linux/arch/arc/include/asm/processor.h
<<
>>
Prefs
   1/*
   2 * Copyright (C) 2004, 2007-2010, 2011-2012 Synopsys, Inc. (www.synopsys.com)
   3 *
   4 * This program is free software; you can redistribute it and/or modify
   5 * it under the terms of the GNU General Public License version 2 as
   6 * published by the Free Software Foundation.
   7 *
   8 * vineetg: March 2009
   9 *  -Implemented task_pt_regs( )
  10 *
  11 * Amit Bhor, Sameer Dhavale, Ashwin Chaugule: Codito Technologies 2004
  12 */
  13
  14#ifndef __ASM_ARC_PROCESSOR_H
  15#define __ASM_ARC_PROCESSOR_H
  16
  17#ifndef __ASSEMBLY__
  18
  19#include <asm/ptrace.h>
  20
  21#ifdef CONFIG_ARC_FPU_SAVE_RESTORE
  22/* These DPFP regs need to be saved/restored across ctx-sw */
  23struct arc_fpu {
  24        struct {
  25                unsigned int l, h;
  26        } aux_dpfp[2];
  27};
  28#endif
  29
  30/* Arch specific stuff which needs to be saved per task.
  31 * However these items are not so important so as to earn a place in
  32 * struct thread_info
  33 */
  34struct thread_struct {
  35        unsigned long ksp;      /* kernel mode stack pointer */
  36        unsigned long callee_reg;       /* pointer to callee regs */
  37        unsigned long fault_address;    /* dbls as brkpt holder as well */
  38#ifdef CONFIG_ARC_FPU_SAVE_RESTORE
  39        struct arc_fpu fpu;
  40#endif
  41};
  42
  43#define INIT_THREAD  {                          \
  44        .ksp = sizeof(init_stack) + (unsigned long) init_stack, \
  45}
  46
  47/* Forward declaration, a strange C thing */
  48struct task_struct;
  49
  50#define task_pt_regs(p) \
  51        ((struct pt_regs *)(THREAD_SIZE + (void *)task_stack_page(p)) - 1)
  52
  53/* Free all resources held by a thread */
  54#define release_thread(thread) do { } while (0)
  55
  56/*
  57 * A lot of busy-wait loops in SMP are based off of non-volatile data otherwise
  58 * get optimised away by gcc
  59 */
  60#ifndef CONFIG_EZNPS_MTM_EXT
  61
  62#define cpu_relax()             barrier()
  63#define cpu_relax_lowlatency()  cpu_relax()
  64
  65#else
  66
  67#define cpu_relax()     \
  68        __asm__ __volatile__ (".word %0" : : "i"(CTOP_INST_SCHD_RW) : "memory")
  69
  70#define cpu_relax_lowlatency()  barrier()
  71
  72#endif
  73
  74#define copy_segments(tsk, mm)      do { } while (0)
  75#define release_segments(mm)        do { } while (0)
  76
  77#define KSTK_EIP(tsk)   (task_pt_regs(tsk)->ret)
  78#define KSTK_ESP(tsk)   (task_pt_regs(tsk)->sp)
  79
  80/*
  81 * Where about of Task's sp, fp, blink when it was last seen in kernel mode.
  82 * Look in process.c for details of kernel stack layout
  83 */
  84#define TSK_K_ESP(tsk)          (tsk->thread.ksp)
  85
  86#define TSK_K_REG(tsk, off)     (*((unsigned long *)(TSK_K_ESP(tsk) + \
  87                                        sizeof(struct callee_regs) + off)))
  88
  89#define TSK_K_BLINK(tsk)        TSK_K_REG(tsk, 4)
  90#define TSK_K_FP(tsk)           TSK_K_REG(tsk, 0)
  91
  92#define thread_saved_pc(tsk)    TSK_K_BLINK(tsk)
  93
  94extern void start_thread(struct pt_regs * regs, unsigned long pc,
  95                         unsigned long usp);
  96
  97extern unsigned int get_wchan(struct task_struct *p);
  98
  99/*
 100 * Default implementation of macro that returns current
 101 * instruction pointer ("program counter").
 102 * Should the PC register be read instead ? This macro does not seem to
 103 * be used in many places so this wont be all that bad.
 104 */
 105#define current_text_addr() ({ __label__ _l; _l: &&_l; })
 106
 107#endif /* !__ASSEMBLY__ */
 108
 109/*
 110 * Default System Memory Map on ARC
 111 *
 112 * ---------------------------- (lower 2G, Translated) -------------------------
 113 * 0x0000_0000          0x5FFF_FFFF     (user vaddr: TASK_SIZE)
 114 * 0x6000_0000          0x6FFF_FFFF     (reserved gutter between U/K)
 115 * 0x7000_0000          0x7FFF_FFFF     (kvaddr: vmalloc/modules/pkmap..)
 116 *
 117 * PAGE_OFFSET ---------------- (Upper 2G, Untranslated) -----------------------
 118 * 0x8000_0000          0xBFFF_FFFF     (kernel direct mapped)
 119 * 0xC000_0000          0xFFFF_FFFF     (peripheral uncached space)
 120 * -----------------------------------------------------------------------------
 121 */
 122
 123#define TASK_SIZE       0x60000000
 124
 125#define VMALLOC_START   (PAGE_OFFSET - (CONFIG_ARC_KVADDR_SIZE << 20))
 126
 127/* 1 PGDIR_SIZE each for fixmap/pkmap, 2 PGDIR_SIZE gutter (see asm/highmem.h) */
 128#define VMALLOC_SIZE    ((CONFIG_ARC_KVADDR_SIZE << 20) - PGDIR_SIZE * 4)
 129
 130#define VMALLOC_END     (VMALLOC_START + VMALLOC_SIZE)
 131
 132#define USER_KERNEL_GUTTER    (VMALLOC_START - TASK_SIZE)
 133
 134#ifdef CONFIG_ARC_PLAT_EZNPS
 135/* NPS architecture defines special window of 129M in user address space for
 136 * special memory areas, when accessing this window the MMU do not use TLB.
 137 * Instead MMU direct the access to:
 138 * 0x57f00000:0x57ffffff -- 1M of closely coupled memory (aka CMEM)
 139 * 0x58000000:0x5fffffff -- 16 huge pages, 8M each, with fixed map (aka FMTs)
 140 *
 141 * CMEM - is the fastest memory we got and its size is 16K.
 142 * FMT  - is used to map either to internal/external memory.
 143 * Internal memory is the second fast memory and its size is 16M
 144 * External memory is the biggest memory (16G) and also the slowest.
 145 *
 146 * STACK_TOP need to be PMD align (21bit) that is why we supply 0x57e00000.
 147 */
 148#define STACK_TOP       0x57e00000
 149#else
 150#define STACK_TOP       TASK_SIZE
 151#endif
 152
 153#define STACK_TOP_MAX   STACK_TOP
 154
 155/* This decides where the kernel will search for a free chunk of vm
 156 * space during mmap's.
 157 */
 158#define TASK_UNMAPPED_BASE      (TASK_SIZE / 3)
 159
 160#endif /* __ASM_ARC_PROCESSOR_H */
 161