ixgbe_82599.c revision 1.29 1 1.29 msaitoh /* $NetBSD: ixgbe_82599.c,v 1.29 2021/12/24 05:11:04 msaitoh Exp $ */
2 1.15 msaitoh
3 1.1 dyoung /******************************************************************************
4 1.16 msaitoh SPDX-License-Identifier: BSD-3-Clause
5 1.1 dyoung
6 1.28 msaitoh Copyright (c) 2001-2020, Intel Corporation
7 1.1 dyoung All rights reserved.
8 1.15 msaitoh
9 1.15 msaitoh Redistribution and use in source and binary forms, with or without
10 1.1 dyoung modification, are permitted provided that the following conditions are met:
11 1.15 msaitoh
12 1.15 msaitoh 1. Redistributions of source code must retain the above copyright notice,
13 1.1 dyoung this list of conditions and the following disclaimer.
14 1.15 msaitoh
15 1.15 msaitoh 2. Redistributions in binary form must reproduce the above copyright
16 1.15 msaitoh notice, this list of conditions and the following disclaimer in the
17 1.1 dyoung documentation and/or other materials provided with the distribution.
18 1.15 msaitoh
19 1.15 msaitoh 3. Neither the name of the Intel Corporation nor the names of its
20 1.15 msaitoh contributors may be used to endorse or promote products derived from
21 1.1 dyoung this software without specific prior written permission.
22 1.15 msaitoh
23 1.1 dyoung THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
24 1.15 msaitoh AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
25 1.15 msaitoh IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
26 1.15 msaitoh ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
27 1.15 msaitoh LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
28 1.15 msaitoh CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
29 1.15 msaitoh SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
30 1.15 msaitoh INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
31 1.15 msaitoh CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
32 1.1 dyoung ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
33 1.1 dyoung POSSIBILITY OF SUCH DAMAGE.
34 1.1 dyoung
35 1.1 dyoung ******************************************************************************/
36 1.19 msaitoh /*$FreeBSD: head/sys/dev/ixgbe/ixgbe_82599.c 331224 2018-03-19 20:55:05Z erj $*/
37 1.1 dyoung
38 1.23 msaitoh #include <sys/cdefs.h>
39 1.29 msaitoh __KERNEL_RCSID(0, "$NetBSD: ixgbe_82599.c,v 1.29 2021/12/24 05:11:04 msaitoh Exp $");
40 1.23 msaitoh
41 1.1 dyoung #include "ixgbe_type.h"
42 1.6 msaitoh #include "ixgbe_82599.h"
43 1.1 dyoung #include "ixgbe_api.h"
44 1.1 dyoung #include "ixgbe_common.h"
45 1.1 dyoung #include "ixgbe_phy.h"
46 1.1 dyoung
47 1.12 msaitoh #define IXGBE_82599_MAX_TX_QUEUES 128
48 1.12 msaitoh #define IXGBE_82599_MAX_RX_QUEUES 128
49 1.12 msaitoh #define IXGBE_82599_RAR_ENTRIES 128
50 1.12 msaitoh #define IXGBE_82599_MC_TBL_SIZE 128
51 1.12 msaitoh #define IXGBE_82599_VFT_TBL_SIZE 128
52 1.12 msaitoh #define IXGBE_82599_RX_PB_SIZE 512
53 1.12 msaitoh
54 1.1 dyoung static s32 ixgbe_setup_copper_link_82599(struct ixgbe_hw *hw,
55 1.6 msaitoh ixgbe_link_speed speed,
56 1.6 msaitoh bool autoneg_wait_to_complete);
57 1.1 dyoung static s32 ixgbe_verify_fw_version_82599(struct ixgbe_hw *hw);
58 1.6 msaitoh static s32 ixgbe_read_eeprom_82599(struct ixgbe_hw *hw,
59 1.6 msaitoh u16 offset, u16 *data);
60 1.6 msaitoh static s32 ixgbe_read_eeprom_buffer_82599(struct ixgbe_hw *hw, u16 offset,
61 1.6 msaitoh u16 words, u16 *data);
62 1.17 msaitoh static s32 ixgbe_reset_pipeline_82599(struct ixgbe_hw *hw);
63 1.12 msaitoh static s32 ixgbe_read_i2c_byte_82599(struct ixgbe_hw *hw, u8 byte_offset,
64 1.12 msaitoh u8 dev_addr, u8 *data);
65 1.12 msaitoh static s32 ixgbe_write_i2c_byte_82599(struct ixgbe_hw *hw, u8 byte_offset,
66 1.12 msaitoh u8 dev_addr, u8 data);
67 1.9 msaitoh
68 1.1 dyoung void ixgbe_init_mac_link_ops_82599(struct ixgbe_hw *hw)
69 1.1 dyoung {
70 1.1 dyoung struct ixgbe_mac_info *mac = &hw->mac;
71 1.1 dyoung
72 1.1 dyoung DEBUGFUNC("ixgbe_init_mac_link_ops_82599");
73 1.1 dyoung
74 1.9 msaitoh /*
75 1.9 msaitoh * enable the laser control functions for SFP+ fiber
76 1.9 msaitoh * and MNG not enabled
77 1.9 msaitoh */
78 1.9 msaitoh if ((mac->ops.get_media_type(hw) == ixgbe_media_type_fiber) &&
79 1.12 msaitoh !ixgbe_mng_enabled(hw)) {
80 1.1 dyoung mac->ops.disable_tx_laser =
81 1.12 msaitoh ixgbe_disable_tx_laser_multispeed_fiber;
82 1.1 dyoung mac->ops.enable_tx_laser =
83 1.12 msaitoh ixgbe_enable_tx_laser_multispeed_fiber;
84 1.12 msaitoh mac->ops.flap_tx_laser = ixgbe_flap_tx_laser_multispeed_fiber;
85 1.1 dyoung
86 1.1 dyoung } else {
87 1.1 dyoung mac->ops.disable_tx_laser = NULL;
88 1.1 dyoung mac->ops.enable_tx_laser = NULL;
89 1.1 dyoung mac->ops.flap_tx_laser = NULL;
90 1.1 dyoung }
91 1.1 dyoung
92 1.1 dyoung if (hw->phy.multispeed_fiber) {
93 1.1 dyoung /* Set up dual speed SFP+ support */
94 1.12 msaitoh mac->ops.setup_link = ixgbe_setup_mac_link_multispeed_fiber;
95 1.12 msaitoh mac->ops.setup_mac_link = ixgbe_setup_mac_link_82599;
96 1.12 msaitoh mac->ops.set_rate_select_speed =
97 1.12 msaitoh ixgbe_set_hard_rate_select_speed;
98 1.12 msaitoh if (ixgbe_get_media_type(hw) == ixgbe_media_type_fiber_fixed)
99 1.12 msaitoh mac->ops.set_rate_select_speed =
100 1.12 msaitoh ixgbe_set_soft_rate_select_speed;
101 1.1 dyoung } else {
102 1.1 dyoung if ((ixgbe_get_media_type(hw) == ixgbe_media_type_backplane) &&
103 1.1 dyoung (hw->phy.smart_speed == ixgbe_smart_speed_auto ||
104 1.1 dyoung hw->phy.smart_speed == ixgbe_smart_speed_on) &&
105 1.1 dyoung !ixgbe_verify_lesm_fw_enabled_82599(hw)) {
106 1.12 msaitoh mac->ops.setup_link = ixgbe_setup_mac_link_smartspeed;
107 1.1 dyoung } else {
108 1.12 msaitoh mac->ops.setup_link = ixgbe_setup_mac_link_82599;
109 1.1 dyoung }
110 1.1 dyoung }
111 1.1 dyoung }
112 1.1 dyoung
113 1.1 dyoung /**
114 1.26 msaitoh * ixgbe_init_phy_ops_82599 - PHY/SFP specific init
115 1.26 msaitoh * @hw: pointer to hardware structure
116 1.1 dyoung *
117 1.26 msaitoh * Initialize any function pointers that were not able to be
118 1.26 msaitoh * set during init_shared_code because the PHY/SFP type was
119 1.26 msaitoh * not known. Perform the SFP init if necessary.
120 1.1 dyoung *
121 1.1 dyoung **/
122 1.1 dyoung s32 ixgbe_init_phy_ops_82599(struct ixgbe_hw *hw)
123 1.1 dyoung {
124 1.1 dyoung struct ixgbe_mac_info *mac = &hw->mac;
125 1.1 dyoung struct ixgbe_phy_info *phy = &hw->phy;
126 1.1 dyoung s32 ret_val = IXGBE_SUCCESS;
127 1.12 msaitoh u32 esdp;
128 1.1 dyoung
129 1.1 dyoung DEBUGFUNC("ixgbe_init_phy_ops_82599");
130 1.1 dyoung
131 1.12 msaitoh if (hw->device_id == IXGBE_DEV_ID_82599_QSFP_SF_QP) {
132 1.12 msaitoh /* Store flag indicating I2C bus access control unit. */
133 1.12 msaitoh hw->phy.qsfp_shared_i2c_bus = TRUE;
134 1.12 msaitoh
135 1.12 msaitoh /* Initialize access to QSFP+ I2C bus */
136 1.12 msaitoh esdp = IXGBE_READ_REG(hw, IXGBE_ESDP);
137 1.12 msaitoh esdp |= IXGBE_ESDP_SDP0_DIR;
138 1.12 msaitoh esdp &= ~IXGBE_ESDP_SDP1_DIR;
139 1.12 msaitoh esdp &= ~IXGBE_ESDP_SDP0;
140 1.12 msaitoh esdp &= ~IXGBE_ESDP_SDP0_NATIVE;
141 1.12 msaitoh esdp &= ~IXGBE_ESDP_SDP1_NATIVE;
142 1.12 msaitoh IXGBE_WRITE_REG(hw, IXGBE_ESDP, esdp);
143 1.12 msaitoh IXGBE_WRITE_FLUSH(hw);
144 1.12 msaitoh
145 1.12 msaitoh phy->ops.read_i2c_byte = ixgbe_read_i2c_byte_82599;
146 1.12 msaitoh phy->ops.write_i2c_byte = ixgbe_write_i2c_byte_82599;
147 1.12 msaitoh }
148 1.1 dyoung /* Identify the PHY or SFP module */
149 1.1 dyoung ret_val = phy->ops.identify(hw);
150 1.1 dyoung if (ret_val == IXGBE_ERR_SFP_NOT_SUPPORTED)
151 1.1 dyoung goto init_phy_ops_out;
152 1.1 dyoung
153 1.1 dyoung /* Setup function pointers based on detected SFP module and speeds */
154 1.1 dyoung ixgbe_init_mac_link_ops_82599(hw);
155 1.1 dyoung if (hw->phy.sfp_type != ixgbe_sfp_type_unknown)
156 1.1 dyoung hw->phy.ops.reset = NULL;
157 1.1 dyoung
158 1.1 dyoung /* If copper media, overwrite with copper function pointers */
159 1.1 dyoung if (mac->ops.get_media_type(hw) == ixgbe_media_type_copper) {
160 1.12 msaitoh mac->ops.setup_link = ixgbe_setup_copper_link_82599;
161 1.1 dyoung mac->ops.get_link_capabilities =
162 1.12 msaitoh ixgbe_get_copper_link_capabilities_generic;
163 1.1 dyoung }
164 1.1 dyoung
165 1.12 msaitoh /* Set necessary function pointers based on PHY type */
166 1.1 dyoung switch (hw->phy.type) {
167 1.1 dyoung case ixgbe_phy_tn:
168 1.12 msaitoh phy->ops.setup_link = ixgbe_setup_phy_link_tnx;
169 1.12 msaitoh phy->ops.check_link = ixgbe_check_phy_link_tnx;
170 1.1 dyoung phy->ops.get_firmware_version =
171 1.12 msaitoh ixgbe_get_phy_firmware_version_tnx;
172 1.1 dyoung break;
173 1.1 dyoung default:
174 1.1 dyoung break;
175 1.1 dyoung }
176 1.1 dyoung init_phy_ops_out:
177 1.1 dyoung return ret_val;
178 1.1 dyoung }
179 1.1 dyoung
180 1.1 dyoung s32 ixgbe_setup_sfp_modules_82599(struct ixgbe_hw *hw)
181 1.1 dyoung {
182 1.1 dyoung s32 ret_val = IXGBE_SUCCESS;
183 1.1 dyoung u16 list_offset, data_offset, data_value;
184 1.1 dyoung
185 1.1 dyoung DEBUGFUNC("ixgbe_setup_sfp_modules_82599");
186 1.1 dyoung
187 1.1 dyoung if (hw->phy.sfp_type != ixgbe_sfp_type_unknown) {
188 1.1 dyoung ixgbe_init_mac_link_ops_82599(hw);
189 1.1 dyoung
190 1.1 dyoung hw->phy.ops.reset = NULL;
191 1.1 dyoung
192 1.1 dyoung ret_val = ixgbe_get_sfp_init_sequence_offsets(hw, &list_offset,
193 1.6 msaitoh &data_offset);
194 1.1 dyoung if (ret_val != IXGBE_SUCCESS)
195 1.1 dyoung goto setup_sfp_out;
196 1.1 dyoung
197 1.1 dyoung /* PHY config will finish before releasing the semaphore */
198 1.6 msaitoh ret_val = hw->mac.ops.acquire_swfw_sync(hw,
199 1.6 msaitoh IXGBE_GSSR_MAC_CSR_SM);
200 1.1 dyoung if (ret_val != IXGBE_SUCCESS) {
201 1.1 dyoung ret_val = IXGBE_ERR_SWFW_SYNC;
202 1.1 dyoung goto setup_sfp_out;
203 1.1 dyoung }
204 1.1 dyoung
205 1.10 msaitoh if (hw->eeprom.ops.read(hw, ++data_offset, &data_value))
206 1.10 msaitoh goto setup_sfp_err;
207 1.1 dyoung while (data_value != 0xffff) {
208 1.1 dyoung IXGBE_WRITE_REG(hw, IXGBE_CORECTL, data_value);
209 1.1 dyoung IXGBE_WRITE_FLUSH(hw);
210 1.10 msaitoh if (hw->eeprom.ops.read(hw, ++data_offset, &data_value))
211 1.10 msaitoh goto setup_sfp_err;
212 1.1 dyoung }
213 1.1 dyoung
214 1.1 dyoung /* Release the semaphore */
215 1.6 msaitoh hw->mac.ops.release_swfw_sync(hw, IXGBE_GSSR_MAC_CSR_SM);
216 1.12 msaitoh /* Delay obtaining semaphore again to allow FW access
217 1.12 msaitoh * prot_autoc_write uses the semaphore too.
218 1.12 msaitoh */
219 1.1 dyoung msec_delay(hw->eeprom.semaphore_delay);
220 1.1 dyoung
221 1.9 msaitoh /* Restart DSP and set SFI mode */
222 1.12 msaitoh ret_val = hw->mac.ops.prot_autoc_write(hw,
223 1.12 msaitoh hw->mac.orig_autoc | IXGBE_AUTOC_LMS_10G_SERIAL,
224 1.12 msaitoh FALSE);
225 1.9 msaitoh
226 1.9 msaitoh if (ret_val) {
227 1.1 dyoung DEBUGOUT("sfp module setup not complete\n");
228 1.1 dyoung ret_val = IXGBE_ERR_SFP_SETUP_NOT_COMPLETE;
229 1.1 dyoung goto setup_sfp_out;
230 1.1 dyoung }
231 1.1 dyoung
232 1.1 dyoung }
233 1.1 dyoung
234 1.1 dyoung setup_sfp_out:
235 1.1 dyoung return ret_val;
236 1.10 msaitoh
237 1.10 msaitoh setup_sfp_err:
238 1.10 msaitoh /* Release the semaphore */
239 1.10 msaitoh hw->mac.ops.release_swfw_sync(hw, IXGBE_GSSR_MAC_CSR_SM);
240 1.10 msaitoh /* Delay obtaining semaphore again to allow FW access */
241 1.10 msaitoh msec_delay(hw->eeprom.semaphore_delay);
242 1.10 msaitoh ERROR_REPORT2(IXGBE_ERROR_INVALID_STATE,
243 1.10 msaitoh "eeprom read at offset %d failed", data_offset);
244 1.10 msaitoh return IXGBE_ERR_PHY;
245 1.1 dyoung }
246 1.1 dyoung
247 1.1 dyoung /**
248 1.26 msaitoh * prot_autoc_read_82599 - Hides MAC differences needed for AUTOC read
249 1.26 msaitoh * @hw: pointer to hardware structure
250 1.26 msaitoh * @locked: Return the if we locked for this read.
251 1.26 msaitoh * @reg_val: Value we read from AUTOC
252 1.26 msaitoh *
253 1.26 msaitoh * For this part (82599) we need to wrap read-modify-writes with a possible
254 1.26 msaitoh * FW/SW lock. It is assumed this lock will be freed with the next
255 1.26 msaitoh * prot_autoc_write_82599().
256 1.12 msaitoh */
257 1.12 msaitoh s32 prot_autoc_read_82599(struct ixgbe_hw *hw, bool *locked, u32 *reg_val)
258 1.12 msaitoh {
259 1.12 msaitoh s32 ret_val;
260 1.12 msaitoh
261 1.12 msaitoh *locked = FALSE;
262 1.12 msaitoh /* If LESM is on then we need to hold the SW/FW semaphore. */
263 1.12 msaitoh if (ixgbe_verify_lesm_fw_enabled_82599(hw)) {
264 1.12 msaitoh ret_val = hw->mac.ops.acquire_swfw_sync(hw,
265 1.12 msaitoh IXGBE_GSSR_MAC_CSR_SM);
266 1.12 msaitoh if (ret_val != IXGBE_SUCCESS)
267 1.12 msaitoh return IXGBE_ERR_SWFW_SYNC;
268 1.12 msaitoh
269 1.12 msaitoh *locked = TRUE;
270 1.12 msaitoh }
271 1.12 msaitoh
272 1.12 msaitoh *reg_val = IXGBE_READ_REG(hw, IXGBE_AUTOC);
273 1.12 msaitoh return IXGBE_SUCCESS;
274 1.12 msaitoh }
275 1.12 msaitoh
276 1.12 msaitoh /**
277 1.12 msaitoh * prot_autoc_write_82599 - Hides MAC differences needed for AUTOC write
278 1.12 msaitoh * @hw: pointer to hardware structure
279 1.19 msaitoh * @autoc: value to write to AUTOC
280 1.12 msaitoh * @locked: bool to indicate whether the SW/FW lock was already taken by
281 1.26 msaitoh * previous proc_autoc_read_82599.
282 1.12 msaitoh *
283 1.12 msaitoh * This part (82599) may need to hold the SW/FW lock around all writes to
284 1.12 msaitoh * AUTOC. Likewise after a write we need to do a pipeline reset.
285 1.12 msaitoh */
286 1.12 msaitoh s32 prot_autoc_write_82599(struct ixgbe_hw *hw, u32 autoc, bool locked)
287 1.12 msaitoh {
288 1.12 msaitoh s32 ret_val = IXGBE_SUCCESS;
289 1.12 msaitoh
290 1.12 msaitoh /* Blocked by MNG FW so bail */
291 1.12 msaitoh if (ixgbe_check_reset_blocked(hw))
292 1.12 msaitoh goto out;
293 1.12 msaitoh
294 1.12 msaitoh /* We only need to get the lock if:
295 1.12 msaitoh * - We didn't do it already (in the read part of a read-modify-write)
296 1.12 msaitoh * - LESM is enabled.
297 1.12 msaitoh */
298 1.12 msaitoh if (!locked && ixgbe_verify_lesm_fw_enabled_82599(hw)) {
299 1.12 msaitoh ret_val = hw->mac.ops.acquire_swfw_sync(hw,
300 1.12 msaitoh IXGBE_GSSR_MAC_CSR_SM);
301 1.12 msaitoh if (ret_val != IXGBE_SUCCESS)
302 1.12 msaitoh return IXGBE_ERR_SWFW_SYNC;
303 1.12 msaitoh
304 1.12 msaitoh locked = TRUE;
305 1.12 msaitoh }
306 1.12 msaitoh
307 1.12 msaitoh IXGBE_WRITE_REG(hw, IXGBE_AUTOC, autoc);
308 1.12 msaitoh ret_val = ixgbe_reset_pipeline_82599(hw);
309 1.12 msaitoh
310 1.12 msaitoh out:
311 1.12 msaitoh /* Free the SW/FW semaphore as we either grabbed it here or
312 1.12 msaitoh * already had it when this function was called.
313 1.12 msaitoh */
314 1.12 msaitoh if (locked)
315 1.12 msaitoh hw->mac.ops.release_swfw_sync(hw, IXGBE_GSSR_MAC_CSR_SM);
316 1.12 msaitoh
317 1.12 msaitoh return ret_val;
318 1.12 msaitoh }
319 1.12 msaitoh
320 1.12 msaitoh /**
321 1.26 msaitoh * ixgbe_init_ops_82599 - Inits func ptrs and MAC type
322 1.26 msaitoh * @hw: pointer to hardware structure
323 1.1 dyoung *
324 1.26 msaitoh * Initialize the function pointers and assign the MAC type for 82599.
325 1.26 msaitoh * Does not touch the hardware.
326 1.1 dyoung **/
327 1.1 dyoung
328 1.1 dyoung s32 ixgbe_init_ops_82599(struct ixgbe_hw *hw)
329 1.1 dyoung {
330 1.1 dyoung struct ixgbe_mac_info *mac = &hw->mac;
331 1.1 dyoung struct ixgbe_phy_info *phy = &hw->phy;
332 1.6 msaitoh struct ixgbe_eeprom_info *eeprom = &hw->eeprom;
333 1.1 dyoung s32 ret_val;
334 1.29 msaitoh u16 i;
335 1.1 dyoung
336 1.1 dyoung DEBUGFUNC("ixgbe_init_ops_82599");
337 1.1 dyoung
338 1.9 msaitoh ixgbe_init_phy_ops_generic(hw);
339 1.1 dyoung ret_val = ixgbe_init_ops_generic(hw);
340 1.1 dyoung
341 1.1 dyoung /* PHY */
342 1.12 msaitoh phy->ops.identify = ixgbe_identify_phy_82599;
343 1.12 msaitoh phy->ops.init = ixgbe_init_phy_ops_82599;
344 1.1 dyoung
345 1.1 dyoung /* MAC */
346 1.12 msaitoh mac->ops.reset_hw = ixgbe_reset_hw_82599;
347 1.12 msaitoh mac->ops.enable_relaxed_ordering = ixgbe_enable_relaxed_ordering_gen2;
348 1.12 msaitoh mac->ops.get_media_type = ixgbe_get_media_type_82599;
349 1.1 dyoung mac->ops.get_supported_physical_layer =
350 1.12 msaitoh ixgbe_get_supported_physical_layer_82599;
351 1.12 msaitoh mac->ops.disable_sec_rx_path = ixgbe_disable_sec_rx_path_generic;
352 1.12 msaitoh mac->ops.enable_sec_rx_path = ixgbe_enable_sec_rx_path_generic;
353 1.12 msaitoh mac->ops.enable_rx_dma = ixgbe_enable_rx_dma_82599;
354 1.12 msaitoh mac->ops.read_analog_reg8 = ixgbe_read_analog_reg8_82599;
355 1.12 msaitoh mac->ops.write_analog_reg8 = ixgbe_write_analog_reg8_82599;
356 1.12 msaitoh mac->ops.start_hw = ixgbe_start_hw_82599;
357 1.12 msaitoh mac->ops.get_san_mac_addr = ixgbe_get_san_mac_addr_generic;
358 1.12 msaitoh mac->ops.set_san_mac_addr = ixgbe_set_san_mac_addr_generic;
359 1.12 msaitoh mac->ops.get_device_caps = ixgbe_get_device_caps_generic;
360 1.12 msaitoh mac->ops.get_wwn_prefix = ixgbe_get_wwn_prefix_generic;
361 1.12 msaitoh mac->ops.get_fcoe_boot_status = ixgbe_get_fcoe_boot_status_generic;
362 1.12 msaitoh mac->ops.prot_autoc_read = prot_autoc_read_82599;
363 1.12 msaitoh mac->ops.prot_autoc_write = prot_autoc_write_82599;
364 1.1 dyoung
365 1.1 dyoung /* RAR, Multicast, VLAN */
366 1.12 msaitoh mac->ops.set_vmdq = ixgbe_set_vmdq_generic;
367 1.12 msaitoh mac->ops.set_vmdq_san_mac = ixgbe_set_vmdq_san_mac_generic;
368 1.12 msaitoh mac->ops.clear_vmdq = ixgbe_clear_vmdq_generic;
369 1.12 msaitoh mac->ops.insert_mac_addr = ixgbe_insert_mac_addr_generic;
370 1.1 dyoung mac->rar_highwater = 1;
371 1.12 msaitoh mac->ops.set_vfta = ixgbe_set_vfta_generic;
372 1.12 msaitoh mac->ops.set_vlvf = ixgbe_set_vlvf_generic;
373 1.12 msaitoh mac->ops.clear_vfta = ixgbe_clear_vfta_generic;
374 1.12 msaitoh mac->ops.init_uta_tables = ixgbe_init_uta_tables_generic;
375 1.12 msaitoh mac->ops.setup_sfp = ixgbe_setup_sfp_modules_82599;
376 1.12 msaitoh mac->ops.set_mac_anti_spoofing = ixgbe_set_mac_anti_spoofing;
377 1.12 msaitoh mac->ops.set_vlan_anti_spoofing = ixgbe_set_vlan_anti_spoofing;
378 1.1 dyoung
379 1.1 dyoung /* Link */
380 1.12 msaitoh mac->ops.get_link_capabilities = ixgbe_get_link_capabilities_82599;
381 1.12 msaitoh mac->ops.check_link = ixgbe_check_mac_link_generic;
382 1.12 msaitoh mac->ops.setup_rxpba = ixgbe_set_rxpba_generic;
383 1.1 dyoung ixgbe_init_mac_link_ops_82599(hw);
384 1.1 dyoung
385 1.12 msaitoh mac->mcft_size = IXGBE_82599_MC_TBL_SIZE;
386 1.12 msaitoh mac->vft_size = IXGBE_82599_VFT_TBL_SIZE;
387 1.12 msaitoh mac->num_rar_entries = IXGBE_82599_RAR_ENTRIES;
388 1.12 msaitoh mac->rx_pb_size = IXGBE_82599_RX_PB_SIZE;
389 1.12 msaitoh mac->max_rx_queues = IXGBE_82599_MAX_RX_QUEUES;
390 1.12 msaitoh mac->max_tx_queues = IXGBE_82599_MAX_TX_QUEUES;
391 1.6 msaitoh mac->max_msix_vectors = ixgbe_get_pcie_msix_count_generic(hw);
392 1.6 msaitoh
393 1.14 msaitoh mac->arc_subsystem_valid = !!(IXGBE_READ_REG(hw, IXGBE_FWSM_BY_MAC(hw))
394 1.14 msaitoh & IXGBE_FWSM_MODE_MASK);
395 1.1 dyoung
396 1.29 msaitoh for (i = 0; i < 64; i++)
397 1.29 msaitoh hw->mbx.ops[i].init_params = ixgbe_init_mbx_params_pf;
398 1.1 dyoung
399 1.6 msaitoh /* EEPROM */
400 1.12 msaitoh eeprom->ops.read = ixgbe_read_eeprom_82599;
401 1.12 msaitoh eeprom->ops.read_buffer = ixgbe_read_eeprom_buffer_82599;
402 1.6 msaitoh
403 1.6 msaitoh /* Manageability interface */
404 1.12 msaitoh mac->ops.set_fw_drv_ver = ixgbe_set_fw_drv_ver_generic;
405 1.6 msaitoh
406 1.15 msaitoh mac->ops.bypass_rw = ixgbe_bypass_rw_generic;
407 1.15 msaitoh mac->ops.bypass_valid_rd = ixgbe_bypass_valid_rd_generic;
408 1.15 msaitoh mac->ops.bypass_set = ixgbe_bypass_set_generic;
409 1.15 msaitoh mac->ops.bypass_rd_eep = ixgbe_bypass_rd_eep_generic;
410 1.6 msaitoh
411 1.12 msaitoh mac->ops.get_rtrup2tc = ixgbe_dcb_get_rtrup2tc_generic;
412 1.10 msaitoh
413 1.1 dyoung return ret_val;
414 1.1 dyoung }
415 1.1 dyoung
416 1.1 dyoung /**
417 1.26 msaitoh * ixgbe_get_link_capabilities_82599 - Determines link capabilities
418 1.26 msaitoh * @hw: pointer to hardware structure
419 1.26 msaitoh * @speed: pointer to link speed
420 1.26 msaitoh * @autoneg: TRUE when autoneg or autotry is enabled
421 1.1 dyoung *
422 1.26 msaitoh * Determines the link capabilities by reading the AUTOC register.
423 1.1 dyoung **/
424 1.1 dyoung s32 ixgbe_get_link_capabilities_82599(struct ixgbe_hw *hw,
425 1.6 msaitoh ixgbe_link_speed *speed,
426 1.9 msaitoh bool *autoneg)
427 1.1 dyoung {
428 1.1 dyoung s32 status = IXGBE_SUCCESS;
429 1.1 dyoung u32 autoc = 0;
430 1.1 dyoung
431 1.1 dyoung DEBUGFUNC("ixgbe_get_link_capabilities_82599");
432 1.1 dyoung
433 1.1 dyoung
434 1.1 dyoung /* Check if 1G SFP module. */
435 1.1 dyoung if (hw->phy.sfp_type == ixgbe_sfp_type_1g_cu_core0 ||
436 1.7 msaitoh hw->phy.sfp_type == ixgbe_sfp_type_1g_cu_core1 ||
437 1.13 msaitoh hw->phy.sfp_type == ixgbe_sfp_type_1g_lx_core0 ||
438 1.13 msaitoh hw->phy.sfp_type == ixgbe_sfp_type_1g_lx_core1 ||
439 1.7 msaitoh hw->phy.sfp_type == ixgbe_sfp_type_1g_sx_core0 ||
440 1.7 msaitoh hw->phy.sfp_type == ixgbe_sfp_type_1g_sx_core1) {
441 1.1 dyoung *speed = IXGBE_LINK_SPEED_1GB_FULL;
442 1.9 msaitoh *autoneg = TRUE;
443 1.1 dyoung goto out;
444 1.1 dyoung }
445 1.1 dyoung
446 1.1 dyoung /*
447 1.1 dyoung * Determine link capabilities based on the stored value of AUTOC,
448 1.1 dyoung * which represents EEPROM defaults. If AUTOC value has not
449 1.1 dyoung * been stored, use the current register values.
450 1.1 dyoung */
451 1.1 dyoung if (hw->mac.orig_link_settings_stored)
452 1.1 dyoung autoc = hw->mac.orig_autoc;
453 1.1 dyoung else
454 1.1 dyoung autoc = IXGBE_READ_REG(hw, IXGBE_AUTOC);
455 1.1 dyoung
456 1.1 dyoung switch (autoc & IXGBE_AUTOC_LMS_MASK) {
457 1.1 dyoung case IXGBE_AUTOC_LMS_1G_LINK_NO_AN:
458 1.1 dyoung *speed = IXGBE_LINK_SPEED_1GB_FULL;
459 1.9 msaitoh *autoneg = FALSE;
460 1.1 dyoung break;
461 1.1 dyoung
462 1.1 dyoung case IXGBE_AUTOC_LMS_10G_LINK_NO_AN:
463 1.1 dyoung *speed = IXGBE_LINK_SPEED_10GB_FULL;
464 1.9 msaitoh *autoneg = FALSE;
465 1.1 dyoung break;
466 1.1 dyoung
467 1.1 dyoung case IXGBE_AUTOC_LMS_1G_AN:
468 1.1 dyoung *speed = IXGBE_LINK_SPEED_1GB_FULL;
469 1.9 msaitoh *autoneg = TRUE;
470 1.1 dyoung break;
471 1.1 dyoung
472 1.1 dyoung case IXGBE_AUTOC_LMS_10G_SERIAL:
473 1.1 dyoung *speed = IXGBE_LINK_SPEED_10GB_FULL;
474 1.9 msaitoh *autoneg = FALSE;
475 1.1 dyoung break;
476 1.1 dyoung
477 1.1 dyoung case IXGBE_AUTOC_LMS_KX4_KX_KR:
478 1.1 dyoung case IXGBE_AUTOC_LMS_KX4_KX_KR_1G_AN:
479 1.1 dyoung *speed = IXGBE_LINK_SPEED_UNKNOWN;
480 1.1 dyoung if (autoc & IXGBE_AUTOC_KR_SUPP)
481 1.1 dyoung *speed |= IXGBE_LINK_SPEED_10GB_FULL;
482 1.1 dyoung if (autoc & IXGBE_AUTOC_KX4_SUPP)
483 1.1 dyoung *speed |= IXGBE_LINK_SPEED_10GB_FULL;
484 1.1 dyoung if (autoc & IXGBE_AUTOC_KX_SUPP)
485 1.1 dyoung *speed |= IXGBE_LINK_SPEED_1GB_FULL;
486 1.9 msaitoh *autoneg = TRUE;
487 1.1 dyoung break;
488 1.1 dyoung
489 1.1 dyoung case IXGBE_AUTOC_LMS_KX4_KX_KR_SGMII:
490 1.1 dyoung *speed = IXGBE_LINK_SPEED_100_FULL;
491 1.1 dyoung if (autoc & IXGBE_AUTOC_KR_SUPP)
492 1.1 dyoung *speed |= IXGBE_LINK_SPEED_10GB_FULL;
493 1.1 dyoung if (autoc & IXGBE_AUTOC_KX4_SUPP)
494 1.1 dyoung *speed |= IXGBE_LINK_SPEED_10GB_FULL;
495 1.1 dyoung if (autoc & IXGBE_AUTOC_KX_SUPP)
496 1.1 dyoung *speed |= IXGBE_LINK_SPEED_1GB_FULL;
497 1.9 msaitoh *autoneg = TRUE;
498 1.1 dyoung break;
499 1.1 dyoung
500 1.1 dyoung case IXGBE_AUTOC_LMS_SGMII_1G_100M:
501 1.1 dyoung *speed = IXGBE_LINK_SPEED_1GB_FULL | IXGBE_LINK_SPEED_100_FULL;
502 1.9 msaitoh *autoneg = FALSE;
503 1.1 dyoung break;
504 1.1 dyoung
505 1.1 dyoung default:
506 1.1 dyoung status = IXGBE_ERR_LINK_SETUP;
507 1.1 dyoung goto out;
508 1.1 dyoung break;
509 1.1 dyoung }
510 1.1 dyoung
511 1.1 dyoung if (hw->phy.multispeed_fiber) {
512 1.1 dyoung *speed |= IXGBE_LINK_SPEED_10GB_FULL |
513 1.6 msaitoh IXGBE_LINK_SPEED_1GB_FULL;
514 1.12 msaitoh
515 1.12 msaitoh /* QSFP must not enable full auto-negotiation
516 1.12 msaitoh * Limited autoneg is enabled at 1G
517 1.12 msaitoh */
518 1.12 msaitoh if (hw->phy.media_type == ixgbe_media_type_fiber_qsfp)
519 1.12 msaitoh *autoneg = FALSE;
520 1.12 msaitoh else
521 1.12 msaitoh *autoneg = TRUE;
522 1.1 dyoung }
523 1.1 dyoung
524 1.1 dyoung out:
525 1.1 dyoung return status;
526 1.1 dyoung }
527 1.1 dyoung
528 1.1 dyoung /**
529 1.26 msaitoh * ixgbe_get_media_type_82599 - Get media type
530 1.26 msaitoh * @hw: pointer to hardware structure
531 1.1 dyoung *
532 1.26 msaitoh * Returns the media type (fiber, copper, backplane)
533 1.1 dyoung **/
534 1.1 dyoung enum ixgbe_media_type ixgbe_get_media_type_82599(struct ixgbe_hw *hw)
535 1.1 dyoung {
536 1.1 dyoung enum ixgbe_media_type media_type;
537 1.1 dyoung
538 1.1 dyoung DEBUGFUNC("ixgbe_get_media_type_82599");
539 1.1 dyoung
540 1.1 dyoung /* Detect if there is a copper PHY attached. */
541 1.1 dyoung switch (hw->phy.type) {
542 1.1 dyoung case ixgbe_phy_cu_unknown:
543 1.1 dyoung case ixgbe_phy_tn:
544 1.1 dyoung media_type = ixgbe_media_type_copper;
545 1.1 dyoung goto out;
546 1.1 dyoung default:
547 1.1 dyoung break;
548 1.1 dyoung }
549 1.1 dyoung
550 1.1 dyoung switch (hw->device_id) {
551 1.1 dyoung case IXGBE_DEV_ID_82599_KX4:
552 1.1 dyoung case IXGBE_DEV_ID_82599_KX4_MEZZ:
553 1.1 dyoung case IXGBE_DEV_ID_82599_COMBO_BACKPLANE:
554 1.6 msaitoh case IXGBE_DEV_ID_82599_KR:
555 1.1 dyoung case IXGBE_DEV_ID_82599_BACKPLANE_FCOE:
556 1.1 dyoung case IXGBE_DEV_ID_82599_XAUI_LOM:
557 1.1 dyoung /* Default device ID is mezzanine card KX/KX4 */
558 1.1 dyoung media_type = ixgbe_media_type_backplane;
559 1.1 dyoung break;
560 1.1 dyoung case IXGBE_DEV_ID_82599_SFP:
561 1.1 dyoung case IXGBE_DEV_ID_82599_SFP_FCOE:
562 1.7 msaitoh case IXGBE_DEV_ID_82599_SFP_EM:
563 1.4 msaitoh case IXGBE_DEV_ID_82599_SFP_SF2:
564 1.5 msaitoh case IXGBE_DEV_ID_82599_SFP_SF_QP:
565 1.5 msaitoh case IXGBE_DEV_ID_82599EN_SFP:
566 1.1 dyoung media_type = ixgbe_media_type_fiber;
567 1.1 dyoung break;
568 1.1 dyoung case IXGBE_DEV_ID_82599_CX4:
569 1.1 dyoung media_type = ixgbe_media_type_cx4;
570 1.1 dyoung break;
571 1.1 dyoung case IXGBE_DEV_ID_82599_T3_LOM:
572 1.1 dyoung media_type = ixgbe_media_type_copper;
573 1.1 dyoung break;
574 1.12 msaitoh case IXGBE_DEV_ID_82599_QSFP_SF_QP:
575 1.12 msaitoh media_type = ixgbe_media_type_fiber_qsfp;
576 1.12 msaitoh break;
577 1.9 msaitoh case IXGBE_DEV_ID_82599_BYPASS:
578 1.9 msaitoh media_type = ixgbe_media_type_fiber_fixed;
579 1.9 msaitoh hw->phy.multispeed_fiber = TRUE;
580 1.9 msaitoh break;
581 1.1 dyoung default:
582 1.1 dyoung media_type = ixgbe_media_type_unknown;
583 1.1 dyoung break;
584 1.1 dyoung }
585 1.1 dyoung out:
586 1.1 dyoung return media_type;
587 1.1 dyoung }
588 1.1 dyoung
589 1.1 dyoung /**
590 1.26 msaitoh * ixgbe_stop_mac_link_on_d3_82599 - Disables link on D3
591 1.26 msaitoh * @hw: pointer to hardware structure
592 1.10 msaitoh *
593 1.26 msaitoh * Disables link during D3 power down sequence.
594 1.10 msaitoh *
595 1.10 msaitoh **/
596 1.10 msaitoh void ixgbe_stop_mac_link_on_d3_82599(struct ixgbe_hw *hw)
597 1.10 msaitoh {
598 1.10 msaitoh u32 autoc2_reg;
599 1.10 msaitoh u16 ee_ctrl_2 = 0;
600 1.10 msaitoh
601 1.10 msaitoh DEBUGFUNC("ixgbe_stop_mac_link_on_d3_82599");
602 1.10 msaitoh ixgbe_read_eeprom(hw, IXGBE_EEPROM_CTRL_2, &ee_ctrl_2);
603 1.10 msaitoh
604 1.12 msaitoh if (!ixgbe_mng_present(hw) && !hw->wol_enabled &&
605 1.12 msaitoh ee_ctrl_2 & IXGBE_EEPROM_CCD_BIT) {
606 1.10 msaitoh autoc2_reg = IXGBE_READ_REG(hw, IXGBE_AUTOC2);
607 1.10 msaitoh autoc2_reg |= IXGBE_AUTOC2_LINK_DISABLE_ON_D3_MASK;
608 1.10 msaitoh IXGBE_WRITE_REG(hw, IXGBE_AUTOC2, autoc2_reg);
609 1.10 msaitoh }
610 1.10 msaitoh }
611 1.10 msaitoh
612 1.10 msaitoh /**
613 1.26 msaitoh * ixgbe_start_mac_link_82599 - Setup MAC link settings
614 1.26 msaitoh * @hw: pointer to hardware structure
615 1.26 msaitoh * @autoneg_wait_to_complete: TRUE when waiting for completion is needed
616 1.1 dyoung *
617 1.26 msaitoh * Configures link settings based on values in the ixgbe_hw struct.
618 1.26 msaitoh * Restarts the link. Performs autonegotiation if needed.
619 1.1 dyoung **/
620 1.1 dyoung s32 ixgbe_start_mac_link_82599(struct ixgbe_hw *hw,
621 1.6 msaitoh bool autoneg_wait_to_complete)
622 1.1 dyoung {
623 1.1 dyoung u32 autoc_reg;
624 1.1 dyoung u32 links_reg;
625 1.1 dyoung u32 i;
626 1.1 dyoung s32 status = IXGBE_SUCCESS;
627 1.9 msaitoh bool got_lock = FALSE;
628 1.1 dyoung
629 1.1 dyoung DEBUGFUNC("ixgbe_start_mac_link_82599");
630 1.1 dyoung
631 1.1 dyoung
632 1.9 msaitoh /* reset_pipeline requires us to hold this lock as it writes to
633 1.9 msaitoh * AUTOC.
634 1.9 msaitoh */
635 1.9 msaitoh if (ixgbe_verify_lesm_fw_enabled_82599(hw)) {
636 1.9 msaitoh status = hw->mac.ops.acquire_swfw_sync(hw,
637 1.9 msaitoh IXGBE_GSSR_MAC_CSR_SM);
638 1.9 msaitoh if (status != IXGBE_SUCCESS)
639 1.9 msaitoh goto out;
640 1.9 msaitoh
641 1.9 msaitoh got_lock = TRUE;
642 1.9 msaitoh }
643 1.9 msaitoh
644 1.1 dyoung /* Restart link */
645 1.9 msaitoh ixgbe_reset_pipeline_82599(hw);
646 1.9 msaitoh
647 1.9 msaitoh if (got_lock)
648 1.9 msaitoh hw->mac.ops.release_swfw_sync(hw, IXGBE_GSSR_MAC_CSR_SM);
649 1.1 dyoung
650 1.1 dyoung /* Only poll for autoneg to complete if specified to do so */
651 1.1 dyoung if (autoneg_wait_to_complete) {
652 1.9 msaitoh autoc_reg = IXGBE_READ_REG(hw, IXGBE_AUTOC);
653 1.1 dyoung if ((autoc_reg & IXGBE_AUTOC_LMS_MASK) ==
654 1.1 dyoung IXGBE_AUTOC_LMS_KX4_KX_KR ||
655 1.1 dyoung (autoc_reg & IXGBE_AUTOC_LMS_MASK) ==
656 1.1 dyoung IXGBE_AUTOC_LMS_KX4_KX_KR_1G_AN ||
657 1.1 dyoung (autoc_reg & IXGBE_AUTOC_LMS_MASK) ==
658 1.1 dyoung IXGBE_AUTOC_LMS_KX4_KX_KR_SGMII) {
659 1.1 dyoung links_reg = 0; /* Just in case Autoneg time = 0 */
660 1.1 dyoung for (i = 0; i < IXGBE_AUTO_NEG_TIME; i++) {
661 1.1 dyoung links_reg = IXGBE_READ_REG(hw, IXGBE_LINKS);
662 1.1 dyoung if (links_reg & IXGBE_LINKS_KX_AN_COMP)
663 1.1 dyoung break;
664 1.1 dyoung msec_delay(100);
665 1.1 dyoung }
666 1.1 dyoung if (!(links_reg & IXGBE_LINKS_KX_AN_COMP)) {
667 1.1 dyoung status = IXGBE_ERR_AUTONEG_NOT_COMPLETE;
668 1.1 dyoung DEBUGOUT("Autoneg did not complete.\n");
669 1.1 dyoung }
670 1.1 dyoung }
671 1.1 dyoung }
672 1.1 dyoung
673 1.1 dyoung /* Add delay to filter out noises during initial link setup */
674 1.1 dyoung msec_delay(50);
675 1.1 dyoung
676 1.9 msaitoh out:
677 1.1 dyoung return status;
678 1.1 dyoung }
679 1.1 dyoung
680 1.1 dyoung /**
681 1.26 msaitoh * ixgbe_disable_tx_laser_multispeed_fiber - Disable Tx laser
682 1.26 msaitoh * @hw: pointer to hardware structure
683 1.1 dyoung *
684 1.26 msaitoh * The base drivers may require better control over SFP+ module
685 1.26 msaitoh * PHY states. This includes selectively shutting down the Tx
686 1.26 msaitoh * laser on the PHY, effectively halting physical link.
687 1.1 dyoung **/
688 1.1 dyoung void ixgbe_disable_tx_laser_multispeed_fiber(struct ixgbe_hw *hw)
689 1.1 dyoung {
690 1.1 dyoung u32 esdp_reg = IXGBE_READ_REG(hw, IXGBE_ESDP);
691 1.1 dyoung
692 1.12 msaitoh /* Blocked by MNG FW so bail */
693 1.12 msaitoh if (ixgbe_check_reset_blocked(hw))
694 1.12 msaitoh return;
695 1.12 msaitoh
696 1.12 msaitoh /* Disable Tx laser; allow 100us to go dark per spec */
697 1.1 dyoung esdp_reg |= IXGBE_ESDP_SDP3;
698 1.1 dyoung IXGBE_WRITE_REG(hw, IXGBE_ESDP, esdp_reg);
699 1.1 dyoung IXGBE_WRITE_FLUSH(hw);
700 1.1 dyoung usec_delay(100);
701 1.1 dyoung }
702 1.1 dyoung
703 1.1 dyoung /**
704 1.26 msaitoh * ixgbe_enable_tx_laser_multispeed_fiber - Enable Tx laser
705 1.26 msaitoh * @hw: pointer to hardware structure
706 1.1 dyoung *
707 1.26 msaitoh * The base drivers may require better control over SFP+ module
708 1.26 msaitoh * PHY states. This includes selectively turning on the Tx
709 1.26 msaitoh * laser on the PHY, effectively starting physical link.
710 1.1 dyoung **/
711 1.1 dyoung void ixgbe_enable_tx_laser_multispeed_fiber(struct ixgbe_hw *hw)
712 1.1 dyoung {
713 1.1 dyoung u32 esdp_reg = IXGBE_READ_REG(hw, IXGBE_ESDP);
714 1.1 dyoung
715 1.12 msaitoh /* Enable Tx laser; allow 100ms to light up */
716 1.1 dyoung esdp_reg &= ~IXGBE_ESDP_SDP3;
717 1.1 dyoung IXGBE_WRITE_REG(hw, IXGBE_ESDP, esdp_reg);
718 1.1 dyoung IXGBE_WRITE_FLUSH(hw);
719 1.1 dyoung msec_delay(100);
720 1.1 dyoung }
721 1.1 dyoung
722 1.1 dyoung /**
723 1.26 msaitoh * ixgbe_flap_tx_laser_multispeed_fiber - Flap Tx laser
724 1.26 msaitoh * @hw: pointer to hardware structure
725 1.1 dyoung *
726 1.26 msaitoh * When the driver changes the link speeds that it can support,
727 1.26 msaitoh * it sets autotry_restart to TRUE to indicate that we need to
728 1.26 msaitoh * initiate a new autotry session with the link partner. To do
729 1.26 msaitoh * so, we set the speed then disable and re-enable the Tx laser, to
730 1.26 msaitoh * alert the link partner that it also needs to restart autotry on its
731 1.26 msaitoh * end. This is consistent with TRUE clause 37 autoneg, which also
732 1.26 msaitoh * involves a loss of signal.
733 1.1 dyoung **/
734 1.1 dyoung void ixgbe_flap_tx_laser_multispeed_fiber(struct ixgbe_hw *hw)
735 1.1 dyoung {
736 1.1 dyoung DEBUGFUNC("ixgbe_flap_tx_laser_multispeed_fiber");
737 1.1 dyoung
738 1.12 msaitoh /* Blocked by MNG FW so bail */
739 1.12 msaitoh if (ixgbe_check_reset_blocked(hw))
740 1.12 msaitoh return;
741 1.12 msaitoh
742 1.1 dyoung if (hw->mac.autotry_restart) {
743 1.1 dyoung ixgbe_disable_tx_laser_multispeed_fiber(hw);
744 1.1 dyoung ixgbe_enable_tx_laser_multispeed_fiber(hw);
745 1.1 dyoung hw->mac.autotry_restart = FALSE;
746 1.1 dyoung }
747 1.1 dyoung }
748 1.1 dyoung
749 1.1 dyoung /**
750 1.26 msaitoh * ixgbe_set_hard_rate_select_speed - Set module link speed
751 1.26 msaitoh * @hw: pointer to hardware structure
752 1.26 msaitoh * @speed: link speed to set
753 1.9 msaitoh *
754 1.26 msaitoh * Set module link speed via RS0/RS1 rate select pins.
755 1.9 msaitoh */
756 1.12 msaitoh void ixgbe_set_hard_rate_select_speed(struct ixgbe_hw *hw,
757 1.9 msaitoh ixgbe_link_speed speed)
758 1.9 msaitoh {
759 1.12 msaitoh u32 esdp_reg = IXGBE_READ_REG(hw, IXGBE_ESDP);
760 1.9 msaitoh
761 1.9 msaitoh switch (speed) {
762 1.9 msaitoh case IXGBE_LINK_SPEED_10GB_FULL:
763 1.12 msaitoh esdp_reg |= (IXGBE_ESDP_SDP5_DIR | IXGBE_ESDP_SDP5);
764 1.9 msaitoh break;
765 1.9 msaitoh case IXGBE_LINK_SPEED_1GB_FULL:
766 1.12 msaitoh esdp_reg &= ~IXGBE_ESDP_SDP5;
767 1.12 msaitoh esdp_reg |= IXGBE_ESDP_SDP5_DIR;
768 1.9 msaitoh break;
769 1.9 msaitoh default:
770 1.9 msaitoh DEBUGOUT("Invalid fixed module speed\n");
771 1.9 msaitoh return;
772 1.9 msaitoh }
773 1.9 msaitoh
774 1.12 msaitoh IXGBE_WRITE_REG(hw, IXGBE_ESDP, esdp_reg);
775 1.12 msaitoh IXGBE_WRITE_FLUSH(hw);
776 1.1 dyoung }
777 1.1 dyoung
778 1.1 dyoung /**
779 1.26 msaitoh * ixgbe_setup_mac_link_smartspeed - Set MAC link speed using SmartSpeed
780 1.26 msaitoh * @hw: pointer to hardware structure
781 1.26 msaitoh * @speed: new link speed
782 1.26 msaitoh * @autoneg_wait_to_complete: TRUE when waiting for completion is needed
783 1.1 dyoung *
784 1.26 msaitoh * Implements the Intel SmartSpeed algorithm.
785 1.1 dyoung **/
786 1.1 dyoung s32 ixgbe_setup_mac_link_smartspeed(struct ixgbe_hw *hw,
787 1.9 msaitoh ixgbe_link_speed speed,
788 1.6 msaitoh bool autoneg_wait_to_complete)
789 1.1 dyoung {
790 1.1 dyoung s32 status = IXGBE_SUCCESS;
791 1.1 dyoung ixgbe_link_speed link_speed = IXGBE_LINK_SPEED_UNKNOWN;
792 1.1 dyoung s32 i, j;
793 1.1 dyoung bool link_up = FALSE;
794 1.1 dyoung u32 autoc_reg = IXGBE_READ_REG(hw, IXGBE_AUTOC);
795 1.1 dyoung
796 1.1 dyoung DEBUGFUNC("ixgbe_setup_mac_link_smartspeed");
797 1.1 dyoung
798 1.1 dyoung /* Set autoneg_advertised value based on input link speed */
799 1.1 dyoung hw->phy.autoneg_advertised = 0;
800 1.1 dyoung
801 1.1 dyoung if (speed & IXGBE_LINK_SPEED_10GB_FULL)
802 1.1 dyoung hw->phy.autoneg_advertised |= IXGBE_LINK_SPEED_10GB_FULL;
803 1.1 dyoung
804 1.1 dyoung if (speed & IXGBE_LINK_SPEED_1GB_FULL)
805 1.1 dyoung hw->phy.autoneg_advertised |= IXGBE_LINK_SPEED_1GB_FULL;
806 1.1 dyoung
807 1.1 dyoung if (speed & IXGBE_LINK_SPEED_100_FULL)
808 1.1 dyoung hw->phy.autoneg_advertised |= IXGBE_LINK_SPEED_100_FULL;
809 1.1 dyoung
810 1.1 dyoung /*
811 1.1 dyoung * Implement Intel SmartSpeed algorithm. SmartSpeed will reduce the
812 1.1 dyoung * autoneg advertisement if link is unable to be established at the
813 1.1 dyoung * highest negotiated rate. This can sometimes happen due to integrity
814 1.1 dyoung * issues with the physical media connection.
815 1.1 dyoung */
816 1.1 dyoung
817 1.1 dyoung /* First, try to get link with full advertisement */
818 1.1 dyoung hw->phy.smart_speed_active = FALSE;
819 1.1 dyoung for (j = 0; j < IXGBE_SMARTSPEED_MAX_RETRIES; j++) {
820 1.9 msaitoh status = ixgbe_setup_mac_link_82599(hw, speed,
821 1.1 dyoung autoneg_wait_to_complete);
822 1.1 dyoung if (status != IXGBE_SUCCESS)
823 1.1 dyoung goto out;
824 1.1 dyoung
825 1.1 dyoung /*
826 1.1 dyoung * Wait for the controller to acquire link. Per IEEE 802.3ap,
827 1.1 dyoung * Section 73.10.2, we may have to wait up to 500ms if KR is
828 1.1 dyoung * attempted, or 200ms if KX/KX4/BX/BX4 is attempted, per
829 1.1 dyoung * Table 9 in the AN MAS.
830 1.1 dyoung */
831 1.1 dyoung for (i = 0; i < 5; i++) {
832 1.1 dyoung msec_delay(100);
833 1.1 dyoung
834 1.1 dyoung /* If we have link, just jump out */
835 1.1 dyoung status = ixgbe_check_link(hw, &link_speed, &link_up,
836 1.1 dyoung FALSE);
837 1.1 dyoung if (status != IXGBE_SUCCESS)
838 1.1 dyoung goto out;
839 1.1 dyoung
840 1.1 dyoung if (link_up)
841 1.1 dyoung goto out;
842 1.1 dyoung }
843 1.1 dyoung }
844 1.1 dyoung
845 1.1 dyoung /*
846 1.1 dyoung * We didn't get link. If we advertised KR plus one of KX4/KX
847 1.1 dyoung * (or BX4/BX), then disable KR and try again.
848 1.1 dyoung */
849 1.1 dyoung if (((autoc_reg & IXGBE_AUTOC_KR_SUPP) == 0) ||
850 1.1 dyoung ((autoc_reg & IXGBE_AUTOC_KX4_KX_SUPP_MASK) == 0))
851 1.1 dyoung goto out;
852 1.1 dyoung
853 1.1 dyoung /* Turn SmartSpeed on to disable KR support */
854 1.1 dyoung hw->phy.smart_speed_active = TRUE;
855 1.9 msaitoh status = ixgbe_setup_mac_link_82599(hw, speed,
856 1.1 dyoung autoneg_wait_to_complete);
857 1.1 dyoung if (status != IXGBE_SUCCESS)
858 1.1 dyoung goto out;
859 1.1 dyoung
860 1.1 dyoung /*
861 1.1 dyoung * Wait for the controller to acquire link. 600ms will allow for
862 1.1 dyoung * the AN link_fail_inhibit_timer as well for multiple cycles of
863 1.1 dyoung * parallel detect, both 10g and 1g. This allows for the maximum
864 1.1 dyoung * connect attempts as defined in the AN MAS table 73-7.
865 1.1 dyoung */
866 1.1 dyoung for (i = 0; i < 6; i++) {
867 1.1 dyoung msec_delay(100);
868 1.1 dyoung
869 1.1 dyoung /* If we have link, just jump out */
870 1.1 dyoung status = ixgbe_check_link(hw, &link_speed, &link_up, FALSE);
871 1.1 dyoung if (status != IXGBE_SUCCESS)
872 1.1 dyoung goto out;
873 1.1 dyoung
874 1.1 dyoung if (link_up)
875 1.1 dyoung goto out;
876 1.1 dyoung }
877 1.1 dyoung
878 1.1 dyoung /* We didn't get link. Turn SmartSpeed back off. */
879 1.1 dyoung hw->phy.smart_speed_active = FALSE;
880 1.9 msaitoh status = ixgbe_setup_mac_link_82599(hw, speed,
881 1.1 dyoung autoneg_wait_to_complete);
882 1.1 dyoung
883 1.1 dyoung out:
884 1.1 dyoung if (link_up && (link_speed == IXGBE_LINK_SPEED_1GB_FULL))
885 1.1 dyoung DEBUGOUT("Smartspeed has downgraded the link speed "
886 1.1 dyoung "from the maximum advertised\n");
887 1.1 dyoung return status;
888 1.1 dyoung }
889 1.1 dyoung
890 1.1 dyoung /**
891 1.26 msaitoh * ixgbe_setup_mac_link_82599 - Set MAC link speed
892 1.26 msaitoh * @hw: pointer to hardware structure
893 1.26 msaitoh * @speed: new link speed
894 1.26 msaitoh * @autoneg_wait_to_complete: TRUE when waiting for completion is needed
895 1.1 dyoung *
896 1.26 msaitoh * Set the link speed in the AUTOC register and restarts link.
897 1.1 dyoung **/
898 1.1 dyoung s32 ixgbe_setup_mac_link_82599(struct ixgbe_hw *hw,
899 1.9 msaitoh ixgbe_link_speed speed,
900 1.6 msaitoh bool autoneg_wait_to_complete)
901 1.1 dyoung {
902 1.9 msaitoh bool autoneg = FALSE;
903 1.1 dyoung s32 status = IXGBE_SUCCESS;
904 1.12 msaitoh u32 pma_pmd_1g, link_mode;
905 1.12 msaitoh u32 current_autoc = IXGBE_READ_REG(hw, IXGBE_AUTOC); /* holds the value of AUTOC register at this current point in time */
906 1.12 msaitoh u32 orig_autoc = 0; /* holds the cached value of AUTOC register */
907 1.12 msaitoh u32 autoc = current_autoc; /* Temporary variable used for comparison purposes */
908 1.1 dyoung u32 autoc2 = IXGBE_READ_REG(hw, IXGBE_AUTOC2);
909 1.1 dyoung u32 pma_pmd_10g_serial = autoc2 & IXGBE_AUTOC2_10G_SERIAL_PMA_PMD_MASK;
910 1.1 dyoung u32 links_reg;
911 1.1 dyoung u32 i;
912 1.1 dyoung ixgbe_link_speed link_capabilities = IXGBE_LINK_SPEED_UNKNOWN;
913 1.1 dyoung
914 1.1 dyoung DEBUGFUNC("ixgbe_setup_mac_link_82599");
915 1.1 dyoung
916 1.1 dyoung /* Check to see if speed passed in is supported. */
917 1.1 dyoung status = ixgbe_get_link_capabilities(hw, &link_capabilities, &autoneg);
918 1.9 msaitoh if (status)
919 1.1 dyoung goto out;
920 1.1 dyoung
921 1.1 dyoung speed &= link_capabilities;
922 1.1 dyoung
923 1.17 msaitoh if (speed == 0) {
924 1.17 msaitoh ixgbe_disable_tx_laser(hw); /* For fiber */
925 1.17 msaitoh ixgbe_set_phy_power(hw, false); /* For copper */
926 1.17 msaitoh } else {
927 1.17 msaitoh /* In case previous media setting was none(down) */
928 1.17 msaitoh ixgbe_enable_tx_laser(hw); /* for Fiber */
929 1.17 msaitoh ixgbe_set_phy_power(hw, true); /* For copper */
930 1.1 dyoung }
931 1.1 dyoung
932 1.1 dyoung /* Use stored value (EEPROM defaults) of AUTOC to find KR/KX4 support*/
933 1.1 dyoung if (hw->mac.orig_link_settings_stored)
934 1.12 msaitoh orig_autoc = hw->mac.orig_autoc;
935 1.1 dyoung else
936 1.12 msaitoh orig_autoc = autoc;
937 1.9 msaitoh
938 1.9 msaitoh link_mode = autoc & IXGBE_AUTOC_LMS_MASK;
939 1.9 msaitoh pma_pmd_1g = autoc & IXGBE_AUTOC_1G_PMA_PMD_MASK;
940 1.1 dyoung
941 1.1 dyoung if (link_mode == IXGBE_AUTOC_LMS_KX4_KX_KR ||
942 1.1 dyoung link_mode == IXGBE_AUTOC_LMS_KX4_KX_KR_1G_AN ||
943 1.1 dyoung link_mode == IXGBE_AUTOC_LMS_KX4_KX_KR_SGMII) {
944 1.1 dyoung /* Set KX4/KX/KR support according to speed requested */
945 1.1 dyoung autoc &= ~(IXGBE_AUTOC_KX4_KX_SUPP_MASK | IXGBE_AUTOC_KR_SUPP);
946 1.8 msaitoh if (speed & IXGBE_LINK_SPEED_10GB_FULL) {
947 1.1 dyoung if (orig_autoc & IXGBE_AUTOC_KX4_SUPP)
948 1.1 dyoung autoc |= IXGBE_AUTOC_KX4_SUPP;
949 1.1 dyoung if ((orig_autoc & IXGBE_AUTOC_KR_SUPP) &&
950 1.1 dyoung (hw->phy.smart_speed_active == FALSE))
951 1.1 dyoung autoc |= IXGBE_AUTOC_KR_SUPP;
952 1.8 msaitoh }
953 1.1 dyoung if (speed & IXGBE_LINK_SPEED_1GB_FULL)
954 1.1 dyoung autoc |= IXGBE_AUTOC_KX_SUPP;
955 1.1 dyoung } else if ((pma_pmd_1g == IXGBE_AUTOC_1G_SFI) &&
956 1.6 msaitoh (link_mode == IXGBE_AUTOC_LMS_1G_LINK_NO_AN ||
957 1.6 msaitoh link_mode == IXGBE_AUTOC_LMS_1G_AN)) {
958 1.1 dyoung /* Switch from 1G SFI to 10G SFI if requested */
959 1.1 dyoung if ((speed == IXGBE_LINK_SPEED_10GB_FULL) &&
960 1.1 dyoung (pma_pmd_10g_serial == IXGBE_AUTOC2_10G_SFI)) {
961 1.1 dyoung autoc &= ~IXGBE_AUTOC_LMS_MASK;
962 1.1 dyoung autoc |= IXGBE_AUTOC_LMS_10G_SERIAL;
963 1.1 dyoung }
964 1.1 dyoung } else if ((pma_pmd_10g_serial == IXGBE_AUTOC2_10G_SFI) &&
965 1.6 msaitoh (link_mode == IXGBE_AUTOC_LMS_10G_SERIAL)) {
966 1.1 dyoung /* Switch from 10G SFI to 1G SFI if requested */
967 1.1 dyoung if ((speed == IXGBE_LINK_SPEED_1GB_FULL) &&
968 1.1 dyoung (pma_pmd_1g == IXGBE_AUTOC_1G_SFI)) {
969 1.1 dyoung autoc &= ~IXGBE_AUTOC_LMS_MASK;
970 1.12 msaitoh if (autoneg || hw->phy.type == ixgbe_phy_qsfp_intel)
971 1.1 dyoung autoc |= IXGBE_AUTOC_LMS_1G_AN;
972 1.1 dyoung else
973 1.1 dyoung autoc |= IXGBE_AUTOC_LMS_1G_LINK_NO_AN;
974 1.1 dyoung }
975 1.1 dyoung }
976 1.1 dyoung
977 1.12 msaitoh if (autoc != current_autoc) {
978 1.1 dyoung /* Restart link */
979 1.12 msaitoh status = hw->mac.ops.prot_autoc_write(hw, autoc, FALSE);
980 1.12 msaitoh if (status != IXGBE_SUCCESS)
981 1.12 msaitoh goto out;
982 1.1 dyoung
983 1.1 dyoung /* Only poll for autoneg to complete if specified to do so */
984 1.1 dyoung if (autoneg_wait_to_complete) {
985 1.1 dyoung if (link_mode == IXGBE_AUTOC_LMS_KX4_KX_KR ||
986 1.1 dyoung link_mode == IXGBE_AUTOC_LMS_KX4_KX_KR_1G_AN ||
987 1.1 dyoung link_mode == IXGBE_AUTOC_LMS_KX4_KX_KR_SGMII) {
988 1.1 dyoung links_reg = 0; /*Just in case Autoneg time=0*/
989 1.1 dyoung for (i = 0; i < IXGBE_AUTO_NEG_TIME; i++) {
990 1.1 dyoung links_reg =
991 1.1 dyoung IXGBE_READ_REG(hw, IXGBE_LINKS);
992 1.1 dyoung if (links_reg & IXGBE_LINKS_KX_AN_COMP)
993 1.1 dyoung break;
994 1.1 dyoung msec_delay(100);
995 1.1 dyoung }
996 1.1 dyoung if (!(links_reg & IXGBE_LINKS_KX_AN_COMP)) {
997 1.1 dyoung status =
998 1.1 dyoung IXGBE_ERR_AUTONEG_NOT_COMPLETE;
999 1.1 dyoung DEBUGOUT("Autoneg did not complete.\n");
1000 1.1 dyoung }
1001 1.1 dyoung }
1002 1.1 dyoung }
1003 1.1 dyoung
1004 1.1 dyoung /* Add delay to filter out noises during initial link setup */
1005 1.1 dyoung msec_delay(50);
1006 1.1 dyoung }
1007 1.1 dyoung
1008 1.1 dyoung out:
1009 1.1 dyoung return status;
1010 1.1 dyoung }
1011 1.1 dyoung
1012 1.1 dyoung /**
1013 1.26 msaitoh * ixgbe_setup_copper_link_82599 - Set the PHY autoneg advertised field
1014 1.26 msaitoh * @hw: pointer to hardware structure
1015 1.26 msaitoh * @speed: new link speed
1016 1.26 msaitoh * @autoneg_wait_to_complete: TRUE if waiting is needed to complete
1017 1.1 dyoung *
1018 1.26 msaitoh * Restarts link on PHY and MAC based on settings passed in.
1019 1.1 dyoung **/
1020 1.1 dyoung static s32 ixgbe_setup_copper_link_82599(struct ixgbe_hw *hw,
1021 1.6 msaitoh ixgbe_link_speed speed,
1022 1.6 msaitoh bool autoneg_wait_to_complete)
1023 1.1 dyoung {
1024 1.1 dyoung s32 status;
1025 1.1 dyoung
1026 1.1 dyoung DEBUGFUNC("ixgbe_setup_copper_link_82599");
1027 1.1 dyoung
1028 1.1 dyoung /* Setup the PHY according to input speed */
1029 1.9 msaitoh status = hw->phy.ops.setup_link_speed(hw, speed,
1030 1.6 msaitoh autoneg_wait_to_complete);
1031 1.1 dyoung /* Set up MAC */
1032 1.1 dyoung ixgbe_start_mac_link_82599(hw, autoneg_wait_to_complete);
1033 1.1 dyoung
1034 1.1 dyoung return status;
1035 1.1 dyoung }
1036 1.1 dyoung
1037 1.1 dyoung /**
1038 1.26 msaitoh * ixgbe_reset_hw_82599 - Perform hardware reset
1039 1.26 msaitoh * @hw: pointer to hardware structure
1040 1.1 dyoung *
1041 1.26 msaitoh * Resets the hardware by resetting the transmit and receive units, masks
1042 1.26 msaitoh * and clears all interrupts, perform a PHY reset, and perform a link (MAC)
1043 1.26 msaitoh * reset.
1044 1.1 dyoung **/
1045 1.1 dyoung s32 ixgbe_reset_hw_82599(struct ixgbe_hw *hw)
1046 1.1 dyoung {
1047 1.6 msaitoh ixgbe_link_speed link_speed;
1048 1.6 msaitoh s32 status;
1049 1.22 msaitoh s32 phy_status = IXGBE_SUCCESS;
1050 1.12 msaitoh u32 ctrl = 0;
1051 1.12 msaitoh u32 i, autoc, autoc2;
1052 1.10 msaitoh u32 curr_lms;
1053 1.6 msaitoh bool link_up = FALSE;
1054 1.1 dyoung
1055 1.1 dyoung DEBUGFUNC("ixgbe_reset_hw_82599");
1056 1.1 dyoung
1057 1.1 dyoung /* Call adapter stop to disable tx/rx and clear interrupts */
1058 1.6 msaitoh status = hw->mac.ops.stop_adapter(hw);
1059 1.6 msaitoh if (status != IXGBE_SUCCESS)
1060 1.6 msaitoh goto reset_hw_out;
1061 1.6 msaitoh
1062 1.6 msaitoh /* flush pending Tx transactions */
1063 1.6 msaitoh ixgbe_clear_tx_pending(hw);
1064 1.1 dyoung
1065 1.1 dyoung /* PHY ops must be identified and initialized prior to reset */
1066 1.1 dyoung
1067 1.1 dyoung /* Identify PHY and related function pointers */
1068 1.22 msaitoh phy_status = hw->phy.ops.init(hw);
1069 1.1 dyoung
1070 1.22 msaitoh if (phy_status == IXGBE_ERR_SFP_NOT_SUPPORTED)
1071 1.22 msaitoh goto mac_reset_top;
1072 1.1 dyoung
1073 1.1 dyoung /* Setup SFP module if there is one present. */
1074 1.1 dyoung if (hw->phy.sfp_setup_needed) {
1075 1.22 msaitoh phy_status = hw->mac.ops.setup_sfp(hw);
1076 1.1 dyoung hw->phy.sfp_setup_needed = FALSE;
1077 1.1 dyoung }
1078 1.1 dyoung
1079 1.22 msaitoh if (phy_status == IXGBE_ERR_SFP_NOT_SUPPORTED)
1080 1.22 msaitoh goto mac_reset_top;
1081 1.1 dyoung
1082 1.1 dyoung /* Reset PHY */
1083 1.1 dyoung if (hw->phy.reset_disable == FALSE && hw->phy.ops.reset != NULL)
1084 1.1 dyoung hw->phy.ops.reset(hw);
1085 1.1 dyoung
1086 1.22 msaitoh mac_reset_top:
1087 1.10 msaitoh /* remember AUTOC from before we reset */
1088 1.12 msaitoh curr_lms = IXGBE_READ_REG(hw, IXGBE_AUTOC) & IXGBE_AUTOC_LMS_MASK;
1089 1.10 msaitoh
1090 1.22 msaitoh mac_reset_retry:
1091 1.1 dyoung /*
1092 1.6 msaitoh * Issue global reset to the MAC. Needs to be SW reset if link is up.
1093 1.6 msaitoh * If link reset is used when link is up, it might reset the PHY when
1094 1.6 msaitoh * mng is using it. If link is down or the flag to force full link
1095 1.6 msaitoh * reset is set, then perform link reset.
1096 1.6 msaitoh */
1097 1.6 msaitoh ctrl = IXGBE_CTRL_LNK_RST;
1098 1.6 msaitoh if (!hw->force_full_reset) {
1099 1.6 msaitoh hw->mac.ops.check_link(hw, &link_speed, &link_up, FALSE);
1100 1.6 msaitoh if (link_up)
1101 1.6 msaitoh ctrl = IXGBE_CTRL_RST;
1102 1.6 msaitoh }
1103 1.1 dyoung
1104 1.6 msaitoh ctrl |= IXGBE_READ_REG(hw, IXGBE_CTRL);
1105 1.6 msaitoh IXGBE_WRITE_REG(hw, IXGBE_CTRL, ctrl);
1106 1.1 dyoung IXGBE_WRITE_FLUSH(hw);
1107 1.1 dyoung
1108 1.12 msaitoh /* Poll for reset bit to self-clear meaning reset is complete */
1109 1.1 dyoung for (i = 0; i < 10; i++) {
1110 1.1 dyoung usec_delay(1);
1111 1.1 dyoung ctrl = IXGBE_READ_REG(hw, IXGBE_CTRL);
1112 1.6 msaitoh if (!(ctrl & IXGBE_CTRL_RST_MASK))
1113 1.1 dyoung break;
1114 1.1 dyoung }
1115 1.6 msaitoh
1116 1.6 msaitoh if (ctrl & IXGBE_CTRL_RST_MASK) {
1117 1.1 dyoung status = IXGBE_ERR_RESET_FAILED;
1118 1.1 dyoung DEBUGOUT("Reset polling failed to complete.\n");
1119 1.1 dyoung }
1120 1.1 dyoung
1121 1.6 msaitoh msec_delay(50);
1122 1.6 msaitoh
1123 1.1 dyoung /*
1124 1.1 dyoung * Double resets are required for recovery from certain error
1125 1.12 msaitoh * conditions. Between resets, it is necessary to stall to
1126 1.12 msaitoh * allow time for any pending HW events to complete.
1127 1.1 dyoung */
1128 1.1 dyoung if (hw->mac.flags & IXGBE_FLAGS_DOUBLE_RESET_REQUIRED) {
1129 1.1 dyoung hw->mac.flags &= ~IXGBE_FLAGS_DOUBLE_RESET_REQUIRED;
1130 1.22 msaitoh goto mac_reset_retry;
1131 1.1 dyoung }
1132 1.1 dyoung
1133 1.1 dyoung /*
1134 1.1 dyoung * Store the original AUTOC/AUTOC2 values if they have not been
1135 1.1 dyoung * stored off yet. Otherwise restore the stored original
1136 1.1 dyoung * values since the reset operation sets back to defaults.
1137 1.1 dyoung */
1138 1.12 msaitoh autoc = IXGBE_READ_REG(hw, IXGBE_AUTOC);
1139 1.1 dyoung autoc2 = IXGBE_READ_REG(hw, IXGBE_AUTOC2);
1140 1.9 msaitoh
1141 1.9 msaitoh /* Enable link if disabled in NVM */
1142 1.9 msaitoh if (autoc2 & IXGBE_AUTOC2_LINK_DISABLE_MASK) {
1143 1.9 msaitoh autoc2 &= ~IXGBE_AUTOC2_LINK_DISABLE_MASK;
1144 1.9 msaitoh IXGBE_WRITE_REG(hw, IXGBE_AUTOC2, autoc2);
1145 1.9 msaitoh IXGBE_WRITE_FLUSH(hw);
1146 1.9 msaitoh }
1147 1.9 msaitoh
1148 1.1 dyoung if (hw->mac.orig_link_settings_stored == FALSE) {
1149 1.12 msaitoh hw->mac.orig_autoc = autoc;
1150 1.1 dyoung hw->mac.orig_autoc2 = autoc2;
1151 1.1 dyoung hw->mac.orig_link_settings_stored = TRUE;
1152 1.1 dyoung } else {
1153 1.10 msaitoh
1154 1.10 msaitoh /* If MNG FW is running on a multi-speed device that
1155 1.10 msaitoh * doesn't autoneg with out driver support we need to
1156 1.10 msaitoh * leave LMS in the state it was before we MAC reset.
1157 1.10 msaitoh * Likewise if we support WoL we don't want change the
1158 1.10 msaitoh * LMS state.
1159 1.10 msaitoh */
1160 1.12 msaitoh if ((hw->phy.multispeed_fiber && ixgbe_mng_enabled(hw)) ||
1161 1.10 msaitoh hw->wol_enabled)
1162 1.10 msaitoh hw->mac.orig_autoc =
1163 1.10 msaitoh (hw->mac.orig_autoc & ~IXGBE_AUTOC_LMS_MASK) |
1164 1.10 msaitoh curr_lms;
1165 1.10 msaitoh
1166 1.12 msaitoh if (autoc != hw->mac.orig_autoc) {
1167 1.12 msaitoh status = hw->mac.ops.prot_autoc_write(hw,
1168 1.12 msaitoh hw->mac.orig_autoc,
1169 1.12 msaitoh FALSE);
1170 1.12 msaitoh if (status != IXGBE_SUCCESS)
1171 1.12 msaitoh goto reset_hw_out;
1172 1.9 msaitoh }
1173 1.1 dyoung
1174 1.1 dyoung if ((autoc2 & IXGBE_AUTOC2_UPPER_MASK) !=
1175 1.1 dyoung (hw->mac.orig_autoc2 & IXGBE_AUTOC2_UPPER_MASK)) {
1176 1.1 dyoung autoc2 &= ~IXGBE_AUTOC2_UPPER_MASK;
1177 1.1 dyoung autoc2 |= (hw->mac.orig_autoc2 &
1178 1.6 msaitoh IXGBE_AUTOC2_UPPER_MASK);
1179 1.1 dyoung IXGBE_WRITE_REG(hw, IXGBE_AUTOC2, autoc2);
1180 1.1 dyoung }
1181 1.1 dyoung }
1182 1.1 dyoung
1183 1.1 dyoung /* Store the permanent mac address */
1184 1.1 dyoung hw->mac.ops.get_mac_addr(hw, hw->mac.perm_addr);
1185 1.1 dyoung
1186 1.1 dyoung /*
1187 1.1 dyoung * Store MAC address from RAR0, clear receive address registers, and
1188 1.1 dyoung * clear the multicast table. Also reset num_rar_entries to 128,
1189 1.1 dyoung * since we modify this value when programming the SAN MAC address.
1190 1.1 dyoung */
1191 1.1 dyoung hw->mac.num_rar_entries = 128;
1192 1.1 dyoung hw->mac.ops.init_rx_addrs(hw);
1193 1.1 dyoung
1194 1.1 dyoung /* Store the permanent SAN mac address */
1195 1.1 dyoung hw->mac.ops.get_san_mac_addr(hw, hw->mac.san_addr);
1196 1.1 dyoung
1197 1.1 dyoung /* Add the SAN MAC address to the RAR only if it's a valid address */
1198 1.1 dyoung if (ixgbe_validate_mac_addr(hw->mac.san_addr) == 0) {
1199 1.15 msaitoh /* Save the SAN MAC RAR index */
1200 1.15 msaitoh hw->mac.san_mac_rar_index = hw->mac.num_rar_entries - 1;
1201 1.15 msaitoh
1202 1.15 msaitoh hw->mac.ops.set_rar(hw, hw->mac.san_mac_rar_index,
1203 1.6 msaitoh hw->mac.san_addr, 0, IXGBE_RAH_AV);
1204 1.1 dyoung
1205 1.15 msaitoh /* clear VMDq pool/queue selection for this RAR */
1206 1.15 msaitoh hw->mac.ops.clear_vmdq(hw, hw->mac.san_mac_rar_index,
1207 1.15 msaitoh IXGBE_CLEAR_VMDQ_ALL);
1208 1.7 msaitoh
1209 1.1 dyoung /* Reserve the last RAR for the SAN MAC address */
1210 1.1 dyoung hw->mac.num_rar_entries--;
1211 1.1 dyoung }
1212 1.1 dyoung
1213 1.1 dyoung /* Store the alternative WWNN/WWPN prefix */
1214 1.1 dyoung hw->mac.ops.get_wwn_prefix(hw, &hw->mac.wwnn_prefix,
1215 1.6 msaitoh &hw->mac.wwpn_prefix);
1216 1.1 dyoung
1217 1.1 dyoung reset_hw_out:
1218 1.22 msaitoh if (phy_status != IXGBE_SUCCESS)
1219 1.22 msaitoh status = phy_status;
1220 1.22 msaitoh
1221 1.1 dyoung return status;
1222 1.1 dyoung }
1223 1.1 dyoung
1224 1.1 dyoung /**
1225 1.12 msaitoh * ixgbe_fdir_check_cmd_complete - poll to check whether FDIRCMD is complete
1226 1.12 msaitoh * @hw: pointer to hardware structure
1227 1.12 msaitoh * @fdircmd: current value of FDIRCMD register
1228 1.12 msaitoh */
1229 1.12 msaitoh static s32 ixgbe_fdir_check_cmd_complete(struct ixgbe_hw *hw, u32 *fdircmd)
1230 1.12 msaitoh {
1231 1.12 msaitoh int i;
1232 1.12 msaitoh
1233 1.12 msaitoh for (i = 0; i < IXGBE_FDIRCMD_CMD_POLL; i++) {
1234 1.12 msaitoh *fdircmd = IXGBE_READ_REG(hw, IXGBE_FDIRCMD);
1235 1.12 msaitoh if (!(*fdircmd & IXGBE_FDIRCMD_CMD_MASK))
1236 1.12 msaitoh return IXGBE_SUCCESS;
1237 1.12 msaitoh usec_delay(10);
1238 1.12 msaitoh }
1239 1.12 msaitoh
1240 1.12 msaitoh return IXGBE_ERR_FDIR_CMD_INCOMPLETE;
1241 1.12 msaitoh }
1242 1.12 msaitoh
1243 1.12 msaitoh /**
1244 1.26 msaitoh * ixgbe_reinit_fdir_tables_82599 - Reinitialize Flow Director tables.
1245 1.26 msaitoh * @hw: pointer to hardware structure
1246 1.1 dyoung **/
1247 1.1 dyoung s32 ixgbe_reinit_fdir_tables_82599(struct ixgbe_hw *hw)
1248 1.1 dyoung {
1249 1.12 msaitoh s32 err;
1250 1.1 dyoung int i;
1251 1.1 dyoung u32 fdirctrl = IXGBE_READ_REG(hw, IXGBE_FDIRCTRL);
1252 1.12 msaitoh u32 fdircmd;
1253 1.1 dyoung fdirctrl &= ~IXGBE_FDIRCTRL_INIT_DONE;
1254 1.1 dyoung
1255 1.1 dyoung DEBUGFUNC("ixgbe_reinit_fdir_tables_82599");
1256 1.1 dyoung
1257 1.1 dyoung /*
1258 1.1 dyoung * Before starting reinitialization process,
1259 1.1 dyoung * FDIRCMD.CMD must be zero.
1260 1.1 dyoung */
1261 1.12 msaitoh err = ixgbe_fdir_check_cmd_complete(hw, &fdircmd);
1262 1.12 msaitoh if (err) {
1263 1.12 msaitoh DEBUGOUT("Flow Director previous command did not complete, aborting table re-initialization.\n");
1264 1.12 msaitoh return err;
1265 1.1 dyoung }
1266 1.1 dyoung
1267 1.1 dyoung IXGBE_WRITE_REG(hw, IXGBE_FDIRFREE, 0);
1268 1.1 dyoung IXGBE_WRITE_FLUSH(hw);
1269 1.1 dyoung /*
1270 1.1 dyoung * 82599 adapters flow director init flow cannot be restarted,
1271 1.1 dyoung * Workaround 82599 silicon errata by performing the following steps
1272 1.1 dyoung * before re-writing the FDIRCTRL control register with the same value.
1273 1.1 dyoung * - write 1 to bit 8 of FDIRCMD register &
1274 1.1 dyoung * - write 0 to bit 8 of FDIRCMD register
1275 1.1 dyoung */
1276 1.1 dyoung IXGBE_WRITE_REG(hw, IXGBE_FDIRCMD,
1277 1.6 msaitoh (IXGBE_READ_REG(hw, IXGBE_FDIRCMD) |
1278 1.6 msaitoh IXGBE_FDIRCMD_CLEARHT));
1279 1.1 dyoung IXGBE_WRITE_FLUSH(hw);
1280 1.1 dyoung IXGBE_WRITE_REG(hw, IXGBE_FDIRCMD,
1281 1.6 msaitoh (IXGBE_READ_REG(hw, IXGBE_FDIRCMD) &
1282 1.6 msaitoh ~IXGBE_FDIRCMD_CLEARHT));
1283 1.1 dyoung IXGBE_WRITE_FLUSH(hw);
1284 1.1 dyoung /*
1285 1.1 dyoung * Clear FDIR Hash register to clear any leftover hashes
1286 1.1 dyoung * waiting to be programmed.
1287 1.1 dyoung */
1288 1.1 dyoung IXGBE_WRITE_REG(hw, IXGBE_FDIRHASH, 0x00);
1289 1.1 dyoung IXGBE_WRITE_FLUSH(hw);
1290 1.1 dyoung
1291 1.1 dyoung IXGBE_WRITE_REG(hw, IXGBE_FDIRCTRL, fdirctrl);
1292 1.1 dyoung IXGBE_WRITE_FLUSH(hw);
1293 1.1 dyoung
1294 1.1 dyoung /* Poll init-done after we write FDIRCTRL register */
1295 1.1 dyoung for (i = 0; i < IXGBE_FDIR_INIT_DONE_POLL; i++) {
1296 1.1 dyoung if (IXGBE_READ_REG(hw, IXGBE_FDIRCTRL) &
1297 1.6 msaitoh IXGBE_FDIRCTRL_INIT_DONE)
1298 1.1 dyoung break;
1299 1.9 msaitoh msec_delay(1);
1300 1.1 dyoung }
1301 1.1 dyoung if (i >= IXGBE_FDIR_INIT_DONE_POLL) {
1302 1.1 dyoung DEBUGOUT("Flow Director Signature poll time exceeded!\n");
1303 1.1 dyoung return IXGBE_ERR_FDIR_REINIT_FAILED;
1304 1.1 dyoung }
1305 1.1 dyoung
1306 1.1 dyoung /* Clear FDIR statistics registers (read to clear) */
1307 1.1 dyoung IXGBE_READ_REG(hw, IXGBE_FDIRUSTAT);
1308 1.1 dyoung IXGBE_READ_REG(hw, IXGBE_FDIRFSTAT);
1309 1.1 dyoung IXGBE_READ_REG(hw, IXGBE_FDIRMATCH);
1310 1.1 dyoung IXGBE_READ_REG(hw, IXGBE_FDIRMISS);
1311 1.1 dyoung IXGBE_READ_REG(hw, IXGBE_FDIRLEN);
1312 1.1 dyoung
1313 1.1 dyoung return IXGBE_SUCCESS;
1314 1.1 dyoung }
1315 1.1 dyoung
1316 1.1 dyoung /**
1317 1.26 msaitoh * ixgbe_fdir_enable_82599 - Initialize Flow Director control registers
1318 1.26 msaitoh * @hw: pointer to hardware structure
1319 1.26 msaitoh * @fdirctrl: value to write to flow director control register
1320 1.1 dyoung **/
1321 1.6 msaitoh static void ixgbe_fdir_enable_82599(struct ixgbe_hw *hw, u32 fdirctrl)
1322 1.1 dyoung {
1323 1.1 dyoung int i;
1324 1.1 dyoung
1325 1.6 msaitoh DEBUGFUNC("ixgbe_fdir_enable_82599");
1326 1.1 dyoung
1327 1.1 dyoung /* Prime the keys for hashing */
1328 1.1 dyoung IXGBE_WRITE_REG(hw, IXGBE_FDIRHKEY, IXGBE_ATR_BUCKET_HASH_KEY);
1329 1.1 dyoung IXGBE_WRITE_REG(hw, IXGBE_FDIRSKEY, IXGBE_ATR_SIGNATURE_HASH_KEY);
1330 1.1 dyoung
1331 1.1 dyoung /*
1332 1.1 dyoung * Poll init-done after we write the register. Estimated times:
1333 1.1 dyoung * 10G: PBALLOC = 11b, timing is 60us
1334 1.1 dyoung * 1G: PBALLOC = 11b, timing is 600us
1335 1.1 dyoung * 100M: PBALLOC = 11b, timing is 6ms
1336 1.1 dyoung *
1337 1.1 dyoung * Multiple these timings by 4 if under full Rx load
1338 1.1 dyoung *
1339 1.1 dyoung * So we'll poll for IXGBE_FDIR_INIT_DONE_POLL times, sleeping for
1340 1.1 dyoung * 1 msec per poll time. If we're at line rate and drop to 100M, then
1341 1.1 dyoung * this might not finish in our poll time, but we can live with that
1342 1.1 dyoung * for now.
1343 1.1 dyoung */
1344 1.1 dyoung IXGBE_WRITE_REG(hw, IXGBE_FDIRCTRL, fdirctrl);
1345 1.1 dyoung IXGBE_WRITE_FLUSH(hw);
1346 1.1 dyoung for (i = 0; i < IXGBE_FDIR_INIT_DONE_POLL; i++) {
1347 1.1 dyoung if (IXGBE_READ_REG(hw, IXGBE_FDIRCTRL) &
1348 1.6 msaitoh IXGBE_FDIRCTRL_INIT_DONE)
1349 1.1 dyoung break;
1350 1.1 dyoung msec_delay(1);
1351 1.1 dyoung }
1352 1.6 msaitoh
1353 1.1 dyoung if (i >= IXGBE_FDIR_INIT_DONE_POLL)
1354 1.6 msaitoh DEBUGOUT("Flow Director poll time exceeded!\n");
1355 1.1 dyoung }
1356 1.1 dyoung
1357 1.1 dyoung /**
1358 1.26 msaitoh * ixgbe_init_fdir_signature_82599 - Initialize Flow Director signature filters
1359 1.26 msaitoh * @hw: pointer to hardware structure
1360 1.26 msaitoh * @fdirctrl: value to write to flow director control register, initially
1361 1.6 msaitoh * contains just the value of the Rx packet buffer allocation
1362 1.1 dyoung **/
1363 1.6 msaitoh s32 ixgbe_init_fdir_signature_82599(struct ixgbe_hw *hw, u32 fdirctrl)
1364 1.1 dyoung {
1365 1.6 msaitoh DEBUGFUNC("ixgbe_init_fdir_signature_82599");
1366 1.1 dyoung
1367 1.1 dyoung /*
1368 1.6 msaitoh * Continue setup of fdirctrl register bits:
1369 1.6 msaitoh * Move the flexible bytes to use the ethertype - shift 6 words
1370 1.6 msaitoh * Set the maximum length per hash bucket to 0xA filters
1371 1.6 msaitoh * Send interrupt when 64 filters are left
1372 1.6 msaitoh */
1373 1.6 msaitoh fdirctrl |= (0x6 << IXGBE_FDIRCTRL_FLEX_SHIFT) |
1374 1.6 msaitoh (0xA << IXGBE_FDIRCTRL_MAX_LENGTH_SHIFT) |
1375 1.6 msaitoh (4 << IXGBE_FDIRCTRL_FULL_THRESH_SHIFT);
1376 1.1 dyoung
1377 1.6 msaitoh /* write hashes and fdirctrl register, poll for completion */
1378 1.6 msaitoh ixgbe_fdir_enable_82599(hw, fdirctrl);
1379 1.1 dyoung
1380 1.1 dyoung return IXGBE_SUCCESS;
1381 1.1 dyoung }
1382 1.1 dyoung
1383 1.1 dyoung /**
1384 1.26 msaitoh * ixgbe_init_fdir_perfect_82599 - Initialize Flow Director perfect filters
1385 1.26 msaitoh * @hw: pointer to hardware structure
1386 1.26 msaitoh * @fdirctrl: value to write to flow director control register, initially
1387 1.6 msaitoh * contains just the value of the Rx packet buffer allocation
1388 1.26 msaitoh * @cloud_mode: TRUE - cloud mode, FALSE - other mode
1389 1.1 dyoung **/
1390 1.12 msaitoh s32 ixgbe_init_fdir_perfect_82599(struct ixgbe_hw *hw, u32 fdirctrl,
1391 1.12 msaitoh bool cloud_mode)
1392 1.1 dyoung {
1393 1.19 msaitoh UNREFERENCED_1PARAMETER(cloud_mode);
1394 1.6 msaitoh DEBUGFUNC("ixgbe_init_fdir_perfect_82599");
1395 1.1 dyoung
1396 1.1 dyoung /*
1397 1.6 msaitoh * Continue setup of fdirctrl register bits:
1398 1.6 msaitoh * Turn perfect match filtering on
1399 1.6 msaitoh * Report hash in RSS field of Rx wb descriptor
1400 1.14 msaitoh * Initialize the drop queue to queue 127
1401 1.6 msaitoh * Move the flexible bytes to use the ethertype - shift 6 words
1402 1.6 msaitoh * Set the maximum length per hash bucket to 0xA filters
1403 1.6 msaitoh * Send interrupt when 64 (0x4 * 16) filters are left
1404 1.6 msaitoh */
1405 1.6 msaitoh fdirctrl |= IXGBE_FDIRCTRL_PERFECT_MATCH |
1406 1.6 msaitoh IXGBE_FDIRCTRL_REPORT_STATUS |
1407 1.6 msaitoh (IXGBE_FDIR_DROP_QUEUE << IXGBE_FDIRCTRL_DROP_Q_SHIFT) |
1408 1.6 msaitoh (0x6 << IXGBE_FDIRCTRL_FLEX_SHIFT) |
1409 1.6 msaitoh (0xA << IXGBE_FDIRCTRL_MAX_LENGTH_SHIFT) |
1410 1.6 msaitoh (4 << IXGBE_FDIRCTRL_FULL_THRESH_SHIFT);
1411 1.1 dyoung
1412 1.12 msaitoh if (cloud_mode)
1413 1.12 msaitoh fdirctrl |=(IXGBE_FDIRCTRL_FILTERMODE_CLOUD <<
1414 1.12 msaitoh IXGBE_FDIRCTRL_FILTERMODE_SHIFT);
1415 1.12 msaitoh
1416 1.6 msaitoh /* write hashes and fdirctrl register, poll for completion */
1417 1.6 msaitoh ixgbe_fdir_enable_82599(hw, fdirctrl);
1418 1.1 dyoung
1419 1.6 msaitoh return IXGBE_SUCCESS;
1420 1.1 dyoung }
1421 1.1 dyoung
1422 1.14 msaitoh /**
1423 1.26 msaitoh * ixgbe_set_fdir_drop_queue_82599 - Set Flow Director drop queue
1424 1.26 msaitoh * @hw: pointer to hardware structure
1425 1.26 msaitoh * @dropqueue: Rx queue index used for the dropped packets
1426 1.14 msaitoh **/
1427 1.14 msaitoh void ixgbe_set_fdir_drop_queue_82599(struct ixgbe_hw *hw, u8 dropqueue)
1428 1.14 msaitoh {
1429 1.14 msaitoh u32 fdirctrl;
1430 1.14 msaitoh
1431 1.14 msaitoh DEBUGFUNC("ixgbe_set_fdir_drop_queue_82599");
1432 1.14 msaitoh /* Clear init done bit and drop queue field */
1433 1.14 msaitoh fdirctrl = IXGBE_READ_REG(hw, IXGBE_FDIRCTRL);
1434 1.14 msaitoh fdirctrl &= ~(IXGBE_FDIRCTRL_DROP_Q_MASK | IXGBE_FDIRCTRL_INIT_DONE);
1435 1.14 msaitoh
1436 1.14 msaitoh /* Set drop queue */
1437 1.14 msaitoh fdirctrl |= (dropqueue << IXGBE_FDIRCTRL_DROP_Q_SHIFT);
1438 1.14 msaitoh if ((hw->mac.type == ixgbe_mac_X550) ||
1439 1.15 msaitoh (hw->mac.type == ixgbe_mac_X550EM_x) ||
1440 1.15 msaitoh (hw->mac.type == ixgbe_mac_X550EM_a))
1441 1.14 msaitoh fdirctrl |= IXGBE_FDIRCTRL_DROP_NO_MATCH;
1442 1.14 msaitoh
1443 1.14 msaitoh IXGBE_WRITE_REG(hw, IXGBE_FDIRCMD,
1444 1.14 msaitoh (IXGBE_READ_REG(hw, IXGBE_FDIRCMD) |
1445 1.14 msaitoh IXGBE_FDIRCMD_CLEARHT));
1446 1.14 msaitoh IXGBE_WRITE_FLUSH(hw);
1447 1.14 msaitoh IXGBE_WRITE_REG(hw, IXGBE_FDIRCMD,
1448 1.14 msaitoh (IXGBE_READ_REG(hw, IXGBE_FDIRCMD) &
1449 1.14 msaitoh ~IXGBE_FDIRCMD_CLEARHT));
1450 1.14 msaitoh IXGBE_WRITE_FLUSH(hw);
1451 1.14 msaitoh
1452 1.14 msaitoh /* write hashes and fdirctrl register, poll for completion */
1453 1.14 msaitoh ixgbe_fdir_enable_82599(hw, fdirctrl);
1454 1.14 msaitoh }
1455 1.14 msaitoh
1456 1.1 dyoung /*
1457 1.1 dyoung * These defines allow us to quickly generate all of the necessary instructions
1458 1.1 dyoung * in the function below by simply calling out IXGBE_COMPUTE_SIG_HASH_ITERATION
1459 1.1 dyoung * for values 0 through 15
1460 1.1 dyoung */
1461 1.1 dyoung #define IXGBE_ATR_COMMON_HASH_KEY \
1462 1.1 dyoung (IXGBE_ATR_BUCKET_HASH_KEY & IXGBE_ATR_SIGNATURE_HASH_KEY)
1463 1.1 dyoung #define IXGBE_COMPUTE_SIG_HASH_ITERATION(_n) \
1464 1.1 dyoung do { \
1465 1.1 dyoung u32 n = (_n); \
1466 1.1 dyoung if (IXGBE_ATR_COMMON_HASH_KEY & (0x01 << n)) \
1467 1.1 dyoung common_hash ^= lo_hash_dword >> n; \
1468 1.1 dyoung else if (IXGBE_ATR_BUCKET_HASH_KEY & (0x01 << n)) \
1469 1.1 dyoung bucket_hash ^= lo_hash_dword >> n; \
1470 1.1 dyoung else if (IXGBE_ATR_SIGNATURE_HASH_KEY & (0x01 << n)) \
1471 1.1 dyoung sig_hash ^= lo_hash_dword << (16 - n); \
1472 1.1 dyoung if (IXGBE_ATR_COMMON_HASH_KEY & (0x01 << (n + 16))) \
1473 1.1 dyoung common_hash ^= hi_hash_dword >> n; \
1474 1.1 dyoung else if (IXGBE_ATR_BUCKET_HASH_KEY & (0x01 << (n + 16))) \
1475 1.1 dyoung bucket_hash ^= hi_hash_dword >> n; \
1476 1.1 dyoung else if (IXGBE_ATR_SIGNATURE_HASH_KEY & (0x01 << (n + 16))) \
1477 1.1 dyoung sig_hash ^= hi_hash_dword << (16 - n); \
1478 1.12 msaitoh } while (0)
1479 1.1 dyoung
1480 1.1 dyoung /**
1481 1.26 msaitoh * ixgbe_atr_compute_sig_hash_82599 - Compute the signature hash
1482 1.26 msaitoh * @input: input bitstream to compute the hash on
1483 1.26 msaitoh * @common: compressed common input dword
1484 1.26 msaitoh *
1485 1.26 msaitoh * This function is almost identical to the function above but contains
1486 1.26 msaitoh * several optimizations such as unwinding all of the loops, letting the
1487 1.26 msaitoh * compiler work out all of the conditional ifs since the keys are static
1488 1.26 msaitoh * defines, and computing two keys at once since the hashed dword stream
1489 1.26 msaitoh * will be the same for both keys.
1490 1.1 dyoung **/
1491 1.6 msaitoh u32 ixgbe_atr_compute_sig_hash_82599(union ixgbe_atr_hash_dword input,
1492 1.6 msaitoh union ixgbe_atr_hash_dword common)
1493 1.1 dyoung {
1494 1.1 dyoung u32 hi_hash_dword, lo_hash_dword, flow_vm_vlan;
1495 1.1 dyoung u32 sig_hash = 0, bucket_hash = 0, common_hash = 0;
1496 1.1 dyoung
1497 1.1 dyoung /* record the flow_vm_vlan bits as they are a key part to the hash */
1498 1.1 dyoung flow_vm_vlan = IXGBE_NTOHL(input.dword);
1499 1.1 dyoung
1500 1.1 dyoung /* generate common hash dword */
1501 1.1 dyoung hi_hash_dword = IXGBE_NTOHL(common.dword);
1502 1.1 dyoung
1503 1.1 dyoung /* low dword is word swapped version of common */
1504 1.1 dyoung lo_hash_dword = (hi_hash_dword >> 16) | (hi_hash_dword << 16);
1505 1.1 dyoung
1506 1.1 dyoung /* apply flow ID/VM pool/VLAN ID bits to hash words */
1507 1.1 dyoung hi_hash_dword ^= flow_vm_vlan ^ (flow_vm_vlan >> 16);
1508 1.1 dyoung
1509 1.1 dyoung /* Process bits 0 and 16 */
1510 1.1 dyoung IXGBE_COMPUTE_SIG_HASH_ITERATION(0);
1511 1.1 dyoung
1512 1.1 dyoung /*
1513 1.1 dyoung * apply flow ID/VM pool/VLAN ID bits to lo hash dword, we had to
1514 1.1 dyoung * delay this because bit 0 of the stream should not be processed
1515 1.12 msaitoh * so we do not add the VLAN until after bit 0 was processed
1516 1.1 dyoung */
1517 1.1 dyoung lo_hash_dword ^= flow_vm_vlan ^ (flow_vm_vlan << 16);
1518 1.1 dyoung
1519 1.1 dyoung /* Process remaining 30 bit of the key */
1520 1.1 dyoung IXGBE_COMPUTE_SIG_HASH_ITERATION(1);
1521 1.1 dyoung IXGBE_COMPUTE_SIG_HASH_ITERATION(2);
1522 1.1 dyoung IXGBE_COMPUTE_SIG_HASH_ITERATION(3);
1523 1.1 dyoung IXGBE_COMPUTE_SIG_HASH_ITERATION(4);
1524 1.1 dyoung IXGBE_COMPUTE_SIG_HASH_ITERATION(5);
1525 1.1 dyoung IXGBE_COMPUTE_SIG_HASH_ITERATION(6);
1526 1.1 dyoung IXGBE_COMPUTE_SIG_HASH_ITERATION(7);
1527 1.1 dyoung IXGBE_COMPUTE_SIG_HASH_ITERATION(8);
1528 1.1 dyoung IXGBE_COMPUTE_SIG_HASH_ITERATION(9);
1529 1.1 dyoung IXGBE_COMPUTE_SIG_HASH_ITERATION(10);
1530 1.1 dyoung IXGBE_COMPUTE_SIG_HASH_ITERATION(11);
1531 1.1 dyoung IXGBE_COMPUTE_SIG_HASH_ITERATION(12);
1532 1.1 dyoung IXGBE_COMPUTE_SIG_HASH_ITERATION(13);
1533 1.1 dyoung IXGBE_COMPUTE_SIG_HASH_ITERATION(14);
1534 1.1 dyoung IXGBE_COMPUTE_SIG_HASH_ITERATION(15);
1535 1.1 dyoung
1536 1.1 dyoung /* combine common_hash result with signature and bucket hashes */
1537 1.1 dyoung bucket_hash ^= common_hash;
1538 1.1 dyoung bucket_hash &= IXGBE_ATR_HASH_MASK;
1539 1.1 dyoung
1540 1.1 dyoung sig_hash ^= common_hash << 16;
1541 1.1 dyoung sig_hash &= IXGBE_ATR_HASH_MASK << 16;
1542 1.1 dyoung
1543 1.1 dyoung /* return completed signature hash */
1544 1.1 dyoung return sig_hash ^ bucket_hash;
1545 1.1 dyoung }
1546 1.1 dyoung
1547 1.1 dyoung /**
1548 1.26 msaitoh * ixgbe_atr_add_signature_filter_82599 - Adds a signature hash filter
1549 1.26 msaitoh * @hw: pointer to hardware structure
1550 1.26 msaitoh * @input: unique input dword
1551 1.26 msaitoh * @common: compressed common input dword
1552 1.26 msaitoh * @queue: queue index to direct traffic to
1553 1.12 msaitoh *
1554 1.12 msaitoh * Note that the tunnel bit in input must not be set when the hardware
1555 1.12 msaitoh * tunneling support does not exist.
1556 1.1 dyoung **/
1557 1.14 msaitoh void ixgbe_fdir_add_signature_filter_82599(struct ixgbe_hw *hw,
1558 1.14 msaitoh union ixgbe_atr_hash_dword input,
1559 1.14 msaitoh union ixgbe_atr_hash_dword common,
1560 1.14 msaitoh u8 queue)
1561 1.1 dyoung {
1562 1.12 msaitoh u64 fdirhashcmd;
1563 1.12 msaitoh u8 flow_type;
1564 1.12 msaitoh bool tunnel;
1565 1.12 msaitoh u32 fdircmd;
1566 1.1 dyoung
1567 1.1 dyoung DEBUGFUNC("ixgbe_fdir_add_signature_filter_82599");
1568 1.1 dyoung
1569 1.1 dyoung /*
1570 1.1 dyoung * Get the flow_type in order to program FDIRCMD properly
1571 1.1 dyoung * lowest 2 bits are FDIRCMD.L4TYPE, third lowest bit is FDIRCMD.IPV6
1572 1.12 msaitoh * fifth is FDIRCMD.TUNNEL_FILTER
1573 1.1 dyoung */
1574 1.12 msaitoh tunnel = !!(input.formatted.flow_type & IXGBE_ATR_L4TYPE_TUNNEL_MASK);
1575 1.12 msaitoh flow_type = input.formatted.flow_type &
1576 1.12 msaitoh (IXGBE_ATR_L4TYPE_TUNNEL_MASK - 1);
1577 1.12 msaitoh switch (flow_type) {
1578 1.1 dyoung case IXGBE_ATR_FLOW_TYPE_TCPV4:
1579 1.1 dyoung case IXGBE_ATR_FLOW_TYPE_UDPV4:
1580 1.1 dyoung case IXGBE_ATR_FLOW_TYPE_SCTPV4:
1581 1.1 dyoung case IXGBE_ATR_FLOW_TYPE_TCPV6:
1582 1.1 dyoung case IXGBE_ATR_FLOW_TYPE_UDPV6:
1583 1.1 dyoung case IXGBE_ATR_FLOW_TYPE_SCTPV6:
1584 1.1 dyoung break;
1585 1.1 dyoung default:
1586 1.1 dyoung DEBUGOUT(" Error on flow type input\n");
1587 1.14 msaitoh return;
1588 1.1 dyoung }
1589 1.1 dyoung
1590 1.1 dyoung /* configure FDIRCMD register */
1591 1.1 dyoung fdircmd = IXGBE_FDIRCMD_CMD_ADD_FLOW | IXGBE_FDIRCMD_FILTER_UPDATE |
1592 1.6 msaitoh IXGBE_FDIRCMD_LAST | IXGBE_FDIRCMD_QUEUE_EN;
1593 1.12 msaitoh fdircmd |= (u32)flow_type << IXGBE_FDIRCMD_FLOW_TYPE_SHIFT;
1594 1.1 dyoung fdircmd |= (u32)queue << IXGBE_FDIRCMD_RX_QUEUE_SHIFT;
1595 1.12 msaitoh if (tunnel)
1596 1.12 msaitoh fdircmd |= IXGBE_FDIRCMD_TUNNEL_FILTER;
1597 1.1 dyoung
1598 1.1 dyoung /*
1599 1.1 dyoung * The lower 32-bits of fdirhashcmd is for FDIRHASH, the upper 32-bits
1600 1.1 dyoung * is for FDIRCMD. Then do a 64-bit register write from FDIRHASH.
1601 1.1 dyoung */
1602 1.1 dyoung fdirhashcmd = (u64)fdircmd << 32;
1603 1.24 msaitoh fdirhashcmd |= (u64)ixgbe_atr_compute_sig_hash_82599(input, common);
1604 1.1 dyoung IXGBE_WRITE_REG64(hw, IXGBE_FDIRHASH, fdirhashcmd);
1605 1.1 dyoung
1606 1.1 dyoung DEBUGOUT2("Tx Queue=%x hash=%x\n", queue, (u32)fdirhashcmd);
1607 1.1 dyoung
1608 1.14 msaitoh return;
1609 1.1 dyoung }
1610 1.1 dyoung
1611 1.6 msaitoh #define IXGBE_COMPUTE_BKT_HASH_ITERATION(_n) \
1612 1.6 msaitoh do { \
1613 1.6 msaitoh u32 n = (_n); \
1614 1.6 msaitoh if (IXGBE_ATR_BUCKET_HASH_KEY & (0x01 << n)) \
1615 1.6 msaitoh bucket_hash ^= lo_hash_dword >> n; \
1616 1.6 msaitoh if (IXGBE_ATR_BUCKET_HASH_KEY & (0x01 << (n + 16))) \
1617 1.6 msaitoh bucket_hash ^= hi_hash_dword >> n; \
1618 1.12 msaitoh } while (0)
1619 1.6 msaitoh
1620 1.6 msaitoh /**
1621 1.26 msaitoh * ixgbe_atr_compute_perfect_hash_82599 - Compute the perfect filter hash
1622 1.26 msaitoh * @input: input bitstream to compute the hash on
1623 1.26 msaitoh * @input_mask: mask for the input bitstream
1624 1.26 msaitoh *
1625 1.26 msaitoh * This function serves two main purposes. First it applies the input_mask
1626 1.26 msaitoh * to the atr_input resulting in a cleaned up atr_input data stream.
1627 1.26 msaitoh * Secondly it computes the hash and stores it in the bkt_hash field at
1628 1.26 msaitoh * the end of the input byte stream. This way it will be available for
1629 1.26 msaitoh * future use without needing to recompute the hash.
1630 1.6 msaitoh **/
1631 1.6 msaitoh void ixgbe_atr_compute_perfect_hash_82599(union ixgbe_atr_input *input,
1632 1.6 msaitoh union ixgbe_atr_input *input_mask)
1633 1.6 msaitoh {
1634 1.6 msaitoh
1635 1.6 msaitoh u32 hi_hash_dword, lo_hash_dword, flow_vm_vlan;
1636 1.6 msaitoh u32 bucket_hash = 0;
1637 1.12 msaitoh u32 hi_dword = 0;
1638 1.12 msaitoh u32 i = 0;
1639 1.6 msaitoh
1640 1.6 msaitoh /* Apply masks to input data */
1641 1.12 msaitoh for (i = 0; i < 14; i++)
1642 1.12 msaitoh input->dword_stream[i] &= input_mask->dword_stream[i];
1643 1.6 msaitoh
1644 1.6 msaitoh /* record the flow_vm_vlan bits as they are a key part to the hash */
1645 1.6 msaitoh flow_vm_vlan = IXGBE_NTOHL(input->dword_stream[0]);
1646 1.6 msaitoh
1647 1.6 msaitoh /* generate common hash dword */
1648 1.12 msaitoh for (i = 1; i <= 13; i++)
1649 1.12 msaitoh hi_dword ^= input->dword_stream[i];
1650 1.12 msaitoh hi_hash_dword = IXGBE_NTOHL(hi_dword);
1651 1.6 msaitoh
1652 1.6 msaitoh /* low dword is word swapped version of common */
1653 1.6 msaitoh lo_hash_dword = (hi_hash_dword >> 16) | (hi_hash_dword << 16);
1654 1.6 msaitoh
1655 1.6 msaitoh /* apply flow ID/VM pool/VLAN ID bits to hash words */
1656 1.6 msaitoh hi_hash_dword ^= flow_vm_vlan ^ (flow_vm_vlan >> 16);
1657 1.6 msaitoh
1658 1.6 msaitoh /* Process bits 0 and 16 */
1659 1.6 msaitoh IXGBE_COMPUTE_BKT_HASH_ITERATION(0);
1660 1.6 msaitoh
1661 1.6 msaitoh /*
1662 1.6 msaitoh * apply flow ID/VM pool/VLAN ID bits to lo hash dword, we had to
1663 1.6 msaitoh * delay this because bit 0 of the stream should not be processed
1664 1.12 msaitoh * so we do not add the VLAN until after bit 0 was processed
1665 1.6 msaitoh */
1666 1.6 msaitoh lo_hash_dword ^= flow_vm_vlan ^ (flow_vm_vlan << 16);
1667 1.6 msaitoh
1668 1.6 msaitoh /* Process remaining 30 bit of the key */
1669 1.12 msaitoh for (i = 1; i <= 15; i++)
1670 1.12 msaitoh IXGBE_COMPUTE_BKT_HASH_ITERATION(i);
1671 1.6 msaitoh
1672 1.6 msaitoh /*
1673 1.6 msaitoh * Limit hash to 13 bits since max bucket count is 8K.
1674 1.6 msaitoh * Store result at the end of the input stream.
1675 1.6 msaitoh */
1676 1.6 msaitoh input->formatted.bkt_hash = bucket_hash & 0x1FFF;
1677 1.6 msaitoh }
1678 1.6 msaitoh
1679 1.1 dyoung /**
1680 1.26 msaitoh * ixgbe_get_fdirtcpm_82599 - generate a TCP port from atr_input_masks
1681 1.26 msaitoh * @input_mask: mask to be bit swapped
1682 1.1 dyoung *
1683 1.26 msaitoh * The source and destination port masks for flow director are bit swapped
1684 1.26 msaitoh * in that bit 15 effects bit 0, 14 effects 1, 13, 2 etc. In order to
1685 1.26 msaitoh * generate a correctly swapped value we need to bit swap the mask and that
1686 1.26 msaitoh * is what is accomplished by this function.
1687 1.1 dyoung **/
1688 1.6 msaitoh static u32 ixgbe_get_fdirtcpm_82599(union ixgbe_atr_input *input_mask)
1689 1.1 dyoung {
1690 1.6 msaitoh u32 mask = IXGBE_NTOHS(input_mask->formatted.dst_port);
1691 1.1 dyoung mask <<= IXGBE_FDIRTCPM_DPORTM_SHIFT;
1692 1.24 msaitoh mask |= (u32)IXGBE_NTOHS(input_mask->formatted.src_port);
1693 1.1 dyoung mask = ((mask & 0x55555555) << 1) | ((mask & 0xAAAAAAAA) >> 1);
1694 1.1 dyoung mask = ((mask & 0x33333333) << 2) | ((mask & 0xCCCCCCCC) >> 2);
1695 1.1 dyoung mask = ((mask & 0x0F0F0F0F) << 4) | ((mask & 0xF0F0F0F0) >> 4);
1696 1.1 dyoung return ((mask & 0x00FF00FF) << 8) | ((mask & 0xFF00FF00) >> 8);
1697 1.1 dyoung }
1698 1.1 dyoung
1699 1.1 dyoung /*
1700 1.1 dyoung * These two macros are meant to address the fact that we have registers
1701 1.1 dyoung * that are either all or in part big-endian. As a result on big-endian
1702 1.1 dyoung * systems we will end up byte swapping the value to little-endian before
1703 1.1 dyoung * it is byte swapped again and written to the hardware in the original
1704 1.1 dyoung * big-endian format.
1705 1.1 dyoung */
1706 1.1 dyoung #define IXGBE_STORE_AS_BE32(_value) \
1707 1.1 dyoung (((u32)(_value) >> 24) | (((u32)(_value) & 0x00FF0000) >> 8) | \
1708 1.1 dyoung (((u32)(_value) & 0x0000FF00) << 8) | ((u32)(_value) << 24))
1709 1.1 dyoung
1710 1.1 dyoung #define IXGBE_WRITE_REG_BE32(a, reg, value) \
1711 1.1 dyoung IXGBE_WRITE_REG((a), (reg), IXGBE_STORE_AS_BE32(IXGBE_NTOHL(value)))
1712 1.1 dyoung
1713 1.1 dyoung #define IXGBE_STORE_AS_BE16(_value) \
1714 1.6 msaitoh IXGBE_NTOHS(((u16)(_value) >> 8) | ((u16)(_value) << 8))
1715 1.1 dyoung
1716 1.6 msaitoh s32 ixgbe_fdir_set_input_mask_82599(struct ixgbe_hw *hw,
1717 1.12 msaitoh union ixgbe_atr_input *input_mask, bool cloud_mode)
1718 1.1 dyoung {
1719 1.6 msaitoh /* mask IPv6 since it is currently not supported */
1720 1.6 msaitoh u32 fdirm = IXGBE_FDIRM_DIPv6;
1721 1.6 msaitoh u32 fdirtcpm;
1722 1.12 msaitoh u32 fdirip6m;
1723 1.19 msaitoh UNREFERENCED_1PARAMETER(cloud_mode);
1724 1.6 msaitoh DEBUGFUNC("ixgbe_fdir_set_atr_input_mask_82599");
1725 1.1 dyoung
1726 1.1 dyoung /*
1727 1.6 msaitoh * Program the relevant mask registers. If src/dst_port or src/dst_addr
1728 1.6 msaitoh * are zero, then assume a full mask for that field. Also assume that
1729 1.6 msaitoh * a VLAN of 0 is unspecified, so mask that out as well. L4type
1730 1.6 msaitoh * cannot be masked out in this implementation.
1731 1.6 msaitoh *
1732 1.6 msaitoh * This also assumes IPv4 only. IPv6 masking isn't supported at this
1733 1.6 msaitoh * point in time.
1734 1.1 dyoung */
1735 1.6 msaitoh
1736 1.6 msaitoh /* verify bucket hash is cleared on hash generation */
1737 1.6 msaitoh if (input_mask->formatted.bkt_hash)
1738 1.6 msaitoh DEBUGOUT(" bucket hash should always be 0 in mask\n");
1739 1.6 msaitoh
1740 1.6 msaitoh /* Program FDIRM and verify partial masks */
1741 1.6 msaitoh switch (input_mask->formatted.vm_pool & 0x7F) {
1742 1.6 msaitoh case 0x0:
1743 1.6 msaitoh fdirm |= IXGBE_FDIRM_POOL;
1744 1.6 msaitoh case 0x7F:
1745 1.6 msaitoh break;
1746 1.6 msaitoh default:
1747 1.6 msaitoh DEBUGOUT(" Error on vm pool mask\n");
1748 1.6 msaitoh return IXGBE_ERR_CONFIG;
1749 1.6 msaitoh }
1750 1.6 msaitoh
1751 1.6 msaitoh switch (input_mask->formatted.flow_type & IXGBE_ATR_L4TYPE_MASK) {
1752 1.6 msaitoh case 0x0:
1753 1.1 dyoung fdirm |= IXGBE_FDIRM_L4P;
1754 1.6 msaitoh if (input_mask->formatted.dst_port ||
1755 1.6 msaitoh input_mask->formatted.src_port) {
1756 1.1 dyoung DEBUGOUT(" Error on src/dst port mask\n");
1757 1.1 dyoung return IXGBE_ERR_CONFIG;
1758 1.1 dyoung }
1759 1.6 msaitoh case IXGBE_ATR_L4TYPE_MASK:
1760 1.1 dyoung break;
1761 1.1 dyoung default:
1762 1.6 msaitoh DEBUGOUT(" Error on flow type mask\n");
1763 1.1 dyoung return IXGBE_ERR_CONFIG;
1764 1.1 dyoung }
1765 1.1 dyoung
1766 1.6 msaitoh switch (IXGBE_NTOHS(input_mask->formatted.vlan_id) & 0xEFFF) {
1767 1.6 msaitoh case 0x0000:
1768 1.15 msaitoh /* mask VLAN ID */
1769 1.6 msaitoh fdirm |= IXGBE_FDIRM_VLANID;
1770 1.15 msaitoh /* fall through */
1771 1.1 dyoung case 0x0FFF:
1772 1.6 msaitoh /* mask VLAN priority */
1773 1.6 msaitoh fdirm |= IXGBE_FDIRM_VLANP;
1774 1.1 dyoung break;
1775 1.6 msaitoh case 0xE000:
1776 1.15 msaitoh /* mask VLAN ID only */
1777 1.6 msaitoh fdirm |= IXGBE_FDIRM_VLANID;
1778 1.15 msaitoh /* fall through */
1779 1.6 msaitoh case 0xEFFF:
1780 1.6 msaitoh /* no VLAN fields masked */
1781 1.1 dyoung break;
1782 1.1 dyoung default:
1783 1.1 dyoung DEBUGOUT(" Error on VLAN mask\n");
1784 1.1 dyoung return IXGBE_ERR_CONFIG;
1785 1.1 dyoung }
1786 1.1 dyoung
1787 1.6 msaitoh switch (input_mask->formatted.flex_bytes & 0xFFFF) {
1788 1.6 msaitoh case 0x0000:
1789 1.15 msaitoh /* Mask Flex Bytes */
1790 1.6 msaitoh fdirm |= IXGBE_FDIRM_FLEX;
1791 1.15 msaitoh /* fall through */
1792 1.6 msaitoh case 0xFFFF:
1793 1.6 msaitoh break;
1794 1.6 msaitoh default:
1795 1.6 msaitoh DEBUGOUT(" Error on flexible byte mask\n");
1796 1.6 msaitoh return IXGBE_ERR_CONFIG;
1797 1.1 dyoung }
1798 1.1 dyoung
1799 1.12 msaitoh if (cloud_mode) {
1800 1.12 msaitoh fdirm |= IXGBE_FDIRM_L3P;
1801 1.12 msaitoh fdirip6m = ((u32) 0xFFFFU << IXGBE_FDIRIP6M_DIPM_SHIFT);
1802 1.12 msaitoh fdirip6m |= IXGBE_FDIRIP6M_ALWAYS_MASK;
1803 1.12 msaitoh
1804 1.12 msaitoh switch (input_mask->formatted.inner_mac[0] & 0xFF) {
1805 1.12 msaitoh case 0x00:
1806 1.12 msaitoh /* Mask inner MAC, fall through */
1807 1.12 msaitoh fdirip6m |= IXGBE_FDIRIP6M_INNER_MAC;
1808 1.12 msaitoh case 0xFF:
1809 1.12 msaitoh break;
1810 1.12 msaitoh default:
1811 1.12 msaitoh DEBUGOUT(" Error on inner_mac byte mask\n");
1812 1.12 msaitoh return IXGBE_ERR_CONFIG;
1813 1.12 msaitoh }
1814 1.12 msaitoh
1815 1.12 msaitoh switch (input_mask->formatted.tni_vni & 0xFFFFFFFF) {
1816 1.12 msaitoh case 0x0:
1817 1.12 msaitoh /* Mask vxlan id */
1818 1.12 msaitoh fdirip6m |= IXGBE_FDIRIP6M_TNI_VNI;
1819 1.12 msaitoh break;
1820 1.12 msaitoh case 0x00FFFFFF:
1821 1.12 msaitoh fdirip6m |= IXGBE_FDIRIP6M_TNI_VNI_24;
1822 1.12 msaitoh break;
1823 1.12 msaitoh case 0xFFFFFFFF:
1824 1.12 msaitoh break;
1825 1.12 msaitoh default:
1826 1.12 msaitoh DEBUGOUT(" Error on TNI/VNI byte mask\n");
1827 1.12 msaitoh return IXGBE_ERR_CONFIG;
1828 1.12 msaitoh }
1829 1.12 msaitoh
1830 1.12 msaitoh switch (input_mask->formatted.tunnel_type & 0xFFFF) {
1831 1.12 msaitoh case 0x0:
1832 1.12 msaitoh /* Mask turnnel type, fall through */
1833 1.12 msaitoh fdirip6m |= IXGBE_FDIRIP6M_TUNNEL_TYPE;
1834 1.12 msaitoh case 0xFFFF:
1835 1.12 msaitoh break;
1836 1.12 msaitoh default:
1837 1.12 msaitoh DEBUGOUT(" Error on tunnel type byte mask\n");
1838 1.12 msaitoh return IXGBE_ERR_CONFIG;
1839 1.12 msaitoh }
1840 1.12 msaitoh IXGBE_WRITE_REG_BE32(hw, IXGBE_FDIRIP6M, fdirip6m);
1841 1.12 msaitoh
1842 1.15 msaitoh /* Set all bits in FDIRTCPM, FDIRUDPM, FDIRSCTPM,
1843 1.15 msaitoh * FDIRSIP4M and FDIRDIP4M in cloud mode to allow
1844 1.15 msaitoh * L3/L3 packets to tunnel.
1845 1.12 msaitoh */
1846 1.12 msaitoh IXGBE_WRITE_REG(hw, IXGBE_FDIRTCPM, 0xFFFFFFFF);
1847 1.12 msaitoh IXGBE_WRITE_REG(hw, IXGBE_FDIRUDPM, 0xFFFFFFFF);
1848 1.12 msaitoh IXGBE_WRITE_REG_BE32(hw, IXGBE_FDIRDIP4M, 0xFFFFFFFF);
1849 1.12 msaitoh IXGBE_WRITE_REG_BE32(hw, IXGBE_FDIRSIP4M, 0xFFFFFFFF);
1850 1.15 msaitoh switch (hw->mac.type) {
1851 1.15 msaitoh case ixgbe_mac_X550:
1852 1.15 msaitoh case ixgbe_mac_X550EM_x:
1853 1.15 msaitoh case ixgbe_mac_X550EM_a:
1854 1.15 msaitoh IXGBE_WRITE_REG(hw, IXGBE_FDIRSCTPM, 0xFFFFFFFF);
1855 1.15 msaitoh break;
1856 1.15 msaitoh default:
1857 1.15 msaitoh break;
1858 1.15 msaitoh }
1859 1.12 msaitoh }
1860 1.12 msaitoh
1861 1.1 dyoung /* Now mask VM pool and destination IPv6 - bits 5 and 2 */
1862 1.1 dyoung IXGBE_WRITE_REG(hw, IXGBE_FDIRM, fdirm);
1863 1.1 dyoung
1864 1.12 msaitoh if (!cloud_mode) {
1865 1.12 msaitoh /* store the TCP/UDP port masks, bit reversed from port
1866 1.12 msaitoh * layout */
1867 1.12 msaitoh fdirtcpm = ixgbe_get_fdirtcpm_82599(input_mask);
1868 1.12 msaitoh
1869 1.12 msaitoh /* write both the same so that UDP and TCP use the same mask */
1870 1.12 msaitoh IXGBE_WRITE_REG(hw, IXGBE_FDIRTCPM, ~fdirtcpm);
1871 1.12 msaitoh IXGBE_WRITE_REG(hw, IXGBE_FDIRUDPM, ~fdirtcpm);
1872 1.12 msaitoh /* also use it for SCTP */
1873 1.12 msaitoh switch (hw->mac.type) {
1874 1.12 msaitoh case ixgbe_mac_X550:
1875 1.12 msaitoh case ixgbe_mac_X550EM_x:
1876 1.15 msaitoh case ixgbe_mac_X550EM_a:
1877 1.12 msaitoh IXGBE_WRITE_REG(hw, IXGBE_FDIRSCTPM, ~fdirtcpm);
1878 1.12 msaitoh break;
1879 1.12 msaitoh default:
1880 1.12 msaitoh break;
1881 1.12 msaitoh }
1882 1.6 msaitoh
1883 1.12 msaitoh /* store source and destination IP masks (big-enian) */
1884 1.12 msaitoh IXGBE_WRITE_REG_BE32(hw, IXGBE_FDIRSIP4M,
1885 1.12 msaitoh ~input_mask->formatted.src_ip[0]);
1886 1.12 msaitoh IXGBE_WRITE_REG_BE32(hw, IXGBE_FDIRDIP4M,
1887 1.12 msaitoh ~input_mask->formatted.dst_ip[0]);
1888 1.27 msaitoh IXGBE_WRITE_REG_BE32(hw, IXGBE_FDIRIP6M, 0xFFFFFFFF);
1889 1.12 msaitoh }
1890 1.6 msaitoh return IXGBE_SUCCESS;
1891 1.6 msaitoh }
1892 1.1 dyoung
1893 1.6 msaitoh s32 ixgbe_fdir_write_perfect_filter_82599(struct ixgbe_hw *hw,
1894 1.6 msaitoh union ixgbe_atr_input *input,
1895 1.12 msaitoh u16 soft_id, u8 queue, bool cloud_mode)
1896 1.6 msaitoh {
1897 1.6 msaitoh u32 fdirport, fdirvlan, fdirhash, fdircmd;
1898 1.12 msaitoh u32 addr_low, addr_high;
1899 1.12 msaitoh u32 cloud_type = 0;
1900 1.12 msaitoh s32 err;
1901 1.19 msaitoh UNREFERENCED_1PARAMETER(cloud_mode);
1902 1.6 msaitoh
1903 1.6 msaitoh DEBUGFUNC("ixgbe_fdir_write_perfect_filter_82599");
1904 1.12 msaitoh if (!cloud_mode) {
1905 1.12 msaitoh /* currently IPv6 is not supported, must be programmed with 0 */
1906 1.12 msaitoh IXGBE_WRITE_REG_BE32(hw, IXGBE_FDIRSIPv6(0),
1907 1.12 msaitoh input->formatted.src_ip[0]);
1908 1.12 msaitoh IXGBE_WRITE_REG_BE32(hw, IXGBE_FDIRSIPv6(1),
1909 1.12 msaitoh input->formatted.src_ip[1]);
1910 1.12 msaitoh IXGBE_WRITE_REG_BE32(hw, IXGBE_FDIRSIPv6(2),
1911 1.12 msaitoh input->formatted.src_ip[2]);
1912 1.12 msaitoh
1913 1.12 msaitoh /* record the source address (big-endian) */
1914 1.12 msaitoh IXGBE_WRITE_REG_BE32(hw, IXGBE_FDIRIPSA,
1915 1.12 msaitoh input->formatted.src_ip[0]);
1916 1.12 msaitoh
1917 1.12 msaitoh /* record the first 32 bits of the destination address
1918 1.12 msaitoh * (big-endian) */
1919 1.12 msaitoh IXGBE_WRITE_REG_BE32(hw, IXGBE_FDIRIPDA,
1920 1.12 msaitoh input->formatted.dst_ip[0]);
1921 1.12 msaitoh
1922 1.12 msaitoh /* record source and destination port (little-endian)*/
1923 1.12 msaitoh fdirport = IXGBE_NTOHS(input->formatted.dst_port);
1924 1.12 msaitoh fdirport <<= IXGBE_FDIRPORT_DESTINATION_SHIFT;
1925 1.24 msaitoh fdirport |= (u32)IXGBE_NTOHS(input->formatted.src_port);
1926 1.12 msaitoh IXGBE_WRITE_REG(hw, IXGBE_FDIRPORT, fdirport);
1927 1.12 msaitoh }
1928 1.6 msaitoh
1929 1.12 msaitoh /* record VLAN (little-endian) and flex_bytes(big-endian) */
1930 1.6 msaitoh fdirvlan = IXGBE_STORE_AS_BE16(input->formatted.flex_bytes);
1931 1.6 msaitoh fdirvlan <<= IXGBE_FDIRVLAN_FLEX_SHIFT;
1932 1.24 msaitoh fdirvlan |= (u32)IXGBE_NTOHS(input->formatted.vlan_id);
1933 1.6 msaitoh IXGBE_WRITE_REG(hw, IXGBE_FDIRVLAN, fdirvlan);
1934 1.6 msaitoh
1935 1.12 msaitoh if (cloud_mode) {
1936 1.12 msaitoh if (input->formatted.tunnel_type != 0)
1937 1.12 msaitoh cloud_type = 0x80000000;
1938 1.12 msaitoh
1939 1.12 msaitoh addr_low = ((u32)input->formatted.inner_mac[0] |
1940 1.12 msaitoh ((u32)input->formatted.inner_mac[1] << 8) |
1941 1.12 msaitoh ((u32)input->formatted.inner_mac[2] << 16) |
1942 1.12 msaitoh ((u32)input->formatted.inner_mac[3] << 24));
1943 1.12 msaitoh addr_high = ((u32)input->formatted.inner_mac[4] |
1944 1.12 msaitoh ((u32)input->formatted.inner_mac[5] << 8));
1945 1.12 msaitoh cloud_type |= addr_high;
1946 1.12 msaitoh IXGBE_WRITE_REG_BE32(hw, IXGBE_FDIRSIPv6(0), addr_low);
1947 1.12 msaitoh IXGBE_WRITE_REG_BE32(hw, IXGBE_FDIRSIPv6(1), cloud_type);
1948 1.12 msaitoh IXGBE_WRITE_REG_BE32(hw, IXGBE_FDIRSIPv6(2), input->formatted.tni_vni);
1949 1.12 msaitoh }
1950 1.12 msaitoh
1951 1.6 msaitoh /* configure FDIRHASH register */
1952 1.6 msaitoh fdirhash = input->formatted.bkt_hash;
1953 1.6 msaitoh fdirhash |= soft_id << IXGBE_FDIRHASH_SIG_SW_INDEX_SHIFT;
1954 1.6 msaitoh IXGBE_WRITE_REG(hw, IXGBE_FDIRHASH, fdirhash);
1955 1.1 dyoung
1956 1.6 msaitoh /*
1957 1.6 msaitoh * flush all previous writes to make certain registers are
1958 1.6 msaitoh * programmed prior to issuing the command
1959 1.6 msaitoh */
1960 1.6 msaitoh IXGBE_WRITE_FLUSH(hw);
1961 1.1 dyoung
1962 1.1 dyoung /* configure FDIRCMD register */
1963 1.1 dyoung fdircmd = IXGBE_FDIRCMD_CMD_ADD_FLOW | IXGBE_FDIRCMD_FILTER_UPDATE |
1964 1.1 dyoung IXGBE_FDIRCMD_LAST | IXGBE_FDIRCMD_QUEUE_EN;
1965 1.6 msaitoh if (queue == IXGBE_FDIR_DROP_QUEUE)
1966 1.6 msaitoh fdircmd |= IXGBE_FDIRCMD_DROP;
1967 1.12 msaitoh if (input->formatted.flow_type & IXGBE_ATR_L4TYPE_TUNNEL_MASK)
1968 1.12 msaitoh fdircmd |= IXGBE_FDIRCMD_TUNNEL_FILTER;
1969 1.1 dyoung fdircmd |= input->formatted.flow_type << IXGBE_FDIRCMD_FLOW_TYPE_SHIFT;
1970 1.1 dyoung fdircmd |= (u32)queue << IXGBE_FDIRCMD_RX_QUEUE_SHIFT;
1971 1.6 msaitoh fdircmd |= (u32)input->formatted.vm_pool << IXGBE_FDIRCMD_VT_POOL_SHIFT;
1972 1.6 msaitoh
1973 1.6 msaitoh IXGBE_WRITE_REG(hw, IXGBE_FDIRCMD, fdircmd);
1974 1.12 msaitoh err = ixgbe_fdir_check_cmd_complete(hw, &fdircmd);
1975 1.12 msaitoh if (err) {
1976 1.12 msaitoh DEBUGOUT("Flow Director command did not complete!\n");
1977 1.12 msaitoh return err;
1978 1.12 msaitoh }
1979 1.1 dyoung
1980 1.6 msaitoh return IXGBE_SUCCESS;
1981 1.6 msaitoh }
1982 1.6 msaitoh
1983 1.6 msaitoh s32 ixgbe_fdir_erase_perfect_filter_82599(struct ixgbe_hw *hw,
1984 1.6 msaitoh union ixgbe_atr_input *input,
1985 1.6 msaitoh u16 soft_id)
1986 1.6 msaitoh {
1987 1.6 msaitoh u32 fdirhash;
1988 1.12 msaitoh u32 fdircmd;
1989 1.12 msaitoh s32 err;
1990 1.6 msaitoh
1991 1.6 msaitoh /* configure FDIRHASH register */
1992 1.6 msaitoh fdirhash = input->formatted.bkt_hash;
1993 1.1 dyoung fdirhash |= soft_id << IXGBE_FDIRHASH_SIG_SW_INDEX_SHIFT;
1994 1.6 msaitoh IXGBE_WRITE_REG(hw, IXGBE_FDIRHASH, fdirhash);
1995 1.6 msaitoh
1996 1.6 msaitoh /* flush hash to HW */
1997 1.6 msaitoh IXGBE_WRITE_FLUSH(hw);
1998 1.6 msaitoh
1999 1.6 msaitoh /* Query if filter is present */
2000 1.6 msaitoh IXGBE_WRITE_REG(hw, IXGBE_FDIRCMD, IXGBE_FDIRCMD_CMD_QUERY_REM_FILT);
2001 1.6 msaitoh
2002 1.12 msaitoh err = ixgbe_fdir_check_cmd_complete(hw, &fdircmd);
2003 1.12 msaitoh if (err) {
2004 1.12 msaitoh DEBUGOUT("Flow Director command did not complete!\n");
2005 1.12 msaitoh return err;
2006 1.6 msaitoh }
2007 1.6 msaitoh
2008 1.6 msaitoh /* if filter exists in hardware then remove it */
2009 1.6 msaitoh if (fdircmd & IXGBE_FDIRCMD_FILTER_VALID) {
2010 1.6 msaitoh IXGBE_WRITE_REG(hw, IXGBE_FDIRHASH, fdirhash);
2011 1.6 msaitoh IXGBE_WRITE_FLUSH(hw);
2012 1.6 msaitoh IXGBE_WRITE_REG(hw, IXGBE_FDIRCMD,
2013 1.6 msaitoh IXGBE_FDIRCMD_CMD_REMOVE_FLOW);
2014 1.6 msaitoh }
2015 1.6 msaitoh
2016 1.12 msaitoh return IXGBE_SUCCESS;
2017 1.6 msaitoh }
2018 1.6 msaitoh
2019 1.6 msaitoh /**
2020 1.26 msaitoh * ixgbe_fdir_add_perfect_filter_82599 - Adds a perfect filter
2021 1.26 msaitoh * @hw: pointer to hardware structure
2022 1.26 msaitoh * @input: input bitstream
2023 1.26 msaitoh * @input_mask: mask for the input bitstream
2024 1.26 msaitoh * @soft_id: software index for the filters
2025 1.26 msaitoh * @queue: queue index to direct traffic to
2026 1.26 msaitoh * @cloud_mode: unused
2027 1.6 msaitoh *
2028 1.26 msaitoh * Note that the caller to this function must lock before calling, since the
2029 1.26 msaitoh * hardware writes must be protected from one another.
2030 1.6 msaitoh **/
2031 1.6 msaitoh s32 ixgbe_fdir_add_perfect_filter_82599(struct ixgbe_hw *hw,
2032 1.6 msaitoh union ixgbe_atr_input *input,
2033 1.6 msaitoh union ixgbe_atr_input *input_mask,
2034 1.12 msaitoh u16 soft_id, u8 queue, bool cloud_mode)
2035 1.6 msaitoh {
2036 1.6 msaitoh s32 err = IXGBE_ERR_CONFIG;
2037 1.19 msaitoh UNREFERENCED_1PARAMETER(cloud_mode);
2038 1.6 msaitoh
2039 1.6 msaitoh DEBUGFUNC("ixgbe_fdir_add_perfect_filter_82599");
2040 1.1 dyoung
2041 1.6 msaitoh /*
2042 1.6 msaitoh * Check flow_type formatting, and bail out before we touch the hardware
2043 1.6 msaitoh * if there's a configuration issue
2044 1.6 msaitoh */
2045 1.6 msaitoh switch (input->formatted.flow_type) {
2046 1.6 msaitoh case IXGBE_ATR_FLOW_TYPE_IPV4:
2047 1.12 msaitoh case IXGBE_ATR_FLOW_TYPE_TUNNELED_IPV4:
2048 1.6 msaitoh input_mask->formatted.flow_type = IXGBE_ATR_L4TYPE_IPV6_MASK;
2049 1.6 msaitoh if (input->formatted.dst_port || input->formatted.src_port) {
2050 1.6 msaitoh DEBUGOUT(" Error on src/dst port\n");
2051 1.6 msaitoh return IXGBE_ERR_CONFIG;
2052 1.6 msaitoh }
2053 1.6 msaitoh break;
2054 1.6 msaitoh case IXGBE_ATR_FLOW_TYPE_SCTPV4:
2055 1.12 msaitoh case IXGBE_ATR_FLOW_TYPE_TUNNELED_SCTPV4:
2056 1.6 msaitoh if (input->formatted.dst_port || input->formatted.src_port) {
2057 1.6 msaitoh DEBUGOUT(" Error on src/dst port\n");
2058 1.6 msaitoh return IXGBE_ERR_CONFIG;
2059 1.6 msaitoh }
2060 1.15 msaitoh /* fall through */
2061 1.6 msaitoh case IXGBE_ATR_FLOW_TYPE_TCPV4:
2062 1.12 msaitoh case IXGBE_ATR_FLOW_TYPE_TUNNELED_TCPV4:
2063 1.6 msaitoh case IXGBE_ATR_FLOW_TYPE_UDPV4:
2064 1.12 msaitoh case IXGBE_ATR_FLOW_TYPE_TUNNELED_UDPV4:
2065 1.6 msaitoh input_mask->formatted.flow_type = IXGBE_ATR_L4TYPE_IPV6_MASK |
2066 1.6 msaitoh IXGBE_ATR_L4TYPE_MASK;
2067 1.6 msaitoh break;
2068 1.6 msaitoh default:
2069 1.6 msaitoh DEBUGOUT(" Error on flow type input\n");
2070 1.6 msaitoh return err;
2071 1.6 msaitoh }
2072 1.6 msaitoh
2073 1.6 msaitoh /* program input mask into the HW */
2074 1.12 msaitoh err = ixgbe_fdir_set_input_mask_82599(hw, input_mask, cloud_mode);
2075 1.6 msaitoh if (err)
2076 1.6 msaitoh return err;
2077 1.6 msaitoh
2078 1.6 msaitoh /* apply mask and compute/store hash */
2079 1.6 msaitoh ixgbe_atr_compute_perfect_hash_82599(input, input_mask);
2080 1.1 dyoung
2081 1.6 msaitoh /* program filters to filter memory */
2082 1.6 msaitoh return ixgbe_fdir_write_perfect_filter_82599(hw, input,
2083 1.12 msaitoh soft_id, queue, cloud_mode);
2084 1.1 dyoung }
2085 1.1 dyoung
2086 1.1 dyoung /**
2087 1.26 msaitoh * ixgbe_read_analog_reg8_82599 - Reads 8 bit Omer analog register
2088 1.26 msaitoh * @hw: pointer to hardware structure
2089 1.26 msaitoh * @reg: analog register to read
2090 1.26 msaitoh * @val: read value
2091 1.1 dyoung *
2092 1.26 msaitoh * Performs read operation to Omer analog register specified.
2093 1.1 dyoung **/
2094 1.1 dyoung s32 ixgbe_read_analog_reg8_82599(struct ixgbe_hw *hw, u32 reg, u8 *val)
2095 1.1 dyoung {
2096 1.1 dyoung u32 core_ctl;
2097 1.1 dyoung
2098 1.1 dyoung DEBUGFUNC("ixgbe_read_analog_reg8_82599");
2099 1.1 dyoung
2100 1.1 dyoung IXGBE_WRITE_REG(hw, IXGBE_CORECTL, IXGBE_CORECTL_WRITE_CMD |
2101 1.6 msaitoh (reg << 8));
2102 1.1 dyoung IXGBE_WRITE_FLUSH(hw);
2103 1.1 dyoung usec_delay(10);
2104 1.1 dyoung core_ctl = IXGBE_READ_REG(hw, IXGBE_CORECTL);
2105 1.1 dyoung *val = (u8)core_ctl;
2106 1.1 dyoung
2107 1.1 dyoung return IXGBE_SUCCESS;
2108 1.1 dyoung }
2109 1.1 dyoung
2110 1.1 dyoung /**
2111 1.26 msaitoh * ixgbe_write_analog_reg8_82599 - Writes 8 bit Omer analog register
2112 1.26 msaitoh * @hw: pointer to hardware structure
2113 1.26 msaitoh * @reg: atlas register to write
2114 1.26 msaitoh * @val: value to write
2115 1.1 dyoung *
2116 1.26 msaitoh * Performs write operation to Omer analog register specified.
2117 1.1 dyoung **/
2118 1.1 dyoung s32 ixgbe_write_analog_reg8_82599(struct ixgbe_hw *hw, u32 reg, u8 val)
2119 1.1 dyoung {
2120 1.1 dyoung u32 core_ctl;
2121 1.1 dyoung
2122 1.1 dyoung DEBUGFUNC("ixgbe_write_analog_reg8_82599");
2123 1.1 dyoung
2124 1.1 dyoung core_ctl = (reg << 8) | val;
2125 1.1 dyoung IXGBE_WRITE_REG(hw, IXGBE_CORECTL, core_ctl);
2126 1.1 dyoung IXGBE_WRITE_FLUSH(hw);
2127 1.1 dyoung usec_delay(10);
2128 1.1 dyoung
2129 1.1 dyoung return IXGBE_SUCCESS;
2130 1.1 dyoung }
2131 1.1 dyoung
2132 1.1 dyoung /**
2133 1.26 msaitoh * ixgbe_start_hw_82599 - Prepare hardware for Tx/Rx
2134 1.26 msaitoh * @hw: pointer to hardware structure
2135 1.1 dyoung *
2136 1.26 msaitoh * Starts the hardware using the generic start_hw function
2137 1.26 msaitoh * and the generation start_hw function.
2138 1.26 msaitoh * Then performs revision-specific operations, if any.
2139 1.1 dyoung **/
2140 1.6 msaitoh s32 ixgbe_start_hw_82599(struct ixgbe_hw *hw)
2141 1.1 dyoung {
2142 1.1 dyoung s32 ret_val = IXGBE_SUCCESS;
2143 1.1 dyoung
2144 1.6 msaitoh DEBUGFUNC("ixgbe_start_hw_82599");
2145 1.1 dyoung
2146 1.1 dyoung ret_val = ixgbe_start_hw_generic(hw);
2147 1.1 dyoung if (ret_val != IXGBE_SUCCESS)
2148 1.1 dyoung goto out;
2149 1.1 dyoung
2150 1.25 msaitoh ixgbe_start_hw_gen2(hw);
2151 1.1 dyoung
2152 1.1 dyoung /* We need to run link autotry after the driver loads */
2153 1.1 dyoung hw->mac.autotry_restart = TRUE;
2154 1.1 dyoung
2155 1.1 dyoung if (ret_val == IXGBE_SUCCESS)
2156 1.1 dyoung ret_val = ixgbe_verify_fw_version_82599(hw);
2157 1.1 dyoung out:
2158 1.1 dyoung return ret_val;
2159 1.1 dyoung }
2160 1.1 dyoung
2161 1.1 dyoung /**
2162 1.26 msaitoh * ixgbe_identify_phy_82599 - Get physical layer module
2163 1.26 msaitoh * @hw: pointer to hardware structure
2164 1.1 dyoung *
2165 1.26 msaitoh * Determines the physical layer module found on the current adapter.
2166 1.26 msaitoh * If PHY already detected, maintains current PHY type in hw struct,
2167 1.26 msaitoh * otherwise executes the PHY detection routine.
2168 1.1 dyoung **/
2169 1.1 dyoung s32 ixgbe_identify_phy_82599(struct ixgbe_hw *hw)
2170 1.1 dyoung {
2171 1.12 msaitoh s32 status;
2172 1.1 dyoung
2173 1.1 dyoung DEBUGFUNC("ixgbe_identify_phy_82599");
2174 1.1 dyoung
2175 1.1 dyoung /* Detect PHY if not unknown - returns success if already detected. */
2176 1.1 dyoung status = ixgbe_identify_phy_generic(hw);
2177 1.1 dyoung if (status != IXGBE_SUCCESS) {
2178 1.1 dyoung /* 82599 10GBASE-T requires an external PHY */
2179 1.1 dyoung if (hw->mac.ops.get_media_type(hw) == ixgbe_media_type_copper)
2180 1.12 msaitoh return status;
2181 1.1 dyoung else
2182 1.6 msaitoh status = ixgbe_identify_module_generic(hw);
2183 1.1 dyoung }
2184 1.1 dyoung
2185 1.1 dyoung /* Set PHY type none if no PHY detected */
2186 1.1 dyoung if (hw->phy.type == ixgbe_phy_unknown) {
2187 1.1 dyoung hw->phy.type = ixgbe_phy_none;
2188 1.12 msaitoh return IXGBE_SUCCESS;
2189 1.1 dyoung }
2190 1.1 dyoung
2191 1.1 dyoung /* Return error if SFP module has been detected but is not supported */
2192 1.1 dyoung if (hw->phy.type == ixgbe_phy_sfp_unsupported)
2193 1.12 msaitoh return IXGBE_ERR_SFP_NOT_SUPPORTED;
2194 1.1 dyoung
2195 1.1 dyoung return status;
2196 1.1 dyoung }
2197 1.1 dyoung
2198 1.1 dyoung /**
2199 1.26 msaitoh * ixgbe_get_supported_physical_layer_82599 - Returns physical layer type
2200 1.26 msaitoh * @hw: pointer to hardware structure
2201 1.1 dyoung *
2202 1.26 msaitoh * Determines physical layer capabilities of the current configuration.
2203 1.1 dyoung **/
2204 1.15 msaitoh u64 ixgbe_get_supported_physical_layer_82599(struct ixgbe_hw *hw)
2205 1.1 dyoung {
2206 1.15 msaitoh u64 physical_layer = IXGBE_PHYSICAL_LAYER_UNKNOWN;
2207 1.1 dyoung u32 autoc = IXGBE_READ_REG(hw, IXGBE_AUTOC);
2208 1.1 dyoung u32 autoc2 = IXGBE_READ_REG(hw, IXGBE_AUTOC2);
2209 1.1 dyoung u32 pma_pmd_10g_serial = autoc2 & IXGBE_AUTOC2_10G_SERIAL_PMA_PMD_MASK;
2210 1.1 dyoung u32 pma_pmd_10g_parallel = autoc & IXGBE_AUTOC_10G_PMA_PMD_MASK;
2211 1.1 dyoung u32 pma_pmd_1g = autoc & IXGBE_AUTOC_1G_PMA_PMD_MASK;
2212 1.1 dyoung u16 ext_ability = 0;
2213 1.1 dyoung
2214 1.1 dyoung DEBUGFUNC("ixgbe_get_support_physical_layer_82599");
2215 1.1 dyoung
2216 1.1 dyoung hw->phy.ops.identify(hw);
2217 1.1 dyoung
2218 1.1 dyoung switch (hw->phy.type) {
2219 1.1 dyoung case ixgbe_phy_tn:
2220 1.1 dyoung case ixgbe_phy_cu_unknown:
2221 1.1 dyoung hw->phy.ops.read_reg(hw, IXGBE_MDIO_PHY_EXT_ABILITY,
2222 1.1 dyoung IXGBE_MDIO_PMA_PMD_DEV_TYPE, &ext_ability);
2223 1.1 dyoung if (ext_ability & IXGBE_MDIO_PHY_10GBASET_ABILITY)
2224 1.1 dyoung physical_layer |= IXGBE_PHYSICAL_LAYER_10GBASE_T;
2225 1.1 dyoung if (ext_ability & IXGBE_MDIO_PHY_1000BASET_ABILITY)
2226 1.1 dyoung physical_layer |= IXGBE_PHYSICAL_LAYER_1000BASE_T;
2227 1.1 dyoung if (ext_ability & IXGBE_MDIO_PHY_100BASETX_ABILITY)
2228 1.1 dyoung physical_layer |= IXGBE_PHYSICAL_LAYER_100BASE_TX;
2229 1.1 dyoung goto out;
2230 1.1 dyoung default:
2231 1.1 dyoung break;
2232 1.1 dyoung }
2233 1.1 dyoung
2234 1.1 dyoung switch (autoc & IXGBE_AUTOC_LMS_MASK) {
2235 1.1 dyoung case IXGBE_AUTOC_LMS_1G_AN:
2236 1.1 dyoung case IXGBE_AUTOC_LMS_1G_LINK_NO_AN:
2237 1.1 dyoung if (pma_pmd_1g == IXGBE_AUTOC_1G_KX_BX) {
2238 1.1 dyoung physical_layer = IXGBE_PHYSICAL_LAYER_1000BASE_KX |
2239 1.1 dyoung IXGBE_PHYSICAL_LAYER_1000BASE_BX;
2240 1.1 dyoung goto out;
2241 1.1 dyoung } else
2242 1.1 dyoung /* SFI mode so read SFP module */
2243 1.1 dyoung goto sfp_check;
2244 1.1 dyoung break;
2245 1.1 dyoung case IXGBE_AUTOC_LMS_10G_LINK_NO_AN:
2246 1.1 dyoung if (pma_pmd_10g_parallel == IXGBE_AUTOC_10G_CX4)
2247 1.1 dyoung physical_layer = IXGBE_PHYSICAL_LAYER_10GBASE_CX4;
2248 1.1 dyoung else if (pma_pmd_10g_parallel == IXGBE_AUTOC_10G_KX4)
2249 1.1 dyoung physical_layer = IXGBE_PHYSICAL_LAYER_10GBASE_KX4;
2250 1.1 dyoung else if (pma_pmd_10g_parallel == IXGBE_AUTOC_10G_XAUI)
2251 1.1 dyoung physical_layer = IXGBE_PHYSICAL_LAYER_10GBASE_XAUI;
2252 1.1 dyoung goto out;
2253 1.1 dyoung break;
2254 1.1 dyoung case IXGBE_AUTOC_LMS_10G_SERIAL:
2255 1.1 dyoung if (pma_pmd_10g_serial == IXGBE_AUTOC2_10G_KR) {
2256 1.1 dyoung physical_layer = IXGBE_PHYSICAL_LAYER_10GBASE_KR;
2257 1.1 dyoung goto out;
2258 1.1 dyoung } else if (pma_pmd_10g_serial == IXGBE_AUTOC2_10G_SFI)
2259 1.1 dyoung goto sfp_check;
2260 1.1 dyoung break;
2261 1.1 dyoung case IXGBE_AUTOC_LMS_KX4_KX_KR:
2262 1.1 dyoung case IXGBE_AUTOC_LMS_KX4_KX_KR_1G_AN:
2263 1.1 dyoung if (autoc & IXGBE_AUTOC_KX_SUPP)
2264 1.1 dyoung physical_layer |= IXGBE_PHYSICAL_LAYER_1000BASE_KX;
2265 1.1 dyoung if (autoc & IXGBE_AUTOC_KX4_SUPP)
2266 1.1 dyoung physical_layer |= IXGBE_PHYSICAL_LAYER_10GBASE_KX4;
2267 1.1 dyoung if (autoc & IXGBE_AUTOC_KR_SUPP)
2268 1.1 dyoung physical_layer |= IXGBE_PHYSICAL_LAYER_10GBASE_KR;
2269 1.1 dyoung goto out;
2270 1.1 dyoung break;
2271 1.1 dyoung default:
2272 1.1 dyoung goto out;
2273 1.1 dyoung break;
2274 1.1 dyoung }
2275 1.1 dyoung
2276 1.1 dyoung sfp_check:
2277 1.1 dyoung /* SFP check must be done last since DA modules are sometimes used to
2278 1.1 dyoung * test KR mode - we need to id KR mode correctly before SFP module.
2279 1.1 dyoung * Call identify_sfp because the pluggable module may have changed */
2280 1.12 msaitoh physical_layer = ixgbe_get_supported_phy_sfp_layer_generic(hw);
2281 1.1 dyoung out:
2282 1.1 dyoung return physical_layer;
2283 1.1 dyoung }
2284 1.1 dyoung
2285 1.1 dyoung /**
2286 1.26 msaitoh * ixgbe_enable_rx_dma_82599 - Enable the Rx DMA unit on 82599
2287 1.26 msaitoh * @hw: pointer to hardware structure
2288 1.26 msaitoh * @regval: register value to write to RXCTRL
2289 1.1 dyoung *
2290 1.26 msaitoh * Enables the Rx DMA unit for 82599
2291 1.1 dyoung **/
2292 1.1 dyoung s32 ixgbe_enable_rx_dma_82599(struct ixgbe_hw *hw, u32 regval)
2293 1.1 dyoung {
2294 1.1 dyoung
2295 1.1 dyoung DEBUGFUNC("ixgbe_enable_rx_dma_82599");
2296 1.1 dyoung
2297 1.1 dyoung /*
2298 1.1 dyoung * Workaround for 82599 silicon errata when enabling the Rx datapath.
2299 1.1 dyoung * If traffic is incoming before we enable the Rx unit, it could hang
2300 1.1 dyoung * the Rx DMA unit. Therefore, make sure the security engine is
2301 1.1 dyoung * completely disabled prior to enabling the Rx unit.
2302 1.1 dyoung */
2303 1.1 dyoung
2304 1.6 msaitoh hw->mac.ops.disable_sec_rx_path(hw);
2305 1.1 dyoung
2306 1.12 msaitoh if (regval & IXGBE_RXCTRL_RXEN)
2307 1.12 msaitoh ixgbe_enable_rx(hw);
2308 1.12 msaitoh else
2309 1.12 msaitoh ixgbe_disable_rx(hw);
2310 1.6 msaitoh
2311 1.6 msaitoh hw->mac.ops.enable_sec_rx_path(hw);
2312 1.1 dyoung
2313 1.1 dyoung return IXGBE_SUCCESS;
2314 1.1 dyoung }
2315 1.1 dyoung
2316 1.1 dyoung /**
2317 1.26 msaitoh * ixgbe_verify_fw_version_82599 - verify FW version for 82599
2318 1.26 msaitoh * @hw: pointer to hardware structure
2319 1.1 dyoung *
2320 1.26 msaitoh * Verifies that installed the firmware version is 0.6 or higher
2321 1.26 msaitoh * for SFI devices. All 82599 SFI devices should have version 0.6 or higher.
2322 1.1 dyoung *
2323 1.26 msaitoh * Returns IXGBE_ERR_EEPROM_VERSION if the FW is not present or
2324 1.26 msaitoh * if the FW version is not supported.
2325 1.1 dyoung **/
2326 1.10 msaitoh static s32 ixgbe_verify_fw_version_82599(struct ixgbe_hw *hw)
2327 1.1 dyoung {
2328 1.1 dyoung s32 status = IXGBE_ERR_EEPROM_VERSION;
2329 1.1 dyoung u16 fw_offset, fw_ptp_cfg_offset;
2330 1.10 msaitoh u16 fw_version;
2331 1.1 dyoung
2332 1.1 dyoung DEBUGFUNC("ixgbe_verify_fw_version_82599");
2333 1.1 dyoung
2334 1.1 dyoung /* firmware check is only necessary for SFI devices */
2335 1.1 dyoung if (hw->phy.media_type != ixgbe_media_type_fiber) {
2336 1.1 dyoung status = IXGBE_SUCCESS;
2337 1.1 dyoung goto fw_version_out;
2338 1.1 dyoung }
2339 1.1 dyoung
2340 1.1 dyoung /* get the offset to the Firmware Module block */
2341 1.10 msaitoh if (hw->eeprom.ops.read(hw, IXGBE_FW_PTR, &fw_offset)) {
2342 1.10 msaitoh ERROR_REPORT2(IXGBE_ERROR_INVALID_STATE,
2343 1.10 msaitoh "eeprom read at offset %d failed", IXGBE_FW_PTR);
2344 1.10 msaitoh return IXGBE_ERR_EEPROM_VERSION;
2345 1.10 msaitoh }
2346 1.1 dyoung
2347 1.1 dyoung if ((fw_offset == 0) || (fw_offset == 0xFFFF))
2348 1.1 dyoung goto fw_version_out;
2349 1.1 dyoung
2350 1.1 dyoung /* get the offset to the Pass Through Patch Configuration block */
2351 1.10 msaitoh if (hw->eeprom.ops.read(hw, (fw_offset +
2352 1.6 msaitoh IXGBE_FW_PASSTHROUGH_PATCH_CONFIG_PTR),
2353 1.10 msaitoh &fw_ptp_cfg_offset)) {
2354 1.10 msaitoh ERROR_REPORT2(IXGBE_ERROR_INVALID_STATE,
2355 1.10 msaitoh "eeprom read at offset %d failed",
2356 1.10 msaitoh fw_offset +
2357 1.10 msaitoh IXGBE_FW_PASSTHROUGH_PATCH_CONFIG_PTR);
2358 1.10 msaitoh return IXGBE_ERR_EEPROM_VERSION;
2359 1.10 msaitoh }
2360 1.1 dyoung
2361 1.1 dyoung if ((fw_ptp_cfg_offset == 0) || (fw_ptp_cfg_offset == 0xFFFF))
2362 1.1 dyoung goto fw_version_out;
2363 1.1 dyoung
2364 1.1 dyoung /* get the firmware version */
2365 1.10 msaitoh if (hw->eeprom.ops.read(hw, (fw_ptp_cfg_offset +
2366 1.10 msaitoh IXGBE_FW_PATCH_VERSION_4), &fw_version)) {
2367 1.10 msaitoh ERROR_REPORT2(IXGBE_ERROR_INVALID_STATE,
2368 1.10 msaitoh "eeprom read at offset %d failed",
2369 1.10 msaitoh fw_ptp_cfg_offset + IXGBE_FW_PATCH_VERSION_4);
2370 1.10 msaitoh return IXGBE_ERR_EEPROM_VERSION;
2371 1.10 msaitoh }
2372 1.1 dyoung
2373 1.1 dyoung if (fw_version > 0x5)
2374 1.1 dyoung status = IXGBE_SUCCESS;
2375 1.1 dyoung
2376 1.1 dyoung fw_version_out:
2377 1.1 dyoung return status;
2378 1.1 dyoung }
2379 1.1 dyoung
2380 1.1 dyoung /**
2381 1.26 msaitoh * ixgbe_verify_lesm_fw_enabled_82599 - Checks LESM FW module state.
2382 1.26 msaitoh * @hw: pointer to hardware structure
2383 1.1 dyoung *
2384 1.26 msaitoh * Returns TRUE if the LESM FW module is present and enabled. Otherwise
2385 1.26 msaitoh * returns FALSE. Smart Speed must be disabled if LESM FW module is enabled.
2386 1.1 dyoung **/
2387 1.1 dyoung bool ixgbe_verify_lesm_fw_enabled_82599(struct ixgbe_hw *hw)
2388 1.1 dyoung {
2389 1.1 dyoung bool lesm_enabled = FALSE;
2390 1.1 dyoung u16 fw_offset, fw_lesm_param_offset, fw_lesm_state;
2391 1.1 dyoung s32 status;
2392 1.1 dyoung
2393 1.1 dyoung DEBUGFUNC("ixgbe_verify_lesm_fw_enabled_82599");
2394 1.1 dyoung
2395 1.1 dyoung /* get the offset to the Firmware Module block */
2396 1.1 dyoung status = hw->eeprom.ops.read(hw, IXGBE_FW_PTR, &fw_offset);
2397 1.1 dyoung
2398 1.1 dyoung if ((status != IXGBE_SUCCESS) ||
2399 1.1 dyoung (fw_offset == 0) || (fw_offset == 0xFFFF))
2400 1.1 dyoung goto out;
2401 1.1 dyoung
2402 1.1 dyoung /* get the offset to the LESM Parameters block */
2403 1.1 dyoung status = hw->eeprom.ops.read(hw, (fw_offset +
2404 1.6 msaitoh IXGBE_FW_LESM_PARAMETERS_PTR),
2405 1.6 msaitoh &fw_lesm_param_offset);
2406 1.1 dyoung
2407 1.1 dyoung if ((status != IXGBE_SUCCESS) ||
2408 1.1 dyoung (fw_lesm_param_offset == 0) || (fw_lesm_param_offset == 0xFFFF))
2409 1.1 dyoung goto out;
2410 1.1 dyoung
2411 1.12 msaitoh /* get the LESM state word */
2412 1.1 dyoung status = hw->eeprom.ops.read(hw, (fw_lesm_param_offset +
2413 1.6 msaitoh IXGBE_FW_LESM_STATE_1),
2414 1.6 msaitoh &fw_lesm_state);
2415 1.1 dyoung
2416 1.1 dyoung if ((status == IXGBE_SUCCESS) &&
2417 1.1 dyoung (fw_lesm_state & IXGBE_FW_LESM_STATE_ENABLED))
2418 1.1 dyoung lesm_enabled = TRUE;
2419 1.1 dyoung
2420 1.1 dyoung out:
2421 1.1 dyoung return lesm_enabled;
2422 1.1 dyoung }
2423 1.1 dyoung
2424 1.6 msaitoh /**
2425 1.26 msaitoh * ixgbe_read_eeprom_buffer_82599 - Read EEPROM word(s) using
2426 1.26 msaitoh * fastest available method
2427 1.6 msaitoh *
2428 1.26 msaitoh * @hw: pointer to hardware structure
2429 1.26 msaitoh * @offset: offset of word in EEPROM to read
2430 1.26 msaitoh * @words: number of words
2431 1.26 msaitoh * @data: word(s) read from the EEPROM
2432 1.6 msaitoh *
2433 1.26 msaitoh * Retrieves 16 bit word(s) read from EEPROM
2434 1.6 msaitoh **/
2435 1.6 msaitoh static s32 ixgbe_read_eeprom_buffer_82599(struct ixgbe_hw *hw, u16 offset,
2436 1.6 msaitoh u16 words, u16 *data)
2437 1.6 msaitoh {
2438 1.6 msaitoh struct ixgbe_eeprom_info *eeprom = &hw->eeprom;
2439 1.6 msaitoh s32 ret_val = IXGBE_ERR_CONFIG;
2440 1.6 msaitoh
2441 1.6 msaitoh DEBUGFUNC("ixgbe_read_eeprom_buffer_82599");
2442 1.6 msaitoh
2443 1.6 msaitoh /*
2444 1.6 msaitoh * If EEPROM is detected and can be addressed using 14 bits,
2445 1.6 msaitoh * use EERD otherwise use bit bang
2446 1.6 msaitoh */
2447 1.6 msaitoh if ((eeprom->type == ixgbe_eeprom_spi) &&
2448 1.6 msaitoh (offset + (words - 1) <= IXGBE_EERD_MAX_ADDR))
2449 1.6 msaitoh ret_val = ixgbe_read_eerd_buffer_generic(hw, offset, words,
2450 1.6 msaitoh data);
2451 1.6 msaitoh else
2452 1.6 msaitoh ret_val = ixgbe_read_eeprom_buffer_bit_bang_generic(hw, offset,
2453 1.6 msaitoh words,
2454 1.6 msaitoh data);
2455 1.6 msaitoh
2456 1.6 msaitoh return ret_val;
2457 1.6 msaitoh }
2458 1.6 msaitoh
2459 1.6 msaitoh /**
2460 1.26 msaitoh * ixgbe_read_eeprom_82599 - Read EEPROM word using
2461 1.26 msaitoh * fastest available method
2462 1.6 msaitoh *
2463 1.26 msaitoh * @hw: pointer to hardware structure
2464 1.26 msaitoh * @offset: offset of word in the EEPROM to read
2465 1.26 msaitoh * @data: word read from the EEPROM
2466 1.6 msaitoh *
2467 1.26 msaitoh * Reads a 16 bit word from the EEPROM
2468 1.6 msaitoh **/
2469 1.6 msaitoh static s32 ixgbe_read_eeprom_82599(struct ixgbe_hw *hw,
2470 1.6 msaitoh u16 offset, u16 *data)
2471 1.6 msaitoh {
2472 1.6 msaitoh struct ixgbe_eeprom_info *eeprom = &hw->eeprom;
2473 1.6 msaitoh s32 ret_val = IXGBE_ERR_CONFIG;
2474 1.6 msaitoh
2475 1.6 msaitoh DEBUGFUNC("ixgbe_read_eeprom_82599");
2476 1.6 msaitoh
2477 1.6 msaitoh /*
2478 1.6 msaitoh * If EEPROM is detected and can be addressed using 14 bits,
2479 1.6 msaitoh * use EERD otherwise use bit bang
2480 1.6 msaitoh */
2481 1.6 msaitoh if ((eeprom->type == ixgbe_eeprom_spi) &&
2482 1.6 msaitoh (offset <= IXGBE_EERD_MAX_ADDR))
2483 1.6 msaitoh ret_val = ixgbe_read_eerd_generic(hw, offset, data);
2484 1.6 msaitoh else
2485 1.6 msaitoh ret_val = ixgbe_read_eeprom_bit_bang_generic(hw, offset, data);
2486 1.6 msaitoh
2487 1.6 msaitoh return ret_val;
2488 1.6 msaitoh }
2489 1.1 dyoung
2490 1.9 msaitoh /**
2491 1.9 msaitoh * ixgbe_reset_pipeline_82599 - perform pipeline reset
2492 1.9 msaitoh *
2493 1.26 msaitoh * @hw: pointer to hardware structure
2494 1.9 msaitoh *
2495 1.9 msaitoh * Reset pipeline by asserting Restart_AN together with LMS change to ensure
2496 1.12 msaitoh * full pipeline reset. This function assumes the SW/FW lock is held.
2497 1.9 msaitoh **/
2498 1.17 msaitoh static s32 ixgbe_reset_pipeline_82599(struct ixgbe_hw *hw)
2499 1.9 msaitoh {
2500 1.9 msaitoh s32 ret_val;
2501 1.9 msaitoh u32 anlp1_reg = 0;
2502 1.9 msaitoh u32 i, autoc_reg, autoc2_reg;
2503 1.9 msaitoh
2504 1.9 msaitoh /* Enable link if disabled in NVM */
2505 1.9 msaitoh autoc2_reg = IXGBE_READ_REG(hw, IXGBE_AUTOC2);
2506 1.9 msaitoh if (autoc2_reg & IXGBE_AUTOC2_LINK_DISABLE_MASK) {
2507 1.9 msaitoh autoc2_reg &= ~IXGBE_AUTOC2_LINK_DISABLE_MASK;
2508 1.9 msaitoh IXGBE_WRITE_REG(hw, IXGBE_AUTOC2, autoc2_reg);
2509 1.9 msaitoh IXGBE_WRITE_FLUSH(hw);
2510 1.9 msaitoh }
2511 1.9 msaitoh
2512 1.12 msaitoh autoc_reg = IXGBE_READ_REG(hw, IXGBE_AUTOC);
2513 1.9 msaitoh autoc_reg |= IXGBE_AUTOC_AN_RESTART;
2514 1.9 msaitoh /* Write AUTOC register with toggled LMS[2] bit and Restart_AN */
2515 1.12 msaitoh IXGBE_WRITE_REG(hw, IXGBE_AUTOC,
2516 1.12 msaitoh autoc_reg ^ (0x4 << IXGBE_AUTOC_LMS_SHIFT));
2517 1.9 msaitoh /* Wait for AN to leave state 0 */
2518 1.9 msaitoh for (i = 0; i < 10; i++) {
2519 1.9 msaitoh msec_delay(4);
2520 1.9 msaitoh anlp1_reg = IXGBE_READ_REG(hw, IXGBE_ANLP1);
2521 1.9 msaitoh if (anlp1_reg & IXGBE_ANLP1_AN_STATE_MASK)
2522 1.9 msaitoh break;
2523 1.9 msaitoh }
2524 1.9 msaitoh
2525 1.9 msaitoh if (!(anlp1_reg & IXGBE_ANLP1_AN_STATE_MASK)) {
2526 1.9 msaitoh DEBUGOUT("auto negotiation not completed\n");
2527 1.9 msaitoh ret_val = IXGBE_ERR_RESET_FAILED;
2528 1.9 msaitoh goto reset_pipeline_out;
2529 1.9 msaitoh }
2530 1.9 msaitoh
2531 1.9 msaitoh ret_val = IXGBE_SUCCESS;
2532 1.9 msaitoh
2533 1.9 msaitoh reset_pipeline_out:
2534 1.9 msaitoh /* Write AUTOC register with original LMS field and Restart_AN */
2535 1.9 msaitoh IXGBE_WRITE_REG(hw, IXGBE_AUTOC, autoc_reg);
2536 1.9 msaitoh IXGBE_WRITE_FLUSH(hw);
2537 1.9 msaitoh
2538 1.9 msaitoh return ret_val;
2539 1.9 msaitoh }
2540 1.9 msaitoh
2541 1.12 msaitoh /**
2542 1.26 msaitoh * ixgbe_read_i2c_byte_82599 - Reads 8 bit word over I2C
2543 1.26 msaitoh * @hw: pointer to hardware structure
2544 1.26 msaitoh * @byte_offset: byte offset to read
2545 1.26 msaitoh * @dev_addr: address to read from
2546 1.26 msaitoh * @data: value read
2547 1.12 msaitoh *
2548 1.26 msaitoh * Performs byte read operation to SFP module's EEPROM over I2C interface at
2549 1.26 msaitoh * a specified device address.
2550 1.12 msaitoh **/
2551 1.12 msaitoh static s32 ixgbe_read_i2c_byte_82599(struct ixgbe_hw *hw, u8 byte_offset,
2552 1.12 msaitoh u8 dev_addr, u8 *data)
2553 1.12 msaitoh {
2554 1.12 msaitoh u32 esdp;
2555 1.12 msaitoh s32 status;
2556 1.12 msaitoh s32 timeout = 200;
2557 1.12 msaitoh
2558 1.12 msaitoh DEBUGFUNC("ixgbe_read_i2c_byte_82599");
2559 1.7 msaitoh
2560 1.12 msaitoh if (hw->phy.qsfp_shared_i2c_bus == TRUE) {
2561 1.12 msaitoh /* Acquire I2C bus ownership. */
2562 1.12 msaitoh esdp = IXGBE_READ_REG(hw, IXGBE_ESDP);
2563 1.12 msaitoh esdp |= IXGBE_ESDP_SDP0;
2564 1.12 msaitoh IXGBE_WRITE_REG(hw, IXGBE_ESDP, esdp);
2565 1.12 msaitoh IXGBE_WRITE_FLUSH(hw);
2566 1.12 msaitoh
2567 1.12 msaitoh while (timeout) {
2568 1.12 msaitoh esdp = IXGBE_READ_REG(hw, IXGBE_ESDP);
2569 1.12 msaitoh if (esdp & IXGBE_ESDP_SDP1)
2570 1.12 msaitoh break;
2571 1.12 msaitoh
2572 1.12 msaitoh msec_delay(5);
2573 1.12 msaitoh timeout--;
2574 1.12 msaitoh }
2575 1.12 msaitoh
2576 1.12 msaitoh if (!timeout) {
2577 1.12 msaitoh DEBUGOUT("Driver can't access resource,"
2578 1.12 msaitoh " acquiring I2C bus timeout.\n");
2579 1.12 msaitoh status = IXGBE_ERR_I2C;
2580 1.12 msaitoh goto release_i2c_access;
2581 1.12 msaitoh }
2582 1.12 msaitoh }
2583 1.12 msaitoh
2584 1.12 msaitoh status = ixgbe_read_i2c_byte_generic(hw, byte_offset, dev_addr, data);
2585 1.12 msaitoh
2586 1.12 msaitoh release_i2c_access:
2587 1.12 msaitoh
2588 1.12 msaitoh if (hw->phy.qsfp_shared_i2c_bus == TRUE) {
2589 1.12 msaitoh /* Release I2C bus ownership. */
2590 1.12 msaitoh esdp = IXGBE_READ_REG(hw, IXGBE_ESDP);
2591 1.12 msaitoh esdp &= ~IXGBE_ESDP_SDP0;
2592 1.12 msaitoh IXGBE_WRITE_REG(hw, IXGBE_ESDP, esdp);
2593 1.12 msaitoh IXGBE_WRITE_FLUSH(hw);
2594 1.12 msaitoh }
2595 1.12 msaitoh
2596 1.12 msaitoh return status;
2597 1.12 msaitoh }
2598 1.12 msaitoh
2599 1.12 msaitoh /**
2600 1.26 msaitoh * ixgbe_write_i2c_byte_82599 - Writes 8 bit word over I2C
2601 1.26 msaitoh * @hw: pointer to hardware structure
2602 1.26 msaitoh * @byte_offset: byte offset to write
2603 1.26 msaitoh * @dev_addr: address to read from
2604 1.26 msaitoh * @data: value to write
2605 1.12 msaitoh *
2606 1.26 msaitoh * Performs byte write operation to SFP module's EEPROM over I2C interface at
2607 1.26 msaitoh * a specified device address.
2608 1.12 msaitoh **/
2609 1.12 msaitoh static s32 ixgbe_write_i2c_byte_82599(struct ixgbe_hw *hw, u8 byte_offset,
2610 1.12 msaitoh u8 dev_addr, u8 data)
2611 1.12 msaitoh {
2612 1.12 msaitoh u32 esdp;
2613 1.12 msaitoh s32 status;
2614 1.12 msaitoh s32 timeout = 200;
2615 1.12 msaitoh
2616 1.12 msaitoh DEBUGFUNC("ixgbe_write_i2c_byte_82599");
2617 1.12 msaitoh
2618 1.12 msaitoh if (hw->phy.qsfp_shared_i2c_bus == TRUE) {
2619 1.12 msaitoh /* Acquire I2C bus ownership. */
2620 1.12 msaitoh esdp = IXGBE_READ_REG(hw, IXGBE_ESDP);
2621 1.12 msaitoh esdp |= IXGBE_ESDP_SDP0;
2622 1.12 msaitoh IXGBE_WRITE_REG(hw, IXGBE_ESDP, esdp);
2623 1.12 msaitoh IXGBE_WRITE_FLUSH(hw);
2624 1.12 msaitoh
2625 1.12 msaitoh while (timeout) {
2626 1.12 msaitoh esdp = IXGBE_READ_REG(hw, IXGBE_ESDP);
2627 1.12 msaitoh if (esdp & IXGBE_ESDP_SDP1)
2628 1.12 msaitoh break;
2629 1.12 msaitoh
2630 1.12 msaitoh msec_delay(5);
2631 1.12 msaitoh timeout--;
2632 1.12 msaitoh }
2633 1.12 msaitoh
2634 1.12 msaitoh if (!timeout) {
2635 1.12 msaitoh DEBUGOUT("Driver can't access resource,"
2636 1.12 msaitoh " acquiring I2C bus timeout.\n");
2637 1.12 msaitoh status = IXGBE_ERR_I2C;
2638 1.12 msaitoh goto release_i2c_access;
2639 1.12 msaitoh }
2640 1.12 msaitoh }
2641 1.12 msaitoh
2642 1.12 msaitoh status = ixgbe_write_i2c_byte_generic(hw, byte_offset, dev_addr, data);
2643 1.12 msaitoh
2644 1.12 msaitoh release_i2c_access:
2645 1.12 msaitoh
2646 1.12 msaitoh if (hw->phy.qsfp_shared_i2c_bus == TRUE) {
2647 1.12 msaitoh /* Release I2C bus ownership. */
2648 1.12 msaitoh esdp = IXGBE_READ_REG(hw, IXGBE_ESDP);
2649 1.12 msaitoh esdp &= ~IXGBE_ESDP_SDP0;
2650 1.12 msaitoh IXGBE_WRITE_REG(hw, IXGBE_ESDP, esdp);
2651 1.12 msaitoh IXGBE_WRITE_FLUSH(hw);
2652 1.12 msaitoh }
2653 1.12 msaitoh
2654 1.12 msaitoh return status;
2655 1.12 msaitoh }
2656