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duke6e45e102007-12-01 00:00:00 +00001#
2# This is the "master security properties file".
3#
mullan68000592012-07-03 14:56:58 -04004# An alternate java.security properties file may be specified
5# from the command line via the system property
6#
7# -Djava.security.properties=<URL>
8#
9# This properties file appends to the master security properties file.
10# If both properties files specify values for the same key, the value
11# from the command-line properties file is selected, as it is the last
12# one loaded.
13#
14# Also, if you specify
15#
16# -Djava.security.properties==<URL> (2 equals),
17#
18# then that properties file completely overrides the master security
19# properties file.
20#
21# To disable the ability to specify an additional properties file from
22# the command line, set the key security.overridePropertiesFile
23# to false in the master security properties file. It is set to true
24# by default.
25
duke6e45e102007-12-01 00:00:00 +000026# In this file, various security properties are set for use by
27# java.security classes. This is where users can statically register
28# Cryptography Package Providers ("providers" for short). The term
29# "provider" refers to a package or set of packages that supply a
30# concrete implementation of a subset of the cryptography aspects of
31# the Java Security API. A provider may, for example, implement one or
32# more digital signature algorithms or message digest algorithms.
33#
34# Each provider must implement a subclass of the Provider class.
35# To register a provider in this master security properties file,
36# specify the Provider subclass name and priority in the format
37#
38# security.provider.<n>=<className>
39#
40# This declares a provider, and specifies its preference
41# order n. The preference order is the order in which providers are
42# searched for requested algorithms (when no specific provider is
43# requested). The order is 1-based; 1 is the most preferred, followed
44# by 2, and so on.
45#
46# <className> must specify the subclass of the Provider class whose
47# constructor sets the values of various properties that are required
48# for the Java Security API to look up the algorithms or other
49# facilities implemented by the provider.
50#
51# There must be at least one provider specification in java.security.
52# There is a default provider that comes standard with the JDK. It
53# is called the "SUN" provider, and its Provider subclass
54# named Sun appears in the sun.security.provider package. Thus, the
55# "SUN" provider is registered via the following:
56#
57# security.provider.1=sun.security.provider.Sun
58#
59# (The number 1 is used for the default provider.)
60#
61# Note: Providers can be dynamically registered instead by calls to
62# either the addProvider or insertProviderAt method in the Security
63# class.
64
65#
66# List of providers and their preference orders (see above):
67#
68security.provider.1=sun.security.provider.Sun
69security.provider.2=sun.security.rsa.SunRsaSign
vinnieed355ab2009-08-11 16:52:26 +010070security.provider.3=sun.security.ec.SunEC
71security.provider.4=com.sun.net.ssl.internal.ssl.Provider
72security.provider.5=com.sun.crypto.provider.SunJCE
73security.provider.6=sun.security.jgss.SunProvider
74security.provider.7=com.sun.security.sasl.Provider
75security.provider.8=org.jcp.xml.dsig.internal.dom.XMLDSigRI
76security.provider.9=sun.security.smartcardio.SunPCSC
77security.provider.10=sun.security.mscapi.SunMSCAPI
duke6e45e102007-12-01 00:00:00 +000078
79#
80# Select the source of seed data for SecureRandom. By default an
xuelei42dd6452010-11-01 07:57:46 -070081# attempt is made to use the entropy gathering device specified by
duke6e45e102007-12-01 00:00:00 +000082# the securerandom.source property. If an exception occurs when
xuelei42dd6452010-11-01 07:57:46 -070083# accessing the URL then the traditional system/thread activity
84# algorithm is used.
duke6e45e102007-12-01 00:00:00 +000085#
86# On Solaris and Linux systems, if file:/dev/urandom is specified and it
87# exists, a special SecureRandom implementation is activated by default.
88# This "NativePRNG" reads random bytes directly from /dev/urandom.
89#
90# On Windows systems, the URLs file:/dev/random and file:/dev/urandom
91# enables use of the Microsoft CryptoAPI seed functionality.
92#
93securerandom.source=file:/dev/urandom
94#
95# The entropy gathering device is described as a URL and can also
96# be specified with the system property "java.security.egd". For example,
97# -Djava.security.egd=file:/dev/urandom
xuelei42dd6452010-11-01 07:57:46 -070098# Specifying this system property will override the securerandom.source
duke6e45e102007-12-01 00:00:00 +000099# setting.
100
101#
102# Class to instantiate as the javax.security.auth.login.Configuration
103# provider.
104#
105login.configuration.provider=com.sun.security.auth.login.ConfigFile
106
107#
108# Default login configuration file
109#
110#login.config.url.1=file:${user.home}/.java.login.config
111
112#
113# Class to instantiate as the system Policy. This is the name of the class
114# that will be used as the Policy object.
115#
116policy.provider=sun.security.provider.PolicyFile
117
118# The default is to have a single system-wide policy file,
119# and a policy file in the user's home directory.
120policy.url.1=file:${java.home}/lib/security/java.policy
121policy.url.2=file:${user.home}/.java.policy
122
123# whether or not we expand properties in the policy file
124# if this is set to false, properties (${...}) will not be expanded in policy
125# files.
126policy.expandProperties=true
127
128# whether or not we allow an extra policy to be passed on the command line
129# with -Djava.security.policy=somefile. Comment out this line to disable
130# this feature.
131policy.allowSystemProperty=true
132
133# whether or not we look into the IdentityScope for trusted Identities
134# when encountering a 1.1 signed JAR file. If the identity is found
135# and is trusted, we grant it AllPermission.
136policy.ignoreIdentityScope=false
137
138#
139# Default keystore type.
140#
141keystore.type=jks
142
143#
duke6e45e102007-12-01 00:00:00 +0000144# List of comma-separated packages that start with or equal this string
145# will cause a security exception to be thrown when
146# passed to checkPackageAccess unless the
147# corresponding RuntimePermission ("accessClassInPackage."+package) has
148# been granted.
mullan54257132012-10-26 15:21:05 -0400149package.access=sun.,\
mkosa265cf42013-03-07 07:19:35 -0500150 com.sun.xml.internal.,\
mullan54257132012-10-26 15:21:05 -0400151 com.sun.imageio.,\
mchung60367132012-12-05 14:02:58 -0800152 com.sun.istack.internal.,\
dfuchs0fe8bdd2013-01-30 11:33:51 +0100153 com.sun.jmx.,\
mchung1cdf5492013-01-28 15:53:29 -0800154 com.sun.proxy.,\
joehwf5a92592013-02-18 13:02:09 -0800155 com.sun.org.apache.bcel.internal.,\
156 com.sun.org.apache.regexp.internal.,\
157 com.sun.org.apache.xerces.internal.,\
158 com.sun.org.apache.xpath.internal.,\
159 com.sun.org.apache.xalan.internal.extensions.,\
160 com.sun.org.apache.xalan.internal.lib.,\
161 com.sun.org.apache.xalan.internal.res.,\
162 com.sun.org.apache.xalan.internal.templates.,\
mullan54257132012-10-26 15:21:05 -0400163 com.sun.org.apache.xalan.internal.utils.,\
joehwf5a92592013-02-18 13:02:09 -0800164 com.sun.org.apache.xalan.internal.xslt.,\
165 com.sun.org.apache.xalan.internal.xsltc.cmdline.,\
166 com.sun.org.apache.xalan.internal.xsltc.compiler.,\
167 com.sun.org.apache.xalan.internal.xsltc.trax.,\
168 com.sun.org.apache.xalan.internal.xsltc.util.,\
169 com.sun.org.apache.xml.internal.res.,\
170 com.sun.org.apache.xml.internal.serializer.utils.,\
171 com.sun.org.apache.xml.internal.utils.,\
mullanf180f522013-03-27 10:37:46 +0000172 com.sun.org.glassfish.,\
alanba3151942013-04-09 15:51:50 +0100173 com.oracle.xmlns.internal.,\
174 com.oracle.webservices.internal.,\
chegarfef51392013-03-28 09:50:40 +0000175 jdk.internal.,\
chegar8c834d52013-04-13 20:16:00 +0100176 jdk.nashorn.internal.,\
177 jdk.nashorn.tools.,\
raginip149ef532013-03-27 21:32:53 +0000178 com.sun.java.accessibility.
duke6e45e102007-12-01 00:00:00 +0000179
180#
181# List of comma-separated packages that start with or equal this string
182# will cause a security exception to be thrown when
183# passed to checkPackageDefinition unless the
184# corresponding RuntimePermission ("defineClassInPackage."+package) has
185# been granted.
186#
mullanee9229d2012-02-22 15:38:24 -0500187# by default, none of the class loaders supplied with the JDK call
188# checkPackageDefinition.
duke6e45e102007-12-01 00:00:00 +0000189#
mullan54257132012-10-26 15:21:05 -0400190package.definition=sun.,\
mkosa265cf42013-03-07 07:19:35 -0500191 com.sun.xml.internal.,\
mullan54257132012-10-26 15:21:05 -0400192 com.sun.imageio.,\
mchung60367132012-12-05 14:02:58 -0800193 com.sun.istack.internal.,\
dfuchs0fe8bdd2013-01-30 11:33:51 +0100194 com.sun.jmx.,\
mchung1cdf5492013-01-28 15:53:29 -0800195 com.sun.proxy.,\
joehwf5a92592013-02-18 13:02:09 -0800196 com.sun.org.apache.bcel.internal.,\
197 com.sun.org.apache.regexp.internal.,\
198 com.sun.org.apache.xerces.internal.,\
199 com.sun.org.apache.xpath.internal.,\
200 com.sun.org.apache.xalan.internal.extensions.,\
201 com.sun.org.apache.xalan.internal.lib.,\
202 com.sun.org.apache.xalan.internal.res.,\
203 com.sun.org.apache.xalan.internal.templates.,\
mullan54257132012-10-26 15:21:05 -0400204 com.sun.org.apache.xalan.internal.utils.,\
joehwf5a92592013-02-18 13:02:09 -0800205 com.sun.org.apache.xalan.internal.xslt.,\
206 com.sun.org.apache.xalan.internal.xsltc.cmdline.,\
207 com.sun.org.apache.xalan.internal.xsltc.compiler.,\
208 com.sun.org.apache.xalan.internal.xsltc.trax.,\
209 com.sun.org.apache.xalan.internal.xsltc.util.,\
210 com.sun.org.apache.xml.internal.res.,\
211 com.sun.org.apache.xml.internal.serializer.utils.,\
212 com.sun.org.apache.xml.internal.utils.,\
mullanf180f522013-03-27 10:37:46 +0000213 com.sun.org.glassfish.,\
alanba3151942013-04-09 15:51:50 +0100214 com.oracle.xmlns.internal.,\
215 com.oracle.webservices.internal.,\
chegarfef51392013-03-28 09:50:40 +0000216 jdk.internal.,\
chegar8c834d52013-04-13 20:16:00 +0100217 jdk.nashorn.internal.,\
218 jdk.nashorn.tools.,\
raginip149ef532013-03-27 21:32:53 +0000219 com.sun.java.accessibility.
duke6e45e102007-12-01 00:00:00 +0000220
221#
222# Determines whether this properties file can be appended to
223# or overridden on the command line via -Djava.security.properties
224#
225security.overridePropertiesFile=true
226
227#
xuelei42dd6452010-11-01 07:57:46 -0700228# Determines the default key and trust manager factory algorithms for
duke6e45e102007-12-01 00:00:00 +0000229# the javax.net.ssl package.
230#
231ssl.KeyManagerFactory.algorithm=SunX509
232ssl.TrustManagerFactory.algorithm=PKIX
233
234#
235# The Java-level namelookup cache policy for successful lookups:
236#
237# any negative value: caching forever
238# any positive value: the number of seconds to cache an address for
239# zero: do not cache
240#
241# default value is forever (FOREVER). For security reasons, this
242# caching is made forever when a security manager is set. When a security
xuelei42dd6452010-11-01 07:57:46 -0700243# manager is not set, the default behavior in this implementation
244# is to cache for 30 seconds.
duke6e45e102007-12-01 00:00:00 +0000245#
246# NOTE: setting this to anything other than the default value can have
xuelei42dd6452010-11-01 07:57:46 -0700247# serious security implications. Do not set it unless
duke6e45e102007-12-01 00:00:00 +0000248# you are sure you are not exposed to DNS spoofing attack.
249#
xuelei42dd6452010-11-01 07:57:46 -0700250#networkaddress.cache.ttl=-1
duke6e45e102007-12-01 00:00:00 +0000251
252# The Java-level namelookup cache policy for failed lookups:
253#
254# any negative value: cache forever
255# any positive value: the number of seconds to cache negative lookup results
256# zero: do not cache
257#
258# In some Microsoft Windows networking environments that employ
259# the WINS name service in addition to DNS, name service lookups
260# that fail may take a noticeably long time to return (approx. 5 seconds).
261# For this reason the default caching policy is to maintain these
xuelei42dd6452010-11-01 07:57:46 -0700262# results for 10 seconds.
duke6e45e102007-12-01 00:00:00 +0000263#
264#
265networkaddress.cache.negative.ttl=10
266
267#
268# Properties to configure OCSP for certificate revocation checking
269#
270
xuelei42dd6452010-11-01 07:57:46 -0700271# Enable OCSP
duke6e45e102007-12-01 00:00:00 +0000272#
273# By default, OCSP is not used for certificate revocation checking.
274# This property enables the use of OCSP when set to the value "true".
275#
276# NOTE: SocketPermission is required to connect to an OCSP responder.
277#
278# Example,
279# ocsp.enable=true
xuelei42dd6452010-11-01 07:57:46 -0700280
duke6e45e102007-12-01 00:00:00 +0000281#
282# Location of the OCSP responder
283#
284# By default, the location of the OCSP responder is determined implicitly
285# from the certificate being validated. This property explicitly specifies
286# the location of the OCSP responder. The property is used when the
287# Authority Information Access extension (defined in RFC 3280) is absent
288# from the certificate or when it requires overriding.
289#
290# Example,
291# ocsp.responderURL=http://ocsp.example.net:80
xuelei42dd6452010-11-01 07:57:46 -0700292
duke6e45e102007-12-01 00:00:00 +0000293#
294# Subject name of the OCSP responder's certificate
295#
296# By default, the certificate of the OCSP responder is that of the issuer
297# of the certificate being validated. This property identifies the certificate
xuelei42dd6452010-11-01 07:57:46 -0700298# of the OCSP responder when the default does not apply. Its value is a string
299# distinguished name (defined in RFC 2253) which identifies a certificate in
300# the set of certificates supplied during cert path validation. In cases where
duke6e45e102007-12-01 00:00:00 +0000301# the subject name alone is not sufficient to uniquely identify the certificate
302# then both the "ocsp.responderCertIssuerName" and
303# "ocsp.responderCertSerialNumber" properties must be used instead. When this
304# property is set then those two properties are ignored.
305#
306# Example,
307# ocsp.responderCertSubjectName="CN=OCSP Responder, O=XYZ Corp"
308
309#
310# Issuer name of the OCSP responder's certificate
311#
312# By default, the certificate of the OCSP responder is that of the issuer
313# of the certificate being validated. This property identifies the certificate
314# of the OCSP responder when the default does not apply. Its value is a string
315# distinguished name (defined in RFC 2253) which identifies a certificate in
xuelei42dd6452010-11-01 07:57:46 -0700316# the set of certificates supplied during cert path validation. When this
317# property is set then the "ocsp.responderCertSerialNumber" property must also
318# be set. When the "ocsp.responderCertSubjectName" property is set then this
duke6e45e102007-12-01 00:00:00 +0000319# property is ignored.
320#
321# Example,
322# ocsp.responderCertIssuerName="CN=Enterprise CA, O=XYZ Corp"
xuelei42dd6452010-11-01 07:57:46 -0700323
duke6e45e102007-12-01 00:00:00 +0000324#
325# Serial number of the OCSP responder's certificate
326#
327# By default, the certificate of the OCSP responder is that of the issuer
328# of the certificate being validated. This property identifies the certificate
329# of the OCSP responder when the default does not apply. Its value is a string
330# of hexadecimal digits (colon or space separators may be present) which
331# identifies a certificate in the set of certificates supplied during cert path
332# validation. When this property is set then the "ocsp.responderCertIssuerName"
333# property must also be set. When the "ocsp.responderCertSubjectName" property
334# is set then this property is ignored.
335#
336# Example,
337# ocsp.responderCertSerialNumber=2A:FF:00
xuelei42dd6452010-11-01 07:57:46 -0700338
weijunf49e12c2010-08-19 11:26:32 +0800339#
340# Policy for failed Kerberos KDC lookups:
341#
342# When a KDC is unavailable (network error, service failure, etc), it is
343# put inside a blacklist and accessed less often for future requests. The
344# value (case-insensitive) for this policy can be:
345#
346# tryLast
347# KDCs in the blacklist are always tried after those not on the list.
348#
349# tryLess[:max_retries,timeout]
350# KDCs in the blacklist are still tried by their order in the configuration,
351# but with smaller max_retries and timeout values. max_retries and timeout
352# are optional numerical parameters (default 1 and 5000, which means once
353# and 5 seconds). Please notes that if any of the values defined here is
354# more than what is defined in krb5.conf, it will be ignored.
355#
356# Whenever a KDC is detected as available, it is removed from the blacklist.
357# The blacklist is reset when krb5.conf is reloaded. You can add
358# refreshKrb5Config=true to a JAAS configuration file so that krb5.conf is
359# reloaded whenever a JAAS authentication is attempted.
360#
361# Example,
362# krb5.kdc.bad.policy = tryLast
363# krb5.kdc.bad.policy = tryLess:2,2000
364krb5.kdc.bad.policy = tryLast
365
xuelei42dd6452010-11-01 07:57:46 -0700366# Algorithm restrictions for certification path (CertPath) processing
367#
368# In some environments, certain algorithms or key lengths may be undesirable
369# for certification path building and validation. For example, "MD2" is
370# generally no longer considered to be a secure hash algorithm. This section
371# describes the mechanism for disabling algorithms based on algorithm name
372# and/or key length. This includes algorithms used in certificates, as well
373# as revocation information such as CRLs and signed OCSP Responses.
374#
375# The syntax of the disabled algorithm string is described as this Java
376# BNF-style:
377# DisabledAlgorithms:
378# " DisabledAlgorithm { , DisabledAlgorithm } "
379#
380# DisabledAlgorithm:
381# AlgorithmName [Constraint]
382#
383# AlgorithmName:
384# (see below)
385#
386# Constraint:
387# KeySizeConstraint
388#
389# KeySizeConstraint:
390# keySize Operator DecimalInteger
391#
392# Operator:
393# <= | < | == | != | >= | >
394#
395# DecimalInteger:
396# DecimalDigits
397#
398# DecimalDigits:
399# DecimalDigit {DecimalDigit}
400#
401# DecimalDigit: one of
402# 1 2 3 4 5 6 7 8 9 0
403#
404# The "AlgorithmName" is the standard algorithm name of the disabled
405# algorithm. See "Java Cryptography Architecture Standard Algorithm Name
406# Documentation" for information about Standard Algorithm Names. Matching
407# is performed using a case-insensitive sub-element matching rule. (For
408# example, in "SHA1withECDSA" the sub-elements are "SHA1" for hashing and
409# "ECDSA" for signatures.) If the assertion "AlgorithmName" is a
410# sub-element of the certificate algorithm name, the algorithm will be
411# rejected during certification path building and validation. For example,
412# the assertion algorithm name "DSA" will disable all certificate algorithms
413# that rely on DSA, such as NONEwithDSA, SHA1withDSA. However, the assertion
414# will not disable algorithms related to "ECDSA".
415#
416# A "Constraint" provides further guidance for the algorithm being specified.
417# The "KeySizeConstraint" requires a key of a valid size range if the
418# "AlgorithmName" is of a key algorithm. The "DecimalInteger" indicates the
419# key size specified in number of bits. For example, "RSA keySize <= 1024"
420# indicates that any RSA key with key size less than or equal to 1024 bits
421# should be disabled, and "RSA keySize < 1024, RSA keySize > 2048" indicates
422# that any RSA key with key size less than 1024 or greater than 2048 should
423# be disabled. Note that the "KeySizeConstraint" only makes sense to key
424# algorithms.
425#
426# Note: This property is currently used by Oracle's PKIX implementation. It
427# is not guaranteed to be examined and used by other implementations.
428#
429# Example:
430# jdk.certpath.disabledAlgorithms=MD2, DSA, RSA keySize < 2048
431#
432#
xuelei7b2dfe72012-12-28 00:48:12 -0800433jdk.certpath.disabledAlgorithms=MD2, RSA keySize < 1024
xuelei42dd6452010-11-01 07:57:46 -0700434
435# Algorithm restrictions for Secure Socket Layer/Transport Layer Security
436# (SSL/TLS) processing
437#
438# In some environments, certain algorithms or key lengths may be undesirable
439# when using SSL/TLS. This section describes the mechanism for disabling
440# algorithms during SSL/TLS security parameters negotiation, including cipher
441# suites selection, peer authentication and key exchange mechanisms.
442#
443# For PKI-based peer authentication and key exchange mechanisms, this list
444# of disabled algorithms will also be checked during certification path
445# building and validation, including algorithms used in certificates, as
446# well as revocation information such as CRLs and signed OCSP Responses.
447# This is in addition to the jdk.certpath.disabledAlgorithms property above.
448#
449# See the specification of "jdk.certpath.disabledAlgorithms" for the
450# syntax of the disabled algorithm string.
451#
452# Note: This property is currently used by Oracle's JSSE implementation.
453# It is not guaranteed to be examined and used by other implementations.
454#
455# Example:
456# jdk.tls.disabledAlgorithms=MD5, SHA1, DSA, RSA keySize < 2048
457