Fix key release change detection in polling mode
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93687e1b04
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c8d8eef090
@ -61,7 +61,7 @@ void pinchange_interupt(void) __interrupt(IRQ_PINCHANGE)
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if (P0_ICEN & BIT(1))
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p6_changed = 1;
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// clear input change flags
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P0_ICEN = BIT(5);
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@ -80,6 +80,8 @@ void timer1_interupt(void) __interrupt(IRQ_TIMER1)
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TF1 = 0;
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}
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// {{{ Key scanning
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// Keyboard has 12 columns and 6 rows directly connected to GPIOs.
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//
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// C1 P95
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@ -262,6 +264,9 @@ void ext_int_deassert(void)
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P1_P9M0 |= BIT(0);
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}
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// }}}
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// {{{ I2C
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#define I2C_N_REGS 16
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static uint8_t i2c_transfer = 0x00;
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@ -274,7 +279,7 @@ static uint8_t i2c_cmd_len = 0;
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//XXX: we need this to be able to determine when it's safe to go back to sleep/power down
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void i2c_b_interupt(void) __interrupt(IRQ_I2CB)
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{
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{
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uint8_t saved_page = PAGESW;
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uint8_t tmp;
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PAGESW = 0;
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@ -289,7 +294,7 @@ void i2c_b_interupt(void) __interrupt(IRQ_I2CB)
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P0_I2CBCR1 &= ~BIT(7); // clear data pending
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P0_I2CBINT &= ~BIT(7);
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}
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// handle RX
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if (P0_I2CBINT & BIT(6)) {
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tmp = P0_I2CBDB;
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@ -301,7 +306,7 @@ void i2c_b_interupt(void) __interrupt(IRQ_I2CB)
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P0_I2CBCR1 &= ~BIT(7); // clear data pending
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P0_I2CBINT &= ~BIT(6);
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}
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// handle stop condition
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if (P0_I2CBINT & BIT(4)) {
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i2c_addr = 0;
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@ -312,7 +317,7 @@ void i2c_b_interupt(void) __interrupt(IRQ_I2CB)
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PAGESW = saved_page;
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}
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//
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//
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// Slave mode I2C for communication with the SoC
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//
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// - address is 0x15
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@ -380,7 +385,7 @@ void main(void)
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P0_DEVPD1 |= BIT(6) | BIT(5) | BIT(3) | BIT(1); // PWM A, timer 3, SPI, LVD
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P0_DEVPD2 |= BIT(6) | BIT(3) | BIT(0); // PWM C, PWM B, I2C A
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P0_DEVPD3 |= BIT(2) | BIT(1) | BIT(0); // PWM E, PWM D, PWM F
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// keep UART, SPI, and I2C A in reset
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//P0_PRST |= BIT(0) | BIT(2) | BIT(3);
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@ -427,30 +432,29 @@ void main(void)
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run_tasks = 0;
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#if POLL_INPUT
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// every 10ms we will scan the keyboard keys state and check for changes
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// every 20ms we will scan the keyboard keys state and check for changes
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uint8_t keys[12];
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uint8_t active_rows = keyscan_scan(keys);
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if (active_rows) {
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// pressing FN+PINE+F switches to flashing mode (keys 1:2 3:5 5:2, electrically)
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if (keys[0] & BIT(2) && keys[2] & BIT(5) && keys[4] & BIT(2)) {
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EA = 0;
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__asm__("mov r6,#0x5a");
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__asm__("mov r7,#0xe7");
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__asm__("ljmp 0x0118");
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}
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// check for changes
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if (!memcmp(i2c_regs + 4, keys, 12))
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continue;
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// signal interrupt
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memcpy(i2c_regs + 4, keys, 12);
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ext_int_assert();
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delay_us(100);
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ext_int_deassert();
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// pressing FN+PINE+F switches to flashing mode (keys 1:2 3:5 5:2, electrically)
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if (keys[0] & BIT(2) && keys[2] & BIT(5) && keys[4] & BIT(2)) {
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EA = 0;
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__asm__("mov r6,#0x5a");
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__asm__("mov r7,#0xe7");
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__asm__("ljmp 0x0118");
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}
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// check for changes
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if (!memcmp(i2c_regs + 4, keys, 12))
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continue;
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// signal interrupt
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memcpy(i2c_regs + 4, keys, 12);
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ext_int_assert();
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delay_us(100);
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ext_int_deassert();
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#else
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//XXX: not figured out yet, not tested, not working
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if (scan_active) {
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uint8_t active_rows = keyscan_scan(i2c_regs + 4);
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if (!active_rows) {
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@ -461,7 +465,7 @@ void main(void)
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//PCON |= BIT(1);
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//__asm__("nop");
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}
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// pressing FN+PINE+F switches to flashing mode (keys 1:2 3:5 5:2, electrically)
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if (i2c_regs[4 + 0] & BIT(2) && i2c_regs[4 + 2] & BIT(5) && i2c_regs[4 + 4] & BIT(2)) {
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EA = 0;
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@ -472,7 +476,7 @@ void main(void)
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continue;
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}
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if (keyscan_idle_is_pressed()) {
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scan_active = 1;
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keyscan_active();
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