Misc general spacing cleanup
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@ -496,7 +496,7 @@
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}
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void MarlinSerial::writeNoHandshake(const uint8_t c) {
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void MarlinSerial::writeNoHandshake(const uint8_t c) {
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while (!TEST(M_UCSRxA, M_UDREx)) ;
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while (!TEST(M_UCSRxA, M_UDREx)) { /* nada */ }
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M_UDRx = c;
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M_UDRx = c;
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}
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}
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@ -431,7 +431,7 @@ HAL_PWM_LPC1768_ISR {
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ISR_table = active_table; // MR0 means new values could have been loaded so set everything
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ISR_table = active_table; // MR0 means new values could have been loaded so set everything
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if (PWM_table_swap) LPC_PWM1->MCR = LPC1768_PWM_interrupt_mask; // enable new PWM individual channel interrupts
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if (PWM_table_swap) LPC_PWM1->MCR = LPC1768_PWM_interrupt_mask; // enable new PWM individual channel interrupts
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for (uint8_t i = 0; (i < NUM_PWMS) ; i++) {
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for (uint8_t i = 0; i < NUM_PWMS; i++) {
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if(ISR_table[i].active_flag && !((ISR_table[i].logical_pin == 11) ||
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if(ISR_table[i].active_flag && !((ISR_table[i].logical_pin == 11) ||
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(ISR_table[i].logical_pin == 4) ||
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(ISR_table[i].logical_pin == 4) ||
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(ISR_table[i].logical_pin == 6)))
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(ISR_table[i].logical_pin == 6)))
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@ -10,7 +10,7 @@ namespace PersistentStore {
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bool access_start();
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bool access_start();
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bool access_finish();
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bool access_finish();
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bool write_data(int &pos, const uint8_t *value, uint16_t size, uint16_t *crc);
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bool write_data(int &pos, const uint8_t *value, uint16_t size, uint16_t *crc);
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void read_data(int &pos, uint8_t* value, uint16_t size, uint16_t *crc) ;
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void read_data(int &pos, uint8_t* value, uint16_t size, uint16_t *crc);
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} // PersistentStore
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} // PersistentStore
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} // HAL
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} // HAL
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@ -73,7 +73,7 @@ void SYSTICK_InternalInit(uint32_t time)
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* 1/SystemCoreClock * (2^24) * 1000 (ms)
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* 1/SystemCoreClock * (2^24) * 1000 (ms)
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*/
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*/
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//check time value is available or not
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//check time value is available or not
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maxtime = (1<<24)/(SystemCoreClock / 1000) ;
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maxtime = (1<<24)/(SystemCoreClock / 1000);
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if(time > maxtime)
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if(time > maxtime)
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//Error loop
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//Error loop
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while(1);
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while(1);
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@ -105,7 +105,7 @@ void SYSTICK_ExternalInit(uint32_t freq, uint32_t time)
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* 1/freq * (2^24) * 1000 (ms)
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* 1/freq * (2^24) * 1000 (ms)
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*/
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*/
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//check time value is available or not
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//check time value is available or not
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maxtime = (1<<24)/(freq / 1000) ;
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maxtime = (1<<24)/(freq / 1000);
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if (time>maxtime)
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if (time>maxtime)
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//Error Loop
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//Error Loop
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while(1);
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while(1);
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