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544 lines
20 KiB
544 lines
20 KiB
/*
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* DEVICES.C
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*
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* Point-of-Sale Control Panel Applet
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*
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* Author: Ervin Peretz
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*
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* (c) 2001 Microsoft Corporation
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*/
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#include <windows.h>
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#include <windowsx.h>
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#include <commctrl.h>
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#include <cpl.h>
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#include <setupapi.h>
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#include <hidsdi.h>
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#include "internal.h"
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#include "res.h"
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#include "debug.h"
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ULONG numDeviceInstances = 0;
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LIST_ENTRY allPOSDevicesList;
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posDevice *NewPOSDevice( DWORD dialogId,
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HANDLE devHandle,
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PWCHAR devPath,
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PHIDP_PREPARSED_DATA pHidPreparsedData,
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PHIDD_ATTRIBUTES pHidAttrib,
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HIDP_CAPS *pHidCapabilities)
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{
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posDevice *newPosDev;
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newPosDev = (posDevice *)GlobalAlloc( GMEM_FIXED|GMEM_ZEROINIT,
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sizeof(posDevice));
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if (newPosDev){
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newPosDev->sig = POSCPL_SIG;
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InitializeListHead(&newPosDev->listEntry);
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newPosDev->dialogId = dialogId;
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newPosDev->devHandle = devHandle;
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WStrNCpy(newPosDev->pathName, devPath, MAX_PATH);
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newPosDev->hidPreparsedData = pHidPreparsedData;
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newPosDev->hidAttrib = *pHidAttrib;
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newPosDev->hidCapabilities = *pHidCapabilities;
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/*
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* Allocate components of the context
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*/
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if (newPosDev->hidCapabilities.InputReportByteLength){
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newPosDev->readBuffer = GlobalAlloc(GMEM_FIXED|GMEM_ZEROINIT,
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newPosDev->hidCapabilities.InputReportByteLength);
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}
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if (newPosDev->hidCapabilities.OutputReportByteLength){
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newPosDev->writeBuffer = GlobalAlloc( GMEM_FIXED|GMEM_ZEROINIT,
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newPosDev->hidCapabilities.OutputReportByteLength);
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}
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#if USE_OVERLAPPED_IO
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newPosDev->overlappedReadEvent = CreateEvent(NULL, TRUE, FALSE, NULL);
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newPosDev->overlappedWriteEvent = CreateEvent(NULL, TRUE, FALSE, NULL);
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#endif
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/*
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* Check if we allocated everything successfully.
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*/
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if (
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(newPosDev->readBuffer || !newPosDev->hidCapabilities.InputReportByteLength) &&
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(newPosDev->writeBuffer || !newPosDev->hidCapabilities.OutputReportByteLength) &&
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#if USE_OVERLAPPED_IO
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newPosDev->overlappedReadEvent &&
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newPosDev->overlappedWriteEvent &&
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#endif
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TRUE
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){
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/*
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* Created device context successfully.
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*/
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}
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else {
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DBGERR(L"allocation error in NewPOSDevice()", 0);
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DestroyPOSDevice(newPosDev);
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newPosDev = NULL;
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}
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}
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ASSERT(newPosDev);
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return newPosDev;
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}
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VOID DestroyPOSDevice(posDevice *posDev)
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{
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ASSERT(IsListEmpty(&posDev->listEntry));
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/*
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* Note: this destroy function is called from a failed NewPOSDevice()
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* call as well; so check every pointer before freeing.
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*/
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if (posDev->readBuffer) GlobalFree(posDev->readBuffer);
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if (posDev->writeBuffer) GlobalFree(posDev->writeBuffer);
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if (posDev->hidPreparsedData) GlobalFree(posDev->hidPreparsedData);
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#if USE_OVERLAPPED_IO
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if (posDev->overlappedReadEvent) CloseHandle(posDev->overlappedReadEvent);
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if (posDev->overlappedWriteEvent) CloseHandle(posDev->overlappedWriteEvent);
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#endif
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GlobalFree(posDev);
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}
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VOID EnqueuePOSDevice(posDevice *posDev)
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{
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ASSERT(IsListEmpty(&posDev->listEntry));
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InsertTailList(&allPOSDevicesList, &posDev->listEntry);
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numDeviceInstances++;
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}
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VOID DequeuePOSDevice(posDevice *posDev)
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{
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ASSERT(!IsListEmpty(&allPOSDevicesList));
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ASSERT(!IsListEmpty(&posDev->listEntry));
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RemoveEntryList(&posDev->listEntry);
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InitializeListHead(&posDev->listEntry);
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numDeviceInstances--;
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}
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posDevice *GetDeviceByHDlg(HWND hDlg)
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{
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posDevice *foundPosDev = NULL;
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LIST_ENTRY *listEntry;
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listEntry = &allPOSDevicesList;
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while ((listEntry = listEntry->Flink) != &allPOSDevicesList){
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posDevice *thisPosDev;
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thisPosDev = CONTAINING_RECORD(listEntry, posDevice, listEntry);
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if (thisPosDev->hDlg == hDlg){
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foundPosDev = thisPosDev;
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break;
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}
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}
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return foundPosDev;
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}
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VOID OpenAllHIDPOSDevices()
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{
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HDEVINFO hDevInfo;
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GUID hidGuid = {0};
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WCHAR devicePath[MAX_PATH];
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/*
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* Call hid.dll to get the GUID for Human Input Devices.
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*/
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HidD_GetHidGuid(&hidGuid);
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hDevInfo = SetupDiGetClassDevs( &hidGuid,
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NULL,
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NULL,
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DIGCF_PRESENT | DIGCF_DEVICEINTERFACE);
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if (hDevInfo == INVALID_HANDLE_VALUE){
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DWORD err = GetLastError();
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DBGERR(L"SetupDiGetClassDevs failed", err);
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}
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else {
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int i;
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for (i = 0; TRUE; i++){
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SP_DEVICE_INTERFACE_DATA devInfoData = {0};
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BOOL ok;
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devInfoData.cbSize = sizeof(SP_DEVICE_INTERFACE_DATA);
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ok = SetupDiEnumDeviceInterfaces( hDevInfo,
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0,
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&hidGuid,
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i,
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&devInfoData);
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if (ok){
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DWORD hwDetailLen = 0;
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/*
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* Call SetupDiGetDeviceInterfaceDetail with
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* a NULL PSP_DEVICE_INTERFACE_DETAIL_DATA pointer
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* just to get the length of the hardware details.
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*/
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ASSERT(devInfoData.cbSize == sizeof(SP_DEVICE_INTERFACE_DATA));
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ok = SetupDiGetDeviceInterfaceDetail(
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hDevInfo,
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&devInfoData,
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NULL,
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0,
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&hwDetailLen,
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NULL);
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if (ok || (GetLastError() == ERROR_INSUFFICIENT_BUFFER)){
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PSP_DEVICE_INTERFACE_DETAIL_DATA devDetails;
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/*
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* Now make the real call to SetupDiGetDeviceInterfaceDetail.
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*/
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ASSERT(hwDetailLen > sizeof(SP_DEVICE_INTERFACE_DETAIL_DATA));
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devDetails = GlobalAlloc(GMEM_FIXED|GMEM_ZEROINIT, hwDetailLen);
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if (devDetails){
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devDetails->cbSize = sizeof(SP_DEVICE_INTERFACE_DETAIL_DATA);
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ok = SetupDiGetDeviceInterfaceDetail(
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hDevInfo,
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&devInfoData,
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devDetails,
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hwDetailLen,
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&hwDetailLen,
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NULL);
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if (ok){
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/*
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* BUGBUG - FINISH
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* Right now, we only handle cash drawers.
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* And we only work with the APG cash drawers
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* (with vendor-specific usages) for now.
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*/
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WCHAR apgKbPathPrefix[] = L"\\\\?\\hid#vid_0f25&pid_0500";
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/*
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* If this is an APG keyboard, then the device path
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* (very long) will begin with apgKbPathPrefix.
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*/
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if (RtlEqualMemory( devDetails->DevicePath,
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apgKbPathPrefix,
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sizeof(apgKbPathPrefix)-sizeof(WCHAR))){
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HANDLE hDev;
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// MessageBox(NULL, devDetails->DevicePath, L"DEBUG message - found APG kb", MB_OK);
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hDev = CreateFile(
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devDetails->DevicePath,
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GENERIC_READ | GENERIC_WRITE,
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FILE_SHARE_READ | FILE_SHARE_WRITE,
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NULL,
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OPEN_EXISTING,
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0,
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NULL);
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if (hDev == INVALID_HANDLE_VALUE){
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DWORD err = GetLastError();
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DBGERR(L"CreateFile failed", err);
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}
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else {
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PHIDP_PREPARSED_DATA hidPreparsedData;
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// MessageBox(NULL, devDetails->DevicePath, L"DEBUG message - CreateFile succeeded", MB_OK);
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ok = HidD_GetPreparsedData(hDev, &hidPreparsedData);
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if (ok){
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HIDD_ATTRIBUTES hidAttrib;
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ok = HidD_GetAttributes(hDev, &hidAttrib);
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if (ok){
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HIDP_CAPS hidCapabilities;
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ok = HidP_GetCaps(hidPreparsedData, &hidCapabilities);
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if (ok){
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posDevice *posDev;
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posDev = NewPOSDevice( IDD_POS_CASHDRAWER_DLG,
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hDev,
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devDetails->DevicePath,
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hidPreparsedData,
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&hidAttrib,
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&hidCapabilities);
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if (posDev){
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EnqueuePOSDevice(posDev);
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}
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else {
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ASSERT(posDev);
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}
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}
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else {
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DBGERR(L"HidP_GetCaps failed", 0);
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}
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}
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else {
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DWORD err = GetLastError();
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DBGERR(L"HidD_GetAttributes failed", err);
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}
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}
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else {
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DWORD err = GetLastError();
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DBGERR(L"HidD_GetPreparsedData failed", err);
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}
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}
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}
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}
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else {
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DWORD err = GetLastError();
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DBGERR(L"SetupDiGetDeviceInterfaceDetail(2) failed", err);
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}
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GlobalFree(devDetails);
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}
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}
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else {
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DWORD err = GetLastError();
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DBGERR(L"SetupDiGetDeviceInterfaceDetail(1) failed", err);
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}
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}
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else {
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DWORD err = GetLastError();
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if (err != ERROR_NO_MORE_ITEMS){
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DBGERR(L"SetupDiEnumDeviceInterfaces failed", err);
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}
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break;
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}
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}
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SetupDiDestroyDeviceInfoList(hDevInfo);
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}
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}
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/*
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* LaunchDeviceInstanceThread
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*
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* Launch a thread for a device instance to read
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* asynchronous events from the device.
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*/
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VOID LaunchDeviceInstanceThread(posDevice *posDev)
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{
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DWORD threadId;
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posDev->hThread = CreateThread(NULL, 0, DeviceInstanceThread, posDev, 0, &threadId);
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if (posDev->hThread){
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}
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else {
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DWORD err = GetLastError();
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DBGERR(L"CreateThread failed", err);
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}
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}
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#if USE_OVERLAPPED_IO
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VOID CALLBACK OverlappedReadCompletionRoutine( DWORD dwErrorCode,
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DWORD dwNumberOfBytesTransfered,
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LPOVERLAPPED lpOverlapped)
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{
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posDevice *posDev;
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/*
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* We stashed our context in the hEvent field of the
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* overlapped structure (this is allowed).
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*/
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ASSERT(lpOverlapped);
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posDev = lpOverlapped->hEvent;
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ASSERT(posDev->sig == POSCPL_SIG);
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posDev->overlappedReadStatus = dwErrorCode;
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posDev->overlappedReadLen = dwNumberOfBytesTransfered;
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SetEvent(posDev->overlappedReadEvent);
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}
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#endif
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DWORD __stdcall DeviceInstanceThread(void *context)
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{
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posDevice *posDev = (posDevice *)context;
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HANDLE hDevNew;
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ASSERT(posDev->sig == POSCPL_SIG);
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// BUGBUG - for some reason, reads and writes on the same handle
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// interfere with one another
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hDevNew = CreateFile(
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posDev->pathName,
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GENERIC_READ,
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FILE_SHARE_READ | FILE_SHARE_WRITE,
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NULL,
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OPEN_EXISTING,
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0,
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NULL);
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if (hDevNew == INVALID_HANDLE_VALUE){
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DWORD err = GetLastError();
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DBGERR(L"CreateFile failed", err);
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}
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else {
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/*
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* Loop forever until main thread kills this thread.
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*/
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while (TRUE){
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WCHAR drawerStateString[100];
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DWORD bytesRead = 0;
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BOOL ok;
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/*
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* Load the default string for the drawer state
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*/
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LoadString(g_hInst, IDS_DRAWERSTATE_UNKNOWN, drawerStateString, 100);
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ASSERT(posDev->hidCapabilities.InputReportByteLength > 0);
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ASSERT(posDev->readBuffer);
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#if USE_OVERLAPPED_IO
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/*
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* It's ok to stash our context in the hEvent field
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* of the overlapped structure.
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*/
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posDev->overlappedReadInfo.hEvent = (HANDLE)posDev;
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posDev->overlappedReadInfo.Offset = 0;
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posDev->overlappedReadInfo.OffsetHigh = 0;
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posDev->overlappedReadLen = 0;
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ResetEvent(posDev->overlappedReadEvent);
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ok = ReadFileEx(hDevNew,
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posDev->readBuffer,
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posDev->hidCapabilities.InputReportByteLength,
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&posDev->overlappedReadInfo,
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OverlappedReadCompletionRoutine);
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if (ok){
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WaitForSingleObject(posDev->overlappedReadEvent, INFINITE);
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ok = (posDev->overlappedReadStatus == NO_ERROR);
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bytesRead = posDev->overlappedWriteLen;
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}
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else {
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bytesRead = 0;
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}
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#else
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ok = ReadFile( hDevNew,
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posDev->readBuffer,
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posDev->hidCapabilities.InputReportByteLength,
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&bytesRead,
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NULL);
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#endif
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if (ok){
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NTSTATUS ntStat;
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ULONG usageVal;
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ASSERT(bytesRead <= posDev->hidCapabilities.InputReportByteLength);
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ntStat = HidP_GetUsageValue(HidP_Input,
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USAGE_PAGE_CASH_DEVICE,
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0, // all collections
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USAGE_CASH_DRAWER_STATUS,
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&usageVal,
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posDev->hidPreparsedData,
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posDev->readBuffer,
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posDev->hidCapabilities.InputReportByteLength);
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if (ntStat == HIDP_STATUS_SUCCESS){
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HWND hOpenButton;
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/*
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* Get display string for new drawer state.
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*/
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switch (usageVal){
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case DRAWER_STATE_OPEN:
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LoadString(g_hInst, IDS_DRAWERSTATE_OPEN, drawerStateString, 100);
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break;
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case DRAWER_STATE_CLOSED_READY:
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LoadString(g_hInst, IDS_DRAWERSTATE_READY, drawerStateString, 100);
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break;
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case DRAWER_STATE_CLOSED_CHARGING:
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LoadString(g_hInst, IDS_DRAWERSTATE_CHARGING, drawerStateString, 100);
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break;
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case DRAWER_STATE_LOCKED:
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LoadString(g_hInst, IDS_DRAWERSTATE_LOCKED, drawerStateString, 100);
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break;
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default:
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DBGERR(L"illegal usage", usageVal);
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break;
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}
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/*
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* Set 'Open' button based on the drawer state.
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*/
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hOpenButton = GetDlgItem(posDev->hDlg, IDC_CASHDRAWER_OPEN);
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if (hOpenButton){
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LONG btnState = GetWindowLong(hOpenButton, GWL_STYLE);
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switch (usageVal){
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case DRAWER_STATE_OPEN:
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btnState |= WS_DISABLED;
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break;
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default:
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btnState &= ~WS_DISABLED;
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break;
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}
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SetWindowLong(hOpenButton, GWL_STYLE, btnState);
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/*
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* To make SetWindowLong take effect, you
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* sometimes have to call SetWindowPos.
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*/
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SetWindowPos(hOpenButton, 0,
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0, 0, 0, 0,
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SWP_NOMOVE|SWP_NOSIZE|SWP_NOZORDER|SWP_HIDEWINDOW);
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SetWindowPos(hOpenButton, 0,
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0, 0, 0, 0,
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SWP_NOMOVE|SWP_NOSIZE|SWP_NOZORDER|SWP_SHOWWINDOW);
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}
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else {
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DBGERR(L"GetDlgItem failed", 0);
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}
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}
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else {
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DBGERR(L"HidP_GetUsageValue failed", ntStat);
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DBGERR(DBGHIDSTATUSSTR(ntStat), 0);
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}
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}
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else {
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DWORD err = GetLastError();
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DBGERR(L"ReadFile failed", err);
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}
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ASSERT(posDev->hDlg);
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ok = SetDlgItemText(posDev->hDlg, IDC_CASHDRAWER_STATETEXT, drawerStateString);
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if (ok){
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}
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else {
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DWORD err = GetLastError();
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DBGERR(L"SetDlgItemText failed", err);
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}
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}
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CloseHandle(hDevNew);
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}
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return NO_ERROR;
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}
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