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https://github.com/Keychron/qmk_firmware.git
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Add support for large Mouse Reports (#16371)
Co-authored-by: Sergey Vlasov <sigprof@gmail.com> Co-authored-by: Ryan <fauxpark@gmail.com>
This commit is contained in:
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@ -174,6 +174,8 @@ If you define these options you will enable the associated feature, which may in
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* sets the timer for leader key chords to run on each key press rather than overall
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* `#define LEADER_KEY_STRICT_KEY_PROCESSING`
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* Disables keycode filtering for Mod-Tap and Layer-Tap keycodes. Eg, if you enable this, you would need to specify `MT(MOD_CTL, KC_A)` if you want to use `KC_A`.
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* `#define MOUSE_EXTENDED_REPORT`
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* Enables support for extended reports (-32767 to 32767, instead of -127 to 127), which may allow for smoother reporting, and prevent maxing out of the reports. Applies to both Pointing Device and Mousekeys.
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* `#define ONESHOT_TIMEOUT 300`
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* how long before oneshot times out
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* `#define ONESHOT_TAP_TOGGLE 2`
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@ -259,6 +259,7 @@ The following configuration options are only available when using `SPLIT_POINTIN
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|`POINTING_DEVICE_ROTATION_270_RIGHT` | (Optional) Rotates the X and Y data by 270 degrees. | _not defined_ |
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|`POINTING_DEVICE_INVERT_X_RIGHT` | (Optional) Inverts the X axis report. | _not defined_ |
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|`POINTING_DEVICE_INVERT_Y_RIGHT` | (Optional) Inverts the Y axis report. | _not defined_ |
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|`MOUSE_EXTENDED_REPORT` | (Optional) Enables support for extended mouse reports. (-32767 to 32767, instead of just -127 to 127) |
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!> If there is a `_RIGHT` configuration option or callback, the [common configuration](feature_pointing_device.md?id=common-configuration) option will work for the left. For correct left/right detection you should setup a [handedness option](feature_split_keyboard?id=setting-handedness), `EE_HANDS` is usually a good option for an existing board that doesn't do handedness by hardware.
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@ -28,4 +28,4 @@
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#define RGBLIGHT_EFFECT_TWINKLE
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#define RGBLIGHT_SLEEP
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#define MOUSE_EXT_REPORT
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#define MOUSE_EXTENDED_REPORT
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@ -177,7 +177,8 @@ __attribute__((weak)) void pointing_device_send(void) {
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report_mouse_t pointing_device_adjust_by_defines(report_mouse_t mouse_report) {
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// Support rotation of the sensor data
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#if defined(POINTING_DEVICE_ROTATION_90) || defined(POINTING_DEVICE_ROTATION_180) || defined(POINTING_DEVICE_ROTATION_270)
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int8_t x = mouse_report.x, y = mouse_report.y;
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mouse_xy_report_t x = mouse_report.x;
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mouse_xy_report_t y = mouse_report.y;
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# if defined(POINTING_DEVICE_ROTATION_90)
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mouse_report.x = y;
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mouse_report.y = -x;
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@ -347,7 +348,7 @@ void pointing_device_set_cpi_on_side(bool left, uint16_t cpi) {
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* @param[in] int16_t value
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* @return int8_t clamped value
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*/
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static inline int8_t pointing_device_movement_clamp(int16_t value) {
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static inline int8_t pointing_device_hv_clamp(int16_t value) {
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if (value < INT8_MIN) {
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return INT8_MIN;
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} else if (value > INT8_MAX) {
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@ -357,6 +358,21 @@ static inline int8_t pointing_device_movement_clamp(int16_t value) {
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}
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}
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/**
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* @brief clamps int16_t to int8_t
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*
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* @param[in] clamp_range_t value
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* @return mouse_xy_report_t clamped value
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*/
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static inline mouse_xy_report_t pointing_device_xy_clamp(clamp_range_t value) {
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if (value < XY_REPORT_MIN) {
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return XY_REPORT_MIN;
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} else if (value > XY_REPORT_MAX) {
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return XY_REPORT_MAX;
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} else {
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return value;
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}
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}
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/**
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* @brief combines 2 mouse reports and returns 2
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*
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@ -369,10 +385,10 @@ static inline int8_t pointing_device_movement_clamp(int16_t value) {
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* @return combined report_mouse_t of left_report and right_report
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*/
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report_mouse_t pointing_device_combine_reports(report_mouse_t left_report, report_mouse_t right_report) {
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left_report.x = pointing_device_movement_clamp((int16_t)left_report.x + right_report.x);
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left_report.y = pointing_device_movement_clamp((int16_t)left_report.y + right_report.y);
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left_report.h = pointing_device_movement_clamp((int16_t)left_report.h + right_report.h);
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left_report.v = pointing_device_movement_clamp((int16_t)left_report.v + right_report.v);
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left_report.x = pointing_device_xy_clamp((clamp_range_t)left_report.x + right_report.x);
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left_report.y = pointing_device_xy_clamp((clamp_range_t)left_report.y + right_report.y);
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left_report.h = pointing_device_hv_clamp((int16_t)left_report.h + right_report.h);
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left_report.v = pointing_device_hv_clamp((int16_t)left_report.v + right_report.v);
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left_report.buttons |= right_report.buttons;
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return left_report;
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}
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@ -390,7 +406,8 @@ report_mouse_t pointing_device_combine_reports(report_mouse_t left_report, repor
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report_mouse_t pointing_device_adjust_by_defines_right(report_mouse_t mouse_report) {
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// Support rotation of the sensor data
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# if defined(POINTING_DEVICE_ROTATION_90_RIGHT) || defined(POINTING_DEVICE_ROTATION_RIGHT) || defined(POINTING_DEVICE_ROTATION_RIGHT)
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int8_t x = mouse_report.x, y = mouse_report.y;
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mouse_xy_report_t x = mouse_report.x;
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mouse_xy_report_t y = mouse_report.y;
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# if defined(POINTING_DEVICE_ROTATION_90_RIGHT)
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mouse_report.x = y;
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mouse_report.y = -x;
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@ -75,6 +75,16 @@ typedef enum {
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POINTING_DEVICE_BUTTON8,
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} pointing_device_buttons_t;
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#ifdef MOUSE_EXTENDED_REPORT
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# define XY_REPORT_MIN INT16_MIN
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# define XY_REPORT_MAX INT16_MAX
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typedef int32_t clamp_range_t;
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#else
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# define XY_REPORT_MIN INT8_MIN
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# define XY_REPORT_MAX INT8_MAX
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typedef int16_t clamp_range_t;
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#endif
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void pointing_device_init(void);
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void pointing_device_task(void);
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void pointing_device_send(void);
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@ -22,8 +22,8 @@
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#include "timer.h"
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#include <stddef.h>
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// hid mouse reports cannot exceed -127 to 127, so constrain to that value
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#define constrain_hid(amt) ((amt) < -127 ? -127 : ((amt) > 127 ? 127 : (amt)))
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#define CONSTRAIN_HID(amt) ((amt) < INT8_MIN ? INT8_MIN : ((amt) > INT8_MAX ? INT8_MAX : (amt)))
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#define CONSTRAIN_HID_XY(amt) ((amt) < XY_REPORT_MIN ? XY_REPORT_MIN : ((amt) > XY_REPORT_MAX ? XY_REPORT_MAX : (amt)))
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// get_report functions should probably be moved to their respective drivers.
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#if defined(POINTING_DEVICE_DRIVER_adns5050)
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@ -35,8 +35,8 @@ report_mouse_t adns5050_get_report(report_mouse_t mouse_report) {
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if (debug_mouse) dprintf("Raw ] X: %d, Y: %d\n", data.dx, data.dy);
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# endif
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mouse_report.x = data.dx;
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mouse_report.y = data.dy;
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mouse_report.x = (mouse_xy_report_t)data.dx;
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mouse_report.y = (mouse_xy_report_t)data.dy;
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}
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return mouse_report;
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@ -55,11 +55,8 @@ const pointing_device_driver_t pointing_device_driver = {
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report_mouse_t adns9800_get_report_driver(report_mouse_t mouse_report) {
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report_adns9800_t sensor_report = adns9800_get_report();
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int8_t clamped_x = constrain_hid(sensor_report.x);
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int8_t clamped_y = constrain_hid(sensor_report.y);
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mouse_report.x = clamped_x;
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mouse_report.y = clamped_y;
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mouse_report.x = CONSTRAIN_HID_XY(sensor_report.x);
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mouse_report.y = CONSTRAIN_HID_XY(sensor_report.y);
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return mouse_report;
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}
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@ -107,16 +104,16 @@ 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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int8_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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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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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 (x && y && touchData.xValue && touchData.yValue) {
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report_x = (int8_t)(touchData.xValue - x);
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report_y = (int8_t)(touchData.yValue - y);
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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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@ -157,11 +154,26 @@ const pointing_device_driver_t pointing_device_driver = {
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// clang-format on
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#elif defined(POINTING_DEVICE_DRIVER_pimoroni_trackball)
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mouse_xy_report_t pimoroni_trackball_adapt_values(clamp_range_t* offset) {
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if (*offset > XY_REPORT_MAX) {
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*offset -= XY_REPORT_MAX;
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return (mouse_xy_report_t)XY_REPORT_MAX;
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} else if (*offset < XY_REPORT_MIN) {
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*offset += XY_REPORT_MAX;
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return (mouse_xy_report_t)XY_REPORT_MIN;
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} else {
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mouse_xy_report_t temp_return = *offset;
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*offset = 0;
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return temp_return;
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}
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}
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report_mouse_t pimoroni_trackball_get_report(report_mouse_t mouse_report) {
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static uint16_t debounce = 0;
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static uint8_t error_count = 0;
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pimoroni_data_t pimoroni_data = {0};
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static int16_t x_offset = 0, y_offset = 0;
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static uint16_t debounce = 0;
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static uint8_t error_count = 0;
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pimoroni_data_t pimoroni_data = {0};
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static clamp_range_t x_offset = 0, y_offset = 0;
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if (error_count < PIMORONI_TRACKBALL_ERROR_COUNT) {
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i2c_status_t status = read_pimoroni_trackball(&pimoroni_data);
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@ -174,8 +186,8 @@ report_mouse_t pimoroni_trackball_get_report(report_mouse_t mouse_report) {
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if (!debounce) {
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x_offset += pimoroni_trackball_get_offsets(pimoroni_data.right, pimoroni_data.left, PIMORONI_TRACKBALL_SCALE);
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y_offset += pimoroni_trackball_get_offsets(pimoroni_data.down, pimoroni_data.up, PIMORONI_TRACKBALL_SCALE);
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pimoroni_trackball_adapt_values(&mouse_report.x, &x_offset);
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pimoroni_trackball_adapt_values(&mouse_report.y, &y_offset);
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mouse_report.x = pimoroni_trackball_adapt_values(&x_offset);
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mouse_report.y = pimoroni_trackball_adapt_values(&y_offset);
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} else {
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debounce--;
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}
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@ -221,8 +233,8 @@ report_mouse_t pmw3360_get_report(report_mouse_t mouse_report) {
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# endif
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MotionStart = timer_read();
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}
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mouse_report.x = constrain_hid(data.dx);
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mouse_report.y = constrain_hid(data.dy);
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mouse_report.x = CONSTRAIN_HID_XY(data.dx);
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mouse_report.y = CONSTRAIN_HID_XY(data.dy);
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}
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return mouse_report;
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@ -259,8 +271,8 @@ report_mouse_t pmw3389_get_report(report_mouse_t mouse_report) {
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# endif
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MotionStart = timer_read();
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}
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mouse_report.x = constrain_hid(data.dx);
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mouse_report.y = constrain_hid(data.dy);
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mouse_report.x = CONSTRAIN_HID_XY(data.dx);
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mouse_report.y = CONSTRAIN_HID_XY(data.dy);
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}
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return mouse_report;
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@ -93,6 +93,11 @@ void host_mouse_send(report_mouse_t *report) {
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if (!driver) return;
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#ifdef MOUSE_SHARED_EP
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report->report_id = REPORT_ID_MOUSE;
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#endif
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#ifdef MOUSE_EXTENDED_REPORT
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// clip and copy to Boot protocol XY
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report->boot_x = (report->x > 127) ? 127 : ((report->x < -127) ? -127 : report->x);
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report->boot_y = (report->y > 127) ? 127 : ((report->y < -127) ? -127 : report->y);
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#endif
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(*driver->send_mouse)(report);
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}
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@ -201,15 +201,25 @@ typedef struct {
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uint32_t usage;
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} __attribute__((packed)) report_programmable_button_t;
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#ifdef MOUSE_EXTENDED_REPORT
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typedef int16_t mouse_xy_report_t;
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#else
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typedef int8_t mouse_xy_report_t;
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#endif
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typedef struct {
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#ifdef MOUSE_SHARED_EP
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uint8_t report_id;
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#endif
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uint8_t buttons;
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int8_t x;
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int8_t y;
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int8_t v;
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int8_t h;
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#ifdef MOUSE_EXTENDED_REPORT
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int8_t boot_x;
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int8_t boot_y;
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#endif
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mouse_xy_report_t x;
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mouse_xy_report_t y;
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int8_t v;
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int8_t h;
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} __attribute__((packed)) report_mouse_t;
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typedef struct {
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HID_RI_REPORT_SIZE(8, 0x01),
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HID_RI_INPUT(8, HID_IOF_DATA | HID_IOF_VARIABLE | HID_IOF_ABSOLUTE),
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// X/Y position (2 bytes)
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# ifdef MOUSE_EXTENDED_REPORT
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// Boot protocol XY ignored in Report protocol
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HID_RI_REPORT_COUNT(8, 0x02),
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HID_RI_REPORT_SIZE(8, 0x08),
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HID_RI_INPUT(8, HID_IOF_CONSTANT),
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# endif
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// X/Y position (2 or 4 bytes)
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HID_RI_USAGE_PAGE(8, 0x01), // Generic Desktop
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HID_RI_USAGE(8, 0x30), // X
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HID_RI_USAGE(8, 0x31), // Y
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# ifndef MOUSE_EXTENDED_REPORT
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HID_RI_LOGICAL_MINIMUM(8, -127),
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HID_RI_LOGICAL_MAXIMUM(8, 127),
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HID_RI_REPORT_COUNT(8, 0x02),
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HID_RI_REPORT_SIZE(8, 0x08),
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# else
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HID_RI_LOGICAL_MINIMUM(16, -32767),
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HID_RI_LOGICAL_MAXIMUM(16, 32767),
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HID_RI_REPORT_COUNT(8, 0x02),
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HID_RI_REPORT_SIZE(8, 0x10),
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# endif
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HID_RI_INPUT(8, HID_IOF_DATA | HID_IOF_VARIABLE | HID_IOF_RELATIVE),
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// Vertical wheel (1 byte)
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@ -482,14 +482,28 @@ const PROGMEM uchar shared_hid_report[] = {
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0x75, 0x01, // Report Size (1)
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0x81, 0x02, // Input (Data, Variable, Absolute)
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// X/Y position (2 bytes)
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# ifdef MOUSE_EXTENDED_REPORT
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// Boot protocol XY ignored in Report protocol
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0x95, 0x02, // Report Count (2)
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0x75, 0x08, // Report Size (8)
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0x81, 0x03, // Input (Constant)
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# endif
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// X/Y position (2 or 4 bytes)
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0x05, 0x01, // Usage Page (Generic Desktop)
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0x09, 0x30, // Usage (X)
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0x09, 0x31, // Usage (Y)
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# ifndef MOUSE_EXTENDED_REPORT
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0x15, 0x81, // Logical Minimum (-127)
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0x25, 0x7F, // Logical Maximum (127)
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0x95, 0x02, // Report Count (2)
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0x75, 0x08, // Report Size (8)
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# else
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0x16, 0x01, 0x80, // Logical Minimum (-32767)
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0x26, 0xFF, 0x7F, // Logical Maximum (32767)
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0x95, 0x02, // Report Count (2)
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0x75, 0x10, // Report Size (16)
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# endif
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0x81, 0x06, // Input (Data, Variable, Relative)
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// Vertical wheel (1 byte)
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