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404 lines
15 KiB
C
404 lines
15 KiB
C
/* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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/*
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* certi.h - private data structures for the certificate library
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*/
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#ifndef _CERTI_H_
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#define _CERTI_H_
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#include "certt.h"
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#include "nssrwlkt.h"
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/*
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#define GLOBAL_RWLOCK 1
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*/
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#define DPC_RWLOCK 1
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/* all definitions in this file are subject to change */
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typedef struct OpaqueCRLFieldsStr OpaqueCRLFields;
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typedef struct CRLEntryCacheStr CRLEntryCache;
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typedef struct CRLDPCacheStr CRLDPCache;
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typedef struct CRLIssuerCacheStr CRLIssuerCache;
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typedef struct CRLCacheStr CRLCache;
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typedef struct CachedCrlStr CachedCrl;
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typedef struct NamedCRLCacheStr NamedCRLCache;
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typedef struct NamedCRLCacheEntryStr NamedCRLCacheEntry;
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struct OpaqueCRLFieldsStr {
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PRBool partial;
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PRBool decodingError;
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PRBool badEntries;
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PRBool badDER;
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PRBool badExtensions;
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PRBool heapDER;
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};
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typedef struct PreAllocatorStr PreAllocator;
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struct PreAllocatorStr
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{
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PRSize len;
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void* data;
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PRSize used;
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PLArenaPool* arena;
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PRSize extra;
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};
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/* CRL entry cache.
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This is the same as an entry plus the next/prev pointers for the hash table
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*/
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struct CRLEntryCacheStr {
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CERTCrlEntry entry;
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CRLEntryCache *prev, *next;
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};
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#define CRL_CACHE_INVALID_CRLS 0x0001 /* this state will be set
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if we have CRL objects with an invalid DER or signature. Can be
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cleared if the invalid objects are deleted from the token */
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#define CRL_CACHE_LAST_FETCH_FAILED 0x0002 /* this state will be set
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if the last CRL fetch encountered an error. Can be cleared if a
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new fetch succeeds */
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#define CRL_CACHE_OUT_OF_MEMORY 0x0004 /* this state will be set
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if we don't have enough memory to build the hash table of entries */
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typedef enum {
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CRL_OriginToken = 0, /* CRL came from PKCS#11 token */
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CRL_OriginExplicit = 1 /* CRL was explicitly added to the cache, from RAM */
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} CRLOrigin;
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typedef enum {
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dpcacheNoEntry = 0, /* no entry found for this SN */
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dpcacheFoundEntry = 1, /* entry found for this SN */
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dpcacheCallerError = 2, /* invalid args */
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dpcacheInvalidCacheError = 3, /* CRL in cache may be bad DER */
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/* or unverified */
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dpcacheEmpty = 4, /* no CRL in cache */
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dpcacheLookupError = 5 /* internal error */
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} dpcacheStatus;
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struct CachedCrlStr {
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CERTSignedCrl* crl;
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CRLOrigin origin;
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/* hash table of entries. We use a PLHashTable and pre-allocate the
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required amount of memory in one shot, so that our allocator can
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simply pass offsets into it when hashing.
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This won't work anymore when we support delta CRLs and iCRLs, because
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the size of the hash table will vary over time. At that point, the best
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solution will be to allocate large CRLEntry structures by modifying
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the DER decoding template. The extra space would be for next/prev
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pointers. This would allow entries from different CRLs to be mixed in
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the same hash table.
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*/
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PLHashTable* entries;
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PreAllocator* prebuffer; /* big pre-allocated buffer mentioned above */
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PRBool sigChecked; /* this CRL signature has already been checked */
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PRBool sigValid; /* signature verification status .
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Only meaningful if checked is PR_TRUE . */
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PRBool unbuildable; /* Avoid using assosiated CRL is it fails
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* a decoding step */
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};
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/* CRL distribution point cache object
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This is a cache of CRL entries for a given distribution point of an issuer
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It is built from a collection of one full and 0 or more delta CRLs.
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*/
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struct CRLDPCacheStr {
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#ifdef DPC_RWLOCK
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NSSRWLock* lock;
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#else
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PRLock* lock;
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#endif
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CERTCertificate* issuer; /* issuer cert
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XXX there may be multiple issuer certs,
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with different validity dates. Also
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need to deal with SKID/AKID . See
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bugzilla 217387, 233118 */
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SECItem* subject; /* DER of issuer subject */
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SECItem* distributionPoint; /* DER of distribution point. This may be
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NULL when distribution points aren't
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in use (ie. the CA has a single CRL).
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Currently not used. */
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/* array of full CRLs matching this distribution point */
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PRUint32 ncrls; /* total number of CRLs in crls */
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CachedCrl** crls; /* array of all matching CRLs */
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/* XCRL With iCRLs and multiple DPs, the CRL can be shared accross several
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issuers. In the future, we'll need to globally recycle the CRL in a
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separate list in order to avoid extra lookups, decodes, and copies */
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/* pointers to good decoded CRLs used to build the cache */
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CachedCrl* selected; /* full CRL selected for use in the cache */
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#if 0
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/* for future use */
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PRInt32 numdeltas; /* number of delta CRLs used for the cache */
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CachedCrl** deltas; /* delta CRLs used for the cache */
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#endif
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/* cache invalidity bitflag */
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PRUint16 invalid; /* this state will be set if either
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CRL_CACHE_INVALID_CRLS or CRL_CACHE_LAST_FETCH_FAILED is set.
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In those cases, all certs are considered to have unknown status.
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The invalid state can only be cleared during an update if all
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error states are cleared */
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PRBool refresh; /* manual refresh from tokens has been forced */
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PRBool mustchoose; /* trigger reselection algorithm, for case when
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RAM CRL objects are dropped from the cache */
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PRTime lastfetch; /* time a CRL token fetch was last performed */
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PRTime lastcheck; /* time CRL token objects were last checked for
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existence */
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};
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/* CRL issuer cache object
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This object tracks all the distribution point caches for a given issuer.
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XCRL once we support multiple issuing distribution points, this object
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will be a hash table. For now, it just holds the single CRL distribution
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point cache structure.
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*/
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struct CRLIssuerCacheStr {
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SECItem* subject; /* DER of issuer subject */
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CRLDPCache* dpp;
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#if 0
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/* XCRL for future use.
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We don't need to lock at the moment because we only have one DP,
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which gets created at the same time as this object */
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NSSRWLock* lock;
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CRLDPCache** dps;
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PLHashTable* distributionpoints;
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CERTCertificate* issuer;
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#endif
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};
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/* CRL revocation cache object
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This object tracks all the issuer caches
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*/
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struct CRLCacheStr {
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#ifdef GLOBAL_RWLOCK
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NSSRWLock* lock;
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#else
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PRLock* lock;
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#endif
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/* hash table of issuer to CRLIssuerCacheStr,
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indexed by issuer DER subject */
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PLHashTable* issuers;
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};
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SECStatus InitCRLCache(void);
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SECStatus ShutdownCRLCache(void);
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/* Returns a pointer to an environment-like string, a series of
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** null-terminated strings, terminated by a zero-length string.
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** This function is intended to be internal to NSS.
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*/
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extern char * cert_GetCertificateEmailAddresses(CERTCertificate *cert);
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/*
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* These functions are used to map subjectKeyID extension values to certs
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* and to keep track of the checks for user certificates in each slot
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*/
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SECStatus
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cert_CreateSubjectKeyIDHashTable(void);
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SECStatus
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cert_AddSubjectKeyIDMapping(SECItem *subjKeyID, CERTCertificate *cert);
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SECStatus
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cert_UpdateSubjectKeyIDSlotCheck(SECItem *slotid, int series);
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int
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cert_SubjectKeyIDSlotCheckSeries(SECItem *slotid);
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/*
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* Call this function to remove an entry from the mapping table.
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*/
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SECStatus
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cert_RemoveSubjectKeyIDMapping(SECItem *subjKeyID);
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SECStatus
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cert_DestroySubjectKeyIDHashTable(void);
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SECItem*
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cert_FindDERCertBySubjectKeyID(SECItem *subjKeyID);
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/* return maximum length of AVA value based on its type OID tag. */
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extern int cert_AVAOidTagToMaxLen(SECOidTag tag);
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/* Make an AVA, allocated from pool, from OID and DER encoded value */
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extern CERTAVA * CERT_CreateAVAFromRaw(PLArenaPool *pool,
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const SECItem * OID, const SECItem * value);
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/* Make an AVA from binary input specified by SECItem */
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extern CERTAVA * CERT_CreateAVAFromSECItem(PLArenaPool *arena, SECOidTag kind,
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int valueType, SECItem *value);
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/*
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* get a DPCache object for the given issuer subject and dp
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* Automatically creates the cache object if it doesn't exist yet.
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*/
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SECStatus AcquireDPCache(CERTCertificate* issuer, const SECItem* subject,
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const SECItem* dp, PRTime t, void* wincx,
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CRLDPCache** dpcache, PRBool* writeLocked);
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/* check if a particular SN is in the CRL cache and return its entry */
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dpcacheStatus DPCache_Lookup(CRLDPCache* cache, const SECItem* sn,
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CERTCrlEntry** returned);
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/* release a DPCache object that was previously acquired */
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void ReleaseDPCache(CRLDPCache* dpcache, PRBool writeLocked);
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/*
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* map Stan errors into NSS errors
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* This function examines the stan error stack and automatically sets
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* PORT_SetError(); to the appropriate SEC_ERROR value.
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*/
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void CERT_MapStanError();
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/* Like CERT_VerifyCert, except with an additional argument, flags. The
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* flags are defined immediately below.
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*/
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SECStatus
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cert_VerifyCertWithFlags(CERTCertDBHandle *handle, CERTCertificate *cert,
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PRBool checkSig, SECCertUsage certUsage, PRTime t,
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PRUint32 flags, void *wincx, CERTVerifyLog *log);
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/* Use the default settings.
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* cert_VerifyCertWithFlags(..., CERT_VERIFYCERT_USE_DEFAULTS, ...) is
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* equivalent to CERT_VerifyCert(...);
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*/
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#define CERT_VERIFYCERT_USE_DEFAULTS 0
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/* Skip all the OCSP checks during certificate verification, regardless of
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* the global OCSP settings. By default, certificate |cert| will have its
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* revocation status checked via OCSP according to the global OCSP settings.
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*
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* OCSP checking is always skipped when certUsage is certUsageStatusResponder.
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*/
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#define CERT_VERIFYCERT_SKIP_OCSP 1
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/* Interface function for libpkix cert validation engine:
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* cert_verify wrapper. */
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SECStatus
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cert_VerifyCertChainPkix(CERTCertificate *cert,
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PRBool checkSig,
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SECCertUsage requiredUsage,
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PRTime time,
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void *wincx,
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CERTVerifyLog *log,
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PRBool *sigError,
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PRBool *revoked);
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SECStatus cert_InitLocks(void);
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SECStatus cert_DestroyLocks(void);
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/*
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* fill in nsCertType field of the cert based on the cert extension
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*/
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extern SECStatus cert_GetCertType(CERTCertificate *cert);
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/*
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* compute and return the value of nsCertType for cert, but do not
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* update the CERTCertificate.
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*/
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extern PRUint32 cert_ComputeCertType(CERTCertificate *cert);
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void cert_AddToVerifyLog(CERTVerifyLog *log,CERTCertificate *cert,
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long errorCode, unsigned int depth,
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void *arg);
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/* Insert a DER CRL into the CRL cache, and take ownership of it.
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*
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* cert_CacheCRLByGeneralName takes ownership of the memory in crl argument
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* completely. crl must be freeable by SECITEM_FreeItem. It will be freed
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* immediately if it is rejected from the CRL cache, or later during cache
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* updates when a new crl is available, or at shutdown time.
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*
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* canonicalizedName represents the source of the CRL, a GeneralName.
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* The format of the encoding is not restricted, but all callers of
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* cert_CacheCRLByGeneralName and cert_FindCRLByGeneralName must use
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* the same encoding. To facilitate X.500 name matching, a canonicalized
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* encoding of the GeneralName should be used, if available.
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*/
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SECStatus cert_CacheCRLByGeneralName(CERTCertDBHandle* dbhandle, SECItem* crl,
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const SECItem* canonicalizedName);
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struct NamedCRLCacheStr {
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PRLock* lock;
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PLHashTable* entries;
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};
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/* NamedCRLCacheEntryStr is filled in by cert_CacheCRLByGeneralName,
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* and read by cert_FindCRLByGeneralName */
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struct NamedCRLCacheEntryStr {
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SECItem* canonicalizedName;
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SECItem* crl; /* DER, kept only if CRL
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* is successfully cached */
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PRBool inCRLCache;
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PRTime successfulInsertionTime; /* insertion time */
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PRTime lastAttemptTime; /* time of last call to
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cert_CacheCRLByGeneralName with this name */
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PRBool badDER; /* ASN.1 error */
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PRBool dupe; /* matching DER CRL already in CRL cache */
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PRBool unsupported; /* IDP, delta, any other reason */
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};
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typedef enum {
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certRevocationStatusRevoked = 0,
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certRevocationStatusValid = 1,
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certRevocationStatusUnknown = 2
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} CERTRevocationStatus;
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/* Returns detailed status of the cert(revStatus variable). Tells if
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* issuer cache has OriginFetchedWithTimeout crl in it. */
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SECStatus
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cert_CheckCertRevocationStatus(CERTCertificate* cert, CERTCertificate* issuer,
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const SECItem* dp, PRTime t, void *wincx,
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CERTRevocationStatus *revStatus,
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CERTCRLEntryReasonCode *revReason);
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SECStatus cert_AcquireNamedCRLCache(NamedCRLCache** returned);
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/* cert_FindCRLByGeneralName must be called only while the named cache is
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* acquired, and the entry is only valid until cache is released.
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*/
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SECStatus cert_FindCRLByGeneralName(NamedCRLCache* ncc,
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const SECItem* canonicalizedName,
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NamedCRLCacheEntry** retEntry);
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SECStatus cert_ReleaseNamedCRLCache(NamedCRLCache* ncc);
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/* This is private for now. Maybe shoule be public. */
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CERTGeneralName *
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cert_GetSubjectAltNameList(const CERTCertificate *cert, PLArenaPool *arena);
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/* Count DNS names and IP addresses in a list of GeneralNames */
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PRUint32
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cert_CountDNSPatterns(CERTGeneralName *firstName);
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/*
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* returns the trust status of the leaf certificate based on usage.
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* If the leaf is explicitly untrusted, this function will fail and
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* failedFlags will be set to the trust bit value that lead to the failure.
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* If the leaf is trusted, isTrusted is set to true and the function returns
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* SECSuccess. This function does not check if the cert is fit for a
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* particular usage.
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*/
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SECStatus
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cert_CheckLeafTrust(CERTCertificate *cert,
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SECCertUsage usage,
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unsigned int *failedFlags,
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PRBool *isTrusted);
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#endif /* _CERTI_H_ */
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