347 lines
7.4 KiB
C
347 lines
7.4 KiB
C
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#include "global.h"
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#include "rtc.h"
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#include "string_util.h"
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#include "text.h"
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// iwram bss
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static u16 sErrorStatus;
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static struct SiiRtcInfo sRtc;
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static u8 sProbeResult;
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static u16 sSavedIme;
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// iwram common
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struct Time gLocalTime;
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// const rom
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static const struct SiiRtcInfo sRtcDummy = {0, MONTH_JAN, 1}; // 2000 Jan 1
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static const s32 sNumDaysInMonths[12] =
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{
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31,
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28,
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31,
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30,
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31,
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30,
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31,
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31,
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30,
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31,
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30,
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31,
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};
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void RtcDisableInterrupts(void)
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{
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sSavedIme = REG_IME;
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REG_IME = 0;
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}
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void RtcRestoreInterrupts(void)
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{
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REG_IME = sSavedIme;
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}
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u32 ConvertBcdToBinary(u8 bcd)
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{
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if (bcd > 0x9F)
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return 0xFF;
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if ((bcd & 0xF) <= 9)
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return (10 * ((bcd >> 4) & 0xF)) + (bcd & 0xF);
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else
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return 0xFF;
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}
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bool8 IsLeapYear(u32 year)
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{
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if ((year % 4 == 0 && year % 100 != 0) || (year % 400 == 0))
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return TRUE;
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return FALSE;
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}
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u16 ConvertDateToDayCount(u8 year, u8 month, u8 day)
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{
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s32 i;
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u16 dayCount = 0;
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for (i = year - 1; i >= 0; i--)
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{
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dayCount += 365;
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if (IsLeapYear(i) == TRUE)
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dayCount++;
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}
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for (i = 0; i < month - 1; i++)
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dayCount += sNumDaysInMonths[i];
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if (month > MONTH_FEB && IsLeapYear(year) == TRUE)
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dayCount++;
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dayCount += day;
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return dayCount;
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}
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u16 RtcGetDayCount(struct SiiRtcInfo *rtc)
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{
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u8 year = ConvertBcdToBinary(rtc->year);
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u8 month = ConvertBcdToBinary(rtc->month);
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u8 day = ConvertBcdToBinary(rtc->day);
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return ConvertDateToDayCount(year, month, day);
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}
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void RtcInit(void)
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{
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sErrorStatus = 0;
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RtcDisableInterrupts();
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SiiRtcUnprotect();
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sProbeResult = SiiRtcProbe();
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RtcRestoreInterrupts();
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if ((sProbeResult & 0xF) != 1)
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{
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sErrorStatus = RTC_INIT_ERROR;
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return;
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}
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if (sProbeResult & 0xF0)
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sErrorStatus = RTC_INIT_WARNING;
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else
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sErrorStatus = 0;
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RtcGetRawInfo(&sRtc);
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sErrorStatus = RtcCheckInfo(&sRtc);
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}
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u16 RtcGetErrorStatus(void)
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{
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return sErrorStatus;
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}
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void RtcGetInfo(struct SiiRtcInfo *rtc)
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{
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if (sErrorStatus & RTC_ERR_FLAG_MASK)
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*rtc = sRtcDummy;
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else
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RtcGetRawInfo(rtc);
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}
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void RtcGetDateTime(struct SiiRtcInfo *rtc)
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{
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RtcDisableInterrupts();
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SiiRtcGetDateTime(rtc);
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RtcRestoreInterrupts();
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}
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void RtcGetStatus(struct SiiRtcInfo *rtc)
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{
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RtcDisableInterrupts();
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SiiRtcGetStatus(rtc);
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RtcRestoreInterrupts();
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}
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void RtcGetRawInfo(struct SiiRtcInfo *rtc)
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{
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RtcGetStatus(rtc);
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RtcGetDateTime(rtc);
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}
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u16 RtcCheckInfo(struct SiiRtcInfo *rtc)
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{
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u16 errorFlags = 0;
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s32 year;
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s32 month;
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s32 value;
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if (rtc->status & SIIRTCINFO_POWER)
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errorFlags |= RTC_ERR_POWER_FAILURE;
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if (!(rtc->status & SIIRTCINFO_24HOUR))
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errorFlags |= RTC_ERR_12HOUR_CLOCK;
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year = ConvertBcdToBinary(rtc->year);
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if (year == 0xFF)
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errorFlags |= RTC_ERR_INVALID_YEAR;
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month = ConvertBcdToBinary(rtc->month);
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if (month == 0xFF || month == 0 || month > 12)
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errorFlags |= RTC_ERR_INVALID_MONTH;
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value = ConvertBcdToBinary(rtc->day);
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if (value == 0xFF)
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errorFlags |= RTC_ERR_INVALID_DAY;
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if (month == MONTH_FEB)
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{
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if (value > IsLeapYear(year) + sNumDaysInMonths[month - 1])
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errorFlags |= RTC_ERR_INVALID_DAY;
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}
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else
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{
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if (value > sNumDaysInMonths[month - 1])
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errorFlags |= RTC_ERR_INVALID_DAY;
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}
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value = ConvertBcdToBinary(rtc->hour);
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if (value > 24)
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errorFlags |= RTC_ERR_INVALID_HOUR;
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value = ConvertBcdToBinary(rtc->minute);
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if (value > 60)
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errorFlags |= RTC_ERR_INVALID_MINUTE;
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value = ConvertBcdToBinary(rtc->second);
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if (value > 60)
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errorFlags |= RTC_ERR_INVALID_SECOND;
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return errorFlags;
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}
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void RtcReset(void)
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{
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RtcDisableInterrupts();
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SiiRtcReset();
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RtcRestoreInterrupts();
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}
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void FormatDecimalTime(u8 *dest, s32 hour, s32 minute, s32 second)
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{
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dest = ConvertIntToDecimalStringN(dest, hour, STR_CONV_MODE_LEADING_ZEROS, 2);
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*dest++ = CHAR_COLON;
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dest = ConvertIntToDecimalStringN(dest, minute, STR_CONV_MODE_LEADING_ZEROS, 2);
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*dest++ = CHAR_COLON;
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dest = ConvertIntToDecimalStringN(dest, second, STR_CONV_MODE_LEADING_ZEROS, 2);
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*dest = EOS;
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}
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void FormatHexTime(u8 *dest, s32 hour, s32 minute, s32 second)
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{
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dest = ConvertIntToHexStringN(dest, hour, STR_CONV_MODE_LEADING_ZEROS, 2);
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*dest++ = CHAR_COLON;
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dest = ConvertIntToHexStringN(dest, minute, STR_CONV_MODE_LEADING_ZEROS, 2);
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*dest++ = CHAR_COLON;
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dest = ConvertIntToHexStringN(dest, second, STR_CONV_MODE_LEADING_ZEROS, 2);
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*dest = EOS;
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}
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void FormatHexRtcTime(u8 *dest)
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{
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FormatHexTime(dest, sRtc.hour, sRtc.minute, sRtc.second);
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}
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void FormatDecimalDate(u8 *dest, s32 year, s32 month, s32 day)
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{
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dest = ConvertIntToDecimalStringN(dest, year, STR_CONV_MODE_LEADING_ZEROS, 4);
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*dest++ = CHAR_HYPHEN;
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dest = ConvertIntToDecimalStringN(dest, month, STR_CONV_MODE_LEADING_ZEROS, 2);
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*dest++ = CHAR_HYPHEN;
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dest = ConvertIntToDecimalStringN(dest, day, STR_CONV_MODE_LEADING_ZEROS, 2);
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*dest = EOS;
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}
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void FormatHexDate(u8 *dest, s32 year, s32 month, s32 day)
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{
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dest = ConvertIntToHexStringN(dest, year, STR_CONV_MODE_LEADING_ZEROS, 4);
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*dest++ = CHAR_HYPHEN;
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dest = ConvertIntToHexStringN(dest, month, STR_CONV_MODE_LEADING_ZEROS, 2);
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*dest++ = CHAR_HYPHEN;
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dest = ConvertIntToHexStringN(dest, day, STR_CONV_MODE_LEADING_ZEROS, 2);
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*dest = EOS;
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}
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void RtcCalcTimeDifference(struct SiiRtcInfo *rtc, struct Time *result, struct Time *t)
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{
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u16 days = RtcGetDayCount(rtc);
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result->seconds = ConvertBcdToBinary(rtc->second) - t->seconds;
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result->minutes = ConvertBcdToBinary(rtc->minute) - t->minutes;
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result->hours = ConvertBcdToBinary(rtc->hour) - t->hours;
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result->days = days - t->days;
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if (result->seconds < 0)
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{
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result->seconds += 60;
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--result->minutes;
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}
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if (result->minutes < 0)
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{
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result->minutes += 60;
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--result->hours;
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}
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if (result->hours < 0)
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{
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result->hours += 24;
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--result->days;
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}
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}
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void RtcCalcLocalTime(void)
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{
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RtcGetInfo(&sRtc);
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RtcCalcTimeDifference(&sRtc, &gLocalTime, &gSaveBlock2Ptr->localTimeOffset);
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}
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void RtcInitLocalTimeOffset(s32 hour, s32 minute)
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{
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RtcCalcLocalTimeOffset(0, hour, minute, 0);
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}
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void RtcCalcLocalTimeOffset(s32 days, s32 hours, s32 minutes, s32 seconds)
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{
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gLocalTime.days = days;
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gLocalTime.hours = hours;
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gLocalTime.minutes = minutes;
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gLocalTime.seconds = seconds;
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RtcGetInfo(&sRtc);
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RtcCalcTimeDifference(&sRtc, &gSaveBlock2Ptr->localTimeOffset, &gLocalTime);
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}
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void CalcTimeDifference(struct Time *result, struct Time *t1, struct Time *t2)
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{
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result->seconds = t2->seconds - t1->seconds;
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result->minutes = t2->minutes - t1->minutes;
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result->hours = t2->hours - t1->hours;
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result->days = t2->days - t1->days;
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if (result->seconds < 0)
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{
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result->seconds += 60;
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--result->minutes;
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}
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if (result->minutes < 0)
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{
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result->minutes += 60;
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--result->hours;
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}
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if (result->hours < 0)
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{
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result->hours += 24;
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--result->days;
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}
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}
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u32 RtcGetMinuteCount(void)
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{
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RtcGetInfo(&sRtc);
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return (24 * 60) * RtcGetDayCount(&sRtc) + 60 * sRtc.hour + sRtc.minute;
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}
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u32 RtcGetLocalDayCount(void)
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{
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return RtcGetDayCount(&sRtc);
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}
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