V-USB: Add generic send_report()
function (#22323)
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3a74fa5bf7
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@ -153,7 +153,6 @@ void protocol_task(void) {
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if (usbConfiguration && usbInterruptIsReady()) {
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keyboard_task();
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}
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vusb_transfer_keyboard();
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#ifdef RAW_ENABLE
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usbPoll();
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@ -89,40 +89,51 @@ static uint8_t keyboard_led_state = 0;
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uint8_t keyboard_idle = 0;
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uint8_t keyboard_protocol = 1;
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/* Keyboard report send buffer */
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#define KBUF_SIZE 16
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static report_keyboard_t kbuf[KBUF_SIZE];
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static uint8_t kbuf_head = 0;
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static uint8_t kbuf_tail = 0;
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static report_keyboard_t keyboard_report_sent;
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#define VUSB_TRANSFER_KEYBOARD_MAX_TRIES 10
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/* transfer keyboard report from buffer */
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void vusb_transfer_keyboard(void) {
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for (int i = 0; i < VUSB_TRANSFER_KEYBOARD_MAX_TRIES; i++) {
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if (usbInterruptIsReady()) {
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if (kbuf_head != kbuf_tail) {
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#ifndef KEYBOARD_SHARED_EP
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usbSetInterrupt((void *)&kbuf[kbuf_tail], sizeof(report_keyboard_t));
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#else
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// Ugly hack! :(
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usbSetInterrupt((void *)&kbuf[kbuf_tail], sizeof(report_keyboard_t) - 1);
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while (!usbInterruptIsReady()) {
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usbPoll();
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static void send_report_fragment(uint8_t endpoint, void *data, size_t size) {
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for (uint8_t retries = 5; retries > 0; retries--) {
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switch (endpoint) {
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case 1:
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if (usbInterruptIsReady()) {
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usbSetInterrupt(data, size);
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return;
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}
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usbSetInterrupt((void *)(&(kbuf[kbuf_tail].keys[5])), 1);
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#endif
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kbuf_tail = (kbuf_tail + 1) % KBUF_SIZE;
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if (debug_keyboard) {
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dprintf("V-USB: kbuf[%d->%d](%02X)\n", kbuf_tail, kbuf_head, (kbuf_head < kbuf_tail) ? (KBUF_SIZE - kbuf_tail + kbuf_head) : (kbuf_head - kbuf_tail));
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break;
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case USB_CFG_EP3_NUMBER:
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if (usbInterruptIsReady3()) {
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usbSetInterrupt3(data, size);
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return;
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}
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}
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break;
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break;
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case USB_CFG_EP4_NUMBER:
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if (usbInterruptIsReady4()) {
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usbSetInterrupt4(data, size);
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return;
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}
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break;
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default:
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return;
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}
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usbPoll();
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wait_ms(1);
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wait_ms(5);
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}
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}
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static void send_report(uint8_t endpoint, void *report, size_t size) {
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uint8_t *temp = (uint8_t *)report;
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// Send as many full packets as possible
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for (uint8_t i = 0; i < size / 8; i++) {
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send_report_fragment(endpoint, temp, 8);
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temp += 8;
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}
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// Send any data left over
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uint8_t remainder = size % 8;
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if (remainder) {
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send_report_fragment(endpoint, temp, remainder);
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}
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}
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@ -141,18 +152,7 @@ void raw_hid_send(uint8_t *data, uint8_t length) {
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return;
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}
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uint8_t *temp = data;
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for (uint8_t i = 0; i < 4; i++) {
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while (!usbInterruptIsReady4()) {
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usbPoll();
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}
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usbSetInterrupt4(temp, 8);
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temp += 8;
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}
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while (!usbInterruptIsReady4()) {
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usbPoll();
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}
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usbSetInterrupt4(0, 0);
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send_report(4, data, 32);
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}
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__attribute__((weak)) void raw_hid_receive(uint8_t *data, uint8_t length) {
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@ -181,19 +181,6 @@ int8_t sendchar(uint8_t c) {
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return 0;
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}
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static inline bool usbSendData3(char *data, uint8_t len) {
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uint8_t retries = 5;
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while (!usbInterruptIsReady3()) {
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if (!(retries--)) {
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return false;
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}
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usbPoll();
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}
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usbSetInterrupt3((unsigned char *)data, len);
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return true;
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}
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void console_task(void) {
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if (!usbConfiguration) {
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return;
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@ -210,16 +197,7 @@ void console_task(void) {
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send_buf[send_buf_count++] = rbuf_dequeue();
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}
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char *temp = send_buf;
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for (uint8_t i = 0; i < 4; i++) {
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if (!usbSendData3(temp, 8)) {
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break;
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}
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temp += 8;
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}
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usbSendData3(0, 0);
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usbPoll();
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send_report(3, send_buf, CONSOLE_BUFFER_SIZE);
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}
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#endif
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@ -243,17 +221,12 @@ static uint8_t keyboard_leds(void) {
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}
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static void send_keyboard(report_keyboard_t *report) {
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uint8_t next = (kbuf_head + 1) % KBUF_SIZE;
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if (next != kbuf_tail) {
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kbuf[kbuf_head] = *report;
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kbuf_head = next;
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if (!keyboard_protocol) {
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send_report(1, &report->mods, 8);
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} else {
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dprint("kbuf: full\n");
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send_report(1, report, sizeof(report_keyboard_t));
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}
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// NOTE: send key strokes of Macro
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usbPoll();
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vusb_transfer_keyboard();
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keyboard_report_sent = *report;
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}
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@ -262,50 +235,40 @@ static void send_nkro(report_nkro_t *report) {
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}
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#ifndef KEYBOARD_SHARED_EP
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# define usbInterruptIsReadyShared usbInterruptIsReady3
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# define usbSetInterruptShared usbSetInterrupt3
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# define MOUSE_IN_EPNUM 3
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# define SHARED_IN_EPNUM 3
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#else
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# define usbInterruptIsReadyShared usbInterruptIsReady
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# define usbSetInterruptShared usbSetInterrupt
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# define MOUSE_IN_EPNUM 1
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# define SHARED_IN_EPNUM 1
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#endif
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static void send_mouse(report_mouse_t *report) {
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#ifdef MOUSE_ENABLE
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if (usbInterruptIsReadyShared()) {
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usbSetInterruptShared((void *)report, sizeof(report_mouse_t));
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}
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send_report(MOUSE_IN_EPNUM, report, sizeof(report_mouse_t));
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#endif
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}
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static void send_extra(report_extra_t *report) {
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#ifdef EXTRAKEY_ENABLE
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if (usbInterruptIsReadyShared()) {
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usbSetInterruptShared((void *)report, sizeof(report_extra_t));
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}
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send_report(SHARED_IN_EPNUM, report, sizeof(report_extra_t));
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#endif
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}
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void send_joystick(report_joystick_t *report) {
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#ifdef JOYSTICK_ENABLE
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if (usbInterruptIsReadyShared()) {
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usbSetInterruptShared((void *)report, sizeof(report_joystick_t));
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}
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send_report(SHARED_IN_EPNUM, report, sizeof(report_joystick_t));
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#endif
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}
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void send_digitizer(report_digitizer_t *report) {
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#ifdef DIGITIZER_ENABLE
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if (usbInterruptIsReadyShared()) {
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usbSetInterruptShared((void *)report, sizeof(report_digitizer_t));
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}
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send_report(SHARED_IN_EPNUM, report, sizeof(report_digitizer_t));
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#endif
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}
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void send_programmable_button(report_programmable_button_t *report) {
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#ifdef PROGRAMMABLE_BUTTON_ENABLE
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if (usbInterruptIsReadyShared()) {
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usbSetInterruptShared((void *)report, sizeof(report_programmable_button_t));
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}
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send_report(SHARED_IN_EPNUM, report, sizeof(report_programmable_button_t));
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#endif
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}
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@ -121,4 +121,3 @@ typedef struct usbConfigurationDescriptor {
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extern bool vusb_suspended;
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host_driver_t *vusb_driver(void);
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void vusb_transfer_keyboard(void);
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