annotate src/adc_lightsensor.asm @ 124:40ff64d60054

cleanup
author heinrichsweikamp
date Sun, 29 Jun 2014 13:53:46 +0200
parents e2f04bb2539c
children 9a637c9bb19a
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1 ;=============================================================================
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2 ;
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3 ; File adc.asm
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4 ;
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5 ;
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6 ; Copyright (c) 2011, JD Gascuel, HeinrichsWeikamp, all right reserved.
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7 ;=============================================================================
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8 ; HISTORY
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9 ; 2011-08-08 : [mH] moving from OSTC code
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10
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11 #include "ostc3.inc"
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12 #include "math.inc"
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13 #include "wait.inc"
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14 #include "eeprom_rs232.inc"
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15 #include "i2c.inc"
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16
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17 sensors CODE
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18
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19 wait_adc:
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20 movwf ADCON0
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21 nop
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22 bsf ADCON0,1 ; start ADC
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23 wait_adc2:
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24 btfsc ADCON0,1 ; Wait...
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25 bra wait_adc2
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26 return
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27
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28 global get_battery_voltage
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29 get_battery_voltage: ; starts ADC and waits until fnished
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30 btfss c3_hardware
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31 bra get_battery_voltage1 ; Normal ostc3 hardware
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32
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33 call lt2942_get_accumulated_charge
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34 call lt2942_get_voltage
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35 bcf LEDr
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36 bcf TRISJ,2 ; Chrg-Out output
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37 bsf CHRG_OUT
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38
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39 btfss CHRG_IN
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40 bra cc_active
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41
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42 bcf CHRG_OUT
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43 bsf TRISJ,2 ; Chrg-Out high impedance
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44
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45 WAITMS d'1'
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46
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47 btfsc CHRG_IN
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48 return
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49 ;cv_active:
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50 bsf LEDr ; Indicate charging
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51 call lt2942_charge_done ; Reset accumulating registers to 0xFFFF
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52 WAITMS d'10'
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53 bcf LEDr ; Indicate charging
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54 return
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55
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56 cc_active:
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57 bsf LEDr ; Indicate charging
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58 bcf CHRG_OUT
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59 bsf TRISJ,2 ; Chrg-Out high impedance
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60 return
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61
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62 get_battery_voltage1:
0
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63 bsf adc_running ; =1: The ADC is in use
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64 movlw b'00100000' ; 2.048V Vref+ -> 1LSB = 500µV
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65 movwf ADCON1
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66 movlw b'00011001' ; power on ADC, select AN6
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67 rcall wait_adc
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68
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69 movff ADRESH,batt_voltage+1 ; store value
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70 movff ADRESL,batt_voltage+0 ; store value
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71 bcf ADCON0,0 ; power off ADC
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72
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73 ; Multiply with 2,006 to be excact here...
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74 ; bcf STATUS,C
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75 ; rlcf xA+0,F
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76 ;
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77 ; rlcf xA+1,F ; x2
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78
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79 ; movff xA+0,batt_voltage+0 ; store value
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80 ; movff xA+1,batt_voltage+1
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81
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82 movlw LOW lithium_36v_low
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83 movwf sub_a+0
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84 movlw HIGH lithium_36v_low
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85 movwf sub_a+1
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86 movff batt_voltage+0,sub_b+0
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87 movff batt_voltage+1,sub_b+1
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88 call subU16 ; sub_c = sub_a - sub_b
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89 ; Battery is 3,6V (>lithium_36v_low?)
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90 btfss neg_flag
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91 bra get_battery_voltage4 ; No, use 1,5V
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92
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93 bsf battery_is_36v ; Yes, set flag (Cleared in power-on reset only!)
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94
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95 ; Check if the battery is near-dead already
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96 movlw LOW lithium_36v_empty
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97 movwf sub_a+0
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98 movlw HIGH lithium_36v_empty
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99 movwf sub_a+1
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100 call subU16 ; sub_c = sub_a - sub_b
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101 ; Battery is not dead yet (>lithium_36v_empty?)
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102 btfsc neg_flag
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103 bra get_battery_voltage2 ; Yes, battery is still ok
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104
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105 ; Battery is probably dead very soon
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106 ; Set ">=24Ah used" into battery gauge registers
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107 movlw .128
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108 movff WREG,battery_gauge+5
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109
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110 get_battery_voltage2:
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111 ; Use 3,6V battery gauging mode
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112 movff battery_gauge+5,xC+3
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113 movff battery_gauge+4,xC+2
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114 movff battery_gauge+3,xC+1
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115 movff battery_gauge+2,xC+0
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116 ; battery_gauge:6 is nAs
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117 ; devide through 65536
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118 ; devide through 364
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119 ; Result is in percent of a 2,4Ah Battery
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120 movlw LOW .364
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121 movwf xB+0
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122 movlw HIGH .364
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123 movwf xB+1
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124 call div32x16 ; xC:4 / xB:2 = xC+3:xC+2 with xC+1:xC+0 as remainder
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125 movff xC+0,lo
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126 ; Limit to 100
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127 movlw .100
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128 cpfslt lo
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129 movwf lo
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130 ; lo will be between 0 (Full) and 100 (empty)
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131 movf lo,W
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132 sublw .100
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133 movwf lo
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134 get_battery_voltage3:
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135 movlw .100
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136 cpfslt lo
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137 movwf lo
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138 ; lo will be between 100 (Full) and 0 (empty)
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139
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140 ; use 3,6V battery sensing based on 50mA load
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141 ; 75%
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142 movff batt_voltage+0,sub_b+0
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143 movff batt_voltage+1,sub_b+1
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144 movlw LOW lithium_36v_75
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145 movwf sub_a+0
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146 movlw HIGH lithium_36v_75
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147 movwf sub_a+1
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148 call subU16 ; sub_c = sub_a - sub_b
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149 btfsc neg_flag
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150 bra get_battery_voltage3a
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151 movlw .75
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152 movwf lo
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153 get_battery_voltage3a:
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154 ; 50%
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155 movlw LOW lithium_36v_50
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156 movwf sub_a+0
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157 movlw HIGH lithium_36v_50
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158 movwf sub_a+1
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159 call subU16 ; sub_c = sub_a - sub_b
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160 btfsc neg_flag
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161 bra get_battery_voltage3b
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162 movlw .50
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163 movwf lo
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164 get_battery_voltage3b:
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165 ; 25%
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166 movlw LOW lithium_36v_25
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167 movwf sub_a+0
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168 movlw HIGH lithium_36v_25
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169 movwf sub_a+1
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170 call subU16 ; sub_c = sub_a - sub_b
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171 btfsc neg_flag
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172 bra get_battery_voltage3c
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173 movlw .25
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174 movwf lo
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175 get_battery_voltage3c:
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176 ; 10%
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177 movlw LOW lithium_36v_10
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178 movwf sub_a+0
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179 movlw HIGH lithium_36v_10
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180 movwf sub_a+1
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181 call subU16 ; sub_c = sub_a - sub_b
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182 btfsc neg_flag
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183 bra get_battery_voltage3d
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184 movlw .10
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185 movwf lo
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186 get_battery_voltage3d:
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18fe4e668baa BUGFIX: Percent display with 1,5V batteries
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187 movlw .100
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188 cpfslt lo
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189 movwf lo
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190 ; lo will be between 100 (Full) and 0 (empty)
0
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191 movf batt_percent,W
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192 cpfsgt lo ; keep batt_percent on the lowest value found
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193 movff lo,batt_percent ; store value
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194 ; btfsc battery_is_36v ; but always use computed value for 3,6V battery
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195 ; movff lo,batt_percent ; store value
0
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196 bcf adc_running ; =1: The ADC is in use
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197 return
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198
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199 get_battery_voltage4:
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200 ; Use 1,5V battery voltage mode
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201 ; Use approximation (batt_voltage:2-aa_15v_low)/4 = lo
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202 movff batt_voltage+0,sub_a+0
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203 movff batt_voltage+1,sub_a+1
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204 movlw LOW aa_15v_low
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205 movwf sub_b+0
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206 movlw HIGH aa_15v_low
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207 movwf sub_b+1
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208 call subU16 ; sub_c = sub_a - sub_b
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209 bcf STATUS,C
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210 rrcf sub_c+1
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211 rrcf sub_c+0 ; /2
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212 bcf STATUS,C
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213 rrcf sub_c+1
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214 rrcf sub_c+0 ; /4
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215 movff sub_c+0,lo
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18fe4e668baa BUGFIX: Percent display with 1,5V batteries
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216 bra get_battery_voltage3d ; Check limits and return
0
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217
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218 global get_ambient_level
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219 get_ambient_level: ; starts ADC and waits until finished
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220 btfsc adc_running ; ADC in use?
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221 return ; Yes, return
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222
113
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223 btfss c3_hardware
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224 bra get_ambient_level1 ; Normal ostc3 hardware
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225 movlw .250
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226 movwf ambient_light+0
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227 clrf ambient_light+1 ; Set to max
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228 bra get_ambient_level2 ; Continue as normal
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229
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230 get_ambient_level1:
0
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parents:
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231 movlw b'00000000' ; Vref+ = Vdd
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232 movwf ADCON1
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233 movlw b'00011101' ; power on ADC, select AN7
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parents:
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234 rcall wait_adc
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235
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236 movff ADRESH,ambient_light+1
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237 movff ADRESL,ambient_light+0
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238 bcf ADCON0,0 ; power off ADC
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239
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240 ; ambient_light:2 is between 4096 (direct sunlight) and about 200 (darkness)
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241 ; First: Devide through 16
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242 bcf STATUS,C
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parents:
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243 rrcf ambient_light+1
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parents:
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244 rrcf ambient_light+0
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parents:
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245 bcf STATUS,C
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parents:
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246 rrcf ambient_light+1
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parents:
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247 rrcf ambient_light+0
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parents:
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248 bcf STATUS,C
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parents:
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249 rrcf ambient_light+1
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parents:
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250 rrcf ambient_light+0
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parents:
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251 bcf STATUS,C
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parents:
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252 rrcf ambient_light+1
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253 rrcf ambient_light+0
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254 ; Result: ambient_light:2/16
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255 ; Now, make sure to have value between ambient_light_low and ambient_light_max
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256
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257 movlw .254
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258 tstfsz ambient_light+1 ; >255?
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259 movwf ambient_light+0 ; avoid ADC clipping
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260
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261 incfsz ambient_light+0,W ; =255?
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262 bra get_ambient_level2 ; No, continue
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263
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264 movlw .254
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265 movwf ambient_light+0 ; avoid ADC clipping
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266
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267 get_ambient_level2:
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268 banksel isr_backup ; Back to Bank0 ISR data
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269 movff opt_brightness,isr1_temp
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270
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271 btfsc RCSTA1,7 ; UART module on?
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272 clrf isr1_temp ; Yes, set temporally to eco mode
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273
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274 incf isr1_temp,F ; adjust 0-2 to 1-3
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275
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276 banksel common ; flag is in bank1
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277 movlw ambient_light_max_high ; brightest setting
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278 btfsc battery_is_36v ; 3,6V battery in use?
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279 movlw ambient_light_max_high_36V ; Yes...
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280 banksel isr_backup ; Back to Bank0 ISR data
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281
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282 dcfsnz isr1_temp,F
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283 movlw ambient_light_max_eco ; brightest setting
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284 dcfsnz isr1_temp,F
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285 movlw ambient_light_max_medium; brightest setting
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286
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287 banksel common ; ambient_light is in Bank1
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288 incf ambient_light+0,F ; +1
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289 cpfslt ambient_light+0 ; smaller then WREG?
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290 movwf ambient_light+0 ; No, set to max.
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291
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292 banksel isr_backup ; Back to Bank0 ISR data
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293 movff opt_brightness,isr1_temp
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294 incf isr1_temp,F ; adjust 0-2 to 1-3
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295 movlw ambient_light_min_high ; darkest setting
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296
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297 dcfsnz isr1_temp,F
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298 movlw ambient_light_min_eco ; darkest setting
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299 dcfsnz isr1_temp,F
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300 movlw ambient_light_min_medium; darkest setting
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parents:
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301 dcfsnz isr1_temp,F
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302 movlw ambient_light_min_high ; darkest setting
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303
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304 banksel common ; ambient_light is in Bank1
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305 cpfsgt ambient_light+0 ; bigger then WREG?
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306 movwf ambient_light+0 ; No, set to min
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307
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308 movff ambient_light+0,max_CCPR1L ; Store value for dimming in TMR7 interrupt
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309 return
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310
113
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311 global get_analog_inputs
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312 get_analog_inputs: ; starts ADC and waits until finished
0
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313 bsf adc_running ; =1: The ADC is in use
113
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314 btfsc TFT_PWM
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315 bra get_analog_inputs ; Wait for PWM low
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316 movlw b'00100000' ; 2.048V Vref+ -> 1LSB = 500µV
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317 movwf ADCON1
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318 movlw b'00100001' ; power on ADC, select AN8
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319 rcall wait_adc
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320 bcf STATUS,C
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321 rrcf ADRESH,F ; /2
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322 rrcf ADRESL,F
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323 movff ADRESL,o2_mv_sensor1+0 ; in 0.1mV steps
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324 movff ADRESH,o2_mv_sensor1+1
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325 bcf STATUS,C
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326 rlcf ADRESL,F
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327 rlcf ADRESH,F
0
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328 movlw b'00100000' ; 2.048V Vref+
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329 movwf ADCON1
113
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330 movlw b'00100101' ; power on ADC, select AN9
0
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331 rcall wait_adc
113
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332 bcf STATUS,C
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333 rrcf ADRESH,F ; /2
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334 rrcf ADRESL,F
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335 movff ADRESL,o2_mv_sensor2+0 ; in 0.1mV steps
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336 movff ADRESH,o2_mv_sensor2+1
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337 movlw b'00100000' ; 2.048V Vref+
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338 movwf ADCON1
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339 movlw b'00101001' ; power on ADC, select AN10
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340 rcall wait_adc
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341 bcf STATUS,C
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342 rrcf ADRESH,F ; /2
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343 rrcf ADRESL,F
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344 movff ADRESL,o2_mv_sensor3+0 ; in 0.1mV steps
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345 movff ADRESH,o2_mv_sensor3+1
0
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parents:
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346 bcf ADCON0,0 ; power off ADC
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347 bcf adc_running ; =1: The ADC is in use
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parents:
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348 return
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parents:
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349
113
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diff changeset
350 global piezo_config ; Sets up piezo sensitivity of heinrichs weikamp Piezo buttons (~30ms)
117
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351 piezo_config: ; Settings between 20 and 200
118
abd30446e1cd show heading with leading zeros
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352 movlw .20 ; right button
117
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353 rcall piezo_config_tx
118
abd30446e1cd show heading with leading zeros
heinrichsweikamp
parents: 117
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354 movlw .20 ; left button
117
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parents: 113
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355 rcall piezo_config_tx
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parents: 113
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356 movlw .200 ; reserved
heinrichsweikamp
parents: 113
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357 rcall piezo_config_tx
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parents: 113
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358 movlw .200 ; reserved
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359 rcall piezo_config_tx
113
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360 return
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361
117
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parents: 113
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362 piezo_config_tx: ; Send one byte
113
heinrichsweikamp
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363 movwf uart1_temp ; Store byte
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parents: 44
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364 movlw .8
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parents: 44
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365 movwf uart2_temp ; Bit counter
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366 bcf TX3_PIEZO_CFG ; Startbit
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parents: 44
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367 rcall piezo_config_wait_bit
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parents: 44
diff changeset
368 piezo_config_tx_loop:
heinrichsweikamp
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369 btfss uart1_temp,0 ; LSB first
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parents: 44
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370 bcf TX3_PIEZO_CFG
heinrichsweikamp
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diff changeset
371 btfsc uart1_temp,0 ; LSB first
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372 bsf TX3_PIEZO_CFG
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parents: 44
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373 rcall piezo_config_wait_bit
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parents: 44
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374 rrncf uart1_temp,F
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parents: 44
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375 decfsz uart2_temp,F
heinrichsweikamp
parents: 44
diff changeset
376 bra piezo_config_tx_loop
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parents: 44
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377 bsf TX3_PIEZO_CFG ; Stopbit
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parents: 44
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378 rcall piezo_config_wait_bit
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parents: 44
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379 return
heinrichsweikamp
parents: 44
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380
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381 piezo_config_wait_bit:
heinrichsweikamp
parents: 44
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382 setf TMR5H
heinrichsweikamp
parents: 44
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383 movlw .255-.26 ;26 x 31,5µs = 819us
heinrichsweikamp
parents: 44
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384 movwf TMR5L
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parents: 44
diff changeset
385 bcf PIR5,TMR5IF ; Clear flag
heinrichsweikamp
parents: 44
diff changeset
386 piezo_config_wait_bit3:
heinrichsweikamp
parents: 44
diff changeset
387 btfss PIR5,TMR5IF
heinrichsweikamp
parents: 44
diff changeset
388 bra piezo_config_wait_bit3 ; Wait loop
heinrichsweikamp
parents: 44
diff changeset
389 return
heinrichsweikamp
parents: 44
diff changeset
390
0
heinrichsweikamp
parents:
diff changeset
391 global reset_battery_pointer
heinrichsweikamp
parents:
diff changeset
392 reset_battery_pointer: ; Resets battery pointer 0x07-0x0C and battery_gauge:5
113
heinrichsweikamp
parents: 44
diff changeset
393 extern lt2942_charge_done
heinrichsweikamp
parents: 44
diff changeset
394 call lt2942_charge_done ; Reset accumulating registers to 0xFFFF
heinrichsweikamp
parents: 44
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395 clrf EEADRH
0
heinrichsweikamp
parents:
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396 clrf EEDATA ; Delete to zero
heinrichsweikamp
parents:
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397 write_int_eeprom 0x07
heinrichsweikamp
parents:
diff changeset
398 write_int_eeprom 0x08
heinrichsweikamp
parents:
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399 write_int_eeprom 0x09
heinrichsweikamp
parents:
diff changeset
400 write_int_eeprom 0x0A
heinrichsweikamp
parents:
diff changeset
401 write_int_eeprom 0x0B
heinrichsweikamp
parents:
diff changeset
402 write_int_eeprom 0x0C
heinrichsweikamp
parents:
diff changeset
403 banksel battery_gauge+0
heinrichsweikamp
parents:
diff changeset
404 clrf battery_gauge+0
heinrichsweikamp
parents:
diff changeset
405 clrf battery_gauge+1
heinrichsweikamp
parents:
diff changeset
406 clrf battery_gauge+2
heinrichsweikamp
parents:
diff changeset
407 clrf battery_gauge+3
heinrichsweikamp
parents:
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408 clrf battery_gauge+4
heinrichsweikamp
parents:
diff changeset
409 clrf battery_gauge+5
heinrichsweikamp
parents:
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410 banksel common
heinrichsweikamp
parents:
diff changeset
411 movlw .100
heinrichsweikamp
parents:
diff changeset
412 movwf batt_percent
heinrichsweikamp
parents:
diff changeset
413 return
heinrichsweikamp
parents:
diff changeset
414
heinrichsweikamp
parents:
diff changeset
415
heinrichsweikamp
parents:
diff changeset
416 END