xref: /linux/net/ethtool/common.c (revision 8f7aa3d3c7323f4ca2768a9e74ebbe359c4f8f88)
1 // SPDX-License-Identifier: GPL-2.0-only
2 
3 #include <linux/ethtool_netlink.h>
4 #include <linux/net_tstamp.h>
5 #include <linux/phy.h>
6 #include <linux/rtnetlink.h>
7 #include <linux/ptp_clock_kernel.h>
8 #include <linux/phy_link_topology.h>
9 #include <net/netdev_queues.h>
10 
11 #include "netlink.h"
12 #include "common.h"
13 #include "../core/dev.h"
14 
15 
16 const char netdev_features_strings[NETDEV_FEATURE_COUNT][ETH_GSTRING_LEN] = {
17 	[NETIF_F_SG_BIT] =               "tx-scatter-gather",
18 	[NETIF_F_IP_CSUM_BIT] =          "tx-checksum-ipv4",
19 	[NETIF_F_HW_CSUM_BIT] =          "tx-checksum-ip-generic",
20 	[NETIF_F_IPV6_CSUM_BIT] =        "tx-checksum-ipv6",
21 	[NETIF_F_HIGHDMA_BIT] =          "highdma",
22 	[NETIF_F_FRAGLIST_BIT] =         "tx-scatter-gather-fraglist",
23 	[NETIF_F_HW_VLAN_CTAG_TX_BIT] =  "tx-vlan-hw-insert",
24 
25 	[NETIF_F_HW_VLAN_CTAG_RX_BIT] =  "rx-vlan-hw-parse",
26 	[NETIF_F_HW_VLAN_CTAG_FILTER_BIT] = "rx-vlan-filter",
27 	[NETIF_F_HW_VLAN_STAG_TX_BIT] =  "tx-vlan-stag-hw-insert",
28 	[NETIF_F_HW_VLAN_STAG_RX_BIT] =  "rx-vlan-stag-hw-parse",
29 	[NETIF_F_HW_VLAN_STAG_FILTER_BIT] = "rx-vlan-stag-filter",
30 	[NETIF_F_VLAN_CHALLENGED_BIT] =  "vlan-challenged",
31 	[NETIF_F_GSO_BIT] =              "tx-generic-segmentation",
32 	[NETIF_F_GRO_BIT] =              "rx-gro",
33 	[NETIF_F_GRO_HW_BIT] =           "rx-gro-hw",
34 	[NETIF_F_LRO_BIT] =              "rx-lro",
35 
36 	[NETIF_F_TSO_BIT] =              "tx-tcp-segmentation",
37 	[NETIF_F_GSO_ROBUST_BIT] =       "tx-gso-robust",
38 	[NETIF_F_TSO_ECN_BIT] =          "tx-tcp-ecn-segmentation",
39 	[NETIF_F_GSO_ACCECN_BIT] =	 "tx-tcp-accecn-segmentation",
40 	[NETIF_F_TSO_MANGLEID_BIT] =	 "tx-tcp-mangleid-segmentation",
41 	[NETIF_F_TSO6_BIT] =             "tx-tcp6-segmentation",
42 	[NETIF_F_FSO_BIT] =              "tx-fcoe-segmentation",
43 	[NETIF_F_GSO_GRE_BIT] =		 "tx-gre-segmentation",
44 	[NETIF_F_GSO_GRE_CSUM_BIT] =	 "tx-gre-csum-segmentation",
45 	[NETIF_F_GSO_IPXIP4_BIT] =	 "tx-ipxip4-segmentation",
46 	[NETIF_F_GSO_IPXIP6_BIT] =	 "tx-ipxip6-segmentation",
47 	[NETIF_F_GSO_UDP_TUNNEL_BIT] =	 "tx-udp_tnl-segmentation",
48 	[NETIF_F_GSO_UDP_TUNNEL_CSUM_BIT] = "tx-udp_tnl-csum-segmentation",
49 	[NETIF_F_GSO_PARTIAL_BIT] =	 "tx-gso-partial",
50 	[NETIF_F_GSO_TUNNEL_REMCSUM_BIT] = "tx-tunnel-remcsum-segmentation",
51 	[NETIF_F_GSO_SCTP_BIT] =	 "tx-sctp-segmentation",
52 	[NETIF_F_GSO_ESP_BIT] =		 "tx-esp-segmentation",
53 	[NETIF_F_GSO_UDP_L4_BIT] =	 "tx-udp-segmentation",
54 	[NETIF_F_GSO_FRAGLIST_BIT] =	 "tx-gso-list",
55 
56 	[NETIF_F_FCOE_CRC_BIT] =         "tx-checksum-fcoe-crc",
57 	[NETIF_F_SCTP_CRC_BIT] =        "tx-checksum-sctp",
58 	[NETIF_F_NTUPLE_BIT] =           "rx-ntuple-filter",
59 	[NETIF_F_RXHASH_BIT] =           "rx-hashing",
60 	[NETIF_F_RXCSUM_BIT] =           "rx-checksum",
61 	[NETIF_F_NOCACHE_COPY_BIT] =     "tx-nocache-copy",
62 	[NETIF_F_LOOPBACK_BIT] =         "loopback",
63 	[NETIF_F_RXFCS_BIT] =            "rx-fcs",
64 	[NETIF_F_RXALL_BIT] =            "rx-all",
65 	[NETIF_F_HW_L2FW_DOFFLOAD_BIT] = "l2-fwd-offload",
66 	[NETIF_F_HW_TC_BIT] =		 "hw-tc-offload",
67 	[NETIF_F_HW_ESP_BIT] =		 "esp-hw-offload",
68 	[NETIF_F_HW_ESP_TX_CSUM_BIT] =	 "esp-tx-csum-hw-offload",
69 	[NETIF_F_RX_UDP_TUNNEL_PORT_BIT] =	 "rx-udp_tunnel-port-offload",
70 	[NETIF_F_HW_TLS_RECORD_BIT] =	"tls-hw-record",
71 	[NETIF_F_HW_TLS_TX_BIT] =	 "tls-hw-tx-offload",
72 	[NETIF_F_HW_TLS_RX_BIT] =	 "tls-hw-rx-offload",
73 	[NETIF_F_GRO_FRAGLIST_BIT] =	 "rx-gro-list",
74 	[NETIF_F_HW_MACSEC_BIT] =	 "macsec-hw-offload",
75 	[NETIF_F_GRO_UDP_FWD_BIT] =	 "rx-udp-gro-forwarding",
76 	[NETIF_F_HW_HSR_TAG_INS_BIT] =	 "hsr-tag-ins-offload",
77 	[NETIF_F_HW_HSR_TAG_RM_BIT] =	 "hsr-tag-rm-offload",
78 	[NETIF_F_HW_HSR_FWD_BIT] =	 "hsr-fwd-offload",
79 	[NETIF_F_HW_HSR_DUP_BIT] =	 "hsr-dup-offload",
80 };
81 
82 const char
83 rss_hash_func_strings[ETH_RSS_HASH_FUNCS_COUNT][ETH_GSTRING_LEN] = {
84 	[ETH_RSS_HASH_TOP_BIT] =	"toeplitz",
85 	[ETH_RSS_HASH_XOR_BIT] =	"xor",
86 	[ETH_RSS_HASH_CRC32_BIT] =	"crc32",
87 };
88 
89 const char
90 tunable_strings[__ETHTOOL_TUNABLE_COUNT][ETH_GSTRING_LEN] = {
91 	[ETHTOOL_ID_UNSPEC]     = "Unspec",
92 	[ETHTOOL_RX_COPYBREAK]	= "rx-copybreak",
93 	[ETHTOOL_TX_COPYBREAK]	= "tx-copybreak",
94 	[ETHTOOL_PFC_PREVENTION_TOUT] = "pfc-prevention-tout",
95 	[ETHTOOL_TX_COPYBREAK_BUF_SIZE] = "tx-copybreak-buf-size",
96 };
97 
98 const char
99 phy_tunable_strings[__ETHTOOL_PHY_TUNABLE_COUNT][ETH_GSTRING_LEN] = {
100 	[ETHTOOL_ID_UNSPEC]     = "Unspec",
101 	[ETHTOOL_PHY_DOWNSHIFT]	= "phy-downshift",
102 	[ETHTOOL_PHY_FAST_LINK_DOWN] = "phy-fast-link-down",
103 	[ETHTOOL_PHY_EDPD]	= "phy-energy-detect-power-down",
104 };
105 
106 #define __LINK_MODE_NAME(speed, type, duplex) \
107 	#speed "base" #type "/" #duplex
108 #define __DEFINE_LINK_MODE_NAME(speed, type, duplex) \
109 	[ETHTOOL_LINK_MODE(speed, type, duplex)] = \
110 	__LINK_MODE_NAME(speed, type, duplex)
111 #define __DEFINE_SPECIAL_MODE_NAME(_mode, _name) \
112 	[ETHTOOL_LINK_MODE_ ## _mode ## _BIT] = _name
113 
114 const char link_mode_names[][ETH_GSTRING_LEN] = {
115 	__DEFINE_LINK_MODE_NAME(10, T, Half),
116 	__DEFINE_LINK_MODE_NAME(10, T, Full),
117 	__DEFINE_LINK_MODE_NAME(100, T, Half),
118 	__DEFINE_LINK_MODE_NAME(100, T, Full),
119 	__DEFINE_LINK_MODE_NAME(1000, T, Half),
120 	__DEFINE_LINK_MODE_NAME(1000, T, Full),
121 	__DEFINE_SPECIAL_MODE_NAME(Autoneg, "Autoneg"),
122 	__DEFINE_SPECIAL_MODE_NAME(TP, "TP"),
123 	__DEFINE_SPECIAL_MODE_NAME(AUI, "AUI"),
124 	__DEFINE_SPECIAL_MODE_NAME(MII, "MII"),
125 	__DEFINE_SPECIAL_MODE_NAME(FIBRE, "FIBRE"),
126 	__DEFINE_SPECIAL_MODE_NAME(BNC, "BNC"),
127 	__DEFINE_LINK_MODE_NAME(10000, T, Full),
128 	__DEFINE_SPECIAL_MODE_NAME(Pause, "Pause"),
129 	__DEFINE_SPECIAL_MODE_NAME(Asym_Pause, "Asym_Pause"),
130 	__DEFINE_LINK_MODE_NAME(2500, X, Full),
131 	__DEFINE_SPECIAL_MODE_NAME(Backplane, "Backplane"),
132 	__DEFINE_LINK_MODE_NAME(1000, KX, Full),
133 	__DEFINE_LINK_MODE_NAME(10000, KX4, Full),
134 	__DEFINE_LINK_MODE_NAME(10000, KR, Full),
135 	__DEFINE_SPECIAL_MODE_NAME(10000baseR_FEC, "10000baseR_FEC"),
136 	__DEFINE_LINK_MODE_NAME(20000, MLD2, Full),
137 	__DEFINE_LINK_MODE_NAME(20000, KR2, Full),
138 	__DEFINE_LINK_MODE_NAME(40000, KR4, Full),
139 	__DEFINE_LINK_MODE_NAME(40000, CR4, Full),
140 	__DEFINE_LINK_MODE_NAME(40000, SR4, Full),
141 	__DEFINE_LINK_MODE_NAME(40000, LR4, Full),
142 	__DEFINE_LINK_MODE_NAME(56000, KR4, Full),
143 	__DEFINE_LINK_MODE_NAME(56000, CR4, Full),
144 	__DEFINE_LINK_MODE_NAME(56000, SR4, Full),
145 	__DEFINE_LINK_MODE_NAME(56000, LR4, Full),
146 	__DEFINE_LINK_MODE_NAME(25000, CR, Full),
147 	__DEFINE_LINK_MODE_NAME(25000, KR, Full),
148 	__DEFINE_LINK_MODE_NAME(25000, SR, Full),
149 	__DEFINE_LINK_MODE_NAME(50000, CR2, Full),
150 	__DEFINE_LINK_MODE_NAME(50000, KR2, Full),
151 	__DEFINE_LINK_MODE_NAME(100000, KR4, Full),
152 	__DEFINE_LINK_MODE_NAME(100000, SR4, Full),
153 	__DEFINE_LINK_MODE_NAME(100000, CR4, Full),
154 	__DEFINE_LINK_MODE_NAME(100000, LR4_ER4, Full),
155 	__DEFINE_LINK_MODE_NAME(50000, SR2, Full),
156 	__DEFINE_LINK_MODE_NAME(1000, X, Full),
157 	__DEFINE_LINK_MODE_NAME(10000, CR, Full),
158 	__DEFINE_LINK_MODE_NAME(10000, SR, Full),
159 	__DEFINE_LINK_MODE_NAME(10000, LR, Full),
160 	__DEFINE_LINK_MODE_NAME(10000, LRM, Full),
161 	__DEFINE_LINK_MODE_NAME(10000, ER, Full),
162 	__DEFINE_LINK_MODE_NAME(2500, T, Full),
163 	__DEFINE_LINK_MODE_NAME(5000, T, Full),
164 	__DEFINE_SPECIAL_MODE_NAME(FEC_NONE, "None"),
165 	__DEFINE_SPECIAL_MODE_NAME(FEC_RS, "RS"),
166 	__DEFINE_SPECIAL_MODE_NAME(FEC_BASER, "BASER"),
167 	__DEFINE_LINK_MODE_NAME(50000, KR, Full),
168 	__DEFINE_LINK_MODE_NAME(50000, SR, Full),
169 	__DEFINE_LINK_MODE_NAME(50000, CR, Full),
170 	__DEFINE_LINK_MODE_NAME(50000, LR_ER_FR, Full),
171 	__DEFINE_LINK_MODE_NAME(50000, DR, Full),
172 	__DEFINE_LINK_MODE_NAME(100000, KR2, Full),
173 	__DEFINE_LINK_MODE_NAME(100000, SR2, Full),
174 	__DEFINE_LINK_MODE_NAME(100000, CR2, Full),
175 	__DEFINE_LINK_MODE_NAME(100000, LR2_ER2_FR2, Full),
176 	__DEFINE_LINK_MODE_NAME(100000, DR2, Full),
177 	__DEFINE_LINK_MODE_NAME(200000, KR4, Full),
178 	__DEFINE_LINK_MODE_NAME(200000, SR4, Full),
179 	__DEFINE_LINK_MODE_NAME(200000, LR4_ER4_FR4, Full),
180 	__DEFINE_LINK_MODE_NAME(200000, DR4, Full),
181 	__DEFINE_LINK_MODE_NAME(200000, CR4, Full),
182 	__DEFINE_LINK_MODE_NAME(100, T1, Full),
183 	__DEFINE_LINK_MODE_NAME(1000, T1, Full),
184 	__DEFINE_LINK_MODE_NAME(400000, KR8, Full),
185 	__DEFINE_LINK_MODE_NAME(400000, SR8, Full),
186 	__DEFINE_LINK_MODE_NAME(400000, LR8_ER8_FR8, Full),
187 	__DEFINE_LINK_MODE_NAME(400000, DR8, Full),
188 	__DEFINE_LINK_MODE_NAME(400000, CR8, Full),
189 	__DEFINE_SPECIAL_MODE_NAME(FEC_LLRS, "LLRS"),
190 	__DEFINE_LINK_MODE_NAME(100000, KR, Full),
191 	__DEFINE_LINK_MODE_NAME(100000, SR, Full),
192 	__DEFINE_LINK_MODE_NAME(100000, LR_ER_FR, Full),
193 	__DEFINE_LINK_MODE_NAME(100000, DR, Full),
194 	__DEFINE_LINK_MODE_NAME(100000, CR, Full),
195 	__DEFINE_LINK_MODE_NAME(200000, KR2, Full),
196 	__DEFINE_LINK_MODE_NAME(200000, SR2, Full),
197 	__DEFINE_LINK_MODE_NAME(200000, LR2_ER2_FR2, Full),
198 	__DEFINE_LINK_MODE_NAME(200000, DR2, Full),
199 	__DEFINE_LINK_MODE_NAME(200000, CR2, Full),
200 	__DEFINE_LINK_MODE_NAME(400000, KR4, Full),
201 	__DEFINE_LINK_MODE_NAME(400000, SR4, Full),
202 	__DEFINE_LINK_MODE_NAME(400000, LR4_ER4_FR4, Full),
203 	__DEFINE_LINK_MODE_NAME(400000, DR4, Full),
204 	__DEFINE_LINK_MODE_NAME(400000, CR4, Full),
205 	__DEFINE_LINK_MODE_NAME(100, FX, Half),
206 	__DEFINE_LINK_MODE_NAME(100, FX, Full),
207 	__DEFINE_LINK_MODE_NAME(10, T1L, Full),
208 	__DEFINE_LINK_MODE_NAME(800000, CR8, Full),
209 	__DEFINE_LINK_MODE_NAME(800000, KR8, Full),
210 	__DEFINE_LINK_MODE_NAME(800000, DR8, Full),
211 	__DEFINE_LINK_MODE_NAME(800000, DR8_2, Full),
212 	__DEFINE_LINK_MODE_NAME(800000, SR8, Full),
213 	__DEFINE_LINK_MODE_NAME(800000, VR8, Full),
214 	__DEFINE_LINK_MODE_NAME(10, T1S, Full),
215 	__DEFINE_LINK_MODE_NAME(10, T1S, Half),
216 	__DEFINE_LINK_MODE_NAME(10, T1S_P2MP, Half),
217 	__DEFINE_LINK_MODE_NAME(10, T1BRR, Full),
218 	__DEFINE_LINK_MODE_NAME(200000, CR, Full),
219 	__DEFINE_LINK_MODE_NAME(200000, KR, Full),
220 	__DEFINE_LINK_MODE_NAME(200000, DR, Full),
221 	__DEFINE_LINK_MODE_NAME(200000, DR_2, Full),
222 	__DEFINE_LINK_MODE_NAME(200000, SR, Full),
223 	__DEFINE_LINK_MODE_NAME(200000, VR, Full),
224 	__DEFINE_LINK_MODE_NAME(400000, CR2, Full),
225 	__DEFINE_LINK_MODE_NAME(400000, KR2, Full),
226 	__DEFINE_LINK_MODE_NAME(400000, DR2, Full),
227 	__DEFINE_LINK_MODE_NAME(400000, DR2_2, Full),
228 	__DEFINE_LINK_MODE_NAME(400000, SR2, Full),
229 	__DEFINE_LINK_MODE_NAME(400000, VR2, Full),
230 	__DEFINE_LINK_MODE_NAME(800000, CR4, Full),
231 	__DEFINE_LINK_MODE_NAME(800000, KR4, Full),
232 	__DEFINE_LINK_MODE_NAME(800000, DR4, Full),
233 	__DEFINE_LINK_MODE_NAME(800000, DR4_2, Full),
234 	__DEFINE_LINK_MODE_NAME(800000, SR4, Full),
235 	__DEFINE_LINK_MODE_NAME(800000, VR4, Full),
236 	__DEFINE_LINK_MODE_NAME(1600000, CR8, Full),
237 	__DEFINE_LINK_MODE_NAME(1600000, KR8, Full),
238 	__DEFINE_LINK_MODE_NAME(1600000, DR8, Full),
239 	__DEFINE_LINK_MODE_NAME(1600000, DR8_2, Full),
240 };
241 static_assert(ARRAY_SIZE(link_mode_names) == __ETHTOOL_LINK_MODE_MASK_NBITS);
242 
243 #define __LINK_MODE_LANES_CR		1
244 #define __LINK_MODE_LANES_CR2		2
245 #define __LINK_MODE_LANES_CR4		4
246 #define __LINK_MODE_LANES_CR8		8
247 #define __LINK_MODE_LANES_DR		1
248 #define __LINK_MODE_LANES_DR_2		1
249 #define __LINK_MODE_LANES_DR2		2
250 #define __LINK_MODE_LANES_DR2_2		2
251 #define __LINK_MODE_LANES_DR4		4
252 #define __LINK_MODE_LANES_DR4_2		4
253 #define __LINK_MODE_LANES_DR8		8
254 #define __LINK_MODE_LANES_KR		1
255 #define __LINK_MODE_LANES_KR2		2
256 #define __LINK_MODE_LANES_KR4		4
257 #define __LINK_MODE_LANES_KR8		8
258 #define __LINK_MODE_LANES_SR		1
259 #define __LINK_MODE_LANES_SR2		2
260 #define __LINK_MODE_LANES_SR4		4
261 #define __LINK_MODE_LANES_SR8		8
262 #define __LINK_MODE_LANES_ER		1
263 #define __LINK_MODE_LANES_KX		1
264 #define __LINK_MODE_LANES_KX4		4
265 #define __LINK_MODE_LANES_LR		1
266 #define __LINK_MODE_LANES_LR4		4
267 #define __LINK_MODE_LANES_LR4_ER4	4
268 #define __LINK_MODE_LANES_LR_ER_FR	1
269 #define __LINK_MODE_LANES_LR2_ER2_FR2	2
270 #define __LINK_MODE_LANES_LR4_ER4_FR4	4
271 #define __LINK_MODE_LANES_LR8_ER8_FR8	8
272 #define __LINK_MODE_LANES_LRM		1
273 #define __LINK_MODE_LANES_MLD2		2
274 #define __LINK_MODE_LANES_T		1
275 #define __LINK_MODE_LANES_T1		1
276 #define __LINK_MODE_LANES_X		1
277 #define __LINK_MODE_LANES_FX		1
278 #define __LINK_MODE_LANES_T1L		1
279 #define __LINK_MODE_LANES_T1S		1
280 #define __LINK_MODE_LANES_T1S_P2MP	1
281 #define __LINK_MODE_LANES_VR		1
282 #define __LINK_MODE_LANES_VR2		2
283 #define __LINK_MODE_LANES_VR4		4
284 #define __LINK_MODE_LANES_VR8		8
285 #define __LINK_MODE_LANES_DR8_2		8
286 #define __LINK_MODE_LANES_T1BRR		1
287 
288 #define __DEFINE_LINK_MODE_PARAMS(_speed, _type, _duplex)	\
289 	[ETHTOOL_LINK_MODE(_speed, _type, _duplex)] = {		\
290 		.speed  = SPEED_ ## _speed, \
291 		.lanes  = __LINK_MODE_LANES_ ## _type, \
292 		.duplex	= __DUPLEX_ ## _duplex \
293 	}
294 #define __DUPLEX_Half DUPLEX_HALF
295 #define __DUPLEX_Full DUPLEX_FULL
296 #define __DEFINE_SPECIAL_MODE_PARAMS(_mode) \
297 	[ETHTOOL_LINK_MODE_ ## _mode ## _BIT] = { \
298 		.speed	= SPEED_UNKNOWN, \
299 		.lanes	= 0, \
300 		.duplex	= DUPLEX_UNKNOWN, \
301 	}
302 
303 const struct link_mode_info link_mode_params[] = {
304 	__DEFINE_LINK_MODE_PARAMS(10, T, Half),
305 	__DEFINE_LINK_MODE_PARAMS(10, T, Full),
306 	__DEFINE_LINK_MODE_PARAMS(100, T, Half),
307 	__DEFINE_LINK_MODE_PARAMS(100, T, Full),
308 	__DEFINE_LINK_MODE_PARAMS(1000, T, Half),
309 	__DEFINE_LINK_MODE_PARAMS(1000, T, Full),
310 	__DEFINE_SPECIAL_MODE_PARAMS(Autoneg),
311 	__DEFINE_SPECIAL_MODE_PARAMS(TP),
312 	__DEFINE_SPECIAL_MODE_PARAMS(AUI),
313 	__DEFINE_SPECIAL_MODE_PARAMS(MII),
314 	__DEFINE_SPECIAL_MODE_PARAMS(FIBRE),
315 	__DEFINE_SPECIAL_MODE_PARAMS(BNC),
316 	__DEFINE_LINK_MODE_PARAMS(10000, T, Full),
317 	__DEFINE_SPECIAL_MODE_PARAMS(Pause),
318 	__DEFINE_SPECIAL_MODE_PARAMS(Asym_Pause),
319 	__DEFINE_LINK_MODE_PARAMS(2500, X, Full),
320 	__DEFINE_SPECIAL_MODE_PARAMS(Backplane),
321 	__DEFINE_LINK_MODE_PARAMS(1000, KX, Full),
322 	__DEFINE_LINK_MODE_PARAMS(10000, KX4, Full),
323 	__DEFINE_LINK_MODE_PARAMS(10000, KR, Full),
324 	[ETHTOOL_LINK_MODE_10000baseR_FEC_BIT] = {
325 		.speed	= SPEED_10000,
326 		.lanes	= 1,
327 		.duplex = DUPLEX_FULL,
328 	},
329 	__DEFINE_LINK_MODE_PARAMS(20000, MLD2, Full),
330 	__DEFINE_LINK_MODE_PARAMS(20000, KR2, Full),
331 	__DEFINE_LINK_MODE_PARAMS(40000, KR4, Full),
332 	__DEFINE_LINK_MODE_PARAMS(40000, CR4, Full),
333 	__DEFINE_LINK_MODE_PARAMS(40000, SR4, Full),
334 	__DEFINE_LINK_MODE_PARAMS(40000, LR4, Full),
335 	__DEFINE_LINK_MODE_PARAMS(56000, KR4, Full),
336 	__DEFINE_LINK_MODE_PARAMS(56000, CR4, Full),
337 	__DEFINE_LINK_MODE_PARAMS(56000, SR4, Full),
338 	__DEFINE_LINK_MODE_PARAMS(56000, LR4, Full),
339 	__DEFINE_LINK_MODE_PARAMS(25000, CR, Full),
340 	__DEFINE_LINK_MODE_PARAMS(25000, KR, Full),
341 	__DEFINE_LINK_MODE_PARAMS(25000, SR, Full),
342 	__DEFINE_LINK_MODE_PARAMS(50000, CR2, Full),
343 	__DEFINE_LINK_MODE_PARAMS(50000, KR2, Full),
344 	__DEFINE_LINK_MODE_PARAMS(100000, KR4, Full),
345 	__DEFINE_LINK_MODE_PARAMS(100000, SR4, Full),
346 	__DEFINE_LINK_MODE_PARAMS(100000, CR4, Full),
347 	__DEFINE_LINK_MODE_PARAMS(100000, LR4_ER4, Full),
348 	__DEFINE_LINK_MODE_PARAMS(50000, SR2, Full),
349 	__DEFINE_LINK_MODE_PARAMS(1000, X, Full),
350 	__DEFINE_LINK_MODE_PARAMS(10000, CR, Full),
351 	__DEFINE_LINK_MODE_PARAMS(10000, SR, Full),
352 	__DEFINE_LINK_MODE_PARAMS(10000, LR, Full),
353 	__DEFINE_LINK_MODE_PARAMS(10000, LRM, Full),
354 	__DEFINE_LINK_MODE_PARAMS(10000, ER, Full),
355 	__DEFINE_LINK_MODE_PARAMS(2500, T, Full),
356 	__DEFINE_LINK_MODE_PARAMS(5000, T, Full),
357 	__DEFINE_SPECIAL_MODE_PARAMS(FEC_NONE),
358 	__DEFINE_SPECIAL_MODE_PARAMS(FEC_RS),
359 	__DEFINE_SPECIAL_MODE_PARAMS(FEC_BASER),
360 	__DEFINE_LINK_MODE_PARAMS(50000, KR, Full),
361 	__DEFINE_LINK_MODE_PARAMS(50000, SR, Full),
362 	__DEFINE_LINK_MODE_PARAMS(50000, CR, Full),
363 	__DEFINE_LINK_MODE_PARAMS(50000, LR_ER_FR, Full),
364 	__DEFINE_LINK_MODE_PARAMS(50000, DR, Full),
365 	__DEFINE_LINK_MODE_PARAMS(100000, KR2, Full),
366 	__DEFINE_LINK_MODE_PARAMS(100000, SR2, Full),
367 	__DEFINE_LINK_MODE_PARAMS(100000, CR2, Full),
368 	__DEFINE_LINK_MODE_PARAMS(100000, LR2_ER2_FR2, Full),
369 	__DEFINE_LINK_MODE_PARAMS(100000, DR2, Full),
370 	__DEFINE_LINK_MODE_PARAMS(200000, KR4, Full),
371 	__DEFINE_LINK_MODE_PARAMS(200000, SR4, Full),
372 	__DEFINE_LINK_MODE_PARAMS(200000, LR4_ER4_FR4, Full),
373 	__DEFINE_LINK_MODE_PARAMS(200000, DR4, Full),
374 	__DEFINE_LINK_MODE_PARAMS(200000, CR4, Full),
375 	__DEFINE_LINK_MODE_PARAMS(100, T1, Full),
376 	__DEFINE_LINK_MODE_PARAMS(1000, T1, Full),
377 	__DEFINE_LINK_MODE_PARAMS(400000, KR8, Full),
378 	__DEFINE_LINK_MODE_PARAMS(400000, SR8, Full),
379 	__DEFINE_LINK_MODE_PARAMS(400000, LR8_ER8_FR8, Full),
380 	__DEFINE_LINK_MODE_PARAMS(400000, DR8, Full),
381 	__DEFINE_LINK_MODE_PARAMS(400000, CR8, Full),
382 	__DEFINE_SPECIAL_MODE_PARAMS(FEC_LLRS),
383 	__DEFINE_LINK_MODE_PARAMS(100000, KR, Full),
384 	__DEFINE_LINK_MODE_PARAMS(100000, SR, Full),
385 	__DEFINE_LINK_MODE_PARAMS(100000, LR_ER_FR, Full),
386 	__DEFINE_LINK_MODE_PARAMS(100000, DR, Full),
387 	__DEFINE_LINK_MODE_PARAMS(100000, CR, Full),
388 	__DEFINE_LINK_MODE_PARAMS(200000, KR2, Full),
389 	__DEFINE_LINK_MODE_PARAMS(200000, SR2, Full),
390 	__DEFINE_LINK_MODE_PARAMS(200000, LR2_ER2_FR2, Full),
391 	__DEFINE_LINK_MODE_PARAMS(200000, DR2, Full),
392 	__DEFINE_LINK_MODE_PARAMS(200000, CR2, Full),
393 	__DEFINE_LINK_MODE_PARAMS(400000, KR4, Full),
394 	__DEFINE_LINK_MODE_PARAMS(400000, SR4, Full),
395 	__DEFINE_LINK_MODE_PARAMS(400000, LR4_ER4_FR4, Full),
396 	__DEFINE_LINK_MODE_PARAMS(400000, DR4, Full),
397 	__DEFINE_LINK_MODE_PARAMS(400000, CR4, Full),
398 	__DEFINE_LINK_MODE_PARAMS(100, FX, Half),
399 	__DEFINE_LINK_MODE_PARAMS(100, FX, Full),
400 	__DEFINE_LINK_MODE_PARAMS(10, T1L, Full),
401 	__DEFINE_LINK_MODE_PARAMS(800000, CR8, Full),
402 	__DEFINE_LINK_MODE_PARAMS(800000, KR8, Full),
403 	__DEFINE_LINK_MODE_PARAMS(800000, DR8, Full),
404 	__DEFINE_LINK_MODE_PARAMS(800000, DR8_2, Full),
405 	__DEFINE_LINK_MODE_PARAMS(800000, SR8, Full),
406 	__DEFINE_LINK_MODE_PARAMS(800000, VR8, Full),
407 	__DEFINE_LINK_MODE_PARAMS(10, T1S, Full),
408 	__DEFINE_LINK_MODE_PARAMS(10, T1S, Half),
409 	__DEFINE_LINK_MODE_PARAMS(10, T1S_P2MP, Half),
410 	__DEFINE_LINK_MODE_PARAMS(10, T1BRR, Full),
411 	__DEFINE_LINK_MODE_PARAMS(200000, CR, Full),
412 	__DEFINE_LINK_MODE_PARAMS(200000, KR, Full),
413 	__DEFINE_LINK_MODE_PARAMS(200000, DR, Full),
414 	__DEFINE_LINK_MODE_PARAMS(200000, DR_2, Full),
415 	__DEFINE_LINK_MODE_PARAMS(200000, SR, Full),
416 	__DEFINE_LINK_MODE_PARAMS(200000, VR, Full),
417 	__DEFINE_LINK_MODE_PARAMS(400000, CR2, Full),
418 	__DEFINE_LINK_MODE_PARAMS(400000, KR2, Full),
419 	__DEFINE_LINK_MODE_PARAMS(400000, DR2, Full),
420 	__DEFINE_LINK_MODE_PARAMS(400000, DR2_2, Full),
421 	__DEFINE_LINK_MODE_PARAMS(400000, SR2, Full),
422 	__DEFINE_LINK_MODE_PARAMS(400000, VR2, Full),
423 	__DEFINE_LINK_MODE_PARAMS(800000, CR4, Full),
424 	__DEFINE_LINK_MODE_PARAMS(800000, KR4, Full),
425 	__DEFINE_LINK_MODE_PARAMS(800000, DR4, Full),
426 	__DEFINE_LINK_MODE_PARAMS(800000, DR4_2, Full),
427 	__DEFINE_LINK_MODE_PARAMS(800000, SR4, Full),
428 	__DEFINE_LINK_MODE_PARAMS(800000, VR4, Full),
429 	__DEFINE_LINK_MODE_PARAMS(1600000, CR8, Full),
430 	__DEFINE_LINK_MODE_PARAMS(1600000, KR8, Full),
431 	__DEFINE_LINK_MODE_PARAMS(1600000, DR8, Full),
432 	__DEFINE_LINK_MODE_PARAMS(1600000, DR8_2, Full),
433 };
434 static_assert(ARRAY_SIZE(link_mode_params) == __ETHTOOL_LINK_MODE_MASK_NBITS);
435 EXPORT_SYMBOL_GPL(link_mode_params);
436 
437 const char netif_msg_class_names[][ETH_GSTRING_LEN] = {
438 	[NETIF_MSG_DRV_BIT]		= "drv",
439 	[NETIF_MSG_PROBE_BIT]		= "probe",
440 	[NETIF_MSG_LINK_BIT]		= "link",
441 	[NETIF_MSG_TIMER_BIT]		= "timer",
442 	[NETIF_MSG_IFDOWN_BIT]		= "ifdown",
443 	[NETIF_MSG_IFUP_BIT]		= "ifup",
444 	[NETIF_MSG_RX_ERR_BIT]		= "rx_err",
445 	[NETIF_MSG_TX_ERR_BIT]		= "tx_err",
446 	[NETIF_MSG_TX_QUEUED_BIT]	= "tx_queued",
447 	[NETIF_MSG_INTR_BIT]		= "intr",
448 	[NETIF_MSG_TX_DONE_BIT]		= "tx_done",
449 	[NETIF_MSG_RX_STATUS_BIT]	= "rx_status",
450 	[NETIF_MSG_PKTDATA_BIT]		= "pktdata",
451 	[NETIF_MSG_HW_BIT]		= "hw",
452 	[NETIF_MSG_WOL_BIT]		= "wol",
453 };
454 static_assert(ARRAY_SIZE(netif_msg_class_names) == NETIF_MSG_CLASS_COUNT);
455 
456 const char wol_mode_names[][ETH_GSTRING_LEN] = {
457 	[const_ilog2(WAKE_PHY)]		= "phy",
458 	[const_ilog2(WAKE_UCAST)]	= "ucast",
459 	[const_ilog2(WAKE_MCAST)]	= "mcast",
460 	[const_ilog2(WAKE_BCAST)]	= "bcast",
461 	[const_ilog2(WAKE_ARP)]		= "arp",
462 	[const_ilog2(WAKE_MAGIC)]	= "magic",
463 	[const_ilog2(WAKE_MAGICSECURE)]	= "magicsecure",
464 	[const_ilog2(WAKE_FILTER)]	= "filter",
465 };
466 static_assert(ARRAY_SIZE(wol_mode_names) == WOL_MODE_COUNT);
467 
468 const char sof_timestamping_names[][ETH_GSTRING_LEN] = {
469 	[const_ilog2(SOF_TIMESTAMPING_TX_HARDWARE)]  = "hardware-transmit",
470 	[const_ilog2(SOF_TIMESTAMPING_TX_SOFTWARE)]  = "software-transmit",
471 	[const_ilog2(SOF_TIMESTAMPING_RX_HARDWARE)]  = "hardware-receive",
472 	[const_ilog2(SOF_TIMESTAMPING_RX_SOFTWARE)]  = "software-receive",
473 	[const_ilog2(SOF_TIMESTAMPING_SOFTWARE)]     = "software-system-clock",
474 	[const_ilog2(SOF_TIMESTAMPING_SYS_HARDWARE)] = "hardware-legacy-clock",
475 	[const_ilog2(SOF_TIMESTAMPING_RAW_HARDWARE)] = "hardware-raw-clock",
476 	[const_ilog2(SOF_TIMESTAMPING_OPT_ID)]       = "option-id",
477 	[const_ilog2(SOF_TIMESTAMPING_TX_SCHED)]     = "sched-transmit",
478 	[const_ilog2(SOF_TIMESTAMPING_TX_ACK)]       = "ack-transmit",
479 	[const_ilog2(SOF_TIMESTAMPING_OPT_CMSG)]     = "option-cmsg",
480 	[const_ilog2(SOF_TIMESTAMPING_OPT_TSONLY)]   = "option-tsonly",
481 	[const_ilog2(SOF_TIMESTAMPING_OPT_STATS)]    = "option-stats",
482 	[const_ilog2(SOF_TIMESTAMPING_OPT_PKTINFO)]  = "option-pktinfo",
483 	[const_ilog2(SOF_TIMESTAMPING_OPT_TX_SWHW)]  = "option-tx-swhw",
484 	[const_ilog2(SOF_TIMESTAMPING_BIND_PHC)]     = "bind-phc",
485 	[const_ilog2(SOF_TIMESTAMPING_OPT_ID_TCP)]   = "option-id-tcp",
486 	[const_ilog2(SOF_TIMESTAMPING_OPT_RX_FILTER)] = "option-rx-filter",
487 	[const_ilog2(SOF_TIMESTAMPING_TX_COMPLETION)] = "tx-completion",
488 };
489 static_assert(ARRAY_SIZE(sof_timestamping_names) == __SOF_TIMESTAMPING_CNT);
490 
491 const char ts_tx_type_names[][ETH_GSTRING_LEN] = {
492 	[HWTSTAMP_TX_OFF]		= "off",
493 	[HWTSTAMP_TX_ON]		= "on",
494 	[HWTSTAMP_TX_ONESTEP_SYNC]	= "onestep-sync",
495 	[HWTSTAMP_TX_ONESTEP_P2P]	= "onestep-p2p",
496 };
497 static_assert(ARRAY_SIZE(ts_tx_type_names) == __HWTSTAMP_TX_CNT);
498 
499 const char ts_rx_filter_names[][ETH_GSTRING_LEN] = {
500 	[HWTSTAMP_FILTER_NONE]			= "none",
501 	[HWTSTAMP_FILTER_ALL]			= "all",
502 	[HWTSTAMP_FILTER_SOME]			= "some",
503 	[HWTSTAMP_FILTER_PTP_V1_L4_EVENT]	= "ptpv1-l4-event",
504 	[HWTSTAMP_FILTER_PTP_V1_L4_SYNC]	= "ptpv1-l4-sync",
505 	[HWTSTAMP_FILTER_PTP_V1_L4_DELAY_REQ]	= "ptpv1-l4-delay-req",
506 	[HWTSTAMP_FILTER_PTP_V2_L4_EVENT]	= "ptpv2-l4-event",
507 	[HWTSTAMP_FILTER_PTP_V2_L4_SYNC]	= "ptpv2-l4-sync",
508 	[HWTSTAMP_FILTER_PTP_V2_L4_DELAY_REQ]	= "ptpv2-l4-delay-req",
509 	[HWTSTAMP_FILTER_PTP_V2_L2_EVENT]	= "ptpv2-l2-event",
510 	[HWTSTAMP_FILTER_PTP_V2_L2_SYNC]	= "ptpv2-l2-sync",
511 	[HWTSTAMP_FILTER_PTP_V2_L2_DELAY_REQ]	= "ptpv2-l2-delay-req",
512 	[HWTSTAMP_FILTER_PTP_V2_EVENT]		= "ptpv2-event",
513 	[HWTSTAMP_FILTER_PTP_V2_SYNC]		= "ptpv2-sync",
514 	[HWTSTAMP_FILTER_PTP_V2_DELAY_REQ]	= "ptpv2-delay-req",
515 	[HWTSTAMP_FILTER_NTP_ALL]		= "ntp-all",
516 };
517 static_assert(ARRAY_SIZE(ts_rx_filter_names) == __HWTSTAMP_FILTER_CNT);
518 
519 const char ts_flags_names[][ETH_GSTRING_LEN] = {
520 	[const_ilog2(HWTSTAMP_FLAG_BONDED_PHC_INDEX)] = "bonded-phc-index",
521 };
522 static_assert(ARRAY_SIZE(ts_flags_names) == __HWTSTAMP_FLAG_CNT);
523 
524 const char udp_tunnel_type_names[][ETH_GSTRING_LEN] = {
525 	[ETHTOOL_UDP_TUNNEL_TYPE_VXLAN]		= "vxlan",
526 	[ETHTOOL_UDP_TUNNEL_TYPE_GENEVE]	= "geneve",
527 	[ETHTOOL_UDP_TUNNEL_TYPE_VXLAN_GPE]	= "vxlan-gpe",
528 };
529 static_assert(ARRAY_SIZE(udp_tunnel_type_names) ==
530 	      __ETHTOOL_UDP_TUNNEL_TYPE_CNT);
531 
532 /* return false if legacy contained non-0 deprecated fields
533  * maxtxpkt/maxrxpkt. rest of ksettings always updated
534  */
535 bool
536 convert_legacy_settings_to_link_ksettings(
537 	struct ethtool_link_ksettings *link_ksettings,
538 	const struct ethtool_cmd *legacy_settings)
539 {
540 	bool retval = true;
541 
542 	memset(link_ksettings, 0, sizeof(*link_ksettings));
543 
544 	/* This is used to tell users that driver is still using these
545 	 * deprecated legacy fields, and they should not use
546 	 * %ETHTOOL_GLINKSETTINGS/%ETHTOOL_SLINKSETTINGS
547 	 */
548 	if (legacy_settings->maxtxpkt ||
549 	    legacy_settings->maxrxpkt)
550 		retval = false;
551 
552 	ethtool_convert_legacy_u32_to_link_mode(
553 		link_ksettings->link_modes.supported,
554 		legacy_settings->supported);
555 	ethtool_convert_legacy_u32_to_link_mode(
556 		link_ksettings->link_modes.advertising,
557 		legacy_settings->advertising);
558 	ethtool_convert_legacy_u32_to_link_mode(
559 		link_ksettings->link_modes.lp_advertising,
560 		legacy_settings->lp_advertising);
561 	link_ksettings->base.speed
562 		= ethtool_cmd_speed(legacy_settings);
563 	link_ksettings->base.duplex
564 		= legacy_settings->duplex;
565 	link_ksettings->base.port
566 		= legacy_settings->port;
567 	link_ksettings->base.phy_address
568 		= legacy_settings->phy_address;
569 	link_ksettings->base.autoneg
570 		= legacy_settings->autoneg;
571 	link_ksettings->base.mdio_support
572 		= legacy_settings->mdio_support;
573 	link_ksettings->base.eth_tp_mdix
574 		= legacy_settings->eth_tp_mdix;
575 	link_ksettings->base.eth_tp_mdix_ctrl
576 		= legacy_settings->eth_tp_mdix_ctrl;
577 	return retval;
578 }
579 
580 int __ethtool_get_link(struct net_device *dev)
581 {
582 	if (!dev->ethtool_ops->get_link)
583 		return -EOPNOTSUPP;
584 
585 	return netif_running(dev) && dev->ethtool_ops->get_link(dev);
586 }
587 
588 int ethtool_get_rx_ring_count(struct net_device *dev)
589 {
590 	const struct ethtool_ops *ops = dev->ethtool_ops;
591 	struct ethtool_rxnfc rx_rings = {};
592 	int ret;
593 
594 	if (ops->get_rx_ring_count)
595 		return ops->get_rx_ring_count(dev);
596 
597 	if (!ops->get_rxnfc)
598 		return -EOPNOTSUPP;
599 
600 	rx_rings.cmd = ETHTOOL_GRXRINGS;
601 	ret = ops->get_rxnfc(dev, &rx_rings, NULL);
602 	if (ret < 0)
603 		return ret;
604 
605 	return rx_rings.data;
606 }
607 
608 static int ethtool_get_rxnfc_rule_count(struct net_device *dev)
609 {
610 	const struct ethtool_ops *ops = dev->ethtool_ops;
611 	struct ethtool_rxnfc info = {
612 		.cmd = ETHTOOL_GRXCLSRLCNT,
613 	};
614 	int err;
615 
616 	err = ops->get_rxnfc(dev, &info, NULL);
617 	if (err)
618 		return err;
619 
620 	return info.rule_cnt;
621 }
622 
623 /* Max offset for one RSS context */
624 static u32 ethtool_get_rss_ctx_max_channel(struct ethtool_rxfh_context *ctx)
625 {
626 	u32 max_ring = 0;
627 	u32 i, *tbl;
628 
629 	if (WARN_ON_ONCE(!ctx))
630 		return 0;
631 	tbl = ethtool_rxfh_context_indir(ctx);
632 	for (i = 0; i < ctx->indir_size; i++)
633 		max_ring = max(max_ring, tbl[i]);
634 	return max_ring;
635 }
636 
637 static int ethtool_get_max_rxnfc_channel(struct net_device *dev, u64 *max)
638 {
639 	const struct ethtool_ops *ops = dev->ethtool_ops;
640 	struct ethtool_rxnfc *info;
641 	int err, i, rule_cnt;
642 	u64 max_ring = 0;
643 
644 	if (!ops->get_rxnfc)
645 		return -EOPNOTSUPP;
646 
647 	rule_cnt = ethtool_get_rxnfc_rule_count(dev);
648 	if (rule_cnt <= 0)
649 		return -EINVAL;
650 
651 	info = kvzalloc(struct_size(info, rule_locs, rule_cnt), GFP_KERNEL);
652 	if (!info)
653 		return -ENOMEM;
654 
655 	info->cmd = ETHTOOL_GRXCLSRLALL;
656 	info->rule_cnt = rule_cnt;
657 	err = ops->get_rxnfc(dev, info, info->rule_locs);
658 	if (err)
659 		goto err_free_info;
660 
661 	for (i = 0; i < rule_cnt; i++) {
662 		struct ethtool_rxnfc rule_info = {
663 			.cmd = ETHTOOL_GRXCLSRULE,
664 			.fs.location = info->rule_locs[i],
665 		};
666 
667 		err = ops->get_rxnfc(dev, &rule_info, NULL);
668 		if (err)
669 			goto err_free_info;
670 
671 		if (rule_info.fs.ring_cookie != RX_CLS_FLOW_DISC &&
672 		    rule_info.fs.ring_cookie != RX_CLS_FLOW_WAKE &&
673 		    !ethtool_get_flow_spec_ring_vf(rule_info.fs.ring_cookie)) {
674 			u64 ring = rule_info.fs.ring_cookie;
675 
676 			if (rule_info.flow_type & FLOW_RSS) {
677 				struct ethtool_rxfh_context *ctx;
678 
679 				ctx = xa_load(&dev->ethtool->rss_ctx,
680 					      rule_info.rss_context);
681 				ring += ethtool_get_rss_ctx_max_channel(ctx);
682 			}
683 			max_ring = max_t(u64, max_ring, ring);
684 		}
685 	}
686 
687 	kvfree(info);
688 	*max = max_ring;
689 	return 0;
690 
691 err_free_info:
692 	kvfree(info);
693 	return err;
694 }
695 
696 /* Max offset across all of a device's RSS contexts */
697 static u32 ethtool_get_max_rss_ctx_channel(struct net_device *dev)
698 {
699 	struct ethtool_rxfh_context *ctx;
700 	unsigned long context;
701 	u32 max_ring = 0;
702 
703 	mutex_lock(&dev->ethtool->rss_lock);
704 	xa_for_each(&dev->ethtool->rss_ctx, context, ctx)
705 		max_ring = max(max_ring, ethtool_get_rss_ctx_max_channel(ctx));
706 	mutex_unlock(&dev->ethtool->rss_lock);
707 
708 	return max_ring;
709 }
710 
711 static u32 ethtool_get_max_rxfh_channel(struct net_device *dev)
712 {
713 	struct ethtool_rxfh_param rxfh = {};
714 	u32 dev_size, current_max = 0;
715 	int ret;
716 
717 	/* While we do track whether RSS context has an indirection
718 	 * table explicitly set by the user, no driver looks at that bit.
719 	 * Assume drivers won't auto-regenerate the additional tables,
720 	 * to be safe.
721 	 */
722 	current_max = ethtool_get_max_rss_ctx_channel(dev);
723 
724 	if (!netif_is_rxfh_configured(dev))
725 		return current_max;
726 
727 	if (!dev->ethtool_ops->get_rxfh_indir_size ||
728 	    !dev->ethtool_ops->get_rxfh)
729 		return current_max;
730 	dev_size = dev->ethtool_ops->get_rxfh_indir_size(dev);
731 	if (dev_size == 0)
732 		return current_max;
733 
734 	rxfh.indir = kcalloc(dev_size, sizeof(rxfh.indir[0]), GFP_USER);
735 	if (!rxfh.indir)
736 		return U32_MAX;
737 
738 	mutex_lock(&dev->ethtool->rss_lock);
739 	ret = dev->ethtool_ops->get_rxfh(dev, &rxfh);
740 	mutex_unlock(&dev->ethtool->rss_lock);
741 	if (ret) {
742 		current_max = U32_MAX;
743 		goto out_free;
744 	}
745 
746 	while (dev_size--)
747 		current_max = max(current_max, rxfh.indir[dev_size]);
748 
749 out_free:
750 	kfree(rxfh.indir);
751 	return current_max;
752 }
753 
754 int ethtool_check_max_channel(struct net_device *dev,
755 			      struct ethtool_channels channels,
756 			      struct genl_info *info)
757 {
758 	u64 max_rxnfc_in_use;
759 	u32 max_rxfh_in_use;
760 	int max_mp_in_use;
761 
762 	/* ensure the new Rx count fits within the configured Rx flow
763 	 * indirection table/rxnfc settings
764 	 */
765 	if (ethtool_get_max_rxnfc_channel(dev, &max_rxnfc_in_use))
766 		max_rxnfc_in_use = 0;
767 	max_rxfh_in_use = ethtool_get_max_rxfh_channel(dev);
768 	if (channels.combined_count + channels.rx_count <= max_rxfh_in_use) {
769 		if (info)
770 			GENL_SET_ERR_MSG_FMT(info, "requested channel counts are too low for existing indirection table (%d)", max_rxfh_in_use);
771 		return -EINVAL;
772 	}
773 	if (channels.combined_count + channels.rx_count <= max_rxnfc_in_use) {
774 		if (info)
775 			GENL_SET_ERR_MSG(info, "requested channel counts are too low for existing ntuple filter settings");
776 		return -EINVAL;
777 	}
778 
779 	max_mp_in_use = dev_get_min_mp_channel_count(dev);
780 	if (channels.combined_count + channels.rx_count <= max_mp_in_use) {
781 		if (info)
782 			GENL_SET_ERR_MSG_FMT(info, "requested channel counts are too low for existing memory provider setting (%d)", max_mp_in_use);
783 		return -EINVAL;
784 	}
785 
786 	return 0;
787 }
788 
789 int ethtool_check_rss_ctx_busy(struct net_device *dev, u32 rss_context)
790 {
791 	const struct ethtool_ops *ops = dev->ethtool_ops;
792 	struct ethtool_rxnfc *info;
793 	int rc, i, rule_cnt;
794 
795 	if (!ops->get_rxnfc)
796 		return 0;
797 
798 	rule_cnt = ethtool_get_rxnfc_rule_count(dev);
799 	if (!rule_cnt)
800 		return 0;
801 
802 	if (rule_cnt < 0)
803 		return -EINVAL;
804 
805 	info = kvzalloc(struct_size(info, rule_locs, rule_cnt), GFP_KERNEL);
806 	if (!info)
807 		return -ENOMEM;
808 
809 	info->cmd = ETHTOOL_GRXCLSRLALL;
810 	info->rule_cnt = rule_cnt;
811 	rc = ops->get_rxnfc(dev, info, info->rule_locs);
812 	if (rc)
813 		goto out_free;
814 
815 	for (i = 0; i < rule_cnt; i++) {
816 		struct ethtool_rxnfc rule_info = {
817 			.cmd = ETHTOOL_GRXCLSRULE,
818 			.fs.location = info->rule_locs[i],
819 		};
820 
821 		rc = ops->get_rxnfc(dev, &rule_info, NULL);
822 		if (rc)
823 			goto out_free;
824 
825 		if (rule_info.fs.flow_type & FLOW_RSS &&
826 		    rule_info.rss_context == rss_context) {
827 			rc = -EBUSY;
828 			goto out_free;
829 		}
830 	}
831 
832 out_free:
833 	kvfree(info);
834 	return rc;
835 }
836 
837 struct ethtool_rxfh_context *
838 ethtool_rxfh_ctx_alloc(const struct ethtool_ops *ops,
839 		       u32 indir_size, u32 key_size)
840 {
841 	size_t indir_bytes, flex_len, key_off, size;
842 	struct ethtool_rxfh_context *ctx;
843 	u32 priv_bytes, indir_max;
844 	u16 key_max;
845 
846 	key_max = max(key_size, ops->rxfh_key_space);
847 	indir_max = max(indir_size, ops->rxfh_indir_space);
848 
849 	priv_bytes = ALIGN(ops->rxfh_priv_size, sizeof(u32));
850 	indir_bytes = array_size(indir_max, sizeof(u32));
851 
852 	key_off = size_add(priv_bytes, indir_bytes);
853 	flex_len = size_add(key_off, key_max);
854 	size = struct_size_t(struct ethtool_rxfh_context, data, flex_len);
855 
856 	ctx = kzalloc(size, GFP_KERNEL_ACCOUNT);
857 	if (!ctx)
858 		return NULL;
859 
860 	ctx->indir_size = indir_size;
861 	ctx->key_size = key_size;
862 	ctx->key_off = key_off;
863 	ctx->priv_size = ops->rxfh_priv_size;
864 
865 	ctx->hfunc = ETH_RSS_HASH_NO_CHANGE;
866 	ctx->input_xfrm = RXH_XFRM_NO_CHANGE;
867 
868 	return ctx;
869 }
870 
871 /* Check if fields configured for flow hash are symmetric - if src is included
872  * so is dst and vice versa.
873  */
874 int ethtool_rxfh_config_is_sym(u64 rxfh)
875 {
876 	bool sym;
877 
878 	sym = rxfh == (rxfh & (RXH_IP_SRC | RXH_IP_DST |
879 			       RXH_L4_B_0_1 | RXH_L4_B_2_3));
880 	sym &= !!(rxfh & RXH_IP_SRC)   == !!(rxfh & RXH_IP_DST);
881 	sym &= !!(rxfh & RXH_L4_B_0_1) == !!(rxfh & RXH_L4_B_2_3);
882 
883 	return sym;
884 }
885 
886 int ethtool_check_ops(const struct ethtool_ops *ops)
887 {
888 	if (WARN_ON(ops->set_coalesce && !ops->supported_coalesce_params))
889 		return -EINVAL;
890 	if (WARN_ON(ops->rxfh_max_num_contexts == 1))
891 		return -EINVAL;
892 	if (WARN_ON(ops->supported_input_xfrm && !ops->get_rxfh_fields))
893 		return -EINVAL;
894 	if (WARN_ON(ops->supported_input_xfrm &&
895 		    ops->rxfh_per_ctx_fields != ops->rxfh_per_ctx_key))
896 		return -EINVAL;
897 
898 	/* NOTE: sufficiently insane drivers may swap ethtool_ops at runtime,
899 	 * the fact that ops are checked at registration time does not
900 	 * mean the ops attached to a netdev later on are sane.
901 	 */
902 	return 0;
903 }
904 
905 void ethtool_ringparam_get_cfg(struct net_device *dev,
906 			       struct ethtool_ringparam *param,
907 			       struct kernel_ethtool_ringparam *kparam,
908 			       struct netlink_ext_ack *extack)
909 {
910 	memset(param, 0, sizeof(*param));
911 	memset(kparam, 0, sizeof(*kparam));
912 
913 	param->cmd = ETHTOOL_GRINGPARAM;
914 	dev->ethtool_ops->get_ringparam(dev, param, kparam, extack);
915 
916 	/* Driver gives us current state, we want to return current config */
917 	kparam->tcp_data_split = dev->cfg->hds_config;
918 	kparam->hds_thresh = dev->cfg->hds_thresh;
919 }
920 
921 static void ethtool_init_tsinfo(struct kernel_ethtool_ts_info *info)
922 {
923 	memset(info, 0, sizeof(*info));
924 	info->cmd = ETHTOOL_GET_TS_INFO;
925 	info->phc_index = -1;
926 }
927 
928 int ethtool_net_get_ts_info_by_phc(struct net_device *dev,
929 				   struct kernel_ethtool_ts_info *info,
930 				   struct hwtstamp_provider_desc *hwprov_desc)
931 {
932 	const struct ethtool_ops *ops = dev->ethtool_ops;
933 	int err;
934 
935 	if (!ops->get_ts_info)
936 		return -EOPNOTSUPP;
937 
938 	/* Does ptp comes from netdev */
939 	ethtool_init_tsinfo(info);
940 	info->phc_qualifier = hwprov_desc->qualifier;
941 	err = ops->get_ts_info(dev, info);
942 	if (err)
943 		return err;
944 
945 	if (info->phc_index == hwprov_desc->index &&
946 	    net_support_hwtstamp_qualifier(dev, hwprov_desc->qualifier))
947 		return 0;
948 
949 	return -ENODEV;
950 }
951 
952 struct phy_device *
953 ethtool_phy_get_ts_info_by_phc(struct net_device *dev,
954 			       struct kernel_ethtool_ts_info *info,
955 			       struct hwtstamp_provider_desc *hwprov_desc)
956 {
957 	int err;
958 
959 	/* Only precise qualifier is supported in phydev */
960 	if (hwprov_desc->qualifier != HWTSTAMP_PROVIDER_QUALIFIER_PRECISE)
961 		return ERR_PTR(-ENODEV);
962 
963 	/* Look in the phy topology */
964 	if (dev->link_topo) {
965 		struct phy_device_node *pdn;
966 		unsigned long phy_index;
967 
968 		xa_for_each(&dev->link_topo->phys, phy_index, pdn) {
969 			if (!phy_has_tsinfo(pdn->phy))
970 				continue;
971 
972 			ethtool_init_tsinfo(info);
973 			err = phy_ts_info(pdn->phy, info);
974 			if (err)
975 				return ERR_PTR(err);
976 
977 			if (info->phc_index == hwprov_desc->index)
978 				return pdn->phy;
979 		}
980 		return ERR_PTR(-ENODEV);
981 	}
982 
983 	/* Look on the dev->phydev */
984 	if (phy_has_tsinfo(dev->phydev)) {
985 		ethtool_init_tsinfo(info);
986 		err = phy_ts_info(dev->phydev, info);
987 		if (err)
988 			return ERR_PTR(err);
989 
990 		if (info->phc_index == hwprov_desc->index)
991 			return dev->phydev;
992 	}
993 
994 	return ERR_PTR(-ENODEV);
995 }
996 
997 int ethtool_get_ts_info_by_phc(struct net_device *dev,
998 			       struct kernel_ethtool_ts_info *info,
999 			       struct hwtstamp_provider_desc *hwprov_desc)
1000 {
1001 	int err;
1002 
1003 	err = ethtool_net_get_ts_info_by_phc(dev, info, hwprov_desc);
1004 	if (err == -ENODEV || err == -EOPNOTSUPP) {
1005 		struct phy_device *phy;
1006 
1007 		phy = ethtool_phy_get_ts_info_by_phc(dev, info, hwprov_desc);
1008 		if (IS_ERR(phy))
1009 			return PTR_ERR(phy);
1010 
1011 		/* Report the phc source only if we have a real
1012 		 * phc source with an index.
1013 		 */
1014 		if (info->phc_index >= 0) {
1015 			info->phc_source = HWTSTAMP_SOURCE_PHYLIB;
1016 			info->phc_phyindex = phy->phyindex;
1017 		}
1018 		err = 0;
1019 	} else if (!err && info->phc_index >= 0) {
1020 		info->phc_source = HWTSTAMP_SOURCE_NETDEV;
1021 	}
1022 
1023 	info->so_timestamping |= SOF_TIMESTAMPING_RX_SOFTWARE |
1024 				 SOF_TIMESTAMPING_SOFTWARE;
1025 
1026 	return err;
1027 }
1028 
1029 int __ethtool_get_ts_info(struct net_device *dev,
1030 			  struct kernel_ethtool_ts_info *info)
1031 {
1032 	struct hwtstamp_provider *hwprov;
1033 	int err = 0;
1034 
1035 	rcu_read_lock();
1036 	hwprov = rcu_dereference(dev->hwprov);
1037 	/* No provider specified, use default behavior */
1038 	if (!hwprov) {
1039 		const struct ethtool_ops *ops = dev->ethtool_ops;
1040 		struct phy_device *phydev = dev->phydev;
1041 
1042 		ethtool_init_tsinfo(info);
1043 		if (phy_is_default_hwtstamp(phydev) &&
1044 		    phy_has_tsinfo(phydev)) {
1045 			err = phy_ts_info(phydev, info);
1046 			/* Report the phc source only if we have a real
1047 			 * phc source with an index.
1048 			 */
1049 			if (!err && info->phc_index >= 0) {
1050 				info->phc_source = HWTSTAMP_SOURCE_PHYLIB;
1051 				info->phc_phyindex = phydev->phyindex;
1052 			}
1053 		} else if (ops->get_ts_info) {
1054 			err = ops->get_ts_info(dev, info);
1055 			if (!err && info->phc_index >= 0)
1056 				info->phc_source = HWTSTAMP_SOURCE_NETDEV;
1057 		}
1058 
1059 		info->so_timestamping |= SOF_TIMESTAMPING_RX_SOFTWARE |
1060 					 SOF_TIMESTAMPING_SOFTWARE;
1061 
1062 		rcu_read_unlock();
1063 		return err;
1064 	}
1065 
1066 	err = ethtool_get_ts_info_by_phc(dev, info, &hwprov->desc);
1067 	rcu_read_unlock();
1068 	return err;
1069 }
1070 
1071 bool net_support_hwtstamp_qualifier(struct net_device *dev,
1072 				    enum hwtstamp_provider_qualifier qualifier)
1073 {
1074 	const struct ethtool_ops *ops = dev->ethtool_ops;
1075 
1076 	if (!ops)
1077 		return false;
1078 
1079 	/* Return true with precise qualifier and with NIC without
1080 	 * qualifier description to not break the old behavior.
1081 	 */
1082 	if (!ops->supported_hwtstamp_qualifiers &&
1083 	    qualifier == HWTSTAMP_PROVIDER_QUALIFIER_PRECISE)
1084 		return true;
1085 
1086 	if (ops->supported_hwtstamp_qualifiers & BIT(qualifier))
1087 		return true;
1088 
1089 	return false;
1090 }
1091 
1092 int ethtool_get_phc_vclocks(struct net_device *dev, int **vclock_index)
1093 {
1094 	struct kernel_ethtool_ts_info info = { };
1095 	int num = 0;
1096 
1097 	if (!__ethtool_get_ts_info(dev, &info))
1098 		num = ptp_get_vclocks_index(info.phc_index, vclock_index);
1099 
1100 	return num;
1101 }
1102 EXPORT_SYMBOL(ethtool_get_phc_vclocks);
1103 
1104 int ethtool_get_ts_info_by_layer(struct net_device *dev, struct kernel_ethtool_ts_info *info)
1105 {
1106 	return __ethtool_get_ts_info(dev, info);
1107 }
1108 EXPORT_SYMBOL(ethtool_get_ts_info_by_layer);
1109 
1110 const struct ethtool_phy_ops *ethtool_phy_ops;
1111 
1112 void ethtool_set_ethtool_phy_ops(const struct ethtool_phy_ops *ops)
1113 {
1114 	ASSERT_RTNL();
1115 	ethtool_phy_ops = ops;
1116 }
1117 EXPORT_SYMBOL_GPL(ethtool_set_ethtool_phy_ops);
1118 
1119 void
1120 ethtool_params_from_link_mode(struct ethtool_link_ksettings *link_ksettings,
1121 			      enum ethtool_link_mode_bit_indices link_mode)
1122 {
1123 	const struct link_mode_info *link_info;
1124 
1125 	if (WARN_ON_ONCE(link_mode >= __ETHTOOL_LINK_MODE_MASK_NBITS))
1126 		return;
1127 
1128 	link_info = &link_mode_params[link_mode];
1129 	link_ksettings->base.speed = link_info->speed;
1130 	link_ksettings->lanes = link_info->lanes;
1131 	link_ksettings->base.duplex = link_info->duplex;
1132 }
1133 EXPORT_SYMBOL_GPL(ethtool_params_from_link_mode);
1134 
1135 /**
1136  * ethtool_forced_speed_maps_init
1137  * @maps: Pointer to an array of Ethtool forced speed map
1138  * @size: Array size
1139  *
1140  * Initialize an array of Ethtool forced speed map to Ethtool link modes. This
1141  * should be called during driver module init.
1142  */
1143 void
1144 ethtool_forced_speed_maps_init(struct ethtool_forced_speed_map *maps, u32 size)
1145 {
1146 	for (u32 i = 0; i < size; i++) {
1147 		struct ethtool_forced_speed_map *map = &maps[i];
1148 
1149 		linkmode_set_bit_array(map->cap_arr, map->arr_size, map->caps);
1150 		map->cap_arr = NULL;
1151 		map->arr_size = 0;
1152 	}
1153 }
1154 EXPORT_SYMBOL_GPL(ethtool_forced_speed_maps_init);
1155 
1156 void ethtool_rxfh_context_lost(struct net_device *dev, u32 context_id)
1157 {
1158 	struct ethtool_rxfh_context *ctx;
1159 
1160 	WARN_ONCE(!rtnl_is_locked() &&
1161 		  !lockdep_is_held_type(&dev->ethtool->rss_lock, -1),
1162 		  "RSS context lock assertion failed\n");
1163 
1164 	netdev_err(dev, "device error, RSS context %d lost\n", context_id);
1165 	ctx = xa_erase(&dev->ethtool->rss_ctx, context_id);
1166 	kfree(ctx);
1167 	ethtool_rss_notify(dev, ETHTOOL_MSG_RSS_DELETE_NTF, context_id);
1168 }
1169 EXPORT_SYMBOL(ethtool_rxfh_context_lost);
1170