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Rev | Author | Line No. | Line |
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420 | giacomo | 1 | /* |
2 | ------------------------------------------------------------------------- |
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3 | i2c-adap-ite.c i2c-hw access for the IIC peripheral on the ITE MIPS system |
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4 | ------------------------------------------------------------------------- |
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5 | Hai-Pao Fan, MontaVista Software, Inc. |
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6 | hpfan@mvista.com or source@mvista.com |
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7 | |||
8 | Copyright 2001 MontaVista Software Inc. |
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9 | |||
10 | ---------------------------------------------------------------------------- |
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11 | This file was highly leveraged from i2c-elektor.c, which was created |
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12 | by Simon G. Vogl and Hans Berglund: |
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13 | |||
14 | |||
15 | Copyright (C) 1995-97 Simon G. Vogl |
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16 | 1998-99 Hans Berglund |
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17 | |||
18 | This program is free software; you can redistribute it and/or modify |
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19 | it under the terms of the GNU General Public License as published by |
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20 | the Free Software Foundation; either version 2 of the License, or |
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21 | (at your option) any later version. |
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22 | |||
23 | This program is distributed in the hope that it will be useful, |
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24 | but WITHOUT ANY WARRANTY; without even the implied warranty of |
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25 | MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the |
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26 | GNU General Public License for more details. |
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27 | |||
28 | You should have received a copy of the GNU General Public License |
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29 | along with this program; if not, write to the Free Software |
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30 | Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA. */ |
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31 | /* ------------------------------------------------------------------------- */ |
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32 | |||
33 | /* With some changes from Kyösti Mälkki <kmalkki@cc.hut.fi> and even |
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34 | Frodo Looijaard <frodol@dds.nl> */ |
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35 | |||
36 | #include <linux/kernel.h> |
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37 | #include <linux/ioport.h> |
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38 | #include <linux/module.h> |
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39 | #include <linux/delay.h> |
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40 | #include <linux/slab.h> |
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41 | #include <linux/init.h> |
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42 | #include <asm/irq.h> |
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43 | #include <asm/io.h> |
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44 | |||
45 | #include <linux/i2c.h> |
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46 | #include <linux/i2c-algo-ite.h> |
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47 | #include <linux/i2c-adap-ite.h> |
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48 | #include "../i2c-ite.h" |
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49 | |||
50 | #define DEFAULT_BASE 0x14014030 |
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51 | #define ITE_IIC_IO_SIZE 0x40 |
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52 | #define DEFAULT_IRQ 0 |
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53 | #define DEFAULT_CLOCK 0x1b0e /* default 16MHz/(27+14) = 400KHz */ |
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54 | #define DEFAULT_OWN 0x55 |
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55 | |||
56 | static int base = 0; |
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57 | static int irq = 0; |
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58 | static int clock = 0; |
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59 | static int own = 0; |
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60 | |||
61 | static int i2c_debug=0; |
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62 | static struct iic_ite gpi; |
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63 | static wait_queue_head_t iic_wait; |
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64 | static int iic_pending; |
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65 | |||
66 | /* ----- global defines ----------------------------------------------- */ |
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67 | #define DEB(x) if (i2c_debug>=1) x |
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68 | #define DEB2(x) if (i2c_debug>=2) x |
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69 | #define DEB3(x) if (i2c_debug>=3) x |
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70 | #define DEBE(x) x /* error messages */ |
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71 | |||
72 | |||
73 | /* ----- local functions ---------------------------------------------- */ |
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74 | |||
75 | static void iic_ite_setiic(void *data, int ctl, short val) |
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76 | { |
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77 | unsigned long j = jiffies + 10; |
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78 | |||
79 | DEB3(printk(" Write 0x%02x to 0x%x\n",(unsigned short)val, ctl&0xff)); |
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80 | DEB3({while (time_before(jiffies, j)) schedule();}) |
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81 | outw(val,ctl); |
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82 | } |
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83 | |||
84 | static short iic_ite_getiic(void *data, int ctl) |
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85 | { |
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86 | short val; |
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87 | |||
88 | val = inw(ctl); |
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89 | DEB3(printk("Read 0x%02x from 0x%x\n",(unsigned short)val, ctl&0xff)); |
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90 | return (val); |
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91 | } |
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92 | |||
93 | /* Return our slave address. This is the address |
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94 | * put on the I2C bus when another master on the bus wants to address us |
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95 | * as a slave |
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96 | */ |
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97 | static int iic_ite_getown(void *data) |
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98 | { |
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99 | return (gpi.iic_own); |
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100 | } |
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101 | |||
102 | |||
103 | static int iic_ite_getclock(void *data) |
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104 | { |
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105 | return (gpi.iic_clock); |
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106 | } |
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107 | |||
108 | |||
109 | #if 0 |
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110 | static void iic_ite_sleep(unsigned long timeout) |
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111 | { |
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112 | schedule_timeout( timeout * HZ); |
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113 | } |
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114 | #endif |
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115 | |||
116 | |||
117 | /* Put this process to sleep. We will wake up when the |
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118 | * IIC controller interrupts. |
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119 | */ |
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120 | static void iic_ite_waitforpin(void) { |
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121 | |||
122 | int timeout = 2; |
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123 | |||
124 | /* If interrupts are enabled (which they are), then put the process to |
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125 | * sleep. This process will be awakened by two events -- either the |
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126 | * the IIC peripheral interrupts or the timeout expires. |
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127 | * If interrupts are not enabled then delay for a reasonable amount |
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128 | * of time and return. |
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129 | */ |
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130 | if (gpi.iic_irq > 0) { |
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131 | cli(); |
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132 | if (iic_pending == 0) { |
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133 | interruptible_sleep_on_timeout(&iic_wait, timeout*HZ ); |
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134 | } else |
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135 | iic_pending = 0; |
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136 | sti(); |
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137 | } else { |
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138 | udelay(100); |
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139 | } |
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140 | } |
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141 | |||
142 | |||
143 | static void iic_ite_handler(int this_irq, void *dev_id, struct pt_regs *regs) |
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144 | { |
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145 | |||
146 | iic_pending = 1; |
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147 | |||
148 | DEB2(printk("iic_ite_handler: in interrupt handler\n")); |
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149 | wake_up_interruptible(&iic_wait); |
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150 | } |
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151 | |||
152 | |||
153 | /* Lock the region of memory where I/O registers exist. Request our |
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154 | * interrupt line and register its associated handler. |
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155 | */ |
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156 | static int iic_hw_resrc_init(void) |
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157 | { |
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158 | if (!request_region(gpi.iic_base, ITE_IIC_IO_SIZE, "i2c")) |
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159 | return -ENODEV; |
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160 | |||
161 | if (gpi.iic_irq <= 0) |
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162 | return 0; |
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163 | |||
164 | if (request_irq(gpi.iic_irq, iic_ite_handler, 0, "ITE IIC", 0) < 0) |
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165 | gpi.iic_irq = 0; |
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166 | else |
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167 | enable_irq(gpi.iic_irq); |
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168 | |||
169 | return 0; |
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170 | } |
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171 | |||
172 | |||
173 | static void iic_ite_release(void) |
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174 | { |
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175 | if (gpi.iic_irq > 0) { |
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176 | disable_irq(gpi.iic_irq); |
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177 | free_irq(gpi.iic_irq, 0); |
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178 | } |
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179 | release_region(gpi.iic_base , 2); |
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180 | } |
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181 | |||
182 | /* ------------------------------------------------------------------------ |
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183 | * Encapsulate the above functions in the correct operations structure. |
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184 | * This is only done when more than one hardware adapter is supported. |
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185 | */ |
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186 | static struct i2c_algo_iic_data iic_ite_data = { |
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187 | NULL, |
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188 | iic_ite_setiic, |
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189 | iic_ite_getiic, |
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190 | iic_ite_getown, |
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191 | iic_ite_getclock, |
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192 | iic_ite_waitforpin, |
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193 | 80, 80, 100, /* waits, timeout */ |
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194 | }; |
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195 | |||
196 | static struct i2c_adapter iic_ite_ops = { |
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197 | .owner = THIS_MODULE, |
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198 | .id = I2C_HW_I_IIC, |
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199 | .algo_data = &iic_ite_data, |
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200 | .dev = { |
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201 | .name = "ITE IIC adapter", |
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202 | }, |
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203 | }; |
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204 | |||
205 | /* Called when the module is loaded. This function starts the |
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206 | * cascade of calls up through the hierarchy of i2c modules (i.e. up to the |
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207 | * algorithm layer and into to the core layer) |
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208 | */ |
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209 | static int __init iic_ite_init(void) |
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210 | { |
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211 | |||
212 | struct iic_ite *piic = &gpi; |
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213 | |||
214 | printk(KERN_INFO "Initialize ITE IIC adapter module\n"); |
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215 | if (base == 0) |
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216 | piic->iic_base = DEFAULT_BASE; |
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217 | else |
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218 | piic->iic_base = base; |
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219 | |||
220 | if (irq == 0) |
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221 | piic->iic_irq = DEFAULT_IRQ; |
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222 | else |
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223 | piic->iic_irq = irq; |
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224 | |||
225 | if (clock == 0) |
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226 | piic->iic_clock = DEFAULT_CLOCK; |
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227 | else |
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228 | piic->iic_clock = clock; |
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229 | |||
230 | if (own == 0) |
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231 | piic->iic_own = DEFAULT_OWN; |
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232 | else |
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233 | piic->iic_own = own; |
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234 | |||
235 | iic_ite_data.data = (void *)piic; |
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236 | init_waitqueue_head(&iic_wait); |
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237 | if (iic_hw_resrc_init() == 0) { |
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238 | if (i2c_iic_add_bus(&iic_ite_ops) < 0) |
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239 | return -ENODEV; |
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240 | } else { |
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241 | return -ENODEV; |
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242 | } |
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243 | printk(KERN_INFO " found device at %#x irq %d.\n", |
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244 | piic->iic_base, piic->iic_irq); |
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245 | return 0; |
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246 | } |
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247 | |||
248 | |||
249 | static void iic_ite_exit(void) |
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250 | { |
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251 | i2c_iic_del_bus(&iic_ite_ops); |
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252 | iic_ite_release(); |
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253 | } |
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254 | |||
255 | /* If modules is NOT defined when this file is compiled, then the MODULE_* |
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256 | * macros will resolve to nothing |
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257 | */ |
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258 | MODULE_AUTHOR("MontaVista Software <www.mvista.com>"); |
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259 | MODULE_DESCRIPTION("I2C-Bus adapter routines for ITE IIC bus adapter"); |
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260 | MODULE_LICENSE("GPL"); |
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261 | |||
262 | MODULE_PARM(base, "i"); |
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263 | MODULE_PARM(irq, "i"); |
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264 | MODULE_PARM(clock, "i"); |
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265 | MODULE_PARM(own, "i"); |
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266 | MODULE_PARM(i2c_debug,"i"); |
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267 | |||
268 | |||
269 | /* Called when module is loaded or when kernel is initialized. |
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270 | * If MODULES is defined when this file is compiled, then this function will |
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271 | * resolve to init_module (the function called when insmod is invoked for a |
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272 | * module). Otherwise, this function is called early in the boot, when the |
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273 | * kernel is intialized. Check out /include/init.h to see how this works. |
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274 | */ |
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275 | module_init(iic_ite_init); |
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276 | |||
277 | /* Resolves to module_cleanup when MODULES is defined. */ |
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278 | module_exit(iic_ite_exit); |