1 /* 2 * CDDL HEADER START 3 * 4 * The contents of this file are subject to the terms of the 5 * Common Development and Distribution License (the "License"). 6 * You may not use this file except in compliance with the License. 7 * 8 * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE 9 * or http://www.opensolaris.org/os/licensing. 10 * See the License for the specific language governing permissions 11 * and limitations under the License. 12 * 13 * When distributing Covered Code, include this CDDL HEADER in each 14 * file and include the License file at usr/src/OPENSOLARIS.LICENSE. 15 * If applicable, add the following below this CDDL HEADER, with the 16 * fields enclosed by brackets "[]" replaced with your own identifying 17 * information: Portions Copyright [yyyy] [name of copyright owner] 18 * 19 * CDDL HEADER END 20 */ 21 /* 22 * Copyright 2007 Sun Microsystems, Inc. All rights reserved. 23 * Use is subject to license terms. 24 */ 25 26 #ifndef INTERFACE_H 27 #define INTERFACE_H 28 29 #pragma ident "%Z%%M% %I% %E% SMI" 30 31 /* 32 * Interface.[ch] encapsulate all of the agent's knowledge of network 33 * interfaces from the DHCP agent's perspective. See interface.c for 34 * documentation on how to use the exported functions. Note that there are not 35 * functional interfaces for manipulating all of the fields in a PIF or LIF -- 36 * please read the comments in the structure definitions below for the rules on 37 * accessing various fields. 38 */ 39 40 #ifdef __cplusplus 41 extern "C" { 42 #endif 43 44 #include <netinet/in.h> 45 #include <net/if.h> /* IFNAMSIZ */ 46 #include <sys/types.h> 47 #include <netinet/dhcp.h> 48 #include <dhcpagent_ipc.h> 49 #include <libinetutil.h> 50 #include <libdlpi.h> 51 52 #include "common.h" 53 #include "util.h" 54 55 #define V4_PART_OF_V6(v6) v6._S6_un._S6_u32[3] 56 57 struct dhcp_pif_s { 58 dhcp_pif_t *pif_next; /* Note: must be first */ 59 dhcp_pif_t *pif_prev; 60 dhcp_lif_t *pif_lifs; /* pointer to logical interface list */ 61 uint32_t pif_index; /* interface index */ 62 uint16_t pif_max; /* largest DHCP packet on this if */ 63 uchar_t *pif_hwaddr; /* our link-layer address */ 64 uchar_t pif_hwlen; /* our link-layer address len */ 65 uchar_t pif_hwtype; /* type of link-layer */ 66 boolean_t pif_isv6; 67 boolean_t pif_running; /* interface is running */ 68 dlpi_handle_t pif_dlpi_hd; /* dlpi handle */ 69 int pif_dlpi_count; 70 iu_event_id_t pif_dlpi_id; /* event id for ack/nak/offer */ 71 uint_t pif_hold_count; /* reference count */ 72 73 uchar_t *pif_daddr; /* our L2 destination address */ 74 uchar_t pif_dlen; /* our L2 destination address len */ 75 76 char pif_name[LIFNAMSIZ]; 77 }; 78 79 struct dhcp_lif_s { 80 dhcp_lif_t *lif_next; /* Note: must be first */ 81 dhcp_lif_t *lif_prev; 82 dhcp_pif_t *lif_pif; /* backpointer to parent physical if */ 83 dhcp_smach_t *lif_smachs; /* pointer to list of state machines */ 84 dhcp_lease_t *lif_lease; /* backpointer to lease holding LIF */ 85 uint64_t lif_flags; /* Interface flags (IFF_*) */ 86 int lif_sock_ip_fd; /* Bound to addr.BOOTPC for src addr */ 87 iu_event_id_t lif_acknak_id; /* event acknak id */ 88 uint_t lif_max; /* maximum IP message size */ 89 uint_t lif_hold_count; /* reference count */ 90 boolean_t lif_dad_wait; /* waiting for DAD resolution */ 91 boolean_t lif_removed; /* removed from list */ 92 boolean_t lif_plumbed; /* interface plumbed by dhcpagent */ 93 boolean_t lif_expired; /* lease has evaporated */ 94 const char *lif_declined; /* reason to refuse this address */ 95 uint32_t lif_iaid; /* unique and stable identifier */ 96 iu_event_id_t lif_iaid_id; /* for delayed writes to /etc */ 97 98 /* 99 * While in any states except ADOPTING, INIT, INFORMATION and 100 * INFORM_SENT, the following three fields are equal to what we believe 101 * the current address, netmask, and broadcast address on the interface 102 * to be. This is so we can detect if the user changes them and 103 * abandon the interface. 104 */ 105 106 in6_addr_t lif_v6addr; /* our IP address */ 107 in6_addr_t lif_v6mask; /* our netmask */ 108 in6_addr_t lif_v6peer; /* our broadcast or peer address */ 109 110 dhcp_timer_t lif_preferred; /* lease preferred timer (v6 only) */ 111 dhcp_timer_t lif_expire; /* lease expire timer */ 112 113 char lif_name[LIFNAMSIZ]; 114 }; 115 #define lif_addr V4_PART_OF_V6(lif_v6addr) 116 #define lif_netmask V4_PART_OF_V6(lif_v6mask) 117 #define lif_peer V4_PART_OF_V6(lif_v6peer) 118 #define lif_broadcast V4_PART_OF_V6(lif_v6peer) 119 120 /* used by expired_lif_state to express state of DHCP interfaces */ 121 typedef enum dhcp_expire_e { 122 DHCP_EXP_NOLIFS, 123 DHCP_EXP_NOEXP, 124 DHCP_EXP_ALLEXP, 125 DHCP_EXP_SOMEEXP 126 } dhcp_expire_t; 127 128 /* 129 * A word on memory management and LIFs and PIFs: 130 * 131 * Since LIFs are often passed as context to callback functions, they cannot be 132 * freed when the interface they represent is dropped or released (or when 133 * those callbacks finally go off, they will be hosed). To handle this 134 * situation, the structures are reference counted. Here are the rules for 135 * managing these counts: 136 * 137 * A PIF is created through insert_pif(). Along with initializing the PIF, 138 * this puts a hold on the PIF. A LIF is created through insert_lif(). This 139 * also initializes the LIF and places a hold on it. The caller's hold on the 140 * underlying PIF is transferred to the LIF. 141 * 142 * Whenever a lease is released or dropped (implicitly or explicitly), 143 * remove_lif() is called, which sets the lif_removed flag and removes the 144 * interface from the internal list of managed interfaces. Lastly, 145 * remove_lif() calls release_lif() to remove the hold acquired in 146 * insert_lif(). If this decrements the hold count on the interface to zero, 147 * then free() is called and the hold on the PIF is dropped. If there are 148 * holds other than the hold acquired in insert_lif(), the hold count will 149 * still be > 0, and the interface will remain allocated (though dormant). 150 * 151 * Whenever a callback is scheduled against a LIF, another hold must be put on 152 * the ifslist through hold_lif(). 153 * 154 * Whenever a callback is called back against a LIF, release_lif() must be 155 * called to decrement the hold count, which may end up freeing the LIF if the 156 * hold count becomes zero. 157 * 158 * Since some callbacks may take a long time to get called back (such as 159 * timeout callbacks for lease expiration, etc), it is sometimes more 160 * appropriate to cancel the callbacks and call release_lif() if the 161 * cancellation succeeds. This is done in remove_lif() for the lease preferred 162 * and expire callbacks. 163 * 164 * In general, a callback may also call verify_lif() when it gets called back 165 * in addition to release_lif(), to make sure that the interface is still in 166 * fact under the dhcpagent's control. To make coding simpler, there is a 167 * third function, verify_smach(), which performs both the release_lif() and 168 * the verify_lif() on all LIFs controlled by a state machine. 169 */ 170 171 extern dhcp_pif_t *v4root; 172 extern dhcp_pif_t *v6root; 173 174 dhcp_pif_t *insert_pif(const char *, boolean_t, int *); 175 void hold_pif(dhcp_pif_t *); 176 void release_pif(dhcp_pif_t *); 177 dhcp_pif_t *lookup_pif_by_index(uint_t, boolean_t); 178 dhcp_pif_t *lookup_pif_by_uindex(uint16_t, dhcp_pif_t *, boolean_t); 179 dhcp_pif_t *lookup_pif_by_name(const char *, boolean_t); 180 boolean_t open_dlpi_pif(dhcp_pif_t *); 181 void close_dlpi_pif(dhcp_pif_t *); 182 void pif_status(dhcp_pif_t *, boolean_t); 183 184 dhcp_lif_t *insert_lif(dhcp_pif_t *, const char *, int *); 185 void hold_lif(dhcp_lif_t *); 186 void release_lif(dhcp_lif_t *); 187 void remove_lif(dhcp_lif_t *); 188 dhcp_lif_t *lookup_lif_by_name(const char *, const dhcp_pif_t *); 189 boolean_t verify_lif(const dhcp_lif_t *); 190 dhcp_lif_t *plumb_lif(dhcp_pif_t *, const in6_addr_t *); 191 void unplumb_lif(dhcp_lif_t *); 192 dhcp_lif_t *attach_lif(const char *, boolean_t, int *); 193 int set_lif_dhcp(dhcp_lif_t *, boolean_t); 194 void set_lif_deprecated(dhcp_lif_t *); 195 boolean_t clear_lif_deprecated(dhcp_lif_t *); 196 boolean_t open_ip_lif(dhcp_lif_t *); 197 void close_ip_lif(dhcp_lif_t *); 198 void lif_mark_decline(dhcp_lif_t *, const char *); 199 boolean_t schedule_lif_timer(dhcp_lif_t *, dhcp_timer_t *, 200 iu_tq_callback_t *); 201 void cancel_lif_timers(dhcp_lif_t *); 202 dhcp_expire_t expired_lif_state(dhcp_smach_t *); 203 dhcp_lif_t *find_expired_lif(dhcp_smach_t *); 204 205 uint_t get_max_mtu(boolean_t); 206 void remove_v6_strays(void); 207 208 #ifdef __cplusplus 209 } 210 #endif 211 212 #endif /* INTERFACE_H */ 213