acpipmtimer.c revision 1.8 1 1.8 dyoung /* $NetBSD: acpipmtimer.c,v 1.8 2009/08/18 17:47:46 dyoung Exp $ */
2 1.3 xtraeme
3 1.3 xtraeme #include <sys/cdefs.h>
4 1.8 dyoung __KERNEL_RCSID(0, "$NetBSD: acpipmtimer.c,v 1.8 2009/08/18 17:47:46 dyoung Exp $");
5 1.1 drochner
6 1.1 drochner #include <sys/types.h>
7 1.1 drochner
8 1.1 drochner #include <sys/systm.h>
9 1.1 drochner #include <sys/device.h>
10 1.1 drochner #include <sys/malloc.h>
11 1.4 ad #include <sys/bus.h>
12 1.1 drochner #include <sys/time.h>
13 1.1 drochner #include <sys/timetc.h>
14 1.1 drochner
15 1.1 drochner #include <dev/ic/acpipmtimer.h>
16 1.1 drochner
17 1.1 drochner #define ACPI_PM_TIMER_FREQUENCY 3579545
18 1.1 drochner
19 1.1 drochner struct hwtc {
20 1.1 drochner struct timecounter tc;
21 1.1 drochner bus_space_tag_t t;
22 1.1 drochner bus_space_handle_t h;
23 1.1 drochner bus_size_t off;
24 1.1 drochner };
25 1.1 drochner
26 1.1 drochner static u_int acpihwtimer_read_safe(struct timecounter *);
27 1.1 drochner static u_int acpihwtimer_read_fast(struct timecounter *);
28 1.1 drochner
29 1.8 dyoung acpipmtimer_t
30 1.7 cegger acpipmtimer_attach(device_t dev,
31 1.1 drochner bus_space_tag_t t, bus_space_handle_t h, bus_size_t off,
32 1.1 drochner int flags)
33 1.1 drochner {
34 1.1 drochner struct hwtc *tc;
35 1.1 drochner
36 1.1 drochner tc = malloc(sizeof(struct hwtc), M_DEVBUF, M_WAITOK|M_ZERO);
37 1.8 dyoung if (tc == NULL)
38 1.8 dyoung return NULL;
39 1.1 drochner
40 1.6 cegger tc->tc.tc_name = device_xname(dev);
41 1.1 drochner tc->tc.tc_frequency = ACPI_PM_TIMER_FREQUENCY;
42 1.1 drochner if (flags & ACPIPMT_32BIT)
43 1.1 drochner tc->tc.tc_counter_mask = 0xffffffff;
44 1.1 drochner else
45 1.1 drochner tc->tc.tc_counter_mask = 0x00ffffff;
46 1.1 drochner if (flags & ACPIPMT_BADLATCH) {
47 1.1 drochner tc->tc.tc_get_timecount = acpihwtimer_read_safe;
48 1.1 drochner tc->tc.tc_quality = 900;
49 1.1 drochner } else {
50 1.1 drochner tc->tc.tc_get_timecount = acpihwtimer_read_fast;
51 1.1 drochner tc->tc.tc_quality = 1000;
52 1.1 drochner }
53 1.1 drochner
54 1.1 drochner tc->t = t;
55 1.1 drochner tc->h = h;
56 1.1 drochner tc->off = off;
57 1.1 drochner
58 1.1 drochner tc->tc.tc_priv = tc;
59 1.1 drochner tc_init(&tc->tc);
60 1.2 xtraeme aprint_normal("%s: %d-bit timer\n", tc->tc.tc_name,
61 1.1 drochner (flags & ACPIPMT_32BIT ? 32 : 24));
62 1.8 dyoung return tc;
63 1.8 dyoung }
64 1.8 dyoung
65 1.8 dyoung int
66 1.8 dyoung acpipmtimer_detach(acpipmtimer_t timer, int flags)
67 1.8 dyoung {
68 1.8 dyoung struct hwtc *tc = timer;
69 1.8 dyoung
70 1.8 dyoung return tc_detach(&tc->tc);
71 1.1 drochner }
72 1.1 drochner
73 1.1 drochner #define r(h) bus_space_read_4(h->t, h->h, h->off)
74 1.1 drochner
75 1.1 drochner static u_int
76 1.1 drochner acpihwtimer_read_safe(struct timecounter *tc)
77 1.1 drochner {
78 1.1 drochner struct hwtc *h = tc->tc_priv;
79 1.1 drochner uint32_t t1, t2, t3;
80 1.1 drochner
81 1.1 drochner t2 = r(h);
82 1.1 drochner t3 = r(h);
83 1.1 drochner do {
84 1.1 drochner t1 = t2;
85 1.1 drochner t2 = t3;
86 1.1 drochner t3 = r(h);
87 1.1 drochner } while ((t1 > t2) || (t2 > t3));
88 1.1 drochner return (t2);
89 1.1 drochner }
90 1.1 drochner
91 1.1 drochner static u_int
92 1.1 drochner acpihwtimer_read_fast(struct timecounter *tc)
93 1.1 drochner {
94 1.1 drochner struct hwtc *h = tc->tc_priv;
95 1.1 drochner
96 1.1 drochner return r(h);
97 1.1 drochner }
98