mirror of
https://github.com/grymoire/i2c_puppet-Linux.git
synced 2024-12-27 05:48:21 +01:00
167 lines
3.9 KiB
C
167 lines
3.9 KiB
C
#include "touchpad.h"
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#include "keyboard.h"
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#include <hardware/i2c.h>
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#include <pico/binary_info.h>
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#include <pico/stdlib.h>
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#include <stdio.h>
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#define DEV_ADDR 0x3B
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#define REG_PID 0x00
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#define REG_REV 0x01
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#define REG_MOTION 0x02
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#define REG_DELTA_X 0x03
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#define REG_DELTA_Y 0x04
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#define REG_DELTA_XY_H 0x05
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#define REG_CONFIG 0x11
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#define REG_OBSERV 0x2E
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#define REG_MBURST 0x42
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#define BIT_MOTION_MOT (1 << 7)
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#define BIT_MOTION_OVF (1 << 4)
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#define BIT_CONFIG_HIRES (1 << 7)
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#define BIT_OBSERV_RUN (0 << 6)
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#define BIT_OBSERV_REST1 (1 << 6)
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#define BIT_OBSERV_REST2 (2 << 6)
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#define BIT_OBSERV_REST3 (3 << 6)
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#define SWIPE_COOLDOWN_TIME_MS 100 // time to wait before generating a new swipe event
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#define SWIPE_RELEASE_DELAY_MS 10 // time to wait before sending key release event
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#define MOTION_IS_SWIPE(i, j) (((i >= 15) || (i <= -15)) && ((j >= -5) && (j <= 5)))
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static i2c_inst_t *i2c_instances[2] = { i2c0, i2c1 };
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static struct
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{
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struct touch_callback *callbacks;
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uint32_t last_swipe_time;
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i2c_inst_t *i2c;
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} self;
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static uint8_t read_register8(uint8_t reg)
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{
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uint8_t val;
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i2c_write_blocking(self.i2c, DEV_ADDR, ®, sizeof(reg), true);
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i2c_read_blocking(self.i2c, DEV_ADDR, &val, sizeof(val), false);
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return val;
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}
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//static void write_register8(uint8_t reg, uint8_t val)
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//{
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// uint8_t buffer[2] = { reg, val };
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// i2c_write_blocking(self.i2c, DEV_ADDR, buffer, sizeof(buffer), false);
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//}
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int64_t release_key(alarm_id_t id, void *user_data)
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{
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(void)id;
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const int data = (int)user_data;
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keyboard_inject_event((char)data, KEY_STATE_RELEASED);
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return 0;
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}
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void touchpad_gpio_irq(uint gpio, uint32_t events)
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{
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if (gpio != PIN_TP_MOTION)
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return;
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if (!(events & GPIO_IRQ_EDGE_FALL))
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return;
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const uint8_t motion = read_register8(REG_MOTION);
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if (motion & BIT_MOTION_MOT) {
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int8_t x = read_register8(REG_DELTA_X);
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int8_t y = read_register8(REG_DELTA_Y);
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x = ((x < 127) ? x : (x - 256)) * -1;
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y = ((y < 127) ? y : (y - 256));
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if (keyboard_is_mod_on(KEY_MOD_ID_ALT)) {
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if (to_ms_since_boot(get_absolute_time()) - self.last_swipe_time > SWIPE_COOLDOWN_TIME_MS) {
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char key = '\0';
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if (MOTION_IS_SWIPE(y, x)) {
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key = (y < 0) ? KEY_JOY_UP : KEY_JOY_DOWN;
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} else if (MOTION_IS_SWIPE(x, y)) {
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key = (x < 0) ? KEY_JOY_LEFT : KEY_JOY_RIGHT;
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}
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if (key != '\0') {
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keyboard_inject_event(key, KEY_STATE_PRESSED);
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// we need to allow the usb a bit of time to send the press, so schedule the release after a bit
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add_alarm_in_ms(SWIPE_RELEASE_DELAY_MS, release_key, (void*)(int)key, true);
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self.last_swipe_time = to_ms_since_boot(get_absolute_time());
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}
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}
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} else {
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if (self.callbacks) {
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struct touch_callback *cb = self.callbacks;
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while (cb) {
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cb->func(x, y);
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cb = cb->next;
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}
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}
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}
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}
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}
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void touchpad_add_touch_callback(struct touch_callback *callback)
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{
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// first callback
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if (!self.callbacks) {
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self.callbacks = callback;
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return;
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}
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// find last and insert after
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struct touch_callback *cb = self.callbacks;
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while (cb->next)
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cb = cb->next;
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cb->next = callback;
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}
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void touchpad_init(void)
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{
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// determine the instance based on SCL pin, hope you didn't screw up the SDA pin!
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self.i2c = i2c_instances[(PIN_SCL / 2) % 2];
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i2c_init(self.i2c, 100 * 1000);
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gpio_set_function(PIN_SDA, GPIO_FUNC_I2C);
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gpio_pull_up(PIN_SDA);
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gpio_set_function(PIN_SCL, GPIO_FUNC_I2C);
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gpio_pull_up(PIN_SCL);
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// Make the I2C pins available to picotool
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bi_decl(bi_2pins_with_func(PIN_SDA, PIN_SCL, GPIO_FUNC_I2C));
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gpio_init(PIN_TP_SHUTDOWN);
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gpio_set_dir(PIN_TP_SHUTDOWN, GPIO_OUT);
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gpio_put(PIN_TP_SHUTDOWN, 0);
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gpio_init(PIN_TP_MOTION);
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gpio_set_dir(PIN_TP_MOTION, GPIO_IN);
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gpio_set_irq_enabled(PIN_TP_MOTION, GPIO_IRQ_EDGE_FALL, true);
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gpio_init(PIN_TP_RESET);
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gpio_set_dir(PIN_TP_RESET, GPIO_OUT);
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gpio_put(PIN_TP_RESET, 0);
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sleep_ms(100);
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gpio_put(PIN_TP_RESET, 1);
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}
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