processor.h 10 KB

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  1. /*
  2. * include/asm-parisc/processor.h
  3. *
  4. * Copyright (C) 1994 Linus Torvalds
  5. * Copyright (C) 2001 Grant Grundler
  6. */
  7. #ifndef __ASM_PARISC_PROCESSOR_H
  8. #define __ASM_PARISC_PROCESSOR_H
  9. #ifndef __ASSEMBLY__
  10. #include <linux/config.h>
  11. #include <linux/threads.h>
  12. #include <linux/spinlock_types.h>
  13. #include <asm/hardware.h>
  14. #include <asm/page.h>
  15. #include <asm/pdc.h>
  16. #include <asm/ptrace.h>
  17. #include <asm/types.h>
  18. #include <asm/system.h>
  19. #endif /* __ASSEMBLY__ */
  20. #define KERNEL_STACK_SIZE (4*PAGE_SIZE)
  21. /*
  22. * Default implementation of macro that returns current
  23. * instruction pointer ("program counter").
  24. */
  25. /* We cannot use MFIA as it was added for PA2.0 - prumpf
  26. At one point there were no "0f/0b" type local symbols in gas for
  27. PA-RISC. This is no longer true, but this still seems like the
  28. nicest way to implement this. */
  29. #define current_text_addr() ({ void *pc; __asm__("\n\tblr 0,%0\n\tnop":"=r" (pc)); pc; })
  30. #define TASK_SIZE (current->thread.task_size)
  31. #define TASK_UNMAPPED_BASE (current->thread.map_base)
  32. #define DEFAULT_TASK_SIZE32 (0xFFF00000UL)
  33. #define DEFAULT_MAP_BASE32 (0x40000000UL)
  34. #ifdef __LP64__
  35. #define DEFAULT_TASK_SIZE (MAX_ADDRESS-0xf000000)
  36. #define DEFAULT_MAP_BASE (0x200000000UL)
  37. #else
  38. #define DEFAULT_TASK_SIZE DEFAULT_TASK_SIZE32
  39. #define DEFAULT_MAP_BASE DEFAULT_MAP_BASE32
  40. #endif
  41. #ifndef __ASSEMBLY__
  42. /*
  43. * Data detected about CPUs at boot time which is the same for all CPU's.
  44. * HP boxes are SMP - ie identical processors.
  45. *
  46. * FIXME: some CPU rev info may be processor specific...
  47. */
  48. struct system_cpuinfo_parisc {
  49. unsigned int cpu_count;
  50. unsigned int cpu_hz;
  51. unsigned int hversion;
  52. unsigned int sversion;
  53. enum cpu_type cpu_type;
  54. struct {
  55. struct pdc_model model;
  56. unsigned long versions;
  57. unsigned long cpuid;
  58. unsigned long capabilities;
  59. char sys_model_name[81]; /* PDC-ROM returnes this model name */
  60. } pdc;
  61. char *cpu_name; /* e.g. "PA7300LC (PCX-L2)" */
  62. char *family_name; /* e.g. "1.1e" */
  63. };
  64. /* Per CPU data structure - ie varies per CPU. */
  65. struct cpuinfo_parisc {
  66. unsigned long it_value; /* Interval Timer at last timer Intr */
  67. unsigned long it_delta; /* Interval delta (tic_10ms / HZ * 100) */
  68. unsigned long irq_count; /* number of IRQ's since boot */
  69. unsigned long irq_max_cr16; /* longest time to handle a single IRQ */
  70. unsigned long cpuid; /* aka slot_number or set to NO_PROC_ID */
  71. unsigned long hpa; /* Host Physical address */
  72. unsigned long txn_addr; /* MMIO addr of EIR or id_eid */
  73. #ifdef CONFIG_SMP
  74. spinlock_t lock; /* synchronization for ipi's */
  75. unsigned long pending_ipi; /* bitmap of type ipi_message_type */
  76. unsigned long ipi_count; /* number ipi Interrupts */
  77. #endif
  78. unsigned long bh_count; /* number of times bh was invoked */
  79. unsigned long prof_counter; /* per CPU profiling support */
  80. unsigned long prof_multiplier; /* per CPU profiling support */
  81. unsigned long fp_rev;
  82. unsigned long fp_model;
  83. unsigned int state;
  84. struct parisc_device *dev;
  85. unsigned long loops_per_jiffy;
  86. };
  87. extern struct system_cpuinfo_parisc boot_cpu_data;
  88. extern struct cpuinfo_parisc cpu_data[NR_CPUS];
  89. #define current_cpu_data cpu_data[smp_processor_id()]
  90. #define CPU_HVERSION ((boot_cpu_data.hversion >> 4) & 0x0FFF)
  91. typedef struct {
  92. int seg;
  93. } mm_segment_t;
  94. #define ARCH_MIN_TASKALIGN 8
  95. struct thread_struct {
  96. struct pt_regs regs;
  97. unsigned long task_size;
  98. unsigned long map_base;
  99. unsigned long flags;
  100. };
  101. /* Thread struct flags. */
  102. #define PARISC_KERNEL_DEATH (1UL << 31) /* see die_if_kernel()... */
  103. #define INIT_THREAD { \
  104. regs: { gr: { 0, }, \
  105. fr: { 0, }, \
  106. sr: { 0, }, \
  107. iasq: { 0, }, \
  108. iaoq: { 0, }, \
  109. cr27: 0, \
  110. }, \
  111. task_size: DEFAULT_TASK_SIZE, \
  112. map_base: DEFAULT_MAP_BASE, \
  113. flags: 0 \
  114. }
  115. /*
  116. * Return saved PC of a blocked thread. This is used by ps mostly.
  117. */
  118. unsigned long thread_saved_pc(struct task_struct *t);
  119. void show_trace(struct task_struct *task, unsigned long *stack);
  120. /*
  121. * Start user thread in another space.
  122. *
  123. * Note that we set both the iaoq and r31 to the new pc. When
  124. * the kernel initially calls execve it will return through an
  125. * rfi path that will use the values in the iaoq. The execve
  126. * syscall path will return through the gateway page, and
  127. * that uses r31 to branch to.
  128. *
  129. * For ELF we clear r23, because the dynamic linker uses it to pass
  130. * the address of the finalizer function.
  131. *
  132. * We also initialize sr3 to an illegal value (illegal for our
  133. * implementation, not for the architecture).
  134. */
  135. typedef unsigned int elf_caddr_t;
  136. #define start_thread_som(regs, new_pc, new_sp) do { \
  137. unsigned long *sp = (unsigned long *)new_sp; \
  138. __u32 spaceid = (__u32)current->mm->context; \
  139. unsigned long pc = (unsigned long)new_pc; \
  140. /* offset pc for priv. level */ \
  141. pc |= 3; \
  142. \
  143. set_fs(USER_DS); \
  144. regs->iasq[0] = spaceid; \
  145. regs->iasq[1] = spaceid; \
  146. regs->iaoq[0] = pc; \
  147. regs->iaoq[1] = pc + 4; \
  148. regs->sr[2] = LINUX_GATEWAY_SPACE; \
  149. regs->sr[3] = 0xffff; \
  150. regs->sr[4] = spaceid; \
  151. regs->sr[5] = spaceid; \
  152. regs->sr[6] = spaceid; \
  153. regs->sr[7] = spaceid; \
  154. regs->gr[ 0] = USER_PSW; \
  155. regs->gr[30] = ((new_sp)+63)&~63; \
  156. regs->gr[31] = pc; \
  157. \
  158. get_user(regs->gr[26],&sp[0]); \
  159. get_user(regs->gr[25],&sp[-1]); \
  160. get_user(regs->gr[24],&sp[-2]); \
  161. get_user(regs->gr[23],&sp[-3]); \
  162. } while(0)
  163. /* The ELF abi wants things done a "wee bit" differently than
  164. * som does. Supporting this behavior here avoids
  165. * having our own version of create_elf_tables.
  166. *
  167. * Oh, and yes, that is not a typo, we are really passing argc in r25
  168. * and argv in r24 (rather than r26 and r25). This is because that's
  169. * where __libc_start_main wants them.
  170. *
  171. * Duplicated from dl-machine.h for the benefit of readers:
  172. *
  173. * Our initial stack layout is rather different from everyone else's
  174. * due to the unique PA-RISC ABI. As far as I know it looks like
  175. * this:
  176. ----------------------------------- (user startup code creates this frame)
  177. | 32 bytes of magic |
  178. |---------------------------------|
  179. | 32 bytes argument/sp save area |
  180. |---------------------------------| (bprm->p)
  181. | ELF auxiliary info |
  182. | (up to 28 words) |
  183. |---------------------------------|
  184. | NULL |
  185. |---------------------------------|
  186. | Environment pointers |
  187. |---------------------------------|
  188. | NULL |
  189. |---------------------------------|
  190. | Argument pointers |
  191. |---------------------------------| <- argv
  192. | argc (1 word) |
  193. |---------------------------------| <- bprm->exec (HACK!)
  194. | N bytes of slack |
  195. |---------------------------------|
  196. | filename passed to execve |
  197. |---------------------------------| (mm->env_end)
  198. | env strings |
  199. |---------------------------------| (mm->env_start, mm->arg_end)
  200. | arg strings |
  201. |---------------------------------|
  202. | additional faked arg strings if |
  203. | we're invoked via binfmt_script |
  204. |---------------------------------| (mm->arg_start)
  205. stack base is at TASK_SIZE - rlim_max.
  206. on downward growing arches, it looks like this:
  207. stack base at TASK_SIZE
  208. | filename passed to execve
  209. | env strings
  210. | arg strings
  211. | faked arg strings
  212. | slack
  213. | ELF
  214. | envps
  215. | argvs
  216. | argc
  217. * The pleasant part of this is that if we need to skip arguments we
  218. * can just decrement argc and move argv, because the stack pointer
  219. * is utterly unrelated to the location of the environment and
  220. * argument vectors.
  221. *
  222. * Note that the S/390 people took the easy way out and hacked their
  223. * GCC to make the stack grow downwards.
  224. *
  225. * Final Note: For entry from syscall, the W (wide) bit of the PSW
  226. * is stuffed into the lowest bit of the user sp (%r30), so we fill
  227. * it in here from the current->personality
  228. */
  229. #ifdef __LP64__
  230. #define USER_WIDE_MODE (personality(current->personality) == PER_LINUX)
  231. #else
  232. #define USER_WIDE_MODE 0
  233. #endif
  234. #define start_thread(regs, new_pc, new_sp) do { \
  235. elf_addr_t *sp = (elf_addr_t *)new_sp; \
  236. __u32 spaceid = (__u32)current->mm->context; \
  237. elf_addr_t pc = (elf_addr_t)new_pc | 3; \
  238. elf_caddr_t *argv = (elf_caddr_t *)bprm->exec + 1; \
  239. \
  240. set_fs(USER_DS); \
  241. regs->iasq[0] = spaceid; \
  242. regs->iasq[1] = spaceid; \
  243. regs->iaoq[0] = pc; \
  244. regs->iaoq[1] = pc + 4; \
  245. regs->sr[2] = LINUX_GATEWAY_SPACE; \
  246. regs->sr[3] = 0xffff; \
  247. regs->sr[4] = spaceid; \
  248. regs->sr[5] = spaceid; \
  249. regs->sr[6] = spaceid; \
  250. regs->sr[7] = spaceid; \
  251. regs->gr[ 0] = USER_PSW | (USER_WIDE_MODE ? PSW_W : 0); \
  252. regs->fr[ 0] = 0LL; \
  253. regs->fr[ 1] = 0LL; \
  254. regs->fr[ 2] = 0LL; \
  255. regs->fr[ 3] = 0LL; \
  256. regs->gr[30] = (((unsigned long)sp + 63) &~ 63) | (USER_WIDE_MODE ? 1 : 0); \
  257. regs->gr[31] = pc; \
  258. \
  259. get_user(regs->gr[25], (argv - 1)); \
  260. regs->gr[24] = (long) argv; \
  261. regs->gr[23] = 0; \
  262. } while(0)
  263. struct task_struct;
  264. struct mm_struct;
  265. /* Free all resources held by a thread. */
  266. extern void release_thread(struct task_struct *);
  267. extern int kernel_thread(int (*fn)(void *), void * arg, unsigned long flags);
  268. /* Prepare to copy thread state - unlazy all lazy status */
  269. #define prepare_to_copy(tsk) do { } while (0)
  270. extern void map_hpux_gateway_page(struct task_struct *tsk, struct mm_struct *mm);
  271. extern unsigned long get_wchan(struct task_struct *p);
  272. #define KSTK_EIP(tsk) ((tsk)->thread.regs.iaoq[0])
  273. #define KSTK_ESP(tsk) ((tsk)->thread.regs.gr[30])
  274. /*
  275. * PA 2.0 defines data prefetch instructions on page 6-11 of the Kane book.
  276. * In addition, many implementations do hardware prefetching of both
  277. * instructions and data.
  278. *
  279. * PA7300LC (page 14-4 of the ERS) also implements prefetching by a load
  280. * to gr0 but not in a way that Linux can use. If the load would cause an
  281. * interruption (eg due to prefetching 0), it is suppressed on PA2.0
  282. * processors, but not on 7300LC.
  283. */
  284. #ifdef CONFIG_PREFETCH
  285. #define ARCH_HAS_PREFETCH
  286. #define ARCH_HAS_PREFETCHW
  287. extern inline void prefetch(const void *addr)
  288. {
  289. __asm__("ldw 0(%0), %%r0" : : "r" (addr));
  290. }
  291. extern inline void prefetchw(const void *addr)
  292. {
  293. __asm__("ldd 0(%0), %%r0" : : "r" (addr));
  294. }
  295. #endif
  296. #define cpu_relax() barrier()
  297. #endif /* __ASSEMBLY__ */
  298. #endif /* __ASM_PARISC_PROCESSOR_H */