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| Rev | Author | Line No. | Line |
|---|---|---|---|
| 403 | arune | 1 | #include <inttypes.h> |
| 2 | #include <avr/interrupt.h> |
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| 3 | #include <stdio.h> |
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| 4 | #include <string.h> |
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| 5 | #include <config.h> // All configuration parameters |
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| 6 | #include <bios.h> // BIOS interface declarations, including CAN structure and ID defines. |
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| 7 | //#include <drivers/uart/serial.h> |
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| 8 | #include <drivers/timer/timebase.h> |
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| 603 | arune | 9 | #include <drivers/ir/transceiver/irtransceiver.h> |
| 10 | //#include <drivers/ir/receiver/irreceiver.h> |
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| 403 | arune | 11 | |
| 486 | arune | 12 | #define APP_TYPE CAN_APPTYPES_IRRECEIVER |
| 527 | arune | 13 | #define APP_VERSION 0x0003 |
| 403 | arune | 14 | |
| 15 | #define STATE_IDLE 0 |
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| 16 | #define STATE_IR_REPEAT 1 |
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| 17 | |||
| 527 | arune | 18 | #define IR_ID_DATA 0 |
| 19 | #define IR_ID_RAW 1 |
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| 20 | #define IR_ID_DEBUG 10 |
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| 439 | arune | 21 | |
| 403 | arune | 22 | // A simple message "queue", with space for one message only. |
| 23 | // These are declared volatile to tell the compiler not to optimize away accesses. |
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| 24 | volatile Can_Message_t rxMsg; // Message storage |
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| 25 | volatile uint8_t rxMsgFull; // Synchronization flag |
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| 26 | |||
| 27 | // CAN message reception callback. |
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| 28 | // This function runs with interrupts disabled, keep it as short as possible. |
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| 29 | void can_receive(Can_Message_t *msg) { |
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| 30 | if (!rxMsgFull) { |
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| 31 | memcpy((void*)&rxMsg, msg, sizeof(rxMsg)); |
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| 32 | rxMsgFull = 1; |
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| 33 | } |
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| 34 | } |
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| 35 | |||
| 36 | int main(void) |
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| 37 | { |
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| 38 | // Enable interrupts as early as possible |
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| 39 | sei(); |
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| 40 | |||
| 41 | Timebase_Init(); |
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| 42 | //Serial_Init(); |
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| 519 | arune | 43 | IrReceive_Init(); |
| 403 | arune | 44 | |
| 45 | Can_Message_t txMsg; |
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| 46 | txMsg.Id = (CAN_NMT_APP_START << CAN_SHIFT_NMT_TYPE) | (NODE_ID << CAN_SHIFT_NMT_SID); |
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| 47 | txMsg.DataLength = 4; |
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| 48 | txMsg.RemoteFlag = 0; |
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| 49 | txMsg.ExtendedFlag = 1; |
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| 50 | txMsg.Data.words[0] = APP_TYPE; |
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| 51 | txMsg.Data.words[1] = APP_VERSION; |
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| 52 | |||
| 53 | // Set up callback for CAN reception, this is optional if only sending is required. |
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| 54 | BIOS_CanCallback = &can_receive; |
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| 55 | // Send CAN_NMT_APP_START |
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| 56 | BIOS_CanSend(&txMsg); |
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| 439 | arune | 57 | |
| 527 | arune | 58 | //txMsg.Id = ((CAN_SNS << CAN_SHIFT_CLASS) | (SNS_TYPE_IR << CAN_SHIFT_SNS_TYPE) | (IR_ID_DATA<<CAN_SHIFT_SNS_ID) | (NODE_ID << CAN_SHIFT_SNS_SID)); |
| 519 | arune | 59 | |
| 403 | arune | 60 | unsigned long time = Timebase_CurrentTime(); |
| 519 | arune | 61 | unsigned long irTimeoutTime = 100; |
| 403 | arune | 62 | |
| 603 | arune | 63 | uint8_t ir_protocol; |
| 64 | //uint8_t ir_address, ir_command; |
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| 65 | uint32_t ir_data; |
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| 519 | arune | 66 | uint16_t ir_timeout; |
| 403 | arune | 67 | uint8_t state = STATE_IDLE; |
| 68 | |||
| 69 | while (1) { |
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| 70 | time = Timebase_CurrentTime(); |
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| 527 | arune | 71 | |
| 72 | if (state == STATE_IDLE) { |
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| 73 | /* test for irdata */ |
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| 603 | arune | 74 | //uint8_t returnval = IrReceive_CheckIR(&ir_protocol, &ir_address, &ir_command, &ir_timeout); |
| 75 | uint8_t returnval = IrReceive_CheckIR(&ir_protocol, &ir_data, &ir_timeout); |
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| 527 | arune | 76 | if (returnval == IR_OK) { |
| 77 | /* a protocol was found for irdata, send on can */ |
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| 549 | arune | 78 | txMsg.Data.bytes[0] = IR_BUTTON_DOWN; |
| 527 | arune | 79 | txMsg.Data.bytes[1] = ir_protocol; |
| 603 | arune | 80 | txMsg.Data.bytes[2] = (ir_data>>24)&0xff; |
| 81 | txMsg.Data.bytes[3] = (ir_data>>16)&0xff; |
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| 82 | txMsg.Data.bytes[4] = (ir_data>>8)&0xff; |
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| 83 | txMsg.Data.bytes[5] = ir_data&0xff; |
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| 527 | arune | 84 | txMsg.Id = ((CAN_SNS << CAN_SHIFT_CLASS) | (SNS_TYPE_IR << CAN_SHIFT_SNS_TYPE) | (IR_ID_DATA<<CAN_SHIFT_SNS_ID) | (NODE_ID << CAN_SHIFT_SNS_SID)); |
| 603 | arune | 85 | txMsg.DataLength = 6; |
| 527 | arune | 86 | BIOS_CanSend(&txMsg); |
| 87 | |||
| 88 | /* set up timeout */ |
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| 89 | irTimeoutTime = Timebase_CurrentTime(); |
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| 90 | state = STATE_IR_REPEAT; |
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| 91 | |||
| 92 | } else if (returnval == IR_NO_PROTOCOL) { |
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| 93 | /* the protocol is unknown so the raw ir-data is sent, makes it easier to develop a new protocol */ |
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| 94 | ir_protocol = IR_PROTO_UNKNOWN; //used in STATE_IR_REPEATE, to know if to send a release |
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| 95 | txMsg.DataLength = 8; |
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| 96 | txMsg.Id = ((CAN_SNS << CAN_SHIFT_CLASS) | (SNS_TYPE_IR << CAN_SHIFT_SNS_TYPE) | (IR_ID_RAW<<CAN_SHIFT_SNS_ID) | (NODE_ID << CAN_SHIFT_SNS_SID)); |
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| 97 | uint8_t datacnt = getRawDataCnt(); |
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| 98 | for (uint8_t i = 0; i < datacnt>>2; i++) { |
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| 99 | uint8_t index = i<<2; |
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| 100 | txMsg.Data.words[0] = getRawData(index); |
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| 101 | txMsg.Data.words[1] = getRawData(index+1); |
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| 102 | txMsg.Data.words[2] = getRawData(index+2); |
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| 103 | txMsg.Data.words[3] = getRawData(index+3); |
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| 104 | |||
| 105 | /* buffers will be filled when sending more than 2-3 messages, so retry until sent */ |
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| 528 | arune | 106 | //while (BIOS_CanSend(&txMsg) != CAN_OK) {} |
| 107 | BIOS_CanSend(&txMsg); |
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| 108 | |||
| 109 | uint16_t dummycnt = 1; |
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| 110 | while (dummycnt > 0) { |
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| 111 | dummycnt++; |
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| 112 | asm("nop"); |
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| 113 | asm("nop"); |
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| 114 | } |
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| 527 | arune | 115 | } |
| 116 | |||
| 117 | uint8_t lastpacketcnt = datacnt&0x03; |
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| 118 | if (lastpacketcnt > 0) { |
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| 119 | txMsg.DataLength = lastpacketcnt<<1; |
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| 120 | for (uint8_t i = 0; i < lastpacketcnt; i++) { |
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| 121 | txMsg.Data.words[i] = getRawData((datacnt&0xfc)|i); |
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| 122 | } |
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| 528 | arune | 123 | /* buffers will be filled when sending more than 2-3 messages, so retry until sent */ |
| 124 | //while (BIOS_CanSend(&txMsg) != CAN_OK) {} |
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| 527 | arune | 125 | BIOS_CanSend(&txMsg); |
| 126 | } |
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| 403 | arune | 127 | |
| 527 | arune | 128 | irTimeoutTime = Timebase_CurrentTime(); |
| 129 | state = STATE_IR_REPEAT; |
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| 130 | ir_timeout = 200; /* Set a default timeout */ |
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| 131 | } else if (returnval != IR_NO_DATA) { |
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| 132 | /* debug, send the returned message on errors (except for IR_NO_DATA-errors) */ |
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| 133 | txMsg.Id = ((CAN_SNS << CAN_SHIFT_CLASS) | (SNS_TYPE_IR << CAN_SHIFT_SNS_TYPE) | (IR_ID_DEBUG<<CAN_SHIFT_SNS_ID) | (NODE_ID << CAN_SHIFT_SNS_SID)); |
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| 134 | txMsg.DataLength = 1; |
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| 135 | txMsg.Data.bytes[0] = returnval; |
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| 136 | BIOS_CanSend(&txMsg); |
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| 137 | } |
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| 138 | |||
| 139 | } else if (state == STATE_IR_REPEAT) { |
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| 140 | /* check for new ir-data, if no new data during the timout-time then set state to IDLE */ |
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| 141 | if (time - irTimeoutTime >= ir_timeout) { |
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| 142 | state = STATE_IDLE; |
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| 143 | /* if the protocol was known then send a release-message */ |
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| 144 | if (ir_protocol != IR_PROTO_UNKNOWN) { |
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| 549 | arune | 145 | txMsg.Data.bytes[0] = IR_BUTTON_UP; |
| 527 | arune | 146 | BIOS_CanSend(&txMsg); |
| 147 | } |
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| 148 | } |
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| 149 | if (IrReceive_CheckIdle() == IR_OK) { |
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| 150 | irTimeoutTime = Timebase_CurrentTime(); |
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| 151 | } |
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| 152 | } |
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| 153 | |||
| 403 | arune | 154 | |
| 155 | if (rxMsgFull) { |
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| 527 | arune | 156 | /* No message reception functionality implemented */ |
| 157 | |||
| 158 | /* Flush the received message */ |
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| 403 | arune | 159 | rxMsgFull = 0; // |
| 160 | } |
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| 161 | } |
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| 162 | |||
| 163 | return 0; |
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| 164 | } |