xref: /linux/drivers/crypto/intel/qat/qat_common/adf_accel_devices.h (revision fab183d632628381b466a41479489541ac0e29a0)
1 /* SPDX-License-Identifier: (BSD-3-Clause OR GPL-2.0-only) */
2 /* Copyright(c) 2014 - 2020 Intel Corporation */
3 #ifndef ADF_ACCEL_DEVICES_H_
4 #define ADF_ACCEL_DEVICES_H_
5 #include <linux/interrupt.h>
6 #include <linux/module.h>
7 #include <linux/list.h>
8 #include <linux/io.h>
9 #include <linux/pci.h>
10 #include <linux/ratelimit.h>
11 #include <linux/types.h>
12 #include <linux/qat/qat_mig_dev.h>
13 #include <linux/wordpart.h>
14 #include "adf_anti_rb.h"
15 #include "adf_cfg_common.h"
16 #include "adf_dc.h"
17 #include "adf_kpt.h"
18 #include "adf_rl.h"
19 #include "adf_telemetry.h"
20 #include "adf_pfvf_msg.h"
21 #include "icp_qat_hw.h"
22 
23 #define ADF_DH895XCC_DEVICE_NAME "dh895xcc"
24 #define ADF_DH895XCCVF_DEVICE_NAME "dh895xccvf"
25 #define ADF_C62X_DEVICE_NAME "c6xx"
26 #define ADF_C62XVF_DEVICE_NAME "c6xxvf"
27 #define ADF_C3XXX_DEVICE_NAME "c3xxx"
28 #define ADF_C3XXXVF_DEVICE_NAME "c3xxxvf"
29 #define ADF_4XXX_DEVICE_NAME "4xxx"
30 #define ADF_420XX_DEVICE_NAME "420xx"
31 #define ADF_6XXX_DEVICE_NAME "6xxx"
32 #define PCI_DEVICE_ID_INTEL_QAT_4XXXIOV 0x4941
33 #define PCI_DEVICE_ID_INTEL_QAT_401XXIOV 0x4943
34 #define PCI_DEVICE_ID_INTEL_QAT_402XXIOV 0x4945
35 #define PCI_DEVICE_ID_INTEL_QAT_420XXIOV 0x4947
36 #define PCI_DEVICE_ID_INTEL_QAT_6XXX_IOV 0x4949
37 
38 #define ADF_DEVICE_FUSECTL_OFFSET 0x40
39 #define ADF_DEVICE_LEGFUSE_OFFSET 0x4C
40 #define ADF_DEVICE_FUSECTL_MASK 0x80000000
41 #define ADF_PCI_MAX_BARS 3
42 #define ADF_DEVICE_NAME_LENGTH 32
43 #define ADF_ETR_MAX_RINGS_PER_BANK 16
44 #define ADF_MAX_MSIX_VECTOR_NAME 48
45 #define ADF_DEVICE_NAME_PREFIX "qat_"
46 
47 enum adf_accel_capabilities {
48 	ADF_ACCEL_CAPABILITIES_NULL = 0,
49 	ADF_ACCEL_CAPABILITIES_CRYPTO_SYMMETRIC = 1,
50 	ADF_ACCEL_CAPABILITIES_CRYPTO_ASYMMETRIC = 2,
51 	ADF_ACCEL_CAPABILITIES_CIPHER = 4,
52 	ADF_ACCEL_CAPABILITIES_AUTHENTICATION = 8,
53 	ADF_ACCEL_CAPABILITIES_COMPRESSION = 32,
54 	ADF_ACCEL_CAPABILITIES_LZS_COMPRESSION = 64,
55 	ADF_ACCEL_CAPABILITIES_RANDOM_NUMBER = 128
56 };
57 
58 enum adf_accel_capabilities_ext {
59 	ADF_ACCEL_CAPABILITIES_EXT_ZSTD_LZ4S = BIT(0),
60 	ADF_ACCEL_CAPABILITIES_EXT_ZSTD = BIT(1),
61 };
62 
63 enum adf_fuses {
64 	ADF_FUSECTL0,
65 	ADF_FUSECTL1,
66 	ADF_FUSECTL2,
67 	ADF_FUSECTL3,
68 	ADF_FUSECTL4,
69 	ADF_FUSECTL5,
70 	ADF_MAX_FUSES
71 };
72 
73 struct adf_bar {
74 	resource_size_t base_addr;
75 	void __iomem *virt_addr;
76 	resource_size_t size;
77 };
78 
79 struct adf_irq {
80 	bool enabled;
81 	char name[ADF_MAX_MSIX_VECTOR_NAME];
82 };
83 
84 struct adf_accel_msix {
85 	struct adf_irq *irqs;
86 	u32 num_entries;
87 };
88 
89 struct adf_accel_pci {
90 	struct pci_dev *pci_dev;
91 	struct adf_accel_msix msix_entries;
92 	struct adf_bar pci_bars[ADF_PCI_MAX_BARS];
93 	u8 revid;
94 	u8 sku;
95 };
96 
97 enum dev_state {
98 	DEV_DOWN = 0,
99 	DEV_UP
100 };
101 
102 enum dev_sku_info {
103 	DEV_SKU_1 = 0,
104 	DEV_SKU_2,
105 	DEV_SKU_3,
106 	DEV_SKU_4,
107 	DEV_SKU_VF,
108 	DEV_SKU_UNKNOWN,
109 };
110 
111 enum ras_errors {
112 	ADF_RAS_CORR,
113 	ADF_RAS_UNCORR,
114 	ADF_RAS_FATAL,
115 	ADF_RAS_ERRORS,
116 };
117 
118 struct adf_error_counters {
119 	atomic_t counter[ADF_RAS_ERRORS];
120 	bool sysfs_added;
121 	bool enabled;
122 };
123 
get_sku_info(enum dev_sku_info info)124 static inline const char *get_sku_info(enum dev_sku_info info)
125 {
126 	switch (info) {
127 	case DEV_SKU_1:
128 		return "SKU1";
129 	case DEV_SKU_2:
130 		return "SKU2";
131 	case DEV_SKU_3:
132 		return "SKU3";
133 	case DEV_SKU_4:
134 		return "SKU4";
135 	case DEV_SKU_VF:
136 		return "SKUVF";
137 	case DEV_SKU_UNKNOWN:
138 	default:
139 		break;
140 	}
141 	return "Unknown SKU";
142 }
143 
144 struct adf_hw_device_class {
145 	const char *name;
146 	const enum adf_device_type type;
147 	u32 instances;
148 };
149 
150 struct arb_info {
151 	u32 arb_cfg;
152 	u32 arb_offset;
153 	u32 wt2sam_offset;
154 };
155 
156 struct admin_info {
157 	u32 admin_msg_ur;
158 	u32 admin_msg_lr;
159 	u32 mailbox_offset;
160 };
161 
162 struct adf_bank_state;
163 
164 struct adf_hw_csr_ops {
165 	u64 (*build_csr_ring_base_addr)(dma_addr_t addr, u32 size);
166 	u32 (*read_csr_ring_head)(void __iomem *csr_base_addr, u32 bank,
167 				  u32 ring);
168 	void (*write_csr_ring_head)(void __iomem *csr_base_addr, u32 bank,
169 				    u32 ring, u32 value);
170 	u32 (*read_csr_ring_tail)(void __iomem *csr_base_addr, u32 bank,
171 				  u32 ring);
172 	void (*write_csr_ring_tail)(void __iomem *csr_base_addr, u32 bank,
173 				    u32 ring, u32 value);
174 	u32 (*read_csr_stat)(void __iomem *csr_base_addr, u32 bank);
175 	u32 (*read_csr_uo_stat)(void __iomem *csr_base_addr, u32 bank);
176 	u32 (*read_csr_e_stat)(void __iomem *csr_base_addr, u32 bank);
177 	u32 (*read_csr_ne_stat)(void __iomem *csr_base_addr, u32 bank);
178 	u32 (*read_csr_nf_stat)(void __iomem *csr_base_addr, u32 bank);
179 	u32 (*read_csr_f_stat)(void __iomem *csr_base_addr, u32 bank);
180 	u32 (*read_csr_c_stat)(void __iomem *csr_base_addr, u32 bank);
181 	u32 (*read_csr_exp_stat)(void __iomem *csr_base_addr, u32 bank);
182 	u32 (*read_csr_exp_int_en)(void __iomem *csr_base_addr, u32 bank);
183 	void (*write_csr_exp_int_en)(void __iomem *csr_base_addr, u32 bank,
184 				     u32 value);
185 	u32 (*read_csr_ring_config)(void __iomem *csr_base_addr, u32 bank,
186 				    u32 ring);
187 	void (*write_csr_ring_config)(void __iomem *csr_base_addr, u32 bank,
188 				      u32 ring, u32 value);
189 	dma_addr_t (*read_csr_ring_base)(void __iomem *csr_base_addr, u32 bank,
190 					 u32 ring);
191 	void (*write_csr_ring_base)(void __iomem *csr_base_addr, u32 bank,
192 				    u32 ring, dma_addr_t addr);
193 	u32 (*read_csr_int_en)(void __iomem *csr_base_addr, u32 bank);
194 	void (*write_csr_int_en)(void __iomem *csr_base_addr, u32 bank,
195 				 u32 value);
196 	u32 (*read_csr_int_flag)(void __iomem *csr_base_addr, u32 bank);
197 	void (*write_csr_int_flag)(void __iomem *csr_base_addr, u32 bank,
198 				   u32 value);
199 	u32 (*read_csr_int_srcsel)(void __iomem *csr_base_addr, u32 bank);
200 	void (*write_csr_int_srcsel)(void __iomem *csr_base_addr, u32 bank);
201 	void (*write_csr_int_srcsel_w_val)(void __iomem *csr_base_addr,
202 					   u32 bank, u32 value);
203 	u32 (*read_csr_int_col_en)(void __iomem *csr_base_addr, u32 bank);
204 	void (*write_csr_int_col_en)(void __iomem *csr_base_addr, u32 bank,
205 				     u32 value);
206 	u32 (*read_csr_int_col_ctl)(void __iomem *csr_base_addr, u32 bank);
207 	void (*write_csr_int_col_ctl)(void __iomem *csr_base_addr, u32 bank,
208 				      u32 value);
209 	u32 (*read_csr_int_flag_and_col)(void __iomem *csr_base_addr,
210 					 u32 bank);
211 	void (*write_csr_int_flag_and_col)(void __iomem *csr_base_addr,
212 					   u32 bank, u32 value);
213 	u32 (*read_csr_ring_srv_arb_en)(void __iomem *csr_base_addr, u32 bank);
214 	void (*write_csr_ring_srv_arb_en)(void __iomem *csr_base_addr, u32 bank,
215 					  u32 value);
216 	u32 (*get_int_col_ctl_enable_mask)(void);
217 };
218 
219 struct adf_cfg_device_data;
220 struct adf_accel_dev;
221 struct adf_etr_data;
222 struct adf_etr_ring_data;
223 
224 struct adf_ras_ops {
225 	void (*enable_ras_errors)(struct adf_accel_dev *accel_dev);
226 	void (*disable_ras_errors)(struct adf_accel_dev *accel_dev);
227 	bool (*handle_interrupt)(struct adf_accel_dev *accel_dev,
228 				 bool *reset_required);
229 };
230 
231 struct adf_pfvf_ops {
232 	int (*enable_comms)(struct adf_accel_dev *accel_dev);
233 	u32 (*get_pf2vf_offset)(u32 i);
234 	u32 (*get_vf2pf_offset)(u32 i);
235 	void (*enable_vf2pf_interrupts)(void __iomem *pmisc_addr, u32 vf_mask);
236 	void (*disable_all_vf2pf_interrupts)(void __iomem *pmisc_addr);
237 	u32 (*disable_pending_vf2pf_interrupts)(void __iomem *pmisc_addr);
238 	int (*send_msg)(struct adf_accel_dev *accel_dev, struct pfvf_message msg,
239 			u32 pfvf_offset, struct mutex *csr_lock);
240 	struct pfvf_message (*recv_msg)(struct adf_accel_dev *accel_dev,
241 					u32 pfvf_offset, u8 compat_ver);
242 };
243 
244 struct adf_dc_ops {
245 	int (*build_comp_block)(void *ctx, enum adf_dc_algo algo);
246 	int (*build_decomp_block)(void *ctx, enum adf_dc_algo algo);
247 };
248 
249 struct qat_migdev_ops {
250 	int (*init)(struct qat_mig_dev *mdev);
251 	void (*cleanup)(struct qat_mig_dev *mdev);
252 	void (*reset)(struct qat_mig_dev *mdev);
253 	int (*open)(struct qat_mig_dev *mdev);
254 	void (*close)(struct qat_mig_dev *mdev);
255 	int (*suspend)(struct qat_mig_dev *mdev);
256 	int (*resume)(struct qat_mig_dev *mdev);
257 	int (*save_state)(struct qat_mig_dev *mdev);
258 	int (*save_setup)(struct qat_mig_dev *mdev);
259 	int (*load_state)(struct qat_mig_dev *mdev);
260 	int (*load_setup)(struct qat_mig_dev *mdev, int size);
261 };
262 
263 struct adf_dev_err_mask {
264 	u32 cppagentcmdpar_mask;
265 	u32 parerr_ath_cph_mask;
266 	u32 parerr_cpr_xlt_mask;
267 	u32 parerr_dcpr_ucs_mask;
268 	u32 parerr_pke_mask;
269 	u32 parerr_wat_wcp_mask;
270 	u32 ssmfeatren_mask;
271 };
272 
273 struct adf_hw_device_data {
274 	struct adf_hw_device_class *dev_class;
275 	u32 (*get_accel_mask)(struct adf_hw_device_data *self);
276 	u32 (*get_ae_mask)(struct adf_hw_device_data *self);
277 	u32 (*get_accel_cap)(struct adf_accel_dev *accel_dev);
278 	u32 (*get_sram_bar_id)(struct adf_hw_device_data *self);
279 	u32 (*get_misc_bar_id)(struct adf_hw_device_data *self);
280 	u32 (*get_etr_bar_id)(struct adf_hw_device_data *self);
281 	u32 (*get_num_aes)(struct adf_hw_device_data *self);
282 	u32 (*get_num_accels)(struct adf_hw_device_data *self);
283 	void (*get_arb_info)(struct arb_info *arb_csrs_info);
284 	void (*get_admin_info)(struct admin_info *admin_csrs_info);
285 	enum dev_sku_info (*get_sku)(struct adf_hw_device_data *self);
286 	u16 (*get_ring_to_svc_map)(struct adf_accel_dev *accel_dev);
287 	int (*alloc_irq)(struct adf_accel_dev *accel_dev);
288 	void (*free_irq)(struct adf_accel_dev *accel_dev);
289 	void (*enable_error_correction)(struct adf_accel_dev *accel_dev);
290 	int (*init_admin_comms)(struct adf_accel_dev *accel_dev);
291 	void (*exit_admin_comms)(struct adf_accel_dev *accel_dev);
292 	int (*send_admin_init)(struct adf_accel_dev *accel_dev);
293 	int (*start_timer)(struct adf_accel_dev *accel_dev);
294 	void (*stop_timer)(struct adf_accel_dev *accel_dev);
295 	void (*check_hb_ctrs)(struct adf_accel_dev *accel_dev);
296 	uint32_t (*get_hb_clock)(struct adf_hw_device_data *self);
297 	int (*measure_clock)(struct adf_accel_dev *accel_dev);
298 	int (*init_arb)(struct adf_accel_dev *accel_dev);
299 	void (*exit_arb)(struct adf_accel_dev *accel_dev);
300 	const u32 *(*get_arb_mapping)(struct adf_accel_dev *accel_dev);
301 	int (*init_device)(struct adf_accel_dev *accel_dev);
302 	int (*enable_pm)(struct adf_accel_dev *accel_dev);
303 	bool (*handle_pm_interrupt)(struct adf_accel_dev *accel_dev);
304 	void (*disable_iov)(struct adf_accel_dev *accel_dev);
305 	void (*configure_iov_threads)(struct adf_accel_dev *accel_dev,
306 				      bool enable);
307 	void (*enable_ints)(struct adf_accel_dev *accel_dev);
308 	void (*set_ssm_wdtimer)(struct adf_accel_dev *accel_dev);
309 	int (*ring_pair_reset)(struct adf_accel_dev *accel_dev, u32 bank_nr);
310 	int (*bank_state_save)(struct adf_accel_dev *accel_dev, u32 bank_number,
311 			       struct adf_bank_state *state);
312 	int (*bank_state_restore)(struct adf_accel_dev *accel_dev,
313 				  u32 bank_number, struct adf_bank_state *state);
314 	void (*reset_device)(struct adf_accel_dev *accel_dev);
315 	void (*set_msix_rttable)(struct adf_accel_dev *accel_dev);
316 	const char *(*uof_get_name)(struct adf_accel_dev *accel_dev, u32 obj_num);
317 	u32 (*uof_get_num_objs)(struct adf_accel_dev *accel_dev);
318 	int (*uof_get_obj_type)(struct adf_accel_dev *accel_dev, u32 obj_num);
319 	u32 (*uof_get_ae_mask)(struct adf_accel_dev *accel_dev, u32 obj_num);
320 	int (*get_rp_group)(struct adf_accel_dev *accel_dev, u32 ae_mask);
321 	u32 (*get_ena_thd_mask)(struct adf_accel_dev *accel_dev, u32 obj_num);
322 	int (*dev_config)(struct adf_accel_dev *accel_dev);
323 	bool (*services_supported)(unsigned long mask);
324 	u32 (*get_svc_slice_cnt)(struct adf_accel_dev *accel_dev,
325 				 enum adf_base_services svc);
326 	struct adf_pfvf_ops pfvf_ops;
327 	struct adf_hw_csr_ops csr_ops;
328 	struct adf_dc_ops dc_ops;
329 	struct adf_ras_ops ras_ops;
330 	struct adf_dev_err_mask dev_err_mask;
331 	struct adf_rl_hw_data rl_data;
332 	struct adf_tl_hw_data tl_data;
333 	struct adf_anti_rb_hw_data anti_rb_data;
334 	struct adf_kpt_hw_data kpt_data;
335 	struct qat_migdev_ops vfmig_ops;
336 	const char *fw_name;
337 	const char *fw_mmp_name;
338 	u32 fuses[ADF_MAX_FUSES];
339 	u32 straps;
340 	u32 accel_capabilities_mask;
341 	u32 accel_capabilities_ext_mask;
342 	u32 extended_dc_capabilities;
343 	u16 fw_capabilities;
344 	u32 clock_frequency;
345 	u32 instance_id;
346 	u16 accel_mask;
347 	u32 ae_mask;
348 	u32 admin_ae_mask;
349 	u16 tx_rings_mask;
350 	u16 ring_to_svc_map;
351 	u32 thd_to_arb_map[ICP_QAT_HW_AE_DELIMITER];
352 	u8 tx_rx_gap;
353 	u8 num_banks;
354 	u16 num_banks_per_vf;
355 	u8 num_rings_per_bank;
356 	u8 num_accel;
357 	u8 num_logical_accel;
358 	u8 num_engines;
359 	u32 num_hb_ctrs;
360 	u8 num_rps;
361 };
362 
363 /* CSR write macro */
364 #define ADF_CSR_WR(csr_base, csr_offset, val) \
365 	__raw_writel(val, csr_base + csr_offset)
366 /*
367  * CSR write macro to handle cases where the high and low
368  * offsets are sparsely located.
369  */
370 #define ADF_CSR_WR64_LO_HI(csr_base, csr_low_offset, csr_high_offset, val)	\
371 do {										\
372 	ADF_CSR_WR(csr_base, csr_low_offset, lower_32_bits(val));		\
373 	ADF_CSR_WR(csr_base, csr_high_offset, upper_32_bits(val));		\
374 } while (0)
375 
376 /* CSR read macro */
377 #define ADF_CSR_RD(csr_base, csr_offset) __raw_readl(csr_base + csr_offset)
378 
379 #define ADF_CFG_NUM_SERVICES	4
380 #define ADF_SRV_TYPE_BIT_LEN	3
381 #define ADF_SRV_TYPE_MASK	0x7
382 #define ADF_AE_ADMIN_THREAD	7
383 #define ADF_NUM_THREADS_PER_AE	8
384 #define ADF_NUM_PKE_STRAND	2
385 #define ADF_AE_STRAND0_THREAD	8
386 #define ADF_AE_STRAND1_THREAD	9
387 
388 #define GET_DEV(accel_dev) ((accel_dev)->accel_pci_dev.pci_dev->dev)
389 #define GET_BARS(accel_dev) ((accel_dev)->accel_pci_dev.pci_bars)
390 #define GET_HW_DATA(accel_dev) (accel_dev->hw_device)
391 #define GET_MAX_BANKS(accel_dev) (GET_HW_DATA(accel_dev)->num_banks)
392 #define GET_NUM_RINGS_PER_BANK(accel_dev) \
393 	GET_HW_DATA(accel_dev)->num_rings_per_bank
394 #define GET_SRV_TYPE(accel_dev, idx) \
395 	(((GET_HW_DATA(accel_dev)->ring_to_svc_map) >> (ADF_SRV_TYPE_BIT_LEN * (idx))) \
396 	& ADF_SRV_TYPE_MASK)
397 #define GET_ERR_MASK(accel_dev) (&GET_HW_DATA(accel_dev)->dev_err_mask)
398 #define GET_MAX_ACCELENGINES(accel_dev) (GET_HW_DATA(accel_dev)->num_engines)
399 #define GET_CSR_OPS(accel_dev) (&(accel_dev)->hw_device->csr_ops)
400 #define GET_PFVF_OPS(accel_dev) (&(accel_dev)->hw_device->pfvf_ops)
401 #define GET_DC_OPS(accel_dev) (&(accel_dev)->hw_device->dc_ops)
402 #define GET_VFMIG_OPS(accel_dev) (&(accel_dev)->hw_device->vfmig_ops)
403 #define GET_TL_DATA(accel_dev) GET_HW_DATA(accel_dev)->tl_data
404 #define accel_to_pci_dev(accel_ptr) accel_ptr->accel_pci_dev.pci_dev
405 
406 struct adf_admin_comms;
407 struct icp_qat_fw_loader_handle;
408 struct adf_fw_loader_data {
409 	struct icp_qat_fw_loader_handle *fw_loader;
410 	const struct firmware *uof_fw;
411 	const struct firmware *mmp_fw;
412 };
413 
414 struct adf_accel_vf_info {
415 	struct adf_accel_dev *accel_dev;
416 	struct mutex pf2vf_lock; /* protect CSR access for PF2VF messages */
417 	struct mutex pfvf_mig_lock; /* protects PFVF state for migration */
418 	struct ratelimit_state vf2pf_ratelimit;
419 	u32 vf_nr;
420 	bool init;
421 	bool restarting;
422 	u8 vf_compat_ver;
423 	/*
424 	 * Private area used for device migration.
425 	 * Memory allocation and free is managed by migration driver.
426 	 */
427 	void *mig_priv;
428 };
429 
430 struct adf_dc_data {
431 	u8 *ovf_buff;
432 	size_t ovf_buff_sz;
433 	dma_addr_t ovf_buff_p;
434 };
435 
436 struct adf_pm {
437 	struct dentry *debugfs_pm_status;
438 	bool present;
439 	int idle_irq_counters;
440 	int throttle_irq_counters;
441 	int fw_irq_counters;
442 	int host_ack_counter;
443 	int host_nack_counter;
444 	ssize_t (*print_pm_status)(struct adf_accel_dev *accel_dev,
445 				   char __user *buf, size_t count, loff_t *pos);
446 };
447 
448 struct adf_sysfs {
449 	int ring_num;
450 	struct rw_semaphore lock; /* protects access to the fields in this struct */
451 };
452 
453 struct adf_accel_dev {
454 	struct adf_etr_data *transport;
455 	struct adf_hw_device_data *hw_device;
456 	struct adf_cfg_device_data *cfg;
457 	struct adf_fw_loader_data *fw_loader;
458 	struct adf_admin_comms *admin;
459 	struct adf_telemetry *telemetry;
460 	struct adf_dc_data *dc_data;
461 	struct adf_pm power_management;
462 	struct list_head crypto_list;
463 	struct list_head compression_list;
464 	unsigned long status;
465 	atomic_t ref_count;
466 	struct dentry *debugfs_dir;
467 	struct dentry *fw_cntr_dbgfile;
468 	struct dentry *cnv_dbgfile;
469 	struct list_head list;
470 	struct module *owner;
471 	struct adf_accel_pci accel_pci_dev;
472 	struct adf_timer *timer;
473 	struct adf_heartbeat *heartbeat;
474 	struct adf_rl *rate_limiting;
475 	struct adf_sysfs sysfs;
476 	union {
477 		struct {
478 			/* protects VF2PF interrupts access */
479 			spinlock_t vf2pf_ints_lock;
480 			/* prevents VF2PF handling from racing with VF state teardown */
481 			bool vf2pf_disabled;
482 			/* vf_info is non-zero when SR-IOV is init'ed */
483 			struct adf_accel_vf_info *vf_info;
484 		} pf;
485 		struct {
486 			bool irq_enabled;
487 			char irq_name[ADF_MAX_MSIX_VECTOR_NAME];
488 			struct tasklet_struct pf2vf_bh_tasklet;
489 			struct mutex vf2pf_lock; /* protect CSR access */
490 			struct completion msg_received;
491 			struct pfvf_message response; /* temp field holding pf2vf response */
492 			u8 pf_compat_ver;
493 		} vf;
494 	};
495 	struct adf_error_counters ras_errors;
496 	struct mutex state_lock; /* protect state of the device */
497 	bool is_vf;
498 	bool autoreset_on_error;
499 	u32 accel_id;
500 };
501 #endif
502