Deprecate split transactions status field (#16023)
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ed8ab3e32c
commit
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@ -26,21 +26,4 @@ void soft_serial_initiator_init(void);
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// target is interrupt accept side
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// target is interrupt accept side
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void soft_serial_target_init(void);
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void soft_serial_target_init(void);
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// initiator result
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bool soft_serial_transaction(int sstd_index);
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#define TRANSACTION_END 0
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#define TRANSACTION_NO_RESPONSE 0x1
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#define TRANSACTION_DATA_ERROR 0x2
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#define TRANSACTION_TYPE_ERROR 0x4
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int soft_serial_transaction(int sstd_index);
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// target status
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// *SSTD_t.status has
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// initiator:
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// TRANSACTION_END
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// or TRANSACTION_NO_RESPONSE
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// or TRANSACTION_DATA_ERROR
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// target:
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// TRANSACTION_DATA_ERROR
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// or TRANSACTION_ACCEPTED
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#define TRANSACTION_ACCEPTED 0x8
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int soft_serial_get_and_clean_status(int sstd_index);
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@ -409,13 +409,7 @@ ISR(SERIAL_PIN_INTERRUPT) {
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// target recive phase
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// target recive phase
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if (trans->initiator2target_buffer_size > 0) {
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if (trans->initiator2target_buffer_size > 0) {
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if (serial_recive_packet((uint8_t *)split_trans_initiator2target_buffer(trans), trans->initiator2target_buffer_size)) {
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serial_recive_packet((uint8_t *)split_trans_initiator2target_buffer(trans), trans->initiator2target_buffer_size);
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*trans->status = TRANSACTION_ACCEPTED;
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} else {
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*trans->status = TRANSACTION_DATA_ERROR;
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}
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} else {
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*trans->status = TRANSACTION_ACCEPTED;
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}
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}
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sync_recv(); // weit initiator output to high
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sync_recv(); // weit initiator output to high
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@ -424,19 +418,13 @@ ISR(SERIAL_PIN_INTERRUPT) {
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/////////
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/////////
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// start transaction by initiator
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// start transaction by initiator
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//
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//
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// int soft_serial_transaction(int sstd_index)
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// bool soft_serial_transaction(int sstd_index)
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//
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//
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// Returns:
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// TRANSACTION_END
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// TRANSACTION_NO_RESPONSE
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// TRANSACTION_DATA_ERROR
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// this code is very time dependent, so we need to disable interrupts
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// this code is very time dependent, so we need to disable interrupts
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int soft_serial_transaction(int sstd_index) {
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bool soft_serial_transaction(int sstd_index) {
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if (sstd_index > NUM_TOTAL_TRANSACTIONS) return TRANSACTION_TYPE_ERROR;
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if (sstd_index > NUM_TOTAL_TRANSACTIONS) return false;
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split_transaction_desc_t *trans = &split_transaction_table[sstd_index];
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split_transaction_desc_t *trans = &split_transaction_table[sstd_index];
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if (!trans->status) return TRANSACTION_TYPE_ERROR; // not registered
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cli();
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cli();
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// signal to the target that we want to start a transaction
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// signal to the target that we want to start a transaction
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@ -463,9 +451,8 @@ int soft_serial_transaction(int sstd_index) {
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// slave failed to pull the line low, assume not present
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// slave failed to pull the line low, assume not present
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serial_output();
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serial_output();
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serial_high();
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serial_high();
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*trans->status = TRANSACTION_NO_RESPONSE;
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sei();
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sei();
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return TRANSACTION_NO_RESPONSE;
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return false;
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}
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}
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_delay_sub_us(SLAVE_INT_ACK_WIDTH_UNIT);
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_delay_sub_us(SLAVE_INT_ACK_WIDTH_UNIT);
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}
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}
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@ -476,9 +463,8 @@ int soft_serial_transaction(int sstd_index) {
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if (!serial_recive_packet((uint8_t *)split_trans_target2initiator_buffer(trans), trans->target2initiator_buffer_size)) {
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if (!serial_recive_packet((uint8_t *)split_trans_target2initiator_buffer(trans), trans->target2initiator_buffer_size)) {
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serial_output();
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serial_output();
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serial_high();
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serial_high();
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*trans->status = TRANSACTION_DATA_ERROR;
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sei();
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sei();
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return TRANSACTION_DATA_ERROR;
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return false;
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}
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}
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}
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}
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@ -493,19 +479,8 @@ int soft_serial_transaction(int sstd_index) {
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// always, release the line when not in use
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// always, release the line when not in use
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sync_send();
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sync_send();
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*trans->status = TRANSACTION_END;
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sei();
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sei();
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return TRANSACTION_END;
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return true;
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}
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int soft_serial_get_and_clean_status(int sstd_index) {
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split_transaction_desc_t *trans = &split_transaction_table[sstd_index];
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cli();
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int retval = *trans->status;
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*trans->status = 0;
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;
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sei();
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return retval;
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}
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}
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#endif
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#endif
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@ -179,8 +179,6 @@ void interrupt_handler(void *arg) {
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// wait for the sync to finish sending
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// wait for the sync to finish sending
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serial_delay();
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serial_delay();
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*trans->status = (checksum_computed == checksum_received) ? TRANSACTION_ACCEPTED : TRANSACTION_DATA_ERROR;
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// end transaction
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// end transaction
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serial_input();
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serial_input();
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@ -193,17 +191,12 @@ void interrupt_handler(void *arg) {
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/////////
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/////////
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// start transaction by initiator
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// start transaction by initiator
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//
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//
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// int soft_serial_transaction(int sstd_index)
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// bool soft_serial_transaction(int sstd_index)
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//
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//
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// Returns:
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// TRANSACTION_END
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// TRANSACTION_NO_RESPONSE
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// TRANSACTION_DATA_ERROR
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// this code is very time dependent, so we need to disable interrupts
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// this code is very time dependent, so we need to disable interrupts
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int soft_serial_transaction(int sstd_index) {
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bool soft_serial_transaction(int sstd_index) {
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if (sstd_index > NUM_TOTAL_TRANSACTIONS) return TRANSACTION_TYPE_ERROR;
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if (sstd_index > NUM_TOTAL_TRANSACTIONS) return false;
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split_transaction_desc_t *trans = &split_transaction_table[sstd_index];
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split_transaction_desc_t *trans = &split_transaction_table[sstd_index];
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if (!trans->status) return TRANSACTION_TYPE_ERROR; // not registered
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// TODO: remove extra delay between transactions
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// TODO: remove extra delay between transactions
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serial_delay();
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serial_delay();
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@ -226,7 +219,7 @@ int soft_serial_transaction(int sstd_index) {
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// slave failed to pull the line low, assume not present
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// slave failed to pull the line low, assume not present
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dprintf("serial::NO_RESPONSE\n");
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dprintf("serial::NO_RESPONSE\n");
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chSysUnlock();
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chSysUnlock();
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return TRANSACTION_NO_RESPONSE;
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return false;
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}
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}
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// if the slave is present syncronize with it
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// if the slave is present syncronize with it
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@ -266,7 +259,7 @@ int soft_serial_transaction(int sstd_index) {
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serial_high();
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serial_high();
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chSysUnlock();
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chSysUnlock();
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return TRANSACTION_DATA_ERROR;
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return false;
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}
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}
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// always, release the line when not in use
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// always, release the line when not in use
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@ -274,5 +267,5 @@ int soft_serial_transaction(int sstd_index) {
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serial_output();
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serial_output();
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chSysUnlock();
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chSysUnlock();
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return TRANSACTION_END;
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return true;
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}
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}
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@ -36,7 +36,7 @@ static SerialDriver* serial_driver = &SERIAL_USART_DRIVER;
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static inline bool react_to_transactions(void);
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static inline bool react_to_transactions(void);
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static inline bool __attribute__((nonnull)) receive(uint8_t* destination, const size_t size);
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static inline bool __attribute__((nonnull)) receive(uint8_t* destination, const size_t size);
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static inline bool __attribute__((nonnull)) send(const uint8_t* source, const size_t size);
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static inline bool __attribute__((nonnull)) send(const uint8_t* source, const size_t size);
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static inline int initiate_transaction(uint8_t sstd_index);
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static inline bool initiate_transaction(uint8_t sstd_index);
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static inline void usart_clear(void);
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static inline void usart_clear(void);
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/**
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/**
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@ -206,14 +206,12 @@ static inline bool react_to_transactions(void) {
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to signal that the slave is ready to receive possible transaction buffers */
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to signal that the slave is ready to receive possible transaction buffers */
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sstd_index ^= HANDSHAKE_MAGIC;
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sstd_index ^= HANDSHAKE_MAGIC;
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if (!send(&sstd_index, sizeof(sstd_index))) {
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if (!send(&sstd_index, sizeof(sstd_index))) {
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*trans->status = TRANSACTION_DATA_ERROR;
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return false;
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return false;
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}
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}
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/* Receive transaction buffer from the master. If this transaction requires it.*/
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/* Receive transaction buffer from the master. If this transaction requires it.*/
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if (trans->initiator2target_buffer_size) {
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if (trans->initiator2target_buffer_size) {
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if (!receive(split_trans_initiator2target_buffer(trans), trans->initiator2target_buffer_size)) {
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if (!receive(split_trans_initiator2target_buffer(trans), trans->initiator2target_buffer_size)) {
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*trans->status = TRANSACTION_DATA_ERROR;
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return false;
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return false;
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}
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}
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}
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}
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@ -226,12 +224,10 @@ static inline bool react_to_transactions(void) {
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/* Send transaction buffer to the master. If this transaction requires it. */
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/* Send transaction buffer to the master. If this transaction requires it. */
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if (trans->target2initiator_buffer_size) {
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if (trans->target2initiator_buffer_size) {
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if (!send(split_trans_target2initiator_buffer(trans), trans->target2initiator_buffer_size)) {
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if (!send(split_trans_target2initiator_buffer(trans), trans->target2initiator_buffer_size)) {
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*trans->status = TRANSACTION_DATA_ERROR;
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return false;
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return false;
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}
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}
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}
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}
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*trans->status = TRANSACTION_ACCEPTED;
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return true;
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return true;
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}
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}
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@ -252,11 +248,9 @@ void soft_serial_initiator_init(void) {
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* @brief Start transaction from the master half to the slave half.
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* @brief Start transaction from the master half to the slave half.
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*
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*
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* @param index Transaction Table index of the transaction to start.
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* @param index Transaction Table index of the transaction to start.
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* @return int TRANSACTION_NO_RESPONSE in case of Timeout.
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* @return bool Indicates success of transaction.
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* TRANSACTION_TYPE_ERROR in case of invalid transaction index.
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* TRANSACTION_END in case of success.
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*/
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*/
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int soft_serial_transaction(int index) {
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bool soft_serial_transaction(int index) {
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/* Clear the receive queue, to start with a clean slate.
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/* Clear the receive queue, to start with a clean slate.
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* Parts of failed transactions or spurious bytes could still be in it. */
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* Parts of failed transactions or spurious bytes could still be in it. */
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usart_clear();
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usart_clear();
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@ -266,25 +260,19 @@ int soft_serial_transaction(int index) {
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/**
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/**
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* @brief Initiate transaction to slave half.
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* @brief Initiate transaction to slave half.
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*/
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*/
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static inline int initiate_transaction(uint8_t sstd_index) {
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static inline bool initiate_transaction(uint8_t sstd_index) {
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/* Sanity check that we are actually starting a valid transaction. */
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/* Sanity check that we are actually starting a valid transaction. */
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if (sstd_index >= NUM_TOTAL_TRANSACTIONS) {
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if (sstd_index >= NUM_TOTAL_TRANSACTIONS) {
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dprintln("USART: Illegal transaction Id.");
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dprintln("USART: Illegal transaction Id.");
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return TRANSACTION_TYPE_ERROR;
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return false;
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}
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}
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split_transaction_desc_t* trans = &split_transaction_table[sstd_index];
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split_transaction_desc_t* trans = &split_transaction_table[sstd_index];
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/* Transaction is not registered. Abort. */
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if (!trans->status) {
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dprintln("USART: Transaction not registered.");
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return TRANSACTION_TYPE_ERROR;
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}
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/* Send transaction table index to the slave, which doubles as basic handshake token. */
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/* Send transaction table index to the slave, which doubles as basic handshake token. */
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if (!send(&sstd_index, sizeof(sstd_index))) {
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if (!send(&sstd_index, sizeof(sstd_index))) {
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dprintln("USART: Send Handshake failed.");
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dprintln("USART: Send Handshake failed.");
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return TRANSACTION_TYPE_ERROR;
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return false;
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}
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}
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uint8_t sstd_index_shake = 0xFF;
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uint8_t sstd_index_shake = 0xFF;
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@ -295,14 +283,14 @@ static inline int initiate_transaction(uint8_t sstd_index) {
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*/
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*/
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if (!receive(&sstd_index_shake, sizeof(sstd_index_shake)) || (sstd_index_shake != (sstd_index ^ HANDSHAKE_MAGIC))) {
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if (!receive(&sstd_index_shake, sizeof(sstd_index_shake)) || (sstd_index_shake != (sstd_index ^ HANDSHAKE_MAGIC))) {
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dprintln("USART: Handshake failed.");
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dprintln("USART: Handshake failed.");
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return TRANSACTION_NO_RESPONSE;
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return false;
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}
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}
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/* Send transaction buffer to the slave. If this transaction requires it. */
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/* Send transaction buffer to the slave. If this transaction requires it. */
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if (trans->initiator2target_buffer_size) {
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if (trans->initiator2target_buffer_size) {
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if (!send(split_trans_initiator2target_buffer(trans), trans->initiator2target_buffer_size)) {
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if (!send(split_trans_initiator2target_buffer(trans), trans->initiator2target_buffer_size)) {
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dprintln("USART: Send failed.");
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dprintln("USART: Send failed.");
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return TRANSACTION_NO_RESPONSE;
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return false;
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}
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}
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}
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}
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@ -310,9 +298,9 @@ static inline int initiate_transaction(uint8_t sstd_index) {
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if (trans->target2initiator_buffer_size) {
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if (trans->target2initiator_buffer_size) {
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if (!receive(split_trans_target2initiator_buffer(trans), trans->target2initiator_buffer_size)) {
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if (!receive(split_trans_target2initiator_buffer(trans), trans->target2initiator_buffer_size)) {
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dprintln("USART: Receive failed.");
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dprintln("USART: Receive failed.");
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return TRANSACTION_NO_RESPONSE;
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return false;
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}
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}
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}
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}
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return TRANSACTION_END;
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return true;
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}
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}
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@ -35,11 +35,11 @@
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#define sizeof_member(type, member) sizeof(((type *)NULL)->member)
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#define sizeof_member(type, member) sizeof(((type *)NULL)->member)
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#define trans_initiator2target_initializer_cb(member, cb) \
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#define trans_initiator2target_initializer_cb(member, cb) \
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{ &dummy, sizeof_member(split_shared_memory_t, member), offsetof(split_shared_memory_t, member), 0, 0, cb }
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{ sizeof_member(split_shared_memory_t, member), offsetof(split_shared_memory_t, member), 0, 0, cb }
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#define trans_initiator2target_initializer(member) trans_initiator2target_initializer_cb(member, NULL)
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#define trans_initiator2target_initializer(member) trans_initiator2target_initializer_cb(member, NULL)
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#define trans_target2initiator_initializer_cb(member, cb) \
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#define trans_target2initiator_initializer_cb(member, cb) \
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{ &dummy, 0, 0, sizeof_member(split_shared_memory_t, member), offsetof(split_shared_memory_t, member), cb }
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{ 0, 0, sizeof_member(split_shared_memory_t, member), offsetof(split_shared_memory_t, member), cb }
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#define trans_target2initiator_initializer(member) trans_target2initiator_initializer_cb(member, NULL)
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#define trans_target2initiator_initializer(member) trans_target2initiator_initializer_cb(member, NULL)
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#define transport_write(id, data, length) transport_execute_transaction(id, data, length, NULL, 0)
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#define transport_write(id, data, length) transport_execute_transaction(id, data, length, NULL, 0)
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@ -658,10 +658,9 @@ static void pointing_handlers_slave(matrix_row_t master_matrix[], matrix_row_t s
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////////////////////////////////////////////////////
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////////////////////////////////////////////////////
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uint8_t dummy;
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split_transaction_desc_t split_transaction_table[NUM_TOTAL_TRANSACTIONS] = {
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split_transaction_desc_t split_transaction_table[NUM_TOTAL_TRANSACTIONS] = {
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// Set defaults
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// Set defaults
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[0 ...(NUM_TOTAL_TRANSACTIONS - 1)] = {NULL, 0, 0, 0, 0, 0},
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[0 ...(NUM_TOTAL_TRANSACTIONS - 1)] = {0, 0, 0, 0, 0},
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#ifdef USE_I2C
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#ifdef USE_I2C
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[I2C_EXECUTE_CALLBACK] = trans_initiator2target_initializer(transaction_id),
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[I2C_EXECUTE_CALLBACK] = trans_initiator2target_initializer(transaction_id),
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@ -27,7 +27,6 @@ typedef void (*slave_callback_t)(uint8_t initiator2target_buffer_size, const voi
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// Split transaction Descriptor
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// Split transaction Descriptor
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typedef struct _split_transaction_desc_t {
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typedef struct _split_transaction_desc_t {
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uint8_t * status;
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uint8_t initiator2target_buffer_size;
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uint8_t initiator2target_buffer_size;
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uint16_t initiator2target_offset;
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uint16_t initiator2target_offset;
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uint8_t target2initiator_buffer_size;
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uint8_t target2initiator_buffer_size;
|
||||||
|
@ -99,7 +99,7 @@ bool transport_execute_transaction(int8_t id, const void *initiator2target_buf,
|
|||||||
memcpy(split_trans_initiator2target_buffer(trans), initiator2target_buf, len);
|
memcpy(split_trans_initiator2target_buffer(trans), initiator2target_buf, len);
|
||||||
}
|
}
|
||||||
|
|
||||||
if (soft_serial_transaction(id) != TRANSACTION_END) {
|
if (!soft_serial_transaction(id)) {
|
||||||
return false;
|
return false;
|
||||||
}
|
}
|
||||||
|
|
||||||
|
Loading…
Reference in New Issue
Block a user