1 /* SPDX-License-Identifier: GPL-2.0 */
3 * PCI Endpoint *Function* (EPF) header file
5 * Copyright (C) 2017 Texas Instruments
6 * Author: Kishon Vijay Abraham I <kishon@ti.com>
9 #ifndef __LINUX_PCI_EPF_H
10 #define __LINUX_PCI_EPF_H
12 #include <linux/configfs.h>
13 #include <linux/device.h>
14 #include <linux/mod_devicetable.h>
15 #include <linux/pci.h>
18 enum pci_epc_interface_type;
31 * struct pci_epf_header - represents standard configuration header
32 * @vendorid: identifies device manufacturer
33 * @deviceid: identifies a particular device
34 * @revid: specifies a device-specific revision identifier
35 * @progif_code: identifies a specific register-level programming interface
36 * @subclass_code: identifies more specifically the function of the device
37 * @baseclass_code: broadly classifies the type of function the device performs
38 * @cache_line_size: specifies the system cacheline size in units of DWORDs
39 * @subsys_vendor_id: vendor of the add-in card or subsystem
40 * @subsys_id: id specific to vendor
41 * @interrupt_pin: interrupt pin the device (or device function) uses
43 struct pci_epf_header {
53 enum pci_interrupt_pin interrupt_pin;
57 * struct pci_epf_ops - set of function pointers for performing EPF operations
58 * @bind: ops to perform when a EPC device has been bound to EPF device
59 * @unbind: ops to perform when a binding has been lost between a EPC device
61 * @add_cfs: ops to initialize function specific configfs attributes
64 int (*bind)(struct pci_epf *epf);
65 void (*unbind)(struct pci_epf *epf);
66 struct config_group *(*add_cfs)(struct pci_epf *epf,
67 struct config_group *group);
71 * struct pci_epf_event_ops - Callbacks for capturing the EPC events
72 * @core_init: Callback for the EPC initialization complete event
73 * @link_up: Callback for the EPC link up event
75 struct pci_epc_event_ops {
76 int (*core_init)(struct pci_epf *epf);
77 int (*link_up)(struct pci_epf *epf);
81 * struct pci_epf_driver - represents the PCI EPF driver
82 * @probe: ops to perform when a new EPF device has been bound to the EPF driver
83 * @remove: ops to perform when the binding between the EPF device and EPF
85 * @driver: PCI EPF driver
86 * @ops: set of function pointers for performing EPF operations
87 * @owner: the owner of the module that registers the PCI EPF driver
88 * @epf_group: list of configfs group corresponding to the PCI EPF driver
89 * @id_table: identifies EPF devices for probing
91 struct pci_epf_driver {
92 int (*probe)(struct pci_epf *epf);
93 void (*remove)(struct pci_epf *epf);
95 struct device_driver driver;
96 struct pci_epf_ops *ops;
98 struct list_head epf_group;
99 const struct pci_epf_device_id *id_table;
102 #define to_pci_epf_driver(drv) (container_of((drv), struct pci_epf_driver, \
106 * struct pci_epf_bar - represents the BAR of EPF device
107 * @phys_addr: physical address that should be mapped to the BAR
108 * @addr: virtual address corresponding to the @phys_addr
109 * @size: the size of the address space present in BAR
111 * @flags: flags that are set for the BAR
114 dma_addr_t phys_addr;
117 enum pci_barno barno;
122 * struct pci_epf - represents the PCI EPF device
123 * @dev: the PCI EPF device
124 * @name: the name of the PCI EPF device
125 * @header: represents standard configuration header
126 * @bar: represents the BAR of EPF device
127 * @msi_interrupts: number of MSI interrupts required by this function
128 * @msix_interrupts: number of MSI-X interrupts required by this function
129 * @func_no: unique (physical) function number within this endpoint device
130 * @vfunc_no: unique virtual function number within a physical function
131 * @epc: the EPC device to which this EPF device is bound
132 * @epf_pf: the physical EPF device to which this virtual EPF device is bound
133 * @driver: the EPF driver to which this EPF device is bound
134 * @list: to add pci_epf as a list of PCI endpoint functions to pci_epc
135 * @lock: mutex to protect pci_epf_ops
136 * @sec_epc: the secondary EPC device to which this EPF device is bound
137 * @sec_epc_list: to add pci_epf as list of PCI endpoint functions to secondary
139 * @sec_epc_bar: represents the BAR of EPF device associated with secondary EPC
140 * @sec_epc_func_no: unique (physical) function number within the secondary EPC
141 * @group: configfs group associated with the EPF device
142 * @is_bound: indicates if bind notification to function driver has been invoked
143 * @is_vf: true - virtual function, false - physical function
144 * @vfunction_num_map: bitmap to manage virtual function number
145 * @pci_vepf: list of virtual endpoint functions associated with this function
146 * @event_ops: Callbacks for capturing the EPC events
151 struct pci_epf_header *header;
152 struct pci_epf_bar bar[6];
159 struct pci_epf *epf_pf;
160 struct pci_epf_driver *driver;
161 struct list_head list;
162 /* mutex to protect against concurrent access of pci_epf_ops */
165 /* Below members are to attach secondary EPC to an endpoint function */
166 struct pci_epc *sec_epc;
167 struct list_head sec_epc_list;
168 struct pci_epf_bar sec_epc_bar[6];
170 struct config_group *group;
171 unsigned int is_bound;
173 unsigned long vfunction_num_map;
174 struct list_head pci_vepf;
175 const struct pci_epc_event_ops *event_ops;
179 * struct pci_epf_msix_tbl - represents the MSIX table entry structure
180 * @msg_addr: Writes to this address will trigger MSIX interrupt in host
181 * @msg_data: Data that should be written to @msg_addr to trigger MSIX interrupt
182 * @vector_ctrl: Identifies if the function is prohibited from sending a message
183 * using this MSIX table entry
185 struct pci_epf_msix_tbl {
191 #define to_pci_epf(epf_dev) container_of((epf_dev), struct pci_epf, dev)
193 #define pci_epf_register_driver(driver) \
194 __pci_epf_register_driver((driver), THIS_MODULE)
196 static inline void epf_set_drvdata(struct pci_epf *epf, void *data)
198 dev_set_drvdata(&epf->dev, data);
201 static inline void *epf_get_drvdata(struct pci_epf *epf)
203 return dev_get_drvdata(&epf->dev);
206 struct pci_epf *pci_epf_create(const char *name);
207 void pci_epf_destroy(struct pci_epf *epf);
208 int __pci_epf_register_driver(struct pci_epf_driver *driver,
209 struct module *owner);
210 void pci_epf_unregister_driver(struct pci_epf_driver *driver);
211 void *pci_epf_alloc_space(struct pci_epf *epf, size_t size, enum pci_barno bar,
212 size_t align, enum pci_epc_interface_type type);
213 void pci_epf_free_space(struct pci_epf *epf, void *addr, enum pci_barno bar,
214 enum pci_epc_interface_type type);
215 int pci_epf_bind(struct pci_epf *epf);
216 void pci_epf_unbind(struct pci_epf *epf);
217 struct config_group *pci_epf_type_add_cfs(struct pci_epf *epf,
218 struct config_group *group);
219 int pci_epf_add_vepf(struct pci_epf *epf_pf, struct pci_epf *epf_vf);
220 void pci_epf_remove_vepf(struct pci_epf *epf_pf, struct pci_epf *epf_vf);
221 #endif /* __LINUX_PCI_EPF_H */