Merge branch 'ibm4704_fix_protocol'
This commit is contained in:
commit
81137b7a61
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@ -8,6 +8,7 @@ Keyboard initialization process takes a few seconds at start up. During that you
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Update
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Update
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------
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------
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2015/05/05 Added keymaps for 107-key, 77-key and 50-key. Thanks, orihalcon @ geekhack!
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2015/05/05 Added keymaps for 107-key, 77-key and 50-key. Thanks, orihalcon @ geekhack!
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2015/05/19 Fixed a protocol handling bug.
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@ -51,9 +51,9 @@ along with this program. If not, see <http://www.gnu.org/licenses/>.
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#define IBM4704_DATA_DDR DDRD
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#define IBM4704_DATA_DDR DDRD
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#define IBM4704_DATA_BIT 0
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#define IBM4704_DATA_BIT 0
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/* Pin interrupt on rising edge */
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/* Pin interrupt on rising edge of clock */
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#define IBM4704_INT_INIT() do { EICRA |= ((1<<ISC11)|(0<<ISC10)); } while (0)
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#define IBM4704_INT_INIT() do { EICRA |= ((1<<ISC11)|(1<<ISC10)); } while (0)
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#define IBM4704_INT_ON() do { EIMSK |= (1<<INT1); } while (0)
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#define IBM4704_INT_ON() do { EIFR |= (1<<INTF1); EIMSK |= (1<<INT1); } while (0)
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#define IBM4704_INT_OFF() do { EIMSK &= ~(1<<INT1); } while (0)
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#define IBM4704_INT_OFF() do { EIMSK &= ~(1<<INT1); } while (0)
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#define IBM4704_INT_VECT INT1_vect
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#define IBM4704_INT_VECT INT1_vect
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@ -57,15 +57,15 @@ Keyboard to Host
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----------------
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----------------
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Data bits are LSB first and Pairty is odd. Clock has around 60us high and 30us low part.
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Data bits are LSB first and Pairty is odd. Clock has around 60us high and 30us low part.
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____ __ __ __ __ __ __ __ __ __ ________
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____ __ __ __ __ __ __ __ __ __ _______
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Clock \____/ \_/ \_/ \_/ \_/ \_/ \_/ \_/ \_/ \_/
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Clock \_____/ \_/ \_/ \_/ \_/ \_/ \_/ \_/ \_/ \_/
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____ ____ ____ ____ ____ ____ ____ ____ ____ ____
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____ ____ ____ ____ ____ ____ ____ ____ ____ ____
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Data ____/ X____X____X____X____X____X____X____X____X____X________
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Data ____/ X____X____X____X____X____X____X____X____X____X________
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Start 0 1 2 3 4 5 6 7 P Stop
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Start 0 1 2 3 4 5 6 7 P Stop
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Start bit: can be long as 300-350us.
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Start bit: can be long as 300-350us.
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Inhibit: Pull Data line down to inhibit keyboard to send.
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Inhibit: Pull Data line down to inhibit keyboard to send.
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Timing: Host reads bit while Clock is hi.
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Timing: Host reads bit while Clock is hi.(rising edge)
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Stop bit: Keyboard pulls down Data line to lo after 9th clock.
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Stop bit: Keyboard pulls down Data line to lo after 9th clock.
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@ -166,13 +166,14 @@ Data sent from host:
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| `-----`--- scan code
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| `-----`--- scan code
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`------------- enable bit(0: enable repeat, 1: enable break)
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`------------- enable bit(0: enable repeat, 1: enable break)
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00-77 Enable repeat(78-7F: invalid scancode)
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00-79 Enable repeat
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80-F7 Enable break(F8-FF: invalid scancode)
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80-F9 Enable break(FA-FF are used as other commands, see above.)
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FE Resend(011ah) no need to use
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FE Resend(011ah) no need to use
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FF End(0114h) exits FC command mode.
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FF End(0114h) exits FC command mode.
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Response from keyboard:
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Response from keyboard:
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FD Out of bound - Invalid scancode
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FD Out of bound - Invalid scancode
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-- OK - No response means that command is accepted.
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Examples:
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Examples:
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To enable break code of all keys.
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To enable break code of all keys.
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@ -67,35 +67,31 @@ uint8_t matrix_cols(void)
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static void enable_break(void)
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static void enable_break(void)
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{
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{
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uint8_t ret;
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print("Enable break: ");
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print("Enable break: ");
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// valid scancode: 00-79h
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// valid scancode: 00-79h
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for (uint8_t code = 0; code < 0x7A; code++) {
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for (uint8_t code = 0; code < 0x7A; code++) {
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while (ibm4704_send(0x80|code)) _delay_ms(1);
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while (ibm4704_send(0x80|code)) _delay_ms(10);
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// get none when ok, get FD when out of bound
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_delay_ms(5); // wait for response
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_delay_ms(5);
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// No response(FF) when ok, FD when out of bound
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if ((ret = ibm4704_recv()) != 0xff) {
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xprintf("s%02X:r%02X ", code, ibm4704_recv());
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xprintf("c%02X:r%02X ", code, ret);
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}
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}
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_delay_ms(1);
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while (ibm4704_send(0xFF)) { _delay_ms(10); } // End
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}
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_delay_us(1000);
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while (ibm4704_send(0xFF)) { _delay_ms(1); } // End
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print("End\n");
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print("End\n");
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}
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}
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void matrix_setup(void)
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{
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ibm4704_init();
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}
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void matrix_init(void)
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void matrix_init(void)
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{
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{
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debug_enable = true;
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debug_enable = true;
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ibm4704_init();
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matrix_clear();
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_delay_ms(2000); // wait for starting up debug console
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print("IBM 4704 converter\n");
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print("IBM 4704 converter\n");
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while (ibm4704_send(0xFE)) _delay_ms(1); // resend
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matrix_clear();
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_delay_ms(5);
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_delay_ms(2000); // wait for keyboard starting up
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xprintf("Keyboard ID: %02X\n", ibm4704_recv());
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xprintf("Keyboard ID: %02X\n", ibm4704_recv());
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enable_break();
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enable_break();
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}
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}
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@ -85,6 +85,8 @@ void suspend_power_down(void)
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power_down(WDTO_15MS);
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power_down(WDTO_15MS);
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}
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}
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__attribute__ ((weak)) void matrix_power_up(void) {}
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__attribute__ ((weak)) void matrix_power_down(void) {}
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bool suspend_wakeup_condition(void)
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bool suspend_wakeup_condition(void)
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{
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{
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matrix_power_up();
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matrix_power_up();
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@ -62,6 +62,12 @@ static bool has_ghost_in_row(uint8_t row)
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#endif
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#endif
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__attribute__ ((weak)) void matrix_setup(void) {}
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void keyboard_setup(void)
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{
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matrix_setup();
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}
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void keyboard_init(void)
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void keyboard_init(void)
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{
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{
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timer_init();
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timer_init();
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@ -58,13 +58,15 @@ static inline bool IS_RELEASED(keyevent_t event) { return (!IS_NOEVENT(event) &&
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}
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}
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/* it runs once at early stage of startup before keyboard_init. */
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void keyboard_setup(void);
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/* it runs once after initializing host side protocol, debug and MCU peripherals. */
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void keyboard_init(void);
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void keyboard_init(void);
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/* it runs repeatedly in main loop */
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void keyboard_task(void);
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void keyboard_task(void);
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/* it runs when host LED status is updated */
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void keyboard_set_leds(uint8_t leds);
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void keyboard_set_leds(uint8_t leds);
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__attribute__ ((weak)) void matrix_power_up(void) {}
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__attribute__ ((weak)) void matrix_power_down(void) {}
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#ifdef __cplusplus
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#ifdef __cplusplus
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}
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}
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#endif
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#endif
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@ -43,7 +43,9 @@ extern "C" {
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uint8_t matrix_rows(void);
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uint8_t matrix_rows(void);
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/* number of matrix columns */
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/* number of matrix columns */
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uint8_t matrix_cols(void);
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uint8_t matrix_cols(void);
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/* intialize matrix for scaning. should be called once. */
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/* should be called at early stage of startup before matrix_init.(optional) */
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void matrix_setup(void);
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/* intialize matrix for scaning. */
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void matrix_init(void);
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void matrix_init(void);
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/* scan all key states on matrix */
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/* scan all key states on matrix */
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uint8_t matrix_scan(void);
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uint8_t matrix_scan(void);
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@ -21,9 +21,10 @@ uint8_t ibm4704_error = 0;
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void ibm4704_init(void)
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void ibm4704_init(void)
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{
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{
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inhibit(); // keep keyboard from sending
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IBM4704_INT_INIT();
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IBM4704_INT_INIT();
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IBM4704_INT_ON();
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IBM4704_INT_ON();
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idle();
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idle(); // allow keyboard sending
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}
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}
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/*
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/*
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@ -104,22 +105,6 @@ uint8_t ibm4704_recv_response(void)
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return rbuf_dequeue();
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return rbuf_dequeue();
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}
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}
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/*
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Keyboard to Host
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----------------
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Data bits are LSB first and Parity is odd. Clock has around 60us high and 30us low part.
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____ __ __ __ __ __ __ __ __ __ ________
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Clock \____/ \_/ \_/ \_/ \_/ \_/ \_/ \_/ \_/ \_/
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____ ____ ____ ____ ____ ____ ____ ____ ____ ____
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Data ____/ X____X____X____X____X____X____X____X____X____X________
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Start 0 1 2 3 4 5 6 7 P Stop
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Start bit: can be long as 300-350us.
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Inhibit: Pull Data line down to inhibit keyboard to send.
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Timing: Host reads bit while Clock is hi.
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Stop bit: Keyboard pulls down Data line to lo after 9th clock.
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*/
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uint8_t ibm4704_recv(void)
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uint8_t ibm4704_recv(void)
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{
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{
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if (rbuf_has_data()) {
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if (rbuf_has_data()) {
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@ -129,26 +114,35 @@ uint8_t ibm4704_recv(void)
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}
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}
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}
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}
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/*
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Keyboard to Host
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----------------
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Data bits are LSB first and Parity is odd. Clock has around 60us high and 30us low part.
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____ __ __ __ __ __ __ __ __ __ _______
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Clock \_____/ \_/ \_/ \_/ \_/ \_/ \_/ \_/ \_/ \_/
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____ ____ ____ ____ ____ ____ ____ ____ ____ ____
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Data ____/ X____X____X____X____X____X____X____X____X____X________
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Start 0 1 2 3 4 5 6 7 P Stop
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Start bit: can be long as 300-350us.
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Inhibit: Pull Data line down to inhibit keyboard to send.
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Timing: Host reads bit while Clock is hi.(rising edge)
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Stop bit: Keyboard pulls down Data line to lo after 9th clock.
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*/
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ISR(IBM4704_INT_VECT)
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ISR(IBM4704_INT_VECT)
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{
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{
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static enum {
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static enum {
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INIT, START, BIT0, BIT1, BIT2, BIT3, BIT4, BIT5, BIT6, BIT7, PARITY,
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BIT0, BIT1, BIT2, BIT3, BIT4, BIT5, BIT6, BIT7, PARITY, STOP
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} state = INIT;
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} state = BIT0;
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// LSB first
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// LSB first
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static uint8_t data = 0;
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static uint8_t data = 0;
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// Odd parity
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// Odd parity
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static uint8_t parity = false;
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static uint8_t parity = false;
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ibm4704_error = 0;
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ibm4704_error = 0;
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// return unless falling edge
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if (clock_in()) { goto RETURN; } // why this occurs?
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state++;
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switch (state) {
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switch (state) {
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case START:
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// Data:Low
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WAIT(data_hi, 10, state);
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break;
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case BIT0:
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case BIT0:
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case BIT1:
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case BIT1:
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case BIT2:
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case BIT2:
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@ -169,6 +163,10 @@ ISR(IBM4704_INT_VECT)
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}
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}
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if (!parity)
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if (!parity)
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goto ERROR;
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goto ERROR;
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break;
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case STOP:
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// Data:Low
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WAIT(data_lo, 100, state);
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rbuf_enqueue(data);
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rbuf_enqueue(data);
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ibm4704_error = IBM4704_ERR_NONE;
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ibm4704_error = IBM4704_ERR_NONE;
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goto DONE;
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goto DONE;
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@ -176,13 +174,14 @@ ISR(IBM4704_INT_VECT)
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default:
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default:
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goto ERROR;
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goto ERROR;
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}
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}
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state++;
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goto RETURN;
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goto RETURN;
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ERROR:
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ERROR:
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ibm4704_error = state;
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ibm4704_error = state;
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while (ibm4704_send(0xFE)) _delay_ms(1); // resend
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while (ibm4704_send(0xFE)) _delay_ms(1); // resend
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xprintf("R:%02X%02X\n", state, data);
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xprintf("R:%02X%02X\n", state, data);
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DONE:
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DONE:
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state = INIT;
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state = BIT0;
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data = 0;
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data = 0;
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parity = false;
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parity = false;
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RETURN:
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RETURN:
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@ -544,7 +544,7 @@ int8_t sendchar(uint8_t c)
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/*******************************************************************************
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/*******************************************************************************
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* main
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* main
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******************************************************************************/
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******************************************************************************/
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static void SetupHardware(void)
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static void setup_mcu(void)
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{
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{
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/* Disable watchdog if enabled by bootloader/fuses */
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/* Disable watchdog if enabled by bootloader/fuses */
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MCUSR &= ~(1 << WDRF);
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MCUSR &= ~(1 << WDRF);
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@ -552,7 +552,10 @@ static void SetupHardware(void)
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/* Disable clock division */
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/* Disable clock division */
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clock_prescale_set(clock_div_1);
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clock_prescale_set(clock_div_1);
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}
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static void setup_usb(void)
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{
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// Leonardo needs. Without this USB device is not recognized.
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// Leonardo needs. Without this USB device is not recognized.
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USB_Disable();
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USB_Disable();
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@ -566,7 +569,9 @@ static void SetupHardware(void)
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int main(void) __attribute__ ((weak));
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int main(void) __attribute__ ((weak));
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int main(void)
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int main(void)
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{
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{
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SetupHardware();
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setup_mcu();
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keyboard_setup();
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setup_usb();
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sei();
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sei();
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/* wait for USB startup & debug output */
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/* wait for USB startup & debug output */
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@ -46,6 +46,8 @@ int main(void)
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// set for 16 MHz clock
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// set for 16 MHz clock
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CPU_PRESCALE(0);
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CPU_PRESCALE(0);
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keyboard_setup();
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// Initialize the USB, and then wait for the host to set configuration.
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// Initialize the USB, and then wait for the host to set configuration.
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// If the Teensy is powered without a PC connected to the USB port,
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// If the Teensy is powered without a PC connected to the USB port,
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// this will wait forever.
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// this will wait forever.
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||||||
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