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https://git.in.rschanz.org/ryan77627/guix.git
synced 2024-11-07 23:46:13 -05:00
gnu: Remove unreferenced nss/fixed.
* gnu/packages/nss.scm (nss/fixed): Remove variable. * gnu/packages/patches/nss-CVE-2021-43527.patch: Delete file. * gnu/local.mk (dist_patch_DATA): Remove it.
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1ca2c6730b
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3 changed files with 0 additions and 358 deletions
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@ -1517,7 +1517,6 @@ dist_patch_DATA = \
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%D%/packages/patches/nsis-env-passthru.patch \
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%D%/packages/patches/nsis-source-date-epoch.patch \
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%D%/packages/patches/nss-getcwd-nonnull.patch \
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%D%/packages/patches/nss-CVE-2021-43527.patch \
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%D%/packages/patches/nss-increase-test-timeout.patch \
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%D%/packages/patches/nss-3.56-pkgconfig.patch \
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%D%/packages/patches/nvi-assume-preserve-path.patch \
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@ -219,6 +219,3 @@ (define-public nss
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PKCS #5, PKCS #7, PKCS #11, PKCS #12, S/MIME, X.509 v3 certificates, and other
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security standards.")
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(license license:mpl2.0)))
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(define nss/fixed
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(package-with-extra-patches nss (search-patches "nss-CVE-2021-43527.patch")))
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@ -1,354 +0,0 @@
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Fixes CVE-2021-43527.
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Copied from <https://hg.mozilla.org/projects/nss/rev/dea71cbef9e03636f37c6cb120f8deccce6e17dd>,
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but with the file names adjusted to allow easy use within GNU Guix.
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# HG changeset patch
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# User Dennis Jackson <djackson@mozilla.com>
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# Date 1637577642 0
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# Node ID dea71cbef9e03636f37c6cb120f8deccce6e17dd
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# Parent da3d22d708c9cc0a32cff339658aeb627575e371
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Bug 1737470 - Ensure DER encoded signatures are within size limits. r=jschanck,mt,bbeurdouche,rrelyea
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Differential Revision: https://phabricator.services.mozilla.com/D129514
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--- a/nss/lib/cryptohi/secvfy.c
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+++ b/nss/lib/cryptohi/secvfy.c
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@@ -159,58 +159,89 @@ verifyPKCS1DigestInfo(const VFYContext *
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SECItem pkcs1DigestInfo;
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pkcs1DigestInfo.data = cx->pkcs1RSADigestInfo;
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pkcs1DigestInfo.len = cx->pkcs1RSADigestInfoLen;
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return _SGN_VerifyPKCS1DigestInfo(
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cx->hashAlg, digest, &pkcs1DigestInfo,
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PR_FALSE /*XXX: unsafeAllowMissingParameters*/);
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}
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+static unsigned int
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+checkedSignatureLen(const SECKEYPublicKey *pubk)
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+{
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+ unsigned int sigLen = SECKEY_SignatureLen(pubk);
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+ if (sigLen == 0) {
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+ /* Error set by SECKEY_SignatureLen */
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+ return sigLen;
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+ }
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+ unsigned int maxSigLen;
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+ switch (pubk->keyType) {
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+ case rsaKey:
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+ case rsaPssKey:
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+ maxSigLen = (RSA_MAX_MODULUS_BITS + 7) / 8;
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+ break;
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+ case dsaKey:
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+ maxSigLen = DSA_MAX_SIGNATURE_LEN;
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+ break;
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+ case ecKey:
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+ maxSigLen = 2 * MAX_ECKEY_LEN;
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+ break;
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+ default:
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+ PORT_SetError(SEC_ERROR_UNSUPPORTED_KEYALG);
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+ return 0;
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+ }
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+ if (sigLen > maxSigLen) {
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+ PORT_SetError(SEC_ERROR_INVALID_KEY);
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+ return 0;
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+ }
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+ return sigLen;
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+}
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+
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/*
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* decode the ECDSA or DSA signature from it's DER wrapping.
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* The unwrapped/raw signature is placed in the buffer pointed
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* to by dsig and has enough room for len bytes.
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*/
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static SECStatus
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decodeECorDSASignature(SECOidTag algid, const SECItem *sig, unsigned char *dsig,
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unsigned int len)
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{
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SECItem *dsasig = NULL; /* also used for ECDSA */
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- SECStatus rv = SECSuccess;
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- if ((algid != SEC_OID_ANSIX9_DSA_SIGNATURE) &&
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- (algid != SEC_OID_ANSIX962_EC_PUBLIC_KEY)) {
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- if (sig->len != len) {
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- PORT_SetError(SEC_ERROR_BAD_DER);
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- return SECFailure;
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+ /* Safety: Ensure algId is as expected and that signature size is within maxmimums */
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+ if (algid == SEC_OID_ANSIX9_DSA_SIGNATURE) {
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+ if (len > DSA_MAX_SIGNATURE_LEN) {
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+ goto loser;
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}
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-
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- PORT_Memcpy(dsig, sig->data, sig->len);
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- return SECSuccess;
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+ } else if (algid == SEC_OID_ANSIX962_EC_PUBLIC_KEY) {
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+ if (len > MAX_ECKEY_LEN * 2) {
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+ goto loser;
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+ }
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+ } else {
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+ goto loser;
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}
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- if (algid == SEC_OID_ANSIX962_EC_PUBLIC_KEY) {
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- if (len > MAX_ECKEY_LEN * 2) {
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- PORT_SetError(SEC_ERROR_BAD_DER);
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- return SECFailure;
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- }
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+ /* Decode and pad to length */
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+ dsasig = DSAU_DecodeDerSigToLen((SECItem *)sig, len);
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+ if (dsasig == NULL) {
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+ goto loser;
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}
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- dsasig = DSAU_DecodeDerSigToLen((SECItem *)sig, len);
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-
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- if ((dsasig == NULL) || (dsasig->len != len)) {
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- rv = SECFailure;
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- } else {
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- PORT_Memcpy(dsig, dsasig->data, dsasig->len);
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+ if (dsasig->len != len) {
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+ SECITEM_FreeItem(dsasig, PR_TRUE);
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+ goto loser;
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}
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- if (dsasig != NULL)
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- SECITEM_FreeItem(dsasig, PR_TRUE);
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- if (rv == SECFailure)
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- PORT_SetError(SEC_ERROR_BAD_DER);
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- return rv;
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+ PORT_Memcpy(dsig, dsasig->data, len);
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+ SECITEM_FreeItem(dsasig, PR_TRUE);
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+
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+ return SECSuccess;
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+
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+loser:
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+ PORT_SetError(SEC_ERROR_BAD_DER);
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+ return SECFailure;
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}
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const SEC_ASN1Template hashParameterTemplate[] =
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{
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{ SEC_ASN1_SEQUENCE, 0, NULL, sizeof(SECItem) },
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{ SEC_ASN1_OBJECT_ID, 0 },
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{ SEC_ASN1_SKIP_REST },
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{ 0 }
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@@ -276,17 +307,17 @@ sec_GetEncAlgFromSigAlg(SECOidTag sigAlg
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*
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* Returns: SECSuccess if the algorithm was acceptable, SECFailure if the
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* algorithm was not found or was not a signing algorithm.
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*/
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SECStatus
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sec_DecodeSigAlg(const SECKEYPublicKey *key, SECOidTag sigAlg,
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const SECItem *param, SECOidTag *encalgp, SECOidTag *hashalg)
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{
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- int len;
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+ unsigned int len;
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PLArenaPool *arena;
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SECStatus rv;
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SECItem oid;
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SECOidTag encalg;
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PR_ASSERT(hashalg != NULL);
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PR_ASSERT(encalgp != NULL);
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@@ -461,58 +492,62 @@ vfy_CreateContext(const SECKEYPublicKey
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cx->wincx = wincx;
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cx->hasSignature = (sig != NULL);
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cx->encAlg = encAlg;
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cx->hashAlg = hashAlg;
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cx->key = SECKEY_CopyPublicKey(key);
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cx->pkcs1RSADigestInfo = NULL;
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rv = SECSuccess;
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if (sig) {
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- switch (type) {
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- case rsaKey:
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- rv = recoverPKCS1DigestInfo(hashAlg, &cx->hashAlg,
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- &cx->pkcs1RSADigestInfo,
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- &cx->pkcs1RSADigestInfoLen,
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- cx->key,
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- sig, wincx);
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- break;
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- case rsaPssKey:
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- sigLen = SECKEY_SignatureLen(key);
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- if (sigLen == 0) {
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- /* error set by SECKEY_SignatureLen */
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- rv = SECFailure;
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+ rv = SECFailure;
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+ if (type == rsaKey) {
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+ rv = recoverPKCS1DigestInfo(hashAlg, &cx->hashAlg,
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+ &cx->pkcs1RSADigestInfo,
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+ &cx->pkcs1RSADigestInfoLen,
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+ cx->key,
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+ sig, wincx);
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+ } else {
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+ sigLen = checkedSignatureLen(key);
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+ /* Check signature length is within limits */
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+ if (sigLen == 0) {
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+ /* error set by checkedSignatureLen */
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+ rv = SECFailure;
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+ goto loser;
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+ }
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+ if (sigLen > sizeof(cx->u)) {
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+ PORT_SetError(SEC_ERROR_BAD_SIGNATURE);
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+ rv = SECFailure;
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+ goto loser;
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+ }
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+ switch (type) {
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+ case rsaPssKey:
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+ if (sig->len != sigLen) {
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+ PORT_SetError(SEC_ERROR_BAD_SIGNATURE);
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+ rv = SECFailure;
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+ goto loser;
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+ }
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+ PORT_Memcpy(cx->u.buffer, sig->data, sigLen);
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+ rv = SECSuccess;
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break;
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- }
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- if (sig->len != sigLen) {
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- PORT_SetError(SEC_ERROR_BAD_SIGNATURE);
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+ case ecKey:
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+ case dsaKey:
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+ /* decodeECorDSASignature will check sigLen == sig->len after padding */
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+ rv = decodeECorDSASignature(encAlg, sig, cx->u.buffer, sigLen);
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+ break;
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+ default:
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+ /* Unreachable */
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rv = SECFailure;
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- break;
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- }
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- PORT_Memcpy(cx->u.buffer, sig->data, sigLen);
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- break;
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- case dsaKey:
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- case ecKey:
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- sigLen = SECKEY_SignatureLen(key);
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- if (sigLen == 0) {
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- /* error set by SECKEY_SignatureLen */
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- rv = SECFailure;
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- break;
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- }
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- rv = decodeECorDSASignature(encAlg, sig, cx->u.buffer, sigLen);
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- break;
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- default:
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- rv = SECFailure;
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- PORT_SetError(SEC_ERROR_UNSUPPORTED_KEYALG);
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- break;
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+ goto loser;
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+ }
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+ }
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+ if (rv != SECSuccess) {
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+ goto loser;
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}
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}
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- if (rv)
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- goto loser;
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-
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/* check hash alg again, RSA may have changed it.*/
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if (HASH_GetHashTypeByOidTag(cx->hashAlg) == HASH_AlgNULL) {
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/* error set by HASH_GetHashTypeByOidTag */
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goto loser;
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}
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/* check the policy on the hash algorithm. Do this after
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* the rsa decode because some uses of this function get hash implicitly
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* from the RSA signature itself. */
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@@ -645,21 +680,26 @@ VFY_EndWithSignature(VFYContext *cx, SEC
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if (cx->hashcx == NULL) {
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PORT_SetError(SEC_ERROR_INVALID_ARGS);
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return SECFailure;
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}
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(*cx->hashobj->end)(cx->hashcx, final, &part, sizeof(final));
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switch (cx->key->keyType) {
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case ecKey:
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case dsaKey:
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- dsasig.data = cx->u.buffer;
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- dsasig.len = SECKEY_SignatureLen(cx->key);
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+ dsasig.len = checkedSignatureLen(cx->key);
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if (dsasig.len == 0) {
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return SECFailure;
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}
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+ if (dsasig.len > sizeof(cx->u)) {
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+ PORT_SetError(SEC_ERROR_BAD_SIGNATURE);
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+ return SECFailure;
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+ }
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+ dsasig.data = cx->u.buffer;
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+
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if (sig) {
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rv = decodeECorDSASignature(cx->encAlg, sig, dsasig.data,
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dsasig.len);
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if (rv != SECSuccess) {
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PORT_SetError(SEC_ERROR_BAD_SIGNATURE);
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return SECFailure;
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}
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}
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@@ -681,18 +721,23 @@ VFY_EndWithSignature(VFYContext *cx, SEC
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cx->params,
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&mech);
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PORT_DestroyCheapArena(&tmpArena);
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if (rv != SECSuccess) {
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return SECFailure;
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}
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rsasig.data = cx->u.buffer;
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- rsasig.len = SECKEY_SignatureLen(cx->key);
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+ rsasig.len = checkedSignatureLen(cx->key);
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if (rsasig.len == 0) {
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+ /* Error set by checkedSignatureLen */
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+ return SECFailure;
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+ }
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+ if (rsasig.len > sizeof(cx->u)) {
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+ PORT_SetError(SEC_ERROR_BAD_SIGNATURE);
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return SECFailure;
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}
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if (sig) {
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if (sig->len != rsasig.len) {
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PORT_SetError(SEC_ERROR_BAD_SIGNATURE);
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return SECFailure;
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}
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PORT_Memcpy(rsasig.data, sig->data, rsasig.len);
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@@ -744,37 +789,42 @@ VFY_End(VFYContext *cx)
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static SECStatus
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vfy_VerifyDigest(const SECItem *digest, const SECKEYPublicKey *key,
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const SECItem *sig, SECOidTag encAlg, SECOidTag hashAlg,
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void *wincx)
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{
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SECStatus rv;
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VFYContext *cx;
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SECItem dsasig; /* also used for ECDSA */
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-
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rv = SECFailure;
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cx = vfy_CreateContext(key, sig, encAlg, hashAlg, NULL, wincx);
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if (cx != NULL) {
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switch (key->keyType) {
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case rsaKey:
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rv = verifyPKCS1DigestInfo(cx, digest);
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+ /* Error (if any) set by verifyPKCS1DigestInfo */
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break;
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- case dsaKey:
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case ecKey:
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+ case dsaKey:
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dsasig.data = cx->u.buffer;
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- dsasig.len = SECKEY_SignatureLen(cx->key);
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+ dsasig.len = checkedSignatureLen(cx->key);
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if (dsasig.len == 0) {
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+ /* Error set by checkedSignatureLen */
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+ rv = SECFailure;
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break;
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}
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- if (PK11_Verify(cx->key, &dsasig, (SECItem *)digest, cx->wincx) !=
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- SECSuccess) {
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+ if (dsasig.len > sizeof(cx->u)) {
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PORT_SetError(SEC_ERROR_BAD_SIGNATURE);
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- } else {
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- rv = SECSuccess;
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+ rv = SECFailure;
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+ break;
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+ }
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+ rv = PK11_Verify(cx->key, &dsasig, (SECItem *)digest, cx->wincx);
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+ if (rv != SECSuccess) {
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+ PORT_SetError(SEC_ERROR_BAD_SIGNATURE);
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}
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break;
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default:
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break;
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}
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VFY_DestroyContext(cx, PR_TRUE);
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}
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return rv;
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Reference in a new issue