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209 lines
6.8 KiB
209 lines
6.8 KiB
/*
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*************************************************************************
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* File: SECURITY.C
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*
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* Module: USBCCGP.SYS
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* USB Common Class Generic Parent driver.
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*
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* Copyright (c) 1998 Microsoft Corporation
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*
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*
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* Author: ervinp
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*
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*************************************************************************
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*/
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#include <wdm.h>
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#include <usbdi.h>
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#include <usbdlib.h>
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#include <usbioctl.h>
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#include "usbccgp.h"
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#include "security.h"
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#include "debug.h"
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NTSTATUS GetUniqueIdFromCSInterface(PPARENT_FDO_EXT parentFdoExt, PMEDIA_SERIAL_NUMBER_DATA serialNumData, ULONG serialNumLen)
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{
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PUCHAR uniqueIdBuf;
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NTSTATUS status;
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ULONG bufLen = 0;
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// BUGBUG - check CSM#
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/*
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* Need to allocate a locked buffer for the call to USB.
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*/
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uniqueIdBuf = ALLOCPOOL(NonPagedPool, CSM1_GET_UNIQUE_ID_LENGTH);
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if (uniqueIdBuf){
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URB urb = { 0 };
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urb.UrbHeader.Length = sizeof(struct _URB_CONTROL_VENDOR_OR_CLASS_REQUEST);
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urb.UrbHeader.Function = URB_FUNCTION_CLASS_INTERFACE;
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urb.UrbControlVendorClassRequest.TransferFlags = USBD_TRANSFER_DIRECTION_IN;
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urb.UrbControlVendorClassRequest.TransferBufferLength = CSM1_GET_UNIQUE_ID_LENGTH;
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urb.UrbControlVendorClassRequest.TransferBuffer = uniqueIdBuf;
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urb.UrbControlVendorClassRequest.Request = CSM1_REQUEST_GET_UNIQUE_ID;
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urb.UrbControlVendorClassRequest.Value = 0;
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urb.UrbControlVendorClassRequest.Index = (USHORT)(parentFdoExt->CSInterfaceNumber | (parentFdoExt->CSChannelId << 8));
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status = SubmitUrb(parentFdoExt, &urb, TRUE, NULL, NULL);
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if (NT_SUCCESS(status)){
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bufLen = urb.UrbControlVendorClassRequest.TransferBufferLength;
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ASSERT(bufLen <= CSM1_GET_UNIQUE_ID_LENGTH);
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ASSERT(serialNumLen > 0);
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bufLen = MIN(bufLen, CSM1_GET_UNIQUE_ID_LENGTH);
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bufLen = MIN(bufLen, serialNumLen);
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RtlCopyMemory(serialNumData->SerialNumberData, uniqueIdBuf, bufLen);
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DBGDUMPBYTES("GetUniqueIdFromCSInterface - unique id:", serialNumData->SerialNumberData, bufLen);
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}
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else {
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DBGERR(("CSM1_REQUEST_GET_UNIQUE_ID failed with %xh.", status));
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}
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FREEPOOL(uniqueIdBuf);
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}
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else {
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DBGERR(("couldn't allocate unique id buf"));
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status = STATUS_INSUFFICIENT_RESOURCES;
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}
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serialNumData->SerialNumberLength = bufLen;
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serialNumData->Result = status;
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return status;
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}
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NTSTATUS GetMediaSerialNumber(PPARENT_FDO_EXT parentFdoExt, PIRP irp)
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{
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PIO_STACK_LOCATION irpSp = IoGetCurrentIrpStackLocation(irp);
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PMEDIA_SERIAL_NUMBER_DATA serialNumData;
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NTSTATUS status;
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ULONG serialNumLen;
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DBGVERBOSE(("*** IOCTL_STORAGE_GET_MEDIA_SERIAL_NUMBER ***"));
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/*
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* IOCTL_STORAGE_GET_MEDIA_SERIAL_NUMBER is a METHOD_BUFFERED irp.
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* So the kernel allocated a systemBuffer for us IF the app passed
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* in a non-zero buffer size. So we don't need to probe the buffer
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* itself, but we do need to:
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* 1. verify that the buffer was indeed allocated
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* 2. that it is large enough
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*
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* The buffer is a var-size struct; be careful to not dereference any
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* field until it is verified that the struct is longer than the offset
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* of that field.
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* Note that serialNumData->SerialNumberLength is the alleged size
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* of the serialNumData->SerialNumberData array, not of the entire structure.
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*/
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serialNumData = irp->AssociatedIrp.SystemBuffer;
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if (serialNumData &&
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(irpSp->Parameters.DeviceIoControl.OutputBufferLength >= sizeof(MEDIA_SERIAL_NUMBER_DATA))) {
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// Serial number buffer length is the size of the output buffer minus
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// the size of the MEDIA_SERIAL_NUMBER_DATA structure.
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serialNumLen = irpSp->Parameters.DeviceIoControl.OutputBufferLength -
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sizeof(MEDIA_SERIAL_NUMBER_DATA);
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status = GetUniqueIdFromCSInterface(parentFdoExt, serialNumData, serialNumLen);
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irp->IoStatus.Information = FIELD_OFFSET(MEDIA_SERIAL_NUMBER_DATA, SerialNumberData) +
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serialNumData->SerialNumberLength;
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}
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else {
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DBGERR(("Bad buffer with IOCTL_STORAGE_GET_MEDIA_SERIAL_NUMBER, irp=%ph.", irp));
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status = STATUS_INVALID_BUFFER_SIZE;
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}
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return status;
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}
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/*
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* GetChannelDescForInterface
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*
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* BUGBUG - INCOMPLETE
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* We don't support multiple channel descriptors yet.
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* Eventually we'll need to return a channel id
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* for a particular protected interface/endpoint.
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*/
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CS_CHANNEL_DESCRIPTOR *GetChannelDescForInterface(PPARENT_FDO_EXT parentFdoExt, ULONG interfaceNum)
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{
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PUSB_INTERFACE_DESCRIPTOR interfaceDesc;
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CS_CHANNEL_DESCRIPTOR *channelDesc = NULL;
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CS_METHOD_AND_VARIANT *methodAndVar;
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interfaceDesc = USBD_ParseConfigurationDescriptorEx(
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parentFdoExt->configDesc,
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parentFdoExt->configDesc,
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-1,
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0, // BUGBUG - allow alternate CS interfaces ?
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USB_DEVICE_CLASS_CONTENT_SECURITY,
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-1,
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-1);
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if (interfaceDesc){
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PUSB_COMMON_DESCRIPTOR commonDesc = (PUSB_COMMON_DESCRIPTOR)interfaceDesc;
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while (POINTER_DISTANCE(commonDesc, parentFdoExt->configDesc) < parentFdoExt->configDesc->wTotalLength){
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if (commonDesc->bDescriptorType == CS_DESCRIPTOR_TYPE_CHANNEL){
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channelDesc = (CS_CHANNEL_DESCRIPTOR *)commonDesc;
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break;
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}
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(PUCHAR)commonDesc += commonDesc->bLength;
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}
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}
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if (channelDesc){
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/*
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* Make sure that this channel descriptor supports CSM1,
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* which is all we support right now.
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* BUGBUG
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*/
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BOOLEAN foundSupportedCSM = FALSE;
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for (methodAndVar = channelDesc->methodAndVariant;
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POINTER_DISTANCE(methodAndVar, channelDesc) < channelDesc->bLength;
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methodAndVar++){
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if (methodAndVar->bMethod == CSM_BASIC){
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foundSupportedCSM = TRUE;
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break;
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}
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}
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if (!foundSupportedCSM){
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DBGERR(("Did not find supported CSM !"));
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channelDesc = NULL;
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}
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}
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ASSERT(channelDesc);
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return channelDesc;
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}
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VOID InitCSInfo(PPARENT_FDO_EXT parentFdoExt, ULONG CSIfaceNumber)
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{
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CS_CHANNEL_DESCRIPTOR *channelDesc;
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channelDesc = GetChannelDescForInterface(parentFdoExt, 0); // BUGBUG iface# not used because only support one channel desc
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if (channelDesc){
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parentFdoExt->CSChannelId = channelDesc->bChannelID;
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parentFdoExt->CSInterfaceNumber = CSIfaceNumber;
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parentFdoExt->haveCSInterface = TRUE;
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}
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else {
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ASSERT(channelDesc);
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}
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}
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