276 config_defer(self, vrgiu_callback);
277 #else
278 vrgiu_callback(self);
279 #endif
280 }
281
282 void
283 vrgiu_callback(device_t self)
284 {
285 struct vrgiu_softc *sc = device_private(self);
286 struct hpcio_attach_args haa;
287
288 haa.haa_busname = "vrisab";
289 haa.haa_sc = sc;
290 haa.haa_getchip = vrgiu_getchip;
291 haa.haa_iot = sc->sc_iot;
292 config_found(self, &haa, vrgiu_print);
293 }
294
295 int
296 vrgiu_print(void *aux, const char *pnp)
297 {
298 if (pnp)
299 return (QUIET);
300 return (UNCONF);
301 }
302
303 void
304 vrgiu_dump_iosetting(struct vrgiu_softc *sc)
305 {
306 long iosel, inten, useupdn, termupdn, edge, hold, level;
307 u_int32_t m;
308 char syms[] = "iiiiiiiilhLHeeEEoooooooooooooooo"
309 "DDDDDDDDDDDDDDDDUUUUUUUUUUUUUUUU";
310
311 iosel= vrgiu_regread_4(sc, GIUIOSEL_REG);
312 inten= vrgiu_regread_4(sc, GIUINTEN_REG);
313 edge = vrgiu_regread_4(sc, GIUINTTYP_REG);
314 hold = vrgiu_regread_4(sc, GIUINTHTSEL_REG);
315 level = vrgiu_regread_4(sc, GIUINTALSEL_REG);
316
317 if (GIUUSEUPDN_REG_W == GIU_NO_REG_W)
318 useupdn = 0;
319 else
320 useupdn = vrgiu_regread(sc, GIUUSEUPDN_REG_W);
321 if (GIUTERMUPDN_REG_W == GIU_NO_REG_W)
322 termupdn = 0;
323 else
324 termupdn = vrgiu_regread(sc, GIUTERMUPDN_REG_W);
325 for (m = 0x80000000; m; m >>=1)
326 printf ("%c", syms[
327 ((useupdn&m) ? 32 : 0) +
328 ((iosel&m) ? 16 : 0) + ((termupdn&m) ? 16 : 0) +
329 ((inten&m) ? 8 : 0) +
330 ((edge&m) ? 4 : 0) +
331 ((hold&m) ? 2 : 0) +
332 ((level&m) ? 1 : 0)]);
333 }
334
335 void
336 vrgiu_diff_iosetting(void)
337 {
338 struct vrgiu_softc *sc = this_giu;
339 static long oiosel = 0, ointen = 0, ouseupdn = 0, otermupdn = 0;
340 long iosel, inten, useupdn, termupdn;
341 u_int32_t m;
342
343 iosel= vrgiu_regread_4(sc, GIUIOSEL_REG);
344 inten= vrgiu_regread_4(sc, GIUINTEN_REG);
345 if (GIUUSEUPDN_REG_W == GIU_NO_REG_W)
346 useupdn = 0;
347 else
348 useupdn = vrgiu_regread(sc, GIUUSEUPDN_REG_W);
349 if (GIUTERMUPDN_REG_W == GIU_NO_REG_W)
350 termupdn = 0;
351 else
352 termupdn = vrgiu_regread(sc, GIUTERMUPDN_REG_W);
353 if (oiosel != iosel || ointen != inten ||
354 ouseupdn != useupdn || otermupdn != termupdn) {
355 for (m = 0x80000000; m; m >>=1)
356 printf ("%c" , (useupdn&m) ?
357 ((termupdn&m) ? 'U' : 'D') :
358 ((iosel&m) ? 'o' : ((inten&m)?'I':'i')));
359 }
360 oiosel = iosel;
361 ointen = inten;
362 ouseupdn = useupdn;
363 otermupdn = termupdn;
364 }
365
366 void
367 vrgiu_dump_io(struct vrgiu_softc *sc)
368 {
369
370 dbg_bit_display(vrgiu_regread_4(sc, GIUPODAT_REG));
371 dbg_bit_display(vrgiu_regread_4(sc, GIUPIOD_REG));
372 printf("\n");
373 }
374
375 void
376 vrgiu_diff_io(void)
377 {
378 struct vrgiu_softc *sc = this_giu;
379 static u_int32_t opreg[2] = {0, 0};
380 u_int32_t preg[2];
381
382 preg[0] = vrgiu_regread_4(sc, GIUPIOD_REG);
383 preg[1] = vrgiu_regread_4(sc, GIUPODAT_REG);
384
385 if (opreg[0] != preg[0] || opreg[1] != preg[1]) {
386 printf("giu data: ");
387 dbg_bit_display(preg[1]);
388 dbg_bit_display(preg[0]);
389 printf("\n");
390 }
391 opreg[0] = preg[0];
392 opreg[1] = preg[1];
393 }
394
395 void
396 vrgiu_dump_regs(struct vrgiu_softc *sc)
397 {
398
399 if (sc == NULL) {
400 panic("%s(%d): VRGIU device not initialized",
401 __FILE__, __LINE__);
402 }
403 printf(" IOSEL: %08x\n", vrgiu_regread_4(sc, GIUIOSEL_REG));
404 printf(" PIOD: %08x\n", vrgiu_regread_4(sc, GIUPIOD_REG));
405 printf(" PODAT: %08x\n", vrgiu_regread_4(sc, GIUPODAT_REG));
406 printf(" INTSTAT: %08x\n", vrgiu_regread_4(sc, GIUINTSTAT_REG));
407 printf(" INTEN: %08x\n", vrgiu_regread_4(sc, GIUINTEN_REG));
408 printf(" INTTYP: %08x\n", vrgiu_regread_4(sc, GIUINTTYP_REG));
409 printf(" INTALSEL: %08x\n", vrgiu_regread_4(sc, GIUINTALSEL_REG));
410 printf(" INTHTSEL: %08x\n", vrgiu_regread_4(sc, GIUINTHTSEL_REG));
411 }
412 /*
413 * GIU regster access method.
414 */
415 u_int32_t
416 vrgiu_regread_4(struct vrgiu_softc *sc, bus_addr_t offs)
417 {
418 u_int16_t reg[2];
419
420 bus_space_read_region_2 (sc->sc_iot, sc->sc_ioh, offs, reg, 2);
421
422 return (reg[0] | (reg[1] << 16));
423 }
424
425 u_int16_t
426 vrgiu_regread(struct vrgiu_softc *sc, bus_addr_t off)
427 {
428
429 return (bus_space_read_2(sc->sc_iot, sc->sc_ioh, off));
430 }
431
432 void
433 vrgiu_regwrite_4(struct vrgiu_softc *sc, bus_addr_t offs, u_int32_t data)
434 {
435 u_int16_t reg[2];
436
437 reg[0] = data & 0xffff;
438 reg[1] = (data>>16)&0xffff;
439 bus_space_write_region_2 (sc->sc_iot, sc->sc_ioh, offs, reg, 2);
440 }
441
442 void
443 vrgiu_regwrite(struct vrgiu_softc *sc, bus_addr_t off, u_int16_t data)
444 {
445
446 bus_space_write_2(sc->sc_iot, sc->sc_ioh, off, data);
447 }
448
449 /*
450 * PORT
451 */
452 int
453 vrgiu_port_read(hpcio_chip_t hc, int port)
454 {
455 struct vrgiu_softc *sc = hc->hc_sc;
456 int on;
457
458 if (!LEGAL_OUT_PORT(port))
459 panic("vrgiu_port_read: illegal gpio port");
460
461 if (port < 32)
462 on = (vrgiu_regread_4(sc, GIUPIOD_REG) & (1 << port));
463 else
464 on = (vrgiu_regread_4(sc, GIUPODAT_REG) & (1 << (port - 32)));
465
466 return (on ? 1 : 0);
467 }
468
469 void
470 vrgiu_port_write(hpcio_chip_t hc, int port, int onoff)
471 {
472 struct vrgiu_softc *sc = hc->hc_sc;
473 u_int32_t reg[2];
474 int bank;
475
476 if (!LEGAL_OUT_PORT(port))
477 panic("vrgiu_port_write: illegal gpio port");
478
479 reg[0] = vrgiu_regread_4(sc, GIUPIOD_REG);
480 reg[1] = vrgiu_regread_4(sc, GIUPODAT_REG);
481 bank = port < 32 ? 0 : 1;
482 if (bank == 1)
483 port -= 32;
484
485 if (onoff)
486 reg[bank] |= (1<<port);
487 else
488 reg[bank] &= ~(1<<port);
489 vrgiu_regwrite_4(sc, GIUPIOD_REG, reg[0]);
490 vrgiu_regwrite_4(sc, GIUPODAT_REG, reg[1]);
491 }
492
493 static void
494 vrgiu_update(hpcio_chip_t hc)
495 {
496 }
497
498 static void
499 vrgiu_dump(hpcio_chip_t hc)
500 {
501 }
502
503 static hpcio_chip_t
504 vrgiu_getchip(void* scx, int chipid)
505 {
506 struct vrgiu_softc *sc = scx;
507
508 return (&sc->sc_iochip);
509 }
510
511 /*
512 * Interrupt staff
513 */
514 void *
515 vrgiu_intr_establish(
516 hpcio_chip_t hc,
517 int port, /* GPIO pin # */
518 int mode, /* GIU trigger setting */
519 int (*ih_fun)(void *),
520 void *ih_arg)
521 {
522 struct vrgiu_softc *sc = hc->hc_sc;
523 int s;
524 u_int32_t reg, mask;
525 struct vrgiu_intr_entry *ih;
526
527 if (!LEGAL_INTR_PORT(port))
528 panic ("vrgiu_intr_establish: bogus interrupt line.");
529 if (sc->sc_intr_mode[port] && mode != sc->sc_intr_mode[port])
530 panic ("vrgiu_intr_establish: bogus interrupt type.");
531 else
532 sc->sc_intr_mode[port] = mode;
533 mask = (1 << port);
534
535 s = splhigh();
536
537 ih = kmem_alloc(sizeof(*ih), KM_SLEEP);
538 DPRINTF(DEBUG_INTR, ("%s: port %d ", device_xname(sc->sc_dev), port));
539 ih->ih_port = port;
540 ih->ih_fun = ih_fun;
541 ih->ih_arg = ih_arg;
542 TAILQ_INSERT_TAIL(&sc->sc_intr_head[port], ih, ih_link);
543 #ifdef WINCE_DEFAULT_SETTING
544 #warning WINCE_DEFAULT_SETTING
545 #else
546 /*
547 * Setup registers
548 */
549 /* Input mode */
550 reg = vrgiu_regread_4(sc, GIUIOSEL_REG);
551 reg &= ~mask;
552 vrgiu_regwrite_4(sc, GIUIOSEL_REG, reg);
553
554 /* interrupt type */
555 reg = vrgiu_regread_4(sc, GIUINTTYP_REG);
556 DPRINTF(DEBUG_INTR, ("[%s->",reg & mask ? "edge" : "level"));
557 if (mode & HPCIO_INTR_EDGE) {
558 DPRINTF(DEBUG_INTR, ("edge]"));
559 reg |= mask; /* edge */
560 } else {
561 DPRINTF(DEBUG_INTR, ("level]"));
562 reg &= ~mask; /* level */
563 }
564 vrgiu_regwrite_4(sc, GIUINTTYP_REG, reg);
565
566 /* interrupt level */
567 if (!(mode & HPCIO_INTR_EDGE)) {
568 reg = vrgiu_regread_4(sc, GIUINTALSEL_REG);
569 DPRINTF(DEBUG_INTR, ("[%s->",reg & mask ? "high" : "low"));
570 if (mode & HPCIO_INTR_HIGH) {
571 DPRINTF(DEBUG_INTR, ("high]"));
572 reg |= mask; /* high */
573 } else {
574 DPRINTF(DEBUG_INTR, ("low]"));
575 reg &= ~mask; /* low */
576 }
577 vrgiu_regwrite_4(sc, GIUINTALSEL_REG, reg);
578 }
579 /* hold or through */
580 reg = vrgiu_regread_4(sc, GIUINTHTSEL_REG);
581 DPRINTF(DEBUG_INTR, ("[%s->",reg & mask ? "hold" : "through"));
582 if (mode & HPCIO_INTR_HOLD) {
583 DPRINTF(DEBUG_INTR, ("hold]"));
584 reg |= mask; /* hold */
585 } else {
586 DPRINTF(DEBUG_INTR, ("through]"));
587 reg &= ~mask; /* through */
588 }
589 vrgiu_regwrite_4(sc, GIUINTHTSEL_REG, reg);
590 #endif
591 /*
592 * clear interrupt status
593 */
594 reg = vrgiu_regread_4(sc, GIUINTSTAT_REG);
595 reg &= ~mask;
596 vrgiu_regwrite_4(sc, GIUINTSTAT_REG, reg);
597 /*
598 * enable interrupt
599 */
600 #ifdef WINCE_DEFAULT_SETTING
601 #warning WINCE_DEFAULT_SETTING
602 #else
603 sc->sc_intr_mask |= mask;
604 vrgiu_regwrite_4(sc, GIUINTEN_REG, sc->sc_intr_mask);
605 /* Unmask GIU level 2 mask register */
606 vrip_intr_setmask2(sc->sc_vc, sc->sc_ih, (1<<port), 1);
607 #endif
608 splx(s);
609
610 DPRINTF(DEBUG_INTR, ("\n"));
611
612 return (ih);
613 }
614
615 void
616 vrgiu_intr_disestablish(hpcio_chip_t hc, void *arg)
617 {
618 struct vrgiu_intr_entry *ihe = arg;
619 struct vrgiu_softc *sc = hc->hc_sc;
620 int port = ihe->ih_port;
621 struct vrgiu_intr_entry *ih;
622 int s;
623
624 s = splhigh();
625 TAILQ_FOREACH(ih, &sc->sc_intr_head[port], ih_link) {
626 if (ih == ihe) {
627 TAILQ_REMOVE(&sc->sc_intr_head[port], ih, ih_link);
628 kmem_free(ih, sizeof(*ih));
629 if (TAILQ_EMPTY(&sc->sc_intr_head[port])) {
630 /* Disable interrupt */
631 #ifdef WINCE_DEFAULT_SETTING
632 #warning WINCE_DEFAULT_SETTING
633 #else
634 sc->sc_intr_mask &= ~(1<<port);
635 vrgiu_regwrite_4(sc, GIUINTEN_REG, sc->sc_intr_mask);
636 #endif
637 }
638 splx(s);
639 return;
640 }
641 }
642 panic("vrgiu_intr_disetablish: no such a handle.");
643 /* NOTREACHED */
644 }
645
646 /* Clear interrupt */
647 void
648 vrgiu_intr_clear(hpcio_chip_t hc, void *arg)
649 {
650 struct vrgiu_softc *sc = hc->hc_sc;
651 struct vrgiu_intr_entry *ihe = arg;
652 u_int32_t reg;
653
654 reg = vrgiu_regread_4(sc, GIUINTSTAT_REG);
655 vrgiu_regwrite_4(sc, GIUINTSTAT_REG, reg & ~(1 << ihe->ih_port));
656 }
657
658 static void
659 vrgiu_register_iochip(hpcio_chip_t hc, hpcio_chip_t iochip)
660 {
661 struct vrgiu_softc *sc = hc->hc_sc;
662
663 vrip_register_gpio(sc->sc_vc, iochip);
664 }
665
666 /* interrupt handler */
667 int
668 vrgiu_intr(void *arg)
669 {
670 #ifdef DUMP_GIU_LEVEL2_INTR
671 #warning DUMP_GIU_LEVEL2_INTR
672 static u_int32_t oreg;
673 #endif
674 struct vrgiu_softc *sc = arg;
675 int i;
676 u_int32_t reg;
677 int ledvalue = CONFIG_HOOK_LED_FLASH;
678
679 /* Get Level 2 interrupt status */
680 vrip_intr_getstatus2 (sc->sc_vc, sc->sc_ih, ®);
681 #ifdef DUMP_GIU_LEVEL2_INTR
682 #warning DUMP_GIU_LEVEL2_INTR
683 {
684 u_int32_t uedge, dedge, j;
685 for (j = 0x80000000; j > 0; j >>=1)
686 printf ("%c" , reg&j ? '|' : '.');
687 uedge = (reg ^ oreg) & reg;
688 dedge = (reg ^ oreg) & ~reg;
689 if (uedge || dedge) {
690 for (j = 0; j < 32; j++) {
691 if (uedge & (1 << j))
692 printf ("+%d", j);
693 else if (dedge & (1 << j))
694 printf ("-%d", j);
695 }
696 }
697 oreg = reg;
698 printf ("\n");
699 }
700 #endif
701 /* Clear interrupt */
702 vrgiu_regwrite_4(sc, GIUINTSTAT_REG, vrgiu_regread_4(sc, GIUINTSTAT_REG));
703
704 /* Dispatch handler */
705 for (i = 0; i < MAX_GPIO_INOUT; i++) {
706 if (reg & (1 << i)) {
707 register struct vrgiu_intr_entry *ih;
708 TAILQ_FOREACH(ih, &sc->sc_intr_head[i], ih_link) {
709 ih->ih_fun(ih->ih_arg);
710 }
711 }
712 }
713
714 if (vrgiu_intr_led)
715 config_hook_call(CONFIG_HOOK_SET, CONFIG_HOOK_LED,
716 (void *)&ledvalue);
717 return (0);
718 }
719