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	With the move to permission tables the dfa is no longer a stand alone entity when used, needing a minimum of a permission table. However it still could be shared among different pdbs each using a different permission table. Instead of duping the permission table when sharing a pdb, add a refcount to the pdb so it can be easily shared. Reviewed-by: Georgia Garcia <georgia.garcia@canonical.com> Signed-off-by: John Johansen <john.johansen@canonical.com>
		
			
				
	
	
		
			190 lines
		
	
	
	
		
			5.3 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			190 lines
		
	
	
	
		
			5.3 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/* SPDX-License-Identifier: GPL-2.0-only */
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/*
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 * AppArmor security module
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 *
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 * This file contains AppArmor policy dfa matching engine definitions.
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 *
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 * Copyright (C) 1998-2008 Novell/SUSE
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 * Copyright 2009-2012 Canonical Ltd.
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 */
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#ifndef __AA_MATCH_H
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#define __AA_MATCH_H
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#include <linux/kref.h>
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#define DFA_NOMATCH			0
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#define DFA_START			1
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/**
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 * The format used for transition tables is based on the GNU flex table
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 * file format (--tables-file option; see Table File Format in the flex
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 * info pages and the flex sources for documentation). The magic number
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 * used in the header is 0x1B5E783D instead of 0xF13C57B1 though, because
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 * new tables have been defined and others YY_ID_CHK (check) and YY_ID_DEF
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 * (default) tables are used slightly differently (see the apparmor-parser
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 * package).
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 *
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 *
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 * The data in the packed dfa is stored in network byte order, and the tables
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 * are arranged for flexibility.  We convert the table data to host native
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 * byte order.
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 *
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 * The dfa begins with a table set header, and is followed by the actual
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 * tables.
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 */
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#define YYTH_MAGIC	0x1B5E783D
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#define YYTH_FLAG_DIFF_ENCODE	1
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#define YYTH_FLAG_OOB_TRANS	2
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#define YYTH_FLAGS (YYTH_FLAG_DIFF_ENCODE | YYTH_FLAG_OOB_TRANS)
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#define MAX_OOB_SUPPORTED	1
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struct table_set_header {
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	u32 th_magic;		/* YYTH_MAGIC */
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	u32 th_hsize;
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	u32 th_ssize;
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	u16 th_flags;
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	char th_version[];
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};
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/* The YYTD_ID are one less than flex table mappings.  The flex id
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 * has 1 subtracted at table load time, this allows us to directly use the
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 * ID's as indexes.
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 */
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#define	YYTD_ID_ACCEPT	0
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#define YYTD_ID_BASE	1
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#define YYTD_ID_CHK	2
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#define YYTD_ID_DEF	3
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#define YYTD_ID_EC	4
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#define YYTD_ID_META	5
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#define YYTD_ID_ACCEPT2 6
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#define YYTD_ID_NXT	7
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#define YYTD_ID_TSIZE	8
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#define YYTD_ID_MAX	8
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#define YYTD_DATA8	1
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#define YYTD_DATA16	2
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#define YYTD_DATA32	4
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#define YYTD_DATA64	8
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/* ACCEPT & ACCEPT2 tables gets 6 dedicated flags, YYTD_DATAX define the
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 * first flags
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 */
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#define ACCEPT1_FLAGS(X) ((X) & 0x3f)
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#define ACCEPT2_FLAGS(X) ACCEPT1_FLAGS((X) >> YYTD_ID_ACCEPT2)
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#define TO_ACCEPT1_FLAG(X) ACCEPT1_FLAGS(X)
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#define TO_ACCEPT2_FLAG(X) (ACCEPT1_FLAGS(X) << YYTD_ID_ACCEPT2)
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#define DFA_FLAG_VERIFY_STATES 0x1000
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struct table_header {
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	u16 td_id;
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	u16 td_flags;
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	u32 td_hilen;
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	u32 td_lolen;
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	char td_data[];
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};
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#define DEFAULT_TABLE(DFA) ((u16 *)((DFA)->tables[YYTD_ID_DEF]->td_data))
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#define BASE_TABLE(DFA) ((u32 *)((DFA)->tables[YYTD_ID_BASE]->td_data))
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#define NEXT_TABLE(DFA) ((u16 *)((DFA)->tables[YYTD_ID_NXT]->td_data))
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#define CHECK_TABLE(DFA) ((u16 *)((DFA)->tables[YYTD_ID_CHK]->td_data))
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#define EQUIV_TABLE(DFA) ((u8 *)((DFA)->tables[YYTD_ID_EC]->td_data))
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#define ACCEPT_TABLE(DFA) ((u32 *)((DFA)->tables[YYTD_ID_ACCEPT]->td_data))
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#define ACCEPT_TABLE2(DFA) ((u32 *)((DFA)->tables[YYTD_ID_ACCEPT2]->td_data))
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struct aa_dfa {
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	struct kref count;
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	u16 flags;
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	u32 max_oob;
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	struct table_header *tables[YYTD_ID_TSIZE];
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};
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#define byte_to_byte(X) (X)
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#define UNPACK_ARRAY(TABLE, BLOB, LEN, TTYPE, BTYPE, NTOHX)	\
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	do { \
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		typeof(LEN) __i; \
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		TTYPE *__t = (TTYPE *) TABLE; \
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		BTYPE *__b = (BTYPE *) BLOB; \
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		for (__i = 0; __i < LEN; __i++) { \
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			__t[__i] = NTOHX(__b[__i]); \
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		} \
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	} while (0)
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static inline size_t table_size(size_t len, size_t el_size)
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{
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	return ALIGN(sizeof(struct table_header) + len * el_size, 8);
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}
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#define aa_state_t unsigned int
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struct aa_dfa *aa_dfa_unpack(void *blob, size_t size, int flags);
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aa_state_t aa_dfa_match_len(struct aa_dfa *dfa, aa_state_t start,
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			    const char *str, int len);
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aa_state_t aa_dfa_match(struct aa_dfa *dfa, aa_state_t start,
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			const char *str);
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aa_state_t aa_dfa_next(struct aa_dfa *dfa, aa_state_t state, const char c);
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aa_state_t aa_dfa_outofband_transition(struct aa_dfa *dfa, aa_state_t state);
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aa_state_t aa_dfa_match_until(struct aa_dfa *dfa, aa_state_t start,
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			      const char *str, const char **retpos);
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aa_state_t aa_dfa_matchn_until(struct aa_dfa *dfa, aa_state_t start,
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			       const char *str, int n, const char **retpos);
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void aa_dfa_free_kref(struct kref *kref);
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#define WB_HISTORY_SIZE 24
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struct match_workbuf {
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	unsigned int count;
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	unsigned int pos;
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	unsigned int len;
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	unsigned int size;	/* power of 2, same as history size */
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	unsigned int history[WB_HISTORY_SIZE];
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};
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#define DEFINE_MATCH_WB(N)		\
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struct match_workbuf N = {		\
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	.count = 0,			\
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	.pos = 0,			\
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	.len = 0,			\
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}
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aa_state_t aa_dfa_leftmatch(struct aa_dfa *dfa, aa_state_t start,
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			    const char *str, unsigned int *count);
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/**
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 * aa_get_dfa - increment refcount on dfa @p
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 * @dfa: dfa  (MAYBE NULL)
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 *
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 * Returns: pointer to @dfa if @dfa is NULL will return NULL
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 * Requires: @dfa must be held with valid refcount when called
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 */
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static inline struct aa_dfa *aa_get_dfa(struct aa_dfa *dfa)
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{
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	if (dfa)
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		kref_get(&(dfa->count));
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	return dfa;
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}
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/**
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 * aa_put_dfa - put a dfa refcount
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 * @dfa: dfa to put refcount   (MAYBE NULL)
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 *
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 * Requires: if @dfa != NULL that a valid refcount be held
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 */
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static inline void aa_put_dfa(struct aa_dfa *dfa)
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{
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	if (dfa)
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		kref_put(&dfa->count, aa_dfa_free_kref);
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}
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#define MATCH_FLAG_DIFF_ENCODE 0x80000000
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#define MARK_DIFF_ENCODE 0x40000000
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#define MATCH_FLAG_OOB_TRANSITION 0x20000000
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#define MATCH_FLAGS_MASK 0xff000000
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#define MATCH_FLAGS_VALID (MATCH_FLAG_DIFF_ENCODE | MATCH_FLAG_OOB_TRANSITION)
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#define MATCH_FLAGS_INVALID (MATCH_FLAGS_MASK & ~MATCH_FLAGS_VALID)
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#endif /* __AA_MATCH_H */
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