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Improve some comments, fix some typos+whitespace
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@ -291,7 +291,7 @@ int mbedtls_x509_crt_verify_info( char *buf, size_t size, const char *prefix,
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* chaining up to those CAs will be trusted, and (2)
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* self-signed end-entity certificates to be trusted (for
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* specific peers you know) - in that case, the self-signed
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* certificate doens't need to have the CA bit set.
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* certificate doesn't need to have the CA bit set.
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*
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* \param crt a certificate (chain) to be verified
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* \param trust_ca the list of trusted CAs (see note above)
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@ -1893,7 +1893,6 @@ static int x509_crt_check_signature( const mbedtls_x509_crt *child,
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* Return 0 if yes, -1 if not.
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*
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* top means parent is a locally-trusted certificate
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* bottom means child is the end entity cert
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*/
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static int x509_crt_check_parent( const mbedtls_x509_crt *child,
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const mbedtls_x509_crt *parent,
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@ -1935,9 +1934,9 @@ static int x509_crt_check_parent( const mbedtls_x509_crt *child,
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* 3. for trusted roots, the signature is correct
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* 4. pathlen constraints are satisfied
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*
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* Stop at the first suitable candidate, except if it's not time-valid (not
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* expired nor future) *and* there is a later suitable candidate that is
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* time-valid.
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* If there's a suitable candidate which is also time-valid, return the first
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* such. Otherwise, return the first suitable candidate (or NULL if there is
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* none).
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*
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* The rationale for this rule is that someone could have a list of trusted
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* roots with two versions on the same root with different validity periods.
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@ -1979,7 +1978,7 @@ static mbedtls_x509_crt *x509_crt_find_parent_in( mbedtls_x509_crt *child,
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continue;
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}
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/* optionnal time check */
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/* optional time check */
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if( mbedtls_x509_time_is_past( &parent->valid_to ) ||
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mbedtls_x509_time_is_future( &parent->valid_from ) )
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{
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@ -2059,7 +2058,7 @@ static int x509_crt_check_ee_locally_trusted(
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*
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* Given a peer-provided list of certificates EE, C1, ..., Cn and
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* a list of trusted certs R1, ... Rp, try to build and verify a chain
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* EE, Ci1, ... Ciq, Rj
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* EE, Ci1, ... Ciq [, Rj]
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* such that every cert in the chain is a child of the next one,
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* jumping to a trusted root as early as possible.
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*
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@ -2074,7 +2073,7 @@ static int x509_crt_check_ee_locally_trusted(
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* - [in] crt: the cert list EE, C1, ..., Cn
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* - [in] trust_ca: the trusted list R1, ..., Rp
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* - [in] ca_crl, profile: as in verify_with_profile()
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* - [out] ver_chain: the built and verified chain
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* - [out] ver_chain, chain_len: the built and verified chain
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*
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* Return value:
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* - non-zero if the chain could not be fully built and examined
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@ -2167,7 +2166,7 @@ static int x509_crt_verify_chain(
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#if defined(MBEDTLS_X509_CRL_PARSE_C)
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/* Check trusted CA's CRL for the given crt */
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*flags |= x509_crt_verifycrl(child, parent, ca_crl, profile );
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*flags |= x509_crt_verifycrl( child, parent, ca_crl, profile );
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#else
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(void) ca_crl;
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#endif
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@ -6,9 +6,10 @@
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#
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# Purpose
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#
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# To test the code dependencies on individual PK algs in each test suite. This
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# is a verification step to ensure we don't ship test suites that do not work
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# for some build options.
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# To test the code dependencies on individual PK algs (those that can be used
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# from the PK layer, so currently signature and encryption but not key
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# exchange) in each test suite. This is a verification step to ensure we don't
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# ship test suites that do not work for some build options.
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#
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# The process is:
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# for each possible PK alg
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@ -38,6 +39,8 @@ my $ssl_sed = 's/^#define \(MBEDTLS_SSL.*\)/\1/p';
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my $kex_sed = 's/^#define \(MBEDTLS_KEY_EXCHANGE.*\)/\1/p';
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my @ssl = split( /\s+/, `sed -n -e '$ssl_sed' -e '$kex_sed' $config_h` );
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# Some algorithms can't be disabled on their own as others depend on them, so
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# we list those reverse-dependencies here to keep check_config.h happy.
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my %algs = (
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'MBEDTLS_ECDSA_C' => [],
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'MBEDTLS_ECP_C' => ['MBEDTLS_ECDSA_C', 'MBEDTLS_ECDH_C'],
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