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at v2.6.21-rc2 216 lines 4.9 kB view raw
1/* 2 * Dump R4x00 TLB for debugging purposes. 3 * 4 * Copyright (C) 1994, 1995 by Waldorf Electronics, written by Ralf Baechle. 5 * Copyright (C) 1999 by Silicon Graphics, Inc. 6 */ 7#include <linux/kernel.h> 8#include <linux/mm.h> 9#include <linux/sched.h> 10#include <linux/string.h> 11 12#include <asm/bootinfo.h> 13#include <asm/cachectl.h> 14#include <asm/cpu.h> 15#include <asm/mipsregs.h> 16#include <asm/page.h> 17#include <asm/pgtable.h> 18 19static inline const char *msk2str(unsigned int mask) 20{ 21 switch (mask) { 22 case PM_4K: return "4kb"; 23 case PM_16K: return "16kb"; 24 case PM_64K: return "64kb"; 25 case PM_256K: return "256kb"; 26#ifndef CONFIG_CPU_VR41XX 27 case PM_1M: return "1Mb"; 28 case PM_4M: return "4Mb"; 29 case PM_16M: return "16Mb"; 30 case PM_64M: return "64Mb"; 31 case PM_256M: return "256Mb"; 32#endif 33 } 34 35 return "unknown"; 36} 37 38#define BARRIER() \ 39 __asm__ __volatile__( \ 40 ".set\tnoreorder\n\t" \ 41 "nop;nop;nop;nop;nop;nop;nop\n\t" \ 42 ".set\treorder"); 43 44void dump_tlb(int first, int last) 45{ 46 unsigned long s_entryhi, entryhi, entrylo0, entrylo1, asid; 47 unsigned int s_index, pagemask, c0, c1, i; 48 49 s_entryhi = read_c0_entryhi(); 50 s_index = read_c0_index(); 51 asid = s_entryhi & 0xff; 52 53 for (i = first; i <= last; i++) { 54 write_c0_index(i); 55 BARRIER(); 56 tlb_read(); 57 BARRIER(); 58 pagemask = read_c0_pagemask(); 59 entryhi = read_c0_entryhi(); 60 entrylo0 = read_c0_entrylo0(); 61 entrylo1 = read_c0_entrylo1(); 62 63 /* Unused entries have a virtual address of CKSEG0. */ 64 if ((entryhi & ~0x1ffffUL) != CKSEG0 65 && (entryhi & 0xff) == asid) { 66 /* 67 * Only print entries in use 68 */ 69 printk("Index: %2d pgmask=%s ", i, msk2str(pagemask)); 70 71 c0 = (entrylo0 >> 3) & 7; 72 c1 = (entrylo1 >> 3) & 7; 73 74 printk("va=%011lx asid=%02lx\n", 75 (entryhi & ~0x1fffUL), 76 entryhi & 0xff); 77 printk("\t[pa=%011lx c=%d d=%d v=%d g=%ld] ", 78 (entrylo0 << 6) & PAGE_MASK, c0, 79 (entrylo0 & 4) ? 1 : 0, 80 (entrylo0 & 2) ? 1 : 0, 81 (entrylo0 & 1)); 82 printk("[pa=%011lx c=%d d=%d v=%d g=%ld]\n", 83 (entrylo1 << 6) & PAGE_MASK, c1, 84 (entrylo1 & 4) ? 1 : 0, 85 (entrylo1 & 2) ? 1 : 0, 86 (entrylo1 & 1)); 87 } 88 } 89 printk("\n"); 90 91 write_c0_entryhi(s_entryhi); 92 write_c0_index(s_index); 93} 94 95void dump_tlb_all(void) 96{ 97 dump_tlb(0, current_cpu_data.tlbsize - 1); 98} 99 100void dump_tlb_wired(void) 101{ 102 int wired; 103 104 wired = read_c0_wired(); 105 printk("Wired: %d", wired); 106 dump_tlb(0, read_c0_wired()); 107} 108 109void dump_tlb_addr(unsigned long addr) 110{ 111 unsigned int flags, oldpid; 112 int index; 113 114 local_irq_save(flags); 115 oldpid = read_c0_entryhi() & 0xff; 116 BARRIER(); 117 write_c0_entryhi((addr & PAGE_MASK) | oldpid); 118 BARRIER(); 119 tlb_probe(); 120 BARRIER(); 121 index = read_c0_index(); 122 write_c0_entryhi(oldpid); 123 local_irq_restore(flags); 124 125 if (index < 0) { 126 printk("No entry for address 0x%08lx in TLB\n", addr); 127 return; 128 } 129 130 printk("Entry %d maps address 0x%08lx\n", index, addr); 131 dump_tlb(index, index); 132} 133 134void dump_tlb_nonwired(void) 135{ 136 dump_tlb(read_c0_wired(), current_cpu_data.tlbsize - 1); 137} 138 139void dump_list_process(struct task_struct *t, void *address) 140{ 141 pgd_t *page_dir, *pgd; 142 pud_t *pud; 143 pmd_t *pmd; 144 pte_t *pte, page; 145 unsigned long addr, val; 146 147 addr = (unsigned long) address; 148 149 printk("Addr == %08lx\n", addr); 150 printk("tasks->mm.pgd == %08lx\n", (unsigned long) t->mm->pgd); 151 152 page_dir = pgd_offset(t->mm, 0UL); 153 printk("page_dir == %016lx\n", (unsigned long) page_dir); 154 155 pgd = pgd_offset(t->mm, addr); 156 printk("pgd == %016lx\n", (unsigned long) pgd); 157 158 pud = pud_offset(pgd, addr); 159 printk("pud == %016lx\n", (unsigned long) pud); 160 161 pmd = pmd_offset(pud, addr); 162 printk("pmd == %016lx\n", (unsigned long) pmd); 163 164 pte = pte_offset(pmd, addr); 165 printk("pte == %016lx\n", (unsigned long) pte); 166 167 page = *pte; 168 printk("page == %08lx\n", pte_val(page)); 169 170 val = pte_val(page); 171 if (val & _PAGE_PRESENT) printk("present "); 172 if (val & _PAGE_READ) printk("read "); 173 if (val & _PAGE_WRITE) printk("write "); 174 if (val & _PAGE_ACCESSED) printk("accessed "); 175 if (val & _PAGE_MODIFIED) printk("modified "); 176 if (val & _PAGE_R4KBUG) printk("r4kbug "); 177 if (val & _PAGE_GLOBAL) printk("global "); 178 if (val & _PAGE_VALID) printk("valid "); 179 printk("\n"); 180} 181 182void dump_list_current(void *address) 183{ 184 dump_list_process(current, address); 185} 186 187unsigned long vtop(void *address) 188{ 189 pgd_t *pgd; 190 pud_t *pud; 191 pmd_t *pmd; 192 pte_t *pte; 193 unsigned long addr, paddr; 194 195 addr = (unsigned long) address; 196 pgd = pgd_offset(current->mm, addr); 197 pud = pud_offset(pgd, addr); 198 pmd = pmd_offset(pud, addr); 199 pte = pte_offset(pmd, addr); 200 paddr = (CKSEG1 | (unsigned int) pte_val(*pte)) & PAGE_MASK; 201 paddr |= (addr & ~PAGE_MASK); 202 203 return paddr; 204} 205 206void dump16(unsigned long *p) 207{ 208 int i; 209 210 for (i = 0; i < 8; i++) { 211 printk("*%08lx == %08lx, ", (unsigned long)p, *p); 212 p++; 213 printk("*%08lx == %08lx\n", (unsigned long)p, *p); 214 p++; 215 } 216}