xref: /freebsd/sys/dev/cxgb/cxgb_main.c (revision 5ada86640bfcecc90948220b6d1f220da033f74f)
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 
3309fe6320SNavdeep Parhar #include "opt_inet.h"
3409fe6320SNavdeep Parhar 
35b6d90eb7SKip Macy #include <sys/param.h>
36b6d90eb7SKip Macy #include <sys/systm.h>
37b6d90eb7SKip Macy #include <sys/kernel.h>
38b6d90eb7SKip Macy #include <sys/bus.h>
39b6d90eb7SKip Macy #include <sys/module.h>
40b6d90eb7SKip Macy #include <sys/pciio.h>
41b6d90eb7SKip Macy #include <sys/conf.h>
42b6d90eb7SKip Macy #include <machine/bus.h>
43b6d90eb7SKip Macy #include <machine/resource.h>
44b6d90eb7SKip Macy #include <sys/bus_dma.h>
458e10660fSKip Macy #include <sys/ktr.h>
46b6d90eb7SKip Macy #include <sys/rman.h>
47b6d90eb7SKip Macy #include <sys/ioccom.h>
48b6d90eb7SKip Macy #include <sys/mbuf.h>
49b6d90eb7SKip Macy #include <sys/linker.h>
50b6d90eb7SKip Macy #include <sys/firmware.h>
51b6d90eb7SKip Macy #include <sys/socket.h>
52b6d90eb7SKip Macy #include <sys/sockio.h>
53b6d90eb7SKip Macy #include <sys/smp.h>
54b6d90eb7SKip Macy #include <sys/sysctl.h>
558090c9f5SKip Macy #include <sys/syslog.h>
56b6d90eb7SKip Macy #include <sys/queue.h>
57b6d90eb7SKip Macy #include <sys/taskqueue.h>
588090c9f5SKip Macy #include <sys/proc.h>
59b6d90eb7SKip Macy 
60b6d90eb7SKip Macy #include <net/bpf.h>
61b6d90eb7SKip Macy #include <net/ethernet.h>
62b6d90eb7SKip Macy #include <net/if.h>
63b6d90eb7SKip Macy #include <net/if_arp.h>
64b6d90eb7SKip Macy #include <net/if_dl.h>
65b6d90eb7SKip Macy #include <net/if_media.h>
66b6d90eb7SKip Macy #include <net/if_types.h>
674af83c8cSKip Macy #include <net/if_vlan_var.h>
68b6d90eb7SKip Macy 
69b6d90eb7SKip Macy #include <netinet/in_systm.h>
70b6d90eb7SKip Macy #include <netinet/in.h>
71b6d90eb7SKip Macy #include <netinet/if_ether.h>
72b6d90eb7SKip Macy #include <netinet/ip.h>
73b6d90eb7SKip Macy #include <netinet/ip.h>
74b6d90eb7SKip Macy #include <netinet/tcp.h>
75b6d90eb7SKip Macy #include <netinet/udp.h>
76b6d90eb7SKip Macy 
77b6d90eb7SKip Macy #include <dev/pci/pcireg.h>
78b6d90eb7SKip Macy #include <dev/pci/pcivar.h>
79b6d90eb7SKip Macy #include <dev/pci/pci_private.h>
80b6d90eb7SKip Macy 
8110faa568SKip Macy #include <cxgb_include.h>
82b6d90eb7SKip Macy 
83b6d90eb7SKip Macy #ifdef PRIV_SUPPORTED
84b6d90eb7SKip Macy #include <sys/priv.h>
85b6d90eb7SKip Macy #endif
86b6d90eb7SKip Macy 
87e3503bc9SGeorge V. Neville-Neil static int cxgb_setup_interrupts(adapter_t *);
88e3503bc9SGeorge V. Neville-Neil static void cxgb_teardown_interrupts(adapter_t *);
89b6d90eb7SKip Macy static void cxgb_init(void *);
90b302b77cSNavdeep Parhar static int cxgb_init_locked(struct port_info *);
91b302b77cSNavdeep Parhar static int cxgb_uninit_locked(struct port_info *);
923f345a5dSKip Macy static int cxgb_uninit_synchronized(struct port_info *);
93b6d90eb7SKip Macy static int cxgb_ioctl(struct ifnet *, unsigned long, caddr_t);
94b6d90eb7SKip Macy static int cxgb_media_change(struct ifnet *);
95837f41b0SGeorge V. Neville-Neil static int cxgb_ifm_type(int);
962975f787SNavdeep Parhar static void cxgb_build_medialist(struct port_info *);
97b6d90eb7SKip Macy static void cxgb_media_status(struct ifnet *, struct ifmediareq *);
98b6d90eb7SKip Macy static int setup_sge_qsets(adapter_t *);
99b6d90eb7SKip Macy static void cxgb_async_intr(void *);
100bb38cd2fSKip Macy static void cxgb_tick_handler(void *, int);
101b6d90eb7SKip Macy static void cxgb_tick(void *);
102bd1a9fbaSNavdeep Parhar static void link_check_callout(void *);
103bd1a9fbaSNavdeep Parhar static void check_link_status(void *, int);
104b6d90eb7SKip Macy static void setup_rss(adapter_t *sc);
105d6da8362SNavdeep Parhar static int alloc_filters(struct adapter *);
106d6da8362SNavdeep Parhar static int setup_hw_filters(struct adapter *);
107d6da8362SNavdeep Parhar static int set_filter(struct adapter *, int, const struct filter_info *);
108d6da8362SNavdeep Parhar static inline void mk_set_tcb_field(struct cpl_set_tcb_field *, unsigned int,
109d6da8362SNavdeep Parhar     unsigned int, u64, u64);
110d6da8362SNavdeep Parhar static inline void set_tcb_field_ulp(struct cpl_set_tcb_field *, unsigned int,
111d6da8362SNavdeep Parhar     unsigned int, u64, u64);
11209fe6320SNavdeep Parhar #ifdef TCP_OFFLOAD
11309fe6320SNavdeep Parhar static int cpl_not_handled(struct sge_qset *, struct rsp_desc *, struct mbuf *);
11409fe6320SNavdeep Parhar #endif
115b6d90eb7SKip Macy 
116b6d90eb7SKip Macy /* Attachment glue for the PCI controller end of the device.  Each port of
117b6d90eb7SKip Macy  * the device is attached separately, as defined later.
118b6d90eb7SKip Macy  */
119b6d90eb7SKip Macy static int cxgb_controller_probe(device_t);
120b6d90eb7SKip Macy static int cxgb_controller_attach(device_t);
121b6d90eb7SKip Macy static int cxgb_controller_detach(device_t);
122b6d90eb7SKip Macy static void cxgb_free(struct adapter *);
123b6d90eb7SKip Macy static __inline void reg_block_dump(struct adapter *ap, uint8_t *buf, unsigned int start,
124b6d90eb7SKip Macy     unsigned int end);
1251ffd6e58SKip Macy static void cxgb_get_regs(adapter_t *sc, struct ch_ifconf_regs *regs, uint8_t *buf);
126b6d90eb7SKip Macy static int cxgb_get_regs_len(void);
1277ac2e6c3SKip Macy static void touch_bars(device_t dev);
128c01f2b83SNavdeep Parhar static void cxgb_update_mac_settings(struct port_info *p);
12909fe6320SNavdeep Parhar #ifdef TCP_OFFLOAD
13009fe6320SNavdeep Parhar static int toe_capability(struct port_info *, int);
13109fe6320SNavdeep Parhar #endif
132b6d90eb7SKip Macy 
133b6d90eb7SKip Macy static device_method_t cxgb_controller_methods[] = {
134b6d90eb7SKip Macy 	DEVMETHOD(device_probe,		cxgb_controller_probe),
135b6d90eb7SKip Macy 	DEVMETHOD(device_attach,	cxgb_controller_attach),
136b6d90eb7SKip Macy 	DEVMETHOD(device_detach,	cxgb_controller_detach),
137b6d90eb7SKip Macy 
1384b7ec270SMarius Strobl 	DEVMETHOD_END
139b6d90eb7SKip Macy };
140b6d90eb7SKip Macy 
141b6d90eb7SKip Macy static driver_t cxgb_controller_driver = {
142b6d90eb7SKip Macy 	"cxgbc",
143b6d90eb7SKip Macy 	cxgb_controller_methods,
144b6d90eb7SKip Macy 	sizeof(struct adapter)
145b6d90eb7SKip Macy };
146b6d90eb7SKip Macy 
14709fe6320SNavdeep Parhar static int cxgbc_mod_event(module_t, int, void *);
148b6d90eb7SKip Macy static devclass_t	cxgb_controller_devclass;
14909fe6320SNavdeep Parhar DRIVER_MODULE(cxgbc, pci, cxgb_controller_driver, cxgb_controller_devclass,
15009fe6320SNavdeep Parhar     cxgbc_mod_event, 0);
15109fe6320SNavdeep Parhar MODULE_VERSION(cxgbc, 1);
152*5ada8664SKonstantin Belousov MODULE_DEPEND(cxgbc, firmware, 1, 1, 1);
153b6d90eb7SKip Macy 
154b6d90eb7SKip Macy /*
155b6d90eb7SKip Macy  * Attachment glue for the ports.  Attachment is done directly to the
156b6d90eb7SKip Macy  * controller device.
157b6d90eb7SKip Macy  */
158b6d90eb7SKip Macy static int cxgb_port_probe(device_t);
159b6d90eb7SKip Macy static int cxgb_port_attach(device_t);
160b6d90eb7SKip Macy static int cxgb_port_detach(device_t);
161b6d90eb7SKip Macy 
162b6d90eb7SKip Macy static device_method_t cxgb_port_methods[] = {
163b6d90eb7SKip Macy 	DEVMETHOD(device_probe,		cxgb_port_probe),
164b6d90eb7SKip Macy 	DEVMETHOD(device_attach,	cxgb_port_attach),
165b6d90eb7SKip Macy 	DEVMETHOD(device_detach,	cxgb_port_detach),
166b6d90eb7SKip Macy 	{ 0, 0 }
167b6d90eb7SKip Macy };
168b6d90eb7SKip Macy 
169b6d90eb7SKip Macy static driver_t cxgb_port_driver = {
170b6d90eb7SKip Macy 	"cxgb",
171b6d90eb7SKip Macy 	cxgb_port_methods,
172b6d90eb7SKip Macy 	0
173b6d90eb7SKip Macy };
174b6d90eb7SKip Macy 
175b6d90eb7SKip Macy static d_ioctl_t cxgb_extension_ioctl;
176ef72318fSKip Macy static d_open_t cxgb_extension_open;
177ef72318fSKip Macy static d_close_t cxgb_extension_close;
178ef72318fSKip Macy 
179ef72318fSKip Macy static struct cdevsw cxgb_cdevsw = {
180ef72318fSKip Macy        .d_version =    D_VERSION,
181ef72318fSKip Macy        .d_flags =      0,
182ef72318fSKip Macy        .d_open =       cxgb_extension_open,
183ef72318fSKip Macy        .d_close =      cxgb_extension_close,
184ef72318fSKip Macy        .d_ioctl =      cxgb_extension_ioctl,
185ef72318fSKip Macy        .d_name =       "cxgb",
186ef72318fSKip Macy };
187b6d90eb7SKip Macy 
188b6d90eb7SKip Macy static devclass_t	cxgb_port_devclass;
189b6d90eb7SKip Macy DRIVER_MODULE(cxgb, cxgbc, cxgb_port_driver, cxgb_port_devclass, 0, 0);
19009fe6320SNavdeep Parhar MODULE_VERSION(cxgb, 1);
19109fe6320SNavdeep Parhar 
19209fe6320SNavdeep Parhar static struct mtx t3_list_lock;
19309fe6320SNavdeep Parhar static SLIST_HEAD(, adapter) t3_list;
19409fe6320SNavdeep Parhar #ifdef TCP_OFFLOAD
19509fe6320SNavdeep Parhar static struct mtx t3_uld_list_lock;
19609fe6320SNavdeep Parhar static SLIST_HEAD(, uld_info) t3_uld_list;
19709fe6320SNavdeep Parhar #endif
198b6d90eb7SKip Macy 
199b6d90eb7SKip Macy /*
200b6d90eb7SKip Macy  * The driver uses the best interrupt scheme available on a platform in the
201b6d90eb7SKip Macy  * order MSI-X, MSI, legacy pin interrupts.  This parameter determines which
202b6d90eb7SKip Macy  * of these schemes the driver may consider as follows:
203b6d90eb7SKip Macy  *
204b6d90eb7SKip Macy  * msi = 2: choose from among all three options
205b6d90eb7SKip Macy  * msi = 1 : only consider MSI and pin interrupts
206b6d90eb7SKip Macy  * msi = 0: force pin interrupts
207b6d90eb7SKip Macy  */
208693d746cSKip Macy static int msi_allowed = 2;
209cebf6b9fSKip Macy 
210b6d90eb7SKip Macy TUNABLE_INT("hw.cxgb.msi_allowed", &msi_allowed);
211b6d90eb7SKip Macy SYSCTL_NODE(_hw, OID_AUTO, cxgb, CTLFLAG_RD, 0, "CXGB driver parameters");
212deceab87SMatthew D Fleming SYSCTL_INT(_hw_cxgb, OID_AUTO, msi_allowed, CTLFLAG_RDTUN, &msi_allowed, 0,
213b6d90eb7SKip Macy     "MSI-X, MSI, INTx selector");
214d722cab4SKip Macy 
21564c43db5SKip Macy /*
216d722cab4SKip Macy  * The driver uses an auto-queue algorithm by default.
217a02573bcSKip Macy  * To disable it and force a single queue-set per port, use multiq = 0
21864c43db5SKip Macy  */
219a02573bcSKip Macy static int multiq = 1;
220a02573bcSKip Macy TUNABLE_INT("hw.cxgb.multiq", &multiq);
221deceab87SMatthew D Fleming SYSCTL_INT(_hw_cxgb, OID_AUTO, multiq, CTLFLAG_RDTUN, &multiq, 0,
222a02573bcSKip Macy     "use min(ncpus/ports, 8) queue-sets per port");
223f001b63dSKip Macy 
224404825a7SKip Macy /*
225a02573bcSKip Macy  * By default the driver will not update the firmware unless
226a02573bcSKip Macy  * it was compiled against a newer version
227a02573bcSKip Macy  *
228404825a7SKip Macy  */
229404825a7SKip Macy static int force_fw_update = 0;
230404825a7SKip Macy TUNABLE_INT("hw.cxgb.force_fw_update", &force_fw_update);
231deceab87SMatthew D Fleming SYSCTL_INT(_hw_cxgb, OID_AUTO, force_fw_update, CTLFLAG_RDTUN, &force_fw_update, 0,
232404825a7SKip Macy     "update firmware even if up to date");
233f001b63dSKip Macy 
23497ae3bc3SNavdeep Parhar int cxgb_use_16k_clusters = -1;
235f001b63dSKip Macy TUNABLE_INT("hw.cxgb.use_16k_clusters", &cxgb_use_16k_clusters);
23697ae3bc3SNavdeep Parhar SYSCTL_INT(_hw_cxgb, OID_AUTO, use_16k_clusters, CTLFLAG_RDTUN,
237f001b63dSKip Macy     &cxgb_use_16k_clusters, 0, "use 16kB clusters for the jumbo queue ");
238f001b63dSKip Macy 
2393a2c6562SNavdeep Parhar static int nfilters = -1;
2403a2c6562SNavdeep Parhar TUNABLE_INT("hw.cxgb.nfilters", &nfilters);
2413a2c6562SNavdeep Parhar SYSCTL_INT(_hw_cxgb, OID_AUTO, nfilters, CTLFLAG_RDTUN,
2423a2c6562SNavdeep Parhar     &nfilters, 0, "max number of entries in the filter table");
24302c7d9a6SGeorge V. Neville-Neil 
244b6d90eb7SKip Macy enum {
245b6d90eb7SKip Macy 	MAX_TXQ_ENTRIES      = 16384,
246b6d90eb7SKip Macy 	MAX_CTRL_TXQ_ENTRIES = 1024,
247b6d90eb7SKip Macy 	MAX_RSPQ_ENTRIES     = 16384,
248b6d90eb7SKip Macy 	MAX_RX_BUFFERS       = 16384,
249b6d90eb7SKip Macy 	MAX_RX_JUMBO_BUFFERS = 16384,
250b6d90eb7SKip Macy 	MIN_TXQ_ENTRIES      = 4,
251b6d90eb7SKip Macy 	MIN_CTRL_TXQ_ENTRIES = 4,
252b6d90eb7SKip Macy 	MIN_RSPQ_ENTRIES     = 32,
2535c5df3daSKip Macy 	MIN_FL_ENTRIES       = 32,
2545c5df3daSKip Macy 	MIN_FL_JUMBO_ENTRIES = 32
255b6d90eb7SKip Macy };
256b6d90eb7SKip Macy 
257ac3a6d9cSKip Macy struct filter_info {
258ac3a6d9cSKip Macy 	u32 sip;
259ac3a6d9cSKip Macy 	u32 sip_mask;
260ac3a6d9cSKip Macy 	u32 dip;
261ac3a6d9cSKip Macy 	u16 sport;
262ac3a6d9cSKip Macy 	u16 dport;
263ac3a6d9cSKip Macy 	u32 vlan:12;
264ac3a6d9cSKip Macy 	u32 vlan_prio:3;
265ac3a6d9cSKip Macy 	u32 mac_hit:1;
266ac3a6d9cSKip Macy 	u32 mac_idx:4;
267ac3a6d9cSKip Macy 	u32 mac_vld:1;
268ac3a6d9cSKip Macy 	u32 pkt_type:2;
269ac3a6d9cSKip Macy 	u32 report_filter_id:1;
270ac3a6d9cSKip Macy 	u32 pass:1;
271ac3a6d9cSKip Macy 	u32 rss:1;
272ac3a6d9cSKip Macy 	u32 qset:3;
273ac3a6d9cSKip Macy 	u32 locked:1;
274ac3a6d9cSKip Macy 	u32 valid:1;
275ac3a6d9cSKip Macy };
276ac3a6d9cSKip Macy 
277ac3a6d9cSKip Macy enum { FILTER_NO_VLAN_PRI = 7 };
278ac3a6d9cSKip Macy 
2791ffd6e58SKip Macy #define EEPROM_MAGIC 0x38E2F10C
2801ffd6e58SKip Macy 
281b6d90eb7SKip Macy #define PORT_MASK ((1 << MAX_NPORTS) - 1)
282b6d90eb7SKip Macy 
283b6d90eb7SKip Macy /* Table for probing the cards.  The desc field isn't actually used */
284b6d90eb7SKip Macy struct cxgb_ident {
285b6d90eb7SKip Macy 	uint16_t	vendor;
286b6d90eb7SKip Macy 	uint16_t	device;
287b6d90eb7SKip Macy 	int		index;
288b6d90eb7SKip Macy 	char		*desc;
289b6d90eb7SKip Macy } cxgb_identifiers[] = {
290b6d90eb7SKip Macy 	{PCI_VENDOR_ID_CHELSIO, 0x0020, 0, "PE9000"},
291b6d90eb7SKip Macy 	{PCI_VENDOR_ID_CHELSIO, 0x0021, 1, "T302E"},
292b6d90eb7SKip Macy 	{PCI_VENDOR_ID_CHELSIO, 0x0022, 2, "T310E"},
293b6d90eb7SKip Macy 	{PCI_VENDOR_ID_CHELSIO, 0x0023, 3, "T320X"},
294b6d90eb7SKip Macy 	{PCI_VENDOR_ID_CHELSIO, 0x0024, 1, "T302X"},
295b6d90eb7SKip Macy 	{PCI_VENDOR_ID_CHELSIO, 0x0025, 3, "T320E"},
296b6d90eb7SKip Macy 	{PCI_VENDOR_ID_CHELSIO, 0x0026, 2, "T310X"},
297b6d90eb7SKip Macy 	{PCI_VENDOR_ID_CHELSIO, 0x0030, 2, "T3B10"},
298b6d90eb7SKip Macy 	{PCI_VENDOR_ID_CHELSIO, 0x0031, 3, "T3B20"},
299b6d90eb7SKip Macy 	{PCI_VENDOR_ID_CHELSIO, 0x0032, 1, "T3B02"},
300ef72318fSKip Macy 	{PCI_VENDOR_ID_CHELSIO, 0x0033, 4, "T3B04"},
301c01f2b83SNavdeep Parhar 	{PCI_VENDOR_ID_CHELSIO, 0x0035, 6, "T3C10"},
302c01f2b83SNavdeep Parhar 	{PCI_VENDOR_ID_CHELSIO, 0x0036, 3, "S320E-CR"},
303c01f2b83SNavdeep Parhar 	{PCI_VENDOR_ID_CHELSIO, 0x0037, 7, "N320E-G2"},
304b6d90eb7SKip Macy 	{0, 0, 0, NULL}
305b6d90eb7SKip Macy };
306b6d90eb7SKip Macy 
307ac3a6d9cSKip Macy static int set_eeprom(struct port_info *pi, const uint8_t *data, int len, int offset);
308ac3a6d9cSKip Macy 
3098e10660fSKip Macy 
3108090c9f5SKip Macy static __inline char
311ac3a6d9cSKip Macy t3rev2char(struct adapter *adapter)
312ac3a6d9cSKip Macy {
313ac3a6d9cSKip Macy 	char rev = 'z';
314ac3a6d9cSKip Macy 
315ac3a6d9cSKip Macy 	switch(adapter->params.rev) {
316ac3a6d9cSKip Macy 	case T3_REV_A:
317ac3a6d9cSKip Macy 		rev = 'a';
318ac3a6d9cSKip Macy 		break;
319ac3a6d9cSKip Macy 	case T3_REV_B:
320ac3a6d9cSKip Macy 	case T3_REV_B2:
321ac3a6d9cSKip Macy 		rev = 'b';
322ac3a6d9cSKip Macy 		break;
323ac3a6d9cSKip Macy 	case T3_REV_C:
324ac3a6d9cSKip Macy 		rev = 'c';
325ac3a6d9cSKip Macy 		break;
326ac3a6d9cSKip Macy 	}
327ac3a6d9cSKip Macy 	return rev;
328ac3a6d9cSKip Macy }
329ac3a6d9cSKip Macy 
330b6d90eb7SKip Macy static struct cxgb_ident *
331b6d90eb7SKip Macy cxgb_get_ident(device_t dev)
332b6d90eb7SKip Macy {
333b6d90eb7SKip Macy 	struct cxgb_ident *id;
334b6d90eb7SKip Macy 
335b6d90eb7SKip Macy 	for (id = cxgb_identifiers; id->desc != NULL; id++) {
336b6d90eb7SKip Macy 		if ((id->vendor == pci_get_vendor(dev)) &&
337b6d90eb7SKip Macy 		    (id->device == pci_get_device(dev))) {
338b6d90eb7SKip Macy 			return (id);
339b6d90eb7SKip Macy 		}
340b6d90eb7SKip Macy 	}
341b6d90eb7SKip Macy 	return (NULL);
342b6d90eb7SKip Macy }
343b6d90eb7SKip Macy 
344b6d90eb7SKip Macy static const struct adapter_info *
345b6d90eb7SKip Macy cxgb_get_adapter_info(device_t dev)
346b6d90eb7SKip Macy {
347b6d90eb7SKip Macy 	struct cxgb_ident *id;
348b6d90eb7SKip Macy 	const struct adapter_info *ai;
349b6d90eb7SKip Macy 
350b6d90eb7SKip Macy 	id = cxgb_get_ident(dev);
351b6d90eb7SKip Macy 	if (id == NULL)
352b6d90eb7SKip Macy 		return (NULL);
353b6d90eb7SKip Macy 
354b6d90eb7SKip Macy 	ai = t3_get_adapter_info(id->index);
355b6d90eb7SKip Macy 
356b6d90eb7SKip Macy 	return (ai);
357b6d90eb7SKip Macy }
358b6d90eb7SKip Macy 
359b6d90eb7SKip Macy static int
360b6d90eb7SKip Macy cxgb_controller_probe(device_t dev)
361b6d90eb7SKip Macy {
362b6d90eb7SKip Macy 	const struct adapter_info *ai;
363b6d90eb7SKip Macy 	char *ports, buf[80];
364ef72318fSKip Macy 	int nports;
365b6d90eb7SKip Macy 
366b6d90eb7SKip Macy 	ai = cxgb_get_adapter_info(dev);
367b6d90eb7SKip Macy 	if (ai == NULL)
368b6d90eb7SKip Macy 		return (ENXIO);
369b6d90eb7SKip Macy 
370ef72318fSKip Macy 	nports = ai->nports0 + ai->nports1;
371ef72318fSKip Macy 	if (nports == 1)
372b6d90eb7SKip Macy 		ports = "port";
373b6d90eb7SKip Macy 	else
374b6d90eb7SKip Macy 		ports = "ports";
375b6d90eb7SKip Macy 
3767ead19d4SNavdeep Parhar 	snprintf(buf, sizeof(buf), "%s, %d %s", ai->desc, nports, ports);
377b6d90eb7SKip Macy 	device_set_desc_copy(dev, buf);
378b6d90eb7SKip Macy 	return (BUS_PROBE_DEFAULT);
379b6d90eb7SKip Macy }
380b6d90eb7SKip Macy 
381404825a7SKip Macy #define FW_FNAME "cxgb_t3fw"
3820c1ff9c6SGeorge V. Neville-Neil #define TPEEPROM_NAME "cxgb_t3%c_tp_eeprom"
3830c1ff9c6SGeorge V. Neville-Neil #define TPSRAM_NAME "cxgb_t3%c_protocol_sram"
384ac3a6d9cSKip Macy 
385b6d90eb7SKip Macy static int
386d722cab4SKip Macy upgrade_fw(adapter_t *sc)
387b6d90eb7SKip Macy {
388b6d90eb7SKip Macy 	const struct firmware *fw;
389b6d90eb7SKip Macy 	int status;
390a9da6d23SNavdeep Parhar 	u32 vers;
391b6d90eb7SKip Macy 
392404825a7SKip Macy 	if ((fw = firmware_get(FW_FNAME)) == NULL)  {
393404825a7SKip Macy 		device_printf(sc->dev, "Could not find firmware image %s\n", FW_FNAME);
394d722cab4SKip Macy 		return (ENOENT);
395ac3a6d9cSKip Macy 	} else
396a9da6d23SNavdeep Parhar 		device_printf(sc->dev, "installing firmware on card\n");
397b6d90eb7SKip Macy 	status = t3_load_fw(sc, (const uint8_t *)fw->data, fw->datasize);
398b6d90eb7SKip Macy 
399a9da6d23SNavdeep Parhar 	if (status != 0) {
400a9da6d23SNavdeep Parhar 		device_printf(sc->dev, "failed to install firmware: %d\n",
401a9da6d23SNavdeep Parhar 		    status);
402a9da6d23SNavdeep Parhar 	} else {
403a9da6d23SNavdeep Parhar 		t3_get_fw_version(sc, &vers);
404a9da6d23SNavdeep Parhar 		snprintf(&sc->fw_version[0], sizeof(sc->fw_version), "%d.%d.%d",
405a9da6d23SNavdeep Parhar 		    G_FW_VERSION_MAJOR(vers), G_FW_VERSION_MINOR(vers),
406a9da6d23SNavdeep Parhar 		    G_FW_VERSION_MICRO(vers));
407a9da6d23SNavdeep Parhar 	}
408ac3a6d9cSKip Macy 
409b6d90eb7SKip Macy 	firmware_put(fw, FIRMWARE_UNLOAD);
410b6d90eb7SKip Macy 
411b6d90eb7SKip Macy 	return (status);
412b6d90eb7SKip Macy }
413b6d90eb7SKip Macy 
4143cf138bbSGeorge V. Neville-Neil /*
4153cf138bbSGeorge V. Neville-Neil  * The cxgb_controller_attach function is responsible for the initial
4163cf138bbSGeorge V. Neville-Neil  * bringup of the device.  Its responsibilities include:
4173cf138bbSGeorge V. Neville-Neil  *
4183cf138bbSGeorge V. Neville-Neil  *  1. Determine if the device supports MSI or MSI-X.
4193cf138bbSGeorge V. Neville-Neil  *  2. Allocate bus resources so that we can access the Base Address Register
4203cf138bbSGeorge V. Neville-Neil  *  3. Create and initialize mutexes for the controller and its control
4213cf138bbSGeorge V. Neville-Neil  *     logic such as SGE and MDIO.
4223cf138bbSGeorge V. Neville-Neil  *  4. Call hardware specific setup routine for the adapter as a whole.
4233cf138bbSGeorge V. Neville-Neil  *  5. Allocate the BAR for doing MSI-X.
4243cf138bbSGeorge V. Neville-Neil  *  6. Setup the line interrupt iff MSI-X is not supported.
4253cf138bbSGeorge V. Neville-Neil  *  7. Create the driver's taskq.
426c2009a4cSGeorge V. Neville-Neil  *  8. Start one task queue service thread.
427c2009a4cSGeorge V. Neville-Neil  *  9. Check if the firmware and SRAM are up-to-date.  They will be
428c2009a4cSGeorge V. Neville-Neil  *     auto-updated later (before FULL_INIT_DONE), if required.
4293cf138bbSGeorge V. Neville-Neil  * 10. Create a child device for each MAC (port)
4303cf138bbSGeorge V. Neville-Neil  * 11. Initialize T3 private state.
4313cf138bbSGeorge V. Neville-Neil  * 12. Trigger the LED
4323cf138bbSGeorge V. Neville-Neil  * 13. Setup offload iff supported.
4333cf138bbSGeorge V. Neville-Neil  * 14. Reset/restart the tick callout.
4343cf138bbSGeorge V. Neville-Neil  * 15. Attach sysctls
4353cf138bbSGeorge V. Neville-Neil  *
4363cf138bbSGeorge V. Neville-Neil  * NOTE: Any modification or deviation from this list MUST be reflected in
4373cf138bbSGeorge V. Neville-Neil  * the above comment.  Failure to do so will result in problems on various
4383cf138bbSGeorge V. Neville-Neil  * error conditions including link flapping.
4393cf138bbSGeorge V. Neville-Neil  */
440b6d90eb7SKip Macy static int
441b6d90eb7SKip Macy cxgb_controller_attach(device_t dev)
442b6d90eb7SKip Macy {
443b6d90eb7SKip Macy 	device_t child;
444b6d90eb7SKip Macy 	const struct adapter_info *ai;
445b6d90eb7SKip Macy 	struct adapter *sc;
4462de1fa86SKip Macy 	int i, error = 0;
447b6d90eb7SKip Macy 	uint32_t vers;
448693d746cSKip Macy 	int port_qsets = 1;
4492de1fa86SKip Macy 	int msi_needed, reg;
4505197f3abSGeorge V. Neville-Neil 	char buf[80];
4515197f3abSGeorge V. Neville-Neil 
452b6d90eb7SKip Macy 	sc = device_get_softc(dev);
453b6d90eb7SKip Macy 	sc->dev = dev;
454d722cab4SKip Macy 	sc->msi_count = 0;
4552de1fa86SKip Macy 	ai = cxgb_get_adapter_info(dev);
456b6d90eb7SKip Macy 
45709fe6320SNavdeep Parhar 	snprintf(sc->lockbuf, ADAPTER_LOCK_NAME_LEN, "cxgb controller lock %d",
45809fe6320SNavdeep Parhar 	    device_get_unit(dev));
45909fe6320SNavdeep Parhar 	ADAPTER_LOCK_INIT(sc, sc->lockbuf);
46009fe6320SNavdeep Parhar 
46109fe6320SNavdeep Parhar 	snprintf(sc->reglockbuf, ADAPTER_LOCK_NAME_LEN, "SGE reg lock %d",
46209fe6320SNavdeep Parhar 	    device_get_unit(dev));
46309fe6320SNavdeep Parhar 	snprintf(sc->mdiolockbuf, ADAPTER_LOCK_NAME_LEN, "cxgb mdio lock %d",
46409fe6320SNavdeep Parhar 	    device_get_unit(dev));
46509fe6320SNavdeep Parhar 	snprintf(sc->elmerlockbuf, ADAPTER_LOCK_NAME_LEN, "cxgb elmer lock %d",
46609fe6320SNavdeep Parhar 	    device_get_unit(dev));
46709fe6320SNavdeep Parhar 
46809fe6320SNavdeep Parhar 	MTX_INIT(&sc->sge.reg_lock, sc->reglockbuf, NULL, MTX_SPIN);
46909fe6320SNavdeep Parhar 	MTX_INIT(&sc->mdio_lock, sc->mdiolockbuf, NULL, MTX_DEF);
47009fe6320SNavdeep Parhar 	MTX_INIT(&sc->elmer_lock, sc->elmerlockbuf, NULL, MTX_DEF);
47109fe6320SNavdeep Parhar 
47209fe6320SNavdeep Parhar 	mtx_lock(&t3_list_lock);
47309fe6320SNavdeep Parhar 	SLIST_INSERT_HEAD(&t3_list, sc, link);
47409fe6320SNavdeep Parhar 	mtx_unlock(&t3_list_lock);
47509fe6320SNavdeep Parhar 
476fc01c613SKip Macy 	/* find the PCIe link width and set max read request to 4KB*/
4773b0a4aefSJohn Baldwin 	if (pci_find_cap(dev, PCIY_EXPRESS, &reg) == 0) {
478b739a509SJohn Baldwin 		uint16_t lnk;
479fc01c613SKip Macy 
480389c8bd5SGavin Atkinson 		lnk = pci_read_config(dev, reg + PCIER_LINK_STA, 2);
481389c8bd5SGavin Atkinson 		sc->link_width = (lnk & PCIEM_LINK_STA_WIDTH) >> 4;
482b739a509SJohn Baldwin 		if (sc->link_width < 8 &&
483b739a509SJohn Baldwin 		    (ai->caps & SUPPORTED_10000baseT_Full)) {
484fc01c613SKip Macy 			device_printf(sc->dev,
485ac6b4cf1SKip Macy 			    "PCIe x%d Link, expect reduced performance\n",
486fc01c613SKip Macy 			    sc->link_width);
487fc01c613SKip Macy 		}
488e83ec3e5SNavdeep Parhar 
489b739a509SJohn Baldwin 		pci_set_max_read_req(dev, 4096);
490b739a509SJohn Baldwin 	}
491b739a509SJohn Baldwin 
4927ac2e6c3SKip Macy 	touch_bars(dev);
493b6d90eb7SKip Macy 	pci_enable_busmaster(dev);
494b6d90eb7SKip Macy 	/*
495b6d90eb7SKip Macy 	 * Allocate the registers and make them available to the driver.
496b6d90eb7SKip Macy 	 * The registers that we care about for NIC mode are in BAR 0
497b6d90eb7SKip Macy 	 */
498b6d90eb7SKip Macy 	sc->regs_rid = PCIR_BAR(0);
499b6d90eb7SKip Macy 	if ((sc->regs_res = bus_alloc_resource_any(dev, SYS_RES_MEMORY,
500b6d90eb7SKip Macy 	    &sc->regs_rid, RF_ACTIVE)) == NULL) {
5018e10660fSKip Macy 		device_printf(dev, "Cannot allocate BAR region 0\n");
50209fe6320SNavdeep Parhar 		error = ENXIO;
50309fe6320SNavdeep Parhar 		goto out;
504b6d90eb7SKip Macy 	}
505b6d90eb7SKip Macy 
506b6d90eb7SKip Macy 	sc->bt = rman_get_bustag(sc->regs_res);
507b6d90eb7SKip Macy 	sc->bh = rman_get_bushandle(sc->regs_res);
508b6d90eb7SKip Macy 	sc->mmio_len = rman_get_size(sc->regs_res);
509b6d90eb7SKip Macy 
510c01f2b83SNavdeep Parhar 	for (i = 0; i < MAX_NPORTS; i++)
511c01f2b83SNavdeep Parhar 		sc->port[i].adapter = sc;
512c01f2b83SNavdeep Parhar 
51324cdd067SKip Macy 	if (t3_prep_adapter(sc, ai, 1) < 0) {
514ef72318fSKip Macy 		printf("prep adapter failed\n");
51524cdd067SKip Macy 		error = ENODEV;
51624cdd067SKip Macy 		goto out;
51724cdd067SKip Macy 	}
518c3286cd2SNavdeep Parhar 
519c3286cd2SNavdeep Parhar 	sc->udbs_rid = PCIR_BAR(2);
520c3286cd2SNavdeep Parhar 	sc->udbs_res = NULL;
521c3286cd2SNavdeep Parhar 	if (is_offload(sc) &&
522c3286cd2SNavdeep Parhar 	    ((sc->udbs_res = bus_alloc_resource_any(dev, SYS_RES_MEMORY,
523c3286cd2SNavdeep Parhar 		   &sc->udbs_rid, RF_ACTIVE)) == NULL)) {
524c3286cd2SNavdeep Parhar 		device_printf(dev, "Cannot allocate BAR region 1\n");
525c3286cd2SNavdeep Parhar 		error = ENXIO;
526c3286cd2SNavdeep Parhar 		goto out;
527c3286cd2SNavdeep Parhar 	}
528c3286cd2SNavdeep Parhar 
529b6d90eb7SKip Macy         /* Allocate the BAR for doing MSI-X.  If it succeeds, try to allocate
530b6d90eb7SKip Macy 	 * enough messages for the queue sets.  If that fails, try falling
531b6d90eb7SKip Macy 	 * back to MSI.  If that fails, then try falling back to the legacy
532b6d90eb7SKip Macy 	 * interrupt pin model.
533b6d90eb7SKip Macy 	 */
534b6d90eb7SKip Macy 	sc->msix_regs_rid = 0x20;
535b6d90eb7SKip Macy 	if ((msi_allowed >= 2) &&
536b6d90eb7SKip Macy 	    (sc->msix_regs_res = bus_alloc_resource_any(dev, SYS_RES_MEMORY,
537b6d90eb7SKip Macy 	    &sc->msix_regs_rid, RF_ACTIVE)) != NULL) {
538b6d90eb7SKip Macy 
539e3503bc9SGeorge V. Neville-Neil 		if (multiq)
540e3503bc9SGeorge V. Neville-Neil 			port_qsets = min(SGE_QSETS/sc->params.nports, mp_ncpus);
541e3503bc9SGeorge V. Neville-Neil 		msi_needed = sc->msi_count = sc->params.nports * port_qsets + 1;
542693d746cSKip Macy 
543e3503bc9SGeorge V. Neville-Neil 		if (pci_msix_count(dev) == 0 ||
544e3503bc9SGeorge V. Neville-Neil 		    (error = pci_alloc_msix(dev, &sc->msi_count)) != 0 ||
545e3503bc9SGeorge V. Neville-Neil 		    sc->msi_count != msi_needed) {
546e3503bc9SGeorge V. Neville-Neil 			device_printf(dev, "alloc msix failed - "
547e3503bc9SGeorge V. Neville-Neil 				      "msi_count=%d, msi_needed=%d, err=%d; "
548e3503bc9SGeorge V. Neville-Neil 				      "will try MSI\n", sc->msi_count,
549d722cab4SKip Macy 				      msi_needed, error);
550d722cab4SKip Macy 			sc->msi_count = 0;
551e3503bc9SGeorge V. Neville-Neil 			port_qsets = 1;
552b6d90eb7SKip Macy 			pci_release_msi(dev);
553b6d90eb7SKip Macy 			bus_release_resource(dev, SYS_RES_MEMORY,
554b6d90eb7SKip Macy 			    sc->msix_regs_rid, sc->msix_regs_res);
555b6d90eb7SKip Macy 			sc->msix_regs_res = NULL;
556b6d90eb7SKip Macy 		} else {
557b6d90eb7SKip Macy 			sc->flags |= USING_MSIX;
558e3503bc9SGeorge V. Neville-Neil 			sc->cxgb_intr = cxgb_async_intr;
559e3503bc9SGeorge V. Neville-Neil 			device_printf(dev,
560e3503bc9SGeorge V. Neville-Neil 				      "using MSI-X interrupts (%u vectors)\n",
561e3503bc9SGeorge V. Neville-Neil 				      sc->msi_count);
562b6d90eb7SKip Macy 		}
563b6d90eb7SKip Macy 	}
564b6d90eb7SKip Macy 
565d722cab4SKip Macy 	if ((msi_allowed >= 1) && (sc->msi_count == 0)) {
566d722cab4SKip Macy 		sc->msi_count = 1;
567e3503bc9SGeorge V. Neville-Neil 		if ((error = pci_alloc_msi(dev, &sc->msi_count)) != 0) {
568e3503bc9SGeorge V. Neville-Neil 			device_printf(dev, "alloc msi failed - "
569e3503bc9SGeorge V. Neville-Neil 				      "err=%d; will try INTx\n", error);
570d722cab4SKip Macy 			sc->msi_count = 0;
571e3503bc9SGeorge V. Neville-Neil 			port_qsets = 1;
572b6d90eb7SKip Macy 			pci_release_msi(dev);
573b6d90eb7SKip Macy 		} else {
574b6d90eb7SKip Macy 			sc->flags |= USING_MSI;
575f0a542f8SKip Macy 			sc->cxgb_intr = t3_intr_msi;
576e3503bc9SGeorge V. Neville-Neil 			device_printf(dev, "using MSI interrupts\n");
577b6d90eb7SKip Macy 		}
578b6d90eb7SKip Macy 	}
579d722cab4SKip Macy 	if (sc->msi_count == 0) {
580693d746cSKip Macy 		device_printf(dev, "using line interrupts\n");
581f0a542f8SKip Macy 		sc->cxgb_intr = t3b_intr;
582b6d90eb7SKip Macy 	}
583b6d90eb7SKip Macy 
584b6d90eb7SKip Macy 	/* Create a private taskqueue thread for handling driver events */
585b6d90eb7SKip Macy 	sc->tq = taskqueue_create("cxgb_taskq", M_NOWAIT,
586b6d90eb7SKip Macy 	    taskqueue_thread_enqueue, &sc->tq);
587b6d90eb7SKip Macy 	if (sc->tq == NULL) {
588b6d90eb7SKip Macy 		device_printf(dev, "failed to allocate controller task queue\n");
589b6d90eb7SKip Macy 		goto out;
590b6d90eb7SKip Macy 	}
591b6d90eb7SKip Macy 
592b6d90eb7SKip Macy 	taskqueue_start_threads(&sc->tq, 1, PI_NET, "%s taskq",
593b6d90eb7SKip Macy 	    device_get_nameunit(dev));
594bb38cd2fSKip Macy 	TASK_INIT(&sc->tick_task, 0, cxgb_tick_handler, sc);
595b6d90eb7SKip Macy 
596b6d90eb7SKip Macy 
597b6d90eb7SKip Macy 	/* Create a periodic callout for checking adapter status */
598bb38cd2fSKip Macy 	callout_init(&sc->cxgb_tick_ch, TRUE);
599b6d90eb7SKip Macy 
600f2d8ff04SGeorge V. Neville-Neil 	if (t3_check_fw_version(sc) < 0 || force_fw_update) {
601b6d90eb7SKip Macy 		/*
602b6d90eb7SKip Macy 		 * Warn user that a firmware update will be attempted in init.
603b6d90eb7SKip Macy 		 */
604d722cab4SKip Macy 		device_printf(dev, "firmware needs to be updated to version %d.%d.%d\n",
605d722cab4SKip Macy 		    FW_VERSION_MAJOR, FW_VERSION_MINOR, FW_VERSION_MICRO);
606b6d90eb7SKip Macy 		sc->flags &= ~FW_UPTODATE;
607b6d90eb7SKip Macy 	} else {
608b6d90eb7SKip Macy 		sc->flags |= FW_UPTODATE;
609b6d90eb7SKip Macy 	}
610b6d90eb7SKip Macy 
611f2d8ff04SGeorge V. Neville-Neil 	if (t3_check_tpsram_version(sc) < 0) {
612ac3a6d9cSKip Macy 		/*
613ac3a6d9cSKip Macy 		 * Warn user that a firmware update will be attempted in init.
614ac3a6d9cSKip Macy 		 */
615ac3a6d9cSKip Macy 		device_printf(dev, "SRAM needs to be updated to version %c-%d.%d.%d\n",
616ac3a6d9cSKip Macy 		    t3rev2char(sc), TP_VERSION_MAJOR, TP_VERSION_MINOR, TP_VERSION_MICRO);
617ac3a6d9cSKip Macy 		sc->flags &= ~TPS_UPTODATE;
618ac3a6d9cSKip Macy 	} else {
619ac3a6d9cSKip Macy 		sc->flags |= TPS_UPTODATE;
620ac3a6d9cSKip Macy 	}
621ac3a6d9cSKip Macy 
622b6d90eb7SKip Macy 	/*
623b6d90eb7SKip Macy 	 * Create a child device for each MAC.  The ethernet attachment
624b6d90eb7SKip Macy 	 * will be done in these children.
625b6d90eb7SKip Macy 	 */
626693d746cSKip Macy 	for (i = 0; i < (sc)->params.nports; i++) {
6277ac2e6c3SKip Macy 		struct port_info *pi;
6287ac2e6c3SKip Macy 
629b6d90eb7SKip Macy 		if ((child = device_add_child(dev, "cxgb", -1)) == NULL) {
630b6d90eb7SKip Macy 			device_printf(dev, "failed to add child port\n");
631b6d90eb7SKip Macy 			error = EINVAL;
632b6d90eb7SKip Macy 			goto out;
633b6d90eb7SKip Macy 		}
6347ac2e6c3SKip Macy 		pi = &sc->port[i];
6357ac2e6c3SKip Macy 		pi->adapter = sc;
6367ac2e6c3SKip Macy 		pi->nqsets = port_qsets;
6377ac2e6c3SKip Macy 		pi->first_qset = i*port_qsets;
6387ac2e6c3SKip Macy 		pi->port_id = i;
6397ac2e6c3SKip Macy 		pi->tx_chan = i >= ai->nports0;
6407ac2e6c3SKip Macy 		pi->txpkt_intf = pi->tx_chan ? 2 * (i - ai->nports0) + 1 : 2 * i;
6417ac2e6c3SKip Macy 		sc->rxpkt_map[pi->txpkt_intf] = i;
6428090c9f5SKip Macy 		sc->port[i].tx_chan = i >= ai->nports0;
643ac3a6d9cSKip Macy 		sc->portdev[i] = child;
6447ac2e6c3SKip Macy 		device_set_softc(child, pi);
645b6d90eb7SKip Macy 	}
646b6d90eb7SKip Macy 	if ((error = bus_generic_attach(dev)) != 0)
647b6d90eb7SKip Macy 		goto out;
648b6d90eb7SKip Macy 
649b6d90eb7SKip Macy 	/* initialize sge private state */
650ef72318fSKip Macy 	t3_sge_init_adapter(sc);
651b6d90eb7SKip Macy 
652b6d90eb7SKip Macy 	t3_led_ready(sc);
653b6d90eb7SKip Macy 
654b6d90eb7SKip Macy 	error = t3_get_fw_version(sc, &vers);
655b6d90eb7SKip Macy 	if (error)
656b6d90eb7SKip Macy 		goto out;
657b6d90eb7SKip Macy 
658d722cab4SKip Macy 	snprintf(&sc->fw_version[0], sizeof(sc->fw_version), "%d.%d.%d",
659d722cab4SKip Macy 	    G_FW_VERSION_MAJOR(vers), G_FW_VERSION_MINOR(vers),
660d722cab4SKip Macy 	    G_FW_VERSION_MICRO(vers));
661b6d90eb7SKip Macy 
6627ead19d4SNavdeep Parhar 	snprintf(buf, sizeof(buf), "%s %sNIC\t E/C: %s S/N: %s",
6637ead19d4SNavdeep Parhar 		 ai->desc, is_offload(sc) ? "R" : "",
6645197f3abSGeorge V. Neville-Neil 		 sc->params.vpd.ec, sc->params.vpd.sn);
6655197f3abSGeorge V. Neville-Neil 	device_set_desc_copy(dev, buf);
6665197f3abSGeorge V. Neville-Neil 
6670bbdea77SGeorge V. Neville-Neil 	snprintf(&sc->port_types[0], sizeof(sc->port_types), "%x%x%x%x",
6680bbdea77SGeorge V. Neville-Neil 		 sc->params.vpd.port_type[0], sc->params.vpd.port_type[1],
6690bbdea77SGeorge V. Neville-Neil 		 sc->params.vpd.port_type[2], sc->params.vpd.port_type[3]);
6700bbdea77SGeorge V. Neville-Neil 
6718e10660fSKip Macy 	device_printf(sc->dev, "Firmware Version %s\n", &sc->fw_version[0]);
672bd1a9fbaSNavdeep Parhar 	callout_reset(&sc->cxgb_tick_ch, hz, cxgb_tick, sc);
6738090c9f5SKip Macy 	t3_add_attach_sysctls(sc);
67409fe6320SNavdeep Parhar 
67509fe6320SNavdeep Parhar #ifdef TCP_OFFLOAD
67609fe6320SNavdeep Parhar 	for (i = 0; i < NUM_CPL_HANDLERS; i++)
67709fe6320SNavdeep Parhar 		sc->cpl_handler[i] = cpl_not_handled;
67809fe6320SNavdeep Parhar #endif
679ec9a9cf1SJohn Baldwin 
680ec9a9cf1SJohn Baldwin 	t3_intr_clear(sc);
681ec9a9cf1SJohn Baldwin 	error = cxgb_setup_interrupts(sc);
682b6d90eb7SKip Macy out:
683b6d90eb7SKip Macy 	if (error)
684b6d90eb7SKip Macy 		cxgb_free(sc);
685b6d90eb7SKip Macy 
686b6d90eb7SKip Macy 	return (error);
687b6d90eb7SKip Macy }
688b6d90eb7SKip Macy 
6893cf138bbSGeorge V. Neville-Neil /*
690c2009a4cSGeorge V. Neville-Neil  * The cxgb_controller_detach routine is called with the device is
6913cf138bbSGeorge V. Neville-Neil  * unloaded from the system.
6923cf138bbSGeorge V. Neville-Neil  */
6933cf138bbSGeorge V. Neville-Neil 
694b6d90eb7SKip Macy static int
695b6d90eb7SKip Macy cxgb_controller_detach(device_t dev)
696b6d90eb7SKip Macy {
697b6d90eb7SKip Macy 	struct adapter *sc;
698b6d90eb7SKip Macy 
699b6d90eb7SKip Macy 	sc = device_get_softc(dev);
700b6d90eb7SKip Macy 
701b6d90eb7SKip Macy 	cxgb_free(sc);
702b6d90eb7SKip Macy 
703b6d90eb7SKip Macy 	return (0);
704b6d90eb7SKip Macy }
705b6d90eb7SKip Macy 
7063cf138bbSGeorge V. Neville-Neil /*
7073cf138bbSGeorge V. Neville-Neil  * The cxgb_free() is called by the cxgb_controller_detach() routine
7083cf138bbSGeorge V. Neville-Neil  * to tear down the structures that were built up in
7093cf138bbSGeorge V. Neville-Neil  * cxgb_controller_attach(), and should be the final piece of work
710c2009a4cSGeorge V. Neville-Neil  * done when fully unloading the driver.
7113cf138bbSGeorge V. Neville-Neil  *
7123cf138bbSGeorge V. Neville-Neil  *
7133cf138bbSGeorge V. Neville-Neil  *  1. Shutting down the threads started by the cxgb_controller_attach()
7143cf138bbSGeorge V. Neville-Neil  *     routine.
7153cf138bbSGeorge V. Neville-Neil  *  2. Stopping the lower level device and all callouts (cxgb_down_locked()).
7163cf138bbSGeorge V. Neville-Neil  *  3. Detaching all of the port devices created during the
7173cf138bbSGeorge V. Neville-Neil  *     cxgb_controller_attach() routine.
7183cf138bbSGeorge V. Neville-Neil  *  4. Removing the device children created via cxgb_controller_attach().
719e3503bc9SGeorge V. Neville-Neil  *  5. Releasing PCI resources associated with the device.
7203cf138bbSGeorge V. Neville-Neil  *  6. Turning off the offload support, iff it was turned on.
7213cf138bbSGeorge V. Neville-Neil  *  7. Destroying the mutexes created in cxgb_controller_attach().
7223cf138bbSGeorge V. Neville-Neil  *
7233cf138bbSGeorge V. Neville-Neil  */
724b6d90eb7SKip Macy static void
725b6d90eb7SKip Macy cxgb_free(struct adapter *sc)
726b6d90eb7SKip Macy {
7277eeb16ceSNavdeep Parhar 	int i, nqsets = 0;
728b6d90eb7SKip Macy 
7298e10660fSKip Macy 	ADAPTER_LOCK(sc);
7308e10660fSKip Macy 	sc->flags |= CXGB_SHUTDOWN;
7318e10660fSKip Macy 	ADAPTER_UNLOCK(sc);
7328e10660fSKip Macy 
7333cf138bbSGeorge V. Neville-Neil 	/*
7343f345a5dSKip Macy 	 * Make sure all child devices are gone.
7353cf138bbSGeorge V. Neville-Neil 	 */
7363cf138bbSGeorge V. Neville-Neil 	bus_generic_detach(sc->dev);
7373cf138bbSGeorge V. Neville-Neil 	for (i = 0; i < (sc)->params.nports; i++) {
738c2009a4cSGeorge V. Neville-Neil 		if (sc->portdev[i] &&
739c2009a4cSGeorge V. Neville-Neil 		    device_delete_child(sc->dev, sc->portdev[i]) != 0)
7403cf138bbSGeorge V. Neville-Neil 			device_printf(sc->dev, "failed to delete child port\n");
7417eeb16ceSNavdeep Parhar 		nqsets += sc->port[i].nqsets;
7423cf138bbSGeorge V. Neville-Neil 	}
743d722cab4SKip Macy 
7443f345a5dSKip Macy 	/*
7453f345a5dSKip Macy 	 * At this point, it is as if cxgb_port_detach has run on all ports, and
7463f345a5dSKip Macy 	 * cxgb_down has run on the adapter.  All interrupts have been silenced,
7473f345a5dSKip Macy 	 * all open devices have been closed.
7483f345a5dSKip Macy 	 */
7493f345a5dSKip Macy 	KASSERT(sc->open_device_map == 0, ("%s: device(s) still open (%x)",
7503f345a5dSKip Macy 					   __func__, sc->open_device_map));
7513f345a5dSKip Macy 	for (i = 0; i < sc->params.nports; i++) {
7523f345a5dSKip Macy 		KASSERT(sc->port[i].ifp == NULL, ("%s: port %i undead!",
7533f345a5dSKip Macy 						  __func__, i));
7543f345a5dSKip Macy 	}
755e3503bc9SGeorge V. Neville-Neil 
7563f345a5dSKip Macy 	/*
7573f345a5dSKip Macy 	 * Finish off the adapter's callouts.
7583f345a5dSKip Macy 	 */
7593f345a5dSKip Macy 	callout_drain(&sc->cxgb_tick_ch);
7603f345a5dSKip Macy 	callout_drain(&sc->sge_timer_ch);
7613f345a5dSKip Macy 
7623f345a5dSKip Macy 	/*
7633f345a5dSKip Macy 	 * Release resources grabbed under FULL_INIT_DONE by cxgb_up.  The
7643f345a5dSKip Macy 	 * sysctls are cleaned up by the kernel linker.
7653f345a5dSKip Macy 	 */
7663f345a5dSKip Macy 	if (sc->flags & FULL_INIT_DONE) {
7677eeb16ceSNavdeep Parhar  		t3_free_sge_resources(sc, nqsets);
7683f345a5dSKip Macy  		sc->flags &= ~FULL_INIT_DONE;
7693f345a5dSKip Macy  	}
7703f345a5dSKip Macy 
7713f345a5dSKip Macy 	/*
7723f345a5dSKip Macy 	 * Release all interrupt resources.
7733f345a5dSKip Macy 	 */
7743f345a5dSKip Macy 	cxgb_teardown_interrupts(sc);
775d722cab4SKip Macy 	if (sc->flags & (USING_MSI | USING_MSIX)) {
776d722cab4SKip Macy 		device_printf(sc->dev, "releasing msi message(s)\n");
777d722cab4SKip Macy 		pci_release_msi(sc->dev);
778d722cab4SKip Macy 	} else {
779d722cab4SKip Macy 		device_printf(sc->dev, "no msi message to release\n");
780d722cab4SKip Macy 	}
781e3503bc9SGeorge V. Neville-Neil 
782d722cab4SKip Macy 	if (sc->msix_regs_res != NULL) {
783d722cab4SKip Macy 		bus_release_resource(sc->dev, SYS_RES_MEMORY, sc->msix_regs_rid,
784d722cab4SKip Macy 		    sc->msix_regs_res);
785d722cab4SKip Macy 	}
786d722cab4SKip Macy 
7873f345a5dSKip Macy 	/*
7883f345a5dSKip Macy 	 * Free the adapter's taskqueue.
7893f345a5dSKip Macy 	 */
7908e10660fSKip Macy 	if (sc->tq != NULL) {
7917ac2e6c3SKip Macy 		taskqueue_free(sc->tq);
7928e10660fSKip Macy 		sc->tq = NULL;
7938e10660fSKip Macy 	}
7948e10660fSKip Macy 
795ac3a6d9cSKip Macy 	free(sc->filters, M_DEVBUF);
796b6d90eb7SKip Macy 	t3_sge_free(sc);
797b6d90eb7SKip Macy 
7988e10660fSKip Macy 	if (sc->udbs_res != NULL)
7998e10660fSKip Macy 		bus_release_resource(sc->dev, SYS_RES_MEMORY, sc->udbs_rid,
8008e10660fSKip Macy 		    sc->udbs_res);
8018e10660fSKip Macy 
802b6d90eb7SKip Macy 	if (sc->regs_res != NULL)
803b6d90eb7SKip Macy 		bus_release_resource(sc->dev, SYS_RES_MEMORY, sc->regs_rid,
804b6d90eb7SKip Macy 		    sc->regs_res);
805b6d90eb7SKip Macy 
806bb38cd2fSKip Macy 	MTX_DESTROY(&sc->mdio_lock);
807bb38cd2fSKip Macy 	MTX_DESTROY(&sc->sge.reg_lock);
808bb38cd2fSKip Macy 	MTX_DESTROY(&sc->elmer_lock);
80909fe6320SNavdeep Parhar 	mtx_lock(&t3_list_lock);
81009fe6320SNavdeep Parhar 	SLIST_REMOVE(&t3_list, sc, adapter, link);
81109fe6320SNavdeep Parhar 	mtx_unlock(&t3_list_lock);
812bb38cd2fSKip Macy 	ADAPTER_LOCK_DEINIT(sc);
813b6d90eb7SKip Macy }
814b6d90eb7SKip Macy 
815b6d90eb7SKip Macy /**
816b6d90eb7SKip Macy  *	setup_sge_qsets - configure SGE Tx/Rx/response queues
817b6d90eb7SKip Macy  *	@sc: the controller softc
818b6d90eb7SKip Macy  *
819b6d90eb7SKip Macy  *	Determines how many sets of SGE queues to use and initializes them.
820b6d90eb7SKip Macy  *	We support multiple queue sets per port if we have MSI-X, otherwise
821b6d90eb7SKip Macy  *	just one queue set per port.
822b6d90eb7SKip Macy  */
823b6d90eb7SKip Macy static int
824b6d90eb7SKip Macy setup_sge_qsets(adapter_t *sc)
825b6d90eb7SKip Macy {
8265c5df3daSKip Macy 	int i, j, err, irq_idx = 0, qset_idx = 0;
827d722cab4SKip Macy 	u_int ntxq = SGE_TXQ_PER_SET;
828b6d90eb7SKip Macy 
829b6d90eb7SKip Macy 	if ((err = t3_sge_alloc(sc)) != 0) {
830693d746cSKip Macy 		device_printf(sc->dev, "t3_sge_alloc returned %d\n", err);
831b6d90eb7SKip Macy 		return (err);
832b6d90eb7SKip Macy 	}
833b6d90eb7SKip Macy 
834b6d90eb7SKip Macy 	if (sc->params.rev > 0 && !(sc->flags & USING_MSI))
835b6d90eb7SKip Macy 		irq_idx = -1;
836b6d90eb7SKip Macy 
8375c5df3daSKip Macy 	for (i = 0; i < (sc)->params.nports; i++) {
838b6d90eb7SKip Macy 		struct port_info *pi = &sc->port[i];
839b6d90eb7SKip Macy 
8407ac2e6c3SKip Macy 		for (j = 0; j < pi->nqsets; j++, qset_idx++) {
841693d746cSKip Macy 			err = t3_sge_alloc_qset(sc, qset_idx, (sc)->params.nports,
842b6d90eb7SKip Macy 			    (sc->flags & USING_MSIX) ? qset_idx + 1 : irq_idx,
843b6d90eb7SKip Macy 			    &sc->params.sge.qset[qset_idx], ntxq, pi);
844b6d90eb7SKip Macy 			if (err) {
8457eeb16ceSNavdeep Parhar 				t3_free_sge_resources(sc, qset_idx);
8467eeb16ceSNavdeep Parhar 				device_printf(sc->dev,
8477eeb16ceSNavdeep Parhar 				    "t3_sge_alloc_qset failed with %d\n", err);
848b6d90eb7SKip Macy 				return (err);
849b6d90eb7SKip Macy 			}
850b6d90eb7SKip Macy 		}
851b6d90eb7SKip Macy 	}
852b6d90eb7SKip Macy 
853b6d90eb7SKip Macy 	return (0);
854b6d90eb7SKip Macy }
855b6d90eb7SKip Macy 
856ef72318fSKip Macy static void
857e3503bc9SGeorge V. Neville-Neil cxgb_teardown_interrupts(adapter_t *sc)
858ef72318fSKip Macy {
859e3503bc9SGeorge V. Neville-Neil 	int i;
860ef72318fSKip Macy 
861e3503bc9SGeorge V. Neville-Neil 	for (i = 0; i < SGE_QSETS; i++) {
862e3503bc9SGeorge V. Neville-Neil 		if (sc->msix_intr_tag[i] == NULL) {
863ef72318fSKip Macy 
864e3503bc9SGeorge V. Neville-Neil 			/* Should have been setup fully or not at all */
865e3503bc9SGeorge V. Neville-Neil 			KASSERT(sc->msix_irq_res[i] == NULL &&
866e3503bc9SGeorge V. Neville-Neil 				sc->msix_irq_rid[i] == 0,
867e3503bc9SGeorge V. Neville-Neil 				("%s: half-done interrupt (%d).", __func__, i));
868e3503bc9SGeorge V. Neville-Neil 
869e3503bc9SGeorge V. Neville-Neil 			continue;
870e3503bc9SGeorge V. Neville-Neil 		}
871e3503bc9SGeorge V. Neville-Neil 
872ef72318fSKip Macy 		bus_teardown_intr(sc->dev, sc->msix_irq_res[i],
873ef72318fSKip Macy 				  sc->msix_intr_tag[i]);
874e3503bc9SGeorge V. Neville-Neil 		bus_release_resource(sc->dev, SYS_RES_IRQ, sc->msix_irq_rid[i],
875e3503bc9SGeorge V. Neville-Neil 				     sc->msix_irq_res[i]);
876e3503bc9SGeorge V. Neville-Neil 
877e3503bc9SGeorge V. Neville-Neil 		sc->msix_irq_res[i] = sc->msix_intr_tag[i] = NULL;
878e3503bc9SGeorge V. Neville-Neil 		sc->msix_irq_rid[i] = 0;
879ef72318fSKip Macy 	}
880e3503bc9SGeorge V. Neville-Neil 
881e3503bc9SGeorge V. Neville-Neil 	if (sc->intr_tag) {
882e3503bc9SGeorge V. Neville-Neil 		KASSERT(sc->irq_res != NULL,
883e3503bc9SGeorge V. Neville-Neil 			("%s: half-done interrupt.", __func__));
884e3503bc9SGeorge V. Neville-Neil 
885e3503bc9SGeorge V. Neville-Neil 		bus_teardown_intr(sc->dev, sc->irq_res, sc->intr_tag);
886e3503bc9SGeorge V. Neville-Neil 		bus_release_resource(sc->dev, SYS_RES_IRQ, sc->irq_rid,
887e3503bc9SGeorge V. Neville-Neil 				     sc->irq_res);
888e3503bc9SGeorge V. Neville-Neil 
889e3503bc9SGeorge V. Neville-Neil 		sc->irq_res = sc->intr_tag = NULL;
890e3503bc9SGeorge V. Neville-Neil 		sc->irq_rid = 0;
891ef72318fSKip Macy 	}
892ef72318fSKip Macy }
893ef72318fSKip Macy 
894b6d90eb7SKip Macy static int
895e3503bc9SGeorge V. Neville-Neil cxgb_setup_interrupts(adapter_t *sc)
896b6d90eb7SKip Macy {
897e3503bc9SGeorge V. Neville-Neil 	struct resource *res;
898e3503bc9SGeorge V. Neville-Neil 	void *tag;
899e3503bc9SGeorge V. Neville-Neil 	int i, rid, err, intr_flag = sc->flags & (USING_MSI | USING_MSIX);
900b6d90eb7SKip Macy 
901e3503bc9SGeorge V. Neville-Neil 	sc->irq_rid = intr_flag ? 1 : 0;
902e3503bc9SGeorge V. Neville-Neil 	sc->irq_res = bus_alloc_resource_any(sc->dev, SYS_RES_IRQ, &sc->irq_rid,
903e3503bc9SGeorge V. Neville-Neil 					     RF_SHAREABLE | RF_ACTIVE);
904e3503bc9SGeorge V. Neville-Neil 	if (sc->irq_res == NULL) {
905e3503bc9SGeorge V. Neville-Neil 		device_printf(sc->dev, "Cannot allocate interrupt (%x, %u)\n",
906e3503bc9SGeorge V. Neville-Neil 			      intr_flag, sc->irq_rid);
907e3503bc9SGeorge V. Neville-Neil 		err = EINVAL;
908e3503bc9SGeorge V. Neville-Neil 		sc->irq_rid = 0;
909e3503bc9SGeorge V. Neville-Neil 	} else {
910e3503bc9SGeorge V. Neville-Neil 		err = bus_setup_intr(sc->dev, sc->irq_res,
911e83ec3e5SNavdeep Parhar 		    INTR_MPSAFE | INTR_TYPE_NET, NULL,
912e3503bc9SGeorge V. Neville-Neil 		    sc->cxgb_intr, sc, &sc->intr_tag);
913a02573bcSKip Macy 
914e3503bc9SGeorge V. Neville-Neil 		if (err) {
915e3503bc9SGeorge V. Neville-Neil 			device_printf(sc->dev,
916e3503bc9SGeorge V. Neville-Neil 				      "Cannot set up interrupt (%x, %u, %d)\n",
917e3503bc9SGeorge V. Neville-Neil 				      intr_flag, sc->irq_rid, err);
918e3503bc9SGeorge V. Neville-Neil 			bus_release_resource(sc->dev, SYS_RES_IRQ, sc->irq_rid,
919e3503bc9SGeorge V. Neville-Neil 					     sc->irq_res);
920e3503bc9SGeorge V. Neville-Neil 			sc->irq_res = sc->intr_tag = NULL;
921e3503bc9SGeorge V. Neville-Neil 			sc->irq_rid = 0;
922b6d90eb7SKip Macy 		}
923b6d90eb7SKip Macy 	}
924693d746cSKip Macy 
925e3503bc9SGeorge V. Neville-Neil 	/* That's all for INTx or MSI */
926e3503bc9SGeorge V. Neville-Neil 	if (!(intr_flag & USING_MSIX) || err)
927e3503bc9SGeorge V. Neville-Neil 		return (err);
928e3503bc9SGeorge V. Neville-Neil 
929ec9a9cf1SJohn Baldwin 	bus_describe_intr(sc->dev, sc->irq_res, sc->intr_tag, "err");
930e3503bc9SGeorge V. Neville-Neil 	for (i = 0; i < sc->msi_count - 1; i++) {
931e3503bc9SGeorge V. Neville-Neil 		rid = i + 2;
932e3503bc9SGeorge V. Neville-Neil 		res = bus_alloc_resource_any(sc->dev, SYS_RES_IRQ, &rid,
933e3503bc9SGeorge V. Neville-Neil 					     RF_SHAREABLE | RF_ACTIVE);
934e3503bc9SGeorge V. Neville-Neil 		if (res == NULL) {
935e3503bc9SGeorge V. Neville-Neil 			device_printf(sc->dev, "Cannot allocate interrupt "
936e3503bc9SGeorge V. Neville-Neil 				      "for message %d\n", rid);
937e3503bc9SGeorge V. Neville-Neil 			err = EINVAL;
938e3503bc9SGeorge V. Neville-Neil 			break;
939b6d90eb7SKip Macy 		}
940b6d90eb7SKip Macy 
941e3503bc9SGeorge V. Neville-Neil 		err = bus_setup_intr(sc->dev, res, INTR_MPSAFE | INTR_TYPE_NET,
942e83ec3e5SNavdeep Parhar 				     NULL, t3_intr_msix, &sc->sge.qs[i], &tag);
943e3503bc9SGeorge V. Neville-Neil 		if (err) {
944e3503bc9SGeorge V. Neville-Neil 			device_printf(sc->dev, "Cannot set up interrupt "
945e3503bc9SGeorge V. Neville-Neil 				      "for message %d (%d)\n", rid, err);
946e3503bc9SGeorge V. Neville-Neil 			bus_release_resource(sc->dev, SYS_RES_IRQ, rid, res);
947e3503bc9SGeorge V. Neville-Neil 			break;
948e3503bc9SGeorge V. Neville-Neil 		}
949e3503bc9SGeorge V. Neville-Neil 
950e3503bc9SGeorge V. Neville-Neil 		sc->msix_irq_rid[i] = rid;
951e3503bc9SGeorge V. Neville-Neil 		sc->msix_irq_res[i] = res;
952e3503bc9SGeorge V. Neville-Neil 		sc->msix_intr_tag[i] = tag;
953ec9a9cf1SJohn Baldwin 		bus_describe_intr(sc->dev, res, tag, "qs%d", i);
954e3503bc9SGeorge V. Neville-Neil 	}
955e3503bc9SGeorge V. Neville-Neil 
956e3503bc9SGeorge V. Neville-Neil 	if (err)
957e3503bc9SGeorge V. Neville-Neil 		cxgb_teardown_interrupts(sc);
958e3503bc9SGeorge V. Neville-Neil 
959e3503bc9SGeorge V. Neville-Neil 	return (err);
960e3503bc9SGeorge V. Neville-Neil }
961e3503bc9SGeorge V. Neville-Neil 
962e3503bc9SGeorge V. Neville-Neil 
963b6d90eb7SKip Macy static int
964b6d90eb7SKip Macy cxgb_port_probe(device_t dev)
965b6d90eb7SKip Macy {
966b6d90eb7SKip Macy 	struct port_info *p;
967b6d90eb7SKip Macy 	char buf[80];
9688e10660fSKip Macy 	const char *desc;
969b6d90eb7SKip Macy 
970b6d90eb7SKip Macy 	p = device_get_softc(dev);
9718e10660fSKip Macy 	desc = p->phy.desc;
9728e10660fSKip Macy 	snprintf(buf, sizeof(buf), "Port %d %s", p->port_id, desc);
973b6d90eb7SKip Macy 	device_set_desc_copy(dev, buf);
974b6d90eb7SKip Macy 	return (0);
975b6d90eb7SKip Macy }
976b6d90eb7SKip Macy 
977b6d90eb7SKip Macy 
978b6d90eb7SKip Macy static int
979b6d90eb7SKip Macy cxgb_makedev(struct port_info *pi)
980b6d90eb7SKip Macy {
981b6d90eb7SKip Macy 
982ef72318fSKip Macy 	pi->port_cdev = make_dev(&cxgb_cdevsw, pi->ifp->if_dunit,
98306eace63SNavdeep Parhar 	    UID_ROOT, GID_WHEEL, 0600, "%s", if_name(pi->ifp));
984b6d90eb7SKip Macy 
985b6d90eb7SKip Macy 	if (pi->port_cdev == NULL)
986b6d90eb7SKip Macy 		return (ENOMEM);
987b6d90eb7SKip Macy 
988b6d90eb7SKip Macy 	pi->port_cdev->si_drv1 = (void *)pi;
989b6d90eb7SKip Macy 
990b6d90eb7SKip Macy 	return (0);
991b6d90eb7SKip Macy }
992b6d90eb7SKip Macy 
993e83ec3e5SNavdeep Parhar #define CXGB_CAP (IFCAP_VLAN_HWTAGGING | IFCAP_VLAN_MTU | IFCAP_HWCSUM | \
994f9c6e164SNavdeep Parhar     IFCAP_VLAN_HWCSUM | IFCAP_TSO | IFCAP_JUMBO_MTU | IFCAP_LRO | \
9950a704909SNavdeep Parhar     IFCAP_VLAN_HWTSO | IFCAP_LINKSTATE | IFCAP_HWCSUM_IPV6)
9963e7cc3caSNavdeep Parhar #define CXGB_CAP_ENABLE CXGB_CAP
997b6d90eb7SKip Macy 
998b6d90eb7SKip Macy static int
999b6d90eb7SKip Macy cxgb_port_attach(device_t dev)
1000b6d90eb7SKip Macy {
1001b6d90eb7SKip Macy 	struct port_info *p;
1002b6d90eb7SKip Macy 	struct ifnet *ifp;
10032975f787SNavdeep Parhar 	int err;
10048e10660fSKip Macy 	struct adapter *sc;
10058e10660fSKip Macy 
1006b6d90eb7SKip Macy 	p = device_get_softc(dev);
10078e10660fSKip Macy 	sc = p->adapter;
1008bb38cd2fSKip Macy 	snprintf(p->lockbuf, PORT_NAME_LEN, "cxgb port lock %d:%d",
10096b68e276SKip Macy 	    device_get_unit(device_get_parent(dev)), p->port_id);
1010bb38cd2fSKip Macy 	PORT_LOCK_INIT(p, p->lockbuf);
1011b6d90eb7SKip Macy 
1012bd1a9fbaSNavdeep Parhar 	callout_init(&p->link_check_ch, CALLOUT_MPSAFE);
1013bd1a9fbaSNavdeep Parhar 	TASK_INIT(&p->link_check_task, 0, check_link_status, p);
1014bd1a9fbaSNavdeep Parhar 
1015b6d90eb7SKip Macy 	/* Allocate an ifnet object and set it up */
1016b6d90eb7SKip Macy 	ifp = p->ifp = if_alloc(IFT_ETHER);
1017b6d90eb7SKip Macy 	if (ifp == NULL) {
1018b6d90eb7SKip Macy 		device_printf(dev, "Cannot allocate ifnet\n");
1019b6d90eb7SKip Macy 		return (ENOMEM);
1020b6d90eb7SKip Macy 	}
1021b6d90eb7SKip Macy 
1022b6d90eb7SKip Macy 	if_initname(ifp, device_get_name(dev), device_get_unit(dev));
1023b6d90eb7SKip Macy 	ifp->if_init = cxgb_init;
1024b6d90eb7SKip Macy 	ifp->if_softc = p;
1025b6d90eb7SKip Macy 	ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST;
1026b6d90eb7SKip Macy 	ifp->if_ioctl = cxgb_ioctl;
102765d43cc6SNavdeep Parhar 	ifp->if_transmit = cxgb_transmit;
102865d43cc6SNavdeep Parhar 	ifp->if_qflush = cxgb_qflush;
1029b6d90eb7SKip Macy 
1030e83ec3e5SNavdeep Parhar 	ifp->if_capabilities = CXGB_CAP;
103109fe6320SNavdeep Parhar #ifdef TCP_OFFLOAD
103209fe6320SNavdeep Parhar 	if (is_offload(sc))
103309fe6320SNavdeep Parhar 		ifp->if_capabilities |= IFCAP_TOE4;
103409fe6320SNavdeep Parhar #endif
1035e83ec3e5SNavdeep Parhar 	ifp->if_capenable = CXGB_CAP_ENABLE;
10360a704909SNavdeep Parhar 	ifp->if_hwassist = CSUM_TCP | CSUM_UDP | CSUM_IP | CSUM_TSO |
10370a704909SNavdeep Parhar 	    CSUM_UDP_IPV6 | CSUM_TCP_IPV6;
1038e83ec3e5SNavdeep Parhar 
1039ac3a6d9cSKip Macy 	/*
1040e83ec3e5SNavdeep Parhar 	 * Disable TSO on 4-port - it isn't supported by the firmware.
1041ac3a6d9cSKip Macy 	 */
1042e83ec3e5SNavdeep Parhar 	if (sc->params.nports > 2) {
1043f9c6e164SNavdeep Parhar 		ifp->if_capabilities &= ~(IFCAP_TSO | IFCAP_VLAN_HWTSO);
1044f9c6e164SNavdeep Parhar 		ifp->if_capenable &= ~(IFCAP_TSO | IFCAP_VLAN_HWTSO);
1045ac3a6d9cSKip Macy 		ifp->if_hwassist &= ~CSUM_TSO;
1046ac3a6d9cSKip Macy 	}
1047b6d90eb7SKip Macy 
1048b6d90eb7SKip Macy 	ether_ifattach(ifp, p->hw_addr);
10493cf138bbSGeorge V. Neville-Neil 
1050e83ec3e5SNavdeep Parhar #ifdef DEFAULT_JUMBO
1051e83ec3e5SNavdeep Parhar 	if (sc->params.nports <= 2)
10524af83c8cSKip Macy 		ifp->if_mtu = ETHERMTU_JUMBO;
1053e83ec3e5SNavdeep Parhar #endif
1054b6d90eb7SKip Macy 	if ((err = cxgb_makedev(p)) != 0) {
1055b6d90eb7SKip Macy 		printf("makedev failed %d\n", err);
1056b6d90eb7SKip Macy 		return (err);
1057b6d90eb7SKip Macy 	}
10582975f787SNavdeep Parhar 
10592975f787SNavdeep Parhar 	/* Create a list of media supported by this port */
1060b6d90eb7SKip Macy 	ifmedia_init(&p->media, IFM_IMASK, cxgb_media_change,
1061b6d90eb7SKip Macy 	    cxgb_media_status);
10622975f787SNavdeep Parhar 	cxgb_build_medialist(p);
1063ef72318fSKip Macy 
1064ef72318fSKip Macy 	t3_sge_init_port(p);
1065f2d8ff04SGeorge V. Neville-Neil 
10663cf138bbSGeorge V. Neville-Neil 	return (err);
1067b6d90eb7SKip Macy }
1068b6d90eb7SKip Macy 
10693cf138bbSGeorge V. Neville-Neil /*
10703cf138bbSGeorge V. Neville-Neil  * cxgb_port_detach() is called via the device_detach methods when
10713cf138bbSGeorge V. Neville-Neil  * cxgb_free() calls the bus_generic_detach.  It is responsible for
10723cf138bbSGeorge V. Neville-Neil  * removing the device from the view of the kernel, i.e. from all
10733cf138bbSGeorge V. Neville-Neil  * interfaces lists etc.  This routine is only called when the driver is
10743cf138bbSGeorge V. Neville-Neil  * being unloaded, not when the link goes down.
10753cf138bbSGeorge V. Neville-Neil  */
1076b6d90eb7SKip Macy static int
1077b6d90eb7SKip Macy cxgb_port_detach(device_t dev)
1078b6d90eb7SKip Macy {
1079b6d90eb7SKip Macy 	struct port_info *p;
10803cf138bbSGeorge V. Neville-Neil 	struct adapter *sc;
10813f345a5dSKip Macy 	int i;
1082b6d90eb7SKip Macy 
1083b6d90eb7SKip Macy 	p = device_get_softc(dev);
10843cf138bbSGeorge V. Neville-Neil 	sc = p->adapter;
10853cf138bbSGeorge V. Neville-Neil 
1086b302b77cSNavdeep Parhar 	/* Tell cxgb_ioctl and if_init that the port is going away */
1087b302b77cSNavdeep Parhar 	ADAPTER_LOCK(sc);
1088b302b77cSNavdeep Parhar 	SET_DOOMED(p);
1089b302b77cSNavdeep Parhar 	wakeup(&sc->flags);
1090b302b77cSNavdeep Parhar 	while (IS_BUSY(sc))
1091b302b77cSNavdeep Parhar 		mtx_sleep(&sc->flags, &sc->lock, 0, "cxgbdtch", 0);
1092b302b77cSNavdeep Parhar 	SET_BUSY(sc);
1093b302b77cSNavdeep Parhar 	ADAPTER_UNLOCK(sc);
10943f345a5dSKip Macy 
10953cf138bbSGeorge V. Neville-Neil 	if (p->port_cdev != NULL)
10963cf138bbSGeorge V. Neville-Neil 		destroy_dev(p->port_cdev);
10973cf138bbSGeorge V. Neville-Neil 
10983f345a5dSKip Macy 	cxgb_uninit_synchronized(p);
10993cf138bbSGeorge V. Neville-Neil 	ether_ifdetach(p->ifp);
1100d722cab4SKip Macy 
11013f345a5dSKip Macy 	for (i = p->first_qset; i < p->first_qset + p->nqsets; i++) {
11023f345a5dSKip Macy 		struct sge_qset *qs = &sc->sge.qs[i];
11033f345a5dSKip Macy 		struct sge_txq *txq = &qs->txq[TXQ_ETH];
1104d722cab4SKip Macy 
11053f345a5dSKip Macy 		callout_drain(&txq->txq_watchdog);
11063f345a5dSKip Macy 		callout_drain(&txq->txq_timer);
11073cf138bbSGeorge V. Neville-Neil 	}
11083cf138bbSGeorge V. Neville-Neil 
11097ac2e6c3SKip Macy 	PORT_LOCK_DEINIT(p);
1110b6d90eb7SKip Macy 	if_free(p->ifp);
11113f345a5dSKip Macy 	p->ifp = NULL;
1112b6d90eb7SKip Macy 
1113b302b77cSNavdeep Parhar 	ADAPTER_LOCK(sc);
1114b302b77cSNavdeep Parhar 	CLR_BUSY(sc);
1115b302b77cSNavdeep Parhar 	wakeup_one(&sc->flags);
1116b302b77cSNavdeep Parhar 	ADAPTER_UNLOCK(sc);
1117b6d90eb7SKip Macy 	return (0);
1118b6d90eb7SKip Macy }
1119b6d90eb7SKip Macy 
1120b6d90eb7SKip Macy void
1121b6d90eb7SKip Macy t3_fatal_err(struct adapter *sc)
1122b6d90eb7SKip Macy {
1123b6d90eb7SKip Macy 	u_int fw_status[4];
1124b6d90eb7SKip Macy 
11255c5df3daSKip Macy 	if (sc->flags & FULL_INIT_DONE) {
11265c5df3daSKip Macy 		t3_sge_stop(sc);
11275c5df3daSKip Macy 		t3_write_reg(sc, A_XGM_TX_CTRL, 0);
11285c5df3daSKip Macy 		t3_write_reg(sc, A_XGM_RX_CTRL, 0);
11295c5df3daSKip Macy 		t3_write_reg(sc, XGM_REG(A_XGM_TX_CTRL, 1), 0);
11305c5df3daSKip Macy 		t3_write_reg(sc, XGM_REG(A_XGM_RX_CTRL, 1), 0);
11315c5df3daSKip Macy 		t3_intr_disable(sc);
11325c5df3daSKip Macy 	}
1133b6d90eb7SKip Macy 	device_printf(sc->dev,"encountered fatal error, operation suspended\n");
1134b6d90eb7SKip Macy 	if (!t3_cim_ctl_blk_read(sc, 0xa0, 4, fw_status))
1135b6d90eb7SKip Macy 		device_printf(sc->dev, "FW_ status: 0x%x, 0x%x, 0x%x, 0x%x\n",
1136b6d90eb7SKip Macy 		    fw_status[0], fw_status[1], fw_status[2], fw_status[3]);
1137b6d90eb7SKip Macy }
1138b6d90eb7SKip Macy 
1139b6d90eb7SKip Macy int
1140b6d90eb7SKip Macy t3_os_find_pci_capability(adapter_t *sc, int cap)
1141b6d90eb7SKip Macy {
1142b6d90eb7SKip Macy 	device_t dev;
1143b6d90eb7SKip Macy 	struct pci_devinfo *dinfo;
1144b6d90eb7SKip Macy 	pcicfgregs *cfg;
1145b6d90eb7SKip Macy 	uint32_t status;
1146b6d90eb7SKip Macy 	uint8_t ptr;
1147b6d90eb7SKip Macy 
1148b6d90eb7SKip Macy 	dev = sc->dev;
1149b6d90eb7SKip Macy 	dinfo = device_get_ivars(dev);
1150b6d90eb7SKip Macy 	cfg = &dinfo->cfg;
1151b6d90eb7SKip Macy 
1152b6d90eb7SKip Macy 	status = pci_read_config(dev, PCIR_STATUS, 2);
1153b6d90eb7SKip Macy 	if (!(status & PCIM_STATUS_CAPPRESENT))
1154b6d90eb7SKip Macy 		return (0);
1155b6d90eb7SKip Macy 
1156b6d90eb7SKip Macy 	switch (cfg->hdrtype & PCIM_HDRTYPE) {
1157b6d90eb7SKip Macy 	case 0:
1158b6d90eb7SKip Macy 	case 1:
1159b6d90eb7SKip Macy 		ptr = PCIR_CAP_PTR;
1160b6d90eb7SKip Macy 		break;
1161b6d90eb7SKip Macy 	case 2:
1162b6d90eb7SKip Macy 		ptr = PCIR_CAP_PTR_2;
1163b6d90eb7SKip Macy 		break;
1164b6d90eb7SKip Macy 	default:
1165b6d90eb7SKip Macy 		return (0);
1166b6d90eb7SKip Macy 		break;
1167b6d90eb7SKip Macy 	}
1168b6d90eb7SKip Macy 	ptr = pci_read_config(dev, ptr, 1);
1169b6d90eb7SKip Macy 
1170b6d90eb7SKip Macy 	while (ptr != 0) {
1171b6d90eb7SKip Macy 		if (pci_read_config(dev, ptr + PCICAP_ID, 1) == cap)
1172b6d90eb7SKip Macy 			return (ptr);
1173b6d90eb7SKip Macy 		ptr = pci_read_config(dev, ptr + PCICAP_NEXTPTR, 1);
1174b6d90eb7SKip Macy 	}
1175b6d90eb7SKip Macy 
1176b6d90eb7SKip Macy 	return (0);
1177b6d90eb7SKip Macy }
1178b6d90eb7SKip Macy 
1179b6d90eb7SKip Macy int
1180b6d90eb7SKip Macy t3_os_pci_save_state(struct adapter *sc)
1181b6d90eb7SKip Macy {
1182b6d90eb7SKip Macy 	device_t dev;
1183b6d90eb7SKip Macy 	struct pci_devinfo *dinfo;
1184b6d90eb7SKip Macy 
1185b6d90eb7SKip Macy 	dev = sc->dev;
1186b6d90eb7SKip Macy 	dinfo = device_get_ivars(dev);
1187b6d90eb7SKip Macy 
1188b6d90eb7SKip Macy 	pci_cfg_save(dev, dinfo, 0);
1189b6d90eb7SKip Macy 	return (0);
1190b6d90eb7SKip Macy }
1191b6d90eb7SKip Macy 
1192b6d90eb7SKip Macy int
1193b6d90eb7SKip Macy t3_os_pci_restore_state(struct adapter *sc)
1194b6d90eb7SKip Macy {
1195b6d90eb7SKip Macy 	device_t dev;
1196b6d90eb7SKip Macy 	struct pci_devinfo *dinfo;
1197b6d90eb7SKip Macy 
1198b6d90eb7SKip Macy 	dev = sc->dev;
1199b6d90eb7SKip Macy 	dinfo = device_get_ivars(dev);
1200b6d90eb7SKip Macy 
1201b6d90eb7SKip Macy 	pci_cfg_restore(dev, dinfo);
1202b6d90eb7SKip Macy 	return (0);
1203b6d90eb7SKip Macy }
1204b6d90eb7SKip Macy 
1205b6d90eb7SKip Macy /**
1206b6d90eb7SKip Macy  *	t3_os_link_changed - handle link status changes
1207c01f2b83SNavdeep Parhar  *	@sc: the adapter associated with the link change
1208c01f2b83SNavdeep Parhar  *	@port_id: the port index whose link status has changed
120919905d6dSKip Macy  *	@link_status: the new status of the link
1210b6d90eb7SKip Macy  *	@speed: the new speed setting
1211b6d90eb7SKip Macy  *	@duplex: the new duplex setting
1212b6d90eb7SKip Macy  *	@fc: the new flow-control setting
1213b6d90eb7SKip Macy  *
1214b6d90eb7SKip Macy  *	This is the OS-dependent handler for link status changes.  The OS
1215b6d90eb7SKip Macy  *	neutral handler takes care of most of the processing for these events,
1216b6d90eb7SKip Macy  *	then calls this handler for any OS-specific processing.
1217b6d90eb7SKip Macy  */
1218b6d90eb7SKip Macy void
1219b6d90eb7SKip Macy t3_os_link_changed(adapter_t *adapter, int port_id, int link_status, int speed,
1220c01f2b83SNavdeep Parhar      int duplex, int fc, int mac_was_reset)
1221b6d90eb7SKip Macy {
1222b6d90eb7SKip Macy 	struct port_info *pi = &adapter->port[port_id];
12233f345a5dSKip Macy 	struct ifnet *ifp = pi->ifp;
12243f345a5dSKip Macy 
12253f345a5dSKip Macy 	/* no race with detach, so ifp should always be good */
12263f345a5dSKip Macy 	KASSERT(ifp, ("%s: if detached.", __func__));
1227b6d90eb7SKip Macy 
1228c01f2b83SNavdeep Parhar 	/* Reapply mac settings if they were lost due to a reset */
1229c01f2b83SNavdeep Parhar 	if (mac_was_reset) {
1230c01f2b83SNavdeep Parhar 		PORT_LOCK(pi);
1231c01f2b83SNavdeep Parhar 		cxgb_update_mac_settings(pi);
1232c01f2b83SNavdeep Parhar 		PORT_UNLOCK(pi);
1233c01f2b83SNavdeep Parhar 	}
1234c01f2b83SNavdeep Parhar 
1235d722cab4SKip Macy 	if (link_status) {
12363f345a5dSKip Macy 		ifp->if_baudrate = IF_Mbps(speed);
12373f345a5dSKip Macy 		if_link_state_change(ifp, LINK_STATE_UP);
12380bbdea77SGeorge V. Neville-Neil 	} else
12393f345a5dSKip Macy 		if_link_state_change(ifp, LINK_STATE_DOWN);
1240d722cab4SKip Macy }
1241b6d90eb7SKip Macy 
12429b4de886SKip Macy /**
12439b4de886SKip Macy  *	t3_os_phymod_changed - handle PHY module changes
12449b4de886SKip Macy  *	@phy: the PHY reporting the module change
12459b4de886SKip Macy  *	@mod_type: new module type
12469b4de886SKip Macy  *
12479b4de886SKip Macy  *	This is the OS-dependent handler for PHY module changes.  It is
12489b4de886SKip Macy  *	invoked when a PHY module is removed or inserted for any OS-specific
12499b4de886SKip Macy  *	processing.
12509b4de886SKip Macy  */
12519b4de886SKip Macy void t3_os_phymod_changed(struct adapter *adap, int port_id)
12529b4de886SKip Macy {
12539b4de886SKip Macy 	static const char *mod_str[] = {
1254cd5c70b2SNavdeep Parhar 		NULL, "SR", "LR", "LRM", "TWINAX", "TWINAX-L", "unknown"
12559b4de886SKip Macy 	};
12569b4de886SKip Macy 	struct port_info *pi = &adap->port[port_id];
12572975f787SNavdeep Parhar 	int mod = pi->phy.modtype;
12589b4de886SKip Macy 
12592975f787SNavdeep Parhar 	if (mod != pi->media.ifm_cur->ifm_data)
12602975f787SNavdeep Parhar 		cxgb_build_medialist(pi);
12612975f787SNavdeep Parhar 
12622975f787SNavdeep Parhar 	if (mod == phy_modtype_none)
12632975f787SNavdeep Parhar 		if_printf(pi->ifp, "PHY module unplugged\n");
12649b4de886SKip Macy 	else {
12652975f787SNavdeep Parhar 		KASSERT(mod < ARRAY_SIZE(mod_str),
12662975f787SNavdeep Parhar 			("invalid PHY module type %d", mod));
12672975f787SNavdeep Parhar 		if_printf(pi->ifp, "%s PHY module inserted\n", mod_str[mod]);
12689b4de886SKip Macy 	}
12699b4de886SKip Macy }
12709b4de886SKip Macy 
1271b6d90eb7SKip Macy void
1272b6d90eb7SKip Macy t3_os_set_hw_addr(adapter_t *adapter, int port_idx, u8 hw_addr[])
1273b6d90eb7SKip Macy {
1274b6d90eb7SKip Macy 
1275b6d90eb7SKip Macy 	/*
1276b6d90eb7SKip Macy 	 * The ifnet might not be allocated before this gets called,
1277b6d90eb7SKip Macy 	 * as this is called early on in attach by t3_prep_adapter
1278b6d90eb7SKip Macy 	 * save the address off in the port structure
1279b6d90eb7SKip Macy 	 */
1280b6d90eb7SKip Macy 	if (cxgb_debug)
1281b6d90eb7SKip Macy 		printf("set_hw_addr on idx %d addr %6D\n", port_idx, hw_addr, ":");
1282b6d90eb7SKip Macy 	bcopy(hw_addr, adapter->port[port_idx].hw_addr, ETHER_ADDR_LEN);
1283b6d90eb7SKip Macy }
1284b6d90eb7SKip Macy 
12853f345a5dSKip Macy /*
12863f345a5dSKip Macy  * Programs the XGMAC based on the settings in the ifnet.  These settings
12873f345a5dSKip Macy  * include MTU, MAC address, mcast addresses, etc.
1288b6d90eb7SKip Macy  */
1289b6d90eb7SKip Macy static void
12903f345a5dSKip Macy cxgb_update_mac_settings(struct port_info *p)
1291b6d90eb7SKip Macy {
12923f345a5dSKip Macy 	struct ifnet *ifp = p->ifp;
1293b6d90eb7SKip Macy 	struct t3_rx_mode rm;
1294b6d90eb7SKip Macy 	struct cmac *mac = &p->mac;
12954af83c8cSKip Macy 	int mtu, hwtagging;
1296b6d90eb7SKip Macy 
12973f345a5dSKip Macy 	PORT_LOCK_ASSERT_OWNED(p);
1298b6d90eb7SKip Macy 
12994af83c8cSKip Macy 	bcopy(IF_LLADDR(ifp), p->hw_addr, ETHER_ADDR_LEN);
13004af83c8cSKip Macy 
13014af83c8cSKip Macy 	mtu = ifp->if_mtu;
13024af83c8cSKip Macy 	if (ifp->if_capenable & IFCAP_VLAN_MTU)
13034af83c8cSKip Macy 		mtu += ETHER_VLAN_ENCAP_LEN;
13044af83c8cSKip Macy 
13054af83c8cSKip Macy 	hwtagging = (ifp->if_capenable & IFCAP_VLAN_HWTAGGING) != 0;
13064af83c8cSKip Macy 
13074af83c8cSKip Macy 	t3_mac_set_mtu(mac, mtu);
13084af83c8cSKip Macy 	t3_set_vlan_accel(p->adapter, 1 << p->tx_chan, hwtagging);
1309b6d90eb7SKip Macy 	t3_mac_set_address(mac, 0, p->hw_addr);
13103f345a5dSKip Macy 	t3_init_rx_mode(&rm, p);
1311b6d90eb7SKip Macy 	t3_mac_set_rx_mode(mac, &rm);
1312b6d90eb7SKip Macy }
1313b6d90eb7SKip Macy 
13148e10660fSKip Macy 
13158e10660fSKip Macy static int
13168e10660fSKip Macy await_mgmt_replies(struct adapter *adap, unsigned long init_cnt,
13178e10660fSKip Macy 			      unsigned long n)
13188e10660fSKip Macy {
13198e10660fSKip Macy 	int attempts = 5;
13208e10660fSKip Macy 
13218e10660fSKip Macy 	while (adap->sge.qs[0].rspq.offload_pkts < init_cnt + n) {
13228e10660fSKip Macy 		if (!--attempts)
13238e10660fSKip Macy 			return (ETIMEDOUT);
13248e10660fSKip Macy 		t3_os_sleep(10);
13258e10660fSKip Macy 	}
13268e10660fSKip Macy 	return 0;
13278e10660fSKip Macy }
13288e10660fSKip Macy 
13298e10660fSKip Macy static int
13308e10660fSKip Macy init_tp_parity(struct adapter *adap)
13318e10660fSKip Macy {
13328e10660fSKip Macy 	int i;
13338e10660fSKip Macy 	struct mbuf *m;
13348e10660fSKip Macy 	struct cpl_set_tcb_field *greq;
13358e10660fSKip Macy 	unsigned long cnt = adap->sge.qs[0].rspq.offload_pkts;
13368e10660fSKip Macy 
13378e10660fSKip Macy 	t3_tp_set_offload_mode(adap, 1);
13388e10660fSKip Macy 
13398e10660fSKip Macy 	for (i = 0; i < 16; i++) {
13408e10660fSKip Macy 		struct cpl_smt_write_req *req;
13418e10660fSKip Macy 
13428e10660fSKip Macy 		m = m_gethdr(M_WAITOK, MT_DATA);
13438e10660fSKip Macy 		req = mtod(m, struct cpl_smt_write_req *);
13448e10660fSKip Macy 		m->m_len = m->m_pkthdr.len = sizeof(*req);
13458e10660fSKip Macy 		memset(req, 0, sizeof(*req));
13463f345a5dSKip Macy 		req->wr.wrh_hi = htonl(V_WR_OP(FW_WROPCODE_FORWARD));
13478e10660fSKip Macy 		OPCODE_TID(req) = htonl(MK_OPCODE_TID(CPL_SMT_WRITE_REQ, i));
13488e10660fSKip Macy 		req->iff = i;
13498e10660fSKip Macy 		t3_mgmt_tx(adap, m);
13508e10660fSKip Macy 	}
13518e10660fSKip Macy 
13528e10660fSKip Macy 	for (i = 0; i < 2048; i++) {
13538e10660fSKip Macy 		struct cpl_l2t_write_req *req;
13548e10660fSKip Macy 
13558e10660fSKip Macy 		m = m_gethdr(M_WAITOK, MT_DATA);
13568e10660fSKip Macy 		req = mtod(m, struct cpl_l2t_write_req *);
13578e10660fSKip Macy 		m->m_len = m->m_pkthdr.len = sizeof(*req);
13588e10660fSKip Macy 		memset(req, 0, sizeof(*req));
13593f345a5dSKip Macy 		req->wr.wrh_hi = htonl(V_WR_OP(FW_WROPCODE_FORWARD));
13608e10660fSKip Macy 		OPCODE_TID(req) = htonl(MK_OPCODE_TID(CPL_L2T_WRITE_REQ, i));
13618e10660fSKip Macy 		req->params = htonl(V_L2T_W_IDX(i));
13628e10660fSKip Macy 		t3_mgmt_tx(adap, m);
13638e10660fSKip Macy 	}
13648e10660fSKip Macy 
13658e10660fSKip Macy 	for (i = 0; i < 2048; i++) {
13668e10660fSKip Macy 		struct cpl_rte_write_req *req;
13678e10660fSKip Macy 
13688e10660fSKip Macy 		m = m_gethdr(M_WAITOK, MT_DATA);
13698e10660fSKip Macy 		req = mtod(m, struct cpl_rte_write_req *);
13708e10660fSKip Macy 		m->m_len = m->m_pkthdr.len = sizeof(*req);
13718e10660fSKip Macy 		memset(req, 0, sizeof(*req));
13723f345a5dSKip Macy 		req->wr.wrh_hi = htonl(V_WR_OP(FW_WROPCODE_FORWARD));
13738e10660fSKip Macy 		OPCODE_TID(req) = htonl(MK_OPCODE_TID(CPL_RTE_WRITE_REQ, i));
13748e10660fSKip Macy 		req->l2t_idx = htonl(V_L2T_W_IDX(i));
13758e10660fSKip Macy 		t3_mgmt_tx(adap, m);
13768e10660fSKip Macy 	}
13778e10660fSKip Macy 
13788e10660fSKip Macy 	m = m_gethdr(M_WAITOK, MT_DATA);
13798e10660fSKip Macy 	greq = mtod(m, struct cpl_set_tcb_field *);
13808e10660fSKip Macy 	m->m_len = m->m_pkthdr.len = sizeof(*greq);
13818e10660fSKip Macy 	memset(greq, 0, sizeof(*greq));
13823f345a5dSKip Macy 	greq->wr.wrh_hi = htonl(V_WR_OP(FW_WROPCODE_FORWARD));
13838e10660fSKip Macy 	OPCODE_TID(greq) = htonl(MK_OPCODE_TID(CPL_SET_TCB_FIELD, 0));
13848e10660fSKip Macy 	greq->mask = htobe64(1);
13858e10660fSKip Macy 	t3_mgmt_tx(adap, m);
13868e10660fSKip Macy 
13878e10660fSKip Macy 	i = await_mgmt_replies(adap, cnt, 16 + 2048 + 2048 + 1);
13888e10660fSKip Macy 	t3_tp_set_offload_mode(adap, 0);
13898e10660fSKip Macy 	return (i);
13908e10660fSKip Macy }
13918e10660fSKip Macy 
1392b6d90eb7SKip Macy /**
1393b6d90eb7SKip Macy  *	setup_rss - configure Receive Side Steering (per-queue connection demux)
1394b6d90eb7SKip Macy  *	@adap: the adapter
1395b6d90eb7SKip Macy  *
1396b6d90eb7SKip Macy  *	Sets up RSS to distribute packets to multiple receive queues.  We
1397b6d90eb7SKip Macy  *	configure the RSS CPU lookup table to distribute to the number of HW
1398b6d90eb7SKip Macy  *	receive queues, and the response queue lookup table to narrow that
1399b6d90eb7SKip Macy  *	down to the response queues actually configured for each port.
1400b6d90eb7SKip Macy  *	We always configure the RSS mapping for two ports since the mapping
1401b6d90eb7SKip Macy  *	table has plenty of entries.
1402b6d90eb7SKip Macy  */
1403b6d90eb7SKip Macy static void
1404b6d90eb7SKip Macy setup_rss(adapter_t *adap)
1405b6d90eb7SKip Macy {
1406b6d90eb7SKip Macy 	int i;
1407ac3a6d9cSKip Macy 	u_int nq[2];
1408b6d90eb7SKip Macy 	uint8_t cpus[SGE_QSETS + 1];
1409b6d90eb7SKip Macy 	uint16_t rspq_map[RSS_TABLE_SIZE];
14105c5df3daSKip Macy 
1411b6d90eb7SKip Macy 	for (i = 0; i < SGE_QSETS; ++i)
1412b6d90eb7SKip Macy 		cpus[i] = i;
1413b6d90eb7SKip Macy 	cpus[SGE_QSETS] = 0xff;
1414b6d90eb7SKip Macy 
14157ac2e6c3SKip Macy 	nq[0] = nq[1] = 0;
14167ac2e6c3SKip Macy 	for_each_port(adap, i) {
14177ac2e6c3SKip Macy 		const struct port_info *pi = adap2pinfo(adap, i);
14187ac2e6c3SKip Macy 
14197ac2e6c3SKip Macy 		nq[pi->tx_chan] += pi->nqsets;
14207ac2e6c3SKip Macy 	}
1421b6d90eb7SKip Macy 	for (i = 0; i < RSS_TABLE_SIZE / 2; ++i) {
14228e10660fSKip Macy 		rspq_map[i] = nq[0] ? i % nq[0] : 0;
14238e10660fSKip Macy 		rspq_map[i + RSS_TABLE_SIZE / 2] = nq[1] ? i % nq[1] + nq[0] : 0;
1424b6d90eb7SKip Macy 	}
14256b2eaa83SJohn Baldwin 
1426ac3a6d9cSKip Macy 	/* Calculate the reverse RSS map table */
14276b2eaa83SJohn Baldwin 	for (i = 0; i < SGE_QSETS; ++i)
14286b2eaa83SJohn Baldwin 		adap->rrss_map[i] = 0xff;
1429ac3a6d9cSKip Macy 	for (i = 0; i < RSS_TABLE_SIZE; ++i)
1430ac3a6d9cSKip Macy 		if (adap->rrss_map[rspq_map[i]] == 0xff)
1431ac3a6d9cSKip Macy 			adap->rrss_map[rspq_map[i]] = i;
1432b6d90eb7SKip Macy 
1433b6d90eb7SKip Macy 	t3_config_rss(adap, F_RQFEEDBACKENABLE | F_TNLLKPEN | F_TNLMAPEN |
1434ac3a6d9cSKip Macy 		      F_TNLPRTEN | F_TNL2TUPEN | F_TNL4TUPEN | F_OFDMAPEN |
14358e10660fSKip Macy 	              F_RRCPLMAPEN | V_RRCPLCPUSIZE(6) | F_HASHTOEPLITZ,
14368e10660fSKip Macy 	              cpus, rspq_map);
1437ac3a6d9cSKip Macy 
1438b6d90eb7SKip Macy }
1439b6d90eb7SKip Macy static void
1440b6d90eb7SKip Macy send_pktsched_cmd(struct adapter *adap, int sched, int qidx, int lo,
1441b6d90eb7SKip Macy 			      int hi, int port)
1442b6d90eb7SKip Macy {
1443b6d90eb7SKip Macy 	struct mbuf *m;
1444b6d90eb7SKip Macy 	struct mngt_pktsched_wr *req;
1445b6d90eb7SKip Macy 
1446c6499eccSGleb Smirnoff 	m = m_gethdr(M_NOWAIT, MT_DATA);
144720fe52b8SKip Macy 	if (m) {
1448d722cab4SKip Macy 		req = mtod(m, struct mngt_pktsched_wr *);
14493f345a5dSKip Macy 		req->wr.wrh_hi = htonl(V_WR_OP(FW_WROPCODE_MNGT));
1450b6d90eb7SKip Macy 		req->mngt_opcode = FW_MNGTOPCODE_PKTSCHED_SET;
1451b6d90eb7SKip Macy 		req->sched = sched;
1452b6d90eb7SKip Macy 		req->idx = qidx;
1453b6d90eb7SKip Macy 		req->min = lo;
1454b6d90eb7SKip Macy 		req->max = hi;
1455b6d90eb7SKip Macy 		req->binding = port;
1456b6d90eb7SKip Macy 		m->m_len = m->m_pkthdr.len = sizeof(*req);
1457b6d90eb7SKip Macy 		t3_mgmt_tx(adap, m);
1458b6d90eb7SKip Macy 	}
145920fe52b8SKip Macy }
1460b6d90eb7SKip Macy 
1461b6d90eb7SKip Macy static void
1462b6d90eb7SKip Macy bind_qsets(adapter_t *sc)
1463b6d90eb7SKip Macy {
1464b6d90eb7SKip Macy 	int i, j;
1465b6d90eb7SKip Macy 
1466b6d90eb7SKip Macy 	for (i = 0; i < (sc)->params.nports; ++i) {
1467b6d90eb7SKip Macy 		const struct port_info *pi = adap2pinfo(sc, i);
1468b6d90eb7SKip Macy 
14695c5df3daSKip Macy 		for (j = 0; j < pi->nqsets; ++j) {
1470b6d90eb7SKip Macy 			send_pktsched_cmd(sc, 1, pi->first_qset + j, -1,
14715c5df3daSKip Macy 					  -1, pi->tx_chan);
14725c5df3daSKip Macy 
14735c5df3daSKip Macy 		}
1474b6d90eb7SKip Macy 	}
1475b6d90eb7SKip Macy }
1476b6d90eb7SKip Macy 
1477ac3a6d9cSKip Macy static void
1478ac3a6d9cSKip Macy update_tpeeprom(struct adapter *adap)
1479ac3a6d9cSKip Macy {
1480ac3a6d9cSKip Macy 	const struct firmware *tpeeprom;
14812de1fa86SKip Macy 
1482ac3a6d9cSKip Macy 	uint32_t version;
1483ac3a6d9cSKip Macy 	unsigned int major, minor;
1484ac3a6d9cSKip Macy 	int ret, len;
1485f2d8ff04SGeorge V. Neville-Neil 	char rev, name[32];
1486ac3a6d9cSKip Macy 
1487ac3a6d9cSKip Macy 	t3_seeprom_read(adap, TP_SRAM_OFFSET, &version);
1488ac3a6d9cSKip Macy 
1489ac3a6d9cSKip Macy 	major = G_TP_VERSION_MAJOR(version);
1490ac3a6d9cSKip Macy 	minor = G_TP_VERSION_MINOR(version);
1491ac3a6d9cSKip Macy 	if (major == TP_VERSION_MAJOR  && minor == TP_VERSION_MINOR)
1492ac3a6d9cSKip Macy 		return;
1493ac3a6d9cSKip Macy 
1494ac3a6d9cSKip Macy 	rev = t3rev2char(adap);
1495f2d8ff04SGeorge V. Neville-Neil 	snprintf(name, sizeof(name), TPEEPROM_NAME, rev);
1496ac3a6d9cSKip Macy 
1497f2d8ff04SGeorge V. Neville-Neil 	tpeeprom = firmware_get(name);
1498ac3a6d9cSKip Macy 	if (tpeeprom == NULL) {
14990c1ff9c6SGeorge V. Neville-Neil 		device_printf(adap->dev,
15000c1ff9c6SGeorge V. Neville-Neil 			      "could not load TP EEPROM: unable to load %s\n",
15010c1ff9c6SGeorge V. Neville-Neil 			      name);
1502ac3a6d9cSKip Macy 		return;
1503ac3a6d9cSKip Macy 	}
1504ac3a6d9cSKip Macy 
1505ac3a6d9cSKip Macy 	len = tpeeprom->datasize - 4;
1506ac3a6d9cSKip Macy 
1507ac3a6d9cSKip Macy 	ret = t3_check_tpsram(adap, tpeeprom->data, tpeeprom->datasize);
1508ac3a6d9cSKip Macy 	if (ret)
1509ac3a6d9cSKip Macy 		goto release_tpeeprom;
1510ac3a6d9cSKip Macy 
1511ac3a6d9cSKip Macy 	if (len != TP_SRAM_LEN) {
15120c1ff9c6SGeorge V. Neville-Neil 		device_printf(adap->dev,
15130c1ff9c6SGeorge V. Neville-Neil 			      "%s length is wrong len=%d expected=%d\n", name,
15140c1ff9c6SGeorge V. Neville-Neil 			      len, TP_SRAM_LEN);
1515ac3a6d9cSKip Macy 		return;
1516ac3a6d9cSKip Macy 	}
1517ac3a6d9cSKip Macy 
1518ac3a6d9cSKip Macy 	ret = set_eeprom(&adap->port[0], tpeeprom->data, tpeeprom->datasize,
1519ac3a6d9cSKip Macy 	    TP_SRAM_OFFSET);
1520ac3a6d9cSKip Macy 
1521ac3a6d9cSKip Macy 	if (!ret) {
1522ac3a6d9cSKip Macy 		device_printf(adap->dev,
1523ac3a6d9cSKip Macy 			"Protocol SRAM image updated in EEPROM to %d.%d.%d\n",
1524ac3a6d9cSKip Macy 			 TP_VERSION_MAJOR, TP_VERSION_MINOR, TP_VERSION_MICRO);
1525ac3a6d9cSKip Macy 	} else
15260c1ff9c6SGeorge V. Neville-Neil 		device_printf(adap->dev,
15270c1ff9c6SGeorge V. Neville-Neil 			      "Protocol SRAM image update in EEPROM failed\n");
1528ac3a6d9cSKip Macy 
1529ac3a6d9cSKip Macy release_tpeeprom:
1530ac3a6d9cSKip Macy 	firmware_put(tpeeprom, FIRMWARE_UNLOAD);
1531ac3a6d9cSKip Macy 
1532ac3a6d9cSKip Macy 	return;
1533ac3a6d9cSKip Macy }
1534ac3a6d9cSKip Macy 
1535ac3a6d9cSKip Macy static int
1536ac3a6d9cSKip Macy update_tpsram(struct adapter *adap)
1537ac3a6d9cSKip Macy {
1538ac3a6d9cSKip Macy 	const struct firmware *tpsram;
1539ac3a6d9cSKip Macy 	int ret;
1540f2d8ff04SGeorge V. Neville-Neil 	char rev, name[32];
1541ac3a6d9cSKip Macy 
1542ac3a6d9cSKip Macy 	rev = t3rev2char(adap);
1543f2d8ff04SGeorge V. Neville-Neil 	snprintf(name, sizeof(name), TPSRAM_NAME, rev);
1544ac3a6d9cSKip Macy 
1545ac3a6d9cSKip Macy 	update_tpeeprom(adap);
1546ac3a6d9cSKip Macy 
1547f2d8ff04SGeorge V. Neville-Neil 	tpsram = firmware_get(name);
1548ac3a6d9cSKip Macy 	if (tpsram == NULL){
154964a37133SKip Macy 		device_printf(adap->dev, "could not load TP SRAM\n");
1550ac3a6d9cSKip Macy 		return (EINVAL);
1551ac3a6d9cSKip Macy 	} else
155264a37133SKip Macy 		device_printf(adap->dev, "updating TP SRAM\n");
1553ac3a6d9cSKip Macy 
1554ac3a6d9cSKip Macy 	ret = t3_check_tpsram(adap, tpsram->data, tpsram->datasize);
1555ac3a6d9cSKip Macy 	if (ret)
1556ac3a6d9cSKip Macy 		goto release_tpsram;
1557ac3a6d9cSKip Macy 
1558ac3a6d9cSKip Macy 	ret = t3_set_proto_sram(adap, tpsram->data);
1559ac3a6d9cSKip Macy 	if (ret)
1560ac3a6d9cSKip Macy 		device_printf(adap->dev, "loading protocol SRAM failed\n");
1561ac3a6d9cSKip Macy 
1562ac3a6d9cSKip Macy release_tpsram:
1563ac3a6d9cSKip Macy 	firmware_put(tpsram, FIRMWARE_UNLOAD);
1564ac3a6d9cSKip Macy 
1565ac3a6d9cSKip Macy 	return ret;
1566ac3a6d9cSKip Macy }
1567ac3a6d9cSKip Macy 
1568d722cab4SKip Macy /**
1569d722cab4SKip Macy  *	cxgb_up - enable the adapter
1570d722cab4SKip Macy  *	@adap: adapter being enabled
1571d722cab4SKip Macy  *
1572d722cab4SKip Macy  *	Called when the first port is enabled, this function performs the
1573d722cab4SKip Macy  *	actions necessary to make an adapter operational, such as completing
1574d722cab4SKip Macy  *	the initialization of HW modules, and enabling interrupts.
1575d722cab4SKip Macy  */
1576d722cab4SKip Macy static int
1577d722cab4SKip Macy cxgb_up(struct adapter *sc)
1578d722cab4SKip Macy {
1579d722cab4SKip Macy 	int err = 0;
15803a2c6562SNavdeep Parhar 	unsigned int mxf = t3_mc5_size(&sc->mc5) - MC5_MIN_TIDS;
1581d722cab4SKip Macy 
15823f345a5dSKip Macy 	KASSERT(sc->open_device_map == 0, ("%s: device(s) already open (%x)",
15833f345a5dSKip Macy 					   __func__, sc->open_device_map));
15843f345a5dSKip Macy 
1585d722cab4SKip Macy 	if ((sc->flags & FULL_INIT_DONE) == 0) {
1586d722cab4SKip Macy 
1587b302b77cSNavdeep Parhar 		ADAPTER_LOCK_ASSERT_NOTOWNED(sc);
1588b302b77cSNavdeep Parhar 
1589d722cab4SKip Macy 		if ((sc->flags & FW_UPTODATE) == 0)
1590ac3a6d9cSKip Macy 			if ((err = upgrade_fw(sc)))
1591d722cab4SKip Macy 				goto out;
15923f345a5dSKip Macy 
1593ac3a6d9cSKip Macy 		if ((sc->flags & TPS_UPTODATE) == 0)
1594ac3a6d9cSKip Macy 			if ((err = update_tpsram(sc)))
1595ac3a6d9cSKip Macy 				goto out;
15963f345a5dSKip Macy 
15973a2c6562SNavdeep Parhar 		if (is_offload(sc) && nfilters != 0) {
1598d6da8362SNavdeep Parhar 			sc->params.mc5.nservers = 0;
15993a2c6562SNavdeep Parhar 
16003a2c6562SNavdeep Parhar 			if (nfilters < 0)
16013a2c6562SNavdeep Parhar 				sc->params.mc5.nfilters = mxf;
16023a2c6562SNavdeep Parhar 			else
16033a2c6562SNavdeep Parhar 				sc->params.mc5.nfilters = min(nfilters, mxf);
1604d6da8362SNavdeep Parhar 		}
1605d6da8362SNavdeep Parhar 
1606d722cab4SKip Macy 		err = t3_init_hw(sc, 0);
1607d722cab4SKip Macy 		if (err)
1608d722cab4SKip Macy 			goto out;
1609d722cab4SKip Macy 
16108e10660fSKip Macy 		t3_set_reg_field(sc, A_TP_PARA_REG5, 0, F_RXDDPOFFINIT);
1611d722cab4SKip Macy 		t3_write_reg(sc, A_ULPRX_TDDP_PSZ, V_HPZ0(PAGE_SHIFT - 12));
1612d722cab4SKip Macy 
1613d722cab4SKip Macy 		err = setup_sge_qsets(sc);
1614d722cab4SKip Macy 		if (err)
1615d722cab4SKip Macy 			goto out;
1616d722cab4SKip Macy 
1617d6da8362SNavdeep Parhar 		alloc_filters(sc);
1618d722cab4SKip Macy 		setup_rss(sc);
1619e3503bc9SGeorge V. Neville-Neil 
16208090c9f5SKip Macy 		t3_add_configured_sysctls(sc);
1621d722cab4SKip Macy 		sc->flags |= FULL_INIT_DONE;
1622d722cab4SKip Macy 	}
1623d722cab4SKip Macy 
1624d722cab4SKip Macy 	t3_intr_clear(sc);
1625d722cab4SKip Macy 	t3_sge_start(sc);
1626d722cab4SKip Macy 	t3_intr_enable(sc);
1627d722cab4SKip Macy 
16288e10660fSKip Macy 	if (sc->params.rev >= T3_REV_C && !(sc->flags & TP_PARITY_INIT) &&
16298e10660fSKip Macy 	    is_offload(sc) && init_tp_parity(sc) == 0)
16308e10660fSKip Macy 		sc->flags |= TP_PARITY_INIT;
16318e10660fSKip Macy 
16328e10660fSKip Macy 	if (sc->flags & TP_PARITY_INIT) {
16333f345a5dSKip Macy 		t3_write_reg(sc, A_TP_INT_CAUSE, F_CMCACHEPERR | F_ARPLUTPERR);
16348e10660fSKip Macy 		t3_write_reg(sc, A_TP_INT_ENABLE, 0x7fbfffff);
16358e10660fSKip Macy 	}
16368e10660fSKip Macy 
16375c5df3daSKip Macy 	if (!(sc->flags & QUEUES_BOUND)) {
1638d722cab4SKip Macy 		bind_qsets(sc);
1639d6da8362SNavdeep Parhar 		setup_hw_filters(sc);
1640d722cab4SKip Macy 		sc->flags |= QUEUES_BOUND;
1641ac3a6d9cSKip Macy 	}
16423f345a5dSKip Macy 
16433f345a5dSKip Macy 	t3_sge_reset_adapter(sc);
1644d722cab4SKip Macy out:
1645d722cab4SKip Macy 	return (err);
1646d722cab4SKip Macy }
1647d722cab4SKip Macy 
1648d722cab4SKip Macy /*
16493f345a5dSKip Macy  * Called when the last open device is closed.  Does NOT undo all of cxgb_up's
16503f345a5dSKip Macy  * work.  Specifically, the resources grabbed under FULL_INIT_DONE are released
16513f345a5dSKip Macy  * during controller_detach, not here.
1652d722cab4SKip Macy  */
1653d722cab4SKip Macy static void
16543f345a5dSKip Macy cxgb_down(struct adapter *sc)
1655d722cab4SKip Macy {
1656d722cab4SKip Macy 	t3_sge_stop(sc);
1657d722cab4SKip Macy 	t3_intr_disable(sc);
1658d722cab4SKip Macy }
1659d722cab4SKip Macy 
16603f345a5dSKip Macy /*
16613f345a5dSKip Macy  * if_init for cxgb ports.
16623f345a5dSKip Macy  */
1663b6d90eb7SKip Macy static void
1664b6d90eb7SKip Macy cxgb_init(void *arg)
1665b6d90eb7SKip Macy {
1666b6d90eb7SKip Macy 	struct port_info *p = arg;
1667b302b77cSNavdeep Parhar 	struct adapter *sc = p->adapter;
1668b6d90eb7SKip Macy 
1669b302b77cSNavdeep Parhar 	ADAPTER_LOCK(sc);
1670b302b77cSNavdeep Parhar 	cxgb_init_locked(p); /* releases adapter lock */
1671b302b77cSNavdeep Parhar 	ADAPTER_LOCK_ASSERT_NOTOWNED(sc);
16723f345a5dSKip Macy }
16733f345a5dSKip Macy 
16743f345a5dSKip Macy static int
1675b302b77cSNavdeep Parhar cxgb_init_locked(struct port_info *p)
16763f345a5dSKip Macy {
16773f345a5dSKip Macy 	struct adapter *sc = p->adapter;
16783f345a5dSKip Macy 	struct ifnet *ifp = p->ifp;
16793f345a5dSKip Macy 	struct cmac *mac = &p->mac;
168061cb6c90SNavdeep Parhar 	int i, rc = 0, may_sleep = 0, gave_up_lock = 0;
1681b302b77cSNavdeep Parhar 
1682b302b77cSNavdeep Parhar 	ADAPTER_LOCK_ASSERT_OWNED(sc);
1683b302b77cSNavdeep Parhar 
1684b302b77cSNavdeep Parhar 	while (!IS_DOOMED(p) && IS_BUSY(sc)) {
168561cb6c90SNavdeep Parhar 		gave_up_lock = 1;
1686b302b77cSNavdeep Parhar 		if (mtx_sleep(&sc->flags, &sc->lock, PCATCH, "cxgbinit", 0)) {
1687b302b77cSNavdeep Parhar 			rc = EINTR;
1688b302b77cSNavdeep Parhar 			goto done;
1689b302b77cSNavdeep Parhar 		}
1690b302b77cSNavdeep Parhar 	}
1691b302b77cSNavdeep Parhar 	if (IS_DOOMED(p)) {
1692b302b77cSNavdeep Parhar 		rc = ENXIO;
1693b302b77cSNavdeep Parhar 		goto done;
1694b302b77cSNavdeep Parhar 	}
1695b302b77cSNavdeep Parhar 	KASSERT(!IS_BUSY(sc), ("%s: controller busy.", __func__));
1696b302b77cSNavdeep Parhar 
1697b302b77cSNavdeep Parhar 	/*
1698b302b77cSNavdeep Parhar 	 * The code that runs during one-time adapter initialization can sleep
1699b302b77cSNavdeep Parhar 	 * so it's important not to hold any locks across it.
1700b302b77cSNavdeep Parhar 	 */
1701b302b77cSNavdeep Parhar 	may_sleep = sc->flags & FULL_INIT_DONE ? 0 : 1;
1702b302b77cSNavdeep Parhar 
1703b302b77cSNavdeep Parhar 	if (may_sleep) {
1704b302b77cSNavdeep Parhar 		SET_BUSY(sc);
170561cb6c90SNavdeep Parhar 		gave_up_lock = 1;
1706b302b77cSNavdeep Parhar 		ADAPTER_UNLOCK(sc);
1707b302b77cSNavdeep Parhar 	}
17083f345a5dSKip Macy 
170909fe6320SNavdeep Parhar 	if (sc->open_device_map == 0 && ((rc = cxgb_up(sc)) != 0))
1710b302b77cSNavdeep Parhar 			goto done;
17113f345a5dSKip Macy 
17123f345a5dSKip Macy 	PORT_LOCK(p);
1713b302b77cSNavdeep Parhar 	if (isset(&sc->open_device_map, p->port_id) &&
1714b302b77cSNavdeep Parhar 	    (ifp->if_drv_flags & IFF_DRV_RUNNING)) {
1715b302b77cSNavdeep Parhar 		PORT_UNLOCK(p);
1716b302b77cSNavdeep Parhar 		goto done;
1717b302b77cSNavdeep Parhar 	}
17180bbdea77SGeorge V. Neville-Neil 	t3_port_intr_enable(sc, p->port_id);
17193f345a5dSKip Macy 	if (!mac->multiport)
1720c01f2b83SNavdeep Parhar 		t3_mac_init(mac);
17213f345a5dSKip Macy 	cxgb_update_mac_settings(p);
17223f345a5dSKip Macy 	t3_link_start(&p->phy, mac, &p->link_config);
17233f345a5dSKip Macy 	t3_mac_enable(mac, MAC_DIRECTION_RX | MAC_DIRECTION_TX);
1724b6d90eb7SKip Macy 	ifp->if_drv_flags |= IFF_DRV_RUNNING;
1725b6d90eb7SKip Macy 	ifp->if_drv_flags &= ~IFF_DRV_OACTIVE;
17263f345a5dSKip Macy 	PORT_UNLOCK(p);
17273f345a5dSKip Macy 
17283f345a5dSKip Macy 	for (i = p->first_qset; i < p->first_qset + p->nqsets; i++) {
17293f345a5dSKip Macy 		struct sge_qset *qs = &sc->sge.qs[i];
17303f345a5dSKip Macy 		struct sge_txq *txq = &qs->txq[TXQ_ETH];
17313f345a5dSKip Macy 
17323f345a5dSKip Macy 		callout_reset_on(&txq->txq_watchdog, hz, cxgb_tx_watchdog, qs,
17333f345a5dSKip Macy 				 txq->txq_watchdog.c_cpu);
1734b6d90eb7SKip Macy 	}
1735b6d90eb7SKip Macy 
17363f345a5dSKip Macy 	/* all ok */
17373f345a5dSKip Macy 	setbit(&sc->open_device_map, p->port_id);
1738bd1a9fbaSNavdeep Parhar 	callout_reset(&p->link_check_ch,
1739bd1a9fbaSNavdeep Parhar 	    p->phy.caps & SUPPORTED_LINK_IRQ ?  hz * 3 : hz / 4,
1740bd1a9fbaSNavdeep Parhar 	    link_check_callout, p);
1741b6d90eb7SKip Macy 
1742b302b77cSNavdeep Parhar done:
1743b302b77cSNavdeep Parhar 	if (may_sleep) {
1744b302b77cSNavdeep Parhar 		ADAPTER_LOCK(sc);
1745b302b77cSNavdeep Parhar 		KASSERT(IS_BUSY(sc), ("%s: controller not busy.", __func__));
1746b302b77cSNavdeep Parhar 		CLR_BUSY(sc);
1747b302b77cSNavdeep Parhar 	}
174861cb6c90SNavdeep Parhar 	if (gave_up_lock)
174961cb6c90SNavdeep Parhar 		wakeup_one(&sc->flags);
1750b302b77cSNavdeep Parhar 	ADAPTER_UNLOCK(sc);
1751b302b77cSNavdeep Parhar 	return (rc);
1752b302b77cSNavdeep Parhar }
1753b302b77cSNavdeep Parhar 
1754b302b77cSNavdeep Parhar static int
1755b302b77cSNavdeep Parhar cxgb_uninit_locked(struct port_info *p)
1756b302b77cSNavdeep Parhar {
1757b302b77cSNavdeep Parhar 	struct adapter *sc = p->adapter;
1758b302b77cSNavdeep Parhar 	int rc;
1759b302b77cSNavdeep Parhar 
1760b302b77cSNavdeep Parhar 	ADAPTER_LOCK_ASSERT_OWNED(sc);
1761b302b77cSNavdeep Parhar 
1762b302b77cSNavdeep Parhar 	while (!IS_DOOMED(p) && IS_BUSY(sc)) {
1763b302b77cSNavdeep Parhar 		if (mtx_sleep(&sc->flags, &sc->lock, PCATCH, "cxgbunin", 0)) {
1764b302b77cSNavdeep Parhar 			rc = EINTR;
1765b302b77cSNavdeep Parhar 			goto done;
1766b302b77cSNavdeep Parhar 		}
1767b302b77cSNavdeep Parhar 	}
1768b302b77cSNavdeep Parhar 	if (IS_DOOMED(p)) {
1769b302b77cSNavdeep Parhar 		rc = ENXIO;
1770b302b77cSNavdeep Parhar 		goto done;
1771b302b77cSNavdeep Parhar 	}
1772b302b77cSNavdeep Parhar 	KASSERT(!IS_BUSY(sc), ("%s: controller busy.", __func__));
1773b302b77cSNavdeep Parhar 	SET_BUSY(sc);
1774b302b77cSNavdeep Parhar 	ADAPTER_UNLOCK(sc);
1775b302b77cSNavdeep Parhar 
1776b302b77cSNavdeep Parhar 	rc = cxgb_uninit_synchronized(p);
1777b302b77cSNavdeep Parhar 
1778b302b77cSNavdeep Parhar 	ADAPTER_LOCK(sc);
1779b302b77cSNavdeep Parhar 	KASSERT(IS_BUSY(sc), ("%s: controller not busy.", __func__));
1780b302b77cSNavdeep Parhar 	CLR_BUSY(sc);
1781b302b77cSNavdeep Parhar 	wakeup_one(&sc->flags);
1782b302b77cSNavdeep Parhar done:
1783b302b77cSNavdeep Parhar 	ADAPTER_UNLOCK(sc);
1784b302b77cSNavdeep Parhar 	return (rc);
1785b6d90eb7SKip Macy }
1786b6d90eb7SKip Macy 
17873f345a5dSKip Macy /*
17883f345a5dSKip Macy  * Called on "ifconfig down", and from port_detach
17893f345a5dSKip Macy  */
17903f345a5dSKip Macy static int
17913f345a5dSKip Macy cxgb_uninit_synchronized(struct port_info *pi)
1792b6d90eb7SKip Macy {
17933f345a5dSKip Macy 	struct adapter *sc = pi->adapter;
17943f345a5dSKip Macy 	struct ifnet *ifp = pi->ifp;
1795b6d90eb7SKip Macy 
17963f345a5dSKip Macy 	/*
1797b302b77cSNavdeep Parhar 	 * taskqueue_drain may cause a deadlock if the adapter lock is held.
1798b302b77cSNavdeep Parhar 	 */
1799b302b77cSNavdeep Parhar 	ADAPTER_LOCK_ASSERT_NOTOWNED(sc);
1800b302b77cSNavdeep Parhar 
1801b302b77cSNavdeep Parhar 	/*
18023f345a5dSKip Macy 	 * Clear this port's bit from the open device map, and then drain all
18033f345a5dSKip Macy 	 * the tasks that can access/manipulate this port's port_info or ifp.
18046bccea7cSRebecca Cran 	 * We disable this port's interrupts here and so the slow/ext
18053f345a5dSKip Macy 	 * interrupt tasks won't be enqueued.  The tick task will continue to
18063f345a5dSKip Macy 	 * be enqueued every second but the runs after this drain will not see
18073f345a5dSKip Macy 	 * this port in the open device map.
18083f345a5dSKip Macy 	 *
18093f345a5dSKip Macy 	 * A well behaved task must take open_device_map into account and ignore
18103f345a5dSKip Macy 	 * ports that are not open.
18113f345a5dSKip Macy 	 */
18123f345a5dSKip Macy 	clrbit(&sc->open_device_map, pi->port_id);
18133f345a5dSKip Macy 	t3_port_intr_disable(sc, pi->port_id);
18143f345a5dSKip Macy 	taskqueue_drain(sc->tq, &sc->slow_intr_task);
18153f345a5dSKip Macy 	taskqueue_drain(sc->tq, &sc->tick_task);
181677f07749SKip Macy 
1817bd1a9fbaSNavdeep Parhar 	callout_drain(&pi->link_check_ch);
1818bd1a9fbaSNavdeep Parhar 	taskqueue_drain(sc->tq, &pi->link_check_task);
1819bd1a9fbaSNavdeep Parhar 
18203f345a5dSKip Macy 	PORT_LOCK(pi);
1821d722cab4SKip Macy 	ifp->if_drv_flags &= ~(IFF_DRV_RUNNING | IFF_DRV_OACTIVE);
1822b6d90eb7SKip Macy 
182319905d6dSKip Macy 	/* disable pause frames */
18243f345a5dSKip Macy 	t3_set_reg_field(sc, A_XGM_TX_CFG + pi->mac.offset, F_TXPAUSEEN, 0);
1825bb38cd2fSKip Macy 
182619905d6dSKip Macy 	/* Reset RX FIFO HWM */
18273f345a5dSKip Macy 	t3_set_reg_field(sc, A_XGM_RXFIFO_CFG +  pi->mac.offset,
182819905d6dSKip Macy 			 V_RXFIFOPAUSEHWM(M_RXFIFOPAUSEHWM), 0);
182919905d6dSKip Macy 
1830a9c23ef0SNavdeep Parhar 	DELAY(100 * 1000);
183119905d6dSKip Macy 
183219905d6dSKip Macy 	/* Wait for TXFIFO empty */
18333f345a5dSKip Macy 	t3_wait_op_done(sc, A_XGM_TXFIFO_CFG + pi->mac.offset,
183419905d6dSKip Macy 			F_TXFIFO_EMPTY, 1, 20, 5);
183519905d6dSKip Macy 
1836a9c23ef0SNavdeep Parhar 	DELAY(100 * 1000);
1837a9c23ef0SNavdeep Parhar 	t3_mac_disable(&pi->mac, MAC_DIRECTION_RX);
183819905d6dSKip Macy 
183919905d6dSKip Macy 	pi->phy.ops->power_down(&pi->phy, 1);
1840bb38cd2fSKip Macy 
18413f345a5dSKip Macy 	PORT_UNLOCK(pi);
1842b6d90eb7SKip Macy 
18433f345a5dSKip Macy 	pi->link_config.link_ok = 0;
1844c01f2b83SNavdeep Parhar 	t3_os_link_changed(sc, pi->port_id, 0, 0, 0, 0, 0);
1845ef72318fSKip Macy 
18463f345a5dSKip Macy 	if (sc->open_device_map == 0)
18473f345a5dSKip Macy 		cxgb_down(pi->adapter);
18483f345a5dSKip Macy 
18493f345a5dSKip Macy 	return (0);
1850ef72318fSKip Macy }
1851ef72318fSKip Macy 
185225292debSKip Macy /*
185325292debSKip Macy  * Mark lro enabled or disabled in all qsets for this port
185425292debSKip Macy  */
185525292debSKip Macy static int
185625292debSKip Macy cxgb_set_lro(struct port_info *p, int enabled)
185725292debSKip Macy {
185825292debSKip Macy 	int i;
185925292debSKip Macy 	struct adapter *adp = p->adapter;
186025292debSKip Macy 	struct sge_qset *q;
186125292debSKip Macy 
186225292debSKip Macy 	for (i = 0; i < p->nqsets; i++) {
186325292debSKip Macy 		q = &adp->sge.qs[p->first_qset + i];
186425292debSKip Macy 		q->lro.enabled = (enabled != 0);
186525292debSKip Macy 	}
186625292debSKip Macy 	return (0);
186725292debSKip Macy }
186825292debSKip Macy 
1869ef72318fSKip Macy static int
1870b6d90eb7SKip Macy cxgb_ioctl(struct ifnet *ifp, unsigned long command, caddr_t data)
1871b6d90eb7SKip Macy {
1872b6d90eb7SKip Macy 	struct port_info *p = ifp->if_softc;
1873b302b77cSNavdeep Parhar 	struct adapter *sc = p->adapter;
1874b6d90eb7SKip Macy 	struct ifreq *ifr = (struct ifreq *)data;
1875b302b77cSNavdeep Parhar 	int flags, error = 0, mtu;
1876b6d90eb7SKip Macy 	uint32_t mask;
1877b6d90eb7SKip Macy 
1878b6d90eb7SKip Macy 	switch (command) {
1879b6d90eb7SKip Macy 	case SIOCSIFMTU:
1880b302b77cSNavdeep Parhar 		ADAPTER_LOCK(sc);
1881b302b77cSNavdeep Parhar 		error = IS_DOOMED(p) ? ENXIO : (IS_BUSY(sc) ? EBUSY : 0);
1882b302b77cSNavdeep Parhar 		if (error) {
1883b302b77cSNavdeep Parhar fail:
1884b302b77cSNavdeep Parhar 			ADAPTER_UNLOCK(sc);
1885b302b77cSNavdeep Parhar 			return (error);
1886b302b77cSNavdeep Parhar 		}
1887b302b77cSNavdeep Parhar 
18883f345a5dSKip Macy 		mtu = ifr->ifr_mtu;
18893f345a5dSKip Macy 		if ((mtu < ETHERMIN) || (mtu > ETHERMTU_JUMBO)) {
18903f345a5dSKip Macy 			error = EINVAL;
18913f345a5dSKip Macy 		} else {
18923f345a5dSKip Macy 			ifp->if_mtu = mtu;
18938e10660fSKip Macy 			PORT_LOCK(p);
18943f345a5dSKip Macy 			cxgb_update_mac_settings(p);
18954f6a96aeSKip Macy 			PORT_UNLOCK(p);
18968e10660fSKip Macy 		}
1897b302b77cSNavdeep Parhar 		ADAPTER_UNLOCK(sc);
1898b6d90eb7SKip Macy 		break;
1899b6d90eb7SKip Macy 	case SIOCSIFFLAGS:
1900b302b77cSNavdeep Parhar 		ADAPTER_LOCK(sc);
1901b302b77cSNavdeep Parhar 		if (IS_DOOMED(p)) {
1902b302b77cSNavdeep Parhar 			error = ENXIO;
1903b302b77cSNavdeep Parhar 			goto fail;
1904b302b77cSNavdeep Parhar 		}
1905ef72318fSKip Macy 		if (ifp->if_flags & IFF_UP) {
1906b6d90eb7SKip Macy 			if (ifp->if_drv_flags & IFF_DRV_RUNNING) {
1907b6d90eb7SKip Macy 				flags = p->if_flags;
1908b6d90eb7SKip Macy 				if (((ifp->if_flags ^ flags) & IFF_PROMISC) ||
19093f345a5dSKip Macy 				    ((ifp->if_flags ^ flags) & IFF_ALLMULTI)) {
1910b302b77cSNavdeep Parhar 					if (IS_BUSY(sc)) {
1911b302b77cSNavdeep Parhar 						error = EBUSY;
1912b302b77cSNavdeep Parhar 						goto fail;
1913b302b77cSNavdeep Parhar 					}
19143f345a5dSKip Macy 					PORT_LOCK(p);
19153f345a5dSKip Macy 					cxgb_update_mac_settings(p);
19163f345a5dSKip Macy 					PORT_UNLOCK(p);
19173f345a5dSKip Macy 				}
1918b302b77cSNavdeep Parhar 				ADAPTER_UNLOCK(sc);
1919b6d90eb7SKip Macy 			} else
1920b302b77cSNavdeep Parhar 				error = cxgb_init_locked(p);
1921b6d90eb7SKip Macy 			p->if_flags = ifp->if_flags;
1922bb38cd2fSKip Macy 		} else if (ifp->if_drv_flags & IFF_DRV_RUNNING)
1923b302b77cSNavdeep Parhar 			error = cxgb_uninit_locked(p);
19243c0e59deSNavdeep Parhar 		else
19253c0e59deSNavdeep Parhar 			ADAPTER_UNLOCK(sc);
1926bb38cd2fSKip Macy 
1927b302b77cSNavdeep Parhar 		ADAPTER_LOCK_ASSERT_NOTOWNED(sc);
1928b6d90eb7SKip Macy 		break;
19298e10660fSKip Macy 	case SIOCADDMULTI:
19308e10660fSKip Macy 	case SIOCDELMULTI:
1931b302b77cSNavdeep Parhar 		ADAPTER_LOCK(sc);
1932b302b77cSNavdeep Parhar 		error = IS_DOOMED(p) ? ENXIO : (IS_BUSY(sc) ? EBUSY : 0);
1933b302b77cSNavdeep Parhar 		if (error)
1934b302b77cSNavdeep Parhar 			goto fail;
1935b302b77cSNavdeep Parhar 
19368e10660fSKip Macy 		if (ifp->if_drv_flags & IFF_DRV_RUNNING) {
1937837f41b0SGeorge V. Neville-Neil 			PORT_LOCK(p);
19383f345a5dSKip Macy 			cxgb_update_mac_settings(p);
1939837f41b0SGeorge V. Neville-Neil 			PORT_UNLOCK(p);
19403f345a5dSKip Macy 		}
1941b302b77cSNavdeep Parhar 		ADAPTER_UNLOCK(sc);
19423f345a5dSKip Macy 
1943b6d90eb7SKip Macy 		break;
1944b6d90eb7SKip Macy 	case SIOCSIFCAP:
1945b302b77cSNavdeep Parhar 		ADAPTER_LOCK(sc);
1946b302b77cSNavdeep Parhar 		error = IS_DOOMED(p) ? ENXIO : (IS_BUSY(sc) ? EBUSY : 0);
1947b302b77cSNavdeep Parhar 		if (error)
1948b302b77cSNavdeep Parhar 			goto fail;
1949b302b77cSNavdeep Parhar 
1950b6d90eb7SKip Macy 		mask = ifr->ifr_reqcap ^ ifp->if_capenable;
1951b6d90eb7SKip Macy 		if (mask & IFCAP_TXCSUM) {
1952f9c6e164SNavdeep Parhar 			ifp->if_capenable ^= IFCAP_TXCSUM;
1953f9c6e164SNavdeep Parhar 			ifp->if_hwassist ^= (CSUM_TCP | CSUM_UDP | CSUM_IP);
1954f9c6e164SNavdeep Parhar 
19550a704909SNavdeep Parhar 			if (IFCAP_TSO4 & ifp->if_capenable &&
1956f9c6e164SNavdeep Parhar 			    !(IFCAP_TXCSUM & ifp->if_capenable)) {
19570a704909SNavdeep Parhar 				ifp->if_capenable &= ~IFCAP_TSO4;
1958f9c6e164SNavdeep Parhar 				if_printf(ifp,
19590a704909SNavdeep Parhar 				    "tso4 disabled due to -txcsum.\n");
19600a704909SNavdeep Parhar 			}
19610a704909SNavdeep Parhar 		}
19620a704909SNavdeep Parhar 		if (mask & IFCAP_TXCSUM_IPV6) {
19630a704909SNavdeep Parhar 			ifp->if_capenable ^= IFCAP_TXCSUM_IPV6;
19640a704909SNavdeep Parhar 			ifp->if_hwassist ^= (CSUM_UDP_IPV6 | CSUM_TCP_IPV6);
19650a704909SNavdeep Parhar 
19660a704909SNavdeep Parhar 			if (IFCAP_TSO6 & ifp->if_capenable &&
19670a704909SNavdeep Parhar 			    !(IFCAP_TXCSUM_IPV6 & ifp->if_capenable)) {
19680a704909SNavdeep Parhar 				ifp->if_capenable &= ~IFCAP_TSO6;
19690a704909SNavdeep Parhar 				if_printf(ifp,
19700a704909SNavdeep Parhar 				    "tso6 disabled due to -txcsum6.\n");
1971f9c6e164SNavdeep Parhar 			}
1972f9c6e164SNavdeep Parhar 		}
1973f9c6e164SNavdeep Parhar 		if (mask & IFCAP_RXCSUM)
1974f9c6e164SNavdeep Parhar 			ifp->if_capenable ^= IFCAP_RXCSUM;
19750a704909SNavdeep Parhar 		if (mask & IFCAP_RXCSUM_IPV6)
19760a704909SNavdeep Parhar 			ifp->if_capenable ^= IFCAP_RXCSUM_IPV6;
1977f9c6e164SNavdeep Parhar 
19780a704909SNavdeep Parhar 		/*
19790a704909SNavdeep Parhar 		 * Note that we leave CSUM_TSO alone (it is always set).  The
19800a704909SNavdeep Parhar 		 * kernel takes both IFCAP_TSOx and CSUM_TSO into account before
19810a704909SNavdeep Parhar 		 * sending a TSO request our way, so it's sufficient to toggle
19820a704909SNavdeep Parhar 		 * IFCAP_TSOx only.
19830a704909SNavdeep Parhar 		 */
19840a704909SNavdeep Parhar 		if (mask & IFCAP_TSO4) {
19850a704909SNavdeep Parhar 			if (!(IFCAP_TSO4 & ifp->if_capenable) &&
19860a704909SNavdeep Parhar 			    !(IFCAP_TXCSUM & ifp->if_capenable)) {
19870a704909SNavdeep Parhar 				if_printf(ifp, "enable txcsum first.\n");
1988f9c6e164SNavdeep Parhar 				error = EAGAIN;
19890a704909SNavdeep Parhar 				goto fail;
1990f9c6e164SNavdeep Parhar 			}
19910a704909SNavdeep Parhar 			ifp->if_capenable ^= IFCAP_TSO4;
19920a704909SNavdeep Parhar 		}
19930a704909SNavdeep Parhar 		if (mask & IFCAP_TSO6) {
19940a704909SNavdeep Parhar 			if (!(IFCAP_TSO6 & ifp->if_capenable) &&
19950a704909SNavdeep Parhar 			    !(IFCAP_TXCSUM_IPV6 & ifp->if_capenable)) {
19960a704909SNavdeep Parhar 				if_printf(ifp, "enable txcsum6 first.\n");
19970a704909SNavdeep Parhar 				error = EAGAIN;
19980a704909SNavdeep Parhar 				goto fail;
19990a704909SNavdeep Parhar 			}
20000a704909SNavdeep Parhar 			ifp->if_capenable ^= IFCAP_TSO6;
2001b6d90eb7SKip Macy 		}
200225292debSKip Macy 		if (mask & IFCAP_LRO) {
200325292debSKip Macy 			ifp->if_capenable ^= IFCAP_LRO;
200425292debSKip Macy 
200525292debSKip Macy 			/* Safe to do this even if cxgb_up not called yet */
200625292debSKip Macy 			cxgb_set_lro(p, ifp->if_capenable & IFCAP_LRO);
200725292debSKip Macy 		}
200809fe6320SNavdeep Parhar #ifdef TCP_OFFLOAD
200909fe6320SNavdeep Parhar 		if (mask & IFCAP_TOE4) {
201009fe6320SNavdeep Parhar 			int enable = (ifp->if_capenable ^ mask) & IFCAP_TOE4;
201109fe6320SNavdeep Parhar 
201209fe6320SNavdeep Parhar 			error = toe_capability(p, enable);
201309fe6320SNavdeep Parhar 			if (error == 0)
201409fe6320SNavdeep Parhar 				ifp->if_capenable ^= mask;
201509fe6320SNavdeep Parhar 		}
201609fe6320SNavdeep Parhar #endif
20174af83c8cSKip Macy 		if (mask & IFCAP_VLAN_HWTAGGING) {
20184af83c8cSKip Macy 			ifp->if_capenable ^= IFCAP_VLAN_HWTAGGING;
20193f345a5dSKip Macy 			if (ifp->if_drv_flags & IFF_DRV_RUNNING) {
20203f345a5dSKip Macy 				PORT_LOCK(p);
20213f345a5dSKip Macy 				cxgb_update_mac_settings(p);
20223f345a5dSKip Macy 				PORT_UNLOCK(p);
20233f345a5dSKip Macy 			}
20244af83c8cSKip Macy 		}
20254af83c8cSKip Macy 		if (mask & IFCAP_VLAN_MTU) {
20264af83c8cSKip Macy 			ifp->if_capenable ^= IFCAP_VLAN_MTU;
20273f345a5dSKip Macy 			if (ifp->if_drv_flags & IFF_DRV_RUNNING) {
20283f345a5dSKip Macy 				PORT_LOCK(p);
20293f345a5dSKip Macy 				cxgb_update_mac_settings(p);
20303f345a5dSKip Macy 				PORT_UNLOCK(p);
20313f345a5dSKip Macy 			}
20324af83c8cSKip Macy 		}
2033f9c6e164SNavdeep Parhar 		if (mask & IFCAP_VLAN_HWTSO)
2034f9c6e164SNavdeep Parhar 			ifp->if_capenable ^= IFCAP_VLAN_HWTSO;
2035b302b77cSNavdeep Parhar 		if (mask & IFCAP_VLAN_HWCSUM)
20364af83c8cSKip Macy 			ifp->if_capenable ^= IFCAP_VLAN_HWCSUM;
20374af83c8cSKip Macy 
20384af83c8cSKip Macy #ifdef VLAN_CAPABILITIES
20394af83c8cSKip Macy 		VLAN_CAPABILITIES(ifp);
20404af83c8cSKip Macy #endif
2041b302b77cSNavdeep Parhar 		ADAPTER_UNLOCK(sc);
2042b302b77cSNavdeep Parhar 		break;
2043b302b77cSNavdeep Parhar 	case SIOCSIFMEDIA:
2044b302b77cSNavdeep Parhar 	case SIOCGIFMEDIA:
2045b302b77cSNavdeep Parhar 		error = ifmedia_ioctl(ifp, ifr, &p->media, command);
2046b6d90eb7SKip Macy 		break;
2047b6d90eb7SKip Macy 	default:
20483f345a5dSKip Macy 		error = ether_ioctl(ifp, command, data);
20493f345a5dSKip Macy 	}
20503f345a5dSKip Macy 
2051b6d90eb7SKip Macy 	return (error);
2052b6d90eb7SKip Macy }
2053b6d90eb7SKip Macy 
2054b6d90eb7SKip Macy static int
2055b6d90eb7SKip Macy cxgb_media_change(struct ifnet *ifp)
2056b6d90eb7SKip Macy {
20572975f787SNavdeep Parhar 	return (EOPNOTSUPP);
2058b6d90eb7SKip Macy }
2059b6d90eb7SKip Macy 
2060837f41b0SGeorge V. Neville-Neil /*
20612975f787SNavdeep Parhar  * Translates phy->modtype to the correct Ethernet media subtype.
2062837f41b0SGeorge V. Neville-Neil  */
2063837f41b0SGeorge V. Neville-Neil static int
20642975f787SNavdeep Parhar cxgb_ifm_type(int mod)
2065837f41b0SGeorge V. Neville-Neil {
20662975f787SNavdeep Parhar 	switch (mod) {
2067837f41b0SGeorge V. Neville-Neil 	case phy_modtype_sr:
20682975f787SNavdeep Parhar 		return (IFM_10G_SR);
2069837f41b0SGeorge V. Neville-Neil 	case phy_modtype_lr:
20702975f787SNavdeep Parhar 		return (IFM_10G_LR);
2071837f41b0SGeorge V. Neville-Neil 	case phy_modtype_lrm:
20722975f787SNavdeep Parhar 		return (IFM_10G_LRM);
2073837f41b0SGeorge V. Neville-Neil 	case phy_modtype_twinax:
20742975f787SNavdeep Parhar 		return (IFM_10G_TWINAX);
2075837f41b0SGeorge V. Neville-Neil 	case phy_modtype_twinax_long:
20762975f787SNavdeep Parhar 		return (IFM_10G_TWINAX_LONG);
2077837f41b0SGeorge V. Neville-Neil 	case phy_modtype_none:
20782975f787SNavdeep Parhar 		return (IFM_NONE);
2079837f41b0SGeorge V. Neville-Neil 	case phy_modtype_unknown:
20802975f787SNavdeep Parhar 		return (IFM_UNKNOWN);
2081837f41b0SGeorge V. Neville-Neil 	}
2082837f41b0SGeorge V. Neville-Neil 
20832975f787SNavdeep Parhar 	KASSERT(0, ("%s: modtype %d unknown", __func__, mod));
20842975f787SNavdeep Parhar 	return (IFM_UNKNOWN);
20852975f787SNavdeep Parhar }
20862975f787SNavdeep Parhar 
20872975f787SNavdeep Parhar /*
20882975f787SNavdeep Parhar  * Rebuilds the ifmedia list for this port, and sets the current media.
20892975f787SNavdeep Parhar  */
20902975f787SNavdeep Parhar static void
20912975f787SNavdeep Parhar cxgb_build_medialist(struct port_info *p)
20922975f787SNavdeep Parhar {
20932975f787SNavdeep Parhar 	struct cphy *phy = &p->phy;
20942975f787SNavdeep Parhar 	struct ifmedia *media = &p->media;
20952975f787SNavdeep Parhar 	int mod = phy->modtype;
20962975f787SNavdeep Parhar 	int m = IFM_ETHER | IFM_FDX;
20972975f787SNavdeep Parhar 
20982975f787SNavdeep Parhar 	PORT_LOCK(p);
20992975f787SNavdeep Parhar 
21002975f787SNavdeep Parhar 	ifmedia_removeall(media);
21012975f787SNavdeep Parhar 	if (phy->caps & SUPPORTED_TP && phy->caps & SUPPORTED_Autoneg) {
21022975f787SNavdeep Parhar 		/* Copper (RJ45) */
21032975f787SNavdeep Parhar 
21042975f787SNavdeep Parhar 		if (phy->caps & SUPPORTED_10000baseT_Full)
21052975f787SNavdeep Parhar 			ifmedia_add(media, m | IFM_10G_T, mod, NULL);
21062975f787SNavdeep Parhar 
21072975f787SNavdeep Parhar 		if (phy->caps & SUPPORTED_1000baseT_Full)
21082975f787SNavdeep Parhar 			ifmedia_add(media, m | IFM_1000_T, mod, NULL);
21092975f787SNavdeep Parhar 
21102975f787SNavdeep Parhar 		if (phy->caps & SUPPORTED_100baseT_Full)
21112975f787SNavdeep Parhar 			ifmedia_add(media, m | IFM_100_TX, mod, NULL);
21122975f787SNavdeep Parhar 
21132975f787SNavdeep Parhar 		if (phy->caps & SUPPORTED_10baseT_Full)
21142975f787SNavdeep Parhar 			ifmedia_add(media, m | IFM_10_T, mod, NULL);
21152975f787SNavdeep Parhar 
21162975f787SNavdeep Parhar 		ifmedia_add(media, IFM_ETHER | IFM_AUTO, mod, NULL);
21172975f787SNavdeep Parhar 		ifmedia_set(media, IFM_ETHER | IFM_AUTO);
21182975f787SNavdeep Parhar 
21192975f787SNavdeep Parhar 	} else if (phy->caps & SUPPORTED_TP) {
21202975f787SNavdeep Parhar 		/* Copper (CX4) */
21212975f787SNavdeep Parhar 
21222975f787SNavdeep Parhar 		KASSERT(phy->caps & SUPPORTED_10000baseT_Full,
21232975f787SNavdeep Parhar 			("%s: unexpected cap 0x%x", __func__, phy->caps));
21242975f787SNavdeep Parhar 
21252975f787SNavdeep Parhar 		ifmedia_add(media, m | IFM_10G_CX4, mod, NULL);
21262975f787SNavdeep Parhar 		ifmedia_set(media, m | IFM_10G_CX4);
21272975f787SNavdeep Parhar 
21282975f787SNavdeep Parhar 	} else if (phy->caps & SUPPORTED_FIBRE &&
21292975f787SNavdeep Parhar 		   phy->caps & SUPPORTED_10000baseT_Full) {
21302975f787SNavdeep Parhar 		/* 10G optical (but includes SFP+ twinax) */
21312975f787SNavdeep Parhar 
21322975f787SNavdeep Parhar 		m |= cxgb_ifm_type(mod);
21332975f787SNavdeep Parhar 		if (IFM_SUBTYPE(m) == IFM_NONE)
21342975f787SNavdeep Parhar 			m &= ~IFM_FDX;
21352975f787SNavdeep Parhar 
21362975f787SNavdeep Parhar 		ifmedia_add(media, m, mod, NULL);
21372975f787SNavdeep Parhar 		ifmedia_set(media, m);
21382975f787SNavdeep Parhar 
21392975f787SNavdeep Parhar 	} else if (phy->caps & SUPPORTED_FIBRE &&
21402975f787SNavdeep Parhar 		   phy->caps & SUPPORTED_1000baseT_Full) {
21412975f787SNavdeep Parhar 		/* 1G optical */
21422975f787SNavdeep Parhar 
21432975f787SNavdeep Parhar 		/* XXX: Lie and claim to be SX, could actually be any 1G-X */
21442975f787SNavdeep Parhar 		ifmedia_add(media, m | IFM_1000_SX, mod, NULL);
21452975f787SNavdeep Parhar 		ifmedia_set(media, m | IFM_1000_SX);
21462975f787SNavdeep Parhar 
21472975f787SNavdeep Parhar 	} else {
21482975f787SNavdeep Parhar 		KASSERT(0, ("%s: don't know how to handle 0x%x.", __func__,
21492975f787SNavdeep Parhar 			    phy->caps));
21502975f787SNavdeep Parhar 	}
21512975f787SNavdeep Parhar 
21522975f787SNavdeep Parhar 	PORT_UNLOCK(p);
2153837f41b0SGeorge V. Neville-Neil }
2154837f41b0SGeorge V. Neville-Neil 
2155b6d90eb7SKip Macy static void
2156b6d90eb7SKip Macy cxgb_media_status(struct ifnet *ifp, struct ifmediareq *ifmr)
2157b6d90eb7SKip Macy {
2158b6d90eb7SKip Macy 	struct port_info *p = ifp->if_softc;
2159837f41b0SGeorge V. Neville-Neil 	struct ifmedia_entry *cur = p->media.ifm_cur;
21602975f787SNavdeep Parhar 	int speed = p->link_config.speed;
2161837f41b0SGeorge V. Neville-Neil 
2162837f41b0SGeorge V. Neville-Neil 	if (cur->ifm_data != p->phy.modtype) {
21632975f787SNavdeep Parhar 		cxgb_build_medialist(p);
21642975f787SNavdeep Parhar 		cur = p->media.ifm_cur;
2165837f41b0SGeorge V. Neville-Neil 	}
2166b6d90eb7SKip Macy 
2167b6d90eb7SKip Macy 	ifmr->ifm_status = IFM_AVALID;
2168b6d90eb7SKip Macy 	if (!p->link_config.link_ok)
2169b6d90eb7SKip Macy 		return;
2170b6d90eb7SKip Macy 
2171b6d90eb7SKip Macy 	ifmr->ifm_status |= IFM_ACTIVE;
2172b6d90eb7SKip Macy 
21732975f787SNavdeep Parhar 	/*
21742975f787SNavdeep Parhar 	 * active and current will differ iff current media is autoselect.  That
21752975f787SNavdeep Parhar 	 * can happen only for copper RJ45.
21762975f787SNavdeep Parhar 	 */
21772975f787SNavdeep Parhar 	if (IFM_SUBTYPE(cur->ifm_media) != IFM_AUTO)
21782975f787SNavdeep Parhar 		return;
21792975f787SNavdeep Parhar 	KASSERT(p->phy.caps & SUPPORTED_TP && p->phy.caps & SUPPORTED_Autoneg,
21802975f787SNavdeep Parhar 		("%s: unexpected PHY caps 0x%x", __func__, p->phy.caps));
2181ef72318fSKip Macy 
21822975f787SNavdeep Parhar 	ifmr->ifm_active = IFM_ETHER | IFM_FDX;
21832975f787SNavdeep Parhar 	if (speed == SPEED_10000)
21842975f787SNavdeep Parhar 		ifmr->ifm_active |= IFM_10G_T;
21852975f787SNavdeep Parhar 	else if (speed == SPEED_1000)
21862975f787SNavdeep Parhar 		ifmr->ifm_active |= IFM_1000_T;
21872975f787SNavdeep Parhar 	else if (speed == SPEED_100)
21882975f787SNavdeep Parhar 		ifmr->ifm_active |= IFM_100_TX;
21892975f787SNavdeep Parhar 	else if (speed == SPEED_10)
21902975f787SNavdeep Parhar 		ifmr->ifm_active |= IFM_10_T;
2191b6d90eb7SKip Macy 	else
21922975f787SNavdeep Parhar 		KASSERT(0, ("%s: link up but speed unknown (%u)", __func__,
21932975f787SNavdeep Parhar 			    speed));
2194b6d90eb7SKip Macy }
2195b6d90eb7SKip Macy 
2196b6d90eb7SKip Macy static void
2197b6d90eb7SKip Macy cxgb_async_intr(void *data)
2198b6d90eb7SKip Macy {
2199693d746cSKip Macy 	adapter_t *sc = data;
2200693d746cSKip Macy 
22012c32b502SNavdeep Parhar 	t3_write_reg(sc, A_PL_INT_ENABLE0, 0);
22022c32b502SNavdeep Parhar 	(void) t3_read_reg(sc, A_PL_INT_ENABLE0);
2203bb38cd2fSKip Macy 	taskqueue_enqueue(sc->tq, &sc->slow_intr_task);
2204b6d90eb7SKip Macy }
2205b6d90eb7SKip Macy 
2206bd1a9fbaSNavdeep Parhar static void
2207bd1a9fbaSNavdeep Parhar link_check_callout(void *arg)
2208c01f2b83SNavdeep Parhar {
2209bd1a9fbaSNavdeep Parhar 	struct port_info *pi = arg;
2210bd1a9fbaSNavdeep Parhar 	struct adapter *sc = pi->adapter;
2211c01f2b83SNavdeep Parhar 
2212bd1a9fbaSNavdeep Parhar 	if (!isset(&sc->open_device_map, pi->port_id))
2213bd1a9fbaSNavdeep Parhar 		return;
2214c01f2b83SNavdeep Parhar 
2215bd1a9fbaSNavdeep Parhar 	taskqueue_enqueue(sc->tq, &pi->link_check_task);
2216c01f2b83SNavdeep Parhar }
2217c01f2b83SNavdeep Parhar 
2218b6d90eb7SKip Macy static void
2219bd1a9fbaSNavdeep Parhar check_link_status(void *arg, int pending)
2220b6d90eb7SKip Macy {
2221bd1a9fbaSNavdeep Parhar 	struct port_info *pi = arg;
2222bd1a9fbaSNavdeep Parhar 	struct adapter *sc = pi->adapter;
2223b6d90eb7SKip Macy 
2224bd1a9fbaSNavdeep Parhar 	if (!isset(&sc->open_device_map, pi->port_id))
2225bd1a9fbaSNavdeep Parhar 		return;
2226b6d90eb7SKip Macy 
2227bd1a9fbaSNavdeep Parhar 	t3_link_changed(sc, pi->port_id);
22283f345a5dSKip Macy 
2229bd1a9fbaSNavdeep Parhar 	if (pi->link_fault || !(pi->phy.caps & SUPPORTED_LINK_IRQ))
2230bd1a9fbaSNavdeep Parhar 		callout_reset(&pi->link_check_ch, hz, link_check_callout, pi);
2231b6d90eb7SKip Macy }
2232bd1a9fbaSNavdeep Parhar 
2233bd1a9fbaSNavdeep Parhar void
2234bd1a9fbaSNavdeep Parhar t3_os_link_intr(struct port_info *pi)
2235bd1a9fbaSNavdeep Parhar {
2236bd1a9fbaSNavdeep Parhar 	/*
2237bd1a9fbaSNavdeep Parhar 	 * Schedule a link check in the near future.  If the link is flapping
2238bd1a9fbaSNavdeep Parhar 	 * rapidly we'll keep resetting the callout and delaying the check until
2239bd1a9fbaSNavdeep Parhar 	 * things stabilize a bit.
2240bd1a9fbaSNavdeep Parhar 	 */
2241bd1a9fbaSNavdeep Parhar 	callout_reset(&pi->link_check_ch, hz / 4, link_check_callout, pi);
2242b6d90eb7SKip Macy }
2243b6d90eb7SKip Macy 
2244577e9bbeSKip Macy static void
22453f345a5dSKip Macy check_t3b2_mac(struct adapter *sc)
2246577e9bbeSKip Macy {
2247577e9bbeSKip Macy 	int i;
2248577e9bbeSKip Macy 
22493f345a5dSKip Macy 	if (sc->flags & CXGB_SHUTDOWN)
22508e10660fSKip Macy 		return;
22518e10660fSKip Macy 
22523f345a5dSKip Macy 	for_each_port(sc, i) {
22533f345a5dSKip Macy 		struct port_info *p = &sc->port[i];
2254577e9bbeSKip Macy 		int status;
22553f345a5dSKip Macy #ifdef INVARIANTS
22563f345a5dSKip Macy 		struct ifnet *ifp = p->ifp;
22573f345a5dSKip Macy #endif
2258577e9bbeSKip Macy 
2259c01f2b83SNavdeep Parhar 		if (!isset(&sc->open_device_map, p->port_id) || p->link_fault ||
2260c01f2b83SNavdeep Parhar 		    !p->link_config.link_ok)
2261577e9bbeSKip Macy 			continue;
2262577e9bbeSKip Macy 
22633f345a5dSKip Macy 		KASSERT(ifp->if_drv_flags & IFF_DRV_RUNNING,
22643f345a5dSKip Macy 			("%s: state mismatch (drv_flags %x, device_map %x)",
22653f345a5dSKip Macy 			 __func__, ifp->if_drv_flags, sc->open_device_map));
22663f345a5dSKip Macy 
2267577e9bbeSKip Macy 		PORT_LOCK(p);
2268577e9bbeSKip Macy 		status = t3b2_mac_watchdog_task(&p->mac);
2269577e9bbeSKip Macy 		if (status == 1)
2270577e9bbeSKip Macy 			p->mac.stats.num_toggled++;
2271577e9bbeSKip Macy 		else if (status == 2) {
2272577e9bbeSKip Macy 			struct cmac *mac = &p->mac;
2273577e9bbeSKip Macy 
22743f345a5dSKip Macy 			cxgb_update_mac_settings(p);
2275577e9bbeSKip Macy 			t3_link_start(&p->phy, mac, &p->link_config);
2276577e9bbeSKip Macy 			t3_mac_enable(mac, MAC_DIRECTION_RX | MAC_DIRECTION_TX);
22773f345a5dSKip Macy 			t3_port_intr_enable(sc, p->port_id);
2278577e9bbeSKip Macy 			p->mac.stats.num_resets++;
2279577e9bbeSKip Macy 		}
2280577e9bbeSKip Macy 		PORT_UNLOCK(p);
2281577e9bbeSKip Macy 	}
2282577e9bbeSKip Macy }
2283577e9bbeSKip Macy 
2284577e9bbeSKip Macy static void
2285577e9bbeSKip Macy cxgb_tick(void *arg)
2286577e9bbeSKip Macy {
2287577e9bbeSKip Macy 	adapter_t *sc = (adapter_t *)arg;
22888090c9f5SKip Macy 
22898e10660fSKip Macy 	if (sc->flags & CXGB_SHUTDOWN)
22908090c9f5SKip Macy 		return;
2291577e9bbeSKip Macy 
2292bb38cd2fSKip Macy 	taskqueue_enqueue(sc->tq, &sc->tick_task);
2293bd1a9fbaSNavdeep Parhar 	callout_reset(&sc->cxgb_tick_ch, hz, cxgb_tick, sc);
2294bb38cd2fSKip Macy }
2295bb38cd2fSKip Macy 
2296bb38cd2fSKip Macy static void
2297bb38cd2fSKip Macy cxgb_tick_handler(void *arg, int count)
2298bb38cd2fSKip Macy {
2299bb38cd2fSKip Macy 	adapter_t *sc = (adapter_t *)arg;
2300bb38cd2fSKip Macy 	const struct adapter_params *p = &sc->params;
2301706cb31fSKip Macy 	int i;
2302f2d8ff04SGeorge V. Neville-Neil 	uint32_t cause, reset;
2303bb38cd2fSKip Macy 
23040bbdea77SGeorge V. Neville-Neil 	if (sc->flags & CXGB_SHUTDOWN || !(sc->flags & FULL_INIT_DONE))
23058e10660fSKip Macy 		return;
23068e10660fSKip Macy 
2307f35c2d65SKip Macy 	if (p->rev == T3_REV_B2 && p->nports < 4 && sc->open_device_map)
2308f35c2d65SKip Macy 		check_t3b2_mac(sc);
2309f35c2d65SKip Macy 
2310489ca05bSNavdeep Parhar 	cause = t3_read_reg(sc, A_SG_INT_CAUSE) & (F_RSPQSTARVE | F_FLEMPTY);
2311489ca05bSNavdeep Parhar 	if (cause) {
2312f2d8ff04SGeorge V. Neville-Neil 		struct sge_qset *qs = &sc->sge.qs[0];
2313489ca05bSNavdeep Parhar 		uint32_t mask, v;
2314f2d8ff04SGeorge V. Neville-Neil 
2315489ca05bSNavdeep Parhar 		v = t3_read_reg(sc, A_SG_RSPQ_FL_STATUS) & ~0xff00;
2316f2d8ff04SGeorge V. Neville-Neil 
2317489ca05bSNavdeep Parhar 		mask = 1;
2318489ca05bSNavdeep Parhar 		for (i = 0; i < SGE_QSETS; i++) {
2319489ca05bSNavdeep Parhar 			if (v & mask)
2320489ca05bSNavdeep Parhar 				qs[i].rspq.starved++;
2321489ca05bSNavdeep Parhar 			mask <<= 1;
2322f2d8ff04SGeorge V. Neville-Neil 		}
2323489ca05bSNavdeep Parhar 
2324489ca05bSNavdeep Parhar 		mask <<= SGE_QSETS; /* skip RSPQXDISABLED */
2325489ca05bSNavdeep Parhar 
2326489ca05bSNavdeep Parhar 		for (i = 0; i < SGE_QSETS * 2; i++) {
2327489ca05bSNavdeep Parhar 			if (v & mask) {
2328489ca05bSNavdeep Parhar 				qs[i / 2].fl[i % 2].empty++;
2329f2d8ff04SGeorge V. Neville-Neil 			}
2330489ca05bSNavdeep Parhar 			mask <<= 1;
2331489ca05bSNavdeep Parhar 		}
2332489ca05bSNavdeep Parhar 
2333489ca05bSNavdeep Parhar 		/* clear */
2334489ca05bSNavdeep Parhar 		t3_write_reg(sc, A_SG_RSPQ_FL_STATUS, v);
2335489ca05bSNavdeep Parhar 		t3_write_reg(sc, A_SG_INT_CAUSE, cause);
2336489ca05bSNavdeep Parhar 	}
2337f2d8ff04SGeorge V. Neville-Neil 
2338ceac50ebSKip Macy 	for (i = 0; i < sc->params.nports; i++) {
2339ceac50ebSKip Macy 		struct port_info *pi = &sc->port[i];
2340ceac50ebSKip Macy 		struct ifnet *ifp = pi->ifp;
2341f2d8ff04SGeorge V. Neville-Neil 		struct cmac *mac = &pi->mac;
2342f2d8ff04SGeorge V. Neville-Neil 		struct mac_stats *mstats = &mac->stats;
234392f61ecbSNavdeep Parhar 		int drops, j;
23443f345a5dSKip Macy 
23453f345a5dSKip Macy 		if (!isset(&sc->open_device_map, pi->port_id))
23463f345a5dSKip Macy 			continue;
23473f345a5dSKip Macy 
2348f35c2d65SKip Macy 		PORT_LOCK(pi);
2349f2d8ff04SGeorge V. Neville-Neil 		t3_mac_update_stats(mac);
2350f35c2d65SKip Macy 		PORT_UNLOCK(pi);
2351f35c2d65SKip Macy 
235292f61ecbSNavdeep Parhar 		ifp->if_opackets = mstats->tx_frames;
235392f61ecbSNavdeep Parhar 		ifp->if_ipackets = mstats->rx_frames;
2354ceac50ebSKip Macy 		ifp->if_obytes = mstats->tx_octets;
2355ceac50ebSKip Macy 		ifp->if_ibytes = mstats->rx_octets;
2356ceac50ebSKip Macy 		ifp->if_omcasts = mstats->tx_mcast_frames;
2357ceac50ebSKip Macy 		ifp->if_imcasts = mstats->rx_mcast_frames;
235892f61ecbSNavdeep Parhar 		ifp->if_collisions = mstats->tx_total_collisions;
2359ceac50ebSKip Macy 		ifp->if_iqdrops = mstats->rx_cong_drops;
2360ceac50ebSKip Macy 
236192f61ecbSNavdeep Parhar 		drops = 0;
236292f61ecbSNavdeep Parhar 		for (j = pi->first_qset; j < pi->first_qset + pi->nqsets; j++)
236392f61ecbSNavdeep Parhar 			drops += sc->sge.qs[j].txq[TXQ_ETH].txq_mr->br_drops;
236492f61ecbSNavdeep Parhar 		ifp->if_snd.ifq_drops = drops;
236592f61ecbSNavdeep Parhar 
2366ceac50ebSKip Macy 		ifp->if_oerrors =
2367ceac50ebSKip Macy 		    mstats->tx_excess_collisions +
2368ceac50ebSKip Macy 		    mstats->tx_underrun +
2369ceac50ebSKip Macy 		    mstats->tx_len_errs +
2370ceac50ebSKip Macy 		    mstats->tx_mac_internal_errs +
2371ceac50ebSKip Macy 		    mstats->tx_excess_deferral +
2372ceac50ebSKip Macy 		    mstats->tx_fcs_errs;
2373ceac50ebSKip Macy 		ifp->if_ierrors =
2374ceac50ebSKip Macy 		    mstats->rx_jabber +
2375ceac50ebSKip Macy 		    mstats->rx_data_errs +
2376ceac50ebSKip Macy 		    mstats->rx_sequence_errs +
2377ceac50ebSKip Macy 		    mstats->rx_runt +
2378ceac50ebSKip Macy 		    mstats->rx_too_long +
2379ceac50ebSKip Macy 		    mstats->rx_mac_internal_errs +
2380ceac50ebSKip Macy 		    mstats->rx_short +
2381ceac50ebSKip Macy 		    mstats->rx_fcs_errs;
2382f2d8ff04SGeorge V. Neville-Neil 
2383f2d8ff04SGeorge V. Neville-Neil 		if (mac->multiport)
2384f2d8ff04SGeorge V. Neville-Neil 			continue;
2385f2d8ff04SGeorge V. Neville-Neil 
2386f2d8ff04SGeorge V. Neville-Neil 		/* Count rx fifo overflows, once per second */
2387f2d8ff04SGeorge V. Neville-Neil 		cause = t3_read_reg(sc, A_XGM_INT_CAUSE + mac->offset);
2388f2d8ff04SGeorge V. Neville-Neil 		reset = 0;
2389f2d8ff04SGeorge V. Neville-Neil 		if (cause & F_RXFIFO_OVERFLOW) {
2390f2d8ff04SGeorge V. Neville-Neil 			mac->stats.rx_fifo_ovfl++;
2391f2d8ff04SGeorge V. Neville-Neil 			reset |= F_RXFIFO_OVERFLOW;
2392f2d8ff04SGeorge V. Neville-Neil 		}
2393f2d8ff04SGeorge V. Neville-Neil 		t3_write_reg(sc, A_XGM_INT_CAUSE + mac->offset, reset);
2394ceac50ebSKip Macy 	}
2395577e9bbeSKip Macy }
2396577e9bbeSKip Macy 
23977ac2e6c3SKip Macy static void
23987ac2e6c3SKip Macy touch_bars(device_t dev)
23997ac2e6c3SKip Macy {
24007ac2e6c3SKip Macy 	/*
24017ac2e6c3SKip Macy 	 * Don't enable yet
24027ac2e6c3SKip Macy 	 */
24037ac2e6c3SKip Macy #if !defined(__LP64__) && 0
24047ac2e6c3SKip Macy 	u32 v;
24057ac2e6c3SKip Macy 
24067ac2e6c3SKip Macy 	pci_read_config_dword(pdev, PCI_BASE_ADDRESS_1, &v);
24077ac2e6c3SKip Macy 	pci_write_config_dword(pdev, PCI_BASE_ADDRESS_1, v);
24087ac2e6c3SKip Macy 	pci_read_config_dword(pdev, PCI_BASE_ADDRESS_3, &v);
24097ac2e6c3SKip Macy 	pci_write_config_dword(pdev, PCI_BASE_ADDRESS_3, v);
24107ac2e6c3SKip Macy 	pci_read_config_dword(pdev, PCI_BASE_ADDRESS_5, &v);
24117ac2e6c3SKip Macy 	pci_write_config_dword(pdev, PCI_BASE_ADDRESS_5, v);
24127ac2e6c3SKip Macy #endif
24137ac2e6c3SKip Macy }
24147ac2e6c3SKip Macy 
2415ac3a6d9cSKip Macy static int
2416ac3a6d9cSKip Macy set_eeprom(struct port_info *pi, const uint8_t *data, int len, int offset)
2417ac3a6d9cSKip Macy {
2418ac3a6d9cSKip Macy 	uint8_t *buf;
2419ac3a6d9cSKip Macy 	int err = 0;
2420ac3a6d9cSKip Macy 	u32 aligned_offset, aligned_len, *p;
2421ac3a6d9cSKip Macy 	struct adapter *adapter = pi->adapter;
2422ac3a6d9cSKip Macy 
2423ac3a6d9cSKip Macy 
2424ac3a6d9cSKip Macy 	aligned_offset = offset & ~3;
2425ac3a6d9cSKip Macy 	aligned_len = (len + (offset & 3) + 3) & ~3;
2426ac3a6d9cSKip Macy 
2427ac3a6d9cSKip Macy 	if (aligned_offset != offset || aligned_len != len) {
2428ac3a6d9cSKip Macy 		buf = malloc(aligned_len, M_DEVBUF, M_WAITOK|M_ZERO);
2429ac3a6d9cSKip Macy 		if (!buf)
2430ac3a6d9cSKip Macy 			return (ENOMEM);
2431ac3a6d9cSKip Macy 		err = t3_seeprom_read(adapter, aligned_offset, (u32 *)buf);
2432ac3a6d9cSKip Macy 		if (!err && aligned_len > 4)
2433ac3a6d9cSKip Macy 			err = t3_seeprom_read(adapter,
2434ac3a6d9cSKip Macy 					      aligned_offset + aligned_len - 4,
2435ac3a6d9cSKip Macy 					      (u32 *)&buf[aligned_len - 4]);
2436ac3a6d9cSKip Macy 		if (err)
2437ac3a6d9cSKip Macy 			goto out;
2438ac3a6d9cSKip Macy 		memcpy(buf + (offset & 3), data, len);
2439ac3a6d9cSKip Macy 	} else
2440ac3a6d9cSKip Macy 		buf = (uint8_t *)(uintptr_t)data;
2441ac3a6d9cSKip Macy 
2442ac3a6d9cSKip Macy 	err = t3_seeprom_wp(adapter, 0);
2443ac3a6d9cSKip Macy 	if (err)
2444ac3a6d9cSKip Macy 		goto out;
2445ac3a6d9cSKip Macy 
2446ac3a6d9cSKip Macy 	for (p = (u32 *)buf; !err && aligned_len; aligned_len -= 4, p++) {
2447ac3a6d9cSKip Macy 		err = t3_seeprom_write(adapter, aligned_offset, *p);
2448ac3a6d9cSKip Macy 		aligned_offset += 4;
2449ac3a6d9cSKip Macy 	}
2450ac3a6d9cSKip Macy 
2451ac3a6d9cSKip Macy 	if (!err)
2452ac3a6d9cSKip Macy 		err = t3_seeprom_wp(adapter, 1);
2453ac3a6d9cSKip Macy out:
2454ac3a6d9cSKip Macy 	if (buf != data)
2455ac3a6d9cSKip Macy 		free(buf, M_DEVBUF);
2456ac3a6d9cSKip Macy 	return err;
2457ac3a6d9cSKip Macy }
2458ac3a6d9cSKip Macy 
2459ac3a6d9cSKip Macy 
2460b6d90eb7SKip Macy static int
2461b6d90eb7SKip Macy in_range(int val, int lo, int hi)
2462b6d90eb7SKip Macy {
2463b6d90eb7SKip Macy 	return val < 0 || (val <= hi && val >= lo);
2464b6d90eb7SKip Macy }
2465b6d90eb7SKip Macy 
2466b6d90eb7SKip Macy static int
246700b4e54aSWarner Losh cxgb_extension_open(struct cdev *dev, int flags, int fmp, struct thread *td)
2468ef72318fSKip Macy {
2469ef72318fSKip Macy        return (0);
2470ef72318fSKip Macy }
2471ef72318fSKip Macy 
2472ef72318fSKip Macy static int
247300b4e54aSWarner Losh cxgb_extension_close(struct cdev *dev, int flags, int fmt, struct thread *td)
2474ef72318fSKip Macy {
2475ef72318fSKip Macy        return (0);
2476ef72318fSKip Macy }
2477ef72318fSKip Macy 
2478ef72318fSKip Macy static int
2479b6d90eb7SKip Macy cxgb_extension_ioctl(struct cdev *dev, unsigned long cmd, caddr_t data,
2480b6d90eb7SKip Macy     int fflag, struct thread *td)
2481b6d90eb7SKip Macy {
2482b6d90eb7SKip Macy 	int mmd, error = 0;
2483b6d90eb7SKip Macy 	struct port_info *pi = dev->si_drv1;
2484b6d90eb7SKip Macy 	adapter_t *sc = pi->adapter;
2485b6d90eb7SKip Macy 
2486b6d90eb7SKip Macy #ifdef PRIV_SUPPORTED
2487b6d90eb7SKip Macy 	if (priv_check(td, PRIV_DRIVER)) {
2488b6d90eb7SKip Macy 		if (cxgb_debug)
2489b6d90eb7SKip Macy 			printf("user does not have access to privileged ioctls\n");
2490b6d90eb7SKip Macy 		return (EPERM);
2491b6d90eb7SKip Macy 	}
2492b6d90eb7SKip Macy #else
2493b6d90eb7SKip Macy 	if (suser(td)) {
2494b6d90eb7SKip Macy 		if (cxgb_debug)
2495b6d90eb7SKip Macy 			printf("user does not have access to privileged ioctls\n");
2496b6d90eb7SKip Macy 		return (EPERM);
2497b6d90eb7SKip Macy 	}
2498b6d90eb7SKip Macy #endif
2499b6d90eb7SKip Macy 
2500b6d90eb7SKip Macy 	switch (cmd) {
25011ffd6e58SKip Macy 	case CHELSIO_GET_MIIREG: {
2502b6d90eb7SKip Macy 		uint32_t val;
2503b6d90eb7SKip Macy 		struct cphy *phy = &pi->phy;
25041ffd6e58SKip Macy 		struct ch_mii_data *mid = (struct ch_mii_data *)data;
2505b6d90eb7SKip Macy 
2506b6d90eb7SKip Macy 		if (!phy->mdio_read)
2507b6d90eb7SKip Macy 			return (EOPNOTSUPP);
2508b6d90eb7SKip Macy 		if (is_10G(sc)) {
2509b6d90eb7SKip Macy 			mmd = mid->phy_id >> 8;
2510b6d90eb7SKip Macy 			if (!mmd)
2511b6d90eb7SKip Macy 				mmd = MDIO_DEV_PCS;
25120c1ff9c6SGeorge V. Neville-Neil 			else if (mmd > MDIO_DEV_VEND2)
2513ac3a6d9cSKip Macy 				return (EINVAL);
2514b6d90eb7SKip Macy 
2515b6d90eb7SKip Macy 			error = phy->mdio_read(sc, mid->phy_id & 0x1f, mmd,
2516b6d90eb7SKip Macy 					     mid->reg_num, &val);
2517b6d90eb7SKip Macy 		} else
2518b6d90eb7SKip Macy 		        error = phy->mdio_read(sc, mid->phy_id & 0x1f, 0,
2519b6d90eb7SKip Macy 					     mid->reg_num & 0x1f, &val);
2520b6d90eb7SKip Macy 		if (error == 0)
2521b6d90eb7SKip Macy 			mid->val_out = val;
2522b6d90eb7SKip Macy 		break;
2523b6d90eb7SKip Macy 	}
25241ffd6e58SKip Macy 	case CHELSIO_SET_MIIREG: {
2525b6d90eb7SKip Macy 		struct cphy *phy = &pi->phy;
25261ffd6e58SKip Macy 		struct ch_mii_data *mid = (struct ch_mii_data *)data;
2527b6d90eb7SKip Macy 
2528b6d90eb7SKip Macy 		if (!phy->mdio_write)
2529b6d90eb7SKip Macy 			return (EOPNOTSUPP);
2530b6d90eb7SKip Macy 		if (is_10G(sc)) {
2531b6d90eb7SKip Macy 			mmd = mid->phy_id >> 8;
2532b6d90eb7SKip Macy 			if (!mmd)
2533b6d90eb7SKip Macy 				mmd = MDIO_DEV_PCS;
25340c1ff9c6SGeorge V. Neville-Neil 			else if (mmd > MDIO_DEV_VEND2)
2535b6d90eb7SKip Macy 				return (EINVAL);
2536b6d90eb7SKip Macy 
2537b6d90eb7SKip Macy 			error = phy->mdio_write(sc, mid->phy_id & 0x1f,
2538b6d90eb7SKip Macy 					      mmd, mid->reg_num, mid->val_in);
2539b6d90eb7SKip Macy 		} else
2540b6d90eb7SKip Macy 			error = phy->mdio_write(sc, mid->phy_id & 0x1f, 0,
2541b6d90eb7SKip Macy 					      mid->reg_num & 0x1f,
2542b6d90eb7SKip Macy 					      mid->val_in);
2543b6d90eb7SKip Macy 		break;
2544b6d90eb7SKip Macy 	}
2545b6d90eb7SKip Macy 	case CHELSIO_SETREG: {
2546b6d90eb7SKip Macy 		struct ch_reg *edata = (struct ch_reg *)data;
2547b6d90eb7SKip Macy 		if ((edata->addr & 0x3) != 0 || edata->addr >= sc->mmio_len)
2548b6d90eb7SKip Macy 			return (EFAULT);
2549b6d90eb7SKip Macy 		t3_write_reg(sc, edata->addr, edata->val);
2550b6d90eb7SKip Macy 		break;
2551b6d90eb7SKip Macy 	}
2552b6d90eb7SKip Macy 	case CHELSIO_GETREG: {
2553b6d90eb7SKip Macy 		struct ch_reg *edata = (struct ch_reg *)data;
2554b6d90eb7SKip Macy 		if ((edata->addr & 0x3) != 0 || edata->addr >= sc->mmio_len)
2555b6d90eb7SKip Macy 			return (EFAULT);
2556b6d90eb7SKip Macy 		edata->val = t3_read_reg(sc, edata->addr);
2557b6d90eb7SKip Macy 		break;
2558b6d90eb7SKip Macy 	}
2559b6d90eb7SKip Macy 	case CHELSIO_GET_SGE_CONTEXT: {
2560b6d90eb7SKip Macy 		struct ch_cntxt *ecntxt = (struct ch_cntxt *)data;
25618e10660fSKip Macy 		mtx_lock_spin(&sc->sge.reg_lock);
2562b6d90eb7SKip Macy 		switch (ecntxt->cntxt_type) {
2563b6d90eb7SKip Macy 		case CNTXT_TYPE_EGRESS:
25641ffd6e58SKip Macy 			error = -t3_sge_read_ecntxt(sc, ecntxt->cntxt_id,
2565b6d90eb7SKip Macy 			    ecntxt->data);
2566b6d90eb7SKip Macy 			break;
2567b6d90eb7SKip Macy 		case CNTXT_TYPE_FL:
25681ffd6e58SKip Macy 			error = -t3_sge_read_fl(sc, ecntxt->cntxt_id,
2569b6d90eb7SKip Macy 			    ecntxt->data);
2570b6d90eb7SKip Macy 			break;
2571b6d90eb7SKip Macy 		case CNTXT_TYPE_RSP:
25721ffd6e58SKip Macy 			error = -t3_sge_read_rspq(sc, ecntxt->cntxt_id,
2573b6d90eb7SKip Macy 			    ecntxt->data);
2574b6d90eb7SKip Macy 			break;
2575b6d90eb7SKip Macy 		case CNTXT_TYPE_CQ:
25761ffd6e58SKip Macy 			error = -t3_sge_read_cq(sc, ecntxt->cntxt_id,
2577b6d90eb7SKip Macy 			    ecntxt->data);
2578b6d90eb7SKip Macy 			break;
2579b6d90eb7SKip Macy 		default:
2580b6d90eb7SKip Macy 			error = EINVAL;
2581b6d90eb7SKip Macy 			break;
2582b6d90eb7SKip Macy 		}
25838e10660fSKip Macy 		mtx_unlock_spin(&sc->sge.reg_lock);
2584b6d90eb7SKip Macy 		break;
2585b6d90eb7SKip Macy 	}
2586b6d90eb7SKip Macy 	case CHELSIO_GET_SGE_DESC: {
2587b6d90eb7SKip Macy 		struct ch_desc *edesc = (struct ch_desc *)data;
2588b6d90eb7SKip Macy 		int ret;
2589b6d90eb7SKip Macy 		if (edesc->queue_num >= SGE_QSETS * 6)
2590b6d90eb7SKip Macy 			return (EINVAL);
2591b6d90eb7SKip Macy 		ret = t3_get_desc(&sc->sge.qs[edesc->queue_num / 6],
2592b6d90eb7SKip Macy 		    edesc->queue_num % 6, edesc->idx, edesc->data);
2593b6d90eb7SKip Macy 		if (ret < 0)
2594b6d90eb7SKip Macy 			return (EINVAL);
2595b6d90eb7SKip Macy 		edesc->size = ret;
2596b6d90eb7SKip Macy 		break;
2597b6d90eb7SKip Macy 	}
2598b6d90eb7SKip Macy 	case CHELSIO_GET_QSET_PARAMS: {
2599b6d90eb7SKip Macy 		struct qset_params *q;
2600b6d90eb7SKip Macy 		struct ch_qset_params *t = (struct ch_qset_params *)data;
26011ffd6e58SKip Macy 		int q1 = pi->first_qset;
26021ffd6e58SKip Macy 		int nqsets = pi->nqsets;
26031ffd6e58SKip Macy 		int i;
2604b6d90eb7SKip Macy 
26051ffd6e58SKip Macy 		if (t->qset_idx >= nqsets)
26061ffd6e58SKip Macy 			return EINVAL;
2607b6d90eb7SKip Macy 
26081ffd6e58SKip Macy 		i = q1 + t->qset_idx;
26091ffd6e58SKip Macy 		q = &sc->params.sge.qset[i];
2610b6d90eb7SKip Macy 		t->rspq_size   = q->rspq_size;
2611b6d90eb7SKip Macy 		t->txq_size[0] = q->txq_size[0];
2612b6d90eb7SKip Macy 		t->txq_size[1] = q->txq_size[1];
2613b6d90eb7SKip Macy 		t->txq_size[2] = q->txq_size[2];
2614b6d90eb7SKip Macy 		t->fl_size[0]  = q->fl_size;
2615b6d90eb7SKip Macy 		t->fl_size[1]  = q->jumbo_size;
2616b6d90eb7SKip Macy 		t->polling     = q->polling;
26171ffd6e58SKip Macy 		t->lro         = q->lro;
26184af83c8cSKip Macy 		t->intr_lat    = q->coalesce_usecs;
2619b6d90eb7SKip Macy 		t->cong_thres  = q->cong_thres;
26201ffd6e58SKip Macy 		t->qnum        = i;
2621b6d90eb7SKip Macy 
26221d609d51SNavdeep Parhar 		if ((sc->flags & FULL_INIT_DONE) == 0)
26231d609d51SNavdeep Parhar 			t->vector = 0;
26241d609d51SNavdeep Parhar 		else if (sc->flags & USING_MSIX)
26251ffd6e58SKip Macy 			t->vector = rman_get_start(sc->msix_irq_res[i]);
26261ffd6e58SKip Macy 		else
26271ffd6e58SKip Macy 			t->vector = rman_get_start(sc->irq_res);
26281ffd6e58SKip Macy 
2629b6d90eb7SKip Macy 		break;
2630b6d90eb7SKip Macy 	}
2631b6d90eb7SKip Macy 	case CHELSIO_GET_QSET_NUM: {
2632b6d90eb7SKip Macy 		struct ch_reg *edata = (struct ch_reg *)data;
2633b6d90eb7SKip Macy 		edata->val = pi->nqsets;
2634b6d90eb7SKip Macy 		break;
2635b6d90eb7SKip Macy 	}
26361ffd6e58SKip Macy 	case CHELSIO_LOAD_FW: {
26371ffd6e58SKip Macy 		uint8_t *fw_data;
26381ffd6e58SKip Macy 		uint32_t vers;
26391ffd6e58SKip Macy 		struct ch_mem_range *t = (struct ch_mem_range *)data;
26401ffd6e58SKip Macy 
26411ffd6e58SKip Macy 		/*
26421ffd6e58SKip Macy 		 * You're allowed to load a firmware only before FULL_INIT_DONE
26431ffd6e58SKip Macy 		 *
26441ffd6e58SKip Macy 		 * FW_UPTODATE is also set so the rest of the initialization
26451ffd6e58SKip Macy 		 * will not overwrite what was loaded here.  This gives you the
26461ffd6e58SKip Macy 		 * flexibility to load any firmware (and maybe shoot yourself in
26471ffd6e58SKip Macy 		 * the foot).
26481ffd6e58SKip Macy 		 */
26491ffd6e58SKip Macy 
26501ffd6e58SKip Macy 		ADAPTER_LOCK(sc);
26511ffd6e58SKip Macy 		if (sc->open_device_map || sc->flags & FULL_INIT_DONE) {
26521ffd6e58SKip Macy 			ADAPTER_UNLOCK(sc);
26531ffd6e58SKip Macy 			return (EBUSY);
26541ffd6e58SKip Macy 		}
26551ffd6e58SKip Macy 
26561ffd6e58SKip Macy 		fw_data = malloc(t->len, M_DEVBUF, M_NOWAIT);
26571ffd6e58SKip Macy 		if (!fw_data)
26581ffd6e58SKip Macy 			error = ENOMEM;
26591ffd6e58SKip Macy 		else
26601ffd6e58SKip Macy 			error = copyin(t->buf, fw_data, t->len);
26611ffd6e58SKip Macy 
26621ffd6e58SKip Macy 		if (!error)
26631ffd6e58SKip Macy 			error = -t3_load_fw(sc, fw_data, t->len);
26641ffd6e58SKip Macy 
26651ffd6e58SKip Macy 		if (t3_get_fw_version(sc, &vers) == 0) {
26661ffd6e58SKip Macy 			snprintf(&sc->fw_version[0], sizeof(sc->fw_version),
26671ffd6e58SKip Macy 			    "%d.%d.%d", G_FW_VERSION_MAJOR(vers),
26681ffd6e58SKip Macy 			    G_FW_VERSION_MINOR(vers), G_FW_VERSION_MICRO(vers));
26691ffd6e58SKip Macy 		}
26701ffd6e58SKip Macy 
26711ffd6e58SKip Macy 		if (!error)
26721ffd6e58SKip Macy 			sc->flags |= FW_UPTODATE;
26731ffd6e58SKip Macy 
26741ffd6e58SKip Macy 		free(fw_data, M_DEVBUF);
26751ffd6e58SKip Macy 		ADAPTER_UNLOCK(sc);
2676b6d90eb7SKip Macy 		break;
26771ffd6e58SKip Macy 	}
26781ffd6e58SKip Macy 	case CHELSIO_LOAD_BOOT: {
26791ffd6e58SKip Macy 		uint8_t *boot_data;
26801ffd6e58SKip Macy 		struct ch_mem_range *t = (struct ch_mem_range *)data;
26811ffd6e58SKip Macy 
26821ffd6e58SKip Macy 		boot_data = malloc(t->len, M_DEVBUF, M_NOWAIT);
26831ffd6e58SKip Macy 		if (!boot_data)
26841ffd6e58SKip Macy 			return ENOMEM;
26851ffd6e58SKip Macy 
26861ffd6e58SKip Macy 		error = copyin(t->buf, boot_data, t->len);
26871ffd6e58SKip Macy 		if (!error)
26881ffd6e58SKip Macy 			error = -t3_load_boot(sc, boot_data, t->len);
26891ffd6e58SKip Macy 
26901ffd6e58SKip Macy 		free(boot_data, M_DEVBUF);
26911ffd6e58SKip Macy 		break;
26921ffd6e58SKip Macy 	}
26931ffd6e58SKip Macy 	case CHELSIO_GET_PM: {
26941ffd6e58SKip Macy 		struct ch_pm *m = (struct ch_pm *)data;
26951ffd6e58SKip Macy 		struct tp_params *p = &sc->params.tp;
26961ffd6e58SKip Macy 
26971ffd6e58SKip Macy 		if (!is_offload(sc))
26981ffd6e58SKip Macy 			return (EOPNOTSUPP);
26991ffd6e58SKip Macy 
27001ffd6e58SKip Macy 		m->tx_pg_sz = p->tx_pg_size;
27011ffd6e58SKip Macy 		m->tx_num_pg = p->tx_num_pgs;
27021ffd6e58SKip Macy 		m->rx_pg_sz  = p->rx_pg_size;
27031ffd6e58SKip Macy 		m->rx_num_pg = p->rx_num_pgs;
27041ffd6e58SKip Macy 		m->pm_total  = p->pmtx_size + p->chan_rx_size * p->nchan;
27051ffd6e58SKip Macy 
27061ffd6e58SKip Macy 		break;
27071ffd6e58SKip Macy 	}
27081ffd6e58SKip Macy 	case CHELSIO_SET_PM: {
27091ffd6e58SKip Macy 		struct ch_pm *m = (struct ch_pm *)data;
27101ffd6e58SKip Macy 		struct tp_params *p = &sc->params.tp;
27111ffd6e58SKip Macy 
27121ffd6e58SKip Macy 		if (!is_offload(sc))
27131ffd6e58SKip Macy 			return (EOPNOTSUPP);
27141ffd6e58SKip Macy 		if (sc->flags & FULL_INIT_DONE)
27151ffd6e58SKip Macy 			return (EBUSY);
27161ffd6e58SKip Macy 
27171ffd6e58SKip Macy 		if (!m->rx_pg_sz || (m->rx_pg_sz & (m->rx_pg_sz - 1)) ||
27181ffd6e58SKip Macy 		    !m->tx_pg_sz || (m->tx_pg_sz & (m->tx_pg_sz - 1)))
27191ffd6e58SKip Macy 			return (EINVAL);	/* not power of 2 */
27201ffd6e58SKip Macy 		if (!(m->rx_pg_sz & 0x14000))
27211ffd6e58SKip Macy 			return (EINVAL);	/* not 16KB or 64KB */
27221ffd6e58SKip Macy 		if (!(m->tx_pg_sz & 0x1554000))
27231ffd6e58SKip Macy 			return (EINVAL);
27241ffd6e58SKip Macy 		if (m->tx_num_pg == -1)
27251ffd6e58SKip Macy 			m->tx_num_pg = p->tx_num_pgs;
27261ffd6e58SKip Macy 		if (m->rx_num_pg == -1)
27271ffd6e58SKip Macy 			m->rx_num_pg = p->rx_num_pgs;
27281ffd6e58SKip Macy 		if (m->tx_num_pg % 24 || m->rx_num_pg % 24)
27291ffd6e58SKip Macy 			return (EINVAL);
27301ffd6e58SKip Macy 		if (m->rx_num_pg * m->rx_pg_sz > p->chan_rx_size ||
27311ffd6e58SKip Macy 		    m->tx_num_pg * m->tx_pg_sz > p->chan_tx_size)
27321ffd6e58SKip Macy 			return (EINVAL);
27331ffd6e58SKip Macy 
27341ffd6e58SKip Macy 		p->rx_pg_size = m->rx_pg_sz;
27351ffd6e58SKip Macy 		p->tx_pg_size = m->tx_pg_sz;
27361ffd6e58SKip Macy 		p->rx_num_pgs = m->rx_num_pg;
27371ffd6e58SKip Macy 		p->tx_num_pgs = m->tx_num_pg;
27381ffd6e58SKip Macy 		break;
27391ffd6e58SKip Macy 	}
2740d722cab4SKip Macy 	case CHELSIO_SETMTUTAB: {
2741d722cab4SKip Macy 		struct ch_mtus *m = (struct ch_mtus *)data;
2742d722cab4SKip Macy 		int i;
2743d722cab4SKip Macy 
2744d722cab4SKip Macy 		if (!is_offload(sc))
2745d722cab4SKip Macy 			return (EOPNOTSUPP);
2746d722cab4SKip Macy 		if (offload_running(sc))
2747d722cab4SKip Macy 			return (EBUSY);
2748d722cab4SKip Macy 		if (m->nmtus != NMTUS)
2749d722cab4SKip Macy 			return (EINVAL);
2750d722cab4SKip Macy 		if (m->mtus[0] < 81)         /* accommodate SACK */
2751d722cab4SKip Macy 			return (EINVAL);
2752d722cab4SKip Macy 
2753d722cab4SKip Macy 		/*
2754d722cab4SKip Macy 		 * MTUs must be in ascending order
2755d722cab4SKip Macy 		 */
2756d722cab4SKip Macy 		for (i = 1; i < NMTUS; ++i)
2757d722cab4SKip Macy 			if (m->mtus[i] < m->mtus[i - 1])
2758d722cab4SKip Macy 				return (EINVAL);
2759d722cab4SKip Macy 
27601ffd6e58SKip Macy 		memcpy(sc->params.mtus, m->mtus, sizeof(sc->params.mtus));
2761d722cab4SKip Macy 		break;
2762d722cab4SKip Macy 	}
2763d722cab4SKip Macy 	case CHELSIO_GETMTUTAB: {
2764d722cab4SKip Macy 		struct ch_mtus *m = (struct ch_mtus *)data;
2765d722cab4SKip Macy 
2766d722cab4SKip Macy 		if (!is_offload(sc))
2767d722cab4SKip Macy 			return (EOPNOTSUPP);
2768d722cab4SKip Macy 
2769d722cab4SKip Macy 		memcpy(m->mtus, sc->params.mtus, sizeof(m->mtus));
2770d722cab4SKip Macy 		m->nmtus = NMTUS;
2771d722cab4SKip Macy 		break;
2772d722cab4SKip Macy 	}
2773b6d90eb7SKip Macy 	case CHELSIO_GET_MEM: {
2774b6d90eb7SKip Macy 		struct ch_mem_range *t = (struct ch_mem_range *)data;
2775b6d90eb7SKip Macy 		struct mc7 *mem;
2776b6d90eb7SKip Macy 		uint8_t *useraddr;
2777b6d90eb7SKip Macy 		u64 buf[32];
2778b6d90eb7SKip Macy 
27791ffd6e58SKip Macy 		/*
27806bccea7cSRebecca Cran 		 * Use these to avoid modifying len/addr in the return
27811ffd6e58SKip Macy 		 * struct
27821ffd6e58SKip Macy 		 */
27831ffd6e58SKip Macy 		uint32_t len = t->len, addr = t->addr;
27841ffd6e58SKip Macy 
2785b6d90eb7SKip Macy 		if (!is_offload(sc))
2786b6d90eb7SKip Macy 			return (EOPNOTSUPP);
2787b6d90eb7SKip Macy 		if (!(sc->flags & FULL_INIT_DONE))
2788b6d90eb7SKip Macy 			return (EIO);         /* need the memory controllers */
27891ffd6e58SKip Macy 		if ((addr & 0x7) || (len & 0x7))
2790b6d90eb7SKip Macy 			return (EINVAL);
2791b6d90eb7SKip Macy 		if (t->mem_id == MEM_CM)
2792b6d90eb7SKip Macy 			mem = &sc->cm;
2793b6d90eb7SKip Macy 		else if (t->mem_id == MEM_PMRX)
2794b6d90eb7SKip Macy 			mem = &sc->pmrx;
2795b6d90eb7SKip Macy 		else if (t->mem_id == MEM_PMTX)
2796b6d90eb7SKip Macy 			mem = &sc->pmtx;
2797b6d90eb7SKip Macy 		else
2798b6d90eb7SKip Macy 			return (EINVAL);
2799b6d90eb7SKip Macy 
2800b6d90eb7SKip Macy 		/*
2801b6d90eb7SKip Macy 		 * Version scheme:
2802b6d90eb7SKip Macy 		 * bits 0..9: chip version
2803b6d90eb7SKip Macy 		 * bits 10..15: chip revision
2804b6d90eb7SKip Macy 		 */
2805b6d90eb7SKip Macy 		t->version = 3 | (sc->params.rev << 10);
2806b6d90eb7SKip Macy 
2807b6d90eb7SKip Macy 		/*
2808b6d90eb7SKip Macy 		 * Read 256 bytes at a time as len can be large and we don't
2809b6d90eb7SKip Macy 		 * want to use huge intermediate buffers.
2810b6d90eb7SKip Macy 		 */
28118090c9f5SKip Macy 		useraddr = (uint8_t *)t->buf;
28121ffd6e58SKip Macy 		while (len) {
28131ffd6e58SKip Macy 			unsigned int chunk = min(len, sizeof(buf));
2814b6d90eb7SKip Macy 
28151ffd6e58SKip Macy 			error = t3_mc7_bd_read(mem, addr / 8, chunk / 8, buf);
2816b6d90eb7SKip Macy 			if (error)
2817b6d90eb7SKip Macy 				return (-error);
2818b6d90eb7SKip Macy 			if (copyout(buf, useraddr, chunk))
2819b6d90eb7SKip Macy 				return (EFAULT);
2820b6d90eb7SKip Macy 			useraddr += chunk;
28211ffd6e58SKip Macy 			addr += chunk;
28221ffd6e58SKip Macy 			len -= chunk;
2823b6d90eb7SKip Macy 		}
2824b6d90eb7SKip Macy 		break;
2825b6d90eb7SKip Macy 	}
2826d722cab4SKip Macy 	case CHELSIO_READ_TCAM_WORD: {
2827d722cab4SKip Macy 		struct ch_tcam_word *t = (struct ch_tcam_word *)data;
2828d722cab4SKip Macy 
2829d722cab4SKip Macy 		if (!is_offload(sc))
2830d722cab4SKip Macy 			return (EOPNOTSUPP);
2831ac3a6d9cSKip Macy 		if (!(sc->flags & FULL_INIT_DONE))
2832ac3a6d9cSKip Macy 			return (EIO);         /* need MC5 */
2833d722cab4SKip Macy 		return -t3_read_mc5_range(&sc->mc5, t->addr, 1, t->buf);
2834d722cab4SKip Macy 		break;
2835d722cab4SKip Macy 	}
2836b6d90eb7SKip Macy 	case CHELSIO_SET_TRACE_FILTER: {
2837b6d90eb7SKip Macy 		struct ch_trace *t = (struct ch_trace *)data;
2838b6d90eb7SKip Macy 		const struct trace_params *tp;
2839b6d90eb7SKip Macy 
2840b6d90eb7SKip Macy 		tp = (const struct trace_params *)&t->sip;
2841b6d90eb7SKip Macy 		if (t->config_tx)
2842b6d90eb7SKip Macy 			t3_config_trace_filter(sc, tp, 0, t->invert_match,
2843b6d90eb7SKip Macy 					       t->trace_tx);
2844b6d90eb7SKip Macy 		if (t->config_rx)
2845b6d90eb7SKip Macy 			t3_config_trace_filter(sc, tp, 1, t->invert_match,
2846b6d90eb7SKip Macy 					       t->trace_rx);
2847b6d90eb7SKip Macy 		break;
2848b6d90eb7SKip Macy 	}
2849b6d90eb7SKip Macy 	case CHELSIO_SET_PKTSCHED: {
2850b6d90eb7SKip Macy 		struct ch_pktsched_params *p = (struct ch_pktsched_params *)data;
2851b6d90eb7SKip Macy 		if (sc->open_device_map == 0)
2852b6d90eb7SKip Macy 			return (EAGAIN);
2853b6d90eb7SKip Macy 		send_pktsched_cmd(sc, p->sched, p->idx, p->min, p->max,
2854b6d90eb7SKip Macy 		    p->binding);
2855b6d90eb7SKip Macy 		break;
2856b6d90eb7SKip Macy 	}
2857b6d90eb7SKip Macy 	case CHELSIO_IFCONF_GETREGS: {
28581ffd6e58SKip Macy 		struct ch_ifconf_regs *regs = (struct ch_ifconf_regs *)data;
2859b6d90eb7SKip Macy 		int reglen = cxgb_get_regs_len();
28601ffd6e58SKip Macy 		uint8_t *buf = malloc(reglen, M_DEVBUF, M_NOWAIT);
2861b6d90eb7SKip Macy 		if (buf == NULL) {
2862b6d90eb7SKip Macy 			return (ENOMEM);
2863b6d90eb7SKip Macy 		}
28641ffd6e58SKip Macy 		if (regs->len > reglen)
28651ffd6e58SKip Macy 			regs->len = reglen;
28661ffd6e58SKip Macy 		else if (regs->len < reglen)
2867f2d8ff04SGeorge V. Neville-Neil 			error = ENOBUFS;
28681ffd6e58SKip Macy 
28691ffd6e58SKip Macy 		if (!error) {
2870b6d90eb7SKip Macy 			cxgb_get_regs(sc, regs, buf);
2871b6d90eb7SKip Macy 			error = copyout(buf, regs->data, reglen);
28721ffd6e58SKip Macy 		}
2873b6d90eb7SKip Macy 		free(buf, M_DEVBUF);
2874b6d90eb7SKip Macy 
2875b6d90eb7SKip Macy 		break;
2876b6d90eb7SKip Macy 	}
2877d722cab4SKip Macy 	case CHELSIO_SET_HW_SCHED: {
2878d722cab4SKip Macy 		struct ch_hw_sched *t = (struct ch_hw_sched *)data;
2879d722cab4SKip Macy 		unsigned int ticks_per_usec = core_ticks_per_usec(sc);
2880d722cab4SKip Macy 
2881d722cab4SKip Macy 		if ((sc->flags & FULL_INIT_DONE) == 0)
2882d722cab4SKip Macy 			return (EAGAIN);       /* need TP to be initialized */
2883d722cab4SKip Macy 		if (t->sched >= NTX_SCHED || !in_range(t->mode, 0, 1) ||
2884d722cab4SKip Macy 		    !in_range(t->channel, 0, 1) ||
2885d722cab4SKip Macy 		    !in_range(t->kbps, 0, 10000000) ||
2886d722cab4SKip Macy 		    !in_range(t->class_ipg, 0, 10000 * 65535 / ticks_per_usec) ||
2887d722cab4SKip Macy 		    !in_range(t->flow_ipg, 0,
2888d722cab4SKip Macy 			      dack_ticks_to_usec(sc, 0x7ff)))
2889d722cab4SKip Macy 			return (EINVAL);
2890d722cab4SKip Macy 
2891d722cab4SKip Macy 		if (t->kbps >= 0) {
2892d722cab4SKip Macy 			error = t3_config_sched(sc, t->kbps, t->sched);
2893d722cab4SKip Macy 			if (error < 0)
2894d722cab4SKip Macy 				return (-error);
2895d722cab4SKip Macy 		}
2896d722cab4SKip Macy 		if (t->class_ipg >= 0)
2897d722cab4SKip Macy 			t3_set_sched_ipg(sc, t->sched, t->class_ipg);
2898d722cab4SKip Macy 		if (t->flow_ipg >= 0) {
2899d722cab4SKip Macy 			t->flow_ipg *= 1000;     /* us -> ns */
2900d722cab4SKip Macy 			t3_set_pace_tbl(sc, &t->flow_ipg, t->sched, 1);
2901d722cab4SKip Macy 		}
2902d722cab4SKip Macy 		if (t->mode >= 0) {
2903d722cab4SKip Macy 			int bit = 1 << (S_TX_MOD_TIMER_MODE + t->sched);
2904d722cab4SKip Macy 
2905d722cab4SKip Macy 			t3_set_reg_field(sc, A_TP_TX_MOD_QUEUE_REQ_MAP,
2906d722cab4SKip Macy 					 bit, t->mode ? bit : 0);
2907d722cab4SKip Macy 		}
2908d722cab4SKip Macy 		if (t->channel >= 0)
2909d722cab4SKip Macy 			t3_set_reg_field(sc, A_TP_TX_MOD_QUEUE_REQ_MAP,
2910d722cab4SKip Macy 					 1 << t->sched, t->channel << t->sched);
2911d722cab4SKip Macy 		break;
2912d722cab4SKip Macy 	}
29131ffd6e58SKip Macy 	case CHELSIO_GET_EEPROM: {
29141ffd6e58SKip Macy 		int i;
29151ffd6e58SKip Macy 		struct ch_eeprom *e = (struct ch_eeprom *)data;
29161ffd6e58SKip Macy 		uint8_t *buf = malloc(EEPROMSIZE, M_DEVBUF, M_NOWAIT);
29171ffd6e58SKip Macy 
29181ffd6e58SKip Macy 		if (buf == NULL) {
29191ffd6e58SKip Macy 			return (ENOMEM);
29201ffd6e58SKip Macy 		}
29211ffd6e58SKip Macy 		e->magic = EEPROM_MAGIC;
29221ffd6e58SKip Macy 		for (i = e->offset & ~3; !error && i < e->offset + e->len; i += 4)
29231ffd6e58SKip Macy 			error = -t3_seeprom_read(sc, i, (uint32_t *)&buf[i]);
29241ffd6e58SKip Macy 
29251ffd6e58SKip Macy 		if (!error)
29261ffd6e58SKip Macy 			error = copyout(buf + e->offset, e->data, e->len);
29271ffd6e58SKip Macy 
29281ffd6e58SKip Macy 		free(buf, M_DEVBUF);
29291ffd6e58SKip Macy 		break;
29301ffd6e58SKip Macy 	}
29311ffd6e58SKip Macy 	case CHELSIO_CLEAR_STATS: {
29321ffd6e58SKip Macy 		if (!(sc->flags & FULL_INIT_DONE))
29331ffd6e58SKip Macy 			return EAGAIN;
29341ffd6e58SKip Macy 
29351ffd6e58SKip Macy 		PORT_LOCK(pi);
29361ffd6e58SKip Macy 		t3_mac_update_stats(&pi->mac);
29371ffd6e58SKip Macy 		memset(&pi->mac.stats, 0, sizeof(pi->mac.stats));
29381ffd6e58SKip Macy 		PORT_UNLOCK(pi);
29391ffd6e58SKip Macy 		break;
29401ffd6e58SKip Macy 	}
2941f2d8ff04SGeorge V. Neville-Neil 	case CHELSIO_GET_UP_LA: {
2942f2d8ff04SGeorge V. Neville-Neil 		struct ch_up_la *la = (struct ch_up_la *)data;
2943f2d8ff04SGeorge V. Neville-Neil 		uint8_t *buf = malloc(LA_BUFSIZE, M_DEVBUF, M_NOWAIT);
2944f2d8ff04SGeorge V. Neville-Neil 		if (buf == NULL) {
2945f2d8ff04SGeorge V. Neville-Neil 			return (ENOMEM);
2946f2d8ff04SGeorge V. Neville-Neil 		}
2947f2d8ff04SGeorge V. Neville-Neil 		if (la->bufsize < LA_BUFSIZE)
2948f2d8ff04SGeorge V. Neville-Neil 			error = ENOBUFS;
2949f2d8ff04SGeorge V. Neville-Neil 
2950f2d8ff04SGeorge V. Neville-Neil 		if (!error)
2951f2d8ff04SGeorge V. Neville-Neil 			error = -t3_get_up_la(sc, &la->stopped, &la->idx,
2952f2d8ff04SGeorge V. Neville-Neil 					      &la->bufsize, buf);
2953f2d8ff04SGeorge V. Neville-Neil 		if (!error)
2954f2d8ff04SGeorge V. Neville-Neil 			error = copyout(buf, la->data, la->bufsize);
2955f2d8ff04SGeorge V. Neville-Neil 
2956f2d8ff04SGeorge V. Neville-Neil 		free(buf, M_DEVBUF);
2957f2d8ff04SGeorge V. Neville-Neil 		break;
2958f2d8ff04SGeorge V. Neville-Neil 	}
2959f2d8ff04SGeorge V. Neville-Neil 	case CHELSIO_GET_UP_IOQS: {
2960f2d8ff04SGeorge V. Neville-Neil 		struct ch_up_ioqs *ioqs = (struct ch_up_ioqs *)data;
2961f2d8ff04SGeorge V. Neville-Neil 		uint8_t *buf = malloc(IOQS_BUFSIZE, M_DEVBUF, M_NOWAIT);
2962f2d8ff04SGeorge V. Neville-Neil 		uint32_t *v;
2963f2d8ff04SGeorge V. Neville-Neil 
2964f2d8ff04SGeorge V. Neville-Neil 		if (buf == NULL) {
2965f2d8ff04SGeorge V. Neville-Neil 			return (ENOMEM);
2966f2d8ff04SGeorge V. Neville-Neil 		}
2967f2d8ff04SGeorge V. Neville-Neil 		if (ioqs->bufsize < IOQS_BUFSIZE)
2968f2d8ff04SGeorge V. Neville-Neil 			error = ENOBUFS;
2969f2d8ff04SGeorge V. Neville-Neil 
2970f2d8ff04SGeorge V. Neville-Neil 		if (!error)
2971f2d8ff04SGeorge V. Neville-Neil 			error = -t3_get_up_ioqs(sc, &ioqs->bufsize, buf);
2972f2d8ff04SGeorge V. Neville-Neil 
2973f2d8ff04SGeorge V. Neville-Neil 		if (!error) {
2974f2d8ff04SGeorge V. Neville-Neil 			v = (uint32_t *)buf;
2975f2d8ff04SGeorge V. Neville-Neil 
2976f2d8ff04SGeorge V. Neville-Neil 			ioqs->ioq_rx_enable = *v++;
2977f2d8ff04SGeorge V. Neville-Neil 			ioqs->ioq_tx_enable = *v++;
2978f2d8ff04SGeorge V. Neville-Neil 			ioqs->ioq_rx_status = *v++;
2979f2d8ff04SGeorge V. Neville-Neil 			ioqs->ioq_tx_status = *v++;
2980f2d8ff04SGeorge V. Neville-Neil 
2981f2d8ff04SGeorge V. Neville-Neil 			error = copyout(v, ioqs->data, ioqs->bufsize);
2982f2d8ff04SGeorge V. Neville-Neil 		}
2983f2d8ff04SGeorge V. Neville-Neil 
2984f2d8ff04SGeorge V. Neville-Neil 		free(buf, M_DEVBUF);
2985f2d8ff04SGeorge V. Neville-Neil 		break;
2986f2d8ff04SGeorge V. Neville-Neil 	}
2987d6da8362SNavdeep Parhar 	case CHELSIO_SET_FILTER: {
2988db702c59SEitan Adler 		struct ch_filter *f = (struct ch_filter *)data;
2989d6da8362SNavdeep Parhar 		struct filter_info *p;
2990d6da8362SNavdeep Parhar 		unsigned int nfilters = sc->params.mc5.nfilters;
2991d6da8362SNavdeep Parhar 
2992d6da8362SNavdeep Parhar 		if (!is_offload(sc))
2993d6da8362SNavdeep Parhar 			return (EOPNOTSUPP);	/* No TCAM */
2994d6da8362SNavdeep Parhar 		if (!(sc->flags & FULL_INIT_DONE))
2995d6da8362SNavdeep Parhar 			return (EAGAIN);	/* mc5 not setup yet */
2996d6da8362SNavdeep Parhar 		if (nfilters == 0)
2997d6da8362SNavdeep Parhar 			return (EBUSY);		/* TOE will use TCAM */
2998d6da8362SNavdeep Parhar 
2999d6da8362SNavdeep Parhar 		/* sanity checks */
3000d6da8362SNavdeep Parhar 		if (f->filter_id >= nfilters ||
3001d6da8362SNavdeep Parhar 		    (f->val.dip && f->mask.dip != 0xffffffff) ||
3002d6da8362SNavdeep Parhar 		    (f->val.sport && f->mask.sport != 0xffff) ||
3003d6da8362SNavdeep Parhar 		    (f->val.dport && f->mask.dport != 0xffff) ||
3004d6da8362SNavdeep Parhar 		    (f->val.vlan && f->mask.vlan != 0xfff) ||
3005d6da8362SNavdeep Parhar 		    (f->val.vlan_prio &&
3006d6da8362SNavdeep Parhar 			f->mask.vlan_prio != FILTER_NO_VLAN_PRI) ||
3007d6da8362SNavdeep Parhar 		    (f->mac_addr_idx != 0xffff && f->mac_addr_idx > 15) ||
3008d6da8362SNavdeep Parhar 		    f->qset >= SGE_QSETS ||
3009d6da8362SNavdeep Parhar 		    sc->rrss_map[f->qset] >= RSS_TABLE_SIZE)
3010d6da8362SNavdeep Parhar 			return (EINVAL);
3011d6da8362SNavdeep Parhar 
3012d6da8362SNavdeep Parhar 		/* Was allocated with M_WAITOK */
3013d6da8362SNavdeep Parhar 		KASSERT(sc->filters, ("filter table NULL\n"));
3014d6da8362SNavdeep Parhar 
3015d6da8362SNavdeep Parhar 		p = &sc->filters[f->filter_id];
3016d6da8362SNavdeep Parhar 		if (p->locked)
3017d6da8362SNavdeep Parhar 			return (EPERM);
3018d6da8362SNavdeep Parhar 
3019d6da8362SNavdeep Parhar 		bzero(p, sizeof(*p));
3020d6da8362SNavdeep Parhar 		p->sip = f->val.sip;
3021d6da8362SNavdeep Parhar 		p->sip_mask = f->mask.sip;
3022d6da8362SNavdeep Parhar 		p->dip = f->val.dip;
3023d6da8362SNavdeep Parhar 		p->sport = f->val.sport;
3024d6da8362SNavdeep Parhar 		p->dport = f->val.dport;
3025d6da8362SNavdeep Parhar 		p->vlan = f->mask.vlan ? f->val.vlan : 0xfff;
3026d6da8362SNavdeep Parhar 		p->vlan_prio = f->mask.vlan_prio ? (f->val.vlan_prio & 6) :
3027d6da8362SNavdeep Parhar 		    FILTER_NO_VLAN_PRI;
3028d6da8362SNavdeep Parhar 		p->mac_hit = f->mac_hit;
3029d6da8362SNavdeep Parhar 		p->mac_vld = f->mac_addr_idx != 0xffff;
3030d6da8362SNavdeep Parhar 		p->mac_idx = f->mac_addr_idx;
3031d6da8362SNavdeep Parhar 		p->pkt_type = f->proto;
3032d6da8362SNavdeep Parhar 		p->report_filter_id = f->want_filter_id;
3033d6da8362SNavdeep Parhar 		p->pass = f->pass;
3034d6da8362SNavdeep Parhar 		p->rss = f->rss;
3035d6da8362SNavdeep Parhar 		p->qset = f->qset;
3036d6da8362SNavdeep Parhar 
3037d6da8362SNavdeep Parhar 		error = set_filter(sc, f->filter_id, p);
3038d6da8362SNavdeep Parhar 		if (error == 0)
3039d6da8362SNavdeep Parhar 			p->valid = 1;
3040d6da8362SNavdeep Parhar 		break;
3041d6da8362SNavdeep Parhar 	}
3042d6da8362SNavdeep Parhar 	case CHELSIO_DEL_FILTER: {
3043d6da8362SNavdeep Parhar 		struct ch_filter *f = (struct ch_filter *)data;
3044d6da8362SNavdeep Parhar 		struct filter_info *p;
3045d6da8362SNavdeep Parhar 		unsigned int nfilters = sc->params.mc5.nfilters;
3046d6da8362SNavdeep Parhar 
3047d6da8362SNavdeep Parhar 		if (!is_offload(sc))
3048d6da8362SNavdeep Parhar 			return (EOPNOTSUPP);
3049d6da8362SNavdeep Parhar 		if (!(sc->flags & FULL_INIT_DONE))
3050d6da8362SNavdeep Parhar 			return (EAGAIN);
3051d6da8362SNavdeep Parhar 		if (nfilters == 0 || sc->filters == NULL)
3052d6da8362SNavdeep Parhar 			return (EINVAL);
3053d6da8362SNavdeep Parhar 		if (f->filter_id >= nfilters)
3054d6da8362SNavdeep Parhar 		       return (EINVAL);
3055d6da8362SNavdeep Parhar 
3056d6da8362SNavdeep Parhar 		p = &sc->filters[f->filter_id];
3057d6da8362SNavdeep Parhar 		if (p->locked)
3058d6da8362SNavdeep Parhar 			return (EPERM);
3059d6da8362SNavdeep Parhar 		if (!p->valid)
3060d6da8362SNavdeep Parhar 			return (EFAULT); /* Read "Bad address" as "Bad index" */
3061d6da8362SNavdeep Parhar 
3062d6da8362SNavdeep Parhar 		bzero(p, sizeof(*p));
3063d6da8362SNavdeep Parhar 		p->sip = p->sip_mask = 0xffffffff;
3064d6da8362SNavdeep Parhar 		p->vlan = 0xfff;
3065d6da8362SNavdeep Parhar 		p->vlan_prio = FILTER_NO_VLAN_PRI;
3066d6da8362SNavdeep Parhar 		p->pkt_type = 1;
3067d6da8362SNavdeep Parhar 		error = set_filter(sc, f->filter_id, p);
3068d6da8362SNavdeep Parhar 		break;
3069d6da8362SNavdeep Parhar 	}
3070d6da8362SNavdeep Parhar 	case CHELSIO_GET_FILTER: {
3071d6da8362SNavdeep Parhar 		struct ch_filter *f = (struct ch_filter *)data;
3072d6da8362SNavdeep Parhar 		struct filter_info *p;
3073d6da8362SNavdeep Parhar 		unsigned int i, nfilters = sc->params.mc5.nfilters;
3074d6da8362SNavdeep Parhar 
3075d6da8362SNavdeep Parhar 		if (!is_offload(sc))
3076d6da8362SNavdeep Parhar 			return (EOPNOTSUPP);
3077d6da8362SNavdeep Parhar 		if (!(sc->flags & FULL_INIT_DONE))
3078d6da8362SNavdeep Parhar 			return (EAGAIN);
3079d6da8362SNavdeep Parhar 		if (nfilters == 0 || sc->filters == NULL)
3080d6da8362SNavdeep Parhar 			return (EINVAL);
3081d6da8362SNavdeep Parhar 
3082d6da8362SNavdeep Parhar 		i = f->filter_id == 0xffffffff ? 0 : f->filter_id + 1;
3083d6da8362SNavdeep Parhar 		for (; i < nfilters; i++) {
3084d6da8362SNavdeep Parhar 			p = &sc->filters[i];
3085d6da8362SNavdeep Parhar 			if (!p->valid)
3086d6da8362SNavdeep Parhar 				continue;
3087d6da8362SNavdeep Parhar 
3088d6da8362SNavdeep Parhar 			bzero(f, sizeof(*f));
3089d6da8362SNavdeep Parhar 
3090d6da8362SNavdeep Parhar 			f->filter_id = i;
3091d6da8362SNavdeep Parhar 			f->val.sip = p->sip;
3092d6da8362SNavdeep Parhar 			f->mask.sip = p->sip_mask;
3093d6da8362SNavdeep Parhar 			f->val.dip = p->dip;
3094d6da8362SNavdeep Parhar 			f->mask.dip = p->dip ? 0xffffffff : 0;
3095d6da8362SNavdeep Parhar 			f->val.sport = p->sport;
3096d6da8362SNavdeep Parhar 			f->mask.sport = p->sport ? 0xffff : 0;
3097d6da8362SNavdeep Parhar 			f->val.dport = p->dport;
3098d6da8362SNavdeep Parhar 			f->mask.dport = p->dport ? 0xffff : 0;
3099d6da8362SNavdeep Parhar 			f->val.vlan = p->vlan == 0xfff ? 0 : p->vlan;
3100d6da8362SNavdeep Parhar 			f->mask.vlan = p->vlan == 0xfff ? 0 : 0xfff;
3101d6da8362SNavdeep Parhar 			f->val.vlan_prio = p->vlan_prio == FILTER_NO_VLAN_PRI ?
3102d6da8362SNavdeep Parhar 			    0 : p->vlan_prio;
3103d6da8362SNavdeep Parhar 			f->mask.vlan_prio = p->vlan_prio == FILTER_NO_VLAN_PRI ?
3104d6da8362SNavdeep Parhar 			    0 : FILTER_NO_VLAN_PRI;
3105d6da8362SNavdeep Parhar 			f->mac_hit = p->mac_hit;
3106d6da8362SNavdeep Parhar 			f->mac_addr_idx = p->mac_vld ? p->mac_idx : 0xffff;
3107d6da8362SNavdeep Parhar 			f->proto = p->pkt_type;
3108d6da8362SNavdeep Parhar 			f->want_filter_id = p->report_filter_id;
3109d6da8362SNavdeep Parhar 			f->pass = p->pass;
3110d6da8362SNavdeep Parhar 			f->rss = p->rss;
3111d6da8362SNavdeep Parhar 			f->qset = p->qset;
3112d6da8362SNavdeep Parhar 
3113d6da8362SNavdeep Parhar 			break;
3114d6da8362SNavdeep Parhar 		}
3115d6da8362SNavdeep Parhar 
3116d6da8362SNavdeep Parhar 		if (i == nfilters)
3117d6da8362SNavdeep Parhar 			f->filter_id = 0xffffffff;
3118d6da8362SNavdeep Parhar 		break;
3119d6da8362SNavdeep Parhar 	}
3120b6d90eb7SKip Macy 	default:
3121b6d90eb7SKip Macy 		return (EOPNOTSUPP);
3122b6d90eb7SKip Macy 		break;
3123b6d90eb7SKip Macy 	}
3124b6d90eb7SKip Macy 
3125b6d90eb7SKip Macy 	return (error);
3126b6d90eb7SKip Macy }
3127b6d90eb7SKip Macy 
3128b6d90eb7SKip Macy static __inline void
3129b6d90eb7SKip Macy reg_block_dump(struct adapter *ap, uint8_t *buf, unsigned int start,
3130b6d90eb7SKip Macy     unsigned int end)
3131b6d90eb7SKip Macy {
31321ffd6e58SKip Macy 	uint32_t *p = (uint32_t *)(buf + start);
3133b6d90eb7SKip Macy 
3134b6d90eb7SKip Macy 	for ( ; start <= end; start += sizeof(uint32_t))
3135b6d90eb7SKip Macy 		*p++ = t3_read_reg(ap, start);
3136b6d90eb7SKip Macy }
3137b6d90eb7SKip Macy 
3138b6d90eb7SKip Macy #define T3_REGMAP_SIZE (3 * 1024)
3139b6d90eb7SKip Macy static int
3140b6d90eb7SKip Macy cxgb_get_regs_len(void)
3141b6d90eb7SKip Macy {
3142b6d90eb7SKip Macy 	return T3_REGMAP_SIZE;
3143b6d90eb7SKip Macy }
3144b6d90eb7SKip Macy 
3145b6d90eb7SKip Macy static void
31461ffd6e58SKip Macy cxgb_get_regs(adapter_t *sc, struct ch_ifconf_regs *regs, uint8_t *buf)
3147b6d90eb7SKip Macy {
3148b6d90eb7SKip Macy 
3149b6d90eb7SKip Macy 	/*
3150b6d90eb7SKip Macy 	 * Version scheme:
3151b6d90eb7SKip Macy 	 * bits 0..9: chip version
3152b6d90eb7SKip Macy 	 * bits 10..15: chip revision
3153b6d90eb7SKip Macy 	 * bit 31: set for PCIe cards
3154b6d90eb7SKip Macy 	 */
3155b6d90eb7SKip Macy 	regs->version = 3 | (sc->params.rev << 10) | (is_pcie(sc) << 31);
3156b6d90eb7SKip Macy 
3157b6d90eb7SKip Macy 	/*
3158b6d90eb7SKip Macy 	 * We skip the MAC statistics registers because they are clear-on-read.
3159b6d90eb7SKip Macy 	 * Also reading multi-register stats would need to synchronize with the
3160b6d90eb7SKip Macy 	 * periodic mac stats accumulation.  Hard to justify the complexity.
3161b6d90eb7SKip Macy 	 */
31621ffd6e58SKip Macy 	memset(buf, 0, cxgb_get_regs_len());
3163b6d90eb7SKip Macy 	reg_block_dump(sc, buf, 0, A_SG_RSPQ_CREDIT_RETURN);
3164b6d90eb7SKip Macy 	reg_block_dump(sc, buf, A_SG_HI_DRB_HI_THRSH, A_ULPRX_PBL_ULIMIT);
3165b6d90eb7SKip Macy 	reg_block_dump(sc, buf, A_ULPTX_CONFIG, A_MPS_INT_CAUSE);
3166b6d90eb7SKip Macy 	reg_block_dump(sc, buf, A_CPL_SWITCH_CNTRL, A_CPL_MAP_TBL_DATA);
3167b6d90eb7SKip Macy 	reg_block_dump(sc, buf, A_SMB_GLOBAL_TIME_CFG, A_XGM_SERDES_STAT3);
3168b6d90eb7SKip Macy 	reg_block_dump(sc, buf, A_XGM_SERDES_STATUS0,
3169b6d90eb7SKip Macy 		       XGM_REG(A_XGM_SERDES_STAT3, 1));
3170b6d90eb7SKip Macy 	reg_block_dump(sc, buf, XGM_REG(A_XGM_SERDES_STATUS0, 1),
3171b6d90eb7SKip Macy 		       XGM_REG(A_XGM_RX_SPI4_SOP_EOP_CNT, 1));
3172b6d90eb7SKip Macy }
3173404825a7SKip Macy 
3174d6da8362SNavdeep Parhar static int
3175d6da8362SNavdeep Parhar alloc_filters(struct adapter *sc)
3176d6da8362SNavdeep Parhar {
3177d6da8362SNavdeep Parhar 	struct filter_info *p;
3178d6da8362SNavdeep Parhar 	unsigned int nfilters = sc->params.mc5.nfilters;
3179d6da8362SNavdeep Parhar 
3180d6da8362SNavdeep Parhar 	if (nfilters == 0)
3181d6da8362SNavdeep Parhar 		return (0);
3182d6da8362SNavdeep Parhar 
3183d6da8362SNavdeep Parhar 	p = malloc(sizeof(*p) * nfilters, M_DEVBUF, M_WAITOK | M_ZERO);
3184d6da8362SNavdeep Parhar 	sc->filters = p;
3185d6da8362SNavdeep Parhar 
3186d6da8362SNavdeep Parhar 	p = &sc->filters[nfilters - 1];
3187d6da8362SNavdeep Parhar 	p->vlan = 0xfff;
3188d6da8362SNavdeep Parhar 	p->vlan_prio = FILTER_NO_VLAN_PRI;
3189d6da8362SNavdeep Parhar 	p->pass = p->rss = p->valid = p->locked = 1;
3190d6da8362SNavdeep Parhar 
3191d6da8362SNavdeep Parhar 	return (0);
3192d6da8362SNavdeep Parhar }
3193d6da8362SNavdeep Parhar 
3194d6da8362SNavdeep Parhar static int
3195d6da8362SNavdeep Parhar setup_hw_filters(struct adapter *sc)
3196d6da8362SNavdeep Parhar {
3197d6da8362SNavdeep Parhar 	int i, rc;
3198d6da8362SNavdeep Parhar 	unsigned int nfilters = sc->params.mc5.nfilters;
3199d6da8362SNavdeep Parhar 
3200d6da8362SNavdeep Parhar 	if (!sc->filters)
3201d6da8362SNavdeep Parhar 		return (0);
3202d6da8362SNavdeep Parhar 
3203d6da8362SNavdeep Parhar 	t3_enable_filters(sc);
3204d6da8362SNavdeep Parhar 
3205d6da8362SNavdeep Parhar 	for (i = rc = 0; i < nfilters && !rc; i++) {
3206d6da8362SNavdeep Parhar 		if (sc->filters[i].locked)
3207d6da8362SNavdeep Parhar 			rc = set_filter(sc, i, &sc->filters[i]);
3208d6da8362SNavdeep Parhar 	}
3209d6da8362SNavdeep Parhar 
3210d6da8362SNavdeep Parhar 	return (rc);
3211d6da8362SNavdeep Parhar }
3212d6da8362SNavdeep Parhar 
3213d6da8362SNavdeep Parhar static int
3214d6da8362SNavdeep Parhar set_filter(struct adapter *sc, int id, const struct filter_info *f)
3215d6da8362SNavdeep Parhar {
3216d6da8362SNavdeep Parhar 	int len;
3217d6da8362SNavdeep Parhar 	struct mbuf *m;
3218d6da8362SNavdeep Parhar 	struct ulp_txpkt *txpkt;
3219d6da8362SNavdeep Parhar 	struct work_request_hdr *wr;
3220d6da8362SNavdeep Parhar 	struct cpl_pass_open_req *oreq;
3221d6da8362SNavdeep Parhar 	struct cpl_set_tcb_field *sreq;
3222d6da8362SNavdeep Parhar 
3223d6da8362SNavdeep Parhar 	len = sizeof(*wr) + sizeof(*oreq) + 2 * sizeof(*sreq);
3224d6da8362SNavdeep Parhar 	KASSERT(len <= MHLEN, ("filter request too big for an mbuf"));
3225d6da8362SNavdeep Parhar 
3226d6da8362SNavdeep Parhar 	id += t3_mc5_size(&sc->mc5) - sc->params.mc5.nroutes -
3227d6da8362SNavdeep Parhar 	      sc->params.mc5.nfilters;
3228d6da8362SNavdeep Parhar 
3229d6da8362SNavdeep Parhar 	m = m_gethdr(M_WAITOK, MT_DATA);
3230d6da8362SNavdeep Parhar 	m->m_len = m->m_pkthdr.len = len;
3231d6da8362SNavdeep Parhar 	bzero(mtod(m, char *), len);
3232d6da8362SNavdeep Parhar 
3233d6da8362SNavdeep Parhar 	wr = mtod(m, struct work_request_hdr *);
3234d6da8362SNavdeep Parhar 	wr->wrh_hi = htonl(V_WR_OP(FW_WROPCODE_BYPASS) | F_WR_ATOMIC);
3235d6da8362SNavdeep Parhar 
3236d6da8362SNavdeep Parhar 	oreq = (struct cpl_pass_open_req *)(wr + 1);
3237d6da8362SNavdeep Parhar 	txpkt = (struct ulp_txpkt *)oreq;
3238d6da8362SNavdeep Parhar 	txpkt->cmd_dest = htonl(V_ULPTX_CMD(ULP_TXPKT));
3239d6da8362SNavdeep Parhar 	txpkt->len = htonl(V_ULPTX_NFLITS(sizeof(*oreq) / 8));
3240d6da8362SNavdeep Parhar 	OPCODE_TID(oreq) = htonl(MK_OPCODE_TID(CPL_PASS_OPEN_REQ, id));
3241d6da8362SNavdeep Parhar 	oreq->local_port = htons(f->dport);
3242d6da8362SNavdeep Parhar 	oreq->peer_port = htons(f->sport);
3243d6da8362SNavdeep Parhar 	oreq->local_ip = htonl(f->dip);
3244d6da8362SNavdeep Parhar 	oreq->peer_ip = htonl(f->sip);
3245d6da8362SNavdeep Parhar 	oreq->peer_netmask = htonl(f->sip_mask);
3246d6da8362SNavdeep Parhar 	oreq->opt0h = 0;
3247d6da8362SNavdeep Parhar 	oreq->opt0l = htonl(F_NO_OFFLOAD);
3248d6da8362SNavdeep Parhar 	oreq->opt1 = htonl(V_MAC_MATCH_VALID(f->mac_vld) |
3249d6da8362SNavdeep Parhar 			 V_CONN_POLICY(CPL_CONN_POLICY_FILTER) |
3250d6da8362SNavdeep Parhar 			 V_VLAN_PRI(f->vlan_prio >> 1) |
3251d6da8362SNavdeep Parhar 			 V_VLAN_PRI_VALID(f->vlan_prio != FILTER_NO_VLAN_PRI) |
3252d6da8362SNavdeep Parhar 			 V_PKT_TYPE(f->pkt_type) | V_OPT1_VLAN(f->vlan) |
3253d6da8362SNavdeep Parhar 			 V_MAC_MATCH(f->mac_idx | (f->mac_hit << 4)));
3254d6da8362SNavdeep Parhar 
3255d6da8362SNavdeep Parhar 	sreq = (struct cpl_set_tcb_field *)(oreq + 1);
3256d6da8362SNavdeep Parhar 	set_tcb_field_ulp(sreq, id, 1, 0x1800808000ULL,
3257d6da8362SNavdeep Parhar 			  (f->report_filter_id << 15) | (1 << 23) |
3258d6da8362SNavdeep Parhar 			  ((u64)f->pass << 35) | ((u64)!f->rss << 36));
3259d6da8362SNavdeep Parhar 	set_tcb_field_ulp(sreq + 1, id, 0, 0xffffffff, (2 << 19) | 1);
3260d6da8362SNavdeep Parhar 	t3_mgmt_tx(sc, m);
3261d6da8362SNavdeep Parhar 
3262d6da8362SNavdeep Parhar 	if (f->pass && !f->rss) {
3263d6da8362SNavdeep Parhar 		len = sizeof(*sreq);
3264d6da8362SNavdeep Parhar 		m = m_gethdr(M_WAITOK, MT_DATA);
3265d6da8362SNavdeep Parhar 		m->m_len = m->m_pkthdr.len = len;
3266d6da8362SNavdeep Parhar 		bzero(mtod(m, char *), len);
3267d6da8362SNavdeep Parhar 		sreq = mtod(m, struct cpl_set_tcb_field *);
3268d6da8362SNavdeep Parhar 		sreq->wr.wrh_hi = htonl(V_WR_OP(FW_WROPCODE_FORWARD));
3269d6da8362SNavdeep Parhar 		mk_set_tcb_field(sreq, id, 25, 0x3f80000,
3270d6da8362SNavdeep Parhar 				 (u64)sc->rrss_map[f->qset] << 19);
3271d6da8362SNavdeep Parhar 		t3_mgmt_tx(sc, m);
3272d6da8362SNavdeep Parhar 	}
3273d6da8362SNavdeep Parhar 	return 0;
3274d6da8362SNavdeep Parhar }
3275d6da8362SNavdeep Parhar 
3276d6da8362SNavdeep Parhar static inline void
3277d6da8362SNavdeep Parhar mk_set_tcb_field(struct cpl_set_tcb_field *req, unsigned int tid,
3278d6da8362SNavdeep Parhar     unsigned int word, u64 mask, u64 val)
3279d6da8362SNavdeep Parhar {
3280d6da8362SNavdeep Parhar 	OPCODE_TID(req) = htonl(MK_OPCODE_TID(CPL_SET_TCB_FIELD, tid));
3281d6da8362SNavdeep Parhar 	req->reply = V_NO_REPLY(1);
3282d6da8362SNavdeep Parhar 	req->cpu_idx = 0;
3283d6da8362SNavdeep Parhar 	req->word = htons(word);
3284d6da8362SNavdeep Parhar 	req->mask = htobe64(mask);
3285d6da8362SNavdeep Parhar 	req->val = htobe64(val);
3286d6da8362SNavdeep Parhar }
3287d6da8362SNavdeep Parhar 
3288d6da8362SNavdeep Parhar static inline void
3289d6da8362SNavdeep Parhar set_tcb_field_ulp(struct cpl_set_tcb_field *req, unsigned int tid,
3290d6da8362SNavdeep Parhar     unsigned int word, u64 mask, u64 val)
3291d6da8362SNavdeep Parhar {
3292d6da8362SNavdeep Parhar 	struct ulp_txpkt *txpkt = (struct ulp_txpkt *)req;
3293d6da8362SNavdeep Parhar 
3294d6da8362SNavdeep Parhar 	txpkt->cmd_dest = htonl(V_ULPTX_CMD(ULP_TXPKT));
3295d6da8362SNavdeep Parhar 	txpkt->len = htonl(V_ULPTX_NFLITS(sizeof(*req) / 8));
3296d6da8362SNavdeep Parhar 	mk_set_tcb_field(req, tid, word, mask, val);
3297d6da8362SNavdeep Parhar }
329809fe6320SNavdeep Parhar 
329909fe6320SNavdeep Parhar void
330009fe6320SNavdeep Parhar t3_iterate(void (*func)(struct adapter *, void *), void *arg)
330109fe6320SNavdeep Parhar {
330209fe6320SNavdeep Parhar 	struct adapter *sc;
330309fe6320SNavdeep Parhar 
330409fe6320SNavdeep Parhar 	mtx_lock(&t3_list_lock);
330509fe6320SNavdeep Parhar 	SLIST_FOREACH(sc, &t3_list, link) {
330609fe6320SNavdeep Parhar 		/*
330709fe6320SNavdeep Parhar 		 * func should not make any assumptions about what state sc is
330809fe6320SNavdeep Parhar 		 * in - the only guarantee is that sc->sc_lock is a valid lock.
330909fe6320SNavdeep Parhar 		 */
331009fe6320SNavdeep Parhar 		func(sc, arg);
331109fe6320SNavdeep Parhar 	}
331209fe6320SNavdeep Parhar 	mtx_unlock(&t3_list_lock);
331309fe6320SNavdeep Parhar }
331409fe6320SNavdeep Parhar 
331509fe6320SNavdeep Parhar #ifdef TCP_OFFLOAD
331609fe6320SNavdeep Parhar static int
331709fe6320SNavdeep Parhar toe_capability(struct port_info *pi, int enable)
331809fe6320SNavdeep Parhar {
331909fe6320SNavdeep Parhar 	int rc;
332009fe6320SNavdeep Parhar 	struct adapter *sc = pi->adapter;
332109fe6320SNavdeep Parhar 
332209fe6320SNavdeep Parhar 	ADAPTER_LOCK_ASSERT_OWNED(sc);
332309fe6320SNavdeep Parhar 
332409fe6320SNavdeep Parhar 	if (!is_offload(sc))
332509fe6320SNavdeep Parhar 		return (ENODEV);
332609fe6320SNavdeep Parhar 
332709fe6320SNavdeep Parhar 	if (enable) {
332809fe6320SNavdeep Parhar 		if (!(sc->flags & FULL_INIT_DONE)) {
332909fe6320SNavdeep Parhar 			log(LOG_WARNING,
333009fe6320SNavdeep Parhar 			    "You must enable a cxgb interface first\n");
333109fe6320SNavdeep Parhar 			return (EAGAIN);
333209fe6320SNavdeep Parhar 		}
333309fe6320SNavdeep Parhar 
333409fe6320SNavdeep Parhar 		if (isset(&sc->offload_map, pi->port_id))
333509fe6320SNavdeep Parhar 			return (0);
333609fe6320SNavdeep Parhar 
333709fe6320SNavdeep Parhar 		if (!(sc->flags & TOM_INIT_DONE)) {
333809fe6320SNavdeep Parhar 			rc = t3_activate_uld(sc, ULD_TOM);
333909fe6320SNavdeep Parhar 			if (rc == EAGAIN) {
334009fe6320SNavdeep Parhar 				log(LOG_WARNING,
334109fe6320SNavdeep Parhar 				    "You must kldload t3_tom.ko before trying "
334209fe6320SNavdeep Parhar 				    "to enable TOE on a cxgb interface.\n");
334309fe6320SNavdeep Parhar 			}
334409fe6320SNavdeep Parhar 			if (rc != 0)
334509fe6320SNavdeep Parhar 				return (rc);
334609fe6320SNavdeep Parhar 			KASSERT(sc->tom_softc != NULL,
334709fe6320SNavdeep Parhar 			    ("%s: TOM activated but softc NULL", __func__));
334809fe6320SNavdeep Parhar 			KASSERT(sc->flags & TOM_INIT_DONE,
334909fe6320SNavdeep Parhar 			    ("%s: TOM activated but flag not set", __func__));
335009fe6320SNavdeep Parhar 		}
335109fe6320SNavdeep Parhar 
335209fe6320SNavdeep Parhar 		setbit(&sc->offload_map, pi->port_id);
335309fe6320SNavdeep Parhar 
335409fe6320SNavdeep Parhar 		/*
335509fe6320SNavdeep Parhar 		 * XXX: Temporary code to allow iWARP to be enabled when TOE is
335609fe6320SNavdeep Parhar 		 * enabled on any port.  Need to figure out how to enable,
335709fe6320SNavdeep Parhar 		 * disable, load, and unload iWARP cleanly.
335809fe6320SNavdeep Parhar 		 */
335909fe6320SNavdeep Parhar 		if (!isset(&sc->offload_map, MAX_NPORTS) &&
336009fe6320SNavdeep Parhar 		    t3_activate_uld(sc, ULD_IWARP) == 0)
336109fe6320SNavdeep Parhar 			setbit(&sc->offload_map, MAX_NPORTS);
336209fe6320SNavdeep Parhar 	} else {
336309fe6320SNavdeep Parhar 		if (!isset(&sc->offload_map, pi->port_id))
336409fe6320SNavdeep Parhar 			return (0);
336509fe6320SNavdeep Parhar 
336609fe6320SNavdeep Parhar 		KASSERT(sc->flags & TOM_INIT_DONE,
336709fe6320SNavdeep Parhar 		    ("%s: TOM never initialized?", __func__));
336809fe6320SNavdeep Parhar 		clrbit(&sc->offload_map, pi->port_id);
336909fe6320SNavdeep Parhar 	}
337009fe6320SNavdeep Parhar 
337109fe6320SNavdeep Parhar 	return (0);
337209fe6320SNavdeep Parhar }
337309fe6320SNavdeep Parhar 
337409fe6320SNavdeep Parhar /*
337509fe6320SNavdeep Parhar  * Add an upper layer driver to the global list.
337609fe6320SNavdeep Parhar  */
337709fe6320SNavdeep Parhar int
337809fe6320SNavdeep Parhar t3_register_uld(struct uld_info *ui)
337909fe6320SNavdeep Parhar {
338009fe6320SNavdeep Parhar 	int rc = 0;
338109fe6320SNavdeep Parhar 	struct uld_info *u;
338209fe6320SNavdeep Parhar 
338309fe6320SNavdeep Parhar 	mtx_lock(&t3_uld_list_lock);
338409fe6320SNavdeep Parhar 	SLIST_FOREACH(u, &t3_uld_list, link) {
338509fe6320SNavdeep Parhar 	    if (u->uld_id == ui->uld_id) {
338609fe6320SNavdeep Parhar 		    rc = EEXIST;
338709fe6320SNavdeep Parhar 		    goto done;
338809fe6320SNavdeep Parhar 	    }
338909fe6320SNavdeep Parhar 	}
339009fe6320SNavdeep Parhar 
339109fe6320SNavdeep Parhar 	SLIST_INSERT_HEAD(&t3_uld_list, ui, link);
339209fe6320SNavdeep Parhar 	ui->refcount = 0;
339309fe6320SNavdeep Parhar done:
339409fe6320SNavdeep Parhar 	mtx_unlock(&t3_uld_list_lock);
339509fe6320SNavdeep Parhar 	return (rc);
339609fe6320SNavdeep Parhar }
339709fe6320SNavdeep Parhar 
339809fe6320SNavdeep Parhar int
339909fe6320SNavdeep Parhar t3_unregister_uld(struct uld_info *ui)
340009fe6320SNavdeep Parhar {
340109fe6320SNavdeep Parhar 	int rc = EINVAL;
340209fe6320SNavdeep Parhar 	struct uld_info *u;
340309fe6320SNavdeep Parhar 
340409fe6320SNavdeep Parhar 	mtx_lock(&t3_uld_list_lock);
340509fe6320SNavdeep Parhar 
340609fe6320SNavdeep Parhar 	SLIST_FOREACH(u, &t3_uld_list, link) {
340709fe6320SNavdeep Parhar 	    if (u == ui) {
340809fe6320SNavdeep Parhar 		    if (ui->refcount > 0) {
340909fe6320SNavdeep Parhar 			    rc = EBUSY;
341009fe6320SNavdeep Parhar 			    goto done;
341109fe6320SNavdeep Parhar 		    }
341209fe6320SNavdeep Parhar 
341309fe6320SNavdeep Parhar 		    SLIST_REMOVE(&t3_uld_list, ui, uld_info, link);
341409fe6320SNavdeep Parhar 		    rc = 0;
341509fe6320SNavdeep Parhar 		    goto done;
341609fe6320SNavdeep Parhar 	    }
341709fe6320SNavdeep Parhar 	}
341809fe6320SNavdeep Parhar done:
341909fe6320SNavdeep Parhar 	mtx_unlock(&t3_uld_list_lock);
342009fe6320SNavdeep Parhar 	return (rc);
342109fe6320SNavdeep Parhar }
342209fe6320SNavdeep Parhar 
342309fe6320SNavdeep Parhar int
342409fe6320SNavdeep Parhar t3_activate_uld(struct adapter *sc, int id)
342509fe6320SNavdeep Parhar {
342609fe6320SNavdeep Parhar 	int rc = EAGAIN;
342709fe6320SNavdeep Parhar 	struct uld_info *ui;
342809fe6320SNavdeep Parhar 
342909fe6320SNavdeep Parhar 	mtx_lock(&t3_uld_list_lock);
343009fe6320SNavdeep Parhar 
343109fe6320SNavdeep Parhar 	SLIST_FOREACH(ui, &t3_uld_list, link) {
343209fe6320SNavdeep Parhar 		if (ui->uld_id == id) {
343309fe6320SNavdeep Parhar 			rc = ui->activate(sc);
343409fe6320SNavdeep Parhar 			if (rc == 0)
343509fe6320SNavdeep Parhar 				ui->refcount++;
343609fe6320SNavdeep Parhar 			goto done;
343709fe6320SNavdeep Parhar 		}
343809fe6320SNavdeep Parhar 	}
343909fe6320SNavdeep Parhar done:
344009fe6320SNavdeep Parhar 	mtx_unlock(&t3_uld_list_lock);
344109fe6320SNavdeep Parhar 
344209fe6320SNavdeep Parhar 	return (rc);
344309fe6320SNavdeep Parhar }
344409fe6320SNavdeep Parhar 
344509fe6320SNavdeep Parhar int
344609fe6320SNavdeep Parhar t3_deactivate_uld(struct adapter *sc, int id)
344709fe6320SNavdeep Parhar {
344809fe6320SNavdeep Parhar 	int rc = EINVAL;
344909fe6320SNavdeep Parhar 	struct uld_info *ui;
345009fe6320SNavdeep Parhar 
345109fe6320SNavdeep Parhar 	mtx_lock(&t3_uld_list_lock);
345209fe6320SNavdeep Parhar 
345309fe6320SNavdeep Parhar 	SLIST_FOREACH(ui, &t3_uld_list, link) {
345409fe6320SNavdeep Parhar 		if (ui->uld_id == id) {
345509fe6320SNavdeep Parhar 			rc = ui->deactivate(sc);
345609fe6320SNavdeep Parhar 			if (rc == 0)
345709fe6320SNavdeep Parhar 				ui->refcount--;
345809fe6320SNavdeep Parhar 			goto done;
345909fe6320SNavdeep Parhar 		}
346009fe6320SNavdeep Parhar 	}
346109fe6320SNavdeep Parhar done:
346209fe6320SNavdeep Parhar 	mtx_unlock(&t3_uld_list_lock);
346309fe6320SNavdeep Parhar 
346409fe6320SNavdeep Parhar 	return (rc);
346509fe6320SNavdeep Parhar }
346609fe6320SNavdeep Parhar 
346709fe6320SNavdeep Parhar static int
346809fe6320SNavdeep Parhar cpl_not_handled(struct sge_qset *qs __unused, struct rsp_desc *r __unused,
346909fe6320SNavdeep Parhar     struct mbuf *m)
347009fe6320SNavdeep Parhar {
347109fe6320SNavdeep Parhar 	m_freem(m);
347209fe6320SNavdeep Parhar 	return (EDOOFUS);
347309fe6320SNavdeep Parhar }
347409fe6320SNavdeep Parhar 
347509fe6320SNavdeep Parhar int
347609fe6320SNavdeep Parhar t3_register_cpl_handler(struct adapter *sc, int opcode, cpl_handler_t h)
347709fe6320SNavdeep Parhar {
347809fe6320SNavdeep Parhar 	uintptr_t *loc, new;
347909fe6320SNavdeep Parhar 
348009fe6320SNavdeep Parhar 	if (opcode >= NUM_CPL_HANDLERS)
348109fe6320SNavdeep Parhar 		return (EINVAL);
348209fe6320SNavdeep Parhar 
348309fe6320SNavdeep Parhar 	new = h ? (uintptr_t)h : (uintptr_t)cpl_not_handled;
348409fe6320SNavdeep Parhar 	loc = (uintptr_t *) &sc->cpl_handler[opcode];
348509fe6320SNavdeep Parhar 	atomic_store_rel_ptr(loc, new);
348609fe6320SNavdeep Parhar 
348709fe6320SNavdeep Parhar 	return (0);
348809fe6320SNavdeep Parhar }
348909fe6320SNavdeep Parhar #endif
349009fe6320SNavdeep Parhar 
349109fe6320SNavdeep Parhar static int
349209fe6320SNavdeep Parhar cxgbc_mod_event(module_t mod, int cmd, void *arg)
349309fe6320SNavdeep Parhar {
349409fe6320SNavdeep Parhar 	int rc = 0;
349509fe6320SNavdeep Parhar 
349609fe6320SNavdeep Parhar 	switch (cmd) {
349709fe6320SNavdeep Parhar 	case MOD_LOAD:
349809fe6320SNavdeep Parhar 		mtx_init(&t3_list_lock, "T3 adapters", 0, MTX_DEF);
349909fe6320SNavdeep Parhar 		SLIST_INIT(&t3_list);
350009fe6320SNavdeep Parhar #ifdef TCP_OFFLOAD
350109fe6320SNavdeep Parhar 		mtx_init(&t3_uld_list_lock, "T3 ULDs", 0, MTX_DEF);
350209fe6320SNavdeep Parhar 		SLIST_INIT(&t3_uld_list);
350309fe6320SNavdeep Parhar #endif
350409fe6320SNavdeep Parhar 		break;
350509fe6320SNavdeep Parhar 
350609fe6320SNavdeep Parhar 	case MOD_UNLOAD:
350709fe6320SNavdeep Parhar #ifdef TCP_OFFLOAD
350809fe6320SNavdeep Parhar 		mtx_lock(&t3_uld_list_lock);
350909fe6320SNavdeep Parhar 		if (!SLIST_EMPTY(&t3_uld_list)) {
351009fe6320SNavdeep Parhar 			rc = EBUSY;
351109fe6320SNavdeep Parhar 			mtx_unlock(&t3_uld_list_lock);
351209fe6320SNavdeep Parhar 			break;
351309fe6320SNavdeep Parhar 		}
351409fe6320SNavdeep Parhar 		mtx_unlock(&t3_uld_list_lock);
351509fe6320SNavdeep Parhar 		mtx_destroy(&t3_uld_list_lock);
351609fe6320SNavdeep Parhar #endif
351709fe6320SNavdeep Parhar 		mtx_lock(&t3_list_lock);
351809fe6320SNavdeep Parhar 		if (!SLIST_EMPTY(&t3_list)) {
351909fe6320SNavdeep Parhar 			rc = EBUSY;
352009fe6320SNavdeep Parhar 			mtx_unlock(&t3_list_lock);
352109fe6320SNavdeep Parhar 			break;
352209fe6320SNavdeep Parhar 		}
352309fe6320SNavdeep Parhar 		mtx_unlock(&t3_list_lock);
352409fe6320SNavdeep Parhar 		mtx_destroy(&t3_list_lock);
352509fe6320SNavdeep Parhar 		break;
352609fe6320SNavdeep Parhar 	}
352709fe6320SNavdeep Parhar 
352809fe6320SNavdeep Parhar 	return (rc);
352909fe6320SNavdeep Parhar }
3530