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improvements for Cirque Pinnacle trackpads (#17091)
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@ -89,15 +89,15 @@ POINTING_DEVICE_DRIVER = cirque_pinnacle_spi
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This supports the Cirque Pinnacle 1CA027 Touch Controller, which is used in the TM040040, TM035035 and the TM023023 trackpads. These are I2C or SPI compatible, and both configurations are supported.
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| Setting | Description | Default |
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|---------------------------------|---------------------------------------------------------------------------------|-----------------------|
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|`CIRQUE_PINNACLE_X_LOWER` | (Optional) The minimum reachable X value on the sensor. | `127` |
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|`CIRQUE_PINNACLE_X_UPPER` | (Optional) The maximum reachable X value on the sensor. | `1919` |
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|`CIRQUE_PINNACLE_Y_LOWER` | (Optional) The minimum reachable Y value on the sensor. | `63` |
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|`CIRQUE_PINNACLE_Y_UPPER` | (Optional) The maximum reachable Y value on the sensor. | `1471` |
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|`CIRQUE_PINNACLE_ATTENUATION` | (Optional) Sets the attenuation of the sensor data. | `ADC_ATTENUATE_4X` |
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|`CIRQUE_PINNACLE_TAPPING_TERM` | (Optional) Length of time that a touch can be to be considered a tap. | `TAPPING_TERM`/`200` |
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|`CIRQUE_PINNACLE_TOUCH_DEBOUNCE` | (Optional) Length of time that a touch can be to be considered a tap. | `TAPPING_TERM`/`200` |
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| Setting | Description | Default |
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|-------------------------------- |-----------------------------------------------------------------------|--------------------- |
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|`CIRQUE_PINNACLE_X_LOWER` | (Optional) The minimum reachable X value on the sensor. | `127` |
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|`CIRQUE_PINNACLE_X_UPPER` | (Optional) The maximum reachable X value on the sensor. | `1919` |
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|`CIRQUE_PINNACLE_Y_LOWER` | (Optional) The minimum reachable Y value on the sensor. | `63` |
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|`CIRQUE_PINNACLE_Y_UPPER` | (Optional) The maximum reachable Y value on the sensor. | `1471` |
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|`CIRQUE_PINNACLE_ATTENUATION` | (Optional) Sets the attenuation of the sensor data. | `ADC_ATTENUATE_4X` |
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|`CIRQUE_PINNACLE_TAPPING_TERM` | (Optional) Length of time that a touch can be to be considered a tap. | `TAPPING_TERM`/`200` |
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|`CIRQUE_PINNACLE_TOUCH_DEBOUNCE` | (Optional) Length of time that a touch can be to be considered a tap. | `TAPPING_TERM`/`200` |
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**`CIRQUE_PINNACLE_ATTENUATION`** is a measure of how much data is suppressed in regards to sensitivity. The higher the attenuation, the less sensitive the touchpad will be.
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@ -122,6 +122,9 @@ Default attenuation is set to 4X, although if you are using a thicker overlay (s
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Default Scaling/CPI is 1024.
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Also see the `POINTING_DEVICE_TASK_THROTTLE_MS`, which defaults to 10ms when using Cirque Pinnacle, which matches the internal update rate of the position registers (in standard configuration). Advanced configuration for pen/stylus usage might require lower values.
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### Pimoroni Trackball
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To use the Pimoroni Trackball module, add this to your `rules.mk`:
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@ -1,8 +1,13 @@
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// Copyright (c) 2018 Cirque Corp. Restrictions apply. See: www.cirque.com/sw-license
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// based on https://github.com/cirque-corp/Cirque_Pinnacle_1CA027/tree/master/Circular_Trackpad
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// with modifications and changes for QMK
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// refer to documentation: Gen2 and Gen3 (Pinnacle ASIC) at https://www.cirque.com/documentation
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#include "cirque_pinnacle.h"
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#include "print.h"
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#include "debug.h"
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#include "wait.h"
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#include "timer.h"
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// Registers for RAP
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// clang-format off
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@ -41,12 +46,6 @@
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#ifndef CIRQUE_PINNACLE_ATTENUATION
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# define CIRQUE_PINNACLE_ATTENUATION ADC_ATTENUATE_4X
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#endif
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// Register config values for this demo
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#define SYSCONFIG_1_VALUE 0x00
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#define FEEDCONFIG_1_VALUE 0x03 // 0x03 for absolute mode 0x01 for relative mode
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#define FEEDCONFIG_2_VALUE 0x1C // 0x1F for normal functionality 0x1E for intellimouse disabled
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#define Z_IDLE_COUNT_VALUE 0x05
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// clang-format on
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bool touchpad_init;
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@ -114,16 +113,14 @@ void cirque_pinnacle_clear_flags() {
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// Enables/Disables the feed
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void cirque_pinnacle_enable_feed(bool feedEnable) {
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uint8_t temp;
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RAP_ReadBytes(FEEDCONFIG_1, &temp, 1); // Store contents of FeedConfig1 register
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if (feedEnable) {
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temp |= 0x01; // Set Feed Enable bit
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RAP_Write(0x04, temp);
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} else {
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temp &= ~0x01; // Clear Feed Enable bit
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RAP_Write(0x04, temp);
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}
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RAP_Write(FEEDCONFIG_1, temp);
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}
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/* ERA (Extended Register Access) Functions */
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@ -195,7 +192,7 @@ void cirque_pinnacle_tune_edge_sensitivity(void) {
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ERA_ReadBytes(0x0168, &temp, 1);
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}
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/* Pinnacle-based TM040040 Functions */
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/* Pinnacle-based TM040040/TM035035/TM023023 Functions */
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void cirque_pinnacle_init(void) {
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#if defined(POINTING_DEVICE_DRIVER_cirque_pinnacle_spi)
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spi_init();
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@ -204,18 +201,44 @@ void cirque_pinnacle_init(void) {
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#endif
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touchpad_init = true;
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// Host clears SW_CC flag
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cirque_pinnacle_clear_flags();
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// Host configures bits of registers 0x03 and 0x05
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RAP_Write(SYSCONFIG_1, SYSCONFIG_1_VALUE);
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RAP_Write(FEEDCONFIG_2, FEEDCONFIG_2_VALUE);
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// SysConfig1 (Low Power Mode)
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// Bit 0: Reset, 1=Reset
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// Bit 1: Shutdown, 1=Shutdown, 0=Active
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// Bit 2: Sleep Enable, 1=low power mode, 0=normal mode
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// send a RESET command now, in case QMK had a soft-reset without a power cycle
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RAP_Write(SYSCONFIG_1, 0x01);
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wait_ms(30); // Pinnacle needs 10-15ms to boot, so wait long enough before configuring
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RAP_Write(SYSCONFIG_1, 0x00);
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wait_us(50);
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// Host enables preferred output mode (absolute)
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RAP_Write(FEEDCONFIG_1, FEEDCONFIG_1_VALUE);
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// FeedConfig2 (Feature flags for Relative Mode Only)
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// Bit 0: IntelliMouse Enable, 1=enable, 0=disable
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// Bit 1: All Taps Disable, 1=disable, 0=enable
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// Bit 2: Secondary Tap Disable, 1=disable, 0=enable
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// Bit 3: Scroll Disable, 1=disable, 0=enable
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// Bit 4: GlideExtend® Disable, 1=disable, 0=enable
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// Bit 5: reserved
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// Bit 6: reserved
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// Bit 7: Swap X & Y, 1=90° rotation, 0=0° rotation
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RAP_Write(FEEDCONFIG_2, 0x00);
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// Host sets z-idle packet count to 5 (default is 30)
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RAP_Write(Z_IDLE_COUNT, Z_IDLE_COUNT_VALUE);
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// FeedConfig1 (Data Output Flags)
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// Bit 0: Feed enable, 1=feed, 0=no feed
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// Bit 1: Data mode, 1=absolute, 0=relative
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// Bit 2: Filter disable, 1=no filter, 0=filter
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// Bit 3: X disable, 1=no X data, 0=X data
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// Bit 4: Y disable, 1=no Y data, 0=Y data
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// Bit 5: reserved
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// Bit 6: X data Invert, 1=X max to 0, 0=0 to Y max
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// Bit 7: Y data Invert, 1=Y max to 0, 0=0 to Y max
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RAP_Write(FEEDCONFIG_1, CIRQUE_PINNACLE_POSITION_MODE << 1);
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// Host sets z-idle packet count to 5 (default is 0x1F/30)
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RAP_Write(Z_IDLE_COUNT, 5);
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cirque_pinnacle_set_adc_attenuation(CIRQUE_PINNACLE_ATTENUATION);
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@ -223,21 +246,42 @@ void cirque_pinnacle_init(void) {
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cirque_pinnacle_enable_feed(true);
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}
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// Reads XYZ data from Pinnacle registers 0x14 through 0x17
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// Stores result in pinnacle_data_t struct with xValue, yValue, and zValue members
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pinnacle_data_t cirque_pinnacle_read_data(void) {
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uint8_t data[6] = {0};
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pinnacle_data_t result = {0};
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uint8_t data_ready = 0;
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uint8_t data[6] = {0};
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pinnacle_data_t result = {0};
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// Check if there is valid data available
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RAP_ReadBytes(STATUS_1, &data_ready, 1); // bit2 is Software Data Ready, bit3 is Command Complete, bit0 and bit1 are reserved/unused
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if ((data_ready & 0x04) == 0) {
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// no data available yet
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result.valid = false; // be explicit
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return result;
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}
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// Read all data bytes
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RAP_ReadBytes(PACKET_BYTE_0, data, 6);
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// Get ready for the next data sample
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cirque_pinnacle_clear_flags();
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result.buttonFlags = data[0] & 0x3F;
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result.xValue = data[2] | ((data[4] & 0x0F) << 8);
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result.yValue = data[3] | ((data[4] & 0xF0) << 4);
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result.zValue = data[5] & 0x3F;
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result.touchDown = (result.xValue != 0 || result.yValue != 0);
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#if CIRQUE_PINNACLE_POSITION_MODE
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// Decode data for absolute mode
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// Register 0x13 is unused in this mode (palm detection area)
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result.buttonFlags = data[0] & 0x3F; // bit0 to bit5 are switch 0-5, only hardware button presses (from input pin on the Pinnacle chip)
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result.xValue = data[2] | ((data[4] & 0x0F) << 8); // merge high and low bits for X
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result.yValue = data[3] | ((data[4] & 0xF0) << 4); // merge high and low bits for Y
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result.zValue = data[5] & 0x3F; // Z is only lower 6 bits, upper 2 bits are reserved/unused
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result.touchDown = (result.xValue != 0 || result.yValue != 0); // (0,0) is a "magic coordinate" to indicate "finger touched down"
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#else
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// Decode data for relative mode
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// Registers 0x16 and 0x17 are unused in this mode
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result.buttons = data[0] & 0x07; // bit0 = primary button, bit1 = secondary button, bit2 = auxilary button, if Taps enabled then also software-recognized taps are reported
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result.xDelta = data[1];
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result.yDelta = data[2];
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result.wheelCount = data[3];
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#endif
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result.valid = true;
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return result;
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}
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@ -5,23 +5,14 @@
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#include <stdint.h>
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#include <stdbool.h>
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// Convenient way to store and access measurements
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typedef struct {
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uint16_t xValue;
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uint16_t yValue;
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uint16_t zValue;
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uint8_t buttonFlags;
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bool touchDown;
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} pinnacle_data_t;
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void cirque_pinnacle_init(void);
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pinnacle_data_t cirque_pinnacle_read_data(void);
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void cirque_pinnacle_scale_data(pinnacle_data_t* coordinates, uint16_t xResolution, uint16_t yResolution);
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uint16_t cirque_pinnacle_get_scale(void);
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void cirque_pinnacle_set_scale(uint16_t scale);
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#ifndef CIRQUE_PINNACLE_TIMEOUT
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# define CIRQUE_PINNACLE_TIMEOUT 20
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# define CIRQUE_PINNACLE_TIMEOUT 20 // I2C timeout in milliseconds
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#endif
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#define CIRQUE_PINNACLE_ABSOLUTE_MODE 1
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#define CIRQUE_PINNACLE_RELATIVE_MODE 0
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#ifndef CIRQUE_PINNACLE_POSITION_MODE
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# define CIRQUE_PINNACLE_POSITION_MODE CIRQUE_PINNACLE_ABSOLUTE_MODE
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#endif
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// Coordinate scaling values
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@ -43,7 +34,9 @@ void cirque_pinnacle_set_scale(uint16_t scale);
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#ifndef CIRQUE_PINNACLE_Y_RANGE
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# define CIRQUE_PINNACLE_Y_RANGE (CIRQUE_PINNACLE_Y_UPPER - CIRQUE_PINNACLE_Y_LOWER)
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#endif
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#if !defined(POINTING_DEVICE_TASK_THROTTLE_MS)
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# define POINTING_DEVICE_TASK_THROTTLE_MS 10 // Cirque Pinnacle in normal operation produces data every 10ms. Advanced configuration for pen/stylus usage might require lower values.
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#endif
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#if defined(POINTING_DEVICE_DRIVER_cirque_pinnacle_i2c)
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# include "i2c_master.h"
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// Cirque's 7-bit I2C Slave Address
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@ -72,3 +65,26 @@ void cirque_pinnacle_set_scale(uint16_t scale);
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# endif
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# endif
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#endif
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// Convenient way to store and access measurements
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typedef struct {
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bool valid; // true if valid data was read, false if no data was ready
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#if CIRQUE_PINNACLE_POSITION_MODE
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uint16_t xValue;
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uint16_t yValue;
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uint16_t zValue;
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uint8_t buttonFlags;
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bool touchDown;
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#else
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uint8_t xDelta;
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uint8_t yDelta;
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uint8_t wheelCount;
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uint8_t buttons;
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#endif
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} pinnacle_data_t;
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void cirque_pinnacle_init(void);
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pinnacle_data_t cirque_pinnacle_read_data(void);
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void cirque_pinnacle_scale_data(pinnacle_data_t* coordinates, uint16_t xResolution, uint16_t yResolution);
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uint16_t cirque_pinnacle_get_scale(void);
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void cirque_pinnacle_set_scale(uint16_t scale);
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@ -19,7 +19,7 @@ void RAP_ReadBytes(uint8_t address, uint8_t* data, uint8_t count) {
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i2c_writeReg(CIRQUE_PINNACLE_ADDR << 1, cmdByte, NULL, 0, CIRQUE_PINNACLE_TIMEOUT);
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if (i2c_readReg(CIRQUE_PINNACLE_ADDR << 1, cmdByte, data, count, CIRQUE_PINNACLE_TIMEOUT) != I2C_STATUS_SUCCESS) {
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#ifdef CONSOLE_ENABLE
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dprintf("error right touchpad\n");
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dprintf("error cirque_pinnacle i2c_readReg\n");
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#endif
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touchpad_init = false;
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}
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@ -34,7 +34,7 @@ void RAP_Write(uint8_t address, uint8_t data) {
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if (touchpad_init) {
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if (i2c_writeReg(CIRQUE_PINNACLE_ADDR << 1, cmdByte, &data, sizeof(data), CIRQUE_PINNACLE_TIMEOUT) != I2C_STATUS_SUCCESS) {
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#ifdef CONSOLE_ENABLE
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dprintf("error right touchpad\n");
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dprintf("error cirque_pinnacle i2c_writeReg\n");
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#endif
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touchpad_init = false;
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}
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@ -25,7 +25,7 @@ void RAP_ReadBytes(uint8_t address, uint8_t* data, uint8_t count) {
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}
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} else {
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#ifdef CONSOLE_ENABLE
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dprintf("error right touchpad\n");
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dprintf("error cirque_pinnacle spi_start read\n");
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#endif
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touchpad_init = false;
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}
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@ -43,7 +43,7 @@ void RAP_Write(uint8_t address, uint8_t data) {
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spi_write(data);
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} else {
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#ifdef CONSOLE_ENABLE
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dprintf("error right touchpad\n");
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dprintf("error cirque_pinnacle spi_start write\n");
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#endif
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touchpad_init = false;
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}
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@ -50,6 +50,7 @@ const pointing_device_driver_t pointing_device_driver = {
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.get_cpi = adns5050_get_cpi,
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};
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// clang-format on
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#elif defined(POINTING_DEVICE_DRIVER_adns9800)
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report_mouse_t adns9800_get_report_driver(report_mouse_t mouse_report) {
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@ -69,6 +70,7 @@ const pointing_device_driver_t pointing_device_driver = {
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.get_cpi = adns9800_get_cpi
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};
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// clang-format on
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#elif defined(POINTING_DEVICE_DRIVER_analog_joystick)
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report_mouse_t analog_joystick_get_report(report_mouse_t mouse_report) {
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report_analog_joystick_t data = analog_joystick_read();
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@ -93,6 +95,7 @@ const pointing_device_driver_t pointing_device_driver = {
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.get_cpi = NULL
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};
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// clang-format on
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#elif defined(POINTING_DEVICE_DRIVER_cirque_pinnacle_i2c) || defined(POINTING_DEVICE_DRIVER_cirque_pinnacle_spi)
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# ifndef CIRQUE_PINNACLE_TAPPING_TERM
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# include "action.h"
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@ -104,22 +107,40 @@ const pointing_device_driver_t pointing_device_driver = {
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# endif
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report_mouse_t cirque_pinnacle_get_report(report_mouse_t mouse_report) {
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pinnacle_data_t touchData = cirque_pinnacle_read_data();
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static uint16_t x = 0, y = 0, mouse_timer = 0;
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mouse_xy_report_t report_x = 0, report_y = 0;
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static bool is_z_down = false;
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pinnacle_data_t touchData = cirque_pinnacle_read_data();
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mouse_xy_report_t report_x = 0, report_y = 0;
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static mouse_xy_report_t x = 0, y = 0;
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static uint16_t mouse_timer = 0;
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static bool is_z_down = false;
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cirque_pinnacle_scale_data(&touchData, cirque_pinnacle_get_scale(), cirque_pinnacle_get_scale()); // Scale coordinates to arbitrary X, Y resolution
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# if !CIRQUE_PINNACLE_POSITION_MODE
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# error Cirque Pinnacle with relative mode not implemented yet.
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# endif
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if (!touchData.valid) {
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return mouse_report;
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}
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# if CONSOLE_ENABLE
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if (debug_mouse && touchData.touchDown) {
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dprintf("cirque_pinnacle touchData x=%4d y=%4d z=%2d\n", touchData.xValue, touchData.yValue, touchData.zValue);
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}
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# endif
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// Scale coordinates to arbitrary X, Y resolution
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cirque_pinnacle_scale_data(&touchData, cirque_pinnacle_get_scale(), cirque_pinnacle_get_scale());
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if (x && y && touchData.xValue && touchData.yValue) {
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report_x = (mouse_xy_report_t)(touchData.xValue - x);
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report_y = (mouse_xy_report_t)(touchData.yValue - y);
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}
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x = touchData.xValue;
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y = touchData.yValue;
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x = touchData.xValue;
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y = touchData.yValue;
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mouse_report.x = report_x;
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mouse_report.y = report_y;
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if ((bool)touchData.zValue != is_z_down) {
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is_z_down = (bool)touchData.zValue;
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if (touchData.touchDown != is_z_down) {
|
||||
is_z_down = touchData.touchDown;
|
||||
if (!touchData.zValue) {
|
||||
if (timer_elapsed(mouse_timer) < CIRQUE_PINNACLE_TAPPING_TERM && mouse_timer != 0) {
|
||||
mouse_report.buttons = pointing_device_handle_buttons(mouse_report.buttons, true, POINTING_DEVICE_BUTTON1);
|
||||
@ -138,8 +159,6 @@ report_mouse_t cirque_pinnacle_get_report(report_mouse_t mouse_report) {
|
||||
if (timer_elapsed(mouse_timer) > (CIRQUE_PINNACLE_TOUCH_DEBOUNCE)) {
|
||||
mouse_timer = 0;
|
||||
}
|
||||
mouse_report.x = report_x;
|
||||
mouse_report.y = report_y;
|
||||
|
||||
return mouse_report;
|
||||
}
|
||||
@ -210,6 +229,7 @@ const pointing_device_driver_t pointing_device_driver = {
|
||||
.get_cpi = pimoroni_trackball_get_cpi
|
||||
};
|
||||
// clang-format on
|
||||
|
||||
#elif defined(POINTING_DEVICE_DRIVER_pmw3360)
|
||||
static void pmw3360_device_init(void) {
|
||||
pmw3360_init(0);
|
||||
@ -248,6 +268,7 @@ const pointing_device_driver_t pointing_device_driver = {
|
||||
.get_cpi = pmw3360_get_cpi
|
||||
};
|
||||
// clang-format on
|
||||
|
||||
#elif defined(POINTING_DEVICE_DRIVER_pmw3389)
|
||||
static void pmw3389_device_init(void) {
|
||||
pmw3389_init();
|
||||
@ -286,6 +307,7 @@ const pointing_device_driver_t pointing_device_driver = {
|
||||
.get_cpi = pmw3389_get_cpi
|
||||
};
|
||||
// clang-format on
|
||||
|
||||
#else
|
||||
__attribute__((weak)) void pointing_device_driver_init(void) {}
|
||||
__attribute__((weak)) report_mouse_t pointing_device_driver_get_report(report_mouse_t mouse_report) {
|
||||
@ -304,4 +326,5 @@ const pointing_device_driver_t pointing_device_driver = {
|
||||
.set_cpi = pointing_device_driver_set_cpi
|
||||
};
|
||||
// clang-format on
|
||||
|
||||
#endif
|
||||
|
Loading…
Reference in New Issue
Block a user