2015-09-22 19:56:03 +02:00
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# mediaextractor - multimedia daemon
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2016-09-13 06:15:15 +02:00
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type mediaextractor, domain;
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2015-09-22 19:56:03 +02:00
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type mediaextractor_exec, exec_type, file_type;
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typeattribute mediaextractor mlstrustedsubject;
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binder_use(mediaextractor)
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binder_call(mediaextractor, binderservicedomain)
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binder_call(mediaextractor, appdomain)
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binder_service(mediaextractor)
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2017-01-19 22:23:52 +01:00
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add_service(mediaextractor, mediaextractor_service)
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2017-01-24 21:53:45 +01:00
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allow mediaextractor mediametrics_service:service_manager find;
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2016-11-01 01:02:32 +01:00
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allow mediaextractor mediacasserver_service:service_manager find;
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2015-09-22 19:56:03 +02:00
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2016-09-10 01:27:17 +02:00
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allow mediaextractor system_server:fd use;
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r_dir_file(mediaextractor, cgroup)
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allow mediaextractor proc_meminfo:file r_file_perms;
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2015-09-22 19:56:03 +02:00
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###
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### neverallow rules
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###
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# mediaextractor should never execute any executable without a
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# domain transition
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neverallow mediaextractor { file_type fs_type }:file execute_no_trans;
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2016-01-05 17:54:11 +01:00
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2017-02-16 21:34:51 +01:00
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# The goal of the mediaserver split is to place media processing code into
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# restrictive sandboxes with limited responsibilities and thus limited
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# permissions. Example: Audioserver is only responsible for controlling audio
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# hardware and processing audio content. Cameraserver does the same for camera
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# hardware/content. Etc.
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#
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# Media processing code is inherently risky and thus should have limited
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# permissions and be isolated from the rest of the system and network.
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# Lengthier explanation here:
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# https://android-developers.googleblog.com/2016/05/hardening-media-stack.html
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2016-04-23 00:34:40 +02:00
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neverallow mediaextractor domain:{ tcp_socket udp_socket rawip_socket } *;
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