blob: 570b895ae06f299c44465abf35b44cd87c60ade8 [file] [log] [blame]
Casey Leedom16f8bd42010-06-25 12:12:54 +00001/*
2 * This file is part of the Chelsio T4 PCI-E SR-IOV Virtual Function Ethernet
3 * driver for Linux.
4 *
5 * Copyright (c) 2009-2010 Chelsio Communications, Inc. All rights reserved.
6 *
7 * This software is available to you under a choice of one of two
8 * licenses. You may choose to be licensed under the terms of the GNU
9 * General Public License (GPL) Version 2, available from the file
10 * COPYING in the main directory of this source tree, or the
11 * OpenIB.org BSD license below:
12 *
13 * Redistribution and use in source and binary forms, with or
14 * without modification, are permitted provided that the following
15 * conditions are met:
16 *
17 * - Redistributions of source code must retain the above
18 * copyright notice, this list of conditions and the following
19 * disclaimer.
20 *
21 * - Redistributions in binary form must reproduce the above
22 * copyright notice, this list of conditions and the following
23 * disclaimer in the documentation and/or other materials
24 * provided with the distribution.
25 *
26 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
27 * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
28 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
29 * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
30 * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
31 * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
32 * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
33 * SOFTWARE.
34 */
35
Casey Leedom16f8bd42010-06-25 12:12:54 +000036#include <linux/pci.h>
37
38#include "t4vf_common.h"
39#include "t4vf_defs.h"
40
41#include "../cxgb4/t4_regs.h"
42#include "../cxgb4/t4fw_api.h"
43
44/*
45 * Wait for the device to become ready (signified by our "who am I" register
46 * returning a value other than all 1's). Return an error if it doesn't
47 * become ready ...
48 */
Bill Pembertond289f862012-12-03 09:23:03 -050049int t4vf_wait_dev_ready(struct adapter *adapter)
Casey Leedom16f8bd42010-06-25 12:12:54 +000050{
51 const u32 whoami = T4VF_PL_BASE_ADDR + PL_VF_WHOAMI;
52 const u32 notready1 = 0xffffffff;
53 const u32 notready2 = 0xeeeeeeee;
54 u32 val;
55
56 val = t4_read_reg(adapter, whoami);
57 if (val != notready1 && val != notready2)
58 return 0;
59 msleep(500);
60 val = t4_read_reg(adapter, whoami);
61 if (val != notready1 && val != notready2)
62 return 0;
63 else
64 return -EIO;
65}
66
67/*
68 * Get the reply to a mailbox command and store it in @rpl in big-endian order
69 * (since the firmware data structures are specified in a big-endian layout).
70 */
71static void get_mbox_rpl(struct adapter *adapter, __be64 *rpl, int size,
72 u32 mbox_data)
73{
74 for ( ; size; size -= 8, mbox_data += 8)
75 *rpl++ = cpu_to_be64(t4_read_reg64(adapter, mbox_data));
76}
77
78/*
79 * Dump contents of mailbox with a leading tag.
80 */
81static void dump_mbox(struct adapter *adapter, const char *tag, u32 mbox_data)
82{
83 dev_err(adapter->pdev_dev,
84 "mbox %s: %llx %llx %llx %llx %llx %llx %llx %llx\n", tag,
85 (unsigned long long)t4_read_reg64(adapter, mbox_data + 0),
86 (unsigned long long)t4_read_reg64(adapter, mbox_data + 8),
87 (unsigned long long)t4_read_reg64(adapter, mbox_data + 16),
88 (unsigned long long)t4_read_reg64(adapter, mbox_data + 24),
89 (unsigned long long)t4_read_reg64(adapter, mbox_data + 32),
90 (unsigned long long)t4_read_reg64(adapter, mbox_data + 40),
91 (unsigned long long)t4_read_reg64(adapter, mbox_data + 48),
92 (unsigned long long)t4_read_reg64(adapter, mbox_data + 56));
93}
94
95/**
96 * t4vf_wr_mbox_core - send a command to FW through the mailbox
97 * @adapter: the adapter
98 * @cmd: the command to write
99 * @size: command length in bytes
100 * @rpl: where to optionally store the reply
101 * @sleep_ok: if true we may sleep while awaiting command completion
102 *
103 * Sends the given command to FW through the mailbox and waits for the
104 * FW to execute the command. If @rpl is not %NULL it is used to store
105 * the FW's reply to the command. The command and its optional reply
106 * are of the same length. FW can take up to 500 ms to respond.
107 * @sleep_ok determines whether we may sleep while awaiting the response.
108 * If sleeping is allowed we use progressive backoff otherwise we spin.
109 *
110 * The return value is 0 on success or a negative errno on failure. A
111 * failure can happen either because we are not able to execute the
112 * command or FW executes it but signals an error. In the latter case
113 * the return value is the error code indicated by FW (negated).
114 */
115int t4vf_wr_mbox_core(struct adapter *adapter, const void *cmd, int size,
116 void *rpl, bool sleep_ok)
117{
Joe Perches215faf92010-12-21 02:16:10 -0800118 static const int delay[] = {
Casey Leedom16f8bd42010-06-25 12:12:54 +0000119 1, 1, 3, 5, 10, 10, 20, 50, 100
120 };
121
122 u32 v;
123 int i, ms, delay_idx;
124 const __be64 *p;
125 u32 mbox_data = T4VF_MBDATA_BASE_ADDR;
126 u32 mbox_ctl = T4VF_CIM_BASE_ADDR + CIM_VF_EXT_MAILBOX_CTRL;
127
128 /*
129 * Commands must be multiples of 16 bytes in length and may not be
130 * larger than the size of the Mailbox Data register array.
131 */
132 if ((size % 16) != 0 ||
133 size > NUM_CIM_VF_MAILBOX_DATA_INSTANCES * 4)
134 return -EINVAL;
135
136 /*
137 * Loop trying to get ownership of the mailbox. Return an error
138 * if we can't gain ownership.
139 */
140 v = MBOWNER_GET(t4_read_reg(adapter, mbox_ctl));
141 for (i = 0; v == MBOX_OWNER_NONE && i < 3; i++)
142 v = MBOWNER_GET(t4_read_reg(adapter, mbox_ctl));
143 if (v != MBOX_OWNER_DRV)
144 return v == MBOX_OWNER_FW ? -EBUSY : -ETIMEDOUT;
145
146 /*
147 * Write the command array into the Mailbox Data register array and
148 * transfer ownership of the mailbox to the firmware.
Casey Leedom80ce3f672011-01-10 13:53:43 -0800149 *
150 * For the VFs, the Mailbox Data "registers" are actually backed by
151 * T4's "MA" interface rather than PL Registers (as is the case for
152 * the PFs). Because these are in different coherency domains, the
153 * write to the VF's PL-register-backed Mailbox Control can race in
154 * front of the writes to the MA-backed VF Mailbox Data "registers".
155 * So we need to do a read-back on at least one byte of the VF Mailbox
156 * Data registers before doing the write to the VF Mailbox Control
157 * register.
Casey Leedom16f8bd42010-06-25 12:12:54 +0000158 */
159 for (i = 0, p = cmd; i < size; i += 8)
160 t4_write_reg64(adapter, mbox_data + i, be64_to_cpu(*p++));
Casey Leedom80ce3f672011-01-10 13:53:43 -0800161 t4_read_reg(adapter, mbox_data); /* flush write */
162
Casey Leedom16f8bd42010-06-25 12:12:54 +0000163 t4_write_reg(adapter, mbox_ctl,
164 MBMSGVALID | MBOWNER(MBOX_OWNER_FW));
165 t4_read_reg(adapter, mbox_ctl); /* flush write */
166
167 /*
168 * Spin waiting for firmware to acknowledge processing our command.
169 */
170 delay_idx = 0;
171 ms = delay[0];
172
Casey Leedom05507692011-02-14 12:56:25 +0000173 for (i = 0; i < FW_CMD_MAX_TIMEOUT; i += ms) {
Casey Leedom16f8bd42010-06-25 12:12:54 +0000174 if (sleep_ok) {
175 ms = delay[delay_idx];
Casey Leedom024e6292010-07-19 17:51:46 -0700176 if (delay_idx < ARRAY_SIZE(delay) - 1)
Casey Leedom16f8bd42010-06-25 12:12:54 +0000177 delay_idx++;
178 msleep(ms);
179 } else
180 mdelay(ms);
181
182 /*
183 * If we're the owner, see if this is the reply we wanted.
184 */
185 v = t4_read_reg(adapter, mbox_ctl);
186 if (MBOWNER_GET(v) == MBOX_OWNER_DRV) {
187 /*
188 * If the Message Valid bit isn't on, revoke ownership
189 * of the mailbox and continue waiting for our reply.
190 */
191 if ((v & MBMSGVALID) == 0) {
192 t4_write_reg(adapter, mbox_ctl,
193 MBOWNER(MBOX_OWNER_NONE));
194 continue;
195 }
196
197 /*
198 * We now have our reply. Extract the command return
199 * value, copy the reply back to our caller's buffer
200 * (if specified) and revoke ownership of the mailbox.
201 * We return the (negated) firmware command return
202 * code (this depends on FW_SUCCESS == 0).
203 */
204
205 /* return value in low-order little-endian word */
206 v = t4_read_reg(adapter, mbox_data);
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +0530207 if (FW_CMD_RETVAL_G(v))
Casey Leedom16f8bd42010-06-25 12:12:54 +0000208 dump_mbox(adapter, "FW Error", mbox_data);
209
210 if (rpl) {
211 /* request bit in high-order BE word */
212 WARN_ON((be32_to_cpu(*(const u32 *)cmd)
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +0530213 & FW_CMD_REQUEST_F) == 0);
Casey Leedom16f8bd42010-06-25 12:12:54 +0000214 get_mbox_rpl(adapter, rpl, size, mbox_data);
215 WARN_ON((be32_to_cpu(*(u32 *)rpl)
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +0530216 & FW_CMD_REQUEST_F) != 0);
Casey Leedom16f8bd42010-06-25 12:12:54 +0000217 }
218 t4_write_reg(adapter, mbox_ctl,
219 MBOWNER(MBOX_OWNER_NONE));
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +0530220 return -FW_CMD_RETVAL_G(v);
Casey Leedom16f8bd42010-06-25 12:12:54 +0000221 }
222 }
223
224 /*
225 * We timed out. Return the error ...
226 */
227 dump_mbox(adapter, "FW Timeout", mbox_data);
228 return -ETIMEDOUT;
229}
230
231/**
232 * hash_mac_addr - return the hash value of a MAC address
233 * @addr: the 48-bit Ethernet MAC address
234 *
235 * Hashes a MAC address according to the hash function used by hardware
236 * inexact (hash) address matching.
237 */
238static int hash_mac_addr(const u8 *addr)
239{
240 u32 a = ((u32)addr[0] << 16) | ((u32)addr[1] << 8) | addr[2];
241 u32 b = ((u32)addr[3] << 16) | ((u32)addr[4] << 8) | addr[5];
242 a ^= b;
243 a ^= (a >> 12);
244 a ^= (a >> 6);
245 return a & 0x3f;
246}
247
248/**
249 * init_link_config - initialize a link's SW state
250 * @lc: structure holding the link state
251 * @caps: link capabilities
252 *
253 * Initializes the SW state maintained for each link, including the link's
254 * capabilities and default speed/flow-control/autonegotiation settings.
255 */
Greg Kroah-Hartman1dd06ae2012-12-06 14:30:56 +0000256static void init_link_config(struct link_config *lc, unsigned int caps)
Casey Leedom16f8bd42010-06-25 12:12:54 +0000257{
258 lc->supported = caps;
259 lc->requested_speed = 0;
260 lc->speed = 0;
261 lc->requested_fc = lc->fc = PAUSE_RX | PAUSE_TX;
262 if (lc->supported & SUPPORTED_Autoneg) {
263 lc->advertising = lc->supported;
264 lc->autoneg = AUTONEG_ENABLE;
265 lc->requested_fc |= PAUSE_AUTONEG;
266 } else {
267 lc->advertising = 0;
268 lc->autoneg = AUTONEG_DISABLE;
269 }
270}
271
272/**
273 * t4vf_port_init - initialize port hardware/software state
274 * @adapter: the adapter
275 * @pidx: the adapter port index
276 */
Bill Pembertond289f862012-12-03 09:23:03 -0500277int t4vf_port_init(struct adapter *adapter, int pidx)
Casey Leedom16f8bd42010-06-25 12:12:54 +0000278{
279 struct port_info *pi = adap2pinfo(adapter, pidx);
280 struct fw_vi_cmd vi_cmd, vi_rpl;
281 struct fw_port_cmd port_cmd, port_rpl;
282 int v;
283 u32 word;
284
285 /*
286 * Execute a VI Read command to get our Virtual Interface information
287 * like MAC address, etc.
288 */
289 memset(&vi_cmd, 0, sizeof(vi_cmd));
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +0530290 vi_cmd.op_to_vfn = cpu_to_be32(FW_CMD_OP_V(FW_VI_CMD) |
291 FW_CMD_REQUEST_F |
292 FW_CMD_READ_F);
Casey Leedom16f8bd42010-06-25 12:12:54 +0000293 vi_cmd.alloc_to_len16 = cpu_to_be32(FW_LEN16(vi_cmd));
294 vi_cmd.type_viid = cpu_to_be16(FW_VI_CMD_VIID(pi->viid));
295 v = t4vf_wr_mbox(adapter, &vi_cmd, sizeof(vi_cmd), &vi_rpl);
296 if (v)
297 return v;
298
299 BUG_ON(pi->port_id != FW_VI_CMD_PORTID_GET(vi_rpl.portid_pkd));
300 pi->rss_size = FW_VI_CMD_RSSSIZE_GET(be16_to_cpu(vi_rpl.rsssize_pkd));
301 t4_os_set_hw_addr(adapter, pidx, vi_rpl.mac);
302
303 /*
304 * If we don't have read access to our port information, we're done
305 * now. Otherwise, execute a PORT Read command to get it ...
306 */
307 if (!(adapter->params.vfres.r_caps & FW_CMD_CAP_PORT))
308 return 0;
309
310 memset(&port_cmd, 0, sizeof(port_cmd));
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +0530311 port_cmd.op_to_portid = cpu_to_be32(FW_CMD_OP_V(FW_PORT_CMD) |
312 FW_CMD_REQUEST_F |
313 FW_CMD_READ_F |
Casey Leedom16f8bd42010-06-25 12:12:54 +0000314 FW_PORT_CMD_PORTID(pi->port_id));
315 port_cmd.action_to_len16 =
316 cpu_to_be32(FW_PORT_CMD_ACTION(FW_PORT_ACTION_GET_PORT_INFO) |
317 FW_LEN16(port_cmd));
318 v = t4vf_wr_mbox(adapter, &port_cmd, sizeof(port_cmd), &port_rpl);
319 if (v)
320 return v;
321
322 v = 0;
323 word = be16_to_cpu(port_rpl.u.info.pcap);
324 if (word & FW_PORT_CAP_SPEED_100M)
325 v |= SUPPORTED_100baseT_Full;
326 if (word & FW_PORT_CAP_SPEED_1G)
327 v |= SUPPORTED_1000baseT_Full;
328 if (word & FW_PORT_CAP_SPEED_10G)
329 v |= SUPPORTED_10000baseT_Full;
Hariprasad Shenai897d55d2014-10-09 05:48:46 +0530330 if (word & FW_PORT_CAP_SPEED_40G)
331 v |= SUPPORTED_40000baseSR4_Full;
Casey Leedom16f8bd42010-06-25 12:12:54 +0000332 if (word & FW_PORT_CAP_ANEG)
333 v |= SUPPORTED_Autoneg;
334 init_link_config(&pi->link_cfg, v);
335
336 return 0;
337}
338
339/**
Casey Leedome68e6132010-11-11 09:06:53 +0000340 * t4vf_fw_reset - issue a reset to FW
341 * @adapter: the adapter
342 *
343 * Issues a reset command to FW. For a Physical Function this would
344 * result in the Firmware reseting all of its state. For a Virtual
345 * Function this just resets the state associated with the VF.
346 */
347int t4vf_fw_reset(struct adapter *adapter)
348{
349 struct fw_reset_cmd cmd;
350
351 memset(&cmd, 0, sizeof(cmd));
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +0530352 cmd.op_to_write = cpu_to_be32(FW_CMD_OP_V(FW_RESET_CMD) |
353 FW_CMD_WRITE_F);
Casey Leedome68e6132010-11-11 09:06:53 +0000354 cmd.retval_len16 = cpu_to_be32(FW_LEN16(cmd));
355 return t4vf_wr_mbox(adapter, &cmd, sizeof(cmd), NULL);
356}
357
358/**
Casey Leedom16f8bd42010-06-25 12:12:54 +0000359 * t4vf_query_params - query FW or device parameters
360 * @adapter: the adapter
361 * @nparams: the number of parameters
362 * @params: the parameter names
363 * @vals: the parameter values
364 *
365 * Reads the values of firmware or device parameters. Up to 7 parameters
366 * can be queried at once.
367 */
stephen hemmingerde5b8672013-12-18 14:16:47 -0800368static int t4vf_query_params(struct adapter *adapter, unsigned int nparams,
369 const u32 *params, u32 *vals)
Casey Leedom16f8bd42010-06-25 12:12:54 +0000370{
371 int i, ret;
372 struct fw_params_cmd cmd, rpl;
373 struct fw_params_param *p;
374 size_t len16;
375
376 if (nparams > 7)
377 return -EINVAL;
378
379 memset(&cmd, 0, sizeof(cmd));
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +0530380 cmd.op_to_vfn = cpu_to_be32(FW_CMD_OP_V(FW_PARAMS_CMD) |
381 FW_CMD_REQUEST_F |
382 FW_CMD_READ_F);
Casey Leedom16f8bd42010-06-25 12:12:54 +0000383 len16 = DIV_ROUND_UP(offsetof(struct fw_params_cmd,
384 param[nparams].mnem), 16);
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +0530385 cmd.retval_len16 = cpu_to_be32(FW_CMD_LEN16_V(len16));
Casey Leedom16f8bd42010-06-25 12:12:54 +0000386 for (i = 0, p = &cmd.param[0]; i < nparams; i++, p++)
387 p->mnem = htonl(*params++);
388
389 ret = t4vf_wr_mbox(adapter, &cmd, sizeof(cmd), &rpl);
390 if (ret == 0)
391 for (i = 0, p = &rpl.param[0]; i < nparams; i++, p++)
392 *vals++ = be32_to_cpu(p->val);
393 return ret;
394}
395
396/**
397 * t4vf_set_params - sets FW or device parameters
398 * @adapter: the adapter
399 * @nparams: the number of parameters
400 * @params: the parameter names
401 * @vals: the parameter values
402 *
403 * Sets the values of firmware or device parameters. Up to 7 parameters
404 * can be specified at once.
405 */
406int t4vf_set_params(struct adapter *adapter, unsigned int nparams,
407 const u32 *params, const u32 *vals)
408{
409 int i;
410 struct fw_params_cmd cmd;
411 struct fw_params_param *p;
412 size_t len16;
413
414 if (nparams > 7)
415 return -EINVAL;
416
417 memset(&cmd, 0, sizeof(cmd));
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +0530418 cmd.op_to_vfn = cpu_to_be32(FW_CMD_OP_V(FW_PARAMS_CMD) |
419 FW_CMD_REQUEST_F |
420 FW_CMD_WRITE_F);
Casey Leedom16f8bd42010-06-25 12:12:54 +0000421 len16 = DIV_ROUND_UP(offsetof(struct fw_params_cmd,
422 param[nparams]), 16);
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +0530423 cmd.retval_len16 = cpu_to_be32(FW_CMD_LEN16_V(len16));
Casey Leedom16f8bd42010-06-25 12:12:54 +0000424 for (i = 0, p = &cmd.param[0]; i < nparams; i++, p++) {
425 p->mnem = cpu_to_be32(*params++);
426 p->val = cpu_to_be32(*vals++);
427 }
428
429 return t4vf_wr_mbox(adapter, &cmd, sizeof(cmd), NULL);
430}
431
432/**
433 * t4vf_get_sge_params - retrieve adapter Scatter gather Engine parameters
434 * @adapter: the adapter
435 *
436 * Retrieves various core SGE parameters in the form of hardware SGE
437 * register values. The caller is responsible for decoding these as
438 * needed. The SGE parameters are stored in @adapter->params.sge.
439 */
440int t4vf_get_sge_params(struct adapter *adapter)
441{
442 struct sge_params *sge_params = &adapter->params.sge;
443 u32 params[7], vals[7];
444 int v;
445
446 params[0] = (FW_PARAMS_MNEM(FW_PARAMS_MNEM_REG) |
447 FW_PARAMS_PARAM_XYZ(SGE_CONTROL));
448 params[1] = (FW_PARAMS_MNEM(FW_PARAMS_MNEM_REG) |
449 FW_PARAMS_PARAM_XYZ(SGE_HOST_PAGE_SIZE));
450 params[2] = (FW_PARAMS_MNEM(FW_PARAMS_MNEM_REG) |
451 FW_PARAMS_PARAM_XYZ(SGE_FL_BUFFER_SIZE0));
452 params[3] = (FW_PARAMS_MNEM(FW_PARAMS_MNEM_REG) |
453 FW_PARAMS_PARAM_XYZ(SGE_FL_BUFFER_SIZE1));
454 params[4] = (FW_PARAMS_MNEM(FW_PARAMS_MNEM_REG) |
455 FW_PARAMS_PARAM_XYZ(SGE_TIMER_VALUE_0_AND_1));
456 params[5] = (FW_PARAMS_MNEM(FW_PARAMS_MNEM_REG) |
457 FW_PARAMS_PARAM_XYZ(SGE_TIMER_VALUE_2_AND_3));
458 params[6] = (FW_PARAMS_MNEM(FW_PARAMS_MNEM_REG) |
459 FW_PARAMS_PARAM_XYZ(SGE_TIMER_VALUE_4_AND_5));
460 v = t4vf_query_params(adapter, 7, params, vals);
461 if (v)
462 return v;
463 sge_params->sge_control = vals[0];
464 sge_params->sge_host_page_size = vals[1];
465 sge_params->sge_fl_buffer_size[0] = vals[2];
466 sge_params->sge_fl_buffer_size[1] = vals[3];
467 sge_params->sge_timer_value_0_and_1 = vals[4];
468 sge_params->sge_timer_value_2_and_3 = vals[5];
469 sge_params->sge_timer_value_4_and_5 = vals[6];
470
471 params[0] = (FW_PARAMS_MNEM(FW_PARAMS_MNEM_REG) |
472 FW_PARAMS_PARAM_XYZ(SGE_INGRESS_RX_THRESHOLD));
473 v = t4vf_query_params(adapter, 1, params, vals);
474 if (v)
475 return v;
476 sge_params->sge_ingress_rx_threshold = vals[0];
477
478 return 0;
479}
480
481/**
482 * t4vf_get_vpd_params - retrieve device VPD paremeters
483 * @adapter: the adapter
484 *
485 * Retrives various device Vital Product Data parameters. The parameters
486 * are stored in @adapter->params.vpd.
487 */
488int t4vf_get_vpd_params(struct adapter *adapter)
489{
490 struct vpd_params *vpd_params = &adapter->params.vpd;
491 u32 params[7], vals[7];
492 int v;
493
494 params[0] = (FW_PARAMS_MNEM(FW_PARAMS_MNEM_DEV) |
495 FW_PARAMS_PARAM_X(FW_PARAMS_PARAM_DEV_CCLK));
496 v = t4vf_query_params(adapter, 1, params, vals);
497 if (v)
498 return v;
499 vpd_params->cclk = vals[0];
500
501 return 0;
502}
503
504/**
505 * t4vf_get_dev_params - retrieve device paremeters
506 * @adapter: the adapter
507 *
508 * Retrives various device parameters. The parameters are stored in
509 * @adapter->params.dev.
510 */
511int t4vf_get_dev_params(struct adapter *adapter)
512{
513 struct dev_params *dev_params = &adapter->params.dev;
514 u32 params[7], vals[7];
515 int v;
516
517 params[0] = (FW_PARAMS_MNEM(FW_PARAMS_MNEM_DEV) |
518 FW_PARAMS_PARAM_X(FW_PARAMS_PARAM_DEV_FWREV));
519 params[1] = (FW_PARAMS_MNEM(FW_PARAMS_MNEM_DEV) |
520 FW_PARAMS_PARAM_X(FW_PARAMS_PARAM_DEV_TPREV));
521 v = t4vf_query_params(adapter, 2, params, vals);
522 if (v)
523 return v;
524 dev_params->fwrev = vals[0];
525 dev_params->tprev = vals[1];
526
527 return 0;
528}
529
530/**
531 * t4vf_get_rss_glb_config - retrieve adapter RSS Global Configuration
532 * @adapter: the adapter
533 *
534 * Retrieves global RSS mode and parameters with which we have to live
535 * and stores them in the @adapter's RSS parameters.
536 */
537int t4vf_get_rss_glb_config(struct adapter *adapter)
538{
539 struct rss_params *rss = &adapter->params.rss;
540 struct fw_rss_glb_config_cmd cmd, rpl;
541 int v;
542
543 /*
544 * Execute an RSS Global Configuration read command to retrieve
545 * our RSS configuration.
546 */
547 memset(&cmd, 0, sizeof(cmd));
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +0530548 cmd.op_to_write = cpu_to_be32(FW_CMD_OP_V(FW_RSS_GLB_CONFIG_CMD) |
549 FW_CMD_REQUEST_F |
550 FW_CMD_READ_F);
Casey Leedom16f8bd42010-06-25 12:12:54 +0000551 cmd.retval_len16 = cpu_to_be32(FW_LEN16(cmd));
552 v = t4vf_wr_mbox(adapter, &cmd, sizeof(cmd), &rpl);
553 if (v)
554 return v;
555
556 /*
557 * Transate the big-endian RSS Global Configuration into our
558 * cpu-endian format based on the RSS mode. We also do first level
559 * filtering at this point to weed out modes which don't support
560 * VF Drivers ...
561 */
562 rss->mode = FW_RSS_GLB_CONFIG_CMD_MODE_GET(
563 be32_to_cpu(rpl.u.manual.mode_pkd));
564 switch (rss->mode) {
565 case FW_RSS_GLB_CONFIG_CMD_MODE_BASICVIRTUAL: {
566 u32 word = be32_to_cpu(
567 rpl.u.basicvirtual.synmapen_to_hashtoeplitz);
568
569 rss->u.basicvirtual.synmapen =
570 ((word & FW_RSS_GLB_CONFIG_CMD_SYNMAPEN) != 0);
571 rss->u.basicvirtual.syn4tupenipv6 =
572 ((word & FW_RSS_GLB_CONFIG_CMD_SYN4TUPENIPV6) != 0);
573 rss->u.basicvirtual.syn2tupenipv6 =
574 ((word & FW_RSS_GLB_CONFIG_CMD_SYN2TUPENIPV6) != 0);
575 rss->u.basicvirtual.syn4tupenipv4 =
576 ((word & FW_RSS_GLB_CONFIG_CMD_SYN4TUPENIPV4) != 0);
577 rss->u.basicvirtual.syn2tupenipv4 =
578 ((word & FW_RSS_GLB_CONFIG_CMD_SYN2TUPENIPV4) != 0);
579
580 rss->u.basicvirtual.ofdmapen =
581 ((word & FW_RSS_GLB_CONFIG_CMD_OFDMAPEN) != 0);
582
583 rss->u.basicvirtual.tnlmapen =
584 ((word & FW_RSS_GLB_CONFIG_CMD_TNLMAPEN) != 0);
585 rss->u.basicvirtual.tnlalllookup =
586 ((word & FW_RSS_GLB_CONFIG_CMD_TNLALLLKP) != 0);
587
588 rss->u.basicvirtual.hashtoeplitz =
589 ((word & FW_RSS_GLB_CONFIG_CMD_HASHTOEPLITZ) != 0);
590
591 /* we need at least Tunnel Map Enable to be set */
592 if (!rss->u.basicvirtual.tnlmapen)
593 return -EINVAL;
594 break;
595 }
596
597 default:
598 /* all unknown/unsupported RSS modes result in an error */
599 return -EINVAL;
600 }
601
602 return 0;
603}
604
605/**
606 * t4vf_get_vfres - retrieve VF resource limits
607 * @adapter: the adapter
608 *
609 * Retrieves configured resource limits and capabilities for a virtual
610 * function. The results are stored in @adapter->vfres.
611 */
612int t4vf_get_vfres(struct adapter *adapter)
613{
614 struct vf_resources *vfres = &adapter->params.vfres;
615 struct fw_pfvf_cmd cmd, rpl;
616 int v;
617 u32 word;
618
619 /*
620 * Execute PFVF Read command to get VF resource limits; bail out early
621 * with error on command failure.
622 */
623 memset(&cmd, 0, sizeof(cmd));
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +0530624 cmd.op_to_vfn = cpu_to_be32(FW_CMD_OP_V(FW_PFVF_CMD) |
625 FW_CMD_REQUEST_F |
626 FW_CMD_READ_F);
Casey Leedom16f8bd42010-06-25 12:12:54 +0000627 cmd.retval_len16 = cpu_to_be32(FW_LEN16(cmd));
628 v = t4vf_wr_mbox(adapter, &cmd, sizeof(cmd), &rpl);
629 if (v)
630 return v;
631
632 /*
633 * Extract VF resource limits and return success.
634 */
635 word = be32_to_cpu(rpl.niqflint_niq);
636 vfres->niqflint = FW_PFVF_CMD_NIQFLINT_GET(word);
637 vfres->niq = FW_PFVF_CMD_NIQ_GET(word);
638
639 word = be32_to_cpu(rpl.type_to_neq);
640 vfres->neq = FW_PFVF_CMD_NEQ_GET(word);
641 vfres->pmask = FW_PFVF_CMD_PMASK_GET(word);
642
643 word = be32_to_cpu(rpl.tc_to_nexactf);
644 vfres->tc = FW_PFVF_CMD_TC_GET(word);
645 vfres->nvi = FW_PFVF_CMD_NVI_GET(word);
646 vfres->nexactf = FW_PFVF_CMD_NEXACTF_GET(word);
647
648 word = be32_to_cpu(rpl.r_caps_to_nethctrl);
649 vfres->r_caps = FW_PFVF_CMD_R_CAPS_GET(word);
650 vfres->wx_caps = FW_PFVF_CMD_WX_CAPS_GET(word);
651 vfres->nethctrl = FW_PFVF_CMD_NETHCTRL_GET(word);
652
653 return 0;
654}
655
656/**
657 * t4vf_read_rss_vi_config - read a VI's RSS configuration
658 * @adapter: the adapter
659 * @viid: Virtual Interface ID
660 * @config: pointer to host-native VI RSS Configuration buffer
661 *
662 * Reads the Virtual Interface's RSS configuration information and
663 * translates it into CPU-native format.
664 */
665int t4vf_read_rss_vi_config(struct adapter *adapter, unsigned int viid,
666 union rss_vi_config *config)
667{
668 struct fw_rss_vi_config_cmd cmd, rpl;
669 int v;
670
671 memset(&cmd, 0, sizeof(cmd));
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +0530672 cmd.op_to_viid = cpu_to_be32(FW_CMD_OP_V(FW_RSS_VI_CONFIG_CMD) |
673 FW_CMD_REQUEST_F |
674 FW_CMD_READ_F |
Casey Leedom16f8bd42010-06-25 12:12:54 +0000675 FW_RSS_VI_CONFIG_CMD_VIID(viid));
676 cmd.retval_len16 = cpu_to_be32(FW_LEN16(cmd));
677 v = t4vf_wr_mbox(adapter, &cmd, sizeof(cmd), &rpl);
678 if (v)
679 return v;
680
681 switch (adapter->params.rss.mode) {
682 case FW_RSS_GLB_CONFIG_CMD_MODE_BASICVIRTUAL: {
683 u32 word = be32_to_cpu(rpl.u.basicvirtual.defaultq_to_udpen);
684
685 config->basicvirtual.ip6fourtupen =
686 ((word & FW_RSS_VI_CONFIG_CMD_IP6FOURTUPEN) != 0);
687 config->basicvirtual.ip6twotupen =
688 ((word & FW_RSS_VI_CONFIG_CMD_IP6TWOTUPEN) != 0);
689 config->basicvirtual.ip4fourtupen =
690 ((word & FW_RSS_VI_CONFIG_CMD_IP4FOURTUPEN) != 0);
691 config->basicvirtual.ip4twotupen =
692 ((word & FW_RSS_VI_CONFIG_CMD_IP4TWOTUPEN) != 0);
693 config->basicvirtual.udpen =
694 ((word & FW_RSS_VI_CONFIG_CMD_UDPEN) != 0);
695 config->basicvirtual.defaultq =
696 FW_RSS_VI_CONFIG_CMD_DEFAULTQ_GET(word);
697 break;
698 }
699
700 default:
701 return -EINVAL;
702 }
703
704 return 0;
705}
706
707/**
708 * t4vf_write_rss_vi_config - write a VI's RSS configuration
709 * @adapter: the adapter
710 * @viid: Virtual Interface ID
711 * @config: pointer to host-native VI RSS Configuration buffer
712 *
713 * Write the Virtual Interface's RSS configuration information
714 * (translating it into firmware-native format before writing).
715 */
716int t4vf_write_rss_vi_config(struct adapter *adapter, unsigned int viid,
717 union rss_vi_config *config)
718{
719 struct fw_rss_vi_config_cmd cmd, rpl;
720
721 memset(&cmd, 0, sizeof(cmd));
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +0530722 cmd.op_to_viid = cpu_to_be32(FW_CMD_OP_V(FW_RSS_VI_CONFIG_CMD) |
723 FW_CMD_REQUEST_F |
724 FW_CMD_WRITE_F |
Casey Leedom16f8bd42010-06-25 12:12:54 +0000725 FW_RSS_VI_CONFIG_CMD_VIID(viid));
726 cmd.retval_len16 = cpu_to_be32(FW_LEN16(cmd));
727 switch (adapter->params.rss.mode) {
728 case FW_RSS_GLB_CONFIG_CMD_MODE_BASICVIRTUAL: {
729 u32 word = 0;
730
731 if (config->basicvirtual.ip6fourtupen)
732 word |= FW_RSS_VI_CONFIG_CMD_IP6FOURTUPEN;
733 if (config->basicvirtual.ip6twotupen)
734 word |= FW_RSS_VI_CONFIG_CMD_IP6TWOTUPEN;
735 if (config->basicvirtual.ip4fourtupen)
736 word |= FW_RSS_VI_CONFIG_CMD_IP4FOURTUPEN;
737 if (config->basicvirtual.ip4twotupen)
738 word |= FW_RSS_VI_CONFIG_CMD_IP4TWOTUPEN;
739 if (config->basicvirtual.udpen)
740 word |= FW_RSS_VI_CONFIG_CMD_UDPEN;
741 word |= FW_RSS_VI_CONFIG_CMD_DEFAULTQ(
742 config->basicvirtual.defaultq);
743 cmd.u.basicvirtual.defaultq_to_udpen = cpu_to_be32(word);
744 break;
745 }
746
747 default:
748 return -EINVAL;
749 }
750
751 return t4vf_wr_mbox(adapter, &cmd, sizeof(cmd), &rpl);
752}
753
754/**
755 * t4vf_config_rss_range - configure a portion of the RSS mapping table
756 * @adapter: the adapter
757 * @viid: Virtual Interface of RSS Table Slice
758 * @start: starting entry in the table to write
759 * @n: how many table entries to write
760 * @rspq: values for the "Response Queue" (Ingress Queue) lookup table
761 * @nrspq: number of values in @rspq
762 *
763 * Programs the selected part of the VI's RSS mapping table with the
764 * provided values. If @nrspq < @n the supplied values are used repeatedly
765 * until the full table range is populated.
766 *
767 * The caller must ensure the values in @rspq are in the range 0..1023.
768 */
769int t4vf_config_rss_range(struct adapter *adapter, unsigned int viid,
770 int start, int n, const u16 *rspq, int nrspq)
771{
772 const u16 *rsp = rspq;
773 const u16 *rsp_end = rspq+nrspq;
774 struct fw_rss_ind_tbl_cmd cmd;
775
776 /*
777 * Initialize firmware command template to write the RSS table.
778 */
779 memset(&cmd, 0, sizeof(cmd));
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +0530780 cmd.op_to_viid = cpu_to_be32(FW_CMD_OP_V(FW_RSS_IND_TBL_CMD) |
781 FW_CMD_REQUEST_F |
782 FW_CMD_WRITE_F |
Casey Leedom16f8bd42010-06-25 12:12:54 +0000783 FW_RSS_IND_TBL_CMD_VIID(viid));
784 cmd.retval_len16 = cpu_to_be32(FW_LEN16(cmd));
785
786 /*
787 * Each firmware RSS command can accommodate up to 32 RSS Ingress
788 * Queue Identifiers. These Ingress Queue IDs are packed three to
789 * a 32-bit word as 10-bit values with the upper remaining 2 bits
790 * reserved.
791 */
792 while (n > 0) {
793 __be32 *qp = &cmd.iq0_to_iq2;
794 int nq = min(n, 32);
795 int ret;
796
797 /*
798 * Set up the firmware RSS command header to send the next
799 * "nq" Ingress Queue IDs to the firmware.
800 */
801 cmd.niqid = cpu_to_be16(nq);
802 cmd.startidx = cpu_to_be16(start);
803
804 /*
805 * "nq" more done for the start of the next loop.
806 */
807 start += nq;
808 n -= nq;
809
810 /*
811 * While there are still Ingress Queue IDs to stuff into the
812 * current firmware RSS command, retrieve them from the
813 * Ingress Queue ID array and insert them into the command.
814 */
815 while (nq > 0) {
816 /*
817 * Grab up to the next 3 Ingress Queue IDs (wrapping
818 * around the Ingress Queue ID array if necessary) and
819 * insert them into the firmware RSS command at the
820 * current 3-tuple position within the commad.
821 */
822 u16 qbuf[3];
823 u16 *qbp = qbuf;
824 int nqbuf = min(3, nq);
825
826 nq -= nqbuf;
827 qbuf[0] = qbuf[1] = qbuf[2] = 0;
828 while (nqbuf) {
829 nqbuf--;
830 *qbp++ = *rsp++;
831 if (rsp >= rsp_end)
832 rsp = rspq;
833 }
834 *qp++ = cpu_to_be32(FW_RSS_IND_TBL_CMD_IQ0(qbuf[0]) |
835 FW_RSS_IND_TBL_CMD_IQ1(qbuf[1]) |
836 FW_RSS_IND_TBL_CMD_IQ2(qbuf[2]));
837 }
838
839 /*
840 * Send this portion of the RRS table update to the firmware;
841 * bail out on any errors.
842 */
843 ret = t4vf_wr_mbox(adapter, &cmd, sizeof(cmd), NULL);
844 if (ret)
845 return ret;
846 }
847 return 0;
848}
849
850/**
851 * t4vf_alloc_vi - allocate a virtual interface on a port
852 * @adapter: the adapter
853 * @port_id: physical port associated with the VI
854 *
855 * Allocate a new Virtual Interface and bind it to the indicated
856 * physical port. Return the new Virtual Interface Identifier on
857 * success, or a [negative] error number on failure.
858 */
859int t4vf_alloc_vi(struct adapter *adapter, int port_id)
860{
861 struct fw_vi_cmd cmd, rpl;
862 int v;
863
864 /*
865 * Execute a VI command to allocate Virtual Interface and return its
866 * VIID.
867 */
868 memset(&cmd, 0, sizeof(cmd));
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +0530869 cmd.op_to_vfn = cpu_to_be32(FW_CMD_OP_V(FW_VI_CMD) |
870 FW_CMD_REQUEST_F |
871 FW_CMD_WRITE_F |
872 FW_CMD_EXEC_F);
Casey Leedom16f8bd42010-06-25 12:12:54 +0000873 cmd.alloc_to_len16 = cpu_to_be32(FW_LEN16(cmd) |
874 FW_VI_CMD_ALLOC);
875 cmd.portid_pkd = FW_VI_CMD_PORTID(port_id);
876 v = t4vf_wr_mbox(adapter, &cmd, sizeof(cmd), &rpl);
877 if (v)
878 return v;
879
880 return FW_VI_CMD_VIID_GET(be16_to_cpu(rpl.type_viid));
881}
882
883/**
884 * t4vf_free_vi -- free a virtual interface
885 * @adapter: the adapter
886 * @viid: the virtual interface identifier
887 *
888 * Free a previously allocated Virtual Interface. Return an error on
889 * failure.
890 */
891int t4vf_free_vi(struct adapter *adapter, int viid)
892{
893 struct fw_vi_cmd cmd;
894
895 /*
896 * Execute a VI command to free the Virtual Interface.
897 */
898 memset(&cmd, 0, sizeof(cmd));
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +0530899 cmd.op_to_vfn = cpu_to_be32(FW_CMD_OP_V(FW_VI_CMD) |
900 FW_CMD_REQUEST_F |
901 FW_CMD_EXEC_F);
Casey Leedom16f8bd42010-06-25 12:12:54 +0000902 cmd.alloc_to_len16 = cpu_to_be32(FW_LEN16(cmd) |
903 FW_VI_CMD_FREE);
904 cmd.type_viid = cpu_to_be16(FW_VI_CMD_VIID(viid));
905 return t4vf_wr_mbox(adapter, &cmd, sizeof(cmd), NULL);
906}
907
908/**
909 * t4vf_enable_vi - enable/disable a virtual interface
910 * @adapter: the adapter
911 * @viid: the Virtual Interface ID
912 * @rx_en: 1=enable Rx, 0=disable Rx
913 * @tx_en: 1=enable Tx, 0=disable Tx
914 *
915 * Enables/disables a virtual interface.
916 */
917int t4vf_enable_vi(struct adapter *adapter, unsigned int viid,
918 bool rx_en, bool tx_en)
919{
920 struct fw_vi_enable_cmd cmd;
921
922 memset(&cmd, 0, sizeof(cmd));
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +0530923 cmd.op_to_viid = cpu_to_be32(FW_CMD_OP_V(FW_VI_ENABLE_CMD) |
924 FW_CMD_REQUEST_F |
925 FW_CMD_EXEC_F |
Casey Leedom16f8bd42010-06-25 12:12:54 +0000926 FW_VI_ENABLE_CMD_VIID(viid));
927 cmd.ien_to_len16 = cpu_to_be32(FW_VI_ENABLE_CMD_IEN(rx_en) |
928 FW_VI_ENABLE_CMD_EEN(tx_en) |
929 FW_LEN16(cmd));
930 return t4vf_wr_mbox(adapter, &cmd, sizeof(cmd), NULL);
931}
932
933/**
934 * t4vf_identify_port - identify a VI's port by blinking its LED
935 * @adapter: the adapter
936 * @viid: the Virtual Interface ID
937 * @nblinks: how many times to blink LED at 2.5 Hz
938 *
939 * Identifies a VI's port by blinking its LED.
940 */
941int t4vf_identify_port(struct adapter *adapter, unsigned int viid,
942 unsigned int nblinks)
943{
944 struct fw_vi_enable_cmd cmd;
945
946 memset(&cmd, 0, sizeof(cmd));
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +0530947 cmd.op_to_viid = cpu_to_be32(FW_CMD_OP_V(FW_VI_ENABLE_CMD) |
948 FW_CMD_REQUEST_F |
949 FW_CMD_EXEC_F |
Casey Leedom16f8bd42010-06-25 12:12:54 +0000950 FW_VI_ENABLE_CMD_VIID(viid));
951 cmd.ien_to_len16 = cpu_to_be32(FW_VI_ENABLE_CMD_LED |
952 FW_LEN16(cmd));
953 cmd.blinkdur = cpu_to_be16(nblinks);
954 return t4vf_wr_mbox(adapter, &cmd, sizeof(cmd), NULL);
955}
956
957/**
958 * t4vf_set_rxmode - set Rx properties of a virtual interface
959 * @adapter: the adapter
960 * @viid: the VI id
961 * @mtu: the new MTU or -1 for no change
962 * @promisc: 1 to enable promiscuous mode, 0 to disable it, -1 no change
963 * @all_multi: 1 to enable all-multi mode, 0 to disable it, -1 no change
964 * @bcast: 1 to enable broadcast Rx, 0 to disable it, -1 no change
965 * @vlanex: 1 to enable hardware VLAN Tag extraction, 0 to disable it,
966 * -1 no change
967 *
968 * Sets Rx properties of a virtual interface.
969 */
970int t4vf_set_rxmode(struct adapter *adapter, unsigned int viid,
971 int mtu, int promisc, int all_multi, int bcast, int vlanex,
972 bool sleep_ok)
973{
974 struct fw_vi_rxmode_cmd cmd;
975
976 /* convert to FW values */
977 if (mtu < 0)
978 mtu = FW_VI_RXMODE_CMD_MTU_MASK;
979 if (promisc < 0)
980 promisc = FW_VI_RXMODE_CMD_PROMISCEN_MASK;
981 if (all_multi < 0)
982 all_multi = FW_VI_RXMODE_CMD_ALLMULTIEN_MASK;
983 if (bcast < 0)
984 bcast = FW_VI_RXMODE_CMD_BROADCASTEN_MASK;
985 if (vlanex < 0)
986 vlanex = FW_VI_RXMODE_CMD_VLANEXEN_MASK;
987
988 memset(&cmd, 0, sizeof(cmd));
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +0530989 cmd.op_to_viid = cpu_to_be32(FW_CMD_OP_V(FW_VI_RXMODE_CMD) |
990 FW_CMD_REQUEST_F |
991 FW_CMD_WRITE_F |
Casey Leedom16f8bd42010-06-25 12:12:54 +0000992 FW_VI_RXMODE_CMD_VIID(viid));
993 cmd.retval_len16 = cpu_to_be32(FW_LEN16(cmd));
994 cmd.mtu_to_vlanexen =
995 cpu_to_be32(FW_VI_RXMODE_CMD_MTU(mtu) |
996 FW_VI_RXMODE_CMD_PROMISCEN(promisc) |
997 FW_VI_RXMODE_CMD_ALLMULTIEN(all_multi) |
998 FW_VI_RXMODE_CMD_BROADCASTEN(bcast) |
999 FW_VI_RXMODE_CMD_VLANEXEN(vlanex));
1000 return t4vf_wr_mbox_core(adapter, &cmd, sizeof(cmd), NULL, sleep_ok);
1001}
1002
1003/**
1004 * t4vf_alloc_mac_filt - allocates exact-match filters for MAC addresses
1005 * @adapter: the adapter
1006 * @viid: the Virtual Interface Identifier
1007 * @free: if true any existing filters for this VI id are first removed
1008 * @naddr: the number of MAC addresses to allocate filters for (up to 7)
1009 * @addr: the MAC address(es)
1010 * @idx: where to store the index of each allocated filter
1011 * @hash: pointer to hash address filter bitmap
1012 * @sleep_ok: call is allowed to sleep
1013 *
1014 * Allocates an exact-match filter for each of the supplied addresses and
1015 * sets it to the corresponding address. If @idx is not %NULL it should
1016 * have at least @naddr entries, each of which will be set to the index of
1017 * the filter allocated for the corresponding MAC address. If a filter
1018 * could not be allocated for an address its index is set to 0xffff.
1019 * If @hash is not %NULL addresses that fail to allocate an exact filter
1020 * are hashed and update the hash filter bitmap pointed at by @hash.
1021 *
1022 * Returns a negative error number or the number of filters allocated.
1023 */
1024int t4vf_alloc_mac_filt(struct adapter *adapter, unsigned int viid, bool free,
1025 unsigned int naddr, const u8 **addr, u16 *idx,
1026 u64 *hash, bool sleep_ok)
1027{
Casey Leedom42eb59d2010-11-24 12:23:57 +00001028 int offset, ret = 0;
1029 unsigned nfilters = 0;
1030 unsigned int rem = naddr;
Casey Leedom16f8bd42010-06-25 12:12:54 +00001031 struct fw_vi_mac_cmd cmd, rpl;
Hariprasad Shenai70ee3662013-12-03 17:05:57 +05301032 unsigned int max_naddr = is_t4(adapter->params.chip) ?
Santosh Rastapur622c62b2013-03-14 05:08:57 +00001033 NUM_MPS_CLS_SRAM_L_INSTANCES :
1034 NUM_MPS_T5_CLS_SRAM_L_INSTANCES;
Casey Leedom16f8bd42010-06-25 12:12:54 +00001035
Santosh Rastapur622c62b2013-03-14 05:08:57 +00001036 if (naddr > max_naddr)
Casey Leedom16f8bd42010-06-25 12:12:54 +00001037 return -EINVAL;
Casey Leedom16f8bd42010-06-25 12:12:54 +00001038
Casey Leedom42eb59d2010-11-24 12:23:57 +00001039 for (offset = 0; offset < naddr; /**/) {
1040 unsigned int fw_naddr = (rem < ARRAY_SIZE(cmd.u.exact)
1041 ? rem
1042 : ARRAY_SIZE(cmd.u.exact));
1043 size_t len16 = DIV_ROUND_UP(offsetof(struct fw_vi_mac_cmd,
1044 u.exact[fw_naddr]), 16);
1045 struct fw_vi_mac_exact *p;
1046 int i;
Casey Leedom16f8bd42010-06-25 12:12:54 +00001047
Casey Leedom42eb59d2010-11-24 12:23:57 +00001048 memset(&cmd, 0, sizeof(cmd));
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +05301049 cmd.op_to_viid = cpu_to_be32(FW_CMD_OP_V(FW_VI_MAC_CMD) |
1050 FW_CMD_REQUEST_F |
1051 FW_CMD_WRITE_F |
1052 (free ? FW_CMD_EXEC_F : 0) |
Casey Leedom42eb59d2010-11-24 12:23:57 +00001053 FW_VI_MAC_CMD_VIID(viid));
1054 cmd.freemacs_to_len16 =
1055 cpu_to_be32(FW_VI_MAC_CMD_FREEMACS(free) |
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +05301056 FW_CMD_LEN16_V(len16));
Casey Leedom42eb59d2010-11-24 12:23:57 +00001057
1058 for (i = 0, p = cmd.u.exact; i < fw_naddr; i++, p++) {
1059 p->valid_to_idx = cpu_to_be16(
1060 FW_VI_MAC_CMD_VALID |
1061 FW_VI_MAC_CMD_IDX(FW_VI_MAC_ADD_MAC));
1062 memcpy(p->macaddr, addr[offset+i], sizeof(p->macaddr));
1063 }
1064
1065
1066 ret = t4vf_wr_mbox_core(adapter, &cmd, sizeof(cmd), &rpl,
1067 sleep_ok);
1068 if (ret && ret != -ENOMEM)
1069 break;
1070
1071 for (i = 0, p = rpl.u.exact; i < fw_naddr; i++, p++) {
1072 u16 index = FW_VI_MAC_CMD_IDX_GET(
1073 be16_to_cpu(p->valid_to_idx));
1074
1075 if (idx)
1076 idx[offset+i] =
Santosh Rastapur622c62b2013-03-14 05:08:57 +00001077 (index >= max_naddr
Casey Leedom42eb59d2010-11-24 12:23:57 +00001078 ? 0xffff
1079 : index);
Santosh Rastapur622c62b2013-03-14 05:08:57 +00001080 if (index < max_naddr)
Casey Leedom42eb59d2010-11-24 12:23:57 +00001081 nfilters++;
1082 else if (hash)
1083 *hash |= (1ULL << hash_mac_addr(addr[offset+i]));
1084 }
1085
1086 free = false;
1087 offset += fw_naddr;
1088 rem -= fw_naddr;
Casey Leedom16f8bd42010-06-25 12:12:54 +00001089 }
1090
Casey Leedom42eb59d2010-11-24 12:23:57 +00001091 /*
1092 * If there were no errors or we merely ran out of room in our MAC
1093 * address arena, return the number of filters actually written.
1094 */
1095 if (ret == 0 || ret == -ENOMEM)
1096 ret = nfilters;
Casey Leedom16f8bd42010-06-25 12:12:54 +00001097 return ret;
1098}
1099
1100/**
1101 * t4vf_change_mac - modifies the exact-match filter for a MAC address
1102 * @adapter: the adapter
1103 * @viid: the Virtual Interface ID
1104 * @idx: index of existing filter for old value of MAC address, or -1
1105 * @addr: the new MAC address value
1106 * @persist: if idx < 0, the new MAC allocation should be persistent
1107 *
1108 * Modifies an exact-match filter and sets it to the new MAC address.
1109 * Note that in general it is not possible to modify the value of a given
1110 * filter so the generic way to modify an address filter is to free the
1111 * one being used by the old address value and allocate a new filter for
1112 * the new address value. @idx can be -1 if the address is a new
1113 * addition.
1114 *
1115 * Returns a negative error number or the index of the filter with the new
1116 * MAC value.
1117 */
1118int t4vf_change_mac(struct adapter *adapter, unsigned int viid,
1119 int idx, const u8 *addr, bool persist)
1120{
1121 int ret;
1122 struct fw_vi_mac_cmd cmd, rpl;
1123 struct fw_vi_mac_exact *p = &cmd.u.exact[0];
1124 size_t len16 = DIV_ROUND_UP(offsetof(struct fw_vi_mac_cmd,
1125 u.exact[1]), 16);
Hariprasad Shenai70ee3662013-12-03 17:05:57 +05301126 unsigned int max_naddr = is_t4(adapter->params.chip) ?
Santosh Rastapur622c62b2013-03-14 05:08:57 +00001127 NUM_MPS_CLS_SRAM_L_INSTANCES :
1128 NUM_MPS_T5_CLS_SRAM_L_INSTANCES;
Casey Leedom16f8bd42010-06-25 12:12:54 +00001129
1130 /*
1131 * If this is a new allocation, determine whether it should be
1132 * persistent (across a "freemacs" operation) or not.
1133 */
1134 if (idx < 0)
1135 idx = persist ? FW_VI_MAC_ADD_PERSIST_MAC : FW_VI_MAC_ADD_MAC;
1136
1137 memset(&cmd, 0, sizeof(cmd));
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +05301138 cmd.op_to_viid = cpu_to_be32(FW_CMD_OP_V(FW_VI_MAC_CMD) |
1139 FW_CMD_REQUEST_F |
1140 FW_CMD_WRITE_F |
Casey Leedom16f8bd42010-06-25 12:12:54 +00001141 FW_VI_MAC_CMD_VIID(viid));
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +05301142 cmd.freemacs_to_len16 = cpu_to_be32(FW_CMD_LEN16_V(len16));
Casey Leedom16f8bd42010-06-25 12:12:54 +00001143 p->valid_to_idx = cpu_to_be16(FW_VI_MAC_CMD_VALID |
1144 FW_VI_MAC_CMD_IDX(idx));
1145 memcpy(p->macaddr, addr, sizeof(p->macaddr));
1146
1147 ret = t4vf_wr_mbox(adapter, &cmd, sizeof(cmd), &rpl);
1148 if (ret == 0) {
1149 p = &rpl.u.exact[0];
1150 ret = FW_VI_MAC_CMD_IDX_GET(be16_to_cpu(p->valid_to_idx));
Santosh Rastapur622c62b2013-03-14 05:08:57 +00001151 if (ret >= max_naddr)
Casey Leedom16f8bd42010-06-25 12:12:54 +00001152 ret = -ENOMEM;
1153 }
1154 return ret;
1155}
1156
1157/**
1158 * t4vf_set_addr_hash - program the MAC inexact-match hash filter
1159 * @adapter: the adapter
1160 * @viid: the Virtual Interface Identifier
1161 * @ucast: whether the hash filter should also match unicast addresses
1162 * @vec: the value to be written to the hash filter
1163 * @sleep_ok: call is allowed to sleep
1164 *
1165 * Sets the 64-bit inexact-match hash filter for a virtual interface.
1166 */
1167int t4vf_set_addr_hash(struct adapter *adapter, unsigned int viid,
1168 bool ucast, u64 vec, bool sleep_ok)
1169{
1170 struct fw_vi_mac_cmd cmd;
1171 size_t len16 = DIV_ROUND_UP(offsetof(struct fw_vi_mac_cmd,
1172 u.exact[0]), 16);
1173
1174 memset(&cmd, 0, sizeof(cmd));
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +05301175 cmd.op_to_viid = cpu_to_be32(FW_CMD_OP_V(FW_VI_MAC_CMD) |
1176 FW_CMD_REQUEST_F |
1177 FW_CMD_WRITE_F |
Casey Leedom16f8bd42010-06-25 12:12:54 +00001178 FW_VI_ENABLE_CMD_VIID(viid));
1179 cmd.freemacs_to_len16 = cpu_to_be32(FW_VI_MAC_CMD_HASHVECEN |
1180 FW_VI_MAC_CMD_HASHUNIEN(ucast) |
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +05301181 FW_CMD_LEN16_V(len16));
Casey Leedom16f8bd42010-06-25 12:12:54 +00001182 cmd.u.hash.hashvec = cpu_to_be64(vec);
1183 return t4vf_wr_mbox_core(adapter, &cmd, sizeof(cmd), NULL, sleep_ok);
1184}
1185
1186/**
1187 * t4vf_get_port_stats - collect "port" statistics
1188 * @adapter: the adapter
1189 * @pidx: the port index
1190 * @s: the stats structure to fill
1191 *
1192 * Collect statistics for the "port"'s Virtual Interface.
1193 */
1194int t4vf_get_port_stats(struct adapter *adapter, int pidx,
1195 struct t4vf_port_stats *s)
1196{
1197 struct port_info *pi = adap2pinfo(adapter, pidx);
1198 struct fw_vi_stats_vf fwstats;
1199 unsigned int rem = VI_VF_NUM_STATS;
1200 __be64 *fwsp = (__be64 *)&fwstats;
1201
1202 /*
1203 * Grab the Virtual Interface statistics a chunk at a time via mailbox
1204 * commands. We could use a Work Request and get all of them at once
1205 * but that's an asynchronous interface which is awkward to use.
1206 */
1207 while (rem) {
1208 unsigned int ix = VI_VF_NUM_STATS - rem;
1209 unsigned int nstats = min(6U, rem);
1210 struct fw_vi_stats_cmd cmd, rpl;
1211 size_t len = (offsetof(struct fw_vi_stats_cmd, u) +
1212 sizeof(struct fw_vi_stats_ctl));
1213 size_t len16 = DIV_ROUND_UP(len, 16);
1214 int ret;
1215
1216 memset(&cmd, 0, sizeof(cmd));
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +05301217 cmd.op_to_viid = cpu_to_be32(FW_CMD_OP_V(FW_VI_STATS_CMD) |
Casey Leedom16f8bd42010-06-25 12:12:54 +00001218 FW_VI_STATS_CMD_VIID(pi->viid) |
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +05301219 FW_CMD_REQUEST_F |
1220 FW_CMD_READ_F);
1221 cmd.retval_len16 = cpu_to_be32(FW_CMD_LEN16_V(len16));
Casey Leedom16f8bd42010-06-25 12:12:54 +00001222 cmd.u.ctl.nstats_ix =
1223 cpu_to_be16(FW_VI_STATS_CMD_IX(ix) |
1224 FW_VI_STATS_CMD_NSTATS(nstats));
1225 ret = t4vf_wr_mbox_ns(adapter, &cmd, len, &rpl);
1226 if (ret)
1227 return ret;
1228
1229 memcpy(fwsp, &rpl.u.ctl.stat0, sizeof(__be64) * nstats);
1230
1231 rem -= nstats;
1232 fwsp += nstats;
1233 }
1234
1235 /*
1236 * Translate firmware statistics into host native statistics.
1237 */
1238 s->tx_bcast_bytes = be64_to_cpu(fwstats.tx_bcast_bytes);
1239 s->tx_bcast_frames = be64_to_cpu(fwstats.tx_bcast_frames);
1240 s->tx_mcast_bytes = be64_to_cpu(fwstats.tx_mcast_bytes);
1241 s->tx_mcast_frames = be64_to_cpu(fwstats.tx_mcast_frames);
1242 s->tx_ucast_bytes = be64_to_cpu(fwstats.tx_ucast_bytes);
1243 s->tx_ucast_frames = be64_to_cpu(fwstats.tx_ucast_frames);
1244 s->tx_drop_frames = be64_to_cpu(fwstats.tx_drop_frames);
1245 s->tx_offload_bytes = be64_to_cpu(fwstats.tx_offload_bytes);
1246 s->tx_offload_frames = be64_to_cpu(fwstats.tx_offload_frames);
1247
1248 s->rx_bcast_bytes = be64_to_cpu(fwstats.rx_bcast_bytes);
1249 s->rx_bcast_frames = be64_to_cpu(fwstats.rx_bcast_frames);
1250 s->rx_mcast_bytes = be64_to_cpu(fwstats.rx_mcast_bytes);
1251 s->rx_mcast_frames = be64_to_cpu(fwstats.rx_mcast_frames);
1252 s->rx_ucast_bytes = be64_to_cpu(fwstats.rx_ucast_bytes);
1253 s->rx_ucast_frames = be64_to_cpu(fwstats.rx_ucast_frames);
1254
1255 s->rx_err_frames = be64_to_cpu(fwstats.rx_err_frames);
1256
1257 return 0;
1258}
1259
1260/**
1261 * t4vf_iq_free - free an ingress queue and its free lists
1262 * @adapter: the adapter
1263 * @iqtype: the ingress queue type (FW_IQ_TYPE_FL_INT_CAP, etc.)
1264 * @iqid: ingress queue ID
1265 * @fl0id: FL0 queue ID or 0xffff if no attached FL0
1266 * @fl1id: FL1 queue ID or 0xffff if no attached FL1
1267 *
1268 * Frees an ingress queue and its associated free lists, if any.
1269 */
1270int t4vf_iq_free(struct adapter *adapter, unsigned int iqtype,
1271 unsigned int iqid, unsigned int fl0id, unsigned int fl1id)
1272{
1273 struct fw_iq_cmd cmd;
1274
1275 memset(&cmd, 0, sizeof(cmd));
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +05301276 cmd.op_to_vfn = cpu_to_be32(FW_CMD_OP_V(FW_IQ_CMD) |
1277 FW_CMD_REQUEST_F |
1278 FW_CMD_EXEC_F);
Casey Leedom16f8bd42010-06-25 12:12:54 +00001279 cmd.alloc_to_len16 = cpu_to_be32(FW_IQ_CMD_FREE |
1280 FW_LEN16(cmd));
1281 cmd.type_to_iqandstindex =
1282 cpu_to_be32(FW_IQ_CMD_TYPE(iqtype));
1283
1284 cmd.iqid = cpu_to_be16(iqid);
1285 cmd.fl0id = cpu_to_be16(fl0id);
1286 cmd.fl1id = cpu_to_be16(fl1id);
1287 return t4vf_wr_mbox(adapter, &cmd, sizeof(cmd), NULL);
1288}
1289
1290/**
1291 * t4vf_eth_eq_free - free an Ethernet egress queue
1292 * @adapter: the adapter
1293 * @eqid: egress queue ID
1294 *
1295 * Frees an Ethernet egress queue.
1296 */
1297int t4vf_eth_eq_free(struct adapter *adapter, unsigned int eqid)
1298{
1299 struct fw_eq_eth_cmd cmd;
1300
1301 memset(&cmd, 0, sizeof(cmd));
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +05301302 cmd.op_to_vfn = cpu_to_be32(FW_CMD_OP_V(FW_EQ_ETH_CMD) |
1303 FW_CMD_REQUEST_F |
1304 FW_CMD_EXEC_F);
Casey Leedom16f8bd42010-06-25 12:12:54 +00001305 cmd.alloc_to_len16 = cpu_to_be32(FW_EQ_ETH_CMD_FREE |
1306 FW_LEN16(cmd));
1307 cmd.eqid_pkd = cpu_to_be32(FW_EQ_ETH_CMD_EQID(eqid));
1308 return t4vf_wr_mbox(adapter, &cmd, sizeof(cmd), NULL);
1309}
1310
1311/**
1312 * t4vf_handle_fw_rpl - process a firmware reply message
1313 * @adapter: the adapter
1314 * @rpl: start of the firmware message
1315 *
1316 * Processes a firmware message, such as link state change messages.
1317 */
1318int t4vf_handle_fw_rpl(struct adapter *adapter, const __be64 *rpl)
1319{
Casey Leedomcaedda32010-11-11 09:30:40 +00001320 const struct fw_cmd_hdr *cmd_hdr = (const struct fw_cmd_hdr *)rpl;
Hariprasad Shenaie2ac9622014-11-07 09:35:25 +05301321 u8 opcode = FW_CMD_OP_G(be32_to_cpu(cmd_hdr->hi));
Casey Leedom16f8bd42010-06-25 12:12:54 +00001322
1323 switch (opcode) {
1324 case FW_PORT_CMD: {
1325 /*
1326 * Link/module state change message.
1327 */
Casey Leedomcaedda32010-11-11 09:30:40 +00001328 const struct fw_port_cmd *port_cmd =
1329 (const struct fw_port_cmd *)rpl;
Casey Leedom16f8bd42010-06-25 12:12:54 +00001330 u32 word;
1331 int action, port_id, link_ok, speed, fc, pidx;
1332
1333 /*
1334 * Extract various fields from port status change message.
1335 */
1336 action = FW_PORT_CMD_ACTION_GET(
1337 be32_to_cpu(port_cmd->action_to_len16));
1338 if (action != FW_PORT_ACTION_GET_PORT_INFO) {
1339 dev_err(adapter->pdev_dev,
1340 "Unknown firmware PORT reply action %x\n",
1341 action);
1342 break;
1343 }
1344
1345 port_id = FW_PORT_CMD_PORTID_GET(
1346 be32_to_cpu(port_cmd->op_to_portid));
1347
1348 word = be32_to_cpu(port_cmd->u.info.lstatus_to_modtype);
1349 link_ok = (word & FW_PORT_CMD_LSTATUS) != 0;
1350 speed = 0;
1351 fc = 0;
1352 if (word & FW_PORT_CMD_RXPAUSE)
1353 fc |= PAUSE_RX;
1354 if (word & FW_PORT_CMD_TXPAUSE)
1355 fc |= PAUSE_TX;
1356 if (word & FW_PORT_CMD_LSPEED(FW_PORT_CAP_SPEED_100M))
Hariprasad Shenai897d55d2014-10-09 05:48:46 +05301357 speed = 100;
Casey Leedom16f8bd42010-06-25 12:12:54 +00001358 else if (word & FW_PORT_CMD_LSPEED(FW_PORT_CAP_SPEED_1G))
Hariprasad Shenai897d55d2014-10-09 05:48:46 +05301359 speed = 1000;
Casey Leedom16f8bd42010-06-25 12:12:54 +00001360 else if (word & FW_PORT_CMD_LSPEED(FW_PORT_CAP_SPEED_10G))
Hariprasad Shenai897d55d2014-10-09 05:48:46 +05301361 speed = 10000;
1362 else if (word & FW_PORT_CMD_LSPEED(FW_PORT_CAP_SPEED_40G))
1363 speed = 40000;
Casey Leedom16f8bd42010-06-25 12:12:54 +00001364
1365 /*
1366 * Scan all of our "ports" (Virtual Interfaces) looking for
1367 * those bound to the physical port which has changed. If
1368 * our recorded state doesn't match the current state,
1369 * signal that change to the OS code.
1370 */
1371 for_each_port(adapter, pidx) {
1372 struct port_info *pi = adap2pinfo(adapter, pidx);
1373 struct link_config *lc;
1374
1375 if (pi->port_id != port_id)
1376 continue;
1377
1378 lc = &pi->link_cfg;
1379 if (link_ok != lc->link_ok || speed != lc->speed ||
1380 fc != lc->fc) {
1381 /* something changed */
1382 lc->link_ok = link_ok;
1383 lc->speed = speed;
1384 lc->fc = fc;
1385 t4vf_os_link_changed(adapter, pidx, link_ok);
1386 }
1387 }
1388 break;
1389 }
1390
1391 default:
1392 dev_err(adapter->pdev_dev, "Unknown firmware reply %X\n",
1393 opcode);
1394 }
1395 return 0;
1396}