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486 lines
16 KiB
C
486 lines
16 KiB
C
/*
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* Copyright 2006 Juan Lang
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
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*
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*/
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#include <stdarg.h>
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#include "windef.h"
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#include "winbase.h"
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#include "wincrypt.h"
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#include "wine/debug.h"
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#include "crypt32_private.h"
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WINE_DEFAULT_DEBUG_CHANNEL(crypt);
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static HCERTCHAINENGINE CRYPT_defaultChainEngine;
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/* This represents a subset of a certificate chain engine: it doesn't include
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* the "hOther" store described by MSDN, because I'm not sure how that's used.
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* It also doesn't include the "hTrust" store, because I don't yet implement
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* CTLs or complex certificate chains.
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*/
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typedef struct _CertificateChainEngine
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{
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LONG ref;
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HCERTSTORE hRoot;
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HCERTSTORE hWorld;
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DWORD dwFlags;
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DWORD dwUrlRetrievalTimeout;
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DWORD MaximumCachedCertificates;
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DWORD CycleDetectionModulus;
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} CertificateChainEngine, *PCertificateChainEngine;
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static inline void CRYPT_AddStoresToCollection(HCERTSTORE collection,
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DWORD cStores, HCERTSTORE *stores)
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{
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DWORD i;
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for (i = 0; i < cStores; i++)
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CertAddStoreToCollection(collection, stores[i], 0, 0);
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}
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static inline void CRYPT_CloseStores(DWORD cStores, HCERTSTORE *stores)
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{
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DWORD i;
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for (i = 0; i < cStores; i++)
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CertCloseStore(stores[i], 0);
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}
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static const WCHAR rootW[] = { 'R','o','o','t',0 };
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static BOOL CRYPT_CheckRestrictedRoot(HCERTSTORE store)
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{
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BOOL ret = TRUE;
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if (store)
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{
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HCERTSTORE rootStore = CertOpenSystemStoreW(0, rootW);
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PCCERT_CONTEXT cert = NULL, check;
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BYTE hash[20];
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DWORD size;
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do {
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cert = CertEnumCertificatesInStore(store, cert);
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if (cert)
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{
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size = sizeof(hash);
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ret = CertGetCertificateContextProperty(cert, CERT_HASH_PROP_ID,
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hash, &size);
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if (ret)
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{
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CRYPT_HASH_BLOB blob = { sizeof(hash), hash };
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check = CertFindCertificateInStore(rootStore,
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cert->dwCertEncodingType, 0, CERT_FIND_SHA1_HASH, &blob,
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NULL);
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if (!check)
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ret = FALSE;
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else
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CertFreeCertificateContext(check);
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}
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}
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} while (ret && cert);
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if (cert)
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CertFreeCertificateContext(cert);
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CertCloseStore(rootStore, 0);
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}
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return ret;
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}
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BOOL WINAPI CertCreateCertificateChainEngine(PCERT_CHAIN_ENGINE_CONFIG pConfig,
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HCERTCHAINENGINE *phChainEngine)
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{
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static const WCHAR caW[] = { 'C','A',0 };
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static const WCHAR myW[] = { 'M','y',0 };
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static const WCHAR trustW[] = { 'T','r','u','s','t',0 };
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BOOL ret;
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TRACE("(%p, %p)\n", pConfig, phChainEngine);
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if (pConfig->cbSize != sizeof(*pConfig))
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{
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SetLastError(E_INVALIDARG);
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return FALSE;
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}
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*phChainEngine = NULL;
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ret = CRYPT_CheckRestrictedRoot(pConfig->hRestrictedRoot);
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if (ret)
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{
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PCertificateChainEngine engine =
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CryptMemAlloc(sizeof(CertificateChainEngine));
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if (engine)
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{
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HCERTSTORE worldStores[4];
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engine->ref = 1;
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if (pConfig->hRestrictedRoot)
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engine->hRoot = CertDuplicateStore(pConfig->hRestrictedRoot);
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else
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engine->hRoot = CertOpenSystemStoreW(0, rootW);
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engine->hWorld = CertOpenStore(CERT_STORE_PROV_COLLECTION, 0, 0,
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CERT_STORE_CREATE_NEW_FLAG, NULL);
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worldStores[0] = CertDuplicateStore(engine->hRoot);
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worldStores[1] = CertOpenSystemStoreW(0, caW);
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worldStores[2] = CertOpenSystemStoreW(0, myW);
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worldStores[3] = CertOpenSystemStoreW(0, trustW);
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CRYPT_AddStoresToCollection(engine->hWorld,
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sizeof(worldStores) / sizeof(worldStores[0]), worldStores);
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CRYPT_AddStoresToCollection(engine->hWorld,
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pConfig->cAdditionalStore, pConfig->rghAdditionalStore);
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CRYPT_CloseStores(sizeof(worldStores) / sizeof(worldStores[0]),
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worldStores);
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engine->dwFlags = pConfig->dwFlags;
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engine->dwUrlRetrievalTimeout = pConfig->dwUrlRetrievalTimeout;
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engine->MaximumCachedCertificates =
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pConfig->MaximumCachedCertificates;
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engine->CycleDetectionModulus = pConfig->CycleDetectionModulus;
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*phChainEngine = (HCERTCHAINENGINE)engine;
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ret = TRUE;
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}
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else
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ret = FALSE;
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}
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return ret;
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}
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void WINAPI CertFreeCertificateChainEngine(HCERTCHAINENGINE hChainEngine)
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{
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PCertificateChainEngine engine = (PCertificateChainEngine)hChainEngine;
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TRACE("(%p)\n", hChainEngine);
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if (engine && InterlockedDecrement(&engine->ref) == 0)
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{
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CertCloseStore(engine->hWorld, 0);
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CertCloseStore(engine->hRoot, 0);
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CryptMemFree(engine);
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}
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}
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static HCERTCHAINENGINE CRYPT_GetDefaultChainEngine(void)
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{
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if (!CRYPT_defaultChainEngine)
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{
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CERT_CHAIN_ENGINE_CONFIG config = { 0 };
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HCERTCHAINENGINE engine;
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config.cbSize = sizeof(config);
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CertCreateCertificateChainEngine(&config, &engine);
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InterlockedCompareExchangePointer(&CRYPT_defaultChainEngine, engine,
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NULL);
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if (CRYPT_defaultChainEngine != engine)
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CertFreeCertificateChainEngine(engine);
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}
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return CRYPT_defaultChainEngine;
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}
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void default_chain_engine_free(void)
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{
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CertFreeCertificateChainEngine(CRYPT_defaultChainEngine);
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}
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typedef struct _CertificateChain
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{
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CERT_CHAIN_CONTEXT context;
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LONG ref;
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} CertificateChain, *PCertificateChain;
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static inline BOOL WINAPI CRYPT_IsCertificateSelfSigned(PCCERT_CONTEXT cert)
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{
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return CertCompareCertificateName(cert->dwCertEncodingType,
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&cert->pCertInfo->Subject, &cert->pCertInfo->Issuer);
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}
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/* Gets cert's issuer from store, and returns the validity flags associated
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* with it. Returns NULL if no issuer whose public key matches cert's
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* signature could be found.
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*/
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static PCCERT_CONTEXT CRYPT_GetIssuerFromStore(HCERTSTORE store,
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PCCERT_CONTEXT cert, PDWORD pdwFlags)
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{
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PCCERT_CONTEXT issuer = NULL;
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/* There might be more than issuer with the same name, so keep looking until
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* one produces the correct signature for this cert.
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*/
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do {
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*pdwFlags = CERT_STORE_REVOCATION_FLAG | CERT_STORE_SIGNATURE_FLAG |
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CERT_STORE_TIME_VALIDITY_FLAG;
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issuer = CertGetIssuerCertificateFromStore(store, cert, issuer,
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pdwFlags);
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} while (issuer && (*pdwFlags & CERT_STORE_SIGNATURE_FLAG));
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return issuer;
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}
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static BOOL CRYPT_AddCertToSimpleChain(PCERT_SIMPLE_CHAIN chain,
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PCCERT_CONTEXT cert, DWORD dwFlags)
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{
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BOOL ret = FALSE;
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PCERT_CHAIN_ELEMENT element = CryptMemAlloc(sizeof(CERT_CHAIN_ELEMENT));
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if (element)
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{
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if (!chain->cElement)
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chain->rgpElement = CryptMemAlloc(sizeof(PCERT_CHAIN_ELEMENT));
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else
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chain->rgpElement = CryptMemRealloc(chain->rgpElement,
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(chain->cElement + 1) * sizeof(PCERT_CHAIN_ELEMENT));
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if (chain->rgpElement)
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{
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memset(element, 0, sizeof(CERT_CHAIN_ELEMENT));
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element->cbSize = sizeof(CERT_CHAIN_ELEMENT);
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element->pCertContext = cert;
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if (dwFlags & CERT_STORE_REVOCATION_FLAG &&
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!(dwFlags & CERT_STORE_NO_CRL_FLAG))
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element->TrustStatus.dwErrorStatus |= CERT_TRUST_IS_REVOKED;
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if (dwFlags & CERT_STORE_SIGNATURE_FLAG)
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element->TrustStatus.dwErrorStatus |=
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CERT_TRUST_IS_NOT_SIGNATURE_VALID;
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if (dwFlags & CERT_STORE_TIME_VALIDITY_FLAG)
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element->TrustStatus.dwErrorStatus |=
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CERT_TRUST_IS_NOT_TIME_VALID;
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if (chain->cElement)
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{
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PCERT_CHAIN_ELEMENT prevElement =
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chain->rgpElement[chain->cElement - 1];
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/* This cert is the issuer of the previous one in the chain, so
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* retroactively check the previous one's time validity nesting.
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*/
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if (!CertVerifyValidityNesting(
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prevElement->pCertContext->pCertInfo, cert->pCertInfo))
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prevElement->TrustStatus.dwErrorStatus |=
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CERT_TRUST_IS_NOT_TIME_NESTED;
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}
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/* FIXME: check valid usages, name constraints, and for cycles */
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/* FIXME: initialize the rest of element */
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chain->TrustStatus.dwErrorStatus |=
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element->TrustStatus.dwErrorStatus;
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chain->TrustStatus.dwInfoStatus |=
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element->TrustStatus.dwInfoStatus;
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chain->rgpElement[chain->cElement++] = element;
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ret = TRUE;
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}
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else
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CryptMemFree(element);
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}
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return ret;
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}
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static void CRYPT_FreeSimpleChain(PCERT_SIMPLE_CHAIN chain)
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{
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DWORD i;
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for (i = 0; i < chain->cElement; i++)
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CryptMemFree(chain->rgpElement[i]);
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CryptMemFree(chain->rgpElement);
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CryptMemFree(chain);
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}
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static BOOL CRYPT_BuildSimpleChain(HCERTCHAINENGINE hChainEngine,
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PCCERT_CONTEXT cert, LPFILETIME pTime, HCERTSTORE hAdditionalStore,
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PCERT_SIMPLE_CHAIN *ppChain)
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{
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BOOL ret = FALSE;
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PCertificateChainEngine engine = (PCertificateChainEngine)hChainEngine;
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PCERT_SIMPLE_CHAIN chain;
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HCERTSTORE world;
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TRACE("(%p, %p, %p, %p)\n", hChainEngine, cert, pTime, hAdditionalStore);
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world = CertOpenStore(CERT_STORE_PROV_COLLECTION, 0, 0,
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CERT_STORE_CREATE_NEW_FLAG, NULL);
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CertAddStoreToCollection(world, engine->hWorld, 0, 0);
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if (cert->hCertStore)
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CertAddStoreToCollection(world, cert->hCertStore, 0, 0);
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if (hAdditionalStore)
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CertAddStoreToCollection(world, hAdditionalStore, 0, 0);
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chain = CryptMemAlloc(sizeof(CERT_SIMPLE_CHAIN));
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if (chain)
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{
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memset(chain, 0, sizeof(CERT_SIMPLE_CHAIN));
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chain->cbSize = sizeof(CERT_SIMPLE_CHAIN);
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ret = CRYPT_AddCertToSimpleChain(chain, cert, 0);
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while (ret && !CRYPT_IsCertificateSelfSigned(cert))
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{
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DWORD flags;
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PCCERT_CONTEXT issuer = CRYPT_GetIssuerFromStore(world, cert,
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&flags);
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if (issuer)
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{
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ret = CRYPT_AddCertToSimpleChain(chain, issuer, flags);
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cert = issuer;
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}
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else
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{
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TRACE("Couldn't find issuer, aborting chain creation\n");
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ret = FALSE;
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}
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}
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if (ret)
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{
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PCERT_CHAIN_ELEMENT rootElement =
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chain->rgpElement[chain->cElement - 1];
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PCCERT_CONTEXT root = rootElement->pCertContext;
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if (!(ret = CRYPT_IsCertificateSelfSigned(root)))
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TRACE("Last certificate is not self-signed\n");
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else
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{
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rootElement->TrustStatus.dwInfoStatus |=
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CERT_TRUST_IS_SELF_SIGNED;
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if (!(ret = CryptVerifyCertificateSignatureEx(0,
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root->dwCertEncodingType, CRYPT_VERIFY_CERT_SIGN_SUBJECT_CERT,
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(void *)root, CRYPT_VERIFY_CERT_SIGN_ISSUER_CERT, (void *)root,
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0, NULL)))
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{
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TRACE("Last certificate's signature is invalid\n");
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rootElement->TrustStatus.dwErrorStatus |=
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CERT_TRUST_IS_NOT_SIGNATURE_VALID;
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}
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}
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if (ret)
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{
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BYTE hash[20];
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DWORD size = sizeof(hash);
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CRYPT_HASH_BLOB blob = { sizeof(hash), hash };
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PCCERT_CONTEXT trustedRoot;
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CertGetCertificateContextProperty(root, CERT_HASH_PROP_ID, hash,
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&size);
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trustedRoot = CertFindCertificateInStore(engine->hRoot,
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root->dwCertEncodingType, 0, CERT_FIND_SHA1_HASH, &blob, NULL);
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if (!trustedRoot)
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rootElement->TrustStatus.dwErrorStatus |=
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CERT_TRUST_IS_UNTRUSTED_ROOT;
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else
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CertFreeCertificateContext(trustedRoot);
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}
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chain->TrustStatus.dwErrorStatus |=
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rootElement->TrustStatus.dwErrorStatus;
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chain->TrustStatus.dwInfoStatus |=
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rootElement->TrustStatus.dwInfoStatus & ~CERT_TRUST_IS_SELF_SIGNED;
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}
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if (!ret)
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{
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CRYPT_FreeSimpleChain(chain);
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chain = NULL;
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}
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*ppChain = chain;
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}
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CertCloseStore(world, 0);
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return ret;
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}
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typedef struct _CERT_CHAIN_PARA_NO_EXTRA_FIELDS {
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DWORD cbSize;
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CERT_USAGE_MATCH RequestedUsage;
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} CERT_CHAIN_PARA_NO_EXTRA_FIELDS, *PCERT_CHAIN_PARA_NO_EXTRA_FIELDS;
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typedef struct _CERT_CHAIN_PARA_EXTRA_FIELDS {
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DWORD cbSize;
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CERT_USAGE_MATCH RequestedUsage;
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CERT_USAGE_MATCH RequestedIssuancePolicy;
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DWORD dwUrlRetrievalTimeout;
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BOOL fCheckRevocationFreshnessTime;
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DWORD dwRevocationFreshnessTime;
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} CERT_CHAIN_PARA_EXTRA_FIELDS, *PCERT_CHAIN_PARA_EXTRA_FIELDS;
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BOOL WINAPI CertGetCertificateChain(HCERTCHAINENGINE hChainEngine,
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PCCERT_CONTEXT pCertContext, LPFILETIME pTime, HCERTSTORE hAdditionalStore,
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PCERT_CHAIN_PARA pChainPara, DWORD dwFlags, LPVOID pvReserved,
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PCCERT_CHAIN_CONTEXT* ppChainContext)
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{
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PCERT_SIMPLE_CHAIN simpleChain = NULL;
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BOOL ret;
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TRACE("(%p, %p, %p, %p, %p, %08x, %p, %p)\n", hChainEngine, pCertContext,
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pTime, hAdditionalStore, pChainPara, dwFlags, pvReserved, ppChainContext);
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if (!pChainPara)
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{
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SetLastError(E_INVALIDARG);
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return FALSE;
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}
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if (ppChainContext)
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*ppChainContext = NULL;
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if (!hChainEngine)
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hChainEngine = CRYPT_GetDefaultChainEngine();
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/* FIXME: what about HCCE_LOCAL_MACHINE? */
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/* FIXME: pChainPara is for now ignored */
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/* FIXME: only simple chains are supported for now, as CTLs aren't
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* supported yet.
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*/
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if ((ret = CRYPT_BuildSimpleChain(hChainEngine, pCertContext, pTime,
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hAdditionalStore, &simpleChain)))
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{
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PCertificateChain chain = CryptMemAlloc(sizeof(CertificateChain));
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if (chain)
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{
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chain->ref = 1;
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chain->context.cbSize = sizeof(CERT_CHAIN_CONTEXT);
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memcpy(&chain->context.TrustStatus, &simpleChain->TrustStatus,
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sizeof(CERT_TRUST_STATUS));
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chain->context.cChain = 1;
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chain->context.rgpChain = CryptMemAlloc(sizeof(PCERT_SIMPLE_CHAIN));
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chain->context.rgpChain[0] = simpleChain;
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chain->context.cLowerQualityChainContext = 0;
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chain->context.rgpLowerQualityChainContext = NULL;
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chain->context.fHasRevocationFreshnessTime = FALSE;
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chain->context.dwRevocationFreshnessTime = 0;
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}
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else
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ret = FALSE;
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if (ppChainContext)
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*ppChainContext = (PCCERT_CHAIN_CONTEXT)chain;
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else
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CertFreeCertificateChain((PCCERT_CHAIN_CONTEXT)chain);
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}
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TRACE("returning %d\n", ret);
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return ret;
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}
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static void CRYPT_FreeChainContext(PCertificateChain chain)
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{
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DWORD i;
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/* Note the chain's rgpLowerQualityChainContext isn't freed, but
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* it's never set, either.
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*/
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for (i = 0; i < chain->context.cChain; i++)
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CRYPT_FreeSimpleChain(chain->context.rgpChain[i]);
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CryptMemFree(chain->context.rgpChain);
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CryptMemFree(chain);
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}
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void WINAPI CertFreeCertificateChain(PCCERT_CHAIN_CONTEXT pChainContext)
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{
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PCertificateChain chain = (PCertificateChain)pChainContext;
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TRACE("(%p)\n", pChainContext);
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if (chain)
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{
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if (InterlockedDecrement(&chain->ref) == 0)
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CRYPT_FreeChainContext(chain);
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}
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}
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