2018-11-08 22:12:05 +01:00
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#include <windows.h>
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#include <assert.h>
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#include <process.h>
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#include <stdbool.h>
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#include <stdint.h>
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#include <string.h>
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#include "util/dprintf.h"
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#include "util/dump.h"
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2018-11-14 01:36:34 +01:00
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#include "chunihook/slider-cmd.h"
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#include "chunihook/slider-frame.h"
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#include "chunihook/slider-hook.h"
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2018-11-08 22:12:05 +01:00
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#include "hook/iobuf.h"
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#include "hook/iohook.h"
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#include "hooklib/uart.h"
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static HRESULT slider_handle_irp(struct irp *irp);
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static HRESULT slider_handle_irp_locked(struct irp *irp);
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static HRESULT slider_req_dispatch(const union slider_req_any *req);
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static HRESULT slider_req_reset(void);
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static HRESULT slider_req_get_board_info(void);
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static HRESULT slider_req_auto_scan_start(void);
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static HRESULT slider_req_auto_scan_stop(void);
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static HRESULT slider_req_set_led(const struct slider_req_set_led *req);
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static unsigned int __stdcall slider_thread_proc(void *ctx);
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static CRITICAL_SECTION slider_lock;
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static struct uart slider_uart;
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static uint8_t slider_written_bytes[520];
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static uint8_t slider_readable_bytes[520];
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static HANDLE slider_thread;
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static bool slider_stop;
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void slider_hook_init(void)
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{
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InitializeCriticalSection(&slider_lock);
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uart_init(&slider_uart, 1);
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slider_uart.written.bytes = slider_written_bytes;
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slider_uart.written.nbytes = sizeof(slider_written_bytes);
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slider_uart.readable.bytes = slider_readable_bytes;
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slider_uart.readable.nbytes = sizeof(slider_readable_bytes);
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iohook_push_handler(slider_handle_irp);
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}
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static HRESULT slider_handle_irp(struct irp *irp)
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{
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HRESULT hr;
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assert(irp != NULL);
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if (!uart_match_irp(&slider_uart, irp)) {
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return iohook_invoke_next(irp);
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}
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EnterCriticalSection(&slider_lock);
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hr = slider_handle_irp_locked(irp);
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LeaveCriticalSection(&slider_lock);
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return hr;
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}
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static HRESULT slider_handle_irp_locked(struct irp *irp)
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{
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union slider_req_any req;
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struct iobuf req_iobuf;
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HRESULT hr;
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hr = uart_handle_irp(&slider_uart, irp);
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if (FAILED(hr) || irp->op != IRP_OP_WRITE) {
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return hr;
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}
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for (;;) {
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#if 0
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dprintf("TX Buffer:\n");
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dump_iobuf(&slider_uart.written);
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#endif
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req_iobuf.bytes = req.bytes;
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req_iobuf.nbytes = sizeof(req.bytes);
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req_iobuf.pos = 0;
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hr = slider_frame_decode(&req_iobuf, &slider_uart.written);
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if (hr != S_OK) {
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if (FAILED(hr)) {
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dprintf("Chunithm slider: Deframe error: %x\n", (int) hr);
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}
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return hr;
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}
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#if 0
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dprintf("Deframe Buffer:\n");
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dump_iobuf(&req_iobuf);
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#endif
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hr = slider_req_dispatch(&req);
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if (FAILED(hr)) {
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dprintf("Chunithm slider: Processing error: %x\n", (int) hr);
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}
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}
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}
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static HRESULT slider_req_dispatch(const union slider_req_any *req)
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{
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switch (req->hdr.cmd) {
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case SLIDER_CMD_RESET:
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return slider_req_reset();
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case SLIDER_CMD_GET_BOARD_INFO:
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return slider_req_get_board_info();
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case SLIDER_CMD_SET_LED:
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return slider_req_set_led(&req->set_led);
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case SLIDER_CMD_AUTO_SCAN_START:
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return slider_req_auto_scan_start();
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case SLIDER_CMD_AUTO_SCAN_STOP:
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return slider_req_auto_scan_stop();
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default:
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dprintf("Unhandled command %02x\n", req->hdr.cmd);
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return S_OK;
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}
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}
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static HRESULT slider_req_reset(void)
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{
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struct slider_hdr resp;
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dprintf("Chunithm slider: Reset\n");
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resp.sync = 0xFF;
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resp.cmd = SLIDER_CMD_RESET;
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resp.nbytes = 0;
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return slider_frame_encode(&slider_uart.readable, &resp, sizeof(resp));
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}
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static HRESULT slider_req_get_board_info(void)
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{
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struct slider_resp_get_board_info resp;
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dprintf("Chunithm slider: Get firmware version\n");
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memset(&resp, 0, sizeof(resp));
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resp.hdr.sync = SLIDER_FRAME_SYNC;
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resp.hdr.cmd = SLIDER_CMD_GET_BOARD_INFO;
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resp.hdr.nbytes = sizeof(resp.version);
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strcpy_s(
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resp.version,
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sizeof(resp.version),
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"15330 \xA0" "06712\xFF" "\x90");
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return slider_frame_encode(&slider_uart.readable, &resp, sizeof(resp));
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}
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static HRESULT slider_req_auto_scan_start(void)
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{
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dprintf("Chunithm slider: Start slider thread\n");
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if (slider_thread != NULL) {
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dprintf("Thread is already running\n");
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return S_OK;
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}
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slider_thread = (HANDLE) _beginthreadex(
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NULL,
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0,
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slider_thread_proc,
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NULL,
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0,
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NULL);
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if (slider_thread == NULL) {
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dprintf("Thread launch failed\n");
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}
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/* This message is not acknowledged */
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return S_OK;
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}
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static HRESULT slider_req_auto_scan_stop(void)
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{
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struct slider_hdr resp;
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dprintf("Chunithm slider: Stop slider thread\n");
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if (slider_thread != NULL) {
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slider_stop = true;
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LeaveCriticalSection(&slider_lock);
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WaitForSingleObject(slider_thread, INFINITE);
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CloseHandle(slider_thread);
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slider_thread = NULL;
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slider_stop = false;
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dprintf("Chunithm slider: Thread has terminated\n");
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EnterCriticalSection(&slider_lock);
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}
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resp.sync = SLIDER_FRAME_SYNC;
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resp.cmd = SLIDER_CMD_AUTO_SCAN_STOP;
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resp.nbytes = 0;
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return slider_frame_encode(&slider_uart.readable, &resp, sizeof(resp));
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}
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static HRESULT slider_req_set_led(const struct slider_req_set_led *req)
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{
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/* This message is not acknowledged */
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return S_OK;
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}
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static unsigned int WINAPI slider_thread_proc(void *ctx)
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{
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static const int keys[] = {
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'S', 'D', 'F', 'G', 'H', 'J', 'K', 'L',
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};
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struct slider_resp_auto_scan resp;
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uint8_t pressure;
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bool stop;
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size_t i;
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for (;;) {
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resp.hdr.sync = SLIDER_FRAME_SYNC;
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resp.hdr.cmd = SLIDER_CMD_AUTO_SCAN;
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resp.hdr.nbytes = sizeof(resp.pressure);
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for (i = 0 ; i < 8 ; i++) {
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pressure = GetAsyncKeyState(keys[i]) ? 20 : 0;
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memset(&resp.pressure[28 - 4 * i], pressure, 4);
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}
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EnterCriticalSection(&slider_lock);
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stop = slider_stop;
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if (!stop) {
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slider_frame_encode(&slider_uart.readable, &resp, sizeof(resp));
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}
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LeaveCriticalSection(&slider_lock);
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if (stop) {
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return 0;
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}
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Sleep(1);
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}
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}
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