cpufeature.h 7.6 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219
  1. /* SPDX-License-Identifier: GPL-2.0 */
  2. #ifndef _ASM_X86_CPUFEATURE_H
  3. #define _ASM_X86_CPUFEATURE_H
  4. #include <asm/processor.h>
  5. #if defined(__KERNEL__) && !defined(__ASSEMBLY__)
  6. #include <asm/asm.h>
  7. #include <linux/bitops.h>
  8. enum cpuid_leafs
  9. {
  10. CPUID_1_EDX = 0,
  11. CPUID_8000_0001_EDX,
  12. CPUID_8086_0001_EDX,
  13. CPUID_LNX_1,
  14. CPUID_1_ECX,
  15. CPUID_C000_0001_EDX,
  16. CPUID_8000_0001_ECX,
  17. CPUID_LNX_2,
  18. CPUID_LNX_3,
  19. CPUID_7_0_EBX,
  20. CPUID_D_1_EAX,
  21. CPUID_F_0_EDX,
  22. CPUID_F_1_EDX,
  23. CPUID_8000_0008_EBX,
  24. CPUID_6_EAX,
  25. CPUID_8000_000A_EDX,
  26. CPUID_7_ECX,
  27. CPUID_8000_0007_EBX,
  28. };
  29. #ifdef CONFIG_X86_FEATURE_NAMES
  30. extern const char * const x86_cap_flags[NCAPINTS*32];
  31. extern const char * const x86_power_flags[32];
  32. #define X86_CAP_FMT "%s"
  33. #define x86_cap_flag(flag) x86_cap_flags[flag]
  34. #else
  35. #define X86_CAP_FMT "%d:%d"
  36. #define x86_cap_flag(flag) ((flag) >> 5), ((flag) & 31)
  37. #endif
  38. /*
  39. * In order to save room, we index into this array by doing
  40. * X86_BUG_<name> - NCAPINTS*32.
  41. */
  42. extern const char * const x86_bug_flags[NBUGINTS*32];
  43. #define test_cpu_cap(c, bit) \
  44. test_bit(bit, (unsigned long *)((c)->x86_capability))
  45. /*
  46. * There are 32 bits/features in each mask word. The high bits
  47. * (selected with (bit>>5) give us the word number and the low 5
  48. * bits give us the bit/feature number inside the word.
  49. * (1UL<<((bit)&31) gives us a mask for the feature_bit so we can
  50. * see if it is set in the mask word.
  51. */
  52. #define CHECK_BIT_IN_MASK_WORD(maskname, word, bit) \
  53. (((bit)>>5)==(word) && (1UL<<((bit)&31) & maskname##word ))
  54. #define REQUIRED_MASK_BIT_SET(feature_bit) \
  55. ( CHECK_BIT_IN_MASK_WORD(REQUIRED_MASK, 0, feature_bit) || \
  56. CHECK_BIT_IN_MASK_WORD(REQUIRED_MASK, 1, feature_bit) || \
  57. CHECK_BIT_IN_MASK_WORD(REQUIRED_MASK, 2, feature_bit) || \
  58. CHECK_BIT_IN_MASK_WORD(REQUIRED_MASK, 3, feature_bit) || \
  59. CHECK_BIT_IN_MASK_WORD(REQUIRED_MASK, 4, feature_bit) || \
  60. CHECK_BIT_IN_MASK_WORD(REQUIRED_MASK, 5, feature_bit) || \
  61. CHECK_BIT_IN_MASK_WORD(REQUIRED_MASK, 6, feature_bit) || \
  62. CHECK_BIT_IN_MASK_WORD(REQUIRED_MASK, 7, feature_bit) || \
  63. CHECK_BIT_IN_MASK_WORD(REQUIRED_MASK, 8, feature_bit) || \
  64. CHECK_BIT_IN_MASK_WORD(REQUIRED_MASK, 9, feature_bit) || \
  65. CHECK_BIT_IN_MASK_WORD(REQUIRED_MASK, 10, feature_bit) || \
  66. CHECK_BIT_IN_MASK_WORD(REQUIRED_MASK, 11, feature_bit) || \
  67. CHECK_BIT_IN_MASK_WORD(REQUIRED_MASK, 12, feature_bit) || \
  68. CHECK_BIT_IN_MASK_WORD(REQUIRED_MASK, 13, feature_bit) || \
  69. CHECK_BIT_IN_MASK_WORD(REQUIRED_MASK, 14, feature_bit) || \
  70. CHECK_BIT_IN_MASK_WORD(REQUIRED_MASK, 15, feature_bit) || \
  71. CHECK_BIT_IN_MASK_WORD(REQUIRED_MASK, 16, feature_bit) || \
  72. CHECK_BIT_IN_MASK_WORD(REQUIRED_MASK, 17, feature_bit) || \
  73. REQUIRED_MASK_CHECK || \
  74. BUILD_BUG_ON_ZERO(NCAPINTS != 18))
  75. #define DISABLED_MASK_BIT_SET(feature_bit) \
  76. ( CHECK_BIT_IN_MASK_WORD(DISABLED_MASK, 0, feature_bit) || \
  77. CHECK_BIT_IN_MASK_WORD(DISABLED_MASK, 1, feature_bit) || \
  78. CHECK_BIT_IN_MASK_WORD(DISABLED_MASK, 2, feature_bit) || \
  79. CHECK_BIT_IN_MASK_WORD(DISABLED_MASK, 3, feature_bit) || \
  80. CHECK_BIT_IN_MASK_WORD(DISABLED_MASK, 4, feature_bit) || \
  81. CHECK_BIT_IN_MASK_WORD(DISABLED_MASK, 5, feature_bit) || \
  82. CHECK_BIT_IN_MASK_WORD(DISABLED_MASK, 6, feature_bit) || \
  83. CHECK_BIT_IN_MASK_WORD(DISABLED_MASK, 7, feature_bit) || \
  84. CHECK_BIT_IN_MASK_WORD(DISABLED_MASK, 8, feature_bit) || \
  85. CHECK_BIT_IN_MASK_WORD(DISABLED_MASK, 9, feature_bit) || \
  86. CHECK_BIT_IN_MASK_WORD(DISABLED_MASK, 10, feature_bit) || \
  87. CHECK_BIT_IN_MASK_WORD(DISABLED_MASK, 11, feature_bit) || \
  88. CHECK_BIT_IN_MASK_WORD(DISABLED_MASK, 12, feature_bit) || \
  89. CHECK_BIT_IN_MASK_WORD(DISABLED_MASK, 13, feature_bit) || \
  90. CHECK_BIT_IN_MASK_WORD(DISABLED_MASK, 14, feature_bit) || \
  91. CHECK_BIT_IN_MASK_WORD(DISABLED_MASK, 15, feature_bit) || \
  92. CHECK_BIT_IN_MASK_WORD(DISABLED_MASK, 16, feature_bit) || \
  93. CHECK_BIT_IN_MASK_WORD(DISABLED_MASK, 17, feature_bit) || \
  94. DISABLED_MASK_CHECK || \
  95. BUILD_BUG_ON_ZERO(NCAPINTS != 18))
  96. #define cpu_has(c, bit) \
  97. (__builtin_constant_p(bit) && REQUIRED_MASK_BIT_SET(bit) ? 1 : \
  98. test_cpu_cap(c, bit))
  99. #define this_cpu_has(bit) \
  100. (__builtin_constant_p(bit) && REQUIRED_MASK_BIT_SET(bit) ? 1 : \
  101. x86_this_cpu_test_bit(bit, (unsigned long *)&cpu_info.x86_capability))
  102. /*
  103. * This macro is for detection of features which need kernel
  104. * infrastructure to be used. It may *not* directly test the CPU
  105. * itself. Use the cpu_has() family if you want true runtime
  106. * testing of CPU features, like in hypervisor code where you are
  107. * supporting a possible guest feature where host support for it
  108. * is not relevant.
  109. */
  110. #define cpu_feature_enabled(bit) \
  111. (__builtin_constant_p(bit) && DISABLED_MASK_BIT_SET(bit) ? 0 : static_cpu_has(bit))
  112. #define boot_cpu_has(bit) cpu_has(&boot_cpu_data, bit)
  113. #define set_cpu_cap(c, bit) set_bit(bit, (unsigned long *)((c)->x86_capability))
  114. extern void setup_clear_cpu_cap(unsigned int bit);
  115. extern void clear_cpu_cap(struct cpuinfo_x86 *c, unsigned int bit);
  116. #define setup_force_cpu_cap(bit) do { \
  117. set_cpu_cap(&boot_cpu_data, bit); \
  118. set_bit(bit, (unsigned long *)cpu_caps_set); \
  119. } while (0)
  120. #define setup_force_cpu_bug(bit) setup_force_cpu_cap(bit)
  121. #if defined(CC_HAVE_ASM_GOTO) && defined(CONFIG_X86_FAST_FEATURE_TESTS)
  122. /*
  123. * Static testing of CPU features. Used the same as boot_cpu_has().
  124. * These will statically patch the target code for additional
  125. * performance.
  126. */
  127. static __always_inline __pure bool _static_cpu_has(u16 bit)
  128. {
  129. asm_volatile_goto("1: jmp 6f\n"
  130. "2:\n"
  131. ".skip -(((5f-4f) - (2b-1b)) > 0) * "
  132. "((5f-4f) - (2b-1b)),0x90\n"
  133. "3:\n"
  134. ".section .altinstructions,\"a\"\n"
  135. " .long 1b - .\n" /* src offset */
  136. " .long 4f - .\n" /* repl offset */
  137. " .word %P1\n" /* always replace */
  138. " .byte 3b - 1b\n" /* src len */
  139. " .byte 5f - 4f\n" /* repl len */
  140. " .byte 3b - 2b\n" /* pad len */
  141. ".previous\n"
  142. ".section .altinstr_replacement,\"ax\"\n"
  143. "4: jmp %l[t_no]\n"
  144. "5:\n"
  145. ".previous\n"
  146. ".section .altinstructions,\"a\"\n"
  147. " .long 1b - .\n" /* src offset */
  148. " .long 0\n" /* no replacement */
  149. " .word %P0\n" /* feature bit */
  150. " .byte 3b - 1b\n" /* src len */
  151. " .byte 0\n" /* repl len */
  152. " .byte 0\n" /* pad len */
  153. ".previous\n"
  154. ".section .altinstr_aux,\"ax\"\n"
  155. "6:\n"
  156. " testb %[bitnum],%[cap_byte]\n"
  157. " jnz %l[t_yes]\n"
  158. " jmp %l[t_no]\n"
  159. ".previous\n"
  160. : : "i" (bit), "i" (X86_FEATURE_ALWAYS),
  161. [bitnum] "i" (1 << (bit & 7)),
  162. [cap_byte] "m" (((const char *)boot_cpu_data.x86_capability)[bit >> 3])
  163. : : t_yes, t_no);
  164. t_yes:
  165. return true;
  166. t_no:
  167. return false;
  168. }
  169. #define static_cpu_has(bit) \
  170. ( \
  171. __builtin_constant_p(boot_cpu_has(bit)) ? \
  172. boot_cpu_has(bit) : \
  173. _static_cpu_has(bit) \
  174. )
  175. #else
  176. /*
  177. * Fall back to dynamic for gcc versions which don't support asm goto. Should be
  178. * a minority now anyway.
  179. */
  180. #define static_cpu_has(bit) boot_cpu_has(bit)
  181. #endif
  182. #define cpu_has_bug(c, bit) cpu_has(c, (bit))
  183. #define set_cpu_bug(c, bit) set_cpu_cap(c, (bit))
  184. #define clear_cpu_bug(c, bit) clear_cpu_cap(c, (bit))
  185. #define static_cpu_has_bug(bit) static_cpu_has((bit))
  186. #define boot_cpu_has_bug(bit) cpu_has_bug(&boot_cpu_data, (bit))
  187. #define boot_cpu_set_bug(bit) set_cpu_cap(&boot_cpu_data, (bit))
  188. #define MAX_CPU_FEATURES (NCAPINTS * 32)
  189. #define cpu_have_feature boot_cpu_has
  190. #define CPU_FEATURE_TYPEFMT "x86,ven%04Xfam%04Xmod%04X"
  191. #define CPU_FEATURE_TYPEVAL boot_cpu_data.x86_vendor, boot_cpu_data.x86, \
  192. boot_cpu_data.x86_model
  193. #endif /* defined(__KERNEL__) && !defined(__ASSEMBLY__) */
  194. #endif /* _ASM_X86_CPUFEATURE_H */