549 lines
16 KiB
C++
549 lines
16 KiB
C++
//+-------------------------------------------------------------------------
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//
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// Microsoft Windows
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//
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// Copyright (C) Microsoft Corporation, 1996 - 1999
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//
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// File: msghlpr.cpp
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//
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// Contents: Cryptographic Message Helper APIs
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//
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// APIs: CryptMsgGetAndVerifySigner
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// CryptMsgSignCTL
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// CryptMsgEncodeAndSignCTL
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//
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// History: 02-May-97 philh created
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//--------------------------------------------------------------------------
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#include "global.hxx"
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#include "pkialloc.h"
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void *ICM_AllocAndGetMsgParam(
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IN HCRYPTMSG hMsg,
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IN DWORD dwParamType,
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IN DWORD dwIndex
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)
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{
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void *pvData;
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DWORD cbData;
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if (!CryptMsgGetParam(
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hMsg,
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dwParamType,
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dwIndex,
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NULL, // pvData
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&cbData) || 0 == cbData)
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goto GetParamError;
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if (NULL == (pvData = ICM_Alloc(cbData)))
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goto OutOfMemory;
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if (!CryptMsgGetParam(
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hMsg,
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dwParamType,
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dwIndex,
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pvData,
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&cbData)) {
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ICM_Free(pvData);
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goto GetParamError;
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}
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CommonReturn:
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return pvData;
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ErrorReturn:
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pvData = NULL;
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goto CommonReturn;
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TRACE_ERROR(OutOfMemory)
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TRACE_ERROR(GetParamError)
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}
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#ifdef CMS_PKCS7
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BOOL ICM_GetAndVerifySigner(
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IN HCRYPTMSG hCryptMsg,
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IN DWORD dwSignerIndex,
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IN DWORD cSignerStore,
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IN OPTIONAL HCERTSTORE *rghSignerStore,
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IN DWORD dwFlags,
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OUT OPTIONAL PCCERT_CONTEXT *ppSigner
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)
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{
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BOOL fResult;
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PCERT_INFO pSignerId = NULL;
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PCCERT_CONTEXT pSigner = NULL;
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DWORD dwCertEncodingType;
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DWORD dwVerifyErr = 0;
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HCERTSTORE hCollection = NULL;
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if (NULL == (pSignerId = (PCERT_INFO) ICM_AllocAndGetMsgParam(
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hCryptMsg,
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CMSG_SIGNER_CERT_INFO_PARAM,
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dwSignerIndex
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))) goto GetSignerError;
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// If no CertEncodingType, then, use the MsgEncodingType
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dwCertEncodingType = ((PCRYPT_MSG_INFO) hCryptMsg)->dwEncodingType;
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if (0 == (dwCertEncodingType & CERT_ENCODING_TYPE_MASK))
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dwCertEncodingType =
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(dwCertEncodingType >> 16) & CERT_ENCODING_TYPE_MASK;
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if (NULL == (hCollection = CertOpenStore(
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CERT_STORE_PROV_COLLECTION,
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0, // dwEncodingType
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0, // hCryptProv
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0, // dwFlags
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NULL // pvPara
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)))
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goto OpenCollectionStoreError;
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if (0 == (dwFlags & CMSG_TRUSTED_SIGNER_FLAG)) {
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HCERTSTORE hMsgCertStore;
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// Open a cert store initialized with certs from the message
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// and add to collection
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if (hMsgCertStore = CertOpenStore(
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CERT_STORE_PROV_MSG,
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dwCertEncodingType,
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0, // hCryptProv
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0, // dwFlags
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hCryptMsg // pvPara
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)) {
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CertAddStoreToCollection(
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hCollection,
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hMsgCertStore,
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CERT_PHYSICAL_STORE_ADD_ENABLE_FLAG,
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0 // dwPriority
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);
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CertCloseStore(hMsgCertStore, 0);
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}
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}
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// Add all the signer stores to the collection
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for ( ; cSignerStore > 0; cSignerStore--, rghSignerStore++) {
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HCERTSTORE hSignerStore = *rghSignerStore;
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if (NULL == hSignerStore)
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continue;
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CertAddStoreToCollection(
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hCollection,
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hSignerStore,
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CERT_PHYSICAL_STORE_ADD_ENABLE_FLAG,
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0 // dwPriority
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);
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}
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if (pSigner = CertGetSubjectCertificateFromStore(hCollection,
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dwCertEncodingType, pSignerId)) {
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CMSG_CTRL_VERIFY_SIGNATURE_EX_PARA CtrlPara;
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if (dwFlags & CMSG_SIGNER_ONLY_FLAG)
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goto SuccessReturn;
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memset(&CtrlPara, 0, sizeof(CtrlPara));
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CtrlPara.cbSize = sizeof(CtrlPara);
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// CtrlPara.hCryptProv =
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CtrlPara.dwSignerIndex = dwSignerIndex;
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CtrlPara.dwSignerType = CMSG_VERIFY_SIGNER_CERT;
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CtrlPara.pvSigner = (void *) pSigner;
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if (CryptMsgControl(
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hCryptMsg,
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0, // dwFlags
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CMSG_CTRL_VERIFY_SIGNATURE_EX,
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&CtrlPara)) goto SuccessReturn;
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else {
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dwVerifyErr = GetLastError();
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if (CRYPT_E_MISSING_PUBKEY_PARA == dwVerifyErr) {
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PCCERT_CHAIN_CONTEXT pChainContext;
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CERT_CHAIN_PARA ChainPara;
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// Build a chain. Hopefully, the signer inherit's its public key
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// parameters from up the chain
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memset(&ChainPara, 0, sizeof(ChainPara));
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ChainPara.cbSize = sizeof(ChainPara);
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if (CertGetCertificateChain(
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NULL, // hChainEngine
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pSigner,
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NULL, // pTime
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hCollection,
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&ChainPara,
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CERT_CHAIN_CACHE_ONLY_URL_RETRIEVAL,
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NULL, // pvReserved
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&pChainContext
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))
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CertFreeCertificateChain(pChainContext);
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// Try again. Hopefully the above chain building updated the
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// signer's context property with the missing public key
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// parameters
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if (CryptMsgControl(
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hCryptMsg,
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0, // dwFlags
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CMSG_CTRL_VERIFY_SIGNATURE_EX,
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&CtrlPara)) goto SuccessReturn;
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}
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}
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CertFreeCertificateContext(pSigner);
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pSigner = NULL;
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}
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if (dwVerifyErr)
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goto VerifySignatureError;
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else
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goto NoSignerError;
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SuccessReturn:
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fResult = TRUE;
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CommonReturn:
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if (hCollection)
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CertCloseStore(hCollection, 0);
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ICM_Free(pSignerId);
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if (ppSigner)
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*ppSigner = pSigner;
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else if (pSigner)
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CertFreeCertificateContext(pSigner);
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return fResult;
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ErrorReturn:
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fResult = FALSE;
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goto CommonReturn;
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TRACE_ERROR(OpenCollectionStoreError)
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TRACE_ERROR(GetSignerError)
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SET_ERROR(NoSignerError, CRYPT_E_NO_TRUSTED_SIGNER)
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SET_ERROR_VAR(VerifySignatureError, dwVerifyErr)
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}
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#else
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BOOL ICM_GetAndVerifySigner(
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IN HCRYPTMSG hCryptMsg,
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IN DWORD dwSignerIndex,
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IN DWORD cSignerStore,
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IN OPTIONAL HCERTSTORE *rghSignerStore,
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IN DWORD dwFlags,
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OUT OPTIONAL PCCERT_CONTEXT *ppSigner
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)
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{
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BOOL fResult;
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PCERT_INFO pSignerId = NULL;
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PCCERT_CONTEXT pSigner = NULL;
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DWORD dwCertEncodingType;
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DWORD dwVerifyErr = 0;
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if (NULL == (pSignerId = (PCERT_INFO) ICM_AllocAndGetMsgParam(
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hCryptMsg,
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CMSG_SIGNER_CERT_INFO_PARAM,
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dwSignerIndex
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))) goto GetSignerError;
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// If no CertEncodingType, then, use the MsgEncodingType
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dwCertEncodingType = ((PCRYPT_MSG_INFO) hCryptMsg)->dwEncodingType;
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if (0 == (dwCertEncodingType & CERT_ENCODING_TYPE_MASK))
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dwCertEncodingType =
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(dwCertEncodingType >> 16) & CERT_ENCODING_TYPE_MASK;
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if (0 == (dwFlags & CMSG_TRUSTED_SIGNER_FLAG)) {
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HCERTSTORE hMsgCertStore;
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// Open a cert store initialized with certs from the message
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if (hMsgCertStore = CertOpenStore(
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CERT_STORE_PROV_MSG,
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dwCertEncodingType,
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0, // hCryptProv
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0, // dwFlags
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hCryptMsg // pvPara
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)) {
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pSigner = CertGetSubjectCertificateFromStore(hMsgCertStore,
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dwCertEncodingType, pSignerId);
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CertCloseStore(hMsgCertStore, 0);
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}
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if (pSigner) {
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if (dwFlags & CMSG_SIGNER_ONLY_FLAG)
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goto SuccessReturn;
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if (CryptMsgControl(
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hCryptMsg,
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0, // dwFlags
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CMSG_CTRL_VERIFY_SIGNATURE,
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pSigner->pCertInfo)) goto SuccessReturn;
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else
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dwVerifyErr = GetLastError();
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CertFreeCertificateContext(pSigner);
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pSigner = NULL;
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}
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}
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for ( ; cSignerStore > 0; cSignerStore--, rghSignerStore++) {
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HCERTSTORE hSignerStore = *rghSignerStore;
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if (NULL == hSignerStore)
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continue;
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if (pSigner = CertGetSubjectCertificateFromStore(hSignerStore,
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dwCertEncodingType, pSignerId)) {
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if (dwFlags & CMSG_SIGNER_ONLY_FLAG)
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goto SuccessReturn;
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if (CryptMsgControl(
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hCryptMsg,
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0, // dwFlags
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CMSG_CTRL_VERIFY_SIGNATURE,
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pSigner->pCertInfo)) goto SuccessReturn;
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else
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dwVerifyErr = GetLastError();
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CertFreeCertificateContext(pSigner);
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pSigner = NULL;
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}
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}
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if (dwVerifyErr)
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goto VerifySignatureError;
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else
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goto NoSignerError;
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SuccessReturn:
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fResult = TRUE;
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CommonReturn:
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ICM_Free(pSignerId);
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if (ppSigner)
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*ppSigner = pSigner;
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else if (pSigner)
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CertFreeCertificateContext(pSigner);
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return fResult;
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ErrorReturn:
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fResult = FALSE;
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goto CommonReturn;
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TRACE_ERROR(GetSignerError)
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SET_ERROR(NoSignerError, CRYPT_E_NO_TRUSTED_SIGNER)
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SET_ERROR_VAR(VerifySignatureError, dwVerifyErr)
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}
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#endif // CMS_PKCS7
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//+-------------------------------------------------------------------------
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// Get and verify the signer of a cryptographic message.
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//
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// If CMSG_TRUSTED_SIGNER_FLAG is set, then, treat the Signer stores as being
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// trusted and only search them to find the certificate corresponding to the
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// signer's issuer and serial number. Otherwise, the SignerStores are
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// optionally provided to supplement the message's store of certificates.
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// If a signer certificate is found, its public key is used to verify
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// the message signature. The CMSG_SIGNER_ONLY_FLAG can be set to
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// return the signer without doing the signature verify.
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//
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// If CMSG_USE_SIGNER_INDEX_FLAG is set, then, only get the signer specified
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// by *pdwSignerIndex. Otherwise, iterate through all the signers
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// until a signer verifies or no more signers.
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//
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// For a verified signature, *ppSigner is updated with certificate context
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// of the signer and *pdwSignerIndex is updated with the index of the signer.
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// ppSigner and/or pdwSignerIndex can be NULL, indicating the caller isn't
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// interested in getting the CertContext and/or index of the signer.
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//--------------------------------------------------------------------------
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BOOL
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WINAPI
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CryptMsgGetAndVerifySigner(
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IN HCRYPTMSG hCryptMsg,
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IN DWORD cSignerStore,
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IN OPTIONAL HCERTSTORE *rghSignerStore,
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IN DWORD dwFlags,
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OUT OPTIONAL PCCERT_CONTEXT *ppSigner,
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IN OUT OPTIONAL DWORD *pdwSignerIndex
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)
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{
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BOOL fResult = FALSE;
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DWORD dwSignerCount;
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DWORD dwSignerIndex;
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if (dwFlags & CMSG_USE_SIGNER_INDEX_FLAG) {
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dwSignerCount = 1;
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dwSignerIndex = *pdwSignerIndex;
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} else {
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DWORD cbData;
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dwSignerIndex = 0;
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if (pdwSignerIndex)
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*pdwSignerIndex = 0;
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cbData = sizeof(dwSignerCount);
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if (!CryptMsgGetParam(
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hCryptMsg,
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CMSG_SIGNER_COUNT_PARAM,
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0, // dwIndex
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&dwSignerCount,
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&cbData) || 0 == dwSignerCount)
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goto NoSignerError;
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}
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// Minimum of one iteration
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for ( ; dwSignerCount > 0; dwSignerCount--, dwSignerIndex++) {
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if (fResult = ICM_GetAndVerifySigner(
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hCryptMsg,
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dwSignerIndex,
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cSignerStore,
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rghSignerStore,
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dwFlags,
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ppSigner)) {
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if (pdwSignerIndex && 0 == (dwFlags & CMSG_USE_SIGNER_INDEX_FLAG))
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*pdwSignerIndex = dwSignerIndex;
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break;
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}
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}
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CommonReturn:
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return fResult;
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ErrorReturn:
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if (ppSigner)
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*ppSigner = NULL;
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fResult = FALSE;
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goto CommonReturn;
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SET_ERROR(NoSignerError, CRYPT_E_NO_TRUSTED_SIGNER)
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}
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//+-------------------------------------------------------------------------
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// Sign an encoded CTL.
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//--------------------------------------------------------------------------
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BOOL
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WINAPI
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CryptMsgSignCTL(
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IN DWORD dwMsgEncodingType,
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IN BYTE *pbCtlContent,
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IN DWORD cbCtlContent,
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IN PCMSG_SIGNED_ENCODE_INFO pSignInfo,
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IN DWORD dwFlags,
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OUT BYTE *pbEncoded,
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IN OUT DWORD *pcbEncoded
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)
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{
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BOOL fResult;
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HCRYPTMSG hMsg = NULL;
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DWORD dwMsgFlags;
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#ifdef CMS_PKCS7
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if (dwFlags & CMSG_CMS_ENCAPSULATED_CTL_FLAG)
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dwMsgFlags = CMSG_CMS_ENCAPSULATED_CONTENT_FLAG;
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else
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dwMsgFlags = 0;
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#else
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dwMsgFlags = 0;
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#endif // CMS_PKCS7
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if (NULL == pbEncoded) {
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if (0 == (*pcbEncoded = CryptMsgCalculateEncodedLength(
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dwMsgEncodingType,
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dwMsgFlags,
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CMSG_SIGNED,
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pSignInfo,
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szOID_CTL,
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cbCtlContent))) goto CalculateEncodedLengthError;
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fResult = TRUE;
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} else {
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if (NULL == (hMsg = CryptMsgOpenToEncode(
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dwMsgEncodingType,
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dwMsgFlags,
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CMSG_SIGNED,
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pSignInfo,
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szOID_CTL,
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NULL // pStreamInfo
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))) goto OpenToEncodeError;
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if (!CryptMsgUpdate(
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hMsg,
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pbCtlContent,
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cbCtlContent,
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TRUE // fFinal
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)) goto UpdateError;
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fResult = CryptMsgGetParam(
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hMsg,
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CMSG_CONTENT_PARAM,
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0, // dwIndex
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pbEncoded,
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pcbEncoded);
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}
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CommonReturn:
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if (hMsg)
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CryptMsgClose(hMsg);
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return fResult;
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ErrorReturn:
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*pcbEncoded = 0;
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fResult = FALSE;
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goto CommonReturn;
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TRACE_ERROR(CalculateEncodedLengthError)
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TRACE_ERROR(OpenToEncodeError)
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TRACE_ERROR(UpdateError)
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}
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//+-------------------------------------------------------------------------
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// Encode the CTL and create a signed message containing the encoded CTL.
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//--------------------------------------------------------------------------
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BOOL
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WINAPI
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CryptMsgEncodeAndSignCTL(
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IN DWORD dwMsgEncodingType,
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IN PCTL_INFO pCtlInfo,
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IN PCMSG_SIGNED_ENCODE_INFO pSignInfo,
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IN DWORD dwFlags,
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OUT BYTE *pbEncoded,
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IN OUT DWORD *pcbEncoded
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)
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{
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BOOL fResult;
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BYTE *pbContent = NULL;
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DWORD cbContent;
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DWORD dwEncodingType;
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LPCSTR lpszStructType;
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DWORD dwEncodeFlags;
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dwEncodingType = (dwMsgEncodingType >> 16) & CERT_ENCODING_TYPE_MASK;
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assert(dwEncodingType != 0);
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if (0 == dwEncodingType)
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goto InvalidArg;
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dwEncodeFlags = CRYPT_ENCODE_ALLOC_FLAG;
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if (dwFlags & CMSG_ENCODE_SORTED_CTL_FLAG) {
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lpszStructType = PKCS_SORTED_CTL;
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if (dwFlags & CMSG_ENCODE_HASHED_SUBJECT_IDENTIFIER_FLAG)
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dwEncodeFlags |=
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CRYPT_SORTED_CTL_ENCODE_HASHED_SUBJECT_IDENTIFIER_FLAG;
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} else {
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lpszStructType = PKCS_CTL;
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}
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if (!CryptEncodeObjectEx(
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dwEncodingType,
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lpszStructType,
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pCtlInfo,
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dwEncodeFlags,
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&PkiEncodePara,
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(void *) &pbContent,
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&cbContent
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)) goto EncodeError;
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fResult = CryptMsgSignCTL(
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dwMsgEncodingType,
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pbContent,
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cbContent,
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pSignInfo,
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dwFlags,
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pbEncoded,
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pcbEncoded
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);
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CommonReturn:
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PkiFree(pbContent);
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return fResult;
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ErrorReturn:
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*pcbEncoded = 0;
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fResult = FALSE;
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goto CommonReturn;
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SET_ERROR(InvalidArg, E_INVALIDARG)
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TRACE_ERROR(EncodeError)
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}
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