1 /* SPDX-License-Identifier: (GPL-2.0+ OR BSD-3-Clause) */
2 /* Copyright 2017-2019 NXP */
3 
4 #include <linux/bitops.h>
5 
6 /* ENETC device IDs */
7 #define ENETC_DEV_ID_PF		0xe100
8 #define ENETC_DEV_ID_VF		0xef00
9 #define ENETC_DEV_ID_PTP	0xee02
10 
11 /* ENETC register block BAR */
12 #define ENETC_BAR_REGS	0
13 
14 /** SI regs, offset: 0h */
15 #define ENETC_SIMR	0
16 #define ENETC_SIMR_EN	BIT(31)
17 #define ENETC_SIMR_RSSE	BIT(0)
18 #define ENETC_SICTR0	0x18
19 #define ENETC_SICTR1	0x1c
20 #define ENETC_SIPCAPR0	0x20
21 #define ENETC_SIPCAPR0_QBV	BIT(4)
22 #define ENETC_SIPCAPR0_PSFP	BIT(9)
23 #define ENETC_SIPCAPR0_RSS	BIT(8)
24 #define ENETC_SIPCAPR1	0x24
25 #define ENETC_SITGTGR	0x30
26 #define ENETC_SIRBGCR	0x38
27 /* cache attribute registers for transactions initiated by ENETC */
28 #define ENETC_SICAR0	0x40
29 #define ENETC_SICAR1	0x44
30 #define ENETC_SICAR2	0x48
31 /* rd snoop, no alloc
32  * wr snoop, no alloc, partial cache line update for BDs and full cache line
33  * update for data
34  */
35 #define ENETC_SICAR_RD_COHERENT	0x2b2b0000
36 #define ENETC_SICAR_WR_COHERENT	0x00006727
37 #define ENETC_SICAR_MSI	0x00300030 /* rd/wr device, no snoop, no alloc */
38 
39 #define ENETC_SIPMAR0	0x80
40 #define ENETC_SIPMAR1	0x84
41 
42 /* VF-PF Message passing */
43 #define ENETC_DEFAULT_MSG_SIZE	1024	/* and max size */
44 /* msg size encoding: default and max msg value of 1024B encoded as 0 */
45 static inline u32 enetc_vsi_set_msize(u32 size)
46 {
47 	return size < ENETC_DEFAULT_MSG_SIZE ? size >> 5 : 0;
48 }
49 
50 #define ENETC_PSIMSGRR	0x204
51 #define ENETC_PSIMSGRR_MR_MASK	GENMASK(2, 1)
52 #define ENETC_PSIMSGRR_MR(n) BIT((n) + 1) /* n = VSI index */
53 #define ENETC_PSIVMSGRCVAR0(n)	(0x210 + (n) * 0x8) /* n = VSI index */
54 #define ENETC_PSIVMSGRCVAR1(n)	(0x214 + (n) * 0x8)
55 
56 #define ENETC_VSIMSGSR	0x204	/* RO */
57 #define ENETC_VSIMSGSR_MB	BIT(0)
58 #define ENETC_VSIMSGSR_MS	BIT(1)
59 #define ENETC_VSIMSGSNDAR0	0x210
60 #define ENETC_VSIMSGSNDAR1	0x214
61 
62 #define ENETC_SIMSGSR_SET_MC(val) ((val) << 16)
63 #define ENETC_SIMSGSR_GET_MC(val) ((val) >> 16)
64 
65 /* SI statistics */
66 #define ENETC_SIROCT	0x300
67 #define ENETC_SIRFRM	0x308
68 #define ENETC_SIRUCA	0x310
69 #define ENETC_SIRMCA	0x318
70 #define ENETC_SITOCT	0x320
71 #define ENETC_SITFRM	0x328
72 #define ENETC_SITUCA	0x330
73 #define ENETC_SITMCA	0x338
74 #define ENETC_RBDCR(n)	(0x8180 + (n) * 0x200)
75 
76 /* Control BDR regs */
77 #define ENETC_SICBDRMR		0x800
78 #define ENETC_SICBDRSR		0x804	/* RO */
79 #define ENETC_SICBDRBAR0	0x810
80 #define ENETC_SICBDRBAR1	0x814
81 #define ENETC_SICBDRPIR		0x818
82 #define ENETC_SICBDRCIR		0x81c
83 #define ENETC_SICBDRLENR	0x820
84 
85 #define ENETC_SICAPR0	0x900
86 #define ENETC_SICAPR1	0x904
87 
88 #define ENETC_PSIIER	0xa00
89 #define ENETC_PSIIER_MR_MASK	GENMASK(2, 1)
90 #define ENETC_PSIIDR	0xa08
91 #define ENETC_SITXIDR	0xa18
92 #define ENETC_SIRXIDR	0xa28
93 #define ENETC_SIMSIVR	0xa30
94 
95 #define ENETC_SIMSITRV(n) (0xB00 + (n) * 0x4)
96 #define ENETC_SIMSIRRV(n) (0xB80 + (n) * 0x4)
97 
98 #define ENETC_SIUEFDCR	0xe28
99 
100 #define ENETC_SIRFSCAPR	0x1200
101 #define ENETC_SIRFSCAPR_GET_NUM_RFS(val) ((val) & 0x7f)
102 #define ENETC_SIRSSCAPR	0x1600
103 #define ENETC_SIRSSCAPR_GET_NUM_RSS(val) (BIT((val) & 0xf) * 32)
104 
105 /** SI BDR sub-blocks, n = 0..7 */
106 enum enetc_bdr_type {TX, RX};
107 #define ENETC_BDR_OFF(i)	((i) * 0x200)
108 #define ENETC_BDR(t, i, r)	(0x8000 + (t) * 0x100 + ENETC_BDR_OFF(i) + (r))
109 /* RX BDR reg offsets */
110 #define ENETC_RBMR	0
111 #define ENETC_RBMR_BDS	BIT(2)
112 #define ENETC_RBMR_VTE	BIT(5)
113 #define ENETC_RBMR_EN	BIT(31)
114 #define ENETC_RBSR	0x4
115 #define ENETC_RBBSR	0x8
116 #define ENETC_RBCIR	0xc
117 #define ENETC_RBBAR0	0x10
118 #define ENETC_RBBAR1	0x14
119 #define ENETC_RBPIR	0x18
120 #define ENETC_RBLENR	0x20
121 #define ENETC_RBIER	0xa0
122 #define ENETC_RBIER_RXTIE	BIT(0)
123 #define ENETC_RBIDR	0xa4
124 #define ENETC_RBICR0	0xa8
125 #define ENETC_RBICR0_ICEN		BIT(31)
126 #define ENETC_RBICR0_ICPT_MASK		0x1ff
127 #define ENETC_RBICR0_SET_ICPT(n)	((n) & ENETC_RBICR0_ICPT_MASK)
128 #define ENETC_RBICR1	0xac
129 
130 /* TX BDR reg offsets */
131 #define ENETC_TBMR	0
132 #define ENETC_TBSR_BUSY	BIT(0)
133 #define ENETC_TBMR_VIH	BIT(9)
134 #define ENETC_TBMR_PRIO_MASK		GENMASK(2, 0)
135 #define ENETC_TBMR_SET_PRIO(val)	((val) & ENETC_TBMR_PRIO_MASK)
136 #define ENETC_TBMR_EN	BIT(31)
137 #define ENETC_TBSR	0x4
138 #define ENETC_TBBAR0	0x10
139 #define ENETC_TBBAR1	0x14
140 #define ENETC_TBPIR	0x18
141 #define ENETC_TBCIR	0x1c
142 #define ENETC_TBCIR_IDX_MASK	0xffff
143 #define ENETC_TBLENR	0x20
144 #define ENETC_TBIER	0xa0
145 #define ENETC_TBIER_TXTIE	BIT(0)
146 #define ENETC_TBIDR	0xa4
147 #define ENETC_TBICR0	0xa8
148 #define ENETC_TBICR0_ICEN		BIT(31)
149 #define ENETC_TBICR0_ICPT_MASK		0xf
150 #define ENETC_TBICR0_SET_ICPT(n) ((ilog2(n) + 1) & ENETC_TBICR0_ICPT_MASK)
151 #define ENETC_TBICR1	0xac
152 
153 #define ENETC_RTBLENR_LEN(n)	((n) & ~0x7)
154 
155 /* Port regs, offset: 1_0000h */
156 #define ENETC_PORT_BASE		0x10000
157 #define ENETC_PMR		0x0000
158 #define ENETC_PMR_EN	GENMASK(18, 16)
159 #define ENETC_PMR_PSPEED_MASK GENMASK(11, 8)
160 #define ENETC_PMR_PSPEED_10M	0
161 #define ENETC_PMR_PSPEED_100M	BIT(8)
162 #define ENETC_PMR_PSPEED_1000M	BIT(9)
163 #define ENETC_PMR_PSPEED_2500M	BIT(10)
164 #define ENETC_PSR		0x0004 /* RO */
165 #define ENETC_PSIPMR		0x0018
166 #define ENETC_PSIPMR_SET_UP(n)	BIT(n) /* n = SI index */
167 #define ENETC_PSIPMR_SET_MP(n)	BIT((n) + 16)
168 #define ENETC_PSIPVMR		0x001c
169 #define ENETC_VLAN_PROMISC_MAP_ALL	0x7
170 #define ENETC_PSIPVMR_SET_VP(simap)	((simap) & 0x7)
171 #define ENETC_PSIPVMR_SET_VUTA(simap)	(((simap) & 0x7) << 16)
172 #define ENETC_PSIPMAR0(n)	(0x0100 + (n) * 0x8) /* n = SI index */
173 #define ENETC_PSIPMAR1(n)	(0x0104 + (n) * 0x8)
174 #define ENETC_PVCLCTR		0x0208
175 #define ENETC_VLAN_TYPE_C	BIT(0)
176 #define ENETC_VLAN_TYPE_S	BIT(1)
177 #define ENETC_PVCLCTR_OVTPIDL(bmp)	((bmp) & 0xff) /* VLAN_TYPE */
178 #define ENETC_PSIVLANR(n)	(0x0240 + (n) * 4) /* n = SI index */
179 #define ENETC_PSIVLAN_EN	BIT(31)
180 #define ENETC_PSIVLAN_SET_QOS(val)	((u32)(val) << 12)
181 #define ENETC_PTXMBAR		0x0608
182 #define ENETC_PCAPR0		0x0900
183 #define ENETC_PCAPR0_RXBDR(val)	((val) >> 24)
184 #define ENETC_PCAPR0_TXBDR(val)	(((val) >> 16) & 0xff)
185 #define ENETC_PCAPR1		0x0904
186 #define ENETC_PSICFGR0(n)	(0x0940 + (n) * 0xc)  /* n = SI index */
187 #define ENETC_PSICFGR0_SET_TXBDR(val)	((val) & 0xff)
188 #define ENETC_PSICFGR0_SET_RXBDR(val)	(((val) & 0xff) << 16)
189 #define ENETC_PSICFGR0_VTE	BIT(12)
190 #define ENETC_PSICFGR0_SIVIE	BIT(14)
191 #define ENETC_PSICFGR0_ASE	BIT(15)
192 #define ENETC_PSICFGR0_SIVC(bmp)	(((bmp) & 0xff) << 24) /* VLAN_TYPE */
193 
194 #define ENETC_PTCCBSR0(n)	(0x1110 + (n) * 8) /* n = 0 to 7*/
195 #define ENETC_CBSE		BIT(31)
196 #define ENETC_CBS_BW_MASK	GENMASK(6, 0)
197 #define ENETC_PTCCBSR1(n)	(0x1114 + (n) * 8) /* n = 0 to 7*/
198 #define ENETC_RSSHASH_KEY_SIZE	40
199 #define ENETC_PRSSCAPR		0x1404
200 #define ENETC_PRSSCAPR_GET_NUM_RSS(val)	(BIT((val) & 0xf) * 32)
201 #define ENETC_PRSSK(n)		(0x1410 + (n) * 4) /* n = [0..9] */
202 #define ENETC_PSIVLANFMR	0x1700
203 #define ENETC_PSIVLANFMR_VS	BIT(0)
204 #define ENETC_PRFSMR		0x1800
205 #define ENETC_PRFSMR_RFSE	BIT(31)
206 #define ENETC_PRFSCAPR		0x1804
207 #define ENETC_PRFSCAPR_GET_NUM_RFS(val)	((((val) & 0xf) + 1) * 16)
208 #define ENETC_PSIRFSCFGR(n)	(0x1814 + (n) * 4) /* n = SI index */
209 #define ENETC_PFPMR		0x1900
210 #define ENETC_PFPMR_PMACE	BIT(1)
211 #define ENETC_PFPMR_MWLM	BIT(0)
212 #define ENETC_EMDIO_BASE	0x1c00
213 #define ENETC_PSIUMHFR0(n, err)	(((err) ? 0x1d08 : 0x1d00) + (n) * 0x10)
214 #define ENETC_PSIUMHFR1(n)	(0x1d04 + (n) * 0x10)
215 #define ENETC_PSIMMHFR0(n, err)	(((err) ? 0x1d00 : 0x1d08) + (n) * 0x10)
216 #define ENETC_PSIMMHFR1(n)	(0x1d0c + (n) * 0x10)
217 #define ENETC_PSIVHFR0(n)	(0x1e00 + (n) * 8) /* n = SI index */
218 #define ENETC_PSIVHFR1(n)	(0x1e04 + (n) * 8) /* n = SI index */
219 #define ENETC_MMCSR		0x1f00
220 #define ENETC_MMCSR_ME		BIT(16)
221 #define ENETC_PTCMSDUR(n)	(0x2020 + (n) * 4) /* n = TC index [0..7] */
222 
223 #define ENETC_PM0_CMD_CFG	0x8008
224 #define ENETC_PM1_CMD_CFG	0x9008
225 #define ENETC_PM0_TX_EN		BIT(0)
226 #define ENETC_PM0_RX_EN		BIT(1)
227 #define ENETC_PM0_PROMISC	BIT(4)
228 #define ENETC_PM0_CMD_XGLP	BIT(10)
229 #define ENETC_PM0_CMD_TXP	BIT(11)
230 #define ENETC_PM0_CMD_PHY_TX_EN	BIT(15)
231 #define ENETC_PM0_CMD_SFD	BIT(21)
232 #define ENETC_PM0_MAXFRM	0x8014
233 #define ENETC_SET_TX_MTU(val)	((val) << 16)
234 #define ENETC_SET_MAXFRM(val)	((val) & 0xffff)
235 
236 #define ENETC_PM_IMDIO_BASE	0x8030
237 
238 #define ENETC_PM0_IF_MODE	0x8300
239 #define ENETC_PMO_IFM_RG	BIT(2)
240 #define ENETC_PM0_IFM_RLP	(BIT(5) | BIT(11))
241 #define ENETC_PM0_IFM_RGAUTO	(BIT(15) | ENETC_PMO_IFM_RG | BIT(1))
242 #define ENETC_PM0_IFM_XGMII	BIT(12)
243 #define ENETC_PSIDCAPR		0x1b08
244 #define ENETC_PSIDCAPR_MSK	GENMASK(15, 0)
245 #define ENETC_PSFCAPR		0x1b18
246 #define ENETC_PSFCAPR_MSK	GENMASK(15, 0)
247 #define ENETC_PSGCAPR		0x1b28
248 #define ENETC_PSGCAPR_GCL_MSK	GENMASK(18, 16)
249 #define ENETC_PSGCAPR_SGIT_MSK	GENMASK(15, 0)
250 #define ENETC_PFMCAPR		0x1b38
251 #define ENETC_PFMCAPR_MSK	GENMASK(15, 0)
252 
253 /* MAC counters */
254 #define ENETC_PM0_REOCT		0x8100
255 #define ENETC_PM0_RALN		0x8110
256 #define ENETC_PM0_RXPF		0x8118
257 #define ENETC_PM0_RFRM		0x8120
258 #define ENETC_PM0_RFCS		0x8128
259 #define ENETC_PM0_RVLAN		0x8130
260 #define ENETC_PM0_RERR		0x8138
261 #define ENETC_PM0_RUCA		0x8140
262 #define ENETC_PM0_RMCA		0x8148
263 #define ENETC_PM0_RBCA		0x8150
264 #define ENETC_PM0_RDRP		0x8158
265 #define ENETC_PM0_RPKT		0x8160
266 #define ENETC_PM0_RUND		0x8168
267 #define ENETC_PM0_R64		0x8170
268 #define ENETC_PM0_R127		0x8178
269 #define ENETC_PM0_R255		0x8180
270 #define ENETC_PM0_R511		0x8188
271 #define ENETC_PM0_R1023		0x8190
272 #define ENETC_PM0_R1522		0x8198
273 #define ENETC_PM0_R1523X	0x81A0
274 #define ENETC_PM0_ROVR		0x81A8
275 #define ENETC_PM0_RJBR		0x81B0
276 #define ENETC_PM0_RFRG		0x81B8
277 #define ENETC_PM0_RCNP		0x81C0
278 #define ENETC_PM0_RDRNTP	0x81C8
279 #define ENETC_PM0_TEOCT		0x8200
280 #define ENETC_PM0_TOCT		0x8208
281 #define ENETC_PM0_TCRSE		0x8210
282 #define ENETC_PM0_TXPF		0x8218
283 #define ENETC_PM0_TFRM		0x8220
284 #define ENETC_PM0_TFCS		0x8228
285 #define ENETC_PM0_TVLAN		0x8230
286 #define ENETC_PM0_TERR		0x8238
287 #define ENETC_PM0_TUCA		0x8240
288 #define ENETC_PM0_TMCA		0x8248
289 #define ENETC_PM0_TBCA		0x8250
290 #define ENETC_PM0_TPKT		0x8260
291 #define ENETC_PM0_TUND		0x8268
292 #define ENETC_PM0_T64		0x8270
293 #define ENETC_PM0_T127		0x8278
294 #define ENETC_PM0_T255		0x8280
295 #define ENETC_PM0_T511		0x8288
296 #define ENETC_PM0_T1023		0x8290
297 #define ENETC_PM0_T1522		0x8298
298 #define ENETC_PM0_T1523X	0x82A0
299 #define ENETC_PM0_TCNP		0x82C0
300 #define ENETC_PM0_TDFR		0x82D0
301 #define ENETC_PM0_TMCOL		0x82D8
302 #define ENETC_PM0_TSCOL		0x82E0
303 #define ENETC_PM0_TLCOL		0x82E8
304 #define ENETC_PM0_TECOL		0x82F0
305 
306 /* Port counters */
307 #define ENETC_PICDR(n)		(0x0700 + (n) * 8) /* n = [0..3] */
308 #define ENETC_PBFDSIR		0x0810
309 #define ENETC_PFDMSAPR		0x0814
310 #define ENETC_UFDMF		0x1680
311 #define ENETC_MFDMF		0x1684
312 #define ENETC_PUFDVFR		0x1780
313 #define ENETC_PMFDVFR		0x1784
314 #define ENETC_PBFDVFR		0x1788
315 
316 /** Global regs, offset: 2_0000h */
317 #define ENETC_GLOBAL_BASE	0x20000
318 #define ENETC_G_EIPBRR0		0x0bf8
319 #define ENETC_G_EIPBRR1		0x0bfc
320 #define ENETC_G_EPFBLPR(n)	(0xd00 + 4 * (n))
321 #define ENETC_G_EPFBLPR1_XGMII	0x80000000
322 
323 /* PCI device info */
324 struct enetc_hw {
325 	/* SI registers, used by all PCI functions */
326 	void __iomem *reg;
327 	/* Port registers, PF only */
328 	void __iomem *port;
329 	/* IP global registers, PF only */
330 	void __iomem *global;
331 };
332 
333 /* ENETC register accessors */
334 
335 /* MDIO issue workaround (on LS1028A) -
336  * Due to a hardware issue, an access to MDIO registers
337  * that is concurrent with other ENETC register accesses
338  * may lead to the MDIO access being dropped or corrupted.
339  * To protect the MDIO accesses a readers-writers locking
340  * scheme is used, where the MDIO register accesses are
341  * protected by write locks to insure exclusivity, while
342  * the remaining ENETC registers are accessed under read
343  * locks since they only compete with MDIO accesses.
344  */
345 extern rwlock_t enetc_mdio_lock;
346 
347 /* use this locking primitive only on the fast datapath to
348  * group together multiple non-MDIO register accesses to
349  * minimize the overhead of the lock
350  */
351 static inline void enetc_lock_mdio(void)
352 {
353 	read_lock(&enetc_mdio_lock);
354 }
355 
356 static inline void enetc_unlock_mdio(void)
357 {
358 	read_unlock(&enetc_mdio_lock);
359 }
360 
361 /* use these accessors only on the fast datapath under
362  * the enetc_lock_mdio() locking primitive to minimize
363  * the overhead of the lock
364  */
365 static inline u32 enetc_rd_reg_hot(void __iomem *reg)
366 {
367 	lockdep_assert_held(&enetc_mdio_lock);
368 
369 	return ioread32(reg);
370 }
371 
372 static inline void enetc_wr_reg_hot(void __iomem *reg, u32 val)
373 {
374 	lockdep_assert_held(&enetc_mdio_lock);
375 
376 	iowrite32(val, reg);
377 }
378 
379 /* internal helpers for the MDIO w/a */
380 static inline u32 _enetc_rd_reg_wa(void __iomem *reg)
381 {
382 	u32 val;
383 
384 	enetc_lock_mdio();
385 	val = ioread32(reg);
386 	enetc_unlock_mdio();
387 
388 	return val;
389 }
390 
391 static inline void _enetc_wr_reg_wa(void __iomem *reg, u32 val)
392 {
393 	enetc_lock_mdio();
394 	iowrite32(val, reg);
395 	enetc_unlock_mdio();
396 }
397 
398 static inline u32 _enetc_rd_mdio_reg_wa(void __iomem *reg)
399 {
400 	unsigned long flags;
401 	u32 val;
402 
403 	write_lock_irqsave(&enetc_mdio_lock, flags);
404 	val = ioread32(reg);
405 	write_unlock_irqrestore(&enetc_mdio_lock, flags);
406 
407 	return val;
408 }
409 
410 static inline void _enetc_wr_mdio_reg_wa(void __iomem *reg, u32 val)
411 {
412 	unsigned long flags;
413 
414 	write_lock_irqsave(&enetc_mdio_lock, flags);
415 	iowrite32(val, reg);
416 	write_unlock_irqrestore(&enetc_mdio_lock, flags);
417 }
418 
419 #ifdef ioread64
420 static inline u64 _enetc_rd_reg64(void __iomem *reg)
421 {
422 	return ioread64(reg);
423 }
424 #else
425 /* using this to read out stats on 32b systems */
426 static inline u64 _enetc_rd_reg64(void __iomem *reg)
427 {
428 	u32 low, high, tmp;
429 
430 	do {
431 		high = ioread32(reg + 4);
432 		low = ioread32(reg);
433 		tmp = ioread32(reg + 4);
434 	} while (high != tmp);
435 
436 	return le64_to_cpu((__le64)high << 32 | low);
437 }
438 #endif
439 
440 static inline u64 _enetc_rd_reg64_wa(void __iomem *reg)
441 {
442 	u64 val;
443 
444 	enetc_lock_mdio();
445 	val = _enetc_rd_reg64(reg);
446 	enetc_unlock_mdio();
447 
448 	return val;
449 }
450 
451 /* general register accessors */
452 #define enetc_rd_reg(reg)		_enetc_rd_reg_wa((reg))
453 #define enetc_wr_reg(reg, val)		_enetc_wr_reg_wa((reg), (val))
454 #define enetc_rd(hw, off)		enetc_rd_reg((hw)->reg + (off))
455 #define enetc_wr(hw, off, val)		enetc_wr_reg((hw)->reg + (off), val)
456 #define enetc_rd64(hw, off)		_enetc_rd_reg64_wa((hw)->reg + (off))
457 /* port register accessors - PF only */
458 #define enetc_port_rd(hw, off)		enetc_rd_reg((hw)->port + (off))
459 #define enetc_port_wr(hw, off, val)	enetc_wr_reg((hw)->port + (off), val)
460 #define enetc_port_rd_mdio(hw, off)	_enetc_rd_mdio_reg_wa((hw)->port + (off))
461 #define enetc_port_wr_mdio(hw, off, val)	_enetc_wr_mdio_reg_wa(\
462 							(hw)->port + (off), val)
463 /* global register accessors - PF only */
464 #define enetc_global_rd(hw, off)	enetc_rd_reg((hw)->global + (off))
465 #define enetc_global_wr(hw, off, val)	enetc_wr_reg((hw)->global + (off), val)
466 /* BDR register accessors, see ENETC_BDR() */
467 #define enetc_bdr_rd(hw, t, n, off) \
468 				enetc_rd(hw, ENETC_BDR(t, n, off))
469 #define enetc_bdr_wr(hw, t, n, off, val) \
470 				enetc_wr(hw, ENETC_BDR(t, n, off), val)
471 #define enetc_txbdr_rd(hw, n, off) enetc_bdr_rd(hw, TX, n, off)
472 #define enetc_rxbdr_rd(hw, n, off) enetc_bdr_rd(hw, RX, n, off)
473 #define enetc_txbdr_wr(hw, n, off, val) \
474 				enetc_bdr_wr(hw, TX, n, off, val)
475 #define enetc_rxbdr_wr(hw, n, off, val) \
476 				enetc_bdr_wr(hw, RX, n, off, val)
477 
478 /* Buffer Descriptors (BD) */
479 union enetc_tx_bd {
480 	struct {
481 		__le64 addr;
482 		__le16 buf_len;
483 		__le16 frm_len;
484 		union {
485 			struct {
486 				u8 reserved[3];
487 				u8 flags;
488 			}; /* default layout */
489 			__le32 txstart;
490 			__le32 lstatus;
491 		};
492 	};
493 	struct {
494 		__le32 tstamp;
495 		__le16 tpid;
496 		__le16 vid;
497 		u8 reserved[6];
498 		u8 e_flags;
499 		u8 flags;
500 	} ext; /* Tx BD extension */
501 	struct {
502 		__le32 tstamp;
503 		u8 reserved[10];
504 		u8 status;
505 		u8 flags;
506 	} wb; /* writeback descriptor */
507 };
508 
509 enum enetc_txbd_flags {
510 	ENETC_TXBD_FLAGS_RES0 = BIT(0), /* reserved */
511 	ENETC_TXBD_FLAGS_TSE = BIT(1),
512 	ENETC_TXBD_FLAGS_W = BIT(2),
513 	ENETC_TXBD_FLAGS_RES3 = BIT(3), /* reserved */
514 	ENETC_TXBD_FLAGS_TXSTART = BIT(4),
515 	ENETC_TXBD_FLAGS_EX = BIT(6),
516 	ENETC_TXBD_FLAGS_F = BIT(7)
517 };
518 #define ENETC_TXBD_TXSTART_MASK GENMASK(24, 0)
519 #define ENETC_TXBD_FLAGS_OFFSET 24
520 
521 static inline __le32 enetc_txbd_set_tx_start(u64 tx_start, u8 flags)
522 {
523 	u32 temp;
524 
525 	temp = (tx_start >> 5 & ENETC_TXBD_TXSTART_MASK) |
526 	       (flags << ENETC_TXBD_FLAGS_OFFSET);
527 
528 	return cpu_to_le32(temp);
529 }
530 
531 static inline void enetc_clear_tx_bd(union enetc_tx_bd *txbd)
532 {
533 	memset(txbd, 0, sizeof(*txbd));
534 }
535 
536 /* Extension flags */
537 #define ENETC_TXBD_E_FLAGS_VLAN_INS	BIT(0)
538 #define ENETC_TXBD_E_FLAGS_TWO_STEP_PTP	BIT(2)
539 
540 union enetc_rx_bd {
541 	struct {
542 		__le64 addr;
543 		u8 reserved[8];
544 	} w;
545 	struct {
546 		__le16 inet_csum;
547 		__le16 parse_summary;
548 		__le32 rss_hash;
549 		__le16 buf_len;
550 		__le16 vlan_opt;
551 		union {
552 			struct {
553 				__le16 flags;
554 				__le16 error;
555 			};
556 			__le32 lstatus;
557 		};
558 	} r;
559 	struct {
560 		__le32 tstamp;
561 		u8 reserved[12];
562 	} ext;
563 };
564 
565 #define ENETC_RXBD_LSTATUS_R	BIT(30)
566 #define ENETC_RXBD_LSTATUS_F	BIT(31)
567 #define ENETC_RXBD_ERR_MASK	0xff
568 #define ENETC_RXBD_LSTATUS(flags)	((flags) << 16)
569 #define ENETC_RXBD_FLAG_VLAN	BIT(9)
570 #define ENETC_RXBD_FLAG_TSTMP	BIT(10)
571 
572 #define ENETC_MAC_ADDR_FILT_CNT	8 /* # of supported entries per port */
573 #define EMETC_MAC_ADDR_FILT_RES	3 /* # of reserved entries at the beginning */
574 #define ENETC_MAX_NUM_VFS	2
575 
576 #define ENETC_CBD_FLAGS_SF	BIT(7) /* short format */
577 #define ENETC_CBD_STATUS_MASK	0xf
578 
579 struct enetc_cmd_rfse {
580 	u8 smac_h[6];
581 	u8 smac_m[6];
582 	u8 dmac_h[6];
583 	u8 dmac_m[6];
584 	__be32 sip_h[4];
585 	__be32 sip_m[4];
586 	__be32 dip_h[4];
587 	__be32 dip_m[4];
588 	u16 ethtype_h;
589 	u16 ethtype_m;
590 	u16 ethtype4_h;
591 	u16 ethtype4_m;
592 	u16 sport_h;
593 	u16 sport_m;
594 	u16 dport_h;
595 	u16 dport_m;
596 	u16 vlan_h;
597 	u16 vlan_m;
598 	u8 proto_h;
599 	u8 proto_m;
600 	u16 flags;
601 	u16 result;
602 	u16 mode;
603 };
604 
605 #define ENETC_RFSE_EN	BIT(15)
606 #define ENETC_RFSE_MODE_BD	2
607 
608 static inline void enetc_get_primary_mac_addr(struct enetc_hw *hw, u8 *addr)
609 {
610 	*(u32 *)addr = __raw_readl(hw->reg + ENETC_SIPMAR0);
611 	*(u16 *)(addr + 4) = __raw_readw(hw->reg + ENETC_SIPMAR1);
612 }
613 
614 #define ENETC_SI_INT_IDX	0
615 /* base index for Rx/Tx interrupts */
616 #define ENETC_BDR_INT_BASE_IDX	1
617 
618 /* Messaging */
619 
620 /* Command completion status */
621 enum enetc_msg_cmd_status {
622 	ENETC_MSG_CMD_STATUS_OK,
623 	ENETC_MSG_CMD_STATUS_FAIL
624 };
625 
626 /* VSI-PSI command message types */
627 enum enetc_msg_cmd_type {
628 	ENETC_MSG_CMD_MNG_MAC = 1, /* manage MAC address */
629 	ENETC_MSG_CMD_MNG_RX_MAC_FILTER,/* manage RX MAC table */
630 	ENETC_MSG_CMD_MNG_RX_VLAN_FILTER /* manage RX VLAN table */
631 };
632 
633 /* VSI-PSI command action types */
634 enum enetc_msg_cmd_action_type {
635 	ENETC_MSG_CMD_MNG_ADD = 1,
636 	ENETC_MSG_CMD_MNG_REMOVE
637 };
638 
639 /* PSI-VSI command header format */
640 struct enetc_msg_cmd_header {
641 	u16 type;	/* command class type */
642 	u16 id;		/* denotes the specific required action */
643 };
644 
645 /* Common H/W utility functions */
646 
647 static inline void enetc_bdr_enable_rxvlan(struct enetc_hw *hw, int idx,
648 					   bool en)
649 {
650 	u32 val = enetc_rxbdr_rd(hw, idx, ENETC_RBMR);
651 
652 	val = (val & ~ENETC_RBMR_VTE) | (en ? ENETC_RBMR_VTE : 0);
653 	enetc_rxbdr_wr(hw, idx, ENETC_RBMR, val);
654 }
655 
656 static inline void enetc_bdr_enable_txvlan(struct enetc_hw *hw, int idx,
657 					   bool en)
658 {
659 	u32 val = enetc_txbdr_rd(hw, idx, ENETC_TBMR);
660 
661 	val = (val & ~ENETC_TBMR_VIH) | (en ? ENETC_TBMR_VIH : 0);
662 	enetc_txbdr_wr(hw, idx, ENETC_TBMR, val);
663 }
664 
665 static inline void enetc_set_bdr_prio(struct enetc_hw *hw, int bdr_idx,
666 				      int prio)
667 {
668 	u32 val = enetc_txbdr_rd(hw, bdr_idx, ENETC_TBMR);
669 
670 	val &= ~ENETC_TBMR_PRIO_MASK;
671 	val |= ENETC_TBMR_SET_PRIO(prio);
672 	enetc_txbdr_wr(hw, bdr_idx, ENETC_TBMR, val);
673 }
674 
675 enum bdcr_cmd_class {
676 	BDCR_CMD_UNSPEC = 0,
677 	BDCR_CMD_MAC_FILTER,
678 	BDCR_CMD_VLAN_FILTER,
679 	BDCR_CMD_RSS,
680 	BDCR_CMD_RFS,
681 	BDCR_CMD_PORT_GCL,
682 	BDCR_CMD_RECV_CLASSIFIER,
683 	BDCR_CMD_STREAM_IDENTIFY,
684 	BDCR_CMD_STREAM_FILTER,
685 	BDCR_CMD_STREAM_GCL,
686 	BDCR_CMD_FLOW_METER,
687 	__BDCR_CMD_MAX_LEN,
688 	BDCR_CMD_MAX_LEN = __BDCR_CMD_MAX_LEN - 1,
689 };
690 
691 /* class 5, command 0 */
692 struct tgs_gcl_conf {
693 	u8	atc;	/* init gate value */
694 	u8	res[7];
695 	struct {
696 		u8	res1[4];
697 		__le16	acl_len;
698 		u8	res2[2];
699 	};
700 };
701 
702 /* gate control list entry */
703 struct gce {
704 	__le32	period;
705 	u8	gate;
706 	u8	res[3];
707 };
708 
709 /* tgs_gcl_conf address point to this data space */
710 struct tgs_gcl_data {
711 	__le32		btl;
712 	__le32		bth;
713 	__le32		ct;
714 	__le32		cte;
715 	struct gce	entry[];
716 };
717 
718 /* class 7, command 0, Stream Identity Entry Configuration */
719 struct streamid_conf {
720 	__le32	stream_handle;	/* init gate value */
721 	__le32	iports;
722 		u8	id_type;
723 		u8	oui[3];
724 		u8	res[3];
725 		u8	en;
726 };
727 
728 #define ENETC_CBDR_SID_VID_MASK 0xfff
729 #define ENETC_CBDR_SID_VIDM BIT(12)
730 #define ENETC_CBDR_SID_TG_MASK 0xc000
731 /* streamid_conf address point to this data space */
732 struct streamid_data {
733 	union {
734 		u8 dmac[6];
735 		u8 smac[6];
736 	};
737 	u16     vid_vidm_tg;
738 };
739 
740 #define ENETC_CBDR_SFI_PRI_MASK 0x7
741 #define ENETC_CBDR_SFI_PRIM		BIT(3)
742 #define ENETC_CBDR_SFI_BLOV		BIT(4)
743 #define ENETC_CBDR_SFI_BLEN		BIT(5)
744 #define ENETC_CBDR_SFI_MSDUEN	BIT(6)
745 #define ENETC_CBDR_SFI_FMITEN	BIT(7)
746 #define ENETC_CBDR_SFI_ENABLE	BIT(7)
747 /* class 8, command 0, Stream Filter Instance, Short Format */
748 struct sfi_conf {
749 	__le32	stream_handle;
750 		u8	multi;
751 		u8	res[2];
752 		u8	sthm;
753 	/* Max Service Data Unit or Flow Meter Instance Table index.
754 	 * Depending on the value of FLT this represents either Max
755 	 * Service Data Unit (max frame size) allowed by the filter
756 	 * entry or is an index into the Flow Meter Instance table
757 	 * index identifying the policer which will be used to police
758 	 * it.
759 	 */
760 	__le16	fm_inst_table_index;
761 	__le16	msdu;
762 	__le16	sg_inst_table_index;
763 		u8	res1[2];
764 	__le32	input_ports;
765 		u8	res2[3];
766 		u8	en;
767 };
768 
769 /* class 8, command 2 stream Filter Instance status query short format
770  * command no need structure define
771  * Stream Filter Instance Query Statistics Response data
772  */
773 struct sfi_counter_data {
774 	u32 matchl;
775 	u32 matchh;
776 	u32 msdu_dropl;
777 	u32 msdu_droph;
778 	u32 stream_gate_dropl;
779 	u32 stream_gate_droph;
780 	u32 flow_meter_dropl;
781 	u32 flow_meter_droph;
782 };
783 
784 #define ENETC_CBDR_SGI_OIPV_MASK 0x7
785 #define ENETC_CBDR_SGI_OIPV_EN	BIT(3)
786 #define ENETC_CBDR_SGI_CGTST	BIT(6)
787 #define ENETC_CBDR_SGI_OGTST	BIT(7)
788 #define ENETC_CBDR_SGI_CFG_CHG  BIT(1)
789 #define ENETC_CBDR_SGI_CFG_PND  BIT(2)
790 #define ENETC_CBDR_SGI_OEX		BIT(4)
791 #define ENETC_CBDR_SGI_OEXEN	BIT(5)
792 #define ENETC_CBDR_SGI_IRX		BIT(6)
793 #define ENETC_CBDR_SGI_IRXEN	BIT(7)
794 #define ENETC_CBDR_SGI_ACLLEN_MASK 0x3
795 #define ENETC_CBDR_SGI_OCLLEN_MASK 0xc
796 #define	ENETC_CBDR_SGI_EN		BIT(7)
797 /* class 9, command 0, Stream Gate Instance Table, Short Format
798  * class 9, command 2, Stream Gate Instance Table entry query write back
799  * Short Format
800  */
801 struct sgi_table {
802 	u8	res[8];
803 	u8	oipv;
804 	u8	res0[2];
805 	u8	ocgtst;
806 	u8	res1[7];
807 	u8	gset;
808 	u8	oacl_len;
809 	u8	res2[2];
810 	u8	en;
811 };
812 
813 #define ENETC_CBDR_SGI_AIPV_MASK 0x7
814 #define ENETC_CBDR_SGI_AIPV_EN	BIT(3)
815 #define ENETC_CBDR_SGI_AGTST	BIT(7)
816 
817 /* class 9, command 1, Stream Gate Control List, Long Format */
818 struct sgcl_conf {
819 	u8	aipv;
820 	u8	res[2];
821 	u8	agtst;
822 	u8	res1[4];
823 	union {
824 		struct {
825 			u8 res2[4];
826 			u8 acl_len;
827 			u8 res3[3];
828 		};
829 		u8 cct[8]; /* Config change time */
830 	};
831 };
832 
833 #define ENETC_CBDR_SGL_IOMEN	BIT(0)
834 #define ENETC_CBDR_SGL_IPVEN	BIT(3)
835 #define ENETC_CBDR_SGL_GTST		BIT(4)
836 #define ENETC_CBDR_SGL_IPV_MASK 0xe
837 /* Stream Gate Control List Entry */
838 struct sgce {
839 	u32	interval;
840 	u8	msdu[3];
841 	u8	multi;
842 };
843 
844 /* stream control list class 9 , cmd 1 data buffer */
845 struct sgcl_data {
846 	u32		btl;
847 	u32		bth;
848 	u32		ct;
849 	u32		cte;
850 	struct sgce	sgcl[0];
851 };
852 
853 #define ENETC_CBDR_FMI_MR	BIT(0)
854 #define ENETC_CBDR_FMI_MREN	BIT(1)
855 #define ENETC_CBDR_FMI_DOY	BIT(2)
856 #define	ENETC_CBDR_FMI_CM	BIT(3)
857 #define ENETC_CBDR_FMI_CF	BIT(4)
858 #define ENETC_CBDR_FMI_NDOR	BIT(5)
859 #define ENETC_CBDR_FMI_OALEN	BIT(6)
860 #define ENETC_CBDR_FMI_IRFPP_MASK GENMASK(4, 0)
861 
862 /* class 10: command 0/1, Flow Meter Instance Set, short Format */
863 struct fmi_conf {
864 	__le32	cir;
865 	__le32	cbs;
866 	__le32	eir;
867 	__le32	ebs;
868 		u8	conf;
869 		u8	res1;
870 		u8	ir_fpp;
871 		u8	res2[4];
872 		u8	en;
873 };
874 
875 struct enetc_cbd {
876 	union{
877 		struct sfi_conf sfi_conf;
878 		struct sgi_table sgi_table;
879 		struct fmi_conf fmi_conf;
880 		struct {
881 			__le32	addr[2];
882 			union {
883 				__le32	opt[4];
884 				struct tgs_gcl_conf	gcl_conf;
885 				struct streamid_conf	sid_set;
886 				struct sgcl_conf	sgcl_conf;
887 			};
888 		};	/* Long format */
889 		__le32 data[6];
890 	};
891 	__le16 index;
892 	__le16 length;
893 	u8 cmd;
894 	u8 cls;
895 	u8 _res;
896 	u8 status_flags;
897 };
898 
899 #define ENETC_CLK  400000000ULL
900 static inline u32 enetc_cycles_to_usecs(u32 cycles)
901 {
902 	return (u32)div_u64(cycles * 1000000ULL, ENETC_CLK);
903 }
904 
905 static inline u32 enetc_usecs_to_cycles(u32 usecs)
906 {
907 	return (u32)div_u64(usecs * ENETC_CLK, 1000000ULL);
908 }
909 
910 /* port time gating control register */
911 #define ENETC_QBV_PTGCR_OFFSET		0x11a00
912 #define ENETC_QBV_TGE			BIT(31)
913 #define ENETC_QBV_TGPE			BIT(30)
914 
915 /* Port time gating capability register */
916 #define ENETC_QBV_PTGCAPR_OFFSET	0x11a08
917 #define ENETC_QBV_MAX_GCL_LEN_MASK	GENMASK(15, 0)
918 
919 /* Port time specific departure */
920 #define ENETC_PTCTSDR(n)	(0x1210 + 4 * (n))
921 #define ENETC_TSDE		BIT(31)
922 
923 /* PSFP setting */
924 #define ENETC_PPSFPMR 0x11b00
925 #define ENETC_PPSFPMR_PSFPEN BIT(0)
926 #define ENETC_PPSFPMR_VS BIT(1)
927 #define ENETC_PPSFPMR_PVC BIT(2)
928 #define ENETC_PPSFPMR_PVZC BIT(3)
929