2012-04-08 10:52:01 -04:00
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#pragma once
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2012-03-26 17:17:04 -04:00
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// This class implements an abstract pgp handler to be used in RetroShare.
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//
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#include <stdint.h>
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#include <string>
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#include <list>
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#include <map>
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#include <util/rsthreads.h>
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extern "C" {
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#include <openpgpsdk/types.h>
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#include <openpgpsdk/keyring.h>
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#include <openpgpsdk/keyring_local.h>
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}
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2012-04-08 10:52:01 -04:00
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typedef std::string (*PassphraseCallback)(void *data, const char *uid_hint, const char *passphrase_info, int prev_was_bad) ;
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class PGPIdType
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{
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public:
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static const int KEY_ID_SIZE = 8 ;
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PGPIdType() {}
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static PGPIdType fromUserId_hex(const std::string& hex_string) ;
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static PGPIdType fromFingerprint_hex(const std::string& hex_string) ;
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explicit PGPIdType(const unsigned char bytes[]) ;
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std::string toStdString() const ;
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uint64_t toUInt64() const ;
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const unsigned char *toByteArray() const { return &bytes[0] ; }
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private:
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unsigned char bytes[KEY_ID_SIZE] ;
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};
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class PGPFingerprintType
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{
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public:
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static const int KEY_FINGERPRINT_SIZE = 20 ;
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static PGPFingerprintType fromFingerprint_hex(const std::string& hex_string) ;
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explicit PGPFingerprintType(const unsigned char bytes[]) ;
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std::string toStdString() const ;
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const unsigned char *toByteArray() const { return &bytes[0] ; }
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bool operator==(const PGPFingerprintType& fp) const
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{
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for(int i=0;i<KEY_FINGERPRINT_SIZE;++i)
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if(fp.bytes[i] != bytes[i])
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return false ;
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return true ;
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}
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bool operator!=(const PGPFingerprintType& fp) const
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{
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return !operator==(fp) ;
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}
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PGPFingerprintType() {}
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private:
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unsigned char bytes[KEY_FINGERPRINT_SIZE] ;
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};
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class PGPHandler
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{
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public:
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PGPHandler(const std::string& path_to_public_keyring, const std::string& path_to_secret_keyring,PassphraseCallback cb) ;
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virtual ~PGPHandler() ;
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/**
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* @param ids list of gpg certificate ids (note, not the actual certificates)
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*/
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bool availableGPGCertificatesWithPrivateKeys(std::list<PGPIdType>& ids);
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bool GeneratePGPCertificate(const std::string& name, const std::string& email, const std::string& passwd, PGPIdType& pgpId, std::string& errString) ;
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bool LoadCertificateFromString(const std::string& pem, PGPIdType& gpg_id, std::string& error_string);
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std::string SaveCertificateToString(const PGPIdType& id,bool include_signatures) ;
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bool TrustCertificate(const PGPIdType& id, int trustlvl);
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bool SignDataBin(const PGPIdType& id,const void *data, const uint32_t len, unsigned char *sign, unsigned int *signlen) ;
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bool VerifySignBin(const void *data, uint32_t data_len, unsigned char *sign, unsigned int sign_len, const PGPFingerprintType& withfingerprint) ;
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bool encryptTextToFile(const PGPIdType& key_id,const std::string& text,const std::string& outfile) ;
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bool decryptTextFromFile(const PGPIdType& key_id,std::string& text,const std::string& inputfile) ;
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bool getKeyFingerprint(const PGPIdType& id,PGPFingerprintType& fp) const ;
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// Debug stuff.
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virtual void printKeys() const ;
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private:
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static std::string makeRadixEncodedPGPKey(const ops_keydata_t *key) ;
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static ops_keyring_t *allocateOPSKeyring() ;
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static void addNewKeyToOPSKeyring(ops_keyring_t*, const ops_keydata_t&) ;
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const ops_keydata_t *getPublicKey(const PGPIdType&) const ;
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const ops_keydata_t *getSecretKey(const PGPIdType&) const ;
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RsMutex pgphandlerMtx ;
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ops_keyring_t *_pubring ;
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ops_keyring_t *_secring ;
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std::map<uint64_t,uint32_t> _public_keyring_map ; // used for fast access to keys. Gives the index in the keyring.
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std::map<uint64_t,uint32_t> _secret_keyring_map ;
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const std::string _pubring_path ;
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const std::string _secring_path ;
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PassphraseCallback _passphrase_callback ;
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};
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