Add double speed test and change to atmega328p
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@ -1,4 +1,4 @@
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#pragma once
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#pragma once
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#define F_CPU 20000000
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#define F_CPU 16'000'000
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#include <util/delay.h>
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#include <util/delay.h>
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@ -8,44 +8,63 @@
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#include "io/io.hpp"
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#include "io/io.hpp"
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#include "uart/uart.hpp"
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#include "uart/uart.hpp"
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#define UART1_INT_VECTORS
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#define UART0_INT_VECTORS
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#include "uart/hardware1.hpp"
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#include "uart/hardware0.hpp"
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void doubleSpeedTest()
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{
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using namespace uart;
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Uart<Hardware0<Config<115200>, Driven::INTERRUPT, Mode::ASYNCHRONOUS>> serial;
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serial.init();
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uint8_t counter = 100;
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uint8_t data;
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while (counter) {
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if (serial.rxByte(data)) {
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serial.txByte(data);
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--counter;
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}
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}
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serial.flushTx();
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}
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void newUartUsage()
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void newUartUsage()
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{
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{
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using namespace uart;
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using namespace uart;
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Uart<Hardware1<Config<115200>, Driven::BLOCKING, Mode::ASYNCHRONOUS>> serial1;
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Uart<Hardware0<Config<115200>, Driven::BLOCKING, Mode::ASYNCHRONOUS>> serial;
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serial1.init();
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serial.init();
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serial1 << "New uart hi from RAM. " << F("New uart hi from flash\r\n");
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serial << "New uart hi from RAM. " << F("New uart hi from flash\r\n");
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while (false) {
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while (false) {
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uint8_t received = 0;
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uint8_t received = 0;
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while (!serial1.peek())
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while (!serial.peek())
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;
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;
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{
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{
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serial1 << F("Peeked: ");
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serial << F("Peeked: ");
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serial1.txByte(received);
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serial.txByte(received);
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serial1 << F("\r\n");
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serial << F("\r\n");
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}
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}
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if (serial1.rxByte(received)) {
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if (serial.rxByte(received)) {
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serial1 << F("Received: ");
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serial << F("Received: ");
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serial1.txByte(received);
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serial.txByte(received);
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serial1 << F("\r\n");
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serial << F("\r\n");
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}
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}
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}
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}
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serial1.flushTx();
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serial.flushTx();
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}
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}
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void newUartUsage2()
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void newUartUsage2()
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{
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{
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using namespace uart;
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using namespace uart;
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Uart<Hardware1<Config<115200>, Driven::INTERRUPT>> serial1;
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Uart<Hardware0<Config<115200>, Driven::INTERRUPT>> serial1;
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auto ramString = "Hello World from RAM. ";
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auto ramString = "Hello World from RAM. ";
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auto flashString = F("Hello World from flash\r\n");
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auto flashString = F("Hello World from flash\r\n");
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@ -61,7 +80,7 @@ void newUartUsage2()
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void newUartStreamOverloads()
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void newUartStreamOverloads()
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{
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{
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using namespace uart;
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using namespace uart;
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Uart<Hardware1<Config<115200>, Driven::BLOCKING, Mode::ASYNCHRONOUS>> serial;
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Uart<Hardware0<Config<115200>, Driven::BLOCKING, Mode::ASYNCHRONOUS>> serial;
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serial.init();
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serial.init();
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bool bVal = true;
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bool bVal = true;
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@ -191,17 +210,18 @@ void spiTest()
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static inline void initUart(const uint32_t baudRate)
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static inline void initUart(const uint32_t baudRate)
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{
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{
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UBRR1 = static_cast<uint16_t>((F_CPU + 8 * baudRate) / (16 * baudRate) - 1);
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UBRR0 = static_cast<uint16_t>((F_CPU + 8 * baudRate) / (16 * baudRate) - 1);
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UCSR1C = (1 << UCSZ11) | (1 << UCSZ10);
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UCSR0A = 0;
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UCSR1B = (1 << RXEN1) | (1 << TXEN1);
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UCSR0C = (1 << UCSZ01) | (1 << UCSZ00);
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UCSR0B = (1 << RXEN0) | (1 << TXEN0);
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}
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}
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static inline void txUart(uint8_t byte)
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static inline void txUart(uint8_t byte)
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{
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{
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while (!(UCSR1A & (1 << UDRE1)))
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while (!(UCSR0A & (1 << UDRE0)))
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;
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;
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UDR1 = byte;
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UDR0 = byte;
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}
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}
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static inline void txString(const char *str)
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static inline void txString(const char *str)
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@ -220,11 +240,11 @@ static inline void txString(const detail::FlashString *str)
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static inline void flushTx()
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static inline void flushTx()
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{
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{
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while (!(UCSR1A & (1 << UDRE1)))
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while (!(UCSR0A & (1 << UDRE0)))
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;
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;
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while (!(UCSR1A & (1 << TXC1)))
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while (!(UCSR0A & (1 << TXC0)))
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;
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;
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UCSR1A |= (1 << TXC1);
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UCSR0A |= (1 << TXC0);
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}
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}
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void optimalUartTest()
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void optimalUartTest()
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@ -244,6 +264,8 @@ int main()
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{
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{
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sei();
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sei();
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doubleSpeedTest();
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newUartUsage2();
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newUartUsage2();
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optimalUartTest();
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optimalUartTest();
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newUartStreamOverloads();
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newUartStreamOverloads();
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@ -1 +1 @@
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Subproject commit 068a179cef0d1eebe17771270fa82cc3d693c9a5
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Subproject commit ce31ef017f738baaca6f0cbf99dac9d59b5e6811
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@ -1 +1 @@
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Subproject commit 41b9ef74f9138e6eb8559a961d951049db1d7c67
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Subproject commit 04b6782ec457fb22759a097892b863a3ec6eaab4
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@ -5,7 +5,7 @@
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<ProjectVersion>7.0</ProjectVersion>
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<ProjectVersion>7.0</ProjectVersion>
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<ToolchainName>com.Atmel.AVRGCC8.CPP</ToolchainName>
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<ToolchainName>com.Atmel.AVRGCC8.CPP</ToolchainName>
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<ProjectGuid>dce6c7e3-ee26-4d79-826b-08594b9ad897</ProjectGuid>
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<ProjectGuid>dce6c7e3-ee26-4d79-826b-08594b9ad897</ProjectGuid>
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<avrdevice>ATmega1284P</avrdevice>
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<avrdevice>ATmega328P</avrdevice>
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<avrdeviceseries>none</avrdeviceseries>
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<avrdeviceseries>none</avrdeviceseries>
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<OutputType>Executable</OutputType>
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<OutputType>Executable</OutputType>
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<Language>CPP</Language>
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<Language>CPP</Language>
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@ -30,7 +30,7 @@
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<EraseKey />
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<EraseKey />
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<avrtool>com.atmel.avrdbg.tool.atmelice</avrtool>
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<avrtool>com.atmel.avrdbg.tool.atmelice</avrtool>
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<avrtoolserialnumber>J41800099437</avrtoolserialnumber>
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<avrtoolserialnumber>J41800099437</avrtoolserialnumber>
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<avrdeviceexpectedsignature>0x1E9705</avrdeviceexpectedsignature>
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<avrdeviceexpectedsignature>0x1E950F</avrdeviceexpectedsignature>
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<com_atmel_avrdbg_tool_jtagicemkii>
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<com_atmel_avrdbg_tool_jtagicemkii>
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<ToolOptions>
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<ToolOptions>
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<InterfaceProperties>
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<InterfaceProperties>
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@ -43,20 +43,9 @@
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<ToolName>JTAGICE mkII</ToolName>
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<ToolName>JTAGICE mkII</ToolName>
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</com_atmel_avrdbg_tool_jtagicemkii>
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</com_atmel_avrdbg_tool_jtagicemkii>
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<avrtoolinterface>ISP</avrtoolinterface>
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<avrtoolinterface>ISP</avrtoolinterface>
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<avrtoolinterfaceclock>5000000</avrtoolinterfaceclock>
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<avrtoolinterfaceclock>125000</avrtoolinterfaceclock>
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<AAFDebugger>
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<AAFDebugger>
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<AAFDebugFiles>
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<AAFDebugFiles>
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<DebugFile>
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<path>\Debug\uart.lss</path>
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<AAFSetting>
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<Label>Lss Files</Label>
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<Extention>.lss</Extention>
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<Regex>^\s*(?<address>[a-f0-9]*):\s*.*$</Regex>
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<DebugEnabled>true</DebugEnabled>
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<RegexGroups>address</RegexGroups>
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<DebuggerExpression>$pc</DebuggerExpression>
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</AAFSetting>
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</DebugFile>
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</AAFDebugFiles>
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</AAFDebugFiles>
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</AAFDebugger>
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</AAFDebugger>
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<AsfFrameworkConfig>
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<AsfFrameworkConfig>
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