xref: /freebsd/sys/powerpc/powermac/pmu.c (revision e17f5b1d)
1 /*-
2  * SPDX-License-Identifier: BSD-2-Clause-FreeBSD
3  *
4  * Copyright (c) 2006 Michael Lorenz
5  * Copyright 2008 by Nathan Whitehorn
6  * All rights reserved.
7  *
8  * Redistribution and use in source and binary forms, with or without
9  * modification, are permitted provided that the following conditions
10  * are met:
11  * 1. Redistributions of source code must retain the above copyright
12  *    notice, this list of conditions and the following disclaimer.
13  * 2. Redistributions in binary form must reproduce the above copyright
14  *    notice, this list of conditions and the following disclaimer in the
15  *    documentation and/or other materials provided with the distribution.
16  *
17  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
22  * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
23  * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
24  * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
25  * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
26  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
27  * SUCH DAMAGE.
28  *
29  */
30 
31 #include <sys/cdefs.h>
32 __FBSDID("$FreeBSD$");
33 
34 #include <sys/param.h>
35 #include <sys/systm.h>
36 #include <sys/module.h>
37 #include <sys/bus.h>
38 #include <sys/conf.h>
39 #include <sys/eventhandler.h>
40 #include <sys/kernel.h>
41 #include <sys/kthread.h>
42 #include <sys/lock.h>
43 #include <sys/mutex.h>
44 #include <sys/clock.h>
45 #include <sys/proc.h>
46 #include <sys/reboot.h>
47 #include <sys/sysctl.h>
48 
49 #include <dev/ofw/ofw_bus.h>
50 #include <dev/ofw/openfirm.h>
51 #include <dev/led/led.h>
52 
53 #include <machine/_inttypes.h>
54 #include <machine/bus.h>
55 #include <machine/cpu.h>
56 #include <machine/hid.h>
57 #include <machine/intr_machdep.h>
58 #include <machine/md_var.h>
59 #include <machine/pcb.h>
60 #include <machine/pio.h>
61 #include <machine/resource.h>
62 
63 #include <vm/vm.h>
64 #include <vm/pmap.h>
65 
66 #include <sys/rman.h>
67 
68 #include <dev/adb/adb.h>
69 
70 #include "clock_if.h"
71 #include "pmuvar.h"
72 #include "viareg.h"
73 #include "uninorthvar.h"	/* For unin_chip_sleep()/unin_chip_wake() */
74 
75 #define PMU_DEFAULTS	PMU_INT_TICK | PMU_INT_ADB | \
76 	PMU_INT_PCEJECT | PMU_INT_SNDBRT | \
77 	PMU_INT_BATTERY | PMU_INT_ENVIRONMENT
78 
79 /*
80  * Bus interface
81  */
82 static int	pmu_probe(device_t);
83 static int	pmu_attach(device_t);
84 static int	pmu_detach(device_t);
85 
86 /*
87  * Clock interface
88  */
89 static int	pmu_gettime(device_t dev, struct timespec *ts);
90 static int	pmu_settime(device_t dev, struct timespec *ts);
91 
92 /*
93  * ADB Interface
94  */
95 
96 static u_int	pmu_adb_send(device_t dev, u_char command_byte, int len,
97 		    u_char *data, u_char poll);
98 static u_int	pmu_adb_autopoll(device_t dev, uint16_t mask);
99 static u_int	pmu_poll(device_t dev);
100 
101 /*
102  * Power interface
103  */
104 
105 static void	pmu_shutdown(void *xsc, int howto);
106 static void	pmu_set_sleepled(void *xsc, int onoff);
107 static int	pmu_server_mode(SYSCTL_HANDLER_ARGS);
108 static int	pmu_acline_state(SYSCTL_HANDLER_ARGS);
109 static int	pmu_query_battery(struct pmu_softc *sc, int batt,
110 		    struct pmu_battstate *info);
111 static int	pmu_battquery_sysctl(SYSCTL_HANDLER_ARGS);
112 static int	pmu_battmon(SYSCTL_HANDLER_ARGS);
113 static void	pmu_battquery_proc(void);
114 static void	pmu_battery_notify(struct pmu_battstate *batt,
115 		    struct pmu_battstate *old);
116 
117 /*
118  * List of battery-related sysctls we might ask for
119  */
120 
121 enum {
122 	PMU_BATSYSCTL_PRESENT	= 1 << 8,
123 	PMU_BATSYSCTL_CHARGING	= 2 << 8,
124 	PMU_BATSYSCTL_CHARGE	= 3 << 8,
125 	PMU_BATSYSCTL_MAXCHARGE = 4 << 8,
126 	PMU_BATSYSCTL_CURRENT	= 5 << 8,
127 	PMU_BATSYSCTL_VOLTAGE	= 6 << 8,
128 	PMU_BATSYSCTL_TIME	= 7 << 8,
129 	PMU_BATSYSCTL_LIFE	= 8 << 8
130 };
131 
132 static device_method_t  pmu_methods[] = {
133 	/* Device interface */
134 	DEVMETHOD(device_probe,		pmu_probe),
135 	DEVMETHOD(device_attach,	pmu_attach),
136         DEVMETHOD(device_detach,        pmu_detach),
137         DEVMETHOD(device_shutdown,      bus_generic_shutdown),
138 
139 	/* ADB bus interface */
140 	DEVMETHOD(adb_hb_send_raw_packet,   pmu_adb_send),
141 	DEVMETHOD(adb_hb_controller_poll,   pmu_poll),
142 	DEVMETHOD(adb_hb_set_autopoll_mask, pmu_adb_autopoll),
143 
144 	/* Clock interface */
145 	DEVMETHOD(clock_gettime,	pmu_gettime),
146 	DEVMETHOD(clock_settime,	pmu_settime),
147 
148 	DEVMETHOD_END
149 };
150 
151 static driver_t pmu_driver = {
152 	"pmu",
153 	pmu_methods,
154 	sizeof(struct pmu_softc),
155 };
156 
157 static devclass_t pmu_devclass;
158 
159 EARLY_DRIVER_MODULE(pmu, macio, pmu_driver, pmu_devclass, 0, 0,
160     BUS_PASS_RESOURCE);
161 DRIVER_MODULE(adb, pmu, adb_driver, adb_devclass, 0, 0);
162 
163 static int	pmuextint_probe(device_t);
164 static int	pmuextint_attach(device_t);
165 
166 static device_method_t  pmuextint_methods[] = {
167 	/* Device interface */
168 	DEVMETHOD(device_probe,		pmuextint_probe),
169 	DEVMETHOD(device_attach,	pmuextint_attach),
170 
171 	{0,0}
172 };
173 
174 static driver_t pmuextint_driver = {
175 	"pmuextint",
176 	pmuextint_methods,
177 	0
178 };
179 
180 static devclass_t pmuextint_devclass;
181 
182 EARLY_DRIVER_MODULE(pmuextint, macgpio, pmuextint_driver, pmuextint_devclass,
183     0, 0, BUS_PASS_RESOURCE);
184 
185 /* Make sure uhid is loaded, as it turns off some of the ADB emulation */
186 MODULE_DEPEND(pmu, usb, 1, 1, 1);
187 
188 static void pmu_intr(void *arg);
189 static void pmu_in(struct pmu_softc *sc);
190 static void pmu_out(struct pmu_softc *sc);
191 static void pmu_ack_on(struct pmu_softc *sc);
192 static void pmu_ack_off(struct pmu_softc *sc);
193 static int pmu_send(void *cookie, int cmd, int length, uint8_t *in_msg,
194 	int rlen, uint8_t *out_msg);
195 static uint8_t pmu_read_reg(struct pmu_softc *sc, u_int offset);
196 static void pmu_write_reg(struct pmu_softc *sc, u_int offset, uint8_t value);
197 static int pmu_intr_state(struct pmu_softc *);
198 
199 /* these values shows that number of data returned after 'send' cmd is sent */
200 static signed char pm_send_cmd_type[] = {
201 	  -1,   -1,   -1,   -1,   -1,   -1,   -1,   -1,
202 	  -1,   -1,   -1,   -1,   -1,   -1,   -1,   -1,
203 	0x01, 0x01,   -1,   -1,   -1,   -1,   -1,   -1,
204 	0x00, 0x00,   -1,   -1,   -1,   -1,   -1, 0x00,
205 	  -1, 0x00, 0x02, 0x01, 0x01,   -1,   -1,   -1,
206 	0x00,   -1,   -1,   -1,   -1,   -1,   -1,   -1,
207 	0x04, 0x14,   -1, 0x03,   -1,   -1,   -1,   -1,
208 	0x00, 0x00, 0x02, 0x02,   -1,   -1,   -1,   -1,
209 	0x01, 0x01,   -1,   -1,   -1,   -1,   -1,   -1,
210 	0x00, 0x00,   -1,   -1, 0x01,   -1,   -1,   -1,
211 	0x01, 0x00, 0x02, 0x02,   -1, 0x01, 0x03, 0x01,
212 	0x00, 0x01, 0x00, 0x00, 0x00,   -1,   -1,   -1,
213 	0x02,   -1,   -1,   -1,   -1,   -1,   -1,   -1,
214 	0x00, 0x00, 0x00, 0x00, 0x00, 0x00,   -1,   -1,
215 	0x01, 0x01, 0x01,   -1,   -1,   -1,   -1,   -1,
216 	0x00, 0x00,   -1,   -1,   -1, 0x05, 0x04, 0x04,
217 	0x04,   -1, 0x00,   -1,   -1,   -1,   -1,   -1,
218 	0x00,   -1,   -1,   -1,   -1,   -1,   -1,   -1,
219 	0x01, 0x02,   -1,   -1,   -1,   -1,   -1,   -1,
220 	0x00, 0x00,   -1,   -1,   -1,   -1,   -1,   -1,
221 	0x02, 0x02, 0x02, 0x04,   -1, 0x00,   -1,   -1,
222 	0x01, 0x01, 0x03, 0x02,   -1,   -1,   -1,   -1,
223 	  -1,   -1,   -1,   -1,   -1,   -1,   -1,   -1,
224 	  -1,   -1,   -1,   -1,   -1,   -1,   -1,   -1,
225 	  -1,   -1,   -1,   -1,   -1,   -1,   -1,   -1,
226 	  -1,   -1,   -1,   -1,   -1,   -1,   -1,   -1,
227 	0x00,   -1,   -1,   -1,   -1,   -1,   -1,   -1,
228 	0x01, 0x01,   -1,   -1, 0x00, 0x00,   -1,   -1,
229 	  -1, 0x04, 0x00,   -1,   -1,   -1,   -1,   -1,
230 	0x03,   -1, 0x00,   -1, 0x00,   -1,   -1, 0x00,
231 	  -1,   -1,   -1,   -1,   -1,   -1,   -1,   -1,
232 	  -1,   -1,   -1,   -1,   -1,   -1,   -1,   -1
233 };
234 
235 /* these values shows that number of data returned after 'receive' cmd is sent */
236 static signed char pm_receive_cmd_type[] = {
237 	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
238 	  -1,   -1,   -1,   -1,   -1,   -1,   -1,   -1,
239 	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
240 	0x02, 0x02,   -1,   -1,   -1,   -1,   -1, 0x00,
241 	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
242 	  -1,   -1,   -1,   -1,   -1,   -1,   -1,   -1,
243 	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
244 	0x05, 0x15,   -1, 0x02,   -1,   -1,   -1,   -1,
245 	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
246 	0x02, 0x02,   -1,   -1,   -1,   -1,   -1,   -1,
247 	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
248 	0x02, 0x00, 0x03, 0x03,   -1,   -1,   -1,   -1,
249 	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
250 	0x04, 0x04, 0x03, 0x09,   -1,   -1,   -1,   -1,
251 	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
252 	  -1,   -1,   -1,   -1,   -1, 0x01, 0x01, 0x01,
253 	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
254 	0x06,   -1,   -1,   -1,   -1,   -1,   -1,   -1,
255 	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
256 	0x02, 0x02,   -1,   -1,   -1,   -1,   -1,   -1,
257 	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
258 	0x02, 0x00, 0x00, 0x00,   -1,   -1,   -1,   -1,
259 	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
260 	  -1,   -1,   -1,   -1,   -1,   -1,   -1,   -1,
261 	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
262 	  -1,   -1,   -1,   -1,   -1,   -1,   -1,   -1,
263 	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
264 	0x02, 0x02,   -1,   -1, 0x02,   -1,   -1,   -1,
265 	0x00, 0x00, 0x01, 0x00, 0x00, 0x00, 0x00, 0x00,
266 	  -1,   -1, 0x02,   -1,   -1,   -1,   -1, 0x00,
267 	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
268 	  -1,   -1,   -1,   -1,   -1,   -1,   -1,   -1,
269 };
270 
271 static int pmu_battmon_enabled = 1;
272 static struct proc *pmubattproc;
273 static struct kproc_desc pmu_batt_kp = {
274 	"pmu_batt",
275 	pmu_battquery_proc,
276 	&pmubattproc
277 };
278 
279 /* We only have one of each device, so globals are safe */
280 static device_t pmu = NULL;
281 static device_t pmu_extint = NULL;
282 
283 static int
284 pmuextint_probe(device_t dev)
285 {
286 	const char *type = ofw_bus_get_type(dev);
287 
288 	if (strcmp(type, "extint-gpio1") != 0)
289                 return (ENXIO);
290 
291 	device_set_desc(dev, "Apple PMU99 External Interrupt");
292 	return (0);
293 }
294 
295 static int
296 pmu_probe(device_t dev)
297 {
298 	const char *type = ofw_bus_get_type(dev);
299 
300 	if (strcmp(type, "via-pmu") != 0)
301                 return (ENXIO);
302 
303 	device_set_desc(dev, "Apple PMU99 Controller");
304 	return (0);
305 }
306 
307 
308 static int
309 setup_pmu_intr(device_t dev, device_t extint)
310 {
311 	struct pmu_softc *sc;
312 	sc = device_get_softc(dev);
313 
314 	sc->sc_irqrid = 0;
315 	sc->sc_irq = bus_alloc_resource_any(extint, SYS_RES_IRQ, &sc->sc_irqrid,
316            	RF_ACTIVE);
317         if (sc->sc_irq == NULL) {
318                 device_printf(dev, "could not allocate interrupt\n");
319                 return (ENXIO);
320         }
321 
322 	if (bus_setup_intr(dev, sc->sc_irq, INTR_TYPE_MISC | INTR_MPSAFE
323 	    | INTR_ENTROPY, NULL, pmu_intr, dev, &sc->sc_ih) != 0) {
324                 device_printf(dev, "could not setup interrupt\n");
325                 bus_release_resource(dev, SYS_RES_IRQ, sc->sc_irqrid,
326                     sc->sc_irq);
327                 return (ENXIO);
328         }
329 
330 	return (0);
331 }
332 
333 static int
334 pmuextint_attach(device_t dev)
335 {
336 	pmu_extint = dev;
337 	if (pmu)
338 		return (setup_pmu_intr(pmu,dev));
339 
340 	return (0);
341 }
342 
343 static int
344 pmu_attach(device_t dev)
345 {
346 	struct pmu_softc *sc;
347 
348 	int i;
349 	uint8_t reg;
350 	uint8_t cmd[2] = {2, 0};
351 	uint8_t resp[16];
352 	phandle_t node,child;
353 	struct sysctl_ctx_list *ctx;
354 	struct sysctl_oid *tree;
355 
356 	sc = device_get_softc(dev);
357 	sc->sc_dev = dev;
358 
359 	sc->sc_memrid = 0;
360 	sc->sc_memr = bus_alloc_resource_any(dev, SYS_RES_MEMORY,
361 		          &sc->sc_memrid, RF_ACTIVE);
362 
363 	mtx_init(&sc->sc_mutex,"pmu",NULL,MTX_DEF | MTX_RECURSE);
364 
365 	if (sc->sc_memr == NULL) {
366 		device_printf(dev, "Could not alloc mem resource!\n");
367 		return (ENXIO);
368 	}
369 
370 	/*
371 	 * Our interrupt is attached to a GPIO pin. Depending on probe order,
372 	 * we may not have found it yet. If we haven't, it will find us, and
373 	 * attach our interrupt then.
374 	 */
375 	pmu = dev;
376 	if (pmu_extint != NULL) {
377 		if (setup_pmu_intr(dev,pmu_extint) != 0)
378 			return (ENXIO);
379 	}
380 
381 	sc->sc_autopoll = 0;
382 	sc->sc_batteries = 0;
383 	sc->adb_bus = NULL;
384 	sc->sc_leddev = NULL;
385 
386 	/* Init PMU */
387 
388 	pmu_write_reg(sc, vBufB, pmu_read_reg(sc, vBufB) | vPB4);
389 	pmu_write_reg(sc, vDirB, (pmu_read_reg(sc, vDirB) | vPB4) & ~vPB3);
390 
391 	reg = PMU_DEFAULTS;
392 	pmu_send(sc, PMU_SET_IMASK, 1, &reg, 16, resp);
393 
394 	pmu_write_reg(sc, vIER, 0x94); /* make sure VIA interrupts are on */
395 
396 	pmu_send(sc, PMU_SYSTEM_READY, 1, cmd, 16, resp);
397 	pmu_send(sc, PMU_GET_VERSION, 0, cmd, 16, resp);
398 
399 	/* Initialize child buses (ADB) */
400 	node = ofw_bus_get_node(dev);
401 
402 	for (child = OF_child(node); child != 0; child = OF_peer(child)) {
403 		char name[32];
404 
405 		memset(name, 0, sizeof(name));
406 		OF_getprop(child, "name", name, sizeof(name));
407 
408 		if (bootverbose)
409 			device_printf(dev, "PMU child <%s>\n",name);
410 
411 		if (strncmp(name, "adb", 4) == 0) {
412 			sc->adb_bus = device_add_child(dev,"adb",-1);
413 		}
414 
415 		if (strncmp(name, "power-mgt", 9) == 0) {
416 			uint32_t prim_info[9];
417 
418 			if (OF_getprop(child, "prim-info", prim_info,
419 			    sizeof(prim_info)) >= 7)
420 				sc->sc_batteries = (prim_info[6] >> 16) & 0xff;
421 
422 			if (bootverbose && sc->sc_batteries > 0)
423 				device_printf(dev, "%d batteries detected\n",
424 				    sc->sc_batteries);
425 		}
426 	}
427 
428 	/*
429 	 * Set up sysctls
430 	 */
431 
432 	ctx = device_get_sysctl_ctx(dev);
433 	tree = device_get_sysctl_tree(dev);
434 
435 	SYSCTL_ADD_PROC(ctx, SYSCTL_CHILDREN(tree), OID_AUTO,
436 	    "server_mode", CTLTYPE_INT | CTLFLAG_RW | CTLFLAG_MPSAFE, sc, 0,
437 	    pmu_server_mode, "I", "Enable reboot after power failure");
438 
439 	if (sc->sc_batteries > 0) {
440 		struct sysctl_oid *oid, *battroot;
441 		char battnum[2];
442 
443 		/* Only start the battery monitor if we have a battery. */
444 		kproc_start(&pmu_batt_kp);
445 		SYSCTL_ADD_PROC(ctx, SYSCTL_CHILDREN(tree), OID_AUTO,
446 		    "monitor_batteries",
447 		    CTLTYPE_INT | CTLFLAG_RW | CTLFLAG_NEEDGIANT, sc, 0,
448 		    pmu_battmon, "I", "Post battery events to devd");
449 
450 
451 		SYSCTL_ADD_PROC(ctx, SYSCTL_CHILDREN(tree), OID_AUTO,
452 		    "acline", CTLTYPE_INT | CTLFLAG_RD | CTLFLAG_MPSAFE, sc,
453 		    0, pmu_acline_state, "I", "AC Line Status");
454 
455 		battroot = SYSCTL_ADD_NODE(ctx, SYSCTL_CHILDREN(tree), OID_AUTO,
456 		    "batteries", CTLFLAG_RD | CTLFLAG_MPSAFE, 0,
457 		    "Battery Information");
458 
459 		for (i = 0; i < sc->sc_batteries; i++) {
460 			battnum[0] = i + '0';
461 			battnum[1] = '\0';
462 
463 			oid = SYSCTL_ADD_NODE(ctx, SYSCTL_CHILDREN(battroot),
464 			    OID_AUTO, battnum, CTLFLAG_RD | CTLFLAG_MPSAFE, 0,
465 			    "Battery Information");
466 
467 			SYSCTL_ADD_PROC(ctx, SYSCTL_CHILDREN(oid), OID_AUTO,
468 			    "present",
469 			    CTLTYPE_INT | CTLFLAG_RD | CTLFLAG_MPSAFE, sc,
470 			    PMU_BATSYSCTL_PRESENT | i, pmu_battquery_sysctl,
471 			    "I", "Battery present");
472 			SYSCTL_ADD_PROC(ctx, SYSCTL_CHILDREN(oid), OID_AUTO,
473 			    "charging",
474 			    CTLTYPE_INT | CTLFLAG_RD | CTLFLAG_MPSAFE, sc,
475 			    PMU_BATSYSCTL_CHARGING | i, pmu_battquery_sysctl,
476 			    "I", "Battery charging");
477 			SYSCTL_ADD_PROC(ctx, SYSCTL_CHILDREN(oid), OID_AUTO,
478 			    "charge",
479 			    CTLTYPE_INT | CTLFLAG_RD | CTLFLAG_MPSAFE, sc,
480 			    PMU_BATSYSCTL_CHARGE | i, pmu_battquery_sysctl,
481 			    "I", "Battery charge (mAh)");
482 			SYSCTL_ADD_PROC(ctx, SYSCTL_CHILDREN(oid), OID_AUTO,
483 			    "maxcharge",
484 			    CTLTYPE_INT | CTLFLAG_RD | CTLFLAG_MPSAFE, sc,
485 			    PMU_BATSYSCTL_MAXCHARGE | i, pmu_battquery_sysctl,
486 			    "I", "Maximum battery capacity (mAh)");
487 			SYSCTL_ADD_PROC(ctx, SYSCTL_CHILDREN(oid), OID_AUTO,
488 			    "rate",
489 			    CTLTYPE_INT | CTLFLAG_RD | CTLFLAG_MPSAFE, sc,
490 			    PMU_BATSYSCTL_CURRENT | i, pmu_battquery_sysctl,
491 			    "I", "Battery discharge rate (mA)");
492 			SYSCTL_ADD_PROC(ctx, SYSCTL_CHILDREN(oid), OID_AUTO,
493 			    "voltage",
494 			    CTLTYPE_INT | CTLFLAG_RD | CTLFLAG_MPSAFE, sc,
495 			    PMU_BATSYSCTL_VOLTAGE | i, pmu_battquery_sysctl,
496 			    "I", "Battery voltage (mV)");
497 
498 			/* Knobs for mental compatibility with ACPI */
499 
500 			SYSCTL_ADD_PROC(ctx, SYSCTL_CHILDREN(oid), OID_AUTO,
501 			    "time",
502 			    CTLTYPE_INT | CTLFLAG_RD | CTLFLAG_MPSAFE, sc,
503 			    PMU_BATSYSCTL_TIME | i, pmu_battquery_sysctl,
504 			    "I", "Time Remaining (minutes)");
505 			SYSCTL_ADD_PROC(ctx, SYSCTL_CHILDREN(oid), OID_AUTO,
506 			    "life",
507 			    CTLTYPE_INT | CTLFLAG_RD | CTLFLAG_MPSAFE, sc,
508 			    PMU_BATSYSCTL_LIFE | i, pmu_battquery_sysctl,
509 			    "I", "Capacity remaining (percent)");
510 		}
511 	}
512 
513 	/*
514 	 * Set up LED interface
515 	 */
516 
517 	sc->sc_leddev = led_create(pmu_set_sleepled, sc, "sleepled");
518 
519 	/*
520 	 * Register RTC
521 	 */
522 
523 	clock_register(dev, 1000);
524 
525 	/*
526 	 * Register power control handler
527 	 */
528 	EVENTHANDLER_REGISTER(shutdown_final, pmu_shutdown, sc,
529 	    SHUTDOWN_PRI_LAST);
530 
531 	return (bus_generic_attach(dev));
532 }
533 
534 static int
535 pmu_detach(device_t dev)
536 {
537 	struct pmu_softc *sc;
538 
539 	sc = device_get_softc(dev);
540 
541 	if (sc->sc_leddev != NULL)
542 		led_destroy(sc->sc_leddev);
543 
544 	bus_teardown_intr(dev, sc->sc_irq, sc->sc_ih);
545 	bus_release_resource(dev, SYS_RES_IRQ, sc->sc_irqrid, sc->sc_irq);
546 	bus_release_resource(dev, SYS_RES_MEMORY, sc->sc_memrid, sc->sc_memr);
547 	mtx_destroy(&sc->sc_mutex);
548 
549 	return (bus_generic_detach(dev));
550 }
551 
552 static uint8_t
553 pmu_read_reg(struct pmu_softc *sc, u_int offset)
554 {
555 	return (bus_read_1(sc->sc_memr, offset));
556 }
557 
558 static void
559 pmu_write_reg(struct pmu_softc *sc, u_int offset, uint8_t value)
560 {
561 	bus_write_1(sc->sc_memr, offset, value);
562 }
563 
564 static int
565 pmu_send_byte(struct pmu_softc *sc, uint8_t data)
566 {
567 
568 	pmu_out(sc);
569 	pmu_write_reg(sc, vSR, data);
570 	pmu_ack_off(sc);
571 	/* wait for intr to come up */
572 	/* XXX should add a timeout and bail if it expires */
573 	do {} while (pmu_intr_state(sc) == 0);
574 	pmu_ack_on(sc);
575 	do {} while (pmu_intr_state(sc));
576 	pmu_ack_on(sc);
577 	return 0;
578 }
579 
580 static inline int
581 pmu_read_byte(struct pmu_softc *sc, uint8_t *data)
582 {
583 	volatile uint8_t scratch;
584 	pmu_in(sc);
585 	scratch = pmu_read_reg(sc, vSR);
586 	pmu_ack_off(sc);
587 	/* wait for intr to come up */
588 	do {} while (pmu_intr_state(sc) == 0);
589 	pmu_ack_on(sc);
590 	do {} while (pmu_intr_state(sc));
591 	*data = pmu_read_reg(sc, vSR);
592 	return 0;
593 }
594 
595 static int
596 pmu_intr_state(struct pmu_softc *sc)
597 {
598 	return ((pmu_read_reg(sc, vBufB) & vPB3) == 0);
599 }
600 
601 static int
602 pmu_send(void *cookie, int cmd, int length, uint8_t *in_msg, int rlen,
603     uint8_t *out_msg)
604 {
605 	struct pmu_softc *sc = cookie;
606 	int i, rcv_len = -1;
607 	uint8_t out_len, intreg;
608 
609 	intreg = pmu_read_reg(sc, vIER);
610 	intreg &= 0x10;
611 	pmu_write_reg(sc, vIER, intreg);
612 
613 	/* wait idle */
614 	do {} while (pmu_intr_state(sc));
615 
616 	/* send command */
617 	pmu_send_byte(sc, cmd);
618 
619 	/* send length if necessary */
620 	if (pm_send_cmd_type[cmd] < 0) {
621 		pmu_send_byte(sc, length);
622 	}
623 
624 	for (i = 0; i < length; i++) {
625 		pmu_send_byte(sc, in_msg[i]);
626 	}
627 
628 	/* see if there's data to read */
629 	rcv_len = pm_receive_cmd_type[cmd];
630 	if (rcv_len == 0)
631 		goto done;
632 
633 	/* read command */
634 	if (rcv_len == 1) {
635 		pmu_read_byte(sc, out_msg);
636 		goto done;
637 	} else
638 		out_msg[0] = cmd;
639 	if (rcv_len < 0) {
640 		pmu_read_byte(sc, &out_len);
641 		rcv_len = out_len + 1;
642 	}
643 	for (i = 1; i < min(rcv_len, rlen); i++)
644 		pmu_read_byte(sc, &out_msg[i]);
645 
646 done:
647 	pmu_write_reg(sc, vIER, (intreg == 0) ? 0 : 0x90);
648 
649 	return rcv_len;
650 }
651 
652 
653 static u_int
654 pmu_poll(device_t dev)
655 {
656 	pmu_intr(dev);
657 	return (0);
658 }
659 
660 static void
661 pmu_in(struct pmu_softc *sc)
662 {
663 	uint8_t reg;
664 
665 	reg = pmu_read_reg(sc, vACR);
666 	reg &= ~vSR_OUT;
667 	reg |= 0x0c;
668 	pmu_write_reg(sc, vACR, reg);
669 }
670 
671 static void
672 pmu_out(struct pmu_softc *sc)
673 {
674 	uint8_t reg;
675 
676 	reg = pmu_read_reg(sc, vACR);
677 	reg |= vSR_OUT;
678 	reg |= 0x0c;
679 	pmu_write_reg(sc, vACR, reg);
680 }
681 
682 static void
683 pmu_ack_off(struct pmu_softc *sc)
684 {
685 	uint8_t reg;
686 
687 	reg = pmu_read_reg(sc, vBufB);
688 	reg &= ~vPB4;
689 	pmu_write_reg(sc, vBufB, reg);
690 }
691 
692 static void
693 pmu_ack_on(struct pmu_softc *sc)
694 {
695 	uint8_t reg;
696 
697 	reg = pmu_read_reg(sc, vBufB);
698 	reg |= vPB4;
699 	pmu_write_reg(sc, vBufB, reg);
700 }
701 
702 static void
703 pmu_intr(void *arg)
704 {
705 	device_t        dev;
706 	struct pmu_softc *sc;
707 
708 	unsigned int len;
709 	uint8_t resp[16];
710 	uint8_t junk[16];
711 
712         dev = (device_t)arg;
713 	sc = device_get_softc(dev);
714 
715 	mtx_lock(&sc->sc_mutex);
716 
717 	pmu_write_reg(sc, vIFR, 0x90);	/* Clear 'em */
718 	len = pmu_send(sc, PMU_INT_ACK, 0, NULL, 16, resp);
719 
720 	mtx_unlock(&sc->sc_mutex);
721 
722 	if ((len < 1) || (resp[1] == 0)) {
723 		return;
724 	}
725 
726 	if (resp[1] & PMU_INT_ADB) {
727 		/*
728 		 * the PMU will turn off autopolling after each command that
729 		 * it did not issue, so we assume any but TALK R0 is ours and
730 		 * re-enable autopoll here whenever we receive an ACK for a
731 		 * non TR0 command.
732 		 */
733 		mtx_lock(&sc->sc_mutex);
734 
735 		if ((resp[2] & 0x0f) != (ADB_COMMAND_TALK << 2)) {
736 			if (sc->sc_autopoll) {
737 				uint8_t cmd[] = {0, PMU_SET_POLL_MASK,
738 				    (sc->sc_autopoll >> 8) & 0xff,
739 				    sc->sc_autopoll & 0xff};
740 
741 				pmu_send(sc, PMU_ADB_CMD, 4, cmd, 16, junk);
742 			}
743 		}
744 
745 		mtx_unlock(&sc->sc_mutex);
746 
747 		adb_receive_raw_packet(sc->adb_bus,resp[1],resp[2],
748 			len - 3,&resp[3]);
749 	}
750 	if (resp[1] & PMU_INT_ENVIRONMENT) {
751 		/* if the lid was just closed, notify devd. */
752 		if ((resp[2] & PMU_ENV_LID_CLOSED) && (!sc->lid_closed)) {
753 			sc->lid_closed = 1;
754 			devctl_notify("PMU", "lid", "close", NULL);
755 		}
756 		else if (!(resp[2] & PMU_ENV_LID_CLOSED) && (sc->lid_closed)) {
757 			/* if the lid was just opened, notify devd. */
758 			sc->lid_closed = 0;
759 			devctl_notify("PMU", "lid", "open", NULL);
760 		}
761 		if (resp[2] & PMU_ENV_POWER)
762 			devctl_notify("PMU", "Button", "pressed", NULL);
763 	}
764 }
765 
766 static u_int
767 pmu_adb_send(device_t dev, u_char command_byte, int len, u_char *data,
768     u_char poll)
769 {
770 	struct pmu_softc *sc = device_get_softc(dev);
771 	int i,replen;
772 	uint8_t packet[16], resp[16];
773 
774 	/* construct an ADB command packet and send it */
775 
776 	packet[0] = command_byte;
777 
778 	packet[1] = 0;
779 	packet[2] = len;
780 	for (i = 0; i < len; i++)
781 		packet[i + 3] = data[i];
782 
783 	mtx_lock(&sc->sc_mutex);
784 	replen = pmu_send(sc, PMU_ADB_CMD, len + 3, packet, 16, resp);
785 	mtx_unlock(&sc->sc_mutex);
786 
787 	if (poll)
788 		pmu_poll(dev);
789 
790 	return 0;
791 }
792 
793 static u_int
794 pmu_adb_autopoll(device_t dev, uint16_t mask)
795 {
796 	struct pmu_softc *sc = device_get_softc(dev);
797 
798 	/* magical incantation to re-enable autopolling */
799 	uint8_t cmd[] = {0, PMU_SET_POLL_MASK, (mask >> 8) & 0xff, mask & 0xff};
800 	uint8_t resp[16];
801 
802 	mtx_lock(&sc->sc_mutex);
803 
804 	if (sc->sc_autopoll == mask) {
805 		mtx_unlock(&sc->sc_mutex);
806 		return 0;
807 	}
808 
809 	sc->sc_autopoll = mask & 0xffff;
810 
811 	if (mask)
812 		pmu_send(sc, PMU_ADB_CMD, 4, cmd, 16, resp);
813 	else
814 		pmu_send(sc, PMU_ADB_POLL_OFF, 0, NULL, 16, resp);
815 
816 	mtx_unlock(&sc->sc_mutex);
817 
818 	return 0;
819 }
820 
821 static void
822 pmu_shutdown(void *xsc, int howto)
823 {
824 	struct pmu_softc *sc = xsc;
825 	uint8_t cmd[] = {'M', 'A', 'T', 'T'};
826 
827 	if (howto & RB_HALT)
828 		pmu_send(sc, PMU_POWER_OFF, 4, cmd, 0, NULL);
829 	else
830 		pmu_send(sc, PMU_RESET_CPU, 0, NULL, 0, NULL);
831 
832 	for (;;);
833 }
834 
835 static void
836 pmu_set_sleepled(void *xsc, int onoff)
837 {
838 	struct pmu_softc *sc = xsc;
839 	uint8_t cmd[] = {4, 0, 0};
840 
841 	cmd[2] = onoff;
842 
843 	mtx_lock(&sc->sc_mutex);
844 	pmu_send(sc, PMU_SET_SLEEPLED, 3, cmd, 0, NULL);
845 	mtx_unlock(&sc->sc_mutex);
846 }
847 
848 static int
849 pmu_server_mode(SYSCTL_HANDLER_ARGS)
850 {
851 	struct pmu_softc *sc = arg1;
852 
853 	u_int server_mode = 0;
854 	uint8_t getcmd[] = {PMU_PWR_GET_POWERUP_EVENTS};
855 	uint8_t setcmd[] = {0, 0, PMU_PWR_WAKEUP_AC_INSERT};
856 	uint8_t resp[3];
857 	int error, len;
858 
859 	mtx_lock(&sc->sc_mutex);
860 	len = pmu_send(sc, PMU_POWER_EVENTS, 1, getcmd, 3, resp);
861 	mtx_unlock(&sc->sc_mutex);
862 
863 	if (len == 3)
864 		server_mode = (resp[2] & PMU_PWR_WAKEUP_AC_INSERT) ? 1 : 0;
865 
866 	error = sysctl_handle_int(oidp, &server_mode, 0, req);
867 
868 	if (len != 3)
869 		return (EINVAL);
870 
871 	if (error || !req->newptr)
872 		return (error);
873 
874 	if (server_mode == 1)
875 		setcmd[0] = PMU_PWR_SET_POWERUP_EVENTS;
876 	else if (server_mode == 0)
877 		setcmd[0] = PMU_PWR_CLR_POWERUP_EVENTS;
878 	else
879 		return (EINVAL);
880 
881 	setcmd[1] = resp[1];
882 
883 	mtx_lock(&sc->sc_mutex);
884 	pmu_send(sc, PMU_POWER_EVENTS, 3, setcmd, 2, resp);
885 	mtx_unlock(&sc->sc_mutex);
886 
887 	return (0);
888 }
889 
890 static int
891 pmu_query_battery(struct pmu_softc *sc, int batt, struct pmu_battstate *info)
892 {
893 	uint8_t reg;
894 	uint8_t resp[16];
895 	int len;
896 
897 	reg = batt + 1;
898 
899 	mtx_lock(&sc->sc_mutex);
900 	len = pmu_send(sc, PMU_SMART_BATTERY_STATE, 1, &reg, 16, resp);
901 	mtx_unlock(&sc->sc_mutex);
902 
903 	if (len < 3)
904 		return (-1);
905 
906 	/* All PMU battery info replies share a common header:
907 	 * Byte 1	Payload Format
908 	 * Byte 2	Battery Flags
909 	 */
910 
911 	info->state = resp[2];
912 
913 	switch (resp[1]) {
914 	case 3:
915 	case 4:
916 		/*
917 		 * Formats 3 and 4 appear to be the same:
918 		 * Byte 3	Charge
919 		 * Byte 4	Max Charge
920 		 * Byte 5	Current
921 		 * Byte 6	Voltage
922 		 */
923 
924 		info->charge = resp[3];
925 		info->maxcharge = resp[4];
926 		/* Current can be positive or negative */
927 		info->current = (int8_t)resp[5];
928 		info->voltage = resp[6];
929 		break;
930 	case 5:
931 		/*
932 		 * Formats 5 is a wider version of formats 3 and 4
933 		 * Byte 3-4	Charge
934 		 * Byte 5-6	Max Charge
935 		 * Byte 7-8	Current
936 		 * Byte 9-10	Voltage
937 		 */
938 
939 		info->charge = (resp[3] << 8) | resp[4];
940 		info->maxcharge = (resp[5] << 8) | resp[6];
941 		/* Current can be positive or negative */
942 		info->current = (int16_t)((resp[7] << 8) | resp[8]);
943 		info->voltage = (resp[9] << 8) | resp[10];
944 		break;
945 	default:
946 		device_printf(sc->sc_dev, "Unknown battery info format (%d)!\n",
947 		    resp[1]);
948 		return (-1);
949 	}
950 
951 	return (0);
952 }
953 
954 static void
955 pmu_battery_notify(struct pmu_battstate *batt, struct pmu_battstate *old)
956 {
957 	char notify_buf[16];
958 	int new_acline, old_acline;
959 
960 	new_acline = (batt->state & PMU_PWR_AC_PRESENT) ? 1 : 0;
961 	old_acline = (old->state & PMU_PWR_AC_PRESENT) ? 1 : 0;
962 
963 	if (new_acline != old_acline) {
964 		snprintf(notify_buf, sizeof(notify_buf),
965 		    "notify=0x%02x", new_acline);
966 		devctl_notify("PMU", "POWER", "ACLINE", notify_buf);
967 	}
968 }
969 
970 static void
971 pmu_battquery_proc()
972 {
973 	struct pmu_softc *sc;
974 	struct pmu_battstate batt;
975 	struct pmu_battstate cur_batt;
976 	int error;
977 
978 	sc = device_get_softc(pmu);
979 
980 	bzero(&cur_batt, sizeof(cur_batt));
981 	while (1) {
982 		kproc_suspend_check(curproc);
983 		error = pmu_query_battery(sc, 0, &batt);
984 		pmu_battery_notify(&batt, &cur_batt);
985 		cur_batt = batt;
986 		pause("pmu_batt", hz);
987 	}
988 }
989 
990 static int
991 pmu_battmon(SYSCTL_HANDLER_ARGS)
992 {
993 	struct pmu_softc *sc;
994 	int error, result;
995 
996 	sc = arg1;
997 	result = pmu_battmon_enabled;
998 
999 	error = sysctl_handle_int(oidp, &result, 0, req);
1000 
1001 	if (error || !req->newptr)
1002 		return (error);
1003 
1004 	if (!result && pmu_battmon_enabled)
1005 		error = kproc_suspend(pmubattproc, hz);
1006 	else if (result && pmu_battmon_enabled == 0)
1007 		error = kproc_resume(pmubattproc);
1008 	pmu_battmon_enabled = (result != 0);
1009 
1010 	return (error);
1011 }
1012 
1013 static int
1014 pmu_acline_state(SYSCTL_HANDLER_ARGS)
1015 {
1016 	struct pmu_softc *sc;
1017 	struct pmu_battstate batt;
1018 	int error, result;
1019 
1020 	sc = arg1;
1021 
1022 	/* The PMU treats the AC line status as a property of the battery */
1023 	error = pmu_query_battery(sc, 0, &batt);
1024 
1025 	if (error != 0)
1026 		return (error);
1027 
1028 	result = (batt.state & PMU_PWR_AC_PRESENT) ? 1 : 0;
1029 	error = sysctl_handle_int(oidp, &result, 0, req);
1030 
1031 	return (error);
1032 }
1033 
1034 static int
1035 pmu_battquery_sysctl(SYSCTL_HANDLER_ARGS)
1036 {
1037 	struct pmu_softc *sc;
1038 	struct pmu_battstate batt;
1039 	int error, result;
1040 
1041 	sc = arg1;
1042 
1043 	error = pmu_query_battery(sc, arg2 & 0x00ff, &batt);
1044 
1045 	if (error != 0)
1046 		return (error);
1047 
1048 	switch (arg2 & 0xff00) {
1049 	case PMU_BATSYSCTL_PRESENT:
1050 		result = (batt.state & PMU_PWR_BATT_PRESENT) ? 1 : 0;
1051 		break;
1052 	case PMU_BATSYSCTL_CHARGING:
1053 		result = (batt.state & PMU_PWR_BATT_CHARGING) ? 1 : 0;
1054 		break;
1055 	case PMU_BATSYSCTL_CHARGE:
1056 		result = batt.charge;
1057 		break;
1058 	case PMU_BATSYSCTL_MAXCHARGE:
1059 		result = batt.maxcharge;
1060 		break;
1061 	case PMU_BATSYSCTL_CURRENT:
1062 		result = batt.current;
1063 		break;
1064 	case PMU_BATSYSCTL_VOLTAGE:
1065 		result = batt.voltage;
1066 		break;
1067 	case PMU_BATSYSCTL_TIME:
1068 		/* Time remaining until full charge/discharge, in minutes */
1069 
1070 		if (batt.current >= 0)
1071 			result = (batt.maxcharge - batt.charge) /* mAh */ * 60
1072 			    / batt.current /* mA */;
1073 		else
1074 			result = (batt.charge /* mAh */ * 60)
1075 			    / (-batt.current /* mA */);
1076 		break;
1077 	case PMU_BATSYSCTL_LIFE:
1078 		/* Battery charge fraction, in percent */
1079 		result = (batt.charge * 100) / batt.maxcharge;
1080 		break;
1081 	default:
1082 		/* This should never happen */
1083 		result = -1;
1084 	}
1085 
1086 	error = sysctl_handle_int(oidp, &result, 0, req);
1087 
1088 	return (error);
1089 }
1090 
1091 #define DIFF19041970	2082844800
1092 
1093 static int
1094 pmu_gettime(device_t dev, struct timespec *ts)
1095 {
1096 	struct pmu_softc *sc = device_get_softc(dev);
1097 	uint8_t resp[16];
1098 	uint32_t sec;
1099 
1100 	mtx_lock(&sc->sc_mutex);
1101 	pmu_send(sc, PMU_READ_RTC, 0, NULL, 16, resp);
1102 	mtx_unlock(&sc->sc_mutex);
1103 
1104 	memcpy(&sec, &resp[1], 4);
1105 	ts->tv_sec = sec - DIFF19041970;
1106 	ts->tv_nsec = 0;
1107 
1108 	return (0);
1109 }
1110 
1111 static int
1112 pmu_settime(device_t dev, struct timespec *ts)
1113 {
1114 	struct pmu_softc *sc = device_get_softc(dev);
1115 	uint32_t sec;
1116 
1117 	sec = ts->tv_sec + DIFF19041970;
1118 
1119 	mtx_lock(&sc->sc_mutex);
1120 	pmu_send(sc, PMU_SET_RTC, sizeof(sec), (uint8_t *)&sec, 0, NULL);
1121 	mtx_unlock(&sc->sc_mutex);
1122 
1123 	return (0);
1124 }
1125 
1126 int
1127 pmu_set_speed(int low_speed)
1128 {
1129 	struct pmu_softc *sc;
1130 	uint8_t sleepcmd[] = {'W', 'O', 'O', 'F', 0};
1131 	uint8_t resp[16];
1132 
1133 	sc = device_get_softc(pmu);
1134 	pmu_write_reg(sc, vIER, 0x10);
1135 	spinlock_enter();
1136 	mtdec(0x7fffffff);
1137 	mb();
1138 	mtdec(0x7fffffff);
1139 
1140 	sleepcmd[4] = low_speed;
1141 	pmu_send(sc, PMU_CPU_SPEED, 5, sleepcmd, 16, resp);
1142 	unin_chip_sleep(NULL, 1);
1143 	platform_sleep();
1144 	unin_chip_wake(NULL);
1145 
1146 	mtdec(1);	/* Force a decrementer exception */
1147 	spinlock_exit();
1148 	pmu_write_reg(sc, vIER, 0x90);
1149 
1150 	return (0);
1151 }
1152