| 1 | #include "output.h"
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| 2 | #include "usart.h"
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| 3 | #include "application.h"
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| 4 | #include "timer.h"
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| 5 | #include "w5100_spi_interface.h"
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| 6 |
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| 7 | void print_status() {
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| 8 | usart_write_str((pU08)"adc status:\n");
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| 9 | for (U08 i=0; i< VOLTAGE_REGS;++i) {
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| 10 | usart_write_U08_bin(adc_enables[i]);
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| 11 | usart_write_char(' ');
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| 12 | }
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| 13 | usart_write_crlf();
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| 14 | for (U08 i=0; i< VOLTAGE_REGS;++i){
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| 15 | usart_write_U08_bin(adc_channels_ready[i]);
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| 16 | usart_write_char(' ');
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| 17 | }
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| 18 | usart_write_crlf();
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| 19 |
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| 20 | usart_write_str((pU08)"ad7719 status:\n");
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| 21 | for (U08 i=0; i< RESISTANCE_CHANNELS/8;++i) {
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| 22 | usart_write_U08_bin(ad7719_enables[i]);
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| 23 | usart_write_char(' ');
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| 24 | }
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| 25 | usart_write_crlf();
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| 26 | for (U08 i=0; i< RESISTANCE_CHANNELS/8;++i){
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| 27 | usart_write_U08_bin(ad7719_channels_ready[i]);
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| 28 | usart_write_char(' ');
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| 29 | }
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| 30 | usart_write_crlf();
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| 31 |
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| 32 | usart_write_str((pU08)"time:");
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| 33 | usart_write_U32(sec,10);
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| 34 | usart_write_str((pU08)" sec.\n");
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| 35 | /*
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| 36 | usart_write_str((pU08)"adc measured all: ");
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| 37 | if (adc_measured_all)
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| 38 | usart_write_str((pU08)" true\n");
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| 39 | else
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| 40 | usart_write_str((pU08)"false\n");
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| 41 |
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| 42 | usart_write_str((pU08)"ad7719 measured all: ");
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| 43 | if (ad7719_measured_all)
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| 44 | usart_write_str((pU08)" true\n");
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| 45 | else
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| 46 | usart_write_str((pU08)"false\n");
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| 47 |
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| 48 | usart_write_str((pU08)"adc current channel:");
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| 49 | usart_write_U08(*adc_current_channel,2);
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| 50 | usart_write_crlf();
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| 51 |
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| 52 | usart_write_str((pU08)"ad7719 current channel:");
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| 53 | usart_write_U08(*ad7719_current_channel,2);
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| 54 | usart_write_crlf();
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| 55 |
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| 56 | usart_write_str((pU08)"mux SB:");
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| 57 | usart_write_U08_hex(PORTC);
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| 58 | usart_write_str((pU08)" SA:");
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| 59 | usart_write_U08_hex(PORTA);
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| 60 | usart_write_crlf();
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| 61 | */
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| 62 | }
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| 63 | void print_adc_nicely() {
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| 64 | usart_write_str((pU08)"\n printing voltages in mV:\n");
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| 65 | // output: U08 adc_values[V_CHANNELS + I_CHANNELS + H_CHANNELS];
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| 66 | for (U08 i=0; i< VOLTAGE_CHANNELS;++i) {
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| 67 | if (i%8 == 0) usart_write_char('\n');
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| 68 | adc_output(i, adc_values[i]);
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| 69 | usart_write_str((pU08)" ");
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| 70 | }
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| 71 | usart_write_char('\n');
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| 72 | }
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| 73 |
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| 74 |
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| 75 | void print_ad7719_nicely()
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| 76 | {
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| 77 | float value;
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| 78 |
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| 79 | usart_write_str((pU08)"\n printing measured resistance in kohms:\n");
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| 80 |
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| 81 | for (U08 i=0; i< RESISTANCE_CHANNELS;++i) {
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| 82 | if (i%8 == 0) usart_write_char('\n');
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| 83 |
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| 84 | // print channel name:
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| 85 | usart_write_str((pU08)"R:"); //R for resistance
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| 86 | usart_write_char('A'+i/8); // Letters A,B,C,D,E,F,G,H
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| 87 | //usart_write_char(' ');
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| 88 | usart_write_U08(i%8+1,1); // Numbers 1...8
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| 89 | usart_write_char(':');
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| 90 |
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| 91 | // check if this channel is enabled in the bitmap
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| 92 | if (ad7719_enables[i/8] & (1<<i%8))
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| 93 | {
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| 94 | value = (6.25 * 1.024 * ad7719_values[i]) / ((U32)1 << 25);
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| 95 | usart_write_float(value, 3,6);
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| 96 | //usart_write_U32(ad7719_values[i],8);
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| 97 | //usart_write_U32_hex(data); //data
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| 98 | usart_write_str((pU08)" ");
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| 99 | } else {
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| 100 | usart_write_str((pU08)" ");
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| 101 | }
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| 102 | //usart_write_char('\n');
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| 103 | }
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| 104 | }
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| 105 |
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| 106 | void ad7719_output(U08 channel, U32 data) {
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| 107 | float value = 0;
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| 108 | usart_write_str((pU08)"R:"); //R for resistance
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| 109 | usart_write_char('A'+channel/8); // Letters A,B,C,D,E,F,G,H
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| 110 | //usart_write_char(' ');
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| 111 | usart_write_U08(channel%8+1,1); // Numbers 1...8
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| 112 | usart_write_char(':');
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| 113 |
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| 114 |
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| 115 | value = (6.25 * data) / ((U32)1 << 25);
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| 116 | usart_write_float(value, 3,6);
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| 117 | //usart_write_U32_hex(data); //data
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| 118 |
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| 119 |
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| 120 | }
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| 121 |
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| 122 | void adc_output(U08 channel, U16 data) {
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| 123 |
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| 124 | // if (channel < 40)
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| 125 | // usart_write_str((pU08)"V:");
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| 126 | // else if (channel < 80)
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| 127 | // usart_write_str((pU08)"I:");
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| 128 | // else if (channel < 84)
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| 129 | // usart_write_str((pU08)"H:");
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| 130 |
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| 131 | if (channel <80)
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| 132 | {
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| 133 | switch ((channel%40)/4) {
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| 134 | case 0:
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| 135 | case 1:
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| 136 | usart_write_char('A');
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| 137 | break;
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| 138 | case 2:
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| 139 | case 3:
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| 140 | usart_write_char('B');
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| 141 | break;
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| 142 | case 4:
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| 143 | case 5:
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| 144 | usart_write_char('C');
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| 145 | break;
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| 146 | case 6:
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| 147 | case 7:
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| 148 | usart_write_char('D');
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| 149 | break;
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| 150 | case 8:
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| 151 | usart_write_char('E');
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| 152 | break;
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| 153 | case 9:
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| 154 | usart_write_char('F');
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| 155 | break;
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| 156 | default:
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| 157 | usart_write_char('?');
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| 158 | break;
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| 159 | }
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| 160 | }
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| 161 | else // channel 80..83
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| 162 | {
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| 163 | usart_write_char('H');
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| 164 | }
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| 165 | //usart_write_char(' ');
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| 166 |
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| 167 | if ( (channel%40)/4 == 9)
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| 168 | usart_write_U08((channel)%4+1,1); // Numbers 1...4
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| 169 | else
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| 170 | usart_write_U08((channel)%8+1,1); // Numbers 1...8
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| 171 |
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| 172 |
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| 173 | //usart_write_U08(channel,2); // Numbers 1...8
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| 174 | usart_write_char(':');
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| 175 | usart_write_U16(data/(adc_readings_until_mean/4), 7); //data
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| 176 | }
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| 177 |
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| 178 |
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| 179 | void adc_output_all() {
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| 180 | print_adc_nicely();
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| 181 | print_ad7719_nicely();
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| 182 | }
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| 183 |
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| 184 |
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| 185 | void telegram_start(){
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| 186 | eth_write_buffer[0]='@';
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| 187 | eth_write_buffer[1]='@';
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| 188 | w5100_set_TX(eth_write_buffer, 2);
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| 189 | }
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| 190 |
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| 191 | void print_help(){
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| 192 | usart_write_str((pU08)"printing help: -not yet- \n");
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| 193 | }
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| 194 |
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| 195 | void print_adc_stupid() {
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| 196 | usart_write_str((pU08)"printing voltages in mV - stupid mode:\n");
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| 197 | for (U08 i = 0 ; i < VOLTAGE_CHANNELS ; ++i) {
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| 198 | usart_write_str((pU08)"ch:");
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| 199 | usart_write_U08(i,3);
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| 200 | usart_write_char(' ');
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| 201 | usart_write_U16_hex(adc_values[i]);
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| 202 | usart_write_char(' ');
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| 203 | usart_write_U16(adc_values[i],7);
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| 204 | usart_write_crlf();
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| 205 | }
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| 206 | usart_write_char('\n');
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| 207 | }
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