Merge branch 'sh/iomap'
[GitHub/mt8127/android_kernel_alcatel_ttab.git] / drivers / hwmon / lis3lv02d.h
1 /*
2 * lis3lv02d.h - ST LIS3LV02DL accelerometer driver
3 *
4 * Copyright (C) 2007-2008 Yan Burman
5 * Copyright (C) 2008-2009 Eric Piel
6 *
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License as published by
9 * the Free Software Foundation; either version 2 of the License, or
10 * (at your option) any later version.
11 *
12 * This program is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 * GNU General Public License for more details.
16 *
17 * You should have received a copy of the GNU General Public License
18 * along with this program; if not, write to the Free Software
19 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
20 */
21 #include <linux/platform_device.h>
22 #include <linux/input-polldev.h>
23
24 /*
25 * This driver tries to support the "digital" accelerometer chips from
26 * STMicroelectronics such as LIS3LV02DL, LIS302DL, LIS3L02DQ, LIS331DL,
27 * LIS35DE, or LIS202DL. They are very similar in terms of programming, with
28 * almost the same registers. In addition to differing on physical properties,
29 * they differ on the number of axes (2/3), precision (8/12 bits), and special
30 * features (freefall detection, click...). Unfortunately, not all the
31 * differences can be probed via a register.
32 * They can be connected either via I²C or SPI.
33 */
34
35 #include <linux/lis3lv02d.h>
36
37 enum lis3_reg {
38 WHO_AM_I = 0x0F,
39 OFFSET_X = 0x16,
40 OFFSET_Y = 0x17,
41 OFFSET_Z = 0x18,
42 GAIN_X = 0x19,
43 GAIN_Y = 0x1A,
44 GAIN_Z = 0x1B,
45 CTRL_REG1 = 0x20,
46 CTRL_REG2 = 0x21,
47 CTRL_REG3 = 0x22,
48 HP_FILTER_RESET = 0x23,
49 STATUS_REG = 0x27,
50 OUTX_L = 0x28,
51 OUTX_H = 0x29,
52 OUTX = 0x29,
53 OUTY_L = 0x2A,
54 OUTY_H = 0x2B,
55 OUTY = 0x2B,
56 OUTZ_L = 0x2C,
57 OUTZ_H = 0x2D,
58 OUTZ = 0x2D,
59 };
60
61 enum lis302d_reg {
62 FF_WU_CFG_1 = 0x30,
63 FF_WU_SRC_1 = 0x31,
64 FF_WU_THS_1 = 0x32,
65 FF_WU_DURATION_1 = 0x33,
66 FF_WU_CFG_2 = 0x34,
67 FF_WU_SRC_2 = 0x35,
68 FF_WU_THS_2 = 0x36,
69 FF_WU_DURATION_2 = 0x37,
70 CLICK_CFG = 0x38,
71 CLICK_SRC = 0x39,
72 CLICK_THSY_X = 0x3B,
73 CLICK_THSZ = 0x3C,
74 CLICK_TIMELIMIT = 0x3D,
75 CLICK_LATENCY = 0x3E,
76 CLICK_WINDOW = 0x3F,
77 };
78
79 enum lis3lv02d_reg {
80 FF_WU_CFG = 0x30,
81 FF_WU_SRC = 0x31,
82 FF_WU_ACK = 0x32,
83 FF_WU_THS_L = 0x34,
84 FF_WU_THS_H = 0x35,
85 FF_WU_DURATION = 0x36,
86 DD_CFG = 0x38,
87 DD_SRC = 0x39,
88 DD_ACK = 0x3A,
89 DD_THSI_L = 0x3C,
90 DD_THSI_H = 0x3D,
91 DD_THSE_L = 0x3E,
92 DD_THSE_H = 0x3F,
93 };
94
95 enum lis3_who_am_i {
96 WAI_12B = 0x3A, /* 12 bits: LIS3LV02D[LQ]... */
97 WAI_8B = 0x3B, /* 8 bits: LIS[23]02D[LQ]... */
98 WAI_6B = 0x52, /* 6 bits: LIS331DLF - not supported */
99 };
100
101 enum lis3lv02d_ctrl1_12b {
102 CTRL1_Xen = 0x01,
103 CTRL1_Yen = 0x02,
104 CTRL1_Zen = 0x04,
105 CTRL1_ST = 0x08,
106 CTRL1_DF0 = 0x10,
107 CTRL1_DF1 = 0x20,
108 CTRL1_PD0 = 0x40,
109 CTRL1_PD1 = 0x80,
110 };
111
112 /* Delta to ctrl1_12b version */
113 enum lis3lv02d_ctrl1_8b {
114 CTRL1_STM = 0x08,
115 CTRL1_STP = 0x10,
116 CTRL1_FS = 0x20,
117 CTRL1_PD = 0x40,
118 CTRL1_DR = 0x80,
119 };
120
121 enum lis3lv02d_ctrl2 {
122 CTRL2_DAS = 0x01,
123 CTRL2_SIM = 0x02,
124 CTRL2_DRDY = 0x04,
125 CTRL2_IEN = 0x08,
126 CTRL2_BOOT = 0x10,
127 CTRL2_BLE = 0x20,
128 CTRL2_BDU = 0x40, /* Block Data Update */
129 CTRL2_FS = 0x80, /* Full Scale selection */
130 };
131
132 enum lis302d_ctrl2 {
133 HP_FF_WU2 = 0x08,
134 HP_FF_WU1 = 0x04,
135 };
136
137 enum lis3lv02d_ctrl3 {
138 CTRL3_CFS0 = 0x01,
139 CTRL3_CFS1 = 0x02,
140 CTRL3_FDS = 0x10,
141 CTRL3_HPFF = 0x20,
142 CTRL3_HPDD = 0x40,
143 CTRL3_ECK = 0x80,
144 };
145
146 enum lis3lv02d_status_reg {
147 STATUS_XDA = 0x01,
148 STATUS_YDA = 0x02,
149 STATUS_ZDA = 0x04,
150 STATUS_XYZDA = 0x08,
151 STATUS_XOR = 0x10,
152 STATUS_YOR = 0x20,
153 STATUS_ZOR = 0x40,
154 STATUS_XYZOR = 0x80,
155 };
156
157 enum lis3lv02d_ff_wu_cfg {
158 FF_WU_CFG_XLIE = 0x01,
159 FF_WU_CFG_XHIE = 0x02,
160 FF_WU_CFG_YLIE = 0x04,
161 FF_WU_CFG_YHIE = 0x08,
162 FF_WU_CFG_ZLIE = 0x10,
163 FF_WU_CFG_ZHIE = 0x20,
164 FF_WU_CFG_LIR = 0x40,
165 FF_WU_CFG_AOI = 0x80,
166 };
167
168 enum lis3lv02d_ff_wu_src {
169 FF_WU_SRC_XL = 0x01,
170 FF_WU_SRC_XH = 0x02,
171 FF_WU_SRC_YL = 0x04,
172 FF_WU_SRC_YH = 0x08,
173 FF_WU_SRC_ZL = 0x10,
174 FF_WU_SRC_ZH = 0x20,
175 FF_WU_SRC_IA = 0x40,
176 };
177
178 enum lis3lv02d_dd_cfg {
179 DD_CFG_XLIE = 0x01,
180 DD_CFG_XHIE = 0x02,
181 DD_CFG_YLIE = 0x04,
182 DD_CFG_YHIE = 0x08,
183 DD_CFG_ZLIE = 0x10,
184 DD_CFG_ZHIE = 0x20,
185 DD_CFG_LIR = 0x40,
186 DD_CFG_IEND = 0x80,
187 };
188
189 enum lis3lv02d_dd_src {
190 DD_SRC_XL = 0x01,
191 DD_SRC_XH = 0x02,
192 DD_SRC_YL = 0x04,
193 DD_SRC_YH = 0x08,
194 DD_SRC_ZL = 0x10,
195 DD_SRC_ZH = 0x20,
196 DD_SRC_IA = 0x40,
197 };
198
199 enum lis3lv02d_click_src_8b {
200 CLICK_SINGLE_X = 0x01,
201 CLICK_DOUBLE_X = 0x02,
202 CLICK_SINGLE_Y = 0x04,
203 CLICK_DOUBLE_Y = 0x08,
204 CLICK_SINGLE_Z = 0x10,
205 CLICK_DOUBLE_Z = 0x20,
206 CLICK_IA = 0x40,
207 };
208
209 struct axis_conversion {
210 s8 x;
211 s8 y;
212 s8 z;
213 };
214
215 struct lis3lv02d {
216 void *bus_priv; /* used by the bus layer only */
217 int (*init) (struct lis3lv02d *lis3);
218 int (*write) (struct lis3lv02d *lis3, int reg, u8 val);
219 int (*read) (struct lis3lv02d *lis3, int reg, u8 *ret);
220
221 int *odrs; /* Supported output data rates */
222 u8 odr_mask; /* ODR bit mask */
223 u8 whoami; /* indicates measurement precision */
224 s16 (*read_data) (struct lis3lv02d *lis3, int reg);
225 int mdps_max_val;
226 int pwron_delay;
227 int scale; /*
228 * relationship between 1 LBS and mG
229 * (1/1000th of earth gravity)
230 */
231
232 struct input_polled_dev *idev; /* input device */
233 struct platform_device *pdev; /* platform device */
234 atomic_t count; /* interrupt count after last read */
235 struct axis_conversion ac; /* hw -> logical axis */
236 int mapped_btns[3];
237
238 u32 irq; /* IRQ number */
239 struct fasync_struct *async_queue; /* queue for the misc device */
240 wait_queue_head_t misc_wait; /* Wait queue for the misc device */
241 unsigned long misc_opened; /* bit0: whether the device is open */
242
243 struct lis3lv02d_platform_data *pdata; /* for passing board config */
244 struct mutex mutex; /* Serialize poll and selftest */
245 };
246
247 int lis3lv02d_init_device(struct lis3lv02d *lis3);
248 int lis3lv02d_joystick_enable(void);
249 void lis3lv02d_joystick_disable(void);
250 void lis3lv02d_poweroff(struct lis3lv02d *lis3);
251 void lis3lv02d_poweron(struct lis3lv02d *lis3);
252 int lis3lv02d_remove_fs(struct lis3lv02d *lis3);
253
254 extern struct lis3lv02d lis3_dev;