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MINOR: acme: generate a temporary key pair
This patch provides two functions acme_gen_tmp_pkey() and acme_gen_tmp_x509(). These functions generates a unique keypair and X509 certificate that will be stored in tmp_x509 and tmp_pkey. If the key pair or certificate was already generated they will return the existing one. The key is an RSA2048 and the X509 is generated with a expiration in the past. The CN is "expired". These are just placeholders to be used if we don't have files.
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@ -5,5 +5,8 @@
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#include <haproxy/ssl_ckch-t.h>
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int ckch_conf_acme_init(void *value, char *buf, struct ckch_store *s, int cli, const char *filename, int linenum, char **err);
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EVP_PKEY *acme_gen_tmp_pkey();
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X509 *acme_gen_tmp_x509();
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#endif
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107
src/acme.c
107
src/acme.c
@ -40,6 +40,10 @@
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#if defined(HAVE_ACME)
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static EVP_PKEY *tmp_pkey = NULL;
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static X509 *tmp_x509 = NULL;
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static void acme_trace(enum trace_level level, uint64_t mask, const struct trace_source *src,
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const struct ist where, const struct ist func,
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const void *a1, const void *a2, const void *a3, const void *a4);
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@ -2611,6 +2615,109 @@ err:
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return pkey;
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}
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/*
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* Generate a temporary expired X509 or reuse the one generated.
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* Use tmp_pkey to generate
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*
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* Increment the refcount when returning the existing one
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*/
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X509 *acme_gen_tmp_x509()
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{
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X509 *newcrt = NULL;
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X509_NAME *name;
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const EVP_MD *digest;
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X509V3_CTX ctx;
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unsigned int i;
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CONF *ctmp = NULL;
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int key_type;
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EVP_PKEY *pkey = tmp_pkey;
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if (tmp_x509) {
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X509_up_ref(tmp_x509);
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return tmp_x509;
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}
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if (!tmp_pkey)
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goto mkcert_error;
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/* Create the certificate */
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if (!(newcrt = X509_new()))
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goto mkcert_error;
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/* Set version number for the certificate (X509v3) and the serial
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* number */
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if (X509_set_version(newcrt, 2L) != 1)
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goto mkcert_error;
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/* Generate an expired certificate */
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if (!X509_gmtime_adj(X509_getm_notBefore(newcrt), (long)-60*60*48) ||
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!X509_gmtime_adj(X509_getm_notAfter(newcrt),(long)-60*60*24))
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goto mkcert_error;
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/* set public key in the certificate */
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if (X509_set_pubkey(newcrt, pkey) != 1)
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goto mkcert_error;
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if ((name = X509_NAME_new()) == NULL)
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goto mkcert_error;
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/* Set the subject name using the servername but the CN */
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if (X509_NAME_add_entry_by_txt(name, "CN", MBSTRING_ASC, "expired",
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-1, -1, 0) != 1) {
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X509_NAME_free(name);
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goto mkcert_error;
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}
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if (X509_set_subject_name(newcrt, name) != 1) {
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X509_NAME_free(name);
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goto mkcert_error;
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}
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/* Set issuer name as itself */
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if (X509_set_issuer_name(newcrt, name) != 1)
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goto mkcert_error;
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X509_NAME_free(name);
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/* Autosign the certificate with the private key */
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key_type = EVP_PKEY_base_id(pkey);
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if (key_type == EVP_PKEY_RSA)
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digest = EVP_sha256();
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else if (key_type == EVP_PKEY_EC)
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digest = EVP_sha256();
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if (!(X509_sign(newcrt, pkey, digest)))
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goto mkcert_error;
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tmp_x509 = newcrt;
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return newcrt;
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mkcert_error:
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if (ctmp) NCONF_free(ctmp);
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if (newcrt) X509_free(newcrt);
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return NULL;
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}
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/*
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* Generate a temporary RSA2048 pkey or reuse the one generated.
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*
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* Increment the refcount when returning the existing one
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*
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*/
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EVP_PKEY *acme_gen_tmp_pkey()
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{
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if (tmp_pkey) {
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EVP_PKEY_up_ref(tmp_pkey);
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return tmp_pkey;
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}
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tmp_pkey = acme_EVP_PKEY_gen(EVP_PKEY_RSA, 0, 2048, NULL);
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return tmp_pkey;
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}
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/* start an ACME task */
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static int acme_start_task(struct ckch_store *store, char **errmsg)
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{
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