pci.h 12 KB

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  1. #ifndef DRIVERS_PCI_H
  2. #define DRIVERS_PCI_H
  3. #define PCI_FIND_CAP_TTL 48
  4. #define PCI_VSEC_ID_INTEL_TBT 0x1234 /* Thunderbolt */
  5. extern const unsigned char pcie_link_speed[];
  6. bool pcie_cap_has_lnkctl(const struct pci_dev *dev);
  7. /* Functions internal to the PCI core code */
  8. int pci_create_sysfs_dev_files(struct pci_dev *pdev);
  9. void pci_remove_sysfs_dev_files(struct pci_dev *pdev);
  10. #if !defined(CONFIG_DMI) && !defined(CONFIG_ACPI)
  11. static inline void pci_create_firmware_label_files(struct pci_dev *pdev)
  12. { return; }
  13. static inline void pci_remove_firmware_label_files(struct pci_dev *pdev)
  14. { return; }
  15. #else
  16. void pci_create_firmware_label_files(struct pci_dev *pdev);
  17. void pci_remove_firmware_label_files(struct pci_dev *pdev);
  18. #endif
  19. void pci_cleanup_rom(struct pci_dev *dev);
  20. enum pci_mmap_api {
  21. PCI_MMAP_SYSFS, /* mmap on /sys/bus/pci/devices/<BDF>/resource<N> */
  22. PCI_MMAP_PROCFS /* mmap on /proc/bus/pci/<BDF> */
  23. };
  24. int pci_mmap_fits(struct pci_dev *pdev, int resno, struct vm_area_struct *vmai,
  25. enum pci_mmap_api mmap_api);
  26. int pci_probe_reset_function(struct pci_dev *dev);
  27. /**
  28. * struct pci_platform_pm_ops - Firmware PM callbacks
  29. *
  30. * @is_manageable: returns 'true' if given device is power manageable by the
  31. * platform firmware
  32. *
  33. * @set_state: invokes the platform firmware to set the device's power state
  34. *
  35. * @get_state: queries the platform firmware for a device's current power state
  36. *
  37. * @choose_state: returns PCI power state of given device preferred by the
  38. * platform; to be used during system-wide transitions from a
  39. * sleeping state to the working state and vice versa
  40. *
  41. * @sleep_wake: enables/disables the system wake up capability of given device
  42. *
  43. * @run_wake: enables/disables the platform to generate run-time wake-up events
  44. * for given device (the device's wake-up capability has to be
  45. * enabled by @sleep_wake for this feature to work)
  46. *
  47. * @need_resume: returns 'true' if the given device (which is currently
  48. * suspended) needs to be resumed to be configured for system
  49. * wakeup.
  50. *
  51. * If given platform is generally capable of power managing PCI devices, all of
  52. * these callbacks are mandatory.
  53. */
  54. struct pci_platform_pm_ops {
  55. bool (*is_manageable)(struct pci_dev *dev);
  56. int (*set_state)(struct pci_dev *dev, pci_power_t state);
  57. pci_power_t (*get_state)(struct pci_dev *dev);
  58. pci_power_t (*choose_state)(struct pci_dev *dev);
  59. int (*sleep_wake)(struct pci_dev *dev, bool enable);
  60. int (*run_wake)(struct pci_dev *dev, bool enable);
  61. bool (*need_resume)(struct pci_dev *dev);
  62. };
  63. int pci_set_platform_pm(const struct pci_platform_pm_ops *ops);
  64. void pci_update_current_state(struct pci_dev *dev, pci_power_t state);
  65. void pci_power_up(struct pci_dev *dev);
  66. void pci_disable_enabled_device(struct pci_dev *dev);
  67. int pci_finish_runtime_suspend(struct pci_dev *dev);
  68. int __pci_pme_wakeup(struct pci_dev *dev, void *ign);
  69. bool pci_dev_keep_suspended(struct pci_dev *dev);
  70. void pci_dev_complete_resume(struct pci_dev *pci_dev);
  71. void pci_config_pm_runtime_get(struct pci_dev *dev);
  72. void pci_config_pm_runtime_put(struct pci_dev *dev);
  73. void pci_pm_init(struct pci_dev *dev);
  74. void pci_ea_init(struct pci_dev *dev);
  75. void pci_allocate_cap_save_buffers(struct pci_dev *dev);
  76. void pci_free_cap_save_buffers(struct pci_dev *dev);
  77. bool pci_bridge_d3_possible(struct pci_dev *dev);
  78. void pci_bridge_d3_update(struct pci_dev *dev);
  79. static inline void pci_wakeup_event(struct pci_dev *dev)
  80. {
  81. /* Wait 100 ms before the system can be put into a sleep state. */
  82. pm_wakeup_event(&dev->dev, 100);
  83. }
  84. static inline bool pci_has_subordinate(struct pci_dev *pci_dev)
  85. {
  86. return !!(pci_dev->subordinate);
  87. }
  88. static inline bool pci_power_manageable(struct pci_dev *pci_dev)
  89. {
  90. /*
  91. * Currently we allow normal PCI devices and PCI bridges transition
  92. * into D3 if their bridge_d3 is set.
  93. */
  94. return !pci_has_subordinate(pci_dev) || pci_dev->bridge_d3;
  95. }
  96. struct pci_vpd_ops {
  97. ssize_t (*read)(struct pci_dev *dev, loff_t pos, size_t count, void *buf);
  98. ssize_t (*write)(struct pci_dev *dev, loff_t pos, size_t count, const void *buf);
  99. int (*set_size)(struct pci_dev *dev, size_t len);
  100. };
  101. struct pci_vpd {
  102. const struct pci_vpd_ops *ops;
  103. struct bin_attribute *attr; /* descriptor for sysfs VPD entry */
  104. struct mutex lock;
  105. unsigned int len;
  106. u16 flag;
  107. u8 cap;
  108. u8 busy:1;
  109. u8 valid:1;
  110. };
  111. int pci_vpd_init(struct pci_dev *dev);
  112. void pci_vpd_release(struct pci_dev *dev);
  113. /* PCI /proc functions */
  114. #ifdef CONFIG_PROC_FS
  115. int pci_proc_attach_device(struct pci_dev *dev);
  116. int pci_proc_detach_device(struct pci_dev *dev);
  117. int pci_proc_detach_bus(struct pci_bus *bus);
  118. #else
  119. static inline int pci_proc_attach_device(struct pci_dev *dev) { return 0; }
  120. static inline int pci_proc_detach_device(struct pci_dev *dev) { return 0; }
  121. static inline int pci_proc_detach_bus(struct pci_bus *bus) { return 0; }
  122. #endif
  123. /* Functions for PCI Hotplug drivers to use */
  124. int pci_hp_add_bridge(struct pci_dev *dev);
  125. #ifdef HAVE_PCI_LEGACY
  126. void pci_create_legacy_files(struct pci_bus *bus);
  127. void pci_remove_legacy_files(struct pci_bus *bus);
  128. #else
  129. static inline void pci_create_legacy_files(struct pci_bus *bus) { return; }
  130. static inline void pci_remove_legacy_files(struct pci_bus *bus) { return; }
  131. #endif
  132. /* Lock for read/write access to pci device and bus lists */
  133. extern struct rw_semaphore pci_bus_sem;
  134. extern raw_spinlock_t pci_lock;
  135. extern unsigned int pci_pm_d3_delay;
  136. #ifdef CONFIG_PCI_MSI
  137. void pci_no_msi(void);
  138. #else
  139. static inline void pci_no_msi(void) { }
  140. #endif
  141. static inline void pci_msi_set_enable(struct pci_dev *dev, int enable)
  142. {
  143. u16 control;
  144. pci_read_config_word(dev, dev->msi_cap + PCI_MSI_FLAGS, &control);
  145. control &= ~PCI_MSI_FLAGS_ENABLE;
  146. if (enable)
  147. control |= PCI_MSI_FLAGS_ENABLE;
  148. pci_write_config_word(dev, dev->msi_cap + PCI_MSI_FLAGS, control);
  149. }
  150. static inline void pci_msix_clear_and_set_ctrl(struct pci_dev *dev, u16 clear, u16 set)
  151. {
  152. u16 ctrl;
  153. pci_read_config_word(dev, dev->msix_cap + PCI_MSIX_FLAGS, &ctrl);
  154. ctrl &= ~clear;
  155. ctrl |= set;
  156. pci_write_config_word(dev, dev->msix_cap + PCI_MSIX_FLAGS, ctrl);
  157. }
  158. void pci_realloc_get_opt(char *);
  159. static inline int pci_no_d1d2(struct pci_dev *dev)
  160. {
  161. unsigned int parent_dstates = 0;
  162. if (dev->bus->self)
  163. parent_dstates = dev->bus->self->no_d1d2;
  164. return (dev->no_d1d2 || parent_dstates);
  165. }
  166. extern const struct attribute_group *pci_dev_groups[];
  167. extern const struct attribute_group *pcibus_groups[];
  168. extern struct device_type pci_dev_type;
  169. extern const struct attribute_group *pci_bus_groups[];
  170. /**
  171. * pci_match_one_device - Tell if a PCI device structure has a matching
  172. * PCI device id structure
  173. * @id: single PCI device id structure to match
  174. * @dev: the PCI device structure to match against
  175. *
  176. * Returns the matching pci_device_id structure or %NULL if there is no match.
  177. */
  178. static inline const struct pci_device_id *
  179. pci_match_one_device(const struct pci_device_id *id, const struct pci_dev *dev)
  180. {
  181. if ((id->vendor == PCI_ANY_ID || id->vendor == dev->vendor) &&
  182. (id->device == PCI_ANY_ID || id->device == dev->device) &&
  183. (id->subvendor == PCI_ANY_ID || id->subvendor == dev->subsystem_vendor) &&
  184. (id->subdevice == PCI_ANY_ID || id->subdevice == dev->subsystem_device) &&
  185. !((id->class ^ dev->class) & id->class_mask))
  186. return id;
  187. return NULL;
  188. }
  189. /* PCI slot sysfs helper code */
  190. #define to_pci_slot(s) container_of(s, struct pci_slot, kobj)
  191. extern struct kset *pci_slots_kset;
  192. struct pci_slot_attribute {
  193. struct attribute attr;
  194. ssize_t (*show)(struct pci_slot *, char *);
  195. ssize_t (*store)(struct pci_slot *, const char *, size_t);
  196. };
  197. #define to_pci_slot_attr(s) container_of(s, struct pci_slot_attribute, attr)
  198. enum pci_bar_type {
  199. pci_bar_unknown, /* Standard PCI BAR probe */
  200. pci_bar_io, /* An io port BAR */
  201. pci_bar_mem32, /* A 32-bit memory BAR */
  202. pci_bar_mem64, /* A 64-bit memory BAR */
  203. };
  204. bool pci_bus_read_dev_vendor_id(struct pci_bus *bus, int devfn, u32 *pl,
  205. int crs_timeout);
  206. int pci_setup_device(struct pci_dev *dev);
  207. int __pci_read_base(struct pci_dev *dev, enum pci_bar_type type,
  208. struct resource *res, unsigned int reg);
  209. void pci_configure_ari(struct pci_dev *dev);
  210. void __pci_bus_size_bridges(struct pci_bus *bus,
  211. struct list_head *realloc_head);
  212. void __pci_bus_assign_resources(const struct pci_bus *bus,
  213. struct list_head *realloc_head,
  214. struct list_head *fail_head);
  215. bool pci_bus_clip_resource(struct pci_dev *dev, int idx);
  216. void pci_reassigndev_resource_alignment(struct pci_dev *dev);
  217. void pci_disable_bridge_window(struct pci_dev *dev);
  218. /* Single Root I/O Virtualization */
  219. struct pci_sriov {
  220. int pos; /* capability position */
  221. int nres; /* number of resources */
  222. u32 cap; /* SR-IOV Capabilities */
  223. u16 ctrl; /* SR-IOV Control */
  224. u16 total_VFs; /* total VFs associated with the PF */
  225. u16 initial_VFs; /* initial VFs associated with the PF */
  226. u16 num_VFs; /* number of VFs available */
  227. u16 offset; /* first VF Routing ID offset */
  228. u16 stride; /* following VF stride */
  229. u32 pgsz; /* page size for BAR alignment */
  230. u8 link; /* Function Dependency Link */
  231. u8 max_VF_buses; /* max buses consumed by VFs */
  232. u16 driver_max_VFs; /* max num VFs driver supports */
  233. struct pci_dev *dev; /* lowest numbered PF */
  234. struct pci_dev *self; /* this PF */
  235. struct mutex lock; /* lock for setting sriov_numvfs in sysfs */
  236. resource_size_t barsz[PCI_SRIOV_NUM_BARS]; /* VF BAR size */
  237. bool drivers_autoprobe; /* auto probing of VFs by driver */
  238. };
  239. /* pci_dev priv_flags */
  240. #define PCI_DEV_DISCONNECTED 0
  241. static inline int pci_dev_set_disconnected(struct pci_dev *dev, void *unused)
  242. {
  243. set_bit(PCI_DEV_DISCONNECTED, &dev->priv_flags);
  244. return 0;
  245. }
  246. static inline bool pci_dev_is_disconnected(const struct pci_dev *dev)
  247. {
  248. return test_bit(PCI_DEV_DISCONNECTED, &dev->priv_flags);
  249. }
  250. #ifdef CONFIG_PCI_ATS
  251. void pci_restore_ats_state(struct pci_dev *dev);
  252. #else
  253. static inline void pci_restore_ats_state(struct pci_dev *dev)
  254. {
  255. }
  256. #endif /* CONFIG_PCI_ATS */
  257. #ifdef CONFIG_PCI_IOV
  258. int pci_iov_init(struct pci_dev *dev);
  259. void pci_iov_release(struct pci_dev *dev);
  260. void pci_iov_update_resource(struct pci_dev *dev, int resno);
  261. resource_size_t pci_sriov_resource_alignment(struct pci_dev *dev, int resno);
  262. void pci_restore_iov_state(struct pci_dev *dev);
  263. int pci_iov_bus_range(struct pci_bus *bus);
  264. #else
  265. static inline int pci_iov_init(struct pci_dev *dev)
  266. {
  267. return -ENODEV;
  268. }
  269. static inline void pci_iov_release(struct pci_dev *dev)
  270. {
  271. }
  272. static inline void pci_restore_iov_state(struct pci_dev *dev)
  273. {
  274. }
  275. static inline int pci_iov_bus_range(struct pci_bus *bus)
  276. {
  277. return 0;
  278. }
  279. #endif /* CONFIG_PCI_IOV */
  280. unsigned long pci_cardbus_resource_alignment(struct resource *);
  281. static inline resource_size_t pci_resource_alignment(struct pci_dev *dev,
  282. struct resource *res)
  283. {
  284. #ifdef CONFIG_PCI_IOV
  285. int resno = res - dev->resource;
  286. if (resno >= PCI_IOV_RESOURCES && resno <= PCI_IOV_RESOURCE_END)
  287. return pci_sriov_resource_alignment(dev, resno);
  288. #endif
  289. if (dev->class >> 8 == PCI_CLASS_BRIDGE_CARDBUS)
  290. return pci_cardbus_resource_alignment(res);
  291. return resource_alignment(res);
  292. }
  293. void pci_enable_acs(struct pci_dev *dev);
  294. #ifdef CONFIG_PCIE_PTM
  295. void pci_ptm_init(struct pci_dev *dev);
  296. #else
  297. static inline void pci_ptm_init(struct pci_dev *dev) { }
  298. #endif
  299. struct pci_dev_reset_methods {
  300. u16 vendor;
  301. u16 device;
  302. int (*reset)(struct pci_dev *dev, int probe);
  303. };
  304. #ifdef CONFIG_PCI_QUIRKS
  305. int pci_dev_specific_reset(struct pci_dev *dev, int probe);
  306. #else
  307. static inline int pci_dev_specific_reset(struct pci_dev *dev, int probe)
  308. {
  309. return -ENOTTY;
  310. }
  311. #endif
  312. #if defined(CONFIG_PCI_QUIRKS) && defined(CONFIG_ARM64)
  313. int acpi_get_rc_resources(struct device *dev, const char *hid, u16 segment,
  314. struct resource *res);
  315. #endif
  316. #endif /* DRIVERS_PCI_H */