a2f1d6959d
* Make most of the functions const correct
Used clang-tidy and sonarlint to help find places where const could
pretty easily applied. Also lot of hand work.
This commit does not yet touch handlers and typedefs of those.
* Fix Arduino uno handler_who_is() has extra parenthesis
For some reason there is extra parenthesis. Remove it this is more
likely buildable.
* Bugfix/bacapp: Fix uninitilized array_index
We have changed bacapp_snprintf_value() to be const correct. After that
we got
```
/home/runner/work/bacnet-stack/bacnet-stack/src/bacnet/bacapp.c:3183:27: warning: 4th function call argument is an uninitialized value [core.CallAndMessage]
ret_val = bacapp_snprintf_weeklyschedule(
^~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
1 warning generated.
```
So analyzer could now spot that we do not actually initilize array_index
at all. Fix this by setting array_index to zero. Note that I actually do
not know if zeroing is right thing to do here. I choose zero as if this
has worked before it is most likely that it will work with zero value.
* cmake: Add and ignore Wwrite-strings compiler option
Wwrite-strings helps find places where const correctness is broken.
Example it will warn about these
```C
void func1(char* str);
func("test") /* "test" is const so we should not pass it to func1().
char* func2()
{
return "test"; /* func2() should return const char*.
}
```
We still need to ignore it as not all are fixed but let's add it already
so we remember that it should be opened at some point.
---------
Co-authored-by: Kari Argillander <kari.argillander@fidelix.com>
342 lines
11 KiB
C
342 lines
11 KiB
C
/**************************************************************************
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*
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* Copyright (C) 2009 Steve Karg <skarg@users.sourceforge.net>
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*
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* SPDX-License-Identifier: MIT
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*
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*********************************************************************/
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#include <stdbool.h>
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#include <stdint.h>
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#include <stdlib.h>
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#include "hardware.h"
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#include "bacnet/basic/sys/fifo.h"
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#include "bacnet/basic/sys/mstimer.h"
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#include "led.h"
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#include "nvdata.h"
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/* me */
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#include "rs485.h"
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/* baud rate */
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static uint32_t Baud_Rate = 9600;
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/* The minimum time after the end of the stop bit of the final octet of a */
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/* received frame before a node may enable its EIA-485 driver: 40 bit times. */
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/* At 9600 baud, 40 bit times would be about 4.166 milliseconds */
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/* At 19200 baud, 40 bit times would be about 2.083 milliseconds */
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/* At 38400 baud, 40 bit times would be about 1.041 milliseconds */
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/* At 57600 baud, 40 bit times would be about 0.694 milliseconds */
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/* At 76800 baud, 40 bit times would be about 0.520 milliseconds */
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/* At 115200 baud, 40 bit times would be about 0.347 milliseconds */
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/* 40 bits is 4 octets including a start and stop bit with each octet */
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#define Tturnaround (40UL)
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/* turnaround_time_milliseconds = (Tturnaround*1000UL)/Baud_Rate; */
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/* buffer for storing received bytes - size must be power of two */
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static uint8_t Receive_Buffer_Data[256];
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static FIFO_BUFFER Receive_Buffer;
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static struct mstimer Silence_Timer;
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/****************************************************************************
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* DESCRIPTION: Determines the amount of silence time elapsed
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* RETURN: true if the amount of silence time has elapsed
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* NOTES: none
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*****************************************************************************/
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bool rs485_silence_time_elapsed(uint16_t milliseconds)
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{
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return (mstimer_elapsed(&Silence_Timer) > milliseconds);
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}
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/****************************************************************************
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* DESCRIPTION: Resets the silence timer
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* RETURN: nothing
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* NOTES: none
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*****************************************************************************/
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void rs485_silence_time_reset(void)
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{
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mstimer_set(&Silence_Timer, 0);
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}
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/****************************************************************************
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* DESCRIPTION: Configures the RTS output
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* RETURN: nothing
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* NOTES: none
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*****************************************************************************/
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static void rs485_rts_init(void)
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{
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/* configure the port pin as an output */
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BIT_SET(DDRD, DDD4);
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}
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/****************************************************************************
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* DESCRIPTION: enable the transmit-enable line on the RS-485 transceiver
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* RETURN: nothing
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* NOTES: none
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*****************************************************************************/
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void rs485_rts_enable(bool enable)
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{
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if (enable) {
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BIT_SET(PORTD, PD4);
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} else {
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BIT_CLEAR(PORTD, PD4);
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}
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}
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/****************************************************************************
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* DESCRIPTION: enable the UART receiver and interrupt
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* RETURN: nothing
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* NOTES: none
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*****************************************************************************/
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static void rs485_receiver_enable(void)
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{
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UCSR0B = _BV(TXEN0) | _BV(RXEN0) | _BV(RXCIE0);
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}
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/****************************************************************************
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* DESCRIPTION: delay for 40 bit times
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* RETURN: nothing
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* NOTES: none
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*****************************************************************************/
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void rs485_turnaround_delay(void)
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{
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uint8_t nbytes = 4;
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/* delay after reception before trasmitting - per MS/TP spec */
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/* Transmit 4 dummy bytes with RS485 driver off.
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This equals the 40 bit times (1 start, 8 data, 1 stop). */
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rs485_rts_enable(false);
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while (nbytes) {
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/* Send the data byte */
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UDR0 = 0xff;
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while (!BIT_CHECK(UCSR0A, UDRE0)) {
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/* do nothing - wait until Tx buffer is empty */
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}
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nbytes--;
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}
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while (!BIT_CHECK(UCSR0A, TXC0)) {
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/* do nothing - wait until the entire frame in the
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Transmit Shift Register has been shifted out */
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}
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/* Clear the Transmit Complete flag by writing a one to it. */
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BIT_SET(UCSR0A, TXC0);
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}
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/****************************************************************************
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* DESCRIPTION: Interrupt service routine for UART Receiver
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* RETURN: nothing
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* NOTES: none
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*****************************************************************************/
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ISR(USART0_RX_vect)
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{
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uint8_t data_byte;
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if (BIT_CHECK(UCSR0A, RXC0)) {
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/* data is available */
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data_byte = UDR0;
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#ifdef MSTP_MONITOR
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UDR1 = data_byte;
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#endif
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(void)FIFO_Put(&Receive_Buffer, data_byte);
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}
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}
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/****************************************************************************
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* DESCRIPTION: Checks for data on the receive UART, and handles errors
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* RETURN: none
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* NOTES: none
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*****************************************************************************/
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bool rs485_byte_available(uint8_t *data_register)
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{
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bool data_available = false; /* return value */
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if (!FIFO_Empty(&Receive_Buffer)) {
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led_on_interval(LED_4, 1);
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if (data_register) {
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*data_register = FIFO_Get(&Receive_Buffer);
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}
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data_available = true;
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}
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return data_available;
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}
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/****************************************************************************
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* DESCRIPTION: returns an error indication if errors are enabled
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* RETURN: nothing
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* NOTES: none
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*****************************************************************************/
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bool rs485_receive_error(void)
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{
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return false;
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}
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/****************************************************************************
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* DESCRIPTION: Transmits a frame using the UART
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* RETURN: none
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* NOTES: none
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*****************************************************************************/
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void rs485_bytes_send(const uint8_t *buffer, /* data to send */
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uint16_t nbytes)
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{ /* number of bytes of data */
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led_on(LED_5);
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while (!BIT_CHECK(UCSR0A, UDRE0)) {
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/* do nothing - wait until Tx buffer is empty */
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}
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while (nbytes) {
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/* Send the data byte */
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UDR0 = *buffer;
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#ifdef MSTP_MONITOR
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UDR1 = *buffer;
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#endif
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while (!BIT_CHECK(UCSR0A, UDRE0)) {
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/* do nothing - wait until Tx buffer is empty */
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}
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buffer++;
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nbytes--;
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}
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/* was the frame sent? */
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while (!BIT_CHECK(UCSR0A, TXC0)) {
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/* do nothing - wait until the entire frame in the
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Transmit Shift Register has been shifted out */
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}
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/* Clear the Transmit Complete flag by writing a one to it. */
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BIT_SET(UCSR0A, TXC0);
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rs485_silence_time_reset();
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led_off_delay(LED_5, 1);
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return;
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}
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/****************************************************************************
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* DESCRIPTION: Returns the baud rate that we are currently running at
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* RETURN: baud rate in bps
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* NOTES: none
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*****************************************************************************/
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uint32_t rs485_baud_rate(void)
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{
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return Baud_Rate;
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}
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/****************************************************************************
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* DESCRIPTION: configure the UART baud rate
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* RETURN: nothing
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* NOTES: none
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*****************************************************************************/
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static void rs485_baud_rate_configure(void)
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{
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/* 2x speed mode */
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BIT_SET(UCSR0A, U2X0);
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/* configure baud rate */
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UBRR0 = (F_CPU / (8UL * Baud_Rate)) - 1;
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}
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/****************************************************************************
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* DESCRIPTION: set the UART baud rate to a standard value
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* RETURN: true if the baud rate is valid
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* NOTES: none
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*****************************************************************************/
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bool rs485_baud_rate_set(uint32_t baud)
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{
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bool valid = true;
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uint8_t baud_k = 0;
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switch (baud) {
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case 9600:
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case 19200:
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case 38400:
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case 57600:
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case 76800:
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case 115200:
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Baud_Rate = baud;
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rs485_baud_rate_configure();
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/* store the baud rate */
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baud_k = baud / 1000;
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eeprom_bytes_write(NV_EEPROM_BAUD_K, &baud_k, 1);
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break;
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default:
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valid = false;
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break;
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}
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return valid;
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}
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/****************************************************************************
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* DESCRIPTION: initialize the hardware UART
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* RETURN: nothing
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* NOTES: none
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*****************************************************************************/
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static void rs485_usart_init(void)
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{
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/* enable the internal pullup on RXD0 */
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BIT_CLEAR(DDRD, DDD0);
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BIT_SET(PORTD, PD0);
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/* enable Transmit and Receive */
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UCSR0B = _BV(TXEN0) | _BV(RXEN0);
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/* Set USART Control and Status Register n C */
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/* Asynchronous USART 8-bit data, No parity, 1 stop */
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/* Set USART Mode Select: UMSELn1 UMSELn0 = 00 for Asynchronous USART */
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/* Set Parity Mode: UPMn1 UPMn0 = 00 for Parity Disabled */
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/* Set Stop Bit Select: USBSn = 0 for 1 stop bit */
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/* Set Character Size: UCSZn2 UCSZn1 UCSZn0 = 011 for 8-bit */
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/* Clock Polarity: UCPOLn = 0 when asynchronous mode is used. */
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UCSR0C = _BV(UCSZ01) | _BV(UCSZ00);
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power_usart0_enable();
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}
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/****************************************************************************
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* DESCRIPTION: read any non-volatile data
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* RETURN: nothing
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* NOTES: none
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*****************************************************************************/
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static void rs485_init_nvdata(void)
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{
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uint8_t baud_k = 9; /* from EEPROM value */
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eeprom_bytes_read(NV_EEPROM_BAUD_K, &baud_k, 1);
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switch (baud_k) {
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case 9:
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Baud_Rate = 9600;
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break;
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case 19:
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Baud_Rate = 19200;
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break;
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case 38:
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Baud_Rate = 38400;
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break;
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case 57:
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Baud_Rate = 57600;
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break;
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case 76:
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Baud_Rate = 76800;
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break;
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case 115:
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Baud_Rate = 115200;
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break;
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default:
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/* not configured yet */
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Baud_Rate = 38400;
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baud_k = 38400 / 1000;
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eeprom_bytes_write(NV_EEPROM_BAUD_K, &baud_k, 1);
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break;
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}
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rs485_baud_rate_configure();
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}
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/****************************************************************************
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* DESCRIPTION: initialize the module
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* RETURN: nothing
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* NOTES: none
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*****************************************************************************/
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void rs485_init(void)
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{
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FIFO_Init(&Receive_Buffer, &Receive_Buffer_Data[0],
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(unsigned)sizeof(Receive_Buffer_Data));
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rs485_silence_time_reset();
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rs485_rts_init();
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rs485_usart_init();
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rs485_init_nvdata();
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rs485_receiver_enable();
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rs485_rts_enable(false);
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}
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