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https://github.com/team-infusion-developers/android_kernel_samsung_msm8976.git
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c26fd69fa0
Add a crypto key parser for binary (DER) encoded X.509 certificates. The certificate is parsed and, if possible, the signature is verified. An X.509 key can be added like this: # keyctl padd crypto bar @s </tmp/x509.cert 15768135 and displayed like this: # cat /proc/keys 00f09a47 I--Q--- 1 perm 39390000 0 0 asymmetri bar: X509.RSA e9fd6d08 [] Note that this only works with binary certificates. PEM encoded certificates are ignored by the parser. Note also that the X.509 key ID is not congruent with the PGP key ID, but for the moment, they will match. If a NULL or "" name is given to add_key(), then the parser will generate a key description from the CertificateSerialNumber and Name fields of the TBSCertificate: 00aefc4e I--Q--- 1 perm 39390000 0 0 asymmetri bfbc0cd76d050ea4:/C=GB/L=Cambridge/O=Red Hat/CN=kernel key: X509.RSA 0c688c7b [] Signed-off-by: David Howells <dhowells@redhat.com> Signed-off-by: Rusty Russell <rusty@rustcorp.com.au>
27 lines
758 B
Makefile
27 lines
758 B
Makefile
#
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# Makefile for asymmetric cryptographic keys
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#
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obj-$(CONFIG_ASYMMETRIC_KEY_TYPE) += asymmetric_keys.o
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asymmetric_keys-y := asymmetric_type.o signature.o
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obj-$(CONFIG_ASYMMETRIC_PUBLIC_KEY_SUBTYPE) += public_key.o
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obj-$(CONFIG_PUBLIC_KEY_ALGO_RSA) += rsa.o
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#
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# X.509 Certificate handling
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#
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obj-$(CONFIG_X509_CERTIFICATE_PARSER) += x509_key_parser.o
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x509_key_parser-y := \
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x509-asn1.o \
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x509_rsakey-asn1.o \
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x509_cert_parser.o \
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x509_public_key.o
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$(obj)/x509_cert_parser.o: $(obj)/x509-asn1.h $(obj)/x509_rsakey-asn1.h
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$(obj)/x509-asn1.o: $(obj)/x509-asn1.c $(obj)/x509-asn1.h
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$(obj)/x509_rsakey-asn1.o: $(obj)/x509_rsakey-asn1.c $(obj)/x509_rsakey-asn1.h
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clean-files += x509-asn1.c x509-asn1.h
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clean-files += x509_rsakey-asn1.c x509_rsakey-asn1.h
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