ichlpcib.c revision 1.48 1 1.48 msaitoh /* $NetBSD: ichlpcib.c,v 1.48 2015/03/20 12:01:32 msaitoh Exp $ */
2 1.1 xtraeme
3 1.1 xtraeme /*-
4 1.1 xtraeme * Copyright (c) 2004 The NetBSD Foundation, Inc.
5 1.1 xtraeme * All rights reserved.
6 1.1 xtraeme *
7 1.1 xtraeme * This code is derived from software contributed to The NetBSD Foundation
8 1.1 xtraeme * by Minoura Makoto and Matthew R. Green.
9 1.1 xtraeme *
10 1.1 xtraeme * Redistribution and use in source and binary forms, with or without
11 1.1 xtraeme * modification, are permitted provided that the following conditions
12 1.1 xtraeme * are met:
13 1.1 xtraeme * 1. Redistributions of source code must retain the above copyright
14 1.1 xtraeme * notice, this list of conditions and the following disclaimer.
15 1.1 xtraeme * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 xtraeme * notice, this list of conditions and the following disclaimer in the
17 1.1 xtraeme * documentation and/or other materials provided with the distribution.
18 1.1 xtraeme *
19 1.1 xtraeme * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.1 xtraeme * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.1 xtraeme * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.1 xtraeme * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.1 xtraeme * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.1 xtraeme * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.1 xtraeme * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.1 xtraeme * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.1 xtraeme * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.1 xtraeme * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.1 xtraeme * POSSIBILITY OF SUCH DAMAGE.
30 1.1 xtraeme */
31 1.1 xtraeme
32 1.1 xtraeme /*
33 1.1 xtraeme * Intel I/O Controller Hub (ICHn) LPC Interface Bridge driver
34 1.1 xtraeme *
35 1.1 xtraeme * LPC Interface Bridge is basically a pcib (PCI-ISA Bridge), but has
36 1.1 xtraeme * some power management and monitoring functions.
37 1.1 xtraeme * Currently we support the watchdog timer, SpeedStep (on some systems)
38 1.1 xtraeme * and the power management timer.
39 1.1 xtraeme */
40 1.1 xtraeme
41 1.1 xtraeme #include <sys/cdefs.h>
42 1.48 msaitoh __KERNEL_RCSID(0, "$NetBSD: ichlpcib.c,v 1.48 2015/03/20 12:01:32 msaitoh Exp $");
43 1.1 xtraeme
44 1.1 xtraeme #include <sys/types.h>
45 1.1 xtraeme #include <sys/param.h>
46 1.1 xtraeme #include <sys/systm.h>
47 1.1 xtraeme #include <sys/device.h>
48 1.1 xtraeme #include <sys/sysctl.h>
49 1.6 jmcneill #include <sys/timetc.h>
50 1.20 jakllsch #include <sys/gpio.h>
51 1.32 dyoung #include <sys/bus.h>
52 1.1 xtraeme
53 1.1 xtraeme #include <dev/pci/pcivar.h>
54 1.1 xtraeme #include <dev/pci/pcireg.h>
55 1.1 xtraeme #include <dev/pci/pcidevs.h>
56 1.1 xtraeme
57 1.20 jakllsch #include <dev/gpio/gpiovar.h>
58 1.1 xtraeme #include <dev/sysmon/sysmonvar.h>
59 1.1 xtraeme
60 1.6 jmcneill #include <dev/ic/acpipmtimer.h>
61 1.1 xtraeme #include <dev/ic/i82801lpcreg.h>
62 1.31 jruoho #include <dev/ic/i82801lpcvar.h>
63 1.6 jmcneill #include <dev/ic/hpetreg.h>
64 1.6 jmcneill #include <dev/ic/hpetvar.h>
65 1.6 jmcneill
66 1.12 martin #include "pcibvar.h"
67 1.20 jakllsch #include "gpio.h"
68 1.25 jakllsch #include "fwhrng.h"
69 1.20 jakllsch
70 1.20 jakllsch #define LPCIB_GPIO_NPINS 64
71 1.1 xtraeme
72 1.1 xtraeme struct lpcib_softc {
73 1.12 martin /* we call pcibattach() which assumes this starts like this: */
74 1.12 martin struct pcib_softc sc_pcib;
75 1.1 xtraeme
76 1.6 jmcneill struct pci_attach_args sc_pa;
77 1.6 jmcneill int sc_has_rcba;
78 1.6 jmcneill int sc_has_ich5_hpet;
79 1.6 jmcneill
80 1.6 jmcneill /* RCBA */
81 1.6 jmcneill bus_space_tag_t sc_rcbat;
82 1.6 jmcneill bus_space_handle_t sc_rcbah;
83 1.6 jmcneill pcireg_t sc_rcba_reg;
84 1.6 jmcneill
85 1.1 xtraeme /* Watchdog variables. */
86 1.1 xtraeme struct sysmon_wdog sc_smw;
87 1.1 xtraeme bus_space_tag_t sc_iot;
88 1.1 xtraeme bus_space_handle_t sc_ioh;
89 1.19 dyoung bus_size_t sc_iosize;
90 1.6 jmcneill
91 1.6 jmcneill /* HPET variables. */
92 1.6 jmcneill uint32_t sc_hpet_reg;
93 1.6 jmcneill
94 1.20 jakllsch #if NGPIO > 0
95 1.20 jakllsch device_t sc_gpiobus;
96 1.20 jakllsch kmutex_t sc_gpio_mtx;
97 1.20 jakllsch bus_space_tag_t sc_gpio_iot;
98 1.20 jakllsch bus_space_handle_t sc_gpio_ioh;
99 1.20 jakllsch bus_size_t sc_gpio_ios;
100 1.20 jakllsch struct gpio_chipset_tag sc_gpio_gc;
101 1.20 jakllsch gpio_pin_t sc_gpio_pins[LPCIB_GPIO_NPINS];
102 1.20 jakllsch #endif
103 1.20 jakllsch
104 1.25 jakllsch #if NFWHRNG > 0
105 1.25 jakllsch device_t sc_fwhbus;
106 1.25 jakllsch #endif
107 1.25 jakllsch
108 1.16 joerg /* Speedstep */
109 1.16 joerg pcireg_t sc_pmcon_orig;
110 1.16 joerg
111 1.1 xtraeme /* Power management */
112 1.7 drochner pcireg_t sc_pirq[2];
113 1.6 jmcneill pcireg_t sc_pmcon;
114 1.6 jmcneill pcireg_t sc_fwhsel2;
115 1.19 dyoung
116 1.19 dyoung /* Child devices */
117 1.19 dyoung device_t sc_hpetbus;
118 1.19 dyoung acpipmtimer_t sc_pmtimer;
119 1.19 dyoung pcireg_t sc_acpi_cntl;
120 1.19 dyoung
121 1.19 dyoung struct sysctllog *sc_log;
122 1.1 xtraeme };
123 1.1 xtraeme
124 1.9 xtraeme static int lpcibmatch(device_t, cfdata_t, void *);
125 1.9 xtraeme static void lpcibattach(device_t, device_t, void *);
126 1.19 dyoung static int lpcibdetach(device_t, int);
127 1.19 dyoung static void lpcibchilddet(device_t, device_t);
128 1.19 dyoung static int lpcibrescan(device_t, const char *, const int *);
129 1.24 dyoung static bool lpcib_suspend(device_t, const pmf_qual_t *);
130 1.24 dyoung static bool lpcib_resume(device_t, const pmf_qual_t *);
131 1.16 joerg static bool lpcib_shutdown(device_t, int);
132 1.1 xtraeme
133 1.9 xtraeme static void pmtimer_configure(device_t);
134 1.19 dyoung static int pmtimer_unconfigure(device_t, int);
135 1.1 xtraeme
136 1.9 xtraeme static void tcotimer_configure(device_t);
137 1.19 dyoung static int tcotimer_unconfigure(device_t, int);
138 1.1 xtraeme static int tcotimer_setmode(struct sysmon_wdog *);
139 1.1 xtraeme static int tcotimer_tickle(struct sysmon_wdog *);
140 1.1 xtraeme static void tcotimer_stop(struct lpcib_softc *);
141 1.1 xtraeme static void tcotimer_start(struct lpcib_softc *);
142 1.1 xtraeme static void tcotimer_status_reset(struct lpcib_softc *);
143 1.9 xtraeme static int tcotimer_disable_noreboot(device_t);
144 1.1 xtraeme
145 1.9 xtraeme static void speedstep_configure(device_t);
146 1.19 dyoung static void speedstep_unconfigure(device_t);
147 1.1 xtraeme static int speedstep_sysctl_helper(SYSCTLFN_ARGS);
148 1.1 xtraeme
149 1.9 xtraeme static void lpcib_hpet_configure(device_t);
150 1.19 dyoung static int lpcib_hpet_unconfigure(device_t, int);
151 1.6 jmcneill
152 1.20 jakllsch #if NGPIO > 0
153 1.20 jakllsch static void lpcib_gpio_configure(device_t);
154 1.20 jakllsch static int lpcib_gpio_unconfigure(device_t, int);
155 1.20 jakllsch static int lpcib_gpio_pin_read(void *, int);
156 1.20 jakllsch static void lpcib_gpio_pin_write(void *, int, int);
157 1.20 jakllsch static void lpcib_gpio_pin_ctl(void *, int, int);
158 1.20 jakllsch #endif
159 1.20 jakllsch
160 1.25 jakllsch #if NFWHRNG > 0
161 1.25 jakllsch static void lpcib_fwh_configure(device_t);
162 1.25 jakllsch static int lpcib_fwh_unconfigure(device_t, int);
163 1.25 jakllsch #endif
164 1.25 jakllsch
165 1.1 xtraeme struct lpcib_softc *speedstep_cookie; /* XXX */
166 1.1 xtraeme
167 1.19 dyoung CFATTACH_DECL2_NEW(ichlpcib, sizeof(struct lpcib_softc),
168 1.19 dyoung lpcibmatch, lpcibattach, lpcibdetach, NULL, lpcibrescan, lpcibchilddet);
169 1.1 xtraeme
170 1.6 jmcneill static struct lpcib_device {
171 1.6 jmcneill pcireg_t vendor, product;
172 1.6 jmcneill int has_rcba;
173 1.6 jmcneill int has_ich5_hpet;
174 1.6 jmcneill } lpcib_devices[] = {
175 1.36 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_3400_LPC, 1, 0 },
176 1.36 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_3420_LPC, 1, 0 },
177 1.36 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_3450_LPC, 1, 0 },
178 1.36 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_6300ESB_LPC, 1, 0 },
179 1.35 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_63XXESB_LPC, 1, 0 },
180 1.6 jmcneill { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_82801AA_LPC, 0, 0 },
181 1.27 jakllsch { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_82801AB_LPC, 0, 0 },
182 1.6 jmcneill { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_82801BA_LPC, 0, 0 },
183 1.6 jmcneill { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_82801BAM_LPC, 0, 0 },
184 1.6 jmcneill { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_82801CA_LPC, 0, 0 },
185 1.6 jmcneill { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_82801CAM_LPC, 0, 0 },
186 1.6 jmcneill { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_82801DB_LPC, 0, 0 },
187 1.30 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_82801DBM_LPC, 0, 0 },
188 1.36 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_82801E_LPC, 0, 1 },
189 1.6 jmcneill { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_82801EB_LPC, 0, 1 },
190 1.6 jmcneill { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_82801FB_LPC, 1, 0 },
191 1.6 jmcneill { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_82801FBM_LPC, 1, 0 },
192 1.6 jmcneill { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_82801G_LPC, 1, 0 },
193 1.6 jmcneill { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_82801GBM_LPC, 1, 0 },
194 1.36 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_82801GH_LPC, 1, 0 },
195 1.6 jmcneill { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_82801GHM_LPC, 1, 0 },
196 1.6 jmcneill { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_82801H_LPC, 1, 0 },
197 1.6 jmcneill { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_82801HEM_LPC, 1, 0 },
198 1.6 jmcneill { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_82801HH_LPC, 1, 0 },
199 1.6 jmcneill { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_82801HO_LPC, 1, 0 },
200 1.6 jmcneill { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_82801HBM_LPC, 1, 0 },
201 1.35 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_82801IB_LPC, 1, 0 },
202 1.6 jmcneill { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_82801IH_LPC, 1, 0 },
203 1.35 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_82801IM_LPC, 1, 0 },
204 1.6 jmcneill { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_82801IO_LPC, 1, 0 },
205 1.6 jmcneill { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_82801IR_LPC, 1, 0 },
206 1.17 njoly { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_82801IEM_LPC, 1, 0 },
207 1.35 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_82801JD_LPC, 1, 0 },
208 1.35 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_82801JDO_LPC, 1, 0 },
209 1.35 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_82801JIB_LPC, 1, 0 },
210 1.35 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_82801JIR_LPC, 1, 0 },
211 1.35 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_C202_LPC, 1, 0 },
212 1.35 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_C204_LPC, 1, 0 },
213 1.35 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_C206_LPC, 1, 0 },
214 1.36 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_C216_LPC, 1, 0 },
215 1.36 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_NM10_LPC, 1, 0 },
216 1.36 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_H55_LPC, 1, 0 },
217 1.36 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_H57_LPC, 1, 0 },
218 1.36 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_HM55_LPC, 1, 0 },
219 1.36 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_HM57_LPC, 1, 0 },
220 1.36 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_P55_LPC, 1, 0 },
221 1.36 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_PM55_LPC, 1, 0 },
222 1.36 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_Q57_LPC, 1, 0 },
223 1.36 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_QM57_LPC, 1, 0 },
224 1.36 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_QS57_LPC, 1, 0 },
225 1.36 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_B65_LPC, 1, 0 },
226 1.35 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_H61_LPC, 1, 0 },
227 1.35 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_H67_LPC, 1, 0 },
228 1.35 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_HM65_LPC, 1, 0 },
229 1.35 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_HM67_LPC, 1, 0 },
230 1.35 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_P67_LPC, 1, 0 },
231 1.35 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_Q65_LPC, 1, 0 },
232 1.35 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_Q67_LPC, 1, 0 },
233 1.35 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_QM67_LPC, 1, 0 },
234 1.35 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_QS67_LPC, 1, 0 },
235 1.35 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_UM67_LPC, 1, 0 },
236 1.43 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_Z68_LPC, 1, 0 },
237 1.37 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_B75_LPC, 1, 0 },
238 1.37 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_H77_LPC, 1, 0 },
239 1.37 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_MOBILE_HM70_LPC, 1, 0 },
240 1.37 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_MOBILE_HM75_LPC, 1, 0 },
241 1.37 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_MOBILE_HM76_LPC, 1, 0 },
242 1.37 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_MOBILE_HM77_LPC, 1, 0 },
243 1.37 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_MOBILE_QM77_LPC, 1, 0 },
244 1.37 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_MOBILE_QS77_LPC, 1, 0 },
245 1.37 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_MOBILE_UM77_LPC, 1, 0 },
246 1.37 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_NM70_LPC, 1, 0 },
247 1.37 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_Q75_LPC, 1, 0 },
248 1.37 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_Q77_LPC, 1, 0 },
249 1.37 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_Z75_LPC, 1, 0 },
250 1.37 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_Z77_LPC, 1, 0 },
251 1.39 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_Z87_LPC, 1, 0 },
252 1.39 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_Z85_LPC, 1, 0 },
253 1.39 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_HM86_LPC, 1, 0 },
254 1.39 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_H87_LPC, 1, 0 },
255 1.39 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_HM87_LPC, 1, 0 },
256 1.39 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_Q85_LPC, 1, 0 },
257 1.39 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_Q87_LPC, 1, 0 },
258 1.39 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_QM87_LPC, 1, 0 },
259 1.39 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_B85_LPC, 1, 0 },
260 1.47 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_H97_LPC, 1, 0 },
261 1.47 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_Z97_LPC, 1, 0 },
262 1.48 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_X99_LPC, 1, 0 },
263 1.48 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_X99_LPC_2, 1, 0 },
264 1.39 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_C222_LPC, 1, 0 },
265 1.39 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_C224_LPC, 1, 0 },
266 1.39 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_C226_LPC, 1, 0 },
267 1.39 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_H81_LPC, 1, 0 },
268 1.38 riastrad { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_C600_LPC, 1, 0 },
269 1.44 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_DH89XXCC_LPC, 1, 0 },
270 1.44 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_DH89XXCL_LPC, 1, 0 },
271 1.42 msaitoh #if 0
272 1.41 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_C2000_PCU_1, 1, 0 },
273 1.41 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_C2000_PCU_2, 1, 0 },
274 1.41 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_C2000_PCU_3, 1, 0 },
275 1.41 msaitoh { PCI_VENDOR_INTEL, PCI_PRODUCT_INTEL_C2000_PCU_4, 1, 0 },
276 1.42 msaitoh #endif
277 1.14 joerg
278 1.6 jmcneill { 0, 0, 0, 0 },
279 1.6 jmcneill };
280 1.6 jmcneill
281 1.1 xtraeme /*
282 1.1 xtraeme * Autoconf callbacks.
283 1.1 xtraeme */
284 1.1 xtraeme static int
285 1.9 xtraeme lpcibmatch(device_t parent, cfdata_t match, void *aux)
286 1.1 xtraeme {
287 1.1 xtraeme struct pci_attach_args *pa = aux;
288 1.6 jmcneill struct lpcib_device *lpcib_dev;
289 1.1 xtraeme
290 1.1 xtraeme /* We are ISA bridge, of course */
291 1.1 xtraeme if (PCI_CLASS(pa->pa_class) != PCI_CLASS_BRIDGE ||
292 1.1 xtraeme PCI_SUBCLASS(pa->pa_class) != PCI_SUBCLASS_BRIDGE_ISA)
293 1.1 xtraeme return 0;
294 1.1 xtraeme
295 1.6 jmcneill for (lpcib_dev = lpcib_devices; lpcib_dev->vendor; ++lpcib_dev) {
296 1.6 jmcneill if (PCI_VENDOR(pa->pa_id) == lpcib_dev->vendor &&
297 1.6 jmcneill PCI_PRODUCT(pa->pa_id) == lpcib_dev->product)
298 1.1 xtraeme return 10;
299 1.1 xtraeme }
300 1.1 xtraeme
301 1.1 xtraeme return 0;
302 1.1 xtraeme }
303 1.1 xtraeme
304 1.1 xtraeme static void
305 1.9 xtraeme lpcibattach(device_t parent, device_t self, void *aux)
306 1.1 xtraeme {
307 1.1 xtraeme struct pci_attach_args *pa = aux;
308 1.6 jmcneill struct lpcib_softc *sc = device_private(self);
309 1.6 jmcneill struct lpcib_device *lpcib_dev;
310 1.46 msaitoh pcireg_t pmbase;
311 1.1 xtraeme
312 1.6 jmcneill sc->sc_pa = *pa;
313 1.6 jmcneill
314 1.6 jmcneill for (lpcib_dev = lpcib_devices; lpcib_dev->vendor; ++lpcib_dev) {
315 1.6 jmcneill if (PCI_VENDOR(pa->pa_id) != lpcib_dev->vendor ||
316 1.6 jmcneill PCI_PRODUCT(pa->pa_id) != lpcib_dev->product)
317 1.6 jmcneill continue;
318 1.6 jmcneill sc->sc_has_rcba = lpcib_dev->has_rcba;
319 1.6 jmcneill sc->sc_has_ich5_hpet = lpcib_dev->has_ich5_hpet;
320 1.6 jmcneill break;
321 1.6 jmcneill }
322 1.1 xtraeme
323 1.1 xtraeme pcibattach(parent, self, aux);
324 1.1 xtraeme
325 1.1 xtraeme /*
326 1.1 xtraeme * Part of our I/O registers are used as ACPI PM regs.
327 1.1 xtraeme * Since our ACPI subsystem accesses the I/O space directly so far,
328 1.1 xtraeme * we do not have to bother bus_space I/O map confliction.
329 1.45 msaitoh *
330 1.45 msaitoh * The PMBASE register is alike PCI BAR but not completely compatible
331 1.45 msaitoh * with it. The PMBASE define the base address and the type but
332 1.46 msaitoh * not describe the size. The value of the register may be lower
333 1.46 msaitoh * than LPCIB_PCI_PM_SIZE. It makes impossible to use
334 1.46 msaitoh * pci_mapreg_submap() because the function does range check.
335 1.1 xtraeme */
336 1.46 msaitoh sc->sc_iot = pa->pa_iot;
337 1.46 msaitoh pmbase = pci_conf_read(pa->pa_pc, pa->pa_tag, LPCIB_PCI_PMBASE);
338 1.46 msaitoh if (bus_space_map(sc->sc_iot, PCI_MAPREG_IO_ADDR(pmbase),
339 1.46 msaitoh LPCIB_PCI_PM_SIZE, 0, &sc->sc_ioh) != 0) {
340 1.46 msaitoh aprint_error_dev(self,
341 1.46 msaitoh "can't map power management i/o space\n");
342 1.1 xtraeme return;
343 1.1 xtraeme }
344 1.1 xtraeme
345 1.16 joerg sc->sc_pmcon_orig = pci_conf_read(sc->sc_pcib.sc_pc, sc->sc_pcib.sc_tag,
346 1.16 joerg LPCIB_PCI_GEN_PMCON_1);
347 1.16 joerg
348 1.6 jmcneill /* For ICH6 and later, always enable RCBA */
349 1.6 jmcneill if (sc->sc_has_rcba) {
350 1.6 jmcneill pcireg_t rcba;
351 1.6 jmcneill
352 1.6 jmcneill sc->sc_rcbat = sc->sc_pa.pa_memt;
353 1.6 jmcneill
354 1.12 martin rcba = pci_conf_read(sc->sc_pcib.sc_pc, sc->sc_pcib.sc_tag,
355 1.12 martin LPCIB_RCBA);
356 1.6 jmcneill if ((rcba & LPCIB_RCBA_EN) == 0) {
357 1.40 jakllsch aprint_error_dev(self, "RCBA is not enabled\n");
358 1.6 jmcneill return;
359 1.6 jmcneill }
360 1.6 jmcneill rcba &= ~LPCIB_RCBA_EN;
361 1.6 jmcneill
362 1.6 jmcneill if (bus_space_map(sc->sc_rcbat, rcba, LPCIB_RCBA_SIZE, 0,
363 1.6 jmcneill &sc->sc_rcbah)) {
364 1.40 jakllsch aprint_error_dev(self, "RCBA could not be mapped\n");
365 1.6 jmcneill return;
366 1.6 jmcneill }
367 1.6 jmcneill }
368 1.6 jmcneill
369 1.1 xtraeme /* Set up the power management timer. */
370 1.9 xtraeme pmtimer_configure(self);
371 1.1 xtraeme
372 1.1 xtraeme /* Set up the TCO (watchdog). */
373 1.9 xtraeme tcotimer_configure(self);
374 1.1 xtraeme
375 1.1 xtraeme /* Set up SpeedStep. */
376 1.9 xtraeme speedstep_configure(self);
377 1.1 xtraeme
378 1.6 jmcneill /* Set up HPET. */
379 1.9 xtraeme lpcib_hpet_configure(self);
380 1.6 jmcneill
381 1.20 jakllsch #if NGPIO > 0
382 1.20 jakllsch /* Set up GPIO */
383 1.20 jakllsch lpcib_gpio_configure(self);
384 1.20 jakllsch #endif
385 1.20 jakllsch
386 1.25 jakllsch #if NFWHRNG > 0
387 1.25 jakllsch lpcib_fwh_configure(self);
388 1.25 jakllsch #endif
389 1.25 jakllsch
390 1.6 jmcneill /* Install power handler */
391 1.16 joerg if (!pmf_device_register1(self, lpcib_suspend, lpcib_resume,
392 1.16 joerg lpcib_shutdown))
393 1.6 jmcneill aprint_error_dev(self, "couldn't establish power handler\n");
394 1.6 jmcneill }
395 1.6 jmcneill
396 1.19 dyoung static void
397 1.19 dyoung lpcibchilddet(device_t self, device_t child)
398 1.19 dyoung {
399 1.19 dyoung struct lpcib_softc *sc = device_private(self);
400 1.19 dyoung uint32_t val;
401 1.19 dyoung
402 1.25 jakllsch #if NFWHRNG > 0
403 1.25 jakllsch if (sc->sc_fwhbus == child) {
404 1.25 jakllsch sc->sc_fwhbus = NULL;
405 1.25 jakllsch return;
406 1.25 jakllsch }
407 1.25 jakllsch #endif
408 1.21 jakllsch #if NGPIO > 0
409 1.20 jakllsch if (sc->sc_gpiobus == child) {
410 1.20 jakllsch sc->sc_gpiobus = NULL;
411 1.20 jakllsch return;
412 1.20 jakllsch }
413 1.21 jakllsch #endif
414 1.19 dyoung if (sc->sc_hpetbus != child) {
415 1.19 dyoung pcibchilddet(self, child);
416 1.19 dyoung return;
417 1.19 dyoung }
418 1.19 dyoung sc->sc_hpetbus = NULL;
419 1.19 dyoung if (sc->sc_has_ich5_hpet) {
420 1.19 dyoung val = pci_conf_read(sc->sc_pcib.sc_pc, sc->sc_pcib.sc_tag,
421 1.19 dyoung LPCIB_PCI_GEN_CNTL);
422 1.19 dyoung switch (val & LPCIB_ICH5_HPTC_WIN_MASK) {
423 1.19 dyoung case LPCIB_ICH5_HPTC_0000:
424 1.19 dyoung case LPCIB_ICH5_HPTC_1000:
425 1.19 dyoung case LPCIB_ICH5_HPTC_2000:
426 1.19 dyoung case LPCIB_ICH5_HPTC_3000:
427 1.19 dyoung break;
428 1.19 dyoung default:
429 1.19 dyoung return;
430 1.19 dyoung }
431 1.19 dyoung val &= ~LPCIB_ICH5_HPTC_EN;
432 1.19 dyoung pci_conf_write(sc->sc_pcib.sc_pc, sc->sc_pcib.sc_tag,
433 1.19 dyoung LPCIB_PCI_GEN_CNTL, val);
434 1.19 dyoung } else if (sc->sc_has_rcba) {
435 1.19 dyoung val = bus_space_read_4(sc->sc_rcbat, sc->sc_rcbah,
436 1.19 dyoung LPCIB_RCBA_HPTC);
437 1.19 dyoung switch (val & LPCIB_RCBA_HPTC_WIN_MASK) {
438 1.19 dyoung case LPCIB_RCBA_HPTC_0000:
439 1.19 dyoung case LPCIB_RCBA_HPTC_1000:
440 1.19 dyoung case LPCIB_RCBA_HPTC_2000:
441 1.19 dyoung case LPCIB_RCBA_HPTC_3000:
442 1.19 dyoung break;
443 1.19 dyoung default:
444 1.19 dyoung return;
445 1.19 dyoung }
446 1.19 dyoung val &= ~LPCIB_RCBA_HPTC_EN;
447 1.19 dyoung bus_space_write_4(sc->sc_rcbat, sc->sc_rcbah, LPCIB_RCBA_HPTC,
448 1.19 dyoung val);
449 1.19 dyoung }
450 1.19 dyoung }
451 1.19 dyoung
452 1.19 dyoung static int
453 1.19 dyoung lpcibrescan(device_t self, const char *ifattr, const int *locators)
454 1.19 dyoung {
455 1.19 dyoung struct lpcib_softc *sc = device_private(self);
456 1.19 dyoung
457 1.25 jakllsch #if NFWHRNG > 0
458 1.25 jakllsch if (ifattr_match(ifattr, "fwhichbus") && sc->sc_fwhbus == NULL)
459 1.25 jakllsch lpcib_fwh_configure(self);
460 1.25 jakllsch #endif
461 1.25 jakllsch
462 1.19 dyoung if (ifattr_match(ifattr, "hpetichbus") && sc->sc_hpetbus == NULL)
463 1.19 dyoung lpcib_hpet_configure(self);
464 1.19 dyoung
465 1.20 jakllsch #if NGPIO > 0
466 1.20 jakllsch if (ifattr_match(ifattr, "gpiobus") && sc->sc_gpiobus == NULL)
467 1.20 jakllsch lpcib_gpio_configure(self);
468 1.20 jakllsch #endif
469 1.20 jakllsch
470 1.19 dyoung return pcibrescan(self, ifattr, locators);
471 1.19 dyoung }
472 1.19 dyoung
473 1.19 dyoung static int
474 1.19 dyoung lpcibdetach(device_t self, int flags)
475 1.19 dyoung {
476 1.19 dyoung struct lpcib_softc *sc = device_private(self);
477 1.19 dyoung int rc;
478 1.19 dyoung
479 1.19 dyoung pmf_device_deregister(self);
480 1.19 dyoung
481 1.25 jakllsch #if NFWHRNG > 0
482 1.25 jakllsch if ((rc = lpcib_fwh_unconfigure(self, flags)) != 0)
483 1.25 jakllsch return rc;
484 1.25 jakllsch #endif
485 1.25 jakllsch
486 1.19 dyoung if ((rc = lpcib_hpet_unconfigure(self, flags)) != 0)
487 1.19 dyoung return rc;
488 1.19 dyoung
489 1.20 jakllsch #if NGPIO > 0
490 1.20 jakllsch if ((rc = lpcib_gpio_unconfigure(self, flags)) != 0)
491 1.20 jakllsch return rc;
492 1.20 jakllsch #endif
493 1.20 jakllsch
494 1.19 dyoung /* Set up SpeedStep. */
495 1.19 dyoung speedstep_unconfigure(self);
496 1.19 dyoung
497 1.19 dyoung if ((rc = tcotimer_unconfigure(self, flags)) != 0)
498 1.19 dyoung return rc;
499 1.19 dyoung
500 1.19 dyoung if ((rc = pmtimer_unconfigure(self, flags)) != 0)
501 1.19 dyoung return rc;
502 1.19 dyoung
503 1.19 dyoung if (sc->sc_has_rcba)
504 1.19 dyoung bus_space_unmap(sc->sc_rcbat, sc->sc_rcbah, LPCIB_RCBA_SIZE);
505 1.19 dyoung
506 1.19 dyoung bus_space_unmap(sc->sc_iot, sc->sc_ioh, sc->sc_iosize);
507 1.19 dyoung
508 1.19 dyoung return pcibdetach(self, flags);
509 1.19 dyoung }
510 1.19 dyoung
511 1.6 jmcneill static bool
512 1.16 joerg lpcib_shutdown(device_t dv, int howto)
513 1.16 joerg {
514 1.16 joerg struct lpcib_softc *sc = device_private(dv);
515 1.16 joerg
516 1.16 joerg pci_conf_write(sc->sc_pcib.sc_pc, sc->sc_pcib.sc_tag,
517 1.16 joerg LPCIB_PCI_GEN_PMCON_1, sc->sc_pmcon_orig);
518 1.16 joerg
519 1.16 joerg return true;
520 1.16 joerg }
521 1.16 joerg
522 1.16 joerg static bool
523 1.24 dyoung lpcib_suspend(device_t dv, const pmf_qual_t *qual)
524 1.6 jmcneill {
525 1.6 jmcneill struct lpcib_softc *sc = device_private(dv);
526 1.12 martin pci_chipset_tag_t pc = sc->sc_pcib.sc_pc;
527 1.12 martin pcitag_t tag = sc->sc_pcib.sc_tag;
528 1.6 jmcneill
529 1.6 jmcneill /* capture PIRQ routing control registers */
530 1.6 jmcneill sc->sc_pirq[0] = pci_conf_read(pc, tag, LPCIB_PCI_PIRQA_ROUT);
531 1.7 drochner sc->sc_pirq[1] = pci_conf_read(pc, tag, LPCIB_PCI_PIRQE_ROUT);
532 1.6 jmcneill
533 1.6 jmcneill sc->sc_pmcon = pci_conf_read(pc, tag, LPCIB_PCI_GEN_PMCON_1);
534 1.6 jmcneill sc->sc_fwhsel2 = pci_conf_read(pc, tag, LPCIB_PCI_GEN_STA);
535 1.6 jmcneill
536 1.6 jmcneill if (sc->sc_has_rcba) {
537 1.6 jmcneill sc->sc_rcba_reg = pci_conf_read(pc, tag, LPCIB_RCBA);
538 1.6 jmcneill sc->sc_hpet_reg = bus_space_read_4(sc->sc_rcbat, sc->sc_rcbah,
539 1.6 jmcneill LPCIB_RCBA_HPTC);
540 1.6 jmcneill } else if (sc->sc_has_ich5_hpet) {
541 1.6 jmcneill sc->sc_hpet_reg = pci_conf_read(pc, tag, LPCIB_PCI_GEN_CNTL);
542 1.6 jmcneill }
543 1.6 jmcneill
544 1.6 jmcneill return true;
545 1.6 jmcneill }
546 1.6 jmcneill
547 1.6 jmcneill static bool
548 1.24 dyoung lpcib_resume(device_t dv, const pmf_qual_t *qual)
549 1.6 jmcneill {
550 1.6 jmcneill struct lpcib_softc *sc = device_private(dv);
551 1.12 martin pci_chipset_tag_t pc = sc->sc_pcib.sc_pc;
552 1.12 martin pcitag_t tag = sc->sc_pcib.sc_tag;
553 1.6 jmcneill
554 1.6 jmcneill /* restore PIRQ routing control registers */
555 1.6 jmcneill pci_conf_write(pc, tag, LPCIB_PCI_PIRQA_ROUT, sc->sc_pirq[0]);
556 1.7 drochner pci_conf_write(pc, tag, LPCIB_PCI_PIRQE_ROUT, sc->sc_pirq[1]);
557 1.6 jmcneill
558 1.6 jmcneill pci_conf_write(pc, tag, LPCIB_PCI_GEN_PMCON_1, sc->sc_pmcon);
559 1.6 jmcneill pci_conf_write(pc, tag, LPCIB_PCI_GEN_STA, sc->sc_fwhsel2);
560 1.6 jmcneill
561 1.6 jmcneill if (sc->sc_has_rcba) {
562 1.6 jmcneill pci_conf_write(pc, tag, LPCIB_RCBA, sc->sc_rcba_reg);
563 1.6 jmcneill bus_space_write_4(sc->sc_rcbat, sc->sc_rcbah, LPCIB_RCBA_HPTC,
564 1.6 jmcneill sc->sc_hpet_reg);
565 1.6 jmcneill } else if (sc->sc_has_ich5_hpet) {
566 1.6 jmcneill pci_conf_write(pc, tag, LPCIB_PCI_GEN_CNTL, sc->sc_hpet_reg);
567 1.6 jmcneill }
568 1.1 xtraeme
569 1.6 jmcneill return true;
570 1.1 xtraeme }
571 1.1 xtraeme
572 1.1 xtraeme /*
573 1.1 xtraeme * Initialize the power management timer.
574 1.1 xtraeme */
575 1.1 xtraeme static void
576 1.9 xtraeme pmtimer_configure(device_t self)
577 1.1 xtraeme {
578 1.9 xtraeme struct lpcib_softc *sc = device_private(self);
579 1.1 xtraeme pcireg_t control;
580 1.1 xtraeme
581 1.1 xtraeme /*
582 1.1 xtraeme * Check if power management I/O space is enabled and enable the ACPI_EN
583 1.1 xtraeme * bit if it's disabled.
584 1.1 xtraeme */
585 1.12 martin control = pci_conf_read(sc->sc_pcib.sc_pc, sc->sc_pcib.sc_tag,
586 1.12 martin LPCIB_PCI_ACPI_CNTL);
587 1.19 dyoung sc->sc_acpi_cntl = control;
588 1.1 xtraeme if ((control & LPCIB_PCI_ACPI_CNTL_EN) == 0) {
589 1.1 xtraeme control |= LPCIB_PCI_ACPI_CNTL_EN;
590 1.12 martin pci_conf_write(sc->sc_pcib.sc_pc, sc->sc_pcib.sc_tag,
591 1.12 martin LPCIB_PCI_ACPI_CNTL, control);
592 1.1 xtraeme }
593 1.1 xtraeme
594 1.1 xtraeme /* Attach our PM timer with the generic acpipmtimer function */
595 1.19 dyoung sc->sc_pmtimer = acpipmtimer_attach(self, sc->sc_iot, sc->sc_ioh,
596 1.1 xtraeme LPCIB_PM1_TMR, 0);
597 1.1 xtraeme }
598 1.1 xtraeme
599 1.19 dyoung static int
600 1.19 dyoung pmtimer_unconfigure(device_t self, int flags)
601 1.19 dyoung {
602 1.19 dyoung struct lpcib_softc *sc = device_private(self);
603 1.19 dyoung int rc;
604 1.19 dyoung
605 1.19 dyoung if (sc->sc_pmtimer != NULL &&
606 1.19 dyoung (rc = acpipmtimer_detach(sc->sc_pmtimer, flags)) != 0)
607 1.19 dyoung return rc;
608 1.19 dyoung
609 1.19 dyoung pci_conf_write(sc->sc_pcib.sc_pc, sc->sc_pcib.sc_tag,
610 1.19 dyoung LPCIB_PCI_ACPI_CNTL, sc->sc_acpi_cntl);
611 1.19 dyoung
612 1.19 dyoung return 0;
613 1.19 dyoung }
614 1.19 dyoung
615 1.1 xtraeme /*
616 1.1 xtraeme * Initialize the watchdog timer.
617 1.1 xtraeme */
618 1.1 xtraeme static void
619 1.9 xtraeme tcotimer_configure(device_t self)
620 1.1 xtraeme {
621 1.9 xtraeme struct lpcib_softc *sc = device_private(self);
622 1.1 xtraeme uint32_t ioreg;
623 1.1 xtraeme unsigned int period;
624 1.1 xtraeme
625 1.13 yamt /* Explicitly stop the TCO timer. */
626 1.13 yamt tcotimer_stop(sc);
627 1.13 yamt
628 1.13 yamt /*
629 1.13 yamt * Enable TCO timeout SMI only if the hardware reset does not
630 1.13 yamt * work. We don't know what the SMBIOS does.
631 1.13 yamt */
632 1.13 yamt ioreg = bus_space_read_4(sc->sc_iot, sc->sc_ioh, LPCIB_SMI_EN);
633 1.13 yamt ioreg &= ~LPCIB_SMI_EN_TCO_EN;
634 1.13 yamt
635 1.1 xtraeme /*
636 1.4 xtraeme * Clear the No Reboot (NR) bit. If this fails, enabling the TCO_EN bit
637 1.1 xtraeme * in the SMI_EN register is the last chance.
638 1.1 xtraeme */
639 1.9 xtraeme if (tcotimer_disable_noreboot(self)) {
640 1.1 xtraeme ioreg |= LPCIB_SMI_EN_TCO_EN;
641 1.13 yamt }
642 1.13 yamt if ((ioreg & LPCIB_SMI_EN_GBL_SMI_EN) != 0) {
643 1.1 xtraeme bus_space_write_4(sc->sc_iot, sc->sc_ioh, LPCIB_SMI_EN, ioreg);
644 1.1 xtraeme }
645 1.1 xtraeme
646 1.1 xtraeme /* Reset the watchdog status registers. */
647 1.1 xtraeme tcotimer_status_reset(sc);
648 1.1 xtraeme
649 1.1 xtraeme /*
650 1.1 xtraeme * Register the driver with the sysmon watchdog framework.
651 1.1 xtraeme */
652 1.9 xtraeme sc->sc_smw.smw_name = device_xname(self);
653 1.1 xtraeme sc->sc_smw.smw_cookie = sc;
654 1.1 xtraeme sc->sc_smw.smw_setmode = tcotimer_setmode;
655 1.1 xtraeme sc->sc_smw.smw_tickle = tcotimer_tickle;
656 1.6 jmcneill if (sc->sc_has_rcba)
657 1.1 xtraeme period = LPCIB_TCOTIMER2_MAX_TICK;
658 1.1 xtraeme else
659 1.1 xtraeme period = LPCIB_TCOTIMER_MAX_TICK;
660 1.1 xtraeme sc->sc_smw.smw_period = lpcib_tcotimer_tick_to_second(period);
661 1.1 xtraeme
662 1.1 xtraeme if (sysmon_wdog_register(&sc->sc_smw)) {
663 1.9 xtraeme aprint_error_dev(self, "unable to register TCO timer"
664 1.9 xtraeme "as a sysmon watchdog device.\n");
665 1.1 xtraeme return;
666 1.1 xtraeme }
667 1.1 xtraeme
668 1.9 xtraeme aprint_verbose_dev(self, "TCO (watchdog) timer configured.\n");
669 1.1 xtraeme }
670 1.1 xtraeme
671 1.19 dyoung static int
672 1.19 dyoung tcotimer_unconfigure(device_t self, int flags)
673 1.19 dyoung {
674 1.19 dyoung struct lpcib_softc *sc = device_private(self);
675 1.19 dyoung int rc;
676 1.19 dyoung
677 1.19 dyoung if ((rc = sysmon_wdog_unregister(&sc->sc_smw)) != 0) {
678 1.19 dyoung if (rc == ERESTART)
679 1.19 dyoung rc = EINTR;
680 1.19 dyoung return rc;
681 1.19 dyoung }
682 1.19 dyoung
683 1.19 dyoung /* Explicitly stop the TCO timer. */
684 1.19 dyoung tcotimer_stop(sc);
685 1.19 dyoung
686 1.19 dyoung /* XXX Set No Reboot? */
687 1.19 dyoung
688 1.19 dyoung return 0;
689 1.19 dyoung }
690 1.19 dyoung
691 1.19 dyoung
692 1.1 xtraeme /*
693 1.1 xtraeme * Sysmon watchdog callbacks.
694 1.1 xtraeme */
695 1.1 xtraeme static int
696 1.1 xtraeme tcotimer_setmode(struct sysmon_wdog *smw)
697 1.1 xtraeme {
698 1.1 xtraeme struct lpcib_softc *sc = smw->smw_cookie;
699 1.1 xtraeme unsigned int period;
700 1.1 xtraeme uint16_t ich6period = 0;
701 1.18 bouyer uint8_t ich5period = 0;
702 1.1 xtraeme
703 1.1 xtraeme if ((smw->smw_mode & WDOG_MODE_MASK) == WDOG_MODE_DISARMED) {
704 1.1 xtraeme /* Stop the TCO timer. */
705 1.1 xtraeme tcotimer_stop(sc);
706 1.1 xtraeme } else {
707 1.1 xtraeme /*
708 1.6 jmcneill * ICH6 or newer are limited to 2s min and 613s max.
709 1.1 xtraeme * ICH5 or older are limited to 4s min and 39s max.
710 1.1 xtraeme */
711 1.18 bouyer period = lpcib_tcotimer_second_to_tick(smw->smw_period);
712 1.6 jmcneill if (sc->sc_has_rcba) {
713 1.18 bouyer if (period < LPCIB_TCOTIMER2_MIN_TICK ||
714 1.18 bouyer period > LPCIB_TCOTIMER2_MAX_TICK)
715 1.6 jmcneill return EINVAL;
716 1.6 jmcneill } else {
717 1.18 bouyer if (period < LPCIB_TCOTIMER_MIN_TICK ||
718 1.18 bouyer period > LPCIB_TCOTIMER_MAX_TICK)
719 1.1 xtraeme return EINVAL;
720 1.1 xtraeme }
721 1.5 xtraeme
722 1.1 xtraeme /* Stop the TCO timer, */
723 1.1 xtraeme tcotimer_stop(sc);
724 1.1 xtraeme
725 1.1 xtraeme /* set the timeout, */
726 1.6 jmcneill if (sc->sc_has_rcba) {
727 1.1 xtraeme /* ICH6 or newer */
728 1.1 xtraeme ich6period = bus_space_read_2(sc->sc_iot, sc->sc_ioh,
729 1.1 xtraeme LPCIB_TCO_TMR2);
730 1.1 xtraeme ich6period &= 0xfc00;
731 1.1 xtraeme bus_space_write_2(sc->sc_iot, sc->sc_ioh,
732 1.1 xtraeme LPCIB_TCO_TMR2, ich6period | period);
733 1.1 xtraeme } else {
734 1.1 xtraeme /* ICH5 or older */
735 1.18 bouyer ich5period = bus_space_read_1(sc->sc_iot, sc->sc_ioh,
736 1.1 xtraeme LPCIB_TCO_TMR);
737 1.18 bouyer ich5period &= 0xc0;
738 1.1 xtraeme bus_space_write_1(sc->sc_iot, sc->sc_ioh,
739 1.18 bouyer LPCIB_TCO_TMR, ich5period | period);
740 1.1 xtraeme }
741 1.1 xtraeme
742 1.1 xtraeme /* and start/reload the timer. */
743 1.1 xtraeme tcotimer_start(sc);
744 1.1 xtraeme tcotimer_tickle(smw);
745 1.1 xtraeme }
746 1.1 xtraeme
747 1.1 xtraeme return 0;
748 1.1 xtraeme }
749 1.1 xtraeme
750 1.1 xtraeme static int
751 1.1 xtraeme tcotimer_tickle(struct sysmon_wdog *smw)
752 1.1 xtraeme {
753 1.1 xtraeme struct lpcib_softc *sc = smw->smw_cookie;
754 1.1 xtraeme
755 1.1 xtraeme /* any value is allowed */
756 1.6 jmcneill if (sc->sc_has_rcba)
757 1.6 jmcneill bus_space_write_2(sc->sc_iot, sc->sc_ioh, LPCIB_TCO_RLD, 1);
758 1.6 jmcneill else
759 1.1 xtraeme bus_space_write_1(sc->sc_iot, sc->sc_ioh, LPCIB_TCO_RLD, 1);
760 1.1 xtraeme
761 1.1 xtraeme return 0;
762 1.1 xtraeme }
763 1.1 xtraeme
764 1.1 xtraeme static void
765 1.1 xtraeme tcotimer_stop(struct lpcib_softc *sc)
766 1.1 xtraeme {
767 1.1 xtraeme uint16_t ioreg;
768 1.1 xtraeme
769 1.1 xtraeme ioreg = bus_space_read_2(sc->sc_iot, sc->sc_ioh, LPCIB_TCO1_CNT);
770 1.1 xtraeme ioreg |= LPCIB_TCO1_CNT_TCO_TMR_HLT;
771 1.1 xtraeme bus_space_write_2(sc->sc_iot, sc->sc_ioh, LPCIB_TCO1_CNT, ioreg);
772 1.1 xtraeme }
773 1.1 xtraeme
774 1.1 xtraeme static void
775 1.1 xtraeme tcotimer_start(struct lpcib_softc *sc)
776 1.1 xtraeme {
777 1.1 xtraeme uint16_t ioreg;
778 1.1 xtraeme
779 1.1 xtraeme ioreg = bus_space_read_2(sc->sc_iot, sc->sc_ioh, LPCIB_TCO1_CNT);
780 1.1 xtraeme ioreg &= ~LPCIB_TCO1_CNT_TCO_TMR_HLT;
781 1.1 xtraeme bus_space_write_2(sc->sc_iot, sc->sc_ioh, LPCIB_TCO1_CNT, ioreg);
782 1.1 xtraeme }
783 1.1 xtraeme
784 1.1 xtraeme static void
785 1.1 xtraeme tcotimer_status_reset(struct lpcib_softc *sc)
786 1.1 xtraeme {
787 1.1 xtraeme bus_space_write_2(sc->sc_iot, sc->sc_ioh, LPCIB_TCO1_STS,
788 1.1 xtraeme LPCIB_TCO1_STS_TIMEOUT);
789 1.1 xtraeme bus_space_write_2(sc->sc_iot, sc->sc_ioh, LPCIB_TCO2_STS,
790 1.1 xtraeme LPCIB_TCO2_STS_BOOT_STS);
791 1.1 xtraeme bus_space_write_2(sc->sc_iot, sc->sc_ioh, LPCIB_TCO2_STS,
792 1.1 xtraeme LPCIB_TCO2_STS_SECONDS_TO_STS);
793 1.1 xtraeme }
794 1.1 xtraeme
795 1.1 xtraeme /*
796 1.4 xtraeme * Clear the No Reboot (NR) bit, this enables reboots when the timer
797 1.4 xtraeme * reaches the timeout for the second time.
798 1.1 xtraeme */
799 1.1 xtraeme static int
800 1.9 xtraeme tcotimer_disable_noreboot(device_t self)
801 1.1 xtraeme {
802 1.9 xtraeme struct lpcib_softc *sc = device_private(self);
803 1.1 xtraeme
804 1.6 jmcneill if (sc->sc_has_rcba) {
805 1.6 jmcneill uint32_t status;
806 1.6 jmcneill
807 1.9 xtraeme status = bus_space_read_4(sc->sc_rcbat, sc->sc_rcbah,
808 1.9 xtraeme LPCIB_GCS_OFFSET);
809 1.6 jmcneill status &= ~LPCIB_GCS_NO_REBOOT;
810 1.9 xtraeme bus_space_write_4(sc->sc_rcbat, sc->sc_rcbah,
811 1.9 xtraeme LPCIB_GCS_OFFSET, status);
812 1.9 xtraeme status = bus_space_read_4(sc->sc_rcbat, sc->sc_rcbah,
813 1.9 xtraeme LPCIB_GCS_OFFSET);
814 1.6 jmcneill if (status & LPCIB_GCS_NO_REBOOT)
815 1.6 jmcneill goto error;
816 1.6 jmcneill } else {
817 1.6 jmcneill pcireg_t pcireg;
818 1.6 jmcneill
819 1.35 msaitoh pcireg = pci_conf_read(sc->sc_pcib.sc_pc, sc->sc_pcib.sc_tag,
820 1.1 xtraeme LPCIB_PCI_GEN_STA);
821 1.1 xtraeme if (pcireg & LPCIB_PCI_GEN_STA_NO_REBOOT) {
822 1.1 xtraeme /* TCO timeout reset is disabled; try to enable it */
823 1.1 xtraeme pcireg &= ~LPCIB_PCI_GEN_STA_NO_REBOOT;
824 1.12 martin pci_conf_write(sc->sc_pcib.sc_pc, sc->sc_pcib.sc_tag,
825 1.1 xtraeme LPCIB_PCI_GEN_STA, pcireg);
826 1.1 xtraeme if (pcireg & LPCIB_PCI_GEN_STA_NO_REBOOT)
827 1.1 xtraeme goto error;
828 1.1 xtraeme }
829 1.1 xtraeme }
830 1.1 xtraeme
831 1.1 xtraeme return 0;
832 1.1 xtraeme error:
833 1.9 xtraeme aprint_error_dev(self, "TCO timer reboot disabled by hardware; "
834 1.9 xtraeme "hope SMBIOS properly handles it.\n");
835 1.1 xtraeme return EINVAL;
836 1.1 xtraeme }
837 1.1 xtraeme
838 1.1 xtraeme
839 1.1 xtraeme /*
840 1.1 xtraeme * Intel ICH SpeedStep support.
841 1.1 xtraeme */
842 1.1 xtraeme #define SS_READ(sc, reg) \
843 1.1 xtraeme bus_space_read_1((sc)->sc_iot, (sc)->sc_ioh, (reg))
844 1.1 xtraeme #define SS_WRITE(sc, reg, val) \
845 1.1 xtraeme bus_space_write_1((sc)->sc_iot, (sc)->sc_ioh, (reg), (val))
846 1.1 xtraeme
847 1.1 xtraeme /*
848 1.1 xtraeme * Linux driver says that SpeedStep on older chipsets cause
849 1.1 xtraeme * lockups on Dell Inspiron 8000 and 8100.
850 1.15 mrg * It should also not be enabled on systems with the 82855GM
851 1.15 mrg * Hub, which typically have an EST-enabled CPU.
852 1.1 xtraeme */
853 1.1 xtraeme static int
854 1.29 dyoung speedstep_bad_hb_check(const struct pci_attach_args *pa)
855 1.1 xtraeme {
856 1.1 xtraeme
857 1.1 xtraeme if (PCI_PRODUCT(pa->pa_id) == PCI_PRODUCT_INTEL_82815_FULL_HUB &&
858 1.1 xtraeme PCI_REVISION(pa->pa_class) < 5)
859 1.1 xtraeme return 1;
860 1.1 xtraeme
861 1.15 mrg if (PCI_PRODUCT(pa->pa_id) == PCI_PRODUCT_INTEL_82855GM_MCH)
862 1.15 mrg return 1;
863 1.15 mrg
864 1.1 xtraeme return 0;
865 1.1 xtraeme }
866 1.1 xtraeme
867 1.1 xtraeme static void
868 1.9 xtraeme speedstep_configure(device_t self)
869 1.1 xtraeme {
870 1.9 xtraeme struct lpcib_softc *sc = device_private(self);
871 1.1 xtraeme const struct sysctlnode *node, *ssnode;
872 1.1 xtraeme int rv;
873 1.1 xtraeme
874 1.1 xtraeme /* Supported on ICH2-M, ICH3-M and ICH4-M. */
875 1.30 msaitoh if (PCI_PRODUCT(sc->sc_pa.pa_id) == PCI_PRODUCT_INTEL_82801DBM_LPC ||
876 1.6 jmcneill PCI_PRODUCT(sc->sc_pa.pa_id) == PCI_PRODUCT_INTEL_82801CAM_LPC ||
877 1.6 jmcneill (PCI_PRODUCT(sc->sc_pa.pa_id) == PCI_PRODUCT_INTEL_82801BAM_LPC &&
878 1.6 jmcneill pci_find_device(&sc->sc_pa, speedstep_bad_hb_check) == 0)) {
879 1.19 dyoung pcireg_t pmcon;
880 1.1 xtraeme
881 1.1 xtraeme /* Enable SpeedStep if it isn't already enabled. */
882 1.12 martin pmcon = pci_conf_read(sc->sc_pcib.sc_pc, sc->sc_pcib.sc_tag,
883 1.1 xtraeme LPCIB_PCI_GEN_PMCON_1);
884 1.1 xtraeme if ((pmcon & LPCIB_PCI_GEN_PMCON_1_SS_EN) == 0)
885 1.12 martin pci_conf_write(sc->sc_pcib.sc_pc, sc->sc_pcib.sc_tag,
886 1.1 xtraeme LPCIB_PCI_GEN_PMCON_1,
887 1.1 xtraeme pmcon | LPCIB_PCI_GEN_PMCON_1_SS_EN);
888 1.1 xtraeme
889 1.1 xtraeme /* Put in machdep.speedstep_state (0 for low, 1 for high). */
890 1.19 dyoung if ((rv = sysctl_createv(&sc->sc_log, 0, NULL, &node,
891 1.1 xtraeme CTLFLAG_PERMANENT, CTLTYPE_NODE, "machdep", NULL,
892 1.1 xtraeme NULL, 0, NULL, 0, CTL_MACHDEP, CTL_EOL)) != 0)
893 1.1 xtraeme goto err;
894 1.1 xtraeme
895 1.1 xtraeme /* CTLFLAG_ANYWRITE? kernel option like EST? */
896 1.19 dyoung if ((rv = sysctl_createv(&sc->sc_log, 0, &node, &ssnode,
897 1.1 xtraeme CTLFLAG_READWRITE, CTLTYPE_INT, "speedstep_state", NULL,
898 1.1 xtraeme speedstep_sysctl_helper, 0, NULL, 0, CTL_CREATE,
899 1.1 xtraeme CTL_EOL)) != 0)
900 1.1 xtraeme goto err;
901 1.1 xtraeme
902 1.1 xtraeme /* XXX save the sc for IO tag/handle */
903 1.1 xtraeme speedstep_cookie = sc;
904 1.9 xtraeme aprint_verbose_dev(self, "SpeedStep enabled\n");
905 1.1 xtraeme }
906 1.1 xtraeme
907 1.1 xtraeme return;
908 1.1 xtraeme
909 1.1 xtraeme err:
910 1.1 xtraeme aprint_normal("%s: sysctl_createv failed (rv = %d)\n", __func__, rv);
911 1.1 xtraeme }
912 1.1 xtraeme
913 1.19 dyoung static void
914 1.19 dyoung speedstep_unconfigure(device_t self)
915 1.19 dyoung {
916 1.19 dyoung struct lpcib_softc *sc = device_private(self);
917 1.19 dyoung
918 1.19 dyoung sysctl_teardown(&sc->sc_log);
919 1.19 dyoung pci_conf_write(sc->sc_pcib.sc_pc, sc->sc_pcib.sc_tag,
920 1.19 dyoung LPCIB_PCI_GEN_PMCON_1, sc->sc_pmcon_orig);
921 1.19 dyoung
922 1.19 dyoung speedstep_cookie = NULL;
923 1.19 dyoung }
924 1.19 dyoung
925 1.1 xtraeme /*
926 1.1 xtraeme * get/set the SpeedStep state: 0 == low power, 1 == high power.
927 1.1 xtraeme */
928 1.1 xtraeme static int
929 1.1 xtraeme speedstep_sysctl_helper(SYSCTLFN_ARGS)
930 1.1 xtraeme {
931 1.1 xtraeme struct sysctlnode node;
932 1.1 xtraeme struct lpcib_softc *sc = speedstep_cookie;
933 1.1 xtraeme uint8_t state, state2;
934 1.1 xtraeme int ostate, nstate, s, error = 0;
935 1.1 xtraeme
936 1.1 xtraeme /*
937 1.1 xtraeme * We do the dance with spl's to avoid being at high ipl during
938 1.1 xtraeme * sysctl_lookup() which can both copyin and copyout.
939 1.1 xtraeme */
940 1.1 xtraeme s = splserial();
941 1.1 xtraeme state = SS_READ(sc, LPCIB_PM_SS_CNTL);
942 1.1 xtraeme splx(s);
943 1.1 xtraeme if ((state & LPCIB_PM_SS_STATE_LOW) == 0)
944 1.1 xtraeme ostate = 1;
945 1.1 xtraeme else
946 1.1 xtraeme ostate = 0;
947 1.1 xtraeme nstate = ostate;
948 1.1 xtraeme
949 1.1 xtraeme node = *rnode;
950 1.1 xtraeme node.sysctl_data = &nstate;
951 1.1 xtraeme
952 1.1 xtraeme error = sysctl_lookup(SYSCTLFN_CALL(&node));
953 1.1 xtraeme if (error || newp == NULL)
954 1.1 xtraeme goto out;
955 1.1 xtraeme
956 1.1 xtraeme /* Only two states are available */
957 1.1 xtraeme if (nstate != 0 && nstate != 1) {
958 1.1 xtraeme error = EINVAL;
959 1.1 xtraeme goto out;
960 1.1 xtraeme }
961 1.1 xtraeme
962 1.1 xtraeme s = splserial();
963 1.1 xtraeme state2 = SS_READ(sc, LPCIB_PM_SS_CNTL);
964 1.1 xtraeme if ((state2 & LPCIB_PM_SS_STATE_LOW) == 0)
965 1.1 xtraeme ostate = 1;
966 1.1 xtraeme else
967 1.1 xtraeme ostate = 0;
968 1.1 xtraeme
969 1.1 xtraeme if (ostate != nstate) {
970 1.1 xtraeme uint8_t cntl;
971 1.1 xtraeme
972 1.1 xtraeme if (nstate == 0)
973 1.1 xtraeme state2 |= LPCIB_PM_SS_STATE_LOW;
974 1.1 xtraeme else
975 1.1 xtraeme state2 &= ~LPCIB_PM_SS_STATE_LOW;
976 1.1 xtraeme
977 1.1 xtraeme /*
978 1.1 xtraeme * Must disable bus master arbitration during the change.
979 1.1 xtraeme */
980 1.1 xtraeme cntl = SS_READ(sc, LPCIB_PM_CTRL);
981 1.1 xtraeme SS_WRITE(sc, LPCIB_PM_CTRL, cntl | LPCIB_PM_SS_CNTL_ARB_DIS);
982 1.1 xtraeme SS_WRITE(sc, LPCIB_PM_SS_CNTL, state2);
983 1.1 xtraeme SS_WRITE(sc, LPCIB_PM_CTRL, cntl);
984 1.1 xtraeme }
985 1.1 xtraeme splx(s);
986 1.1 xtraeme out:
987 1.1 xtraeme return error;
988 1.1 xtraeme }
989 1.6 jmcneill
990 1.6 jmcneill static void
991 1.9 xtraeme lpcib_hpet_configure(device_t self)
992 1.6 jmcneill {
993 1.9 xtraeme struct lpcib_softc *sc = device_private(self);
994 1.31 jruoho struct lpcib_hpet_attach_args arg;
995 1.6 jmcneill uint32_t hpet_reg, val;
996 1.6 jmcneill
997 1.6 jmcneill if (sc->sc_has_ich5_hpet) {
998 1.12 martin val = pci_conf_read(sc->sc_pcib.sc_pc, sc->sc_pcib.sc_tag,
999 1.9 xtraeme LPCIB_PCI_GEN_CNTL);
1000 1.6 jmcneill switch (val & LPCIB_ICH5_HPTC_WIN_MASK) {
1001 1.6 jmcneill case LPCIB_ICH5_HPTC_0000:
1002 1.6 jmcneill hpet_reg = LPCIB_ICH5_HPTC_0000_BASE;
1003 1.6 jmcneill break;
1004 1.6 jmcneill case LPCIB_ICH5_HPTC_1000:
1005 1.6 jmcneill hpet_reg = LPCIB_ICH5_HPTC_1000_BASE;
1006 1.6 jmcneill break;
1007 1.6 jmcneill case LPCIB_ICH5_HPTC_2000:
1008 1.6 jmcneill hpet_reg = LPCIB_ICH5_HPTC_2000_BASE;
1009 1.6 jmcneill break;
1010 1.6 jmcneill case LPCIB_ICH5_HPTC_3000:
1011 1.6 jmcneill hpet_reg = LPCIB_ICH5_HPTC_3000_BASE;
1012 1.6 jmcneill break;
1013 1.6 jmcneill default:
1014 1.6 jmcneill return;
1015 1.6 jmcneill }
1016 1.6 jmcneill val |= sc->sc_hpet_reg | LPCIB_ICH5_HPTC_EN;
1017 1.12 martin pci_conf_write(sc->sc_pcib.sc_pc, sc->sc_pcib.sc_tag,
1018 1.9 xtraeme LPCIB_PCI_GEN_CNTL, val);
1019 1.6 jmcneill } else if (sc->sc_has_rcba) {
1020 1.6 jmcneill val = bus_space_read_4(sc->sc_rcbat, sc->sc_rcbah,
1021 1.6 jmcneill LPCIB_RCBA_HPTC);
1022 1.6 jmcneill switch (val & LPCIB_RCBA_HPTC_WIN_MASK) {
1023 1.6 jmcneill case LPCIB_RCBA_HPTC_0000:
1024 1.6 jmcneill hpet_reg = LPCIB_RCBA_HPTC_0000_BASE;
1025 1.6 jmcneill break;
1026 1.6 jmcneill case LPCIB_RCBA_HPTC_1000:
1027 1.6 jmcneill hpet_reg = LPCIB_RCBA_HPTC_1000_BASE;
1028 1.6 jmcneill break;
1029 1.6 jmcneill case LPCIB_RCBA_HPTC_2000:
1030 1.6 jmcneill hpet_reg = LPCIB_RCBA_HPTC_2000_BASE;
1031 1.6 jmcneill break;
1032 1.6 jmcneill case LPCIB_RCBA_HPTC_3000:
1033 1.6 jmcneill hpet_reg = LPCIB_RCBA_HPTC_3000_BASE;
1034 1.6 jmcneill break;
1035 1.6 jmcneill default:
1036 1.6 jmcneill return;
1037 1.6 jmcneill }
1038 1.6 jmcneill val |= LPCIB_RCBA_HPTC_EN;
1039 1.6 jmcneill bus_space_write_4(sc->sc_rcbat, sc->sc_rcbah, LPCIB_RCBA_HPTC,
1040 1.6 jmcneill val);
1041 1.6 jmcneill } else {
1042 1.6 jmcneill /* No HPET here */
1043 1.6 jmcneill return;
1044 1.6 jmcneill }
1045 1.6 jmcneill
1046 1.6 jmcneill arg.hpet_mem_t = sc->sc_pa.pa_memt;
1047 1.6 jmcneill arg.hpet_reg = hpet_reg;
1048 1.6 jmcneill
1049 1.19 dyoung sc->sc_hpetbus = config_found_ia(self, "hpetichbus", &arg, NULL);
1050 1.19 dyoung }
1051 1.19 dyoung
1052 1.19 dyoung static int
1053 1.19 dyoung lpcib_hpet_unconfigure(device_t self, int flags)
1054 1.19 dyoung {
1055 1.19 dyoung struct lpcib_softc *sc = device_private(self);
1056 1.19 dyoung int rc;
1057 1.19 dyoung
1058 1.19 dyoung if (sc->sc_hpetbus != NULL &&
1059 1.19 dyoung (rc = config_detach(sc->sc_hpetbus, flags)) != 0)
1060 1.19 dyoung return rc;
1061 1.19 dyoung
1062 1.19 dyoung return 0;
1063 1.6 jmcneill }
1064 1.20 jakllsch
1065 1.20 jakllsch #if NGPIO > 0
1066 1.20 jakllsch static void
1067 1.20 jakllsch lpcib_gpio_configure(device_t self)
1068 1.20 jakllsch {
1069 1.20 jakllsch struct lpcib_softc *sc = device_private(self);
1070 1.20 jakllsch struct gpiobus_attach_args gba;
1071 1.20 jakllsch pcireg_t gpio_cntl;
1072 1.20 jakllsch uint32_t use, io, bit;
1073 1.20 jakllsch int pin, shift, base_reg, cntl_reg, reg;
1074 1.45 msaitoh int rv;
1075 1.20 jakllsch
1076 1.20 jakllsch /* this implies ICH >= 6, and thus different mapreg */
1077 1.20 jakllsch if (sc->sc_has_rcba) {
1078 1.20 jakllsch base_reg = LPCIB_PCI_GPIO_BASE_ICH6;
1079 1.20 jakllsch cntl_reg = LPCIB_PCI_GPIO_CNTL_ICH6;
1080 1.20 jakllsch } else {
1081 1.20 jakllsch base_reg = LPCIB_PCI_GPIO_BASE;
1082 1.20 jakllsch cntl_reg = LPCIB_PCI_GPIO_CNTL;
1083 1.20 jakllsch }
1084 1.20 jakllsch
1085 1.20 jakllsch gpio_cntl = pci_conf_read(sc->sc_pcib.sc_pc, sc->sc_pcib.sc_tag,
1086 1.20 jakllsch cntl_reg);
1087 1.20 jakllsch
1088 1.20 jakllsch /* Is GPIO enabled? */
1089 1.20 jakllsch if ((gpio_cntl & LPCIB_PCI_GPIO_CNTL_EN) == 0)
1090 1.20 jakllsch return;
1091 1.45 msaitoh /*
1092 1.45 msaitoh * The GPIO_BASE register is alike PCI BAR but not completely
1093 1.45 msaitoh * compatible with it. The PMBASE define the base address and the type
1094 1.46 msaitoh * but not describe the size. The value of the register may be lower
1095 1.46 msaitoh * than LPCIB_PCI_GPIO_SIZE. It makes impossible to use
1096 1.46 msaitoh * pci_mapreg_submap() because the function does range check.
1097 1.45 msaitoh */
1098 1.46 msaitoh sc->sc_gpio_iot = sc->sc_pa.pa_iot;
1099 1.46 msaitoh reg = pci_conf_read(sc->sc_pa.pa_pc, sc->sc_pa.pa_tag, base_reg);
1100 1.46 msaitoh rv = bus_space_map(sc->sc_gpio_iot, PCI_MAPREG_IO_ADDR(reg),
1101 1.46 msaitoh LPCIB_PCI_GPIO_SIZE, 0, &sc->sc_gpio_ioh);
1102 1.45 msaitoh if (rv != 0) {
1103 1.45 msaitoh aprint_error_dev(self, "can't map general purpose i/o space(rv = %d)\n", rv);
1104 1.20 jakllsch return;
1105 1.20 jakllsch }
1106 1.20 jakllsch
1107 1.20 jakllsch mutex_init(&sc->sc_gpio_mtx, MUTEX_DEFAULT, IPL_NONE);
1108 1.20 jakllsch
1109 1.20 jakllsch for (pin = 0; pin < LPCIB_GPIO_NPINS; pin++) {
1110 1.20 jakllsch sc->sc_gpio_pins[pin].pin_num = pin;
1111 1.20 jakllsch
1112 1.20 jakllsch /* Read initial state */
1113 1.20 jakllsch reg = (pin < 32) ? LPCIB_GPIO_GPIO_USE_SEL : LPCIB_GPIO_GPIO_USE_SEL2;
1114 1.20 jakllsch use = bus_space_read_4(sc->sc_gpio_iot, sc->sc_gpio_ioh, reg);
1115 1.20 jakllsch reg = (pin < 32) ? LPCIB_GPIO_GP_IO_SEL : LPCIB_GPIO_GP_IO_SEL;
1116 1.20 jakllsch io = bus_space_read_4(sc->sc_gpio_iot, sc->sc_gpio_ioh, 4);
1117 1.20 jakllsch shift = pin % 32;
1118 1.20 jakllsch bit = __BIT(shift);
1119 1.20 jakllsch
1120 1.20 jakllsch if ((use & bit) != 0) {
1121 1.20 jakllsch sc->sc_gpio_pins[pin].pin_caps =
1122 1.20 jakllsch GPIO_PIN_INPUT | GPIO_PIN_OUTPUT;
1123 1.20 jakllsch if (pin < 32)
1124 1.20 jakllsch sc->sc_gpio_pins[pin].pin_caps |=
1125 1.20 jakllsch GPIO_PIN_PULSATE;
1126 1.20 jakllsch if ((io & bit) != 0)
1127 1.20 jakllsch sc->sc_gpio_pins[pin].pin_flags =
1128 1.20 jakllsch GPIO_PIN_INPUT;
1129 1.20 jakllsch else
1130 1.20 jakllsch sc->sc_gpio_pins[pin].pin_flags =
1131 1.20 jakllsch GPIO_PIN_OUTPUT;
1132 1.20 jakllsch } else
1133 1.20 jakllsch sc->sc_gpio_pins[pin].pin_caps = 0;
1134 1.20 jakllsch
1135 1.20 jakllsch if (lpcib_gpio_pin_read(sc, pin) == 0)
1136 1.20 jakllsch sc->sc_gpio_pins[pin].pin_state = GPIO_PIN_LOW;
1137 1.20 jakllsch else
1138 1.20 jakllsch sc->sc_gpio_pins[pin].pin_state = GPIO_PIN_HIGH;
1139 1.20 jakllsch
1140 1.20 jakllsch }
1141 1.20 jakllsch
1142 1.20 jakllsch /* Create controller tag */
1143 1.20 jakllsch sc->sc_gpio_gc.gp_cookie = sc;
1144 1.20 jakllsch sc->sc_gpio_gc.gp_pin_read = lpcib_gpio_pin_read;
1145 1.20 jakllsch sc->sc_gpio_gc.gp_pin_write = lpcib_gpio_pin_write;
1146 1.20 jakllsch sc->sc_gpio_gc.gp_pin_ctl = lpcib_gpio_pin_ctl;
1147 1.20 jakllsch
1148 1.20 jakllsch memset(&gba, 0, sizeof(gba));
1149 1.20 jakllsch
1150 1.20 jakllsch gba.gba_gc = &sc->sc_gpio_gc;
1151 1.20 jakllsch gba.gba_pins = sc->sc_gpio_pins;
1152 1.20 jakllsch gba.gba_npins = LPCIB_GPIO_NPINS;
1153 1.20 jakllsch
1154 1.20 jakllsch sc->sc_gpiobus = config_found_ia(self, "gpiobus", &gba, gpiobus_print);
1155 1.20 jakllsch }
1156 1.20 jakllsch
1157 1.20 jakllsch static int
1158 1.20 jakllsch lpcib_gpio_unconfigure(device_t self, int flags)
1159 1.20 jakllsch {
1160 1.20 jakllsch struct lpcib_softc *sc = device_private(self);
1161 1.20 jakllsch int rc;
1162 1.20 jakllsch
1163 1.20 jakllsch if (sc->sc_gpiobus != NULL &&
1164 1.20 jakllsch (rc = config_detach(sc->sc_gpiobus, flags)) != 0)
1165 1.20 jakllsch return rc;
1166 1.20 jakllsch
1167 1.20 jakllsch mutex_destroy(&sc->sc_gpio_mtx);
1168 1.20 jakllsch
1169 1.20 jakllsch bus_space_unmap(sc->sc_gpio_iot, sc->sc_gpio_ioh, sc->sc_gpio_ios);
1170 1.20 jakllsch
1171 1.20 jakllsch return 0;
1172 1.20 jakllsch }
1173 1.20 jakllsch
1174 1.20 jakllsch static int
1175 1.20 jakllsch lpcib_gpio_pin_read(void *arg, int pin)
1176 1.20 jakllsch {
1177 1.20 jakllsch struct lpcib_softc *sc = arg;
1178 1.20 jakllsch uint32_t data;
1179 1.20 jakllsch int reg, shift;
1180 1.20 jakllsch
1181 1.20 jakllsch reg = (pin < 32) ? LPCIB_GPIO_GP_LVL : LPCIB_GPIO_GP_LVL2;
1182 1.20 jakllsch shift = pin % 32;
1183 1.20 jakllsch
1184 1.20 jakllsch mutex_enter(&sc->sc_gpio_mtx);
1185 1.20 jakllsch data = bus_space_read_4(sc->sc_gpio_iot, sc->sc_gpio_ioh, reg);
1186 1.20 jakllsch mutex_exit(&sc->sc_gpio_mtx);
1187 1.20 jakllsch
1188 1.20 jakllsch return (__SHIFTOUT(data, __BIT(shift)) ? GPIO_PIN_HIGH : GPIO_PIN_LOW);
1189 1.20 jakllsch }
1190 1.20 jakllsch
1191 1.20 jakllsch static void
1192 1.20 jakllsch lpcib_gpio_pin_write(void *arg, int pin, int value)
1193 1.20 jakllsch {
1194 1.20 jakllsch struct lpcib_softc *sc = arg;
1195 1.20 jakllsch uint32_t data;
1196 1.20 jakllsch int reg, shift;
1197 1.20 jakllsch
1198 1.20 jakllsch reg = (pin < 32) ? LPCIB_GPIO_GP_LVL : LPCIB_GPIO_GP_LVL2;
1199 1.20 jakllsch shift = pin % 32;
1200 1.20 jakllsch
1201 1.20 jakllsch mutex_enter(&sc->sc_gpio_mtx);
1202 1.20 jakllsch
1203 1.20 jakllsch data = bus_space_read_4(sc->sc_gpio_iot, sc->sc_gpio_ioh, reg);
1204 1.20 jakllsch
1205 1.20 jakllsch if(value)
1206 1.20 jakllsch data |= __BIT(shift);
1207 1.20 jakllsch else
1208 1.20 jakllsch data &= ~__BIT(shift);
1209 1.20 jakllsch
1210 1.20 jakllsch bus_space_write_4(sc->sc_gpio_iot, sc->sc_gpio_ioh, reg, data);
1211 1.20 jakllsch
1212 1.20 jakllsch mutex_exit(&sc->sc_gpio_mtx);
1213 1.20 jakllsch }
1214 1.20 jakllsch
1215 1.20 jakllsch static void
1216 1.20 jakllsch lpcib_gpio_pin_ctl(void *arg, int pin, int flags)
1217 1.20 jakllsch {
1218 1.20 jakllsch struct lpcib_softc *sc = arg;
1219 1.20 jakllsch uint32_t data;
1220 1.20 jakllsch int reg, shift;
1221 1.20 jakllsch
1222 1.20 jakllsch shift = pin % 32;
1223 1.20 jakllsch reg = (pin < 32) ? LPCIB_GPIO_GP_IO_SEL : LPCIB_GPIO_GP_IO_SEL2;
1224 1.20 jakllsch
1225 1.20 jakllsch mutex_enter(&sc->sc_gpio_mtx);
1226 1.20 jakllsch
1227 1.20 jakllsch data = bus_space_read_4(sc->sc_gpio_iot, sc->sc_gpio_ioh, reg);
1228 1.20 jakllsch
1229 1.20 jakllsch if (flags & GPIO_PIN_OUTPUT)
1230 1.20 jakllsch data &= ~__BIT(shift);
1231 1.20 jakllsch
1232 1.20 jakllsch if (flags & GPIO_PIN_INPUT)
1233 1.20 jakllsch data |= __BIT(shift);
1234 1.20 jakllsch
1235 1.20 jakllsch bus_space_write_4(sc->sc_gpio_iot, sc->sc_gpio_ioh, reg, data);
1236 1.20 jakllsch
1237 1.20 jakllsch
1238 1.20 jakllsch if (pin < 32) {
1239 1.20 jakllsch reg = LPCIB_GPIO_GPO_BLINK;
1240 1.20 jakllsch data = bus_space_read_4(sc->sc_gpio_iot, sc->sc_gpio_ioh, reg);
1241 1.20 jakllsch
1242 1.20 jakllsch if (flags & GPIO_PIN_PULSATE)
1243 1.20 jakllsch data |= __BIT(shift);
1244 1.20 jakllsch else
1245 1.20 jakllsch data &= ~__BIT(shift);
1246 1.20 jakllsch
1247 1.20 jakllsch bus_space_write_4(sc->sc_gpio_iot, sc->sc_gpio_ioh, reg, data);
1248 1.20 jakllsch }
1249 1.20 jakllsch
1250 1.20 jakllsch mutex_exit(&sc->sc_gpio_mtx);
1251 1.20 jakllsch }
1252 1.20 jakllsch #endif
1253 1.25 jakllsch
1254 1.25 jakllsch #if NFWHRNG > 0
1255 1.25 jakllsch static void
1256 1.25 jakllsch lpcib_fwh_configure(device_t self)
1257 1.25 jakllsch {
1258 1.26 jakllsch struct lpcib_softc *sc;
1259 1.26 jakllsch pcireg_t pr;
1260 1.25 jakllsch
1261 1.26 jakllsch sc = device_private(self);
1262 1.25 jakllsch
1263 1.25 jakllsch if (sc->sc_has_rcba) {
1264 1.25 jakllsch /*
1265 1.25 jakllsch * Very unlikely to find a 82802 on a ICH6 or newer.
1266 1.25 jakllsch * Also the write enable register moved at that point.
1267 1.25 jakllsch */
1268 1.25 jakllsch return;
1269 1.25 jakllsch } else {
1270 1.25 jakllsch /* Enable FWH write to identify FWH. */
1271 1.25 jakllsch pr = pci_conf_read(sc->sc_pcib.sc_pc, sc->sc_pcib.sc_tag,
1272 1.26 jakllsch LPCIB_PCI_BIOS_CNTL);
1273 1.25 jakllsch pci_conf_write(sc->sc_pcib.sc_pc, sc->sc_pcib.sc_tag,
1274 1.26 jakllsch LPCIB_PCI_BIOS_CNTL, pr|LPCIB_PCI_BIOS_CNTL_BWE);
1275 1.25 jakllsch }
1276 1.25 jakllsch
1277 1.25 jakllsch sc->sc_fwhbus = config_found_ia(self, "fwhichbus", NULL, NULL);
1278 1.25 jakllsch
1279 1.26 jakllsch /* restore previous write enable setting */
1280 1.26 jakllsch pci_conf_write(sc->sc_pcib.sc_pc, sc->sc_pcib.sc_tag,
1281 1.26 jakllsch LPCIB_PCI_BIOS_CNTL, pr);
1282 1.25 jakllsch }
1283 1.25 jakllsch
1284 1.25 jakllsch static int
1285 1.25 jakllsch lpcib_fwh_unconfigure(device_t self, int flags)
1286 1.25 jakllsch {
1287 1.25 jakllsch struct lpcib_softc *sc = device_private(self);
1288 1.25 jakllsch int rc;
1289 1.25 jakllsch
1290 1.25 jakllsch if (sc->sc_fwhbus != NULL &&
1291 1.25 jakllsch (rc = config_detach(sc->sc_fwhbus, flags)) != 0)
1292 1.25 jakllsch return rc;
1293 1.25 jakllsch
1294 1.25 jakllsch return 0;
1295 1.25 jakllsch }
1296 1.25 jakllsch #endif
1297