FS-3071 I've commited the upstream passphrase backport
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@ -198,6 +198,12 @@ enum tport_tls_verify_policy {
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TPTLS_VERIFY_SUBJECTS_ALL = 0xF,
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};
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TPORT_DLL extern tag_typedef_t tptag_tls_passphrase;
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#define TPTAG_TLS_PASSPHRASE(x) tptag_tls_passphrase, tag_str_v(x)
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TPORT_DLL extern tag_typedef_t tptag_tls_passphrase_ref;
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#define TPTAG_TLS_PASSPHRASE_REF(x) tptag_tls_passphrase_ref, tag_str_vr(&(x))
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TPORT_DLL extern tag_typedef_t tptag_tls_verify_policy;
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#define TPTAG_TLS_VERIFY_POLICY(x) tptag_tls_verify_policy, tag_uint_v((x))
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@ -288,6 +288,16 @@ tag_typedef_t tptag_tls_version = UINTTAG_TYPEDEF(tls_version);
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*/
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tag_typedef_t tptag_tls_verify_peer = UINTTAG_TYPEDEF(tls_verify_peer);
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/**@def TPTAG_TLS_PASSPHRASE(x)
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*
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* Sets the passphrase password to be used by openSSL to encrypt/decrypt
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* private key files.
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*
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* @NEW_1_12_11.
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*/
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tag_typedef_t tptag_tls_passphrase = STRTAG_TYPEDEF(tls_passphrase);
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/**@def TPTAG_TLS_VERIFY_POLICY(x)
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*
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* The verification of certificates can be controlled:
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@ -160,6 +160,27 @@ void tls_log_errors(unsigned level, char const *s, unsigned long e)
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}
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}
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/*
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* This callback hands back the password to be used during decryption.
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*
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* buf : the function will write the password into this buffer
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* size : the size of "buf"
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* rwflag : indicates whether the callback is being used for reading/
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* decryption (0) or writing/encryption (1)
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* userdata : pointer tls_issues_t where the passphrase is stored
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*/
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static int passwd_cb(char *buf, int size, int rwflag, void *userdata)
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{
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if (rwflag == 0) { // reading/decryption
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tls_issues_t *tlsi = (tls_issues_t *)userdata;
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strncpy(buf, tlsi->passphrase, size);
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buf[size - 1] = '\0';
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return strlen(tlsi->passphrase);
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}
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return 0;
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}
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static
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tls_t *tls_create(int type)
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@ -290,6 +311,12 @@ int tls_init_context(tls_t *tls, tls_issues_t const *ti)
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return -1;
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}
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/* Set callback if we have a passphrase */
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if (ti->passphrase != NULL) {
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SSL_CTX_set_default_passwd_cb(tls->ctx, passwd_cb);
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SSL_CTX_set_default_passwd_cb_userdata(tls->ctx, (void *)ti);
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}
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if (!SSL_CTX_use_certificate_file(tls->ctx,
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ti->cert,
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SSL_FILETYPE_PEM)) {
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@ -56,6 +56,7 @@ typedef struct tls_issues_s {
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int configured; /* If non-zero, complain about certificate errors */
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char *cert; /* CERT file name. File format is PEM */
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char *key; /* Private key file. PEM format */
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char *passphrase; /* Passphrase for password protected private key */
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char *randFile; /* Seed file for the PRNG (default: tls_seed.dat) */
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char *CAfile; /* PEM file of CA's */
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char *CApath; /* PEM file path of CA's */
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@ -182,6 +182,7 @@ static int tport_tls_init_master(tport_primary_t *pri,
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char const *path = NULL;
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unsigned tls_version = 1;
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unsigned tls_verify = 0;
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char const *passphrase = NULL;
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unsigned tls_policy = TPTLS_VERIFY_NONE;
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unsigned tls_depth = 0;
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unsigned tls_date = 1;
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@ -198,6 +199,7 @@ static int tport_tls_init_master(tport_primary_t *pri,
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TPTAG_CERTIFICATE_REF(path),
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TPTAG_TLS_VERSION_REF(tls_version),
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TPTAG_TLS_VERIFY_PEER_REF(tls_verify),
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TPTAG_TLS_PASSPHRASE_REF(passphrase),
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TPTAG_TLS_VERIFY_POLICY_REF(tls_policy),
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TPTAG_TLS_VERIFY_DEPTH_REF(tls_depth),
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TPTAG_TLS_VERIFY_DATE_REF(tls_date),
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@ -218,6 +220,7 @@ static int tport_tls_init_master(tport_primary_t *pri,
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ti.configured = path != tbf;
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ti.randFile = su_sprintf(autohome, "%s/%s", path, "tls_seed.dat");
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ti.key = su_sprintf(autohome, "%s/%s", path, "agent.pem");
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ti.passphrase = su_strdup(autohome, passphrase);
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ti.cert = ti.key;
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ti.CAfile = su_sprintf(autohome, "%s/%s", path, "cafile.pem");
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ti.version = tls_version;
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