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//////////////////////////////////////////////////////
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// First things first, all the includes we need //
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//////////////////////////////////////////////////////
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#include "hardware.h"
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#include "afsk.h"
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#include "hardware.h" // We need the header for this code
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#include "afsk.h" // We also need to know about the AFSK modem
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#include <cpu/irq.h>
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#include <avr/io.h>
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#include <avr/interrupt.h>
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#include <cpu/irq.h> // Interrupt functions from BertOS
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#include <avr/io.h> // AVR IO functions from BertOS
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#include <avr/interrupt.h> // AVR interrupt functions from BertOS
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// A reference to our modem "object"
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static Afsk *context;
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//////////////////////////////////////////////////////
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// And now for the actual hardware functions //
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//////////////////////////////////////////////////////
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// This function initializes the ADC and configures
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// it the way we need.
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void hw_afsk_adcInit(int ch, Afsk *_context)
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{
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// Store a reference to our modem "object"
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// FIXME: rename this
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context = _context;
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// Also make sure that we are not trying to use
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// a pin that can't be used for analog input
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ASSERT(ch <= 5);
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// We need to do some configuration on the Timer/Counter Control
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//////////////////////////////////////////////////////
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// First things first, all the includes we need //
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//////////////////////////////////////////////////////
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#ifndef FSK_MODEM_HW
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#define FSK_MODEM_HW
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#include "cfg/cfg_arch.h"
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#include "cfg/cfg_arch.h" // Architecture configuration
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#include <avr/io.h>
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#include <avr/io.h> // AVR IO functions from BertOS
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//////////////////////////////////////////////////////
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// Definitions and some useful macros //
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//////////////////////////////////////////////////////
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// Forward declaration of our modem "object"
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struct Afsk;
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// Function declarations
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void hw_afsk_adcInit(int ch, struct Afsk *_ctx);
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void hw_afsk_dacInit(int ch, struct Afsk *_ctx);
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// ADC initialization
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// A shorthand macro for initializing the ADC.
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// It just calls the actual ADC initialization code
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// in "hardware.c"
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#define AFSK_ADC_INIT(ch, ctx) hw_afsk_adcInit(ch, ctx)
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// Here's some macros for controlling the RX/TX LEDs
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// THE _INIT() functions writes to the DDRB register
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// to configure the pins as output pins, and the _ON()
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// and _OFF() functions writes to the PORT registers
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// to turn the pins on or off.
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#define LED_TX_INIT() do { DDRB |= BV(1); } while (0)
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#define LED_TX_ON() do { PORTB |= BV(1); } while (0)
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#define LED_TX_OFF() do { PORTB &= ~BV(1); } while (0)
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@ -28,8 +44,19 @@ void hw_afsk_dacInit(int ch, struct Afsk *_ctx);
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#define PTT_ON() do { PORTD |= BV(3); } while (0)
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#define PTT_OFF() do { PORTD &= ~BV(3); } while (0)
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// Initialization, start and stop for DAC
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#define AFSK_DAC_INIT(ch, ctx) do { (void)ch, (void)ctx; DDRD |= 0xF4; DDRB |= BV(3); } while (0)
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// Initialization of the DAC pins. The DDRD register
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// configures pins 0 through 7 for input or output.
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// DDR stands for Data Direction Register. By setting
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// it to 0xF8 we set 11111000, which means the pins
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// 3, 4, 5, 6 and 7 will be set to output.
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// FIXME: remove ch and ctx
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#define AFSK_DAC_INIT(ch, ctx) do { (void)ch, (void)ctx; DDRD |= 0xF8; DDRB |= BV(3); } while (0)
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// These two macros start and stop the DAC being
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// triggered in our timer interrupt. For starting
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// it, we set a boolean flag to true, and false for
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// stopping it. We also turn on and off pin 3 to trigger
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// the PTT of the radio.
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#define AFSK_DAC_IRQ_START(ch) do { (void)ch; extern bool hw_afsk_dac_isr; PORTB |= BV(3); hw_afsk_dac_isr = true; } while (0)
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#define AFSK_DAC_IRQ_STOP(ch) do { (void)ch; extern bool hw_afsk_dac_isr; PORTB &= ~BV(3); hw_afsk_dac_isr = false; } while (0)
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@ -1,2 +1,2 @@
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#define VERS_BUILD 359
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#define VERS_BUILD 361
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#define VERS_HOST "vixen"
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