ixgbe_api.c revision 1.1 1 1.1 dyoung /******************************************************************************
2 1.1 dyoung
3 1.1 dyoung Copyright (c) 2001-2010, Intel Corporation
4 1.1 dyoung All rights reserved.
5 1.1 dyoung
6 1.1 dyoung Redistribution and use in source and binary forms, with or without
7 1.1 dyoung modification, are permitted provided that the following conditions are met:
8 1.1 dyoung
9 1.1 dyoung 1. Redistributions of source code must retain the above copyright notice,
10 1.1 dyoung this list of conditions and the following disclaimer.
11 1.1 dyoung
12 1.1 dyoung 2. Redistributions in binary form must reproduce the above copyright
13 1.1 dyoung notice, this list of conditions and the following disclaimer in the
14 1.1 dyoung documentation and/or other materials provided with the distribution.
15 1.1 dyoung
16 1.1 dyoung 3. Neither the name of the Intel Corporation nor the names of its
17 1.1 dyoung contributors may be used to endorse or promote products derived from
18 1.1 dyoung this software without specific prior written permission.
19 1.1 dyoung
20 1.1 dyoung THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
21 1.1 dyoung AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
22 1.1 dyoung IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
23 1.1 dyoung ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
24 1.1 dyoung LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
25 1.1 dyoung CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
26 1.1 dyoung SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
27 1.1 dyoung INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
28 1.1 dyoung CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
29 1.1 dyoung ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
30 1.1 dyoung POSSIBILITY OF SUCH DAMAGE.
31 1.1 dyoung
32 1.1 dyoung ******************************************************************************/
33 1.1 dyoung /*$FreeBSD: src/sys/dev/ixgbe/ixgbe_api.c,v 1.11 2010/11/26 22:46:32 jfv Exp $*/
34 1.1 dyoung /*$NetBSD: ixgbe_api.c,v 1.1 2011/08/12 21:55:29 dyoung Exp $*/
35 1.1 dyoung
36 1.1 dyoung #include "ixgbe_api.h"
37 1.1 dyoung #include "ixgbe_common.h"
38 1.1 dyoung
39 1.1 dyoung extern s32 ixgbe_init_ops_82598(struct ixgbe_hw *hw);
40 1.1 dyoung extern s32 ixgbe_init_ops_82599(struct ixgbe_hw *hw);
41 1.1 dyoung extern s32 ixgbe_init_ops_vf(struct ixgbe_hw *hw);
42 1.1 dyoung
43 1.1 dyoung /**
44 1.1 dyoung * ixgbe_init_shared_code - Initialize the shared code
45 1.1 dyoung * @hw: pointer to hardware structure
46 1.1 dyoung *
47 1.1 dyoung * This will assign function pointers and assign the MAC type and PHY code.
48 1.1 dyoung * Does not touch the hardware. This function must be called prior to any
49 1.1 dyoung * other function in the shared code. The ixgbe_hw structure should be
50 1.1 dyoung * memset to 0 prior to calling this function. The following fields in
51 1.1 dyoung * hw structure should be filled in prior to calling this function:
52 1.1 dyoung * back, device_id, vendor_id, subsystem_device_id,
53 1.1 dyoung * subsystem_vendor_id, and revision_id
54 1.1 dyoung **/
55 1.1 dyoung s32 ixgbe_init_shared_code(struct ixgbe_hw *hw)
56 1.1 dyoung {
57 1.1 dyoung s32 status;
58 1.1 dyoung
59 1.1 dyoung DEBUGFUNC("ixgbe_init_shared_code");
60 1.1 dyoung
61 1.1 dyoung /*
62 1.1 dyoung * Set the mac type
63 1.1 dyoung */
64 1.1 dyoung ixgbe_set_mac_type(hw);
65 1.1 dyoung
66 1.1 dyoung switch (hw->mac.type) {
67 1.1 dyoung case ixgbe_mac_82598EB:
68 1.1 dyoung status = ixgbe_init_ops_82598(hw);
69 1.1 dyoung break;
70 1.1 dyoung case ixgbe_mac_82599EB:
71 1.1 dyoung status = ixgbe_init_ops_82599(hw);
72 1.1 dyoung break;
73 1.1 dyoung case ixgbe_mac_82599_vf:
74 1.1 dyoung status = ixgbe_init_ops_vf(hw);
75 1.1 dyoung break;
76 1.1 dyoung default:
77 1.1 dyoung status = IXGBE_ERR_DEVICE_NOT_SUPPORTED;
78 1.1 dyoung break;
79 1.1 dyoung }
80 1.1 dyoung
81 1.1 dyoung return status;
82 1.1 dyoung }
83 1.1 dyoung
84 1.1 dyoung /**
85 1.1 dyoung * ixgbe_set_mac_type - Sets MAC type
86 1.1 dyoung * @hw: pointer to the HW structure
87 1.1 dyoung *
88 1.1 dyoung * This function sets the mac type of the adapter based on the
89 1.1 dyoung * vendor ID and device ID stored in the hw structure.
90 1.1 dyoung **/
91 1.1 dyoung s32 ixgbe_set_mac_type(struct ixgbe_hw *hw)
92 1.1 dyoung {
93 1.1 dyoung s32 ret_val = IXGBE_SUCCESS;
94 1.1 dyoung
95 1.1 dyoung DEBUGFUNC("ixgbe_set_mac_type\n");
96 1.1 dyoung
97 1.1 dyoung if (hw->vendor_id == IXGBE_INTEL_VENDOR_ID) {
98 1.1 dyoung switch (hw->device_id) {
99 1.1 dyoung case IXGBE_DEV_ID_82598:
100 1.1 dyoung case IXGBE_DEV_ID_82598_BX:
101 1.1 dyoung case IXGBE_DEV_ID_82598AF_SINGLE_PORT:
102 1.1 dyoung case IXGBE_DEV_ID_82598AF_DUAL_PORT:
103 1.1 dyoung case IXGBE_DEV_ID_82598AT:
104 1.1 dyoung case IXGBE_DEV_ID_82598AT2:
105 1.1 dyoung case IXGBE_DEV_ID_82598EB_CX4:
106 1.1 dyoung case IXGBE_DEV_ID_82598_CX4_DUAL_PORT:
107 1.1 dyoung case IXGBE_DEV_ID_82598_DA_DUAL_PORT:
108 1.1 dyoung case IXGBE_DEV_ID_82598_SR_DUAL_PORT_EM:
109 1.1 dyoung case IXGBE_DEV_ID_82598EB_XF_LR:
110 1.1 dyoung case IXGBE_DEV_ID_82598EB_SFP_LOM:
111 1.1 dyoung hw->mac.type = ixgbe_mac_82598EB;
112 1.1 dyoung break;
113 1.1 dyoung case IXGBE_DEV_ID_82599_KX4:
114 1.1 dyoung case IXGBE_DEV_ID_82599_KX4_MEZZ:
115 1.1 dyoung case IXGBE_DEV_ID_82599_XAUI_LOM:
116 1.1 dyoung case IXGBE_DEV_ID_82599_COMBO_BACKPLANE:
117 1.1 dyoung case IXGBE_DEV_ID_82599_SFP:
118 1.1 dyoung case IXGBE_DEV_ID_82599_BACKPLANE_FCOE:
119 1.1 dyoung case IXGBE_DEV_ID_82599_SFP_FCOE:
120 1.1 dyoung case IXGBE_DEV_ID_82599_CX4:
121 1.1 dyoung case IXGBE_DEV_ID_82599_T3_LOM:
122 1.1 dyoung hw->mac.type = ixgbe_mac_82599EB;
123 1.1 dyoung break;
124 1.1 dyoung case IXGBE_DEV_ID_82599_VF:
125 1.1 dyoung hw->mac.type = ixgbe_mac_82599_vf;
126 1.1 dyoung break;
127 1.1 dyoung default:
128 1.1 dyoung ret_val = IXGBE_ERR_DEVICE_NOT_SUPPORTED;
129 1.1 dyoung break;
130 1.1 dyoung }
131 1.1 dyoung } else {
132 1.1 dyoung ret_val = IXGBE_ERR_DEVICE_NOT_SUPPORTED;
133 1.1 dyoung }
134 1.1 dyoung
135 1.1 dyoung DEBUGOUT2("ixgbe_set_mac_type found mac: %d, returns: %d\n",
136 1.1 dyoung hw->mac.type, ret_val);
137 1.1 dyoung return ret_val;
138 1.1 dyoung }
139 1.1 dyoung
140 1.1 dyoung /**
141 1.1 dyoung * ixgbe_init_hw - Initialize the hardware
142 1.1 dyoung * @hw: pointer to hardware structure
143 1.1 dyoung *
144 1.1 dyoung * Initialize the hardware by resetting and then starting the hardware
145 1.1 dyoung **/
146 1.1 dyoung s32 ixgbe_init_hw(struct ixgbe_hw *hw)
147 1.1 dyoung {
148 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.init_hw, (hw),
149 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
150 1.1 dyoung }
151 1.1 dyoung
152 1.1 dyoung /**
153 1.1 dyoung * ixgbe_reset_hw - Performs a hardware reset
154 1.1 dyoung * @hw: pointer to hardware structure
155 1.1 dyoung *
156 1.1 dyoung * Resets the hardware by resetting the transmit and receive units, masks and
157 1.1 dyoung * clears all interrupts, performs a PHY reset, and performs a MAC reset
158 1.1 dyoung **/
159 1.1 dyoung s32 ixgbe_reset_hw(struct ixgbe_hw *hw)
160 1.1 dyoung {
161 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.reset_hw, (hw),
162 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
163 1.1 dyoung }
164 1.1 dyoung
165 1.1 dyoung /**
166 1.1 dyoung * ixgbe_start_hw - Prepares hardware for Rx/Tx
167 1.1 dyoung * @hw: pointer to hardware structure
168 1.1 dyoung *
169 1.1 dyoung * Starts the hardware by filling the bus info structure and media type,
170 1.1 dyoung * clears all on chip counters, initializes receive address registers,
171 1.1 dyoung * multicast table, VLAN filter table, calls routine to setup link and
172 1.1 dyoung * flow control settings, and leaves transmit and receive units disabled
173 1.1 dyoung * and uninitialized.
174 1.1 dyoung **/
175 1.1 dyoung s32 ixgbe_start_hw(struct ixgbe_hw *hw)
176 1.1 dyoung {
177 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.start_hw, (hw),
178 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
179 1.1 dyoung }
180 1.1 dyoung
181 1.1 dyoung /**
182 1.1 dyoung * ixgbe_enable_relaxed_ordering - Enables tx relaxed ordering,
183 1.1 dyoung * which is disabled by default in ixgbe_start_hw();
184 1.1 dyoung *
185 1.1 dyoung * @hw: pointer to hardware structure
186 1.1 dyoung *
187 1.1 dyoung * Enable relaxed ordering;
188 1.1 dyoung **/
189 1.1 dyoung void ixgbe_enable_relaxed_ordering(struct ixgbe_hw *hw)
190 1.1 dyoung {
191 1.1 dyoung if (hw->mac.ops.enable_relaxed_ordering)
192 1.1 dyoung hw->mac.ops.enable_relaxed_ordering(hw);
193 1.1 dyoung }
194 1.1 dyoung
195 1.1 dyoung /**
196 1.1 dyoung * ixgbe_clear_hw_cntrs - Clear hardware counters
197 1.1 dyoung * @hw: pointer to hardware structure
198 1.1 dyoung *
199 1.1 dyoung * Clears all hardware statistics counters by reading them from the hardware
200 1.1 dyoung * Statistics counters are clear on read.
201 1.1 dyoung **/
202 1.1 dyoung s32 ixgbe_clear_hw_cntrs(struct ixgbe_hw *hw)
203 1.1 dyoung {
204 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.clear_hw_cntrs, (hw),
205 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
206 1.1 dyoung }
207 1.1 dyoung
208 1.1 dyoung /**
209 1.1 dyoung * ixgbe_get_media_type - Get media type
210 1.1 dyoung * @hw: pointer to hardware structure
211 1.1 dyoung *
212 1.1 dyoung * Returns the media type (fiber, copper, backplane)
213 1.1 dyoung **/
214 1.1 dyoung enum ixgbe_media_type ixgbe_get_media_type(struct ixgbe_hw *hw)
215 1.1 dyoung {
216 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.get_media_type, (hw),
217 1.1 dyoung ixgbe_media_type_unknown);
218 1.1 dyoung }
219 1.1 dyoung
220 1.1 dyoung /**
221 1.1 dyoung * ixgbe_get_mac_addr - Get MAC address
222 1.1 dyoung * @hw: pointer to hardware structure
223 1.1 dyoung * @mac_addr: Adapter MAC address
224 1.1 dyoung *
225 1.1 dyoung * Reads the adapter's MAC address from the first Receive Address Register
226 1.1 dyoung * (RAR0) A reset of the adapter must have been performed prior to calling
227 1.1 dyoung * this function in order for the MAC address to have been loaded from the
228 1.1 dyoung * EEPROM into RAR0
229 1.1 dyoung **/
230 1.1 dyoung s32 ixgbe_get_mac_addr(struct ixgbe_hw *hw, u8 *mac_addr)
231 1.1 dyoung {
232 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.get_mac_addr,
233 1.1 dyoung (hw, mac_addr), IXGBE_NOT_IMPLEMENTED);
234 1.1 dyoung }
235 1.1 dyoung
236 1.1 dyoung /**
237 1.1 dyoung * ixgbe_get_san_mac_addr - Get SAN MAC address
238 1.1 dyoung * @hw: pointer to hardware structure
239 1.1 dyoung * @san_mac_addr: SAN MAC address
240 1.1 dyoung *
241 1.1 dyoung * Reads the SAN MAC address from the EEPROM, if it's available. This is
242 1.1 dyoung * per-port, so set_lan_id() must be called before reading the addresses.
243 1.1 dyoung **/
244 1.1 dyoung s32 ixgbe_get_san_mac_addr(struct ixgbe_hw *hw, u8 *san_mac_addr)
245 1.1 dyoung {
246 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.get_san_mac_addr,
247 1.1 dyoung (hw, san_mac_addr), IXGBE_NOT_IMPLEMENTED);
248 1.1 dyoung }
249 1.1 dyoung
250 1.1 dyoung /**
251 1.1 dyoung * ixgbe_set_san_mac_addr - Write a SAN MAC address
252 1.1 dyoung * @hw: pointer to hardware structure
253 1.1 dyoung * @san_mac_addr: SAN MAC address
254 1.1 dyoung *
255 1.1 dyoung * Writes A SAN MAC address to the EEPROM.
256 1.1 dyoung **/
257 1.1 dyoung s32 ixgbe_set_san_mac_addr(struct ixgbe_hw *hw, u8 *san_mac_addr)
258 1.1 dyoung {
259 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.set_san_mac_addr,
260 1.1 dyoung (hw, san_mac_addr), IXGBE_NOT_IMPLEMENTED);
261 1.1 dyoung }
262 1.1 dyoung
263 1.1 dyoung /**
264 1.1 dyoung * ixgbe_get_device_caps - Get additional device capabilities
265 1.1 dyoung * @hw: pointer to hardware structure
266 1.1 dyoung * @device_caps: the EEPROM word for device capabilities
267 1.1 dyoung *
268 1.1 dyoung * Reads the extra device capabilities from the EEPROM
269 1.1 dyoung **/
270 1.1 dyoung s32 ixgbe_get_device_caps(struct ixgbe_hw *hw, u16 *device_caps)
271 1.1 dyoung {
272 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.get_device_caps,
273 1.1 dyoung (hw, device_caps), IXGBE_NOT_IMPLEMENTED);
274 1.1 dyoung }
275 1.1 dyoung
276 1.1 dyoung /**
277 1.1 dyoung * ixgbe_get_wwn_prefix - Get alternative WWNN/WWPN prefix from the EEPROM
278 1.1 dyoung * @hw: pointer to hardware structure
279 1.1 dyoung * @wwnn_prefix: the alternative WWNN prefix
280 1.1 dyoung * @wwpn_prefix: the alternative WWPN prefix
281 1.1 dyoung *
282 1.1 dyoung * This function will read the EEPROM from the alternative SAN MAC address
283 1.1 dyoung * block to check the support for the alternative WWNN/WWPN prefix support.
284 1.1 dyoung **/
285 1.1 dyoung s32 ixgbe_get_wwn_prefix(struct ixgbe_hw *hw, u16 *wwnn_prefix,
286 1.1 dyoung u16 *wwpn_prefix)
287 1.1 dyoung {
288 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.get_wwn_prefix,
289 1.1 dyoung (hw, wwnn_prefix, wwpn_prefix),
290 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
291 1.1 dyoung }
292 1.1 dyoung
293 1.1 dyoung /**
294 1.1 dyoung * ixgbe_get_fcoe_boot_status - Get FCOE boot status from EEPROM
295 1.1 dyoung * @hw: pointer to hardware structure
296 1.1 dyoung * @bs: the fcoe boot status
297 1.1 dyoung *
298 1.1 dyoung * This function will read the FCOE boot status from the iSCSI FCOE block
299 1.1 dyoung **/
300 1.1 dyoung s32 ixgbe_get_fcoe_boot_status(struct ixgbe_hw *hw, u16 *bs)
301 1.1 dyoung {
302 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.get_fcoe_boot_status,
303 1.1 dyoung (hw, bs),
304 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
305 1.1 dyoung }
306 1.1 dyoung
307 1.1 dyoung /**
308 1.1 dyoung * ixgbe_get_bus_info - Set PCI bus info
309 1.1 dyoung * @hw: pointer to hardware structure
310 1.1 dyoung *
311 1.1 dyoung * Sets the PCI bus info (speed, width, type) within the ixgbe_hw structure
312 1.1 dyoung **/
313 1.1 dyoung s32 ixgbe_get_bus_info(struct ixgbe_hw *hw)
314 1.1 dyoung {
315 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.get_bus_info, (hw),
316 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
317 1.1 dyoung }
318 1.1 dyoung
319 1.1 dyoung /**
320 1.1 dyoung * ixgbe_get_num_of_tx_queues - Get Tx queues
321 1.1 dyoung * @hw: pointer to hardware structure
322 1.1 dyoung *
323 1.1 dyoung * Returns the number of transmit queues for the given adapter.
324 1.1 dyoung **/
325 1.1 dyoung u32 ixgbe_get_num_of_tx_queues(struct ixgbe_hw *hw)
326 1.1 dyoung {
327 1.1 dyoung return hw->mac.max_tx_queues;
328 1.1 dyoung }
329 1.1 dyoung
330 1.1 dyoung /**
331 1.1 dyoung * ixgbe_get_num_of_rx_queues - Get Rx queues
332 1.1 dyoung * @hw: pointer to hardware structure
333 1.1 dyoung *
334 1.1 dyoung * Returns the number of receive queues for the given adapter.
335 1.1 dyoung **/
336 1.1 dyoung u32 ixgbe_get_num_of_rx_queues(struct ixgbe_hw *hw)
337 1.1 dyoung {
338 1.1 dyoung return hw->mac.max_rx_queues;
339 1.1 dyoung }
340 1.1 dyoung
341 1.1 dyoung /**
342 1.1 dyoung * ixgbe_stop_adapter - Disable Rx/Tx units
343 1.1 dyoung * @hw: pointer to hardware structure
344 1.1 dyoung *
345 1.1 dyoung * Sets the adapter_stopped flag within ixgbe_hw struct. Clears interrupts,
346 1.1 dyoung * disables transmit and receive units. The adapter_stopped flag is used by
347 1.1 dyoung * the shared code and drivers to determine if the adapter is in a stopped
348 1.1 dyoung * state and should not touch the hardware.
349 1.1 dyoung **/
350 1.1 dyoung s32 ixgbe_stop_adapter(struct ixgbe_hw *hw)
351 1.1 dyoung {
352 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.stop_adapter, (hw),
353 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
354 1.1 dyoung }
355 1.1 dyoung
356 1.1 dyoung /**
357 1.1 dyoung * ixgbe_read_pba_string - Reads part number string from EEPROM
358 1.1 dyoung * @hw: pointer to hardware structure
359 1.1 dyoung * @pba_num: stores the part number string from the EEPROM
360 1.1 dyoung * @pba_num_size: part number string buffer length
361 1.1 dyoung *
362 1.1 dyoung * Reads the part number string from the EEPROM.
363 1.1 dyoung **/
364 1.1 dyoung s32 ixgbe_read_pba_string(struct ixgbe_hw *hw, u8 *pba_num, u32 pba_num_size)
365 1.1 dyoung {
366 1.1 dyoung return ixgbe_read_pba_string_generic(hw, pba_num, pba_num_size);
367 1.1 dyoung }
368 1.1 dyoung
369 1.1 dyoung /**
370 1.1 dyoung * ixgbe_read_pba_length - Reads part number string length from EEPROM
371 1.1 dyoung * @hw: pointer to hardware structure
372 1.1 dyoung * @pba_num_size: part number string buffer length
373 1.1 dyoung *
374 1.1 dyoung * Reads the part number length from the EEPROM.
375 1.1 dyoung * Returns expected buffer size in pba_num_size.
376 1.1 dyoung **/
377 1.1 dyoung s32 ixgbe_read_pba_length(struct ixgbe_hw *hw, u32 *pba_num_size)
378 1.1 dyoung {
379 1.1 dyoung return ixgbe_read_pba_length_generic(hw, pba_num_size);
380 1.1 dyoung }
381 1.1 dyoung
382 1.1 dyoung /**
383 1.1 dyoung * ixgbe_read_pba_num - Reads part number from EEPROM
384 1.1 dyoung * @hw: pointer to hardware structure
385 1.1 dyoung * @pba_num: stores the part number from the EEPROM
386 1.1 dyoung *
387 1.1 dyoung * Reads the part number from the EEPROM.
388 1.1 dyoung **/
389 1.1 dyoung s32 ixgbe_read_pba_num(struct ixgbe_hw *hw, u32 *pba_num)
390 1.1 dyoung {
391 1.1 dyoung return ixgbe_read_pba_num_generic(hw, pba_num);
392 1.1 dyoung }
393 1.1 dyoung
394 1.1 dyoung /**
395 1.1 dyoung * ixgbe_identify_phy - Get PHY type
396 1.1 dyoung * @hw: pointer to hardware structure
397 1.1 dyoung *
398 1.1 dyoung * Determines the physical layer module found on the current adapter.
399 1.1 dyoung **/
400 1.1 dyoung s32 ixgbe_identify_phy(struct ixgbe_hw *hw)
401 1.1 dyoung {
402 1.1 dyoung s32 status = IXGBE_SUCCESS;
403 1.1 dyoung
404 1.1 dyoung if (hw->phy.type == ixgbe_phy_unknown) {
405 1.1 dyoung status = ixgbe_call_func(hw, hw->phy.ops.identify, (hw),
406 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
407 1.1 dyoung }
408 1.1 dyoung
409 1.1 dyoung return status;
410 1.1 dyoung }
411 1.1 dyoung
412 1.1 dyoung /**
413 1.1 dyoung * ixgbe_reset_phy - Perform a PHY reset
414 1.1 dyoung * @hw: pointer to hardware structure
415 1.1 dyoung **/
416 1.1 dyoung s32 ixgbe_reset_phy(struct ixgbe_hw *hw)
417 1.1 dyoung {
418 1.1 dyoung s32 status = IXGBE_SUCCESS;
419 1.1 dyoung
420 1.1 dyoung if (hw->phy.type == ixgbe_phy_unknown) {
421 1.1 dyoung if (ixgbe_identify_phy(hw) != IXGBE_SUCCESS)
422 1.1 dyoung status = IXGBE_ERR_PHY;
423 1.1 dyoung }
424 1.1 dyoung
425 1.1 dyoung if (status == IXGBE_SUCCESS) {
426 1.1 dyoung status = ixgbe_call_func(hw, hw->phy.ops.reset, (hw),
427 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
428 1.1 dyoung }
429 1.1 dyoung return status;
430 1.1 dyoung }
431 1.1 dyoung
432 1.1 dyoung /**
433 1.1 dyoung * ixgbe_get_phy_firmware_version -
434 1.1 dyoung * @hw: pointer to hardware structure
435 1.1 dyoung * @firmware_version: pointer to firmware version
436 1.1 dyoung **/
437 1.1 dyoung s32 ixgbe_get_phy_firmware_version(struct ixgbe_hw *hw, u16 *firmware_version)
438 1.1 dyoung {
439 1.1 dyoung s32 status = IXGBE_SUCCESS;
440 1.1 dyoung
441 1.1 dyoung status = ixgbe_call_func(hw, hw->phy.ops.get_firmware_version,
442 1.1 dyoung (hw, firmware_version),
443 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
444 1.1 dyoung return status;
445 1.1 dyoung }
446 1.1 dyoung
447 1.1 dyoung /**
448 1.1 dyoung * ixgbe_read_phy_reg - Read PHY register
449 1.1 dyoung * @hw: pointer to hardware structure
450 1.1 dyoung * @reg_addr: 32 bit address of PHY register to read
451 1.1 dyoung * @phy_data: Pointer to read data from PHY register
452 1.1 dyoung *
453 1.1 dyoung * Reads a value from a specified PHY register
454 1.1 dyoung **/
455 1.1 dyoung s32 ixgbe_read_phy_reg(struct ixgbe_hw *hw, u32 reg_addr, u32 device_type,
456 1.1 dyoung u16 *phy_data)
457 1.1 dyoung {
458 1.1 dyoung if (hw->phy.id == 0)
459 1.1 dyoung ixgbe_identify_phy(hw);
460 1.1 dyoung
461 1.1 dyoung return ixgbe_call_func(hw, hw->phy.ops.read_reg, (hw, reg_addr,
462 1.1 dyoung device_type, phy_data), IXGBE_NOT_IMPLEMENTED);
463 1.1 dyoung }
464 1.1 dyoung
465 1.1 dyoung /**
466 1.1 dyoung * ixgbe_write_phy_reg - Write PHY register
467 1.1 dyoung * @hw: pointer to hardware structure
468 1.1 dyoung * @reg_addr: 32 bit PHY register to write
469 1.1 dyoung * @phy_data: Data to write to the PHY register
470 1.1 dyoung *
471 1.1 dyoung * Writes a value to specified PHY register
472 1.1 dyoung **/
473 1.1 dyoung s32 ixgbe_write_phy_reg(struct ixgbe_hw *hw, u32 reg_addr, u32 device_type,
474 1.1 dyoung u16 phy_data)
475 1.1 dyoung {
476 1.1 dyoung if (hw->phy.id == 0)
477 1.1 dyoung ixgbe_identify_phy(hw);
478 1.1 dyoung
479 1.1 dyoung return ixgbe_call_func(hw, hw->phy.ops.write_reg, (hw, reg_addr,
480 1.1 dyoung device_type, phy_data), IXGBE_NOT_IMPLEMENTED);
481 1.1 dyoung }
482 1.1 dyoung
483 1.1 dyoung /**
484 1.1 dyoung * ixgbe_setup_phy_link - Restart PHY autoneg
485 1.1 dyoung * @hw: pointer to hardware structure
486 1.1 dyoung *
487 1.1 dyoung * Restart autonegotiation and PHY and waits for completion.
488 1.1 dyoung **/
489 1.1 dyoung s32 ixgbe_setup_phy_link(struct ixgbe_hw *hw)
490 1.1 dyoung {
491 1.1 dyoung return ixgbe_call_func(hw, hw->phy.ops.setup_link, (hw),
492 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
493 1.1 dyoung }
494 1.1 dyoung
495 1.1 dyoung /**
496 1.1 dyoung * ixgbe_check_phy_link - Determine link and speed status
497 1.1 dyoung * @hw: pointer to hardware structure
498 1.1 dyoung *
499 1.1 dyoung * Reads a PHY register to determine if link is up and the current speed for
500 1.1 dyoung * the PHY.
501 1.1 dyoung **/
502 1.1 dyoung s32 ixgbe_check_phy_link(struct ixgbe_hw *hw, ixgbe_link_speed *speed,
503 1.1 dyoung bool *link_up)
504 1.1 dyoung {
505 1.1 dyoung return ixgbe_call_func(hw, hw->phy.ops.check_link, (hw, speed,
506 1.1 dyoung link_up), IXGBE_NOT_IMPLEMENTED);
507 1.1 dyoung }
508 1.1 dyoung
509 1.1 dyoung /**
510 1.1 dyoung * ixgbe_setup_phy_link_speed - Set auto advertise
511 1.1 dyoung * @hw: pointer to hardware structure
512 1.1 dyoung * @speed: new link speed
513 1.1 dyoung * @autoneg: TRUE if autonegotiation enabled
514 1.1 dyoung *
515 1.1 dyoung * Sets the auto advertised capabilities
516 1.1 dyoung **/
517 1.1 dyoung s32 ixgbe_setup_phy_link_speed(struct ixgbe_hw *hw, ixgbe_link_speed speed,
518 1.1 dyoung bool autoneg,
519 1.1 dyoung bool autoneg_wait_to_complete)
520 1.1 dyoung {
521 1.1 dyoung return ixgbe_call_func(hw, hw->phy.ops.setup_link_speed, (hw, speed,
522 1.1 dyoung autoneg, autoneg_wait_to_complete),
523 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
524 1.1 dyoung }
525 1.1 dyoung
526 1.1 dyoung /**
527 1.1 dyoung * ixgbe_check_link - Get link and speed status
528 1.1 dyoung * @hw: pointer to hardware structure
529 1.1 dyoung *
530 1.1 dyoung * Reads the links register to determine if link is up and the current speed
531 1.1 dyoung **/
532 1.1 dyoung s32 ixgbe_check_link(struct ixgbe_hw *hw, ixgbe_link_speed *speed,
533 1.1 dyoung bool *link_up, bool link_up_wait_to_complete)
534 1.1 dyoung {
535 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.check_link, (hw, speed,
536 1.1 dyoung link_up, link_up_wait_to_complete),
537 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
538 1.1 dyoung }
539 1.1 dyoung
540 1.1 dyoung /**
541 1.1 dyoung * ixgbe_disable_tx_laser - Disable Tx laser
542 1.1 dyoung * @hw: pointer to hardware structure
543 1.1 dyoung *
544 1.1 dyoung * If the driver needs to disable the laser on SFI optics.
545 1.1 dyoung **/
546 1.1 dyoung void ixgbe_disable_tx_laser(struct ixgbe_hw *hw)
547 1.1 dyoung {
548 1.1 dyoung if (hw->mac.ops.disable_tx_laser)
549 1.1 dyoung hw->mac.ops.disable_tx_laser(hw);
550 1.1 dyoung }
551 1.1 dyoung
552 1.1 dyoung /**
553 1.1 dyoung * ixgbe_enable_tx_laser - Enable Tx laser
554 1.1 dyoung * @hw: pointer to hardware structure
555 1.1 dyoung *
556 1.1 dyoung * If the driver needs to enable the laser on SFI optics.
557 1.1 dyoung **/
558 1.1 dyoung void ixgbe_enable_tx_laser(struct ixgbe_hw *hw)
559 1.1 dyoung {
560 1.1 dyoung if (hw->mac.ops.enable_tx_laser)
561 1.1 dyoung hw->mac.ops.enable_tx_laser(hw);
562 1.1 dyoung }
563 1.1 dyoung
564 1.1 dyoung /**
565 1.1 dyoung * ixgbe_flap_tx_laser - flap Tx laser to start autotry process
566 1.1 dyoung * @hw: pointer to hardware structure
567 1.1 dyoung *
568 1.1 dyoung * When the driver changes the link speeds that it can support then
569 1.1 dyoung * flap the tx laser to alert the link partner to start autotry
570 1.1 dyoung * process on its end.
571 1.1 dyoung **/
572 1.1 dyoung void ixgbe_flap_tx_laser(struct ixgbe_hw *hw)
573 1.1 dyoung {
574 1.1 dyoung if (hw->mac.ops.flap_tx_laser)
575 1.1 dyoung hw->mac.ops.flap_tx_laser(hw);
576 1.1 dyoung }
577 1.1 dyoung
578 1.1 dyoung /**
579 1.1 dyoung * ixgbe_setup_link - Set link speed
580 1.1 dyoung * @hw: pointer to hardware structure
581 1.1 dyoung * @speed: new link speed
582 1.1 dyoung * @autoneg: TRUE if autonegotiation enabled
583 1.1 dyoung *
584 1.1 dyoung * Configures link settings. Restarts the link.
585 1.1 dyoung * Performs autonegotiation if needed.
586 1.1 dyoung **/
587 1.1 dyoung s32 ixgbe_setup_link(struct ixgbe_hw *hw, ixgbe_link_speed speed,
588 1.1 dyoung bool autoneg,
589 1.1 dyoung bool autoneg_wait_to_complete)
590 1.1 dyoung {
591 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.setup_link, (hw, speed,
592 1.1 dyoung autoneg, autoneg_wait_to_complete),
593 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
594 1.1 dyoung }
595 1.1 dyoung
596 1.1 dyoung /**
597 1.1 dyoung * ixgbe_get_link_capabilities - Returns link capabilities
598 1.1 dyoung * @hw: pointer to hardware structure
599 1.1 dyoung *
600 1.1 dyoung * Determines the link capabilities of the current configuration.
601 1.1 dyoung **/
602 1.1 dyoung s32 ixgbe_get_link_capabilities(struct ixgbe_hw *hw, ixgbe_link_speed *speed,
603 1.1 dyoung bool *autoneg)
604 1.1 dyoung {
605 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.get_link_capabilities, (hw,
606 1.1 dyoung speed, autoneg), IXGBE_NOT_IMPLEMENTED);
607 1.1 dyoung }
608 1.1 dyoung
609 1.1 dyoung /**
610 1.1 dyoung * ixgbe_led_on - Turn on LEDs
611 1.1 dyoung * @hw: pointer to hardware structure
612 1.1 dyoung * @index: led number to turn on
613 1.1 dyoung *
614 1.1 dyoung * Turns on the software controllable LEDs.
615 1.1 dyoung **/
616 1.1 dyoung s32 ixgbe_led_on(struct ixgbe_hw *hw, u32 index)
617 1.1 dyoung {
618 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.led_on, (hw, index),
619 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
620 1.1 dyoung }
621 1.1 dyoung
622 1.1 dyoung /**
623 1.1 dyoung * ixgbe_led_off - Turn off LEDs
624 1.1 dyoung * @hw: pointer to hardware structure
625 1.1 dyoung * @index: led number to turn off
626 1.1 dyoung *
627 1.1 dyoung * Turns off the software controllable LEDs.
628 1.1 dyoung **/
629 1.1 dyoung s32 ixgbe_led_off(struct ixgbe_hw *hw, u32 index)
630 1.1 dyoung {
631 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.led_off, (hw, index),
632 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
633 1.1 dyoung }
634 1.1 dyoung
635 1.1 dyoung /**
636 1.1 dyoung * ixgbe_blink_led_start - Blink LEDs
637 1.1 dyoung * @hw: pointer to hardware structure
638 1.1 dyoung * @index: led number to blink
639 1.1 dyoung *
640 1.1 dyoung * Blink LED based on index.
641 1.1 dyoung **/
642 1.1 dyoung s32 ixgbe_blink_led_start(struct ixgbe_hw *hw, u32 index)
643 1.1 dyoung {
644 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.blink_led_start, (hw, index),
645 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
646 1.1 dyoung }
647 1.1 dyoung
648 1.1 dyoung /**
649 1.1 dyoung * ixgbe_blink_led_stop - Stop blinking LEDs
650 1.1 dyoung * @hw: pointer to hardware structure
651 1.1 dyoung *
652 1.1 dyoung * Stop blinking LED based on index.
653 1.1 dyoung **/
654 1.1 dyoung s32 ixgbe_blink_led_stop(struct ixgbe_hw *hw, u32 index)
655 1.1 dyoung {
656 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.blink_led_stop, (hw, index),
657 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
658 1.1 dyoung }
659 1.1 dyoung
660 1.1 dyoung /**
661 1.1 dyoung * ixgbe_init_eeprom_params - Initialize EEPROM parameters
662 1.1 dyoung * @hw: pointer to hardware structure
663 1.1 dyoung *
664 1.1 dyoung * Initializes the EEPROM parameters ixgbe_eeprom_info within the
665 1.1 dyoung * ixgbe_hw struct in order to set up EEPROM access.
666 1.1 dyoung **/
667 1.1 dyoung s32 ixgbe_init_eeprom_params(struct ixgbe_hw *hw)
668 1.1 dyoung {
669 1.1 dyoung return ixgbe_call_func(hw, hw->eeprom.ops.init_params, (hw),
670 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
671 1.1 dyoung }
672 1.1 dyoung
673 1.1 dyoung
674 1.1 dyoung /**
675 1.1 dyoung * ixgbe_write_eeprom - Write word to EEPROM
676 1.1 dyoung * @hw: pointer to hardware structure
677 1.1 dyoung * @offset: offset within the EEPROM to be written to
678 1.1 dyoung * @data: 16 bit word to be written to the EEPROM
679 1.1 dyoung *
680 1.1 dyoung * Writes 16 bit value to EEPROM. If ixgbe_eeprom_update_checksum is not
681 1.1 dyoung * called after this function, the EEPROM will most likely contain an
682 1.1 dyoung * invalid checksum.
683 1.1 dyoung **/
684 1.1 dyoung s32 ixgbe_write_eeprom(struct ixgbe_hw *hw, u16 offset, u16 data)
685 1.1 dyoung {
686 1.1 dyoung return ixgbe_call_func(hw, hw->eeprom.ops.write, (hw, offset, data),
687 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
688 1.1 dyoung }
689 1.1 dyoung
690 1.1 dyoung /**
691 1.1 dyoung * ixgbe_read_eeprom - Read word from EEPROM
692 1.1 dyoung * @hw: pointer to hardware structure
693 1.1 dyoung * @offset: offset within the EEPROM to be read
694 1.1 dyoung * @data: read 16 bit value from EEPROM
695 1.1 dyoung *
696 1.1 dyoung * Reads 16 bit value from EEPROM
697 1.1 dyoung **/
698 1.1 dyoung s32 ixgbe_read_eeprom(struct ixgbe_hw *hw, u16 offset, u16 *data)
699 1.1 dyoung {
700 1.1 dyoung return ixgbe_call_func(hw, hw->eeprom.ops.read, (hw, offset, data),
701 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
702 1.1 dyoung }
703 1.1 dyoung
704 1.1 dyoung /**
705 1.1 dyoung * ixgbe_validate_eeprom_checksum - Validate EEPROM checksum
706 1.1 dyoung * @hw: pointer to hardware structure
707 1.1 dyoung * @checksum_val: calculated checksum
708 1.1 dyoung *
709 1.1 dyoung * Performs checksum calculation and validates the EEPROM checksum
710 1.1 dyoung **/
711 1.1 dyoung s32 ixgbe_validate_eeprom_checksum(struct ixgbe_hw *hw, u16 *checksum_val)
712 1.1 dyoung {
713 1.1 dyoung return ixgbe_call_func(hw, hw->eeprom.ops.validate_checksum,
714 1.1 dyoung (hw, checksum_val), IXGBE_NOT_IMPLEMENTED);
715 1.1 dyoung }
716 1.1 dyoung
717 1.1 dyoung /**
718 1.1 dyoung * ixgbe_eeprom_update_checksum - Updates the EEPROM checksum
719 1.1 dyoung * @hw: pointer to hardware structure
720 1.1 dyoung **/
721 1.1 dyoung s32 ixgbe_update_eeprom_checksum(struct ixgbe_hw *hw)
722 1.1 dyoung {
723 1.1 dyoung return ixgbe_call_func(hw, hw->eeprom.ops.update_checksum, (hw),
724 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
725 1.1 dyoung }
726 1.1 dyoung
727 1.1 dyoung /**
728 1.1 dyoung * ixgbe_insert_mac_addr - Find a RAR for this mac address
729 1.1 dyoung * @hw: pointer to hardware structure
730 1.1 dyoung * @addr: Address to put into receive address register
731 1.1 dyoung * @vmdq: VMDq pool to assign
732 1.1 dyoung *
733 1.1 dyoung * Puts an ethernet address into a receive address register, or
734 1.1 dyoung * finds the rar that it is aleady in; adds to the pool list
735 1.1 dyoung **/
736 1.1 dyoung s32 ixgbe_insert_mac_addr(struct ixgbe_hw *hw, u8 *addr, u32 vmdq)
737 1.1 dyoung {
738 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.insert_mac_addr,
739 1.1 dyoung (hw, addr, vmdq),
740 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
741 1.1 dyoung }
742 1.1 dyoung
743 1.1 dyoung /**
744 1.1 dyoung * ixgbe_set_rar - Set Rx address register
745 1.1 dyoung * @hw: pointer to hardware structure
746 1.1 dyoung * @index: Receive address register to write
747 1.1 dyoung * @addr: Address to put into receive address register
748 1.1 dyoung * @vmdq: VMDq "set"
749 1.1 dyoung * @enable_addr: set flag that address is active
750 1.1 dyoung *
751 1.1 dyoung * Puts an ethernet address into a receive address register.
752 1.1 dyoung **/
753 1.1 dyoung s32 ixgbe_set_rar(struct ixgbe_hw *hw, u32 index, u8 *addr, u32 vmdq,
754 1.1 dyoung u32 enable_addr)
755 1.1 dyoung {
756 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.set_rar, (hw, index, addr, vmdq,
757 1.1 dyoung enable_addr), IXGBE_NOT_IMPLEMENTED);
758 1.1 dyoung }
759 1.1 dyoung
760 1.1 dyoung /**
761 1.1 dyoung * ixgbe_clear_rar - Clear Rx address register
762 1.1 dyoung * @hw: pointer to hardware structure
763 1.1 dyoung * @index: Receive address register to write
764 1.1 dyoung *
765 1.1 dyoung * Puts an ethernet address into a receive address register.
766 1.1 dyoung **/
767 1.1 dyoung s32 ixgbe_clear_rar(struct ixgbe_hw *hw, u32 index)
768 1.1 dyoung {
769 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.clear_rar, (hw, index),
770 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
771 1.1 dyoung }
772 1.1 dyoung
773 1.1 dyoung /**
774 1.1 dyoung * ixgbe_set_vmdq - Associate a VMDq index with a receive address
775 1.1 dyoung * @hw: pointer to hardware structure
776 1.1 dyoung * @rar: receive address register index to associate with VMDq index
777 1.1 dyoung * @vmdq: VMDq set or pool index
778 1.1 dyoung **/
779 1.1 dyoung s32 ixgbe_set_vmdq(struct ixgbe_hw *hw, u32 rar, u32 vmdq)
780 1.1 dyoung {
781 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.set_vmdq, (hw, rar, vmdq),
782 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
783 1.1 dyoung }
784 1.1 dyoung
785 1.1 dyoung /**
786 1.1 dyoung * ixgbe_clear_vmdq - Disassociate a VMDq index from a receive address
787 1.1 dyoung * @hw: pointer to hardware structure
788 1.1 dyoung * @rar: receive address register index to disassociate with VMDq index
789 1.1 dyoung * @vmdq: VMDq set or pool index
790 1.1 dyoung **/
791 1.1 dyoung s32 ixgbe_clear_vmdq(struct ixgbe_hw *hw, u32 rar, u32 vmdq)
792 1.1 dyoung {
793 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.clear_vmdq, (hw, rar, vmdq),
794 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
795 1.1 dyoung }
796 1.1 dyoung
797 1.1 dyoung /**
798 1.1 dyoung * ixgbe_init_rx_addrs - Initializes receive address filters.
799 1.1 dyoung * @hw: pointer to hardware structure
800 1.1 dyoung *
801 1.1 dyoung * Places the MAC address in receive address register 0 and clears the rest
802 1.1 dyoung * of the receive address registers. Clears the multicast table. Assumes
803 1.1 dyoung * the receiver is in reset when the routine is called.
804 1.1 dyoung **/
805 1.1 dyoung s32 ixgbe_init_rx_addrs(struct ixgbe_hw *hw)
806 1.1 dyoung {
807 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.init_rx_addrs, (hw),
808 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
809 1.1 dyoung }
810 1.1 dyoung
811 1.1 dyoung /**
812 1.1 dyoung * ixgbe_get_num_rx_addrs - Returns the number of RAR entries.
813 1.1 dyoung * @hw: pointer to hardware structure
814 1.1 dyoung **/
815 1.1 dyoung u32 ixgbe_get_num_rx_addrs(struct ixgbe_hw *hw)
816 1.1 dyoung {
817 1.1 dyoung return hw->mac.num_rar_entries;
818 1.1 dyoung }
819 1.1 dyoung
820 1.1 dyoung /**
821 1.1 dyoung * ixgbe_update_uc_addr_list - Updates the MAC's list of secondary addresses
822 1.1 dyoung * @hw: pointer to hardware structure
823 1.1 dyoung * @addr_list: the list of new multicast addresses
824 1.1 dyoung * @addr_count: number of addresses
825 1.1 dyoung * @func: iterator function to walk the multicast address list
826 1.1 dyoung *
827 1.1 dyoung * The given list replaces any existing list. Clears the secondary addrs from
828 1.1 dyoung * receive address registers. Uses unused receive address registers for the
829 1.1 dyoung * first secondary addresses, and falls back to promiscuous mode as needed.
830 1.1 dyoung **/
831 1.1 dyoung s32 ixgbe_update_uc_addr_list(struct ixgbe_hw *hw, u8 *addr_list,
832 1.1 dyoung u32 addr_count, ixgbe_mc_addr_itr func)
833 1.1 dyoung {
834 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.update_uc_addr_list, (hw,
835 1.1 dyoung addr_list, addr_count, func),
836 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
837 1.1 dyoung }
838 1.1 dyoung
839 1.1 dyoung /**
840 1.1 dyoung * ixgbe_update_mc_addr_list - Updates the MAC's list of multicast addresses
841 1.1 dyoung * @hw: pointer to hardware structure
842 1.1 dyoung * @mc_addr_list: the list of new multicast addresses
843 1.1 dyoung * @mc_addr_count: number of addresses
844 1.1 dyoung * @func: iterator function to walk the multicast address list
845 1.1 dyoung *
846 1.1 dyoung * The given list replaces any existing list. Clears the MC addrs from receive
847 1.1 dyoung * address registers and the multicast table. Uses unused receive address
848 1.1 dyoung * registers for the first multicast addresses, and hashes the rest into the
849 1.1 dyoung * multicast table.
850 1.1 dyoung **/
851 1.1 dyoung s32 ixgbe_update_mc_addr_list(struct ixgbe_hw *hw, u8 *mc_addr_list,
852 1.1 dyoung u32 mc_addr_count, ixgbe_mc_addr_itr func)
853 1.1 dyoung {
854 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.update_mc_addr_list, (hw,
855 1.1 dyoung mc_addr_list, mc_addr_count, func),
856 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
857 1.1 dyoung }
858 1.1 dyoung
859 1.1 dyoung /**
860 1.1 dyoung * ixgbe_enable_mc - Enable multicast address in RAR
861 1.1 dyoung * @hw: pointer to hardware structure
862 1.1 dyoung *
863 1.1 dyoung * Enables multicast address in RAR and the use of the multicast hash table.
864 1.1 dyoung **/
865 1.1 dyoung s32 ixgbe_enable_mc(struct ixgbe_hw *hw)
866 1.1 dyoung {
867 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.enable_mc, (hw),
868 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
869 1.1 dyoung }
870 1.1 dyoung
871 1.1 dyoung /**
872 1.1 dyoung * ixgbe_disable_mc - Disable multicast address in RAR
873 1.1 dyoung * @hw: pointer to hardware structure
874 1.1 dyoung *
875 1.1 dyoung * Disables multicast address in RAR and the use of the multicast hash table.
876 1.1 dyoung **/
877 1.1 dyoung s32 ixgbe_disable_mc(struct ixgbe_hw *hw)
878 1.1 dyoung {
879 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.disable_mc, (hw),
880 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
881 1.1 dyoung }
882 1.1 dyoung
883 1.1 dyoung /**
884 1.1 dyoung * ixgbe_clear_vfta - Clear VLAN filter table
885 1.1 dyoung * @hw: pointer to hardware structure
886 1.1 dyoung *
887 1.1 dyoung * Clears the VLAN filer table, and the VMDq index associated with the filter
888 1.1 dyoung **/
889 1.1 dyoung s32 ixgbe_clear_vfta(struct ixgbe_hw *hw)
890 1.1 dyoung {
891 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.clear_vfta, (hw),
892 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
893 1.1 dyoung }
894 1.1 dyoung
895 1.1 dyoung /**
896 1.1 dyoung * ixgbe_set_vfta - Set VLAN filter table
897 1.1 dyoung * @hw: pointer to hardware structure
898 1.1 dyoung * @vlan: VLAN id to write to VLAN filter
899 1.1 dyoung * @vind: VMDq output index that maps queue to VLAN id in VFTA
900 1.1 dyoung * @vlan_on: boolean flag to turn on/off VLAN in VFTA
901 1.1 dyoung *
902 1.1 dyoung * Turn on/off specified VLAN in the VLAN filter table.
903 1.1 dyoung **/
904 1.1 dyoung s32 ixgbe_set_vfta(struct ixgbe_hw *hw, u32 vlan, u32 vind, bool vlan_on)
905 1.1 dyoung {
906 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.set_vfta, (hw, vlan, vind,
907 1.1 dyoung vlan_on), IXGBE_NOT_IMPLEMENTED);
908 1.1 dyoung }
909 1.1 dyoung
910 1.1 dyoung /**
911 1.1 dyoung * ixgbe_fc_enable - Enable flow control
912 1.1 dyoung * @hw: pointer to hardware structure
913 1.1 dyoung * @packetbuf_num: packet buffer number (0-7)
914 1.1 dyoung *
915 1.1 dyoung * Configures the flow control settings based on SW configuration.
916 1.1 dyoung **/
917 1.1 dyoung s32 ixgbe_fc_enable(struct ixgbe_hw *hw, s32 packetbuf_num)
918 1.1 dyoung {
919 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.fc_enable, (hw, packetbuf_num),
920 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
921 1.1 dyoung }
922 1.1 dyoung
923 1.1 dyoung /**
924 1.1 dyoung * ixgbe_read_analog_reg8 - Reads 8 bit analog register
925 1.1 dyoung * @hw: pointer to hardware structure
926 1.1 dyoung * @reg: analog register to read
927 1.1 dyoung * @val: read value
928 1.1 dyoung *
929 1.1 dyoung * Performs write operation to analog register specified.
930 1.1 dyoung **/
931 1.1 dyoung s32 ixgbe_read_analog_reg8(struct ixgbe_hw *hw, u32 reg, u8 *val)
932 1.1 dyoung {
933 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.read_analog_reg8, (hw, reg,
934 1.1 dyoung val), IXGBE_NOT_IMPLEMENTED);
935 1.1 dyoung }
936 1.1 dyoung
937 1.1 dyoung /**
938 1.1 dyoung * ixgbe_write_analog_reg8 - Writes 8 bit analog register
939 1.1 dyoung * @hw: pointer to hardware structure
940 1.1 dyoung * @reg: analog register to write
941 1.1 dyoung * @val: value to write
942 1.1 dyoung *
943 1.1 dyoung * Performs write operation to Atlas analog register specified.
944 1.1 dyoung **/
945 1.1 dyoung s32 ixgbe_write_analog_reg8(struct ixgbe_hw *hw, u32 reg, u8 val)
946 1.1 dyoung {
947 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.write_analog_reg8, (hw, reg,
948 1.1 dyoung val), IXGBE_NOT_IMPLEMENTED);
949 1.1 dyoung }
950 1.1 dyoung
951 1.1 dyoung /**
952 1.1 dyoung * ixgbe_init_uta_tables - Initializes Unicast Table Arrays.
953 1.1 dyoung * @hw: pointer to hardware structure
954 1.1 dyoung *
955 1.1 dyoung * Initializes the Unicast Table Arrays to zero on device load. This
956 1.1 dyoung * is part of the Rx init addr execution path.
957 1.1 dyoung **/
958 1.1 dyoung s32 ixgbe_init_uta_tables(struct ixgbe_hw *hw)
959 1.1 dyoung {
960 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.init_uta_tables, (hw),
961 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
962 1.1 dyoung }
963 1.1 dyoung
964 1.1 dyoung /**
965 1.1 dyoung * ixgbe_read_i2c_byte - Reads 8 bit word over I2C at specified device address
966 1.1 dyoung * @hw: pointer to hardware structure
967 1.1 dyoung * @byte_offset: byte offset to read
968 1.1 dyoung * @data: value read
969 1.1 dyoung *
970 1.1 dyoung * Performs byte read operation to SFP module's EEPROM over I2C interface.
971 1.1 dyoung **/
972 1.1 dyoung s32 ixgbe_read_i2c_byte(struct ixgbe_hw *hw, u8 byte_offset, u8 dev_addr,
973 1.1 dyoung u8 *data)
974 1.1 dyoung {
975 1.1 dyoung return ixgbe_call_func(hw, hw->phy.ops.read_i2c_byte, (hw, byte_offset,
976 1.1 dyoung dev_addr, data), IXGBE_NOT_IMPLEMENTED);
977 1.1 dyoung }
978 1.1 dyoung
979 1.1 dyoung /**
980 1.1 dyoung * ixgbe_write_i2c_byte - Writes 8 bit word over I2C
981 1.1 dyoung * @hw: pointer to hardware structure
982 1.1 dyoung * @byte_offset: byte offset to write
983 1.1 dyoung * @data: value to write
984 1.1 dyoung *
985 1.1 dyoung * Performs byte write operation to SFP module's EEPROM over I2C interface
986 1.1 dyoung * at a specified device address.
987 1.1 dyoung **/
988 1.1 dyoung s32 ixgbe_write_i2c_byte(struct ixgbe_hw *hw, u8 byte_offset, u8 dev_addr,
989 1.1 dyoung u8 data)
990 1.1 dyoung {
991 1.1 dyoung return ixgbe_call_func(hw, hw->phy.ops.write_i2c_byte, (hw, byte_offset,
992 1.1 dyoung dev_addr, data), IXGBE_NOT_IMPLEMENTED);
993 1.1 dyoung }
994 1.1 dyoung
995 1.1 dyoung /**
996 1.1 dyoung * ixgbe_write_i2c_eeprom - Writes 8 bit EEPROM word over I2C interface
997 1.1 dyoung * @hw: pointer to hardware structure
998 1.1 dyoung * @byte_offset: EEPROM byte offset to write
999 1.1 dyoung * @eeprom_data: value to write
1000 1.1 dyoung *
1001 1.1 dyoung * Performs byte write operation to SFP module's EEPROM over I2C interface.
1002 1.1 dyoung **/
1003 1.1 dyoung s32 ixgbe_write_i2c_eeprom(struct ixgbe_hw *hw,
1004 1.1 dyoung u8 byte_offset, u8 eeprom_data)
1005 1.1 dyoung {
1006 1.1 dyoung return ixgbe_call_func(hw, hw->phy.ops.write_i2c_eeprom,
1007 1.1 dyoung (hw, byte_offset, eeprom_data),
1008 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
1009 1.1 dyoung }
1010 1.1 dyoung
1011 1.1 dyoung /**
1012 1.1 dyoung * ixgbe_read_i2c_eeprom - Reads 8 bit EEPROM word over I2C interface
1013 1.1 dyoung * @hw: pointer to hardware structure
1014 1.1 dyoung * @byte_offset: EEPROM byte offset to read
1015 1.1 dyoung * @eeprom_data: value read
1016 1.1 dyoung *
1017 1.1 dyoung * Performs byte read operation to SFP module's EEPROM over I2C interface.
1018 1.1 dyoung **/
1019 1.1 dyoung s32 ixgbe_read_i2c_eeprom(struct ixgbe_hw *hw, u8 byte_offset, u8 *eeprom_data)
1020 1.1 dyoung {
1021 1.1 dyoung return ixgbe_call_func(hw, hw->phy.ops.read_i2c_eeprom,
1022 1.1 dyoung (hw, byte_offset, eeprom_data),
1023 1.1 dyoung IXGBE_NOT_IMPLEMENTED);
1024 1.1 dyoung }
1025 1.1 dyoung
1026 1.1 dyoung /**
1027 1.1 dyoung * ixgbe_get_supported_physical_layer - Returns physical layer type
1028 1.1 dyoung * @hw: pointer to hardware structure
1029 1.1 dyoung *
1030 1.1 dyoung * Determines physical layer capabilities of the current configuration.
1031 1.1 dyoung **/
1032 1.1 dyoung u32 ixgbe_get_supported_physical_layer(struct ixgbe_hw *hw)
1033 1.1 dyoung {
1034 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.get_supported_physical_layer,
1035 1.1 dyoung (hw), IXGBE_PHYSICAL_LAYER_UNKNOWN);
1036 1.1 dyoung }
1037 1.1 dyoung
1038 1.1 dyoung /**
1039 1.1 dyoung * ixgbe_enable_rx_dma - Enables Rx DMA unit, dependant on device specifics
1040 1.1 dyoung * @hw: pointer to hardware structure
1041 1.1 dyoung * @regval: bitfield to write to the Rx DMA register
1042 1.1 dyoung *
1043 1.1 dyoung * Enables the Rx DMA unit of the device.
1044 1.1 dyoung **/
1045 1.1 dyoung s32 ixgbe_enable_rx_dma(struct ixgbe_hw *hw, u32 regval)
1046 1.1 dyoung {
1047 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.enable_rx_dma,
1048 1.1 dyoung (hw, regval), IXGBE_NOT_IMPLEMENTED);
1049 1.1 dyoung }
1050 1.1 dyoung
1051 1.1 dyoung /**
1052 1.1 dyoung * ixgbe_acquire_swfw_semaphore - Acquire SWFW semaphore
1053 1.1 dyoung * @hw: pointer to hardware structure
1054 1.1 dyoung * @mask: Mask to specify which semaphore to acquire
1055 1.1 dyoung *
1056 1.1 dyoung * Acquires the SWFW semaphore through SW_FW_SYNC register for the specified
1057 1.1 dyoung * function (CSR, PHY0, PHY1, EEPROM, Flash)
1058 1.1 dyoung **/
1059 1.1 dyoung s32 ixgbe_acquire_swfw_semaphore(struct ixgbe_hw *hw, u16 mask)
1060 1.1 dyoung {
1061 1.1 dyoung return ixgbe_call_func(hw, hw->mac.ops.acquire_swfw_sync,
1062 1.1 dyoung (hw, mask), IXGBE_NOT_IMPLEMENTED);
1063 1.1 dyoung }
1064 1.1 dyoung
1065 1.1 dyoung /**
1066 1.1 dyoung * ixgbe_release_swfw_semaphore - Release SWFW semaphore
1067 1.1 dyoung * @hw: pointer to hardware structure
1068 1.1 dyoung * @mask: Mask to specify which semaphore to release
1069 1.1 dyoung *
1070 1.1 dyoung * Releases the SWFW semaphore through SW_FW_SYNC register for the specified
1071 1.1 dyoung * function (CSR, PHY0, PHY1, EEPROM, Flash)
1072 1.1 dyoung **/
1073 1.1 dyoung void ixgbe_release_swfw_semaphore(struct ixgbe_hw *hw, u16 mask)
1074 1.1 dyoung {
1075 1.1 dyoung if (hw->mac.ops.release_swfw_sync)
1076 1.1 dyoung hw->mac.ops.release_swfw_sync(hw, mask);
1077 1.1 dyoung }
1078 1.1 dyoung
1079