powernow-k8.h 7.7 KB

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  1. /*
  2. * (c) 2003-2006 Advanced Micro Devices, Inc.
  3. * Your use of this code is subject to the terms and conditions of the
  4. * GNU general public license version 2. See "COPYING" or
  5. * http://www.gnu.org/licenses/gpl.html
  6. */
  7. struct powernow_k8_data {
  8. unsigned int cpu;
  9. u32 numps; /* number of p-states */
  10. u32 batps; /* number of p-states supported on battery */
  11. u32 max_hw_pstate; /* maximum legal hardware pstate */
  12. /* these values are constant when the PSB is used to determine
  13. * vid/fid pairings, but are modified during the ->target() call
  14. * when ACPI is used */
  15. u32 rvo; /* ramp voltage offset */
  16. u32 irt; /* isochronous relief time */
  17. u32 vidmvs; /* usable value calculated from mvs */
  18. u32 vstable; /* voltage stabilization time, units 20 us */
  19. u32 plllock; /* pll lock time, units 1 us */
  20. u32 exttype; /* extended interface = 1 */
  21. /* keep track of the current fid / vid or pstate */
  22. u32 currvid, currfid, currpstate;
  23. /* the powernow_table includes all frequency and vid/fid pairings:
  24. * fid are the lower 8 bits of the index, vid are the upper 8 bits.
  25. * frequency is in kHz */
  26. struct cpufreq_frequency_table *powernow_table;
  27. #ifdef CONFIG_X86_POWERNOW_K8_ACPI
  28. /* the acpi table needs to be kept. it's only available if ACPI was
  29. * used to determine valid frequency/vid/fid states */
  30. struct acpi_processor_performance acpi_data;
  31. #endif
  32. /* we need to keep track of associated cores, but let cpufreq
  33. * handle hotplug events - so just point at cpufreq pol->cpus
  34. * structure */
  35. cpumask_t *available_cores;
  36. };
  37. /* processor's cpuid instruction support */
  38. #define CPUID_PROCESSOR_SIGNATURE 1 /* function 1 */
  39. #define CPUID_XFAM 0x0ff00000 /* extended family */
  40. #define CPUID_XFAM_K8 0
  41. #define CPUID_XMOD 0x000f0000 /* extended model */
  42. #define CPUID_XMOD_REV_MASK 0x000c0000
  43. #define CPUID_XFAM_10H 0x00100000 /* family 0x10 */
  44. #define CPUID_USE_XFAM_XMOD 0x00000f00
  45. #define CPUID_GET_MAX_CAPABILITIES 0x80000000
  46. #define CPUID_FREQ_VOLT_CAPABILITIES 0x80000007
  47. #define P_STATE_TRANSITION_CAPABLE 6
  48. /* Model Specific Registers for p-state transitions. MSRs are 64-bit. For */
  49. /* writes (wrmsr - opcode 0f 30), the register number is placed in ecx, and */
  50. /* the value to write is placed in edx:eax. For reads (rdmsr - opcode 0f 32), */
  51. /* the register number is placed in ecx, and the data is returned in edx:eax. */
  52. #define MSR_FIDVID_CTL 0xc0010041
  53. #define MSR_FIDVID_STATUS 0xc0010042
  54. /* Field definitions within the FID VID Low Control MSR : */
  55. #define MSR_C_LO_INIT_FID_VID 0x00010000
  56. #define MSR_C_LO_NEW_VID 0x00003f00
  57. #define MSR_C_LO_NEW_FID 0x0000003f
  58. #define MSR_C_LO_VID_SHIFT 8
  59. /* Field definitions within the FID VID High Control MSR : */
  60. #define MSR_C_HI_STP_GNT_TO 0x000fffff
  61. /* Field definitions within the FID VID Low Status MSR : */
  62. #define MSR_S_LO_CHANGE_PENDING 0x80000000 /* cleared when completed */
  63. #define MSR_S_LO_MAX_RAMP_VID 0x3f000000
  64. #define MSR_S_LO_MAX_FID 0x003f0000
  65. #define MSR_S_LO_START_FID 0x00003f00
  66. #define MSR_S_LO_CURRENT_FID 0x0000003f
  67. /* Field definitions within the FID VID High Status MSR : */
  68. #define MSR_S_HI_MIN_WORKING_VID 0x3f000000
  69. #define MSR_S_HI_MAX_WORKING_VID 0x003f0000
  70. #define MSR_S_HI_START_VID 0x00003f00
  71. #define MSR_S_HI_CURRENT_VID 0x0000003f
  72. #define MSR_C_HI_STP_GNT_BENIGN 0x00000001
  73. /* Hardware Pstate _PSS and MSR definitions */
  74. #define USE_HW_PSTATE 0x00000080
  75. #define HW_PSTATE_MASK 0x00000007
  76. #define HW_PSTATE_VALID_MASK 0x80000000
  77. #define HW_PSTATE_MAX_MASK 0x000000f0
  78. #define HW_PSTATE_MAX_SHIFT 4
  79. #define MSR_PSTATE_DEF_BASE 0xc0010064 /* base of Pstate MSRs */
  80. #define MSR_PSTATE_STATUS 0xc0010063 /* Pstate Status MSR */
  81. #define MSR_PSTATE_CTRL 0xc0010062 /* Pstate control MSR */
  82. #define MSR_PSTATE_CUR_LIMIT 0xc0010061 /* pstate current limit MSR */
  83. /* define the two driver architectures */
  84. #define CPU_OPTERON 0
  85. #define CPU_HW_PSTATE 1
  86. /*
  87. * There are restrictions frequencies have to follow:
  88. * - only 1 entry in the low fid table ( <=1.4GHz )
  89. * - lowest entry in the high fid table must be >= 2 * the entry in the
  90. * low fid table
  91. * - lowest entry in the high fid table must be a <= 200MHz + 2 * the entry
  92. * in the low fid table
  93. * - the parts can only step at <= 200 MHz intervals, odd fid values are
  94. * supported in revision G and later revisions.
  95. * - lowest frequency must be >= interprocessor hypertransport link speed
  96. * (only applies to MP systems obviously)
  97. */
  98. /* fids (frequency identifiers) are arranged in 2 tables - lo and hi */
  99. #define LO_FID_TABLE_TOP 7 /* fid values marking the boundary */
  100. #define HI_FID_TABLE_BOTTOM 8 /* between the low and high tables */
  101. #define LO_VCOFREQ_TABLE_TOP 1400 /* corresponding vco frequency values */
  102. #define HI_VCOFREQ_TABLE_BOTTOM 1600
  103. #define MIN_FREQ_RESOLUTION 200 /* fids jump by 2 matching freq jumps by 200 */
  104. #define MAX_FID 0x2a /* Spec only gives FID values as far as 5 GHz */
  105. #define LEAST_VID 0x3e /* Lowest (numerically highest) useful vid value */
  106. #define MIN_FREQ 800 /* Min and max freqs, per spec */
  107. #define MAX_FREQ 5000
  108. #define INVALID_FID_MASK 0xffffffc0 /* not a valid fid if these bits are set */
  109. #define INVALID_VID_MASK 0xffffffc0 /* not a valid vid if these bits are set */
  110. #define VID_OFF 0x3f
  111. #define STOP_GRANT_5NS 1 /* min poss memory access latency for voltage change */
  112. #define PLL_LOCK_CONVERSION (1000/5) /* ms to ns, then divide by clock period */
  113. #define MAXIMUM_VID_STEPS 1 /* Current cpus only allow a single step of 25mV */
  114. #define VST_UNITS_20US 20 /* Voltage Stabilization Time is in units of 20us */
  115. /*
  116. * Most values of interest are encoded in a single field of the _PSS
  117. * entries: the "control" value.
  118. */
  119. #define IRT_SHIFT 30
  120. #define RVO_SHIFT 28
  121. #define EXT_TYPE_SHIFT 27
  122. #define PLL_L_SHIFT 20
  123. #define MVS_SHIFT 18
  124. #define VST_SHIFT 11
  125. #define VID_SHIFT 6
  126. #define IRT_MASK 3
  127. #define RVO_MASK 3
  128. #define EXT_TYPE_MASK 1
  129. #define PLL_L_MASK 0x7f
  130. #define MVS_MASK 3
  131. #define VST_MASK 0x7f
  132. #define VID_MASK 0x1f
  133. #define FID_MASK 0x1f
  134. #define EXT_VID_MASK 0x3f
  135. #define EXT_FID_MASK 0x3f
  136. /*
  137. * Version 1.4 of the PSB table. This table is constructed by BIOS and is
  138. * to tell the OS's power management driver which VIDs and FIDs are
  139. * supported by this particular processor.
  140. * If the data in the PSB / PST is wrong, then this driver will program the
  141. * wrong values into hardware, which is very likely to lead to a crash.
  142. */
  143. #define PSB_ID_STRING "AMDK7PNOW!"
  144. #define PSB_ID_STRING_LEN 10
  145. #define PSB_VERSION_1_4 0x14
  146. struct psb_s {
  147. u8 signature[10];
  148. u8 tableversion;
  149. u8 flags1;
  150. u16 vstable;
  151. u8 flags2;
  152. u8 num_tables;
  153. u32 cpuid;
  154. u8 plllocktime;
  155. u8 maxfid;
  156. u8 maxvid;
  157. u8 numps;
  158. };
  159. /* Pairs of fid/vid values are appended to the version 1.4 PSB table. */
  160. struct pst_s {
  161. u8 fid;
  162. u8 vid;
  163. };
  164. #define dprintk(msg...) cpufreq_debug_printk(CPUFREQ_DEBUG_DRIVER, "powernow-k8", msg)
  165. static int core_voltage_pre_transition(struct powernow_k8_data *data, u32 reqvid);
  166. static int core_voltage_post_transition(struct powernow_k8_data *data, u32 reqvid);
  167. static int core_frequency_transition(struct powernow_k8_data *data, u32 reqfid);
  168. static void powernow_k8_acpi_pst_values(struct powernow_k8_data *data, unsigned int index);
  169. #ifdef CONFIG_X86_POWERNOW_K8_ACPI
  170. static int fill_powernow_table_pstate(struct powernow_k8_data *data, struct cpufreq_frequency_table *powernow_table);
  171. static int fill_powernow_table_fidvid(struct powernow_k8_data *data, struct cpufreq_frequency_table *powernow_table);
  172. #endif
  173. #ifdef CONFIG_SMP
  174. static inline void define_siblings(int cpu, cpumask_t cpu_sharedcore_mask[])
  175. {
  176. }
  177. #else
  178. static inline void define_siblings(int cpu, cpumask_t cpu_sharedcore_mask[])
  179. {
  180. cpu_set(0, cpu_sharedcore_mask[0]);
  181. }
  182. #endif