patch.c 5.2 KB

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  1. /*
  2. * Instruction-patching support.
  3. *
  4. * Copyright (C) 2003 Hewlett-Packard Co
  5. * David Mosberger-Tang <davidm@hpl.hp.com>
  6. */
  7. #include <linux/init.h>
  8. #include <linux/string.h>
  9. #include <asm/patch.h>
  10. #include <asm/processor.h>
  11. #include <asm/sections.h>
  12. #include <asm/system.h>
  13. #include <asm/unistd.h>
  14. /*
  15. * This was adapted from code written by Tony Luck:
  16. *
  17. * The 64-bit value in a "movl reg=value" is scattered between the two words of the bundle
  18. * like this:
  19. *
  20. * 6 6 5 4 3 2 1
  21. * 3210987654321098765432109876543210987654321098765432109876543210
  22. * ABBBBBBBBBBBBBBBBBBBBBBBCCCCCCCCCCCCCCCCCCDEEEEEFFFFFFFFFGGGGGGG
  23. *
  24. * CCCCCCCCCCCCCCCCCCxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx
  25. * xxxxAFFFFFFFFFEEEEEDxGGGGGGGxxxxxxxxxxxxxBBBBBBBBBBBBBBBBBBBBBBB
  26. */
  27. static u64
  28. get_imm64 (u64 insn_addr)
  29. {
  30. u64 *p = (u64 *) (insn_addr & -16); /* mask out slot number */
  31. return ( (p[1] & 0x0800000000000000UL) << 4) | /*A*/
  32. ((p[1] & 0x00000000007fffffUL) << 40) | /*B*/
  33. ((p[0] & 0xffffc00000000000UL) >> 24) | /*C*/
  34. ((p[1] & 0x0000100000000000UL) >> 23) | /*D*/
  35. ((p[1] & 0x0003e00000000000UL) >> 29) | /*E*/
  36. ((p[1] & 0x07fc000000000000UL) >> 43) | /*F*/
  37. ((p[1] & 0x000007f000000000UL) >> 36); /*G*/
  38. }
  39. /* Patch instruction with "val" where "mask" has 1 bits. */
  40. void
  41. ia64_patch (u64 insn_addr, u64 mask, u64 val)
  42. {
  43. u64 m0, m1, v0, v1, b0, b1, *b = (u64 *) (insn_addr & -16);
  44. # define insn_mask ((1UL << 41) - 1)
  45. unsigned long shift;
  46. b0 = b[0]; b1 = b[1];
  47. shift = 5 + 41 * (insn_addr % 16); /* 5 bits of template, then 3 x 41-bit instructions */
  48. if (shift >= 64) {
  49. m1 = mask << (shift - 64);
  50. v1 = val << (shift - 64);
  51. } else {
  52. m0 = mask << shift; m1 = mask >> (64 - shift);
  53. v0 = val << shift; v1 = val >> (64 - shift);
  54. b[0] = (b0 & ~m0) | (v0 & m0);
  55. }
  56. b[1] = (b1 & ~m1) | (v1 & m1);
  57. }
  58. void
  59. ia64_patch_imm64 (u64 insn_addr, u64 val)
  60. {
  61. ia64_patch(insn_addr,
  62. 0x01fffefe000UL, ( ((val & 0x8000000000000000UL) >> 27) /* bit 63 -> 36 */
  63. | ((val & 0x0000000000200000UL) << 0) /* bit 21 -> 21 */
  64. | ((val & 0x00000000001f0000UL) << 6) /* bit 16 -> 22 */
  65. | ((val & 0x000000000000ff80UL) << 20) /* bit 7 -> 27 */
  66. | ((val & 0x000000000000007fUL) << 13) /* bit 0 -> 13 */));
  67. ia64_patch(insn_addr - 1, 0x1ffffffffffUL, val >> 22);
  68. }
  69. void
  70. ia64_patch_imm60 (u64 insn_addr, u64 val)
  71. {
  72. ia64_patch(insn_addr,
  73. 0x011ffffe000UL, ( ((val & 0x0800000000000000UL) >> 23) /* bit 59 -> 36 */
  74. | ((val & 0x00000000000fffffUL) << 13) /* bit 0 -> 13 */));
  75. ia64_patch(insn_addr - 1, 0x1fffffffffcUL, val >> 18);
  76. }
  77. /*
  78. * We need sometimes to load the physical address of a kernel
  79. * object. Often we can convert the virtual address to physical
  80. * at execution time, but sometimes (either for performance reasons
  81. * or during error recovery) we cannot to this. Patch the marked
  82. * bundles to load the physical address.
  83. */
  84. void __init
  85. ia64_patch_vtop (unsigned long start, unsigned long end)
  86. {
  87. s32 *offp = (s32 *) start;
  88. u64 ip;
  89. while (offp < (s32 *) end) {
  90. ip = (u64) offp + *offp;
  91. /* replace virtual address with corresponding physical address: */
  92. ia64_patch_imm64(ip, ia64_tpa(get_imm64(ip)));
  93. ia64_fc((void *) ip);
  94. ++offp;
  95. }
  96. ia64_sync_i();
  97. ia64_srlz_i();
  98. }
  99. void
  100. ia64_patch_mckinley_e9 (unsigned long start, unsigned long end)
  101. {
  102. static int first_time = 1;
  103. int need_workaround;
  104. s32 *offp = (s32 *) start;
  105. u64 *wp;
  106. need_workaround = (local_cpu_data->family == 0x1f && local_cpu_data->model == 0);
  107. if (first_time) {
  108. first_time = 0;
  109. if (need_workaround)
  110. printk(KERN_INFO "Leaving McKinley Errata 9 workaround enabled\n");
  111. else
  112. printk(KERN_INFO "McKinley Errata 9 workaround not needed; "
  113. "disabling it\n");
  114. }
  115. if (need_workaround)
  116. return;
  117. while (offp < (s32 *) end) {
  118. wp = (u64 *) ia64_imva((char *) offp + *offp);
  119. wp[0] = 0x0000000100000000UL; /* nop.m 0; nop.i 0; nop.i 0 */
  120. wp[1] = 0x0004000000000200UL;
  121. wp[2] = 0x0000000100000011UL; /* nop.m 0; nop.i 0; br.ret.sptk.many b6 */
  122. wp[3] = 0x0084006880000200UL;
  123. ia64_fc(wp); ia64_fc(wp + 2);
  124. ++offp;
  125. }
  126. ia64_sync_i();
  127. ia64_srlz_i();
  128. }
  129. static void
  130. patch_fsyscall_table (unsigned long start, unsigned long end)
  131. {
  132. extern unsigned long fsyscall_table[NR_syscalls];
  133. s32 *offp = (s32 *) start;
  134. u64 ip;
  135. while (offp < (s32 *) end) {
  136. ip = (u64) ia64_imva((char *) offp + *offp);
  137. ia64_patch_imm64(ip, (u64) fsyscall_table);
  138. ia64_fc((void *) ip);
  139. ++offp;
  140. }
  141. ia64_sync_i();
  142. ia64_srlz_i();
  143. }
  144. static void
  145. patch_brl_fsys_bubble_down (unsigned long start, unsigned long end)
  146. {
  147. extern char fsys_bubble_down[];
  148. s32 *offp = (s32 *) start;
  149. u64 ip;
  150. while (offp < (s32 *) end) {
  151. ip = (u64) offp + *offp;
  152. ia64_patch_imm60((u64) ia64_imva((void *) ip),
  153. (u64) (fsys_bubble_down - (ip & -16)) / 16);
  154. ia64_fc((void *) ip);
  155. ++offp;
  156. }
  157. ia64_sync_i();
  158. ia64_srlz_i();
  159. }
  160. void
  161. ia64_patch_gate (void)
  162. {
  163. # define START(name) ((unsigned long) __start_gate_##name##_patchlist)
  164. # define END(name) ((unsigned long)__end_gate_##name##_patchlist)
  165. patch_fsyscall_table(START(fsyscall), END(fsyscall));
  166. patch_brl_fsys_bubble_down(START(brl_fsys_bubble_down), END(brl_fsys_bubble_down));
  167. ia64_patch_vtop(START(vtop), END(vtop));
  168. ia64_patch_mckinley_e9(START(mckinley_e9), END(mckinley_e9));
  169. }