Finishing up the Epson QX-10 module
- Typing and modifiers fully working - Still some features left to implement * Stop input * Diagnostic test * Setting interval before starting repeat rate * More comments * Handling LED stats
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@ -322,7 +322,7 @@ static uint8_t epsonqx10_ColemakMap[] = {
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0, // 0x8C
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KEY_GUI, // 0x8D
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0, // 0x8E
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KEY_RIGHT_CTRL, // 0x8F
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KEY_ALT, // 0x8F
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};
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@ -147,6 +147,7 @@ inline void scan_setup()
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// Prescaler is 1
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// Twice every 1200 baud (actually 1200.1, timer isn't accurate enough)
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// This is close to 820 us, but a bit slower
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cli();
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TCCR1B = 0x09;
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OCR1AH = 0x1A;
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OCR1AL = 0x09;
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@ -171,16 +172,19 @@ inline void scan_setup()
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// Synchrounous USART mode
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// Tx Data on Falling Edge, Rx on Rising
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UCSR1C = 0x47;
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sei();
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// Reset the keyboard before scanning, we might be in a wierd state
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_delay_ms( 1 );
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_delay_ms( 50 );
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scan_resetKeyboard();
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_delay_ms( 5000 ); // Wait for the reset command to finish enough for new settings to take hold afterwards
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scan_setRepeatRate( 0x00 ); // Set the fastest repeat rate
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}
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// Main Detection Loop
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// Nothing is required here with the Epson QX-10 Keyboards as the interrupts take care of the inputs
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inline uint8_t scan_loop()
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{
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return 0;
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@ -251,12 +255,14 @@ void processKeyValue( uint8_t keyValue )
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// Modifier Release Detected
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else
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{
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uint8_t actualKeyValue = keyValue | 0x01;
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// Check for the released key, and shift the other keys lower on the buffer
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uint8_t c;
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for ( c = 0; c < KeyIndex_BufferUsed; c++ )
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{
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// Key to release found
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if ( KeyIndex_Buffer[c] == keyValue )
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if ( KeyIndex_Buffer[c] == actualKeyValue )
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{
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// Shift keys from c position
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for ( uint8_t k = c; k < KeyIndex_BufferUsed - 1; k++ )
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@ -376,13 +382,19 @@ uint8_t scan_sendData( uint8_t dataPayload )
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}
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// Signal KeyIndex_Buffer that it has been properly read
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inline void scan_finishedWithBuffer( void )
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{
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return;
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}
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// Signal that the keys have been properly sent over USB
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// For the Epson QX-10 only the modifier keys have release signals
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// Therefore, only 5 keys could possibly be assigned as a modifiers
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// The rest of the keys are single press (like the Kaypro keyboards)
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//
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// However, this differentiation causes complications on how the key signals are discarded and used
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// The single keypresses must be discarded immediately, while the modifiers must be kept
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inline void scan_finishedWithBuffer( void )
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inline void scan_finishedWithUSBBuffer( void )
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{
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uint8_t foundModifiers = 0;
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@ -401,7 +413,13 @@ inline void scan_finishedWithBuffer( void )
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// Adjust the size of the new Key Buffer
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KeyIndex_BufferUsed = foundModifiers;
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return;
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/* Non-working, too slow (too much traffic on the bus)
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// Poll the modifiers using an input command
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uint8_t oldBuffer = KeyIndex_BufferUsed;
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KeyIndex_BufferUsed = 0;
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if ( oldBuffer )
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scan_readSwitchStatus();
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*/
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}
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// Reset/Hold keyboard
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@ -56,6 +56,7 @@ uint8_t scan_loop( void );
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uint8_t scan_sendData( uint8_t dataPayload );
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void scan_finishedWithBuffer( void );
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void scan_finishedWithUSBBuffer( void );
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void scan_lockKeyboard( void );
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void scan_unlockKeyboard( void );
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void scan_resetKeyboard( void );
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@ -27,6 +27,7 @@
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// AVR Includes
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// Project Includes
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#include <scan_loop.h>
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#include "usb_keyboard_debug.h"
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// Local Includes
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@ -82,5 +83,8 @@ inline void usb_send(void)
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// Clear modifiers and keys
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USBKeys_Modifiers = 0;
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USBKeys_Sent = 0;
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// Signal Scan Module we are finishedA
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scan_finishedWithUSBBuffer();
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}
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