spufs.h 7.9 KB

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  1. /*
  2. * SPU file system
  3. *
  4. * (C) Copyright IBM Deutschland Entwicklung GmbH 2005
  5. *
  6. * Author: Arnd Bergmann <arndb@de.ibm.com>
  7. *
  8. * This program is free software; you can redistribute it and/or modify
  9. * it under the terms of the GNU General Public License as published by
  10. * the Free Software Foundation; either version 2, or (at your option)
  11. * any later version.
  12. *
  13. * This program is distributed in the hope that it will be useful,
  14. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  15. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  16. * GNU General Public License for more details.
  17. *
  18. * You should have received a copy of the GNU General Public License
  19. * along with this program; if not, write to the Free Software
  20. * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  21. */
  22. #ifndef SPUFS_H
  23. #define SPUFS_H
  24. #include <linux/kref.h>
  25. #include <linux/mutex.h>
  26. #include <linux/spinlock.h>
  27. #include <linux/fs.h>
  28. #include <asm/spu.h>
  29. #include <asm/spu_csa.h>
  30. #include <asm/spu_info.h>
  31. /* The magic number for our file system */
  32. enum {
  33. SPUFS_MAGIC = 0x23c9b64e,
  34. };
  35. struct spu_context_ops;
  36. struct spu_gang;
  37. /* ctx->sched_flags */
  38. enum {
  39. SPU_SCHED_EXITING = 0,
  40. };
  41. struct spu_context {
  42. struct spu *spu; /* pointer to a physical SPU */
  43. struct spu_state csa; /* SPU context save area. */
  44. spinlock_t mmio_lock; /* protects mmio access */
  45. struct address_space *local_store; /* local store mapping. */
  46. struct address_space *mfc; /* 'mfc' area mappings. */
  47. struct address_space *cntl; /* 'control' area mappings. */
  48. struct address_space *signal1; /* 'signal1' area mappings. */
  49. struct address_space *signal2; /* 'signal2' area mappings. */
  50. struct address_space *mss; /* 'mss' area mappings. */
  51. struct address_space *psmap; /* 'psmap' area mappings. */
  52. spinlock_t mapping_lock;
  53. u64 object_id; /* user space pointer for oprofile */
  54. enum { SPU_STATE_RUNNABLE, SPU_STATE_SAVED } state;
  55. struct mutex state_mutex;
  56. struct mutex run_mutex;
  57. struct mm_struct *owner;
  58. struct kref kref;
  59. wait_queue_head_t ibox_wq;
  60. wait_queue_head_t wbox_wq;
  61. wait_queue_head_t stop_wq;
  62. wait_queue_head_t mfc_wq;
  63. struct fasync_struct *ibox_fasync;
  64. struct fasync_struct *wbox_fasync;
  65. struct fasync_struct *mfc_fasync;
  66. u32 tagwait;
  67. struct spu_context_ops *ops;
  68. struct work_struct reap_work;
  69. unsigned long flags;
  70. unsigned long event_return;
  71. struct list_head gang_list;
  72. struct spu_gang *gang;
  73. /* scheduler fields */
  74. struct list_head rq;
  75. struct delayed_work sched_work;
  76. unsigned long sched_flags;
  77. unsigned long rt_priority;
  78. int policy;
  79. int prio;
  80. };
  81. struct spu_gang {
  82. struct list_head list;
  83. struct mutex mutex;
  84. struct kref kref;
  85. int contexts;
  86. };
  87. struct mfc_dma_command {
  88. int32_t pad; /* reserved */
  89. uint32_t lsa; /* local storage address */
  90. uint64_t ea; /* effective address */
  91. uint16_t size; /* transfer size */
  92. uint16_t tag; /* command tag */
  93. uint16_t class; /* class ID */
  94. uint16_t cmd; /* command opcode */
  95. };
  96. /* SPU context query/set operations. */
  97. struct spu_context_ops {
  98. int (*mbox_read) (struct spu_context * ctx, u32 * data);
  99. u32(*mbox_stat_read) (struct spu_context * ctx);
  100. unsigned int (*mbox_stat_poll)(struct spu_context *ctx,
  101. unsigned int events);
  102. int (*ibox_read) (struct spu_context * ctx, u32 * data);
  103. int (*wbox_write) (struct spu_context * ctx, u32 data);
  104. u32(*signal1_read) (struct spu_context * ctx);
  105. void (*signal1_write) (struct spu_context * ctx, u32 data);
  106. u32(*signal2_read) (struct spu_context * ctx);
  107. void (*signal2_write) (struct spu_context * ctx, u32 data);
  108. void (*signal1_type_set) (struct spu_context * ctx, u64 val);
  109. u64(*signal1_type_get) (struct spu_context * ctx);
  110. void (*signal2_type_set) (struct spu_context * ctx, u64 val);
  111. u64(*signal2_type_get) (struct spu_context * ctx);
  112. u32(*npc_read) (struct spu_context * ctx);
  113. void (*npc_write) (struct spu_context * ctx, u32 data);
  114. u32(*status_read) (struct spu_context * ctx);
  115. char*(*get_ls) (struct spu_context * ctx);
  116. u32 (*runcntl_read) (struct spu_context * ctx);
  117. void (*runcntl_write) (struct spu_context * ctx, u32 data);
  118. void (*master_start) (struct spu_context * ctx);
  119. void (*master_stop) (struct spu_context * ctx);
  120. int (*set_mfc_query)(struct spu_context * ctx, u32 mask, u32 mode);
  121. u32 (*read_mfc_tagstatus)(struct spu_context * ctx);
  122. u32 (*get_mfc_free_elements)(struct spu_context *ctx);
  123. int (*send_mfc_command)(struct spu_context * ctx,
  124. struct mfc_dma_command * cmd);
  125. void (*dma_info_read) (struct spu_context * ctx,
  126. struct spu_dma_info * info);
  127. void (*proxydma_info_read) (struct spu_context * ctx,
  128. struct spu_proxydma_info * info);
  129. void (*restart_dma)(struct spu_context *ctx);
  130. };
  131. extern struct spu_context_ops spu_hw_ops;
  132. extern struct spu_context_ops spu_backing_ops;
  133. struct spufs_inode_info {
  134. struct spu_context *i_ctx;
  135. struct spu_gang *i_gang;
  136. struct inode vfs_inode;
  137. int i_openers;
  138. };
  139. #define SPUFS_I(inode) \
  140. container_of(inode, struct spufs_inode_info, vfs_inode)
  141. extern struct tree_descr spufs_dir_contents[];
  142. extern struct tree_descr spufs_dir_nosched_contents[];
  143. /* system call implementation */
  144. long spufs_run_spu(struct file *file,
  145. struct spu_context *ctx, u32 *npc, u32 *status);
  146. long spufs_create(struct nameidata *nd,
  147. unsigned int flags, mode_t mode);
  148. extern const struct file_operations spufs_context_fops;
  149. /* gang management */
  150. struct spu_gang *alloc_spu_gang(void);
  151. struct spu_gang *get_spu_gang(struct spu_gang *gang);
  152. int put_spu_gang(struct spu_gang *gang);
  153. void spu_gang_remove_ctx(struct spu_gang *gang, struct spu_context *ctx);
  154. void spu_gang_add_ctx(struct spu_gang *gang, struct spu_context *ctx);
  155. /* fault handling */
  156. int spufs_handle_class1(struct spu_context *ctx);
  157. /* context management */
  158. static inline void spu_acquire(struct spu_context *ctx)
  159. {
  160. mutex_lock(&ctx->state_mutex);
  161. }
  162. static inline void spu_release(struct spu_context *ctx)
  163. {
  164. mutex_unlock(&ctx->state_mutex);
  165. }
  166. struct spu_context * alloc_spu_context(struct spu_gang *gang);
  167. void destroy_spu_context(struct kref *kref);
  168. struct spu_context * get_spu_context(struct spu_context *ctx);
  169. int put_spu_context(struct spu_context *ctx);
  170. void spu_unmap_mappings(struct spu_context *ctx);
  171. void spu_forget(struct spu_context *ctx);
  172. int spu_acquire_runnable(struct spu_context *ctx, unsigned long flags);
  173. void spu_acquire_saved(struct spu_context *ctx);
  174. int spu_activate(struct spu_context *ctx, unsigned long flags);
  175. void spu_deactivate(struct spu_context *ctx);
  176. void spu_yield(struct spu_context *ctx);
  177. void spu_start_tick(struct spu_context *ctx);
  178. void spu_stop_tick(struct spu_context *ctx);
  179. void spu_sched_tick(struct work_struct *work);
  180. int __init spu_sched_init(void);
  181. void __exit spu_sched_exit(void);
  182. extern char *isolated_loader;
  183. /*
  184. * spufs_wait
  185. * Same as wait_event_interruptible(), except that here
  186. * we need to call spu_release(ctx) before sleeping, and
  187. * then spu_acquire(ctx) when awoken.
  188. */
  189. #define spufs_wait(wq, condition) \
  190. ({ \
  191. int __ret = 0; \
  192. DEFINE_WAIT(__wait); \
  193. for (;;) { \
  194. prepare_to_wait(&(wq), &__wait, TASK_INTERRUPTIBLE); \
  195. if (condition) \
  196. break; \
  197. if (signal_pending(current)) { \
  198. __ret = -ERESTARTSYS; \
  199. break; \
  200. } \
  201. spu_release(ctx); \
  202. schedule(); \
  203. spu_acquire(ctx); \
  204. } \
  205. finish_wait(&(wq), &__wait); \
  206. __ret; \
  207. })
  208. size_t spu_wbox_write(struct spu_context *ctx, u32 data);
  209. size_t spu_ibox_read(struct spu_context *ctx, u32 *data);
  210. /* irq callback funcs. */
  211. void spufs_ibox_callback(struct spu *spu);
  212. void spufs_wbox_callback(struct spu *spu);
  213. void spufs_stop_callback(struct spu *spu);
  214. void spufs_mfc_callback(struct spu *spu);
  215. void spufs_dma_callback(struct spu *spu, int type);
  216. extern struct spu_coredump_calls spufs_coredump_calls;
  217. struct spufs_coredump_reader {
  218. char *name;
  219. ssize_t (*read)(struct spu_context *ctx,
  220. char __user *buffer, size_t size, loff_t *pos);
  221. u64 (*get)(void *data);
  222. size_t size;
  223. };
  224. extern struct spufs_coredump_reader spufs_coredump_read[];
  225. extern int spufs_coredump_num_notes;
  226. #endif