xref: /OK3568_Linux_fs/kernel/drivers/hwmon/via686a.c (revision 4882a59341e53eb6f0b4789bf948001014eff981)
1*4882a593Smuzhiyun // SPDX-License-Identifier: GPL-2.0-or-later
2*4882a593Smuzhiyun /*
3*4882a593Smuzhiyun  * via686a.c - Part of lm_sensors, Linux kernel modules
4*4882a593Smuzhiyun  *	       for hardware monitoring
5*4882a593Smuzhiyun  *
6*4882a593Smuzhiyun  * Copyright (c) 1998 - 2002  Frodo Looijaard <frodol@dds.nl>,
7*4882a593Smuzhiyun  *			      Kyösti Mälkki <kmalkki@cc.hut.fi>,
8*4882a593Smuzhiyun  *			      Mark Studebaker <mdsxyz123@yahoo.com>,
9*4882a593Smuzhiyun  *			      and Bob Dougherty <bobd@stanford.edu>
10*4882a593Smuzhiyun  *
11*4882a593Smuzhiyun  * (Some conversion-factor data were contributed by Jonathan Teh Soon Yew
12*4882a593Smuzhiyun  * <j.teh@iname.com> and Alex van Kaam <darkside@chello.nl>.)
13*4882a593Smuzhiyun  */
14*4882a593Smuzhiyun 
15*4882a593Smuzhiyun /*
16*4882a593Smuzhiyun  * Supports the Via VT82C686A, VT82C686B south bridges.
17*4882a593Smuzhiyun  * Reports all as a 686A.
18*4882a593Smuzhiyun  * Warning - only supports a single device.
19*4882a593Smuzhiyun  */
20*4882a593Smuzhiyun 
21*4882a593Smuzhiyun #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
22*4882a593Smuzhiyun 
23*4882a593Smuzhiyun #include <linux/module.h>
24*4882a593Smuzhiyun #include <linux/slab.h>
25*4882a593Smuzhiyun #include <linux/pci.h>
26*4882a593Smuzhiyun #include <linux/jiffies.h>
27*4882a593Smuzhiyun #include <linux/platform_device.h>
28*4882a593Smuzhiyun #include <linux/hwmon.h>
29*4882a593Smuzhiyun #include <linux/hwmon-sysfs.h>
30*4882a593Smuzhiyun #include <linux/err.h>
31*4882a593Smuzhiyun #include <linux/init.h>
32*4882a593Smuzhiyun #include <linux/mutex.h>
33*4882a593Smuzhiyun #include <linux/sysfs.h>
34*4882a593Smuzhiyun #include <linux/acpi.h>
35*4882a593Smuzhiyun #include <linux/io.h>
36*4882a593Smuzhiyun 
37*4882a593Smuzhiyun /*
38*4882a593Smuzhiyun  * If force_addr is set to anything different from 0, we forcibly enable
39*4882a593Smuzhiyun  * the device at the given address.
40*4882a593Smuzhiyun  */
41*4882a593Smuzhiyun static unsigned short force_addr;
42*4882a593Smuzhiyun module_param(force_addr, ushort, 0);
43*4882a593Smuzhiyun MODULE_PARM_DESC(force_addr,
44*4882a593Smuzhiyun 		 "Initialize the base address of the sensors");
45*4882a593Smuzhiyun 
46*4882a593Smuzhiyun static struct platform_device *pdev;
47*4882a593Smuzhiyun 
48*4882a593Smuzhiyun /*
49*4882a593Smuzhiyun  * The Via 686a southbridge has a LM78-like chip integrated on the same IC.
50*4882a593Smuzhiyun  * This driver is a customized copy of lm78.c
51*4882a593Smuzhiyun  */
52*4882a593Smuzhiyun 
53*4882a593Smuzhiyun /* Many VIA686A constants specified below */
54*4882a593Smuzhiyun 
55*4882a593Smuzhiyun /* Length of ISA address segment */
56*4882a593Smuzhiyun #define VIA686A_EXTENT		0x80
57*4882a593Smuzhiyun #define VIA686A_BASE_REG	0x70
58*4882a593Smuzhiyun #define VIA686A_ENABLE_REG	0x74
59*4882a593Smuzhiyun 
60*4882a593Smuzhiyun /* The VIA686A registers */
61*4882a593Smuzhiyun /* ins numbered 0-4 */
62*4882a593Smuzhiyun #define VIA686A_REG_IN_MAX(nr)	(0x2b + ((nr) * 2))
63*4882a593Smuzhiyun #define VIA686A_REG_IN_MIN(nr)	(0x2c + ((nr) * 2))
64*4882a593Smuzhiyun #define VIA686A_REG_IN(nr)	(0x22 + (nr))
65*4882a593Smuzhiyun 
66*4882a593Smuzhiyun /* fans numbered 1-2 */
67*4882a593Smuzhiyun #define VIA686A_REG_FAN_MIN(nr)	(0x3a + (nr))
68*4882a593Smuzhiyun #define VIA686A_REG_FAN(nr)	(0x28 + (nr))
69*4882a593Smuzhiyun 
70*4882a593Smuzhiyun /* temps numbered 1-3 */
71*4882a593Smuzhiyun static const u8 VIA686A_REG_TEMP[]	= { 0x20, 0x21, 0x1f };
72*4882a593Smuzhiyun static const u8 VIA686A_REG_TEMP_OVER[]	= { 0x39, 0x3d, 0x1d };
73*4882a593Smuzhiyun static const u8 VIA686A_REG_TEMP_HYST[]	= { 0x3a, 0x3e, 0x1e };
74*4882a593Smuzhiyun /* bits 7-6 */
75*4882a593Smuzhiyun #define VIA686A_REG_TEMP_LOW1	0x4b
76*4882a593Smuzhiyun /* 2 = bits 5-4, 3 = bits 7-6 */
77*4882a593Smuzhiyun #define VIA686A_REG_TEMP_LOW23	0x49
78*4882a593Smuzhiyun 
79*4882a593Smuzhiyun #define VIA686A_REG_ALARM1	0x41
80*4882a593Smuzhiyun #define VIA686A_REG_ALARM2	0x42
81*4882a593Smuzhiyun #define VIA686A_REG_FANDIV	0x47
82*4882a593Smuzhiyun #define VIA686A_REG_CONFIG	0x40
83*4882a593Smuzhiyun /*
84*4882a593Smuzhiyun  * The following register sets temp interrupt mode (bits 1-0 for temp1,
85*4882a593Smuzhiyun  * 3-2 for temp2, 5-4 for temp3).  Modes are:
86*4882a593Smuzhiyun  * 00 interrupt stays as long as value is out-of-range
87*4882a593Smuzhiyun  * 01 interrupt is cleared once register is read (default)
88*4882a593Smuzhiyun  * 10 comparator mode- like 00, but ignores hysteresis
89*4882a593Smuzhiyun  * 11 same as 00
90*4882a593Smuzhiyun  */
91*4882a593Smuzhiyun #define VIA686A_REG_TEMP_MODE		0x4b
92*4882a593Smuzhiyun /* We'll just assume that you want to set all 3 simultaneously: */
93*4882a593Smuzhiyun #define VIA686A_TEMP_MODE_MASK		0x3F
94*4882a593Smuzhiyun #define VIA686A_TEMP_MODE_CONTINUOUS	0x00
95*4882a593Smuzhiyun 
96*4882a593Smuzhiyun /*
97*4882a593Smuzhiyun  * Conversions. Limit checking is only done on the TO_REG
98*4882a593Smuzhiyun  * variants.
99*4882a593Smuzhiyun  *
100*4882a593Smuzhiyun  ******** VOLTAGE CONVERSIONS (Bob Dougherty) ********
101*4882a593Smuzhiyun  * From HWMon.cpp (Copyright 1998-2000 Jonathan Teh Soon Yew):
102*4882a593Smuzhiyun  * voltagefactor[0]=1.25/2628; (2628/1.25=2102.4)   // Vccp
103*4882a593Smuzhiyun  * voltagefactor[1]=1.25/2628; (2628/1.25=2102.4)   // +2.5V
104*4882a593Smuzhiyun  * voltagefactor[2]=1.67/2628; (2628/1.67=1573.7)   // +3.3V
105*4882a593Smuzhiyun  * voltagefactor[3]=2.6/2628;  (2628/2.60=1010.8)   // +5V
106*4882a593Smuzhiyun  * voltagefactor[4]=6.3/2628;  (2628/6.30=417.14)   // +12V
107*4882a593Smuzhiyun  * in[i]=(data[i+2]*25.0+133)*voltagefactor[i];
108*4882a593Smuzhiyun  * That is:
109*4882a593Smuzhiyun  * volts = (25*regVal+133)*factor
110*4882a593Smuzhiyun  * regVal = (volts/factor-133)/25
111*4882a593Smuzhiyun  * (These conversions were contributed by Jonathan Teh Soon Yew
112*4882a593Smuzhiyun  * <j.teh@iname.com>)
113*4882a593Smuzhiyun  */
IN_TO_REG(long val,int in_num)114*4882a593Smuzhiyun static inline u8 IN_TO_REG(long val, int in_num)
115*4882a593Smuzhiyun {
116*4882a593Smuzhiyun 	/*
117*4882a593Smuzhiyun 	 * To avoid floating point, we multiply constants by 10 (100 for +12V).
118*4882a593Smuzhiyun 	 * Rounding is done (120500 is actually 133000 - 12500).
119*4882a593Smuzhiyun 	 * Remember that val is expressed in 0.001V/bit, which is why we divide
120*4882a593Smuzhiyun 	 * by an additional 10000 (100000 for +12V): 1000 for val and 10 (100)
121*4882a593Smuzhiyun 	 * for the constants.
122*4882a593Smuzhiyun 	 */
123*4882a593Smuzhiyun 	if (in_num <= 1)
124*4882a593Smuzhiyun 		return (u8) clamp_val((val * 21024 - 1205000) / 250000, 0, 255);
125*4882a593Smuzhiyun 	else if (in_num == 2)
126*4882a593Smuzhiyun 		return (u8) clamp_val((val * 15737 - 1205000) / 250000, 0, 255);
127*4882a593Smuzhiyun 	else if (in_num == 3)
128*4882a593Smuzhiyun 		return (u8) clamp_val((val * 10108 - 1205000) / 250000, 0, 255);
129*4882a593Smuzhiyun 	else
130*4882a593Smuzhiyun 		return (u8) clamp_val((val * 41714 - 12050000) / 2500000, 0,
131*4882a593Smuzhiyun 				      255);
132*4882a593Smuzhiyun }
133*4882a593Smuzhiyun 
IN_FROM_REG(u8 val,int in_num)134*4882a593Smuzhiyun static inline long IN_FROM_REG(u8 val, int in_num)
135*4882a593Smuzhiyun {
136*4882a593Smuzhiyun 	/*
137*4882a593Smuzhiyun 	 * To avoid floating point, we multiply constants by 10 (100 for +12V).
138*4882a593Smuzhiyun 	 * We also multiply them by 1000 because we want 0.001V/bit for the
139*4882a593Smuzhiyun 	 * output value. Rounding is done.
140*4882a593Smuzhiyun 	 */
141*4882a593Smuzhiyun 	if (in_num <= 1)
142*4882a593Smuzhiyun 		return (long) ((250000 * val + 1330000 + 21024 / 2) / 21024);
143*4882a593Smuzhiyun 	else if (in_num == 2)
144*4882a593Smuzhiyun 		return (long) ((250000 * val + 1330000 + 15737 / 2) / 15737);
145*4882a593Smuzhiyun 	else if (in_num == 3)
146*4882a593Smuzhiyun 		return (long) ((250000 * val + 1330000 + 10108 / 2) / 10108);
147*4882a593Smuzhiyun 	else
148*4882a593Smuzhiyun 		return (long) ((2500000 * val + 13300000 + 41714 / 2) / 41714);
149*4882a593Smuzhiyun }
150*4882a593Smuzhiyun 
151*4882a593Smuzhiyun /********* FAN RPM CONVERSIONS ********/
152*4882a593Smuzhiyun /*
153*4882a593Smuzhiyun  * Higher register values = slower fans (the fan's strobe gates a counter).
154*4882a593Smuzhiyun  * But this chip saturates back at 0, not at 255 like all the other chips.
155*4882a593Smuzhiyun  * So, 0 means 0 RPM
156*4882a593Smuzhiyun  */
FAN_TO_REG(long rpm,int div)157*4882a593Smuzhiyun static inline u8 FAN_TO_REG(long rpm, int div)
158*4882a593Smuzhiyun {
159*4882a593Smuzhiyun 	if (rpm == 0)
160*4882a593Smuzhiyun 		return 0;
161*4882a593Smuzhiyun 	rpm = clamp_val(rpm, 1, 1000000);
162*4882a593Smuzhiyun 	return clamp_val((1350000 + rpm * div / 2) / (rpm * div), 1, 255);
163*4882a593Smuzhiyun }
164*4882a593Smuzhiyun 
165*4882a593Smuzhiyun #define FAN_FROM_REG(val, div) ((val) == 0 ? 0 : (val) == 255 ? 0 : 1350000 / \
166*4882a593Smuzhiyun 				((val) * (div)))
167*4882a593Smuzhiyun 
168*4882a593Smuzhiyun /******** TEMP CONVERSIONS (Bob Dougherty) *********/
169*4882a593Smuzhiyun /*
170*4882a593Smuzhiyun  * linear fits from HWMon.cpp (Copyright 1998-2000 Jonathan Teh Soon Yew)
171*4882a593Smuzhiyun  *	if(temp<169)
172*4882a593Smuzhiyun  *		return double(temp)*0.427-32.08;
173*4882a593Smuzhiyun  *	else if(temp>=169 && temp<=202)
174*4882a593Smuzhiyun  *		return double(temp)*0.582-58.16;
175*4882a593Smuzhiyun  *	else
176*4882a593Smuzhiyun  *		return double(temp)*0.924-127.33;
177*4882a593Smuzhiyun  *
178*4882a593Smuzhiyun  * A fifth-order polynomial fits the unofficial data (provided by Alex van
179*4882a593Smuzhiyun  * Kaam <darkside@chello.nl>) a bit better.  It also give more reasonable
180*4882a593Smuzhiyun  * numbers on my machine (ie. they agree with what my BIOS tells me).
181*4882a593Smuzhiyun  * Here's the fifth-order fit to the 8-bit data:
182*4882a593Smuzhiyun  * temp = 1.625093e-10*val^5 - 1.001632e-07*val^4 + 2.457653e-05*val^3 -
183*4882a593Smuzhiyun  *	2.967619e-03*val^2 + 2.175144e-01*val - 7.090067e+0.
184*4882a593Smuzhiyun  *
185*4882a593Smuzhiyun  * (2000-10-25- RFD: thanks to Uwe Andersen <uandersen@mayah.com> for
186*4882a593Smuzhiyun  * finding my typos in this formula!)
187*4882a593Smuzhiyun  *
188*4882a593Smuzhiyun  * Alas, none of the elegant function-fit solutions will work because we
189*4882a593Smuzhiyun  * aren't allowed to use floating point in the kernel and doing it with
190*4882a593Smuzhiyun  * integers doesn't provide enough precision.  So we'll do boring old
191*4882a593Smuzhiyun  * look-up table stuff.  The unofficial data (see below) have effectively
192*4882a593Smuzhiyun  * 7-bit resolution (they are rounded to the nearest degree).  I'm assuming
193*4882a593Smuzhiyun  * that the transfer function of the device is monotonic and smooth, so a
194*4882a593Smuzhiyun  * smooth function fit to the data will allow us to get better precision.
195*4882a593Smuzhiyun  * I used the 5th-order poly fit described above and solved for
196*4882a593Smuzhiyun  * VIA register values 0-255.  I *10 before rounding, so we get tenth-degree
197*4882a593Smuzhiyun  * precision.  (I could have done all 1024 values for our 10-bit readings,
198*4882a593Smuzhiyun  * but the function is very linear in the useful range (0-80 deg C), so
199*4882a593Smuzhiyun  * we'll just use linear interpolation for 10-bit readings.)  So, temp_lut
200*4882a593Smuzhiyun  * is the temp at via register values 0-255:
201*4882a593Smuzhiyun  */
202*4882a593Smuzhiyun static const s16 temp_lut[] = {
203*4882a593Smuzhiyun 	-709, -688, -667, -646, -627, -607, -589, -570, -553, -536, -519,
204*4882a593Smuzhiyun 	-503, -487, -471, -456, -442, -428, -414, -400, -387, -375,
205*4882a593Smuzhiyun 	-362, -350, -339, -327, -316, -305, -295, -285, -275, -265,
206*4882a593Smuzhiyun 	-255, -246, -237, -229, -220, -212, -204, -196, -188, -180,
207*4882a593Smuzhiyun 	-173, -166, -159, -152, -145, -139, -132, -126, -120, -114,
208*4882a593Smuzhiyun 	-108, -102, -96, -91, -85, -80, -74, -69, -64, -59, -54, -49,
209*4882a593Smuzhiyun 	-44, -39, -34, -29, -25, -20, -15, -11, -6, -2, 3, 7, 12, 16,
210*4882a593Smuzhiyun 	20, 25, 29, 33, 37, 42, 46, 50, 54, 59, 63, 67, 71, 75, 79, 84,
211*4882a593Smuzhiyun 	88, 92, 96, 100, 104, 109, 113, 117, 121, 125, 130, 134, 138,
212*4882a593Smuzhiyun 	142, 146, 151, 155, 159, 163, 168, 172, 176, 181, 185, 189,
213*4882a593Smuzhiyun 	193, 198, 202, 206, 211, 215, 219, 224, 228, 232, 237, 241,
214*4882a593Smuzhiyun 	245, 250, 254, 259, 263, 267, 272, 276, 281, 285, 290, 294,
215*4882a593Smuzhiyun 	299, 303, 307, 312, 316, 321, 325, 330, 334, 339, 344, 348,
216*4882a593Smuzhiyun 	353, 357, 362, 366, 371, 376, 380, 385, 390, 395, 399, 404,
217*4882a593Smuzhiyun 	409, 414, 419, 423, 428, 433, 438, 443, 449, 454, 459, 464,
218*4882a593Smuzhiyun 	469, 475, 480, 486, 491, 497, 502, 508, 514, 520, 526, 532,
219*4882a593Smuzhiyun 	538, 544, 551, 557, 564, 571, 578, 584, 592, 599, 606, 614,
220*4882a593Smuzhiyun 	621, 629, 637, 645, 654, 662, 671, 680, 689, 698, 708, 718,
221*4882a593Smuzhiyun 	728, 738, 749, 759, 770, 782, 793, 805, 818, 830, 843, 856,
222*4882a593Smuzhiyun 	870, 883, 898, 912, 927, 943, 958, 975, 991, 1008, 1026, 1044,
223*4882a593Smuzhiyun 	1062, 1081, 1101, 1121, 1141, 1162, 1184, 1206, 1229, 1252,
224*4882a593Smuzhiyun 	1276, 1301, 1326, 1352, 1378, 1406, 1434, 1462
225*4882a593Smuzhiyun };
226*4882a593Smuzhiyun 
227*4882a593Smuzhiyun /*
228*4882a593Smuzhiyun  * the original LUT values from Alex van Kaam <darkside@chello.nl>
229*4882a593Smuzhiyun  * (for via register values 12-240):
230*4882a593Smuzhiyun  * {-50,-49,-47,-45,-43,-41,-39,-38,-37,-35,-34,-33,-32,-31,
231*4882a593Smuzhiyun  * -30,-29,-28,-27,-26,-25,-24,-24,-23,-22,-21,-20,-20,-19,-18,-17,-17,-16,-15,
232*4882a593Smuzhiyun  * -15,-14,-14,-13,-12,-12,-11,-11,-10,-9,-9,-8,-8,-7,-7,-6,-6,-5,-5,-4,-4,-3,
233*4882a593Smuzhiyun  * -3,-2,-2,-1,-1,0,0,1,1,1,3,3,3,4,4,4,5,5,5,6,6,7,7,8,8,9,9,9,10,10,11,11,12,
234*4882a593Smuzhiyun  * 12,12,13,13,13,14,14,15,15,16,16,16,17,17,18,18,19,19,20,20,21,21,21,22,22,
235*4882a593Smuzhiyun  * 22,23,23,24,24,25,25,26,26,26,27,27,27,28,28,29,29,30,30,30,31,31,32,32,33,
236*4882a593Smuzhiyun  * 33,34,34,35,35,35,36,36,37,37,38,38,39,39,40,40,41,41,42,42,43,43,44,44,45,
237*4882a593Smuzhiyun  * 45,46,46,47,48,48,49,49,50,51,51,52,52,53,53,54,55,55,56,57,57,58,59,59,60,
238*4882a593Smuzhiyun  * 61,62,62,63,64,65,66,66,67,68,69,70,71,72,73,74,75,76,77,78,79,80,81,83,84,
239*4882a593Smuzhiyun  * 85,86,88,89,91,92,94,96,97,99,101,103,105,107,109,110};
240*4882a593Smuzhiyun  *
241*4882a593Smuzhiyun  *
242*4882a593Smuzhiyun  * Here's the reverse LUT.  I got it by doing a 6-th order poly fit (needed
243*4882a593Smuzhiyun  * an extra term for a good fit to these inverse data!) and then
244*4882a593Smuzhiyun  * solving for each temp value from -50 to 110 (the useable range for
245*4882a593Smuzhiyun  * this chip).  Here's the fit:
246*4882a593Smuzhiyun  * viaRegVal = -1.160370e-10*val^6 +3.193693e-08*val^5 - 1.464447e-06*val^4
247*4882a593Smuzhiyun  * - 2.525453e-04*val^3 + 1.424593e-02*val^2 + 2.148941e+00*val +7.275808e+01)
248*4882a593Smuzhiyun  * Note that n=161:
249*4882a593Smuzhiyun  */
250*4882a593Smuzhiyun static const u8 via_lut[] = {
251*4882a593Smuzhiyun 	12, 12, 13, 14, 14, 15, 16, 16, 17, 18, 18, 19, 20, 20, 21, 22, 23,
252*4882a593Smuzhiyun 	23, 24, 25, 26, 27, 28, 29, 30, 31, 32, 33, 35, 36, 37, 39, 40,
253*4882a593Smuzhiyun 	41, 43, 45, 46, 48, 49, 51, 53, 55, 57, 59, 60, 62, 64, 66,
254*4882a593Smuzhiyun 	69, 71, 73, 75, 77, 79, 82, 84, 86, 88, 91, 93, 95, 98, 100,
255*4882a593Smuzhiyun 	103, 105, 107, 110, 112, 115, 117, 119, 122, 124, 126, 129,
256*4882a593Smuzhiyun 	131, 134, 136, 138, 140, 143, 145, 147, 150, 152, 154, 156,
257*4882a593Smuzhiyun 	158, 160, 162, 164, 166, 168, 170, 172, 174, 176, 178, 180,
258*4882a593Smuzhiyun 	182, 183, 185, 187, 188, 190, 192, 193, 195, 196, 198, 199,
259*4882a593Smuzhiyun 	200, 202, 203, 205, 206, 207, 208, 209, 210, 211, 212, 213,
260*4882a593Smuzhiyun 	214, 215, 216, 217, 218, 219, 220, 221, 222, 222, 223, 224,
261*4882a593Smuzhiyun 	225, 226, 226, 227, 228, 228, 229, 230, 230, 231, 232, 232,
262*4882a593Smuzhiyun 	233, 233, 234, 235, 235, 236, 236, 237, 237, 238, 238, 239,
263*4882a593Smuzhiyun 	239, 240
264*4882a593Smuzhiyun };
265*4882a593Smuzhiyun 
266*4882a593Smuzhiyun /*
267*4882a593Smuzhiyun  * Converting temps to (8-bit) hyst and over registers
268*4882a593Smuzhiyun  * No interpolation here.
269*4882a593Smuzhiyun  * The +50 is because the temps start at -50
270*4882a593Smuzhiyun  */
TEMP_TO_REG(long val)271*4882a593Smuzhiyun static inline u8 TEMP_TO_REG(long val)
272*4882a593Smuzhiyun {
273*4882a593Smuzhiyun 	return via_lut[val <= -50000 ? 0 : val >= 110000 ? 160 :
274*4882a593Smuzhiyun 		      (val < 0 ? val - 500 : val + 500) / 1000 + 50];
275*4882a593Smuzhiyun }
276*4882a593Smuzhiyun 
277*4882a593Smuzhiyun /* for 8-bit temperature hyst and over registers */
278*4882a593Smuzhiyun #define TEMP_FROM_REG(val)	((long)temp_lut[val] * 100)
279*4882a593Smuzhiyun 
280*4882a593Smuzhiyun /* for 10-bit temperature readings */
TEMP_FROM_REG10(u16 val)281*4882a593Smuzhiyun static inline long TEMP_FROM_REG10(u16 val)
282*4882a593Smuzhiyun {
283*4882a593Smuzhiyun 	u16 eight_bits = val >> 2;
284*4882a593Smuzhiyun 	u16 two_bits = val & 3;
285*4882a593Smuzhiyun 
286*4882a593Smuzhiyun 	/* no interpolation for these */
287*4882a593Smuzhiyun 	if (two_bits == 0 || eight_bits == 255)
288*4882a593Smuzhiyun 		return TEMP_FROM_REG(eight_bits);
289*4882a593Smuzhiyun 
290*4882a593Smuzhiyun 	/* do some linear interpolation */
291*4882a593Smuzhiyun 	return (temp_lut[eight_bits] * (4 - two_bits) +
292*4882a593Smuzhiyun 		temp_lut[eight_bits + 1] * two_bits) * 25;
293*4882a593Smuzhiyun }
294*4882a593Smuzhiyun 
295*4882a593Smuzhiyun #define DIV_FROM_REG(val) (1 << (val))
296*4882a593Smuzhiyun #define DIV_TO_REG(val) ((val) == 8 ? 3 : (val) == 4 ? 2 : (val) == 1 ? 0 : 1)
297*4882a593Smuzhiyun 
298*4882a593Smuzhiyun /*
299*4882a593Smuzhiyun  * For each registered chip, we need to keep some data in memory.
300*4882a593Smuzhiyun  * The structure is dynamically allocated.
301*4882a593Smuzhiyun  */
302*4882a593Smuzhiyun struct via686a_data {
303*4882a593Smuzhiyun 	unsigned short addr;
304*4882a593Smuzhiyun 	const char *name;
305*4882a593Smuzhiyun 	struct device *hwmon_dev;
306*4882a593Smuzhiyun 	struct mutex update_lock;
307*4882a593Smuzhiyun 	char valid;		/* !=0 if following fields are valid */
308*4882a593Smuzhiyun 	unsigned long last_updated;	/* In jiffies */
309*4882a593Smuzhiyun 
310*4882a593Smuzhiyun 	u8 in[5];		/* Register value */
311*4882a593Smuzhiyun 	u8 in_max[5];		/* Register value */
312*4882a593Smuzhiyun 	u8 in_min[5];		/* Register value */
313*4882a593Smuzhiyun 	u8 fan[2];		/* Register value */
314*4882a593Smuzhiyun 	u8 fan_min[2];		/* Register value */
315*4882a593Smuzhiyun 	u16 temp[3];		/* Register value 10 bit */
316*4882a593Smuzhiyun 	u8 temp_over[3];	/* Register value */
317*4882a593Smuzhiyun 	u8 temp_hyst[3];	/* Register value */
318*4882a593Smuzhiyun 	u8 fan_div[2];		/* Register encoding, shifted right */
319*4882a593Smuzhiyun 	u16 alarms;		/* Register encoding, combined */
320*4882a593Smuzhiyun };
321*4882a593Smuzhiyun 
322*4882a593Smuzhiyun static struct pci_dev *s_bridge;	/* pointer to the (only) via686a */
323*4882a593Smuzhiyun 
324*4882a593Smuzhiyun static int via686a_probe(struct platform_device *pdev);
325*4882a593Smuzhiyun static int via686a_remove(struct platform_device *pdev);
326*4882a593Smuzhiyun 
via686a_read_value(struct via686a_data * data,u8 reg)327*4882a593Smuzhiyun static inline int via686a_read_value(struct via686a_data *data, u8 reg)
328*4882a593Smuzhiyun {
329*4882a593Smuzhiyun 	return inb_p(data->addr + reg);
330*4882a593Smuzhiyun }
331*4882a593Smuzhiyun 
via686a_write_value(struct via686a_data * data,u8 reg,u8 value)332*4882a593Smuzhiyun static inline void via686a_write_value(struct via686a_data *data, u8 reg,
333*4882a593Smuzhiyun 				       u8 value)
334*4882a593Smuzhiyun {
335*4882a593Smuzhiyun 	outb_p(value, data->addr + reg);
336*4882a593Smuzhiyun }
337*4882a593Smuzhiyun 
338*4882a593Smuzhiyun static struct via686a_data *via686a_update_device(struct device *dev);
339*4882a593Smuzhiyun static void via686a_init_device(struct via686a_data *data);
340*4882a593Smuzhiyun 
341*4882a593Smuzhiyun /* following are the sysfs callback functions */
342*4882a593Smuzhiyun 
343*4882a593Smuzhiyun /* 7 voltage sensors */
in_show(struct device * dev,struct device_attribute * da,char * buf)344*4882a593Smuzhiyun static ssize_t in_show(struct device *dev, struct device_attribute *da,
345*4882a593Smuzhiyun 		       char *buf) {
346*4882a593Smuzhiyun 	struct via686a_data *data = via686a_update_device(dev);
347*4882a593Smuzhiyun 	struct sensor_device_attribute *attr = to_sensor_dev_attr(da);
348*4882a593Smuzhiyun 	int nr = attr->index;
349*4882a593Smuzhiyun 	return sprintf(buf, "%ld\n", IN_FROM_REG(data->in[nr], nr));
350*4882a593Smuzhiyun }
351*4882a593Smuzhiyun 
in_min_show(struct device * dev,struct device_attribute * da,char * buf)352*4882a593Smuzhiyun static ssize_t in_min_show(struct device *dev, struct device_attribute *da,
353*4882a593Smuzhiyun 			   char *buf) {
354*4882a593Smuzhiyun 	struct via686a_data *data = via686a_update_device(dev);
355*4882a593Smuzhiyun 	struct sensor_device_attribute *attr = to_sensor_dev_attr(da);
356*4882a593Smuzhiyun 	int nr = attr->index;
357*4882a593Smuzhiyun 	return sprintf(buf, "%ld\n", IN_FROM_REG(data->in_min[nr], nr));
358*4882a593Smuzhiyun }
359*4882a593Smuzhiyun 
in_max_show(struct device * dev,struct device_attribute * da,char * buf)360*4882a593Smuzhiyun static ssize_t in_max_show(struct device *dev, struct device_attribute *da,
361*4882a593Smuzhiyun 			   char *buf) {
362*4882a593Smuzhiyun 	struct via686a_data *data = via686a_update_device(dev);
363*4882a593Smuzhiyun 	struct sensor_device_attribute *attr = to_sensor_dev_attr(da);
364*4882a593Smuzhiyun 	int nr = attr->index;
365*4882a593Smuzhiyun 	return sprintf(buf, "%ld\n", IN_FROM_REG(data->in_max[nr], nr));
366*4882a593Smuzhiyun }
367*4882a593Smuzhiyun 
in_min_store(struct device * dev,struct device_attribute * da,const char * buf,size_t count)368*4882a593Smuzhiyun static ssize_t in_min_store(struct device *dev, struct device_attribute *da,
369*4882a593Smuzhiyun 			    const char *buf, size_t count) {
370*4882a593Smuzhiyun 	struct via686a_data *data = dev_get_drvdata(dev);
371*4882a593Smuzhiyun 	struct sensor_device_attribute *attr = to_sensor_dev_attr(da);
372*4882a593Smuzhiyun 	int nr = attr->index;
373*4882a593Smuzhiyun 	unsigned long val;
374*4882a593Smuzhiyun 	int err;
375*4882a593Smuzhiyun 
376*4882a593Smuzhiyun 	err = kstrtoul(buf, 10, &val);
377*4882a593Smuzhiyun 	if (err)
378*4882a593Smuzhiyun 		return err;
379*4882a593Smuzhiyun 
380*4882a593Smuzhiyun 	mutex_lock(&data->update_lock);
381*4882a593Smuzhiyun 	data->in_min[nr] = IN_TO_REG(val, nr);
382*4882a593Smuzhiyun 	via686a_write_value(data, VIA686A_REG_IN_MIN(nr),
383*4882a593Smuzhiyun 			data->in_min[nr]);
384*4882a593Smuzhiyun 	mutex_unlock(&data->update_lock);
385*4882a593Smuzhiyun 	return count;
386*4882a593Smuzhiyun }
in_max_store(struct device * dev,struct device_attribute * da,const char * buf,size_t count)387*4882a593Smuzhiyun static ssize_t in_max_store(struct device *dev, struct device_attribute *da,
388*4882a593Smuzhiyun 			    const char *buf, size_t count) {
389*4882a593Smuzhiyun 	struct via686a_data *data = dev_get_drvdata(dev);
390*4882a593Smuzhiyun 	struct sensor_device_attribute *attr = to_sensor_dev_attr(da);
391*4882a593Smuzhiyun 	int nr = attr->index;
392*4882a593Smuzhiyun 	unsigned long val;
393*4882a593Smuzhiyun 	int err;
394*4882a593Smuzhiyun 
395*4882a593Smuzhiyun 	err = kstrtoul(buf, 10, &val);
396*4882a593Smuzhiyun 	if (err)
397*4882a593Smuzhiyun 		return err;
398*4882a593Smuzhiyun 
399*4882a593Smuzhiyun 	mutex_lock(&data->update_lock);
400*4882a593Smuzhiyun 	data->in_max[nr] = IN_TO_REG(val, nr);
401*4882a593Smuzhiyun 	via686a_write_value(data, VIA686A_REG_IN_MAX(nr),
402*4882a593Smuzhiyun 			data->in_max[nr]);
403*4882a593Smuzhiyun 	mutex_unlock(&data->update_lock);
404*4882a593Smuzhiyun 	return count;
405*4882a593Smuzhiyun }
406*4882a593Smuzhiyun 
407*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RO(in0_input, in, 0);
408*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RW(in0_min, in_min, 0);
409*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RW(in0_max, in_max, 0);
410*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RO(in1_input, in, 1);
411*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RW(in1_min, in_min, 1);
412*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RW(in1_max, in_max, 1);
413*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RO(in2_input, in, 2);
414*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RW(in2_min, in_min, 2);
415*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RW(in2_max, in_max, 2);
416*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RO(in3_input, in, 3);
417*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RW(in3_min, in_min, 3);
418*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RW(in3_max, in_max, 3);
419*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RO(in4_input, in, 4);
420*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RW(in4_min, in_min, 4);
421*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RW(in4_max, in_max, 4);
422*4882a593Smuzhiyun 
423*4882a593Smuzhiyun /* 3 temperatures */
temp_show(struct device * dev,struct device_attribute * da,char * buf)424*4882a593Smuzhiyun static ssize_t temp_show(struct device *dev, struct device_attribute *da,
425*4882a593Smuzhiyun 			 char *buf) {
426*4882a593Smuzhiyun 	struct via686a_data *data = via686a_update_device(dev);
427*4882a593Smuzhiyun 	struct sensor_device_attribute *attr = to_sensor_dev_attr(da);
428*4882a593Smuzhiyun 	int nr = attr->index;
429*4882a593Smuzhiyun 	return sprintf(buf, "%ld\n", TEMP_FROM_REG10(data->temp[nr]));
430*4882a593Smuzhiyun }
temp_over_show(struct device * dev,struct device_attribute * da,char * buf)431*4882a593Smuzhiyun static ssize_t temp_over_show(struct device *dev, struct device_attribute *da,
432*4882a593Smuzhiyun 			      char *buf) {
433*4882a593Smuzhiyun 	struct via686a_data *data = via686a_update_device(dev);
434*4882a593Smuzhiyun 	struct sensor_device_attribute *attr = to_sensor_dev_attr(da);
435*4882a593Smuzhiyun 	int nr = attr->index;
436*4882a593Smuzhiyun 	return sprintf(buf, "%ld\n", TEMP_FROM_REG(data->temp_over[nr]));
437*4882a593Smuzhiyun }
temp_hyst_show(struct device * dev,struct device_attribute * da,char * buf)438*4882a593Smuzhiyun static ssize_t temp_hyst_show(struct device *dev, struct device_attribute *da,
439*4882a593Smuzhiyun 			      char *buf) {
440*4882a593Smuzhiyun 	struct via686a_data *data = via686a_update_device(dev);
441*4882a593Smuzhiyun 	struct sensor_device_attribute *attr = to_sensor_dev_attr(da);
442*4882a593Smuzhiyun 	int nr = attr->index;
443*4882a593Smuzhiyun 	return sprintf(buf, "%ld\n", TEMP_FROM_REG(data->temp_hyst[nr]));
444*4882a593Smuzhiyun }
temp_over_store(struct device * dev,struct device_attribute * da,const char * buf,size_t count)445*4882a593Smuzhiyun static ssize_t temp_over_store(struct device *dev,
446*4882a593Smuzhiyun 			       struct device_attribute *da, const char *buf,
447*4882a593Smuzhiyun 			       size_t count) {
448*4882a593Smuzhiyun 	struct via686a_data *data = dev_get_drvdata(dev);
449*4882a593Smuzhiyun 	struct sensor_device_attribute *attr = to_sensor_dev_attr(da);
450*4882a593Smuzhiyun 	int nr = attr->index;
451*4882a593Smuzhiyun 	long val;
452*4882a593Smuzhiyun 	int err;
453*4882a593Smuzhiyun 
454*4882a593Smuzhiyun 	err = kstrtol(buf, 10, &val);
455*4882a593Smuzhiyun 	if (err)
456*4882a593Smuzhiyun 		return err;
457*4882a593Smuzhiyun 
458*4882a593Smuzhiyun 	mutex_lock(&data->update_lock);
459*4882a593Smuzhiyun 	data->temp_over[nr] = TEMP_TO_REG(val);
460*4882a593Smuzhiyun 	via686a_write_value(data, VIA686A_REG_TEMP_OVER[nr],
461*4882a593Smuzhiyun 			    data->temp_over[nr]);
462*4882a593Smuzhiyun 	mutex_unlock(&data->update_lock);
463*4882a593Smuzhiyun 	return count;
464*4882a593Smuzhiyun }
temp_hyst_store(struct device * dev,struct device_attribute * da,const char * buf,size_t count)465*4882a593Smuzhiyun static ssize_t temp_hyst_store(struct device *dev,
466*4882a593Smuzhiyun 			       struct device_attribute *da, const char *buf,
467*4882a593Smuzhiyun 			       size_t count) {
468*4882a593Smuzhiyun 	struct via686a_data *data = dev_get_drvdata(dev);
469*4882a593Smuzhiyun 	struct sensor_device_attribute *attr = to_sensor_dev_attr(da);
470*4882a593Smuzhiyun 	int nr = attr->index;
471*4882a593Smuzhiyun 	long val;
472*4882a593Smuzhiyun 	int err;
473*4882a593Smuzhiyun 
474*4882a593Smuzhiyun 	err = kstrtol(buf, 10, &val);
475*4882a593Smuzhiyun 	if (err)
476*4882a593Smuzhiyun 		return err;
477*4882a593Smuzhiyun 
478*4882a593Smuzhiyun 	mutex_lock(&data->update_lock);
479*4882a593Smuzhiyun 	data->temp_hyst[nr] = TEMP_TO_REG(val);
480*4882a593Smuzhiyun 	via686a_write_value(data, VIA686A_REG_TEMP_HYST[nr],
481*4882a593Smuzhiyun 			    data->temp_hyst[nr]);
482*4882a593Smuzhiyun 	mutex_unlock(&data->update_lock);
483*4882a593Smuzhiyun 	return count;
484*4882a593Smuzhiyun }
485*4882a593Smuzhiyun 
486*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RO(temp1_input, temp, 0);
487*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RW(temp1_max, temp_over, 0);
488*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RW(temp1_max_hyst, temp_hyst, 0);
489*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RO(temp2_input, temp, 1);
490*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RW(temp2_max, temp_over, 1);
491*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RW(temp2_max_hyst, temp_hyst, 1);
492*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RO(temp3_input, temp, 2);
493*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RW(temp3_max, temp_over, 2);
494*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RW(temp3_max_hyst, temp_hyst, 2);
495*4882a593Smuzhiyun 
496*4882a593Smuzhiyun /* 2 Fans */
fan_show(struct device * dev,struct device_attribute * da,char * buf)497*4882a593Smuzhiyun static ssize_t fan_show(struct device *dev, struct device_attribute *da,
498*4882a593Smuzhiyun 			char *buf) {
499*4882a593Smuzhiyun 	struct via686a_data *data = via686a_update_device(dev);
500*4882a593Smuzhiyun 	struct sensor_device_attribute *attr = to_sensor_dev_attr(da);
501*4882a593Smuzhiyun 	int nr = attr->index;
502*4882a593Smuzhiyun 	return sprintf(buf, "%d\n", FAN_FROM_REG(data->fan[nr],
503*4882a593Smuzhiyun 				DIV_FROM_REG(data->fan_div[nr])));
504*4882a593Smuzhiyun }
fan_min_show(struct device * dev,struct device_attribute * da,char * buf)505*4882a593Smuzhiyun static ssize_t fan_min_show(struct device *dev, struct device_attribute *da,
506*4882a593Smuzhiyun 			    char *buf) {
507*4882a593Smuzhiyun 	struct via686a_data *data = via686a_update_device(dev);
508*4882a593Smuzhiyun 	struct sensor_device_attribute *attr = to_sensor_dev_attr(da);
509*4882a593Smuzhiyun 	int nr = attr->index;
510*4882a593Smuzhiyun 	return sprintf(buf, "%d\n",
511*4882a593Smuzhiyun 		FAN_FROM_REG(data->fan_min[nr],
512*4882a593Smuzhiyun 			     DIV_FROM_REG(data->fan_div[nr])));
513*4882a593Smuzhiyun }
fan_div_show(struct device * dev,struct device_attribute * da,char * buf)514*4882a593Smuzhiyun static ssize_t fan_div_show(struct device *dev, struct device_attribute *da,
515*4882a593Smuzhiyun 			    char *buf) {
516*4882a593Smuzhiyun 	struct via686a_data *data = via686a_update_device(dev);
517*4882a593Smuzhiyun 	struct sensor_device_attribute *attr = to_sensor_dev_attr(da);
518*4882a593Smuzhiyun 	int nr = attr->index;
519*4882a593Smuzhiyun 	return sprintf(buf, "%d\n", DIV_FROM_REG(data->fan_div[nr]));
520*4882a593Smuzhiyun }
fan_min_store(struct device * dev,struct device_attribute * da,const char * buf,size_t count)521*4882a593Smuzhiyun static ssize_t fan_min_store(struct device *dev, struct device_attribute *da,
522*4882a593Smuzhiyun 			     const char *buf, size_t count) {
523*4882a593Smuzhiyun 	struct via686a_data *data = dev_get_drvdata(dev);
524*4882a593Smuzhiyun 	struct sensor_device_attribute *attr = to_sensor_dev_attr(da);
525*4882a593Smuzhiyun 	int nr = attr->index;
526*4882a593Smuzhiyun 	unsigned long val;
527*4882a593Smuzhiyun 	int err;
528*4882a593Smuzhiyun 
529*4882a593Smuzhiyun 	err = kstrtoul(buf, 10, &val);
530*4882a593Smuzhiyun 	if (err)
531*4882a593Smuzhiyun 		return err;
532*4882a593Smuzhiyun 
533*4882a593Smuzhiyun 	mutex_lock(&data->update_lock);
534*4882a593Smuzhiyun 	data->fan_min[nr] = FAN_TO_REG(val, DIV_FROM_REG(data->fan_div[nr]));
535*4882a593Smuzhiyun 	via686a_write_value(data, VIA686A_REG_FAN_MIN(nr+1), data->fan_min[nr]);
536*4882a593Smuzhiyun 	mutex_unlock(&data->update_lock);
537*4882a593Smuzhiyun 	return count;
538*4882a593Smuzhiyun }
fan_div_store(struct device * dev,struct device_attribute * da,const char * buf,size_t count)539*4882a593Smuzhiyun static ssize_t fan_div_store(struct device *dev, struct device_attribute *da,
540*4882a593Smuzhiyun 			     const char *buf, size_t count) {
541*4882a593Smuzhiyun 	struct via686a_data *data = dev_get_drvdata(dev);
542*4882a593Smuzhiyun 	struct sensor_device_attribute *attr = to_sensor_dev_attr(da);
543*4882a593Smuzhiyun 	int nr = attr->index;
544*4882a593Smuzhiyun 	int old;
545*4882a593Smuzhiyun 	unsigned long val;
546*4882a593Smuzhiyun 	int err;
547*4882a593Smuzhiyun 
548*4882a593Smuzhiyun 	err = kstrtoul(buf, 10, &val);
549*4882a593Smuzhiyun 	if (err)
550*4882a593Smuzhiyun 		return err;
551*4882a593Smuzhiyun 
552*4882a593Smuzhiyun 	mutex_lock(&data->update_lock);
553*4882a593Smuzhiyun 	old = via686a_read_value(data, VIA686A_REG_FANDIV);
554*4882a593Smuzhiyun 	data->fan_div[nr] = DIV_TO_REG(val);
555*4882a593Smuzhiyun 	old = (old & 0x0f) | (data->fan_div[1] << 6) | (data->fan_div[0] << 4);
556*4882a593Smuzhiyun 	via686a_write_value(data, VIA686A_REG_FANDIV, old);
557*4882a593Smuzhiyun 	mutex_unlock(&data->update_lock);
558*4882a593Smuzhiyun 	return count;
559*4882a593Smuzhiyun }
560*4882a593Smuzhiyun 
561*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RO(fan1_input, fan, 0);
562*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RW(fan1_min, fan_min, 0);
563*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RW(fan1_div, fan_div, 0);
564*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RO(fan2_input, fan, 1);
565*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RW(fan2_min, fan_min, 1);
566*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RW(fan2_div, fan_div, 1);
567*4882a593Smuzhiyun 
568*4882a593Smuzhiyun /* Alarms */
alarms_show(struct device * dev,struct device_attribute * attr,char * buf)569*4882a593Smuzhiyun static ssize_t alarms_show(struct device *dev, struct device_attribute *attr,
570*4882a593Smuzhiyun 			   char *buf)
571*4882a593Smuzhiyun {
572*4882a593Smuzhiyun 	struct via686a_data *data = via686a_update_device(dev);
573*4882a593Smuzhiyun 	return sprintf(buf, "%u\n", data->alarms);
574*4882a593Smuzhiyun }
575*4882a593Smuzhiyun 
576*4882a593Smuzhiyun static DEVICE_ATTR_RO(alarms);
577*4882a593Smuzhiyun 
alarm_show(struct device * dev,struct device_attribute * attr,char * buf)578*4882a593Smuzhiyun static ssize_t alarm_show(struct device *dev, struct device_attribute *attr,
579*4882a593Smuzhiyun 			  char *buf)
580*4882a593Smuzhiyun {
581*4882a593Smuzhiyun 	int bitnr = to_sensor_dev_attr(attr)->index;
582*4882a593Smuzhiyun 	struct via686a_data *data = via686a_update_device(dev);
583*4882a593Smuzhiyun 	return sprintf(buf, "%u\n", (data->alarms >> bitnr) & 1);
584*4882a593Smuzhiyun }
585*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RO(in0_alarm, alarm, 0);
586*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RO(in1_alarm, alarm, 1);
587*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RO(in2_alarm, alarm, 2);
588*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RO(in3_alarm, alarm, 3);
589*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RO(in4_alarm, alarm, 8);
590*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RO(temp1_alarm, alarm, 4);
591*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RO(temp2_alarm, alarm, 11);
592*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RO(temp3_alarm, alarm, 15);
593*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RO(fan1_alarm, alarm, 6);
594*4882a593Smuzhiyun static SENSOR_DEVICE_ATTR_RO(fan2_alarm, alarm, 7);
595*4882a593Smuzhiyun 
name_show(struct device * dev,struct device_attribute * devattr,char * buf)596*4882a593Smuzhiyun static ssize_t name_show(struct device *dev, struct device_attribute
597*4882a593Smuzhiyun 			 *devattr, char *buf)
598*4882a593Smuzhiyun {
599*4882a593Smuzhiyun 	struct via686a_data *data = dev_get_drvdata(dev);
600*4882a593Smuzhiyun 	return sprintf(buf, "%s\n", data->name);
601*4882a593Smuzhiyun }
602*4882a593Smuzhiyun static DEVICE_ATTR_RO(name);
603*4882a593Smuzhiyun 
604*4882a593Smuzhiyun static struct attribute *via686a_attributes[] = {
605*4882a593Smuzhiyun 	&sensor_dev_attr_in0_input.dev_attr.attr,
606*4882a593Smuzhiyun 	&sensor_dev_attr_in1_input.dev_attr.attr,
607*4882a593Smuzhiyun 	&sensor_dev_attr_in2_input.dev_attr.attr,
608*4882a593Smuzhiyun 	&sensor_dev_attr_in3_input.dev_attr.attr,
609*4882a593Smuzhiyun 	&sensor_dev_attr_in4_input.dev_attr.attr,
610*4882a593Smuzhiyun 	&sensor_dev_attr_in0_min.dev_attr.attr,
611*4882a593Smuzhiyun 	&sensor_dev_attr_in1_min.dev_attr.attr,
612*4882a593Smuzhiyun 	&sensor_dev_attr_in2_min.dev_attr.attr,
613*4882a593Smuzhiyun 	&sensor_dev_attr_in3_min.dev_attr.attr,
614*4882a593Smuzhiyun 	&sensor_dev_attr_in4_min.dev_attr.attr,
615*4882a593Smuzhiyun 	&sensor_dev_attr_in0_max.dev_attr.attr,
616*4882a593Smuzhiyun 	&sensor_dev_attr_in1_max.dev_attr.attr,
617*4882a593Smuzhiyun 	&sensor_dev_attr_in2_max.dev_attr.attr,
618*4882a593Smuzhiyun 	&sensor_dev_attr_in3_max.dev_attr.attr,
619*4882a593Smuzhiyun 	&sensor_dev_attr_in4_max.dev_attr.attr,
620*4882a593Smuzhiyun 	&sensor_dev_attr_in0_alarm.dev_attr.attr,
621*4882a593Smuzhiyun 	&sensor_dev_attr_in1_alarm.dev_attr.attr,
622*4882a593Smuzhiyun 	&sensor_dev_attr_in2_alarm.dev_attr.attr,
623*4882a593Smuzhiyun 	&sensor_dev_attr_in3_alarm.dev_attr.attr,
624*4882a593Smuzhiyun 	&sensor_dev_attr_in4_alarm.dev_attr.attr,
625*4882a593Smuzhiyun 
626*4882a593Smuzhiyun 	&sensor_dev_attr_temp1_input.dev_attr.attr,
627*4882a593Smuzhiyun 	&sensor_dev_attr_temp2_input.dev_attr.attr,
628*4882a593Smuzhiyun 	&sensor_dev_attr_temp3_input.dev_attr.attr,
629*4882a593Smuzhiyun 	&sensor_dev_attr_temp1_max.dev_attr.attr,
630*4882a593Smuzhiyun 	&sensor_dev_attr_temp2_max.dev_attr.attr,
631*4882a593Smuzhiyun 	&sensor_dev_attr_temp3_max.dev_attr.attr,
632*4882a593Smuzhiyun 	&sensor_dev_attr_temp1_max_hyst.dev_attr.attr,
633*4882a593Smuzhiyun 	&sensor_dev_attr_temp2_max_hyst.dev_attr.attr,
634*4882a593Smuzhiyun 	&sensor_dev_attr_temp3_max_hyst.dev_attr.attr,
635*4882a593Smuzhiyun 	&sensor_dev_attr_temp1_alarm.dev_attr.attr,
636*4882a593Smuzhiyun 	&sensor_dev_attr_temp2_alarm.dev_attr.attr,
637*4882a593Smuzhiyun 	&sensor_dev_attr_temp3_alarm.dev_attr.attr,
638*4882a593Smuzhiyun 
639*4882a593Smuzhiyun 	&sensor_dev_attr_fan1_input.dev_attr.attr,
640*4882a593Smuzhiyun 	&sensor_dev_attr_fan2_input.dev_attr.attr,
641*4882a593Smuzhiyun 	&sensor_dev_attr_fan1_min.dev_attr.attr,
642*4882a593Smuzhiyun 	&sensor_dev_attr_fan2_min.dev_attr.attr,
643*4882a593Smuzhiyun 	&sensor_dev_attr_fan1_div.dev_attr.attr,
644*4882a593Smuzhiyun 	&sensor_dev_attr_fan2_div.dev_attr.attr,
645*4882a593Smuzhiyun 	&sensor_dev_attr_fan1_alarm.dev_attr.attr,
646*4882a593Smuzhiyun 	&sensor_dev_attr_fan2_alarm.dev_attr.attr,
647*4882a593Smuzhiyun 
648*4882a593Smuzhiyun 	&dev_attr_alarms.attr,
649*4882a593Smuzhiyun 	&dev_attr_name.attr,
650*4882a593Smuzhiyun 	NULL
651*4882a593Smuzhiyun };
652*4882a593Smuzhiyun 
653*4882a593Smuzhiyun static const struct attribute_group via686a_group = {
654*4882a593Smuzhiyun 	.attrs = via686a_attributes,
655*4882a593Smuzhiyun };
656*4882a593Smuzhiyun 
657*4882a593Smuzhiyun static struct platform_driver via686a_driver = {
658*4882a593Smuzhiyun 	.driver = {
659*4882a593Smuzhiyun 		.name	= "via686a",
660*4882a593Smuzhiyun 	},
661*4882a593Smuzhiyun 	.probe		= via686a_probe,
662*4882a593Smuzhiyun 	.remove		= via686a_remove,
663*4882a593Smuzhiyun };
664*4882a593Smuzhiyun 
665*4882a593Smuzhiyun /* This is called when the module is loaded */
via686a_probe(struct platform_device * pdev)666*4882a593Smuzhiyun static int via686a_probe(struct platform_device *pdev)
667*4882a593Smuzhiyun {
668*4882a593Smuzhiyun 	struct via686a_data *data;
669*4882a593Smuzhiyun 	struct resource *res;
670*4882a593Smuzhiyun 	int err;
671*4882a593Smuzhiyun 
672*4882a593Smuzhiyun 	/* Reserve the ISA region */
673*4882a593Smuzhiyun 	res = platform_get_resource(pdev, IORESOURCE_IO, 0);
674*4882a593Smuzhiyun 	if (!devm_request_region(&pdev->dev, res->start, VIA686A_EXTENT,
675*4882a593Smuzhiyun 				 via686a_driver.driver.name)) {
676*4882a593Smuzhiyun 		dev_err(&pdev->dev, "Region 0x%lx-0x%lx already in use!\n",
677*4882a593Smuzhiyun 			(unsigned long)res->start, (unsigned long)res->end);
678*4882a593Smuzhiyun 		return -ENODEV;
679*4882a593Smuzhiyun 	}
680*4882a593Smuzhiyun 
681*4882a593Smuzhiyun 	data = devm_kzalloc(&pdev->dev, sizeof(struct via686a_data),
682*4882a593Smuzhiyun 			    GFP_KERNEL);
683*4882a593Smuzhiyun 	if (!data)
684*4882a593Smuzhiyun 		return -ENOMEM;
685*4882a593Smuzhiyun 
686*4882a593Smuzhiyun 	platform_set_drvdata(pdev, data);
687*4882a593Smuzhiyun 	data->addr = res->start;
688*4882a593Smuzhiyun 	data->name = "via686a";
689*4882a593Smuzhiyun 	mutex_init(&data->update_lock);
690*4882a593Smuzhiyun 
691*4882a593Smuzhiyun 	/* Initialize the VIA686A chip */
692*4882a593Smuzhiyun 	via686a_init_device(data);
693*4882a593Smuzhiyun 
694*4882a593Smuzhiyun 	/* Register sysfs hooks */
695*4882a593Smuzhiyun 	err = sysfs_create_group(&pdev->dev.kobj, &via686a_group);
696*4882a593Smuzhiyun 	if (err)
697*4882a593Smuzhiyun 		return err;
698*4882a593Smuzhiyun 
699*4882a593Smuzhiyun 	data->hwmon_dev = hwmon_device_register(&pdev->dev);
700*4882a593Smuzhiyun 	if (IS_ERR(data->hwmon_dev)) {
701*4882a593Smuzhiyun 		err = PTR_ERR(data->hwmon_dev);
702*4882a593Smuzhiyun 		goto exit_remove_files;
703*4882a593Smuzhiyun 	}
704*4882a593Smuzhiyun 
705*4882a593Smuzhiyun 	return 0;
706*4882a593Smuzhiyun 
707*4882a593Smuzhiyun exit_remove_files:
708*4882a593Smuzhiyun 	sysfs_remove_group(&pdev->dev.kobj, &via686a_group);
709*4882a593Smuzhiyun 	return err;
710*4882a593Smuzhiyun }
711*4882a593Smuzhiyun 
via686a_remove(struct platform_device * pdev)712*4882a593Smuzhiyun static int via686a_remove(struct platform_device *pdev)
713*4882a593Smuzhiyun {
714*4882a593Smuzhiyun 	struct via686a_data *data = platform_get_drvdata(pdev);
715*4882a593Smuzhiyun 
716*4882a593Smuzhiyun 	hwmon_device_unregister(data->hwmon_dev);
717*4882a593Smuzhiyun 	sysfs_remove_group(&pdev->dev.kobj, &via686a_group);
718*4882a593Smuzhiyun 
719*4882a593Smuzhiyun 	return 0;
720*4882a593Smuzhiyun }
721*4882a593Smuzhiyun 
via686a_update_fan_div(struct via686a_data * data)722*4882a593Smuzhiyun static void via686a_update_fan_div(struct via686a_data *data)
723*4882a593Smuzhiyun {
724*4882a593Smuzhiyun 	int reg = via686a_read_value(data, VIA686A_REG_FANDIV);
725*4882a593Smuzhiyun 	data->fan_div[0] = (reg >> 4) & 0x03;
726*4882a593Smuzhiyun 	data->fan_div[1] = reg >> 6;
727*4882a593Smuzhiyun }
728*4882a593Smuzhiyun 
via686a_init_device(struct via686a_data * data)729*4882a593Smuzhiyun static void via686a_init_device(struct via686a_data *data)
730*4882a593Smuzhiyun {
731*4882a593Smuzhiyun 	u8 reg;
732*4882a593Smuzhiyun 
733*4882a593Smuzhiyun 	/* Start monitoring */
734*4882a593Smuzhiyun 	reg = via686a_read_value(data, VIA686A_REG_CONFIG);
735*4882a593Smuzhiyun 	via686a_write_value(data, VIA686A_REG_CONFIG, (reg | 0x01) & 0x7F);
736*4882a593Smuzhiyun 
737*4882a593Smuzhiyun 	/* Configure temp interrupt mode for continuous-interrupt operation */
738*4882a593Smuzhiyun 	reg = via686a_read_value(data, VIA686A_REG_TEMP_MODE);
739*4882a593Smuzhiyun 	via686a_write_value(data, VIA686A_REG_TEMP_MODE,
740*4882a593Smuzhiyun 			    (reg & ~VIA686A_TEMP_MODE_MASK)
741*4882a593Smuzhiyun 			    | VIA686A_TEMP_MODE_CONTINUOUS);
742*4882a593Smuzhiyun 
743*4882a593Smuzhiyun 	/* Pre-read fan clock divisor values */
744*4882a593Smuzhiyun 	via686a_update_fan_div(data);
745*4882a593Smuzhiyun }
746*4882a593Smuzhiyun 
via686a_update_device(struct device * dev)747*4882a593Smuzhiyun static struct via686a_data *via686a_update_device(struct device *dev)
748*4882a593Smuzhiyun {
749*4882a593Smuzhiyun 	struct via686a_data *data = dev_get_drvdata(dev);
750*4882a593Smuzhiyun 	int i;
751*4882a593Smuzhiyun 
752*4882a593Smuzhiyun 	mutex_lock(&data->update_lock);
753*4882a593Smuzhiyun 
754*4882a593Smuzhiyun 	if (time_after(jiffies, data->last_updated + HZ + HZ / 2)
755*4882a593Smuzhiyun 	    || !data->valid) {
756*4882a593Smuzhiyun 		for (i = 0; i <= 4; i++) {
757*4882a593Smuzhiyun 			data->in[i] =
758*4882a593Smuzhiyun 			    via686a_read_value(data, VIA686A_REG_IN(i));
759*4882a593Smuzhiyun 			data->in_min[i] = via686a_read_value(data,
760*4882a593Smuzhiyun 							     VIA686A_REG_IN_MIN
761*4882a593Smuzhiyun 							     (i));
762*4882a593Smuzhiyun 			data->in_max[i] =
763*4882a593Smuzhiyun 			    via686a_read_value(data, VIA686A_REG_IN_MAX(i));
764*4882a593Smuzhiyun 		}
765*4882a593Smuzhiyun 		for (i = 1; i <= 2; i++) {
766*4882a593Smuzhiyun 			data->fan[i - 1] =
767*4882a593Smuzhiyun 			    via686a_read_value(data, VIA686A_REG_FAN(i));
768*4882a593Smuzhiyun 			data->fan_min[i - 1] = via686a_read_value(data,
769*4882a593Smuzhiyun 						     VIA686A_REG_FAN_MIN(i));
770*4882a593Smuzhiyun 		}
771*4882a593Smuzhiyun 		for (i = 0; i <= 2; i++) {
772*4882a593Smuzhiyun 			data->temp[i] = via686a_read_value(data,
773*4882a593Smuzhiyun 						 VIA686A_REG_TEMP[i]) << 2;
774*4882a593Smuzhiyun 			data->temp_over[i] =
775*4882a593Smuzhiyun 			    via686a_read_value(data,
776*4882a593Smuzhiyun 					       VIA686A_REG_TEMP_OVER[i]);
777*4882a593Smuzhiyun 			data->temp_hyst[i] =
778*4882a593Smuzhiyun 			    via686a_read_value(data,
779*4882a593Smuzhiyun 					       VIA686A_REG_TEMP_HYST[i]);
780*4882a593Smuzhiyun 		}
781*4882a593Smuzhiyun 		/*
782*4882a593Smuzhiyun 		 * add in lower 2 bits
783*4882a593Smuzhiyun 		 * temp1 uses bits 7-6 of VIA686A_REG_TEMP_LOW1
784*4882a593Smuzhiyun 		 * temp2 uses bits 5-4 of VIA686A_REG_TEMP_LOW23
785*4882a593Smuzhiyun 		 * temp3 uses bits 7-6 of VIA686A_REG_TEMP_LOW23
786*4882a593Smuzhiyun 		 */
787*4882a593Smuzhiyun 		data->temp[0] |= (via686a_read_value(data,
788*4882a593Smuzhiyun 						     VIA686A_REG_TEMP_LOW1)
789*4882a593Smuzhiyun 				  & 0xc0) >> 6;
790*4882a593Smuzhiyun 		data->temp[1] |=
791*4882a593Smuzhiyun 		    (via686a_read_value(data, VIA686A_REG_TEMP_LOW23) &
792*4882a593Smuzhiyun 		     0x30) >> 4;
793*4882a593Smuzhiyun 		data->temp[2] |=
794*4882a593Smuzhiyun 		    (via686a_read_value(data, VIA686A_REG_TEMP_LOW23) &
795*4882a593Smuzhiyun 		     0xc0) >> 6;
796*4882a593Smuzhiyun 
797*4882a593Smuzhiyun 		via686a_update_fan_div(data);
798*4882a593Smuzhiyun 		data->alarms =
799*4882a593Smuzhiyun 		    via686a_read_value(data,
800*4882a593Smuzhiyun 				       VIA686A_REG_ALARM1) |
801*4882a593Smuzhiyun 		    (via686a_read_value(data, VIA686A_REG_ALARM2) << 8);
802*4882a593Smuzhiyun 		data->last_updated = jiffies;
803*4882a593Smuzhiyun 		data->valid = 1;
804*4882a593Smuzhiyun 	}
805*4882a593Smuzhiyun 
806*4882a593Smuzhiyun 	mutex_unlock(&data->update_lock);
807*4882a593Smuzhiyun 
808*4882a593Smuzhiyun 	return data;
809*4882a593Smuzhiyun }
810*4882a593Smuzhiyun 
811*4882a593Smuzhiyun static const struct pci_device_id via686a_pci_ids[] = {
812*4882a593Smuzhiyun 	{ PCI_DEVICE(PCI_VENDOR_ID_VIA, PCI_DEVICE_ID_VIA_82C686_4) },
813*4882a593Smuzhiyun 	{ }
814*4882a593Smuzhiyun };
815*4882a593Smuzhiyun MODULE_DEVICE_TABLE(pci, via686a_pci_ids);
816*4882a593Smuzhiyun 
via686a_device_add(unsigned short address)817*4882a593Smuzhiyun static int via686a_device_add(unsigned short address)
818*4882a593Smuzhiyun {
819*4882a593Smuzhiyun 	struct resource res = {
820*4882a593Smuzhiyun 		.start	= address,
821*4882a593Smuzhiyun 		.end	= address + VIA686A_EXTENT - 1,
822*4882a593Smuzhiyun 		.name	= "via686a",
823*4882a593Smuzhiyun 		.flags	= IORESOURCE_IO,
824*4882a593Smuzhiyun 	};
825*4882a593Smuzhiyun 	int err;
826*4882a593Smuzhiyun 
827*4882a593Smuzhiyun 	err = acpi_check_resource_conflict(&res);
828*4882a593Smuzhiyun 	if (err)
829*4882a593Smuzhiyun 		goto exit;
830*4882a593Smuzhiyun 
831*4882a593Smuzhiyun 	pdev = platform_device_alloc("via686a", address);
832*4882a593Smuzhiyun 	if (!pdev) {
833*4882a593Smuzhiyun 		err = -ENOMEM;
834*4882a593Smuzhiyun 		pr_err("Device allocation failed\n");
835*4882a593Smuzhiyun 		goto exit;
836*4882a593Smuzhiyun 	}
837*4882a593Smuzhiyun 
838*4882a593Smuzhiyun 	err = platform_device_add_resources(pdev, &res, 1);
839*4882a593Smuzhiyun 	if (err) {
840*4882a593Smuzhiyun 		pr_err("Device resource addition failed (%d)\n", err);
841*4882a593Smuzhiyun 		goto exit_device_put;
842*4882a593Smuzhiyun 	}
843*4882a593Smuzhiyun 
844*4882a593Smuzhiyun 	err = platform_device_add(pdev);
845*4882a593Smuzhiyun 	if (err) {
846*4882a593Smuzhiyun 		pr_err("Device addition failed (%d)\n", err);
847*4882a593Smuzhiyun 		goto exit_device_put;
848*4882a593Smuzhiyun 	}
849*4882a593Smuzhiyun 
850*4882a593Smuzhiyun 	return 0;
851*4882a593Smuzhiyun 
852*4882a593Smuzhiyun exit_device_put:
853*4882a593Smuzhiyun 	platform_device_put(pdev);
854*4882a593Smuzhiyun exit:
855*4882a593Smuzhiyun 	return err;
856*4882a593Smuzhiyun }
857*4882a593Smuzhiyun 
via686a_pci_probe(struct pci_dev * dev,const struct pci_device_id * id)858*4882a593Smuzhiyun static int via686a_pci_probe(struct pci_dev *dev,
859*4882a593Smuzhiyun 				       const struct pci_device_id *id)
860*4882a593Smuzhiyun {
861*4882a593Smuzhiyun 	u16 address, val;
862*4882a593Smuzhiyun 
863*4882a593Smuzhiyun 	if (force_addr) {
864*4882a593Smuzhiyun 		address = force_addr & ~(VIA686A_EXTENT - 1);
865*4882a593Smuzhiyun 		dev_warn(&dev->dev, "Forcing ISA address 0x%x\n", address);
866*4882a593Smuzhiyun 		if (PCIBIOS_SUCCESSFUL !=
867*4882a593Smuzhiyun 		    pci_write_config_word(dev, VIA686A_BASE_REG, address | 1))
868*4882a593Smuzhiyun 			return -ENODEV;
869*4882a593Smuzhiyun 	}
870*4882a593Smuzhiyun 	if (PCIBIOS_SUCCESSFUL !=
871*4882a593Smuzhiyun 	    pci_read_config_word(dev, VIA686A_BASE_REG, &val))
872*4882a593Smuzhiyun 		return -ENODEV;
873*4882a593Smuzhiyun 
874*4882a593Smuzhiyun 	address = val & ~(VIA686A_EXTENT - 1);
875*4882a593Smuzhiyun 	if (address == 0) {
876*4882a593Smuzhiyun 		dev_err(&dev->dev,
877*4882a593Smuzhiyun 			"base address not set - upgrade BIOS or use force_addr=0xaddr\n");
878*4882a593Smuzhiyun 		return -ENODEV;
879*4882a593Smuzhiyun 	}
880*4882a593Smuzhiyun 
881*4882a593Smuzhiyun 	if (PCIBIOS_SUCCESSFUL !=
882*4882a593Smuzhiyun 	    pci_read_config_word(dev, VIA686A_ENABLE_REG, &val))
883*4882a593Smuzhiyun 		return -ENODEV;
884*4882a593Smuzhiyun 	if (!(val & 0x0001)) {
885*4882a593Smuzhiyun 		if (!force_addr) {
886*4882a593Smuzhiyun 			dev_warn(&dev->dev,
887*4882a593Smuzhiyun 				 "Sensors disabled, enable with force_addr=0x%x\n",
888*4882a593Smuzhiyun 				 address);
889*4882a593Smuzhiyun 			return -ENODEV;
890*4882a593Smuzhiyun 		}
891*4882a593Smuzhiyun 
892*4882a593Smuzhiyun 		dev_warn(&dev->dev, "Enabling sensors\n");
893*4882a593Smuzhiyun 		if (PCIBIOS_SUCCESSFUL !=
894*4882a593Smuzhiyun 		    pci_write_config_word(dev, VIA686A_ENABLE_REG,
895*4882a593Smuzhiyun 					  val | 0x0001))
896*4882a593Smuzhiyun 			return -ENODEV;
897*4882a593Smuzhiyun 	}
898*4882a593Smuzhiyun 
899*4882a593Smuzhiyun 	if (platform_driver_register(&via686a_driver))
900*4882a593Smuzhiyun 		goto exit;
901*4882a593Smuzhiyun 
902*4882a593Smuzhiyun 	/* Sets global pdev as a side effect */
903*4882a593Smuzhiyun 	if (via686a_device_add(address))
904*4882a593Smuzhiyun 		goto exit_unregister;
905*4882a593Smuzhiyun 
906*4882a593Smuzhiyun 	/*
907*4882a593Smuzhiyun 	 * Always return failure here.  This is to allow other drivers to bind
908*4882a593Smuzhiyun 	 * to this pci device.  We don't really want to have control over the
909*4882a593Smuzhiyun 	 * pci device, we only wanted to read as few register values from it.
910*4882a593Smuzhiyun 	 */
911*4882a593Smuzhiyun 	s_bridge = pci_dev_get(dev);
912*4882a593Smuzhiyun 	return -ENODEV;
913*4882a593Smuzhiyun 
914*4882a593Smuzhiyun exit_unregister:
915*4882a593Smuzhiyun 	platform_driver_unregister(&via686a_driver);
916*4882a593Smuzhiyun exit:
917*4882a593Smuzhiyun 	return -ENODEV;
918*4882a593Smuzhiyun }
919*4882a593Smuzhiyun 
920*4882a593Smuzhiyun static struct pci_driver via686a_pci_driver = {
921*4882a593Smuzhiyun 	.name		= "via686a",
922*4882a593Smuzhiyun 	.id_table	= via686a_pci_ids,
923*4882a593Smuzhiyun 	.probe		= via686a_pci_probe,
924*4882a593Smuzhiyun };
925*4882a593Smuzhiyun 
sm_via686a_init(void)926*4882a593Smuzhiyun static int __init sm_via686a_init(void)
927*4882a593Smuzhiyun {
928*4882a593Smuzhiyun 	return pci_register_driver(&via686a_pci_driver);
929*4882a593Smuzhiyun }
930*4882a593Smuzhiyun 
sm_via686a_exit(void)931*4882a593Smuzhiyun static void __exit sm_via686a_exit(void)
932*4882a593Smuzhiyun {
933*4882a593Smuzhiyun 	pci_unregister_driver(&via686a_pci_driver);
934*4882a593Smuzhiyun 	if (s_bridge != NULL) {
935*4882a593Smuzhiyun 		platform_device_unregister(pdev);
936*4882a593Smuzhiyun 		platform_driver_unregister(&via686a_driver);
937*4882a593Smuzhiyun 		pci_dev_put(s_bridge);
938*4882a593Smuzhiyun 		s_bridge = NULL;
939*4882a593Smuzhiyun 	}
940*4882a593Smuzhiyun }
941*4882a593Smuzhiyun 
942*4882a593Smuzhiyun MODULE_AUTHOR("Kyösti Mälkki <kmalkki@cc.hut.fi>, "
943*4882a593Smuzhiyun 	      "Mark Studebaker <mdsxyz123@yahoo.com> "
944*4882a593Smuzhiyun 	      "and Bob Dougherty <bobd@stanford.edu>");
945*4882a593Smuzhiyun MODULE_DESCRIPTION("VIA 686A Sensor device");
946*4882a593Smuzhiyun MODULE_LICENSE("GPL");
947*4882a593Smuzhiyun 
948*4882a593Smuzhiyun module_init(sm_via686a_init);
949*4882a593Smuzhiyun module_exit(sm_via686a_exit);
950