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Rev | Author | Line No. | Line |
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1 | ingob | 1 | /*####################################################################################### |
886 | killagreg | 2 | Decodieren eines RC Summen Signals |
1 | ingob | 3 | #######################################################################################*/ |
4 | // ++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++ |
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5 | // + Copyright (c) 04.2007 Holger Buss |
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6 | // + only for non-profit use |
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7 | // + www.MikroKopter.com |
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8 | // + see the File "License.txt" for further Informations |
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9 | // ++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++ |
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10 | |||
886 | killagreg | 11 | #include <stdlib.h> |
12 | #include <avr/io.h> |
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13 | #include <avr/interrupt.h> |
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14 | |||
1 | ingob | 15 | #include "rc.h" |
16 | #include "main.h" |
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17 | |||
886 | killagreg | 18 | volatile int16_t PPM_in[15]; //PPM24 supports 12 channels per frame |
19 | volatile int16_t PPM_diff[15]; |
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20 | volatile uint8_t NewPpmData = 1; |
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21 | volatile int16_t RC_Quality = 0; |
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1 | ingob | 22 | |
886 | killagreg | 23 | volatile uint8_t NewRCFrames = 0; |
24 | |||
25 | |||
26 | /***************************************************************/ |
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27 | /* 16bit timer 1 is used to decode the PPM-Signal */ |
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28 | /***************************************************************/ |
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29 | void RC_Init (void) |
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1 | ingob | 30 | { |
886 | killagreg | 31 | uint8_t sreg = SREG; |
1 | ingob | 32 | |
886 | killagreg | 33 | // disable all interrupts before reconfiguration |
34 | cli(); |
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35 | |||
36 | // PPM-signal is connected to the Input Capture Pin (PD6) of timer 1 |
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37 | DDRD &= ~(1<<DDD6); |
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38 | PORTD |= (1<<PORTD6); |
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39 | |||
40 | // Channel 5,6,7 is decoded to servo signals at pin PD5 (J3), PD4(J4), PD3(J5) |
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41 | // set as output |
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42 | DDRD |= (1<<DDD5)|(1<<DDD4); |
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43 | // low level |
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44 | PORTD &= ~((1<<PORTD5)|(1<<PORTD4)); |
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45 | |||
46 | // PD3 can't be used in FC 1.1 if 2nd UART is activated |
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47 | // because TXD1 is at that port |
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48 | if(BoardRelease == 10) |
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49 | { |
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50 | DDRD |= (1<<PORTD3); |
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51 | PORTD &= ~(1<<PORTD3); |
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52 | } |
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53 | |||
54 | // Timer/Counter1 Control Register A, B, C |
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55 | |||
56 | // Normal Mode (bits: WGM13=0, WGM12=0, WGM11=0, WGM10=0) |
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57 | // Compare output pin A & B is disabled (bits: COM1A1=0, COM1A0=0, COM1B1=0, COM1B0=0) |
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58 | // Set clock source to SYSCLK/64 (bit: CS12=0, CS11=1, CS10=1) |
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59 | // Enable input capture noise cancler (bit: ICNC1=1) |
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60 | // Trigger on positive edge of the input capture pin (bit: ICES1=1), |
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61 | // Therefore the counter incremets at a clock of 20 MHz/64 = 312.5 kHz or 3.2µs |
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62 | // The longest period is 0xFFFF / 312.5 kHz = 0.209712 s. |
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63 | TCCR1A &= ~((1<<COM1A1)|(1<<COM1A0)|(1<<COM1B1)|(1<<COM1B0)|(1<<WGM11)|(1<<WGM10)); |
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64 | TCCR1B &= ~((1<<WGM13)|(1<<WGM12)|(1<<CS12)); |
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65 | TCCR1B |= (1<<CS11)|(1<<CS10)|(1<<ICES1)|(1<<ICNC1); |
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66 | TCCR1C &= ~((1<<FOC1A)|(1<<FOC1B)); |
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67 | |||
68 | // Timer/Counter1 Interrupt Mask Register |
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69 | |||
70 | // Enable Input Capture Interrupt (bit: ICIE1=1) |
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71 | // Disable Output Compare A & B Match Interrupts (bit: OCIE1B=0, OICIE1A=0) |
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72 | // Enable Overflow Interrupt (bit: TOIE1=0) |
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73 | TIMSK1 &= ~((1<<OCIE1B)|(1<<OCIE1A)); |
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74 | TIMSK1 |= (1<<ICIE1)|(1<<TOIE1); |
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75 | |||
76 | RC_Quality = 0; |
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77 | |||
78 | SREG = sreg; |
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1 | ingob | 79 | } |
80 | |||
81 | |||
886 | killagreg | 82 | // happens every 0.209712 s. |
83 | // check for at least one new frame per timer overflow (timeout) |
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84 | ISR(TIMER1_OVF_vect) |
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1 | ingob | 85 | { |
886 | killagreg | 86 | if (NewRCFrames == 0) RC_Quality -= RC_Quality/8; |
87 | NewRCFrames = 0; |
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88 | } |
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89 | |||
90 | |||
91 | /********************************************************************/ |
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92 | /* Every time a positive edge is detected at PD6 */ |
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93 | /********************************************************************/ |
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94 | /* t-Frame |
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95 | <-----------------------------------------------------------------------> |
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96 | ____ ______ _____ ________ ______ sync gap ____ |
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97 | | | | | | | | | | | | |
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98 | | | | | | | | | | | | |
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99 | ___| |_| |_| |_| |_.............| |________________| |
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100 | <-----><-------><------><--------> <------> <--- |
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101 | t0 t1 t2 t4 tn t0 |
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102 | |||
103 | The PPM-Frame length is 22.5 ms. |
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104 | Channel high pulse width range is 0.7 ms to 1.7 ms completed by an 0.3 ms low pulse. |
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105 | The mininimum time delay of two events coding a channel is ( 0.7 + 0.3) ms = 1 ms. |
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106 | The maximum time delay of two events coding a chanel is ( 1.7 + 0.3) ms = 2 ms. |
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107 | The minimum duration of all channels at minimum value is 8 * 1 ms = 8 ms. |
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108 | The maximum duration of all channels at maximum value is 8 * 2 ms = 16 ms. |
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109 | The remaining time of (22.5 - 8 ms) ms = 14.5 ms to (22.5 - 16 ms) ms = 6.5 ms is |
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110 | the syncronization gap. |
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111 | */ |
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112 | ISR(TIMER1_CAPT_vect) // typical rate of 1 ms to 2 ms |
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113 | { |
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114 | int16_t signal = 0, tmp; |
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115 | static int16_t index; |
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116 | static uint16_t oldICR1 = 0; |
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117 | |||
118 | // 16bit Input Capture Register ICR1 contains the timer value TCNT1 |
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119 | // at the time the edge was detected |
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120 | |||
121 | // calculate the time delay to the previous event time which is stored in oldICR1 |
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122 | // calculatiing the difference of the two uint16_t and converting the result to an int16_t |
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123 | // implicit handles a timer overflow 65535 -> 0 the right way. |
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124 | signal = (uint16_t) ICR1 - oldICR1; |
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125 | oldICR1 = ICR1; |
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126 | |||
127 | //sync gap? (3.52 ms < signal < 25.6 ms) |
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128 | if((signal > 1100) && (signal < 8000)) |
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129 | { |
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130 | // if a sync gap happens and there where at least 4 channels decoded before |
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131 | // then the NewPpmData flag is reset indicating valid data in the PPM_in[] array. |
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132 | if(index >= 4) |
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133 | { |
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134 | NewPpmData = 0; // Null means NewData for the first 4 channels |
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135 | NewRCFrames++; |
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136 | } |
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137 | // synchronize channel index |
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138 | index = 1; |
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139 | } |
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140 | else // within the PPM frame |
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141 | { |
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142 | if(index < 14) // PPM24 supports 12 channels |
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1 | ingob | 143 | { |
886 | killagreg | 144 | // check for valid signal length (0.8 ms < signal < 2.1984 ms) |
145 | // signal range is from 1.0ms/3.2us = 312 to 2.0ms/3.2us = 625 |
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146 | if((signal > 250) && (signal < 687)) |
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1 | ingob | 147 | { |
886 | killagreg | 148 | // shift signal to zero symmetric range -154 to 159 |
149 | signal -= 466; // offset of 1.4912 ms ??? (469 * 3.2µs = 1.5008 ms) |
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150 | // check for stable signal |
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151 | if(abs(signal-PPM_in[index]) < 6) |
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152 | { |
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153 | if(RC_Quality < 200) RC_Quality +=10; |
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154 | } |
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155 | // calculate exponential history for signal |
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156 | tmp = (3 * (PPM_in[index]) + signal) / 4; |
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604 | hbuss | 157 | if(tmp > signal+1) tmp--; else |
886 | killagreg | 158 | if(tmp < signal-1) tmp++; |
159 | // calculate signal difference on good signal level |
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160 | if(RC_Quality >= 195) PPM_diff[index] = ((tmp - PPM_in[index]) / 3) * 3; // cut off lower 3 bit for nois reduction |
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604 | hbuss | 161 | else PPM_diff[index] = 0; |
886 | killagreg | 162 | PPM_in[index] = tmp; // update channel value |
163 | } |
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164 | index++; // next channel |
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165 | // demux sum signal for channels 5 to 7 to J3, J4, J5 |
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166 | if(index == 5) PORTD |= (1<<PORTD5); else PORTD &= ~(1<<PORTD5); |
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167 | if(index == 6) PORTD |= (1<<PORTD4); else PORTD &= ~(1<<PORTD4); |
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168 | if(BoardRelease == 10) |
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169 | { |
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170 | if(index == 7) PORTD |= (1<<PORTD3); else PORTD &= ~(1<<PORTD3); |
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171 | } |
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1 | ingob | 172 | } |
173 | } |
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886 | killagreg | 174 | if(RC_Quality) RC_Quality--; |
1 | ingob | 175 | } |
176 | |||
177 | |||
178 | |||
179 | |||
180 |