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@ -16,7 +16,18 @@ |
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#define N_EVENTS 64 // size of events array
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#define N_SWITCHES 64 // size of switch array
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#define DEBUG 0 // 1 for noisy serial
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#define LED 13 |
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#define LED 17 |
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#define RELAY1 0 |
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#define RELAY2 1 |
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#define RELAY3 23 |
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#define RELAY4 22 |
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#define RELAY5 17 |
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#define RELAY6 16 |
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#define RELAY7 9 |
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#define RELAY8 10 |
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// Metro ticks in ms
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#define METRO_CAN_tick 1 |
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#define METRO_OW_read_tick 20 |
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@ -41,8 +52,14 @@ |
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#define DS2406_BUF_LEN 10 |
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// Definitions
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static OW_switch_t switches[N_SWITCHES]; |
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static event_t events[N_EVENTS]; |
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static OW_switch_t switches[N_SWITCHES] PROGMEM= |
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{ |
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{ 1, { 0x12, 0x5b, 0x27, 0x50, 0x0, 0x0, 0x0, 0x26 }, { 0x01, 0x02 } } |
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}; |
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static uint8_t switches_state[N_SWITCHES]; |
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static tx_event_t tx_events[N_EVENTS]; |
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// Initialisation
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@ -77,7 +94,7 @@ int txCount,rxCount; |
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unsigned int txTimer,rxTimer; |
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// Functions -------------------------------------------------------
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// Functions ------------------------------^-------------------------
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void PrintBytes(uint8_t* addr, uint8_t count, bool newline=0) { |
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for (uint8_t i = 0; i < count; i++) { |
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Serial.print(addr[i]>>4, HEX); |
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@ -91,7 +108,7 @@ void DEBUG_Bytes(uint8_t* addr, uint8_t count, bool newline=0) { |
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for (uint8_t i = 0; i < count; i++) { |
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Serial.print(addr[i]>>4, HEX); |
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Serial.print(addr[i]&0x0f, HEX); |
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} |
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} |
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if (newline) |
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Serial.println(); |
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#endif |
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@ -127,30 +144,30 @@ void setup(void) |
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{ |
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// Misc
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// Most clumsy way later to be put in eeprom or s/th
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switches[0].nick = 1; |
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switches[0].addr[0] = 0x12, |
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switches[0].addr[1] = 0x5b; |
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switches[0].addr[2] = 0x27; |
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switches[0].addr[3] = 0x50; |
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switches[0].addr[4] = 0x0; |
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switches[0].addr[5] = 0x0; |
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switches[0].addr[6] = 0x0; |
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switches[0].addr[7] = 0x26; |
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switches[0].event_id[0] = 0x01; |
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switches[0].event_id[1] = 0x02; |
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// switches[0].id = 1;
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// switches[0].addr[0] = 0x12,
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// switches[0].addr[1] = 0x5b;
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// switches[0].addr[2] = 0x27;
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// switches[0].addr[3] = 0x50;
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// switches[0].addr[4] = 0x0;
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// switches[0].addr[5] = 0x0;
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// switches[0].addr[6] = 0x0;
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// switches[0].addr[7] = 0x26;
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// switches[0].event_id[0] = 0x01;
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// switches[0].event_id[1] = 0x02;
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events[0].id =0x01; |
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events[0].telegram.id = 0x0102DEAD; |
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events[0].telegram.len = 2; |
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events[0].telegram.buf[0] = 0xDE; |
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events[0].telegram.buf[1] = 0xAD; |
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events[1].id =0x02; |
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events[1].telegram.id = 0x0204BEEF; |
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events[1].telegram.len = 4; |
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events[1].telegram.buf[0] = 0xDE; |
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events[1].telegram.buf[1] = 0xAD; |
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events[1].telegram.buf[2] = 0xBE; |
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events[1].telegram.buf[3] = 0xEF; |
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tx_events[0].id =0x01; |
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tx_events[0].telegram.id = 0x0102DEAD; |
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tx_events[0].telegram.len = 2; |
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tx_events[0].telegram.buf[0] = 0xDE; |
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tx_events[0].telegram.buf[1] = 0xAD; |
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tx_events[1].id =0x02; |
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tx_events[1].telegram.id = 0x0204BEEF; |
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tx_events[1].telegram.len = 4; |
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tx_events[1].telegram.buf[0] = 0xDE; |
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tx_events[1].telegram.buf[1] = 0xAD; |
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tx_events[1].telegram.buf[2] = 0xBE; |
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tx_events[1].telegram.buf[3] = 0xEF; |
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//{ 0x02040608, 2, { 0xbe, 0xef }}};
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@ -194,9 +211,9 @@ void loop(void) |
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if (METRO_OW_read.check() ) { |
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bool action[2]; |
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readout = read_DS2406(switches[0].addr); |
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if (switches[0].state != readout) { |
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tmp = readout ^ switches[0].state; |
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switches[0].state = readout; |
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if (switches_state[0] != readout) { |
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tmp = readout ^ switches_state[0]; |
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switches_state[0] = readout; |
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action[0] = tmp & 0x04; |
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action[1] = tmp & 0x08; |
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} |
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@ -223,14 +240,14 @@ void loop(void) |
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} |
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} |
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if ( txmsg.len == 0 && trig_event != 0 ) { |
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if ( events[event_idx].id == trig_event ) { |
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txmsg.id = events[event_idx].telegram.id; |
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txmsg.len = events[event_idx].telegram.len; |
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if ( tx_events[event_idx].id == trig_event ) { |
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txmsg.id = tx_events[event_idx].telegram.id; |
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txmsg.len = tx_events[event_idx].telegram.len; |
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for (uint i=0;i<txmsg.len;i++){ |
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txmsg.buf[i] = events[event_idx].telegram.buf[i]; |
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txmsg.buf[i] = tx_events[event_idx].telegram.buf[i]; |
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} |
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} |
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if ( events[event_idx].id == 0) { trig_event = 0; } |
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if ( tx_events[event_idx].id == 0) { trig_event = 0; } |
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event_idx++; |
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} |
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// if not time-delayed, read CAN messages and print 1st byte
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