hosts.h 6.5 KB

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  1. #ifndef _IEEE1394_HOSTS_H
  2. #define _IEEE1394_HOSTS_H
  3. #include <linux/device.h>
  4. #include <linux/wait.h>
  5. #include <linux/list.h>
  6. #include <linux/timer.h>
  7. #include <linux/skbuff.h>
  8. #include <asm/semaphore.h>
  9. #include "ieee1394_types.h"
  10. #include "csr.h"
  11. struct hpsb_packet;
  12. struct hpsb_iso;
  13. struct hpsb_host {
  14. struct list_head host_list;
  15. void *hostdata;
  16. atomic_t generation;
  17. struct sk_buff_head pending_packet_queue;
  18. struct timer_list timeout;
  19. unsigned long timeout_interval;
  20. unsigned char iso_listen_count[64];
  21. int node_count; /* number of identified nodes on this bus */
  22. int selfid_count; /* total number of SelfIDs received */
  23. int nodes_active; /* number of nodes with active link layer */
  24. u8 speed[ALL_NODES]; /* speed between each node and local node */
  25. nodeid_t node_id; /* node ID of this host */
  26. nodeid_t irm_id; /* ID of this bus' isochronous resource manager */
  27. nodeid_t busmgr_id; /* ID of this bus' bus manager */
  28. /* this nodes state */
  29. unsigned in_bus_reset:1;
  30. unsigned is_shutdown:1;
  31. unsigned resume_packet_sent:1;
  32. /* this nodes' duties on the bus */
  33. unsigned is_root:1;
  34. unsigned is_cycmst:1;
  35. unsigned is_irm:1;
  36. unsigned is_busmgr:1;
  37. int reset_retries;
  38. quadlet_t *topology_map;
  39. u8 *speed_map;
  40. struct csr_control csr;
  41. /* Per node tlabel pool allocation */
  42. struct hpsb_tlabel_pool tpool[ALL_NODES];
  43. struct hpsb_host_driver *driver;
  44. struct pci_dev *pdev;
  45. int id;
  46. struct device device;
  47. struct class_device class_dev;
  48. int update_config_rom;
  49. struct work_struct delayed_reset;
  50. unsigned int config_roms;
  51. struct list_head addr_space;
  52. u64 low_addr_space; /* upper bound of physical DMA area */
  53. u64 middle_addr_space; /* upper bound of posted write area */
  54. };
  55. enum devctl_cmd {
  56. /* Host is requested to reset its bus and cancel all outstanding async
  57. * requests. If arg == 1, it shall also attempt to become root on the
  58. * bus. Return void. */
  59. RESET_BUS,
  60. /* Arg is void, return value is the hardware cycle counter value. */
  61. GET_CYCLE_COUNTER,
  62. /* Set the hardware cycle counter to the value in arg, return void.
  63. * FIXME - setting is probably not required. */
  64. SET_CYCLE_COUNTER,
  65. /* Configure hardware for new bus ID in arg, return void. */
  66. SET_BUS_ID,
  67. /* If arg true, start sending cycle start packets, stop if arg == 0.
  68. * Return void. */
  69. ACT_CYCLE_MASTER,
  70. /* Cancel all outstanding async requests without resetting the bus.
  71. * Return void. */
  72. CANCEL_REQUESTS,
  73. /* Start or stop receiving isochronous channel in arg. Return void.
  74. * This acts as an optimization hint, hosts are not required not to
  75. * listen on unrequested channels. */
  76. ISO_LISTEN_CHANNEL,
  77. ISO_UNLISTEN_CHANNEL
  78. };
  79. enum isoctl_cmd {
  80. /* rawiso API - see iso.h for the meanings of these commands
  81. (they correspond exactly to the hpsb_iso_* API functions)
  82. * INIT = allocate resources
  83. * START = begin transmission/reception
  84. * STOP = halt transmission/reception
  85. * QUEUE/RELEASE = produce/consume packets
  86. * SHUTDOWN = deallocate resources
  87. */
  88. XMIT_INIT,
  89. XMIT_START,
  90. XMIT_STOP,
  91. XMIT_QUEUE,
  92. XMIT_SHUTDOWN,
  93. RECV_INIT,
  94. RECV_LISTEN_CHANNEL, /* multi-channel only */
  95. RECV_UNLISTEN_CHANNEL, /* multi-channel only */
  96. RECV_SET_CHANNEL_MASK, /* multi-channel only; arg is a *u64 */
  97. RECV_START,
  98. RECV_STOP,
  99. RECV_RELEASE,
  100. RECV_SHUTDOWN,
  101. RECV_FLUSH
  102. };
  103. enum reset_types {
  104. /* 166 microsecond reset -- only type of reset available on
  105. non-1394a capable controllers */
  106. LONG_RESET,
  107. /* Short (arbitrated) reset -- only available on 1394a capable
  108. controllers */
  109. SHORT_RESET,
  110. /* Variants that set force_root before issueing the bus reset */
  111. LONG_RESET_FORCE_ROOT, SHORT_RESET_FORCE_ROOT,
  112. /* Variants that clear force_root before issueing the bus reset */
  113. LONG_RESET_NO_FORCE_ROOT, SHORT_RESET_NO_FORCE_ROOT
  114. };
  115. struct hpsb_host_driver {
  116. struct module *owner;
  117. const char *name;
  118. /* The hardware driver may optionally support a function that is used
  119. * to set the hardware ConfigROM if the hardware supports handling
  120. * reads to the ConfigROM on its own. */
  121. void (*set_hw_config_rom) (struct hpsb_host *host, quadlet_t *config_rom);
  122. /* This function shall implement packet transmission based on
  123. * packet->type. It shall CRC both parts of the packet (unless
  124. * packet->type == raw) and do byte-swapping as necessary or instruct
  125. * the hardware to do so. It can return immediately after the packet
  126. * was queued for sending. After sending, hpsb_sent_packet() has to be
  127. * called. Return 0 on success, negative errno on failure.
  128. * NOTE: The function must be callable in interrupt context.
  129. */
  130. int (*transmit_packet) (struct hpsb_host *host,
  131. struct hpsb_packet *packet);
  132. /* This function requests miscellanous services from the driver, see
  133. * above for command codes and expected actions. Return -1 for unknown
  134. * command, though that should never happen.
  135. */
  136. int (*devctl) (struct hpsb_host *host, enum devctl_cmd command, int arg);
  137. /* ISO transmission/reception functions. Return 0 on success, -1
  138. * (or -EXXX errno code) on failure. If the low-level driver does not
  139. * support the new ISO API, set isoctl to NULL.
  140. */
  141. int (*isoctl) (struct hpsb_iso *iso, enum isoctl_cmd command, unsigned long arg);
  142. /* This function is mainly to redirect local CSR reads/locks to the iso
  143. * management registers (bus manager id, bandwidth available, channels
  144. * available) to the hardware registers in OHCI. reg is 0,1,2,3 for bus
  145. * mgr, bwdth avail, ch avail hi, ch avail lo respectively (the same ids
  146. * as OHCI uses). data and compare are the new data and expected data
  147. * respectively, return value is the old value.
  148. */
  149. quadlet_t (*hw_csr_reg) (struct hpsb_host *host, int reg,
  150. quadlet_t data, quadlet_t compare);
  151. };
  152. struct hpsb_host *hpsb_alloc_host(struct hpsb_host_driver *drv, size_t extra,
  153. struct device *dev);
  154. int hpsb_add_host(struct hpsb_host *host);
  155. void hpsb_remove_host(struct hpsb_host *h);
  156. /* The following 2 functions are deprecated and will be removed when the
  157. * raw1394/libraw1394 update is complete. */
  158. int hpsb_update_config_rom(struct hpsb_host *host,
  159. const quadlet_t *new_rom, size_t size, unsigned char rom_version);
  160. int hpsb_get_config_rom(struct hpsb_host *host, quadlet_t *buffer,
  161. size_t buffersize, size_t *rom_size, unsigned char *rom_version);
  162. /* Updates the configuration rom image of a host. rom_version must be the
  163. * current version, otherwise it will fail with return value -1. If this
  164. * host does not support config-rom-update, it will return -EINVAL.
  165. * Return value 0 indicates success.
  166. */
  167. int hpsb_update_config_rom_image(struct hpsb_host *host);
  168. #endif /* _IEEE1394_HOSTS_H */