11ae08745Sheppo /*
21ae08745Sheppo * CDDL HEADER START
31ae08745Sheppo *
41ae08745Sheppo * The contents of this file are subject to the terms of the
51ae08745Sheppo * Common Development and Distribution License (the "License").
61ae08745Sheppo * You may not use this file except in compliance with the License.
71ae08745Sheppo *
81ae08745Sheppo * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
91ae08745Sheppo * or http://www.opensolaris.org/os/licensing.
101ae08745Sheppo * See the License for the specific language governing permissions
111ae08745Sheppo * and limitations under the License.
121ae08745Sheppo *
131ae08745Sheppo * When distributing Covered Code, include this CDDL HEADER in each
141ae08745Sheppo * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
151ae08745Sheppo * If applicable, add the following below this CDDL HEADER, with the
161ae08745Sheppo * fields enclosed by brackets "[]" replaced with your own identifying
171ae08745Sheppo * information: Portions Copyright [yyyy] [name of copyright owner]
181ae08745Sheppo *
191ae08745Sheppo * CDDL HEADER END
201ae08745Sheppo */
211ae08745Sheppo
221ae08745Sheppo /*
23a862df29SSriharsha Basavapatna * Copyright (c) 2006, 2010, Oracle and/or its affiliates. All rights reserved.
241ae08745Sheppo */
251ae08745Sheppo
261ae08745Sheppo #include <sys/types.h>
271ae08745Sheppo #include <sys/errno.h>
281ae08745Sheppo #include <sys/debug.h>
291ae08745Sheppo #include <sys/time.h>
301ae08745Sheppo #include <sys/sysmacros.h>
311ae08745Sheppo #include <sys/systm.h>
321ae08745Sheppo #include <sys/user.h>
331ae08745Sheppo #include <sys/stropts.h>
341ae08745Sheppo #include <sys/stream.h>
351ae08745Sheppo #include <sys/strlog.h>
361ae08745Sheppo #include <sys/strsubr.h>
371ae08745Sheppo #include <sys/cmn_err.h>
381ae08745Sheppo #include <sys/cpu.h>
391ae08745Sheppo #include <sys/kmem.h>
401ae08745Sheppo #include <sys/conf.h>
411ae08745Sheppo #include <sys/ddi.h>
421ae08745Sheppo #include <sys/sunddi.h>
431ae08745Sheppo #include <sys/ksynch.h>
441ae08745Sheppo #include <sys/stat.h>
451ae08745Sheppo #include <sys/kstat.h>
461ae08745Sheppo #include <sys/vtrace.h>
471ae08745Sheppo #include <sys/strsun.h>
481ae08745Sheppo #include <sys/dlpi.h>
491ae08745Sheppo #include <sys/ethernet.h>
501ae08745Sheppo #include <net/if.h>
511ae08745Sheppo #include <sys/varargs.h>
521ae08745Sheppo #include <sys/machsystm.h>
531ae08745Sheppo #include <sys/modctl.h>
541ae08745Sheppo #include <sys/modhash.h>
55da14cebeSEric Cheng #include <sys/mac_provider.h>
56ba2e4443Sseb #include <sys/mac_ether.h>
571ae08745Sheppo #include <sys/taskq.h>
581ae08745Sheppo #include <sys/note.h>
591ae08745Sheppo #include <sys/mach_descrip.h>
60da14cebeSEric Cheng #include <sys/mac_provider.h>
611ae08745Sheppo #include <sys/mdeg.h>
621ae08745Sheppo #include <sys/ldc.h>
631ae08745Sheppo #include <sys/vsw_fdb.h>
641ae08745Sheppo #include <sys/vsw.h>
651ae08745Sheppo #include <sys/vio_mailbox.h>
661ae08745Sheppo #include <sys/vnet_mailbox.h>
671ae08745Sheppo #include <sys/vnet_common.h>
68d10e4ef2Snarayan #include <sys/vio_util.h>
69d10e4ef2Snarayan #include <sys/sdt.h>
7019b65a69Ssb155480 #include <sys/atomic.h>
7106db247cSraghuram #include <sys/callb.h>
72c1c61f44Ssb155480 #include <sys/vlan.h>
731ae08745Sheppo
741ae08745Sheppo /*
751ae08745Sheppo * Function prototypes.
761ae08745Sheppo */
771ae08745Sheppo static int vsw_attach(dev_info_t *, ddi_attach_cmd_t);
781ae08745Sheppo static int vsw_detach(dev_info_t *, ddi_detach_cmd_t);
796f09f0feSWENTAO YANG static int vsw_unattach(vsw_t *vswp);
8034683adeSsg70180 static int vsw_get_md_physname(vsw_t *, md_t *, mde_cookie_t, char *);
81da14cebeSEric Cheng static int vsw_get_md_smodes(vsw_t *, md_t *, mde_cookie_t, uint8_t *);
8234b64c01SWENTAO YANG void vsw_destroy_rxpools(void *);
831ae08745Sheppo
841ae08745Sheppo /* MDEG routines */
8534683adeSsg70180 static int vsw_mdeg_register(vsw_t *vswp);
861ae08745Sheppo static void vsw_mdeg_unregister(vsw_t *vswp);
871ae08745Sheppo static int vsw_mdeg_cb(void *cb_argp, mdeg_result_t *);
8834683adeSsg70180 static int vsw_port_mdeg_cb(void *cb_argp, mdeg_result_t *);
8919b65a69Ssb155480 static int vsw_get_initial_md_properties(vsw_t *vswp, md_t *, mde_cookie_t);
90c1c61f44Ssb155480 static int vsw_read_mdprops(vsw_t *vswp);
91c1c61f44Ssb155480 static void vsw_vlan_read_ids(void *arg, int type, md_t *mdp,
92da14cebeSEric Cheng mde_cookie_t node, uint16_t *pvidp, vsw_vlanid_t **vidspp,
93c1c61f44Ssb155480 uint16_t *nvidsp, uint16_t *default_idp);
94bce0a86eSWENTAO YANG static void vsw_port_read_bandwidth(vsw_port_t *portp, md_t *mdp,
95bce0a86eSWENTAO YANG mde_cookie_t node, uint64_t *bw);
96c1c61f44Ssb155480 static int vsw_port_read_props(vsw_port_t *portp, vsw_t *vswp,
97c1c61f44Ssb155480 md_t *mdp, mde_cookie_t *node);
98f0ca1d9aSsb155480 static void vsw_read_pri_eth_types(vsw_t *vswp, md_t *mdp,
99f0ca1d9aSsb155480 mde_cookie_t node);
1007b1f684aSSriharsha Basavapatna static void vsw_mtu_read(vsw_t *vswp, md_t *mdp, mde_cookie_t node,
1017b1f684aSSriharsha Basavapatna uint32_t *mtu);
1027b1f684aSSriharsha Basavapatna static int vsw_mtu_update(vsw_t *vswp, uint32_t mtu);
1031107ea93SSriharsha Basavapatna static void vsw_linkprop_read(vsw_t *vswp, md_t *mdp, mde_cookie_t node,
1041107ea93SSriharsha Basavapatna boolean_t *pls);
105bce0a86eSWENTAO YANG static void vsw_bandwidth_read(vsw_t *vswp, md_t *mdp, mde_cookie_t node,
106bce0a86eSWENTAO YANG uint64_t *bw);
10734683adeSsg70180 static void vsw_update_md_prop(vsw_t *, md_t *, mde_cookie_t);
10819b65a69Ssb155480 static void vsw_save_lmacaddr(vsw_t *vswp, uint64_t macaddr);
109da14cebeSEric Cheng static boolean_t vsw_cmp_vids(vsw_vlanid_t *vids1,
110da14cebeSEric Cheng vsw_vlanid_t *vids2, int nvids);
1111ae08745Sheppo
11206db247cSraghuram /* Mac driver related routines */
11306db247cSraghuram static int vsw_mac_register(vsw_t *);
11406db247cSraghuram static int vsw_mac_unregister(vsw_t *);
11506db247cSraghuram static int vsw_m_stat(void *, uint_t, uint64_t *);
11606db247cSraghuram static void vsw_m_stop(void *arg);
11706db247cSraghuram static int vsw_m_start(void *arg);
11806db247cSraghuram static int vsw_m_unicst(void *arg, const uint8_t *);
11906db247cSraghuram static int vsw_m_multicst(void *arg, boolean_t, const uint8_t *);
12006db247cSraghuram static int vsw_m_promisc(void *arg, boolean_t);
12106db247cSraghuram static mblk_t *vsw_m_tx(void *arg, mblk_t *);
122d8a518c8SSriharsha Basavapatna void vsw_mac_link_update(vsw_t *vswp, link_state_t link_state);
123f0ca1d9aSsb155480 void vsw_mac_rx(vsw_t *vswp, mac_resource_handle_t mrh,
124f0ca1d9aSsb155480 mblk_t *mp, vsw_macrx_flags_t flags);
1251107ea93SSriharsha Basavapatna void vsw_physlink_state_update(vsw_t *vswp);
1261ae08745Sheppo
12706db247cSraghuram /*
12806db247cSraghuram * Functions imported from other files.
12906db247cSraghuram */
130808f26a8SSriharsha Basavapatna extern void vsw_setup_switching_thread(void *arg);
131808f26a8SSriharsha Basavapatna extern int vsw_setup_switching_start(vsw_t *vswp);
132808f26a8SSriharsha Basavapatna extern void vsw_setup_switching_stop(vsw_t *vswp);
13306db247cSraghuram extern int vsw_setup_switching(vsw_t *);
1347a327842Swentaoy extern void vsw_switch_frame_nop(vsw_t *vswp, mblk_t *mp, int caller,
1357a327842Swentaoy vsw_port_t *port, mac_resource_handle_t mrh);
13606db247cSraghuram extern int vsw_add_mcst(vsw_t *, uint8_t, uint64_t, void *);
13706db247cSraghuram extern int vsw_del_mcst(vsw_t *, uint8_t, uint64_t, void *);
13806db247cSraghuram extern void vsw_del_mcst_vsw(vsw_t *);
13906db247cSraghuram extern mcst_addr_t *vsw_del_addr(uint8_t devtype, void *arg, uint64_t addr);
1406f09f0feSWENTAO YANG extern void vsw_detach_ports(vsw_t *vswp);
14106db247cSraghuram extern int vsw_port_add(vsw_t *vswp, md_t *mdp, mde_cookie_t *node);
14206db247cSraghuram extern int vsw_port_detach(vsw_t *vswp, int p_instance);
143c1c61f44Ssb155480 static int vsw_port_update(vsw_t *vswp, md_t *curr_mdp, mde_cookie_t curr_mdex,
144c1c61f44Ssb155480 md_t *prev_mdp, mde_cookie_t prev_mdex);
145c1c61f44Ssb155480 extern int vsw_port_attach(vsw_port_t *port);
14606db247cSraghuram extern vsw_port_t *vsw_lookup_port(vsw_t *vswp, int p_instance);
14706db247cSraghuram extern int vsw_mac_open(vsw_t *vswp);
14806db247cSraghuram extern void vsw_mac_close(vsw_t *vswp);
149da14cebeSEric Cheng extern void vsw_mac_cleanup_ports(vsw_t *vswp);
15006db247cSraghuram extern void vsw_unset_addrs(vsw_t *vswp);
151d8a518c8SSriharsha Basavapatna extern void vsw_setup_switching_post_process(vsw_t *vswp);
152c1c61f44Ssb155480 extern void vsw_create_vlans(void *arg, int type);
153c1c61f44Ssb155480 extern void vsw_destroy_vlans(void *arg, int type);
154c1c61f44Ssb155480 extern void vsw_vlan_add_ids(void *arg, int type);
155c1c61f44Ssb155480 extern void vsw_vlan_remove_ids(void *arg, int type);
156c1c61f44Ssb155480 extern void vsw_vlan_unaware_port_reset(vsw_port_t *portp);
157c1c61f44Ssb155480 extern uint32_t vsw_vlan_frame_untag(void *arg, int type, mblk_t **np,
158c1c61f44Ssb155480 mblk_t **npt);
159c1c61f44Ssb155480 extern mblk_t *vsw_vlan_frame_pretag(void *arg, int type, mblk_t *mp);
160678453a8Sspeer extern void vsw_hio_cleanup(vsw_t *vswp);
161da14cebeSEric Cheng extern void vsw_hio_start_ports(vsw_t *vswp);
162da14cebeSEric Cheng extern void vsw_hio_port_update(vsw_port_t *portp, boolean_t hio_enabled);
163da14cebeSEric Cheng extern int vsw_mac_multicast_add(vsw_t *, vsw_port_t *, mcst_addr_t *, int);
164da14cebeSEric Cheng extern void vsw_mac_multicast_remove(vsw_t *, vsw_port_t *, mcst_addr_t *, int);
165da14cebeSEric Cheng extern void vsw_mac_port_reconfig_vlans(vsw_port_t *portp, uint16_t new_pvid,
166da14cebeSEric Cheng vsw_vlanid_t *new_vids, int new_nvids);
167da14cebeSEric Cheng extern int vsw_mac_client_init(vsw_t *vswp, vsw_port_t *port, int type);
168da14cebeSEric Cheng extern void vsw_mac_client_cleanup(vsw_t *vswp, vsw_port_t *port, int type);
169da14cebeSEric Cheng extern void vsw_if_mac_reconfig(vsw_t *vswp, boolean_t update_vlans,
170da14cebeSEric Cheng uint16_t new_pvid, vsw_vlanid_t *new_vids, int new_nvids);
1717b1f684aSSriharsha Basavapatna extern void vsw_reset_ports(vsw_t *vswp);
1727b1f684aSSriharsha Basavapatna extern void vsw_port_reset(vsw_port_t *portp);
1731107ea93SSriharsha Basavapatna extern void vsw_physlink_update_ports(vsw_t *vswp);
174bce0a86eSWENTAO YANG extern void vsw_update_bandwidth(vsw_t *vswp, vsw_port_t *port, int type,
175bce0a86eSWENTAO YANG uint64_t maxbw);
17606db247cSraghuram
17706db247cSraghuram /*
17806db247cSraghuram * Internal tunables.
17906db247cSraghuram */
180445b4c2eSsb155480 int vsw_num_handshakes = VNET_NUM_HANDSHAKES; /* # of handshake attempts */
1811ae08745Sheppo int vsw_wretries = 100; /* # of write attempts */
18219b65a69Ssb155480 int vsw_setup_switching_delay = 3; /* setup sw timeout interval in sec */
1830e8b4070Ssb155480 int vsw_mac_open_retries = 300; /* max # of mac_open() retries */
1840e8b4070Ssb155480 /* 300*3 = 900sec(15min) of max tmout */
18506db247cSraghuram int vsw_ldc_tx_delay = 5; /* delay(ticks) for tx retries */
18606db247cSraghuram int vsw_ldc_tx_retries = 10; /* # of ldc tx retries */
1876f09f0feSWENTAO YANG int vsw_ldc_retries = 5; /* # of ldc_close() retries */
1886f09f0feSWENTAO YANG int vsw_ldc_delay = 1000; /* 1 ms delay for ldc_close() */
18906db247cSraghuram boolean_t vsw_ldc_rxthr_enabled = B_TRUE; /* LDC Rx thread enabled */
19006db247cSraghuram boolean_t vsw_ldc_txthr_enabled = B_TRUE; /* LDC Tx thread enabled */
19134b64c01SWENTAO YANG int vsw_rxpool_cleanup_delay = 100000; /* 100ms */
19234b64c01SWENTAO YANG
193d10e4ef2Snarayan
194c1c61f44Ssb155480 uint32_t vsw_fdb_nchains = 8; /* # of chains in fdb hash table */
195c1c61f44Ssb155480 uint32_t vsw_vlan_nchains = 4; /* # of chains in vlan id hash table */
196c1c61f44Ssb155480 uint32_t vsw_ethermtu = 1500; /* mtu of the device */
197c1c61f44Ssb155480
198c1c61f44Ssb155480 /* delay in usec to wait for all references on a fdb entry to be dropped */
199c1c61f44Ssb155480 uint32_t vsw_fdbe_refcnt_delay = 10;
200c1c61f44Ssb155480
201c1c61f44Ssb155480 /*
202c1c61f44Ssb155480 * Default vlan id. This is only used internally when the "default-vlan-id"
203c1c61f44Ssb155480 * property is not present in the MD device node. Therefore, this should not be
204c1c61f44Ssb155480 * used as a tunable; if this value is changed, the corresponding variable
205c1c61f44Ssb155480 * should be updated to the same value in all vnets connected to this vsw.
206c1c61f44Ssb155480 */
207c1c61f44Ssb155480 uint16_t vsw_default_vlan_id = 1;
208c1c61f44Ssb155480
209f0ca1d9aSsb155480 /*
210f0ca1d9aSsb155480 * Workaround for a version handshake bug in obp's vnet.
211f0ca1d9aSsb155480 * If vsw initiates version negotiation starting from the highest version,
212f0ca1d9aSsb155480 * obp sends a nack and terminates version handshake. To workaround
213f0ca1d9aSsb155480 * this, we do not initiate version handshake when the channel comes up.
214f0ca1d9aSsb155480 * Instead, we wait for the peer to send its version info msg and go through
215f0ca1d9aSsb155480 * the version protocol exchange. If we successfully negotiate a version,
216f0ca1d9aSsb155480 * before sending the ack, we send our version info msg to the peer
217f0ca1d9aSsb155480 * using the <major,minor> version that we are about to ack.
218f0ca1d9aSsb155480 */
219f0ca1d9aSsb155480 boolean_t vsw_obp_ver_proto_workaround = B_TRUE;
220f0ca1d9aSsb155480
221f0ca1d9aSsb155480 /*
222f0ca1d9aSsb155480 * In the absence of "priority-ether-types" property in MD, the following
223f0ca1d9aSsb155480 * internal tunable can be set to specify a single priority ethertype.
224f0ca1d9aSsb155480 */
225f0ca1d9aSsb155480 uint64_t vsw_pri_eth_type = 0;
226f0ca1d9aSsb155480
227f0ca1d9aSsb155480 /*
228f0ca1d9aSsb155480 * Number of transmit priority buffers that are preallocated per device.
229f0ca1d9aSsb155480 * This number is chosen to be a small value to throttle transmission
230f0ca1d9aSsb155480 * of priority packets. Note: Must be a power of 2 for vio_create_mblks().
231f0ca1d9aSsb155480 */
232f0ca1d9aSsb155480 uint32_t vsw_pri_tx_nmblks = 64;
233d10e4ef2Snarayan
23451aa9d07Ssb155480 /*
23551aa9d07Ssb155480 * Number of RARP packets sent to announce macaddr to the physical switch,
23651aa9d07Ssb155480 * after vsw's physical device is changed dynamically or after a guest (client
23751aa9d07Ssb155480 * vnet) is live migrated in.
23851aa9d07Ssb155480 */
23951aa9d07Ssb155480 uint32_t vsw_publish_macaddr_count = 3;
24051aa9d07Ssb155480
2417bd3a2e2SSriharsha Basavapatna /*
2427bd3a2e2SSriharsha Basavapatna * Enable/disable HybridIO
2437bd3a2e2SSriharsha Basavapatna */
2447bd3a2e2SSriharsha Basavapatna boolean_t vsw_hio_enabled = B_TRUE;
245678453a8Sspeer
2467bd3a2e2SSriharsha Basavapatna /*
2477bd3a2e2SSriharsha Basavapatna * Max retries for HybridIO cleanup
2487bd3a2e2SSriharsha Basavapatna */
2497bd3a2e2SSriharsha Basavapatna int vsw_hio_max_cleanup_retries = 10;
2507bd3a2e2SSriharsha Basavapatna
2517bd3a2e2SSriharsha Basavapatna /*
2527bd3a2e2SSriharsha Basavapatna * 10ms delay for HybridIO cleanup
2537bd3a2e2SSriharsha Basavapatna */
2547bd3a2e2SSriharsha Basavapatna int vsw_hio_cleanup_delay = 10000;
2557bd3a2e2SSriharsha Basavapatna
2567bd3a2e2SSriharsha Basavapatna /*
2577bd3a2e2SSriharsha Basavapatna * Descriptor ring modes of LDC data transfer:
2587bd3a2e2SSriharsha Basavapatna *
2597bd3a2e2SSriharsha Basavapatna * 1) TxDring mode:
2607bd3a2e2SSriharsha Basavapatna * In versions < v1.6 of VIO Protocol, we support only TxDring mode. In this
2617bd3a2e2SSriharsha Basavapatna * mode, we create a transmit descriptor ring and export it to the peer through
2627bd3a2e2SSriharsha Basavapatna * dring registration process of handshake. The descriptor ring is exported
2637bd3a2e2SSriharsha Basavapatna * using LDC shared memory. Each descriptor is associated with a data buffer.
2647bd3a2e2SSriharsha Basavapatna * The data buffer is also exported over LDC and the cookies for this data
2657bd3a2e2SSriharsha Basavapatna * buffer are provided in the descriptor. The peer maps this ring as its
2667bd3a2e2SSriharsha Basavapatna * receive ring. Similarly, the peer exports a transmit descriptor ring which
2677bd3a2e2SSriharsha Basavapatna * is mapped by this device as its receive ring. In this mode, in a given data
2687bd3a2e2SSriharsha Basavapatna * transfer direction, the transmitter copies the data to the exported data
2697bd3a2e2SSriharsha Basavapatna * buffer (owned by itself), bound to the descriptor. The receiver uses the LDC
2707bd3a2e2SSriharsha Basavapatna * cookies specified in the descriptor to copy the data into the receiving
2717bd3a2e2SSriharsha Basavapatna * guest through the hypervisor (ldc_mem_copy()).
2727bd3a2e2SSriharsha Basavapatna *
2737bd3a2e2SSriharsha Basavapatna * 2) RxDringData mode:
2747bd3a2e2SSriharsha Basavapatna * In versions >= v1.6 of VIO Protocol, we also support RxDringData mode. In
2757bd3a2e2SSriharsha Basavapatna * this mode, we create a receive descriptor ring and export it to the peer
2767bd3a2e2SSriharsha Basavapatna * through dring registration process of handshake. In addition, we export a
2777bd3a2e2SSriharsha Basavapatna * receive buffer area and provide that information also in the dring
2787bd3a2e2SSriharsha Basavapatna * registration message. The descriptor ring and the data buffer area are
2797bd3a2e2SSriharsha Basavapatna * exported using LDC shared memory. Each descriptor is associated with a data
2807bd3a2e2SSriharsha Basavapatna * buffer in the data buffer area and the offset of the specific data buffer
2817bd3a2e2SSriharsha Basavapatna * within this area is specified in the descriptor. The peer maps this ring
2827bd3a2e2SSriharsha Basavapatna * along with the data buffer area as its transmit ring. Similarly, the peer
2837bd3a2e2SSriharsha Basavapatna * exports a receive ring which is mapped by this device as its transmit ring,
2847bd3a2e2SSriharsha Basavapatna * along with its buffer area. In this mode, in a given data transfer
2857bd3a2e2SSriharsha Basavapatna * direction, the transmitter copies the data to the data buffer offset
2867bd3a2e2SSriharsha Basavapatna * specified in the descriptor. The receiver simply picks up the data buffer
2877bd3a2e2SSriharsha Basavapatna * (owned by itself) without any copy operation into the receiving guest.
2887bd3a2e2SSriharsha Basavapatna *
289*34f94fbcSWENTAO YANG * We enable RxDringData mode during handshake negotiations if LDC supports
290*34f94fbcSWENTAO YANG * mapping in large areas of shared memory(see ldc_is_viotsb_configured() API),
291*34f94fbcSWENTAO YANG * which is required to support RxDringData mode.
2927bd3a2e2SSriharsha Basavapatna */
2937bd3a2e2SSriharsha Basavapatna
2947bd3a2e2SSriharsha Basavapatna /*
2957bd3a2e2SSriharsha Basavapatna * Number of descriptors; must be power of 2.
2967bd3a2e2SSriharsha Basavapatna */
2977bd3a2e2SSriharsha Basavapatna uint32_t vsw_num_descriptors = VSW_NUM_DESCRIPTORS;
2987bd3a2e2SSriharsha Basavapatna
2997bd3a2e2SSriharsha Basavapatna /*
3007bd3a2e2SSriharsha Basavapatna * In RxDringData mode, # of buffers is determined by multiplying the # of
3017bd3a2e2SSriharsha Basavapatna * descriptors with the factor below. Note that the factor must be > 1; i.e,
3027bd3a2e2SSriharsha Basavapatna * the # of buffers must always be > # of descriptors. This is needed because,
3037bd3a2e2SSriharsha Basavapatna * while the shared memory buffers are sent up the stack on the receiver, the
3047bd3a2e2SSriharsha Basavapatna * sender needs additional buffers that can be used for further transmits.
3057bd3a2e2SSriharsha Basavapatna * See vsw_setup_rx_dring() for details.
3067bd3a2e2SSriharsha Basavapatna */
3077bd3a2e2SSriharsha Basavapatna uint32_t vsw_nrbufs_factor = 2;
3087bd3a2e2SSriharsha Basavapatna
3097bd3a2e2SSriharsha Basavapatna /*
3107bd3a2e2SSriharsha Basavapatna * Delay when rx descr not ready; used in both dring modes.
3117bd3a2e2SSriharsha Basavapatna */
3127bd3a2e2SSriharsha Basavapatna int vsw_recv_delay = 0;
3137bd3a2e2SSriharsha Basavapatna
3147bd3a2e2SSriharsha Basavapatna /*
3157bd3a2e2SSriharsha Basavapatna * Retry when rx descr not ready; used in both dring modes.
3167bd3a2e2SSriharsha Basavapatna */
3177bd3a2e2SSriharsha Basavapatna int vsw_recv_retries = 5;
318f0ca1d9aSsb155480
31906db247cSraghuram /*
32006db247cSraghuram * Max number of mblks received in one receive operation.
32106db247cSraghuram */
32206db247cSraghuram uint32_t vsw_chain_len = (VSW_NUM_MBLKS * 0.6);
32306db247cSraghuram
32406db247cSraghuram /*
3257b1f684aSSriharsha Basavapatna * Internal tunables for receive buffer pools, that is, the size and number of
3267b1f684aSSriharsha Basavapatna * mblks for each pool. At least 3 sizes must be specified if these are used.
3277b1f684aSSriharsha Basavapatna * The sizes must be specified in increasing order. Non-zero value of the first
3287b1f684aSSriharsha Basavapatna * size will be used as a hint to use these values instead of the algorithm
3297bd3a2e2SSriharsha Basavapatna * that determines the sizes based on MTU. Used in TxDring mode only.
33006db247cSraghuram */
3317b1f684aSSriharsha Basavapatna uint32_t vsw_mblk_size1 = 0;
3327b1f684aSSriharsha Basavapatna uint32_t vsw_mblk_size2 = 0;
3337b1f684aSSriharsha Basavapatna uint32_t vsw_mblk_size3 = 0;
3347b1f684aSSriharsha Basavapatna uint32_t vsw_mblk_size4 = 0;
33506db247cSraghuram uint32_t vsw_num_mblks1 = VSW_NUM_MBLKS; /* number of mblks for pool1 */
33606db247cSraghuram uint32_t vsw_num_mblks2 = VSW_NUM_MBLKS; /* number of mblks for pool2 */
33706db247cSraghuram uint32_t vsw_num_mblks3 = VSW_NUM_MBLKS; /* number of mblks for pool3 */
3387b1f684aSSriharsha Basavapatna uint32_t vsw_num_mblks4 = VSW_NUM_MBLKS; /* number of mblks for pool4 */
3397b1f684aSSriharsha Basavapatna
3407b1f684aSSriharsha Basavapatna /*
3417b1f684aSSriharsha Basavapatna * Set this to non-zero to enable additional internal receive buffer pools
3427b1f684aSSriharsha Basavapatna * based on the MTU of the device for better performance at the cost of more
3437b1f684aSSriharsha Basavapatna * memory consumption. This is turned off by default, to use allocb(9F) for
3447b1f684aSSriharsha Basavapatna * receive buffer allocations of sizes > 2K.
3457b1f684aSSriharsha Basavapatna */
3467b1f684aSSriharsha Basavapatna boolean_t vsw_jumbo_rxpools = B_FALSE;
34706db247cSraghuram
34806db247cSraghuram /*
349f0ca1d9aSsb155480 * vsw_max_tx_qcount is the maximum # of packets that can be queued
350f0ca1d9aSsb155480 * before the tx worker thread begins processing the queue. Its value
351f0ca1d9aSsb155480 * is chosen to be 4x the default length of tx descriptor ring.
352f0ca1d9aSsb155480 */
3537bd3a2e2SSriharsha Basavapatna uint32_t vsw_max_tx_qcount = 4 * VSW_NUM_DESCRIPTORS;
354f0ca1d9aSsb155480
355f0ca1d9aSsb155480 /*
35606db247cSraghuram * MAC callbacks
35706db247cSraghuram */
358ba2e4443Sseb static mac_callbacks_t vsw_m_callbacks = {
359ba2e4443Sseb 0,
360ba2e4443Sseb vsw_m_stat,
361ba2e4443Sseb vsw_m_start,
362ba2e4443Sseb vsw_m_stop,
363ba2e4443Sseb vsw_m_promisc,
364ba2e4443Sseb vsw_m_multicst,
365ba2e4443Sseb vsw_m_unicst,
3660dc2366fSVenugopal Iyer vsw_m_tx
367ba2e4443Sseb };
368ba2e4443Sseb
3691ae08745Sheppo static struct cb_ops vsw_cb_ops = {
3701ae08745Sheppo nulldev, /* cb_open */
3711ae08745Sheppo nulldev, /* cb_close */
3721ae08745Sheppo nodev, /* cb_strategy */
3731ae08745Sheppo nodev, /* cb_print */
3741ae08745Sheppo nodev, /* cb_dump */
3751ae08745Sheppo nodev, /* cb_read */
3761ae08745Sheppo nodev, /* cb_write */
3771ae08745Sheppo nodev, /* cb_ioctl */
3781ae08745Sheppo nodev, /* cb_devmap */
3791ae08745Sheppo nodev, /* cb_mmap */
3801ae08745Sheppo nodev, /* cb_segmap */
3811ae08745Sheppo nochpoll, /* cb_chpoll */
3821ae08745Sheppo ddi_prop_op, /* cb_prop_op */
3831ae08745Sheppo NULL, /* cb_stream */
3841ae08745Sheppo D_MP, /* cb_flag */
3851ae08745Sheppo CB_REV, /* rev */
3861ae08745Sheppo nodev, /* int (*cb_aread)() */
3871ae08745Sheppo nodev /* int (*cb_awrite)() */
3881ae08745Sheppo };
3891ae08745Sheppo
3901ae08745Sheppo static struct dev_ops vsw_ops = {
3911ae08745Sheppo DEVO_REV, /* devo_rev */
3921ae08745Sheppo 0, /* devo_refcnt */
39371184a40SWENTAO YANG NULL, /* devo_getinfo */
3941ae08745Sheppo nulldev, /* devo_identify */
3951ae08745Sheppo nulldev, /* devo_probe */
3961ae08745Sheppo vsw_attach, /* devo_attach */
3971ae08745Sheppo vsw_detach, /* devo_detach */
3981ae08745Sheppo nodev, /* devo_reset */
3991ae08745Sheppo &vsw_cb_ops, /* devo_cb_ops */
4001ae08745Sheppo (struct bus_ops *)NULL, /* devo_bus_ops */
4011ae08745Sheppo ddi_power /* devo_power */
4021ae08745Sheppo };
4031ae08745Sheppo
4041ae08745Sheppo extern struct mod_ops mod_driverops;
4051ae08745Sheppo static struct modldrv vswmodldrv = {
4061ae08745Sheppo &mod_driverops,
407205eeb1aSlm66018 "sun4v Virtual Switch",
4081ae08745Sheppo &vsw_ops,
4091ae08745Sheppo };
4101ae08745Sheppo
4111ae08745Sheppo #define LDC_ENTER_LOCK(ldcp) \
4121ae08745Sheppo mutex_enter(&((ldcp)->ldc_cblock));\
41306db247cSraghuram mutex_enter(&((ldcp)->ldc_rxlock));\
4141ae08745Sheppo mutex_enter(&((ldcp)->ldc_txlock));
4151ae08745Sheppo #define LDC_EXIT_LOCK(ldcp) \
4161ae08745Sheppo mutex_exit(&((ldcp)->ldc_txlock));\
41706db247cSraghuram mutex_exit(&((ldcp)->ldc_rxlock));\
4181ae08745Sheppo mutex_exit(&((ldcp)->ldc_cblock));
4191ae08745Sheppo
4201ae08745Sheppo /* Driver soft state ptr */
4211ae08745Sheppo static void *vsw_state;
4221ae08745Sheppo
4231ae08745Sheppo /*
4241ae08745Sheppo * Linked list of "vsw_t" structures - one per instance.
4251ae08745Sheppo */
4261ae08745Sheppo vsw_t *vsw_head = NULL;
4271ae08745Sheppo krwlock_t vsw_rw;
4281ae08745Sheppo
4291ae08745Sheppo /*
4301ae08745Sheppo * Property names
4311ae08745Sheppo */
4321ae08745Sheppo static char vdev_propname[] = "virtual-device";
4331ae08745Sheppo static char vsw_propname[] = "virtual-network-switch";
4341ae08745Sheppo static char physdev_propname[] = "vsw-phys-dev";
4351ae08745Sheppo static char smode_propname[] = "vsw-switch-mode";
4361ae08745Sheppo static char macaddr_propname[] = "local-mac-address";
4371ae08745Sheppo static char remaddr_propname[] = "remote-mac-address";
4381ae08745Sheppo static char ldcids_propname[] = "ldc-ids";
4391ae08745Sheppo static char chan_propname[] = "channel-endpoint";
4401ae08745Sheppo static char id_propname[] = "id";
4411ae08745Sheppo static char reg_propname[] = "reg";
442f0ca1d9aSsb155480 static char pri_types_propname[] = "priority-ether-types";
443c1c61f44Ssb155480 static char vsw_pvid_propname[] = "port-vlan-id";
444c1c61f44Ssb155480 static char vsw_vid_propname[] = "vlan-id";
445c1c61f44Ssb155480 static char vsw_dvid_propname[] = "default-vlan-id";
446c1c61f44Ssb155480 static char port_pvid_propname[] = "remote-port-vlan-id";
447c1c61f44Ssb155480 static char port_vid_propname[] = "remote-vlan-id";
448678453a8Sspeer static char hybrid_propname[] = "hybrid";
4497b1f684aSSriharsha Basavapatna static char vsw_mtu_propname[] = "mtu";
4501107ea93SSriharsha Basavapatna static char vsw_linkprop_propname[] = "linkprop";
451bce0a86eSWENTAO YANG static char vsw_maxbw_propname[] = "maxbw";
452bce0a86eSWENTAO YANG static char port_maxbw_propname[] = "maxbw";
4531ae08745Sheppo
4541ae08745Sheppo /*
4551ae08745Sheppo * Matching criteria passed to the MDEG to register interest
4561ae08745Sheppo * in changes to 'virtual-device-port' nodes identified by their
4571ae08745Sheppo * 'id' property.
4581ae08745Sheppo */
4591ae08745Sheppo static md_prop_match_t vport_prop_match[] = {
4601ae08745Sheppo { MDET_PROP_VAL, "id" },
4611ae08745Sheppo { MDET_LIST_END, NULL }
4621ae08745Sheppo };
4631ae08745Sheppo
4641ae08745Sheppo static mdeg_node_match_t vport_match = { "virtual-device-port",
4651ae08745Sheppo vport_prop_match };
4661ae08745Sheppo
4671ae08745Sheppo /*
46834683adeSsg70180 * Matching criteria passed to the MDEG to register interest
46934683adeSsg70180 * in changes to 'virtual-device' nodes (i.e. vsw nodes) identified
47034683adeSsg70180 * by their 'name' and 'cfg-handle' properties.
47134683adeSsg70180 */
47234683adeSsg70180 static md_prop_match_t vdev_prop_match[] = {
47334683adeSsg70180 { MDET_PROP_STR, "name" },
47434683adeSsg70180 { MDET_PROP_VAL, "cfg-handle" },
47534683adeSsg70180 { MDET_LIST_END, NULL }
47634683adeSsg70180 };
47734683adeSsg70180
47834683adeSsg70180 static mdeg_node_match_t vdev_match = { "virtual-device",
47934683adeSsg70180 vdev_prop_match };
48034683adeSsg70180
48134683adeSsg70180
48234683adeSsg70180 /*
4831ae08745Sheppo * Specification of an MD node passed to the MDEG to filter any
4841ae08745Sheppo * 'vport' nodes that do not belong to the specified node. This
4851ae08745Sheppo * template is copied for each vsw instance and filled in with
4861ae08745Sheppo * the appropriate 'cfg-handle' value before being passed to the MDEG.
4871ae08745Sheppo */
4881ae08745Sheppo static mdeg_prop_spec_t vsw_prop_template[] = {
4891ae08745Sheppo { MDET_PROP_STR, "name", vsw_propname },
4901ae08745Sheppo { MDET_PROP_VAL, "cfg-handle", NULL },
4911ae08745Sheppo { MDET_LIST_END, NULL, NULL }
4921ae08745Sheppo };
4931ae08745Sheppo
4941ae08745Sheppo #define VSW_SET_MDEG_PROP_INST(specp, val) (specp)[1].ps_val = (val);
4951ae08745Sheppo
49606db247cSraghuram #ifdef DEBUG
4977636cb21Slm66018 /*
4981ae08745Sheppo * Print debug messages - set to 0x1f to enable all msgs
4991ae08745Sheppo * or 0x0 to turn all off.
5001ae08745Sheppo */
5011ae08745Sheppo int vswdbg = 0x0;
5021ae08745Sheppo
5031ae08745Sheppo /*
5041ae08745Sheppo * debug levels:
5051ae08745Sheppo * 0x01: Function entry/exit tracing
5061ae08745Sheppo * 0x02: Internal function messages
5071ae08745Sheppo * 0x04: Verbose internal messages
5081ae08745Sheppo * 0x08: Warning messages
5091ae08745Sheppo * 0x10: Error messages
5101ae08745Sheppo */
5111ae08745Sheppo
51206db247cSraghuram void
vswdebug(vsw_t * vswp,const char * fmt,...)5131ae08745Sheppo vswdebug(vsw_t *vswp, const char *fmt, ...)
5141ae08745Sheppo {
5151ae08745Sheppo char buf[512];
5161ae08745Sheppo va_list ap;
5171ae08745Sheppo
5181ae08745Sheppo va_start(ap, fmt);
5191ae08745Sheppo (void) vsprintf(buf, fmt, ap);
5201ae08745Sheppo va_end(ap);
5211ae08745Sheppo
5221ae08745Sheppo if (vswp == NULL)
5231ae08745Sheppo cmn_err(CE_CONT, "%s\n", buf);
5241ae08745Sheppo else
5251ae08745Sheppo cmn_err(CE_CONT, "vsw%d: %s\n", vswp->instance, buf);
5261ae08745Sheppo }
5271ae08745Sheppo
5281ae08745Sheppo #endif /* DEBUG */
5291ae08745Sheppo
5301ae08745Sheppo static struct modlinkage modlinkage = {
5311ae08745Sheppo MODREV_1,
5321ae08745Sheppo &vswmodldrv,
5331ae08745Sheppo NULL
5341ae08745Sheppo };
5351ae08745Sheppo
5361ae08745Sheppo int
_init(void)5371ae08745Sheppo _init(void)
5381ae08745Sheppo {
5391ae08745Sheppo int status;
5401ae08745Sheppo
5411ae08745Sheppo rw_init(&vsw_rw, NULL, RW_DRIVER, NULL);
5421ae08745Sheppo
5431ae08745Sheppo status = ddi_soft_state_init(&vsw_state, sizeof (vsw_t), 1);
5441ae08745Sheppo if (status != 0) {
5451ae08745Sheppo return (status);
5461ae08745Sheppo }
5471ae08745Sheppo
54806db247cSraghuram mac_init_ops(&vsw_ops, DRV_NAME);
5491ae08745Sheppo status = mod_install(&modlinkage);
5501ae08745Sheppo if (status != 0) {
5511ae08745Sheppo ddi_soft_state_fini(&vsw_state);
5521ae08745Sheppo }
5531ae08745Sheppo return (status);
5541ae08745Sheppo }
5551ae08745Sheppo
5561ae08745Sheppo int
_fini(void)5571ae08745Sheppo _fini(void)
5581ae08745Sheppo {
5591ae08745Sheppo int status;
5601ae08745Sheppo
5611ae08745Sheppo status = mod_remove(&modlinkage);
5621ae08745Sheppo if (status != 0)
5631ae08745Sheppo return (status);
5641ae08745Sheppo mac_fini_ops(&vsw_ops);
5651ae08745Sheppo ddi_soft_state_fini(&vsw_state);
5661ae08745Sheppo
5671ae08745Sheppo rw_destroy(&vsw_rw);
5681ae08745Sheppo
5691ae08745Sheppo return (status);
5701ae08745Sheppo }
5711ae08745Sheppo
5721ae08745Sheppo int
_info(struct modinfo * modinfop)5731ae08745Sheppo _info(struct modinfo *modinfop)
5741ae08745Sheppo {
5751ae08745Sheppo return (mod_info(&modlinkage, modinfop));
5761ae08745Sheppo }
5771ae08745Sheppo
5781ae08745Sheppo static int
vsw_attach(dev_info_t * dip,ddi_attach_cmd_t cmd)5791ae08745Sheppo vsw_attach(dev_info_t *dip, ddi_attach_cmd_t cmd)
5801ae08745Sheppo {
5811ae08745Sheppo vsw_t *vswp;
58234683adeSsg70180 int instance;
5831ae08745Sheppo char hashname[MAXNAMELEN];
5841ae08745Sheppo char qname[TASKQ_NAMELEN];
5856f09f0feSWENTAO YANG vsw_attach_progress_t progress = PROG_init;
58619b65a69Ssb155480 int rv;
5871ae08745Sheppo
5881ae08745Sheppo switch (cmd) {
5891ae08745Sheppo case DDI_ATTACH:
5901ae08745Sheppo break;
5911ae08745Sheppo case DDI_RESUME:
5921ae08745Sheppo /* nothing to do for this non-device */
5931ae08745Sheppo return (DDI_SUCCESS);
5941ae08745Sheppo case DDI_PM_RESUME:
5951ae08745Sheppo default:
5961ae08745Sheppo return (DDI_FAILURE);
5971ae08745Sheppo }
5981ae08745Sheppo
5991ae08745Sheppo instance = ddi_get_instance(dip);
6001ae08745Sheppo if (ddi_soft_state_zalloc(vsw_state, instance) != DDI_SUCCESS) {
6011ae08745Sheppo DERR(NULL, "vsw%d: ddi_soft_state_zalloc failed", instance);
6021ae08745Sheppo return (DDI_FAILURE);
6031ae08745Sheppo }
6041ae08745Sheppo vswp = ddi_get_soft_state(vsw_state, instance);
6051ae08745Sheppo
6061ae08745Sheppo if (vswp == NULL) {
6071ae08745Sheppo DERR(NULL, "vsw%d: ddi_get_soft_state failed", instance);
6081ae08745Sheppo goto vsw_attach_fail;
6091ae08745Sheppo }
6101ae08745Sheppo
6111ae08745Sheppo vswp->dip = dip;
6121ae08745Sheppo vswp->instance = instance;
6131107ea93SSriharsha Basavapatna vswp->phys_link_state = LINK_STATE_UNKNOWN;
6141ae08745Sheppo ddi_set_driver_private(dip, (caddr_t)vswp);
6151ae08745Sheppo
616da14cebeSEric Cheng mutex_init(&vswp->mac_lock, NULL, MUTEX_DRIVER, NULL);
61719b65a69Ssb155480 mutex_init(&vswp->mca_lock, NULL, MUTEX_DRIVER, NULL);
618808f26a8SSriharsha Basavapatna mutex_init(&vswp->sw_thr_lock, NULL, MUTEX_DRIVER, NULL);
619808f26a8SSriharsha Basavapatna cv_init(&vswp->sw_thr_cv, NULL, CV_DRIVER, NULL);
620da14cebeSEric Cheng rw_init(&vswp->maccl_rwlock, NULL, RW_DRIVER, NULL);
6211ae08745Sheppo rw_init(&vswp->if_lockrw, NULL, RW_DRIVER, NULL);
62219b65a69Ssb155480 rw_init(&vswp->mfdbrw, NULL, RW_DRIVER, NULL);
62319b65a69Ssb155480 rw_init(&vswp->plist.lockrw, NULL, RW_DRIVER, NULL);
62419b65a69Ssb155480
62519b65a69Ssb155480 progress |= PROG_locks;
62619b65a69Ssb155480
62719b65a69Ssb155480 rv = vsw_read_mdprops(vswp);
62819b65a69Ssb155480 if (rv != 0)
62919b65a69Ssb155480 goto vsw_attach_fail;
63019b65a69Ssb155480
63119b65a69Ssb155480 progress |= PROG_readmd;
6321ae08745Sheppo
6331ae08745Sheppo /* setup the unicast forwarding database */
6341ae08745Sheppo (void) snprintf(hashname, MAXNAMELEN, "vsw_unicst_table-%d",
6351ae08745Sheppo vswp->instance);
6361ae08745Sheppo D2(vswp, "creating unicast hash table (%s)...", hashname);
637c1c61f44Ssb155480 vswp->fdb_nchains = vsw_fdb_nchains;
638c1c61f44Ssb155480 vswp->fdb_hashp = mod_hash_create_ptrhash(hashname, vswp->fdb_nchains,
6391ae08745Sheppo mod_hash_null_valdtor, sizeof (void *));
640c1c61f44Ssb155480 vsw_create_vlans((void *)vswp, VSW_LOCALDEV);
6411ae08745Sheppo progress |= PROG_fdb;
6421ae08745Sheppo
6431ae08745Sheppo /* setup the multicast fowarding database */
6441ae08745Sheppo (void) snprintf(hashname, MAXNAMELEN, "vsw_mcst_table-%d",
6451ae08745Sheppo vswp->instance);
6461ae08745Sheppo D2(vswp, "creating multicast hash table %s)...", hashname);
647c1c61f44Ssb155480 vswp->mfdb = mod_hash_create_ptrhash(hashname, vsw_fdb_nchains,
6481ae08745Sheppo mod_hash_null_valdtor, sizeof (void *));
6491ae08745Sheppo
6501ae08745Sheppo progress |= PROG_mfdb;
6511ae08745Sheppo
6521ae08745Sheppo /*
6531ae08745Sheppo * Create the taskq which will process all the VIO
6541ae08745Sheppo * control messages.
6551ae08745Sheppo */
6567bd3a2e2SSriharsha Basavapatna (void) snprintf(qname, TASKQ_NAMELEN, "taskq%d", vswp->instance);
6571ae08745Sheppo if ((vswp->taskq_p = ddi_taskq_create(vswp->dip, qname, 1,
6581ae08745Sheppo TASKQ_DEFAULTPRI, 0)) == NULL) {
65934683adeSsg70180 cmn_err(CE_WARN, "!vsw%d: Unable to create task queue",
66034683adeSsg70180 vswp->instance);
6611ae08745Sheppo goto vsw_attach_fail;
6621ae08745Sheppo }
6631ae08745Sheppo
6641ae08745Sheppo progress |= PROG_taskq;
6651ae08745Sheppo
6667bd3a2e2SSriharsha Basavapatna (void) snprintf(qname, TASKQ_NAMELEN, "rxpool_taskq%d",
66734b64c01SWENTAO YANG vswp->instance);
66834b64c01SWENTAO YANG if ((vswp->rxp_taskq = ddi_taskq_create(vswp->dip, qname, 1,
66934b64c01SWENTAO YANG TASKQ_DEFAULTPRI, 0)) == NULL) {
67034b64c01SWENTAO YANG cmn_err(CE_WARN, "!vsw%d: Unable to create rxp task queue",
67134b64c01SWENTAO YANG vswp->instance);
67234b64c01SWENTAO YANG goto vsw_attach_fail;
67334b64c01SWENTAO YANG }
67434b64c01SWENTAO YANG
67534b64c01SWENTAO YANG progress |= PROG_rxp_taskq;
67634b64c01SWENTAO YANG
677d10e4ef2Snarayan /* prevent auto-detaching */
678d10e4ef2Snarayan if (ddi_prop_update_int(DDI_DEV_T_NONE, vswp->dip,
679d10e4ef2Snarayan DDI_NO_AUTODETACH, 1) != DDI_SUCCESS) {
68034683adeSsg70180 cmn_err(CE_NOTE, "!Unable to set \"%s\" property for "
681d10e4ef2Snarayan "instance %u", DDI_NO_AUTODETACH, instance);
682d10e4ef2Snarayan }
683d10e4ef2Snarayan
6841ae08745Sheppo /*
6857a327842Swentaoy * The null switching function is set to avoid panic until
6867a327842Swentaoy * switch mode is setup.
6877a327842Swentaoy */
6887a327842Swentaoy vswp->vsw_switch_frame = vsw_switch_frame_nop;
6897a327842Swentaoy
6907a327842Swentaoy /*
691808f26a8SSriharsha Basavapatna * Setup the required switching mode, based on the mdprops that we read
692808f26a8SSriharsha Basavapatna * earlier. We start a thread to do this, to avoid calling mac_open()
693808f26a8SSriharsha Basavapatna * directly from attach().
69419b65a69Ssb155480 */
695808f26a8SSriharsha Basavapatna rv = vsw_setup_switching_start(vswp);
696808f26a8SSriharsha Basavapatna if (rv != 0) {
697808f26a8SSriharsha Basavapatna goto vsw_attach_fail;
698808f26a8SSriharsha Basavapatna }
69919b65a69Ssb155480
70019b65a69Ssb155480 progress |= PROG_swmode;
70119b65a69Ssb155480
70219b65a69Ssb155480 /* Register with mac layer as a provider */
70319b65a69Ssb155480 rv = vsw_mac_register(vswp);
70419b65a69Ssb155480 if (rv != 0)
70519b65a69Ssb155480 goto vsw_attach_fail;
70619b65a69Ssb155480
70719b65a69Ssb155480 progress |= PROG_macreg;
70819b65a69Ssb155480
70919b65a69Ssb155480 /*
71034683adeSsg70180 * Now we have everything setup, register an interest in
71134683adeSsg70180 * specific MD nodes.
71234683adeSsg70180 *
71334683adeSsg70180 * The callback is invoked in 2 cases, firstly if upon mdeg
71434683adeSsg70180 * registration there are existing nodes which match our specified
71534683adeSsg70180 * criteria, and secondly if the MD is changed (and again, there
71634683adeSsg70180 * are nodes which we are interested in present within it. Note
71734683adeSsg70180 * that our callback will be invoked even if our specified nodes
71834683adeSsg70180 * have not actually changed).
71934683adeSsg70180 *
7201ae08745Sheppo */
72119b65a69Ssb155480 rv = vsw_mdeg_register(vswp);
72219b65a69Ssb155480 if (rv != 0)
72334683adeSsg70180 goto vsw_attach_fail;
7241ae08745Sheppo
72519b65a69Ssb155480 progress |= PROG_mdreg;
72619b65a69Ssb155480
7276f09f0feSWENTAO YANG vswp->attach_progress = progress;
7286f09f0feSWENTAO YANG
72919b65a69Ssb155480 WRITE_ENTER(&vsw_rw);
73019b65a69Ssb155480 vswp->next = vsw_head;
73119b65a69Ssb155480 vsw_head = vswp;
73219b65a69Ssb155480 RW_EXIT(&vsw_rw);
73319b65a69Ssb155480
73419b65a69Ssb155480 ddi_report_dev(vswp->dip);
7351ae08745Sheppo return (DDI_SUCCESS);
7361ae08745Sheppo
7371ae08745Sheppo vsw_attach_fail:
7381ae08745Sheppo DERR(NULL, "vsw_attach: failed");
7391ae08745Sheppo
7406f09f0feSWENTAO YANG vswp->attach_progress = progress;
7416f09f0feSWENTAO YANG (void) vsw_unattach(vswp);
7421ae08745Sheppo ddi_soft_state_free(vsw_state, instance);
7431ae08745Sheppo return (DDI_FAILURE);
7441ae08745Sheppo }
7451ae08745Sheppo
7461ae08745Sheppo static int
vsw_detach(dev_info_t * dip,ddi_detach_cmd_t cmd)7471ae08745Sheppo vsw_detach(dev_info_t *dip, ddi_detach_cmd_t cmd)
7481ae08745Sheppo {
7491ae08745Sheppo vsw_t **vswpp, *vswp;
7501ae08745Sheppo int instance;
7511ae08745Sheppo
7521ae08745Sheppo instance = ddi_get_instance(dip);
7531ae08745Sheppo vswp = ddi_get_soft_state(vsw_state, instance);
7541ae08745Sheppo
7551ae08745Sheppo if (vswp == NULL) {
7561ae08745Sheppo return (DDI_FAILURE);
7571ae08745Sheppo }
7581ae08745Sheppo
7591ae08745Sheppo switch (cmd) {
7601ae08745Sheppo case DDI_DETACH:
7611ae08745Sheppo break;
7621ae08745Sheppo case DDI_SUSPEND:
7631ae08745Sheppo case DDI_PM_SUSPEND:
7641ae08745Sheppo default:
7651ae08745Sheppo return (DDI_FAILURE);
7661ae08745Sheppo }
7671ae08745Sheppo
7681ae08745Sheppo D2(vswp, "detaching instance %d", instance);
7691ae08745Sheppo
7706f09f0feSWENTAO YANG if (vsw_unattach(vswp) != 0) {
7711ae08745Sheppo return (DDI_FAILURE);
7721ae08745Sheppo }
773f0ca1d9aSsb155480
7741ae08745Sheppo ddi_remove_minor_node(dip, NULL);
7751ae08745Sheppo
7761ae08745Sheppo WRITE_ENTER(&vsw_rw);
7771ae08745Sheppo for (vswpp = &vsw_head; *vswpp; vswpp = &(*vswpp)->next) {
7781ae08745Sheppo if (*vswpp == vswp) {
7791ae08745Sheppo *vswpp = vswp->next;
7801ae08745Sheppo break;
7811ae08745Sheppo }
7821ae08745Sheppo }
7831ae08745Sheppo RW_EXIT(&vsw_rw);
7846f09f0feSWENTAO YANG
7851ae08745Sheppo ddi_soft_state_free(vsw_state, instance);
7861ae08745Sheppo
7871ae08745Sheppo return (DDI_SUCCESS);
7881ae08745Sheppo }
7891ae08745Sheppo
7901ae08745Sheppo /*
7916f09f0feSWENTAO YANG * Common routine to handle vsw_attach() failure and vsw_detach(). Note that
7926f09f0feSWENTAO YANG * the only reason this function could fail is if mac_unregister() fails.
7936f09f0feSWENTAO YANG * Otherwise, this function must ensure that all resources are freed and return
7946f09f0feSWENTAO YANG * success.
7956f09f0feSWENTAO YANG */
7966f09f0feSWENTAO YANG static int
vsw_unattach(vsw_t * vswp)7976f09f0feSWENTAO YANG vsw_unattach(vsw_t *vswp)
7986f09f0feSWENTAO YANG {
7996f09f0feSWENTAO YANG vsw_attach_progress_t progress;
8006f09f0feSWENTAO YANG
8016f09f0feSWENTAO YANG progress = vswp->attach_progress;
8026f09f0feSWENTAO YANG
8036f09f0feSWENTAO YANG /*
8046f09f0feSWENTAO YANG * Unregister from the gldv3 subsystem. This can fail, in particular
8056f09f0feSWENTAO YANG * if there are still any open references to this mac device; in which
8066f09f0feSWENTAO YANG * case we just return failure without continuing to detach further.
8076f09f0feSWENTAO YANG */
8086f09f0feSWENTAO YANG if (progress & PROG_macreg) {
8096f09f0feSWENTAO YANG if (vsw_mac_unregister(vswp) != 0) {
8106f09f0feSWENTAO YANG cmn_err(CE_WARN, "!vsw%d: Unable to detach from "
8116f09f0feSWENTAO YANG "MAC layer", vswp->instance);
8126f09f0feSWENTAO YANG return (1);
8136f09f0feSWENTAO YANG }
8146f09f0feSWENTAO YANG progress &= ~PROG_macreg;
8156f09f0feSWENTAO YANG }
8166f09f0feSWENTAO YANG
8176f09f0feSWENTAO YANG /*
8186f09f0feSWENTAO YANG * Now that we have unregistered from gldv3, we must finish all other
8196f09f0feSWENTAO YANG * steps and successfully return from this function; otherwise we will
8206f09f0feSWENTAO YANG * end up leaving the device in a broken/unusable state.
8216f09f0feSWENTAO YANG *
8226f09f0feSWENTAO YANG * If we have registered with mdeg, unregister now to stop further
8236f09f0feSWENTAO YANG * callbacks to this vsw device and/or its ports. Then, detach any
8246f09f0feSWENTAO YANG * existing ports.
8256f09f0feSWENTAO YANG */
8266f09f0feSWENTAO YANG if (progress & PROG_mdreg) {
8276f09f0feSWENTAO YANG vsw_mdeg_unregister(vswp);
8286f09f0feSWENTAO YANG vsw_detach_ports(vswp);
8296f09f0feSWENTAO YANG progress &= ~PROG_mdreg;
8306f09f0feSWENTAO YANG }
8316f09f0feSWENTAO YANG
8326f09f0feSWENTAO YANG /*
8336f09f0feSWENTAO YANG * If we have started a thread to setup the switching mode, stop it, if
8346f09f0feSWENTAO YANG * it is still running. If it has finished setting up the switching
8356f09f0feSWENTAO YANG * mode, then we need to clean up some additional things if we are
8366f09f0feSWENTAO YANG * running in L2 mode: first free up any hybrid resources; then stop
8376f09f0feSWENTAO YANG * and close the underlying physical device. Note that we would have
8386f09f0feSWENTAO YANG * already released all per mac_client resources (ucast, mcast addrs,
8396f09f0feSWENTAO YANG * hio-shares etc) as all the ports are detached and if the vsw device
8406f09f0feSWENTAO YANG * itself was in use as an interface, it has been unplumbed (otherwise
8416f09f0feSWENTAO YANG * mac_unregister() above would fail).
8426f09f0feSWENTAO YANG */
8436f09f0feSWENTAO YANG if (progress & PROG_swmode) {
8446f09f0feSWENTAO YANG
8456f09f0feSWENTAO YANG vsw_setup_switching_stop(vswp);
8466f09f0feSWENTAO YANG
8476f09f0feSWENTAO YANG if (vswp->hio_capable == B_TRUE) {
8486f09f0feSWENTAO YANG vsw_hio_cleanup(vswp);
8496f09f0feSWENTAO YANG vswp->hio_capable = B_FALSE;
8506f09f0feSWENTAO YANG }
8516f09f0feSWENTAO YANG
8526f09f0feSWENTAO YANG mutex_enter(&vswp->mac_lock);
8536f09f0feSWENTAO YANG vsw_mac_close(vswp);
8546f09f0feSWENTAO YANG mutex_exit(&vswp->mac_lock);
8556f09f0feSWENTAO YANG
8566f09f0feSWENTAO YANG progress &= ~PROG_swmode;
8576f09f0feSWENTAO YANG }
8586f09f0feSWENTAO YANG
8596f09f0feSWENTAO YANG /*
86034b64c01SWENTAO YANG * We now destroy the taskq used to clean up rx mblk pools that
86134b64c01SWENTAO YANG * couldn't be destroyed when the ports/channels were detached.
86234b64c01SWENTAO YANG * We implicitly wait for those tasks to complete in
86334b64c01SWENTAO YANG * ddi_taskq_destroy().
86434b64c01SWENTAO YANG */
86534b64c01SWENTAO YANG if (progress & PROG_rxp_taskq) {
86634b64c01SWENTAO YANG ddi_taskq_destroy(vswp->rxp_taskq);
86734b64c01SWENTAO YANG progress &= ~PROG_rxp_taskq;
86834b64c01SWENTAO YANG }
86934b64c01SWENTAO YANG
87034b64c01SWENTAO YANG /*
8716f09f0feSWENTAO YANG * By now any pending tasks have finished and the underlying
8726f09f0feSWENTAO YANG * ldc's have been destroyed, so its safe to delete the control
8736f09f0feSWENTAO YANG * message taskq.
8746f09f0feSWENTAO YANG */
8756f09f0feSWENTAO YANG if (progress & PROG_taskq) {
8766f09f0feSWENTAO YANG ddi_taskq_destroy(vswp->taskq_p);
8776f09f0feSWENTAO YANG progress &= ~PROG_taskq;
8786f09f0feSWENTAO YANG }
8796f09f0feSWENTAO YANG
8806f09f0feSWENTAO YANG /* Destroy the multicast hash table */
8816f09f0feSWENTAO YANG if (progress & PROG_mfdb) {
8826f09f0feSWENTAO YANG mod_hash_destroy_hash(vswp->mfdb);
8836f09f0feSWENTAO YANG progress &= ~PROG_mfdb;
8846f09f0feSWENTAO YANG }
8856f09f0feSWENTAO YANG
8866f09f0feSWENTAO YANG /* Destroy the vlan hash table and fdb */
8876f09f0feSWENTAO YANG if (progress & PROG_fdb) {
8886f09f0feSWENTAO YANG vsw_destroy_vlans(vswp, VSW_LOCALDEV);
8896f09f0feSWENTAO YANG mod_hash_destroy_hash(vswp->fdb_hashp);
8906f09f0feSWENTAO YANG progress &= ~PROG_fdb;
8916f09f0feSWENTAO YANG }
8926f09f0feSWENTAO YANG
8936f09f0feSWENTAO YANG if (progress & PROG_readmd) {
8946f09f0feSWENTAO YANG if (VSW_PRI_ETH_DEFINED(vswp)) {
8956f09f0feSWENTAO YANG kmem_free(vswp->pri_types,
8966f09f0feSWENTAO YANG sizeof (uint16_t) * vswp->pri_num_types);
8976f09f0feSWENTAO YANG (void) vio_destroy_mblks(vswp->pri_tx_vmp);
8986f09f0feSWENTAO YANG }
8996f09f0feSWENTAO YANG progress &= ~PROG_readmd;
9006f09f0feSWENTAO YANG }
9016f09f0feSWENTAO YANG
9026f09f0feSWENTAO YANG if (progress & PROG_locks) {
9036f09f0feSWENTAO YANG rw_destroy(&vswp->plist.lockrw);
9046f09f0feSWENTAO YANG rw_destroy(&vswp->mfdbrw);
9056f09f0feSWENTAO YANG rw_destroy(&vswp->if_lockrw);
9066f09f0feSWENTAO YANG rw_destroy(&vswp->maccl_rwlock);
9076f09f0feSWENTAO YANG cv_destroy(&vswp->sw_thr_cv);
9086f09f0feSWENTAO YANG mutex_destroy(&vswp->sw_thr_lock);
9096f09f0feSWENTAO YANG mutex_destroy(&vswp->mca_lock);
9106f09f0feSWENTAO YANG mutex_destroy(&vswp->mac_lock);
9116f09f0feSWENTAO YANG progress &= ~PROG_locks;
9126f09f0feSWENTAO YANG }
9136f09f0feSWENTAO YANG
9146f09f0feSWENTAO YANG vswp->attach_progress = progress;
9156f09f0feSWENTAO YANG
9166f09f0feSWENTAO YANG return (0);
9176f09f0feSWENTAO YANG }
9186f09f0feSWENTAO YANG
91934b64c01SWENTAO YANG void
vsw_destroy_rxpools(void * arg)92034b64c01SWENTAO YANG vsw_destroy_rxpools(void *arg)
9216f09f0feSWENTAO YANG {
92234b64c01SWENTAO YANG vio_mblk_pool_t *poolp = (vio_mblk_pool_t *)arg;
92334b64c01SWENTAO YANG vio_mblk_pool_t *npoolp;
9246f09f0feSWENTAO YANG
9256f09f0feSWENTAO YANG while (poolp != NULL) {
92634b64c01SWENTAO YANG npoolp = poolp->nextp;
92734b64c01SWENTAO YANG while (vio_destroy_mblks(poolp) != 0) {
928a862df29SSriharsha Basavapatna delay(drv_usectohz(vsw_rxpool_cleanup_delay));
9296f09f0feSWENTAO YANG }
9306f09f0feSWENTAO YANG poolp = npoolp;
9316f09f0feSWENTAO YANG }
9326f09f0feSWENTAO YANG }
9336f09f0feSWENTAO YANG
9346f09f0feSWENTAO YANG /*
93534683adeSsg70180 * Get the value of the "vsw-phys-dev" property in the specified
93634683adeSsg70180 * node. This property is the name of the physical device that
93734683adeSsg70180 * the virtual switch will use to talk to the outside world.
93834683adeSsg70180 *
93934683adeSsg70180 * Note it is valid for this property to be NULL (but the property
94034683adeSsg70180 * itself must exist). Callers of this routine should verify that
94134683adeSsg70180 * the value returned is what they expected (i.e. either NULL or non NULL).
94234683adeSsg70180 *
94334683adeSsg70180 * On success returns value of the property in region pointed to by
94434683adeSsg70180 * the 'name' argument, and with return value of 0. Otherwise returns 1.
9451ae08745Sheppo */
94634683adeSsg70180 static int
vsw_get_md_physname(vsw_t * vswp,md_t * mdp,mde_cookie_t node,char * name)94734683adeSsg70180 vsw_get_md_physname(vsw_t *vswp, md_t *mdp, mde_cookie_t node, char *name)
9481ae08745Sheppo {
94934683adeSsg70180 int len = 0;
950f2b610cfSwentaoy int instance;
9511ae08745Sheppo char *physname = NULL;
9521ae08745Sheppo char *dev;
953f2b610cfSwentaoy const char *dev_name;
954f2b610cfSwentaoy char myname[MAXNAMELEN];
955f2b610cfSwentaoy
956f2b610cfSwentaoy dev_name = ddi_driver_name(vswp->dip);
957f2b610cfSwentaoy instance = ddi_get_instance(vswp->dip);
958f2b610cfSwentaoy (void) snprintf(myname, MAXNAMELEN, "%s%d", dev_name, instance);
9591ae08745Sheppo
96034683adeSsg70180 if (md_get_prop_data(mdp, node, physdev_propname,
9611ae08745Sheppo (uint8_t **)(&physname), &len) != 0) {
96234683adeSsg70180 cmn_err(CE_WARN, "!vsw%d: Unable to get name(s) of physical "
96334683adeSsg70180 "device(s) from MD", vswp->instance);
96434683adeSsg70180 return (1);
9651ae08745Sheppo } else if ((strlen(physname) + 1) > LIFNAMSIZ) {
96634683adeSsg70180 cmn_err(CE_WARN, "!vsw%d: %s is too long a device name",
96734683adeSsg70180 vswp->instance, physname);
96834683adeSsg70180 return (1);
969f2b610cfSwentaoy } else if (strcmp(myname, physname) == 0) {
970f2b610cfSwentaoy /*
971f2b610cfSwentaoy * Prevent the vswitch from opening itself as the
972f2b610cfSwentaoy * network device.
973f2b610cfSwentaoy */
974f2b610cfSwentaoy cmn_err(CE_WARN, "!vsw%d: %s is an invalid device name",
975f2b610cfSwentaoy vswp->instance, physname);
976f2b610cfSwentaoy return (1);
9771ae08745Sheppo } else {
97834683adeSsg70180 (void) strncpy(name, physname, strlen(physname) + 1);
9791ae08745Sheppo D2(vswp, "%s: using first device specified (%s)",
98034683adeSsg70180 __func__, physname);
9811ae08745Sheppo }
9821ae08745Sheppo
9831ae08745Sheppo #ifdef DEBUG
9841ae08745Sheppo /*
9851ae08745Sheppo * As a temporary measure to aid testing we check to see if there
9861ae08745Sheppo * is a vsw.conf file present. If there is we use the value of the
9871ae08745Sheppo * vsw_physname property in the file as the name of the physical
9881ae08745Sheppo * device, overriding the value from the MD.
9891ae08745Sheppo *
9901ae08745Sheppo * There may be multiple devices listed, but for the moment
9911ae08745Sheppo * we just use the first one.
9921ae08745Sheppo */
9931ae08745Sheppo if (ddi_prop_lookup_string(DDI_DEV_T_ANY, vswp->dip, 0,
9941ae08745Sheppo "vsw_physname", &dev) == DDI_PROP_SUCCESS) {
9951ae08745Sheppo if ((strlen(dev) + 1) > LIFNAMSIZ) {
99634683adeSsg70180 cmn_err(CE_WARN, "vsw%d: %s is too long a device name",
99734683adeSsg70180 vswp->instance, dev);
99834683adeSsg70180 ddi_prop_free(dev);
99934683adeSsg70180 return (1);
10001ae08745Sheppo } else {
100134683adeSsg70180 cmn_err(CE_NOTE, "vsw%d: Using device name (%s) from "
100234683adeSsg70180 "config file", vswp->instance, dev);
10031ae08745Sheppo
100434683adeSsg70180 (void) strncpy(name, dev, strlen(dev) + 1);
10051ae08745Sheppo }
10061ae08745Sheppo
10071ae08745Sheppo ddi_prop_free(dev);
10081ae08745Sheppo }
10091ae08745Sheppo #endif
10101ae08745Sheppo
101134683adeSsg70180 return (0);
101234683adeSsg70180 }
1013e1ebb9ecSlm66018
1014e1ebb9ecSlm66018 /*
101534683adeSsg70180 * Read the 'vsw-switch-mode' property from the specified MD node.
101634683adeSsg70180 *
1017da14cebeSEric Cheng * Returns 0 on success, otherwise returns 1.
1018e1ebb9ecSlm66018 */
101934683adeSsg70180 static int
vsw_get_md_smodes(vsw_t * vswp,md_t * mdp,mde_cookie_t node,uint8_t * mode)1020da14cebeSEric Cheng vsw_get_md_smodes(vsw_t *vswp, md_t *mdp, mde_cookie_t node, uint8_t *mode)
102134683adeSsg70180 {
102234683adeSsg70180 int len = 0;
102334683adeSsg70180 char *smode = NULL;
102434683adeSsg70180 char *curr_mode = NULL;
102534683adeSsg70180
102634683adeSsg70180 D1(vswp, "%s: enter", __func__);
10271ae08745Sheppo
10281ae08745Sheppo /*
10291ae08745Sheppo * Get the switch-mode property. The modes are listed in
10301ae08745Sheppo * decreasing order of preference, i.e. prefered mode is
10311ae08745Sheppo * first item in list.
10321ae08745Sheppo */
10331ae08745Sheppo len = 0;
103434683adeSsg70180 if (md_get_prop_data(mdp, node, smode_propname,
10351ae08745Sheppo (uint8_t **)(&smode), &len) != 0) {
10361ae08745Sheppo /*
1037e1ebb9ecSlm66018 * Unable to get switch-mode property from MD, nothing
1038e1ebb9ecSlm66018 * more we can do.
10391ae08745Sheppo */
104034683adeSsg70180 cmn_err(CE_WARN, "!vsw%d: Unable to get switch mode property"
104134683adeSsg70180 " from the MD", vswp->instance);
104234683adeSsg70180 return (1);
1043e1ebb9ecSlm66018 }
1044e1ebb9ecSlm66018
10451ae08745Sheppo curr_mode = smode;
10461ae08745Sheppo /*
10471ae08745Sheppo * Modes of operation:
10481ae08745Sheppo * 'switched' - layer 2 switching, underlying HW in
1049e1ebb9ecSlm66018 * programmed mode.
10501ae08745Sheppo * 'promiscuous' - layer 2 switching, underlying HW in
10511ae08745Sheppo * promiscuous mode.
10521ae08745Sheppo * 'routed' - layer 3 (i.e. IP) routing, underlying HW
10531ae08745Sheppo * in non-promiscuous mode.
10541ae08745Sheppo */
1055da14cebeSEric Cheng while (curr_mode < (smode + len)) {
10561ae08745Sheppo D2(vswp, "%s: curr_mode = [%s]", __func__, curr_mode);
1057e1ebb9ecSlm66018 if (strcmp(curr_mode, "switched") == 0) {
1058da14cebeSEric Cheng *mode = VSW_LAYER2;
1059e1ebb9ecSlm66018 } else if (strcmp(curr_mode, "promiscuous") == 0) {
1060da14cebeSEric Cheng *mode = VSW_LAYER2 | VSW_LAYER2_PROMISC;
1061e1ebb9ecSlm66018 } else if (strcmp(curr_mode, "routed") == 0) {
1062da14cebeSEric Cheng *mode = VSW_LAYER3;
1063e1ebb9ecSlm66018 } else {
1064da14cebeSEric Cheng cmn_err(CE_WARN, "!vsw%d: Unknown switch mode %s, "
1065da14cebeSEric Cheng "setting to default switched mode",
1066da14cebeSEric Cheng vswp->instance, curr_mode);
1067da14cebeSEric Cheng *mode = VSW_LAYER2;
10681ae08745Sheppo }
10691ae08745Sheppo curr_mode += strlen(curr_mode) + 1;
10701ae08745Sheppo }
10711ae08745Sheppo
1072da14cebeSEric Cheng D2(vswp, "%s: %d mode", __func__, *mode);
10731ae08745Sheppo
10741ae08745Sheppo D1(vswp, "%s: exit", __func__);
107534683adeSsg70180
107634683adeSsg70180 return (0);
10771ae08745Sheppo }
10781ae08745Sheppo
1079e1ebb9ecSlm66018 /*
10801ae08745Sheppo * Register with the MAC layer as a network device, so we
10811ae08745Sheppo * can be plumbed if necessary.
10821ae08745Sheppo */
10831ae08745Sheppo static int
vsw_mac_register(vsw_t * vswp)10841ae08745Sheppo vsw_mac_register(vsw_t *vswp)
10851ae08745Sheppo {
1086ba2e4443Sseb mac_register_t *macp;
1087ba2e4443Sseb int rv;
10881ae08745Sheppo
10891ae08745Sheppo D1(vswp, "%s: enter", __func__);
10901ae08745Sheppo
1091ba2e4443Sseb if ((macp = mac_alloc(MAC_VERSION)) == NULL)
1092ba2e4443Sseb return (EINVAL);
1093ba2e4443Sseb macp->m_type_ident = MAC_PLUGIN_IDENT_ETHER;
10941ae08745Sheppo macp->m_driver = vswp;
1095ba2e4443Sseb macp->m_dip = vswp->dip;
1096ba2e4443Sseb macp->m_src_addr = (uint8_t *)&vswp->if_addr;
1097ba2e4443Sseb macp->m_callbacks = &vsw_m_callbacks;
1098ba2e4443Sseb macp->m_min_sdu = 0;
10997b1f684aSSriharsha Basavapatna macp->m_max_sdu = vswp->mtu;
1100c1c61f44Ssb155480 macp->m_margin = VLAN_TAGSZ;
1101ba2e4443Sseb rv = mac_register(macp, &vswp->if_mh);
1102ba2e4443Sseb mac_free(macp);
110319b65a69Ssb155480 if (rv != 0) {
110419b65a69Ssb155480 /*
110519b65a69Ssb155480 * Treat this as a non-fatal error as we may be
110619b65a69Ssb155480 * able to operate in some other mode.
110719b65a69Ssb155480 */
110819b65a69Ssb155480 cmn_err(CE_NOTE, "!vsw%d: Unable to register as "
110919b65a69Ssb155480 "a provider with MAC layer", vswp->instance);
111019b65a69Ssb155480 return (rv);
111119b65a69Ssb155480 }
111219b65a69Ssb155480
1113ba2e4443Sseb vswp->if_state |= VSW_IF_REG;
11141ae08745Sheppo
11151ae08745Sheppo D1(vswp, "%s: exit", __func__);
11161ae08745Sheppo
11171ae08745Sheppo return (rv);
11181ae08745Sheppo }
11191ae08745Sheppo
11201ae08745Sheppo static int
vsw_mac_unregister(vsw_t * vswp)11211ae08745Sheppo vsw_mac_unregister(vsw_t *vswp)
11221ae08745Sheppo {
11231ae08745Sheppo int rv = 0;
11241ae08745Sheppo
11251ae08745Sheppo D1(vswp, "%s: enter", __func__);
11261ae08745Sheppo
11271ae08745Sheppo WRITE_ENTER(&vswp->if_lockrw);
11281ae08745Sheppo
1129ba2e4443Sseb if (vswp->if_state & VSW_IF_REG) {
1130ba2e4443Sseb rv = mac_unregister(vswp->if_mh);
11311ae08745Sheppo if (rv != 0) {
11321ae08745Sheppo DWARN(vswp, "%s: unable to unregister from MAC "
11331ae08745Sheppo "framework", __func__);
11341ae08745Sheppo
11351ae08745Sheppo RW_EXIT(&vswp->if_lockrw);
11361ae08745Sheppo D1(vswp, "%s: fail exit", __func__);
11371ae08745Sheppo return (rv);
11381ae08745Sheppo }
11391ae08745Sheppo
1140ba2e4443Sseb /* mark i/f as down and unregistered */
1141ba2e4443Sseb vswp->if_state &= ~(VSW_IF_UP | VSW_IF_REG);
11421ae08745Sheppo }
11431ae08745Sheppo RW_EXIT(&vswp->if_lockrw);
11441ae08745Sheppo
11451ae08745Sheppo D1(vswp, "%s: exit", __func__);
11461ae08745Sheppo
11471ae08745Sheppo return (rv);
11481ae08745Sheppo }
11491ae08745Sheppo
1150ba2e4443Sseb static int
vsw_m_stat(void * arg,uint_t stat,uint64_t * val)1151ba2e4443Sseb vsw_m_stat(void *arg, uint_t stat, uint64_t *val)
11521ae08745Sheppo {
11531ae08745Sheppo vsw_t *vswp = (vsw_t *)arg;
11541ae08745Sheppo
11551ae08745Sheppo D1(vswp, "%s: enter", __func__);
11561ae08745Sheppo
1157da14cebeSEric Cheng mutex_enter(&vswp->mac_lock);
115834683adeSsg70180 if (vswp->mh == NULL) {
1159da14cebeSEric Cheng mutex_exit(&vswp->mac_lock);
1160ba2e4443Sseb return (EINVAL);
116134683adeSsg70180 }
11621ae08745Sheppo
11631ae08745Sheppo /* return stats from underlying device */
1164ba2e4443Sseb *val = mac_stat_get(vswp->mh, stat);
116534683adeSsg70180
1166da14cebeSEric Cheng mutex_exit(&vswp->mac_lock);
116734683adeSsg70180
1168ba2e4443Sseb return (0);
11691ae08745Sheppo }
11701ae08745Sheppo
11711ae08745Sheppo static void
vsw_m_stop(void * arg)11721ae08745Sheppo vsw_m_stop(void *arg)
11731ae08745Sheppo {
11741ae08745Sheppo vsw_t *vswp = (vsw_t *)arg;
11751ae08745Sheppo
11761ae08745Sheppo D1(vswp, "%s: enter", __func__);
11771ae08745Sheppo
11781ae08745Sheppo WRITE_ENTER(&vswp->if_lockrw);
11791ae08745Sheppo vswp->if_state &= ~VSW_IF_UP;
11801ae08745Sheppo RW_EXIT(&vswp->if_lockrw);
11811ae08745Sheppo
1182da14cebeSEric Cheng /* Cleanup and close the mac client */
1183da14cebeSEric Cheng vsw_mac_client_cleanup(vswp, NULL, VSW_LOCALDEV);
11845f94e909Ssg70180
11851ae08745Sheppo D1(vswp, "%s: exit (state = %d)", __func__, vswp->if_state);
11861ae08745Sheppo }
11871ae08745Sheppo
11881ae08745Sheppo static int
vsw_m_start(void * arg)11891ae08745Sheppo vsw_m_start(void *arg)
11901ae08745Sheppo {
1191da14cebeSEric Cheng int rv;
11921ae08745Sheppo vsw_t *vswp = (vsw_t *)arg;
11931ae08745Sheppo
11941ae08745Sheppo D1(vswp, "%s: enter", __func__);
11951ae08745Sheppo
11961ae08745Sheppo WRITE_ENTER(&vswp->if_lockrw);
11971ae08745Sheppo
119819b65a69Ssb155480 vswp->if_state |= VSW_IF_UP;
119919b65a69Ssb155480
120019b65a69Ssb155480 if (vswp->switching_setup_done == B_FALSE) {
120119b65a69Ssb155480 /*
120219b65a69Ssb155480 * If the switching mode has not been setup yet, just
120319b65a69Ssb155480 * return. The unicast address will be programmed
120419b65a69Ssb155480 * after the physical device is successfully setup by the
120519b65a69Ssb155480 * timeout handler.
120619b65a69Ssb155480 */
120719b65a69Ssb155480 RW_EXIT(&vswp->if_lockrw);
120819b65a69Ssb155480 return (0);
120919b65a69Ssb155480 }
121019b65a69Ssb155480
121119b65a69Ssb155480 /* if in layer2 mode, program unicast address. */
121219b65a69Ssb155480 if (vswp->mh != NULL) {
1213da14cebeSEric Cheng /* Init a mac client and program addresses */
1214da14cebeSEric Cheng rv = vsw_mac_client_init(vswp, NULL, VSW_LOCALDEV);
1215da14cebeSEric Cheng if (rv != 0) {
1216da14cebeSEric Cheng cmn_err(CE_NOTE,
1217da14cebeSEric Cheng "!vsw%d: failed to program interface "
1218da14cebeSEric Cheng "unicast address\n", vswp->instance);
1219da14cebeSEric Cheng }
122019b65a69Ssb155480 }
122119b65a69Ssb155480
122219b65a69Ssb155480 RW_EXIT(&vswp->if_lockrw);
12235f94e909Ssg70180
12241ae08745Sheppo D1(vswp, "%s: exit (state = %d)", __func__, vswp->if_state);
12251ae08745Sheppo return (0);
12261ae08745Sheppo }
12271ae08745Sheppo
12281ae08745Sheppo /*
12291ae08745Sheppo * Change the local interface address.
12305f94e909Ssg70180 *
12315f94e909Ssg70180 * Note: we don't support this entry point. The local
12325f94e909Ssg70180 * mac address of the switch can only be changed via its
12335f94e909Ssg70180 * MD node properties.
12341ae08745Sheppo */
12351ae08745Sheppo static int
vsw_m_unicst(void * arg,const uint8_t * macaddr)12361ae08745Sheppo vsw_m_unicst(void *arg, const uint8_t *macaddr)
12371ae08745Sheppo {
12385f94e909Ssg70180 _NOTE(ARGUNUSED(arg, macaddr))
12391ae08745Sheppo
12405f94e909Ssg70180 return (DDI_FAILURE);
12411ae08745Sheppo }
12421ae08745Sheppo
12431ae08745Sheppo static int
vsw_m_multicst(void * arg,boolean_t add,const uint8_t * mca)12441ae08745Sheppo vsw_m_multicst(void *arg, boolean_t add, const uint8_t *mca)
12451ae08745Sheppo {
12461ae08745Sheppo vsw_t *vswp = (vsw_t *)arg;
12471ae08745Sheppo mcst_addr_t *mcst_p = NULL;
12481ae08745Sheppo uint64_t addr = 0x0;
1249e1ebb9ecSlm66018 int i, ret = 0;
12501ae08745Sheppo
12511ae08745Sheppo D1(vswp, "%s: enter", __func__);
12521ae08745Sheppo
12531ae08745Sheppo /*
12541ae08745Sheppo * Convert address into form that can be used
12551ae08745Sheppo * as hash table key.
12561ae08745Sheppo */
12571ae08745Sheppo for (i = 0; i < ETHERADDRL; i++) {
12581ae08745Sheppo addr = (addr << 8) | mca[i];
12591ae08745Sheppo }
12601ae08745Sheppo
12611ae08745Sheppo D2(vswp, "%s: addr = 0x%llx", __func__, addr);
12621ae08745Sheppo
12631ae08745Sheppo if (add) {
12641ae08745Sheppo D2(vswp, "%s: adding multicast", __func__);
12651ae08745Sheppo if (vsw_add_mcst(vswp, VSW_LOCALDEV, addr, NULL) == 0) {
12661ae08745Sheppo /*
12671ae08745Sheppo * Update the list of multicast addresses
12681ae08745Sheppo * contained within the vsw_t structure to
12691ae08745Sheppo * include this new one.
12701ae08745Sheppo */
12711ae08745Sheppo mcst_p = kmem_zalloc(sizeof (mcst_addr_t), KM_NOSLEEP);
12721ae08745Sheppo if (mcst_p == NULL) {
12731ae08745Sheppo DERR(vswp, "%s unable to alloc mem", __func__);
127419b65a69Ssb155480 (void) vsw_del_mcst(vswp,
127519b65a69Ssb155480 VSW_LOCALDEV, addr, NULL);
12761ae08745Sheppo return (1);
12771ae08745Sheppo }
12781ae08745Sheppo mcst_p->addr = addr;
127919b65a69Ssb155480 ether_copy(mca, &mcst_p->mca);
12801ae08745Sheppo
12811ae08745Sheppo /*
12821ae08745Sheppo * Call into the underlying driver to program the
12831ae08745Sheppo * address into HW.
12841ae08745Sheppo */
1285da14cebeSEric Cheng ret = vsw_mac_multicast_add(vswp, NULL, mcst_p,
1286da14cebeSEric Cheng VSW_LOCALDEV);
1287e1ebb9ecSlm66018 if (ret != 0) {
128819b65a69Ssb155480 (void) vsw_del_mcst(vswp,
128919b65a69Ssb155480 VSW_LOCALDEV, addr, NULL);
129019b65a69Ssb155480 kmem_free(mcst_p, sizeof (*mcst_p));
129119b65a69Ssb155480 return (ret);
1292e1ebb9ecSlm66018 }
129319b65a69Ssb155480
129419b65a69Ssb155480 mutex_enter(&vswp->mca_lock);
129519b65a69Ssb155480 mcst_p->nextp = vswp->mcap;
129619b65a69Ssb155480 vswp->mcap = mcst_p;
129719b65a69Ssb155480 mutex_exit(&vswp->mca_lock);
12981ae08745Sheppo } else {
1299da14cebeSEric Cheng cmn_err(CE_WARN, "!vsw%d: unable to add multicast "
130034683adeSsg70180 "address", vswp->instance);
1301e1ebb9ecSlm66018 }
1302e1ebb9ecSlm66018 return (ret);
1303e1ebb9ecSlm66018 }
1304e1ebb9ecSlm66018
13051ae08745Sheppo D2(vswp, "%s: removing multicast", __func__);
13061ae08745Sheppo /*
13071ae08745Sheppo * Remove the address from the hash table..
13081ae08745Sheppo */
13091ae08745Sheppo if (vsw_del_mcst(vswp, VSW_LOCALDEV, addr, NULL) == 0) {
13101ae08745Sheppo
13111ae08745Sheppo /*
13121ae08745Sheppo * ..and then from the list maintained in the
13131ae08745Sheppo * vsw_t structure.
13141ae08745Sheppo */
131519b65a69Ssb155480 mcst_p = vsw_del_addr(VSW_LOCALDEV, vswp, addr);
131619b65a69Ssb155480 ASSERT(mcst_p != NULL);
13171ae08745Sheppo
1318da14cebeSEric Cheng vsw_mac_multicast_remove(vswp, NULL, mcst_p, VSW_LOCALDEV);
131919b65a69Ssb155480 kmem_free(mcst_p, sizeof (*mcst_p));
13201ae08745Sheppo }
13211ae08745Sheppo
13221ae08745Sheppo D1(vswp, "%s: exit", __func__);
13231ae08745Sheppo
13241ae08745Sheppo return (0);
13251ae08745Sheppo }
13261ae08745Sheppo
13271ae08745Sheppo static int
vsw_m_promisc(void * arg,boolean_t on)13281ae08745Sheppo vsw_m_promisc(void *arg, boolean_t on)
13291ae08745Sheppo {
13301ae08745Sheppo vsw_t *vswp = (vsw_t *)arg;
13311ae08745Sheppo
13321ae08745Sheppo D1(vswp, "%s: enter", __func__);
13331ae08745Sheppo
13341ae08745Sheppo WRITE_ENTER(&vswp->if_lockrw);
13351ae08745Sheppo if (on)
13361ae08745Sheppo vswp->if_state |= VSW_IF_PROMISC;
13371ae08745Sheppo else
13381ae08745Sheppo vswp->if_state &= ~VSW_IF_PROMISC;
13391ae08745Sheppo RW_EXIT(&vswp->if_lockrw);
13401ae08745Sheppo
13411ae08745Sheppo D1(vswp, "%s: exit", __func__);
13421ae08745Sheppo
13431ae08745Sheppo return (0);
13441ae08745Sheppo }
13451ae08745Sheppo
13461ae08745Sheppo static mblk_t *
vsw_m_tx(void * arg,mblk_t * mp)13471ae08745Sheppo vsw_m_tx(void *arg, mblk_t *mp)
13481ae08745Sheppo {
13491ae08745Sheppo vsw_t *vswp = (vsw_t *)arg;
13501ae08745Sheppo
13511ae08745Sheppo D1(vswp, "%s: enter", __func__);
13521ae08745Sheppo
1353c1c61f44Ssb155480 mp = vsw_vlan_frame_pretag(vswp, VSW_LOCALDEV, mp);
1354c1c61f44Ssb155480
1355c1c61f44Ssb155480 if (mp == NULL) {
1356c1c61f44Ssb155480 return (NULL);
1357c1c61f44Ssb155480 }
1358c1c61f44Ssb155480
135934683adeSsg70180 vswp->vsw_switch_frame(vswp, mp, VSW_LOCALDEV, NULL, NULL);
13601ae08745Sheppo
13611ae08745Sheppo D1(vswp, "%s: exit", __func__);
13621ae08745Sheppo
13631ae08745Sheppo return (NULL);
13641ae08745Sheppo }
13651ae08745Sheppo
13661ae08745Sheppo /*
13671ae08745Sheppo * Register for machine description (MD) updates.
136834683adeSsg70180 *
136934683adeSsg70180 * Returns 0 on success, 1 on failure.
13701ae08745Sheppo */
137134683adeSsg70180 static int
vsw_mdeg_register(vsw_t * vswp)13721ae08745Sheppo vsw_mdeg_register(vsw_t *vswp)
13731ae08745Sheppo {
13741ae08745Sheppo mdeg_prop_spec_t *pspecp;
13751ae08745Sheppo mdeg_node_spec_t *inst_specp;
137634683adeSsg70180 mdeg_handle_t mdeg_hdl, mdeg_port_hdl;
13771ae08745Sheppo size_t templatesz;
137819b65a69Ssb155480 int rv;
13791ae08745Sheppo
13801ae08745Sheppo D1(vswp, "%s: enter", __func__);
13811ae08745Sheppo
138234683adeSsg70180 /*
13831ae08745Sheppo * Allocate and initialize a per-instance copy
13841ae08745Sheppo * of the global property spec array that will
13851ae08745Sheppo * uniquely identify this vsw instance.
13861ae08745Sheppo */
13871ae08745Sheppo templatesz = sizeof (vsw_prop_template);
13881ae08745Sheppo pspecp = kmem_zalloc(templatesz, KM_SLEEP);
13891ae08745Sheppo
13901ae08745Sheppo bcopy(vsw_prop_template, pspecp, templatesz);
13911ae08745Sheppo
139219b65a69Ssb155480 VSW_SET_MDEG_PROP_INST(pspecp, vswp->regprop);
13931ae08745Sheppo
13941ae08745Sheppo /* initialize the complete prop spec structure */
13951ae08745Sheppo inst_specp = kmem_zalloc(sizeof (mdeg_node_spec_t), KM_SLEEP);
13961ae08745Sheppo inst_specp->namep = "virtual-device";
13971ae08745Sheppo inst_specp->specp = pspecp;
13981ae08745Sheppo
139919b65a69Ssb155480 D2(vswp, "%s: instance %d registering with mdeg", __func__,
140019b65a69Ssb155480 vswp->regprop);
140134683adeSsg70180 /*
140234683adeSsg70180 * Register an interest in 'virtual-device' nodes with a
140334683adeSsg70180 * 'name' property of 'virtual-network-switch'
140434683adeSsg70180 */
140534683adeSsg70180 rv = mdeg_register(inst_specp, &vdev_match, vsw_mdeg_cb,
14061ae08745Sheppo (void *)vswp, &mdeg_hdl);
140734683adeSsg70180 if (rv != MDEG_SUCCESS) {
140834683adeSsg70180 DERR(vswp, "%s: mdeg_register failed (%d) for vsw node",
140934683adeSsg70180 __func__, rv);
141034683adeSsg70180 goto mdeg_reg_fail;
141134683adeSsg70180 }
14121ae08745Sheppo
141334683adeSsg70180 /*
141434683adeSsg70180 * Register an interest in 'vsw-port' nodes.
141534683adeSsg70180 */
141634683adeSsg70180 rv = mdeg_register(inst_specp, &vport_match, vsw_port_mdeg_cb,
141734683adeSsg70180 (void *)vswp, &mdeg_port_hdl);
14181ae08745Sheppo if (rv != MDEG_SUCCESS) {
14191ae08745Sheppo DERR(vswp, "%s: mdeg_register failed (%d)\n", __func__, rv);
142034683adeSsg70180 (void) mdeg_unregister(mdeg_hdl);
142134683adeSsg70180 goto mdeg_reg_fail;
14221ae08745Sheppo }
14231ae08745Sheppo
14241ae08745Sheppo /* save off data that will be needed later */
14251ae08745Sheppo vswp->inst_spec = inst_specp;
14261ae08745Sheppo vswp->mdeg_hdl = mdeg_hdl;
142734683adeSsg70180 vswp->mdeg_port_hdl = mdeg_port_hdl;
14281ae08745Sheppo
14291ae08745Sheppo D1(vswp, "%s: exit", __func__);
143034683adeSsg70180 return (0);
143134683adeSsg70180
143234683adeSsg70180 mdeg_reg_fail:
143334683adeSsg70180 cmn_err(CE_WARN, "!vsw%d: Unable to register MDEG callbacks",
143434683adeSsg70180 vswp->instance);
143534683adeSsg70180 kmem_free(pspecp, templatesz);
143634683adeSsg70180 kmem_free(inst_specp, sizeof (mdeg_node_spec_t));
143734683adeSsg70180
143834683adeSsg70180 vswp->mdeg_hdl = NULL;
143934683adeSsg70180 vswp->mdeg_port_hdl = NULL;
144034683adeSsg70180
144134683adeSsg70180 return (1);
14421ae08745Sheppo }
14431ae08745Sheppo
14441ae08745Sheppo static void
vsw_mdeg_unregister(vsw_t * vswp)14451ae08745Sheppo vsw_mdeg_unregister(vsw_t *vswp)
14461ae08745Sheppo {
14471ae08745Sheppo D1(vswp, "vsw_mdeg_unregister: enter");
14481ae08745Sheppo
144934683adeSsg70180 if (vswp->mdeg_hdl != NULL)
14501ae08745Sheppo (void) mdeg_unregister(vswp->mdeg_hdl);
14511ae08745Sheppo
145234683adeSsg70180 if (vswp->mdeg_port_hdl != NULL)
145334683adeSsg70180 (void) mdeg_unregister(vswp->mdeg_port_hdl);
145434683adeSsg70180
145534683adeSsg70180 if (vswp->inst_spec != NULL) {
14561ae08745Sheppo if (vswp->inst_spec->specp != NULL) {
14571ae08745Sheppo (void) kmem_free(vswp->inst_spec->specp,
14581ae08745Sheppo sizeof (vsw_prop_template));
14591ae08745Sheppo vswp->inst_spec->specp = NULL;
14601ae08745Sheppo }
14611ae08745Sheppo
1462205eeb1aSlm66018 (void) kmem_free(vswp->inst_spec, sizeof (mdeg_node_spec_t));
14631ae08745Sheppo vswp->inst_spec = NULL;
14641ae08745Sheppo }
14651ae08745Sheppo
14661ae08745Sheppo D1(vswp, "vsw_mdeg_unregister: exit");
14671ae08745Sheppo }
14681ae08745Sheppo
146934683adeSsg70180 /*
147034683adeSsg70180 * Mdeg callback invoked for the vsw node itself.
147134683adeSsg70180 */
14721ae08745Sheppo static int
vsw_mdeg_cb(void * cb_argp,mdeg_result_t * resp)14731ae08745Sheppo vsw_mdeg_cb(void *cb_argp, mdeg_result_t *resp)
14741ae08745Sheppo {
14751ae08745Sheppo vsw_t *vswp;
14761ae08745Sheppo md_t *mdp;
14771ae08745Sheppo mde_cookie_t node;
14781ae08745Sheppo uint64_t inst;
147934683adeSsg70180 char *node_name = NULL;
14801ae08745Sheppo
14811ae08745Sheppo if (resp == NULL)
14821ae08745Sheppo return (MDEG_FAILURE);
14831ae08745Sheppo
14841ae08745Sheppo vswp = (vsw_t *)cb_argp;
14851ae08745Sheppo
148634683adeSsg70180 D1(vswp, "%s: added %d : removed %d : curr matched %d"
148734683adeSsg70180 " : prev matched %d", __func__, resp->added.nelem,
148834683adeSsg70180 resp->removed.nelem, resp->match_curr.nelem,
148934683adeSsg70180 resp->match_prev.nelem);
149034683adeSsg70180
149134683adeSsg70180 /*
149219b65a69Ssb155480 * We get an initial callback for this node as 'added'
149319b65a69Ssb155480 * after registering with mdeg. Note that we would have
149419b65a69Ssb155480 * already gathered information about this vsw node by
149519b65a69Ssb155480 * walking MD earlier during attach (in vsw_read_mdprops()).
149619b65a69Ssb155480 * So, there is a window where the properties of this
149719b65a69Ssb155480 * node might have changed when we get this initial 'added'
149819b65a69Ssb155480 * callback. We handle this as if an update occured
149919b65a69Ssb155480 * and invoke the same function which handles updates to
150019b65a69Ssb155480 * the properties of this vsw-node if any.
150119b65a69Ssb155480 *
150234683adeSsg70180 * A non-zero 'match' value indicates that the MD has been
150319b65a69Ssb155480 * updated and that a virtual-network-switch node is
150419b65a69Ssb155480 * present which may or may not have been updated. It is
150519b65a69Ssb155480 * up to the clients to examine their own nodes and
150619b65a69Ssb155480 * determine if they have changed.
150734683adeSsg70180 */
150819b65a69Ssb155480 if (resp->added.nelem != 0) {
150934683adeSsg70180
151019b65a69Ssb155480 if (resp->added.nelem != 1) {
151119b65a69Ssb155480 cmn_err(CE_NOTE, "!vsw%d: number of nodes added "
151219b65a69Ssb155480 "invalid: %d\n", vswp->instance, resp->added.nelem);
151319b65a69Ssb155480 return (MDEG_FAILURE);
151419b65a69Ssb155480 }
151519b65a69Ssb155480
151619b65a69Ssb155480 mdp = resp->added.mdp;
151719b65a69Ssb155480 node = resp->added.mdep[0];
151819b65a69Ssb155480
151919b65a69Ssb155480 } else if (resp->match_curr.nelem != 0) {
152019b65a69Ssb155480
152119b65a69Ssb155480 if (resp->match_curr.nelem != 1) {
152219b65a69Ssb155480 cmn_err(CE_NOTE, "!vsw%d: number of nodes updated "
152319b65a69Ssb155480 "invalid: %d\n", vswp->instance,
152419b65a69Ssb155480 resp->match_curr.nelem);
152519b65a69Ssb155480 return (MDEG_FAILURE);
152619b65a69Ssb155480 }
152719b65a69Ssb155480
152819b65a69Ssb155480 mdp = resp->match_curr.mdp;
152919b65a69Ssb155480 node = resp->match_curr.mdep[0];
153019b65a69Ssb155480
153119b65a69Ssb155480 } else {
153219b65a69Ssb155480 return (MDEG_FAILURE);
153319b65a69Ssb155480 }
153419b65a69Ssb155480
153519b65a69Ssb155480 /* Validate name and instance */
153634683adeSsg70180 if (md_get_prop_str(mdp, node, "name", &node_name) != 0) {
153719b65a69Ssb155480 DERR(vswp, "%s: unable to get node name\n", __func__);
153819b65a69Ssb155480 return (MDEG_FAILURE);
153919b65a69Ssb155480 }
154019b65a69Ssb155480
154119b65a69Ssb155480 /* is this a virtual-network-switch? */
154219b65a69Ssb155480 if (strcmp(node_name, vsw_propname) != 0) {
154319b65a69Ssb155480 DERR(vswp, "%s: Invalid node name: %s\n",
154419b65a69Ssb155480 __func__, node_name);
154519b65a69Ssb155480 return (MDEG_FAILURE);
154634683adeSsg70180 }
154734683adeSsg70180
154834683adeSsg70180 if (md_get_prop_val(mdp, node, "cfg-handle", &inst)) {
154919b65a69Ssb155480 DERR(vswp, "%s: prop(cfg-handle) not found\n",
155019b65a69Ssb155480 __func__);
155119b65a69Ssb155480 return (MDEG_FAILURE);
155234683adeSsg70180 }
155334683adeSsg70180
155419b65a69Ssb155480 /* is this the right instance of vsw? */
155519b65a69Ssb155480 if (inst != vswp->regprop) {
155619b65a69Ssb155480 DERR(vswp, "%s: Invalid cfg-handle: %lx\n",
155719b65a69Ssb155480 __func__, inst);
155819b65a69Ssb155480 return (MDEG_FAILURE);
155919b65a69Ssb155480 }
156034683adeSsg70180
156134683adeSsg70180 vsw_update_md_prop(vswp, mdp, node);
156234683adeSsg70180
156334683adeSsg70180 return (MDEG_SUCCESS);
156434683adeSsg70180 }
156534683adeSsg70180
156634683adeSsg70180 /*
156734683adeSsg70180 * Mdeg callback invoked for changes to the vsw-port nodes
156834683adeSsg70180 * under the vsw node.
156934683adeSsg70180 */
157034683adeSsg70180 static int
vsw_port_mdeg_cb(void * cb_argp,mdeg_result_t * resp)157134683adeSsg70180 vsw_port_mdeg_cb(void *cb_argp, mdeg_result_t *resp)
157234683adeSsg70180 {
157334683adeSsg70180 vsw_t *vswp;
157434683adeSsg70180 int idx;
157534683adeSsg70180 md_t *mdp;
157634683adeSsg70180 mde_cookie_t node;
157734683adeSsg70180 uint64_t inst;
15781ef0bbb5Snarayan int rv;
157934683adeSsg70180
158034683adeSsg70180 if ((resp == NULL) || (cb_argp == NULL))
158134683adeSsg70180 return (MDEG_FAILURE);
158234683adeSsg70180
158334683adeSsg70180 vswp = (vsw_t *)cb_argp;
158434683adeSsg70180
158534683adeSsg70180 D2(vswp, "%s: added %d : removed %d : curr matched %d"
158634683adeSsg70180 " : prev matched %d", __func__, resp->added.nelem,
158734683adeSsg70180 resp->removed.nelem, resp->match_curr.nelem,
15881ae08745Sheppo resp->match_prev.nelem);
15891ae08745Sheppo
15901ae08745Sheppo /* process added ports */
15911ae08745Sheppo for (idx = 0; idx < resp->added.nelem; idx++) {
15921ae08745Sheppo mdp = resp->added.mdp;
15931ae08745Sheppo node = resp->added.mdep[idx];
15941ae08745Sheppo
15951ae08745Sheppo D2(vswp, "%s: adding node(%d) 0x%lx", __func__, idx, node);
15961ae08745Sheppo
15971ef0bbb5Snarayan if ((rv = vsw_port_add(vswp, mdp, &node)) != 0) {
159834683adeSsg70180 cmn_err(CE_WARN, "!vsw%d: Unable to add new port "
15991ef0bbb5Snarayan "(0x%lx), err=%d", vswp->instance, node, rv);
16001ae08745Sheppo }
16011ae08745Sheppo }
16021ae08745Sheppo
16031ae08745Sheppo /* process removed ports */
16041ae08745Sheppo for (idx = 0; idx < resp->removed.nelem; idx++) {
16051ae08745Sheppo mdp = resp->removed.mdp;
16061ae08745Sheppo node = resp->removed.mdep[idx];
16071ae08745Sheppo
16081ae08745Sheppo if (md_get_prop_val(mdp, node, id_propname, &inst)) {
160934683adeSsg70180 DERR(vswp, "%s: prop(%s) not found in port(%d)",
16101ae08745Sheppo __func__, id_propname, idx);
16111ae08745Sheppo continue;
16121ae08745Sheppo }
16131ae08745Sheppo
16141ae08745Sheppo D2(vswp, "%s: removing node(%d) 0x%lx", __func__, idx, node);
16151ae08745Sheppo
16161ae08745Sheppo if (vsw_port_detach(vswp, inst) != 0) {
161734683adeSsg70180 cmn_err(CE_WARN, "!vsw%d: Unable to remove port %ld",
161834683adeSsg70180 vswp->instance, inst);
16191ae08745Sheppo }
16201ae08745Sheppo }
16211ae08745Sheppo
1622c1c61f44Ssb155480 for (idx = 0; idx < resp->match_curr.nelem; idx++) {
1623c1c61f44Ssb155480 (void) vsw_port_update(vswp, resp->match_curr.mdp,
1624c1c61f44Ssb155480 resp->match_curr.mdep[idx],
1625c1c61f44Ssb155480 resp->match_prev.mdp,
1626c1c61f44Ssb155480 resp->match_prev.mdep[idx]);
1627c1c61f44Ssb155480 }
16281ae08745Sheppo
16291ae08745Sheppo D1(vswp, "%s: exit", __func__);
16301ae08745Sheppo
16311ae08745Sheppo return (MDEG_SUCCESS);
16321ae08745Sheppo }
16331ae08745Sheppo
16341ae08745Sheppo /*
163519b65a69Ssb155480 * Scan the machine description for this instance of vsw
163619b65a69Ssb155480 * and read its properties. Called only from vsw_attach().
163719b65a69Ssb155480 * Returns: 0 on success, 1 on failure.
163819b65a69Ssb155480 */
163919b65a69Ssb155480 static int
vsw_read_mdprops(vsw_t * vswp)164019b65a69Ssb155480 vsw_read_mdprops(vsw_t *vswp)
164119b65a69Ssb155480 {
164219b65a69Ssb155480 md_t *mdp = NULL;
164319b65a69Ssb155480 mde_cookie_t rootnode;
164419b65a69Ssb155480 mde_cookie_t *listp = NULL;
164519b65a69Ssb155480 uint64_t inst;
164619b65a69Ssb155480 uint64_t cfgh;
164719b65a69Ssb155480 char *name;
164819b65a69Ssb155480 int rv = 1;
164919b65a69Ssb155480 int num_nodes = 0;
165019b65a69Ssb155480 int num_devs = 0;
165119b65a69Ssb155480 int listsz = 0;
165219b65a69Ssb155480 int i;
165319b65a69Ssb155480
165419b65a69Ssb155480 /*
165519b65a69Ssb155480 * In each 'virtual-device' node in the MD there is a
165619b65a69Ssb155480 * 'cfg-handle' property which is the MD's concept of
165719b65a69Ssb155480 * an instance number (this may be completely different from
165819b65a69Ssb155480 * the device drivers instance #). OBP reads that value and
165919b65a69Ssb155480 * stores it in the 'reg' property of the appropriate node in
166019b65a69Ssb155480 * the device tree. We first read this reg property and use this
166119b65a69Ssb155480 * to compare against the 'cfg-handle' property of vsw nodes
166219b65a69Ssb155480 * in MD to get to this specific vsw instance and then read
166319b65a69Ssb155480 * other properties that we are interested in.
166419b65a69Ssb155480 * We also cache the value of 'reg' property and use it later
166519b65a69Ssb155480 * to register callbacks with mdeg (see vsw_mdeg_register())
166619b65a69Ssb155480 */
166719b65a69Ssb155480 inst = ddi_prop_get_int(DDI_DEV_T_ANY, vswp->dip,
166819b65a69Ssb155480 DDI_PROP_DONTPASS, reg_propname, -1);
166919b65a69Ssb155480 if (inst == -1) {
167019b65a69Ssb155480 cmn_err(CE_NOTE, "!vsw%d: Unable to read %s property from "
167119b65a69Ssb155480 "OBP device tree", vswp->instance, reg_propname);
167219b65a69Ssb155480 return (rv);
167319b65a69Ssb155480 }
167419b65a69Ssb155480
167519b65a69Ssb155480 vswp->regprop = inst;
167619b65a69Ssb155480
167719b65a69Ssb155480 if ((mdp = md_get_handle()) == NULL) {
167819b65a69Ssb155480 DWARN(vswp, "%s: cannot init MD\n", __func__);
167919b65a69Ssb155480 return (rv);
168019b65a69Ssb155480 }
168119b65a69Ssb155480
168219b65a69Ssb155480 num_nodes = md_node_count(mdp);
168319b65a69Ssb155480 ASSERT(num_nodes > 0);
168419b65a69Ssb155480
168519b65a69Ssb155480 listsz = num_nodes * sizeof (mde_cookie_t);
168619b65a69Ssb155480 listp = (mde_cookie_t *)kmem_zalloc(listsz, KM_SLEEP);
168719b65a69Ssb155480
168819b65a69Ssb155480 rootnode = md_root_node(mdp);
168919b65a69Ssb155480
169019b65a69Ssb155480 /* search for all "virtual_device" nodes */
169119b65a69Ssb155480 num_devs = md_scan_dag(mdp, rootnode,
169219b65a69Ssb155480 md_find_name(mdp, vdev_propname),
169319b65a69Ssb155480 md_find_name(mdp, "fwd"), listp);
169419b65a69Ssb155480 if (num_devs <= 0) {
169519b65a69Ssb155480 DWARN(vswp, "%s: invalid num_devs:%d\n", __func__, num_devs);
169619b65a69Ssb155480 goto vsw_readmd_exit;
169719b65a69Ssb155480 }
169819b65a69Ssb155480
169919b65a69Ssb155480 /*
170019b65a69Ssb155480 * Now loop through the list of virtual-devices looking for
170119b65a69Ssb155480 * devices with name "virtual-network-switch" and for each
170219b65a69Ssb155480 * such device compare its instance with what we have from
170319b65a69Ssb155480 * the 'reg' property to find the right node in MD and then
170419b65a69Ssb155480 * read all its properties.
170519b65a69Ssb155480 */
170619b65a69Ssb155480 for (i = 0; i < num_devs; i++) {
170719b65a69Ssb155480
170819b65a69Ssb155480 if (md_get_prop_str(mdp, listp[i], "name", &name) != 0) {
170919b65a69Ssb155480 DWARN(vswp, "%s: name property not found\n",
171019b65a69Ssb155480 __func__);
171119b65a69Ssb155480 goto vsw_readmd_exit;
171219b65a69Ssb155480 }
171319b65a69Ssb155480
171419b65a69Ssb155480 /* is this a virtual-network-switch? */
171519b65a69Ssb155480 if (strcmp(name, vsw_propname) != 0)
171619b65a69Ssb155480 continue;
171719b65a69Ssb155480
171819b65a69Ssb155480 if (md_get_prop_val(mdp, listp[i], "cfg-handle", &cfgh) != 0) {
171919b65a69Ssb155480 DWARN(vswp, "%s: cfg-handle property not found\n",
172019b65a69Ssb155480 __func__);
172119b65a69Ssb155480 goto vsw_readmd_exit;
172219b65a69Ssb155480 }
172319b65a69Ssb155480
172419b65a69Ssb155480 /* is this the required instance of vsw? */
172519b65a69Ssb155480 if (inst != cfgh)
172619b65a69Ssb155480 continue;
172719b65a69Ssb155480
172819b65a69Ssb155480 /* now read all properties of this vsw instance */
172919b65a69Ssb155480 rv = vsw_get_initial_md_properties(vswp, mdp, listp[i]);
173019b65a69Ssb155480 break;
173119b65a69Ssb155480 }
173219b65a69Ssb155480
173319b65a69Ssb155480 vsw_readmd_exit:
173419b65a69Ssb155480
173519b65a69Ssb155480 kmem_free(listp, listsz);
173619b65a69Ssb155480 (void) md_fini_handle(mdp);
173719b65a69Ssb155480 return (rv);
173819b65a69Ssb155480 }
173919b65a69Ssb155480
174019b65a69Ssb155480 /*
174134683adeSsg70180 * Read the initial start-of-day values from the specified MD node.
174234683adeSsg70180 */
174319b65a69Ssb155480 static int
vsw_get_initial_md_properties(vsw_t * vswp,md_t * mdp,mde_cookie_t node)174434683adeSsg70180 vsw_get_initial_md_properties(vsw_t *vswp, md_t *mdp, mde_cookie_t node)
174534683adeSsg70180 {
174634683adeSsg70180 uint64_t macaddr = 0;
174734683adeSsg70180
174834683adeSsg70180 D1(vswp, "%s: enter", __func__);
174934683adeSsg70180
175019b65a69Ssb155480 if (vsw_get_md_physname(vswp, mdp, node, vswp->physname) != 0) {
175119b65a69Ssb155480 return (1);
175234683adeSsg70180 }
175334683adeSsg70180
175434683adeSsg70180 /* mac address for vswitch device itself */
175534683adeSsg70180 if (md_get_prop_val(mdp, node, macaddr_propname, &macaddr) != 0) {
175634683adeSsg70180 cmn_err(CE_WARN, "!vsw%d: Unable to get MAC address from MD",
175734683adeSsg70180 vswp->instance);
175819b65a69Ssb155480 return (1);
175919b65a69Ssb155480 }
176034683adeSsg70180
176119b65a69Ssb155480 vsw_save_lmacaddr(vswp, macaddr);
176234683adeSsg70180
1763da14cebeSEric Cheng if (vsw_get_md_smodes(vswp, mdp, node, &vswp->smode)) {
17641ef0bbb5Snarayan DWARN(vswp, "%s: Unable to read %s property from MD, "
17651ef0bbb5Snarayan "defaulting to 'switched' mode",
17661ef0bbb5Snarayan __func__, smode_propname);
176734683adeSsg70180
1768da14cebeSEric Cheng vswp->smode = VSW_LAYER2;
176934683adeSsg70180 }
177034683adeSsg70180
17711107ea93SSriharsha Basavapatna /*
17721107ea93SSriharsha Basavapatna * Read the 'linkprop' property to know if this
17731107ea93SSriharsha Basavapatna * vsw device wants to get physical link updates.
17741107ea93SSriharsha Basavapatna */
17751107ea93SSriharsha Basavapatna vsw_linkprop_read(vswp, mdp, node, &vswp->pls_update);
17761107ea93SSriharsha Basavapatna
17777b1f684aSSriharsha Basavapatna /* read mtu */
17787b1f684aSSriharsha Basavapatna vsw_mtu_read(vswp, mdp, node, &vswp->mtu);
17797b1f684aSSriharsha Basavapatna if (vswp->mtu < ETHERMTU || vswp->mtu > VNET_MAX_MTU) {
17807b1f684aSSriharsha Basavapatna vswp->mtu = ETHERMTU;
17817b1f684aSSriharsha Basavapatna }
17827b1f684aSSriharsha Basavapatna vswp->max_frame_size = vswp->mtu + sizeof (struct ether_header) +
17837b1f684aSSriharsha Basavapatna VLAN_TAGSZ;
17847b1f684aSSriharsha Basavapatna
1785c1c61f44Ssb155480 /* read vlan id properties of this vsw instance */
1786c1c61f44Ssb155480 vsw_vlan_read_ids(vswp, VSW_LOCALDEV, mdp, node, &vswp->pvid,
1787c1c61f44Ssb155480 &vswp->vids, &vswp->nvids, &vswp->default_vlan_id);
1788c1c61f44Ssb155480
1789c1c61f44Ssb155480 /* read priority-ether-types */
1790f0ca1d9aSsb155480 vsw_read_pri_eth_types(vswp, mdp, node);
1791f0ca1d9aSsb155480
1792bce0a86eSWENTAO YANG /* read bandwidth property of this vsw instance */
1793bce0a86eSWENTAO YANG vsw_bandwidth_read(vswp, mdp, node, &vswp->bandwidth);
1794bce0a86eSWENTAO YANG
179534683adeSsg70180 D1(vswp, "%s: exit", __func__);
179619b65a69Ssb155480 return (0);
179734683adeSsg70180 }
179834683adeSsg70180
179934683adeSsg70180 /*
1800c1c61f44Ssb155480 * Read vlan id properties of the given MD node.
1801c1c61f44Ssb155480 * Arguments:
1802c1c61f44Ssb155480 * arg: device argument(vsw device or a port)
1803c1c61f44Ssb155480 * type: type of arg; VSW_LOCALDEV(vsw device) or VSW_VNETPORT(port)
1804c1c61f44Ssb155480 * mdp: machine description
1805c1c61f44Ssb155480 * node: md node cookie
1806c1c61f44Ssb155480 *
1807c1c61f44Ssb155480 * Returns:
1808c1c61f44Ssb155480 * pvidp: port-vlan-id of the node
1809c1c61f44Ssb155480 * vidspp: list of vlan-ids of the node
1810c1c61f44Ssb155480 * nvidsp: # of vlan-ids in the list
1811c1c61f44Ssb155480 * default_idp: default-vlan-id of the node(if node is vsw device)
1812c1c61f44Ssb155480 */
1813c1c61f44Ssb155480 static void
vsw_vlan_read_ids(void * arg,int type,md_t * mdp,mde_cookie_t node,uint16_t * pvidp,vsw_vlanid_t ** vidspp,uint16_t * nvidsp,uint16_t * default_idp)1814c1c61f44Ssb155480 vsw_vlan_read_ids(void *arg, int type, md_t *mdp, mde_cookie_t node,
1815da14cebeSEric Cheng uint16_t *pvidp, vsw_vlanid_t **vidspp, uint16_t *nvidsp,
1816c1c61f44Ssb155480 uint16_t *default_idp)
1817c1c61f44Ssb155480 {
1818c1c61f44Ssb155480 vsw_t *vswp;
1819c1c61f44Ssb155480 vsw_port_t *portp;
1820c1c61f44Ssb155480 char *pvid_propname;
1821c1c61f44Ssb155480 char *vid_propname;
1822c1c61f44Ssb155480 uint_t nvids = 0;
1823c1c61f44Ssb155480 uint32_t vids_size;
1824c1c61f44Ssb155480 int rv;
1825c1c61f44Ssb155480 int i;
1826c1c61f44Ssb155480 uint64_t *data;
1827c1c61f44Ssb155480 uint64_t val;
1828c1c61f44Ssb155480 int size;
1829c1c61f44Ssb155480 int inst;
1830c1c61f44Ssb155480
1831c1c61f44Ssb155480 if (type == VSW_LOCALDEV) {
1832c1c61f44Ssb155480
1833c1c61f44Ssb155480 vswp = (vsw_t *)arg;
1834c1c61f44Ssb155480 pvid_propname = vsw_pvid_propname;
1835c1c61f44Ssb155480 vid_propname = vsw_vid_propname;
1836c1c61f44Ssb155480 inst = vswp->instance;
1837c1c61f44Ssb155480
1838c1c61f44Ssb155480 } else if (type == VSW_VNETPORT) {
1839c1c61f44Ssb155480
1840c1c61f44Ssb155480 portp = (vsw_port_t *)arg;
1841c1c61f44Ssb155480 vswp = portp->p_vswp;
1842c1c61f44Ssb155480 pvid_propname = port_pvid_propname;
1843c1c61f44Ssb155480 vid_propname = port_vid_propname;
1844c1c61f44Ssb155480 inst = portp->p_instance;
1845c1c61f44Ssb155480
1846c1c61f44Ssb155480 } else {
1847c1c61f44Ssb155480 return;
1848c1c61f44Ssb155480 }
1849c1c61f44Ssb155480
1850c1c61f44Ssb155480 if (type == VSW_LOCALDEV && default_idp != NULL) {
1851c1c61f44Ssb155480 rv = md_get_prop_val(mdp, node, vsw_dvid_propname, &val);
1852c1c61f44Ssb155480 if (rv != 0) {
1853c1c61f44Ssb155480 DWARN(vswp, "%s: prop(%s) not found", __func__,
1854c1c61f44Ssb155480 vsw_dvid_propname);
1855c1c61f44Ssb155480
1856c1c61f44Ssb155480 *default_idp = vsw_default_vlan_id;
1857c1c61f44Ssb155480 } else {
1858c1c61f44Ssb155480 *default_idp = val & 0xFFF;
1859c1c61f44Ssb155480 D2(vswp, "%s: %s(%d): (%d)\n", __func__,
1860c1c61f44Ssb155480 vsw_dvid_propname, inst, *default_idp);
1861c1c61f44Ssb155480 }
1862c1c61f44Ssb155480 }
1863c1c61f44Ssb155480
1864c1c61f44Ssb155480 rv = md_get_prop_val(mdp, node, pvid_propname, &val);
1865c1c61f44Ssb155480 if (rv != 0) {
1866c1c61f44Ssb155480 DWARN(vswp, "%s: prop(%s) not found", __func__, pvid_propname);
1867c1c61f44Ssb155480 *pvidp = vsw_default_vlan_id;
1868c1c61f44Ssb155480 } else {
1869c1c61f44Ssb155480
1870c1c61f44Ssb155480 *pvidp = val & 0xFFF;
1871c1c61f44Ssb155480 D2(vswp, "%s: %s(%d): (%d)\n", __func__,
1872c1c61f44Ssb155480 pvid_propname, inst, *pvidp);
1873c1c61f44Ssb155480 }
1874c1c61f44Ssb155480
1875c1c61f44Ssb155480 rv = md_get_prop_data(mdp, node, vid_propname, (uint8_t **)&data,
1876c1c61f44Ssb155480 &size);
1877c1c61f44Ssb155480 if (rv != 0) {
1878c1c61f44Ssb155480 D2(vswp, "%s: prop(%s) not found", __func__, vid_propname);
1879c1c61f44Ssb155480 size = 0;
1880c1c61f44Ssb155480 } else {
1881c1c61f44Ssb155480 size /= sizeof (uint64_t);
1882c1c61f44Ssb155480 }
1883c1c61f44Ssb155480 nvids = size;
1884c1c61f44Ssb155480
1885c1c61f44Ssb155480 if (nvids != 0) {
1886c1c61f44Ssb155480 D2(vswp, "%s: %s(%d): ", __func__, vid_propname, inst);
1887da14cebeSEric Cheng vids_size = sizeof (vsw_vlanid_t) * nvids;
1888c1c61f44Ssb155480 *vidspp = kmem_zalloc(vids_size, KM_SLEEP);
1889c1c61f44Ssb155480 for (i = 0; i < nvids; i++) {
1890da14cebeSEric Cheng (*vidspp)[i].vl_vid = data[i] & 0xFFFF;
1891da14cebeSEric Cheng (*vidspp)[i].vl_set = B_FALSE;
1892da14cebeSEric Cheng D2(vswp, " %d ", (*vidspp)[i].vl_vid);
1893c1c61f44Ssb155480 }
1894c1c61f44Ssb155480 D2(vswp, "\n");
1895c1c61f44Ssb155480 }
1896c1c61f44Ssb155480
1897c1c61f44Ssb155480 *nvidsp = nvids;
1898c1c61f44Ssb155480 }
1899c1c61f44Ssb155480
1900bce0a86eSWENTAO YANG static void
vsw_port_read_bandwidth(vsw_port_t * portp,md_t * mdp,mde_cookie_t node,uint64_t * bw)1901bce0a86eSWENTAO YANG vsw_port_read_bandwidth(vsw_port_t *portp, md_t *mdp, mde_cookie_t node,
1902bce0a86eSWENTAO YANG uint64_t *bw)
1903bce0a86eSWENTAO YANG {
1904bce0a86eSWENTAO YANG int rv;
1905bce0a86eSWENTAO YANG uint64_t val;
1906bce0a86eSWENTAO YANG vsw_t *vswp;
1907bce0a86eSWENTAO YANG
1908bce0a86eSWENTAO YANG vswp = portp->p_vswp;
1909bce0a86eSWENTAO YANG
1910bce0a86eSWENTAO YANG rv = md_get_prop_val(mdp, node, port_maxbw_propname, &val);
1911bce0a86eSWENTAO YANG
1912bce0a86eSWENTAO YANG if (rv != 0) {
1913bce0a86eSWENTAO YANG *bw = 0;
1914bce0a86eSWENTAO YANG D3(vswp, "%s: prop(%s) not found\n", __func__,
1915bce0a86eSWENTAO YANG port_maxbw_propname);
1916bce0a86eSWENTAO YANG } else {
1917bce0a86eSWENTAO YANG *bw = val;
1918bce0a86eSWENTAO YANG D3(vswp, "%s: %s nodes found", __func__, port_maxbw_propname);
1919bce0a86eSWENTAO YANG }
1920bce0a86eSWENTAO YANG }
1921bce0a86eSWENTAO YANG
1922c1c61f44Ssb155480 /*
1923f0ca1d9aSsb155480 * This function reads "priority-ether-types" property from md. This property
1924f0ca1d9aSsb155480 * is used to enable support for priority frames. Applications which need
1925f0ca1d9aSsb155480 * guaranteed and timely delivery of certain high priority frames to/from
1926f0ca1d9aSsb155480 * a vnet or vsw within ldoms, should configure this property by providing
1927f0ca1d9aSsb155480 * the ether type(s) for which the priority facility is needed.
1928f0ca1d9aSsb155480 * Normal data frames are delivered over a ldc channel using the descriptor
1929f0ca1d9aSsb155480 * ring mechanism which is constrained by factors such as descriptor ring size,
1930f0ca1d9aSsb155480 * the rate at which the ring is processed at the peer ldc end point, etc.
1931f0ca1d9aSsb155480 * The priority mechanism provides an Out-Of-Band path to send/receive frames
1932f0ca1d9aSsb155480 * as raw pkt data (VIO_PKT_DATA) messages over the channel, avoiding the
1933f0ca1d9aSsb155480 * descriptor ring path and enables a more reliable and timely delivery of
1934f0ca1d9aSsb155480 * frames to the peer.
1935f0ca1d9aSsb155480 */
1936f0ca1d9aSsb155480 static void
vsw_read_pri_eth_types(vsw_t * vswp,md_t * mdp,mde_cookie_t node)1937f0ca1d9aSsb155480 vsw_read_pri_eth_types(vsw_t *vswp, md_t *mdp, mde_cookie_t node)
1938f0ca1d9aSsb155480 {
1939f0ca1d9aSsb155480 int rv;
1940f0ca1d9aSsb155480 uint16_t *types;
1941f0ca1d9aSsb155480 uint64_t *data;
1942f0ca1d9aSsb155480 int size;
1943f0ca1d9aSsb155480 int i;
1944f0ca1d9aSsb155480 size_t mblk_sz;
1945f0ca1d9aSsb155480
1946f0ca1d9aSsb155480 rv = md_get_prop_data(mdp, node, pri_types_propname,
1947f0ca1d9aSsb155480 (uint8_t **)&data, &size);
1948f0ca1d9aSsb155480 if (rv != 0) {
1949f0ca1d9aSsb155480 /*
1950f0ca1d9aSsb155480 * Property may not exist if we are running pre-ldoms1.1 f/w.
1951f0ca1d9aSsb155480 * Check if 'vsw_pri_eth_type' has been set in that case.
1952f0ca1d9aSsb155480 */
1953f0ca1d9aSsb155480 if (vsw_pri_eth_type != 0) {
1954f0ca1d9aSsb155480 size = sizeof (vsw_pri_eth_type);
1955f0ca1d9aSsb155480 data = &vsw_pri_eth_type;
1956f0ca1d9aSsb155480 } else {
1957f0ca1d9aSsb155480 D3(vswp, "%s: prop(%s) not found", __func__,
1958f0ca1d9aSsb155480 pri_types_propname);
1959f0ca1d9aSsb155480 size = 0;
1960f0ca1d9aSsb155480 }
1961f0ca1d9aSsb155480 }
1962f0ca1d9aSsb155480
1963f0ca1d9aSsb155480 if (size == 0) {
1964f0ca1d9aSsb155480 vswp->pri_num_types = 0;
1965f0ca1d9aSsb155480 return;
1966f0ca1d9aSsb155480 }
1967f0ca1d9aSsb155480
1968f0ca1d9aSsb155480 /*
1969f0ca1d9aSsb155480 * we have some priority-ether-types defined;
1970f0ca1d9aSsb155480 * allocate a table of these types and also
1971f0ca1d9aSsb155480 * allocate a pool of mblks to transmit these
1972f0ca1d9aSsb155480 * priority packets.
1973f0ca1d9aSsb155480 */
1974f0ca1d9aSsb155480 size /= sizeof (uint64_t);
1975f0ca1d9aSsb155480 vswp->pri_num_types = size;
1976f0ca1d9aSsb155480 vswp->pri_types = kmem_zalloc(size * sizeof (uint16_t), KM_SLEEP);
1977f0ca1d9aSsb155480 for (i = 0, types = vswp->pri_types; i < size; i++) {
1978f0ca1d9aSsb155480 types[i] = data[i] & 0xFFFF;
1979f0ca1d9aSsb155480 }
1980f0ca1d9aSsb155480 mblk_sz = (VIO_PKT_DATA_HDRSIZE + ETHERMAX + 7) & ~7;
19817bd3a2e2SSriharsha Basavapatna (void) vio_create_mblks(vsw_pri_tx_nmblks, mblk_sz, NULL,
19827bd3a2e2SSriharsha Basavapatna &vswp->pri_tx_vmp);
1983f0ca1d9aSsb155480 }
1984f0ca1d9aSsb155480
19857b1f684aSSriharsha Basavapatna static void
vsw_mtu_read(vsw_t * vswp,md_t * mdp,mde_cookie_t node,uint32_t * mtu)19867b1f684aSSriharsha Basavapatna vsw_mtu_read(vsw_t *vswp, md_t *mdp, mde_cookie_t node, uint32_t *mtu)
19877b1f684aSSriharsha Basavapatna {
19887b1f684aSSriharsha Basavapatna int rv;
19897b1f684aSSriharsha Basavapatna int inst;
19907b1f684aSSriharsha Basavapatna uint64_t val;
19917b1f684aSSriharsha Basavapatna char *mtu_propname;
19927b1f684aSSriharsha Basavapatna
19937b1f684aSSriharsha Basavapatna mtu_propname = vsw_mtu_propname;
19947b1f684aSSriharsha Basavapatna inst = vswp->instance;
19957b1f684aSSriharsha Basavapatna
19967b1f684aSSriharsha Basavapatna rv = md_get_prop_val(mdp, node, mtu_propname, &val);
19977b1f684aSSriharsha Basavapatna if (rv != 0) {
19987b1f684aSSriharsha Basavapatna D3(vswp, "%s: prop(%s) not found", __func__, mtu_propname);
19997b1f684aSSriharsha Basavapatna *mtu = vsw_ethermtu;
20007b1f684aSSriharsha Basavapatna } else {
20017b1f684aSSriharsha Basavapatna
20027b1f684aSSriharsha Basavapatna *mtu = val & 0xFFFF;
20037b1f684aSSriharsha Basavapatna D2(vswp, "%s: %s(%d): (%d)\n", __func__,
20047b1f684aSSriharsha Basavapatna mtu_propname, inst, *mtu);
20057b1f684aSSriharsha Basavapatna }
20067b1f684aSSriharsha Basavapatna }
20077b1f684aSSriharsha Basavapatna
20087b1f684aSSriharsha Basavapatna /*
20097b1f684aSSriharsha Basavapatna * Update the mtu of the vsw device. We first check if the device has been
20107b1f684aSSriharsha Basavapatna * plumbed and if so fail the mtu update. Otherwise, we continue to update the
20117b1f684aSSriharsha Basavapatna * new mtu and reset all ports to initiate handshake re-negotiation with peers
20127b1f684aSSriharsha Basavapatna * using the new mtu.
20137b1f684aSSriharsha Basavapatna */
20147b1f684aSSriharsha Basavapatna static int
vsw_mtu_update(vsw_t * vswp,uint32_t mtu)20157b1f684aSSriharsha Basavapatna vsw_mtu_update(vsw_t *vswp, uint32_t mtu)
20167b1f684aSSriharsha Basavapatna {
20177b1f684aSSriharsha Basavapatna int rv;
20187b1f684aSSriharsha Basavapatna
20197b1f684aSSriharsha Basavapatna WRITE_ENTER(&vswp->if_lockrw);
20207b1f684aSSriharsha Basavapatna
20217b1f684aSSriharsha Basavapatna if (vswp->if_state & VSW_IF_UP) {
20227b1f684aSSriharsha Basavapatna
20237b1f684aSSriharsha Basavapatna RW_EXIT(&vswp->if_lockrw);
20247b1f684aSSriharsha Basavapatna
20257b1f684aSSriharsha Basavapatna cmn_err(CE_NOTE, "!vsw%d: Unable to process mtu update"
20267b1f684aSSriharsha Basavapatna " as the device is plumbed\n", vswp->instance);
20277b1f684aSSriharsha Basavapatna return (EBUSY);
20287b1f684aSSriharsha Basavapatna
20297b1f684aSSriharsha Basavapatna } else {
20307b1f684aSSriharsha Basavapatna
20317b1f684aSSriharsha Basavapatna D2(vswp, "%s: curr_mtu(%d) new_mtu(%d)\n",
20327b1f684aSSriharsha Basavapatna __func__, vswp->mtu, mtu);
20337b1f684aSSriharsha Basavapatna
20347b1f684aSSriharsha Basavapatna vswp->mtu = mtu;
20357b1f684aSSriharsha Basavapatna vswp->max_frame_size = vswp->mtu +
20367b1f684aSSriharsha Basavapatna sizeof (struct ether_header) + VLAN_TAGSZ;
20377b1f684aSSriharsha Basavapatna
20387b1f684aSSriharsha Basavapatna rv = mac_maxsdu_update(vswp->if_mh, mtu);
20397b1f684aSSriharsha Basavapatna if (rv != 0) {
20407b1f684aSSriharsha Basavapatna cmn_err(CE_NOTE,
20417b1f684aSSriharsha Basavapatna "!vsw%d: Unable to update mtu with mac"
20427b1f684aSSriharsha Basavapatna " layer\n", vswp->instance);
20437b1f684aSSriharsha Basavapatna }
20447b1f684aSSriharsha Basavapatna
20457b1f684aSSriharsha Basavapatna RW_EXIT(&vswp->if_lockrw);
20467b1f684aSSriharsha Basavapatna
20477b1f684aSSriharsha Basavapatna /* Reset ports to renegotiate with the new mtu */
20487b1f684aSSriharsha Basavapatna vsw_reset_ports(vswp);
20497b1f684aSSriharsha Basavapatna
20507b1f684aSSriharsha Basavapatna }
20517b1f684aSSriharsha Basavapatna
20527b1f684aSSriharsha Basavapatna return (0);
20537b1f684aSSriharsha Basavapatna }
20547b1f684aSSriharsha Basavapatna
20551107ea93SSriharsha Basavapatna static void
vsw_linkprop_read(vsw_t * vswp,md_t * mdp,mde_cookie_t node,boolean_t * pls)20561107ea93SSriharsha Basavapatna vsw_linkprop_read(vsw_t *vswp, md_t *mdp, mde_cookie_t node,
20571107ea93SSriharsha Basavapatna boolean_t *pls)
20581107ea93SSriharsha Basavapatna {
20591107ea93SSriharsha Basavapatna int rv;
20601107ea93SSriharsha Basavapatna uint64_t val;
20611107ea93SSriharsha Basavapatna char *linkpropname;
20621107ea93SSriharsha Basavapatna
20631107ea93SSriharsha Basavapatna linkpropname = vsw_linkprop_propname;
20641107ea93SSriharsha Basavapatna
20651107ea93SSriharsha Basavapatna rv = md_get_prop_val(mdp, node, linkpropname, &val);
20661107ea93SSriharsha Basavapatna if (rv != 0) {
20671107ea93SSriharsha Basavapatna D3(vswp, "%s: prop(%s) not found", __func__, linkpropname);
20681107ea93SSriharsha Basavapatna *pls = B_FALSE;
20691107ea93SSriharsha Basavapatna } else {
20701107ea93SSriharsha Basavapatna
20711107ea93SSriharsha Basavapatna *pls = (val & 0x1) ? B_TRUE : B_FALSE;
20721107ea93SSriharsha Basavapatna D2(vswp, "%s: %s(%d): (%d)\n", __func__, linkpropname,
20731107ea93SSriharsha Basavapatna vswp->instance, *pls);
20741107ea93SSriharsha Basavapatna }
20751107ea93SSriharsha Basavapatna }
20761107ea93SSriharsha Basavapatna
2077d8a518c8SSriharsha Basavapatna void
vsw_mac_link_update(vsw_t * vswp,link_state_t link_state)20781107ea93SSriharsha Basavapatna vsw_mac_link_update(vsw_t *vswp, link_state_t link_state)
20791107ea93SSriharsha Basavapatna {
20801107ea93SSriharsha Basavapatna READ_ENTER(&vswp->if_lockrw);
20811107ea93SSriharsha Basavapatna
2082d8a518c8SSriharsha Basavapatna if (vswp->if_state & VSW_IF_REG) {
20831107ea93SSriharsha Basavapatna mac_link_update(vswp->if_mh, link_state);
20841107ea93SSriharsha Basavapatna }
20851107ea93SSriharsha Basavapatna
2086d8a518c8SSriharsha Basavapatna RW_EXIT(&vswp->if_lockrw);
2087d8a518c8SSriharsha Basavapatna }
2088d8a518c8SSriharsha Basavapatna
20891107ea93SSriharsha Basavapatna void
vsw_physlink_state_update(vsw_t * vswp)20901107ea93SSriharsha Basavapatna vsw_physlink_state_update(vsw_t *vswp)
20911107ea93SSriharsha Basavapatna {
20921107ea93SSriharsha Basavapatna if (vswp->pls_update == B_TRUE) {
20931107ea93SSriharsha Basavapatna vsw_mac_link_update(vswp, vswp->phys_link_state);
20941107ea93SSriharsha Basavapatna }
20951107ea93SSriharsha Basavapatna vsw_physlink_update_ports(vswp);
20961107ea93SSriharsha Basavapatna }
20971107ea93SSriharsha Basavapatna
2098bce0a86eSWENTAO YANG static void
vsw_bandwidth_read(vsw_t * vswp,md_t * mdp,mde_cookie_t node,uint64_t * bw)2099bce0a86eSWENTAO YANG vsw_bandwidth_read(vsw_t *vswp, md_t *mdp, mde_cookie_t node, uint64_t *bw)
2100bce0a86eSWENTAO YANG {
2101bce0a86eSWENTAO YANG /* read the vsw bandwidth from md */
2102bce0a86eSWENTAO YANG int rv;
2103bce0a86eSWENTAO YANG uint64_t val;
2104bce0a86eSWENTAO YANG
2105bce0a86eSWENTAO YANG rv = md_get_prop_val(mdp, node, vsw_maxbw_propname, &val);
2106bce0a86eSWENTAO YANG if (rv != 0) {
2107bce0a86eSWENTAO YANG *bw = 0;
2108bce0a86eSWENTAO YANG D3(vswp, "%s: prop(%s) not found", __func__,
2109bce0a86eSWENTAO YANG vsw_maxbw_propname);
2110bce0a86eSWENTAO YANG } else {
2111bce0a86eSWENTAO YANG *bw = val;
2112bce0a86eSWENTAO YANG D3(vswp, "%s: %s(%d): (%ld)\n", __func__,
2113bce0a86eSWENTAO YANG vsw_maxbw_propname, vswp->instance, *bw);
2114bce0a86eSWENTAO YANG }
2115bce0a86eSWENTAO YANG }
2116bce0a86eSWENTAO YANG
2117f0ca1d9aSsb155480 /*
211834683adeSsg70180 * Check to see if the relevant properties in the specified node have
211934683adeSsg70180 * changed, and if so take the appropriate action.
212034683adeSsg70180 *
212134683adeSsg70180 * If any of the properties are missing or invalid we don't take
212234683adeSsg70180 * any action, as this function should only be invoked when modifications
212334683adeSsg70180 * have been made to what we assume is a working configuration, which
212434683adeSsg70180 * we leave active.
212534683adeSsg70180 *
212634683adeSsg70180 * Note it is legal for this routine to be invoked even if none of the
212734683adeSsg70180 * properties in the port node within the MD have actually changed.
212834683adeSsg70180 */
212934683adeSsg70180 static void
vsw_update_md_prop(vsw_t * vswp,md_t * mdp,mde_cookie_t node)213034683adeSsg70180 vsw_update_md_prop(vsw_t *vswp, md_t *mdp, mde_cookie_t node)
213134683adeSsg70180 {
213234683adeSsg70180 char physname[LIFNAMSIZ];
213334683adeSsg70180 char drv[LIFNAMSIZ];
213434683adeSsg70180 uint_t ddi_instance;
2135da14cebeSEric Cheng uint8_t new_smode;
2136da14cebeSEric Cheng int i;
213734683adeSsg70180 uint64_t macaddr = 0;
213834683adeSsg70180 enum {MD_init = 0x1,
213934683adeSsg70180 MD_physname = 0x2,
214034683adeSsg70180 MD_macaddr = 0x4,
2141c1c61f44Ssb155480 MD_smode = 0x8,
21427b1f684aSSriharsha Basavapatna MD_vlans = 0x10,
21431107ea93SSriharsha Basavapatna MD_mtu = 0x20,
2144bce0a86eSWENTAO YANG MD_pls = 0x40,
2145bce0a86eSWENTAO YANG MD_bw = 0x80} updated;
214619b65a69Ssb155480 int rv;
2147c1c61f44Ssb155480 uint16_t pvid;
2148da14cebeSEric Cheng vsw_vlanid_t *vids;
2149c1c61f44Ssb155480 uint16_t nvids;
21507b1f684aSSriharsha Basavapatna uint32_t mtu;
21511107ea93SSriharsha Basavapatna boolean_t pls_update;
2152bce0a86eSWENTAO YANG uint64_t maxbw;
215334683adeSsg70180
215434683adeSsg70180 updated = MD_init;
215534683adeSsg70180
215634683adeSsg70180 D1(vswp, "%s: enter", __func__);
215734683adeSsg70180
215834683adeSsg70180 /*
215934683adeSsg70180 * Check if name of physical device in MD has changed.
216034683adeSsg70180 */
216134683adeSsg70180 if (vsw_get_md_physname(vswp, mdp, node, (char *)&physname) == 0) {
216234683adeSsg70180 /*
216334683adeSsg70180 * Do basic sanity check on new device name/instance,
216434683adeSsg70180 * if its non NULL. It is valid for the device name to
216534683adeSsg70180 * have changed from a non NULL to a NULL value, i.e.
216634683adeSsg70180 * the vsw is being changed to 'routed' mode.
216734683adeSsg70180 */
216834683adeSsg70180 if ((strlen(physname) != 0) &&
216919b65a69Ssb155480 (ddi_parse(physname, drv,
217019b65a69Ssb155480 &ddi_instance) != DDI_SUCCESS)) {
21711ef0bbb5Snarayan cmn_err(CE_WARN, "!vsw%d: physical device %s is not"
217234683adeSsg70180 " a valid device name/instance",
217334683adeSsg70180 vswp->instance, physname);
217434683adeSsg70180 goto fail_reconf;
217534683adeSsg70180 }
217634683adeSsg70180
217734683adeSsg70180 if (strcmp(physname, vswp->physname)) {
217834683adeSsg70180 D2(vswp, "%s: device name changed from %s to %s",
217934683adeSsg70180 __func__, vswp->physname, physname);
218034683adeSsg70180
218134683adeSsg70180 updated |= MD_physname;
218234683adeSsg70180 } else {
218334683adeSsg70180 D2(vswp, "%s: device name unchanged at %s",
218434683adeSsg70180 __func__, vswp->physname);
218534683adeSsg70180 }
218634683adeSsg70180 } else {
218734683adeSsg70180 cmn_err(CE_WARN, "!vsw%d: Unable to read name of physical "
218834683adeSsg70180 "device from updated MD.", vswp->instance);
218934683adeSsg70180 goto fail_reconf;
219034683adeSsg70180 }
219134683adeSsg70180
219234683adeSsg70180 /*
219334683adeSsg70180 * Check if MAC address has changed.
219434683adeSsg70180 */
219534683adeSsg70180 if (md_get_prop_val(mdp, node, macaddr_propname, &macaddr) != 0) {
219634683adeSsg70180 cmn_err(CE_WARN, "!vsw%d: Unable to get MAC address from MD",
219734683adeSsg70180 vswp->instance);
219834683adeSsg70180 goto fail_reconf;
219934683adeSsg70180 } else {
220019b65a69Ssb155480 uint64_t maddr = macaddr;
220134683adeSsg70180 READ_ENTER(&vswp->if_lockrw);
220234683adeSsg70180 for (i = ETHERADDRL - 1; i >= 0; i--) {
220319b65a69Ssb155480 if (vswp->if_addr.ether_addr_octet[i]
220419b65a69Ssb155480 != (macaddr & 0xFF)) {
220534683adeSsg70180 D2(vswp, "%s: octet[%d] 0x%x != 0x%x",
220634683adeSsg70180 __func__, i,
220734683adeSsg70180 vswp->if_addr.ether_addr_octet[i],
220834683adeSsg70180 (macaddr & 0xFF));
220934683adeSsg70180 updated |= MD_macaddr;
221019b65a69Ssb155480 macaddr = maddr;
221134683adeSsg70180 break;
221234683adeSsg70180 }
221334683adeSsg70180 macaddr >>= 8;
221434683adeSsg70180 }
221534683adeSsg70180 RW_EXIT(&vswp->if_lockrw);
221619b65a69Ssb155480 if (updated & MD_macaddr) {
221719b65a69Ssb155480 vsw_save_lmacaddr(vswp, macaddr);
221819b65a69Ssb155480 }
221934683adeSsg70180 }
222034683adeSsg70180
222134683adeSsg70180 /*
222234683adeSsg70180 * Check if switching modes have changed.
222334683adeSsg70180 */
2224da14cebeSEric Cheng if (vsw_get_md_smodes(vswp, mdp, node, &new_smode)) {
222534683adeSsg70180 cmn_err(CE_WARN, "!vsw%d: Unable to read %s property from MD",
222634683adeSsg70180 vswp->instance, smode_propname);
222734683adeSsg70180 goto fail_reconf;
222834683adeSsg70180 } else {
2229da14cebeSEric Cheng if (new_smode != vswp->smode) {
2230da14cebeSEric Cheng D2(vswp, "%s: switching mode changed from %d to %d",
2231da14cebeSEric Cheng __func__, vswp->smode, new_smode);
223234683adeSsg70180
223334683adeSsg70180 updated |= MD_smode;
223434683adeSsg70180 }
223534683adeSsg70180 }
223634683adeSsg70180
2237c1c61f44Ssb155480 /* Read the vlan ids */
2238c1c61f44Ssb155480 vsw_vlan_read_ids(vswp, VSW_LOCALDEV, mdp, node, &pvid, &vids,
2239c1c61f44Ssb155480 &nvids, NULL);
2240c1c61f44Ssb155480
2241c1c61f44Ssb155480 /* Determine if there are any vlan id updates */
2242c1c61f44Ssb155480 if ((pvid != vswp->pvid) || /* pvid changed? */
2243c1c61f44Ssb155480 (nvids != vswp->nvids) || /* # of vids changed? */
2244c1c61f44Ssb155480 ((nvids != 0) && (vswp->nvids != 0) && /* vids changed? */
2245da14cebeSEric Cheng !vsw_cmp_vids(vids, vswp->vids, nvids))) {
2246c1c61f44Ssb155480 updated |= MD_vlans;
2247c1c61f44Ssb155480 }
2248c1c61f44Ssb155480
22497b1f684aSSriharsha Basavapatna /* Read mtu */
22507b1f684aSSriharsha Basavapatna vsw_mtu_read(vswp, mdp, node, &mtu);
22517b1f684aSSriharsha Basavapatna if (mtu != vswp->mtu) {
22527b1f684aSSriharsha Basavapatna if (mtu >= ETHERMTU && mtu <= VNET_MAX_MTU) {
22537b1f684aSSriharsha Basavapatna updated |= MD_mtu;
22547b1f684aSSriharsha Basavapatna } else {
22557b1f684aSSriharsha Basavapatna cmn_err(CE_NOTE, "!vsw%d: Unable to process mtu update"
22567b1f684aSSriharsha Basavapatna " as the specified value:%d is invalid\n",
22577b1f684aSSriharsha Basavapatna vswp->instance, mtu);
22587b1f684aSSriharsha Basavapatna }
22597b1f684aSSriharsha Basavapatna }
22607b1f684aSSriharsha Basavapatna
226134683adeSsg70180 /*
22621107ea93SSriharsha Basavapatna * Read the 'linkprop' property.
22631107ea93SSriharsha Basavapatna */
22641107ea93SSriharsha Basavapatna vsw_linkprop_read(vswp, mdp, node, &pls_update);
22651107ea93SSriharsha Basavapatna if (pls_update != vswp->pls_update) {
22661107ea93SSriharsha Basavapatna updated |= MD_pls;
22671107ea93SSriharsha Basavapatna }
22681107ea93SSriharsha Basavapatna
2269bce0a86eSWENTAO YANG /* Read bandwidth */
2270bce0a86eSWENTAO YANG vsw_bandwidth_read(vswp, mdp, node, &maxbw);
2271bce0a86eSWENTAO YANG if (maxbw != vswp->bandwidth) {
2272bce0a86eSWENTAO YANG if (maxbw >= MRP_MAXBW_MINVAL || maxbw == 0) {
2273bce0a86eSWENTAO YANG updated |= MD_bw;
2274bce0a86eSWENTAO YANG } else {
2275bce0a86eSWENTAO YANG cmn_err(CE_NOTE, "!vsw%d: Unable to process bandwidth"
2276bce0a86eSWENTAO YANG " update as the specified value:%ld is invalid\n",
2277bce0a86eSWENTAO YANG vswp->instance, maxbw);
2278bce0a86eSWENTAO YANG }
2279bce0a86eSWENTAO YANG }
2280bce0a86eSWENTAO YANG
22811107ea93SSriharsha Basavapatna /*
228234683adeSsg70180 * Now make any changes which are needed...
228334683adeSsg70180 */
22841107ea93SSriharsha Basavapatna if (updated & MD_pls) {
22851107ea93SSriharsha Basavapatna
22861107ea93SSriharsha Basavapatna /* save the updated property. */
22871107ea93SSriharsha Basavapatna vswp->pls_update = pls_update;
22881107ea93SSriharsha Basavapatna
22891107ea93SSriharsha Basavapatna if (pls_update == B_FALSE) {
22901107ea93SSriharsha Basavapatna /*
22911107ea93SSriharsha Basavapatna * Phys link state update is now disabled for this vsw
22921107ea93SSriharsha Basavapatna * interface. If we had previously reported a link-down
22931107ea93SSriharsha Basavapatna * to the stack, undo that by sending a link-up.
22941107ea93SSriharsha Basavapatna */
22951107ea93SSriharsha Basavapatna if (vswp->phys_link_state == LINK_STATE_DOWN) {
22961107ea93SSriharsha Basavapatna vsw_mac_link_update(vswp, LINK_STATE_UP);
22971107ea93SSriharsha Basavapatna }
22981107ea93SSriharsha Basavapatna } else {
22991107ea93SSriharsha Basavapatna /*
23001107ea93SSriharsha Basavapatna * Phys link state update is now enabled. Send up an
23011107ea93SSriharsha Basavapatna * update based on the current phys link state.
23021107ea93SSriharsha Basavapatna */
2303d8a518c8SSriharsha Basavapatna if (vswp->smode & VSW_LAYER2) {
2304d8a518c8SSriharsha Basavapatna vsw_mac_link_update(vswp,
2305d8a518c8SSriharsha Basavapatna vswp->phys_link_state);
2306d8a518c8SSriharsha Basavapatna }
23071107ea93SSriharsha Basavapatna }
23081107ea93SSriharsha Basavapatna
23091107ea93SSriharsha Basavapatna }
231034683adeSsg70180
2311da14cebeSEric Cheng if (updated & (MD_physname | MD_smode | MD_mtu)) {
231234683adeSsg70180
231334683adeSsg70180 /*
2314808f26a8SSriharsha Basavapatna * Stop any pending thread to setup switching mode.
231534683adeSsg70180 */
2316808f26a8SSriharsha Basavapatna vsw_setup_switching_stop(vswp);
231719b65a69Ssb155480
2318678453a8Sspeer /* Cleanup HybridIO */
2319678453a8Sspeer vsw_hio_cleanup(vswp);
2320678453a8Sspeer
232119b65a69Ssb155480 /*
232219b65a69Ssb155480 * Remove unicst, mcst addrs of vsw interface
2323da14cebeSEric Cheng * and ports from the physdev. This also closes
2324da14cebeSEric Cheng * the corresponding mac clients.
232519b65a69Ssb155480 */
232619b65a69Ssb155480 vsw_unset_addrs(vswp);
232719b65a69Ssb155480
232819b65a69Ssb155480 /*
232919b65a69Ssb155480 * Stop, detach and close the old device..
233019b65a69Ssb155480 */
2331da14cebeSEric Cheng mutex_enter(&vswp->mac_lock);
233219b65a69Ssb155480 vsw_mac_close(vswp);
2333da14cebeSEric Cheng mutex_exit(&vswp->mac_lock);
233434683adeSsg70180
233534683adeSsg70180 /*
233634683adeSsg70180 * Update phys name.
233734683adeSsg70180 */
233834683adeSsg70180 if (updated & MD_physname) {
233934683adeSsg70180 cmn_err(CE_NOTE, "!vsw%d: changing from %s to %s",
234034683adeSsg70180 vswp->instance, vswp->physname, physname);
234134683adeSsg70180 (void) strncpy(vswp->physname,
234234683adeSsg70180 physname, strlen(physname) + 1);
234334683adeSsg70180 }
234434683adeSsg70180
234534683adeSsg70180 /*
234634683adeSsg70180 * Update array with the new switch mode values.
234734683adeSsg70180 */
234834683adeSsg70180 if (updated & MD_smode) {
2349da14cebeSEric Cheng vswp->smode = new_smode;
2350da14cebeSEric Cheng }
235134683adeSsg70180
2352da14cebeSEric Cheng /* Update mtu */
2353da14cebeSEric Cheng if (updated & MD_mtu) {
2354da14cebeSEric Cheng rv = vsw_mtu_update(vswp, mtu);
2355da14cebeSEric Cheng if (rv != 0) {
2356da14cebeSEric Cheng goto fail_update;
2357da14cebeSEric Cheng }
235834683adeSsg70180 }
235934683adeSsg70180
236034683adeSsg70180 /*
236134683adeSsg70180 * ..and attach, start the new device.
236234683adeSsg70180 */
236319b65a69Ssb155480 rv = vsw_setup_switching(vswp);
236419b65a69Ssb155480 if (rv == EAGAIN) {
236519b65a69Ssb155480 /*
236619b65a69Ssb155480 * Unable to setup switching mode.
2367808f26a8SSriharsha Basavapatna * As the error is EAGAIN, schedule a thread to retry
236819b65a69Ssb155480 * and return. Programming addresses of ports and
2369808f26a8SSriharsha Basavapatna * vsw interface will be done by the thread when the
2370808f26a8SSriharsha Basavapatna * switching setup completes successfully.
237119b65a69Ssb155480 */
2372808f26a8SSriharsha Basavapatna if (vsw_setup_switching_start(vswp) != 0) {
2373808f26a8SSriharsha Basavapatna goto fail_update;
2374808f26a8SSriharsha Basavapatna }
237519b65a69Ssb155480 return;
237619b65a69Ssb155480
237719b65a69Ssb155480 } else if (rv) {
237834683adeSsg70180 goto fail_update;
237919b65a69Ssb155480 }
238034683adeSsg70180
2381d8a518c8SSriharsha Basavapatna vsw_setup_switching_post_process(vswp);
238219b65a69Ssb155480 } else if (updated & MD_macaddr) {
238319b65a69Ssb155480 /*
238419b65a69Ssb155480 * We enter here if only MD_macaddr is exclusively updated.
238519b65a69Ssb155480 * If MD_physname and/or MD_smode are also updated, then
238619b65a69Ssb155480 * as part of that, we would have implicitly processed
238719b65a69Ssb155480 * MD_macaddr update (above).
238819b65a69Ssb155480 */
238934683adeSsg70180 cmn_err(CE_NOTE, "!vsw%d: changing mac address to 0x%lx",
239034683adeSsg70180 vswp->instance, macaddr);
239134683adeSsg70180
239219b65a69Ssb155480 READ_ENTER(&vswp->if_lockrw);
239319b65a69Ssb155480 if (vswp->if_state & VSW_IF_UP) {
2394da14cebeSEric Cheng /* reconfigure with new address */
2395da14cebeSEric Cheng vsw_if_mac_reconfig(vswp, B_FALSE, 0, NULL, 0);
239634683adeSsg70180
23975f94e909Ssg70180 /*
239834683adeSsg70180 * Notify the MAC layer of the changed address.
239934683adeSsg70180 */
240019b65a69Ssb155480 mac_unicst_update(vswp->if_mh,
240119b65a69Ssb155480 (uint8_t *)&vswp->if_addr);
240219b65a69Ssb155480
240319b65a69Ssb155480 }
240419b65a69Ssb155480 RW_EXIT(&vswp->if_lockrw);
240519b65a69Ssb155480
240634683adeSsg70180 }
240734683adeSsg70180
2408c1c61f44Ssb155480 if (updated & MD_vlans) {
2409c1c61f44Ssb155480 /* Remove existing vlan ids from the hash table. */
2410c1c61f44Ssb155480 vsw_vlan_remove_ids(vswp, VSW_LOCALDEV);
2411c1c61f44Ssb155480
2412da14cebeSEric Cheng if (vswp->if_state & VSW_IF_UP) {
2413da14cebeSEric Cheng vsw_if_mac_reconfig(vswp, B_TRUE, pvid, vids, nvids);
2414da14cebeSEric Cheng } else {
2415c1c61f44Ssb155480 if (vswp->nvids != 0) {
2416da14cebeSEric Cheng kmem_free(vswp->vids,
2417da14cebeSEric Cheng sizeof (vsw_vlanid_t) * vswp->nvids);
2418c1c61f44Ssb155480 }
2419c1c61f44Ssb155480 vswp->vids = vids;
2420da14cebeSEric Cheng vswp->nvids = nvids;
2421da14cebeSEric Cheng vswp->pvid = pvid;
2422c1c61f44Ssb155480 }
2423c1c61f44Ssb155480
2424c1c61f44Ssb155480 /* add these new vlan ids into hash table */
2425c1c61f44Ssb155480 vsw_vlan_add_ids(vswp, VSW_LOCALDEV);
2426c1c61f44Ssb155480 } else {
2427c1c61f44Ssb155480 if (nvids != 0) {
2428da14cebeSEric Cheng kmem_free(vids, sizeof (vsw_vlanid_t) * nvids);
2429c1c61f44Ssb155480 }
2430c1c61f44Ssb155480 }
2431c1c61f44Ssb155480
2432bce0a86eSWENTAO YANG if (updated & MD_bw) {
2433bce0a86eSWENTAO YANG vsw_update_bandwidth(vswp, NULL, VSW_LOCALDEV, maxbw);
2434bce0a86eSWENTAO YANG }
2435bce0a86eSWENTAO YANG
243634683adeSsg70180 return;
243734683adeSsg70180
243834683adeSsg70180 fail_reconf:
243934683adeSsg70180 cmn_err(CE_WARN, "!vsw%d: configuration unchanged", vswp->instance);
244034683adeSsg70180 return;
244134683adeSsg70180
244234683adeSsg70180 fail_update:
24431ef0bbb5Snarayan cmn_err(CE_WARN, "!vsw%d: re-configuration failed",
244434683adeSsg70180 vswp->instance);
244534683adeSsg70180 }
244634683adeSsg70180
244734683adeSsg70180 /*
2448c1c61f44Ssb155480 * Read the port's md properties.
24491ae08745Sheppo */
2450c1c61f44Ssb155480 static int
vsw_port_read_props(vsw_port_t * portp,vsw_t * vswp,md_t * mdp,mde_cookie_t * node)2451c1c61f44Ssb155480 vsw_port_read_props(vsw_port_t *portp, vsw_t *vswp,
2452c1c61f44Ssb155480 md_t *mdp, mde_cookie_t *node)
24531ae08745Sheppo {
24541ae08745Sheppo uint64_t ldc_id;
24551ae08745Sheppo uint8_t *addrp;
24561ae08745Sheppo int i, addrsz;
24571ae08745Sheppo int num_nodes = 0, nchan = 0;
24581ae08745Sheppo int listsz = 0;
24591ae08745Sheppo mde_cookie_t *listp = NULL;
24601ae08745Sheppo struct ether_addr ea;
24611ae08745Sheppo uint64_t macaddr;
24621ae08745Sheppo uint64_t inst = 0;
2463678453a8Sspeer uint64_t val;
24641ae08745Sheppo
24651ae08745Sheppo if (md_get_prop_val(mdp, *node, id_propname, &inst)) {
24661ae08745Sheppo DWARN(vswp, "%s: prop(%s) not found", __func__,
24671ae08745Sheppo id_propname);
24681ae08745Sheppo return (1);
24691ae08745Sheppo }
24701ae08745Sheppo
24711ae08745Sheppo /*
24721ae08745Sheppo * Find the channel endpoint node(s) (which should be under this
24731ae08745Sheppo * port node) which contain the channel id(s).
24741ae08745Sheppo */
24751ae08745Sheppo if ((num_nodes = md_node_count(mdp)) <= 0) {
24761ae08745Sheppo DERR(vswp, "%s: invalid number of nodes found (%d)",
24771ae08745Sheppo __func__, num_nodes);
24781ae08745Sheppo return (1);
24791ae08745Sheppo }
24801ae08745Sheppo
248134683adeSsg70180 D2(vswp, "%s: %d nodes found", __func__, num_nodes);
248234683adeSsg70180
24831ae08745Sheppo /* allocate enough space for node list */
24841ae08745Sheppo listsz = num_nodes * sizeof (mde_cookie_t);
24851ae08745Sheppo listp = kmem_zalloc(listsz, KM_SLEEP);
24861ae08745Sheppo
2487205eeb1aSlm66018 nchan = md_scan_dag(mdp, *node, md_find_name(mdp, chan_propname),
24881ae08745Sheppo md_find_name(mdp, "fwd"), listp);
24891ae08745Sheppo
24901ae08745Sheppo if (nchan <= 0) {
24911ae08745Sheppo DWARN(vswp, "%s: no %s nodes found", __func__, chan_propname);
24921ae08745Sheppo kmem_free(listp, listsz);
24931ae08745Sheppo return (1);
24941ae08745Sheppo }
24951ae08745Sheppo
24961ae08745Sheppo D2(vswp, "%s: %d %s nodes found", __func__, nchan, chan_propname);
24971ae08745Sheppo
24981ae08745Sheppo /* use property from first node found */
24991ae08745Sheppo if (md_get_prop_val(mdp, listp[0], id_propname, &ldc_id)) {
25001ae08745Sheppo DWARN(vswp, "%s: prop(%s) not found\n", __func__,
25011ae08745Sheppo id_propname);
25021ae08745Sheppo kmem_free(listp, listsz);
25031ae08745Sheppo return (1);
25041ae08745Sheppo }
25051ae08745Sheppo
25061ae08745Sheppo /* don't need list any more */
25071ae08745Sheppo kmem_free(listp, listsz);
25081ae08745Sheppo
25091ae08745Sheppo D2(vswp, "%s: ldc_id 0x%llx", __func__, ldc_id);
25101ae08745Sheppo
25111ae08745Sheppo /* read mac-address property */
25121ae08745Sheppo if (md_get_prop_data(mdp, *node, remaddr_propname,
25131ae08745Sheppo &addrp, &addrsz)) {
25141ae08745Sheppo DWARN(vswp, "%s: prop(%s) not found",
25151ae08745Sheppo __func__, remaddr_propname);
25161ae08745Sheppo return (1);
25171ae08745Sheppo }
25181ae08745Sheppo
25191ae08745Sheppo if (addrsz < ETHERADDRL) {
25201ae08745Sheppo DWARN(vswp, "%s: invalid address size", __func__);
25211ae08745Sheppo return (1);
25221ae08745Sheppo }
25231ae08745Sheppo
25241ae08745Sheppo macaddr = *((uint64_t *)addrp);
25251ae08745Sheppo D2(vswp, "%s: remote mac address 0x%llx", __func__, macaddr);
25261ae08745Sheppo
25271ae08745Sheppo for (i = ETHERADDRL - 1; i >= 0; i--) {
25281ae08745Sheppo ea.ether_addr_octet[i] = macaddr & 0xFF;
25291ae08745Sheppo macaddr >>= 8;
25301ae08745Sheppo }
25311ae08745Sheppo
2532c1c61f44Ssb155480 /* now update all properties into the port */
2533c1c61f44Ssb155480 portp->p_vswp = vswp;
2534c1c61f44Ssb155480 portp->p_instance = inst;
2535da14cebeSEric Cheng portp->addr_set = B_FALSE;
2536c1c61f44Ssb155480 ether_copy(&ea, &portp->p_macaddr);
2537c1c61f44Ssb155480 if (nchan > VSW_PORT_MAX_LDCS) {
2538c1c61f44Ssb155480 D2(vswp, "%s: using first of %d ldc ids",
2539c1c61f44Ssb155480 __func__, nchan);
2540c1c61f44Ssb155480 nchan = VSW_PORT_MAX_LDCS;
2541c1c61f44Ssb155480 }
2542c1c61f44Ssb155480 portp->num_ldcs = nchan;
2543c1c61f44Ssb155480 portp->ldc_ids =
2544c1c61f44Ssb155480 kmem_zalloc(sizeof (uint64_t) * nchan, KM_SLEEP);
2545c1c61f44Ssb155480 bcopy(&ldc_id, (portp->ldc_ids), sizeof (uint64_t) * nchan);
2546c1c61f44Ssb155480
2547c1c61f44Ssb155480 /* read vlan id properties of this port node */
2548c1c61f44Ssb155480 vsw_vlan_read_ids(portp, VSW_VNETPORT, mdp, *node, &portp->pvid,
2549c1c61f44Ssb155480 &portp->vids, &portp->nvids, NULL);
2550c1c61f44Ssb155480
2551678453a8Sspeer /* Check if hybrid property is present */
2552678453a8Sspeer if (md_get_prop_val(mdp, *node, hybrid_propname, &val) == 0) {
2553678453a8Sspeer D1(vswp, "%s: prop(%s) found\n", __func__, hybrid_propname);
2554678453a8Sspeer portp->p_hio_enabled = B_TRUE;
2555678453a8Sspeer } else {
2556678453a8Sspeer portp->p_hio_enabled = B_FALSE;
2557678453a8Sspeer }
2558678453a8Sspeer /*
2559678453a8Sspeer * Port hio capability determined after version
2560678453a8Sspeer * negotiation, i.e., when we know the peer is HybridIO capable.
2561678453a8Sspeer */
2562678453a8Sspeer portp->p_hio_capable = B_FALSE;
2563bce0a86eSWENTAO YANG
2564bce0a86eSWENTAO YANG /* Read bandwidth of this port */
2565bce0a86eSWENTAO YANG vsw_port_read_bandwidth(portp, mdp, *node, &portp->p_bandwidth);
2566bce0a86eSWENTAO YANG
2567c1c61f44Ssb155480 return (0);
2568c1c61f44Ssb155480 }
2569c1c61f44Ssb155480
2570c1c61f44Ssb155480 /*
2571c1c61f44Ssb155480 * Add a new port to the system.
2572c1c61f44Ssb155480 *
2573c1c61f44Ssb155480 * Returns 0 on success, 1 on failure.
2574c1c61f44Ssb155480 */
2575c1c61f44Ssb155480 int
vsw_port_add(vsw_t * vswp,md_t * mdp,mde_cookie_t * node)2576c1c61f44Ssb155480 vsw_port_add(vsw_t *vswp, md_t *mdp, mde_cookie_t *node)
2577c1c61f44Ssb155480 {
2578c1c61f44Ssb155480 vsw_port_t *portp;
2579c1c61f44Ssb155480 int rv;
2580c1c61f44Ssb155480
2581c1c61f44Ssb155480 portp = kmem_zalloc(sizeof (vsw_port_t), KM_SLEEP);
2582c1c61f44Ssb155480
2583c1c61f44Ssb155480 rv = vsw_port_read_props(portp, vswp, mdp, node);
2584c1c61f44Ssb155480 if (rv != 0) {
2585c1c61f44Ssb155480 kmem_free(portp, sizeof (*portp));
2586c1c61f44Ssb155480 return (1);
2587c1c61f44Ssb155480 }
2588c1c61f44Ssb155480
2589c1c61f44Ssb155480 rv = vsw_port_attach(portp);
2590c1c61f44Ssb155480 if (rv != 0) {
25911ae08745Sheppo DERR(vswp, "%s: failed to attach port", __func__);
25921ae08745Sheppo return (1);
25931ae08745Sheppo }
25941ae08745Sheppo
2595c1c61f44Ssb155480 return (0);
2596c1c61f44Ssb155480 }
25971ae08745Sheppo
2598c1c61f44Ssb155480 static int
vsw_port_update(vsw_t * vswp,md_t * curr_mdp,mde_cookie_t curr_mdex,md_t * prev_mdp,mde_cookie_t prev_mdex)2599c1c61f44Ssb155480 vsw_port_update(vsw_t *vswp, md_t *curr_mdp, mde_cookie_t curr_mdex,
2600c1c61f44Ssb155480 md_t *prev_mdp, mde_cookie_t prev_mdex)
2601c1c61f44Ssb155480 {
2602c1c61f44Ssb155480 uint64_t cport_num;
2603c1c61f44Ssb155480 uint64_t pport_num;
2604c1c61f44Ssb155480 vsw_port_list_t *plistp;
2605c1c61f44Ssb155480 vsw_port_t *portp;
2606c1c61f44Ssb155480 uint16_t pvid;
2607da14cebeSEric Cheng vsw_vlanid_t *vids;
2608c1c61f44Ssb155480 uint16_t nvids;
2609678453a8Sspeer uint64_t val;
2610678453a8Sspeer boolean_t hio_enabled = B_FALSE;
2611bce0a86eSWENTAO YANG uint64_t maxbw;
2612bce0a86eSWENTAO YANG enum {P_MD_init = 0x1,
2613bce0a86eSWENTAO YANG P_MD_vlans = 0x2,
2614bce0a86eSWENTAO YANG P_MD_hio = 0x4,
2615bce0a86eSWENTAO YANG P_MD_maxbw = 0x8} updated;
2616bce0a86eSWENTAO YANG
2617bce0a86eSWENTAO YANG updated = P_MD_init;
2618c1c61f44Ssb155480
2619c1c61f44Ssb155480 /*
2620c1c61f44Ssb155480 * For now, we get port updates only if vlan ids changed.
2621c1c61f44Ssb155480 * We read the port num and do some sanity check.
2622c1c61f44Ssb155480 */
2623c1c61f44Ssb155480 if (md_get_prop_val(curr_mdp, curr_mdex, id_propname, &cport_num)) {
2624c1c61f44Ssb155480 return (1);
2625c1c61f44Ssb155480 }
2626c1c61f44Ssb155480
2627c1c61f44Ssb155480 if (md_get_prop_val(prev_mdp, prev_mdex, id_propname, &pport_num)) {
2628c1c61f44Ssb155480 return (1);
2629c1c61f44Ssb155480 }
2630c1c61f44Ssb155480 if (cport_num != pport_num)
2631c1c61f44Ssb155480 return (1);
2632c1c61f44Ssb155480
2633c1c61f44Ssb155480 plistp = &(vswp->plist);
2634c1c61f44Ssb155480
2635c1c61f44Ssb155480 READ_ENTER(&plistp->lockrw);
2636c1c61f44Ssb155480
2637c1c61f44Ssb155480 portp = vsw_lookup_port(vswp, cport_num);
2638c1c61f44Ssb155480 if (portp == NULL) {
2639c1c61f44Ssb155480 RW_EXIT(&plistp->lockrw);
2640c1c61f44Ssb155480 return (1);
2641c1c61f44Ssb155480 }
2642c1c61f44Ssb155480
2643c1c61f44Ssb155480 /* Read the vlan ids */
2644c1c61f44Ssb155480 vsw_vlan_read_ids(portp, VSW_VNETPORT, curr_mdp, curr_mdex, &pvid,
2645c1c61f44Ssb155480 &vids, &nvids, NULL);
2646c1c61f44Ssb155480
2647c1c61f44Ssb155480 /* Determine if there are any vlan id updates */
2648c1c61f44Ssb155480 if ((pvid != portp->pvid) || /* pvid changed? */
2649c1c61f44Ssb155480 (nvids != portp->nvids) || /* # of vids changed? */
2650c1c61f44Ssb155480 ((nvids != 0) && (portp->nvids != 0) && /* vids changed? */
2651da14cebeSEric Cheng !vsw_cmp_vids(vids, portp->vids, nvids))) {
2652bce0a86eSWENTAO YANG updated |= P_MD_vlans;
2653c1c61f44Ssb155480 }
2654c1c61f44Ssb155480
2655bce0a86eSWENTAO YANG /* Check if hybrid property is present */
2656bce0a86eSWENTAO YANG if (md_get_prop_val(curr_mdp, curr_mdex, hybrid_propname, &val) == 0) {
2657bce0a86eSWENTAO YANG D1(vswp, "%s: prop(%s) found\n", __func__, hybrid_propname);
2658bce0a86eSWENTAO YANG hio_enabled = B_TRUE;
2659bce0a86eSWENTAO YANG }
2660c1c61f44Ssb155480
2661bce0a86eSWENTAO YANG if (portp->p_hio_enabled != hio_enabled) {
2662bce0a86eSWENTAO YANG updated |= P_MD_hio;
2663bce0a86eSWENTAO YANG }
2664bce0a86eSWENTAO YANG
2665bce0a86eSWENTAO YANG /* Check if maxbw property is present */
2666bce0a86eSWENTAO YANG vsw_port_read_bandwidth(portp, curr_mdp, curr_mdex, &maxbw);
2667bce0a86eSWENTAO YANG if (maxbw != portp->p_bandwidth) {
2668bce0a86eSWENTAO YANG if (maxbw >= MRP_MAXBW_MINVAL || maxbw == 0) {
2669bce0a86eSWENTAO YANG updated |= P_MD_maxbw;
2670bce0a86eSWENTAO YANG } else {
2671bce0a86eSWENTAO YANG cmn_err(CE_NOTE, "!vsw%d: Unable to process bandwidth"
2672bce0a86eSWENTAO YANG " update for port %d as the specified value:%ld"
2673bce0a86eSWENTAO YANG " is invalid\n",
2674bce0a86eSWENTAO YANG vswp->instance, portp->p_instance, maxbw);
2675bce0a86eSWENTAO YANG }
2676bce0a86eSWENTAO YANG }
2677bce0a86eSWENTAO YANG
2678bce0a86eSWENTAO YANG if (updated & P_MD_vlans) {
2679c1c61f44Ssb155480 /* Remove existing vlan ids from the hash table. */
2680c1c61f44Ssb155480 vsw_vlan_remove_ids(portp, VSW_VNETPORT);
2681c1c61f44Ssb155480
2682da14cebeSEric Cheng /* Reconfigure vlans with network device */
2683da14cebeSEric Cheng vsw_mac_port_reconfig_vlans(portp, pvid, vids, nvids);
2684c1c61f44Ssb155480
2685c1c61f44Ssb155480 /* add these new vlan ids into hash table */
2686c1c61f44Ssb155480 vsw_vlan_add_ids(portp, VSW_VNETPORT);
2687c1c61f44Ssb155480
2688c1c61f44Ssb155480 /* reset the port if it is vlan unaware (ver < 1.3) */
2689c1c61f44Ssb155480 vsw_vlan_unaware_port_reset(portp);
2690678453a8Sspeer }
2691678453a8Sspeer
2692bce0a86eSWENTAO YANG if (updated & P_MD_hio) {
2693bce0a86eSWENTAO YANG vsw_hio_port_update(portp, hio_enabled);
2694678453a8Sspeer }
2695678453a8Sspeer
2696bce0a86eSWENTAO YANG if (updated & P_MD_maxbw) {
2697bce0a86eSWENTAO YANG vsw_update_bandwidth(NULL, portp, VSW_VNETPORT, maxbw);
2698678453a8Sspeer }
2699c1c61f44Ssb155480
2700c1c61f44Ssb155480 RW_EXIT(&plistp->lockrw);
27011ae08745Sheppo
27021ae08745Sheppo return (0);
27031ae08745Sheppo }
27041ae08745Sheppo
27051ae08745Sheppo /*
270606db247cSraghuram * vsw_mac_rx -- A common function to send packets to the interface.
270706db247cSraghuram * By default this function check if the interface is UP or not, the
270806db247cSraghuram * rest of the behaviour depends on the flags as below:
27091ae08745Sheppo *
271006db247cSraghuram * VSW_MACRX_PROMISC -- Check if the promisc mode set or not.
271106db247cSraghuram * VSW_MACRX_COPYMSG -- Make a copy of the message(s).
271206db247cSraghuram * VSW_MACRX_FREEMSG -- Free if the messages cannot be sent up the stack.
27131ae08745Sheppo */
27141ae08745Sheppo void
vsw_mac_rx(vsw_t * vswp,mac_resource_handle_t mrh,mblk_t * mp,vsw_macrx_flags_t flags)2715f0ca1d9aSsb155480 vsw_mac_rx(vsw_t *vswp, mac_resource_handle_t mrh,
2716f0ca1d9aSsb155480 mblk_t *mp, vsw_macrx_flags_t flags)
27171ae08745Sheppo {
2718c1c61f44Ssb155480 mblk_t *mpt;
2719c1c61f44Ssb155480
272006db247cSraghuram D1(vswp, "%s:enter\n", __func__);
27211ae08745Sheppo READ_ENTER(&vswp->if_lockrw);
272206db247cSraghuram /* Check if the interface is up */
272306db247cSraghuram if (!(vswp->if_state & VSW_IF_UP)) {
27241ae08745Sheppo RW_EXIT(&vswp->if_lockrw);
272506db247cSraghuram /* Free messages only if FREEMSG flag specified */
272606db247cSraghuram if (flags & VSW_MACRX_FREEMSG) {
272706db247cSraghuram freemsgchain(mp);
272806db247cSraghuram }
272906db247cSraghuram D1(vswp, "%s:exit\n", __func__);
273006db247cSraghuram return;
273106db247cSraghuram }
273206db247cSraghuram /*
273306db247cSraghuram * If PROMISC flag is passed, then check if
273406db247cSraghuram * the interface is in the PROMISC mode.
273506db247cSraghuram * If not, drop the messages.
273606db247cSraghuram */
273706db247cSraghuram if (flags & VSW_MACRX_PROMISC) {
273806db247cSraghuram if (!(vswp->if_state & VSW_IF_PROMISC)) {
273906db247cSraghuram RW_EXIT(&vswp->if_lockrw);
274006db247cSraghuram /* Free messages only if FREEMSG flag specified */
274106db247cSraghuram if (flags & VSW_MACRX_FREEMSG) {
274206db247cSraghuram freemsgchain(mp);
274306db247cSraghuram }
274406db247cSraghuram D1(vswp, "%s:exit\n", __func__);
274506db247cSraghuram return;
274606db247cSraghuram }
274706db247cSraghuram }
274806db247cSraghuram RW_EXIT(&vswp->if_lockrw);
274906db247cSraghuram /*
275006db247cSraghuram * If COPYMSG flag is passed, then make a copy
275106db247cSraghuram * of the message chain and send up the copy.
275206db247cSraghuram */
275306db247cSraghuram if (flags & VSW_MACRX_COPYMSG) {
275406db247cSraghuram mp = copymsgchain(mp);
2755f0ca1d9aSsb155480 if (mp == NULL) {
275606db247cSraghuram D1(vswp, "%s:exit\n", __func__);
275706db247cSraghuram return;
275806db247cSraghuram }
275906db247cSraghuram }
276006db247cSraghuram
2761f0ca1d9aSsb155480 D2(vswp, "%s: sending up stack", __func__);
2762c1c61f44Ssb155480
2763c1c61f44Ssb155480 mpt = NULL;
2764c1c61f44Ssb155480 (void) vsw_vlan_frame_untag(vswp, VSW_LOCALDEV, &mp, &mpt);
2765c1c61f44Ssb155480 if (mp != NULL) {
2766ba2e4443Sseb mac_rx(vswp->if_mh, mrh, mp);
2767c1c61f44Ssb155480 }
276806db247cSraghuram D1(vswp, "%s:exit\n", __func__);
27691ae08745Sheppo }
27701ae08745Sheppo
277106db247cSraghuram /* copy mac address of vsw into soft state structure */
27721ae08745Sheppo static void
vsw_save_lmacaddr(vsw_t * vswp,uint64_t macaddr)277306db247cSraghuram vsw_save_lmacaddr(vsw_t *vswp, uint64_t macaddr)
27741ae08745Sheppo {
27751ae08745Sheppo int i;
27761ae08745Sheppo
277706db247cSraghuram WRITE_ENTER(&vswp->if_lockrw);
277806db247cSraghuram for (i = ETHERADDRL - 1; i >= 0; i--) {
277906db247cSraghuram vswp->if_addr.ether_addr_octet[i] = macaddr & 0xFF;
278006db247cSraghuram macaddr >>= 8;
27811ae08745Sheppo }
278206db247cSraghuram RW_EXIT(&vswp->if_lockrw);
27831ae08745Sheppo }
2784da14cebeSEric Cheng
2785da14cebeSEric Cheng /* Compare VLAN ids, array size expected to be same. */
2786da14cebeSEric Cheng static boolean_t
vsw_cmp_vids(vsw_vlanid_t * vids1,vsw_vlanid_t * vids2,int nvids)2787da14cebeSEric Cheng vsw_cmp_vids(vsw_vlanid_t *vids1, vsw_vlanid_t *vids2, int nvids)
2788da14cebeSEric Cheng {
2789da14cebeSEric Cheng int i, j;
2790da14cebeSEric Cheng uint16_t vid;
2791da14cebeSEric Cheng
2792da14cebeSEric Cheng for (i = 0; i < nvids; i++) {
2793da14cebeSEric Cheng vid = vids1[i].vl_vid;
2794da14cebeSEric Cheng for (j = 0; j < nvids; j++) {
2795da14cebeSEric Cheng if (vid == vids2[i].vl_vid)
2796da14cebeSEric Cheng break;
2797da14cebeSEric Cheng }
2798da14cebeSEric Cheng if (j == nvids) {
2799da14cebeSEric Cheng return (B_FALSE);
2800da14cebeSEric Cheng }
2801da14cebeSEric Cheng }
2802da14cebeSEric Cheng return (B_TRUE);
2803da14cebeSEric Cheng }
2804