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Rev | Author | Line No. | Line |
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422 | giacomo | 1 | /* |
2 | * inclue/asm-generic/rtc.h |
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3 | * |
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4 | * Author: Tom Rini <trini@mvista.com> |
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5 | * |
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6 | * Based on: |
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7 | * drivers/char/rtc.c |
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8 | * |
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9 | * Please read the COPYING file for all license details. |
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10 | */ |
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11 | |||
12 | #ifndef __ASM_RTC_H__ |
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13 | #define __ASM_RTC_H__ |
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14 | |||
15 | #ifdef __KERNEL__ |
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16 | |||
17 | #include <linux/mc146818rtc.h> |
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18 | #include <linux/rtc.h> |
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19 | #include <linux/bcd.h> |
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20 | |||
21 | #define RTC_PIE 0x40 /* periodic interrupt enable */ |
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22 | #define RTC_AIE 0x20 /* alarm interrupt enable */ |
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23 | #define RTC_UIE 0x10 /* update-finished interrupt enable */ |
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24 | |||
25 | /* some dummy definitions */ |
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26 | #define RTC_BATT_BAD 0x100 /* battery bad */ |
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27 | #define RTC_SQWE 0x08 /* enable square-wave output */ |
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28 | #define RTC_DM_BINARY 0x04 /* all time/date values are BCD if clear */ |
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29 | #define RTC_24H 0x02 /* 24 hour mode - else hours bit 7 means pm */ |
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30 | #define RTC_DST_EN 0x01 /* auto switch DST - works f. USA only */ |
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31 | |||
32 | /* |
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33 | * Returns true if a clock update is in progress |
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34 | */ |
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35 | static inline unsigned char rtc_is_updating(void) |
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36 | { |
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37 | unsigned char uip; |
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38 | |||
39 | spin_lock_irq(&rtc_lock); |
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40 | uip = (CMOS_READ(RTC_FREQ_SELECT) & RTC_UIP); |
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41 | spin_unlock_irq(&rtc_lock); |
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42 | return uip; |
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43 | } |
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44 | |||
45 | static inline unsigned int get_rtc_time(struct rtc_time *time) |
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46 | { |
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47 | unsigned long uip_watchdog = jiffies; |
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48 | unsigned char ctrl; |
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49 | #ifdef CONFIG_DECSTATION |
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50 | unsigned int real_year; |
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51 | #endif |
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52 | |||
53 | /* |
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54 | * read RTC once any update in progress is done. The update |
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55 | * can take just over 2ms. We wait 10 to 20ms. There is no need to |
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56 | * to poll-wait (up to 1s - eeccch) for the falling edge of RTC_UIP. |
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57 | * If you need to know *exactly* when a second has started, enable |
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58 | * periodic update complete interrupts, (via ioctl) and then |
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59 | * immediately read /dev/rtc which will block until you get the IRQ. |
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60 | * Once the read clears, read the RTC time (again via ioctl). Easy. |
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61 | */ |
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62 | |||
63 | if (rtc_is_updating() != 0) |
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64 | while (jiffies - uip_watchdog < 2*HZ/100) { |
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65 | barrier(); |
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66 | cpu_relax(); |
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67 | } |
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68 | |||
69 | /* |
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70 | * Only the values that we read from the RTC are set. We leave |
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71 | * tm_wday, tm_yday and tm_isdst untouched. Even though the |
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72 | * RTC has RTC_DAY_OF_WEEK, we ignore it, as it is only updated |
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73 | * by the RTC when initially set to a non-zero value. |
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74 | */ |
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75 | spin_lock_irq(&rtc_lock); |
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76 | time->tm_sec = CMOS_READ(RTC_SECONDS); |
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77 | time->tm_min = CMOS_READ(RTC_MINUTES); |
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78 | time->tm_hour = CMOS_READ(RTC_HOURS); |
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79 | time->tm_mday = CMOS_READ(RTC_DAY_OF_MONTH); |
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80 | time->tm_mon = CMOS_READ(RTC_MONTH); |
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81 | time->tm_year = CMOS_READ(RTC_YEAR); |
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82 | #ifdef CONFIG_DECSTATION |
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83 | real_year = CMOS_READ(RTC_DEC_YEAR); |
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84 | #endif |
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85 | ctrl = CMOS_READ(RTC_CONTROL); |
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86 | spin_unlock_irq(&rtc_lock); |
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87 | |||
88 | if (!(ctrl & RTC_DM_BINARY) || RTC_ALWAYS_BCD) |
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89 | { |
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90 | BCD_TO_BIN(time->tm_sec); |
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91 | BCD_TO_BIN(time->tm_min); |
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92 | BCD_TO_BIN(time->tm_hour); |
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93 | BCD_TO_BIN(time->tm_mday); |
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94 | BCD_TO_BIN(time->tm_mon); |
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95 | BCD_TO_BIN(time->tm_year); |
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96 | } |
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97 | |||
98 | #ifdef CONFIG_DECSTATION |
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99 | time->tm_year += real_year - 72; |
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100 | #endif |
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101 | |||
102 | /* |
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103 | * Account for differences between how the RTC uses the values |
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104 | * and how they are defined in a struct rtc_time; |
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105 | */ |
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106 | if (time->tm_year <= 69) |
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107 | time->tm_year += 100; |
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108 | |||
109 | time->tm_mon--; |
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110 | |||
111 | return RTC_24H; |
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112 | } |
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113 | |||
114 | /* Set the current date and time in the real time clock. */ |
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115 | static inline int set_rtc_time(struct rtc_time *time) |
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116 | { |
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117 | unsigned char mon, day, hrs, min, sec; |
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118 | unsigned char save_control, save_freq_select; |
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119 | unsigned int yrs; |
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120 | #ifdef CONFIG_DECSTATION |
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121 | unsigned int real_yrs, leap_yr; |
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122 | #endif |
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123 | |||
124 | yrs = time->tm_year; |
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125 | mon = time->tm_mon + 1; /* tm_mon starts at zero */ |
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126 | day = time->tm_mday; |
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127 | hrs = time->tm_hour; |
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128 | min = time->tm_min; |
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129 | sec = time->tm_sec; |
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130 | |||
131 | if (yrs > 255) /* They are unsigned */ |
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132 | return -EINVAL; |
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133 | |||
134 | spin_lock_irq(&rtc_lock); |
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135 | #ifdef CONFIG_DECSTATION |
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136 | real_yrs = yrs; |
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137 | leap_yr = ((!((yrs + 1900) % 4) && ((yrs + 1900) % 100)) || |
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138 | !((yrs + 1900) % 400)); |
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139 | yrs = 72; |
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140 | |||
141 | /* |
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142 | * We want to keep the year set to 73 until March |
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143 | * for non-leap years, so that Feb, 29th is handled |
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144 | * correctly. |
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145 | */ |
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146 | if (!leap_yr && mon < 3) { |
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147 | real_yrs--; |
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148 | yrs = 73; |
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149 | } |
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150 | #endif |
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151 | /* These limits and adjustments are independent of |
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152 | * whether the chip is in binary mode or not. |
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153 | */ |
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154 | if (yrs > 169) { |
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155 | spin_unlock_irq(&rtc_lock); |
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156 | return -EINVAL; |
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157 | } |
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158 | |||
159 | if (yrs >= 100) |
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160 | yrs -= 100; |
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161 | |||
162 | if (!(CMOS_READ(RTC_CONTROL) & RTC_DM_BINARY) |
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163 | || RTC_ALWAYS_BCD) { |
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164 | BIN_TO_BCD(sec); |
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165 | BIN_TO_BCD(min); |
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166 | BIN_TO_BCD(hrs); |
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167 | BIN_TO_BCD(day); |
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168 | BIN_TO_BCD(mon); |
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169 | BIN_TO_BCD(yrs); |
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170 | } |
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171 | |||
172 | save_control = CMOS_READ(RTC_CONTROL); |
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173 | CMOS_WRITE((save_control|RTC_SET), RTC_CONTROL); |
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174 | save_freq_select = CMOS_READ(RTC_FREQ_SELECT); |
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175 | CMOS_WRITE((save_freq_select|RTC_DIV_RESET2), RTC_FREQ_SELECT); |
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176 | |||
177 | #ifdef CONFIG_DECSTATION |
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178 | CMOS_WRITE(real_yrs, RTC_DEC_YEAR); |
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179 | #endif |
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180 | CMOS_WRITE(yrs, RTC_YEAR); |
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181 | CMOS_WRITE(mon, RTC_MONTH); |
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182 | CMOS_WRITE(day, RTC_DAY_OF_MONTH); |
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183 | CMOS_WRITE(hrs, RTC_HOURS); |
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184 | CMOS_WRITE(min, RTC_MINUTES); |
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185 | CMOS_WRITE(sec, RTC_SECONDS); |
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186 | |||
187 | CMOS_WRITE(save_control, RTC_CONTROL); |
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188 | CMOS_WRITE(save_freq_select, RTC_FREQ_SELECT); |
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189 | |||
190 | spin_unlock_irq(&rtc_lock); |
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191 | |||
192 | return 0; |
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193 | } |
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194 | |||
195 | static inline unsigned int get_rtc_ss(void) |
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196 | { |
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197 | struct rtc_time h; |
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198 | |||
199 | get_rtc_time(&h); |
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200 | return h.tm_sec; |
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201 | } |
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202 | |||
203 | static inline int get_rtc_pll(struct rtc_pll_info *pll) |
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204 | { |
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205 | return -EINVAL; |
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206 | } |
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207 | static inline int set_rtc_pll(struct rtc_pll_info *pll) |
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208 | { |
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209 | return -EINVAL; |
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210 | } |
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211 | |||
212 | #endif /* __KERNEL__ */ |
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213 | #endif /* __ASM_RTC_H__ */ |