ixgbe_phy.c revision 1.20 1 1.20 msaitoh /* $NetBSD: ixgbe_phy.c,v 1.20 2019/12/23 09:36:18 msaitoh Exp $ */
2 1.12 msaitoh
3 1.1 dyoung /******************************************************************************
4 1.14 msaitoh SPDX-License-Identifier: BSD-3-Clause
5 1.1 dyoung
6 1.12 msaitoh Copyright (c) 2001-2017, Intel Corporation
7 1.1 dyoung All rights reserved.
8 1.12 msaitoh
9 1.12 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 1.12 msaitoh
12 1.12 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 1.12 msaitoh
15 1.12 msaitoh 2. Redistributions in binary form must reproduce the above copyright
16 1.12 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 1.12 msaitoh
19 1.12 msaitoh 3. Neither the name of the Intel Corporation nor the names of its
20 1.12 msaitoh contributors may be used to endorse or promote products derived from
21 1.1 dyoung this software without specific prior written permission.
22 1.12 msaitoh
23 1.1 dyoung THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
24 1.12 msaitoh AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
25 1.12 msaitoh IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
26 1.12 msaitoh ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
27 1.12 msaitoh LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
28 1.12 msaitoh CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
29 1.12 msaitoh SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
30 1.12 msaitoh INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
31 1.12 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 1.17 msaitoh /*$FreeBSD: head/sys/dev/ixgbe/ixgbe_phy.c 331224 2018-03-19 20:55:05Z erj $*/
37 1.1 dyoung
38 1.1 dyoung #include "ixgbe_api.h"
39 1.1 dyoung #include "ixgbe_common.h"
40 1.1 dyoung #include "ixgbe_phy.h"
41 1.1 dyoung
42 1.13 msaitoh #include <dev/mii/mdio.h>
43 1.13 msaitoh
44 1.1 dyoung static void ixgbe_i2c_start(struct ixgbe_hw *hw);
45 1.1 dyoung static void ixgbe_i2c_stop(struct ixgbe_hw *hw);
46 1.1 dyoung static s32 ixgbe_clock_in_i2c_byte(struct ixgbe_hw *hw, u8 *data);
47 1.1 dyoung static s32 ixgbe_clock_out_i2c_byte(struct ixgbe_hw *hw, u8 data);
48 1.1 dyoung static s32 ixgbe_get_i2c_ack(struct ixgbe_hw *hw);
49 1.1 dyoung static s32 ixgbe_clock_in_i2c_bit(struct ixgbe_hw *hw, bool *data);
50 1.1 dyoung static s32 ixgbe_clock_out_i2c_bit(struct ixgbe_hw *hw, bool data);
51 1.3 msaitoh static void ixgbe_raise_i2c_clk(struct ixgbe_hw *hw, u32 *i2cctl);
52 1.1 dyoung static void ixgbe_lower_i2c_clk(struct ixgbe_hw *hw, u32 *i2cctl);
53 1.1 dyoung static s32 ixgbe_set_i2c_data(struct ixgbe_hw *hw, u32 *i2cctl, bool data);
54 1.7 msaitoh static bool ixgbe_get_i2c_data(struct ixgbe_hw *hw, u32 *i2cctl);
55 1.5 msaitoh static s32 ixgbe_read_i2c_sff8472_generic(struct ixgbe_hw *hw, u8 byte_offset,
56 1.5 msaitoh u8 *sff8472_data);
57 1.1 dyoung
58 1.1 dyoung /**
59 1.7 msaitoh * ixgbe_out_i2c_byte_ack - Send I2C byte with ack
60 1.7 msaitoh * @hw: pointer to the hardware structure
61 1.7 msaitoh * @byte: byte to send
62 1.7 msaitoh *
63 1.7 msaitoh * Returns an error code on error.
64 1.7 msaitoh */
65 1.7 msaitoh static s32 ixgbe_out_i2c_byte_ack(struct ixgbe_hw *hw, u8 byte)
66 1.7 msaitoh {
67 1.7 msaitoh s32 status;
68 1.7 msaitoh
69 1.7 msaitoh status = ixgbe_clock_out_i2c_byte(hw, byte);
70 1.7 msaitoh if (status)
71 1.7 msaitoh return status;
72 1.7 msaitoh return ixgbe_get_i2c_ack(hw);
73 1.7 msaitoh }
74 1.7 msaitoh
75 1.7 msaitoh /**
76 1.7 msaitoh * ixgbe_in_i2c_byte_ack - Receive an I2C byte and send ack
77 1.7 msaitoh * @hw: pointer to the hardware structure
78 1.7 msaitoh * @byte: pointer to a u8 to receive the byte
79 1.7 msaitoh *
80 1.7 msaitoh * Returns an error code on error.
81 1.7 msaitoh */
82 1.7 msaitoh static s32 ixgbe_in_i2c_byte_ack(struct ixgbe_hw *hw, u8 *byte)
83 1.7 msaitoh {
84 1.7 msaitoh s32 status;
85 1.7 msaitoh
86 1.7 msaitoh status = ixgbe_clock_in_i2c_byte(hw, byte);
87 1.7 msaitoh if (status)
88 1.7 msaitoh return status;
89 1.7 msaitoh /* ACK */
90 1.7 msaitoh return ixgbe_clock_out_i2c_bit(hw, FALSE);
91 1.7 msaitoh }
92 1.7 msaitoh
93 1.7 msaitoh /**
94 1.7 msaitoh * ixgbe_ones_comp_byte_add - Perform one's complement addition
95 1.17 msaitoh * @add1: addend 1
96 1.17 msaitoh * @add2: addend 2
97 1.7 msaitoh *
98 1.7 msaitoh * Returns one's complement 8-bit sum.
99 1.7 msaitoh */
100 1.7 msaitoh static u8 ixgbe_ones_comp_byte_add(u8 add1, u8 add2)
101 1.7 msaitoh {
102 1.7 msaitoh u16 sum = add1 + add2;
103 1.7 msaitoh
104 1.7 msaitoh sum = (sum & 0xFF) + (sum >> 8);
105 1.7 msaitoh return sum & 0xFF;
106 1.7 msaitoh }
107 1.7 msaitoh
108 1.7 msaitoh /**
109 1.8 msaitoh * ixgbe_read_i2c_combined_generic_int - Perform I2C read combined operation
110 1.7 msaitoh * @hw: pointer to the hardware structure
111 1.7 msaitoh * @addr: I2C bus address to read from
112 1.7 msaitoh * @reg: I2C device register to read from
113 1.7 msaitoh * @val: pointer to location to receive read value
114 1.8 msaitoh * @lock: TRUE if to take and release semaphore
115 1.7 msaitoh *
116 1.7 msaitoh * Returns an error code on error.
117 1.7 msaitoh */
118 1.12 msaitoh s32 ixgbe_read_i2c_combined_generic_int(struct ixgbe_hw *hw, u8 addr, u16 reg,
119 1.12 msaitoh u16 *val, bool lock)
120 1.7 msaitoh {
121 1.7 msaitoh u32 swfw_mask = hw->phy.phy_semaphore_mask;
122 1.12 msaitoh int max_retry = 3;
123 1.7 msaitoh int retry = 0;
124 1.7 msaitoh u8 csum_byte;
125 1.7 msaitoh u8 high_bits;
126 1.7 msaitoh u8 low_bits;
127 1.7 msaitoh u8 reg_high;
128 1.7 msaitoh u8 csum;
129 1.7 msaitoh
130 1.7 msaitoh reg_high = ((reg >> 7) & 0xFE) | 1; /* Indicate read combined */
131 1.7 msaitoh csum = ixgbe_ones_comp_byte_add(reg_high, reg & 0xFF);
132 1.7 msaitoh csum = ~csum;
133 1.7 msaitoh do {
134 1.8 msaitoh if (lock && hw->mac.ops.acquire_swfw_sync(hw, swfw_mask))
135 1.7 msaitoh return IXGBE_ERR_SWFW_SYNC;
136 1.7 msaitoh ixgbe_i2c_start(hw);
137 1.7 msaitoh /* Device Address and write indication */
138 1.7 msaitoh if (ixgbe_out_i2c_byte_ack(hw, addr))
139 1.7 msaitoh goto fail;
140 1.7 msaitoh /* Write bits 14:8 */
141 1.7 msaitoh if (ixgbe_out_i2c_byte_ack(hw, reg_high))
142 1.7 msaitoh goto fail;
143 1.7 msaitoh /* Write bits 7:0 */
144 1.7 msaitoh if (ixgbe_out_i2c_byte_ack(hw, reg & 0xFF))
145 1.7 msaitoh goto fail;
146 1.7 msaitoh /* Write csum */
147 1.7 msaitoh if (ixgbe_out_i2c_byte_ack(hw, csum))
148 1.7 msaitoh goto fail;
149 1.7 msaitoh /* Re-start condition */
150 1.7 msaitoh ixgbe_i2c_start(hw);
151 1.7 msaitoh /* Device Address and read indication */
152 1.7 msaitoh if (ixgbe_out_i2c_byte_ack(hw, addr | 1))
153 1.7 msaitoh goto fail;
154 1.7 msaitoh /* Get upper bits */
155 1.7 msaitoh if (ixgbe_in_i2c_byte_ack(hw, &high_bits))
156 1.7 msaitoh goto fail;
157 1.7 msaitoh /* Get low bits */
158 1.7 msaitoh if (ixgbe_in_i2c_byte_ack(hw, &low_bits))
159 1.7 msaitoh goto fail;
160 1.7 msaitoh /* Get csum */
161 1.7 msaitoh if (ixgbe_clock_in_i2c_byte(hw, &csum_byte))
162 1.7 msaitoh goto fail;
163 1.7 msaitoh /* NACK */
164 1.7 msaitoh if (ixgbe_clock_out_i2c_bit(hw, FALSE))
165 1.7 msaitoh goto fail;
166 1.7 msaitoh ixgbe_i2c_stop(hw);
167 1.8 msaitoh if (lock)
168 1.8 msaitoh hw->mac.ops.release_swfw_sync(hw, swfw_mask);
169 1.7 msaitoh *val = (high_bits << 8) | low_bits;
170 1.7 msaitoh return 0;
171 1.7 msaitoh
172 1.7 msaitoh fail:
173 1.7 msaitoh ixgbe_i2c_bus_clear(hw);
174 1.8 msaitoh if (lock)
175 1.8 msaitoh hw->mac.ops.release_swfw_sync(hw, swfw_mask);
176 1.7 msaitoh retry++;
177 1.7 msaitoh if (retry < max_retry)
178 1.7 msaitoh DEBUGOUT("I2C byte read combined error - Retrying.\n");
179 1.7 msaitoh else
180 1.7 msaitoh DEBUGOUT("I2C byte read combined error.\n");
181 1.7 msaitoh } while (retry < max_retry);
182 1.7 msaitoh
183 1.7 msaitoh return IXGBE_ERR_I2C;
184 1.7 msaitoh }
185 1.7 msaitoh
186 1.7 msaitoh /**
187 1.8 msaitoh * ixgbe_write_i2c_combined_generic_int - Perform I2C write combined operation
188 1.7 msaitoh * @hw: pointer to the hardware structure
189 1.7 msaitoh * @addr: I2C bus address to write to
190 1.7 msaitoh * @reg: I2C device register to write to
191 1.7 msaitoh * @val: value to write
192 1.8 msaitoh * @lock: TRUE if to take and release semaphore
193 1.7 msaitoh *
194 1.7 msaitoh * Returns an error code on error.
195 1.7 msaitoh */
196 1.12 msaitoh s32 ixgbe_write_i2c_combined_generic_int(struct ixgbe_hw *hw, u8 addr, u16 reg,
197 1.12 msaitoh u16 val, bool lock)
198 1.7 msaitoh {
199 1.8 msaitoh u32 swfw_mask = hw->phy.phy_semaphore_mask;
200 1.7 msaitoh int max_retry = 1;
201 1.7 msaitoh int retry = 0;
202 1.7 msaitoh u8 reg_high;
203 1.7 msaitoh u8 csum;
204 1.7 msaitoh
205 1.7 msaitoh reg_high = (reg >> 7) & 0xFE; /* Indicate write combined */
206 1.7 msaitoh csum = ixgbe_ones_comp_byte_add(reg_high, reg & 0xFF);
207 1.7 msaitoh csum = ixgbe_ones_comp_byte_add(csum, val >> 8);
208 1.7 msaitoh csum = ixgbe_ones_comp_byte_add(csum, val & 0xFF);
209 1.7 msaitoh csum = ~csum;
210 1.7 msaitoh do {
211 1.8 msaitoh if (lock && hw->mac.ops.acquire_swfw_sync(hw, swfw_mask))
212 1.8 msaitoh return IXGBE_ERR_SWFW_SYNC;
213 1.7 msaitoh ixgbe_i2c_start(hw);
214 1.7 msaitoh /* Device Address and write indication */
215 1.7 msaitoh if (ixgbe_out_i2c_byte_ack(hw, addr))
216 1.7 msaitoh goto fail;
217 1.7 msaitoh /* Write bits 14:8 */
218 1.7 msaitoh if (ixgbe_out_i2c_byte_ack(hw, reg_high))
219 1.7 msaitoh goto fail;
220 1.7 msaitoh /* Write bits 7:0 */
221 1.7 msaitoh if (ixgbe_out_i2c_byte_ack(hw, reg & 0xFF))
222 1.7 msaitoh goto fail;
223 1.7 msaitoh /* Write data 15:8 */
224 1.7 msaitoh if (ixgbe_out_i2c_byte_ack(hw, val >> 8))
225 1.7 msaitoh goto fail;
226 1.7 msaitoh /* Write data 7:0 */
227 1.7 msaitoh if (ixgbe_out_i2c_byte_ack(hw, val & 0xFF))
228 1.7 msaitoh goto fail;
229 1.7 msaitoh /* Write csum */
230 1.7 msaitoh if (ixgbe_out_i2c_byte_ack(hw, csum))
231 1.7 msaitoh goto fail;
232 1.7 msaitoh ixgbe_i2c_stop(hw);
233 1.8 msaitoh if (lock)
234 1.8 msaitoh hw->mac.ops.release_swfw_sync(hw, swfw_mask);
235 1.7 msaitoh return 0;
236 1.7 msaitoh
237 1.7 msaitoh fail:
238 1.7 msaitoh ixgbe_i2c_bus_clear(hw);
239 1.8 msaitoh if (lock)
240 1.8 msaitoh hw->mac.ops.release_swfw_sync(hw, swfw_mask);
241 1.7 msaitoh retry++;
242 1.7 msaitoh if (retry < max_retry)
243 1.7 msaitoh DEBUGOUT("I2C byte write combined error - Retrying.\n");
244 1.7 msaitoh else
245 1.7 msaitoh DEBUGOUT("I2C byte write combined error.\n");
246 1.7 msaitoh } while (retry < max_retry);
247 1.7 msaitoh
248 1.7 msaitoh return IXGBE_ERR_I2C;
249 1.7 msaitoh }
250 1.7 msaitoh
251 1.7 msaitoh /**
252 1.1 dyoung * ixgbe_init_phy_ops_generic - Inits PHY function ptrs
253 1.1 dyoung * @hw: pointer to the hardware structure
254 1.1 dyoung *
255 1.1 dyoung * Initialize the function pointers.
256 1.1 dyoung **/
257 1.1 dyoung s32 ixgbe_init_phy_ops_generic(struct ixgbe_hw *hw)
258 1.1 dyoung {
259 1.1 dyoung struct ixgbe_phy_info *phy = &hw->phy;
260 1.1 dyoung
261 1.1 dyoung DEBUGFUNC("ixgbe_init_phy_ops_generic");
262 1.1 dyoung
263 1.1 dyoung /* PHY */
264 1.7 msaitoh phy->ops.identify = ixgbe_identify_phy_generic;
265 1.7 msaitoh phy->ops.reset = ixgbe_reset_phy_generic;
266 1.7 msaitoh phy->ops.read_reg = ixgbe_read_phy_reg_generic;
267 1.7 msaitoh phy->ops.write_reg = ixgbe_write_phy_reg_generic;
268 1.7 msaitoh phy->ops.read_reg_mdi = ixgbe_read_phy_reg_mdi;
269 1.7 msaitoh phy->ops.write_reg_mdi = ixgbe_write_phy_reg_mdi;
270 1.7 msaitoh phy->ops.setup_link = ixgbe_setup_phy_link_generic;
271 1.7 msaitoh phy->ops.setup_link_speed = ixgbe_setup_phy_link_speed_generic;
272 1.1 dyoung phy->ops.check_link = NULL;
273 1.1 dyoung phy->ops.get_firmware_version = ixgbe_get_phy_firmware_version_generic;
274 1.7 msaitoh phy->ops.read_i2c_byte = ixgbe_read_i2c_byte_generic;
275 1.7 msaitoh phy->ops.write_i2c_byte = ixgbe_write_i2c_byte_generic;
276 1.7 msaitoh phy->ops.read_i2c_sff8472 = ixgbe_read_i2c_sff8472_generic;
277 1.7 msaitoh phy->ops.read_i2c_eeprom = ixgbe_read_i2c_eeprom_generic;
278 1.7 msaitoh phy->ops.write_i2c_eeprom = ixgbe_write_i2c_eeprom_generic;
279 1.7 msaitoh phy->ops.i2c_bus_clear = ixgbe_i2c_bus_clear;
280 1.7 msaitoh phy->ops.identify_sfp = ixgbe_identify_module_generic;
281 1.1 dyoung phy->sfp_type = ixgbe_sfp_type_unknown;
282 1.8 msaitoh phy->ops.read_i2c_byte_unlocked = ixgbe_read_i2c_byte_generic_unlocked;
283 1.8 msaitoh phy->ops.write_i2c_byte_unlocked =
284 1.8 msaitoh ixgbe_write_i2c_byte_generic_unlocked;
285 1.7 msaitoh phy->ops.check_overtemp = ixgbe_tn_check_overtemp;
286 1.1 dyoung return IXGBE_SUCCESS;
287 1.1 dyoung }
288 1.1 dyoung
289 1.1 dyoung /**
290 1.12 msaitoh * ixgbe_probe_phy - Probe a single address for a PHY
291 1.12 msaitoh * @hw: pointer to hardware structure
292 1.12 msaitoh * @phy_addr: PHY address to probe
293 1.12 msaitoh *
294 1.12 msaitoh * Returns TRUE if PHY found
295 1.12 msaitoh */
296 1.12 msaitoh static bool ixgbe_probe_phy(struct ixgbe_hw *hw, u16 phy_addr)
297 1.12 msaitoh {
298 1.12 msaitoh u16 ext_ability = 0;
299 1.12 msaitoh
300 1.12 msaitoh if (!ixgbe_validate_phy_addr(hw, phy_addr)) {
301 1.12 msaitoh DEBUGOUT1("Unable to validate PHY address 0x%04X\n",
302 1.12 msaitoh phy_addr);
303 1.12 msaitoh return FALSE;
304 1.12 msaitoh }
305 1.12 msaitoh
306 1.12 msaitoh if (ixgbe_get_phy_id(hw))
307 1.12 msaitoh return FALSE;
308 1.12 msaitoh
309 1.12 msaitoh hw->phy.type = ixgbe_get_phy_type_from_id(hw->phy.id);
310 1.12 msaitoh
311 1.12 msaitoh if (hw->phy.type == ixgbe_phy_unknown) {
312 1.12 msaitoh hw->phy.ops.read_reg(hw, IXGBE_MDIO_PHY_EXT_ABILITY,
313 1.12 msaitoh IXGBE_MDIO_PMA_PMD_DEV_TYPE, &ext_ability);
314 1.12 msaitoh if (ext_ability &
315 1.12 msaitoh (IXGBE_MDIO_PHY_10GBASET_ABILITY |
316 1.12 msaitoh IXGBE_MDIO_PHY_1000BASET_ABILITY))
317 1.12 msaitoh hw->phy.type = ixgbe_phy_cu_unknown;
318 1.12 msaitoh else
319 1.12 msaitoh hw->phy.type = ixgbe_phy_generic;
320 1.12 msaitoh }
321 1.12 msaitoh
322 1.12 msaitoh return TRUE;
323 1.12 msaitoh }
324 1.12 msaitoh
325 1.12 msaitoh /**
326 1.1 dyoung * ixgbe_identify_phy_generic - Get physical layer module
327 1.1 dyoung * @hw: pointer to hardware structure
328 1.1 dyoung *
329 1.1 dyoung * Determines the physical layer module found on the current adapter.
330 1.1 dyoung **/
331 1.1 dyoung s32 ixgbe_identify_phy_generic(struct ixgbe_hw *hw)
332 1.1 dyoung {
333 1.1 dyoung s32 status = IXGBE_ERR_PHY_ADDR_INVALID;
334 1.12 msaitoh u16 phy_addr;
335 1.1 dyoung
336 1.1 dyoung DEBUGFUNC("ixgbe_identify_phy_generic");
337 1.1 dyoung
338 1.7 msaitoh if (!hw->phy.phy_semaphore_mask) {
339 1.7 msaitoh if (hw->bus.lan_id)
340 1.7 msaitoh hw->phy.phy_semaphore_mask = IXGBE_GSSR_PHY1_SM;
341 1.7 msaitoh else
342 1.7 msaitoh hw->phy.phy_semaphore_mask = IXGBE_GSSR_PHY0_SM;
343 1.7 msaitoh }
344 1.7 msaitoh
345 1.12 msaitoh if (hw->phy.type != ixgbe_phy_unknown)
346 1.12 msaitoh return IXGBE_SUCCESS;
347 1.1 dyoung
348 1.12 msaitoh if (hw->phy.nw_mng_if_sel) {
349 1.12 msaitoh phy_addr = (hw->phy.nw_mng_if_sel &
350 1.12 msaitoh IXGBE_NW_MNG_IF_SEL_MDIO_PHY_ADD) >>
351 1.12 msaitoh IXGBE_NW_MNG_IF_SEL_MDIO_PHY_ADD_SHIFT;
352 1.12 msaitoh if (ixgbe_probe_phy(hw, phy_addr))
353 1.12 msaitoh return IXGBE_SUCCESS;
354 1.12 msaitoh else
355 1.12 msaitoh return IXGBE_ERR_PHY_ADDR_INVALID;
356 1.12 msaitoh }
357 1.7 msaitoh
358 1.12 msaitoh for (phy_addr = 0; phy_addr < IXGBE_MAX_PHY_ADDR; phy_addr++) {
359 1.12 msaitoh if (ixgbe_probe_phy(hw, phy_addr)) {
360 1.12 msaitoh status = IXGBE_SUCCESS;
361 1.12 msaitoh break;
362 1.6 msaitoh }
363 1.1 dyoung }
364 1.1 dyoung
365 1.12 msaitoh /* Certain media types do not have a phy so an address will not
366 1.12 msaitoh * be found and the code will take this path. Caller has to
367 1.12 msaitoh * decide if it is an error or not.
368 1.12 msaitoh */
369 1.12 msaitoh if (status != IXGBE_SUCCESS)
370 1.12 msaitoh hw->phy.addr = 0;
371 1.12 msaitoh
372 1.1 dyoung return status;
373 1.1 dyoung }
374 1.1 dyoung
375 1.1 dyoung /**
376 1.7 msaitoh * ixgbe_check_reset_blocked - check status of MNG FW veto bit
377 1.7 msaitoh * @hw: pointer to the hardware structure
378 1.7 msaitoh *
379 1.7 msaitoh * This function checks the MMNGC.MNG_VETO bit to see if there are
380 1.7 msaitoh * any constraints on link from manageability. For MAC's that don't
381 1.7 msaitoh * have this bit just return faluse since the link can not be blocked
382 1.7 msaitoh * via this method.
383 1.7 msaitoh **/
384 1.7 msaitoh s32 ixgbe_check_reset_blocked(struct ixgbe_hw *hw)
385 1.7 msaitoh {
386 1.7 msaitoh u32 mmngc;
387 1.7 msaitoh
388 1.7 msaitoh DEBUGFUNC("ixgbe_check_reset_blocked");
389 1.7 msaitoh
390 1.7 msaitoh /* If we don't have this bit, it can't be blocking */
391 1.7 msaitoh if (hw->mac.type == ixgbe_mac_82598EB)
392 1.7 msaitoh return FALSE;
393 1.7 msaitoh
394 1.7 msaitoh mmngc = IXGBE_READ_REG(hw, IXGBE_MMNGC);
395 1.7 msaitoh if (mmngc & IXGBE_MMNGC_MNG_VETO) {
396 1.7 msaitoh ERROR_REPORT1(IXGBE_ERROR_SOFTWARE,
397 1.7 msaitoh "MNG_VETO bit detected.\n");
398 1.7 msaitoh return TRUE;
399 1.7 msaitoh }
400 1.7 msaitoh
401 1.7 msaitoh return FALSE;
402 1.7 msaitoh }
403 1.7 msaitoh
404 1.7 msaitoh /**
405 1.1 dyoung * ixgbe_validate_phy_addr - Determines phy address is valid
406 1.1 dyoung * @hw: pointer to hardware structure
407 1.17 msaitoh * @phy_addr: PHY address
408 1.1 dyoung *
409 1.1 dyoung **/
410 1.1 dyoung bool ixgbe_validate_phy_addr(struct ixgbe_hw *hw, u32 phy_addr)
411 1.1 dyoung {
412 1.1 dyoung u16 phy_id = 0;
413 1.1 dyoung bool valid = FALSE;
414 1.1 dyoung
415 1.1 dyoung DEBUGFUNC("ixgbe_validate_phy_addr");
416 1.1 dyoung
417 1.1 dyoung hw->phy.addr = phy_addr;
418 1.1 dyoung hw->phy.ops.read_reg(hw, IXGBE_MDIO_PHY_ID_HIGH,
419 1.3 msaitoh IXGBE_MDIO_PMA_PMD_DEV_TYPE, &phy_id);
420 1.1 dyoung
421 1.1 dyoung if (phy_id != 0xFFFF && phy_id != 0x0)
422 1.1 dyoung valid = TRUE;
423 1.1 dyoung
424 1.12 msaitoh DEBUGOUT1("PHY ID HIGH is 0x%04X\n", phy_id);
425 1.12 msaitoh
426 1.1 dyoung return valid;
427 1.1 dyoung }
428 1.1 dyoung
429 1.1 dyoung /**
430 1.1 dyoung * ixgbe_get_phy_id - Get the phy type
431 1.1 dyoung * @hw: pointer to hardware structure
432 1.1 dyoung *
433 1.1 dyoung **/
434 1.1 dyoung s32 ixgbe_get_phy_id(struct ixgbe_hw *hw)
435 1.1 dyoung {
436 1.1 dyoung u32 status;
437 1.1 dyoung u16 phy_id_high = 0;
438 1.1 dyoung u16 phy_id_low = 0;
439 1.1 dyoung
440 1.1 dyoung DEBUGFUNC("ixgbe_get_phy_id");
441 1.1 dyoung
442 1.1 dyoung status = hw->phy.ops.read_reg(hw, IXGBE_MDIO_PHY_ID_HIGH,
443 1.3 msaitoh IXGBE_MDIO_PMA_PMD_DEV_TYPE,
444 1.3 msaitoh &phy_id_high);
445 1.1 dyoung
446 1.1 dyoung if (status == IXGBE_SUCCESS) {
447 1.1 dyoung hw->phy.id = (u32)(phy_id_high << 16);
448 1.1 dyoung status = hw->phy.ops.read_reg(hw, IXGBE_MDIO_PHY_ID_LOW,
449 1.3 msaitoh IXGBE_MDIO_PMA_PMD_DEV_TYPE,
450 1.3 msaitoh &phy_id_low);
451 1.1 dyoung hw->phy.id |= (u32)(phy_id_low & IXGBE_PHY_REVISION_MASK);
452 1.1 dyoung hw->phy.revision = (u32)(phy_id_low & ~IXGBE_PHY_REVISION_MASK);
453 1.1 dyoung }
454 1.12 msaitoh DEBUGOUT2("PHY_ID_HIGH 0x%04X, PHY_ID_LOW 0x%04X\n",
455 1.12 msaitoh phy_id_high, phy_id_low);
456 1.12 msaitoh
457 1.1 dyoung return status;
458 1.1 dyoung }
459 1.1 dyoung
460 1.1 dyoung /**
461 1.1 dyoung * ixgbe_get_phy_type_from_id - Get the phy type
462 1.12 msaitoh * @phy_id: PHY ID information
463 1.1 dyoung *
464 1.1 dyoung **/
465 1.1 dyoung enum ixgbe_phy_type ixgbe_get_phy_type_from_id(u32 phy_id)
466 1.1 dyoung {
467 1.1 dyoung enum ixgbe_phy_type phy_type;
468 1.1 dyoung
469 1.1 dyoung DEBUGFUNC("ixgbe_get_phy_type_from_id");
470 1.1 dyoung
471 1.1 dyoung switch (phy_id) {
472 1.1 dyoung case TN1010_PHY_ID:
473 1.1 dyoung phy_type = ixgbe_phy_tn;
474 1.1 dyoung break;
475 1.9 msaitoh case X550_PHY_ID2:
476 1.9 msaitoh case X550_PHY_ID3:
477 1.3 msaitoh case X540_PHY_ID:
478 1.1 dyoung phy_type = ixgbe_phy_aq;
479 1.1 dyoung break;
480 1.1 dyoung case QT2022_PHY_ID:
481 1.1 dyoung phy_type = ixgbe_phy_qt;
482 1.1 dyoung break;
483 1.1 dyoung case ATH_PHY_ID:
484 1.1 dyoung phy_type = ixgbe_phy_nl;
485 1.1 dyoung break;
486 1.7 msaitoh case X557_PHY_ID:
487 1.12 msaitoh case X557_PHY_ID2:
488 1.7 msaitoh phy_type = ixgbe_phy_x550em_ext_t;
489 1.7 msaitoh break;
490 1.12 msaitoh case IXGBE_M88E1500_E_PHY_ID:
491 1.12 msaitoh case IXGBE_M88E1543_E_PHY_ID:
492 1.12 msaitoh phy_type = ixgbe_phy_ext_1g_t;
493 1.12 msaitoh break;
494 1.1 dyoung default:
495 1.1 dyoung phy_type = ixgbe_phy_unknown;
496 1.1 dyoung break;
497 1.1 dyoung }
498 1.1 dyoung return phy_type;
499 1.1 dyoung }
500 1.1 dyoung
501 1.1 dyoung /**
502 1.1 dyoung * ixgbe_reset_phy_generic - Performs a PHY reset
503 1.1 dyoung * @hw: pointer to hardware structure
504 1.1 dyoung **/
505 1.1 dyoung s32 ixgbe_reset_phy_generic(struct ixgbe_hw *hw)
506 1.1 dyoung {
507 1.1 dyoung u32 i;
508 1.1 dyoung u16 ctrl = 0;
509 1.1 dyoung s32 status = IXGBE_SUCCESS;
510 1.1 dyoung
511 1.1 dyoung DEBUGFUNC("ixgbe_reset_phy_generic");
512 1.1 dyoung
513 1.1 dyoung if (hw->phy.type == ixgbe_phy_unknown)
514 1.1 dyoung status = ixgbe_identify_phy_generic(hw);
515 1.1 dyoung
516 1.1 dyoung if (status != IXGBE_SUCCESS || hw->phy.type == ixgbe_phy_none)
517 1.1 dyoung goto out;
518 1.1 dyoung
519 1.1 dyoung /* Don't reset PHY if it's shut down due to overtemp. */
520 1.1 dyoung if (!hw->phy.reset_if_overtemp &&
521 1.1 dyoung (IXGBE_ERR_OVERTEMP == hw->phy.ops.check_overtemp(hw)))
522 1.1 dyoung goto out;
523 1.1 dyoung
524 1.7 msaitoh /* Blocked by MNG FW so bail */
525 1.7 msaitoh if (ixgbe_check_reset_blocked(hw))
526 1.7 msaitoh goto out;
527 1.7 msaitoh
528 1.1 dyoung /*
529 1.1 dyoung * Perform soft PHY reset to the PHY_XS.
530 1.1 dyoung * This will cause a soft reset to the PHY
531 1.1 dyoung */
532 1.1 dyoung hw->phy.ops.write_reg(hw, IXGBE_MDIO_PHY_XS_CONTROL,
533 1.3 msaitoh IXGBE_MDIO_PHY_XS_DEV_TYPE,
534 1.3 msaitoh IXGBE_MDIO_PHY_XS_RESET);
535 1.1 dyoung
536 1.1 dyoung /*
537 1.1 dyoung * Poll for reset bit to self-clear indicating reset is complete.
538 1.1 dyoung * Some PHYs could take up to 3 seconds to complete and need about
539 1.1 dyoung * 1.7 usec delay after the reset is complete.
540 1.1 dyoung */
541 1.1 dyoung for (i = 0; i < 30; i++) {
542 1.1 dyoung msec_delay(100);
543 1.12 msaitoh if (hw->phy.type == ixgbe_phy_x550em_ext_t) {
544 1.12 msaitoh status = hw->phy.ops.read_reg(hw,
545 1.12 msaitoh IXGBE_MDIO_TX_VENDOR_ALARMS_3,
546 1.12 msaitoh IXGBE_MDIO_PMA_PMD_DEV_TYPE,
547 1.12 msaitoh &ctrl);
548 1.12 msaitoh if (status != IXGBE_SUCCESS)
549 1.12 msaitoh return status;
550 1.12 msaitoh
551 1.12 msaitoh if (ctrl & IXGBE_MDIO_TX_VENDOR_ALARMS_3_RST_MASK) {
552 1.12 msaitoh usec_delay(2);
553 1.12 msaitoh break;
554 1.12 msaitoh }
555 1.12 msaitoh } else {
556 1.12 msaitoh status = hw->phy.ops.read_reg(hw,
557 1.12 msaitoh IXGBE_MDIO_PHY_XS_CONTROL,
558 1.12 msaitoh IXGBE_MDIO_PHY_XS_DEV_TYPE,
559 1.12 msaitoh &ctrl);
560 1.12 msaitoh if (status != IXGBE_SUCCESS)
561 1.12 msaitoh return status;
562 1.12 msaitoh
563 1.12 msaitoh if (!(ctrl & IXGBE_MDIO_PHY_XS_RESET)) {
564 1.12 msaitoh usec_delay(2);
565 1.12 msaitoh break;
566 1.12 msaitoh }
567 1.1 dyoung }
568 1.1 dyoung }
569 1.1 dyoung
570 1.1 dyoung if (ctrl & IXGBE_MDIO_PHY_XS_RESET) {
571 1.1 dyoung status = IXGBE_ERR_RESET_FAILED;
572 1.6 msaitoh ERROR_REPORT1(IXGBE_ERROR_POLLING,
573 1.6 msaitoh "PHY reset polling failed to complete.\n");
574 1.1 dyoung }
575 1.1 dyoung
576 1.1 dyoung out:
577 1.1 dyoung return status;
578 1.1 dyoung }
579 1.1 dyoung
580 1.1 dyoung /**
581 1.6 msaitoh * ixgbe_read_phy_mdi - Reads a value from a specified PHY register without
582 1.6 msaitoh * the SWFW lock
583 1.6 msaitoh * @hw: pointer to hardware structure
584 1.6 msaitoh * @reg_addr: 32 bit address of PHY register to read
585 1.17 msaitoh * @device_type: 5 bit device type
586 1.6 msaitoh * @phy_data: Pointer to read data from PHY register
587 1.6 msaitoh **/
588 1.6 msaitoh s32 ixgbe_read_phy_reg_mdi(struct ixgbe_hw *hw, u32 reg_addr, u32 device_type,
589 1.12 msaitoh u16 *phy_data)
590 1.6 msaitoh {
591 1.6 msaitoh u32 i, data, command;
592 1.6 msaitoh
593 1.6 msaitoh /* Setup and write the address cycle command */
594 1.6 msaitoh command = ((reg_addr << IXGBE_MSCA_NP_ADDR_SHIFT) |
595 1.6 msaitoh (device_type << IXGBE_MSCA_DEV_TYPE_SHIFT) |
596 1.6 msaitoh (hw->phy.addr << IXGBE_MSCA_PHY_ADDR_SHIFT) |
597 1.6 msaitoh (IXGBE_MSCA_ADDR_CYCLE | IXGBE_MSCA_MDI_COMMAND));
598 1.6 msaitoh
599 1.6 msaitoh IXGBE_WRITE_REG(hw, IXGBE_MSCA, command);
600 1.6 msaitoh
601 1.6 msaitoh /*
602 1.6 msaitoh * Check every 10 usec to see if the address cycle completed.
603 1.6 msaitoh * The MDI Command bit will clear when the operation is
604 1.6 msaitoh * complete
605 1.6 msaitoh */
606 1.6 msaitoh for (i = 0; i < IXGBE_MDIO_COMMAND_TIMEOUT; i++) {
607 1.6 msaitoh usec_delay(10);
608 1.6 msaitoh
609 1.6 msaitoh command = IXGBE_READ_REG(hw, IXGBE_MSCA);
610 1.6 msaitoh if ((command & IXGBE_MSCA_MDI_COMMAND) == 0)
611 1.12 msaitoh break;
612 1.6 msaitoh }
613 1.6 msaitoh
614 1.6 msaitoh
615 1.6 msaitoh if ((command & IXGBE_MSCA_MDI_COMMAND) != 0) {
616 1.6 msaitoh ERROR_REPORT1(IXGBE_ERROR_POLLING, "PHY address command did not complete.\n");
617 1.12 msaitoh DEBUGOUT("PHY address command did not complete, returning IXGBE_ERR_PHY\n");
618 1.6 msaitoh return IXGBE_ERR_PHY;
619 1.6 msaitoh }
620 1.6 msaitoh
621 1.6 msaitoh /*
622 1.6 msaitoh * Address cycle complete, setup and write the read
623 1.6 msaitoh * command
624 1.6 msaitoh */
625 1.6 msaitoh command = ((reg_addr << IXGBE_MSCA_NP_ADDR_SHIFT) |
626 1.6 msaitoh (device_type << IXGBE_MSCA_DEV_TYPE_SHIFT) |
627 1.6 msaitoh (hw->phy.addr << IXGBE_MSCA_PHY_ADDR_SHIFT) |
628 1.6 msaitoh (IXGBE_MSCA_READ | IXGBE_MSCA_MDI_COMMAND));
629 1.6 msaitoh
630 1.6 msaitoh IXGBE_WRITE_REG(hw, IXGBE_MSCA, command);
631 1.6 msaitoh
632 1.6 msaitoh /*
633 1.6 msaitoh * Check every 10 usec to see if the address cycle
634 1.6 msaitoh * completed. The MDI Command bit will clear when the
635 1.6 msaitoh * operation is complete
636 1.6 msaitoh */
637 1.6 msaitoh for (i = 0; i < IXGBE_MDIO_COMMAND_TIMEOUT; i++) {
638 1.6 msaitoh usec_delay(10);
639 1.6 msaitoh
640 1.6 msaitoh command = IXGBE_READ_REG(hw, IXGBE_MSCA);
641 1.6 msaitoh if ((command & IXGBE_MSCA_MDI_COMMAND) == 0)
642 1.6 msaitoh break;
643 1.6 msaitoh }
644 1.6 msaitoh
645 1.6 msaitoh if ((command & IXGBE_MSCA_MDI_COMMAND) != 0) {
646 1.6 msaitoh ERROR_REPORT1(IXGBE_ERROR_POLLING, "PHY read command didn't complete\n");
647 1.12 msaitoh DEBUGOUT("PHY read command didn't complete, returning IXGBE_ERR_PHY\n");
648 1.6 msaitoh return IXGBE_ERR_PHY;
649 1.6 msaitoh }
650 1.6 msaitoh
651 1.6 msaitoh /*
652 1.6 msaitoh * Read operation is complete. Get the data
653 1.6 msaitoh * from MSRWD
654 1.6 msaitoh */
655 1.6 msaitoh data = IXGBE_READ_REG(hw, IXGBE_MSRWD);
656 1.6 msaitoh data >>= IXGBE_MSRWD_READ_DATA_SHIFT;
657 1.6 msaitoh *phy_data = (u16)(data);
658 1.6 msaitoh
659 1.6 msaitoh return IXGBE_SUCCESS;
660 1.6 msaitoh }
661 1.6 msaitoh
662 1.6 msaitoh /**
663 1.1 dyoung * ixgbe_read_phy_reg_generic - Reads a value from a specified PHY register
664 1.6 msaitoh * using the SWFW lock - this function is needed in most cases
665 1.1 dyoung * @hw: pointer to hardware structure
666 1.1 dyoung * @reg_addr: 32 bit address of PHY register to read
667 1.17 msaitoh * @device_type: 5 bit device type
668 1.1 dyoung * @phy_data: Pointer to read data from PHY register
669 1.1 dyoung **/
670 1.1 dyoung s32 ixgbe_read_phy_reg_generic(struct ixgbe_hw *hw, u32 reg_addr,
671 1.3 msaitoh u32 device_type, u16 *phy_data)
672 1.1 dyoung {
673 1.6 msaitoh s32 status;
674 1.7 msaitoh u32 gssr = hw->phy.phy_semaphore_mask;
675 1.1 dyoung
676 1.1 dyoung DEBUGFUNC("ixgbe_read_phy_reg_generic");
677 1.1 dyoung
678 1.12 msaitoh if (hw->mac.ops.acquire_swfw_sync(hw, gssr))
679 1.12 msaitoh return IXGBE_ERR_SWFW_SYNC;
680 1.12 msaitoh
681 1.12 msaitoh status = hw->phy.ops.read_reg_mdi(hw, reg_addr, device_type, phy_data);
682 1.12 msaitoh
683 1.12 msaitoh hw->mac.ops.release_swfw_sync(hw, gssr);
684 1.6 msaitoh
685 1.6 msaitoh return status;
686 1.6 msaitoh }
687 1.6 msaitoh
688 1.6 msaitoh /**
689 1.6 msaitoh * ixgbe_write_phy_reg_mdi - Writes a value to specified PHY register
690 1.6 msaitoh * without SWFW lock
691 1.6 msaitoh * @hw: pointer to hardware structure
692 1.6 msaitoh * @reg_addr: 32 bit PHY register to write
693 1.6 msaitoh * @device_type: 5 bit device type
694 1.6 msaitoh * @phy_data: Data to write to the PHY register
695 1.6 msaitoh **/
696 1.6 msaitoh s32 ixgbe_write_phy_reg_mdi(struct ixgbe_hw *hw, u32 reg_addr,
697 1.6 msaitoh u32 device_type, u16 phy_data)
698 1.6 msaitoh {
699 1.6 msaitoh u32 i, command;
700 1.1 dyoung
701 1.6 msaitoh /* Put the data in the MDI single read and write data register*/
702 1.6 msaitoh IXGBE_WRITE_REG(hw, IXGBE_MSRWD, (u32)phy_data);
703 1.1 dyoung
704 1.6 msaitoh /* Setup and write the address cycle command */
705 1.6 msaitoh command = ((reg_addr << IXGBE_MSCA_NP_ADDR_SHIFT) |
706 1.6 msaitoh (device_type << IXGBE_MSCA_DEV_TYPE_SHIFT) |
707 1.6 msaitoh (hw->phy.addr << IXGBE_MSCA_PHY_ADDR_SHIFT) |
708 1.6 msaitoh (IXGBE_MSCA_ADDR_CYCLE | IXGBE_MSCA_MDI_COMMAND));
709 1.1 dyoung
710 1.6 msaitoh IXGBE_WRITE_REG(hw, IXGBE_MSCA, command);
711 1.1 dyoung
712 1.6 msaitoh /*
713 1.6 msaitoh * Check every 10 usec to see if the address cycle completed.
714 1.6 msaitoh * The MDI Command bit will clear when the operation is
715 1.6 msaitoh * complete
716 1.6 msaitoh */
717 1.6 msaitoh for (i = 0; i < IXGBE_MDIO_COMMAND_TIMEOUT; i++) {
718 1.6 msaitoh usec_delay(10);
719 1.1 dyoung
720 1.6 msaitoh command = IXGBE_READ_REG(hw, IXGBE_MSCA);
721 1.6 msaitoh if ((command & IXGBE_MSCA_MDI_COMMAND) == 0)
722 1.6 msaitoh break;
723 1.6 msaitoh }
724 1.1 dyoung
725 1.6 msaitoh if ((command & IXGBE_MSCA_MDI_COMMAND) != 0) {
726 1.6 msaitoh ERROR_REPORT1(IXGBE_ERROR_POLLING, "PHY address cmd didn't complete\n");
727 1.6 msaitoh return IXGBE_ERR_PHY;
728 1.6 msaitoh }
729 1.1 dyoung
730 1.6 msaitoh /*
731 1.6 msaitoh * Address cycle complete, setup and write the write
732 1.6 msaitoh * command
733 1.6 msaitoh */
734 1.6 msaitoh command = ((reg_addr << IXGBE_MSCA_NP_ADDR_SHIFT) |
735 1.6 msaitoh (device_type << IXGBE_MSCA_DEV_TYPE_SHIFT) |
736 1.6 msaitoh (hw->phy.addr << IXGBE_MSCA_PHY_ADDR_SHIFT) |
737 1.6 msaitoh (IXGBE_MSCA_WRITE | IXGBE_MSCA_MDI_COMMAND));
738 1.1 dyoung
739 1.6 msaitoh IXGBE_WRITE_REG(hw, IXGBE_MSCA, command);
740 1.1 dyoung
741 1.6 msaitoh /*
742 1.6 msaitoh * Check every 10 usec to see if the address cycle
743 1.6 msaitoh * completed. The MDI Command bit will clear when the
744 1.6 msaitoh * operation is complete
745 1.6 msaitoh */
746 1.6 msaitoh for (i = 0; i < IXGBE_MDIO_COMMAND_TIMEOUT; i++) {
747 1.6 msaitoh usec_delay(10);
748 1.1 dyoung
749 1.6 msaitoh command = IXGBE_READ_REG(hw, IXGBE_MSCA);
750 1.6 msaitoh if ((command & IXGBE_MSCA_MDI_COMMAND) == 0)
751 1.6 msaitoh break;
752 1.6 msaitoh }
753 1.1 dyoung
754 1.6 msaitoh if ((command & IXGBE_MSCA_MDI_COMMAND) != 0) {
755 1.6 msaitoh ERROR_REPORT1(IXGBE_ERROR_POLLING, "PHY write cmd didn't complete\n");
756 1.6 msaitoh return IXGBE_ERR_PHY;
757 1.1 dyoung }
758 1.1 dyoung
759 1.6 msaitoh return IXGBE_SUCCESS;
760 1.1 dyoung }
761 1.1 dyoung
762 1.1 dyoung /**
763 1.1 dyoung * ixgbe_write_phy_reg_generic - Writes a value to specified PHY register
764 1.6 msaitoh * using SWFW lock- this function is needed in most cases
765 1.1 dyoung * @hw: pointer to hardware structure
766 1.1 dyoung * @reg_addr: 32 bit PHY register to write
767 1.1 dyoung * @device_type: 5 bit device type
768 1.1 dyoung * @phy_data: Data to write to the PHY register
769 1.1 dyoung **/
770 1.1 dyoung s32 ixgbe_write_phy_reg_generic(struct ixgbe_hw *hw, u32 reg_addr,
771 1.3 msaitoh u32 device_type, u16 phy_data)
772 1.1 dyoung {
773 1.6 msaitoh s32 status;
774 1.7 msaitoh u32 gssr = hw->phy.phy_semaphore_mask;
775 1.1 dyoung
776 1.1 dyoung DEBUGFUNC("ixgbe_write_phy_reg_generic");
777 1.1 dyoung
778 1.6 msaitoh if (hw->mac.ops.acquire_swfw_sync(hw, gssr) == IXGBE_SUCCESS) {
779 1.12 msaitoh status = hw->phy.ops.write_reg_mdi(hw, reg_addr, device_type,
780 1.6 msaitoh phy_data);
781 1.6 msaitoh hw->mac.ops.release_swfw_sync(hw, gssr);
782 1.6 msaitoh } else {
783 1.1 dyoung status = IXGBE_ERR_SWFW_SYNC;
784 1.1 dyoung }
785 1.1 dyoung
786 1.1 dyoung return status;
787 1.1 dyoung }
788 1.1 dyoung
789 1.1 dyoung /**
790 1.7 msaitoh * ixgbe_setup_phy_link_generic - Set and restart auto-neg
791 1.1 dyoung * @hw: pointer to hardware structure
792 1.1 dyoung *
793 1.7 msaitoh * Restart auto-negotiation and PHY and waits for completion.
794 1.1 dyoung **/
795 1.1 dyoung s32 ixgbe_setup_phy_link_generic(struct ixgbe_hw *hw)
796 1.1 dyoung {
797 1.1 dyoung s32 status = IXGBE_SUCCESS;
798 1.1 dyoung u16 autoneg_reg = IXGBE_MII_AUTONEG_REG;
799 1.1 dyoung bool autoneg = FALSE;
800 1.1 dyoung ixgbe_link_speed speed;
801 1.1 dyoung
802 1.1 dyoung DEBUGFUNC("ixgbe_setup_phy_link_generic");
803 1.1 dyoung
804 1.1 dyoung ixgbe_get_copper_link_capabilities_generic(hw, &speed, &autoneg);
805 1.1 dyoung
806 1.12 msaitoh /* Set or unset auto-negotiation 10G advertisement */
807 1.12 msaitoh hw->phy.ops.read_reg(hw, IXGBE_MII_10GBASE_T_AUTONEG_CTRL_REG,
808 1.12 msaitoh IXGBE_MDIO_AUTO_NEG_DEV_TYPE,
809 1.12 msaitoh &autoneg_reg);
810 1.12 msaitoh
811 1.12 msaitoh autoneg_reg &= ~IXGBE_MII_10GBASE_T_ADVERTISE;
812 1.12 msaitoh if ((hw->phy.autoneg_advertised & IXGBE_LINK_SPEED_10GB_FULL) &&
813 1.12 msaitoh (speed & IXGBE_LINK_SPEED_10GB_FULL))
814 1.12 msaitoh autoneg_reg |= IXGBE_MII_10GBASE_T_ADVERTISE;
815 1.12 msaitoh
816 1.12 msaitoh hw->phy.ops.write_reg(hw, IXGBE_MII_10GBASE_T_AUTONEG_CTRL_REG,
817 1.12 msaitoh IXGBE_MDIO_AUTO_NEG_DEV_TYPE,
818 1.12 msaitoh autoneg_reg);
819 1.12 msaitoh
820 1.12 msaitoh hw->phy.ops.read_reg(hw, IXGBE_MII_AUTONEG_VENDOR_PROVISION_1_REG,
821 1.12 msaitoh IXGBE_MDIO_AUTO_NEG_DEV_TYPE,
822 1.12 msaitoh &autoneg_reg);
823 1.1 dyoung
824 1.7 msaitoh if (hw->mac.type == ixgbe_mac_X550) {
825 1.12 msaitoh /* Set or unset auto-negotiation 5G advertisement */
826 1.12 msaitoh autoneg_reg &= ~IXGBE_MII_5GBASE_T_ADVERTISE;
827 1.12 msaitoh if ((hw->phy.autoneg_advertised & IXGBE_LINK_SPEED_5GB_FULL) &&
828 1.12 msaitoh (speed & IXGBE_LINK_SPEED_5GB_FULL))
829 1.12 msaitoh autoneg_reg |= IXGBE_MII_5GBASE_T_ADVERTISE;
830 1.12 msaitoh
831 1.12 msaitoh /* Set or unset auto-negotiation 2.5G advertisement */
832 1.12 msaitoh autoneg_reg &= ~IXGBE_MII_2_5GBASE_T_ADVERTISE;
833 1.12 msaitoh if ((hw->phy.autoneg_advertised &
834 1.12 msaitoh IXGBE_LINK_SPEED_2_5GB_FULL) &&
835 1.12 msaitoh (speed & IXGBE_LINK_SPEED_2_5GB_FULL))
836 1.12 msaitoh autoneg_reg |= IXGBE_MII_2_5GBASE_T_ADVERTISE;
837 1.12 msaitoh }
838 1.12 msaitoh
839 1.12 msaitoh /* Set or unset auto-negotiation 1G advertisement */
840 1.12 msaitoh autoneg_reg &= ~IXGBE_MII_1GBASE_T_ADVERTISE;
841 1.12 msaitoh if ((hw->phy.autoneg_advertised & IXGBE_LINK_SPEED_1GB_FULL) &&
842 1.12 msaitoh (speed & IXGBE_LINK_SPEED_1GB_FULL))
843 1.12 msaitoh autoneg_reg |= IXGBE_MII_1GBASE_T_ADVERTISE;
844 1.12 msaitoh
845 1.12 msaitoh hw->phy.ops.write_reg(hw, IXGBE_MII_AUTONEG_VENDOR_PROVISION_1_REG,
846 1.12 msaitoh IXGBE_MDIO_AUTO_NEG_DEV_TYPE,
847 1.12 msaitoh autoneg_reg);
848 1.12 msaitoh
849 1.12 msaitoh /* Set or unset auto-negotiation 100M advertisement */
850 1.12 msaitoh hw->phy.ops.read_reg(hw, IXGBE_MII_AUTONEG_ADVERTISE_REG,
851 1.12 msaitoh IXGBE_MDIO_AUTO_NEG_DEV_TYPE,
852 1.12 msaitoh &autoneg_reg);
853 1.12 msaitoh
854 1.12 msaitoh autoneg_reg &= ~(IXGBE_MII_100BASE_T_ADVERTISE |
855 1.12 msaitoh IXGBE_MII_100BASE_T_ADVERTISE_HALF);
856 1.12 msaitoh if ((hw->phy.autoneg_advertised & IXGBE_LINK_SPEED_100_FULL) &&
857 1.12 msaitoh (speed & IXGBE_LINK_SPEED_100_FULL))
858 1.12 msaitoh autoneg_reg |= IXGBE_MII_100BASE_T_ADVERTISE;
859 1.12 msaitoh
860 1.12 msaitoh hw->phy.ops.write_reg(hw, IXGBE_MII_AUTONEG_ADVERTISE_REG,
861 1.12 msaitoh IXGBE_MDIO_AUTO_NEG_DEV_TYPE,
862 1.12 msaitoh autoneg_reg);
863 1.1 dyoung
864 1.13 msaitoh if (hw->phy.autoneg_advertised == IXGBE_LINK_SPEED_100_FULL) {
865 1.13 msaitoh u16 ctrl;
866 1.13 msaitoh
867 1.13 msaitoh /* Force 100Mbps */
868 1.13 msaitoh hw->phy.ops.read_reg(hw, MDIO_PMAPMD_CTRL1, MDIO_MMD_PMAPMD,
869 1.13 msaitoh &ctrl);
870 1.13 msaitoh ctrl &= ~PMAPMD_CTRL1_SPEED_MASK;
871 1.13 msaitoh ctrl |= PMAPMD_CTRL1_SPEED_100;
872 1.13 msaitoh hw->phy.ops.write_reg(hw, MDIO_PMAPMD_CTRL1,MDIO_MMD_PMAPMD,
873 1.13 msaitoh ctrl);
874 1.7 msaitoh
875 1.13 msaitoh /* Don't use auto-nego for 100Mbps */
876 1.13 msaitoh hw->phy.ops.read_reg(hw, IXGBE_MDIO_AUTO_NEG_CONTROL,
877 1.3 msaitoh IXGBE_MDIO_AUTO_NEG_DEV_TYPE, &autoneg_reg);
878 1.1 dyoung
879 1.19 msaitoh autoneg_reg &= ~AN_CTRL1_AUTOEN;
880 1.1 dyoung
881 1.13 msaitoh hw->phy.ops.write_reg(hw, IXGBE_MDIO_AUTO_NEG_CONTROL,
882 1.3 msaitoh IXGBE_MDIO_AUTO_NEG_DEV_TYPE, autoneg_reg);
883 1.13 msaitoh } else {
884 1.13 msaitoh /* Blocked by MNG FW so don't reset PHY */
885 1.13 msaitoh if (ixgbe_check_reset_blocked(hw))
886 1.13 msaitoh return status;
887 1.13 msaitoh
888 1.13 msaitoh /* Restart PHY auto-negotiation. */
889 1.13 msaitoh hw->phy.ops.read_reg(hw, IXGBE_MDIO_AUTO_NEG_CONTROL,
890 1.13 msaitoh IXGBE_MDIO_AUTO_NEG_DEV_TYPE, &autoneg_reg);
891 1.13 msaitoh
892 1.13 msaitoh autoneg_reg |= IXGBE_MII_RESTART | AN_CTRL1_AUTOEN;
893 1.13 msaitoh
894 1.13 msaitoh hw->phy.ops.write_reg(hw, IXGBE_MDIO_AUTO_NEG_CONTROL,
895 1.13 msaitoh IXGBE_MDIO_AUTO_NEG_DEV_TYPE, autoneg_reg);
896 1.13 msaitoh }
897 1.1 dyoung
898 1.1 dyoung return status;
899 1.1 dyoung }
900 1.1 dyoung
901 1.1 dyoung /**
902 1.1 dyoung * ixgbe_setup_phy_link_speed_generic - Sets the auto advertised capabilities
903 1.1 dyoung * @hw: pointer to hardware structure
904 1.1 dyoung * @speed: new link speed
905 1.17 msaitoh * @autoneg_wait_to_complete: unused
906 1.1 dyoung **/
907 1.1 dyoung s32 ixgbe_setup_phy_link_speed_generic(struct ixgbe_hw *hw,
908 1.3 msaitoh ixgbe_link_speed speed,
909 1.3 msaitoh bool autoneg_wait_to_complete)
910 1.1 dyoung {
911 1.5 msaitoh UNREFERENCED_1PARAMETER(autoneg_wait_to_complete);
912 1.1 dyoung
913 1.1 dyoung DEBUGFUNC("ixgbe_setup_phy_link_speed_generic");
914 1.1 dyoung
915 1.1 dyoung /*
916 1.1 dyoung * Clear autoneg_advertised and set new values based on input link
917 1.1 dyoung * speed.
918 1.1 dyoung */
919 1.1 dyoung hw->phy.autoneg_advertised = 0;
920 1.1 dyoung
921 1.1 dyoung if (speed & IXGBE_LINK_SPEED_10GB_FULL)
922 1.1 dyoung hw->phy.autoneg_advertised |= IXGBE_LINK_SPEED_10GB_FULL;
923 1.1 dyoung
924 1.7 msaitoh if (speed & IXGBE_LINK_SPEED_5GB_FULL)
925 1.7 msaitoh hw->phy.autoneg_advertised |= IXGBE_LINK_SPEED_5GB_FULL;
926 1.7 msaitoh
927 1.7 msaitoh if (speed & IXGBE_LINK_SPEED_2_5GB_FULL)
928 1.7 msaitoh hw->phy.autoneg_advertised |= IXGBE_LINK_SPEED_2_5GB_FULL;
929 1.7 msaitoh
930 1.1 dyoung if (speed & IXGBE_LINK_SPEED_1GB_FULL)
931 1.1 dyoung hw->phy.autoneg_advertised |= IXGBE_LINK_SPEED_1GB_FULL;
932 1.1 dyoung
933 1.1 dyoung if (speed & IXGBE_LINK_SPEED_100_FULL)
934 1.1 dyoung hw->phy.autoneg_advertised |= IXGBE_LINK_SPEED_100_FULL;
935 1.1 dyoung
936 1.12 msaitoh if (speed & IXGBE_LINK_SPEED_10_FULL)
937 1.12 msaitoh hw->phy.autoneg_advertised |= IXGBE_LINK_SPEED_10_FULL;
938 1.12 msaitoh
939 1.1 dyoung /* Setup link based on the new speed settings */
940 1.9 msaitoh ixgbe_setup_phy_link(hw);
941 1.1 dyoung
942 1.1 dyoung return IXGBE_SUCCESS;
943 1.1 dyoung }
944 1.1 dyoung
945 1.1 dyoung /**
946 1.9 msaitoh * ixgbe_get_copper_speeds_supported - Get copper link speeds from phy
947 1.9 msaitoh * @hw: pointer to hardware structure
948 1.9 msaitoh *
949 1.9 msaitoh * Determines the supported link capabilities by reading the PHY auto
950 1.9 msaitoh * negotiation register.
951 1.9 msaitoh **/
952 1.9 msaitoh static s32 ixgbe_get_copper_speeds_supported(struct ixgbe_hw *hw)
953 1.9 msaitoh {
954 1.9 msaitoh s32 status;
955 1.9 msaitoh u16 speed_ability;
956 1.9 msaitoh
957 1.9 msaitoh status = hw->phy.ops.read_reg(hw, IXGBE_MDIO_PHY_SPEED_ABILITY,
958 1.9 msaitoh IXGBE_MDIO_PMA_PMD_DEV_TYPE,
959 1.9 msaitoh &speed_ability);
960 1.9 msaitoh if (status)
961 1.9 msaitoh return status;
962 1.9 msaitoh
963 1.9 msaitoh if (speed_ability & IXGBE_MDIO_PHY_SPEED_10G)
964 1.9 msaitoh hw->phy.speeds_supported |= IXGBE_LINK_SPEED_10GB_FULL;
965 1.9 msaitoh if (speed_ability & IXGBE_MDIO_PHY_SPEED_1G)
966 1.9 msaitoh hw->phy.speeds_supported |= IXGBE_LINK_SPEED_1GB_FULL;
967 1.9 msaitoh if (speed_ability & IXGBE_MDIO_PHY_SPEED_100M)
968 1.9 msaitoh hw->phy.speeds_supported |= IXGBE_LINK_SPEED_100_FULL;
969 1.9 msaitoh
970 1.9 msaitoh switch (hw->mac.type) {
971 1.9 msaitoh case ixgbe_mac_X550:
972 1.9 msaitoh hw->phy.speeds_supported |= IXGBE_LINK_SPEED_2_5GB_FULL;
973 1.9 msaitoh hw->phy.speeds_supported |= IXGBE_LINK_SPEED_5GB_FULL;
974 1.9 msaitoh break;
975 1.9 msaitoh case ixgbe_mac_X550EM_x:
976 1.12 msaitoh case ixgbe_mac_X550EM_a:
977 1.9 msaitoh hw->phy.speeds_supported &= ~IXGBE_LINK_SPEED_100_FULL;
978 1.9 msaitoh break;
979 1.9 msaitoh default:
980 1.9 msaitoh break;
981 1.9 msaitoh }
982 1.9 msaitoh
983 1.9 msaitoh return status;
984 1.9 msaitoh }
985 1.9 msaitoh
986 1.9 msaitoh /**
987 1.1 dyoung * ixgbe_get_copper_link_capabilities_generic - Determines link capabilities
988 1.1 dyoung * @hw: pointer to hardware structure
989 1.1 dyoung * @speed: pointer to link speed
990 1.1 dyoung * @autoneg: boolean auto-negotiation value
991 1.1 dyoung **/
992 1.1 dyoung s32 ixgbe_get_copper_link_capabilities_generic(struct ixgbe_hw *hw,
993 1.3 msaitoh ixgbe_link_speed *speed,
994 1.3 msaitoh bool *autoneg)
995 1.1 dyoung {
996 1.9 msaitoh s32 status = IXGBE_SUCCESS;
997 1.1 dyoung
998 1.1 dyoung DEBUGFUNC("ixgbe_get_copper_link_capabilities_generic");
999 1.1 dyoung
1000 1.1 dyoung *autoneg = TRUE;
1001 1.9 msaitoh if (!hw->phy.speeds_supported)
1002 1.9 msaitoh status = ixgbe_get_copper_speeds_supported(hw);
1003 1.1 dyoung
1004 1.9 msaitoh *speed = hw->phy.speeds_supported;
1005 1.1 dyoung return status;
1006 1.1 dyoung }
1007 1.1 dyoung
1008 1.1 dyoung /**
1009 1.1 dyoung * ixgbe_check_phy_link_tnx - Determine link and speed status
1010 1.1 dyoung * @hw: pointer to hardware structure
1011 1.17 msaitoh * @speed: current link speed
1012 1.17 msaitoh * @link_up: TRUE is link is up, FALSE otherwise
1013 1.1 dyoung *
1014 1.1 dyoung * Reads the VS1 register to determine if link is up and the current speed for
1015 1.1 dyoung * the PHY.
1016 1.1 dyoung **/
1017 1.1 dyoung s32 ixgbe_check_phy_link_tnx(struct ixgbe_hw *hw, ixgbe_link_speed *speed,
1018 1.3 msaitoh bool *link_up)
1019 1.1 dyoung {
1020 1.1 dyoung s32 status = IXGBE_SUCCESS;
1021 1.1 dyoung u32 time_out;
1022 1.1 dyoung u32 max_time_out = 10;
1023 1.1 dyoung u16 phy_link = 0;
1024 1.1 dyoung u16 phy_speed = 0;
1025 1.1 dyoung u16 phy_data = 0;
1026 1.1 dyoung
1027 1.1 dyoung DEBUGFUNC("ixgbe_check_phy_link_tnx");
1028 1.1 dyoung
1029 1.1 dyoung /* Initialize speed and link to default case */
1030 1.1 dyoung *link_up = FALSE;
1031 1.1 dyoung *speed = IXGBE_LINK_SPEED_10GB_FULL;
1032 1.1 dyoung
1033 1.1 dyoung /*
1034 1.1 dyoung * Check current speed and link status of the PHY register.
1035 1.1 dyoung * This is a vendor specific register and may have to
1036 1.1 dyoung * be changed for other copper PHYs.
1037 1.1 dyoung */
1038 1.1 dyoung for (time_out = 0; time_out < max_time_out; time_out++) {
1039 1.1 dyoung usec_delay(10);
1040 1.1 dyoung status = hw->phy.ops.read_reg(hw,
1041 1.3 msaitoh IXGBE_MDIO_VENDOR_SPECIFIC_1_STATUS,
1042 1.3 msaitoh IXGBE_MDIO_VENDOR_SPECIFIC_1_DEV_TYPE,
1043 1.3 msaitoh &phy_data);
1044 1.3 msaitoh phy_link = phy_data & IXGBE_MDIO_VENDOR_SPECIFIC_1_LINK_STATUS;
1045 1.1 dyoung phy_speed = phy_data &
1046 1.3 msaitoh IXGBE_MDIO_VENDOR_SPECIFIC_1_SPEED_STATUS;
1047 1.1 dyoung if (phy_link == IXGBE_MDIO_VENDOR_SPECIFIC_1_LINK_STATUS) {
1048 1.1 dyoung *link_up = TRUE;
1049 1.1 dyoung if (phy_speed ==
1050 1.1 dyoung IXGBE_MDIO_VENDOR_SPECIFIC_1_SPEED_STATUS)
1051 1.1 dyoung *speed = IXGBE_LINK_SPEED_1GB_FULL;
1052 1.1 dyoung break;
1053 1.1 dyoung }
1054 1.1 dyoung }
1055 1.1 dyoung
1056 1.1 dyoung return status;
1057 1.1 dyoung }
1058 1.1 dyoung
1059 1.1 dyoung /**
1060 1.7 msaitoh * ixgbe_setup_phy_link_tnx - Set and restart auto-neg
1061 1.1 dyoung * @hw: pointer to hardware structure
1062 1.1 dyoung *
1063 1.7 msaitoh * Restart auto-negotiation and PHY and waits for completion.
1064 1.1 dyoung **/
1065 1.1 dyoung s32 ixgbe_setup_phy_link_tnx(struct ixgbe_hw *hw)
1066 1.1 dyoung {
1067 1.1 dyoung s32 status = IXGBE_SUCCESS;
1068 1.1 dyoung u16 autoneg_reg = IXGBE_MII_AUTONEG_REG;
1069 1.1 dyoung bool autoneg = FALSE;
1070 1.1 dyoung ixgbe_link_speed speed;
1071 1.1 dyoung
1072 1.1 dyoung DEBUGFUNC("ixgbe_setup_phy_link_tnx");
1073 1.1 dyoung
1074 1.1 dyoung ixgbe_get_copper_link_capabilities_generic(hw, &speed, &autoneg);
1075 1.1 dyoung
1076 1.1 dyoung if (speed & IXGBE_LINK_SPEED_10GB_FULL) {
1077 1.1 dyoung /* Set or unset auto-negotiation 10G advertisement */
1078 1.1 dyoung hw->phy.ops.read_reg(hw, IXGBE_MII_10GBASE_T_AUTONEG_CTRL_REG,
1079 1.3 msaitoh IXGBE_MDIO_AUTO_NEG_DEV_TYPE,
1080 1.3 msaitoh &autoneg_reg);
1081 1.1 dyoung
1082 1.1 dyoung autoneg_reg &= ~IXGBE_MII_10GBASE_T_ADVERTISE;
1083 1.1 dyoung if (hw->phy.autoneg_advertised & IXGBE_LINK_SPEED_10GB_FULL)
1084 1.1 dyoung autoneg_reg |= IXGBE_MII_10GBASE_T_ADVERTISE;
1085 1.1 dyoung
1086 1.1 dyoung hw->phy.ops.write_reg(hw, IXGBE_MII_10GBASE_T_AUTONEG_CTRL_REG,
1087 1.3 msaitoh IXGBE_MDIO_AUTO_NEG_DEV_TYPE,
1088 1.3 msaitoh autoneg_reg);
1089 1.1 dyoung }
1090 1.1 dyoung
1091 1.1 dyoung if (speed & IXGBE_LINK_SPEED_1GB_FULL) {
1092 1.1 dyoung /* Set or unset auto-negotiation 1G advertisement */
1093 1.1 dyoung hw->phy.ops.read_reg(hw, IXGBE_MII_AUTONEG_XNP_TX_REG,
1094 1.3 msaitoh IXGBE_MDIO_AUTO_NEG_DEV_TYPE,
1095 1.3 msaitoh &autoneg_reg);
1096 1.1 dyoung
1097 1.1 dyoung autoneg_reg &= ~IXGBE_MII_1GBASE_T_ADVERTISE_XNP_TX;
1098 1.1 dyoung if (hw->phy.autoneg_advertised & IXGBE_LINK_SPEED_1GB_FULL)
1099 1.1 dyoung autoneg_reg |= IXGBE_MII_1GBASE_T_ADVERTISE_XNP_TX;
1100 1.1 dyoung
1101 1.1 dyoung hw->phy.ops.write_reg(hw, IXGBE_MII_AUTONEG_XNP_TX_REG,
1102 1.3 msaitoh IXGBE_MDIO_AUTO_NEG_DEV_TYPE,
1103 1.3 msaitoh autoneg_reg);
1104 1.1 dyoung }
1105 1.1 dyoung
1106 1.1 dyoung if (speed & IXGBE_LINK_SPEED_100_FULL) {
1107 1.1 dyoung /* Set or unset auto-negotiation 100M advertisement */
1108 1.1 dyoung hw->phy.ops.read_reg(hw, IXGBE_MII_AUTONEG_ADVERTISE_REG,
1109 1.3 msaitoh IXGBE_MDIO_AUTO_NEG_DEV_TYPE,
1110 1.3 msaitoh &autoneg_reg);
1111 1.1 dyoung
1112 1.1 dyoung autoneg_reg &= ~IXGBE_MII_100BASE_T_ADVERTISE;
1113 1.1 dyoung if (hw->phy.autoneg_advertised & IXGBE_LINK_SPEED_100_FULL)
1114 1.1 dyoung autoneg_reg |= IXGBE_MII_100BASE_T_ADVERTISE;
1115 1.1 dyoung
1116 1.1 dyoung hw->phy.ops.write_reg(hw, IXGBE_MII_AUTONEG_ADVERTISE_REG,
1117 1.3 msaitoh IXGBE_MDIO_AUTO_NEG_DEV_TYPE,
1118 1.3 msaitoh autoneg_reg);
1119 1.1 dyoung }
1120 1.1 dyoung
1121 1.7 msaitoh /* Blocked by MNG FW so don't reset PHY */
1122 1.7 msaitoh if (ixgbe_check_reset_blocked(hw))
1123 1.7 msaitoh return status;
1124 1.7 msaitoh
1125 1.7 msaitoh /* Restart PHY auto-negotiation. */
1126 1.1 dyoung hw->phy.ops.read_reg(hw, IXGBE_MDIO_AUTO_NEG_CONTROL,
1127 1.3 msaitoh IXGBE_MDIO_AUTO_NEG_DEV_TYPE, &autoneg_reg);
1128 1.1 dyoung
1129 1.1 dyoung autoneg_reg |= IXGBE_MII_RESTART;
1130 1.1 dyoung
1131 1.1 dyoung hw->phy.ops.write_reg(hw, IXGBE_MDIO_AUTO_NEG_CONTROL,
1132 1.3 msaitoh IXGBE_MDIO_AUTO_NEG_DEV_TYPE, autoneg_reg);
1133 1.1 dyoung
1134 1.1 dyoung return status;
1135 1.1 dyoung }
1136 1.1 dyoung
1137 1.1 dyoung /**
1138 1.1 dyoung * ixgbe_get_phy_firmware_version_tnx - Gets the PHY Firmware Version
1139 1.1 dyoung * @hw: pointer to hardware structure
1140 1.1 dyoung * @firmware_version: pointer to the PHY Firmware Version
1141 1.1 dyoung **/
1142 1.1 dyoung s32 ixgbe_get_phy_firmware_version_tnx(struct ixgbe_hw *hw,
1143 1.3 msaitoh u16 *firmware_version)
1144 1.1 dyoung {
1145 1.7 msaitoh s32 status;
1146 1.1 dyoung
1147 1.1 dyoung DEBUGFUNC("ixgbe_get_phy_firmware_version_tnx");
1148 1.1 dyoung
1149 1.1 dyoung status = hw->phy.ops.read_reg(hw, TNX_FW_REV,
1150 1.3 msaitoh IXGBE_MDIO_VENDOR_SPECIFIC_1_DEV_TYPE,
1151 1.3 msaitoh firmware_version);
1152 1.1 dyoung
1153 1.1 dyoung return status;
1154 1.1 dyoung }
1155 1.1 dyoung
1156 1.1 dyoung /**
1157 1.1 dyoung * ixgbe_get_phy_firmware_version_generic - Gets the PHY Firmware Version
1158 1.1 dyoung * @hw: pointer to hardware structure
1159 1.1 dyoung * @firmware_version: pointer to the PHY Firmware Version
1160 1.1 dyoung **/
1161 1.1 dyoung s32 ixgbe_get_phy_firmware_version_generic(struct ixgbe_hw *hw,
1162 1.3 msaitoh u16 *firmware_version)
1163 1.1 dyoung {
1164 1.7 msaitoh s32 status;
1165 1.1 dyoung
1166 1.1 dyoung DEBUGFUNC("ixgbe_get_phy_firmware_version_generic");
1167 1.1 dyoung
1168 1.1 dyoung status = hw->phy.ops.read_reg(hw, AQ_FW_REV,
1169 1.3 msaitoh IXGBE_MDIO_VENDOR_SPECIFIC_1_DEV_TYPE,
1170 1.3 msaitoh firmware_version);
1171 1.1 dyoung
1172 1.1 dyoung return status;
1173 1.1 dyoung }
1174 1.1 dyoung
1175 1.1 dyoung /**
1176 1.1 dyoung * ixgbe_reset_phy_nl - Performs a PHY reset
1177 1.1 dyoung * @hw: pointer to hardware structure
1178 1.1 dyoung **/
1179 1.1 dyoung s32 ixgbe_reset_phy_nl(struct ixgbe_hw *hw)
1180 1.1 dyoung {
1181 1.1 dyoung u16 phy_offset, control, eword, edata, block_crc;
1182 1.1 dyoung bool end_data = FALSE;
1183 1.1 dyoung u16 list_offset, data_offset;
1184 1.1 dyoung u16 phy_data = 0;
1185 1.1 dyoung s32 ret_val = IXGBE_SUCCESS;
1186 1.1 dyoung u32 i;
1187 1.1 dyoung
1188 1.1 dyoung DEBUGFUNC("ixgbe_reset_phy_nl");
1189 1.1 dyoung
1190 1.7 msaitoh /* Blocked by MNG FW so bail */
1191 1.7 msaitoh if (ixgbe_check_reset_blocked(hw))
1192 1.7 msaitoh goto out;
1193 1.7 msaitoh
1194 1.1 dyoung hw->phy.ops.read_reg(hw, IXGBE_MDIO_PHY_XS_CONTROL,
1195 1.3 msaitoh IXGBE_MDIO_PHY_XS_DEV_TYPE, &phy_data);
1196 1.1 dyoung
1197 1.1 dyoung /* reset the PHY and poll for completion */
1198 1.1 dyoung hw->phy.ops.write_reg(hw, IXGBE_MDIO_PHY_XS_CONTROL,
1199 1.3 msaitoh IXGBE_MDIO_PHY_XS_DEV_TYPE,
1200 1.3 msaitoh (phy_data | IXGBE_MDIO_PHY_XS_RESET));
1201 1.1 dyoung
1202 1.1 dyoung for (i = 0; i < 100; i++) {
1203 1.1 dyoung hw->phy.ops.read_reg(hw, IXGBE_MDIO_PHY_XS_CONTROL,
1204 1.3 msaitoh IXGBE_MDIO_PHY_XS_DEV_TYPE, &phy_data);
1205 1.1 dyoung if ((phy_data & IXGBE_MDIO_PHY_XS_RESET) == 0)
1206 1.1 dyoung break;
1207 1.1 dyoung msec_delay(10);
1208 1.1 dyoung }
1209 1.1 dyoung
1210 1.1 dyoung if ((phy_data & IXGBE_MDIO_PHY_XS_RESET) != 0) {
1211 1.1 dyoung DEBUGOUT("PHY reset did not complete.\n");
1212 1.1 dyoung ret_val = IXGBE_ERR_PHY;
1213 1.1 dyoung goto out;
1214 1.1 dyoung }
1215 1.1 dyoung
1216 1.1 dyoung /* Get init offsets */
1217 1.1 dyoung ret_val = ixgbe_get_sfp_init_sequence_offsets(hw, &list_offset,
1218 1.3 msaitoh &data_offset);
1219 1.1 dyoung if (ret_val != IXGBE_SUCCESS)
1220 1.1 dyoung goto out;
1221 1.1 dyoung
1222 1.1 dyoung ret_val = hw->eeprom.ops.read(hw, data_offset, &block_crc);
1223 1.1 dyoung data_offset++;
1224 1.1 dyoung while (!end_data) {
1225 1.1 dyoung /*
1226 1.1 dyoung * Read control word from PHY init contents offset
1227 1.1 dyoung */
1228 1.1 dyoung ret_val = hw->eeprom.ops.read(hw, data_offset, &eword);
1229 1.6 msaitoh if (ret_val)
1230 1.6 msaitoh goto err_eeprom;
1231 1.1 dyoung control = (eword & IXGBE_CONTROL_MASK_NL) >>
1232 1.3 msaitoh IXGBE_CONTROL_SHIFT_NL;
1233 1.1 dyoung edata = eword & IXGBE_DATA_MASK_NL;
1234 1.1 dyoung switch (control) {
1235 1.1 dyoung case IXGBE_DELAY_NL:
1236 1.1 dyoung data_offset++;
1237 1.1 dyoung DEBUGOUT1("DELAY: %d MS\n", edata);
1238 1.1 dyoung msec_delay(edata);
1239 1.1 dyoung break;
1240 1.1 dyoung case IXGBE_DATA_NL:
1241 1.3 msaitoh DEBUGOUT("DATA:\n");
1242 1.1 dyoung data_offset++;
1243 1.6 msaitoh ret_val = hw->eeprom.ops.read(hw, data_offset,
1244 1.6 msaitoh &phy_offset);
1245 1.6 msaitoh if (ret_val)
1246 1.6 msaitoh goto err_eeprom;
1247 1.6 msaitoh data_offset++;
1248 1.1 dyoung for (i = 0; i < edata; i++) {
1249 1.6 msaitoh ret_val = hw->eeprom.ops.read(hw, data_offset,
1250 1.6 msaitoh &eword);
1251 1.6 msaitoh if (ret_val)
1252 1.6 msaitoh goto err_eeprom;
1253 1.1 dyoung hw->phy.ops.write_reg(hw, phy_offset,
1254 1.3 msaitoh IXGBE_TWINAX_DEV, eword);
1255 1.1 dyoung DEBUGOUT2("Wrote %4.4x to %4.4x\n", eword,
1256 1.3 msaitoh phy_offset);
1257 1.1 dyoung data_offset++;
1258 1.1 dyoung phy_offset++;
1259 1.1 dyoung }
1260 1.1 dyoung break;
1261 1.1 dyoung case IXGBE_CONTROL_NL:
1262 1.1 dyoung data_offset++;
1263 1.3 msaitoh DEBUGOUT("CONTROL:\n");
1264 1.1 dyoung if (edata == IXGBE_CONTROL_EOL_NL) {
1265 1.1 dyoung DEBUGOUT("EOL\n");
1266 1.1 dyoung end_data = TRUE;
1267 1.1 dyoung } else if (edata == IXGBE_CONTROL_SOL_NL) {
1268 1.1 dyoung DEBUGOUT("SOL\n");
1269 1.1 dyoung } else {
1270 1.1 dyoung DEBUGOUT("Bad control value\n");
1271 1.1 dyoung ret_val = IXGBE_ERR_PHY;
1272 1.1 dyoung goto out;
1273 1.1 dyoung }
1274 1.1 dyoung break;
1275 1.1 dyoung default:
1276 1.1 dyoung DEBUGOUT("Bad control type\n");
1277 1.1 dyoung ret_val = IXGBE_ERR_PHY;
1278 1.1 dyoung goto out;
1279 1.1 dyoung }
1280 1.1 dyoung }
1281 1.1 dyoung
1282 1.1 dyoung out:
1283 1.1 dyoung return ret_val;
1284 1.6 msaitoh
1285 1.6 msaitoh err_eeprom:
1286 1.6 msaitoh ERROR_REPORT2(IXGBE_ERROR_INVALID_STATE,
1287 1.6 msaitoh "eeprom read at offset %d failed", data_offset);
1288 1.6 msaitoh return IXGBE_ERR_PHY;
1289 1.1 dyoung }
1290 1.1 dyoung
1291 1.1 dyoung /**
1292 1.3 msaitoh * ixgbe_identify_module_generic - Identifies module type
1293 1.3 msaitoh * @hw: pointer to hardware structure
1294 1.3 msaitoh *
1295 1.3 msaitoh * Determines HW type and calls appropriate function.
1296 1.3 msaitoh **/
1297 1.3 msaitoh s32 ixgbe_identify_module_generic(struct ixgbe_hw *hw)
1298 1.3 msaitoh {
1299 1.3 msaitoh s32 status = IXGBE_ERR_SFP_NOT_PRESENT;
1300 1.3 msaitoh
1301 1.3 msaitoh DEBUGFUNC("ixgbe_identify_module_generic");
1302 1.3 msaitoh
1303 1.3 msaitoh switch (hw->mac.ops.get_media_type(hw)) {
1304 1.3 msaitoh case ixgbe_media_type_fiber:
1305 1.3 msaitoh status = ixgbe_identify_sfp_module_generic(hw);
1306 1.3 msaitoh break;
1307 1.3 msaitoh
1308 1.7 msaitoh case ixgbe_media_type_fiber_qsfp:
1309 1.7 msaitoh status = ixgbe_identify_qsfp_module_generic(hw);
1310 1.7 msaitoh break;
1311 1.3 msaitoh
1312 1.3 msaitoh default:
1313 1.3 msaitoh hw->phy.sfp_type = ixgbe_sfp_type_not_present;
1314 1.3 msaitoh status = IXGBE_ERR_SFP_NOT_PRESENT;
1315 1.3 msaitoh break;
1316 1.3 msaitoh }
1317 1.3 msaitoh
1318 1.3 msaitoh return status;
1319 1.3 msaitoh }
1320 1.3 msaitoh
1321 1.3 msaitoh /**
1322 1.1 dyoung * ixgbe_identify_sfp_module_generic - Identifies SFP modules
1323 1.1 dyoung * @hw: pointer to hardware structure
1324 1.1 dyoung *
1325 1.1 dyoung * Searches for and identifies the SFP module and assigns appropriate PHY type.
1326 1.1 dyoung **/
1327 1.1 dyoung s32 ixgbe_identify_sfp_module_generic(struct ixgbe_hw *hw)
1328 1.1 dyoung {
1329 1.1 dyoung s32 status = IXGBE_ERR_PHY_ADDR_INVALID;
1330 1.1 dyoung u32 vendor_oui = 0;
1331 1.1 dyoung enum ixgbe_sfp_type stored_sfp_type = hw->phy.sfp_type;
1332 1.1 dyoung u8 identifier = 0;
1333 1.1 dyoung u8 comp_codes_1g = 0;
1334 1.1 dyoung u8 comp_codes_10g = 0;
1335 1.1 dyoung u8 oui_bytes[3] = {0, 0, 0};
1336 1.1 dyoung u8 cable_tech = 0;
1337 1.1 dyoung u8 cable_spec = 0;
1338 1.1 dyoung u16 enforce_sfp = 0;
1339 1.1 dyoung
1340 1.1 dyoung DEBUGFUNC("ixgbe_identify_sfp_module_generic");
1341 1.1 dyoung
1342 1.1 dyoung if (hw->mac.ops.get_media_type(hw) != ixgbe_media_type_fiber) {
1343 1.1 dyoung hw->phy.sfp_type = ixgbe_sfp_type_not_present;
1344 1.1 dyoung status = IXGBE_ERR_SFP_NOT_PRESENT;
1345 1.1 dyoung goto out;
1346 1.1 dyoung }
1347 1.1 dyoung
1348 1.7 msaitoh /* LAN ID is needed for I2C access */
1349 1.7 msaitoh hw->mac.ops.set_lan_id(hw);
1350 1.7 msaitoh
1351 1.1 dyoung status = hw->phy.ops.read_i2c_eeprom(hw,
1352 1.3 msaitoh IXGBE_SFF_IDENTIFIER,
1353 1.3 msaitoh &identifier);
1354 1.1 dyoung
1355 1.5 msaitoh if (status != IXGBE_SUCCESS)
1356 1.1 dyoung goto err_read_i2c_eeprom;
1357 1.1 dyoung
1358 1.1 dyoung if (identifier != IXGBE_SFF_IDENTIFIER_SFP) {
1359 1.1 dyoung hw->phy.type = ixgbe_phy_sfp_unsupported;
1360 1.1 dyoung status = IXGBE_ERR_SFP_NOT_SUPPORTED;
1361 1.1 dyoung } else {
1362 1.1 dyoung status = hw->phy.ops.read_i2c_eeprom(hw,
1363 1.3 msaitoh IXGBE_SFF_1GBE_COMP_CODES,
1364 1.3 msaitoh &comp_codes_1g);
1365 1.1 dyoung
1366 1.5 msaitoh if (status != IXGBE_SUCCESS)
1367 1.1 dyoung goto err_read_i2c_eeprom;
1368 1.1 dyoung
1369 1.1 dyoung status = hw->phy.ops.read_i2c_eeprom(hw,
1370 1.3 msaitoh IXGBE_SFF_10GBE_COMP_CODES,
1371 1.3 msaitoh &comp_codes_10g);
1372 1.1 dyoung
1373 1.5 msaitoh if (status != IXGBE_SUCCESS)
1374 1.1 dyoung goto err_read_i2c_eeprom;
1375 1.1 dyoung status = hw->phy.ops.read_i2c_eeprom(hw,
1376 1.3 msaitoh IXGBE_SFF_CABLE_TECHNOLOGY,
1377 1.3 msaitoh &cable_tech);
1378 1.1 dyoung
1379 1.5 msaitoh if (status != IXGBE_SUCCESS)
1380 1.1 dyoung goto err_read_i2c_eeprom;
1381 1.1 dyoung
1382 1.1 dyoung /* ID Module
1383 1.1 dyoung * =========
1384 1.1 dyoung * 0 SFP_DA_CU
1385 1.1 dyoung * 1 SFP_SR
1386 1.1 dyoung * 2 SFP_LR
1387 1.1 dyoung * 3 SFP_DA_CORE0 - 82599-specific
1388 1.1 dyoung * 4 SFP_DA_CORE1 - 82599-specific
1389 1.1 dyoung * 5 SFP_SR/LR_CORE0 - 82599-specific
1390 1.1 dyoung * 6 SFP_SR/LR_CORE1 - 82599-specific
1391 1.1 dyoung * 7 SFP_act_lmt_DA_CORE0 - 82599-specific
1392 1.1 dyoung * 8 SFP_act_lmt_DA_CORE1 - 82599-specific
1393 1.1 dyoung * 9 SFP_1g_cu_CORE0 - 82599-specific
1394 1.1 dyoung * 10 SFP_1g_cu_CORE1 - 82599-specific
1395 1.4 msaitoh * 11 SFP_1g_sx_CORE0 - 82599-specific
1396 1.4 msaitoh * 12 SFP_1g_sx_CORE1 - 82599-specific
1397 1.1 dyoung */
1398 1.1 dyoung if (hw->mac.type == ixgbe_mac_82598EB) {
1399 1.1 dyoung if (cable_tech & IXGBE_SFF_DA_PASSIVE_CABLE)
1400 1.1 dyoung hw->phy.sfp_type = ixgbe_sfp_type_da_cu;
1401 1.1 dyoung else if (comp_codes_10g & IXGBE_SFF_10GBASESR_CAPABLE)
1402 1.1 dyoung hw->phy.sfp_type = ixgbe_sfp_type_sr;
1403 1.1 dyoung else if (comp_codes_10g & IXGBE_SFF_10GBASELR_CAPABLE)
1404 1.1 dyoung hw->phy.sfp_type = ixgbe_sfp_type_lr;
1405 1.1 dyoung else
1406 1.1 dyoung hw->phy.sfp_type = ixgbe_sfp_type_unknown;
1407 1.7 msaitoh } else {
1408 1.1 dyoung if (cable_tech & IXGBE_SFF_DA_PASSIVE_CABLE) {
1409 1.1 dyoung if (hw->bus.lan_id == 0)
1410 1.1 dyoung hw->phy.sfp_type =
1411 1.3 msaitoh ixgbe_sfp_type_da_cu_core0;
1412 1.1 dyoung else
1413 1.1 dyoung hw->phy.sfp_type =
1414 1.3 msaitoh ixgbe_sfp_type_da_cu_core1;
1415 1.1 dyoung } else if (cable_tech & IXGBE_SFF_DA_ACTIVE_CABLE) {
1416 1.1 dyoung hw->phy.ops.read_i2c_eeprom(
1417 1.1 dyoung hw, IXGBE_SFF_CABLE_SPEC_COMP,
1418 1.1 dyoung &cable_spec);
1419 1.1 dyoung if (cable_spec &
1420 1.1 dyoung IXGBE_SFF_DA_SPEC_ACTIVE_LIMITING) {
1421 1.1 dyoung if (hw->bus.lan_id == 0)
1422 1.1 dyoung hw->phy.sfp_type =
1423 1.1 dyoung ixgbe_sfp_type_da_act_lmt_core0;
1424 1.1 dyoung else
1425 1.1 dyoung hw->phy.sfp_type =
1426 1.1 dyoung ixgbe_sfp_type_da_act_lmt_core1;
1427 1.1 dyoung } else {
1428 1.1 dyoung hw->phy.sfp_type =
1429 1.3 msaitoh ixgbe_sfp_type_unknown;
1430 1.1 dyoung }
1431 1.1 dyoung } else if (comp_codes_10g &
1432 1.1 dyoung (IXGBE_SFF_10GBASESR_CAPABLE |
1433 1.1 dyoung IXGBE_SFF_10GBASELR_CAPABLE)) {
1434 1.1 dyoung if (hw->bus.lan_id == 0)
1435 1.1 dyoung hw->phy.sfp_type =
1436 1.3 msaitoh ixgbe_sfp_type_srlr_core0;
1437 1.1 dyoung else
1438 1.1 dyoung hw->phy.sfp_type =
1439 1.3 msaitoh ixgbe_sfp_type_srlr_core1;
1440 1.1 dyoung } else if (comp_codes_1g & IXGBE_SFF_1GBASET_CAPABLE) {
1441 1.1 dyoung if (hw->bus.lan_id == 0)
1442 1.1 dyoung hw->phy.sfp_type =
1443 1.1 dyoung ixgbe_sfp_type_1g_cu_core0;
1444 1.1 dyoung else
1445 1.1 dyoung hw->phy.sfp_type =
1446 1.1 dyoung ixgbe_sfp_type_1g_cu_core1;
1447 1.4 msaitoh } else if (comp_codes_1g & IXGBE_SFF_1GBASESX_CAPABLE) {
1448 1.4 msaitoh if (hw->bus.lan_id == 0)
1449 1.4 msaitoh hw->phy.sfp_type =
1450 1.4 msaitoh ixgbe_sfp_type_1g_sx_core0;
1451 1.4 msaitoh else
1452 1.4 msaitoh hw->phy.sfp_type =
1453 1.4 msaitoh ixgbe_sfp_type_1g_sx_core1;
1454 1.8 msaitoh } else if (comp_codes_1g & IXGBE_SFF_1GBASELX_CAPABLE) {
1455 1.8 msaitoh if (hw->bus.lan_id == 0)
1456 1.8 msaitoh hw->phy.sfp_type =
1457 1.8 msaitoh ixgbe_sfp_type_1g_lx_core0;
1458 1.8 msaitoh else
1459 1.8 msaitoh hw->phy.sfp_type =
1460 1.8 msaitoh ixgbe_sfp_type_1g_lx_core1;
1461 1.1 dyoung } else {
1462 1.1 dyoung hw->phy.sfp_type = ixgbe_sfp_type_unknown;
1463 1.1 dyoung }
1464 1.1 dyoung }
1465 1.1 dyoung
1466 1.1 dyoung if (hw->phy.sfp_type != stored_sfp_type)
1467 1.1 dyoung hw->phy.sfp_setup_needed = TRUE;
1468 1.1 dyoung
1469 1.1 dyoung /* Determine if the SFP+ PHY is dual speed or not. */
1470 1.1 dyoung hw->phy.multispeed_fiber = FALSE;
1471 1.1 dyoung if (((comp_codes_1g & IXGBE_SFF_1GBASESX_CAPABLE) &&
1472 1.1 dyoung (comp_codes_10g & IXGBE_SFF_10GBASESR_CAPABLE)) ||
1473 1.1 dyoung ((comp_codes_1g & IXGBE_SFF_1GBASELX_CAPABLE) &&
1474 1.1 dyoung (comp_codes_10g & IXGBE_SFF_10GBASELR_CAPABLE)))
1475 1.1 dyoung hw->phy.multispeed_fiber = TRUE;
1476 1.1 dyoung
1477 1.1 dyoung /* Determine PHY vendor */
1478 1.1 dyoung if (hw->phy.type != ixgbe_phy_nl) {
1479 1.1 dyoung hw->phy.id = identifier;
1480 1.1 dyoung status = hw->phy.ops.read_i2c_eeprom(hw,
1481 1.3 msaitoh IXGBE_SFF_VENDOR_OUI_BYTE0,
1482 1.3 msaitoh &oui_bytes[0]);
1483 1.1 dyoung
1484 1.5 msaitoh if (status != IXGBE_SUCCESS)
1485 1.1 dyoung goto err_read_i2c_eeprom;
1486 1.1 dyoung
1487 1.1 dyoung status = hw->phy.ops.read_i2c_eeprom(hw,
1488 1.3 msaitoh IXGBE_SFF_VENDOR_OUI_BYTE1,
1489 1.3 msaitoh &oui_bytes[1]);
1490 1.1 dyoung
1491 1.5 msaitoh if (status != IXGBE_SUCCESS)
1492 1.1 dyoung goto err_read_i2c_eeprom;
1493 1.1 dyoung
1494 1.1 dyoung status = hw->phy.ops.read_i2c_eeprom(hw,
1495 1.3 msaitoh IXGBE_SFF_VENDOR_OUI_BYTE2,
1496 1.3 msaitoh &oui_bytes[2]);
1497 1.1 dyoung
1498 1.5 msaitoh if (status != IXGBE_SUCCESS)
1499 1.1 dyoung goto err_read_i2c_eeprom;
1500 1.1 dyoung
1501 1.1 dyoung vendor_oui =
1502 1.1 dyoung ((oui_bytes[0] << IXGBE_SFF_VENDOR_OUI_BYTE0_SHIFT) |
1503 1.1 dyoung (oui_bytes[1] << IXGBE_SFF_VENDOR_OUI_BYTE1_SHIFT) |
1504 1.1 dyoung (oui_bytes[2] << IXGBE_SFF_VENDOR_OUI_BYTE2_SHIFT));
1505 1.1 dyoung
1506 1.1 dyoung switch (vendor_oui) {
1507 1.1 dyoung case IXGBE_SFF_VENDOR_OUI_TYCO:
1508 1.1 dyoung if (cable_tech & IXGBE_SFF_DA_PASSIVE_CABLE)
1509 1.1 dyoung hw->phy.type =
1510 1.3 msaitoh ixgbe_phy_sfp_passive_tyco;
1511 1.1 dyoung break;
1512 1.1 dyoung case IXGBE_SFF_VENDOR_OUI_FTL:
1513 1.1 dyoung if (cable_tech & IXGBE_SFF_DA_ACTIVE_CABLE)
1514 1.1 dyoung hw->phy.type = ixgbe_phy_sfp_ftl_active;
1515 1.1 dyoung else
1516 1.1 dyoung hw->phy.type = ixgbe_phy_sfp_ftl;
1517 1.1 dyoung break;
1518 1.1 dyoung case IXGBE_SFF_VENDOR_OUI_AVAGO:
1519 1.1 dyoung hw->phy.type = ixgbe_phy_sfp_avago;
1520 1.1 dyoung break;
1521 1.1 dyoung case IXGBE_SFF_VENDOR_OUI_INTEL:
1522 1.1 dyoung hw->phy.type = ixgbe_phy_sfp_intel;
1523 1.1 dyoung break;
1524 1.1 dyoung default:
1525 1.15 msaitoh hw->phy.type = ixgbe_phy_sfp_unknown;
1526 1.1 dyoung break;
1527 1.1 dyoung }
1528 1.1 dyoung }
1529 1.1 dyoung
1530 1.1 dyoung /* Allow any DA cable vendor */
1531 1.1 dyoung if (cable_tech & (IXGBE_SFF_DA_PASSIVE_CABLE |
1532 1.15 msaitoh IXGBE_SFF_DA_ACTIVE_CABLE)) {
1533 1.15 msaitoh if (cable_tech & IXGBE_SFF_DA_PASSIVE_CABLE)
1534 1.15 msaitoh hw->phy.type = ixgbe_phy_sfp_passive_unknown;
1535 1.15 msaitoh else if (cable_tech & IXGBE_SFF_DA_ACTIVE_CABLE)
1536 1.15 msaitoh hw->phy.type = ixgbe_phy_sfp_active_unknown;
1537 1.1 dyoung status = IXGBE_SUCCESS;
1538 1.1 dyoung goto out;
1539 1.1 dyoung }
1540 1.1 dyoung
1541 1.1 dyoung /* Verify supported 1G SFP modules */
1542 1.1 dyoung if (comp_codes_10g == 0 &&
1543 1.1 dyoung !(hw->phy.sfp_type == ixgbe_sfp_type_1g_cu_core1 ||
1544 1.4 msaitoh hw->phy.sfp_type == ixgbe_sfp_type_1g_cu_core0 ||
1545 1.8 msaitoh hw->phy.sfp_type == ixgbe_sfp_type_1g_lx_core0 ||
1546 1.8 msaitoh hw->phy.sfp_type == ixgbe_sfp_type_1g_lx_core1 ||
1547 1.6 msaitoh hw->phy.sfp_type == ixgbe_sfp_type_1g_sx_core0 ||
1548 1.4 msaitoh hw->phy.sfp_type == ixgbe_sfp_type_1g_sx_core1)) {
1549 1.1 dyoung hw->phy.type = ixgbe_phy_sfp_unsupported;
1550 1.1 dyoung status = IXGBE_ERR_SFP_NOT_SUPPORTED;
1551 1.1 dyoung goto out;
1552 1.1 dyoung }
1553 1.1 dyoung
1554 1.1 dyoung /* Anything else 82598-based is supported */
1555 1.1 dyoung if (hw->mac.type == ixgbe_mac_82598EB) {
1556 1.1 dyoung status = IXGBE_SUCCESS;
1557 1.1 dyoung goto out;
1558 1.1 dyoung }
1559 1.1 dyoung
1560 1.1 dyoung ixgbe_get_device_caps(hw, &enforce_sfp);
1561 1.1 dyoung if (!(enforce_sfp & IXGBE_DEVICE_CAPS_ALLOW_ANY_SFP) &&
1562 1.6 msaitoh !(hw->phy.sfp_type == ixgbe_sfp_type_1g_cu_core0 ||
1563 1.6 msaitoh hw->phy.sfp_type == ixgbe_sfp_type_1g_cu_core1 ||
1564 1.8 msaitoh hw->phy.sfp_type == ixgbe_sfp_type_1g_lx_core0 ||
1565 1.8 msaitoh hw->phy.sfp_type == ixgbe_sfp_type_1g_lx_core1 ||
1566 1.6 msaitoh hw->phy.sfp_type == ixgbe_sfp_type_1g_sx_core0 ||
1567 1.6 msaitoh hw->phy.sfp_type == ixgbe_sfp_type_1g_sx_core1)) {
1568 1.1 dyoung /* Make sure we're a supported PHY type */
1569 1.1 dyoung if (hw->phy.type == ixgbe_phy_sfp_intel) {
1570 1.1 dyoung status = IXGBE_SUCCESS;
1571 1.1 dyoung } else {
1572 1.4 msaitoh if (hw->allow_unsupported_sfp == TRUE) {
1573 1.12 msaitoh EWARN(hw, "WARNING: Intel (R) Network Connections are quality tested using Intel (R) Ethernet Optics. Using untested modules is not supported and may cause unstable operation or damage to the module or the adapter. Intel Corporation is not responsible for any harm caused by using untested modules.\n");
1574 1.4 msaitoh status = IXGBE_SUCCESS;
1575 1.4 msaitoh } else {
1576 1.4 msaitoh DEBUGOUT("SFP+ module not supported\n");
1577 1.4 msaitoh hw->phy.type =
1578 1.4 msaitoh ixgbe_phy_sfp_unsupported;
1579 1.4 msaitoh status = IXGBE_ERR_SFP_NOT_SUPPORTED;
1580 1.4 msaitoh }
1581 1.1 dyoung }
1582 1.1 dyoung } else {
1583 1.1 dyoung status = IXGBE_SUCCESS;
1584 1.1 dyoung }
1585 1.1 dyoung }
1586 1.1 dyoung
1587 1.1 dyoung out:
1588 1.20 msaitoh if (hw->phy.type == ixgbe_phy_sfp_unsupported)
1589 1.20 msaitoh hw->need_unsupported_sfp_recovery = true;
1590 1.1 dyoung return status;
1591 1.1 dyoung
1592 1.1 dyoung err_read_i2c_eeprom:
1593 1.1 dyoung hw->phy.sfp_type = ixgbe_sfp_type_not_present;
1594 1.1 dyoung if (hw->phy.type != ixgbe_phy_nl) {
1595 1.1 dyoung hw->phy.id = 0;
1596 1.1 dyoung hw->phy.type = ixgbe_phy_unknown;
1597 1.1 dyoung }
1598 1.1 dyoung return IXGBE_ERR_SFP_NOT_PRESENT;
1599 1.1 dyoung }
1600 1.1 dyoung
1601 1.7 msaitoh /**
1602 1.7 msaitoh * ixgbe_get_supported_phy_sfp_layer_generic - Returns physical layer type
1603 1.7 msaitoh * @hw: pointer to hardware structure
1604 1.7 msaitoh *
1605 1.7 msaitoh * Determines physical layer capabilities of the current SFP.
1606 1.7 msaitoh */
1607 1.12 msaitoh u64 ixgbe_get_supported_phy_sfp_layer_generic(struct ixgbe_hw *hw)
1608 1.7 msaitoh {
1609 1.12 msaitoh u64 physical_layer = IXGBE_PHYSICAL_LAYER_UNKNOWN;
1610 1.7 msaitoh u8 comp_codes_10g = 0;
1611 1.7 msaitoh u8 comp_codes_1g = 0;
1612 1.7 msaitoh
1613 1.7 msaitoh DEBUGFUNC("ixgbe_get_supported_phy_sfp_layer_generic");
1614 1.7 msaitoh
1615 1.7 msaitoh hw->phy.ops.identify_sfp(hw);
1616 1.7 msaitoh if (hw->phy.sfp_type == ixgbe_sfp_type_not_present)
1617 1.7 msaitoh return physical_layer;
1618 1.7 msaitoh
1619 1.7 msaitoh switch (hw->phy.type) {
1620 1.7 msaitoh case ixgbe_phy_sfp_passive_tyco:
1621 1.7 msaitoh case ixgbe_phy_sfp_passive_unknown:
1622 1.7 msaitoh case ixgbe_phy_qsfp_passive_unknown:
1623 1.7 msaitoh physical_layer = IXGBE_PHYSICAL_LAYER_SFP_PLUS_CU;
1624 1.7 msaitoh break;
1625 1.7 msaitoh case ixgbe_phy_sfp_ftl_active:
1626 1.7 msaitoh case ixgbe_phy_sfp_active_unknown:
1627 1.7 msaitoh case ixgbe_phy_qsfp_active_unknown:
1628 1.7 msaitoh physical_layer = IXGBE_PHYSICAL_LAYER_SFP_ACTIVE_DA;
1629 1.7 msaitoh break;
1630 1.7 msaitoh case ixgbe_phy_sfp_avago:
1631 1.7 msaitoh case ixgbe_phy_sfp_ftl:
1632 1.7 msaitoh case ixgbe_phy_sfp_intel:
1633 1.7 msaitoh case ixgbe_phy_sfp_unknown:
1634 1.7 msaitoh hw->phy.ops.read_i2c_eeprom(hw,
1635 1.7 msaitoh IXGBE_SFF_1GBE_COMP_CODES, &comp_codes_1g);
1636 1.7 msaitoh hw->phy.ops.read_i2c_eeprom(hw,
1637 1.7 msaitoh IXGBE_SFF_10GBE_COMP_CODES, &comp_codes_10g);
1638 1.7 msaitoh if (comp_codes_10g & IXGBE_SFF_10GBASESR_CAPABLE)
1639 1.7 msaitoh physical_layer = IXGBE_PHYSICAL_LAYER_10GBASE_SR;
1640 1.7 msaitoh else if (comp_codes_10g & IXGBE_SFF_10GBASELR_CAPABLE)
1641 1.7 msaitoh physical_layer = IXGBE_PHYSICAL_LAYER_10GBASE_LR;
1642 1.7 msaitoh else if (comp_codes_1g & IXGBE_SFF_1GBASET_CAPABLE)
1643 1.7 msaitoh physical_layer = IXGBE_PHYSICAL_LAYER_1000BASE_T;
1644 1.7 msaitoh else if (comp_codes_1g & IXGBE_SFF_1GBASESX_CAPABLE)
1645 1.7 msaitoh physical_layer = IXGBE_PHYSICAL_LAYER_1000BASE_SX;
1646 1.7 msaitoh break;
1647 1.7 msaitoh case ixgbe_phy_qsfp_intel:
1648 1.7 msaitoh case ixgbe_phy_qsfp_unknown:
1649 1.7 msaitoh hw->phy.ops.read_i2c_eeprom(hw,
1650 1.7 msaitoh IXGBE_SFF_QSFP_10GBE_COMP, &comp_codes_10g);
1651 1.7 msaitoh if (comp_codes_10g & IXGBE_SFF_10GBASESR_CAPABLE)
1652 1.7 msaitoh physical_layer = IXGBE_PHYSICAL_LAYER_10GBASE_SR;
1653 1.7 msaitoh else if (comp_codes_10g & IXGBE_SFF_10GBASELR_CAPABLE)
1654 1.7 msaitoh physical_layer = IXGBE_PHYSICAL_LAYER_10GBASE_LR;
1655 1.7 msaitoh break;
1656 1.7 msaitoh default:
1657 1.7 msaitoh break;
1658 1.7 msaitoh }
1659 1.7 msaitoh
1660 1.7 msaitoh return physical_layer;
1661 1.7 msaitoh }
1662 1.7 msaitoh
1663 1.7 msaitoh /**
1664 1.7 msaitoh * ixgbe_identify_qsfp_module_generic - Identifies QSFP modules
1665 1.7 msaitoh * @hw: pointer to hardware structure
1666 1.7 msaitoh *
1667 1.7 msaitoh * Searches for and identifies the QSFP module and assigns appropriate PHY type
1668 1.7 msaitoh **/
1669 1.7 msaitoh s32 ixgbe_identify_qsfp_module_generic(struct ixgbe_hw *hw)
1670 1.7 msaitoh {
1671 1.7 msaitoh s32 status = IXGBE_ERR_PHY_ADDR_INVALID;
1672 1.7 msaitoh u32 vendor_oui = 0;
1673 1.7 msaitoh enum ixgbe_sfp_type stored_sfp_type = hw->phy.sfp_type;
1674 1.7 msaitoh u8 identifier = 0;
1675 1.7 msaitoh u8 comp_codes_1g = 0;
1676 1.7 msaitoh u8 comp_codes_10g = 0;
1677 1.7 msaitoh u8 oui_bytes[3] = {0, 0, 0};
1678 1.7 msaitoh u16 enforce_sfp = 0;
1679 1.7 msaitoh u8 connector = 0;
1680 1.7 msaitoh u8 cable_length = 0;
1681 1.7 msaitoh u8 device_tech = 0;
1682 1.7 msaitoh bool active_cable = FALSE;
1683 1.7 msaitoh
1684 1.7 msaitoh DEBUGFUNC("ixgbe_identify_qsfp_module_generic");
1685 1.7 msaitoh
1686 1.7 msaitoh if (hw->mac.ops.get_media_type(hw) != ixgbe_media_type_fiber_qsfp) {
1687 1.7 msaitoh hw->phy.sfp_type = ixgbe_sfp_type_not_present;
1688 1.7 msaitoh status = IXGBE_ERR_SFP_NOT_PRESENT;
1689 1.7 msaitoh goto out;
1690 1.7 msaitoh }
1691 1.7 msaitoh
1692 1.8 msaitoh /* LAN ID is needed for I2C access */
1693 1.8 msaitoh hw->mac.ops.set_lan_id(hw);
1694 1.8 msaitoh
1695 1.7 msaitoh status = hw->phy.ops.read_i2c_eeprom(hw, IXGBE_SFF_IDENTIFIER,
1696 1.7 msaitoh &identifier);
1697 1.7 msaitoh
1698 1.7 msaitoh if (status != IXGBE_SUCCESS)
1699 1.7 msaitoh goto err_read_i2c_eeprom;
1700 1.7 msaitoh
1701 1.7 msaitoh if (identifier != IXGBE_SFF_IDENTIFIER_QSFP_PLUS) {
1702 1.7 msaitoh hw->phy.type = ixgbe_phy_sfp_unsupported;
1703 1.7 msaitoh status = IXGBE_ERR_SFP_NOT_SUPPORTED;
1704 1.7 msaitoh goto out;
1705 1.7 msaitoh }
1706 1.7 msaitoh
1707 1.7 msaitoh hw->phy.id = identifier;
1708 1.7 msaitoh
1709 1.7 msaitoh status = hw->phy.ops.read_i2c_eeprom(hw, IXGBE_SFF_QSFP_10GBE_COMP,
1710 1.7 msaitoh &comp_codes_10g);
1711 1.7 msaitoh
1712 1.7 msaitoh if (status != IXGBE_SUCCESS)
1713 1.7 msaitoh goto err_read_i2c_eeprom;
1714 1.7 msaitoh
1715 1.7 msaitoh status = hw->phy.ops.read_i2c_eeprom(hw, IXGBE_SFF_QSFP_1GBE_COMP,
1716 1.7 msaitoh &comp_codes_1g);
1717 1.7 msaitoh
1718 1.7 msaitoh if (status != IXGBE_SUCCESS)
1719 1.7 msaitoh goto err_read_i2c_eeprom;
1720 1.7 msaitoh
1721 1.7 msaitoh if (comp_codes_10g & IXGBE_SFF_QSFP_DA_PASSIVE_CABLE) {
1722 1.7 msaitoh hw->phy.type = ixgbe_phy_qsfp_passive_unknown;
1723 1.7 msaitoh if (hw->bus.lan_id == 0)
1724 1.7 msaitoh hw->phy.sfp_type = ixgbe_sfp_type_da_cu_core0;
1725 1.7 msaitoh else
1726 1.7 msaitoh hw->phy.sfp_type = ixgbe_sfp_type_da_cu_core1;
1727 1.7 msaitoh } else if (comp_codes_10g & (IXGBE_SFF_10GBASESR_CAPABLE |
1728 1.7 msaitoh IXGBE_SFF_10GBASELR_CAPABLE)) {
1729 1.7 msaitoh if (hw->bus.lan_id == 0)
1730 1.7 msaitoh hw->phy.sfp_type = ixgbe_sfp_type_srlr_core0;
1731 1.7 msaitoh else
1732 1.7 msaitoh hw->phy.sfp_type = ixgbe_sfp_type_srlr_core1;
1733 1.7 msaitoh } else {
1734 1.7 msaitoh if (comp_codes_10g & IXGBE_SFF_QSFP_DA_ACTIVE_CABLE)
1735 1.7 msaitoh active_cable = TRUE;
1736 1.7 msaitoh
1737 1.7 msaitoh if (!active_cable) {
1738 1.7 msaitoh /* check for active DA cables that pre-date
1739 1.7 msaitoh * SFF-8436 v3.6 */
1740 1.7 msaitoh hw->phy.ops.read_i2c_eeprom(hw,
1741 1.7 msaitoh IXGBE_SFF_QSFP_CONNECTOR,
1742 1.7 msaitoh &connector);
1743 1.7 msaitoh
1744 1.7 msaitoh hw->phy.ops.read_i2c_eeprom(hw,
1745 1.7 msaitoh IXGBE_SFF_QSFP_CABLE_LENGTH,
1746 1.7 msaitoh &cable_length);
1747 1.7 msaitoh
1748 1.7 msaitoh hw->phy.ops.read_i2c_eeprom(hw,
1749 1.7 msaitoh IXGBE_SFF_QSFP_DEVICE_TECH,
1750 1.7 msaitoh &device_tech);
1751 1.7 msaitoh
1752 1.7 msaitoh if ((connector ==
1753 1.7 msaitoh IXGBE_SFF_QSFP_CONNECTOR_NOT_SEPARABLE) &&
1754 1.7 msaitoh (cable_length > 0) &&
1755 1.7 msaitoh ((device_tech >> 4) ==
1756 1.7 msaitoh IXGBE_SFF_QSFP_TRANSMITER_850NM_VCSEL))
1757 1.7 msaitoh active_cable = TRUE;
1758 1.7 msaitoh }
1759 1.7 msaitoh
1760 1.7 msaitoh if (active_cable) {
1761 1.7 msaitoh hw->phy.type = ixgbe_phy_qsfp_active_unknown;
1762 1.7 msaitoh if (hw->bus.lan_id == 0)
1763 1.7 msaitoh hw->phy.sfp_type =
1764 1.7 msaitoh ixgbe_sfp_type_da_act_lmt_core0;
1765 1.7 msaitoh else
1766 1.7 msaitoh hw->phy.sfp_type =
1767 1.7 msaitoh ixgbe_sfp_type_da_act_lmt_core1;
1768 1.7 msaitoh } else {
1769 1.7 msaitoh /* unsupported module type */
1770 1.7 msaitoh hw->phy.type = ixgbe_phy_sfp_unsupported;
1771 1.7 msaitoh status = IXGBE_ERR_SFP_NOT_SUPPORTED;
1772 1.7 msaitoh goto out;
1773 1.7 msaitoh }
1774 1.7 msaitoh }
1775 1.7 msaitoh
1776 1.7 msaitoh if (hw->phy.sfp_type != stored_sfp_type)
1777 1.7 msaitoh hw->phy.sfp_setup_needed = TRUE;
1778 1.7 msaitoh
1779 1.7 msaitoh /* Determine if the QSFP+ PHY is dual speed or not. */
1780 1.7 msaitoh hw->phy.multispeed_fiber = FALSE;
1781 1.7 msaitoh if (((comp_codes_1g & IXGBE_SFF_1GBASESX_CAPABLE) &&
1782 1.7 msaitoh (comp_codes_10g & IXGBE_SFF_10GBASESR_CAPABLE)) ||
1783 1.7 msaitoh ((comp_codes_1g & IXGBE_SFF_1GBASELX_CAPABLE) &&
1784 1.7 msaitoh (comp_codes_10g & IXGBE_SFF_10GBASELR_CAPABLE)))
1785 1.7 msaitoh hw->phy.multispeed_fiber = TRUE;
1786 1.7 msaitoh
1787 1.7 msaitoh /* Determine PHY vendor for optical modules */
1788 1.7 msaitoh if (comp_codes_10g & (IXGBE_SFF_10GBASESR_CAPABLE |
1789 1.7 msaitoh IXGBE_SFF_10GBASELR_CAPABLE)) {
1790 1.7 msaitoh status = hw->phy.ops.read_i2c_eeprom(hw,
1791 1.7 msaitoh IXGBE_SFF_QSFP_VENDOR_OUI_BYTE0,
1792 1.7 msaitoh &oui_bytes[0]);
1793 1.7 msaitoh
1794 1.7 msaitoh if (status != IXGBE_SUCCESS)
1795 1.7 msaitoh goto err_read_i2c_eeprom;
1796 1.7 msaitoh
1797 1.7 msaitoh status = hw->phy.ops.read_i2c_eeprom(hw,
1798 1.7 msaitoh IXGBE_SFF_QSFP_VENDOR_OUI_BYTE1,
1799 1.7 msaitoh &oui_bytes[1]);
1800 1.7 msaitoh
1801 1.7 msaitoh if (status != IXGBE_SUCCESS)
1802 1.7 msaitoh goto err_read_i2c_eeprom;
1803 1.7 msaitoh
1804 1.7 msaitoh status = hw->phy.ops.read_i2c_eeprom(hw,
1805 1.7 msaitoh IXGBE_SFF_QSFP_VENDOR_OUI_BYTE2,
1806 1.7 msaitoh &oui_bytes[2]);
1807 1.7 msaitoh
1808 1.7 msaitoh if (status != IXGBE_SUCCESS)
1809 1.7 msaitoh goto err_read_i2c_eeprom;
1810 1.7 msaitoh
1811 1.7 msaitoh vendor_oui =
1812 1.7 msaitoh ((oui_bytes[0] << IXGBE_SFF_VENDOR_OUI_BYTE0_SHIFT) |
1813 1.7 msaitoh (oui_bytes[1] << IXGBE_SFF_VENDOR_OUI_BYTE1_SHIFT) |
1814 1.7 msaitoh (oui_bytes[2] << IXGBE_SFF_VENDOR_OUI_BYTE2_SHIFT));
1815 1.7 msaitoh
1816 1.7 msaitoh if (vendor_oui == IXGBE_SFF_VENDOR_OUI_INTEL)
1817 1.7 msaitoh hw->phy.type = ixgbe_phy_qsfp_intel;
1818 1.7 msaitoh else
1819 1.7 msaitoh hw->phy.type = ixgbe_phy_qsfp_unknown;
1820 1.7 msaitoh
1821 1.7 msaitoh ixgbe_get_device_caps(hw, &enforce_sfp);
1822 1.7 msaitoh if (!(enforce_sfp & IXGBE_DEVICE_CAPS_ALLOW_ANY_SFP)) {
1823 1.7 msaitoh /* Make sure we're a supported PHY type */
1824 1.7 msaitoh if (hw->phy.type == ixgbe_phy_qsfp_intel) {
1825 1.7 msaitoh status = IXGBE_SUCCESS;
1826 1.7 msaitoh } else {
1827 1.7 msaitoh if (hw->allow_unsupported_sfp == TRUE) {
1828 1.12 msaitoh EWARN(hw, "WARNING: Intel (R) Network Connections are quality tested using Intel (R) Ethernet Optics. Using untested modules is not supported and may cause unstable operation or damage to the module or the adapter. Intel Corporation is not responsible for any harm caused by using untested modules.\n");
1829 1.7 msaitoh status = IXGBE_SUCCESS;
1830 1.7 msaitoh } else {
1831 1.7 msaitoh DEBUGOUT("QSFP module not supported\n");
1832 1.7 msaitoh hw->phy.type =
1833 1.7 msaitoh ixgbe_phy_sfp_unsupported;
1834 1.7 msaitoh status = IXGBE_ERR_SFP_NOT_SUPPORTED;
1835 1.7 msaitoh }
1836 1.7 msaitoh }
1837 1.7 msaitoh } else {
1838 1.7 msaitoh status = IXGBE_SUCCESS;
1839 1.7 msaitoh }
1840 1.7 msaitoh }
1841 1.7 msaitoh
1842 1.7 msaitoh out:
1843 1.20 msaitoh if (hw->phy.type == ixgbe_phy_sfp_unsupported)
1844 1.20 msaitoh hw->need_unsupported_sfp_recovery = true;
1845 1.7 msaitoh return status;
1846 1.7 msaitoh
1847 1.7 msaitoh err_read_i2c_eeprom:
1848 1.7 msaitoh hw->phy.sfp_type = ixgbe_sfp_type_not_present;
1849 1.7 msaitoh hw->phy.id = 0;
1850 1.7 msaitoh hw->phy.type = ixgbe_phy_unknown;
1851 1.7 msaitoh
1852 1.7 msaitoh return IXGBE_ERR_SFP_NOT_PRESENT;
1853 1.7 msaitoh }
1854 1.3 msaitoh
1855 1.1 dyoung /**
1856 1.1 dyoung * ixgbe_get_sfp_init_sequence_offsets - Provides offset of PHY init sequence
1857 1.1 dyoung * @hw: pointer to hardware structure
1858 1.1 dyoung * @list_offset: offset to the SFP ID list
1859 1.1 dyoung * @data_offset: offset to the SFP data block
1860 1.1 dyoung *
1861 1.1 dyoung * Checks the MAC's EEPROM to see if it supports a given SFP+ module type, if
1862 1.1 dyoung * so it returns the offsets to the phy init sequence block.
1863 1.1 dyoung **/
1864 1.1 dyoung s32 ixgbe_get_sfp_init_sequence_offsets(struct ixgbe_hw *hw,
1865 1.3 msaitoh u16 *list_offset,
1866 1.3 msaitoh u16 *data_offset)
1867 1.1 dyoung {
1868 1.1 dyoung u16 sfp_id;
1869 1.1 dyoung u16 sfp_type = hw->phy.sfp_type;
1870 1.1 dyoung
1871 1.1 dyoung DEBUGFUNC("ixgbe_get_sfp_init_sequence_offsets");
1872 1.1 dyoung
1873 1.1 dyoung if (hw->phy.sfp_type == ixgbe_sfp_type_unknown)
1874 1.1 dyoung return IXGBE_ERR_SFP_NOT_SUPPORTED;
1875 1.1 dyoung
1876 1.1 dyoung if (hw->phy.sfp_type == ixgbe_sfp_type_not_present)
1877 1.1 dyoung return IXGBE_ERR_SFP_NOT_PRESENT;
1878 1.1 dyoung
1879 1.1 dyoung if ((hw->device_id == IXGBE_DEV_ID_82598_SR_DUAL_PORT_EM) &&
1880 1.1 dyoung (hw->phy.sfp_type == ixgbe_sfp_type_da_cu))
1881 1.1 dyoung return IXGBE_ERR_SFP_NOT_SUPPORTED;
1882 1.1 dyoung
1883 1.1 dyoung /*
1884 1.1 dyoung * Limiting active cables and 1G Phys must be initialized as
1885 1.1 dyoung * SR modules
1886 1.1 dyoung */
1887 1.1 dyoung if (sfp_type == ixgbe_sfp_type_da_act_lmt_core0 ||
1888 1.8 msaitoh sfp_type == ixgbe_sfp_type_1g_lx_core0 ||
1889 1.4 msaitoh sfp_type == ixgbe_sfp_type_1g_cu_core0 ||
1890 1.4 msaitoh sfp_type == ixgbe_sfp_type_1g_sx_core0)
1891 1.1 dyoung sfp_type = ixgbe_sfp_type_srlr_core0;
1892 1.1 dyoung else if (sfp_type == ixgbe_sfp_type_da_act_lmt_core1 ||
1893 1.8 msaitoh sfp_type == ixgbe_sfp_type_1g_lx_core1 ||
1894 1.4 msaitoh sfp_type == ixgbe_sfp_type_1g_cu_core1 ||
1895 1.4 msaitoh sfp_type == ixgbe_sfp_type_1g_sx_core1)
1896 1.1 dyoung sfp_type = ixgbe_sfp_type_srlr_core1;
1897 1.1 dyoung
1898 1.1 dyoung /* Read offset to PHY init contents */
1899 1.6 msaitoh if (hw->eeprom.ops.read(hw, IXGBE_PHY_INIT_OFFSET_NL, list_offset)) {
1900 1.6 msaitoh ERROR_REPORT2(IXGBE_ERROR_INVALID_STATE,
1901 1.6 msaitoh "eeprom read at offset %d failed",
1902 1.6 msaitoh IXGBE_PHY_INIT_OFFSET_NL);
1903 1.6 msaitoh return IXGBE_ERR_SFP_NO_INIT_SEQ_PRESENT;
1904 1.6 msaitoh }
1905 1.1 dyoung
1906 1.1 dyoung if ((!*list_offset) || (*list_offset == 0xFFFF))
1907 1.1 dyoung return IXGBE_ERR_SFP_NO_INIT_SEQ_PRESENT;
1908 1.1 dyoung
1909 1.1 dyoung /* Shift offset to first ID word */
1910 1.1 dyoung (*list_offset)++;
1911 1.1 dyoung
1912 1.1 dyoung /*
1913 1.1 dyoung * Find the matching SFP ID in the EEPROM
1914 1.1 dyoung * and program the init sequence
1915 1.1 dyoung */
1916 1.6 msaitoh if (hw->eeprom.ops.read(hw, *list_offset, &sfp_id))
1917 1.6 msaitoh goto err_phy;
1918 1.1 dyoung
1919 1.1 dyoung while (sfp_id != IXGBE_PHY_INIT_END_NL) {
1920 1.1 dyoung if (sfp_id == sfp_type) {
1921 1.1 dyoung (*list_offset)++;
1922 1.6 msaitoh if (hw->eeprom.ops.read(hw, *list_offset, data_offset))
1923 1.6 msaitoh goto err_phy;
1924 1.1 dyoung if ((!*data_offset) || (*data_offset == 0xFFFF)) {
1925 1.1 dyoung DEBUGOUT("SFP+ module not supported\n");
1926 1.1 dyoung return IXGBE_ERR_SFP_NOT_SUPPORTED;
1927 1.1 dyoung } else {
1928 1.1 dyoung break;
1929 1.1 dyoung }
1930 1.1 dyoung } else {
1931 1.1 dyoung (*list_offset) += 2;
1932 1.1 dyoung if (hw->eeprom.ops.read(hw, *list_offset, &sfp_id))
1933 1.6 msaitoh goto err_phy;
1934 1.1 dyoung }
1935 1.1 dyoung }
1936 1.1 dyoung
1937 1.1 dyoung if (sfp_id == IXGBE_PHY_INIT_END_NL) {
1938 1.1 dyoung DEBUGOUT("No matching SFP+ module found\n");
1939 1.1 dyoung return IXGBE_ERR_SFP_NOT_SUPPORTED;
1940 1.1 dyoung }
1941 1.1 dyoung
1942 1.1 dyoung return IXGBE_SUCCESS;
1943 1.6 msaitoh
1944 1.6 msaitoh err_phy:
1945 1.6 msaitoh ERROR_REPORT2(IXGBE_ERROR_INVALID_STATE,
1946 1.6 msaitoh "eeprom read at offset %d failed", *list_offset);
1947 1.6 msaitoh return IXGBE_ERR_PHY;
1948 1.1 dyoung }
1949 1.1 dyoung
1950 1.1 dyoung /**
1951 1.1 dyoung * ixgbe_read_i2c_eeprom_generic - Reads 8 bit EEPROM word over I2C interface
1952 1.1 dyoung * @hw: pointer to hardware structure
1953 1.1 dyoung * @byte_offset: EEPROM byte offset to read
1954 1.1 dyoung * @eeprom_data: value read
1955 1.1 dyoung *
1956 1.1 dyoung * Performs byte read operation to SFP module's EEPROM over I2C interface.
1957 1.1 dyoung **/
1958 1.1 dyoung s32 ixgbe_read_i2c_eeprom_generic(struct ixgbe_hw *hw, u8 byte_offset,
1959 1.3 msaitoh u8 *eeprom_data)
1960 1.1 dyoung {
1961 1.1 dyoung DEBUGFUNC("ixgbe_read_i2c_eeprom_generic");
1962 1.1 dyoung
1963 1.1 dyoung return hw->phy.ops.read_i2c_byte(hw, byte_offset,
1964 1.3 msaitoh IXGBE_I2C_EEPROM_DEV_ADDR,
1965 1.3 msaitoh eeprom_data);
1966 1.1 dyoung }
1967 1.1 dyoung
1968 1.1 dyoung /**
1969 1.5 msaitoh * ixgbe_read_i2c_sff8472_generic - Reads 8 bit word over I2C interface
1970 1.5 msaitoh * @hw: pointer to hardware structure
1971 1.5 msaitoh * @byte_offset: byte offset at address 0xA2
1972 1.17 msaitoh * @sff8472_data: value read
1973 1.5 msaitoh *
1974 1.5 msaitoh * Performs byte read operation to SFP module's SFF-8472 data over I2C
1975 1.5 msaitoh **/
1976 1.5 msaitoh static s32 ixgbe_read_i2c_sff8472_generic(struct ixgbe_hw *hw, u8 byte_offset,
1977 1.5 msaitoh u8 *sff8472_data)
1978 1.5 msaitoh {
1979 1.5 msaitoh return hw->phy.ops.read_i2c_byte(hw, byte_offset,
1980 1.5 msaitoh IXGBE_I2C_EEPROM_DEV_ADDR2,
1981 1.5 msaitoh sff8472_data);
1982 1.5 msaitoh }
1983 1.5 msaitoh
1984 1.5 msaitoh /**
1985 1.1 dyoung * ixgbe_write_i2c_eeprom_generic - Writes 8 bit EEPROM word over I2C interface
1986 1.1 dyoung * @hw: pointer to hardware structure
1987 1.1 dyoung * @byte_offset: EEPROM byte offset to write
1988 1.1 dyoung * @eeprom_data: value to write
1989 1.1 dyoung *
1990 1.1 dyoung * Performs byte write operation to SFP module's EEPROM over I2C interface.
1991 1.1 dyoung **/
1992 1.1 dyoung s32 ixgbe_write_i2c_eeprom_generic(struct ixgbe_hw *hw, u8 byte_offset,
1993 1.3 msaitoh u8 eeprom_data)
1994 1.1 dyoung {
1995 1.1 dyoung DEBUGFUNC("ixgbe_write_i2c_eeprom_generic");
1996 1.1 dyoung
1997 1.1 dyoung return hw->phy.ops.write_i2c_byte(hw, byte_offset,
1998 1.3 msaitoh IXGBE_I2C_EEPROM_DEV_ADDR,
1999 1.3 msaitoh eeprom_data);
2000 1.1 dyoung }
2001 1.1 dyoung
2002 1.1 dyoung /**
2003 1.7 msaitoh * ixgbe_is_sfp_probe - Returns TRUE if SFP is being detected
2004 1.7 msaitoh * @hw: pointer to hardware structure
2005 1.7 msaitoh * @offset: eeprom offset to be read
2006 1.7 msaitoh * @addr: I2C address to be read
2007 1.7 msaitoh */
2008 1.7 msaitoh static bool ixgbe_is_sfp_probe(struct ixgbe_hw *hw, u8 offset, u8 addr)
2009 1.7 msaitoh {
2010 1.7 msaitoh if (addr == IXGBE_I2C_EEPROM_DEV_ADDR &&
2011 1.7 msaitoh offset == IXGBE_SFF_IDENTIFIER &&
2012 1.7 msaitoh hw->phy.sfp_type == ixgbe_sfp_type_not_present)
2013 1.7 msaitoh return TRUE;
2014 1.7 msaitoh return FALSE;
2015 1.7 msaitoh }
2016 1.7 msaitoh
2017 1.7 msaitoh /**
2018 1.8 msaitoh * ixgbe_read_i2c_byte_generic_int - Reads 8 bit word over I2C
2019 1.1 dyoung * @hw: pointer to hardware structure
2020 1.1 dyoung * @byte_offset: byte offset to read
2021 1.17 msaitoh * @dev_addr: address to read from
2022 1.1 dyoung * @data: value read
2023 1.8 msaitoh * @lock: TRUE if to take and release semaphore
2024 1.1 dyoung *
2025 1.1 dyoung * Performs byte read operation to SFP module's EEPROM over I2C interface at
2026 1.3 msaitoh * a specified device address.
2027 1.1 dyoung **/
2028 1.8 msaitoh static s32 ixgbe_read_i2c_byte_generic_int(struct ixgbe_hw *hw, u8 byte_offset,
2029 1.8 msaitoh u8 dev_addr, u8 *data, bool lock)
2030 1.1 dyoung {
2031 1.7 msaitoh s32 status;
2032 1.1 dyoung u32 max_retry = 10;
2033 1.1 dyoung u32 retry = 0;
2034 1.7 msaitoh u32 swfw_mask = hw->phy.phy_semaphore_mask;
2035 1.1 dyoung bool nack = 1;
2036 1.3 msaitoh *data = 0;
2037 1.1 dyoung
2038 1.1 dyoung DEBUGFUNC("ixgbe_read_i2c_byte_generic");
2039 1.1 dyoung
2040 1.8 msaitoh if (hw->mac.type >= ixgbe_mac_X550)
2041 1.8 msaitoh max_retry = 3;
2042 1.7 msaitoh if (ixgbe_is_sfp_probe(hw, byte_offset, dev_addr))
2043 1.7 msaitoh max_retry = IXGBE_SFP_DETECT_RETRIES;
2044 1.1 dyoung
2045 1.1 dyoung do {
2046 1.8 msaitoh if (lock && hw->mac.ops.acquire_swfw_sync(hw, swfw_mask))
2047 1.7 msaitoh return IXGBE_ERR_SWFW_SYNC;
2048 1.1 dyoung
2049 1.1 dyoung ixgbe_i2c_start(hw);
2050 1.1 dyoung
2051 1.1 dyoung /* Device Address and write indication */
2052 1.1 dyoung status = ixgbe_clock_out_i2c_byte(hw, dev_addr);
2053 1.1 dyoung if (status != IXGBE_SUCCESS)
2054 1.1 dyoung goto fail;
2055 1.1 dyoung
2056 1.1 dyoung status = ixgbe_get_i2c_ack(hw);
2057 1.1 dyoung if (status != IXGBE_SUCCESS)
2058 1.1 dyoung goto fail;
2059 1.1 dyoung
2060 1.1 dyoung status = ixgbe_clock_out_i2c_byte(hw, byte_offset);
2061 1.1 dyoung if (status != IXGBE_SUCCESS)
2062 1.1 dyoung goto fail;
2063 1.1 dyoung
2064 1.1 dyoung status = ixgbe_get_i2c_ack(hw);
2065 1.1 dyoung if (status != IXGBE_SUCCESS)
2066 1.1 dyoung goto fail;
2067 1.1 dyoung
2068 1.1 dyoung ixgbe_i2c_start(hw);
2069 1.1 dyoung
2070 1.1 dyoung /* Device Address and read indication */
2071 1.1 dyoung status = ixgbe_clock_out_i2c_byte(hw, (dev_addr | 0x1));
2072 1.1 dyoung if (status != IXGBE_SUCCESS)
2073 1.1 dyoung goto fail;
2074 1.1 dyoung
2075 1.1 dyoung status = ixgbe_get_i2c_ack(hw);
2076 1.1 dyoung if (status != IXGBE_SUCCESS)
2077 1.1 dyoung goto fail;
2078 1.1 dyoung
2079 1.1 dyoung status = ixgbe_clock_in_i2c_byte(hw, data);
2080 1.1 dyoung if (status != IXGBE_SUCCESS)
2081 1.1 dyoung goto fail;
2082 1.1 dyoung
2083 1.1 dyoung status = ixgbe_clock_out_i2c_bit(hw, nack);
2084 1.1 dyoung if (status != IXGBE_SUCCESS)
2085 1.1 dyoung goto fail;
2086 1.1 dyoung
2087 1.1 dyoung ixgbe_i2c_stop(hw);
2088 1.8 msaitoh if (lock)
2089 1.8 msaitoh hw->mac.ops.release_swfw_sync(hw, swfw_mask);
2090 1.7 msaitoh return IXGBE_SUCCESS;
2091 1.1 dyoung
2092 1.1 dyoung fail:
2093 1.5 msaitoh ixgbe_i2c_bus_clear(hw);
2094 1.8 msaitoh if (lock) {
2095 1.8 msaitoh hw->mac.ops.release_swfw_sync(hw, swfw_mask);
2096 1.8 msaitoh msec_delay(100);
2097 1.8 msaitoh }
2098 1.1 dyoung retry++;
2099 1.1 dyoung if (retry < max_retry)
2100 1.1 dyoung DEBUGOUT("I2C byte read error - Retrying.\n");
2101 1.1 dyoung else
2102 1.1 dyoung DEBUGOUT("I2C byte read error.\n");
2103 1.1 dyoung
2104 1.1 dyoung } while (retry < max_retry);
2105 1.1 dyoung
2106 1.1 dyoung return status;
2107 1.1 dyoung }
2108 1.1 dyoung
2109 1.1 dyoung /**
2110 1.8 msaitoh * ixgbe_read_i2c_byte_generic - Reads 8 bit word over I2C
2111 1.8 msaitoh * @hw: pointer to hardware structure
2112 1.8 msaitoh * @byte_offset: byte offset to read
2113 1.17 msaitoh * @dev_addr: address to read from
2114 1.8 msaitoh * @data: value read
2115 1.8 msaitoh *
2116 1.8 msaitoh * Performs byte read operation to SFP module's EEPROM over I2C interface at
2117 1.8 msaitoh * a specified device address.
2118 1.8 msaitoh **/
2119 1.8 msaitoh s32 ixgbe_read_i2c_byte_generic(struct ixgbe_hw *hw, u8 byte_offset,
2120 1.8 msaitoh u8 dev_addr, u8 *data)
2121 1.8 msaitoh {
2122 1.8 msaitoh return ixgbe_read_i2c_byte_generic_int(hw, byte_offset, dev_addr,
2123 1.8 msaitoh data, TRUE);
2124 1.8 msaitoh }
2125 1.8 msaitoh
2126 1.8 msaitoh /**
2127 1.8 msaitoh * ixgbe_read_i2c_byte_generic_unlocked - Reads 8 bit word over I2C
2128 1.8 msaitoh * @hw: pointer to hardware structure
2129 1.8 msaitoh * @byte_offset: byte offset to read
2130 1.17 msaitoh * @dev_addr: address to read from
2131 1.8 msaitoh * @data: value read
2132 1.8 msaitoh *
2133 1.8 msaitoh * Performs byte read operation to SFP module's EEPROM over I2C interface at
2134 1.8 msaitoh * a specified device address.
2135 1.8 msaitoh **/
2136 1.8 msaitoh s32 ixgbe_read_i2c_byte_generic_unlocked(struct ixgbe_hw *hw, u8 byte_offset,
2137 1.8 msaitoh u8 dev_addr, u8 *data)
2138 1.8 msaitoh {
2139 1.8 msaitoh return ixgbe_read_i2c_byte_generic_int(hw, byte_offset, dev_addr,
2140 1.8 msaitoh data, FALSE);
2141 1.8 msaitoh }
2142 1.8 msaitoh
2143 1.8 msaitoh /**
2144 1.8 msaitoh * ixgbe_write_i2c_byte_generic_int - Writes 8 bit word over I2C
2145 1.1 dyoung * @hw: pointer to hardware structure
2146 1.1 dyoung * @byte_offset: byte offset to write
2147 1.17 msaitoh * @dev_addr: address to write to
2148 1.1 dyoung * @data: value to write
2149 1.8 msaitoh * @lock: TRUE if to take and release semaphore
2150 1.1 dyoung *
2151 1.1 dyoung * Performs byte write operation to SFP module's EEPROM over I2C interface at
2152 1.1 dyoung * a specified device address.
2153 1.1 dyoung **/
2154 1.8 msaitoh static s32 ixgbe_write_i2c_byte_generic_int(struct ixgbe_hw *hw, u8 byte_offset,
2155 1.8 msaitoh u8 dev_addr, u8 data, bool lock)
2156 1.1 dyoung {
2157 1.8 msaitoh s32 status;
2158 1.2 christos u32 max_retry = 2;
2159 1.1 dyoung u32 retry = 0;
2160 1.7 msaitoh u32 swfw_mask = hw->phy.phy_semaphore_mask;
2161 1.1 dyoung
2162 1.1 dyoung DEBUGFUNC("ixgbe_write_i2c_byte_generic");
2163 1.1 dyoung
2164 1.8 msaitoh if (lock && hw->mac.ops.acquire_swfw_sync(hw, swfw_mask) !=
2165 1.8 msaitoh IXGBE_SUCCESS)
2166 1.8 msaitoh return IXGBE_ERR_SWFW_SYNC;
2167 1.1 dyoung
2168 1.1 dyoung do {
2169 1.1 dyoung ixgbe_i2c_start(hw);
2170 1.1 dyoung
2171 1.1 dyoung status = ixgbe_clock_out_i2c_byte(hw, dev_addr);
2172 1.1 dyoung if (status != IXGBE_SUCCESS)
2173 1.1 dyoung goto fail;
2174 1.1 dyoung
2175 1.1 dyoung status = ixgbe_get_i2c_ack(hw);
2176 1.1 dyoung if (status != IXGBE_SUCCESS)
2177 1.1 dyoung goto fail;
2178 1.1 dyoung
2179 1.1 dyoung status = ixgbe_clock_out_i2c_byte(hw, byte_offset);
2180 1.1 dyoung if (status != IXGBE_SUCCESS)
2181 1.1 dyoung goto fail;
2182 1.1 dyoung
2183 1.1 dyoung status = ixgbe_get_i2c_ack(hw);
2184 1.1 dyoung if (status != IXGBE_SUCCESS)
2185 1.1 dyoung goto fail;
2186 1.1 dyoung
2187 1.1 dyoung status = ixgbe_clock_out_i2c_byte(hw, data);
2188 1.1 dyoung if (status != IXGBE_SUCCESS)
2189 1.1 dyoung goto fail;
2190 1.1 dyoung
2191 1.1 dyoung status = ixgbe_get_i2c_ack(hw);
2192 1.1 dyoung if (status != IXGBE_SUCCESS)
2193 1.1 dyoung goto fail;
2194 1.1 dyoung
2195 1.1 dyoung ixgbe_i2c_stop(hw);
2196 1.8 msaitoh if (lock)
2197 1.8 msaitoh hw->mac.ops.release_swfw_sync(hw, swfw_mask);
2198 1.7 msaitoh return IXGBE_SUCCESS;
2199 1.1 dyoung
2200 1.1 dyoung fail:
2201 1.1 dyoung ixgbe_i2c_bus_clear(hw);
2202 1.1 dyoung retry++;
2203 1.1 dyoung if (retry < max_retry)
2204 1.1 dyoung DEBUGOUT("I2C byte write error - Retrying.\n");
2205 1.1 dyoung else
2206 1.1 dyoung DEBUGOUT("I2C byte write error.\n");
2207 1.1 dyoung } while (retry < max_retry);
2208 1.1 dyoung
2209 1.8 msaitoh if (lock)
2210 1.8 msaitoh hw->mac.ops.release_swfw_sync(hw, swfw_mask);
2211 1.1 dyoung
2212 1.1 dyoung return status;
2213 1.1 dyoung }
2214 1.1 dyoung
2215 1.1 dyoung /**
2216 1.8 msaitoh * ixgbe_write_i2c_byte_generic - Writes 8 bit word over I2C
2217 1.8 msaitoh * @hw: pointer to hardware structure
2218 1.8 msaitoh * @byte_offset: byte offset to write
2219 1.17 msaitoh * @dev_addr: address to write to
2220 1.8 msaitoh * @data: value to write
2221 1.8 msaitoh *
2222 1.8 msaitoh * Performs byte write operation to SFP module's EEPROM over I2C interface at
2223 1.8 msaitoh * a specified device address.
2224 1.8 msaitoh **/
2225 1.8 msaitoh s32 ixgbe_write_i2c_byte_generic(struct ixgbe_hw *hw, u8 byte_offset,
2226 1.8 msaitoh u8 dev_addr, u8 data)
2227 1.8 msaitoh {
2228 1.8 msaitoh return ixgbe_write_i2c_byte_generic_int(hw, byte_offset, dev_addr,
2229 1.8 msaitoh data, TRUE);
2230 1.8 msaitoh }
2231 1.8 msaitoh
2232 1.8 msaitoh /**
2233 1.8 msaitoh * ixgbe_write_i2c_byte_generic_unlocked - Writes 8 bit word over I2C
2234 1.8 msaitoh * @hw: pointer to hardware structure
2235 1.8 msaitoh * @byte_offset: byte offset to write
2236 1.17 msaitoh * @dev_addr: address to write to
2237 1.8 msaitoh * @data: value to write
2238 1.8 msaitoh *
2239 1.8 msaitoh * Performs byte write operation to SFP module's EEPROM over I2C interface at
2240 1.8 msaitoh * a specified device address.
2241 1.8 msaitoh **/
2242 1.8 msaitoh s32 ixgbe_write_i2c_byte_generic_unlocked(struct ixgbe_hw *hw, u8 byte_offset,
2243 1.8 msaitoh u8 dev_addr, u8 data)
2244 1.8 msaitoh {
2245 1.8 msaitoh return ixgbe_write_i2c_byte_generic_int(hw, byte_offset, dev_addr,
2246 1.8 msaitoh data, FALSE);
2247 1.8 msaitoh }
2248 1.8 msaitoh
2249 1.8 msaitoh /**
2250 1.1 dyoung * ixgbe_i2c_start - Sets I2C start condition
2251 1.1 dyoung * @hw: pointer to hardware structure
2252 1.1 dyoung *
2253 1.1 dyoung * Sets I2C start condition (High -> Low on SDA while SCL is High)
2254 1.7 msaitoh * Set bit-bang mode on X550 hardware.
2255 1.1 dyoung **/
2256 1.1 dyoung static void ixgbe_i2c_start(struct ixgbe_hw *hw)
2257 1.1 dyoung {
2258 1.7 msaitoh u32 i2cctl = IXGBE_READ_REG(hw, IXGBE_I2CCTL_BY_MAC(hw));
2259 1.1 dyoung
2260 1.1 dyoung DEBUGFUNC("ixgbe_i2c_start");
2261 1.1 dyoung
2262 1.7 msaitoh i2cctl |= IXGBE_I2C_BB_EN_BY_MAC(hw);
2263 1.7 msaitoh
2264 1.1 dyoung /* Start condition must begin with data and clock high */
2265 1.1 dyoung ixgbe_set_i2c_data(hw, &i2cctl, 1);
2266 1.1 dyoung ixgbe_raise_i2c_clk(hw, &i2cctl);
2267 1.1 dyoung
2268 1.1 dyoung /* Setup time for start condition (4.7us) */
2269 1.1 dyoung usec_delay(IXGBE_I2C_T_SU_STA);
2270 1.1 dyoung
2271 1.1 dyoung ixgbe_set_i2c_data(hw, &i2cctl, 0);
2272 1.1 dyoung
2273 1.1 dyoung /* Hold time for start condition (4us) */
2274 1.1 dyoung usec_delay(IXGBE_I2C_T_HD_STA);
2275 1.1 dyoung
2276 1.1 dyoung ixgbe_lower_i2c_clk(hw, &i2cctl);
2277 1.1 dyoung
2278 1.1 dyoung /* Minimum low period of clock is 4.7 us */
2279 1.1 dyoung usec_delay(IXGBE_I2C_T_LOW);
2280 1.1 dyoung
2281 1.1 dyoung }
2282 1.1 dyoung
2283 1.1 dyoung /**
2284 1.1 dyoung * ixgbe_i2c_stop - Sets I2C stop condition
2285 1.1 dyoung * @hw: pointer to hardware structure
2286 1.1 dyoung *
2287 1.1 dyoung * Sets I2C stop condition (Low -> High on SDA while SCL is High)
2288 1.7 msaitoh * Disables bit-bang mode and negates data output enable on X550
2289 1.7 msaitoh * hardware.
2290 1.1 dyoung **/
2291 1.1 dyoung static void ixgbe_i2c_stop(struct ixgbe_hw *hw)
2292 1.1 dyoung {
2293 1.7 msaitoh u32 i2cctl = IXGBE_READ_REG(hw, IXGBE_I2CCTL_BY_MAC(hw));
2294 1.7 msaitoh u32 data_oe_bit = IXGBE_I2C_DATA_OE_N_EN_BY_MAC(hw);
2295 1.7 msaitoh u32 clk_oe_bit = IXGBE_I2C_CLK_OE_N_EN_BY_MAC(hw);
2296 1.7 msaitoh u32 bb_en_bit = IXGBE_I2C_BB_EN_BY_MAC(hw);
2297 1.1 dyoung
2298 1.1 dyoung DEBUGFUNC("ixgbe_i2c_stop");
2299 1.1 dyoung
2300 1.1 dyoung /* Stop condition must begin with data low and clock high */
2301 1.1 dyoung ixgbe_set_i2c_data(hw, &i2cctl, 0);
2302 1.1 dyoung ixgbe_raise_i2c_clk(hw, &i2cctl);
2303 1.1 dyoung
2304 1.1 dyoung /* Setup time for stop condition (4us) */
2305 1.1 dyoung usec_delay(IXGBE_I2C_T_SU_STO);
2306 1.1 dyoung
2307 1.1 dyoung ixgbe_set_i2c_data(hw, &i2cctl, 1);
2308 1.1 dyoung
2309 1.1 dyoung /* bus free time between stop and start (4.7us)*/
2310 1.1 dyoung usec_delay(IXGBE_I2C_T_BUF);
2311 1.7 msaitoh
2312 1.7 msaitoh if (bb_en_bit || data_oe_bit || clk_oe_bit) {
2313 1.7 msaitoh i2cctl &= ~bb_en_bit;
2314 1.7 msaitoh i2cctl |= data_oe_bit | clk_oe_bit;
2315 1.7 msaitoh IXGBE_WRITE_REG(hw, IXGBE_I2CCTL_BY_MAC(hw), i2cctl);
2316 1.7 msaitoh IXGBE_WRITE_FLUSH(hw);
2317 1.7 msaitoh }
2318 1.1 dyoung }
2319 1.1 dyoung
2320 1.1 dyoung /**
2321 1.1 dyoung * ixgbe_clock_in_i2c_byte - Clocks in one byte via I2C
2322 1.1 dyoung * @hw: pointer to hardware structure
2323 1.1 dyoung * @data: data byte to clock in
2324 1.1 dyoung *
2325 1.1 dyoung * Clocks in one byte data via I2C data/clock
2326 1.1 dyoung **/
2327 1.1 dyoung static s32 ixgbe_clock_in_i2c_byte(struct ixgbe_hw *hw, u8 *data)
2328 1.1 dyoung {
2329 1.1 dyoung s32 i;
2330 1.1 dyoung bool bit = 0;
2331 1.1 dyoung
2332 1.1 dyoung DEBUGFUNC("ixgbe_clock_in_i2c_byte");
2333 1.1 dyoung
2334 1.7 msaitoh *data = 0;
2335 1.1 dyoung for (i = 7; i >= 0; i--) {
2336 1.3 msaitoh ixgbe_clock_in_i2c_bit(hw, &bit);
2337 1.1 dyoung *data |= bit << i;
2338 1.1 dyoung }
2339 1.1 dyoung
2340 1.3 msaitoh return IXGBE_SUCCESS;
2341 1.1 dyoung }
2342 1.1 dyoung
2343 1.1 dyoung /**
2344 1.1 dyoung * ixgbe_clock_out_i2c_byte - Clocks out one byte via I2C
2345 1.1 dyoung * @hw: pointer to hardware structure
2346 1.1 dyoung * @data: data byte clocked out
2347 1.1 dyoung *
2348 1.1 dyoung * Clocks out one byte data via I2C data/clock
2349 1.1 dyoung **/
2350 1.1 dyoung static s32 ixgbe_clock_out_i2c_byte(struct ixgbe_hw *hw, u8 data)
2351 1.1 dyoung {
2352 1.1 dyoung s32 status = IXGBE_SUCCESS;
2353 1.1 dyoung s32 i;
2354 1.1 dyoung u32 i2cctl;
2355 1.7 msaitoh bool bit;
2356 1.1 dyoung
2357 1.1 dyoung DEBUGFUNC("ixgbe_clock_out_i2c_byte");
2358 1.1 dyoung
2359 1.1 dyoung for (i = 7; i >= 0; i--) {
2360 1.1 dyoung bit = (data >> i) & 0x1;
2361 1.1 dyoung status = ixgbe_clock_out_i2c_bit(hw, bit);
2362 1.1 dyoung
2363 1.1 dyoung if (status != IXGBE_SUCCESS)
2364 1.1 dyoung break;
2365 1.1 dyoung }
2366 1.1 dyoung
2367 1.1 dyoung /* Release SDA line (set high) */
2368 1.7 msaitoh i2cctl = IXGBE_READ_REG(hw, IXGBE_I2CCTL_BY_MAC(hw));
2369 1.7 msaitoh i2cctl |= IXGBE_I2C_DATA_OUT_BY_MAC(hw);
2370 1.7 msaitoh i2cctl |= IXGBE_I2C_DATA_OE_N_EN_BY_MAC(hw);
2371 1.7 msaitoh IXGBE_WRITE_REG(hw, IXGBE_I2CCTL_BY_MAC(hw), i2cctl);
2372 1.3 msaitoh IXGBE_WRITE_FLUSH(hw);
2373 1.1 dyoung
2374 1.1 dyoung return status;
2375 1.1 dyoung }
2376 1.1 dyoung
2377 1.1 dyoung /**
2378 1.1 dyoung * ixgbe_get_i2c_ack - Polls for I2C ACK
2379 1.1 dyoung * @hw: pointer to hardware structure
2380 1.1 dyoung *
2381 1.1 dyoung * Clocks in/out one bit via I2C data/clock
2382 1.1 dyoung **/
2383 1.1 dyoung static s32 ixgbe_get_i2c_ack(struct ixgbe_hw *hw)
2384 1.1 dyoung {
2385 1.7 msaitoh u32 data_oe_bit = IXGBE_I2C_DATA_OE_N_EN_BY_MAC(hw);
2386 1.3 msaitoh s32 status = IXGBE_SUCCESS;
2387 1.1 dyoung u32 i = 0;
2388 1.7 msaitoh u32 i2cctl = IXGBE_READ_REG(hw, IXGBE_I2CCTL_BY_MAC(hw));
2389 1.1 dyoung u32 timeout = 10;
2390 1.1 dyoung bool ack = 1;
2391 1.1 dyoung
2392 1.1 dyoung DEBUGFUNC("ixgbe_get_i2c_ack");
2393 1.1 dyoung
2394 1.7 msaitoh if (data_oe_bit) {
2395 1.7 msaitoh i2cctl |= IXGBE_I2C_DATA_OUT_BY_MAC(hw);
2396 1.7 msaitoh i2cctl |= data_oe_bit;
2397 1.7 msaitoh IXGBE_WRITE_REG(hw, IXGBE_I2CCTL_BY_MAC(hw), i2cctl);
2398 1.7 msaitoh IXGBE_WRITE_FLUSH(hw);
2399 1.7 msaitoh }
2400 1.3 msaitoh ixgbe_raise_i2c_clk(hw, &i2cctl);
2401 1.1 dyoung
2402 1.1 dyoung /* Minimum high period of clock is 4us */
2403 1.1 dyoung usec_delay(IXGBE_I2C_T_HIGH);
2404 1.1 dyoung
2405 1.1 dyoung /* Poll for ACK. Note that ACK in I2C spec is
2406 1.1 dyoung * transition from 1 to 0 */
2407 1.1 dyoung for (i = 0; i < timeout; i++) {
2408 1.7 msaitoh i2cctl = IXGBE_READ_REG(hw, IXGBE_I2CCTL_BY_MAC(hw));
2409 1.7 msaitoh ack = ixgbe_get_i2c_data(hw, &i2cctl);
2410 1.1 dyoung
2411 1.1 dyoung usec_delay(1);
2412 1.7 msaitoh if (!ack)
2413 1.1 dyoung break;
2414 1.1 dyoung }
2415 1.1 dyoung
2416 1.7 msaitoh if (ack) {
2417 1.7 msaitoh DEBUGOUT("I2C ack was not received.\n");
2418 1.1 dyoung status = IXGBE_ERR_I2C;
2419 1.1 dyoung }
2420 1.1 dyoung
2421 1.1 dyoung ixgbe_lower_i2c_clk(hw, &i2cctl);
2422 1.1 dyoung
2423 1.1 dyoung /* Minimum low period of clock is 4.7 us */
2424 1.1 dyoung usec_delay(IXGBE_I2C_T_LOW);
2425 1.1 dyoung
2426 1.1 dyoung return status;
2427 1.1 dyoung }
2428 1.1 dyoung
2429 1.1 dyoung /**
2430 1.1 dyoung * ixgbe_clock_in_i2c_bit - Clocks in one bit via I2C data/clock
2431 1.1 dyoung * @hw: pointer to hardware structure
2432 1.1 dyoung * @data: read data value
2433 1.1 dyoung *
2434 1.1 dyoung * Clocks in one bit via I2C data/clock
2435 1.1 dyoung **/
2436 1.1 dyoung static s32 ixgbe_clock_in_i2c_bit(struct ixgbe_hw *hw, bool *data)
2437 1.1 dyoung {
2438 1.7 msaitoh u32 i2cctl = IXGBE_READ_REG(hw, IXGBE_I2CCTL_BY_MAC(hw));
2439 1.7 msaitoh u32 data_oe_bit = IXGBE_I2C_DATA_OE_N_EN_BY_MAC(hw);
2440 1.1 dyoung
2441 1.1 dyoung DEBUGFUNC("ixgbe_clock_in_i2c_bit");
2442 1.1 dyoung
2443 1.7 msaitoh if (data_oe_bit) {
2444 1.7 msaitoh i2cctl |= IXGBE_I2C_DATA_OUT_BY_MAC(hw);
2445 1.7 msaitoh i2cctl |= data_oe_bit;
2446 1.7 msaitoh IXGBE_WRITE_REG(hw, IXGBE_I2CCTL_BY_MAC(hw), i2cctl);
2447 1.7 msaitoh IXGBE_WRITE_FLUSH(hw);
2448 1.7 msaitoh }
2449 1.3 msaitoh ixgbe_raise_i2c_clk(hw, &i2cctl);
2450 1.1 dyoung
2451 1.1 dyoung /* Minimum high period of clock is 4us */
2452 1.1 dyoung usec_delay(IXGBE_I2C_T_HIGH);
2453 1.1 dyoung
2454 1.7 msaitoh i2cctl = IXGBE_READ_REG(hw, IXGBE_I2CCTL_BY_MAC(hw));
2455 1.7 msaitoh *data = ixgbe_get_i2c_data(hw, &i2cctl);
2456 1.1 dyoung
2457 1.1 dyoung ixgbe_lower_i2c_clk(hw, &i2cctl);
2458 1.1 dyoung
2459 1.1 dyoung /* Minimum low period of clock is 4.7 us */
2460 1.1 dyoung usec_delay(IXGBE_I2C_T_LOW);
2461 1.1 dyoung
2462 1.3 msaitoh return IXGBE_SUCCESS;
2463 1.1 dyoung }
2464 1.1 dyoung
2465 1.1 dyoung /**
2466 1.1 dyoung * ixgbe_clock_out_i2c_bit - Clocks in/out one bit via I2C data/clock
2467 1.1 dyoung * @hw: pointer to hardware structure
2468 1.1 dyoung * @data: data value to write
2469 1.1 dyoung *
2470 1.1 dyoung * Clocks out one bit via I2C data/clock
2471 1.1 dyoung **/
2472 1.1 dyoung static s32 ixgbe_clock_out_i2c_bit(struct ixgbe_hw *hw, bool data)
2473 1.1 dyoung {
2474 1.1 dyoung s32 status;
2475 1.7 msaitoh u32 i2cctl = IXGBE_READ_REG(hw, IXGBE_I2CCTL_BY_MAC(hw));
2476 1.1 dyoung
2477 1.1 dyoung DEBUGFUNC("ixgbe_clock_out_i2c_bit");
2478 1.1 dyoung
2479 1.1 dyoung status = ixgbe_set_i2c_data(hw, &i2cctl, data);
2480 1.1 dyoung if (status == IXGBE_SUCCESS) {
2481 1.3 msaitoh ixgbe_raise_i2c_clk(hw, &i2cctl);
2482 1.1 dyoung
2483 1.1 dyoung /* Minimum high period of clock is 4us */
2484 1.1 dyoung usec_delay(IXGBE_I2C_T_HIGH);
2485 1.1 dyoung
2486 1.1 dyoung ixgbe_lower_i2c_clk(hw, &i2cctl);
2487 1.1 dyoung
2488 1.1 dyoung /* Minimum low period of clock is 4.7 us.
2489 1.1 dyoung * This also takes care of the data hold time.
2490 1.1 dyoung */
2491 1.1 dyoung usec_delay(IXGBE_I2C_T_LOW);
2492 1.1 dyoung } else {
2493 1.1 dyoung status = IXGBE_ERR_I2C;
2494 1.6 msaitoh ERROR_REPORT2(IXGBE_ERROR_INVALID_STATE,
2495 1.6 msaitoh "I2C data was not set to %X\n", data);
2496 1.1 dyoung }
2497 1.1 dyoung
2498 1.1 dyoung return status;
2499 1.1 dyoung }
2500 1.7 msaitoh
2501 1.1 dyoung /**
2502 1.1 dyoung * ixgbe_raise_i2c_clk - Raises the I2C SCL clock
2503 1.1 dyoung * @hw: pointer to hardware structure
2504 1.1 dyoung * @i2cctl: Current value of I2CCTL register
2505 1.1 dyoung *
2506 1.1 dyoung * Raises the I2C clock line '0'->'1'
2507 1.7 msaitoh * Negates the I2C clock output enable on X550 hardware.
2508 1.1 dyoung **/
2509 1.3 msaitoh static void ixgbe_raise_i2c_clk(struct ixgbe_hw *hw, u32 *i2cctl)
2510 1.1 dyoung {
2511 1.7 msaitoh u32 clk_oe_bit = IXGBE_I2C_CLK_OE_N_EN_BY_MAC(hw);
2512 1.4 msaitoh u32 i = 0;
2513 1.4 msaitoh u32 timeout = IXGBE_I2C_CLOCK_STRETCHING_TIMEOUT;
2514 1.4 msaitoh u32 i2cctl_r = 0;
2515 1.4 msaitoh
2516 1.1 dyoung DEBUGFUNC("ixgbe_raise_i2c_clk");
2517 1.1 dyoung
2518 1.7 msaitoh if (clk_oe_bit) {
2519 1.7 msaitoh *i2cctl |= clk_oe_bit;
2520 1.7 msaitoh IXGBE_WRITE_REG(hw, IXGBE_I2CCTL_BY_MAC(hw), *i2cctl);
2521 1.7 msaitoh }
2522 1.7 msaitoh
2523 1.4 msaitoh for (i = 0; i < timeout; i++) {
2524 1.7 msaitoh *i2cctl |= IXGBE_I2C_CLK_OUT_BY_MAC(hw);
2525 1.1 dyoung
2526 1.7 msaitoh IXGBE_WRITE_REG(hw, IXGBE_I2CCTL_BY_MAC(hw), *i2cctl);
2527 1.4 msaitoh IXGBE_WRITE_FLUSH(hw);
2528 1.4 msaitoh /* SCL rise time (1000ns) */
2529 1.4 msaitoh usec_delay(IXGBE_I2C_T_RISE);
2530 1.1 dyoung
2531 1.7 msaitoh i2cctl_r = IXGBE_READ_REG(hw, IXGBE_I2CCTL_BY_MAC(hw));
2532 1.7 msaitoh if (i2cctl_r & IXGBE_I2C_CLK_IN_BY_MAC(hw))
2533 1.4 msaitoh break;
2534 1.4 msaitoh }
2535 1.1 dyoung }
2536 1.1 dyoung
2537 1.1 dyoung /**
2538 1.1 dyoung * ixgbe_lower_i2c_clk - Lowers the I2C SCL clock
2539 1.1 dyoung * @hw: pointer to hardware structure
2540 1.1 dyoung * @i2cctl: Current value of I2CCTL register
2541 1.1 dyoung *
2542 1.1 dyoung * Lowers the I2C clock line '1'->'0'
2543 1.7 msaitoh * Asserts the I2C clock output enable on X550 hardware.
2544 1.1 dyoung **/
2545 1.1 dyoung static void ixgbe_lower_i2c_clk(struct ixgbe_hw *hw, u32 *i2cctl)
2546 1.1 dyoung {
2547 1.1 dyoung DEBUGFUNC("ixgbe_lower_i2c_clk");
2548 1.1 dyoung
2549 1.7 msaitoh *i2cctl &= ~(IXGBE_I2C_CLK_OUT_BY_MAC(hw));
2550 1.7 msaitoh *i2cctl &= ~IXGBE_I2C_CLK_OE_N_EN_BY_MAC(hw);
2551 1.1 dyoung
2552 1.7 msaitoh IXGBE_WRITE_REG(hw, IXGBE_I2CCTL_BY_MAC(hw), *i2cctl);
2553 1.3 msaitoh IXGBE_WRITE_FLUSH(hw);
2554 1.1 dyoung
2555 1.1 dyoung /* SCL fall time (300ns) */
2556 1.1 dyoung usec_delay(IXGBE_I2C_T_FALL);
2557 1.1 dyoung }
2558 1.1 dyoung
2559 1.1 dyoung /**
2560 1.1 dyoung * ixgbe_set_i2c_data - Sets the I2C data bit
2561 1.1 dyoung * @hw: pointer to hardware structure
2562 1.1 dyoung * @i2cctl: Current value of I2CCTL register
2563 1.1 dyoung * @data: I2C data value (0 or 1) to set
2564 1.1 dyoung *
2565 1.1 dyoung * Sets the I2C data bit
2566 1.7 msaitoh * Asserts the I2C data output enable on X550 hardware.
2567 1.1 dyoung **/
2568 1.1 dyoung static s32 ixgbe_set_i2c_data(struct ixgbe_hw *hw, u32 *i2cctl, bool data)
2569 1.1 dyoung {
2570 1.7 msaitoh u32 data_oe_bit = IXGBE_I2C_DATA_OE_N_EN_BY_MAC(hw);
2571 1.1 dyoung s32 status = IXGBE_SUCCESS;
2572 1.1 dyoung
2573 1.1 dyoung DEBUGFUNC("ixgbe_set_i2c_data");
2574 1.1 dyoung
2575 1.1 dyoung if (data)
2576 1.7 msaitoh *i2cctl |= IXGBE_I2C_DATA_OUT_BY_MAC(hw);
2577 1.1 dyoung else
2578 1.7 msaitoh *i2cctl &= ~(IXGBE_I2C_DATA_OUT_BY_MAC(hw));
2579 1.7 msaitoh *i2cctl &= ~data_oe_bit;
2580 1.1 dyoung
2581 1.7 msaitoh IXGBE_WRITE_REG(hw, IXGBE_I2CCTL_BY_MAC(hw), *i2cctl);
2582 1.3 msaitoh IXGBE_WRITE_FLUSH(hw);
2583 1.1 dyoung
2584 1.1 dyoung /* Data rise/fall (1000ns/300ns) and set-up time (250ns) */
2585 1.1 dyoung usec_delay(IXGBE_I2C_T_RISE + IXGBE_I2C_T_FALL + IXGBE_I2C_T_SU_DATA);
2586 1.1 dyoung
2587 1.7 msaitoh if (!data) /* Can't verify data in this case */
2588 1.7 msaitoh return IXGBE_SUCCESS;
2589 1.7 msaitoh if (data_oe_bit) {
2590 1.7 msaitoh *i2cctl |= data_oe_bit;
2591 1.7 msaitoh IXGBE_WRITE_REG(hw, IXGBE_I2CCTL_BY_MAC(hw), *i2cctl);
2592 1.7 msaitoh IXGBE_WRITE_FLUSH(hw);
2593 1.7 msaitoh }
2594 1.7 msaitoh
2595 1.1 dyoung /* Verify data was set correctly */
2596 1.7 msaitoh *i2cctl = IXGBE_READ_REG(hw, IXGBE_I2CCTL_BY_MAC(hw));
2597 1.7 msaitoh if (data != ixgbe_get_i2c_data(hw, i2cctl)) {
2598 1.1 dyoung status = IXGBE_ERR_I2C;
2599 1.6 msaitoh ERROR_REPORT2(IXGBE_ERROR_INVALID_STATE,
2600 1.6 msaitoh "Error - I2C data was not set to %X.\n",
2601 1.6 msaitoh data);
2602 1.1 dyoung }
2603 1.1 dyoung
2604 1.1 dyoung return status;
2605 1.1 dyoung }
2606 1.1 dyoung
2607 1.1 dyoung /**
2608 1.1 dyoung * ixgbe_get_i2c_data - Reads the I2C SDA data bit
2609 1.1 dyoung * @hw: pointer to hardware structure
2610 1.1 dyoung * @i2cctl: Current value of I2CCTL register
2611 1.1 dyoung *
2612 1.1 dyoung * Returns the I2C data bit value
2613 1.7 msaitoh * Negates the I2C data output enable on X550 hardware.
2614 1.1 dyoung **/
2615 1.7 msaitoh static bool ixgbe_get_i2c_data(struct ixgbe_hw *hw, u32 *i2cctl)
2616 1.1 dyoung {
2617 1.7 msaitoh u32 data_oe_bit = IXGBE_I2C_DATA_OE_N_EN_BY_MAC(hw);
2618 1.1 dyoung bool data;
2619 1.1 dyoung
2620 1.1 dyoung DEBUGFUNC("ixgbe_get_i2c_data");
2621 1.1 dyoung
2622 1.7 msaitoh if (data_oe_bit) {
2623 1.7 msaitoh *i2cctl |= data_oe_bit;
2624 1.7 msaitoh IXGBE_WRITE_REG(hw, IXGBE_I2CCTL_BY_MAC(hw), *i2cctl);
2625 1.7 msaitoh IXGBE_WRITE_FLUSH(hw);
2626 1.7 msaitoh usec_delay(IXGBE_I2C_T_FALL);
2627 1.7 msaitoh }
2628 1.7 msaitoh
2629 1.7 msaitoh if (*i2cctl & IXGBE_I2C_DATA_IN_BY_MAC(hw))
2630 1.1 dyoung data = 1;
2631 1.1 dyoung else
2632 1.1 dyoung data = 0;
2633 1.1 dyoung
2634 1.1 dyoung return data;
2635 1.1 dyoung }
2636 1.1 dyoung
2637 1.1 dyoung /**
2638 1.1 dyoung * ixgbe_i2c_bus_clear - Clears the I2C bus
2639 1.1 dyoung * @hw: pointer to hardware structure
2640 1.1 dyoung *
2641 1.1 dyoung * Clears the I2C bus by sending nine clock pulses.
2642 1.1 dyoung * Used when data line is stuck low.
2643 1.1 dyoung **/
2644 1.1 dyoung void ixgbe_i2c_bus_clear(struct ixgbe_hw *hw)
2645 1.1 dyoung {
2646 1.7 msaitoh u32 i2cctl;
2647 1.1 dyoung u32 i;
2648 1.1 dyoung
2649 1.1 dyoung DEBUGFUNC("ixgbe_i2c_bus_clear");
2650 1.1 dyoung
2651 1.1 dyoung ixgbe_i2c_start(hw);
2652 1.7 msaitoh i2cctl = IXGBE_READ_REG(hw, IXGBE_I2CCTL_BY_MAC(hw));
2653 1.1 dyoung
2654 1.1 dyoung ixgbe_set_i2c_data(hw, &i2cctl, 1);
2655 1.1 dyoung
2656 1.1 dyoung for (i = 0; i < 9; i++) {
2657 1.1 dyoung ixgbe_raise_i2c_clk(hw, &i2cctl);
2658 1.1 dyoung
2659 1.1 dyoung /* Min high period of clock is 4us */
2660 1.1 dyoung usec_delay(IXGBE_I2C_T_HIGH);
2661 1.1 dyoung
2662 1.1 dyoung ixgbe_lower_i2c_clk(hw, &i2cctl);
2663 1.1 dyoung
2664 1.1 dyoung /* Min low period of clock is 4.7us*/
2665 1.1 dyoung usec_delay(IXGBE_I2C_T_LOW);
2666 1.1 dyoung }
2667 1.1 dyoung
2668 1.1 dyoung ixgbe_i2c_start(hw);
2669 1.1 dyoung
2670 1.1 dyoung /* Put the i2c bus back to default state */
2671 1.1 dyoung ixgbe_i2c_stop(hw);
2672 1.1 dyoung }
2673 1.1 dyoung
2674 1.1 dyoung /**
2675 1.4 msaitoh * ixgbe_tn_check_overtemp - Checks if an overtemp occurred.
2676 1.1 dyoung * @hw: pointer to hardware structure
2677 1.1 dyoung *
2678 1.1 dyoung * Checks if the LASI temp alarm status was triggered due to overtemp
2679 1.1 dyoung **/
2680 1.1 dyoung s32 ixgbe_tn_check_overtemp(struct ixgbe_hw *hw)
2681 1.1 dyoung {
2682 1.1 dyoung s32 status = IXGBE_SUCCESS;
2683 1.1 dyoung u16 phy_data = 0;
2684 1.1 dyoung
2685 1.1 dyoung DEBUGFUNC("ixgbe_tn_check_overtemp");
2686 1.1 dyoung
2687 1.1 dyoung if (hw->device_id != IXGBE_DEV_ID_82599_T3_LOM)
2688 1.1 dyoung goto out;
2689 1.1 dyoung
2690 1.1 dyoung /* Check that the LASI temp alarm status was triggered */
2691 1.1 dyoung hw->phy.ops.read_reg(hw, IXGBE_TN_LASI_STATUS_REG,
2692 1.1 dyoung IXGBE_MDIO_PMA_PMD_DEV_TYPE, &phy_data);
2693 1.1 dyoung
2694 1.1 dyoung if (!(phy_data & IXGBE_TN_LASI_STATUS_TEMP_ALARM))
2695 1.1 dyoung goto out;
2696 1.1 dyoung
2697 1.1 dyoung status = IXGBE_ERR_OVERTEMP;
2698 1.6 msaitoh ERROR_REPORT1(IXGBE_ERROR_CAUTION, "Device over temperature");
2699 1.1 dyoung out:
2700 1.1 dyoung return status;
2701 1.1 dyoung }
2702 1.7 msaitoh
2703 1.7 msaitoh /**
2704 1.7 msaitoh * ixgbe_set_copper_phy_power - Control power for copper phy
2705 1.7 msaitoh * @hw: pointer to hardware structure
2706 1.7 msaitoh * @on: TRUE for on, FALSE for off
2707 1.7 msaitoh */
2708 1.7 msaitoh s32 ixgbe_set_copper_phy_power(struct ixgbe_hw *hw, bool on)
2709 1.7 msaitoh {
2710 1.7 msaitoh u32 status;
2711 1.7 msaitoh u16 reg;
2712 1.7 msaitoh
2713 1.10 msaitoh if (!on && ixgbe_mng_present(hw))
2714 1.10 msaitoh return 0;
2715 1.10 msaitoh
2716 1.7 msaitoh status = hw->phy.ops.read_reg(hw, IXGBE_MDIO_VENDOR_SPECIFIC_1_CONTROL,
2717 1.7 msaitoh IXGBE_MDIO_VENDOR_SPECIFIC_1_DEV_TYPE,
2718 1.7 msaitoh ®);
2719 1.7 msaitoh if (status)
2720 1.7 msaitoh return status;
2721 1.7 msaitoh
2722 1.7 msaitoh if (on) {
2723 1.7 msaitoh reg &= ~IXGBE_MDIO_PHY_SET_LOW_POWER_MODE;
2724 1.7 msaitoh } else {
2725 1.7 msaitoh if (ixgbe_check_reset_blocked(hw))
2726 1.7 msaitoh return 0;
2727 1.7 msaitoh reg |= IXGBE_MDIO_PHY_SET_LOW_POWER_MODE;
2728 1.7 msaitoh }
2729 1.7 msaitoh
2730 1.7 msaitoh status = hw->phy.ops.write_reg(hw, IXGBE_MDIO_VENDOR_SPECIFIC_1_CONTROL,
2731 1.7 msaitoh IXGBE_MDIO_VENDOR_SPECIFIC_1_DEV_TYPE,
2732 1.7 msaitoh reg);
2733 1.7 msaitoh return status;
2734 1.7 msaitoh }
2735