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PKCS#7: Provide a key type for testing PKCS#7
Provide a key type for testing the PKCS#7 parser. It is given a non-detached
PKCS#7 message as payload:
keyctl padd pkcs7_test a @s <stuff.pkcs7
The PKCS#7 wrapper is validated against the trusted certificates available and
then stripped off. If successful, the key can be read, which will give the
data content of the PKCS#7 message.
A suitable message can be created by running make on the attached Makefile.
This will produce a file called stuff.pkcs7 for test loading. The key3.x509
file should be put into the kernel source tree before it is built and
converted to DER form:
openssl x509 -in .../pkcs7/key3.x509 -outform DER -out key3.x509
###############################################################################
#
# Create a pkcs7 message and sign it twice
#
# openssl x509 -text -inform PEM -noout -in key2.x509
#
###############################################################################
stuff.pkcs7: stuff.txt key2.priv key2.x509 key4.priv key4.x509 certs
$(RM) $@
openssl smime -sign \
-signer key2.x509 \
-inkey key2.priv \
-signer key4.x509 \
-inkey key4.priv \
-in stuff.txt \
-certfile certs \
-out $@ -binary -outform DER -nodetach
openssl pkcs7 -inform DER -in stuff.pkcs7 -print_certs -noout
openssl asn1parse -inform DER -in stuff.pkcs7 -i >out
stuff.txt:
echo "The quick red fox jumped over the lazy brown dog" >stuff.txt
certs: key1.x509 key2.x509 key3.x509 key4.x509
cat key{1,3}.x509 >$@
###############################################################################
#
# Generate a signed key
#
# openssl x509 -text -inform PEM -noout -in key2.x509
#
###############################################################################
key2.x509: key2.x509_unsigned key1.priv key1.x509
openssl x509 \
-req -in key2.x509_unsigned \
-out key2.x509 \
-extfile key2.genkey -extensions myexts \
-CA key1.x509 \
-CAkey key1.priv \
-CAcreateserial
key2.priv key2.x509_unsigned: key2.genkey
openssl req -new -nodes -utf8 -sha1 -days 36500 \
-batch -outform PEM \
-config key2.genkey \
-keyout key2.priv \
-out key2.x509_unsigned
key2.genkey:
@echo Generating X.509 key generation config
@echo >$@ "[ req ]"
@echo >>$@ "default_bits = 4096"
@echo >>$@ "distinguished_name = req_distinguished_name"
@echo >>$@ "prompt = no"
@echo >>$@ "string_mask = utf8only"
@echo >>$@ "x509_extensions = myexts"
@echo >>$@
@echo >>$@ "[ req_distinguished_name ]"
@echo >>$@ "O = Magrathea"
@echo >>$@ "CN = PKCS7 key 2"
@echo >>$@ "emailAddress = slartibartfast@magrathea.h2g2"
@echo >>$@
@echo >>$@ "[ myexts ]"
@echo >>$@ "basicConstraints=critical,CA:FALSE"
@echo >>$@ "keyUsage=digitalSignature"
@echo >>$@ "subjectKeyIdentifier=hash"
@echo >>$@ "authorityKeyIdentifier=keyid"
###############################################################################
#
# Generate a couple of signing keys
#
# openssl x509 -text -inform PEM -noout -in key1.x509
#
###############################################################################
key1.x509: key1.x509_unsigned key4.priv key4.x509
openssl x509 \
-req -in key1.x509_unsigned \
-out key1.x509 \
-extfile key1.genkey -extensions myexts \
-CA key4.x509 \
-CAkey key4.priv \
-CAcreateserial
key1.priv key1.x509_unsigned: key1.genkey
openssl req -new -nodes -utf8 -sha1 -days 36500 \
-batch -outform PEM \
-config key1.genkey \
-keyout key1.priv \
-out key1.x509_unsigned
key1.genkey:
@echo Generating X.509 key generation config
@echo >$@ "[ req ]"
@echo >>$@ "default_bits = 4096"
@echo >>$@ "distinguished_name = req_distinguished_name"
@echo >>$@ "prompt = no"
@echo >>$@ "string_mask = utf8only"
@echo >>$@ "x509_extensions = myexts"
@echo >>$@
@echo >>$@ "[ req_distinguished_name ]"
@echo >>$@ "O = Magrathea"
@echo >>$@ "CN = PKCS7 key 1"
@echo >>$@ "emailAddress = slartibartfast@magrathea.h2g2"
@echo >>$@
@echo >>$@ "[ myexts ]"
@echo >>$@ "basicConstraints=critical,CA:TRUE"
@echo >>$@ "keyUsage=digitalSignature,keyCertSign"
@echo >>$@ "subjectKeyIdentifier=hash"
@echo >>$@ "authorityKeyIdentifier=keyid"
###############################################################################
#
# Generate a signed key
#
# openssl x509 -text -inform PEM -noout -in key4.x509
#
###############################################################################
key4.x509: key4.x509_unsigned key3.priv key3.x509
openssl x509 \
-req -in key4.x509_unsigned \
-out key4.x509 \
-extfile key4.genkey -extensions myexts \
-CA key3.x509 \
-CAkey key3.priv \
-CAcreateserial
key4.priv key4.x509_unsigned: key4.genkey
openssl req -new -nodes -utf8 -sha1 -days 36500 \
-batch -outform PEM \
-config key4.genkey \
-keyout key4.priv \
-out key4.x509_unsigned
key4.genkey:
@echo Generating X.509 key generation config
@echo >$@ "[ req ]"
@echo >>$@ "default_bits = 4096"
@echo >>$@ "distinguished_name = req_distinguished_name"
@echo >>$@ "prompt = no"
@echo >>$@ "string_mask = utf8only"
@echo >>$@ "x509_extensions = myexts"
@echo >>$@
@echo >>$@ "[ req_distinguished_name ]"
@echo >>$@ "O = Magrathea"
@echo >>$@ "CN = PKCS7 key 4"
@echo >>$@ "emailAddress = slartibartfast@magrathea.h2g2"
@echo >>$@
@echo >>$@ "[ myexts ]"
@echo >>$@ "basicConstraints=critical,CA:TRUE"
@echo >>$@ "keyUsage=digitalSignature,keyCertSign"
@echo >>$@ "subjectKeyIdentifier=hash"
@echo >>$@ "authorityKeyIdentifier=keyid"
###############################################################################
#
# Generate a couple of signing keys
#
# openssl x509 -text -inform PEM -noout -in key3.x509
#
###############################################################################
key3.priv key3.x509: key3.genkey
openssl req -new -nodes -utf8 -sha1 -days 36500 \
-batch -x509 -outform PEM \
-config key3.genkey \
-keyout key3.priv \
-out key3.x509
key3.genkey:
@echo Generating X.509 key generation config
@echo >$@ "[ req ]"
@echo >>$@ "default_bits = 4096"
@echo >>$@ "distinguished_name = req_distinguished_name"
@echo >>$@ "prompt = no"
@echo >>$@ "string_mask = utf8only"
@echo >>$@ "x509_extensions = myexts"
@echo >>$@
@echo >>$@ "[ req_distinguished_name ]"
@echo >>$@ "O = Magrathea"
@echo >>$@ "CN = PKCS7 key 3"
@echo >>$@ "emailAddress = slartibartfast@magrathea.h2g2"
@echo >>$@
@echo >>$@ "[ myexts ]"
@echo >>$@ "basicConstraints=critical,CA:TRUE"
@echo >>$@ "keyUsage=digitalSignature,keyCertSign"
@echo >>$@ "subjectKeyIdentifier=hash"
@echo >>$@ "authorityKeyIdentifier=keyid"
clean:
$(RM) *~
$(RM) key1.* key2.* key3.* key4.* stuff.* out certs
Signed-off-by: David Howells <dhowells@redhat.com>
This commit is contained in:
parent
08815b62d7
commit
22d01afb21
@ -46,4 +46,17 @@ config PKCS7_MESSAGE_PARSER
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This option provides support for parsing PKCS#7 format messages for
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signature data and provides the ability to verify the signature.
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config PKCS7_TEST_KEY
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tristate "PKCS#7 testing key type"
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depends on PKCS7_MESSAGE_PARSER
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select SYSTEM_TRUSTED_KEYRING
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help
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This option provides a type of key that can be loaded up from a
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PKCS#7 message - provided the message is signed by a trusted key. If
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it is, the PKCS#7 wrapper is discarded and reading the key returns
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just the payload. If it isn't, adding the key will fail with an
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error.
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This is intended for testing the PKCS#7 parser.
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endif # ASYMMETRIC_KEY_TYPE
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@ -40,3 +40,10 @@ $(obj)/pkcs7_parser.o: $(obj)/pkcs7-asn1.h
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$(obj)/pkcs7-asn1.o: $(obj)/pkcs7-asn1.c $(obj)/pkcs7-asn1.h
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clean-files += pkcs7-asn1.c pkcs7-asn1.h
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#
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# PKCS#7 parser testing key
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#
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obj-$(CONFIG_PKCS7_TEST_KEY) += pkcs7_test_key.o
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pkcs7_test_key-y := \
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pkcs7_key_type.o
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97
crypto/asymmetric_keys/pkcs7_key_type.c
Normal file
97
crypto/asymmetric_keys/pkcs7_key_type.c
Normal file
@ -0,0 +1,97 @@
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/* Testing module to load key from trusted PKCS#7 message
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*
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* Copyright (C) 2014 Red Hat, Inc. All Rights Reserved.
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* Written by David Howells (dhowells@redhat.com)
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public Licence
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* as published by the Free Software Foundation; either version
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* 2 of the Licence, or (at your option) any later version.
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*/
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#define pr_fmt(fmt) "PKCS7key: "fmt
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#include <linux/key.h>
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#include <linux/key-type.h>
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#include <crypto/pkcs7.h>
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#include <keys/user-type.h>
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#include <keys/system_keyring.h>
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#include "pkcs7_parser.h"
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/*
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* Instantiate a PKCS#7 wrapped and validated key.
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*/
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int pkcs7_instantiate(struct key *key, struct key_preparsed_payload *prep)
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{
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struct pkcs7_message *pkcs7;
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const void *data, *saved_prep_data;
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size_t datalen, saved_prep_datalen;
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bool trusted;
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int ret;
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kenter("");
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saved_prep_data = prep->data;
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saved_prep_datalen = prep->datalen;
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pkcs7 = pkcs7_parse_message(saved_prep_data, saved_prep_datalen);
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if (IS_ERR(pkcs7)) {
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ret = PTR_ERR(pkcs7);
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goto error;
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}
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ret = pkcs7_verify(pkcs7);
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if (ret < 0)
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goto error_free;
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ret = pkcs7_validate_trust(pkcs7, system_trusted_keyring, &trusted);
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if (ret < 0)
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goto error_free;
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if (!trusted)
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pr_warn("PKCS#7 message doesn't chain back to a trusted key\n");
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ret = pkcs7_get_content_data(pkcs7, &data, &datalen, false);
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if (ret < 0)
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goto error_free;
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prep->data = data;
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prep->datalen = datalen;
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ret = user_instantiate(key, prep);
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prep->data = saved_prep_data;
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prep->datalen = saved_prep_datalen;
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error_free:
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pkcs7_free_message(pkcs7);
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error:
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kleave(" = %d", ret);
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return ret;
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}
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/*
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* user defined keys take an arbitrary string as the description and an
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* arbitrary blob of data as the payload
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*/
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struct key_type key_type_pkcs7 = {
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.name = "pkcs7_test",
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.def_lookup_type = KEYRING_SEARCH_LOOKUP_DIRECT,
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.instantiate = pkcs7_instantiate,
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.match = user_match,
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.revoke = user_revoke,
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.destroy = user_destroy,
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.describe = user_describe,
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.read = user_read,
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};
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/*
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* Module stuff
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*/
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static int __init pkcs7_key_init(void)
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{
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return register_key_type(&key_type_pkcs7);
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}
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static void __exit pkcs7_key_cleanup(void)
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{
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unregister_key_type(&key_type_pkcs7);
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}
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module_init(pkcs7_key_init);
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module_exit(pkcs7_key_cleanup);
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