xref: /freebsd/sys/dev/cxgb/cxgb_main.c (revision d6da8362017ea667d5d92d90ad3fe01b16c2cbe4)
1b6d90eb7SKip Macy /**************************************************************************
2b6d90eb7SKip Macy 
3f2d8ff04SGeorge V. Neville-Neil Copyright (c) 2007-2009, Chelsio Inc.
4b6d90eb7SKip Macy All rights reserved.
5b6d90eb7SKip Macy 
6b6d90eb7SKip Macy Redistribution and use in source and binary forms, with or without
7b6d90eb7SKip Macy modification, are permitted provided that the following conditions are met:
8b6d90eb7SKip Macy 
9b6d90eb7SKip Macy  1. Redistributions of source code must retain the above copyright notice,
10b6d90eb7SKip Macy     this list of conditions and the following disclaimer.
11b6d90eb7SKip Macy 
12d722cab4SKip Macy  2. Neither the name of the Chelsio Corporation nor the names of its
13b6d90eb7SKip Macy     contributors may be used to endorse or promote products derived from
14b6d90eb7SKip Macy     this software without specific prior written permission.
15b6d90eb7SKip Macy 
16b6d90eb7SKip Macy THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
17b6d90eb7SKip Macy AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
18b6d90eb7SKip Macy IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
19b6d90eb7SKip Macy ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
20b6d90eb7SKip Macy LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
21b6d90eb7SKip Macy CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
22b6d90eb7SKip Macy SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
23b6d90eb7SKip Macy INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
24b6d90eb7SKip Macy CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
25b6d90eb7SKip Macy ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
26b6d90eb7SKip Macy POSSIBILITY OF SUCH DAMAGE.
27b6d90eb7SKip Macy 
28b6d90eb7SKip Macy ***************************************************************************/
29b6d90eb7SKip Macy 
30b6d90eb7SKip Macy #include <sys/cdefs.h>
31b6d90eb7SKip Macy __FBSDID("$FreeBSD$");
32b6d90eb7SKip Macy 
33b6d90eb7SKip Macy #include <sys/param.h>
34b6d90eb7SKip Macy #include <sys/systm.h>
35b6d90eb7SKip Macy #include <sys/kernel.h>
36b6d90eb7SKip Macy #include <sys/bus.h>
37b6d90eb7SKip Macy #include <sys/module.h>
38b6d90eb7SKip Macy #include <sys/pciio.h>
39b6d90eb7SKip Macy #include <sys/conf.h>
40b6d90eb7SKip Macy #include <machine/bus.h>
41b6d90eb7SKip Macy #include <machine/resource.h>
42b6d90eb7SKip Macy #include <sys/bus_dma.h>
438e10660fSKip Macy #include <sys/ktr.h>
44b6d90eb7SKip Macy #include <sys/rman.h>
45b6d90eb7SKip Macy #include <sys/ioccom.h>
46b6d90eb7SKip Macy #include <sys/mbuf.h>
47b6d90eb7SKip Macy #include <sys/linker.h>
48b6d90eb7SKip Macy #include <sys/firmware.h>
49b6d90eb7SKip Macy #include <sys/socket.h>
50b6d90eb7SKip Macy #include <sys/sockio.h>
51b6d90eb7SKip Macy #include <sys/smp.h>
52b6d90eb7SKip Macy #include <sys/sysctl.h>
538090c9f5SKip Macy #include <sys/syslog.h>
54b6d90eb7SKip Macy #include <sys/queue.h>
55b6d90eb7SKip Macy #include <sys/taskqueue.h>
568090c9f5SKip Macy #include <sys/proc.h>
57b6d90eb7SKip Macy 
58b6d90eb7SKip Macy #include <net/bpf.h>
59b6d90eb7SKip Macy #include <net/ethernet.h>
60b6d90eb7SKip Macy #include <net/if.h>
61b6d90eb7SKip Macy #include <net/if_arp.h>
62b6d90eb7SKip Macy #include <net/if_dl.h>
63b6d90eb7SKip Macy #include <net/if_media.h>
64b6d90eb7SKip Macy #include <net/if_types.h>
654af83c8cSKip Macy #include <net/if_vlan_var.h>
66b6d90eb7SKip Macy 
67b6d90eb7SKip Macy #include <netinet/in_systm.h>
68b6d90eb7SKip Macy #include <netinet/in.h>
69b6d90eb7SKip Macy #include <netinet/if_ether.h>
70b6d90eb7SKip Macy #include <netinet/ip.h>
71b6d90eb7SKip Macy #include <netinet/ip.h>
72b6d90eb7SKip Macy #include <netinet/tcp.h>
73b6d90eb7SKip Macy #include <netinet/udp.h>
74b6d90eb7SKip Macy 
75b6d90eb7SKip Macy #include <dev/pci/pcireg.h>
76b6d90eb7SKip Macy #include <dev/pci/pcivar.h>
77b6d90eb7SKip Macy #include <dev/pci/pci_private.h>
78b6d90eb7SKip Macy 
7910faa568SKip Macy #include <cxgb_include.h>
80b6d90eb7SKip Macy 
81b6d90eb7SKip Macy #ifdef PRIV_SUPPORTED
82b6d90eb7SKip Macy #include <sys/priv.h>
83b6d90eb7SKip Macy #endif
84b6d90eb7SKip Macy 
85e3503bc9SGeorge V. Neville-Neil static int cxgb_setup_interrupts(adapter_t *);
86e3503bc9SGeorge V. Neville-Neil static void cxgb_teardown_interrupts(adapter_t *);
87b6d90eb7SKip Macy static void cxgb_init(void *);
88b302b77cSNavdeep Parhar static int cxgb_init_locked(struct port_info *);
89b302b77cSNavdeep Parhar static int cxgb_uninit_locked(struct port_info *);
903f345a5dSKip Macy static int cxgb_uninit_synchronized(struct port_info *);
91b6d90eb7SKip Macy static int cxgb_ioctl(struct ifnet *, unsigned long, caddr_t);
92b6d90eb7SKip Macy static int cxgb_media_change(struct ifnet *);
93837f41b0SGeorge V. Neville-Neil static int cxgb_ifm_type(int);
942975f787SNavdeep Parhar static void cxgb_build_medialist(struct port_info *);
95b6d90eb7SKip Macy static void cxgb_media_status(struct ifnet *, struct ifmediareq *);
96b6d90eb7SKip Macy static int setup_sge_qsets(adapter_t *);
97b6d90eb7SKip Macy static void cxgb_async_intr(void *);
98b6d90eb7SKip Macy static void cxgb_ext_intr_handler(void *, int);
99bb38cd2fSKip Macy static void cxgb_tick_handler(void *, int);
100b6d90eb7SKip Macy static void cxgb_tick(void *);
101b6d90eb7SKip Macy static void setup_rss(adapter_t *sc);
102*d6da8362SNavdeep Parhar static int alloc_filters(struct adapter *);
103*d6da8362SNavdeep Parhar static int setup_hw_filters(struct adapter *);
104*d6da8362SNavdeep Parhar static int set_filter(struct adapter *, int, const struct filter_info *);
105*d6da8362SNavdeep Parhar static inline void mk_set_tcb_field(struct cpl_set_tcb_field *, unsigned int,
106*d6da8362SNavdeep Parhar     unsigned int, u64, u64);
107*d6da8362SNavdeep Parhar static inline void set_tcb_field_ulp(struct cpl_set_tcb_field *, unsigned int,
108*d6da8362SNavdeep Parhar     unsigned int, u64, u64);
109b6d90eb7SKip Macy 
110b6d90eb7SKip Macy /* Attachment glue for the PCI controller end of the device.  Each port of
111b6d90eb7SKip Macy  * the device is attached separately, as defined later.
112b6d90eb7SKip Macy  */
113b6d90eb7SKip Macy static int cxgb_controller_probe(device_t);
114b6d90eb7SKip Macy static int cxgb_controller_attach(device_t);
115b6d90eb7SKip Macy static int cxgb_controller_detach(device_t);
116b6d90eb7SKip Macy static void cxgb_free(struct adapter *);
117b6d90eb7SKip Macy static __inline void reg_block_dump(struct adapter *ap, uint8_t *buf, unsigned int start,
118b6d90eb7SKip Macy     unsigned int end);
1191ffd6e58SKip Macy static void cxgb_get_regs(adapter_t *sc, struct ch_ifconf_regs *regs, uint8_t *buf);
120b6d90eb7SKip Macy static int cxgb_get_regs_len(void);
121d722cab4SKip Macy static int offload_open(struct port_info *pi);
1227ac2e6c3SKip Macy static void touch_bars(device_t dev);
1233e96c7e7SKip Macy static int offload_close(struct t3cdev *tdev);
124c01f2b83SNavdeep Parhar static void cxgb_update_mac_settings(struct port_info *p);
125b6d90eb7SKip Macy 
126b6d90eb7SKip Macy static device_method_t cxgb_controller_methods[] = {
127b6d90eb7SKip Macy 	DEVMETHOD(device_probe,		cxgb_controller_probe),
128b6d90eb7SKip Macy 	DEVMETHOD(device_attach,	cxgb_controller_attach),
129b6d90eb7SKip Macy 	DEVMETHOD(device_detach,	cxgb_controller_detach),
130b6d90eb7SKip Macy 
131b6d90eb7SKip Macy 	/* bus interface */
132b6d90eb7SKip Macy 	DEVMETHOD(bus_print_child,	bus_generic_print_child),
133b6d90eb7SKip Macy 	DEVMETHOD(bus_driver_added,	bus_generic_driver_added),
134b6d90eb7SKip Macy 
135b6d90eb7SKip Macy 	{ 0, 0 }
136b6d90eb7SKip Macy };
137b6d90eb7SKip Macy 
138b6d90eb7SKip Macy static driver_t cxgb_controller_driver = {
139b6d90eb7SKip Macy 	"cxgbc",
140b6d90eb7SKip Macy 	cxgb_controller_methods,
141b6d90eb7SKip Macy 	sizeof(struct adapter)
142b6d90eb7SKip Macy };
143b6d90eb7SKip Macy 
144b6d90eb7SKip Macy static devclass_t	cxgb_controller_devclass;
145b6d90eb7SKip Macy DRIVER_MODULE(cxgbc, pci, cxgb_controller_driver, cxgb_controller_devclass, 0, 0);
146b6d90eb7SKip Macy 
147b6d90eb7SKip Macy /*
148b6d90eb7SKip Macy  * Attachment glue for the ports.  Attachment is done directly to the
149b6d90eb7SKip Macy  * controller device.
150b6d90eb7SKip Macy  */
151b6d90eb7SKip Macy static int cxgb_port_probe(device_t);
152b6d90eb7SKip Macy static int cxgb_port_attach(device_t);
153b6d90eb7SKip Macy static int cxgb_port_detach(device_t);
154b6d90eb7SKip Macy 
155b6d90eb7SKip Macy static device_method_t cxgb_port_methods[] = {
156b6d90eb7SKip Macy 	DEVMETHOD(device_probe,		cxgb_port_probe),
157b6d90eb7SKip Macy 	DEVMETHOD(device_attach,	cxgb_port_attach),
158b6d90eb7SKip Macy 	DEVMETHOD(device_detach,	cxgb_port_detach),
159b6d90eb7SKip Macy 	{ 0, 0 }
160b6d90eb7SKip Macy };
161b6d90eb7SKip Macy 
162b6d90eb7SKip Macy static driver_t cxgb_port_driver = {
163b6d90eb7SKip Macy 	"cxgb",
164b6d90eb7SKip Macy 	cxgb_port_methods,
165b6d90eb7SKip Macy 	0
166b6d90eb7SKip Macy };
167b6d90eb7SKip Macy 
168b6d90eb7SKip Macy static d_ioctl_t cxgb_extension_ioctl;
169ef72318fSKip Macy static d_open_t cxgb_extension_open;
170ef72318fSKip Macy static d_close_t cxgb_extension_close;
171ef72318fSKip Macy 
172ef72318fSKip Macy static struct cdevsw cxgb_cdevsw = {
173ef72318fSKip Macy        .d_version =    D_VERSION,
174ef72318fSKip Macy        .d_flags =      0,
175ef72318fSKip Macy        .d_open =       cxgb_extension_open,
176ef72318fSKip Macy        .d_close =      cxgb_extension_close,
177ef72318fSKip Macy        .d_ioctl =      cxgb_extension_ioctl,
178ef72318fSKip Macy        .d_name =       "cxgb",
179ef72318fSKip Macy };
180b6d90eb7SKip Macy 
181b6d90eb7SKip Macy static devclass_t	cxgb_port_devclass;
182b6d90eb7SKip Macy DRIVER_MODULE(cxgb, cxgbc, cxgb_port_driver, cxgb_port_devclass, 0, 0);
183b6d90eb7SKip Macy 
184b6d90eb7SKip Macy /*
185b6d90eb7SKip Macy  * The driver uses the best interrupt scheme available on a platform in the
186b6d90eb7SKip Macy  * order MSI-X, MSI, legacy pin interrupts.  This parameter determines which
187b6d90eb7SKip Macy  * of these schemes the driver may consider as follows:
188b6d90eb7SKip Macy  *
189b6d90eb7SKip Macy  * msi = 2: choose from among all three options
190b6d90eb7SKip Macy  * msi = 1 : only consider MSI and pin interrupts
191b6d90eb7SKip Macy  * msi = 0: force pin interrupts
192b6d90eb7SKip Macy  */
193693d746cSKip Macy static int msi_allowed = 2;
194cebf6b9fSKip Macy 
195b6d90eb7SKip Macy TUNABLE_INT("hw.cxgb.msi_allowed", &msi_allowed);
196b6d90eb7SKip Macy SYSCTL_NODE(_hw, OID_AUTO, cxgb, CTLFLAG_RD, 0, "CXGB driver parameters");
197b6d90eb7SKip Macy SYSCTL_UINT(_hw_cxgb, OID_AUTO, msi_allowed, CTLFLAG_RDTUN, &msi_allowed, 0,
198b6d90eb7SKip Macy     "MSI-X, MSI, INTx selector");
199d722cab4SKip Macy 
20064c43db5SKip Macy /*
201d722cab4SKip Macy  * The driver enables offload as a default.
202d722cab4SKip Macy  * To disable it, use ofld_disable = 1.
203d722cab4SKip Macy  */
204d722cab4SKip Macy static int ofld_disable = 0;
205d722cab4SKip Macy TUNABLE_INT("hw.cxgb.ofld_disable", &ofld_disable);
206d722cab4SKip Macy SYSCTL_UINT(_hw_cxgb, OID_AUTO, ofld_disable, CTLFLAG_RDTUN, &ofld_disable, 0,
207d722cab4SKip Macy     "disable ULP offload");
208d722cab4SKip Macy 
209d722cab4SKip Macy /*
210d722cab4SKip Macy  * The driver uses an auto-queue algorithm by default.
211a02573bcSKip Macy  * To disable it and force a single queue-set per port, use multiq = 0
21264c43db5SKip Macy  */
213a02573bcSKip Macy static int multiq = 1;
214a02573bcSKip Macy TUNABLE_INT("hw.cxgb.multiq", &multiq);
215a02573bcSKip Macy SYSCTL_UINT(_hw_cxgb, OID_AUTO, multiq, CTLFLAG_RDTUN, &multiq, 0,
216a02573bcSKip Macy     "use min(ncpus/ports, 8) queue-sets per port");
217f001b63dSKip Macy 
218404825a7SKip Macy /*
219a02573bcSKip Macy  * By default the driver will not update the firmware unless
220a02573bcSKip Macy  * it was compiled against a newer version
221a02573bcSKip Macy  *
222404825a7SKip Macy  */
223404825a7SKip Macy static int force_fw_update = 0;
224404825a7SKip Macy TUNABLE_INT("hw.cxgb.force_fw_update", &force_fw_update);
225404825a7SKip Macy SYSCTL_UINT(_hw_cxgb, OID_AUTO, force_fw_update, CTLFLAG_RDTUN, &force_fw_update, 0,
226404825a7SKip Macy     "update firmware even if up to date");
227f001b63dSKip Macy 
22897ae3bc3SNavdeep Parhar int cxgb_use_16k_clusters = -1;
229f001b63dSKip Macy TUNABLE_INT("hw.cxgb.use_16k_clusters", &cxgb_use_16k_clusters);
23097ae3bc3SNavdeep Parhar SYSCTL_INT(_hw_cxgb, OID_AUTO, use_16k_clusters, CTLFLAG_RDTUN,
231f001b63dSKip Macy     &cxgb_use_16k_clusters, 0, "use 16kB clusters for the jumbo queue ");
232f001b63dSKip Macy 
23302c7d9a6SGeorge V. Neville-Neil /*
23402c7d9a6SGeorge V. Neville-Neil  * Tune the size of the output queue.
23502c7d9a6SGeorge V. Neville-Neil  */
23602c7d9a6SGeorge V. Neville-Neil int cxgb_snd_queue_len = IFQ_MAXLEN;
23702c7d9a6SGeorge V. Neville-Neil TUNABLE_INT("hw.cxgb.snd_queue_len", &cxgb_snd_queue_len);
23802c7d9a6SGeorge V. Neville-Neil SYSCTL_UINT(_hw_cxgb, OID_AUTO, snd_queue_len, CTLFLAG_RDTUN,
23902c7d9a6SGeorge V. Neville-Neil     &cxgb_snd_queue_len, 0, "send queue size ");
24002c7d9a6SGeorge V. Neville-Neil 
24102c7d9a6SGeorge V. Neville-Neil 
242b6d90eb7SKip Macy enum {
243b6d90eb7SKip Macy 	MAX_TXQ_ENTRIES      = 16384,
244b6d90eb7SKip Macy 	MAX_CTRL_TXQ_ENTRIES = 1024,
245b6d90eb7SKip Macy 	MAX_RSPQ_ENTRIES     = 16384,
246b6d90eb7SKip Macy 	MAX_RX_BUFFERS       = 16384,
247b6d90eb7SKip Macy 	MAX_RX_JUMBO_BUFFERS = 16384,
248b6d90eb7SKip Macy 	MIN_TXQ_ENTRIES      = 4,
249b6d90eb7SKip Macy 	MIN_CTRL_TXQ_ENTRIES = 4,
250b6d90eb7SKip Macy 	MIN_RSPQ_ENTRIES     = 32,
2515c5df3daSKip Macy 	MIN_FL_ENTRIES       = 32,
2525c5df3daSKip Macy 	MIN_FL_JUMBO_ENTRIES = 32
253b6d90eb7SKip Macy };
254b6d90eb7SKip Macy 
255ac3a6d9cSKip Macy struct filter_info {
256ac3a6d9cSKip Macy 	u32 sip;
257ac3a6d9cSKip Macy 	u32 sip_mask;
258ac3a6d9cSKip Macy 	u32 dip;
259ac3a6d9cSKip Macy 	u16 sport;
260ac3a6d9cSKip Macy 	u16 dport;
261ac3a6d9cSKip Macy 	u32 vlan:12;
262ac3a6d9cSKip Macy 	u32 vlan_prio:3;
263ac3a6d9cSKip Macy 	u32 mac_hit:1;
264ac3a6d9cSKip Macy 	u32 mac_idx:4;
265ac3a6d9cSKip Macy 	u32 mac_vld:1;
266ac3a6d9cSKip Macy 	u32 pkt_type:2;
267ac3a6d9cSKip Macy 	u32 report_filter_id:1;
268ac3a6d9cSKip Macy 	u32 pass:1;
269ac3a6d9cSKip Macy 	u32 rss:1;
270ac3a6d9cSKip Macy 	u32 qset:3;
271ac3a6d9cSKip Macy 	u32 locked:1;
272ac3a6d9cSKip Macy 	u32 valid:1;
273ac3a6d9cSKip Macy };
274ac3a6d9cSKip Macy 
275ac3a6d9cSKip Macy enum { FILTER_NO_VLAN_PRI = 7 };
276ac3a6d9cSKip Macy 
2771ffd6e58SKip Macy #define EEPROM_MAGIC 0x38E2F10C
2781ffd6e58SKip Macy 
279b6d90eb7SKip Macy #define PORT_MASK ((1 << MAX_NPORTS) - 1)
280b6d90eb7SKip Macy 
281b6d90eb7SKip Macy /* Table for probing the cards.  The desc field isn't actually used */
282b6d90eb7SKip Macy struct cxgb_ident {
283b6d90eb7SKip Macy 	uint16_t	vendor;
284b6d90eb7SKip Macy 	uint16_t	device;
285b6d90eb7SKip Macy 	int		index;
286b6d90eb7SKip Macy 	char		*desc;
287b6d90eb7SKip Macy } cxgb_identifiers[] = {
288b6d90eb7SKip Macy 	{PCI_VENDOR_ID_CHELSIO, 0x0020, 0, "PE9000"},
289b6d90eb7SKip Macy 	{PCI_VENDOR_ID_CHELSIO, 0x0021, 1, "T302E"},
290b6d90eb7SKip Macy 	{PCI_VENDOR_ID_CHELSIO, 0x0022, 2, "T310E"},
291b6d90eb7SKip Macy 	{PCI_VENDOR_ID_CHELSIO, 0x0023, 3, "T320X"},
292b6d90eb7SKip Macy 	{PCI_VENDOR_ID_CHELSIO, 0x0024, 1, "T302X"},
293b6d90eb7SKip Macy 	{PCI_VENDOR_ID_CHELSIO, 0x0025, 3, "T320E"},
294b6d90eb7SKip Macy 	{PCI_VENDOR_ID_CHELSIO, 0x0026, 2, "T310X"},
295b6d90eb7SKip Macy 	{PCI_VENDOR_ID_CHELSIO, 0x0030, 2, "T3B10"},
296b6d90eb7SKip Macy 	{PCI_VENDOR_ID_CHELSIO, 0x0031, 3, "T3B20"},
297b6d90eb7SKip Macy 	{PCI_VENDOR_ID_CHELSIO, 0x0032, 1, "T3B02"},
298ef72318fSKip Macy 	{PCI_VENDOR_ID_CHELSIO, 0x0033, 4, "T3B04"},
299c01f2b83SNavdeep Parhar 	{PCI_VENDOR_ID_CHELSIO, 0x0035, 6, "T3C10"},
300c01f2b83SNavdeep Parhar 	{PCI_VENDOR_ID_CHELSIO, 0x0036, 3, "S320E-CR"},
301c01f2b83SNavdeep Parhar 	{PCI_VENDOR_ID_CHELSIO, 0x0037, 7, "N320E-G2"},
302b6d90eb7SKip Macy 	{0, 0, 0, NULL}
303b6d90eb7SKip Macy };
304b6d90eb7SKip Macy 
305ac3a6d9cSKip Macy static int set_eeprom(struct port_info *pi, const uint8_t *data, int len, int offset);
306ac3a6d9cSKip Macy 
3078e10660fSKip Macy 
3088090c9f5SKip Macy static __inline char
309ac3a6d9cSKip Macy t3rev2char(struct adapter *adapter)
310ac3a6d9cSKip Macy {
311ac3a6d9cSKip Macy 	char rev = 'z';
312ac3a6d9cSKip Macy 
313ac3a6d9cSKip Macy 	switch(adapter->params.rev) {
314ac3a6d9cSKip Macy 	case T3_REV_A:
315ac3a6d9cSKip Macy 		rev = 'a';
316ac3a6d9cSKip Macy 		break;
317ac3a6d9cSKip Macy 	case T3_REV_B:
318ac3a6d9cSKip Macy 	case T3_REV_B2:
319ac3a6d9cSKip Macy 		rev = 'b';
320ac3a6d9cSKip Macy 		break;
321ac3a6d9cSKip Macy 	case T3_REV_C:
322ac3a6d9cSKip Macy 		rev = 'c';
323ac3a6d9cSKip Macy 		break;
324ac3a6d9cSKip Macy 	}
325ac3a6d9cSKip Macy 	return rev;
326ac3a6d9cSKip Macy }
327ac3a6d9cSKip Macy 
328b6d90eb7SKip Macy static struct cxgb_ident *
329b6d90eb7SKip Macy cxgb_get_ident(device_t dev)
330b6d90eb7SKip Macy {
331b6d90eb7SKip Macy 	struct cxgb_ident *id;
332b6d90eb7SKip Macy 
333b6d90eb7SKip Macy 	for (id = cxgb_identifiers; id->desc != NULL; id++) {
334b6d90eb7SKip Macy 		if ((id->vendor == pci_get_vendor(dev)) &&
335b6d90eb7SKip Macy 		    (id->device == pci_get_device(dev))) {
336b6d90eb7SKip Macy 			return (id);
337b6d90eb7SKip Macy 		}
338b6d90eb7SKip Macy 	}
339b6d90eb7SKip Macy 	return (NULL);
340b6d90eb7SKip Macy }
341b6d90eb7SKip Macy 
342b6d90eb7SKip Macy static const struct adapter_info *
343b6d90eb7SKip Macy cxgb_get_adapter_info(device_t dev)
344b6d90eb7SKip Macy {
345b6d90eb7SKip Macy 	struct cxgb_ident *id;
346b6d90eb7SKip Macy 	const struct adapter_info *ai;
347b6d90eb7SKip Macy 
348b6d90eb7SKip Macy 	id = cxgb_get_ident(dev);
349b6d90eb7SKip Macy 	if (id == NULL)
350b6d90eb7SKip Macy 		return (NULL);
351b6d90eb7SKip Macy 
352b6d90eb7SKip Macy 	ai = t3_get_adapter_info(id->index);
353b6d90eb7SKip Macy 
354b6d90eb7SKip Macy 	return (ai);
355b6d90eb7SKip Macy }
356b6d90eb7SKip Macy 
357b6d90eb7SKip Macy static int
358b6d90eb7SKip Macy cxgb_controller_probe(device_t dev)
359b6d90eb7SKip Macy {
360b6d90eb7SKip Macy 	const struct adapter_info *ai;
361b6d90eb7SKip Macy 	char *ports, buf[80];
362ef72318fSKip Macy 	int nports;
363b6d90eb7SKip Macy 
364b6d90eb7SKip Macy 	ai = cxgb_get_adapter_info(dev);
365b6d90eb7SKip Macy 	if (ai == NULL)
366b6d90eb7SKip Macy 		return (ENXIO);
367b6d90eb7SKip Macy 
368ef72318fSKip Macy 	nports = ai->nports0 + ai->nports1;
369ef72318fSKip Macy 	if (nports == 1)
370b6d90eb7SKip Macy 		ports = "port";
371b6d90eb7SKip Macy 	else
372b6d90eb7SKip Macy 		ports = "ports";
373b6d90eb7SKip Macy 
3747ead19d4SNavdeep Parhar 	snprintf(buf, sizeof(buf), "%s, %d %s", ai->desc, nports, ports);
375b6d90eb7SKip Macy 	device_set_desc_copy(dev, buf);
376b6d90eb7SKip Macy 	return (BUS_PROBE_DEFAULT);
377b6d90eb7SKip Macy }
378b6d90eb7SKip Macy 
379404825a7SKip Macy #define FW_FNAME "cxgb_t3fw"
3800c1ff9c6SGeorge V. Neville-Neil #define TPEEPROM_NAME "cxgb_t3%c_tp_eeprom"
3810c1ff9c6SGeorge V. Neville-Neil #define TPSRAM_NAME "cxgb_t3%c_protocol_sram"
382ac3a6d9cSKip Macy 
383b6d90eb7SKip Macy static int
384d722cab4SKip Macy upgrade_fw(adapter_t *sc)
385b6d90eb7SKip Macy {
386b6d90eb7SKip Macy 	const struct firmware *fw;
387b6d90eb7SKip Macy 	int status;
388a9da6d23SNavdeep Parhar 	u32 vers;
389b6d90eb7SKip Macy 
390404825a7SKip Macy 	if ((fw = firmware_get(FW_FNAME)) == NULL)  {
391404825a7SKip Macy 		device_printf(sc->dev, "Could not find firmware image %s\n", FW_FNAME);
392d722cab4SKip Macy 		return (ENOENT);
393ac3a6d9cSKip Macy 	} else
394a9da6d23SNavdeep Parhar 		device_printf(sc->dev, "installing firmware on card\n");
395b6d90eb7SKip Macy 	status = t3_load_fw(sc, (const uint8_t *)fw->data, fw->datasize);
396b6d90eb7SKip Macy 
397a9da6d23SNavdeep Parhar 	if (status != 0) {
398a9da6d23SNavdeep Parhar 		device_printf(sc->dev, "failed to install firmware: %d\n",
399a9da6d23SNavdeep Parhar 		    status);
400a9da6d23SNavdeep Parhar 	} else {
401a9da6d23SNavdeep Parhar 		t3_get_fw_version(sc, &vers);
402a9da6d23SNavdeep Parhar 		snprintf(&sc->fw_version[0], sizeof(sc->fw_version), "%d.%d.%d",
403a9da6d23SNavdeep Parhar 		    G_FW_VERSION_MAJOR(vers), G_FW_VERSION_MINOR(vers),
404a9da6d23SNavdeep Parhar 		    G_FW_VERSION_MICRO(vers));
405a9da6d23SNavdeep Parhar 	}
406ac3a6d9cSKip Macy 
407b6d90eb7SKip Macy 	firmware_put(fw, FIRMWARE_UNLOAD);
408b6d90eb7SKip Macy 
409b6d90eb7SKip Macy 	return (status);
410b6d90eb7SKip Macy }
411b6d90eb7SKip Macy 
4123cf138bbSGeorge V. Neville-Neil /*
4133cf138bbSGeorge V. Neville-Neil  * The cxgb_controller_attach function is responsible for the initial
4143cf138bbSGeorge V. Neville-Neil  * bringup of the device.  Its responsibilities include:
4153cf138bbSGeorge V. Neville-Neil  *
4163cf138bbSGeorge V. Neville-Neil  *  1. Determine if the device supports MSI or MSI-X.
4173cf138bbSGeorge V. Neville-Neil  *  2. Allocate bus resources so that we can access the Base Address Register
4183cf138bbSGeorge V. Neville-Neil  *  3. Create and initialize mutexes for the controller and its control
4193cf138bbSGeorge V. Neville-Neil  *     logic such as SGE and MDIO.
4203cf138bbSGeorge V. Neville-Neil  *  4. Call hardware specific setup routine for the adapter as a whole.
4213cf138bbSGeorge V. Neville-Neil  *  5. Allocate the BAR for doing MSI-X.
4223cf138bbSGeorge V. Neville-Neil  *  6. Setup the line interrupt iff MSI-X is not supported.
4233cf138bbSGeorge V. Neville-Neil  *  7. Create the driver's taskq.
424c2009a4cSGeorge V. Neville-Neil  *  8. Start one task queue service thread.
425c2009a4cSGeorge V. Neville-Neil  *  9. Check if the firmware and SRAM are up-to-date.  They will be
426c2009a4cSGeorge V. Neville-Neil  *     auto-updated later (before FULL_INIT_DONE), if required.
4273cf138bbSGeorge V. Neville-Neil  * 10. Create a child device for each MAC (port)
4283cf138bbSGeorge V. Neville-Neil  * 11. Initialize T3 private state.
4293cf138bbSGeorge V. Neville-Neil  * 12. Trigger the LED
4303cf138bbSGeorge V. Neville-Neil  * 13. Setup offload iff supported.
4313cf138bbSGeorge V. Neville-Neil  * 14. Reset/restart the tick callout.
4323cf138bbSGeorge V. Neville-Neil  * 15. Attach sysctls
4333cf138bbSGeorge V. Neville-Neil  *
4343cf138bbSGeorge V. Neville-Neil  * NOTE: Any modification or deviation from this list MUST be reflected in
4353cf138bbSGeorge V. Neville-Neil  * the above comment.  Failure to do so will result in problems on various
4363cf138bbSGeorge V. Neville-Neil  * error conditions including link flapping.
4373cf138bbSGeorge V. Neville-Neil  */
438b6d90eb7SKip Macy static int
439b6d90eb7SKip Macy cxgb_controller_attach(device_t dev)
440b6d90eb7SKip Macy {
441b6d90eb7SKip Macy 	device_t child;
442b6d90eb7SKip Macy 	const struct adapter_info *ai;
443b6d90eb7SKip Macy 	struct adapter *sc;
4442de1fa86SKip Macy 	int i, error = 0;
445b6d90eb7SKip Macy 	uint32_t vers;
446693d746cSKip Macy 	int port_qsets = 1;
4472de1fa86SKip Macy 	int msi_needed, reg;
4485197f3abSGeorge V. Neville-Neil 	char buf[80];
4495197f3abSGeorge V. Neville-Neil 
450b6d90eb7SKip Macy 	sc = device_get_softc(dev);
451b6d90eb7SKip Macy 	sc->dev = dev;
452d722cab4SKip Macy 	sc->msi_count = 0;
4532de1fa86SKip Macy 	ai = cxgb_get_adapter_info(dev);
454b6d90eb7SKip Macy 
455fc01c613SKip Macy 	/* find the PCIe link width and set max read request to 4KB*/
456fc01c613SKip Macy 	if (pci_find_extcap(dev, PCIY_EXPRESS, &reg) == 0) {
457fc01c613SKip Macy 		uint16_t lnk, pectl;
458fc01c613SKip Macy 		lnk = pci_read_config(dev, reg + 0x12, 2);
459fc01c613SKip Macy 		sc->link_width = (lnk >> 4) & 0x3f;
460fc01c613SKip Macy 
461fc01c613SKip Macy 		pectl = pci_read_config(dev, reg + 0x8, 2);
462fc01c613SKip Macy 		pectl = (pectl & ~0x7000) | (5 << 12);
463fc01c613SKip Macy 		pci_write_config(dev, reg + 0x8, pectl, 2);
464fc01c613SKip Macy 	}
465ac3a6d9cSKip Macy 
466ac3a6d9cSKip Macy 	if (sc->link_width != 0 && sc->link_width <= 4 &&
467ac3a6d9cSKip Macy 	    (ai->nports0 + ai->nports1) <= 2) {
468fc01c613SKip Macy 		device_printf(sc->dev,
469ac6b4cf1SKip Macy 		    "PCIe x%d Link, expect reduced performance\n",
470fc01c613SKip Macy 		    sc->link_width);
471fc01c613SKip Macy 	}
472e83ec3e5SNavdeep Parhar 
4737ac2e6c3SKip Macy 	touch_bars(dev);
474b6d90eb7SKip Macy 	pci_enable_busmaster(dev);
475b6d90eb7SKip Macy 	/*
476b6d90eb7SKip Macy 	 * Allocate the registers and make them available to the driver.
477b6d90eb7SKip Macy 	 * The registers that we care about for NIC mode are in BAR 0
478b6d90eb7SKip Macy 	 */
479b6d90eb7SKip Macy 	sc->regs_rid = PCIR_BAR(0);
480b6d90eb7SKip Macy 	if ((sc->regs_res = bus_alloc_resource_any(dev, SYS_RES_MEMORY,
481b6d90eb7SKip Macy 	    &sc->regs_rid, RF_ACTIVE)) == NULL) {
4828e10660fSKip Macy 		device_printf(dev, "Cannot allocate BAR region 0\n");
483b6d90eb7SKip Macy 		return (ENXIO);
484b6d90eb7SKip Macy 	}
4858e10660fSKip Macy 	sc->udbs_rid = PCIR_BAR(2);
4867f15419bSGeorge V. Neville-Neil 	sc->udbs_res = NULL;
4877f15419bSGeorge V. Neville-Neil 	if (is_offload(sc) &&
4887f15419bSGeorge V. Neville-Neil 	    ((sc->udbs_res = bus_alloc_resource_any(dev, SYS_RES_MEMORY,
4897f15419bSGeorge V. Neville-Neil 		   &sc->udbs_rid, RF_ACTIVE)) == NULL)) {
4908e10660fSKip Macy 		device_printf(dev, "Cannot allocate BAR region 1\n");
4918e10660fSKip Macy 		error = ENXIO;
4928e10660fSKip Macy 		goto out;
4938e10660fSKip Macy 	}
494b6d90eb7SKip Macy 
495bb38cd2fSKip Macy 	snprintf(sc->lockbuf, ADAPTER_LOCK_NAME_LEN, "cxgb controller lock %d",
496bb38cd2fSKip Macy 	    device_get_unit(dev));
497bb38cd2fSKip Macy 	ADAPTER_LOCK_INIT(sc, sc->lockbuf);
498bb38cd2fSKip Macy 
499bb38cd2fSKip Macy 	snprintf(sc->reglockbuf, ADAPTER_LOCK_NAME_LEN, "SGE reg lock %d",
500bb38cd2fSKip Macy 	    device_get_unit(dev));
501bb38cd2fSKip Macy 	snprintf(sc->mdiolockbuf, ADAPTER_LOCK_NAME_LEN, "cxgb mdio lock %d",
502bb38cd2fSKip Macy 	    device_get_unit(dev));
503bb38cd2fSKip Macy 	snprintf(sc->elmerlockbuf, ADAPTER_LOCK_NAME_LEN, "cxgb elmer lock %d",
504bb38cd2fSKip Macy 	    device_get_unit(dev));
505bb38cd2fSKip Macy 
5068e10660fSKip Macy 	MTX_INIT(&sc->sge.reg_lock, sc->reglockbuf, NULL, MTX_SPIN);
507bb38cd2fSKip Macy 	MTX_INIT(&sc->mdio_lock, sc->mdiolockbuf, NULL, MTX_DEF);
508bb38cd2fSKip Macy 	MTX_INIT(&sc->elmer_lock, sc->elmerlockbuf, NULL, MTX_DEF);
509b6d90eb7SKip Macy 
510b6d90eb7SKip Macy 	sc->bt = rman_get_bustag(sc->regs_res);
511b6d90eb7SKip Macy 	sc->bh = rman_get_bushandle(sc->regs_res);
512b6d90eb7SKip Macy 	sc->mmio_len = rman_get_size(sc->regs_res);
513b6d90eb7SKip Macy 
514c01f2b83SNavdeep Parhar 	for (i = 0; i < MAX_NPORTS; i++)
515c01f2b83SNavdeep Parhar 		sc->port[i].adapter = sc;
516c01f2b83SNavdeep Parhar 
51724cdd067SKip Macy 	if (t3_prep_adapter(sc, ai, 1) < 0) {
518ef72318fSKip Macy 		printf("prep adapter failed\n");
51924cdd067SKip Macy 		error = ENODEV;
52024cdd067SKip Macy 		goto out;
52124cdd067SKip Macy 	}
522b6d90eb7SKip Macy         /* Allocate the BAR for doing MSI-X.  If it succeeds, try to allocate
523b6d90eb7SKip Macy 	 * enough messages for the queue sets.  If that fails, try falling
524b6d90eb7SKip Macy 	 * back to MSI.  If that fails, then try falling back to the legacy
525b6d90eb7SKip Macy 	 * interrupt pin model.
526b6d90eb7SKip Macy 	 */
527b6d90eb7SKip Macy 	sc->msix_regs_rid = 0x20;
528b6d90eb7SKip Macy 	if ((msi_allowed >= 2) &&
529b6d90eb7SKip Macy 	    (sc->msix_regs_res = bus_alloc_resource_any(dev, SYS_RES_MEMORY,
530b6d90eb7SKip Macy 	    &sc->msix_regs_rid, RF_ACTIVE)) != NULL) {
531b6d90eb7SKip Macy 
532e3503bc9SGeorge V. Neville-Neil 		if (multiq)
533e3503bc9SGeorge V. Neville-Neil 			port_qsets = min(SGE_QSETS/sc->params.nports, mp_ncpus);
534e3503bc9SGeorge V. Neville-Neil 		msi_needed = sc->msi_count = sc->params.nports * port_qsets + 1;
535693d746cSKip Macy 
536e3503bc9SGeorge V. Neville-Neil 		if (pci_msix_count(dev) == 0 ||
537e3503bc9SGeorge V. Neville-Neil 		    (error = pci_alloc_msix(dev, &sc->msi_count)) != 0 ||
538e3503bc9SGeorge V. Neville-Neil 		    sc->msi_count != msi_needed) {
539e3503bc9SGeorge V. Neville-Neil 			device_printf(dev, "alloc msix failed - "
540e3503bc9SGeorge V. Neville-Neil 				      "msi_count=%d, msi_needed=%d, err=%d; "
541e3503bc9SGeorge V. Neville-Neil 				      "will try MSI\n", sc->msi_count,
542d722cab4SKip Macy 				      msi_needed, error);
543d722cab4SKip Macy 			sc->msi_count = 0;
544e3503bc9SGeorge V. Neville-Neil 			port_qsets = 1;
545b6d90eb7SKip Macy 			pci_release_msi(dev);
546b6d90eb7SKip Macy 			bus_release_resource(dev, SYS_RES_MEMORY,
547b6d90eb7SKip Macy 			    sc->msix_regs_rid, sc->msix_regs_res);
548b6d90eb7SKip Macy 			sc->msix_regs_res = NULL;
549b6d90eb7SKip Macy 		} else {
550b6d90eb7SKip Macy 			sc->flags |= USING_MSIX;
551e3503bc9SGeorge V. Neville-Neil 			sc->cxgb_intr = cxgb_async_intr;
552e3503bc9SGeorge V. Neville-Neil 			device_printf(dev,
553e3503bc9SGeorge V. Neville-Neil 				      "using MSI-X interrupts (%u vectors)\n",
554e3503bc9SGeorge V. Neville-Neil 				      sc->msi_count);
555b6d90eb7SKip Macy 		}
556b6d90eb7SKip Macy 	}
557b6d90eb7SKip Macy 
558d722cab4SKip Macy 	if ((msi_allowed >= 1) && (sc->msi_count == 0)) {
559d722cab4SKip Macy 		sc->msi_count = 1;
560e3503bc9SGeorge V. Neville-Neil 		if ((error = pci_alloc_msi(dev, &sc->msi_count)) != 0) {
561e3503bc9SGeorge V. Neville-Neil 			device_printf(dev, "alloc msi failed - "
562e3503bc9SGeorge V. Neville-Neil 				      "err=%d; will try INTx\n", error);
563d722cab4SKip Macy 			sc->msi_count = 0;
564e3503bc9SGeorge V. Neville-Neil 			port_qsets = 1;
565b6d90eb7SKip Macy 			pci_release_msi(dev);
566b6d90eb7SKip Macy 		} else {
567b6d90eb7SKip Macy 			sc->flags |= USING_MSI;
568f0a542f8SKip Macy 			sc->cxgb_intr = t3_intr_msi;
569e3503bc9SGeorge V. Neville-Neil 			device_printf(dev, "using MSI interrupts\n");
570b6d90eb7SKip Macy 		}
571b6d90eb7SKip Macy 	}
572d722cab4SKip Macy 	if (sc->msi_count == 0) {
573693d746cSKip Macy 		device_printf(dev, "using line interrupts\n");
574f0a542f8SKip Macy 		sc->cxgb_intr = t3b_intr;
575b6d90eb7SKip Macy 	}
576b6d90eb7SKip Macy 
577b6d90eb7SKip Macy 	/* Create a private taskqueue thread for handling driver events */
578b6d90eb7SKip Macy 	sc->tq = taskqueue_create("cxgb_taskq", M_NOWAIT,
579b6d90eb7SKip Macy 	    taskqueue_thread_enqueue, &sc->tq);
580b6d90eb7SKip Macy 	if (sc->tq == NULL) {
581b6d90eb7SKip Macy 		device_printf(dev, "failed to allocate controller task queue\n");
582b6d90eb7SKip Macy 		goto out;
583b6d90eb7SKip Macy 	}
584b6d90eb7SKip Macy 
585b6d90eb7SKip Macy 	taskqueue_start_threads(&sc->tq, 1, PI_NET, "%s taskq",
586b6d90eb7SKip Macy 	    device_get_nameunit(dev));
587b6d90eb7SKip Macy 	TASK_INIT(&sc->ext_intr_task, 0, cxgb_ext_intr_handler, sc);
588bb38cd2fSKip Macy 	TASK_INIT(&sc->tick_task, 0, cxgb_tick_handler, sc);
589b6d90eb7SKip Macy 
590b6d90eb7SKip Macy 
591b6d90eb7SKip Macy 	/* Create a periodic callout for checking adapter status */
592bb38cd2fSKip Macy 	callout_init(&sc->cxgb_tick_ch, TRUE);
593b6d90eb7SKip Macy 
594f2d8ff04SGeorge V. Neville-Neil 	if (t3_check_fw_version(sc) < 0 || force_fw_update) {
595b6d90eb7SKip Macy 		/*
596b6d90eb7SKip Macy 		 * Warn user that a firmware update will be attempted in init.
597b6d90eb7SKip Macy 		 */
598d722cab4SKip Macy 		device_printf(dev, "firmware needs to be updated to version %d.%d.%d\n",
599d722cab4SKip Macy 		    FW_VERSION_MAJOR, FW_VERSION_MINOR, FW_VERSION_MICRO);
600b6d90eb7SKip Macy 		sc->flags &= ~FW_UPTODATE;
601b6d90eb7SKip Macy 	} else {
602b6d90eb7SKip Macy 		sc->flags |= FW_UPTODATE;
603b6d90eb7SKip Macy 	}
604b6d90eb7SKip Macy 
605f2d8ff04SGeorge V. Neville-Neil 	if (t3_check_tpsram_version(sc) < 0) {
606ac3a6d9cSKip Macy 		/*
607ac3a6d9cSKip Macy 		 * Warn user that a firmware update will be attempted in init.
608ac3a6d9cSKip Macy 		 */
609ac3a6d9cSKip Macy 		device_printf(dev, "SRAM needs to be updated to version %c-%d.%d.%d\n",
610ac3a6d9cSKip Macy 		    t3rev2char(sc), TP_VERSION_MAJOR, TP_VERSION_MINOR, TP_VERSION_MICRO);
611ac3a6d9cSKip Macy 		sc->flags &= ~TPS_UPTODATE;
612ac3a6d9cSKip Macy 	} else {
613ac3a6d9cSKip Macy 		sc->flags |= TPS_UPTODATE;
614ac3a6d9cSKip Macy 	}
615ac3a6d9cSKip Macy 
616b6d90eb7SKip Macy 	/*
617b6d90eb7SKip Macy 	 * Create a child device for each MAC.  The ethernet attachment
618b6d90eb7SKip Macy 	 * will be done in these children.
619b6d90eb7SKip Macy 	 */
620693d746cSKip Macy 	for (i = 0; i < (sc)->params.nports; i++) {
6217ac2e6c3SKip Macy 		struct port_info *pi;
6227ac2e6c3SKip Macy 
623b6d90eb7SKip Macy 		if ((child = device_add_child(dev, "cxgb", -1)) == NULL) {
624b6d90eb7SKip Macy 			device_printf(dev, "failed to add child port\n");
625b6d90eb7SKip Macy 			error = EINVAL;
626b6d90eb7SKip Macy 			goto out;
627b6d90eb7SKip Macy 		}
6287ac2e6c3SKip Macy 		pi = &sc->port[i];
6297ac2e6c3SKip Macy 		pi->adapter = sc;
6307ac2e6c3SKip Macy 		pi->nqsets = port_qsets;
6317ac2e6c3SKip Macy 		pi->first_qset = i*port_qsets;
6327ac2e6c3SKip Macy 		pi->port_id = i;
6337ac2e6c3SKip Macy 		pi->tx_chan = i >= ai->nports0;
6347ac2e6c3SKip Macy 		pi->txpkt_intf = pi->tx_chan ? 2 * (i - ai->nports0) + 1 : 2 * i;
6357ac2e6c3SKip Macy 		sc->rxpkt_map[pi->txpkt_intf] = i;
6368090c9f5SKip Macy 		sc->port[i].tx_chan = i >= ai->nports0;
637ac3a6d9cSKip Macy 		sc->portdev[i] = child;
6387ac2e6c3SKip Macy 		device_set_softc(child, pi);
639b6d90eb7SKip Macy 	}
640b6d90eb7SKip Macy 	if ((error = bus_generic_attach(dev)) != 0)
641b6d90eb7SKip Macy 		goto out;
642b6d90eb7SKip Macy 
643b6d90eb7SKip Macy 	/* initialize sge private state */
644ef72318fSKip Macy 	t3_sge_init_adapter(sc);
645b6d90eb7SKip Macy 
646b6d90eb7SKip Macy 	t3_led_ready(sc);
647b6d90eb7SKip Macy 
648d722cab4SKip Macy 	cxgb_offload_init();
649d722cab4SKip Macy 	if (is_offload(sc)) {
650d722cab4SKip Macy 		setbit(&sc->registered_device_map, OFFLOAD_DEVMAP_BIT);
651d722cab4SKip Macy 		cxgb_adapter_ofld(sc);
652d722cab4SKip Macy         }
653b6d90eb7SKip Macy 	error = t3_get_fw_version(sc, &vers);
654b6d90eb7SKip Macy 	if (error)
655b6d90eb7SKip Macy 		goto out;
656b6d90eb7SKip Macy 
657d722cab4SKip Macy 	snprintf(&sc->fw_version[0], sizeof(sc->fw_version), "%d.%d.%d",
658d722cab4SKip Macy 	    G_FW_VERSION_MAJOR(vers), G_FW_VERSION_MINOR(vers),
659d722cab4SKip Macy 	    G_FW_VERSION_MICRO(vers));
660b6d90eb7SKip Macy 
6617ead19d4SNavdeep Parhar 	snprintf(buf, sizeof(buf), "%s %sNIC\t E/C: %s S/N: %s",
6627ead19d4SNavdeep Parhar 		 ai->desc, is_offload(sc) ? "R" : "",
6635197f3abSGeorge V. Neville-Neil 		 sc->params.vpd.ec, sc->params.vpd.sn);
6645197f3abSGeorge V. Neville-Neil 	device_set_desc_copy(dev, buf);
6655197f3abSGeorge V. Neville-Neil 
6660bbdea77SGeorge V. Neville-Neil 	snprintf(&sc->port_types[0], sizeof(sc->port_types), "%x%x%x%x",
6670bbdea77SGeorge V. Neville-Neil 		 sc->params.vpd.port_type[0], sc->params.vpd.port_type[1],
6680bbdea77SGeorge V. Neville-Neil 		 sc->params.vpd.port_type[2], sc->params.vpd.port_type[3]);
6690bbdea77SGeorge V. Neville-Neil 
6708e10660fSKip Macy 	device_printf(sc->dev, "Firmware Version %s\n", &sc->fw_version[0]);
671706cb31fSKip Macy 	callout_reset(&sc->cxgb_tick_ch, CXGB_TICKS(sc), cxgb_tick, sc);
6728090c9f5SKip Macy 	t3_add_attach_sysctls(sc);
673b6d90eb7SKip Macy out:
674b6d90eb7SKip Macy 	if (error)
675b6d90eb7SKip Macy 		cxgb_free(sc);
676b6d90eb7SKip Macy 
677b6d90eb7SKip Macy 	return (error);
678b6d90eb7SKip Macy }
679b6d90eb7SKip Macy 
6803cf138bbSGeorge V. Neville-Neil /*
681c2009a4cSGeorge V. Neville-Neil  * The cxgb_controller_detach routine is called with the device is
6823cf138bbSGeorge V. Neville-Neil  * unloaded from the system.
6833cf138bbSGeorge V. Neville-Neil  */
6843cf138bbSGeorge V. Neville-Neil 
685b6d90eb7SKip Macy static int
686b6d90eb7SKip Macy cxgb_controller_detach(device_t dev)
687b6d90eb7SKip Macy {
688b6d90eb7SKip Macy 	struct adapter *sc;
689b6d90eb7SKip Macy 
690b6d90eb7SKip Macy 	sc = device_get_softc(dev);
691b6d90eb7SKip Macy 
692b6d90eb7SKip Macy 	cxgb_free(sc);
693b6d90eb7SKip Macy 
694b6d90eb7SKip Macy 	return (0);
695b6d90eb7SKip Macy }
696b6d90eb7SKip Macy 
6973cf138bbSGeorge V. Neville-Neil /*
6983cf138bbSGeorge V. Neville-Neil  * The cxgb_free() is called by the cxgb_controller_detach() routine
6993cf138bbSGeorge V. Neville-Neil  * to tear down the structures that were built up in
7003cf138bbSGeorge V. Neville-Neil  * cxgb_controller_attach(), and should be the final piece of work
701c2009a4cSGeorge V. Neville-Neil  * done when fully unloading the driver.
7023cf138bbSGeorge V. Neville-Neil  *
7033cf138bbSGeorge V. Neville-Neil  *
7043cf138bbSGeorge V. Neville-Neil  *  1. Shutting down the threads started by the cxgb_controller_attach()
7053cf138bbSGeorge V. Neville-Neil  *     routine.
7063cf138bbSGeorge V. Neville-Neil  *  2. Stopping the lower level device and all callouts (cxgb_down_locked()).
7073cf138bbSGeorge V. Neville-Neil  *  3. Detaching all of the port devices created during the
7083cf138bbSGeorge V. Neville-Neil  *     cxgb_controller_attach() routine.
7093cf138bbSGeorge V. Neville-Neil  *  4. Removing the device children created via cxgb_controller_attach().
710e3503bc9SGeorge V. Neville-Neil  *  5. Releasing PCI resources associated with the device.
7113cf138bbSGeorge V. Neville-Neil  *  6. Turning off the offload support, iff it was turned on.
7123cf138bbSGeorge V. Neville-Neil  *  7. Destroying the mutexes created in cxgb_controller_attach().
7133cf138bbSGeorge V. Neville-Neil  *
7143cf138bbSGeorge V. Neville-Neil  */
715b6d90eb7SKip Macy static void
716b6d90eb7SKip Macy cxgb_free(struct adapter *sc)
717b6d90eb7SKip Macy {
718b6d90eb7SKip Macy 	int i;
719b6d90eb7SKip Macy 
7208e10660fSKip Macy 	ADAPTER_LOCK(sc);
7218e10660fSKip Macy 	sc->flags |= CXGB_SHUTDOWN;
7228e10660fSKip Macy 	ADAPTER_UNLOCK(sc);
7238e10660fSKip Macy 
7243cf138bbSGeorge V. Neville-Neil 	/*
7253f345a5dSKip Macy 	 * Make sure all child devices are gone.
7263cf138bbSGeorge V. Neville-Neil 	 */
7273cf138bbSGeorge V. Neville-Neil 	bus_generic_detach(sc->dev);
7283cf138bbSGeorge V. Neville-Neil 	for (i = 0; i < (sc)->params.nports; i++) {
729c2009a4cSGeorge V. Neville-Neil 		if (sc->portdev[i] &&
730c2009a4cSGeorge V. Neville-Neil 		    device_delete_child(sc->dev, sc->portdev[i]) != 0)
7313cf138bbSGeorge V. Neville-Neil 			device_printf(sc->dev, "failed to delete child port\n");
7323cf138bbSGeorge V. Neville-Neil 	}
733d722cab4SKip Macy 
7343f345a5dSKip Macy 	/*
7353f345a5dSKip Macy 	 * At this point, it is as if cxgb_port_detach has run on all ports, and
7363f345a5dSKip Macy 	 * cxgb_down has run on the adapter.  All interrupts have been silenced,
7373f345a5dSKip Macy 	 * all open devices have been closed.
7383f345a5dSKip Macy 	 */
7393f345a5dSKip Macy 	KASSERT(sc->open_device_map == 0, ("%s: device(s) still open (%x)",
7403f345a5dSKip Macy 					   __func__, sc->open_device_map));
7413f345a5dSKip Macy 	for (i = 0; i < sc->params.nports; i++) {
7423f345a5dSKip Macy 		KASSERT(sc->port[i].ifp == NULL, ("%s: port %i undead!",
7433f345a5dSKip Macy 						  __func__, i));
7443f345a5dSKip Macy 	}
745e3503bc9SGeorge V. Neville-Neil 
7463f345a5dSKip Macy 	/*
7473f345a5dSKip Macy 	 * Finish off the adapter's callouts.
7483f345a5dSKip Macy 	 */
7493f345a5dSKip Macy 	callout_drain(&sc->cxgb_tick_ch);
7503f345a5dSKip Macy 	callout_drain(&sc->sge_timer_ch);
7513f345a5dSKip Macy 
7523f345a5dSKip Macy 	/*
7533f345a5dSKip Macy 	 * Release resources grabbed under FULL_INIT_DONE by cxgb_up.  The
7543f345a5dSKip Macy 	 * sysctls are cleaned up by the kernel linker.
7553f345a5dSKip Macy 	 */
7563f345a5dSKip Macy 	if (sc->flags & FULL_INIT_DONE) {
7573f345a5dSKip Macy  		t3_free_sge_resources(sc);
7583f345a5dSKip Macy  		sc->flags &= ~FULL_INIT_DONE;
7593f345a5dSKip Macy  	}
7603f345a5dSKip Macy 
7613f345a5dSKip Macy 	/*
7623f345a5dSKip Macy 	 * Release all interrupt resources.
7633f345a5dSKip Macy 	 */
7643f345a5dSKip Macy 	cxgb_teardown_interrupts(sc);
765d722cab4SKip Macy 	if (sc->flags & (USING_MSI | USING_MSIX)) {
766d722cab4SKip Macy 		device_printf(sc->dev, "releasing msi message(s)\n");
767d722cab4SKip Macy 		pci_release_msi(sc->dev);
768d722cab4SKip Macy 	} else {
769d722cab4SKip Macy 		device_printf(sc->dev, "no msi message to release\n");
770d722cab4SKip Macy 	}
771e3503bc9SGeorge V. Neville-Neil 
772d722cab4SKip Macy 	if (sc->msix_regs_res != NULL) {
773d722cab4SKip Macy 		bus_release_resource(sc->dev, SYS_RES_MEMORY, sc->msix_regs_rid,
774d722cab4SKip Macy 		    sc->msix_regs_res);
775d722cab4SKip Macy 	}
776d722cab4SKip Macy 
7773f345a5dSKip Macy 	/*
7783f345a5dSKip Macy 	 * Free the adapter's taskqueue.
7793f345a5dSKip Macy 	 */
7808e10660fSKip Macy 	if (sc->tq != NULL) {
7817ac2e6c3SKip Macy 		taskqueue_free(sc->tq);
7828e10660fSKip Macy 		sc->tq = NULL;
7838e10660fSKip Macy 	}
7848e10660fSKip Macy 
785d722cab4SKip Macy 	if (is_offload(sc)) {
7863f345a5dSKip Macy 		clrbit(&sc->registered_device_map, OFFLOAD_DEVMAP_BIT);
787d722cab4SKip Macy 		cxgb_adapter_unofld(sc);
7883f345a5dSKip Macy 	}
7893f345a5dSKip Macy 
79046b0a854SKip Macy #ifdef notyet
7918e10660fSKip Macy 	if (sc->flags & CXGB_OFLD_INIT)
7928e10660fSKip Macy 		cxgb_offload_deactivate(sc);
79346b0a854SKip Macy #endif
794ac3a6d9cSKip Macy 	free(sc->filters, M_DEVBUF);
795b6d90eb7SKip Macy 	t3_sge_free(sc);
796b6d90eb7SKip Macy 
797bb38cd2fSKip Macy 	cxgb_offload_exit();
798bb38cd2fSKip Macy 
7998e10660fSKip Macy 	if (sc->udbs_res != NULL)
8008e10660fSKip Macy 		bus_release_resource(sc->dev, SYS_RES_MEMORY, sc->udbs_rid,
8018e10660fSKip Macy 		    sc->udbs_res);
8028e10660fSKip Macy 
803b6d90eb7SKip Macy 	if (sc->regs_res != NULL)
804b6d90eb7SKip Macy 		bus_release_resource(sc->dev, SYS_RES_MEMORY, sc->regs_rid,
805b6d90eb7SKip Macy 		    sc->regs_res);
806b6d90eb7SKip Macy 
807bb38cd2fSKip Macy 	MTX_DESTROY(&sc->mdio_lock);
808bb38cd2fSKip Macy 	MTX_DESTROY(&sc->sge.reg_lock);
809bb38cd2fSKip Macy 	MTX_DESTROY(&sc->elmer_lock);
810bb38cd2fSKip Macy 	ADAPTER_LOCK_DEINIT(sc);
811b6d90eb7SKip Macy }
812b6d90eb7SKip Macy 
813b6d90eb7SKip Macy /**
814b6d90eb7SKip Macy  *	setup_sge_qsets - configure SGE Tx/Rx/response queues
815b6d90eb7SKip Macy  *	@sc: the controller softc
816b6d90eb7SKip Macy  *
817b6d90eb7SKip Macy  *	Determines how many sets of SGE queues to use and initializes them.
818b6d90eb7SKip Macy  *	We support multiple queue sets per port if we have MSI-X, otherwise
819b6d90eb7SKip Macy  *	just one queue set per port.
820b6d90eb7SKip Macy  */
821b6d90eb7SKip Macy static int
822b6d90eb7SKip Macy setup_sge_qsets(adapter_t *sc)
823b6d90eb7SKip Macy {
8245c5df3daSKip Macy 	int i, j, err, irq_idx = 0, qset_idx = 0;
825d722cab4SKip Macy 	u_int ntxq = SGE_TXQ_PER_SET;
826b6d90eb7SKip Macy 
827b6d90eb7SKip Macy 	if ((err = t3_sge_alloc(sc)) != 0) {
828693d746cSKip Macy 		device_printf(sc->dev, "t3_sge_alloc returned %d\n", err);
829b6d90eb7SKip Macy 		return (err);
830b6d90eb7SKip Macy 	}
831b6d90eb7SKip Macy 
832b6d90eb7SKip Macy 	if (sc->params.rev > 0 && !(sc->flags & USING_MSI))
833b6d90eb7SKip Macy 		irq_idx = -1;
834b6d90eb7SKip Macy 
8355c5df3daSKip Macy 	for (i = 0; i < (sc)->params.nports; i++) {
836b6d90eb7SKip Macy 		struct port_info *pi = &sc->port[i];
837b6d90eb7SKip Macy 
8387ac2e6c3SKip Macy 		for (j = 0; j < pi->nqsets; j++, qset_idx++) {
839693d746cSKip Macy 			err = t3_sge_alloc_qset(sc, qset_idx, (sc)->params.nports,
840b6d90eb7SKip Macy 			    (sc->flags & USING_MSIX) ? qset_idx + 1 : irq_idx,
841b6d90eb7SKip Macy 			    &sc->params.sge.qset[qset_idx], ntxq, pi);
842b6d90eb7SKip Macy 			if (err) {
843b6d90eb7SKip Macy 				t3_free_sge_resources(sc);
8447ac2e6c3SKip Macy 				device_printf(sc->dev, "t3_sge_alloc_qset failed with %d\n",
8457ac2e6c3SKip Macy 				    err);
846b6d90eb7SKip Macy 				return (err);
847b6d90eb7SKip Macy 			}
848b6d90eb7SKip Macy 		}
849b6d90eb7SKip Macy 	}
850b6d90eb7SKip Macy 
851b6d90eb7SKip Macy 	return (0);
852b6d90eb7SKip Macy }
853b6d90eb7SKip Macy 
854ef72318fSKip Macy static void
855e3503bc9SGeorge V. Neville-Neil cxgb_teardown_interrupts(adapter_t *sc)
856ef72318fSKip Macy {
857e3503bc9SGeorge V. Neville-Neil 	int i;
858ef72318fSKip Macy 
859e3503bc9SGeorge V. Neville-Neil 	for (i = 0; i < SGE_QSETS; i++) {
860e3503bc9SGeorge V. Neville-Neil 		if (sc->msix_intr_tag[i] == NULL) {
861ef72318fSKip Macy 
862e3503bc9SGeorge V. Neville-Neil 			/* Should have been setup fully or not at all */
863e3503bc9SGeorge V. Neville-Neil 			KASSERT(sc->msix_irq_res[i] == NULL &&
864e3503bc9SGeorge V. Neville-Neil 				sc->msix_irq_rid[i] == 0,
865e3503bc9SGeorge V. Neville-Neil 				("%s: half-done interrupt (%d).", __func__, i));
866e3503bc9SGeorge V. Neville-Neil 
867e3503bc9SGeorge V. Neville-Neil 			continue;
868e3503bc9SGeorge V. Neville-Neil 		}
869e3503bc9SGeorge V. Neville-Neil 
870ef72318fSKip Macy 		bus_teardown_intr(sc->dev, sc->msix_irq_res[i],
871ef72318fSKip Macy 				  sc->msix_intr_tag[i]);
872e3503bc9SGeorge V. Neville-Neil 		bus_release_resource(sc->dev, SYS_RES_IRQ, sc->msix_irq_rid[i],
873e3503bc9SGeorge V. Neville-Neil 				     sc->msix_irq_res[i]);
874e3503bc9SGeorge V. Neville-Neil 
875e3503bc9SGeorge V. Neville-Neil 		sc->msix_irq_res[i] = sc->msix_intr_tag[i] = NULL;
876e3503bc9SGeorge V. Neville-Neil 		sc->msix_irq_rid[i] = 0;
877ef72318fSKip Macy 	}
878e3503bc9SGeorge V. Neville-Neil 
879e3503bc9SGeorge V. Neville-Neil 	if (sc->intr_tag) {
880e3503bc9SGeorge V. Neville-Neil 		KASSERT(sc->irq_res != NULL,
881e3503bc9SGeorge V. Neville-Neil 			("%s: half-done interrupt.", __func__));
882e3503bc9SGeorge V. Neville-Neil 
883e3503bc9SGeorge V. Neville-Neil 		bus_teardown_intr(sc->dev, sc->irq_res, sc->intr_tag);
884e3503bc9SGeorge V. Neville-Neil 		bus_release_resource(sc->dev, SYS_RES_IRQ, sc->irq_rid,
885e3503bc9SGeorge V. Neville-Neil 				     sc->irq_res);
886e3503bc9SGeorge V. Neville-Neil 
887e3503bc9SGeorge V. Neville-Neil 		sc->irq_res = sc->intr_tag = NULL;
888e3503bc9SGeorge V. Neville-Neil 		sc->irq_rid = 0;
889ef72318fSKip Macy 	}
890ef72318fSKip Macy }
891ef72318fSKip Macy 
892b6d90eb7SKip Macy static int
893e3503bc9SGeorge V. Neville-Neil cxgb_setup_interrupts(adapter_t *sc)
894b6d90eb7SKip Macy {
895e3503bc9SGeorge V. Neville-Neil 	struct resource *res;
896e3503bc9SGeorge V. Neville-Neil 	void *tag;
897e3503bc9SGeorge V. Neville-Neil 	int i, rid, err, intr_flag = sc->flags & (USING_MSI | USING_MSIX);
898b6d90eb7SKip Macy 
899e3503bc9SGeorge V. Neville-Neil 	sc->irq_rid = intr_flag ? 1 : 0;
900e3503bc9SGeorge V. Neville-Neil 	sc->irq_res = bus_alloc_resource_any(sc->dev, SYS_RES_IRQ, &sc->irq_rid,
901e3503bc9SGeorge V. Neville-Neil 					     RF_SHAREABLE | RF_ACTIVE);
902e3503bc9SGeorge V. Neville-Neil 	if (sc->irq_res == NULL) {
903e3503bc9SGeorge V. Neville-Neil 		device_printf(sc->dev, "Cannot allocate interrupt (%x, %u)\n",
904e3503bc9SGeorge V. Neville-Neil 			      intr_flag, sc->irq_rid);
905e3503bc9SGeorge V. Neville-Neil 		err = EINVAL;
906e3503bc9SGeorge V. Neville-Neil 		sc->irq_rid = 0;
907e3503bc9SGeorge V. Neville-Neil 	} else {
908e3503bc9SGeorge V. Neville-Neil 		err = bus_setup_intr(sc->dev, sc->irq_res,
909e83ec3e5SNavdeep Parhar 		    INTR_MPSAFE | INTR_TYPE_NET, NULL,
910e3503bc9SGeorge V. Neville-Neil 		    sc->cxgb_intr, sc, &sc->intr_tag);
911a02573bcSKip Macy 
912e3503bc9SGeorge V. Neville-Neil 		if (err) {
913e3503bc9SGeorge V. Neville-Neil 			device_printf(sc->dev,
914e3503bc9SGeorge V. Neville-Neil 				      "Cannot set up interrupt (%x, %u, %d)\n",
915e3503bc9SGeorge V. Neville-Neil 				      intr_flag, sc->irq_rid, err);
916e3503bc9SGeorge V. Neville-Neil 			bus_release_resource(sc->dev, SYS_RES_IRQ, sc->irq_rid,
917e3503bc9SGeorge V. Neville-Neil 					     sc->irq_res);
918e3503bc9SGeorge V. Neville-Neil 			sc->irq_res = sc->intr_tag = NULL;
919e3503bc9SGeorge V. Neville-Neil 			sc->irq_rid = 0;
920b6d90eb7SKip Macy 		}
921b6d90eb7SKip Macy 	}
922693d746cSKip Macy 
923e3503bc9SGeorge V. Neville-Neil 	/* That's all for INTx or MSI */
924e3503bc9SGeorge V. Neville-Neil 	if (!(intr_flag & USING_MSIX) || err)
925e3503bc9SGeorge V. Neville-Neil 		return (err);
926e3503bc9SGeorge V. Neville-Neil 
927e3503bc9SGeorge V. Neville-Neil 	for (i = 0; i < sc->msi_count - 1; i++) {
928e3503bc9SGeorge V. Neville-Neil 		rid = i + 2;
929e3503bc9SGeorge V. Neville-Neil 		res = bus_alloc_resource_any(sc->dev, SYS_RES_IRQ, &rid,
930e3503bc9SGeorge V. Neville-Neil 					     RF_SHAREABLE | RF_ACTIVE);
931e3503bc9SGeorge V. Neville-Neil 		if (res == NULL) {
932e3503bc9SGeorge V. Neville-Neil 			device_printf(sc->dev, "Cannot allocate interrupt "
933e3503bc9SGeorge V. Neville-Neil 				      "for message %d\n", rid);
934e3503bc9SGeorge V. Neville-Neil 			err = EINVAL;
935e3503bc9SGeorge V. Neville-Neil 			break;
936b6d90eb7SKip Macy 		}
937b6d90eb7SKip Macy 
938e3503bc9SGeorge V. Neville-Neil 		err = bus_setup_intr(sc->dev, res, INTR_MPSAFE | INTR_TYPE_NET,
939e83ec3e5SNavdeep Parhar 				     NULL, t3_intr_msix, &sc->sge.qs[i], &tag);
940e3503bc9SGeorge V. Neville-Neil 		if (err) {
941e3503bc9SGeorge V. Neville-Neil 			device_printf(sc->dev, "Cannot set up interrupt "
942e3503bc9SGeorge V. Neville-Neil 				      "for message %d (%d)\n", rid, err);
943e3503bc9SGeorge V. Neville-Neil 			bus_release_resource(sc->dev, SYS_RES_IRQ, rid, res);
944e3503bc9SGeorge V. Neville-Neil 			break;
945e3503bc9SGeorge V. Neville-Neil 		}
946e3503bc9SGeorge V. Neville-Neil 
947e3503bc9SGeorge V. Neville-Neil 		sc->msix_irq_rid[i] = rid;
948e3503bc9SGeorge V. Neville-Neil 		sc->msix_irq_res[i] = res;
949e3503bc9SGeorge V. Neville-Neil 		sc->msix_intr_tag[i] = tag;
950e3503bc9SGeorge V. Neville-Neil 	}
951e3503bc9SGeorge V. Neville-Neil 
952e3503bc9SGeorge V. Neville-Neil 	if (err)
953e3503bc9SGeorge V. Neville-Neil 		cxgb_teardown_interrupts(sc);
954e3503bc9SGeorge V. Neville-Neil 
955e3503bc9SGeorge V. Neville-Neil 	return (err);
956e3503bc9SGeorge V. Neville-Neil }
957e3503bc9SGeorge V. Neville-Neil 
958e3503bc9SGeorge V. Neville-Neil 
959b6d90eb7SKip Macy static int
960b6d90eb7SKip Macy cxgb_port_probe(device_t dev)
961b6d90eb7SKip Macy {
962b6d90eb7SKip Macy 	struct port_info *p;
963b6d90eb7SKip Macy 	char buf[80];
9648e10660fSKip Macy 	const char *desc;
965b6d90eb7SKip Macy 
966b6d90eb7SKip Macy 	p = device_get_softc(dev);
9678e10660fSKip Macy 	desc = p->phy.desc;
9688e10660fSKip Macy 	snprintf(buf, sizeof(buf), "Port %d %s", p->port_id, desc);
969b6d90eb7SKip Macy 	device_set_desc_copy(dev, buf);
970b6d90eb7SKip Macy 	return (0);
971b6d90eb7SKip Macy }
972b6d90eb7SKip Macy 
973b6d90eb7SKip Macy 
974b6d90eb7SKip Macy static int
975b6d90eb7SKip Macy cxgb_makedev(struct port_info *pi)
976b6d90eb7SKip Macy {
977b6d90eb7SKip Macy 
978ef72318fSKip Macy 	pi->port_cdev = make_dev(&cxgb_cdevsw, pi->ifp->if_dunit,
979ef72318fSKip Macy 	    UID_ROOT, GID_WHEEL, 0600, if_name(pi->ifp));
980b6d90eb7SKip Macy 
981b6d90eb7SKip Macy 	if (pi->port_cdev == NULL)
982b6d90eb7SKip Macy 		return (ENOMEM);
983b6d90eb7SKip Macy 
984b6d90eb7SKip Macy 	pi->port_cdev->si_drv1 = (void *)pi;
985b6d90eb7SKip Macy 
986b6d90eb7SKip Macy 	return (0);
987b6d90eb7SKip Macy }
988b6d90eb7SKip Macy 
989e83ec3e5SNavdeep Parhar #define CXGB_CAP (IFCAP_VLAN_HWTAGGING | IFCAP_VLAN_MTU | IFCAP_HWCSUM | \
990f9c6e164SNavdeep Parhar     IFCAP_VLAN_HWCSUM | IFCAP_TSO | IFCAP_JUMBO_MTU | IFCAP_LRO | \
9912caefebbSNavdeep Parhar     IFCAP_VLAN_HWTSO | IFCAP_LINKSTATE)
992e83ec3e5SNavdeep Parhar #define CXGB_CAP_ENABLE (CXGB_CAP & ~IFCAP_TSO6)
993b6d90eb7SKip Macy 
994b6d90eb7SKip Macy static int
995b6d90eb7SKip Macy cxgb_port_attach(device_t dev)
996b6d90eb7SKip Macy {
997b6d90eb7SKip Macy 	struct port_info *p;
998b6d90eb7SKip Macy 	struct ifnet *ifp;
9992975f787SNavdeep Parhar 	int err;
10008e10660fSKip Macy 	struct adapter *sc;
10018e10660fSKip Macy 
1002b6d90eb7SKip Macy 	p = device_get_softc(dev);
10038e10660fSKip Macy 	sc = p->adapter;
1004bb38cd2fSKip Macy 	snprintf(p->lockbuf, PORT_NAME_LEN, "cxgb port lock %d:%d",
10056b68e276SKip Macy 	    device_get_unit(device_get_parent(dev)), p->port_id);
1006bb38cd2fSKip Macy 	PORT_LOCK_INIT(p, p->lockbuf);
1007b6d90eb7SKip Macy 
1008b6d90eb7SKip Macy 	/* Allocate an ifnet object and set it up */
1009b6d90eb7SKip Macy 	ifp = p->ifp = if_alloc(IFT_ETHER);
1010b6d90eb7SKip Macy 	if (ifp == NULL) {
1011b6d90eb7SKip Macy 		device_printf(dev, "Cannot allocate ifnet\n");
1012b6d90eb7SKip Macy 		return (ENOMEM);
1013b6d90eb7SKip Macy 	}
1014b6d90eb7SKip Macy 
1015b6d90eb7SKip Macy 	if_initname(ifp, device_get_name(dev), device_get_unit(dev));
1016b6d90eb7SKip Macy 	ifp->if_init = cxgb_init;
1017b6d90eb7SKip Macy 	ifp->if_softc = p;
1018b6d90eb7SKip Macy 	ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST;
1019b6d90eb7SKip Macy 	ifp->if_ioctl = cxgb_ioctl;
1020b6d90eb7SKip Macy 	ifp->if_start = cxgb_start;
10218090c9f5SKip Macy 
1022e50d35e6SMaxim Sobolev 	ifp->if_snd.ifq_drv_maxlen = max(cxgb_snd_queue_len, ifqmaxlen);
1023b6d90eb7SKip Macy 	IFQ_SET_MAXLEN(&ifp->if_snd, ifp->if_snd.ifq_drv_maxlen);
1024b6d90eb7SKip Macy 	IFQ_SET_READY(&ifp->if_snd);
1025b6d90eb7SKip Macy 
1026e83ec3e5SNavdeep Parhar 	ifp->if_capabilities = CXGB_CAP;
1027e83ec3e5SNavdeep Parhar 	ifp->if_capenable = CXGB_CAP_ENABLE;
1028e83ec3e5SNavdeep Parhar 	ifp->if_hwassist = CSUM_TCP | CSUM_UDP | CSUM_IP | CSUM_TSO;
1029e83ec3e5SNavdeep Parhar 
1030ac3a6d9cSKip Macy 	/*
1031e83ec3e5SNavdeep Parhar 	 * Disable TSO on 4-port - it isn't supported by the firmware.
1032ac3a6d9cSKip Macy 	 */
1033e83ec3e5SNavdeep Parhar 	if (sc->params.nports > 2) {
1034f9c6e164SNavdeep Parhar 		ifp->if_capabilities &= ~(IFCAP_TSO | IFCAP_VLAN_HWTSO);
1035f9c6e164SNavdeep Parhar 		ifp->if_capenable &= ~(IFCAP_TSO | IFCAP_VLAN_HWTSO);
1036ac3a6d9cSKip Macy 		ifp->if_hwassist &= ~CSUM_TSO;
1037ac3a6d9cSKip Macy 	}
1038b6d90eb7SKip Macy 
1039b6d90eb7SKip Macy 	ether_ifattach(ifp, p->hw_addr);
10403f345a5dSKip Macy 	ifp->if_transmit = cxgb_transmit;
10413f345a5dSKip Macy 	ifp->if_qflush = cxgb_qflush;
10423cf138bbSGeorge V. Neville-Neil 
1043e83ec3e5SNavdeep Parhar #ifdef DEFAULT_JUMBO
1044e83ec3e5SNavdeep Parhar 	if (sc->params.nports <= 2)
10454af83c8cSKip Macy 		ifp->if_mtu = ETHERMTU_JUMBO;
1046e83ec3e5SNavdeep Parhar #endif
1047b6d90eb7SKip Macy 	if ((err = cxgb_makedev(p)) != 0) {
1048b6d90eb7SKip Macy 		printf("makedev failed %d\n", err);
1049b6d90eb7SKip Macy 		return (err);
1050b6d90eb7SKip Macy 	}
10512975f787SNavdeep Parhar 
10522975f787SNavdeep Parhar 	/* Create a list of media supported by this port */
1053b6d90eb7SKip Macy 	ifmedia_init(&p->media, IFM_IMASK, cxgb_media_change,
1054b6d90eb7SKip Macy 	    cxgb_media_status);
10552975f787SNavdeep Parhar 	cxgb_build_medialist(p);
1056ef72318fSKip Macy 
1057ef72318fSKip Macy 	t3_sge_init_port(p);
1058f2d8ff04SGeorge V. Neville-Neil 
10593cf138bbSGeorge V. Neville-Neil 	return (err);
1060b6d90eb7SKip Macy }
1061b6d90eb7SKip Macy 
10623cf138bbSGeorge V. Neville-Neil /*
10633cf138bbSGeorge V. Neville-Neil  * cxgb_port_detach() is called via the device_detach methods when
10643cf138bbSGeorge V. Neville-Neil  * cxgb_free() calls the bus_generic_detach.  It is responsible for
10653cf138bbSGeorge V. Neville-Neil  * removing the device from the view of the kernel, i.e. from all
10663cf138bbSGeorge V. Neville-Neil  * interfaces lists etc.  This routine is only called when the driver is
10673cf138bbSGeorge V. Neville-Neil  * being unloaded, not when the link goes down.
10683cf138bbSGeorge V. Neville-Neil  */
1069b6d90eb7SKip Macy static int
1070b6d90eb7SKip Macy cxgb_port_detach(device_t dev)
1071b6d90eb7SKip Macy {
1072b6d90eb7SKip Macy 	struct port_info *p;
10733cf138bbSGeorge V. Neville-Neil 	struct adapter *sc;
10743f345a5dSKip Macy 	int i;
1075b6d90eb7SKip Macy 
1076b6d90eb7SKip Macy 	p = device_get_softc(dev);
10773cf138bbSGeorge V. Neville-Neil 	sc = p->adapter;
10783cf138bbSGeorge V. Neville-Neil 
1079b302b77cSNavdeep Parhar 	/* Tell cxgb_ioctl and if_init that the port is going away */
1080b302b77cSNavdeep Parhar 	ADAPTER_LOCK(sc);
1081b302b77cSNavdeep Parhar 	SET_DOOMED(p);
1082b302b77cSNavdeep Parhar 	wakeup(&sc->flags);
1083b302b77cSNavdeep Parhar 	while (IS_BUSY(sc))
1084b302b77cSNavdeep Parhar 		mtx_sleep(&sc->flags, &sc->lock, 0, "cxgbdtch", 0);
1085b302b77cSNavdeep Parhar 	SET_BUSY(sc);
1086b302b77cSNavdeep Parhar 	ADAPTER_UNLOCK(sc);
10873f345a5dSKip Macy 
10883cf138bbSGeorge V. Neville-Neil 	if (p->port_cdev != NULL)
10893cf138bbSGeorge V. Neville-Neil 		destroy_dev(p->port_cdev);
10903cf138bbSGeorge V. Neville-Neil 
10913f345a5dSKip Macy 	cxgb_uninit_synchronized(p);
10923cf138bbSGeorge V. Neville-Neil 	ether_ifdetach(p->ifp);
1093d722cab4SKip Macy 
10943f345a5dSKip Macy 	for (i = p->first_qset; i < p->first_qset + p->nqsets; i++) {
10953f345a5dSKip Macy 		struct sge_qset *qs = &sc->sge.qs[i];
10963f345a5dSKip Macy 		struct sge_txq *txq = &qs->txq[TXQ_ETH];
1097d722cab4SKip Macy 
10983f345a5dSKip Macy 		callout_drain(&txq->txq_watchdog);
10993f345a5dSKip Macy 		callout_drain(&txq->txq_timer);
11003cf138bbSGeorge V. Neville-Neil 	}
11013cf138bbSGeorge V. Neville-Neil 
11027ac2e6c3SKip Macy 	PORT_LOCK_DEINIT(p);
1103b6d90eb7SKip Macy 	if_free(p->ifp);
11043f345a5dSKip Macy 	p->ifp = NULL;
1105b6d90eb7SKip Macy 
1106b302b77cSNavdeep Parhar 	ADAPTER_LOCK(sc);
1107b302b77cSNavdeep Parhar 	CLR_BUSY(sc);
1108b302b77cSNavdeep Parhar 	wakeup_one(&sc->flags);
1109b302b77cSNavdeep Parhar 	ADAPTER_UNLOCK(sc);
1110b6d90eb7SKip Macy 	return (0);
1111b6d90eb7SKip Macy }
1112b6d90eb7SKip Macy 
1113b6d90eb7SKip Macy void
1114b6d90eb7SKip Macy t3_fatal_err(struct adapter *sc)
1115b6d90eb7SKip Macy {
1116b6d90eb7SKip Macy 	u_int fw_status[4];
1117b6d90eb7SKip Macy 
11185c5df3daSKip Macy 	if (sc->flags & FULL_INIT_DONE) {
11195c5df3daSKip Macy 		t3_sge_stop(sc);
11205c5df3daSKip Macy 		t3_write_reg(sc, A_XGM_TX_CTRL, 0);
11215c5df3daSKip Macy 		t3_write_reg(sc, A_XGM_RX_CTRL, 0);
11225c5df3daSKip Macy 		t3_write_reg(sc, XGM_REG(A_XGM_TX_CTRL, 1), 0);
11235c5df3daSKip Macy 		t3_write_reg(sc, XGM_REG(A_XGM_RX_CTRL, 1), 0);
11245c5df3daSKip Macy 		t3_intr_disable(sc);
11255c5df3daSKip Macy 	}
1126b6d90eb7SKip Macy 	device_printf(sc->dev,"encountered fatal error, operation suspended\n");
1127b6d90eb7SKip Macy 	if (!t3_cim_ctl_blk_read(sc, 0xa0, 4, fw_status))
1128b6d90eb7SKip Macy 		device_printf(sc->dev, "FW_ status: 0x%x, 0x%x, 0x%x, 0x%x\n",
1129b6d90eb7SKip Macy 		    fw_status[0], fw_status[1], fw_status[2], fw_status[3]);
1130b6d90eb7SKip Macy }
1131b6d90eb7SKip Macy 
1132b6d90eb7SKip Macy int
1133b6d90eb7SKip Macy t3_os_find_pci_capability(adapter_t *sc, int cap)
1134b6d90eb7SKip Macy {
1135b6d90eb7SKip Macy 	device_t dev;
1136b6d90eb7SKip Macy 	struct pci_devinfo *dinfo;
1137b6d90eb7SKip Macy 	pcicfgregs *cfg;
1138b6d90eb7SKip Macy 	uint32_t status;
1139b6d90eb7SKip Macy 	uint8_t ptr;
1140b6d90eb7SKip Macy 
1141b6d90eb7SKip Macy 	dev = sc->dev;
1142b6d90eb7SKip Macy 	dinfo = device_get_ivars(dev);
1143b6d90eb7SKip Macy 	cfg = &dinfo->cfg;
1144b6d90eb7SKip Macy 
1145b6d90eb7SKip Macy 	status = pci_read_config(dev, PCIR_STATUS, 2);
1146b6d90eb7SKip Macy 	if (!(status & PCIM_STATUS_CAPPRESENT))
1147b6d90eb7SKip Macy 		return (0);
1148b6d90eb7SKip Macy 
1149b6d90eb7SKip Macy 	switch (cfg->hdrtype & PCIM_HDRTYPE) {
1150b6d90eb7SKip Macy 	case 0:
1151b6d90eb7SKip Macy 	case 1:
1152b6d90eb7SKip Macy 		ptr = PCIR_CAP_PTR;
1153b6d90eb7SKip Macy 		break;
1154b6d90eb7SKip Macy 	case 2:
1155b6d90eb7SKip Macy 		ptr = PCIR_CAP_PTR_2;
1156b6d90eb7SKip Macy 		break;
1157b6d90eb7SKip Macy 	default:
1158b6d90eb7SKip Macy 		return (0);
1159b6d90eb7SKip Macy 		break;
1160b6d90eb7SKip Macy 	}
1161b6d90eb7SKip Macy 	ptr = pci_read_config(dev, ptr, 1);
1162b6d90eb7SKip Macy 
1163b6d90eb7SKip Macy 	while (ptr != 0) {
1164b6d90eb7SKip Macy 		if (pci_read_config(dev, ptr + PCICAP_ID, 1) == cap)
1165b6d90eb7SKip Macy 			return (ptr);
1166b6d90eb7SKip Macy 		ptr = pci_read_config(dev, ptr + PCICAP_NEXTPTR, 1);
1167b6d90eb7SKip Macy 	}
1168b6d90eb7SKip Macy 
1169b6d90eb7SKip Macy 	return (0);
1170b6d90eb7SKip Macy }
1171b6d90eb7SKip Macy 
1172b6d90eb7SKip Macy int
1173b6d90eb7SKip Macy t3_os_pci_save_state(struct adapter *sc)
1174b6d90eb7SKip Macy {
1175b6d90eb7SKip Macy 	device_t dev;
1176b6d90eb7SKip Macy 	struct pci_devinfo *dinfo;
1177b6d90eb7SKip Macy 
1178b6d90eb7SKip Macy 	dev = sc->dev;
1179b6d90eb7SKip Macy 	dinfo = device_get_ivars(dev);
1180b6d90eb7SKip Macy 
1181b6d90eb7SKip Macy 	pci_cfg_save(dev, dinfo, 0);
1182b6d90eb7SKip Macy 	return (0);
1183b6d90eb7SKip Macy }
1184b6d90eb7SKip Macy 
1185b6d90eb7SKip Macy int
1186b6d90eb7SKip Macy t3_os_pci_restore_state(struct adapter *sc)
1187b6d90eb7SKip Macy {
1188b6d90eb7SKip Macy 	device_t dev;
1189b6d90eb7SKip Macy 	struct pci_devinfo *dinfo;
1190b6d90eb7SKip Macy 
1191b6d90eb7SKip Macy 	dev = sc->dev;
1192b6d90eb7SKip Macy 	dinfo = device_get_ivars(dev);
1193b6d90eb7SKip Macy 
1194b6d90eb7SKip Macy 	pci_cfg_restore(dev, dinfo);
1195b6d90eb7SKip Macy 	return (0);
1196b6d90eb7SKip Macy }
1197b6d90eb7SKip Macy 
1198b6d90eb7SKip Macy /**
1199b6d90eb7SKip Macy  *	t3_os_link_changed - handle link status changes
1200c01f2b83SNavdeep Parhar  *	@sc: the adapter associated with the link change
1201c01f2b83SNavdeep Parhar  *	@port_id: the port index whose link status has changed
120219905d6dSKip Macy  *	@link_status: the new status of the link
1203b6d90eb7SKip Macy  *	@speed: the new speed setting
1204b6d90eb7SKip Macy  *	@duplex: the new duplex setting
1205b6d90eb7SKip Macy  *	@fc: the new flow-control setting
1206b6d90eb7SKip Macy  *
1207b6d90eb7SKip Macy  *	This is the OS-dependent handler for link status changes.  The OS
1208b6d90eb7SKip Macy  *	neutral handler takes care of most of the processing for these events,
1209b6d90eb7SKip Macy  *	then calls this handler for any OS-specific processing.
1210b6d90eb7SKip Macy  */
1211b6d90eb7SKip Macy void
1212b6d90eb7SKip Macy t3_os_link_changed(adapter_t *adapter, int port_id, int link_status, int speed,
1213c01f2b83SNavdeep Parhar      int duplex, int fc, int mac_was_reset)
1214b6d90eb7SKip Macy {
1215b6d90eb7SKip Macy 	struct port_info *pi = &adapter->port[port_id];
12163f345a5dSKip Macy 	struct ifnet *ifp = pi->ifp;
12173f345a5dSKip Macy 
12183f345a5dSKip Macy 	/* no race with detach, so ifp should always be good */
12193f345a5dSKip Macy 	KASSERT(ifp, ("%s: if detached.", __func__));
1220b6d90eb7SKip Macy 
1221c01f2b83SNavdeep Parhar 	/* Reapply mac settings if they were lost due to a reset */
1222c01f2b83SNavdeep Parhar 	if (mac_was_reset) {
1223c01f2b83SNavdeep Parhar 		PORT_LOCK(pi);
1224c01f2b83SNavdeep Parhar 		cxgb_update_mac_settings(pi);
1225c01f2b83SNavdeep Parhar 		PORT_UNLOCK(pi);
1226c01f2b83SNavdeep Parhar 	}
1227c01f2b83SNavdeep Parhar 
1228d722cab4SKip Macy 	if (link_status) {
12293f345a5dSKip Macy 		ifp->if_baudrate = IF_Mbps(speed);
12303f345a5dSKip Macy 		if_link_state_change(ifp, LINK_STATE_UP);
12310bbdea77SGeorge V. Neville-Neil 	} else
12323f345a5dSKip Macy 		if_link_state_change(ifp, LINK_STATE_DOWN);
1233d722cab4SKip Macy }
1234b6d90eb7SKip Macy 
12359b4de886SKip Macy /**
12369b4de886SKip Macy  *	t3_os_phymod_changed - handle PHY module changes
12379b4de886SKip Macy  *	@phy: the PHY reporting the module change
12389b4de886SKip Macy  *	@mod_type: new module type
12399b4de886SKip Macy  *
12409b4de886SKip Macy  *	This is the OS-dependent handler for PHY module changes.  It is
12419b4de886SKip Macy  *	invoked when a PHY module is removed or inserted for any OS-specific
12429b4de886SKip Macy  *	processing.
12439b4de886SKip Macy  */
12449b4de886SKip Macy void t3_os_phymod_changed(struct adapter *adap, int port_id)
12459b4de886SKip Macy {
12469b4de886SKip Macy 	static const char *mod_str[] = {
1247cd5c70b2SNavdeep Parhar 		NULL, "SR", "LR", "LRM", "TWINAX", "TWINAX-L", "unknown"
12489b4de886SKip Macy 	};
12499b4de886SKip Macy 	struct port_info *pi = &adap->port[port_id];
12502975f787SNavdeep Parhar 	int mod = pi->phy.modtype;
12519b4de886SKip Macy 
12522975f787SNavdeep Parhar 	if (mod != pi->media.ifm_cur->ifm_data)
12532975f787SNavdeep Parhar 		cxgb_build_medialist(pi);
12542975f787SNavdeep Parhar 
12552975f787SNavdeep Parhar 	if (mod == phy_modtype_none)
12562975f787SNavdeep Parhar 		if_printf(pi->ifp, "PHY module unplugged\n");
12579b4de886SKip Macy 	else {
12582975f787SNavdeep Parhar 		KASSERT(mod < ARRAY_SIZE(mod_str),
12592975f787SNavdeep Parhar 			("invalid PHY module type %d", mod));
12602975f787SNavdeep Parhar 		if_printf(pi->ifp, "%s PHY module inserted\n", mod_str[mod]);
12619b4de886SKip Macy 	}
12629b4de886SKip Macy }
12639b4de886SKip Macy 
1264b6d90eb7SKip Macy /*
1265b6d90eb7SKip Macy  * Interrupt-context handler for external (PHY) interrupts.
1266b6d90eb7SKip Macy  */
1267b6d90eb7SKip Macy void
1268b6d90eb7SKip Macy t3_os_ext_intr_handler(adapter_t *sc)
1269b6d90eb7SKip Macy {
1270b6d90eb7SKip Macy 	if (cxgb_debug)
1271b6d90eb7SKip Macy 		printf("t3_os_ext_intr_handler\n");
1272b6d90eb7SKip Macy 	/*
1273b6d90eb7SKip Macy 	 * Schedule a task to handle external interrupts as they may be slow
1274b6d90eb7SKip Macy 	 * and we use a mutex to protect MDIO registers.  We disable PHY
1275b6d90eb7SKip Macy 	 * interrupts in the meantime and let the task reenable them when
1276b6d90eb7SKip Macy 	 * it's done.
1277b6d90eb7SKip Macy 	 */
1278b6d90eb7SKip Macy 	if (sc->slow_intr_mask) {
12793f345a5dSKip Macy 		ADAPTER_LOCK(sc);
1280b6d90eb7SKip Macy 		sc->slow_intr_mask &= ~F_T3DBG;
1281b6d90eb7SKip Macy 		t3_write_reg(sc, A_PL_INT_ENABLE0, sc->slow_intr_mask);
1282b6d90eb7SKip Macy 		taskqueue_enqueue(sc->tq, &sc->ext_intr_task);
1283d722cab4SKip Macy 		ADAPTER_UNLOCK(sc);
1284b6d90eb7SKip Macy 	}
12853f345a5dSKip Macy }
1286b6d90eb7SKip Macy 
1287b6d90eb7SKip Macy void
1288b6d90eb7SKip Macy t3_os_set_hw_addr(adapter_t *adapter, int port_idx, u8 hw_addr[])
1289b6d90eb7SKip Macy {
1290b6d90eb7SKip Macy 
1291b6d90eb7SKip Macy 	/*
1292b6d90eb7SKip Macy 	 * The ifnet might not be allocated before this gets called,
1293b6d90eb7SKip Macy 	 * as this is called early on in attach by t3_prep_adapter
1294b6d90eb7SKip Macy 	 * save the address off in the port structure
1295b6d90eb7SKip Macy 	 */
1296b6d90eb7SKip Macy 	if (cxgb_debug)
1297b6d90eb7SKip Macy 		printf("set_hw_addr on idx %d addr %6D\n", port_idx, hw_addr, ":");
1298b6d90eb7SKip Macy 	bcopy(hw_addr, adapter->port[port_idx].hw_addr, ETHER_ADDR_LEN);
1299b6d90eb7SKip Macy }
1300b6d90eb7SKip Macy 
13013f345a5dSKip Macy /*
13023f345a5dSKip Macy  * Programs the XGMAC based on the settings in the ifnet.  These settings
13033f345a5dSKip Macy  * include MTU, MAC address, mcast addresses, etc.
1304b6d90eb7SKip Macy  */
1305b6d90eb7SKip Macy static void
13063f345a5dSKip Macy cxgb_update_mac_settings(struct port_info *p)
1307b6d90eb7SKip Macy {
13083f345a5dSKip Macy 	struct ifnet *ifp = p->ifp;
1309b6d90eb7SKip Macy 	struct t3_rx_mode rm;
1310b6d90eb7SKip Macy 	struct cmac *mac = &p->mac;
13114af83c8cSKip Macy 	int mtu, hwtagging;
1312b6d90eb7SKip Macy 
13133f345a5dSKip Macy 	PORT_LOCK_ASSERT_OWNED(p);
1314b6d90eb7SKip Macy 
13154af83c8cSKip Macy 	bcopy(IF_LLADDR(ifp), p->hw_addr, ETHER_ADDR_LEN);
13164af83c8cSKip Macy 
13174af83c8cSKip Macy 	mtu = ifp->if_mtu;
13184af83c8cSKip Macy 	if (ifp->if_capenable & IFCAP_VLAN_MTU)
13194af83c8cSKip Macy 		mtu += ETHER_VLAN_ENCAP_LEN;
13204af83c8cSKip Macy 
13214af83c8cSKip Macy 	hwtagging = (ifp->if_capenable & IFCAP_VLAN_HWTAGGING) != 0;
13224af83c8cSKip Macy 
13234af83c8cSKip Macy 	t3_mac_set_mtu(mac, mtu);
13244af83c8cSKip Macy 	t3_set_vlan_accel(p->adapter, 1 << p->tx_chan, hwtagging);
1325b6d90eb7SKip Macy 	t3_mac_set_address(mac, 0, p->hw_addr);
13263f345a5dSKip Macy 	t3_init_rx_mode(&rm, p);
1327b6d90eb7SKip Macy 	t3_mac_set_rx_mode(mac, &rm);
1328b6d90eb7SKip Macy }
1329b6d90eb7SKip Macy 
13308e10660fSKip Macy 
13318e10660fSKip Macy static int
13328e10660fSKip Macy await_mgmt_replies(struct adapter *adap, unsigned long init_cnt,
13338e10660fSKip Macy 			      unsigned long n)
13348e10660fSKip Macy {
13358e10660fSKip Macy 	int attempts = 5;
13368e10660fSKip Macy 
13378e10660fSKip Macy 	while (adap->sge.qs[0].rspq.offload_pkts < init_cnt + n) {
13388e10660fSKip Macy 		if (!--attempts)
13398e10660fSKip Macy 			return (ETIMEDOUT);
13408e10660fSKip Macy 		t3_os_sleep(10);
13418e10660fSKip Macy 	}
13428e10660fSKip Macy 	return 0;
13438e10660fSKip Macy }
13448e10660fSKip Macy 
13458e10660fSKip Macy static int
13468e10660fSKip Macy init_tp_parity(struct adapter *adap)
13478e10660fSKip Macy {
13488e10660fSKip Macy 	int i;
13498e10660fSKip Macy 	struct mbuf *m;
13508e10660fSKip Macy 	struct cpl_set_tcb_field *greq;
13518e10660fSKip Macy 	unsigned long cnt = adap->sge.qs[0].rspq.offload_pkts;
13528e10660fSKip Macy 
13538e10660fSKip Macy 	t3_tp_set_offload_mode(adap, 1);
13548e10660fSKip Macy 
13558e10660fSKip Macy 	for (i = 0; i < 16; i++) {
13568e10660fSKip Macy 		struct cpl_smt_write_req *req;
13578e10660fSKip Macy 
13588e10660fSKip Macy 		m = m_gethdr(M_WAITOK, MT_DATA);
13598e10660fSKip Macy 		req = mtod(m, struct cpl_smt_write_req *);
13608e10660fSKip Macy 		m->m_len = m->m_pkthdr.len = sizeof(*req);
13618e10660fSKip Macy 		memset(req, 0, sizeof(*req));
13623f345a5dSKip Macy 		req->wr.wrh_hi = htonl(V_WR_OP(FW_WROPCODE_FORWARD));
13638e10660fSKip Macy 		OPCODE_TID(req) = htonl(MK_OPCODE_TID(CPL_SMT_WRITE_REQ, i));
13648e10660fSKip Macy 		req->iff = i;
13658e10660fSKip Macy 		t3_mgmt_tx(adap, m);
13668e10660fSKip Macy 	}
13678e10660fSKip Macy 
13688e10660fSKip Macy 	for (i = 0; i < 2048; i++) {
13698e10660fSKip Macy 		struct cpl_l2t_write_req *req;
13708e10660fSKip Macy 
13718e10660fSKip Macy 		m = m_gethdr(M_WAITOK, MT_DATA);
13728e10660fSKip Macy 		req = mtod(m, struct cpl_l2t_write_req *);
13738e10660fSKip Macy 		m->m_len = m->m_pkthdr.len = sizeof(*req);
13748e10660fSKip Macy 		memset(req, 0, sizeof(*req));
13753f345a5dSKip Macy 		req->wr.wrh_hi = htonl(V_WR_OP(FW_WROPCODE_FORWARD));
13768e10660fSKip Macy 		OPCODE_TID(req) = htonl(MK_OPCODE_TID(CPL_L2T_WRITE_REQ, i));
13778e10660fSKip Macy 		req->params = htonl(V_L2T_W_IDX(i));
13788e10660fSKip Macy 		t3_mgmt_tx(adap, m);
13798e10660fSKip Macy 	}
13808e10660fSKip Macy 
13818e10660fSKip Macy 	for (i = 0; i < 2048; i++) {
13828e10660fSKip Macy 		struct cpl_rte_write_req *req;
13838e10660fSKip Macy 
13848e10660fSKip Macy 		m = m_gethdr(M_WAITOK, MT_DATA);
13858e10660fSKip Macy 		req = mtod(m, struct cpl_rte_write_req *);
13868e10660fSKip Macy 		m->m_len = m->m_pkthdr.len = sizeof(*req);
13878e10660fSKip Macy 		memset(req, 0, sizeof(*req));
13883f345a5dSKip Macy 		req->wr.wrh_hi = htonl(V_WR_OP(FW_WROPCODE_FORWARD));
13898e10660fSKip Macy 		OPCODE_TID(req) = htonl(MK_OPCODE_TID(CPL_RTE_WRITE_REQ, i));
13908e10660fSKip Macy 		req->l2t_idx = htonl(V_L2T_W_IDX(i));
13918e10660fSKip Macy 		t3_mgmt_tx(adap, m);
13928e10660fSKip Macy 	}
13938e10660fSKip Macy 
13948e10660fSKip Macy 	m = m_gethdr(M_WAITOK, MT_DATA);
13958e10660fSKip Macy 	greq = mtod(m, struct cpl_set_tcb_field *);
13968e10660fSKip Macy 	m->m_len = m->m_pkthdr.len = sizeof(*greq);
13978e10660fSKip Macy 	memset(greq, 0, sizeof(*greq));
13983f345a5dSKip Macy 	greq->wr.wrh_hi = htonl(V_WR_OP(FW_WROPCODE_FORWARD));
13998e10660fSKip Macy 	OPCODE_TID(greq) = htonl(MK_OPCODE_TID(CPL_SET_TCB_FIELD, 0));
14008e10660fSKip Macy 	greq->mask = htobe64(1);
14018e10660fSKip Macy 	t3_mgmt_tx(adap, m);
14028e10660fSKip Macy 
14038e10660fSKip Macy 	i = await_mgmt_replies(adap, cnt, 16 + 2048 + 2048 + 1);
14048e10660fSKip Macy 	t3_tp_set_offload_mode(adap, 0);
14058e10660fSKip Macy 	return (i);
14068e10660fSKip Macy }
14078e10660fSKip Macy 
1408b6d90eb7SKip Macy /**
1409b6d90eb7SKip Macy  *	setup_rss - configure Receive Side Steering (per-queue connection demux)
1410b6d90eb7SKip Macy  *	@adap: the adapter
1411b6d90eb7SKip Macy  *
1412b6d90eb7SKip Macy  *	Sets up RSS to distribute packets to multiple receive queues.  We
1413b6d90eb7SKip Macy  *	configure the RSS CPU lookup table to distribute to the number of HW
1414b6d90eb7SKip Macy  *	receive queues, and the response queue lookup table to narrow that
1415b6d90eb7SKip Macy  *	down to the response queues actually configured for each port.
1416b6d90eb7SKip Macy  *	We always configure the RSS mapping for two ports since the mapping
1417b6d90eb7SKip Macy  *	table has plenty of entries.
1418b6d90eb7SKip Macy  */
1419b6d90eb7SKip Macy static void
1420b6d90eb7SKip Macy setup_rss(adapter_t *adap)
1421b6d90eb7SKip Macy {
1422b6d90eb7SKip Macy 	int i;
1423ac3a6d9cSKip Macy 	u_int nq[2];
1424b6d90eb7SKip Macy 	uint8_t cpus[SGE_QSETS + 1];
1425b6d90eb7SKip Macy 	uint16_t rspq_map[RSS_TABLE_SIZE];
14265c5df3daSKip Macy 
1427b6d90eb7SKip Macy 	for (i = 0; i < SGE_QSETS; ++i)
1428b6d90eb7SKip Macy 		cpus[i] = i;
1429b6d90eb7SKip Macy 	cpus[SGE_QSETS] = 0xff;
1430b6d90eb7SKip Macy 
14317ac2e6c3SKip Macy 	nq[0] = nq[1] = 0;
14327ac2e6c3SKip Macy 	for_each_port(adap, i) {
14337ac2e6c3SKip Macy 		const struct port_info *pi = adap2pinfo(adap, i);
14347ac2e6c3SKip Macy 
14357ac2e6c3SKip Macy 		nq[pi->tx_chan] += pi->nqsets;
14367ac2e6c3SKip Macy 	}
1437b6d90eb7SKip Macy 	for (i = 0; i < RSS_TABLE_SIZE / 2; ++i) {
14388e10660fSKip Macy 		rspq_map[i] = nq[0] ? i % nq[0] : 0;
14398e10660fSKip Macy 		rspq_map[i + RSS_TABLE_SIZE / 2] = nq[1] ? i % nq[1] + nq[0] : 0;
1440b6d90eb7SKip Macy 	}
14416b2eaa83SJohn Baldwin 
1442ac3a6d9cSKip Macy 	/* Calculate the reverse RSS map table */
14436b2eaa83SJohn Baldwin 	for (i = 0; i < SGE_QSETS; ++i)
14446b2eaa83SJohn Baldwin 		adap->rrss_map[i] = 0xff;
1445ac3a6d9cSKip Macy 	for (i = 0; i < RSS_TABLE_SIZE; ++i)
1446ac3a6d9cSKip Macy 		if (adap->rrss_map[rspq_map[i]] == 0xff)
1447ac3a6d9cSKip Macy 			adap->rrss_map[rspq_map[i]] = i;
1448b6d90eb7SKip Macy 
1449b6d90eb7SKip Macy 	t3_config_rss(adap, F_RQFEEDBACKENABLE | F_TNLLKPEN | F_TNLMAPEN |
1450ac3a6d9cSKip Macy 		      F_TNLPRTEN | F_TNL2TUPEN | F_TNL4TUPEN | F_OFDMAPEN |
14518e10660fSKip Macy 	              F_RRCPLMAPEN | V_RRCPLCPUSIZE(6) | F_HASHTOEPLITZ,
14528e10660fSKip Macy 	              cpus, rspq_map);
1453ac3a6d9cSKip Macy 
1454b6d90eb7SKip Macy }
1455b6d90eb7SKip Macy 
1456d722cab4SKip Macy /*
1457d722cab4SKip Macy  * Sends an mbuf to an offload queue driver
1458d722cab4SKip Macy  * after dealing with any active network taps.
1459d722cab4SKip Macy  */
1460d722cab4SKip Macy static inline int
14613e96c7e7SKip Macy offload_tx(struct t3cdev *tdev, struct mbuf *m)
1462d722cab4SKip Macy {
1463d722cab4SKip Macy 	int ret;
1464d722cab4SKip Macy 
1465d722cab4SKip Macy 	ret = t3_offload_tx(tdev, m);
1466ef72318fSKip Macy 	return (ret);
1467d722cab4SKip Macy }
1468d722cab4SKip Macy 
1469d722cab4SKip Macy static int
1470d722cab4SKip Macy write_smt_entry(struct adapter *adapter, int idx)
1471d722cab4SKip Macy {
1472d722cab4SKip Macy 	struct port_info *pi = &adapter->port[idx];
1473d722cab4SKip Macy 	struct cpl_smt_write_req *req;
1474d722cab4SKip Macy 	struct mbuf *m;
1475d722cab4SKip Macy 
1476d722cab4SKip Macy 	if ((m = m_gethdr(M_NOWAIT, MT_DATA)) == NULL)
1477d722cab4SKip Macy 		return (ENOMEM);
1478d722cab4SKip Macy 
1479d722cab4SKip Macy 	req = mtod(m, struct cpl_smt_write_req *);
14808090c9f5SKip Macy 	m->m_pkthdr.len = m->m_len = sizeof(struct cpl_smt_write_req);
14818090c9f5SKip Macy 
14823f345a5dSKip Macy 	req->wr.wrh_hi = htonl(V_WR_OP(FW_WROPCODE_FORWARD));
1483d722cab4SKip Macy 	OPCODE_TID(req) = htonl(MK_OPCODE_TID(CPL_SMT_WRITE_REQ, idx));
1484d722cab4SKip Macy 	req->mtu_idx = NMTUS - 1;  /* should be 0 but there's a T3 bug */
1485d722cab4SKip Macy 	req->iff = idx;
1486d722cab4SKip Macy 	memset(req->src_mac1, 0, sizeof(req->src_mac1));
1487d722cab4SKip Macy 	memcpy(req->src_mac0, pi->hw_addr, ETHER_ADDR_LEN);
1488d722cab4SKip Macy 
1489d722cab4SKip Macy 	m_set_priority(m, 1);
1490d722cab4SKip Macy 
1491d722cab4SKip Macy 	offload_tx(&adapter->tdev, m);
1492d722cab4SKip Macy 
1493d722cab4SKip Macy 	return (0);
1494d722cab4SKip Macy }
1495d722cab4SKip Macy 
1496d722cab4SKip Macy static int
1497d722cab4SKip Macy init_smt(struct adapter *adapter)
1498d722cab4SKip Macy {
1499d722cab4SKip Macy 	int i;
1500d722cab4SKip Macy 
1501d722cab4SKip Macy 	for_each_port(adapter, i)
1502d722cab4SKip Macy 		write_smt_entry(adapter, i);
1503d722cab4SKip Macy 	return 0;
1504d722cab4SKip Macy }
1505d722cab4SKip Macy 
1506d722cab4SKip Macy static void
1507d722cab4SKip Macy init_port_mtus(adapter_t *adapter)
1508d722cab4SKip Macy {
15093f345a5dSKip Macy 	unsigned int mtus = ETHERMTU | (ETHERMTU << 16);
1510d722cab4SKip Macy 
1511d722cab4SKip Macy 	t3_write_reg(adapter, A_TP_MTU_PORT_TABLE, mtus);
1512d722cab4SKip Macy }
1513d722cab4SKip Macy 
1514b6d90eb7SKip Macy static void
1515b6d90eb7SKip Macy send_pktsched_cmd(struct adapter *adap, int sched, int qidx, int lo,
1516b6d90eb7SKip Macy 			      int hi, int port)
1517b6d90eb7SKip Macy {
1518b6d90eb7SKip Macy 	struct mbuf *m;
1519b6d90eb7SKip Macy 	struct mngt_pktsched_wr *req;
1520b6d90eb7SKip Macy 
1521ac3a6d9cSKip Macy 	m = m_gethdr(M_DONTWAIT, MT_DATA);
152220fe52b8SKip Macy 	if (m) {
1523d722cab4SKip Macy 		req = mtod(m, struct mngt_pktsched_wr *);
15243f345a5dSKip Macy 		req->wr.wrh_hi = htonl(V_WR_OP(FW_WROPCODE_MNGT));
1525b6d90eb7SKip Macy 		req->mngt_opcode = FW_MNGTOPCODE_PKTSCHED_SET;
1526b6d90eb7SKip Macy 		req->sched = sched;
1527b6d90eb7SKip Macy 		req->idx = qidx;
1528b6d90eb7SKip Macy 		req->min = lo;
1529b6d90eb7SKip Macy 		req->max = hi;
1530b6d90eb7SKip Macy 		req->binding = port;
1531b6d90eb7SKip Macy 		m->m_len = m->m_pkthdr.len = sizeof(*req);
1532b6d90eb7SKip Macy 		t3_mgmt_tx(adap, m);
1533b6d90eb7SKip Macy 	}
153420fe52b8SKip Macy }
1535b6d90eb7SKip Macy 
1536b6d90eb7SKip Macy static void
1537b6d90eb7SKip Macy bind_qsets(adapter_t *sc)
1538b6d90eb7SKip Macy {
1539b6d90eb7SKip Macy 	int i, j;
1540b6d90eb7SKip Macy 
1541b6d90eb7SKip Macy 	for (i = 0; i < (sc)->params.nports; ++i) {
1542b6d90eb7SKip Macy 		const struct port_info *pi = adap2pinfo(sc, i);
1543b6d90eb7SKip Macy 
15445c5df3daSKip Macy 		for (j = 0; j < pi->nqsets; ++j) {
1545b6d90eb7SKip Macy 			send_pktsched_cmd(sc, 1, pi->first_qset + j, -1,
15465c5df3daSKip Macy 					  -1, pi->tx_chan);
15475c5df3daSKip Macy 
15485c5df3daSKip Macy 		}
1549b6d90eb7SKip Macy 	}
1550b6d90eb7SKip Macy }
1551b6d90eb7SKip Macy 
1552ac3a6d9cSKip Macy static void
1553ac3a6d9cSKip Macy update_tpeeprom(struct adapter *adap)
1554ac3a6d9cSKip Macy {
1555ac3a6d9cSKip Macy 	const struct firmware *tpeeprom;
15562de1fa86SKip Macy 
1557ac3a6d9cSKip Macy 	uint32_t version;
1558ac3a6d9cSKip Macy 	unsigned int major, minor;
1559ac3a6d9cSKip Macy 	int ret, len;
1560f2d8ff04SGeorge V. Neville-Neil 	char rev, name[32];
1561ac3a6d9cSKip Macy 
1562ac3a6d9cSKip Macy 	t3_seeprom_read(adap, TP_SRAM_OFFSET, &version);
1563ac3a6d9cSKip Macy 
1564ac3a6d9cSKip Macy 	major = G_TP_VERSION_MAJOR(version);
1565ac3a6d9cSKip Macy 	minor = G_TP_VERSION_MINOR(version);
1566ac3a6d9cSKip Macy 	if (major == TP_VERSION_MAJOR  && minor == TP_VERSION_MINOR)
1567ac3a6d9cSKip Macy 		return;
1568ac3a6d9cSKip Macy 
1569ac3a6d9cSKip Macy 	rev = t3rev2char(adap);
1570f2d8ff04SGeorge V. Neville-Neil 	snprintf(name, sizeof(name), TPEEPROM_NAME, rev);
1571ac3a6d9cSKip Macy 
1572f2d8ff04SGeorge V. Neville-Neil 	tpeeprom = firmware_get(name);
1573ac3a6d9cSKip Macy 	if (tpeeprom == NULL) {
15740c1ff9c6SGeorge V. Neville-Neil 		device_printf(adap->dev,
15750c1ff9c6SGeorge V. Neville-Neil 			      "could not load TP EEPROM: unable to load %s\n",
15760c1ff9c6SGeorge V. Neville-Neil 			      name);
1577ac3a6d9cSKip Macy 		return;
1578ac3a6d9cSKip Macy 	}
1579ac3a6d9cSKip Macy 
1580ac3a6d9cSKip Macy 	len = tpeeprom->datasize - 4;
1581ac3a6d9cSKip Macy 
1582ac3a6d9cSKip Macy 	ret = t3_check_tpsram(adap, tpeeprom->data, tpeeprom->datasize);
1583ac3a6d9cSKip Macy 	if (ret)
1584ac3a6d9cSKip Macy 		goto release_tpeeprom;
1585ac3a6d9cSKip Macy 
1586ac3a6d9cSKip Macy 	if (len != TP_SRAM_LEN) {
15870c1ff9c6SGeorge V. Neville-Neil 		device_printf(adap->dev,
15880c1ff9c6SGeorge V. Neville-Neil 			      "%s length is wrong len=%d expected=%d\n", name,
15890c1ff9c6SGeorge V. Neville-Neil 			      len, TP_SRAM_LEN);
1590ac3a6d9cSKip Macy 		return;
1591ac3a6d9cSKip Macy 	}
1592ac3a6d9cSKip Macy 
1593ac3a6d9cSKip Macy 	ret = set_eeprom(&adap->port[0], tpeeprom->data, tpeeprom->datasize,
1594ac3a6d9cSKip Macy 	    TP_SRAM_OFFSET);
1595ac3a6d9cSKip Macy 
1596ac3a6d9cSKip Macy 	if (!ret) {
1597ac3a6d9cSKip Macy 		device_printf(adap->dev,
1598ac3a6d9cSKip Macy 			"Protocol SRAM image updated in EEPROM to %d.%d.%d\n",
1599ac3a6d9cSKip Macy 			 TP_VERSION_MAJOR, TP_VERSION_MINOR, TP_VERSION_MICRO);
1600ac3a6d9cSKip Macy 	} else
16010c1ff9c6SGeorge V. Neville-Neil 		device_printf(adap->dev,
16020c1ff9c6SGeorge V. Neville-Neil 			      "Protocol SRAM image update in EEPROM failed\n");
1603ac3a6d9cSKip Macy 
1604ac3a6d9cSKip Macy release_tpeeprom:
1605ac3a6d9cSKip Macy 	firmware_put(tpeeprom, FIRMWARE_UNLOAD);
1606ac3a6d9cSKip Macy 
1607ac3a6d9cSKip Macy 	return;
1608ac3a6d9cSKip Macy }
1609ac3a6d9cSKip Macy 
1610ac3a6d9cSKip Macy static int
1611ac3a6d9cSKip Macy update_tpsram(struct adapter *adap)
1612ac3a6d9cSKip Macy {
1613ac3a6d9cSKip Macy 	const struct firmware *tpsram;
1614ac3a6d9cSKip Macy 	int ret;
1615f2d8ff04SGeorge V. Neville-Neil 	char rev, name[32];
1616ac3a6d9cSKip Macy 
1617ac3a6d9cSKip Macy 	rev = t3rev2char(adap);
1618f2d8ff04SGeorge V. Neville-Neil 	snprintf(name, sizeof(name), TPSRAM_NAME, rev);
1619ac3a6d9cSKip Macy 
1620ac3a6d9cSKip Macy 	update_tpeeprom(adap);
1621ac3a6d9cSKip Macy 
1622f2d8ff04SGeorge V. Neville-Neil 	tpsram = firmware_get(name);
1623ac3a6d9cSKip Macy 	if (tpsram == NULL){
162464a37133SKip Macy 		device_printf(adap->dev, "could not load TP SRAM\n");
1625ac3a6d9cSKip Macy 		return (EINVAL);
1626ac3a6d9cSKip Macy 	} else
162764a37133SKip Macy 		device_printf(adap->dev, "updating TP SRAM\n");
1628ac3a6d9cSKip Macy 
1629ac3a6d9cSKip Macy 	ret = t3_check_tpsram(adap, tpsram->data, tpsram->datasize);
1630ac3a6d9cSKip Macy 	if (ret)
1631ac3a6d9cSKip Macy 		goto release_tpsram;
1632ac3a6d9cSKip Macy 
1633ac3a6d9cSKip Macy 	ret = t3_set_proto_sram(adap, tpsram->data);
1634ac3a6d9cSKip Macy 	if (ret)
1635ac3a6d9cSKip Macy 		device_printf(adap->dev, "loading protocol SRAM failed\n");
1636ac3a6d9cSKip Macy 
1637ac3a6d9cSKip Macy release_tpsram:
1638ac3a6d9cSKip Macy 	firmware_put(tpsram, FIRMWARE_UNLOAD);
1639ac3a6d9cSKip Macy 
1640ac3a6d9cSKip Macy 	return ret;
1641ac3a6d9cSKip Macy }
1642ac3a6d9cSKip Macy 
1643d722cab4SKip Macy /**
1644d722cab4SKip Macy  *	cxgb_up - enable the adapter
1645d722cab4SKip Macy  *	@adap: adapter being enabled
1646d722cab4SKip Macy  *
1647d722cab4SKip Macy  *	Called when the first port is enabled, this function performs the
1648d722cab4SKip Macy  *	actions necessary to make an adapter operational, such as completing
1649d722cab4SKip Macy  *	the initialization of HW modules, and enabling interrupts.
1650d722cab4SKip Macy  */
1651d722cab4SKip Macy static int
1652d722cab4SKip Macy cxgb_up(struct adapter *sc)
1653d722cab4SKip Macy {
1654d722cab4SKip Macy 	int err = 0;
1655d722cab4SKip Macy 
16563f345a5dSKip Macy 	KASSERT(sc->open_device_map == 0, ("%s: device(s) already open (%x)",
16573f345a5dSKip Macy 					   __func__, sc->open_device_map));
16583f345a5dSKip Macy 
1659d722cab4SKip Macy 	if ((sc->flags & FULL_INIT_DONE) == 0) {
1660d722cab4SKip Macy 
1661b302b77cSNavdeep Parhar 		ADAPTER_LOCK_ASSERT_NOTOWNED(sc);
1662b302b77cSNavdeep Parhar 
1663d722cab4SKip Macy 		if ((sc->flags & FW_UPTODATE) == 0)
1664ac3a6d9cSKip Macy 			if ((err = upgrade_fw(sc)))
1665d722cab4SKip Macy 				goto out;
16663f345a5dSKip Macy 
1667ac3a6d9cSKip Macy 		if ((sc->flags & TPS_UPTODATE) == 0)
1668ac3a6d9cSKip Macy 			if ((err = update_tpsram(sc)))
1669ac3a6d9cSKip Macy 				goto out;
16703f345a5dSKip Macy 
1671*d6da8362SNavdeep Parhar 		if (is_offload(sc)) {
1672*d6da8362SNavdeep Parhar 			sc->params.mc5.nservers = 0;
1673*d6da8362SNavdeep Parhar 			sc->params.mc5.nroutes = 0;
1674*d6da8362SNavdeep Parhar 			sc->params.mc5.nfilters = t3_mc5_size(&sc->mc5) -
1675*d6da8362SNavdeep Parhar 			    MC5_MIN_TIDS;
1676*d6da8362SNavdeep Parhar 		}
1677*d6da8362SNavdeep Parhar 
1678d722cab4SKip Macy 		err = t3_init_hw(sc, 0);
1679d722cab4SKip Macy 		if (err)
1680d722cab4SKip Macy 			goto out;
1681d722cab4SKip Macy 
16828e10660fSKip Macy 		t3_set_reg_field(sc, A_TP_PARA_REG5, 0, F_RXDDPOFFINIT);
1683d722cab4SKip Macy 		t3_write_reg(sc, A_ULPRX_TDDP_PSZ, V_HPZ0(PAGE_SHIFT - 12));
1684d722cab4SKip Macy 
1685d722cab4SKip Macy 		err = setup_sge_qsets(sc);
1686d722cab4SKip Macy 		if (err)
1687d722cab4SKip Macy 			goto out;
1688d722cab4SKip Macy 
1689*d6da8362SNavdeep Parhar 		alloc_filters(sc);
1690d722cab4SKip Macy 		setup_rss(sc);
1691e3503bc9SGeorge V. Neville-Neil 
1692e3503bc9SGeorge V. Neville-Neil 		t3_intr_clear(sc);
1693e3503bc9SGeorge V. Neville-Neil 		err = cxgb_setup_interrupts(sc);
1694e3503bc9SGeorge V. Neville-Neil 		if (err)
1695e3503bc9SGeorge V. Neville-Neil 			goto out;
1696e3503bc9SGeorge V. Neville-Neil 
16978090c9f5SKip Macy 		t3_add_configured_sysctls(sc);
1698d722cab4SKip Macy 		sc->flags |= FULL_INIT_DONE;
1699d722cab4SKip Macy 	}
1700d722cab4SKip Macy 
1701d722cab4SKip Macy 	t3_intr_clear(sc);
1702d722cab4SKip Macy 	t3_sge_start(sc);
1703d722cab4SKip Macy 	t3_intr_enable(sc);
1704d722cab4SKip Macy 
17058e10660fSKip Macy 	if (sc->params.rev >= T3_REV_C && !(sc->flags & TP_PARITY_INIT) &&
17068e10660fSKip Macy 	    is_offload(sc) && init_tp_parity(sc) == 0)
17078e10660fSKip Macy 		sc->flags |= TP_PARITY_INIT;
17088e10660fSKip Macy 
17098e10660fSKip Macy 	if (sc->flags & TP_PARITY_INIT) {
17103f345a5dSKip Macy 		t3_write_reg(sc, A_TP_INT_CAUSE, F_CMCACHEPERR | F_ARPLUTPERR);
17118e10660fSKip Macy 		t3_write_reg(sc, A_TP_INT_ENABLE, 0x7fbfffff);
17128e10660fSKip Macy 	}
17138e10660fSKip Macy 
17145c5df3daSKip Macy 	if (!(sc->flags & QUEUES_BOUND)) {
1715d722cab4SKip Macy 		bind_qsets(sc);
1716*d6da8362SNavdeep Parhar 		setup_hw_filters(sc);
1717d722cab4SKip Macy 		sc->flags |= QUEUES_BOUND;
1718ac3a6d9cSKip Macy 	}
17193f345a5dSKip Macy 
17203f345a5dSKip Macy 	t3_sge_reset_adapter(sc);
1721d722cab4SKip Macy out:
1722d722cab4SKip Macy 	return (err);
1723d722cab4SKip Macy }
1724d722cab4SKip Macy 
1725d722cab4SKip Macy /*
17263f345a5dSKip Macy  * Called when the last open device is closed.  Does NOT undo all of cxgb_up's
17273f345a5dSKip Macy  * work.  Specifically, the resources grabbed under FULL_INIT_DONE are released
17283f345a5dSKip Macy  * during controller_detach, not here.
1729d722cab4SKip Macy  */
1730d722cab4SKip Macy static void
17313f345a5dSKip Macy cxgb_down(struct adapter *sc)
1732d722cab4SKip Macy {
1733d722cab4SKip Macy 	t3_sge_stop(sc);
1734d722cab4SKip Macy 	t3_intr_disable(sc);
1735d722cab4SKip Macy }
1736d722cab4SKip Macy 
1737d722cab4SKip Macy static int
1738d722cab4SKip Macy offload_open(struct port_info *pi)
1739d722cab4SKip Macy {
17403f345a5dSKip Macy 	struct adapter *sc = pi->adapter;
17413f345a5dSKip Macy 	struct t3cdev *tdev = &sc->tdev;
1742af9b081cSKip Macy 
17433f345a5dSKip Macy 	setbit(&sc->open_device_map, OFFLOAD_DEVMAP_BIT);
1744d722cab4SKip Macy 
17453f345a5dSKip Macy 	t3_tp_set_offload_mode(sc, 1);
17468090c9f5SKip Macy 	tdev->lldev = pi->ifp;
17473f345a5dSKip Macy 	init_port_mtus(sc);
17483f345a5dSKip Macy 	t3_load_mtus(sc, sc->params.mtus, sc->params.a_wnd, sc->params.b_wnd,
17493f345a5dSKip Macy 		     sc->params.rev == 0 ?  sc->port[0].ifp->if_mtu : 0xffff);
17503f345a5dSKip Macy 	init_smt(sc);
1751ed0fb18dSKip Macy 	cxgb_add_clients(tdev);
1752ed0fb18dSKip Macy 
17533f345a5dSKip Macy 	return (0);
1754d722cab4SKip Macy }
17558090c9f5SKip Macy 
1756d722cab4SKip Macy static int
17578090c9f5SKip Macy offload_close(struct t3cdev *tdev)
1758d722cab4SKip Macy {
1759d722cab4SKip Macy 	struct adapter *adapter = tdev2adap(tdev);
1760d722cab4SKip Macy 
17618e10660fSKip Macy 	if (!isset(&adapter->open_device_map, OFFLOAD_DEVMAP_BIT))
1762ef72318fSKip Macy 		return (0);
1763d722cab4SKip Macy 
1764ed0fb18dSKip Macy 	/* Call back all registered clients */
1765ed0fb18dSKip Macy 	cxgb_remove_clients(tdev);
1766ed0fb18dSKip Macy 
1767d722cab4SKip Macy 	tdev->lldev = NULL;
1768d722cab4SKip Macy 	cxgb_set_dummy_ops(tdev);
1769d722cab4SKip Macy 	t3_tp_set_offload_mode(adapter, 0);
17703f345a5dSKip Macy 
1771d722cab4SKip Macy 	clrbit(&adapter->open_device_map, OFFLOAD_DEVMAP_BIT);
1772d722cab4SKip Macy 
1773ef72318fSKip Macy 	return (0);
1774d722cab4SKip Macy }
17758090c9f5SKip Macy 
17763f345a5dSKip Macy /*
17773f345a5dSKip Macy  * if_init for cxgb ports.
17783f345a5dSKip Macy  */
1779b6d90eb7SKip Macy static void
1780b6d90eb7SKip Macy cxgb_init(void *arg)
1781b6d90eb7SKip Macy {
1782b6d90eb7SKip Macy 	struct port_info *p = arg;
1783b302b77cSNavdeep Parhar 	struct adapter *sc = p->adapter;
1784b6d90eb7SKip Macy 
1785b302b77cSNavdeep Parhar 	ADAPTER_LOCK(sc);
1786b302b77cSNavdeep Parhar 	cxgb_init_locked(p); /* releases adapter lock */
1787b302b77cSNavdeep Parhar 	ADAPTER_LOCK_ASSERT_NOTOWNED(sc);
17883f345a5dSKip Macy }
17893f345a5dSKip Macy 
17903f345a5dSKip Macy static int
1791b302b77cSNavdeep Parhar cxgb_init_locked(struct port_info *p)
17923f345a5dSKip Macy {
17933f345a5dSKip Macy 	struct adapter *sc = p->adapter;
17943f345a5dSKip Macy 	struct ifnet *ifp = p->ifp;
17953f345a5dSKip Macy 	struct cmac *mac = &p->mac;
1796b302b77cSNavdeep Parhar 	int i, rc = 0, may_sleep = 0;
1797b302b77cSNavdeep Parhar 
1798b302b77cSNavdeep Parhar 	ADAPTER_LOCK_ASSERT_OWNED(sc);
1799b302b77cSNavdeep Parhar 
1800b302b77cSNavdeep Parhar 	while (!IS_DOOMED(p) && IS_BUSY(sc)) {
1801b302b77cSNavdeep Parhar 		if (mtx_sleep(&sc->flags, &sc->lock, PCATCH, "cxgbinit", 0)) {
1802b302b77cSNavdeep Parhar 			rc = EINTR;
1803b302b77cSNavdeep Parhar 			goto done;
1804b302b77cSNavdeep Parhar 		}
1805b302b77cSNavdeep Parhar 	}
1806b302b77cSNavdeep Parhar 	if (IS_DOOMED(p)) {
1807b302b77cSNavdeep Parhar 		rc = ENXIO;
1808b302b77cSNavdeep Parhar 		goto done;
1809b302b77cSNavdeep Parhar 	}
1810b302b77cSNavdeep Parhar 	KASSERT(!IS_BUSY(sc), ("%s: controller busy.", __func__));
1811b302b77cSNavdeep Parhar 
1812b302b77cSNavdeep Parhar 	/*
1813b302b77cSNavdeep Parhar 	 * The code that runs during one-time adapter initialization can sleep
1814b302b77cSNavdeep Parhar 	 * so it's important not to hold any locks across it.
1815b302b77cSNavdeep Parhar 	 */
1816b302b77cSNavdeep Parhar 	may_sleep = sc->flags & FULL_INIT_DONE ? 0 : 1;
1817b302b77cSNavdeep Parhar 
1818b302b77cSNavdeep Parhar 	if (may_sleep) {
1819b302b77cSNavdeep Parhar 		SET_BUSY(sc);
1820b302b77cSNavdeep Parhar 		ADAPTER_UNLOCK(sc);
1821b302b77cSNavdeep Parhar 	}
18223f345a5dSKip Macy 
18233f345a5dSKip Macy 	if (sc->open_device_map == 0) {
18243f345a5dSKip Macy 		if ((rc = cxgb_up(sc)) != 0)
1825b302b77cSNavdeep Parhar 			goto done;
18263f345a5dSKip Macy 
18273f345a5dSKip Macy 		if (is_offload(sc) && !ofld_disable && offload_open(p))
1828d722cab4SKip Macy 			log(LOG_WARNING,
1829d722cab4SKip Macy 			    "Could not initialize offload capabilities\n");
1830d722cab4SKip Macy 	}
18310bbdea77SGeorge V. Neville-Neil 
18323f345a5dSKip Macy 	PORT_LOCK(p);
1833b302b77cSNavdeep Parhar 	if (isset(&sc->open_device_map, p->port_id) &&
1834b302b77cSNavdeep Parhar 	    (ifp->if_drv_flags & IFF_DRV_RUNNING)) {
1835b302b77cSNavdeep Parhar 		PORT_UNLOCK(p);
1836b302b77cSNavdeep Parhar 		goto done;
1837b302b77cSNavdeep Parhar 	}
18380bbdea77SGeorge V. Neville-Neil 	t3_port_intr_enable(sc, p->port_id);
18393f345a5dSKip Macy 	if (!mac->multiport)
1840c01f2b83SNavdeep Parhar 		t3_mac_init(mac);
18413f345a5dSKip Macy 	cxgb_update_mac_settings(p);
18423f345a5dSKip Macy 	t3_link_start(&p->phy, mac, &p->link_config);
18433f345a5dSKip Macy 	t3_mac_enable(mac, MAC_DIRECTION_RX | MAC_DIRECTION_TX);
1844b6d90eb7SKip Macy 	ifp->if_drv_flags |= IFF_DRV_RUNNING;
1845b6d90eb7SKip Macy 	ifp->if_drv_flags &= ~IFF_DRV_OACTIVE;
18463f345a5dSKip Macy 	PORT_UNLOCK(p);
18473f345a5dSKip Macy 
18483f345a5dSKip Macy 	t3_link_changed(sc, p->port_id);
18493f345a5dSKip Macy 
18503f345a5dSKip Macy 	for (i = p->first_qset; i < p->first_qset + p->nqsets; i++) {
18513f345a5dSKip Macy 		struct sge_qset *qs = &sc->sge.qs[i];
18523f345a5dSKip Macy 		struct sge_txq *txq = &qs->txq[TXQ_ETH];
18533f345a5dSKip Macy 
18543f345a5dSKip Macy 		callout_reset_on(&txq->txq_watchdog, hz, cxgb_tx_watchdog, qs,
18553f345a5dSKip Macy 				 txq->txq_watchdog.c_cpu);
1856b6d90eb7SKip Macy 	}
1857b6d90eb7SKip Macy 
18583f345a5dSKip Macy 	/* all ok */
18593f345a5dSKip Macy 	setbit(&sc->open_device_map, p->port_id);
1860b6d90eb7SKip Macy 
1861b302b77cSNavdeep Parhar done:
1862b302b77cSNavdeep Parhar 	if (may_sleep) {
1863b302b77cSNavdeep Parhar 		ADAPTER_LOCK(sc);
1864b302b77cSNavdeep Parhar 		KASSERT(IS_BUSY(sc), ("%s: controller not busy.", __func__));
1865b302b77cSNavdeep Parhar 		CLR_BUSY(sc);
1866b302b77cSNavdeep Parhar 		wakeup_one(&sc->flags);
1867b302b77cSNavdeep Parhar 	}
1868b302b77cSNavdeep Parhar 	ADAPTER_UNLOCK(sc);
1869b302b77cSNavdeep Parhar 	return (rc);
1870b302b77cSNavdeep Parhar }
1871b302b77cSNavdeep Parhar 
1872b302b77cSNavdeep Parhar static int
1873b302b77cSNavdeep Parhar cxgb_uninit_locked(struct port_info *p)
1874b302b77cSNavdeep Parhar {
1875b302b77cSNavdeep Parhar 	struct adapter *sc = p->adapter;
1876b302b77cSNavdeep Parhar 	int rc;
1877b302b77cSNavdeep Parhar 
1878b302b77cSNavdeep Parhar 	ADAPTER_LOCK_ASSERT_OWNED(sc);
1879b302b77cSNavdeep Parhar 
1880b302b77cSNavdeep Parhar 	while (!IS_DOOMED(p) && IS_BUSY(sc)) {
1881b302b77cSNavdeep Parhar 		if (mtx_sleep(&sc->flags, &sc->lock, PCATCH, "cxgbunin", 0)) {
1882b302b77cSNavdeep Parhar 			rc = EINTR;
1883b302b77cSNavdeep Parhar 			goto done;
1884b302b77cSNavdeep Parhar 		}
1885b302b77cSNavdeep Parhar 	}
1886b302b77cSNavdeep Parhar 	if (IS_DOOMED(p)) {
1887b302b77cSNavdeep Parhar 		rc = ENXIO;
1888b302b77cSNavdeep Parhar 		goto done;
1889b302b77cSNavdeep Parhar 	}
1890b302b77cSNavdeep Parhar 	KASSERT(!IS_BUSY(sc), ("%s: controller busy.", __func__));
1891b302b77cSNavdeep Parhar 	SET_BUSY(sc);
1892b302b77cSNavdeep Parhar 	ADAPTER_UNLOCK(sc);
1893b302b77cSNavdeep Parhar 
1894b302b77cSNavdeep Parhar 	rc = cxgb_uninit_synchronized(p);
1895b302b77cSNavdeep Parhar 
1896b302b77cSNavdeep Parhar 	ADAPTER_LOCK(sc);
1897b302b77cSNavdeep Parhar 	KASSERT(IS_BUSY(sc), ("%s: controller not busy.", __func__));
1898b302b77cSNavdeep Parhar 	CLR_BUSY(sc);
1899b302b77cSNavdeep Parhar 	wakeup_one(&sc->flags);
1900b302b77cSNavdeep Parhar done:
1901b302b77cSNavdeep Parhar 	ADAPTER_UNLOCK(sc);
1902b302b77cSNavdeep Parhar 	return (rc);
1903b6d90eb7SKip Macy }
1904b6d90eb7SKip Macy 
19053f345a5dSKip Macy /*
19063f345a5dSKip Macy  * Called on "ifconfig down", and from port_detach
19073f345a5dSKip Macy  */
19083f345a5dSKip Macy static int
19093f345a5dSKip Macy cxgb_uninit_synchronized(struct port_info *pi)
1910b6d90eb7SKip Macy {
19113f345a5dSKip Macy 	struct adapter *sc = pi->adapter;
19123f345a5dSKip Macy 	struct ifnet *ifp = pi->ifp;
1913b6d90eb7SKip Macy 
19143f345a5dSKip Macy 	/*
1915b302b77cSNavdeep Parhar 	 * taskqueue_drain may cause a deadlock if the adapter lock is held.
1916b302b77cSNavdeep Parhar 	 */
1917b302b77cSNavdeep Parhar 	ADAPTER_LOCK_ASSERT_NOTOWNED(sc);
1918b302b77cSNavdeep Parhar 
1919b302b77cSNavdeep Parhar 	/*
19203f345a5dSKip Macy 	 * Clear this port's bit from the open device map, and then drain all
19213f345a5dSKip Macy 	 * the tasks that can access/manipulate this port's port_info or ifp.
19223f345a5dSKip Macy 	 * We disable this port's interrupts here and so the the slow/ext
19233f345a5dSKip Macy 	 * interrupt tasks won't be enqueued.  The tick task will continue to
19243f345a5dSKip Macy 	 * be enqueued every second but the runs after this drain will not see
19253f345a5dSKip Macy 	 * this port in the open device map.
19263f345a5dSKip Macy 	 *
19273f345a5dSKip Macy 	 * A well behaved task must take open_device_map into account and ignore
19283f345a5dSKip Macy 	 * ports that are not open.
19293f345a5dSKip Macy 	 */
19303f345a5dSKip Macy 	clrbit(&sc->open_device_map, pi->port_id);
19313f345a5dSKip Macy 	t3_port_intr_disable(sc, pi->port_id);
19323f345a5dSKip Macy 	taskqueue_drain(sc->tq, &sc->slow_intr_task);
19333f345a5dSKip Macy 	taskqueue_drain(sc->tq, &sc->ext_intr_task);
19343f345a5dSKip Macy 	taskqueue_drain(sc->tq, &sc->tick_task);
193577f07749SKip Macy 
19363f345a5dSKip Macy 	PORT_LOCK(pi);
1937d722cab4SKip Macy 	ifp->if_drv_flags &= ~(IFF_DRV_RUNNING | IFF_DRV_OACTIVE);
1938b6d90eb7SKip Macy 
193919905d6dSKip Macy 	/* disable pause frames */
19403f345a5dSKip Macy 	t3_set_reg_field(sc, A_XGM_TX_CFG + pi->mac.offset, F_TXPAUSEEN, 0);
1941bb38cd2fSKip Macy 
194219905d6dSKip Macy 	/* Reset RX FIFO HWM */
19433f345a5dSKip Macy 	t3_set_reg_field(sc, A_XGM_RXFIFO_CFG +  pi->mac.offset,
194419905d6dSKip Macy 			 V_RXFIFOPAUSEHWM(M_RXFIFOPAUSEHWM), 0);
194519905d6dSKip Macy 
1946a9c23ef0SNavdeep Parhar 	DELAY(100 * 1000);
194719905d6dSKip Macy 
194819905d6dSKip Macy 	/* Wait for TXFIFO empty */
19493f345a5dSKip Macy 	t3_wait_op_done(sc, A_XGM_TXFIFO_CFG + pi->mac.offset,
195019905d6dSKip Macy 			F_TXFIFO_EMPTY, 1, 20, 5);
195119905d6dSKip Macy 
1952a9c23ef0SNavdeep Parhar 	DELAY(100 * 1000);
1953a9c23ef0SNavdeep Parhar 	t3_mac_disable(&pi->mac, MAC_DIRECTION_RX);
195419905d6dSKip Macy 
19553f345a5dSKip Macy 
195619905d6dSKip Macy 	pi->phy.ops->power_down(&pi->phy, 1);
1957bb38cd2fSKip Macy 
19583f345a5dSKip Macy 	PORT_UNLOCK(pi);
1959b6d90eb7SKip Macy 
19603f345a5dSKip Macy 	pi->link_config.link_ok = 0;
1961c01f2b83SNavdeep Parhar 	t3_os_link_changed(sc, pi->port_id, 0, 0, 0, 0, 0);
1962ef72318fSKip Macy 
19633f345a5dSKip Macy 	if ((sc->open_device_map & PORT_MASK) == 0)
19643f345a5dSKip Macy 		offload_close(&sc->tdev);
19653f345a5dSKip Macy 
19663f345a5dSKip Macy 	if (sc->open_device_map == 0)
19673f345a5dSKip Macy 		cxgb_down(pi->adapter);
19683f345a5dSKip Macy 
19693f345a5dSKip Macy 	return (0);
1970ef72318fSKip Macy }
1971ef72318fSKip Macy 
197225292debSKip Macy /*
197325292debSKip Macy  * Mark lro enabled or disabled in all qsets for this port
197425292debSKip Macy  */
197525292debSKip Macy static int
197625292debSKip Macy cxgb_set_lro(struct port_info *p, int enabled)
197725292debSKip Macy {
197825292debSKip Macy 	int i;
197925292debSKip Macy 	struct adapter *adp = p->adapter;
198025292debSKip Macy 	struct sge_qset *q;
198125292debSKip Macy 
198225292debSKip Macy 	PORT_LOCK_ASSERT_OWNED(p);
198325292debSKip Macy 	for (i = 0; i < p->nqsets; i++) {
198425292debSKip Macy 		q = &adp->sge.qs[p->first_qset + i];
198525292debSKip Macy 		q->lro.enabled = (enabled != 0);
198625292debSKip Macy 	}
198725292debSKip Macy 	return (0);
198825292debSKip Macy }
198925292debSKip Macy 
1990ef72318fSKip Macy static int
1991b6d90eb7SKip Macy cxgb_ioctl(struct ifnet *ifp, unsigned long command, caddr_t data)
1992b6d90eb7SKip Macy {
1993b6d90eb7SKip Macy 	struct port_info *p = ifp->if_softc;
1994b302b77cSNavdeep Parhar 	struct adapter *sc = p->adapter;
1995b6d90eb7SKip Macy 	struct ifreq *ifr = (struct ifreq *)data;
1996b302b77cSNavdeep Parhar 	int flags, error = 0, mtu;
1997b6d90eb7SKip Macy 	uint32_t mask;
1998b6d90eb7SKip Macy 
1999b6d90eb7SKip Macy 	switch (command) {
2000b6d90eb7SKip Macy 	case SIOCSIFMTU:
2001b302b77cSNavdeep Parhar 		ADAPTER_LOCK(sc);
2002b302b77cSNavdeep Parhar 		error = IS_DOOMED(p) ? ENXIO : (IS_BUSY(sc) ? EBUSY : 0);
2003b302b77cSNavdeep Parhar 		if (error) {
2004b302b77cSNavdeep Parhar fail:
2005b302b77cSNavdeep Parhar 			ADAPTER_UNLOCK(sc);
2006b302b77cSNavdeep Parhar 			return (error);
2007b302b77cSNavdeep Parhar 		}
2008b302b77cSNavdeep Parhar 
20093f345a5dSKip Macy 		mtu = ifr->ifr_mtu;
20103f345a5dSKip Macy 		if ((mtu < ETHERMIN) || (mtu > ETHERMTU_JUMBO)) {
20113f345a5dSKip Macy 			error = EINVAL;
20123f345a5dSKip Macy 		} else {
20133f345a5dSKip Macy 			ifp->if_mtu = mtu;
20148e10660fSKip Macy 			PORT_LOCK(p);
20153f345a5dSKip Macy 			cxgb_update_mac_settings(p);
20164f6a96aeSKip Macy 			PORT_UNLOCK(p);
20178e10660fSKip Macy 		}
2018b302b77cSNavdeep Parhar 		ADAPTER_UNLOCK(sc);
2019b6d90eb7SKip Macy 		break;
2020b6d90eb7SKip Macy 	case SIOCSIFFLAGS:
2021b302b77cSNavdeep Parhar 		ADAPTER_LOCK(sc);
2022b302b77cSNavdeep Parhar 		if (IS_DOOMED(p)) {
2023b302b77cSNavdeep Parhar 			error = ENXIO;
2024b302b77cSNavdeep Parhar 			goto fail;
2025b302b77cSNavdeep Parhar 		}
2026ef72318fSKip Macy 		if (ifp->if_flags & IFF_UP) {
2027b6d90eb7SKip Macy 			if (ifp->if_drv_flags & IFF_DRV_RUNNING) {
2028b6d90eb7SKip Macy 				flags = p->if_flags;
2029b6d90eb7SKip Macy 				if (((ifp->if_flags ^ flags) & IFF_PROMISC) ||
20303f345a5dSKip Macy 				    ((ifp->if_flags ^ flags) & IFF_ALLMULTI)) {
2031b302b77cSNavdeep Parhar 					if (IS_BUSY(sc)) {
2032b302b77cSNavdeep Parhar 						error = EBUSY;
2033b302b77cSNavdeep Parhar 						goto fail;
2034b302b77cSNavdeep Parhar 					}
20353f345a5dSKip Macy 					PORT_LOCK(p);
20363f345a5dSKip Macy 					cxgb_update_mac_settings(p);
20373f345a5dSKip Macy 					PORT_UNLOCK(p);
20383f345a5dSKip Macy 				}
2039b302b77cSNavdeep Parhar 				ADAPTER_UNLOCK(sc);
2040b6d90eb7SKip Macy 			} else
2041b302b77cSNavdeep Parhar 				error = cxgb_init_locked(p);
2042b6d90eb7SKip Macy 			p->if_flags = ifp->if_flags;
2043bb38cd2fSKip Macy 		} else if (ifp->if_drv_flags & IFF_DRV_RUNNING)
2044b302b77cSNavdeep Parhar 			error = cxgb_uninit_locked(p);
20453c0e59deSNavdeep Parhar 		else
20463c0e59deSNavdeep Parhar 			ADAPTER_UNLOCK(sc);
2047bb38cd2fSKip Macy 
2048b302b77cSNavdeep Parhar 		ADAPTER_LOCK_ASSERT_NOTOWNED(sc);
2049b6d90eb7SKip Macy 		break;
20508e10660fSKip Macy 	case SIOCADDMULTI:
20518e10660fSKip Macy 	case SIOCDELMULTI:
2052b302b77cSNavdeep Parhar 		ADAPTER_LOCK(sc);
2053b302b77cSNavdeep Parhar 		error = IS_DOOMED(p) ? ENXIO : (IS_BUSY(sc) ? EBUSY : 0);
2054b302b77cSNavdeep Parhar 		if (error)
2055b302b77cSNavdeep Parhar 			goto fail;
2056b302b77cSNavdeep Parhar 
20578e10660fSKip Macy 		if (ifp->if_drv_flags & IFF_DRV_RUNNING) {
2058837f41b0SGeorge V. Neville-Neil 			PORT_LOCK(p);
20593f345a5dSKip Macy 			cxgb_update_mac_settings(p);
2060837f41b0SGeorge V. Neville-Neil 			PORT_UNLOCK(p);
20613f345a5dSKip Macy 		}
2062b302b77cSNavdeep Parhar 		ADAPTER_UNLOCK(sc);
20633f345a5dSKip Macy 
2064b6d90eb7SKip Macy 		break;
2065b6d90eb7SKip Macy 	case SIOCSIFCAP:
2066b302b77cSNavdeep Parhar 		ADAPTER_LOCK(sc);
2067b302b77cSNavdeep Parhar 		error = IS_DOOMED(p) ? ENXIO : (IS_BUSY(sc) ? EBUSY : 0);
2068b302b77cSNavdeep Parhar 		if (error)
2069b302b77cSNavdeep Parhar 			goto fail;
2070b302b77cSNavdeep Parhar 
2071b6d90eb7SKip Macy 		mask = ifr->ifr_reqcap ^ ifp->if_capenable;
2072b6d90eb7SKip Macy 		if (mask & IFCAP_TXCSUM) {
2073f9c6e164SNavdeep Parhar 			ifp->if_capenable ^= IFCAP_TXCSUM;
2074f9c6e164SNavdeep Parhar 			ifp->if_hwassist ^= (CSUM_TCP | CSUM_UDP | CSUM_IP);
2075f9c6e164SNavdeep Parhar 
2076f9c6e164SNavdeep Parhar 			if (IFCAP_TSO & ifp->if_capenable &&
2077f9c6e164SNavdeep Parhar 			    !(IFCAP_TXCSUM & ifp->if_capenable)) {
2078f9c6e164SNavdeep Parhar 				ifp->if_capenable &= ~IFCAP_TSO;
2079b6d90eb7SKip Macy 				ifp->if_hwassist &= ~CSUM_TSO;
2080f9c6e164SNavdeep Parhar 				if_printf(ifp,
2081f9c6e164SNavdeep Parhar 				    "tso disabled due to -txcsum.\n");
2082f9c6e164SNavdeep Parhar 			}
2083f9c6e164SNavdeep Parhar 		}
2084f9c6e164SNavdeep Parhar 		if (mask & IFCAP_RXCSUM)
2085f9c6e164SNavdeep Parhar 			ifp->if_capenable ^= IFCAP_RXCSUM;
2086f9c6e164SNavdeep Parhar 		if (mask & IFCAP_TSO4) {
2087f9c6e164SNavdeep Parhar 			ifp->if_capenable ^= IFCAP_TSO4;
2088f9c6e164SNavdeep Parhar 
2089f9c6e164SNavdeep Parhar 			if (IFCAP_TSO & ifp->if_capenable) {
2090f9c6e164SNavdeep Parhar 				if (IFCAP_TXCSUM & ifp->if_capenable)
2091b6d90eb7SKip Macy 					ifp->if_hwassist |= CSUM_TSO;
2092f9c6e164SNavdeep Parhar 				else {
2093f9c6e164SNavdeep Parhar 					ifp->if_capenable &= ~IFCAP_TSO;
2094f9c6e164SNavdeep Parhar 					ifp->if_hwassist &= ~CSUM_TSO;
2095f9c6e164SNavdeep Parhar 					if_printf(ifp,
2096f9c6e164SNavdeep Parhar 					    "enable txcsum first.\n");
2097f9c6e164SNavdeep Parhar 					error = EAGAIN;
2098f9c6e164SNavdeep Parhar 				}
20993f345a5dSKip Macy 			} else
2100f9c6e164SNavdeep Parhar 				ifp->if_hwassist &= ~CSUM_TSO;
2101b6d90eb7SKip Macy 		}
210225292debSKip Macy 		if (mask & IFCAP_LRO) {
210325292debSKip Macy 			ifp->if_capenable ^= IFCAP_LRO;
210425292debSKip Macy 
210525292debSKip Macy 			/* Safe to do this even if cxgb_up not called yet */
210625292debSKip Macy 			cxgb_set_lro(p, ifp->if_capenable & IFCAP_LRO);
210725292debSKip Macy 		}
21084af83c8cSKip Macy 		if (mask & IFCAP_VLAN_HWTAGGING) {
21094af83c8cSKip Macy 			ifp->if_capenable ^= IFCAP_VLAN_HWTAGGING;
21103f345a5dSKip Macy 			if (ifp->if_drv_flags & IFF_DRV_RUNNING) {
21113f345a5dSKip Macy 				PORT_LOCK(p);
21123f345a5dSKip Macy 				cxgb_update_mac_settings(p);
21133f345a5dSKip Macy 				PORT_UNLOCK(p);
21143f345a5dSKip Macy 			}
21154af83c8cSKip Macy 		}
21164af83c8cSKip Macy 		if (mask & IFCAP_VLAN_MTU) {
21174af83c8cSKip Macy 			ifp->if_capenable ^= IFCAP_VLAN_MTU;
21183f345a5dSKip Macy 			if (ifp->if_drv_flags & IFF_DRV_RUNNING) {
21193f345a5dSKip Macy 				PORT_LOCK(p);
21203f345a5dSKip Macy 				cxgb_update_mac_settings(p);
21213f345a5dSKip Macy 				PORT_UNLOCK(p);
21223f345a5dSKip Macy 			}
21234af83c8cSKip Macy 		}
2124f9c6e164SNavdeep Parhar 		if (mask & IFCAP_VLAN_HWTSO)
2125f9c6e164SNavdeep Parhar 			ifp->if_capenable ^= IFCAP_VLAN_HWTSO;
2126b302b77cSNavdeep Parhar 		if (mask & IFCAP_VLAN_HWCSUM)
21274af83c8cSKip Macy 			ifp->if_capenable ^= IFCAP_VLAN_HWCSUM;
21284af83c8cSKip Macy 
21294af83c8cSKip Macy #ifdef VLAN_CAPABILITIES
21304af83c8cSKip Macy 		VLAN_CAPABILITIES(ifp);
21314af83c8cSKip Macy #endif
2132b302b77cSNavdeep Parhar 		ADAPTER_UNLOCK(sc);
2133b302b77cSNavdeep Parhar 		break;
2134b302b77cSNavdeep Parhar 	case SIOCSIFMEDIA:
2135b302b77cSNavdeep Parhar 	case SIOCGIFMEDIA:
2136b302b77cSNavdeep Parhar 		error = ifmedia_ioctl(ifp, ifr, &p->media, command);
2137b6d90eb7SKip Macy 		break;
2138b6d90eb7SKip Macy 	default:
21393f345a5dSKip Macy 		error = ether_ioctl(ifp, command, data);
21403f345a5dSKip Macy 	}
21413f345a5dSKip Macy 
2142b6d90eb7SKip Macy 	return (error);
2143b6d90eb7SKip Macy }
2144b6d90eb7SKip Macy 
2145b6d90eb7SKip Macy static int
2146b6d90eb7SKip Macy cxgb_media_change(struct ifnet *ifp)
2147b6d90eb7SKip Macy {
21482975f787SNavdeep Parhar 	return (EOPNOTSUPP);
2149b6d90eb7SKip Macy }
2150b6d90eb7SKip Macy 
2151837f41b0SGeorge V. Neville-Neil /*
21522975f787SNavdeep Parhar  * Translates phy->modtype to the correct Ethernet media subtype.
2153837f41b0SGeorge V. Neville-Neil  */
2154837f41b0SGeorge V. Neville-Neil static int
21552975f787SNavdeep Parhar cxgb_ifm_type(int mod)
2156837f41b0SGeorge V. Neville-Neil {
21572975f787SNavdeep Parhar 	switch (mod) {
2158837f41b0SGeorge V. Neville-Neil 	case phy_modtype_sr:
21592975f787SNavdeep Parhar 		return (IFM_10G_SR);
2160837f41b0SGeorge V. Neville-Neil 	case phy_modtype_lr:
21612975f787SNavdeep Parhar 		return (IFM_10G_LR);
2162837f41b0SGeorge V. Neville-Neil 	case phy_modtype_lrm:
21632975f787SNavdeep Parhar 		return (IFM_10G_LRM);
2164837f41b0SGeorge V. Neville-Neil 	case phy_modtype_twinax:
21652975f787SNavdeep Parhar 		return (IFM_10G_TWINAX);
2166837f41b0SGeorge V. Neville-Neil 	case phy_modtype_twinax_long:
21672975f787SNavdeep Parhar 		return (IFM_10G_TWINAX_LONG);
2168837f41b0SGeorge V. Neville-Neil 	case phy_modtype_none:
21692975f787SNavdeep Parhar 		return (IFM_NONE);
2170837f41b0SGeorge V. Neville-Neil 	case phy_modtype_unknown:
21712975f787SNavdeep Parhar 		return (IFM_UNKNOWN);
2172837f41b0SGeorge V. Neville-Neil 	}
2173837f41b0SGeorge V. Neville-Neil 
21742975f787SNavdeep Parhar 	KASSERT(0, ("%s: modtype %d unknown", __func__, mod));
21752975f787SNavdeep Parhar 	return (IFM_UNKNOWN);
21762975f787SNavdeep Parhar }
21772975f787SNavdeep Parhar 
21782975f787SNavdeep Parhar /*
21792975f787SNavdeep Parhar  * Rebuilds the ifmedia list for this port, and sets the current media.
21802975f787SNavdeep Parhar  */
21812975f787SNavdeep Parhar static void
21822975f787SNavdeep Parhar cxgb_build_medialist(struct port_info *p)
21832975f787SNavdeep Parhar {
21842975f787SNavdeep Parhar 	struct cphy *phy = &p->phy;
21852975f787SNavdeep Parhar 	struct ifmedia *media = &p->media;
21862975f787SNavdeep Parhar 	int mod = phy->modtype;
21872975f787SNavdeep Parhar 	int m = IFM_ETHER | IFM_FDX;
21882975f787SNavdeep Parhar 
21892975f787SNavdeep Parhar 	PORT_LOCK(p);
21902975f787SNavdeep Parhar 
21912975f787SNavdeep Parhar 	ifmedia_removeall(media);
21922975f787SNavdeep Parhar 	if (phy->caps & SUPPORTED_TP && phy->caps & SUPPORTED_Autoneg) {
21932975f787SNavdeep Parhar 		/* Copper (RJ45) */
21942975f787SNavdeep Parhar 
21952975f787SNavdeep Parhar 		if (phy->caps & SUPPORTED_10000baseT_Full)
21962975f787SNavdeep Parhar 			ifmedia_add(media, m | IFM_10G_T, mod, NULL);
21972975f787SNavdeep Parhar 
21982975f787SNavdeep Parhar 		if (phy->caps & SUPPORTED_1000baseT_Full)
21992975f787SNavdeep Parhar 			ifmedia_add(media, m | IFM_1000_T, mod, NULL);
22002975f787SNavdeep Parhar 
22012975f787SNavdeep Parhar 		if (phy->caps & SUPPORTED_100baseT_Full)
22022975f787SNavdeep Parhar 			ifmedia_add(media, m | IFM_100_TX, mod, NULL);
22032975f787SNavdeep Parhar 
22042975f787SNavdeep Parhar 		if (phy->caps & SUPPORTED_10baseT_Full)
22052975f787SNavdeep Parhar 			ifmedia_add(media, m | IFM_10_T, mod, NULL);
22062975f787SNavdeep Parhar 
22072975f787SNavdeep Parhar 		ifmedia_add(media, IFM_ETHER | IFM_AUTO, mod, NULL);
22082975f787SNavdeep Parhar 		ifmedia_set(media, IFM_ETHER | IFM_AUTO);
22092975f787SNavdeep Parhar 
22102975f787SNavdeep Parhar 	} else if (phy->caps & SUPPORTED_TP) {
22112975f787SNavdeep Parhar 		/* Copper (CX4) */
22122975f787SNavdeep Parhar 
22132975f787SNavdeep Parhar 		KASSERT(phy->caps & SUPPORTED_10000baseT_Full,
22142975f787SNavdeep Parhar 			("%s: unexpected cap 0x%x", __func__, phy->caps));
22152975f787SNavdeep Parhar 
22162975f787SNavdeep Parhar 		ifmedia_add(media, m | IFM_10G_CX4, mod, NULL);
22172975f787SNavdeep Parhar 		ifmedia_set(media, m | IFM_10G_CX4);
22182975f787SNavdeep Parhar 
22192975f787SNavdeep Parhar 	} else if (phy->caps & SUPPORTED_FIBRE &&
22202975f787SNavdeep Parhar 		   phy->caps & SUPPORTED_10000baseT_Full) {
22212975f787SNavdeep Parhar 		/* 10G optical (but includes SFP+ twinax) */
22222975f787SNavdeep Parhar 
22232975f787SNavdeep Parhar 		m |= cxgb_ifm_type(mod);
22242975f787SNavdeep Parhar 		if (IFM_SUBTYPE(m) == IFM_NONE)
22252975f787SNavdeep Parhar 			m &= ~IFM_FDX;
22262975f787SNavdeep Parhar 
22272975f787SNavdeep Parhar 		ifmedia_add(media, m, mod, NULL);
22282975f787SNavdeep Parhar 		ifmedia_set(media, m);
22292975f787SNavdeep Parhar 
22302975f787SNavdeep Parhar 	} else if (phy->caps & SUPPORTED_FIBRE &&
22312975f787SNavdeep Parhar 		   phy->caps & SUPPORTED_1000baseT_Full) {
22322975f787SNavdeep Parhar 		/* 1G optical */
22332975f787SNavdeep Parhar 
22342975f787SNavdeep Parhar 		/* XXX: Lie and claim to be SX, could actually be any 1G-X */
22352975f787SNavdeep Parhar 		ifmedia_add(media, m | IFM_1000_SX, mod, NULL);
22362975f787SNavdeep Parhar 		ifmedia_set(media, m | IFM_1000_SX);
22372975f787SNavdeep Parhar 
22382975f787SNavdeep Parhar 	} else {
22392975f787SNavdeep Parhar 		KASSERT(0, ("%s: don't know how to handle 0x%x.", __func__,
22402975f787SNavdeep Parhar 			    phy->caps));
22412975f787SNavdeep Parhar 	}
22422975f787SNavdeep Parhar 
22432975f787SNavdeep Parhar 	PORT_UNLOCK(p);
2244837f41b0SGeorge V. Neville-Neil }
2245837f41b0SGeorge V. Neville-Neil 
2246b6d90eb7SKip Macy static void
2247b6d90eb7SKip Macy cxgb_media_status(struct ifnet *ifp, struct ifmediareq *ifmr)
2248b6d90eb7SKip Macy {
2249b6d90eb7SKip Macy 	struct port_info *p = ifp->if_softc;
2250837f41b0SGeorge V. Neville-Neil 	struct ifmedia_entry *cur = p->media.ifm_cur;
22512975f787SNavdeep Parhar 	int speed = p->link_config.speed;
2252837f41b0SGeorge V. Neville-Neil 
2253837f41b0SGeorge V. Neville-Neil 	if (cur->ifm_data != p->phy.modtype) {
22542975f787SNavdeep Parhar 		cxgb_build_medialist(p);
22552975f787SNavdeep Parhar 		cur = p->media.ifm_cur;
2256837f41b0SGeorge V. Neville-Neil 	}
2257b6d90eb7SKip Macy 
2258b6d90eb7SKip Macy 	ifmr->ifm_status = IFM_AVALID;
2259b6d90eb7SKip Macy 	if (!p->link_config.link_ok)
2260b6d90eb7SKip Macy 		return;
2261b6d90eb7SKip Macy 
2262b6d90eb7SKip Macy 	ifmr->ifm_status |= IFM_ACTIVE;
2263b6d90eb7SKip Macy 
22642975f787SNavdeep Parhar 	/*
22652975f787SNavdeep Parhar 	 * active and current will differ iff current media is autoselect.  That
22662975f787SNavdeep Parhar 	 * can happen only for copper RJ45.
22672975f787SNavdeep Parhar 	 */
22682975f787SNavdeep Parhar 	if (IFM_SUBTYPE(cur->ifm_media) != IFM_AUTO)
22692975f787SNavdeep Parhar 		return;
22702975f787SNavdeep Parhar 	KASSERT(p->phy.caps & SUPPORTED_TP && p->phy.caps & SUPPORTED_Autoneg,
22712975f787SNavdeep Parhar 		("%s: unexpected PHY caps 0x%x", __func__, p->phy.caps));
2272ef72318fSKip Macy 
22732975f787SNavdeep Parhar 	ifmr->ifm_active = IFM_ETHER | IFM_FDX;
22742975f787SNavdeep Parhar 	if (speed == SPEED_10000)
22752975f787SNavdeep Parhar 		ifmr->ifm_active |= IFM_10G_T;
22762975f787SNavdeep Parhar 	else if (speed == SPEED_1000)
22772975f787SNavdeep Parhar 		ifmr->ifm_active |= IFM_1000_T;
22782975f787SNavdeep Parhar 	else if (speed == SPEED_100)
22792975f787SNavdeep Parhar 		ifmr->ifm_active |= IFM_100_TX;
22802975f787SNavdeep Parhar 	else if (speed == SPEED_10)
22812975f787SNavdeep Parhar 		ifmr->ifm_active |= IFM_10_T;
2282b6d90eb7SKip Macy 	else
22832975f787SNavdeep Parhar 		KASSERT(0, ("%s: link up but speed unknown (%u)", __func__,
22842975f787SNavdeep Parhar 			    speed));
2285b6d90eb7SKip Macy }
2286b6d90eb7SKip Macy 
2287b6d90eb7SKip Macy static void
2288b6d90eb7SKip Macy cxgb_async_intr(void *data)
2289b6d90eb7SKip Macy {
2290693d746cSKip Macy 	adapter_t *sc = data;
2291693d746cSKip Macy 
2292b6d90eb7SKip Macy 	if (cxgb_debug)
2293693d746cSKip Macy 		device_printf(sc->dev, "cxgb_async_intr\n");
2294bb38cd2fSKip Macy 	/*
2295bb38cd2fSKip Macy 	 * May need to sleep - defer to taskqueue
2296bb38cd2fSKip Macy 	 */
2297bb38cd2fSKip Macy 	taskqueue_enqueue(sc->tq, &sc->slow_intr_task);
2298b6d90eb7SKip Macy }
2299b6d90eb7SKip Macy 
2300b6d90eb7SKip Macy static void
2301b6d90eb7SKip Macy cxgb_ext_intr_handler(void *arg, int count)
2302b6d90eb7SKip Macy {
2303b6d90eb7SKip Macy 	adapter_t *sc = (adapter_t *)arg;
2304b6d90eb7SKip Macy 
2305b6d90eb7SKip Macy 	if (cxgb_debug)
2306b6d90eb7SKip Macy 		printf("cxgb_ext_intr_handler\n");
2307b6d90eb7SKip Macy 
2308b6d90eb7SKip Macy 	t3_phy_intr_handler(sc);
2309b6d90eb7SKip Macy 
2310b6d90eb7SKip Macy 	/* Now reenable external interrupts */
2311d722cab4SKip Macy 	ADAPTER_LOCK(sc);
2312b6d90eb7SKip Macy 	if (sc->slow_intr_mask) {
2313b6d90eb7SKip Macy 		sc->slow_intr_mask |= F_T3DBG;
2314b6d90eb7SKip Macy 		t3_write_reg(sc, A_PL_INT_CAUSE0, F_T3DBG);
2315b6d90eb7SKip Macy 		t3_write_reg(sc, A_PL_INT_ENABLE0, sc->slow_intr_mask);
2316b6d90eb7SKip Macy 	}
2317d722cab4SKip Macy 	ADAPTER_UNLOCK(sc);
2318b6d90eb7SKip Macy }
2319b6d90eb7SKip Macy 
2320c01f2b83SNavdeep Parhar static inline int
2321c01f2b83SNavdeep Parhar link_poll_needed(struct port_info *p)
2322c01f2b83SNavdeep Parhar {
2323c01f2b83SNavdeep Parhar 	struct cphy *phy = &p->phy;
2324c01f2b83SNavdeep Parhar 
2325c01f2b83SNavdeep Parhar 	if (phy->caps & POLL_LINK_1ST_TIME) {
2326c01f2b83SNavdeep Parhar 		p->phy.caps &= ~POLL_LINK_1ST_TIME;
2327c01f2b83SNavdeep Parhar 		return (1);
2328c01f2b83SNavdeep Parhar 	}
2329c01f2b83SNavdeep Parhar 
2330c01f2b83SNavdeep Parhar 	return (p->link_fault || !(phy->caps & SUPPORTED_LINK_IRQ));
2331c01f2b83SNavdeep Parhar }
2332c01f2b83SNavdeep Parhar 
2333b6d90eb7SKip Macy static void
2334b6d90eb7SKip Macy check_link_status(adapter_t *sc)
2335b6d90eb7SKip Macy {
2336b6d90eb7SKip Macy 	int i;
2337b6d90eb7SKip Macy 
2338b6d90eb7SKip Macy 	for (i = 0; i < (sc)->params.nports; ++i) {
2339b6d90eb7SKip Macy 		struct port_info *p = &sc->port[i];
2340b6d90eb7SKip Macy 
23413f345a5dSKip Macy 		if (!isset(&sc->open_device_map, p->port_id))
23423f345a5dSKip Macy 			continue;
23433f345a5dSKip Macy 
2344c01f2b83SNavdeep Parhar 		if (link_poll_needed(p))
2345b6d90eb7SKip Macy 			t3_link_changed(sc, i);
2346b6d90eb7SKip Macy 	}
2347b6d90eb7SKip Macy }
2348b6d90eb7SKip Macy 
2349577e9bbeSKip Macy static void
23503f345a5dSKip Macy check_t3b2_mac(struct adapter *sc)
2351577e9bbeSKip Macy {
2352577e9bbeSKip Macy 	int i;
2353577e9bbeSKip Macy 
23543f345a5dSKip Macy 	if (sc->flags & CXGB_SHUTDOWN)
23558e10660fSKip Macy 		return;
23568e10660fSKip Macy 
23573f345a5dSKip Macy 	for_each_port(sc, i) {
23583f345a5dSKip Macy 		struct port_info *p = &sc->port[i];
2359577e9bbeSKip Macy 		int status;
23603f345a5dSKip Macy #ifdef INVARIANTS
23613f345a5dSKip Macy 		struct ifnet *ifp = p->ifp;
23623f345a5dSKip Macy #endif
2363577e9bbeSKip Macy 
2364c01f2b83SNavdeep Parhar 		if (!isset(&sc->open_device_map, p->port_id) || p->link_fault ||
2365c01f2b83SNavdeep Parhar 		    !p->link_config.link_ok)
2366577e9bbeSKip Macy 			continue;
2367577e9bbeSKip Macy 
23683f345a5dSKip Macy 		KASSERT(ifp->if_drv_flags & IFF_DRV_RUNNING,
23693f345a5dSKip Macy 			("%s: state mismatch (drv_flags %x, device_map %x)",
23703f345a5dSKip Macy 			 __func__, ifp->if_drv_flags, sc->open_device_map));
23713f345a5dSKip Macy 
2372577e9bbeSKip Macy 		PORT_LOCK(p);
2373577e9bbeSKip Macy 		status = t3b2_mac_watchdog_task(&p->mac);
2374577e9bbeSKip Macy 		if (status == 1)
2375577e9bbeSKip Macy 			p->mac.stats.num_toggled++;
2376577e9bbeSKip Macy 		else if (status == 2) {
2377577e9bbeSKip Macy 			struct cmac *mac = &p->mac;
2378577e9bbeSKip Macy 
23793f345a5dSKip Macy 			cxgb_update_mac_settings(p);
2380577e9bbeSKip Macy 			t3_link_start(&p->phy, mac, &p->link_config);
2381577e9bbeSKip Macy 			t3_mac_enable(mac, MAC_DIRECTION_RX | MAC_DIRECTION_TX);
23823f345a5dSKip Macy 			t3_port_intr_enable(sc, p->port_id);
2383577e9bbeSKip Macy 			p->mac.stats.num_resets++;
2384577e9bbeSKip Macy 		}
2385577e9bbeSKip Macy 		PORT_UNLOCK(p);
2386577e9bbeSKip Macy 	}
2387577e9bbeSKip Macy }
2388577e9bbeSKip Macy 
2389577e9bbeSKip Macy static void
2390577e9bbeSKip Macy cxgb_tick(void *arg)
2391577e9bbeSKip Macy {
2392577e9bbeSKip Macy 	adapter_t *sc = (adapter_t *)arg;
23938090c9f5SKip Macy 
23948e10660fSKip Macy 	if (sc->flags & CXGB_SHUTDOWN)
23958090c9f5SKip Macy 		return;
2396577e9bbeSKip Macy 
2397bb38cd2fSKip Macy 	taskqueue_enqueue(sc->tq, &sc->tick_task);
2398706cb31fSKip Macy 	callout_reset(&sc->cxgb_tick_ch, CXGB_TICKS(sc), cxgb_tick, sc);
2399bb38cd2fSKip Macy }
2400bb38cd2fSKip Macy 
2401bb38cd2fSKip Macy static void
2402bb38cd2fSKip Macy cxgb_tick_handler(void *arg, int count)
2403bb38cd2fSKip Macy {
2404bb38cd2fSKip Macy 	adapter_t *sc = (adapter_t *)arg;
2405bb38cd2fSKip Macy 	const struct adapter_params *p = &sc->params;
2406706cb31fSKip Macy 	int i;
2407f2d8ff04SGeorge V. Neville-Neil 	uint32_t cause, reset;
2408bb38cd2fSKip Macy 
24090bbdea77SGeorge V. Neville-Neil 	if (sc->flags & CXGB_SHUTDOWN || !(sc->flags & FULL_INIT_DONE))
24108e10660fSKip Macy 		return;
24118e10660fSKip Macy 
2412bb38cd2fSKip Macy 	check_link_status(sc);
2413f35c2d65SKip Macy 
2414f35c2d65SKip Macy 	if (p->rev == T3_REV_B2 && p->nports < 4 && sc->open_device_map)
2415f35c2d65SKip Macy 		check_t3b2_mac(sc);
2416f35c2d65SKip Macy 
2417489ca05bSNavdeep Parhar 	cause = t3_read_reg(sc, A_SG_INT_CAUSE) & (F_RSPQSTARVE | F_FLEMPTY);
2418489ca05bSNavdeep Parhar 	if (cause) {
2419f2d8ff04SGeorge V. Neville-Neil 		struct sge_qset *qs = &sc->sge.qs[0];
2420489ca05bSNavdeep Parhar 		uint32_t mask, v;
2421f2d8ff04SGeorge V. Neville-Neil 
2422489ca05bSNavdeep Parhar 		v = t3_read_reg(sc, A_SG_RSPQ_FL_STATUS) & ~0xff00;
2423f2d8ff04SGeorge V. Neville-Neil 
2424489ca05bSNavdeep Parhar 		mask = 1;
2425489ca05bSNavdeep Parhar 		for (i = 0; i < SGE_QSETS; i++) {
2426489ca05bSNavdeep Parhar 			if (v & mask)
2427489ca05bSNavdeep Parhar 				qs[i].rspq.starved++;
2428489ca05bSNavdeep Parhar 			mask <<= 1;
2429f2d8ff04SGeorge V. Neville-Neil 		}
2430489ca05bSNavdeep Parhar 
2431489ca05bSNavdeep Parhar 		mask <<= SGE_QSETS; /* skip RSPQXDISABLED */
2432489ca05bSNavdeep Parhar 
2433489ca05bSNavdeep Parhar 		for (i = 0; i < SGE_QSETS * 2; i++) {
2434489ca05bSNavdeep Parhar 			if (v & mask) {
2435489ca05bSNavdeep Parhar 				qs[i / 2].fl[i % 2].empty++;
2436f2d8ff04SGeorge V. Neville-Neil 			}
2437489ca05bSNavdeep Parhar 			mask <<= 1;
2438489ca05bSNavdeep Parhar 		}
2439489ca05bSNavdeep Parhar 
2440489ca05bSNavdeep Parhar 		/* clear */
2441489ca05bSNavdeep Parhar 		t3_write_reg(sc, A_SG_RSPQ_FL_STATUS, v);
2442489ca05bSNavdeep Parhar 		t3_write_reg(sc, A_SG_INT_CAUSE, cause);
2443489ca05bSNavdeep Parhar 	}
2444f2d8ff04SGeorge V. Neville-Neil 
2445ceac50ebSKip Macy 	for (i = 0; i < sc->params.nports; i++) {
2446ceac50ebSKip Macy 		struct port_info *pi = &sc->port[i];
2447ceac50ebSKip Macy 		struct ifnet *ifp = pi->ifp;
2448f2d8ff04SGeorge V. Neville-Neil 		struct cmac *mac = &pi->mac;
2449f2d8ff04SGeorge V. Neville-Neil 		struct mac_stats *mstats = &mac->stats;
245092f61ecbSNavdeep Parhar 		int drops, j;
24513f345a5dSKip Macy 
24523f345a5dSKip Macy 		if (!isset(&sc->open_device_map, pi->port_id))
24533f345a5dSKip Macy 			continue;
24543f345a5dSKip Macy 
2455f35c2d65SKip Macy 		PORT_LOCK(pi);
2456f2d8ff04SGeorge V. Neville-Neil 		t3_mac_update_stats(mac);
2457f35c2d65SKip Macy 		PORT_UNLOCK(pi);
2458f35c2d65SKip Macy 
245992f61ecbSNavdeep Parhar 		ifp->if_opackets = mstats->tx_frames;
246092f61ecbSNavdeep Parhar 		ifp->if_ipackets = mstats->rx_frames;
2461ceac50ebSKip Macy 		ifp->if_obytes = mstats->tx_octets;
2462ceac50ebSKip Macy 		ifp->if_ibytes = mstats->rx_octets;
2463ceac50ebSKip Macy 		ifp->if_omcasts = mstats->tx_mcast_frames;
2464ceac50ebSKip Macy 		ifp->if_imcasts = mstats->rx_mcast_frames;
246592f61ecbSNavdeep Parhar 		ifp->if_collisions = mstats->tx_total_collisions;
2466ceac50ebSKip Macy 		ifp->if_iqdrops = mstats->rx_cong_drops;
2467ceac50ebSKip Macy 
246892f61ecbSNavdeep Parhar 		drops = 0;
246992f61ecbSNavdeep Parhar 		for (j = pi->first_qset; j < pi->first_qset + pi->nqsets; j++)
247092f61ecbSNavdeep Parhar 			drops += sc->sge.qs[j].txq[TXQ_ETH].txq_mr->br_drops;
247192f61ecbSNavdeep Parhar 		ifp->if_snd.ifq_drops = drops;
247292f61ecbSNavdeep Parhar 
2473ceac50ebSKip Macy 		ifp->if_oerrors =
2474ceac50ebSKip Macy 		    mstats->tx_excess_collisions +
2475ceac50ebSKip Macy 		    mstats->tx_underrun +
2476ceac50ebSKip Macy 		    mstats->tx_len_errs +
2477ceac50ebSKip Macy 		    mstats->tx_mac_internal_errs +
2478ceac50ebSKip Macy 		    mstats->tx_excess_deferral +
2479ceac50ebSKip Macy 		    mstats->tx_fcs_errs;
2480ceac50ebSKip Macy 		ifp->if_ierrors =
2481ceac50ebSKip Macy 		    mstats->rx_jabber +
2482ceac50ebSKip Macy 		    mstats->rx_data_errs +
2483ceac50ebSKip Macy 		    mstats->rx_sequence_errs +
2484ceac50ebSKip Macy 		    mstats->rx_runt +
2485ceac50ebSKip Macy 		    mstats->rx_too_long +
2486ceac50ebSKip Macy 		    mstats->rx_mac_internal_errs +
2487ceac50ebSKip Macy 		    mstats->rx_short +
2488ceac50ebSKip Macy 		    mstats->rx_fcs_errs;
2489f2d8ff04SGeorge V. Neville-Neil 
2490f2d8ff04SGeorge V. Neville-Neil 		if (mac->multiport)
2491f2d8ff04SGeorge V. Neville-Neil 			continue;
2492f2d8ff04SGeorge V. Neville-Neil 
2493f2d8ff04SGeorge V. Neville-Neil 		/* Count rx fifo overflows, once per second */
2494f2d8ff04SGeorge V. Neville-Neil 		cause = t3_read_reg(sc, A_XGM_INT_CAUSE + mac->offset);
2495f2d8ff04SGeorge V. Neville-Neil 		reset = 0;
2496f2d8ff04SGeorge V. Neville-Neil 		if (cause & F_RXFIFO_OVERFLOW) {
2497f2d8ff04SGeorge V. Neville-Neil 			mac->stats.rx_fifo_ovfl++;
2498f2d8ff04SGeorge V. Neville-Neil 			reset |= F_RXFIFO_OVERFLOW;
2499f2d8ff04SGeorge V. Neville-Neil 		}
2500f2d8ff04SGeorge V. Neville-Neil 		t3_write_reg(sc, A_XGM_INT_CAUSE + mac->offset, reset);
2501ceac50ebSKip Macy 	}
2502577e9bbeSKip Macy }
2503577e9bbeSKip Macy 
25047ac2e6c3SKip Macy static void
25057ac2e6c3SKip Macy touch_bars(device_t dev)
25067ac2e6c3SKip Macy {
25077ac2e6c3SKip Macy 	/*
25087ac2e6c3SKip Macy 	 * Don't enable yet
25097ac2e6c3SKip Macy 	 */
25107ac2e6c3SKip Macy #if !defined(__LP64__) && 0
25117ac2e6c3SKip Macy 	u32 v;
25127ac2e6c3SKip Macy 
25137ac2e6c3SKip Macy 	pci_read_config_dword(pdev, PCI_BASE_ADDRESS_1, &v);
25147ac2e6c3SKip Macy 	pci_write_config_dword(pdev, PCI_BASE_ADDRESS_1, v);
25157ac2e6c3SKip Macy 	pci_read_config_dword(pdev, PCI_BASE_ADDRESS_3, &v);
25167ac2e6c3SKip Macy 	pci_write_config_dword(pdev, PCI_BASE_ADDRESS_3, v);
25177ac2e6c3SKip Macy 	pci_read_config_dword(pdev, PCI_BASE_ADDRESS_5, &v);
25187ac2e6c3SKip Macy 	pci_write_config_dword(pdev, PCI_BASE_ADDRESS_5, v);
25197ac2e6c3SKip Macy #endif
25207ac2e6c3SKip Macy }
25217ac2e6c3SKip Macy 
2522ac3a6d9cSKip Macy static int
2523ac3a6d9cSKip Macy set_eeprom(struct port_info *pi, const uint8_t *data, int len, int offset)
2524ac3a6d9cSKip Macy {
2525ac3a6d9cSKip Macy 	uint8_t *buf;
2526ac3a6d9cSKip Macy 	int err = 0;
2527ac3a6d9cSKip Macy 	u32 aligned_offset, aligned_len, *p;
2528ac3a6d9cSKip Macy 	struct adapter *adapter = pi->adapter;
2529ac3a6d9cSKip Macy 
2530ac3a6d9cSKip Macy 
2531ac3a6d9cSKip Macy 	aligned_offset = offset & ~3;
2532ac3a6d9cSKip Macy 	aligned_len = (len + (offset & 3) + 3) & ~3;
2533ac3a6d9cSKip Macy 
2534ac3a6d9cSKip Macy 	if (aligned_offset != offset || aligned_len != len) {
2535ac3a6d9cSKip Macy 		buf = malloc(aligned_len, M_DEVBUF, M_WAITOK|M_ZERO);
2536ac3a6d9cSKip Macy 		if (!buf)
2537ac3a6d9cSKip Macy 			return (ENOMEM);
2538ac3a6d9cSKip Macy 		err = t3_seeprom_read(adapter, aligned_offset, (u32 *)buf);
2539ac3a6d9cSKip Macy 		if (!err && aligned_len > 4)
2540ac3a6d9cSKip Macy 			err = t3_seeprom_read(adapter,
2541ac3a6d9cSKip Macy 					      aligned_offset + aligned_len - 4,
2542ac3a6d9cSKip Macy 					      (u32 *)&buf[aligned_len - 4]);
2543ac3a6d9cSKip Macy 		if (err)
2544ac3a6d9cSKip Macy 			goto out;
2545ac3a6d9cSKip Macy 		memcpy(buf + (offset & 3), data, len);
2546ac3a6d9cSKip Macy 	} else
2547ac3a6d9cSKip Macy 		buf = (uint8_t *)(uintptr_t)data;
2548ac3a6d9cSKip Macy 
2549ac3a6d9cSKip Macy 	err = t3_seeprom_wp(adapter, 0);
2550ac3a6d9cSKip Macy 	if (err)
2551ac3a6d9cSKip Macy 		goto out;
2552ac3a6d9cSKip Macy 
2553ac3a6d9cSKip Macy 	for (p = (u32 *)buf; !err && aligned_len; aligned_len -= 4, p++) {
2554ac3a6d9cSKip Macy 		err = t3_seeprom_write(adapter, aligned_offset, *p);
2555ac3a6d9cSKip Macy 		aligned_offset += 4;
2556ac3a6d9cSKip Macy 	}
2557ac3a6d9cSKip Macy 
2558ac3a6d9cSKip Macy 	if (!err)
2559ac3a6d9cSKip Macy 		err = t3_seeprom_wp(adapter, 1);
2560ac3a6d9cSKip Macy out:
2561ac3a6d9cSKip Macy 	if (buf != data)
2562ac3a6d9cSKip Macy 		free(buf, M_DEVBUF);
2563ac3a6d9cSKip Macy 	return err;
2564ac3a6d9cSKip Macy }
2565ac3a6d9cSKip Macy 
2566ac3a6d9cSKip Macy 
2567b6d90eb7SKip Macy static int
2568b6d90eb7SKip Macy in_range(int val, int lo, int hi)
2569b6d90eb7SKip Macy {
2570b6d90eb7SKip Macy 	return val < 0 || (val <= hi && val >= lo);
2571b6d90eb7SKip Macy }
2572b6d90eb7SKip Macy 
2573b6d90eb7SKip Macy static int
257400b4e54aSWarner Losh cxgb_extension_open(struct cdev *dev, int flags, int fmp, struct thread *td)
2575ef72318fSKip Macy {
2576ef72318fSKip Macy        return (0);
2577ef72318fSKip Macy }
2578ef72318fSKip Macy 
2579ef72318fSKip Macy static int
258000b4e54aSWarner Losh cxgb_extension_close(struct cdev *dev, int flags, int fmt, struct thread *td)
2581ef72318fSKip Macy {
2582ef72318fSKip Macy        return (0);
2583ef72318fSKip Macy }
2584ef72318fSKip Macy 
2585ef72318fSKip Macy static int
2586b6d90eb7SKip Macy cxgb_extension_ioctl(struct cdev *dev, unsigned long cmd, caddr_t data,
2587b6d90eb7SKip Macy     int fflag, struct thread *td)
2588b6d90eb7SKip Macy {
2589b6d90eb7SKip Macy 	int mmd, error = 0;
2590b6d90eb7SKip Macy 	struct port_info *pi = dev->si_drv1;
2591b6d90eb7SKip Macy 	adapter_t *sc = pi->adapter;
2592b6d90eb7SKip Macy 
2593b6d90eb7SKip Macy #ifdef PRIV_SUPPORTED
2594b6d90eb7SKip Macy 	if (priv_check(td, PRIV_DRIVER)) {
2595b6d90eb7SKip Macy 		if (cxgb_debug)
2596b6d90eb7SKip Macy 			printf("user does not have access to privileged ioctls\n");
2597b6d90eb7SKip Macy 		return (EPERM);
2598b6d90eb7SKip Macy 	}
2599b6d90eb7SKip Macy #else
2600b6d90eb7SKip Macy 	if (suser(td)) {
2601b6d90eb7SKip Macy 		if (cxgb_debug)
2602b6d90eb7SKip Macy 			printf("user does not have access to privileged ioctls\n");
2603b6d90eb7SKip Macy 		return (EPERM);
2604b6d90eb7SKip Macy 	}
2605b6d90eb7SKip Macy #endif
2606b6d90eb7SKip Macy 
2607b6d90eb7SKip Macy 	switch (cmd) {
26081ffd6e58SKip Macy 	case CHELSIO_GET_MIIREG: {
2609b6d90eb7SKip Macy 		uint32_t val;
2610b6d90eb7SKip Macy 		struct cphy *phy = &pi->phy;
26111ffd6e58SKip Macy 		struct ch_mii_data *mid = (struct ch_mii_data *)data;
2612b6d90eb7SKip Macy 
2613b6d90eb7SKip Macy 		if (!phy->mdio_read)
2614b6d90eb7SKip Macy 			return (EOPNOTSUPP);
2615b6d90eb7SKip Macy 		if (is_10G(sc)) {
2616b6d90eb7SKip Macy 			mmd = mid->phy_id >> 8;
2617b6d90eb7SKip Macy 			if (!mmd)
2618b6d90eb7SKip Macy 				mmd = MDIO_DEV_PCS;
26190c1ff9c6SGeorge V. Neville-Neil 			else if (mmd > MDIO_DEV_VEND2)
2620ac3a6d9cSKip Macy 				return (EINVAL);
2621b6d90eb7SKip Macy 
2622b6d90eb7SKip Macy 			error = phy->mdio_read(sc, mid->phy_id & 0x1f, mmd,
2623b6d90eb7SKip Macy 					     mid->reg_num, &val);
2624b6d90eb7SKip Macy 		} else
2625b6d90eb7SKip Macy 		        error = phy->mdio_read(sc, mid->phy_id & 0x1f, 0,
2626b6d90eb7SKip Macy 					     mid->reg_num & 0x1f, &val);
2627b6d90eb7SKip Macy 		if (error == 0)
2628b6d90eb7SKip Macy 			mid->val_out = val;
2629b6d90eb7SKip Macy 		break;
2630b6d90eb7SKip Macy 	}
26311ffd6e58SKip Macy 	case CHELSIO_SET_MIIREG: {
2632b6d90eb7SKip Macy 		struct cphy *phy = &pi->phy;
26331ffd6e58SKip Macy 		struct ch_mii_data *mid = (struct ch_mii_data *)data;
2634b6d90eb7SKip Macy 
2635b6d90eb7SKip Macy 		if (!phy->mdio_write)
2636b6d90eb7SKip Macy 			return (EOPNOTSUPP);
2637b6d90eb7SKip Macy 		if (is_10G(sc)) {
2638b6d90eb7SKip Macy 			mmd = mid->phy_id >> 8;
2639b6d90eb7SKip Macy 			if (!mmd)
2640b6d90eb7SKip Macy 				mmd = MDIO_DEV_PCS;
26410c1ff9c6SGeorge V. Neville-Neil 			else if (mmd > MDIO_DEV_VEND2)
2642b6d90eb7SKip Macy 				return (EINVAL);
2643b6d90eb7SKip Macy 
2644b6d90eb7SKip Macy 			error = phy->mdio_write(sc, mid->phy_id & 0x1f,
2645b6d90eb7SKip Macy 					      mmd, mid->reg_num, mid->val_in);
2646b6d90eb7SKip Macy 		} else
2647b6d90eb7SKip Macy 			error = phy->mdio_write(sc, mid->phy_id & 0x1f, 0,
2648b6d90eb7SKip Macy 					      mid->reg_num & 0x1f,
2649b6d90eb7SKip Macy 					      mid->val_in);
2650b6d90eb7SKip Macy 		break;
2651b6d90eb7SKip Macy 	}
2652b6d90eb7SKip Macy 	case CHELSIO_SETREG: {
2653b6d90eb7SKip Macy 		struct ch_reg *edata = (struct ch_reg *)data;
2654b6d90eb7SKip Macy 		if ((edata->addr & 0x3) != 0 || edata->addr >= sc->mmio_len)
2655b6d90eb7SKip Macy 			return (EFAULT);
2656b6d90eb7SKip Macy 		t3_write_reg(sc, edata->addr, edata->val);
2657b6d90eb7SKip Macy 		break;
2658b6d90eb7SKip Macy 	}
2659b6d90eb7SKip Macy 	case CHELSIO_GETREG: {
2660b6d90eb7SKip Macy 		struct ch_reg *edata = (struct ch_reg *)data;
2661b6d90eb7SKip Macy 		if ((edata->addr & 0x3) != 0 || edata->addr >= sc->mmio_len)
2662b6d90eb7SKip Macy 			return (EFAULT);
2663b6d90eb7SKip Macy 		edata->val = t3_read_reg(sc, edata->addr);
2664b6d90eb7SKip Macy 		break;
2665b6d90eb7SKip Macy 	}
2666b6d90eb7SKip Macy 	case CHELSIO_GET_SGE_CONTEXT: {
2667b6d90eb7SKip Macy 		struct ch_cntxt *ecntxt = (struct ch_cntxt *)data;
26688e10660fSKip Macy 		mtx_lock_spin(&sc->sge.reg_lock);
2669b6d90eb7SKip Macy 		switch (ecntxt->cntxt_type) {
2670b6d90eb7SKip Macy 		case CNTXT_TYPE_EGRESS:
26711ffd6e58SKip Macy 			error = -t3_sge_read_ecntxt(sc, ecntxt->cntxt_id,
2672b6d90eb7SKip Macy 			    ecntxt->data);
2673b6d90eb7SKip Macy 			break;
2674b6d90eb7SKip Macy 		case CNTXT_TYPE_FL:
26751ffd6e58SKip Macy 			error = -t3_sge_read_fl(sc, ecntxt->cntxt_id,
2676b6d90eb7SKip Macy 			    ecntxt->data);
2677b6d90eb7SKip Macy 			break;
2678b6d90eb7SKip Macy 		case CNTXT_TYPE_RSP:
26791ffd6e58SKip Macy 			error = -t3_sge_read_rspq(sc, ecntxt->cntxt_id,
2680b6d90eb7SKip Macy 			    ecntxt->data);
2681b6d90eb7SKip Macy 			break;
2682b6d90eb7SKip Macy 		case CNTXT_TYPE_CQ:
26831ffd6e58SKip Macy 			error = -t3_sge_read_cq(sc, ecntxt->cntxt_id,
2684b6d90eb7SKip Macy 			    ecntxt->data);
2685b6d90eb7SKip Macy 			break;
2686b6d90eb7SKip Macy 		default:
2687b6d90eb7SKip Macy 			error = EINVAL;
2688b6d90eb7SKip Macy 			break;
2689b6d90eb7SKip Macy 		}
26908e10660fSKip Macy 		mtx_unlock_spin(&sc->sge.reg_lock);
2691b6d90eb7SKip Macy 		break;
2692b6d90eb7SKip Macy 	}
2693b6d90eb7SKip Macy 	case CHELSIO_GET_SGE_DESC: {
2694b6d90eb7SKip Macy 		struct ch_desc *edesc = (struct ch_desc *)data;
2695b6d90eb7SKip Macy 		int ret;
2696b6d90eb7SKip Macy 		if (edesc->queue_num >= SGE_QSETS * 6)
2697b6d90eb7SKip Macy 			return (EINVAL);
2698b6d90eb7SKip Macy 		ret = t3_get_desc(&sc->sge.qs[edesc->queue_num / 6],
2699b6d90eb7SKip Macy 		    edesc->queue_num % 6, edesc->idx, edesc->data);
2700b6d90eb7SKip Macy 		if (ret < 0)
2701b6d90eb7SKip Macy 			return (EINVAL);
2702b6d90eb7SKip Macy 		edesc->size = ret;
2703b6d90eb7SKip Macy 		break;
2704b6d90eb7SKip Macy 	}
2705b6d90eb7SKip Macy 	case CHELSIO_GET_QSET_PARAMS: {
2706b6d90eb7SKip Macy 		struct qset_params *q;
2707b6d90eb7SKip Macy 		struct ch_qset_params *t = (struct ch_qset_params *)data;
27081ffd6e58SKip Macy 		int q1 = pi->first_qset;
27091ffd6e58SKip Macy 		int nqsets = pi->nqsets;
27101ffd6e58SKip Macy 		int i;
2711b6d90eb7SKip Macy 
27121ffd6e58SKip Macy 		if (t->qset_idx >= nqsets)
27131ffd6e58SKip Macy 			return EINVAL;
2714b6d90eb7SKip Macy 
27151ffd6e58SKip Macy 		i = q1 + t->qset_idx;
27161ffd6e58SKip Macy 		q = &sc->params.sge.qset[i];
2717b6d90eb7SKip Macy 		t->rspq_size   = q->rspq_size;
2718b6d90eb7SKip Macy 		t->txq_size[0] = q->txq_size[0];
2719b6d90eb7SKip Macy 		t->txq_size[1] = q->txq_size[1];
2720b6d90eb7SKip Macy 		t->txq_size[2] = q->txq_size[2];
2721b6d90eb7SKip Macy 		t->fl_size[0]  = q->fl_size;
2722b6d90eb7SKip Macy 		t->fl_size[1]  = q->jumbo_size;
2723b6d90eb7SKip Macy 		t->polling     = q->polling;
27241ffd6e58SKip Macy 		t->lro         = q->lro;
27254af83c8cSKip Macy 		t->intr_lat    = q->coalesce_usecs;
2726b6d90eb7SKip Macy 		t->cong_thres  = q->cong_thres;
27271ffd6e58SKip Macy 		t->qnum        = i;
2728b6d90eb7SKip Macy 
27291d609d51SNavdeep Parhar 		if ((sc->flags & FULL_INIT_DONE) == 0)
27301d609d51SNavdeep Parhar 			t->vector = 0;
27311d609d51SNavdeep Parhar 		else if (sc->flags & USING_MSIX)
27321ffd6e58SKip Macy 			t->vector = rman_get_start(sc->msix_irq_res[i]);
27331ffd6e58SKip Macy 		else
27341ffd6e58SKip Macy 			t->vector = rman_get_start(sc->irq_res);
27351ffd6e58SKip Macy 
2736b6d90eb7SKip Macy 		break;
2737b6d90eb7SKip Macy 	}
2738b6d90eb7SKip Macy 	case CHELSIO_GET_QSET_NUM: {
2739b6d90eb7SKip Macy 		struct ch_reg *edata = (struct ch_reg *)data;
2740b6d90eb7SKip Macy 		edata->val = pi->nqsets;
2741b6d90eb7SKip Macy 		break;
2742b6d90eb7SKip Macy 	}
27431ffd6e58SKip Macy 	case CHELSIO_LOAD_FW: {
27441ffd6e58SKip Macy 		uint8_t *fw_data;
27451ffd6e58SKip Macy 		uint32_t vers;
27461ffd6e58SKip Macy 		struct ch_mem_range *t = (struct ch_mem_range *)data;
27471ffd6e58SKip Macy 
27481ffd6e58SKip Macy 		/*
27491ffd6e58SKip Macy 		 * You're allowed to load a firmware only before FULL_INIT_DONE
27501ffd6e58SKip Macy 		 *
27511ffd6e58SKip Macy 		 * FW_UPTODATE is also set so the rest of the initialization
27521ffd6e58SKip Macy 		 * will not overwrite what was loaded here.  This gives you the
27531ffd6e58SKip Macy 		 * flexibility to load any firmware (and maybe shoot yourself in
27541ffd6e58SKip Macy 		 * the foot).
27551ffd6e58SKip Macy 		 */
27561ffd6e58SKip Macy 
27571ffd6e58SKip Macy 		ADAPTER_LOCK(sc);
27581ffd6e58SKip Macy 		if (sc->open_device_map || sc->flags & FULL_INIT_DONE) {
27591ffd6e58SKip Macy 			ADAPTER_UNLOCK(sc);
27601ffd6e58SKip Macy 			return (EBUSY);
27611ffd6e58SKip Macy 		}
27621ffd6e58SKip Macy 
27631ffd6e58SKip Macy 		fw_data = malloc(t->len, M_DEVBUF, M_NOWAIT);
27641ffd6e58SKip Macy 		if (!fw_data)
27651ffd6e58SKip Macy 			error = ENOMEM;
27661ffd6e58SKip Macy 		else
27671ffd6e58SKip Macy 			error = copyin(t->buf, fw_data, t->len);
27681ffd6e58SKip Macy 
27691ffd6e58SKip Macy 		if (!error)
27701ffd6e58SKip Macy 			error = -t3_load_fw(sc, fw_data, t->len);
27711ffd6e58SKip Macy 
27721ffd6e58SKip Macy 		if (t3_get_fw_version(sc, &vers) == 0) {
27731ffd6e58SKip Macy 			snprintf(&sc->fw_version[0], sizeof(sc->fw_version),
27741ffd6e58SKip Macy 			    "%d.%d.%d", G_FW_VERSION_MAJOR(vers),
27751ffd6e58SKip Macy 			    G_FW_VERSION_MINOR(vers), G_FW_VERSION_MICRO(vers));
27761ffd6e58SKip Macy 		}
27771ffd6e58SKip Macy 
27781ffd6e58SKip Macy 		if (!error)
27791ffd6e58SKip Macy 			sc->flags |= FW_UPTODATE;
27801ffd6e58SKip Macy 
27811ffd6e58SKip Macy 		free(fw_data, M_DEVBUF);
27821ffd6e58SKip Macy 		ADAPTER_UNLOCK(sc);
2783b6d90eb7SKip Macy 		break;
27841ffd6e58SKip Macy 	}
27851ffd6e58SKip Macy 	case CHELSIO_LOAD_BOOT: {
27861ffd6e58SKip Macy 		uint8_t *boot_data;
27871ffd6e58SKip Macy 		struct ch_mem_range *t = (struct ch_mem_range *)data;
27881ffd6e58SKip Macy 
27891ffd6e58SKip Macy 		boot_data = malloc(t->len, M_DEVBUF, M_NOWAIT);
27901ffd6e58SKip Macy 		if (!boot_data)
27911ffd6e58SKip Macy 			return ENOMEM;
27921ffd6e58SKip Macy 
27931ffd6e58SKip Macy 		error = copyin(t->buf, boot_data, t->len);
27941ffd6e58SKip Macy 		if (!error)
27951ffd6e58SKip Macy 			error = -t3_load_boot(sc, boot_data, t->len);
27961ffd6e58SKip Macy 
27971ffd6e58SKip Macy 		free(boot_data, M_DEVBUF);
27981ffd6e58SKip Macy 		break;
27991ffd6e58SKip Macy 	}
28001ffd6e58SKip Macy 	case CHELSIO_GET_PM: {
28011ffd6e58SKip Macy 		struct ch_pm *m = (struct ch_pm *)data;
28021ffd6e58SKip Macy 		struct tp_params *p = &sc->params.tp;
28031ffd6e58SKip Macy 
28041ffd6e58SKip Macy 		if (!is_offload(sc))
28051ffd6e58SKip Macy 			return (EOPNOTSUPP);
28061ffd6e58SKip Macy 
28071ffd6e58SKip Macy 		m->tx_pg_sz = p->tx_pg_size;
28081ffd6e58SKip Macy 		m->tx_num_pg = p->tx_num_pgs;
28091ffd6e58SKip Macy 		m->rx_pg_sz  = p->rx_pg_size;
28101ffd6e58SKip Macy 		m->rx_num_pg = p->rx_num_pgs;
28111ffd6e58SKip Macy 		m->pm_total  = p->pmtx_size + p->chan_rx_size * p->nchan;
28121ffd6e58SKip Macy 
28131ffd6e58SKip Macy 		break;
28141ffd6e58SKip Macy 	}
28151ffd6e58SKip Macy 	case CHELSIO_SET_PM: {
28161ffd6e58SKip Macy 		struct ch_pm *m = (struct ch_pm *)data;
28171ffd6e58SKip Macy 		struct tp_params *p = &sc->params.tp;
28181ffd6e58SKip Macy 
28191ffd6e58SKip Macy 		if (!is_offload(sc))
28201ffd6e58SKip Macy 			return (EOPNOTSUPP);
28211ffd6e58SKip Macy 		if (sc->flags & FULL_INIT_DONE)
28221ffd6e58SKip Macy 			return (EBUSY);
28231ffd6e58SKip Macy 
28241ffd6e58SKip Macy 		if (!m->rx_pg_sz || (m->rx_pg_sz & (m->rx_pg_sz - 1)) ||
28251ffd6e58SKip Macy 		    !m->tx_pg_sz || (m->tx_pg_sz & (m->tx_pg_sz - 1)))
28261ffd6e58SKip Macy 			return (EINVAL);	/* not power of 2 */
28271ffd6e58SKip Macy 		if (!(m->rx_pg_sz & 0x14000))
28281ffd6e58SKip Macy 			return (EINVAL);	/* not 16KB or 64KB */
28291ffd6e58SKip Macy 		if (!(m->tx_pg_sz & 0x1554000))
28301ffd6e58SKip Macy 			return (EINVAL);
28311ffd6e58SKip Macy 		if (m->tx_num_pg == -1)
28321ffd6e58SKip Macy 			m->tx_num_pg = p->tx_num_pgs;
28331ffd6e58SKip Macy 		if (m->rx_num_pg == -1)
28341ffd6e58SKip Macy 			m->rx_num_pg = p->rx_num_pgs;
28351ffd6e58SKip Macy 		if (m->tx_num_pg % 24 || m->rx_num_pg % 24)
28361ffd6e58SKip Macy 			return (EINVAL);
28371ffd6e58SKip Macy 		if (m->rx_num_pg * m->rx_pg_sz > p->chan_rx_size ||
28381ffd6e58SKip Macy 		    m->tx_num_pg * m->tx_pg_sz > p->chan_tx_size)
28391ffd6e58SKip Macy 			return (EINVAL);
28401ffd6e58SKip Macy 
28411ffd6e58SKip Macy 		p->rx_pg_size = m->rx_pg_sz;
28421ffd6e58SKip Macy 		p->tx_pg_size = m->tx_pg_sz;
28431ffd6e58SKip Macy 		p->rx_num_pgs = m->rx_num_pg;
28441ffd6e58SKip Macy 		p->tx_num_pgs = m->tx_num_pg;
28451ffd6e58SKip Macy 		break;
28461ffd6e58SKip Macy 	}
2847d722cab4SKip Macy 	case CHELSIO_SETMTUTAB: {
2848d722cab4SKip Macy 		struct ch_mtus *m = (struct ch_mtus *)data;
2849d722cab4SKip Macy 		int i;
2850d722cab4SKip Macy 
2851d722cab4SKip Macy 		if (!is_offload(sc))
2852d722cab4SKip Macy 			return (EOPNOTSUPP);
2853d722cab4SKip Macy 		if (offload_running(sc))
2854d722cab4SKip Macy 			return (EBUSY);
2855d722cab4SKip Macy 		if (m->nmtus != NMTUS)
2856d722cab4SKip Macy 			return (EINVAL);
2857d722cab4SKip Macy 		if (m->mtus[0] < 81)         /* accommodate SACK */
2858d722cab4SKip Macy 			return (EINVAL);
2859d722cab4SKip Macy 
2860d722cab4SKip Macy 		/*
2861d722cab4SKip Macy 		 * MTUs must be in ascending order
2862d722cab4SKip Macy 		 */
2863d722cab4SKip Macy 		for (i = 1; i < NMTUS; ++i)
2864d722cab4SKip Macy 			if (m->mtus[i] < m->mtus[i - 1])
2865d722cab4SKip Macy 				return (EINVAL);
2866d722cab4SKip Macy 
28671ffd6e58SKip Macy 		memcpy(sc->params.mtus, m->mtus, sizeof(sc->params.mtus));
2868d722cab4SKip Macy 		break;
2869d722cab4SKip Macy 	}
2870d722cab4SKip Macy 	case CHELSIO_GETMTUTAB: {
2871d722cab4SKip Macy 		struct ch_mtus *m = (struct ch_mtus *)data;
2872d722cab4SKip Macy 
2873d722cab4SKip Macy 		if (!is_offload(sc))
2874d722cab4SKip Macy 			return (EOPNOTSUPP);
2875d722cab4SKip Macy 
2876d722cab4SKip Macy 		memcpy(m->mtus, sc->params.mtus, sizeof(m->mtus));
2877d722cab4SKip Macy 		m->nmtus = NMTUS;
2878d722cab4SKip Macy 		break;
2879d722cab4SKip Macy 	}
2880b6d90eb7SKip Macy 	case CHELSIO_GET_MEM: {
2881b6d90eb7SKip Macy 		struct ch_mem_range *t = (struct ch_mem_range *)data;
2882b6d90eb7SKip Macy 		struct mc7 *mem;
2883b6d90eb7SKip Macy 		uint8_t *useraddr;
2884b6d90eb7SKip Macy 		u64 buf[32];
2885b6d90eb7SKip Macy 
28861ffd6e58SKip Macy 		/*
28871ffd6e58SKip Macy 		 * Use these to avoid modifying len/addr in the the return
28881ffd6e58SKip Macy 		 * struct
28891ffd6e58SKip Macy 		 */
28901ffd6e58SKip Macy 		uint32_t len = t->len, addr = t->addr;
28911ffd6e58SKip Macy 
2892b6d90eb7SKip Macy 		if (!is_offload(sc))
2893b6d90eb7SKip Macy 			return (EOPNOTSUPP);
2894b6d90eb7SKip Macy 		if (!(sc->flags & FULL_INIT_DONE))
2895b6d90eb7SKip Macy 			return (EIO);         /* need the memory controllers */
28961ffd6e58SKip Macy 		if ((addr & 0x7) || (len & 0x7))
2897b6d90eb7SKip Macy 			return (EINVAL);
2898b6d90eb7SKip Macy 		if (t->mem_id == MEM_CM)
2899b6d90eb7SKip Macy 			mem = &sc->cm;
2900b6d90eb7SKip Macy 		else if (t->mem_id == MEM_PMRX)
2901b6d90eb7SKip Macy 			mem = &sc->pmrx;
2902b6d90eb7SKip Macy 		else if (t->mem_id == MEM_PMTX)
2903b6d90eb7SKip Macy 			mem = &sc->pmtx;
2904b6d90eb7SKip Macy 		else
2905b6d90eb7SKip Macy 			return (EINVAL);
2906b6d90eb7SKip Macy 
2907b6d90eb7SKip Macy 		/*
2908b6d90eb7SKip Macy 		 * Version scheme:
2909b6d90eb7SKip Macy 		 * bits 0..9: chip version
2910b6d90eb7SKip Macy 		 * bits 10..15: chip revision
2911b6d90eb7SKip Macy 		 */
2912b6d90eb7SKip Macy 		t->version = 3 | (sc->params.rev << 10);
2913b6d90eb7SKip Macy 
2914b6d90eb7SKip Macy 		/*
2915b6d90eb7SKip Macy 		 * Read 256 bytes at a time as len can be large and we don't
2916b6d90eb7SKip Macy 		 * want to use huge intermediate buffers.
2917b6d90eb7SKip Macy 		 */
29188090c9f5SKip Macy 		useraddr = (uint8_t *)t->buf;
29191ffd6e58SKip Macy 		while (len) {
29201ffd6e58SKip Macy 			unsigned int chunk = min(len, sizeof(buf));
2921b6d90eb7SKip Macy 
29221ffd6e58SKip Macy 			error = t3_mc7_bd_read(mem, addr / 8, chunk / 8, buf);
2923b6d90eb7SKip Macy 			if (error)
2924b6d90eb7SKip Macy 				return (-error);
2925b6d90eb7SKip Macy 			if (copyout(buf, useraddr, chunk))
2926b6d90eb7SKip Macy 				return (EFAULT);
2927b6d90eb7SKip Macy 			useraddr += chunk;
29281ffd6e58SKip Macy 			addr += chunk;
29291ffd6e58SKip Macy 			len -= chunk;
2930b6d90eb7SKip Macy 		}
2931b6d90eb7SKip Macy 		break;
2932b6d90eb7SKip Macy 	}
2933d722cab4SKip Macy 	case CHELSIO_READ_TCAM_WORD: {
2934d722cab4SKip Macy 		struct ch_tcam_word *t = (struct ch_tcam_word *)data;
2935d722cab4SKip Macy 
2936d722cab4SKip Macy 		if (!is_offload(sc))
2937d722cab4SKip Macy 			return (EOPNOTSUPP);
2938ac3a6d9cSKip Macy 		if (!(sc->flags & FULL_INIT_DONE))
2939ac3a6d9cSKip Macy 			return (EIO);         /* need MC5 */
2940d722cab4SKip Macy 		return -t3_read_mc5_range(&sc->mc5, t->addr, 1, t->buf);
2941d722cab4SKip Macy 		break;
2942d722cab4SKip Macy 	}
2943b6d90eb7SKip Macy 	case CHELSIO_SET_TRACE_FILTER: {
2944b6d90eb7SKip Macy 		struct ch_trace *t = (struct ch_trace *)data;
2945b6d90eb7SKip Macy 		const struct trace_params *tp;
2946b6d90eb7SKip Macy 
2947b6d90eb7SKip Macy 		tp = (const struct trace_params *)&t->sip;
2948b6d90eb7SKip Macy 		if (t->config_tx)
2949b6d90eb7SKip Macy 			t3_config_trace_filter(sc, tp, 0, t->invert_match,
2950b6d90eb7SKip Macy 					       t->trace_tx);
2951b6d90eb7SKip Macy 		if (t->config_rx)
2952b6d90eb7SKip Macy 			t3_config_trace_filter(sc, tp, 1, t->invert_match,
2953b6d90eb7SKip Macy 					       t->trace_rx);
2954b6d90eb7SKip Macy 		break;
2955b6d90eb7SKip Macy 	}
2956b6d90eb7SKip Macy 	case CHELSIO_SET_PKTSCHED: {
2957b6d90eb7SKip Macy 		struct ch_pktsched_params *p = (struct ch_pktsched_params *)data;
2958b6d90eb7SKip Macy 		if (sc->open_device_map == 0)
2959b6d90eb7SKip Macy 			return (EAGAIN);
2960b6d90eb7SKip Macy 		send_pktsched_cmd(sc, p->sched, p->idx, p->min, p->max,
2961b6d90eb7SKip Macy 		    p->binding);
2962b6d90eb7SKip Macy 		break;
2963b6d90eb7SKip Macy 	}
2964b6d90eb7SKip Macy 	case CHELSIO_IFCONF_GETREGS: {
29651ffd6e58SKip Macy 		struct ch_ifconf_regs *regs = (struct ch_ifconf_regs *)data;
2966b6d90eb7SKip Macy 		int reglen = cxgb_get_regs_len();
29671ffd6e58SKip Macy 		uint8_t *buf = malloc(reglen, M_DEVBUF, M_NOWAIT);
2968b6d90eb7SKip Macy 		if (buf == NULL) {
2969b6d90eb7SKip Macy 			return (ENOMEM);
2970b6d90eb7SKip Macy 		}
29711ffd6e58SKip Macy 		if (regs->len > reglen)
29721ffd6e58SKip Macy 			regs->len = reglen;
29731ffd6e58SKip Macy 		else if (regs->len < reglen)
2974f2d8ff04SGeorge V. Neville-Neil 			error = ENOBUFS;
29751ffd6e58SKip Macy 
29761ffd6e58SKip Macy 		if (!error) {
2977b6d90eb7SKip Macy 			cxgb_get_regs(sc, regs, buf);
2978b6d90eb7SKip Macy 			error = copyout(buf, regs->data, reglen);
29791ffd6e58SKip Macy 		}
2980b6d90eb7SKip Macy 		free(buf, M_DEVBUF);
2981b6d90eb7SKip Macy 
2982b6d90eb7SKip Macy 		break;
2983b6d90eb7SKip Macy 	}
2984d722cab4SKip Macy 	case CHELSIO_SET_HW_SCHED: {
2985d722cab4SKip Macy 		struct ch_hw_sched *t = (struct ch_hw_sched *)data;
2986d722cab4SKip Macy 		unsigned int ticks_per_usec = core_ticks_per_usec(sc);
2987d722cab4SKip Macy 
2988d722cab4SKip Macy 		if ((sc->flags & FULL_INIT_DONE) == 0)
2989d722cab4SKip Macy 			return (EAGAIN);       /* need TP to be initialized */
2990d722cab4SKip Macy 		if (t->sched >= NTX_SCHED || !in_range(t->mode, 0, 1) ||
2991d722cab4SKip Macy 		    !in_range(t->channel, 0, 1) ||
2992d722cab4SKip Macy 		    !in_range(t->kbps, 0, 10000000) ||
2993d722cab4SKip Macy 		    !in_range(t->class_ipg, 0, 10000 * 65535 / ticks_per_usec) ||
2994d722cab4SKip Macy 		    !in_range(t->flow_ipg, 0,
2995d722cab4SKip Macy 			      dack_ticks_to_usec(sc, 0x7ff)))
2996d722cab4SKip Macy 			return (EINVAL);
2997d722cab4SKip Macy 
2998d722cab4SKip Macy 		if (t->kbps >= 0) {
2999d722cab4SKip Macy 			error = t3_config_sched(sc, t->kbps, t->sched);
3000d722cab4SKip Macy 			if (error < 0)
3001d722cab4SKip Macy 				return (-error);
3002d722cab4SKip Macy 		}
3003d722cab4SKip Macy 		if (t->class_ipg >= 0)
3004d722cab4SKip Macy 			t3_set_sched_ipg(sc, t->sched, t->class_ipg);
3005d722cab4SKip Macy 		if (t->flow_ipg >= 0) {
3006d722cab4SKip Macy 			t->flow_ipg *= 1000;     /* us -> ns */
3007d722cab4SKip Macy 			t3_set_pace_tbl(sc, &t->flow_ipg, t->sched, 1);
3008d722cab4SKip Macy 		}
3009d722cab4SKip Macy 		if (t->mode >= 0) {
3010d722cab4SKip Macy 			int bit = 1 << (S_TX_MOD_TIMER_MODE + t->sched);
3011d722cab4SKip Macy 
3012d722cab4SKip Macy 			t3_set_reg_field(sc, A_TP_TX_MOD_QUEUE_REQ_MAP,
3013d722cab4SKip Macy 					 bit, t->mode ? bit : 0);
3014d722cab4SKip Macy 		}
3015d722cab4SKip Macy 		if (t->channel >= 0)
3016d722cab4SKip Macy 			t3_set_reg_field(sc, A_TP_TX_MOD_QUEUE_REQ_MAP,
3017d722cab4SKip Macy 					 1 << t->sched, t->channel << t->sched);
3018d722cab4SKip Macy 		break;
3019d722cab4SKip Macy 	}
30201ffd6e58SKip Macy 	case CHELSIO_GET_EEPROM: {
30211ffd6e58SKip Macy 		int i;
30221ffd6e58SKip Macy 		struct ch_eeprom *e = (struct ch_eeprom *)data;
30231ffd6e58SKip Macy 		uint8_t *buf = malloc(EEPROMSIZE, M_DEVBUF, M_NOWAIT);
30241ffd6e58SKip Macy 
30251ffd6e58SKip Macy 		if (buf == NULL) {
30261ffd6e58SKip Macy 			return (ENOMEM);
30271ffd6e58SKip Macy 		}
30281ffd6e58SKip Macy 		e->magic = EEPROM_MAGIC;
30291ffd6e58SKip Macy 		for (i = e->offset & ~3; !error && i < e->offset + e->len; i += 4)
30301ffd6e58SKip Macy 			error = -t3_seeprom_read(sc, i, (uint32_t *)&buf[i]);
30311ffd6e58SKip Macy 
30321ffd6e58SKip Macy 		if (!error)
30331ffd6e58SKip Macy 			error = copyout(buf + e->offset, e->data, e->len);
30341ffd6e58SKip Macy 
30351ffd6e58SKip Macy 		free(buf, M_DEVBUF);
30361ffd6e58SKip Macy 		break;
30371ffd6e58SKip Macy 	}
30381ffd6e58SKip Macy 	case CHELSIO_CLEAR_STATS: {
30391ffd6e58SKip Macy 		if (!(sc->flags & FULL_INIT_DONE))
30401ffd6e58SKip Macy 			return EAGAIN;
30411ffd6e58SKip Macy 
30421ffd6e58SKip Macy 		PORT_LOCK(pi);
30431ffd6e58SKip Macy 		t3_mac_update_stats(&pi->mac);
30441ffd6e58SKip Macy 		memset(&pi->mac.stats, 0, sizeof(pi->mac.stats));
30451ffd6e58SKip Macy 		PORT_UNLOCK(pi);
30461ffd6e58SKip Macy 		break;
30471ffd6e58SKip Macy 	}
3048f2d8ff04SGeorge V. Neville-Neil 	case CHELSIO_GET_UP_LA: {
3049f2d8ff04SGeorge V. Neville-Neil 		struct ch_up_la *la = (struct ch_up_la *)data;
3050f2d8ff04SGeorge V. Neville-Neil 		uint8_t *buf = malloc(LA_BUFSIZE, M_DEVBUF, M_NOWAIT);
3051f2d8ff04SGeorge V. Neville-Neil 		if (buf == NULL) {
3052f2d8ff04SGeorge V. Neville-Neil 			return (ENOMEM);
3053f2d8ff04SGeorge V. Neville-Neil 		}
3054f2d8ff04SGeorge V. Neville-Neil 		if (la->bufsize < LA_BUFSIZE)
3055f2d8ff04SGeorge V. Neville-Neil 			error = ENOBUFS;
3056f2d8ff04SGeorge V. Neville-Neil 
3057f2d8ff04SGeorge V. Neville-Neil 		if (!error)
3058f2d8ff04SGeorge V. Neville-Neil 			error = -t3_get_up_la(sc, &la->stopped, &la->idx,
3059f2d8ff04SGeorge V. Neville-Neil 					      &la->bufsize, buf);
3060f2d8ff04SGeorge V. Neville-Neil 		if (!error)
3061f2d8ff04SGeorge V. Neville-Neil 			error = copyout(buf, la->data, la->bufsize);
3062f2d8ff04SGeorge V. Neville-Neil 
3063f2d8ff04SGeorge V. Neville-Neil 		free(buf, M_DEVBUF);
3064f2d8ff04SGeorge V. Neville-Neil 		break;
3065f2d8ff04SGeorge V. Neville-Neil 	}
3066f2d8ff04SGeorge V. Neville-Neil 	case CHELSIO_GET_UP_IOQS: {
3067f2d8ff04SGeorge V. Neville-Neil 		struct ch_up_ioqs *ioqs = (struct ch_up_ioqs *)data;
3068f2d8ff04SGeorge V. Neville-Neil 		uint8_t *buf = malloc(IOQS_BUFSIZE, M_DEVBUF, M_NOWAIT);
3069f2d8ff04SGeorge V. Neville-Neil 		uint32_t *v;
3070f2d8ff04SGeorge V. Neville-Neil 
3071f2d8ff04SGeorge V. Neville-Neil 		if (buf == NULL) {
3072f2d8ff04SGeorge V. Neville-Neil 			return (ENOMEM);
3073f2d8ff04SGeorge V. Neville-Neil 		}
3074f2d8ff04SGeorge V. Neville-Neil 		if (ioqs->bufsize < IOQS_BUFSIZE)
3075f2d8ff04SGeorge V. Neville-Neil 			error = ENOBUFS;
3076f2d8ff04SGeorge V. Neville-Neil 
3077f2d8ff04SGeorge V. Neville-Neil 		if (!error)
3078f2d8ff04SGeorge V. Neville-Neil 			error = -t3_get_up_ioqs(sc, &ioqs->bufsize, buf);
3079f2d8ff04SGeorge V. Neville-Neil 
3080f2d8ff04SGeorge V. Neville-Neil 		if (!error) {
3081f2d8ff04SGeorge V. Neville-Neil 			v = (uint32_t *)buf;
3082f2d8ff04SGeorge V. Neville-Neil 
3083f2d8ff04SGeorge V. Neville-Neil 			ioqs->bufsize -= 4 * sizeof(uint32_t);
3084f2d8ff04SGeorge V. Neville-Neil 			ioqs->ioq_rx_enable = *v++;
3085f2d8ff04SGeorge V. Neville-Neil 			ioqs->ioq_tx_enable = *v++;
3086f2d8ff04SGeorge V. Neville-Neil 			ioqs->ioq_rx_status = *v++;
3087f2d8ff04SGeorge V. Neville-Neil 			ioqs->ioq_tx_status = *v++;
3088f2d8ff04SGeorge V. Neville-Neil 
3089f2d8ff04SGeorge V. Neville-Neil 			error = copyout(v, ioqs->data, ioqs->bufsize);
3090f2d8ff04SGeorge V. Neville-Neil 		}
3091f2d8ff04SGeorge V. Neville-Neil 
3092f2d8ff04SGeorge V. Neville-Neil 		free(buf, M_DEVBUF);
3093f2d8ff04SGeorge V. Neville-Neil 		break;
3094f2d8ff04SGeorge V. Neville-Neil 	}
3095*d6da8362SNavdeep Parhar 	case CHELSIO_SET_FILTER: {
3096*d6da8362SNavdeep Parhar 		struct ch_filter *f = (struct ch_filter *)data;;
3097*d6da8362SNavdeep Parhar 		struct filter_info *p;
3098*d6da8362SNavdeep Parhar 		unsigned int nfilters = sc->params.mc5.nfilters;
3099*d6da8362SNavdeep Parhar 
3100*d6da8362SNavdeep Parhar 		if (!is_offload(sc))
3101*d6da8362SNavdeep Parhar 			return (EOPNOTSUPP);	/* No TCAM */
3102*d6da8362SNavdeep Parhar 		if (!(sc->flags & FULL_INIT_DONE))
3103*d6da8362SNavdeep Parhar 			return (EAGAIN);	/* mc5 not setup yet */
3104*d6da8362SNavdeep Parhar 		if (nfilters == 0)
3105*d6da8362SNavdeep Parhar 			return (EBUSY);		/* TOE will use TCAM */
3106*d6da8362SNavdeep Parhar 
3107*d6da8362SNavdeep Parhar 		/* sanity checks */
3108*d6da8362SNavdeep Parhar 		if (f->filter_id >= nfilters ||
3109*d6da8362SNavdeep Parhar 		    (f->val.dip && f->mask.dip != 0xffffffff) ||
3110*d6da8362SNavdeep Parhar 		    (f->val.sport && f->mask.sport != 0xffff) ||
3111*d6da8362SNavdeep Parhar 		    (f->val.dport && f->mask.dport != 0xffff) ||
3112*d6da8362SNavdeep Parhar 		    (f->val.vlan && f->mask.vlan != 0xfff) ||
3113*d6da8362SNavdeep Parhar 		    (f->val.vlan_prio &&
3114*d6da8362SNavdeep Parhar 			f->mask.vlan_prio != FILTER_NO_VLAN_PRI) ||
3115*d6da8362SNavdeep Parhar 		    (f->mac_addr_idx != 0xffff && f->mac_addr_idx > 15) ||
3116*d6da8362SNavdeep Parhar 		    f->qset >= SGE_QSETS ||
3117*d6da8362SNavdeep Parhar 		    sc->rrss_map[f->qset] >= RSS_TABLE_SIZE)
3118*d6da8362SNavdeep Parhar 			return (EINVAL);
3119*d6da8362SNavdeep Parhar 
3120*d6da8362SNavdeep Parhar 		/* Was allocated with M_WAITOK */
3121*d6da8362SNavdeep Parhar 		KASSERT(sc->filters, ("filter table NULL\n"));
3122*d6da8362SNavdeep Parhar 
3123*d6da8362SNavdeep Parhar 		p = &sc->filters[f->filter_id];
3124*d6da8362SNavdeep Parhar 		if (p->locked)
3125*d6da8362SNavdeep Parhar 			return (EPERM);
3126*d6da8362SNavdeep Parhar 
3127*d6da8362SNavdeep Parhar 		bzero(p, sizeof(*p));
3128*d6da8362SNavdeep Parhar 		p->sip = f->val.sip;
3129*d6da8362SNavdeep Parhar 		p->sip_mask = f->mask.sip;
3130*d6da8362SNavdeep Parhar 		p->dip = f->val.dip;
3131*d6da8362SNavdeep Parhar 		p->sport = f->val.sport;
3132*d6da8362SNavdeep Parhar 		p->dport = f->val.dport;
3133*d6da8362SNavdeep Parhar 		p->vlan = f->mask.vlan ? f->val.vlan : 0xfff;
3134*d6da8362SNavdeep Parhar 		p->vlan_prio = f->mask.vlan_prio ? (f->val.vlan_prio & 6) :
3135*d6da8362SNavdeep Parhar 		    FILTER_NO_VLAN_PRI;
3136*d6da8362SNavdeep Parhar 		p->mac_hit = f->mac_hit;
3137*d6da8362SNavdeep Parhar 		p->mac_vld = f->mac_addr_idx != 0xffff;
3138*d6da8362SNavdeep Parhar 		p->mac_idx = f->mac_addr_idx;
3139*d6da8362SNavdeep Parhar 		p->pkt_type = f->proto;
3140*d6da8362SNavdeep Parhar 		p->report_filter_id = f->want_filter_id;
3141*d6da8362SNavdeep Parhar 		p->pass = f->pass;
3142*d6da8362SNavdeep Parhar 		p->rss = f->rss;
3143*d6da8362SNavdeep Parhar 		p->qset = f->qset;
3144*d6da8362SNavdeep Parhar 
3145*d6da8362SNavdeep Parhar 		error = set_filter(sc, f->filter_id, p);
3146*d6da8362SNavdeep Parhar 		if (error == 0)
3147*d6da8362SNavdeep Parhar 			p->valid = 1;
3148*d6da8362SNavdeep Parhar 		break;
3149*d6da8362SNavdeep Parhar 	}
3150*d6da8362SNavdeep Parhar 	case CHELSIO_DEL_FILTER: {
3151*d6da8362SNavdeep Parhar 		struct ch_filter *f = (struct ch_filter *)data;
3152*d6da8362SNavdeep Parhar 		struct filter_info *p;
3153*d6da8362SNavdeep Parhar 		unsigned int nfilters = sc->params.mc5.nfilters;
3154*d6da8362SNavdeep Parhar 
3155*d6da8362SNavdeep Parhar 		if (!is_offload(sc))
3156*d6da8362SNavdeep Parhar 			return (EOPNOTSUPP);
3157*d6da8362SNavdeep Parhar 		if (!(sc->flags & FULL_INIT_DONE))
3158*d6da8362SNavdeep Parhar 			return (EAGAIN);
3159*d6da8362SNavdeep Parhar 		if (nfilters == 0 || sc->filters == NULL)
3160*d6da8362SNavdeep Parhar 			return (EINVAL);
3161*d6da8362SNavdeep Parhar 		if (f->filter_id >= nfilters)
3162*d6da8362SNavdeep Parhar 		       return (EINVAL);
3163*d6da8362SNavdeep Parhar 
3164*d6da8362SNavdeep Parhar 		p = &sc->filters[f->filter_id];
3165*d6da8362SNavdeep Parhar 		if (p->locked)
3166*d6da8362SNavdeep Parhar 			return (EPERM);
3167*d6da8362SNavdeep Parhar 		if (!p->valid)
3168*d6da8362SNavdeep Parhar 			return (EFAULT); /* Read "Bad address" as "Bad index" */
3169*d6da8362SNavdeep Parhar 
3170*d6da8362SNavdeep Parhar 		bzero(p, sizeof(*p));
3171*d6da8362SNavdeep Parhar 		p->sip = p->sip_mask = 0xffffffff;
3172*d6da8362SNavdeep Parhar 		p->vlan = 0xfff;
3173*d6da8362SNavdeep Parhar 		p->vlan_prio = FILTER_NO_VLAN_PRI;
3174*d6da8362SNavdeep Parhar 		p->pkt_type = 1;
3175*d6da8362SNavdeep Parhar 		error = set_filter(sc, f->filter_id, p);
3176*d6da8362SNavdeep Parhar 		break;
3177*d6da8362SNavdeep Parhar 	}
3178*d6da8362SNavdeep Parhar 	case CHELSIO_GET_FILTER: {
3179*d6da8362SNavdeep Parhar 		struct ch_filter *f = (struct ch_filter *)data;
3180*d6da8362SNavdeep Parhar 		struct filter_info *p;
3181*d6da8362SNavdeep Parhar 		unsigned int i, nfilters = sc->params.mc5.nfilters;
3182*d6da8362SNavdeep Parhar 
3183*d6da8362SNavdeep Parhar 		if (!is_offload(sc))
3184*d6da8362SNavdeep Parhar 			return (EOPNOTSUPP);
3185*d6da8362SNavdeep Parhar 		if (!(sc->flags & FULL_INIT_DONE))
3186*d6da8362SNavdeep Parhar 			return (EAGAIN);
3187*d6da8362SNavdeep Parhar 		if (nfilters == 0 || sc->filters == NULL)
3188*d6da8362SNavdeep Parhar 			return (EINVAL);
3189*d6da8362SNavdeep Parhar 
3190*d6da8362SNavdeep Parhar 		i = f->filter_id == 0xffffffff ? 0 : f->filter_id + 1;
3191*d6da8362SNavdeep Parhar 		for (; i < nfilters; i++) {
3192*d6da8362SNavdeep Parhar 			p = &sc->filters[i];
3193*d6da8362SNavdeep Parhar 			if (!p->valid)
3194*d6da8362SNavdeep Parhar 				continue;
3195*d6da8362SNavdeep Parhar 
3196*d6da8362SNavdeep Parhar 			bzero(f, sizeof(*f));
3197*d6da8362SNavdeep Parhar 
3198*d6da8362SNavdeep Parhar 			f->filter_id = i;
3199*d6da8362SNavdeep Parhar 			f->val.sip = p->sip;
3200*d6da8362SNavdeep Parhar 			f->mask.sip = p->sip_mask;
3201*d6da8362SNavdeep Parhar 			f->val.dip = p->dip;
3202*d6da8362SNavdeep Parhar 			f->mask.dip = p->dip ? 0xffffffff : 0;
3203*d6da8362SNavdeep Parhar 			f->val.sport = p->sport;
3204*d6da8362SNavdeep Parhar 			f->mask.sport = p->sport ? 0xffff : 0;
3205*d6da8362SNavdeep Parhar 			f->val.dport = p->dport;
3206*d6da8362SNavdeep Parhar 			f->mask.dport = p->dport ? 0xffff : 0;
3207*d6da8362SNavdeep Parhar 			f->val.vlan = p->vlan == 0xfff ? 0 : p->vlan;
3208*d6da8362SNavdeep Parhar 			f->mask.vlan = p->vlan == 0xfff ? 0 : 0xfff;
3209*d6da8362SNavdeep Parhar 			f->val.vlan_prio = p->vlan_prio == FILTER_NO_VLAN_PRI ?
3210*d6da8362SNavdeep Parhar 			    0 : p->vlan_prio;
3211*d6da8362SNavdeep Parhar 			f->mask.vlan_prio = p->vlan_prio == FILTER_NO_VLAN_PRI ?
3212*d6da8362SNavdeep Parhar 			    0 : FILTER_NO_VLAN_PRI;
3213*d6da8362SNavdeep Parhar 			f->mac_hit = p->mac_hit;
3214*d6da8362SNavdeep Parhar 			f->mac_addr_idx = p->mac_vld ? p->mac_idx : 0xffff;
3215*d6da8362SNavdeep Parhar 			f->proto = p->pkt_type;
3216*d6da8362SNavdeep Parhar 			f->want_filter_id = p->report_filter_id;
3217*d6da8362SNavdeep Parhar 			f->pass = p->pass;
3218*d6da8362SNavdeep Parhar 			f->rss = p->rss;
3219*d6da8362SNavdeep Parhar 			f->qset = p->qset;
3220*d6da8362SNavdeep Parhar 
3221*d6da8362SNavdeep Parhar 			break;
3222*d6da8362SNavdeep Parhar 		}
3223*d6da8362SNavdeep Parhar 
3224*d6da8362SNavdeep Parhar 		if (i == nfilters)
3225*d6da8362SNavdeep Parhar 			f->filter_id = 0xffffffff;
3226*d6da8362SNavdeep Parhar 		break;
3227*d6da8362SNavdeep Parhar 	}
3228b6d90eb7SKip Macy 	default:
3229b6d90eb7SKip Macy 		return (EOPNOTSUPP);
3230b6d90eb7SKip Macy 		break;
3231b6d90eb7SKip Macy 	}
3232b6d90eb7SKip Macy 
3233b6d90eb7SKip Macy 	return (error);
3234b6d90eb7SKip Macy }
3235b6d90eb7SKip Macy 
3236b6d90eb7SKip Macy static __inline void
3237b6d90eb7SKip Macy reg_block_dump(struct adapter *ap, uint8_t *buf, unsigned int start,
3238b6d90eb7SKip Macy     unsigned int end)
3239b6d90eb7SKip Macy {
32401ffd6e58SKip Macy 	uint32_t *p = (uint32_t *)(buf + start);
3241b6d90eb7SKip Macy 
3242b6d90eb7SKip Macy 	for ( ; start <= end; start += sizeof(uint32_t))
3243b6d90eb7SKip Macy 		*p++ = t3_read_reg(ap, start);
3244b6d90eb7SKip Macy }
3245b6d90eb7SKip Macy 
3246b6d90eb7SKip Macy #define T3_REGMAP_SIZE (3 * 1024)
3247b6d90eb7SKip Macy static int
3248b6d90eb7SKip Macy cxgb_get_regs_len(void)
3249b6d90eb7SKip Macy {
3250b6d90eb7SKip Macy 	return T3_REGMAP_SIZE;
3251b6d90eb7SKip Macy }
3252b6d90eb7SKip Macy 
3253b6d90eb7SKip Macy static void
32541ffd6e58SKip Macy cxgb_get_regs(adapter_t *sc, struct ch_ifconf_regs *regs, uint8_t *buf)
3255b6d90eb7SKip Macy {
3256b6d90eb7SKip Macy 
3257b6d90eb7SKip Macy 	/*
3258b6d90eb7SKip Macy 	 * Version scheme:
3259b6d90eb7SKip Macy 	 * bits 0..9: chip version
3260b6d90eb7SKip Macy 	 * bits 10..15: chip revision
3261b6d90eb7SKip Macy 	 * bit 31: set for PCIe cards
3262b6d90eb7SKip Macy 	 */
3263b6d90eb7SKip Macy 	regs->version = 3 | (sc->params.rev << 10) | (is_pcie(sc) << 31);
3264b6d90eb7SKip Macy 
3265b6d90eb7SKip Macy 	/*
3266b6d90eb7SKip Macy 	 * We skip the MAC statistics registers because they are clear-on-read.
3267b6d90eb7SKip Macy 	 * Also reading multi-register stats would need to synchronize with the
3268b6d90eb7SKip Macy 	 * periodic mac stats accumulation.  Hard to justify the complexity.
3269b6d90eb7SKip Macy 	 */
32701ffd6e58SKip Macy 	memset(buf, 0, cxgb_get_regs_len());
3271b6d90eb7SKip Macy 	reg_block_dump(sc, buf, 0, A_SG_RSPQ_CREDIT_RETURN);
3272b6d90eb7SKip Macy 	reg_block_dump(sc, buf, A_SG_HI_DRB_HI_THRSH, A_ULPRX_PBL_ULIMIT);
3273b6d90eb7SKip Macy 	reg_block_dump(sc, buf, A_ULPTX_CONFIG, A_MPS_INT_CAUSE);
3274b6d90eb7SKip Macy 	reg_block_dump(sc, buf, A_CPL_SWITCH_CNTRL, A_CPL_MAP_TBL_DATA);
3275b6d90eb7SKip Macy 	reg_block_dump(sc, buf, A_SMB_GLOBAL_TIME_CFG, A_XGM_SERDES_STAT3);
3276b6d90eb7SKip Macy 	reg_block_dump(sc, buf, A_XGM_SERDES_STATUS0,
3277b6d90eb7SKip Macy 		       XGM_REG(A_XGM_SERDES_STAT3, 1));
3278b6d90eb7SKip Macy 	reg_block_dump(sc, buf, XGM_REG(A_XGM_SERDES_STATUS0, 1),
3279b6d90eb7SKip Macy 		       XGM_REG(A_XGM_RX_SPI4_SOP_EOP_CNT, 1));
3280b6d90eb7SKip Macy }
3281404825a7SKip Macy 
3282*d6da8362SNavdeep Parhar static int
3283*d6da8362SNavdeep Parhar alloc_filters(struct adapter *sc)
3284*d6da8362SNavdeep Parhar {
3285*d6da8362SNavdeep Parhar 	struct filter_info *p;
3286*d6da8362SNavdeep Parhar 	unsigned int nfilters = sc->params.mc5.nfilters;
3287*d6da8362SNavdeep Parhar 
3288*d6da8362SNavdeep Parhar 	if (nfilters == 0)
3289*d6da8362SNavdeep Parhar 		return (0);
3290*d6da8362SNavdeep Parhar 
3291*d6da8362SNavdeep Parhar 	p = malloc(sizeof(*p) * nfilters, M_DEVBUF, M_WAITOK | M_ZERO);
3292*d6da8362SNavdeep Parhar 	sc->filters = p;
3293*d6da8362SNavdeep Parhar 
3294*d6da8362SNavdeep Parhar 	p = &sc->filters[nfilters - 1];
3295*d6da8362SNavdeep Parhar 	p->vlan = 0xfff;
3296*d6da8362SNavdeep Parhar 	p->vlan_prio = FILTER_NO_VLAN_PRI;
3297*d6da8362SNavdeep Parhar 	p->pass = p->rss = p->valid = p->locked = 1;
3298*d6da8362SNavdeep Parhar 
3299*d6da8362SNavdeep Parhar 	return (0);
3300*d6da8362SNavdeep Parhar }
3301*d6da8362SNavdeep Parhar 
3302*d6da8362SNavdeep Parhar static int
3303*d6da8362SNavdeep Parhar setup_hw_filters(struct adapter *sc)
3304*d6da8362SNavdeep Parhar {
3305*d6da8362SNavdeep Parhar 	int i, rc;
3306*d6da8362SNavdeep Parhar 	unsigned int nfilters = sc->params.mc5.nfilters;
3307*d6da8362SNavdeep Parhar 
3308*d6da8362SNavdeep Parhar 	if (!sc->filters)
3309*d6da8362SNavdeep Parhar 		return (0);
3310*d6da8362SNavdeep Parhar 
3311*d6da8362SNavdeep Parhar 	t3_enable_filters(sc);
3312*d6da8362SNavdeep Parhar 
3313*d6da8362SNavdeep Parhar 	for (i = rc = 0; i < nfilters && !rc; i++) {
3314*d6da8362SNavdeep Parhar 		if (sc->filters[i].locked)
3315*d6da8362SNavdeep Parhar 			rc = set_filter(sc, i, &sc->filters[i]);
3316*d6da8362SNavdeep Parhar 	}
3317*d6da8362SNavdeep Parhar 
3318*d6da8362SNavdeep Parhar 	return (rc);
3319*d6da8362SNavdeep Parhar }
3320*d6da8362SNavdeep Parhar 
3321*d6da8362SNavdeep Parhar static int
3322*d6da8362SNavdeep Parhar set_filter(struct adapter *sc, int id, const struct filter_info *f)
3323*d6da8362SNavdeep Parhar {
3324*d6da8362SNavdeep Parhar 	int len;
3325*d6da8362SNavdeep Parhar 	struct mbuf *m;
3326*d6da8362SNavdeep Parhar 	struct ulp_txpkt *txpkt;
3327*d6da8362SNavdeep Parhar 	struct work_request_hdr *wr;
3328*d6da8362SNavdeep Parhar 	struct cpl_pass_open_req *oreq;
3329*d6da8362SNavdeep Parhar 	struct cpl_set_tcb_field *sreq;
3330*d6da8362SNavdeep Parhar 
3331*d6da8362SNavdeep Parhar 	len = sizeof(*wr) + sizeof(*oreq) + 2 * sizeof(*sreq);
3332*d6da8362SNavdeep Parhar 	KASSERT(len <= MHLEN, ("filter request too big for an mbuf"));
3333*d6da8362SNavdeep Parhar 
3334*d6da8362SNavdeep Parhar 	id += t3_mc5_size(&sc->mc5) - sc->params.mc5.nroutes -
3335*d6da8362SNavdeep Parhar 	      sc->params.mc5.nfilters;
3336*d6da8362SNavdeep Parhar 
3337*d6da8362SNavdeep Parhar 	m = m_gethdr(M_WAITOK, MT_DATA);
3338*d6da8362SNavdeep Parhar 	m->m_len = m->m_pkthdr.len = len;
3339*d6da8362SNavdeep Parhar 	bzero(mtod(m, char *), len);
3340*d6da8362SNavdeep Parhar 
3341*d6da8362SNavdeep Parhar 	wr = mtod(m, struct work_request_hdr *);
3342*d6da8362SNavdeep Parhar 	wr->wrh_hi = htonl(V_WR_OP(FW_WROPCODE_BYPASS) | F_WR_ATOMIC);
3343*d6da8362SNavdeep Parhar 
3344*d6da8362SNavdeep Parhar 	oreq = (struct cpl_pass_open_req *)(wr + 1);
3345*d6da8362SNavdeep Parhar 	txpkt = (struct ulp_txpkt *)oreq;
3346*d6da8362SNavdeep Parhar 	txpkt->cmd_dest = htonl(V_ULPTX_CMD(ULP_TXPKT));
3347*d6da8362SNavdeep Parhar 	txpkt->len = htonl(V_ULPTX_NFLITS(sizeof(*oreq) / 8));
3348*d6da8362SNavdeep Parhar 	OPCODE_TID(oreq) = htonl(MK_OPCODE_TID(CPL_PASS_OPEN_REQ, id));
3349*d6da8362SNavdeep Parhar 	oreq->local_port = htons(f->dport);
3350*d6da8362SNavdeep Parhar 	oreq->peer_port = htons(f->sport);
3351*d6da8362SNavdeep Parhar 	oreq->local_ip = htonl(f->dip);
3352*d6da8362SNavdeep Parhar 	oreq->peer_ip = htonl(f->sip);
3353*d6da8362SNavdeep Parhar 	oreq->peer_netmask = htonl(f->sip_mask);
3354*d6da8362SNavdeep Parhar 	oreq->opt0h = 0;
3355*d6da8362SNavdeep Parhar 	oreq->opt0l = htonl(F_NO_OFFLOAD);
3356*d6da8362SNavdeep Parhar 	oreq->opt1 = htonl(V_MAC_MATCH_VALID(f->mac_vld) |
3357*d6da8362SNavdeep Parhar 			 V_CONN_POLICY(CPL_CONN_POLICY_FILTER) |
3358*d6da8362SNavdeep Parhar 			 V_VLAN_PRI(f->vlan_prio >> 1) |
3359*d6da8362SNavdeep Parhar 			 V_VLAN_PRI_VALID(f->vlan_prio != FILTER_NO_VLAN_PRI) |
3360*d6da8362SNavdeep Parhar 			 V_PKT_TYPE(f->pkt_type) | V_OPT1_VLAN(f->vlan) |
3361*d6da8362SNavdeep Parhar 			 V_MAC_MATCH(f->mac_idx | (f->mac_hit << 4)));
3362*d6da8362SNavdeep Parhar 
3363*d6da8362SNavdeep Parhar 	sreq = (struct cpl_set_tcb_field *)(oreq + 1);
3364*d6da8362SNavdeep Parhar 	set_tcb_field_ulp(sreq, id, 1, 0x1800808000ULL,
3365*d6da8362SNavdeep Parhar 			  (f->report_filter_id << 15) | (1 << 23) |
3366*d6da8362SNavdeep Parhar 			  ((u64)f->pass << 35) | ((u64)!f->rss << 36));
3367*d6da8362SNavdeep Parhar 	set_tcb_field_ulp(sreq + 1, id, 0, 0xffffffff, (2 << 19) | 1);
3368*d6da8362SNavdeep Parhar 	t3_mgmt_tx(sc, m);
3369*d6da8362SNavdeep Parhar 
3370*d6da8362SNavdeep Parhar 	if (f->pass && !f->rss) {
3371*d6da8362SNavdeep Parhar 		len = sizeof(*sreq);
3372*d6da8362SNavdeep Parhar 		m = m_gethdr(M_WAITOK, MT_DATA);
3373*d6da8362SNavdeep Parhar 		m->m_len = m->m_pkthdr.len = len;
3374*d6da8362SNavdeep Parhar 		bzero(mtod(m, char *), len);
3375*d6da8362SNavdeep Parhar 		sreq = mtod(m, struct cpl_set_tcb_field *);
3376*d6da8362SNavdeep Parhar 		sreq->wr.wrh_hi = htonl(V_WR_OP(FW_WROPCODE_FORWARD));
3377*d6da8362SNavdeep Parhar 		mk_set_tcb_field(sreq, id, 25, 0x3f80000,
3378*d6da8362SNavdeep Parhar 				 (u64)sc->rrss_map[f->qset] << 19);
3379*d6da8362SNavdeep Parhar 		t3_mgmt_tx(sc, m);
3380*d6da8362SNavdeep Parhar 	}
3381*d6da8362SNavdeep Parhar 	return 0;
3382*d6da8362SNavdeep Parhar }
3383*d6da8362SNavdeep Parhar 
3384*d6da8362SNavdeep Parhar static inline void
3385*d6da8362SNavdeep Parhar mk_set_tcb_field(struct cpl_set_tcb_field *req, unsigned int tid,
3386*d6da8362SNavdeep Parhar     unsigned int word, u64 mask, u64 val)
3387*d6da8362SNavdeep Parhar {
3388*d6da8362SNavdeep Parhar 	OPCODE_TID(req) = htonl(MK_OPCODE_TID(CPL_SET_TCB_FIELD, tid));
3389*d6da8362SNavdeep Parhar 	req->reply = V_NO_REPLY(1);
3390*d6da8362SNavdeep Parhar 	req->cpu_idx = 0;
3391*d6da8362SNavdeep Parhar 	req->word = htons(word);
3392*d6da8362SNavdeep Parhar 	req->mask = htobe64(mask);
3393*d6da8362SNavdeep Parhar 	req->val = htobe64(val);
3394*d6da8362SNavdeep Parhar }
3395*d6da8362SNavdeep Parhar 
3396*d6da8362SNavdeep Parhar static inline void
3397*d6da8362SNavdeep Parhar set_tcb_field_ulp(struct cpl_set_tcb_field *req, unsigned int tid,
3398*d6da8362SNavdeep Parhar     unsigned int word, u64 mask, u64 val)
3399*d6da8362SNavdeep Parhar {
3400*d6da8362SNavdeep Parhar 	struct ulp_txpkt *txpkt = (struct ulp_txpkt *)req;
3401*d6da8362SNavdeep Parhar 
3402*d6da8362SNavdeep Parhar 	txpkt->cmd_dest = htonl(V_ULPTX_CMD(ULP_TXPKT));
3403*d6da8362SNavdeep Parhar 	txpkt->len = htonl(V_ULPTX_NFLITS(sizeof(*req) / 8));
3404*d6da8362SNavdeep Parhar 	mk_set_tcb_field(req, tid, word, mask, val);
3405*d6da8362SNavdeep Parhar }
3406404825a7SKip Macy 
3407404825a7SKip Macy MODULE_DEPEND(if_cxgb, cxgb_t3fw, 1, 1, 1);
3408