|
24 | 24 | #include <zephyr/kernel.h> |
25 | 25 | #include <zephyr/sys/util.h> |
26 | 26 |
|
27 | | -typedef struct { |
28 | | - size_t x; |
29 | | - size_t y; |
30 | | - bool pressed; |
31 | | -} touch_point_t; |
| 27 | +static struct k_sem zephyr_touch_sem; |
32 | 28 |
|
33 | | -static uint8_t zephyr_touch_cb_slot_num; |
34 | | -static struct k_sem zephyr_touch_event_sync; |
35 | | -static touch_point_t zephyr_touch_points[CONFIG_INPUT_GT911_MAX_TOUCH_POINTS]; |
| 29 | +typedef void (*zephyr_input_callback_t)(struct input_event *evt, void *user_data); |
| 30 | +extern "C" void zephyr_input_register_callback(zephyr_input_callback_t cb, void *user_data); |
| 31 | +void touch_event_callback(struct input_event *evt, void *user_data); |
36 | 32 |
|
37 | | -typedef void (*zephyr_input_callback_t)(struct input_event *evt, |
38 | | - void *user_data); |
39 | | -extern "C" void zephyr_input_register_callback(zephyr_input_callback_t cb); |
40 | | -static void touch_event_callback(struct input_event *evt, void *user_data); |
| 33 | +Arduino_GigaDisplayTouch::Arduino_GigaDisplayTouch() { |
41 | 34 |
|
42 | | -Arduino_GigaDisplayTouch::Arduino_GigaDisplayTouch() {} |
| 35 | +} |
| 36 | + |
| 37 | +Arduino_GigaDisplayTouch::~Arduino_GigaDisplayTouch() { |
43 | 38 |
|
44 | | -Arduino_GigaDisplayTouch::~Arduino_GigaDisplayTouch() {} |
| 39 | +} |
45 | 40 |
|
46 | 41 | bool Arduino_GigaDisplayTouch::begin() { |
47 | | - k_sem_init(&zephyr_touch_event_sync, 0, 1); |
48 | | - zephyr_input_register_callback(touch_event_callback); |
| 42 | + _gt911TouchHandler = nullptr; |
| 43 | + k_sem_init(&zephyr_touch_sem, 1, 1); |
| 44 | + zephyr_input_register_callback(touch_event_callback, this); |
49 | 45 | return true; |
50 | 46 | } |
51 | 47 |
|
52 | | -void Arduino_GigaDisplayTouch::end() {} |
| 48 | +void Arduino_GigaDisplayTouch::end() { |
| 49 | + _gt911TouchHandler = nullptr; |
| 50 | + zephyr_input_register_callback(NULL, NULL); |
| 51 | +} |
53 | 52 |
|
54 | 53 | uint8_t Arduino_GigaDisplayTouch::getTouchPoints(GDTpoint_t *points) { |
55 | 54 | // First wait to see if we get any events. |
56 | | - if (k_sem_take(&zephyr_touch_event_sync, K_NO_WAIT) != 0) { |
| 55 | + if (k_sem_take(&zephyr_touch_sem, K_NO_WAIT)) { |
57 | 56 | return 0; |
58 | 57 | } |
59 | 58 |
|
60 | | - uint8_t count_pressed = 0; |
61 | | - for (uint8_t i = 0; i <= zephyr_touch_cb_slot_num; i++) { |
62 | | - if (zephyr_touch_points[i].pressed) { |
63 | | - points[count_pressed].x = zephyr_touch_points[i].x; |
64 | | - points[count_pressed].y = zephyr_touch_points[i].y; |
| 59 | + size_t count_pressed = 0; |
| 60 | + for (int i = 0; i < GT911_MAX_CONTACTS; i++) { |
| 61 | + if (_points[i].pressed) { |
| 62 | + points[count_pressed].trackId = _points[i].trackId; |
| 63 | + points[count_pressed].x = _points[i].x; |
| 64 | + points[count_pressed].y = _points[i].y; |
65 | 65 | count_pressed++; |
66 | 66 | } |
67 | 67 | } |
| 68 | + |
| 69 | + k_sem_give(&zephyr_touch_sem); |
68 | 70 | return count_pressed; |
69 | 71 | } |
70 | 72 |
|
71 | | -void Arduino_GigaDisplayTouch::onDetect(void (*handler)(uint8_t, |
72 | | - GDTpoint_t *)) { |
73 | | - UNUSED(handler); |
| 73 | +void Arduino_GigaDisplayTouch::onDetect(GDTTouchHandler_t handler) { |
| 74 | + _gt911TouchHandler = handler; |
74 | 75 | } |
75 | 76 |
|
76 | | -static void touch_event_callback(struct input_event *evt, void *user_data) { |
77 | | - static const struct device *const touch_dev = |
78 | | - DEVICE_DT_GET(DT_CHOSEN(zephyr_touch)); |
| 77 | +void touch_event_callback(struct input_event *evt, void *user_data) { |
| 78 | + static int8_t tp_index = 0; |
| 79 | + static bool sem_taken = false; |
| 80 | + static const struct device *const touch_dev = DEVICE_DT_GET(DT_CHOSEN(zephyr_touch)); |
| 81 | + Arduino_GigaDisplayTouch *touch = (Arduino_GigaDisplayTouch *) user_data; |
79 | 82 |
|
80 | | - if (evt->dev != touch_dev) { |
| 83 | + if (!touch || evt->dev != touch_dev) { |
| 84 | + return; |
| 85 | + } |
| 86 | + |
| 87 | + // Take semaphore on first event. |
| 88 | + if (evt->code == INPUT_ABS_MT_SLOT) { |
| 89 | + // If the semaphore is already taken do Not try to take it again. |
| 90 | + // This could only happen if the event queue dropped BTN_TOUCH. |
| 91 | + if (!sem_taken && k_sem_take(&zephyr_touch_sem, K_NO_WAIT)) { |
| 92 | + return; |
| 93 | + } |
| 94 | + sem_taken = true; |
| 95 | + } else if (!sem_taken) { |
| 96 | + // On subsequent events, return if we don't have the semaphore. |
81 | 97 | return; |
82 | 98 | } |
83 | 99 |
|
84 | 100 | switch (evt->code) { |
85 | 101 | case INPUT_ABS_MT_SLOT: |
86 | | - zephyr_touch_cb_slot_num = evt->value; |
| 102 | + tp_index = evt->value; |
| 103 | + touch->_points[tp_index].trackId = evt->value; |
87 | 104 | break; |
88 | 105 | case INPUT_ABS_X: |
89 | | - zephyr_touch_points[zephyr_touch_cb_slot_num].x = evt->value; |
| 106 | + touch->_points[tp_index].x = evt->value; |
90 | 107 | break; |
91 | 108 | case INPUT_ABS_Y: |
92 | | - zephyr_touch_points[zephyr_touch_cb_slot_num].y = evt->value; |
| 109 | + touch->_points[tp_index].y = evt->value; |
93 | 110 | break; |
94 | 111 | case INPUT_BTN_TOUCH: |
95 | | - zephyr_touch_points[zephyr_touch_cb_slot_num].pressed = evt->value; |
| 112 | + touch->_points[tp_index].pressed = evt->value; |
96 | 113 | break; |
97 | 114 | } |
98 | 115 |
|
99 | | - if (evt->sync) { |
100 | | - k_sem_give(&zephyr_touch_event_sync); |
| 116 | + // Release the semaphore only after updating all of the data. |
| 117 | + if (evt->code == INPUT_BTN_TOUCH) { |
| 118 | + sem_taken = false; |
| 119 | + k_sem_give(&zephyr_touch_sem); |
| 120 | + if (touch->_gt911TouchHandler) { |
| 121 | + touch->_gt911TouchHandler(GT911_MAX_CONTACTS, touch->_points); |
| 122 | + } |
101 | 123 | } |
102 | 124 | } |
103 | 125 | #endif |
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