rsdump.c 31 KB

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  1. /*******************************************************************************
  2. *
  3. * Module Name: rsdump - Functions to display the resource structures.
  4. *
  5. ******************************************************************************/
  6. /*
  7. * Copyright (C) 2000 - 2012, Intel Corp.
  8. * All rights reserved.
  9. *
  10. * Redistribution and use in source and binary forms, with or without
  11. * modification, are permitted provided that the following conditions
  12. * are met:
  13. * 1. Redistributions of source code must retain the above copyright
  14. * notice, this list of conditions, and the following disclaimer,
  15. * without modification.
  16. * 2. Redistributions in binary form must reproduce at minimum a disclaimer
  17. * substantially similar to the "NO WARRANTY" disclaimer below
  18. * ("Disclaimer") and any redistribution must be conditioned upon
  19. * including a substantially similar Disclaimer requirement for further
  20. * binary redistribution.
  21. * 3. Neither the names of the above-listed copyright holders nor the names
  22. * of any contributors may be used to endorse or promote products derived
  23. * from this software without specific prior written permission.
  24. *
  25. * Alternatively, this software may be distributed under the terms of the
  26. * GNU General Public License ("GPL") version 2 as published by the Free
  27. * Software Foundation.
  28. *
  29. * NO WARRANTY
  30. * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
  31. * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
  32. * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTIBILITY AND FITNESS FOR
  33. * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
  34. * HOLDERS OR CONTRIBUTORS BE LIABLE FOR SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
  35. * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
  36. * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
  37. * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
  38. * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING
  39. * IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
  40. * POSSIBILITY OF SUCH DAMAGES.
  41. */
  42. #include <acpi/acpi.h>
  43. #include "accommon.h"
  44. #include "acresrc.h"
  45. #define _COMPONENT ACPI_RESOURCES
  46. ACPI_MODULE_NAME("rsdump")
  47. #if defined(ACPI_DEBUG_OUTPUT) || defined(ACPI_DEBUGGER)
  48. /* Local prototypes */
  49. static void acpi_rs_out_string(char *title, char *value);
  50. static void acpi_rs_out_integer8(char *title, u8 value);
  51. static void acpi_rs_out_integer16(char *title, u16 value);
  52. static void acpi_rs_out_integer32(char *title, u32 value);
  53. static void acpi_rs_out_integer64(char *title, u64 value);
  54. static void acpi_rs_out_title(char *title);
  55. static void acpi_rs_dump_byte_list(u16 length, u8 *data);
  56. static void acpi_rs_dump_word_list(u16 length, u16 *data);
  57. static void acpi_rs_dump_dword_list(u8 length, u32 *data);
  58. static void acpi_rs_dump_short_byte_list(u8 length, u8 *data);
  59. static void
  60. acpi_rs_dump_resource_source(struct acpi_resource_source *resource_source);
  61. static void acpi_rs_dump_address_common(union acpi_resource_data *resource);
  62. static void
  63. acpi_rs_dump_descriptor(void *resource, struct acpi_rsdump_info *table);
  64. #define ACPI_RSD_OFFSET(f) (u8) ACPI_OFFSET (union acpi_resource_data,f)
  65. #define ACPI_PRT_OFFSET(f) (u8) ACPI_OFFSET (struct acpi_pci_routing_table,f)
  66. #define ACPI_RSD_TABLE_SIZE(name) (sizeof(name) / sizeof (struct acpi_rsdump_info))
  67. /*******************************************************************************
  68. *
  69. * Resource Descriptor info tables
  70. *
  71. * Note: The first table entry must be a Title or Literal and must contain
  72. * the table length (number of table entries)
  73. *
  74. ******************************************************************************/
  75. struct acpi_rsdump_info acpi_rs_dump_irq[7] = {
  76. {ACPI_RSD_TITLE, ACPI_RSD_TABLE_SIZE(acpi_rs_dump_irq), "IRQ", NULL},
  77. {ACPI_RSD_UINT8, ACPI_RSD_OFFSET(irq.descriptor_length),
  78. "Descriptor Length", NULL},
  79. {ACPI_RSD_1BITFLAG, ACPI_RSD_OFFSET(irq.triggering), "Triggering",
  80. acpi_gbl_he_decode},
  81. {ACPI_RSD_1BITFLAG, ACPI_RSD_OFFSET(irq.polarity), "Polarity",
  82. acpi_gbl_ll_decode},
  83. {ACPI_RSD_1BITFLAG, ACPI_RSD_OFFSET(irq.sharable), "Sharing",
  84. acpi_gbl_shr_decode},
  85. {ACPI_RSD_UINT8, ACPI_RSD_OFFSET(irq.interrupt_count),
  86. "Interrupt Count", NULL},
  87. {ACPI_RSD_SHORTLIST, ACPI_RSD_OFFSET(irq.interrupts[0]),
  88. "Interrupt List", NULL}
  89. };
  90. struct acpi_rsdump_info acpi_rs_dump_dma[6] = {
  91. {ACPI_RSD_TITLE, ACPI_RSD_TABLE_SIZE(acpi_rs_dump_dma), "DMA", NULL},
  92. {ACPI_RSD_2BITFLAG, ACPI_RSD_OFFSET(dma.type), "Speed",
  93. acpi_gbl_typ_decode},
  94. {ACPI_RSD_1BITFLAG, ACPI_RSD_OFFSET(dma.bus_master), "Mastering",
  95. acpi_gbl_bm_decode},
  96. {ACPI_RSD_2BITFLAG, ACPI_RSD_OFFSET(dma.transfer), "Transfer Type",
  97. acpi_gbl_siz_decode},
  98. {ACPI_RSD_UINT8, ACPI_RSD_OFFSET(dma.channel_count), "Channel Count",
  99. NULL},
  100. {ACPI_RSD_SHORTLIST, ACPI_RSD_OFFSET(dma.channels[0]), "Channel List",
  101. NULL}
  102. };
  103. struct acpi_rsdump_info acpi_rs_dump_start_dpf[4] = {
  104. {ACPI_RSD_TITLE, ACPI_RSD_TABLE_SIZE(acpi_rs_dump_start_dpf),
  105. "Start-Dependent-Functions", NULL},
  106. {ACPI_RSD_UINT8, ACPI_RSD_OFFSET(start_dpf.descriptor_length),
  107. "Descriptor Length", NULL},
  108. {ACPI_RSD_2BITFLAG, ACPI_RSD_OFFSET(start_dpf.compatibility_priority),
  109. "Compatibility Priority", acpi_gbl_config_decode},
  110. {ACPI_RSD_2BITFLAG, ACPI_RSD_OFFSET(start_dpf.performance_robustness),
  111. "Performance/Robustness", acpi_gbl_config_decode}
  112. };
  113. struct acpi_rsdump_info acpi_rs_dump_end_dpf[1] = {
  114. {ACPI_RSD_TITLE, ACPI_RSD_TABLE_SIZE(acpi_rs_dump_end_dpf),
  115. "End-Dependent-Functions", NULL}
  116. };
  117. struct acpi_rsdump_info acpi_rs_dump_io[6] = {
  118. {ACPI_RSD_TITLE, ACPI_RSD_TABLE_SIZE(acpi_rs_dump_io), "I/O", NULL},
  119. {ACPI_RSD_1BITFLAG, ACPI_RSD_OFFSET(io.io_decode), "Address Decoding",
  120. acpi_gbl_io_decode},
  121. {ACPI_RSD_UINT16, ACPI_RSD_OFFSET(io.minimum), "Address Minimum", NULL},
  122. {ACPI_RSD_UINT16, ACPI_RSD_OFFSET(io.maximum), "Address Maximum", NULL},
  123. {ACPI_RSD_UINT8, ACPI_RSD_OFFSET(io.alignment), "Alignment", NULL},
  124. {ACPI_RSD_UINT8, ACPI_RSD_OFFSET(io.address_length), "Address Length",
  125. NULL}
  126. };
  127. struct acpi_rsdump_info acpi_rs_dump_fixed_io[3] = {
  128. {ACPI_RSD_TITLE, ACPI_RSD_TABLE_SIZE(acpi_rs_dump_fixed_io),
  129. "Fixed I/O", NULL},
  130. {ACPI_RSD_UINT16, ACPI_RSD_OFFSET(fixed_io.address), "Address", NULL},
  131. {ACPI_RSD_UINT8, ACPI_RSD_OFFSET(fixed_io.address_length),
  132. "Address Length", NULL}
  133. };
  134. struct acpi_rsdump_info acpi_rs_dump_vendor[3] = {
  135. {ACPI_RSD_TITLE, ACPI_RSD_TABLE_SIZE(acpi_rs_dump_vendor),
  136. "Vendor Specific", NULL},
  137. {ACPI_RSD_UINT16, ACPI_RSD_OFFSET(vendor.byte_length), "Length", NULL},
  138. {ACPI_RSD_LONGLIST, ACPI_RSD_OFFSET(vendor.byte_data[0]), "Vendor Data",
  139. NULL}
  140. };
  141. struct acpi_rsdump_info acpi_rs_dump_end_tag[1] = {
  142. {ACPI_RSD_TITLE, ACPI_RSD_TABLE_SIZE(acpi_rs_dump_end_tag), "EndTag",
  143. NULL}
  144. };
  145. struct acpi_rsdump_info acpi_rs_dump_memory24[6] = {
  146. {ACPI_RSD_TITLE, ACPI_RSD_TABLE_SIZE(acpi_rs_dump_memory24),
  147. "24-Bit Memory Range", NULL},
  148. {ACPI_RSD_1BITFLAG, ACPI_RSD_OFFSET(memory24.write_protect),
  149. "Write Protect", acpi_gbl_rw_decode},
  150. {ACPI_RSD_UINT16, ACPI_RSD_OFFSET(memory24.minimum), "Address Minimum",
  151. NULL},
  152. {ACPI_RSD_UINT16, ACPI_RSD_OFFSET(memory24.maximum), "Address Maximum",
  153. NULL},
  154. {ACPI_RSD_UINT16, ACPI_RSD_OFFSET(memory24.alignment), "Alignment",
  155. NULL},
  156. {ACPI_RSD_UINT16, ACPI_RSD_OFFSET(memory24.address_length),
  157. "Address Length", NULL}
  158. };
  159. struct acpi_rsdump_info acpi_rs_dump_memory32[6] = {
  160. {ACPI_RSD_TITLE, ACPI_RSD_TABLE_SIZE(acpi_rs_dump_memory32),
  161. "32-Bit Memory Range", NULL},
  162. {ACPI_RSD_1BITFLAG, ACPI_RSD_OFFSET(memory32.write_protect),
  163. "Write Protect", acpi_gbl_rw_decode},
  164. {ACPI_RSD_UINT32, ACPI_RSD_OFFSET(memory32.minimum), "Address Minimum",
  165. NULL},
  166. {ACPI_RSD_UINT32, ACPI_RSD_OFFSET(memory32.maximum), "Address Maximum",
  167. NULL},
  168. {ACPI_RSD_UINT32, ACPI_RSD_OFFSET(memory32.alignment), "Alignment",
  169. NULL},
  170. {ACPI_RSD_UINT32, ACPI_RSD_OFFSET(memory32.address_length),
  171. "Address Length", NULL}
  172. };
  173. struct acpi_rsdump_info acpi_rs_dump_fixed_memory32[4] = {
  174. {ACPI_RSD_TITLE, ACPI_RSD_TABLE_SIZE(acpi_rs_dump_fixed_memory32),
  175. "32-Bit Fixed Memory Range", NULL},
  176. {ACPI_RSD_1BITFLAG, ACPI_RSD_OFFSET(fixed_memory32.write_protect),
  177. "Write Protect", acpi_gbl_rw_decode},
  178. {ACPI_RSD_UINT32, ACPI_RSD_OFFSET(fixed_memory32.address), "Address",
  179. NULL},
  180. {ACPI_RSD_UINT32, ACPI_RSD_OFFSET(fixed_memory32.address_length),
  181. "Address Length", NULL}
  182. };
  183. struct acpi_rsdump_info acpi_rs_dump_address16[8] = {
  184. {ACPI_RSD_TITLE, ACPI_RSD_TABLE_SIZE(acpi_rs_dump_address16),
  185. "16-Bit WORD Address Space", NULL},
  186. {ACPI_RSD_ADDRESS, 0, NULL, NULL},
  187. {ACPI_RSD_UINT16, ACPI_RSD_OFFSET(address16.granularity), "Granularity",
  188. NULL},
  189. {ACPI_RSD_UINT16, ACPI_RSD_OFFSET(address16.minimum), "Address Minimum",
  190. NULL},
  191. {ACPI_RSD_UINT16, ACPI_RSD_OFFSET(address16.maximum), "Address Maximum",
  192. NULL},
  193. {ACPI_RSD_UINT16, ACPI_RSD_OFFSET(address16.translation_offset),
  194. "Translation Offset", NULL},
  195. {ACPI_RSD_UINT16, ACPI_RSD_OFFSET(address16.address_length),
  196. "Address Length", NULL},
  197. {ACPI_RSD_SOURCE, ACPI_RSD_OFFSET(address16.resource_source), NULL, NULL}
  198. };
  199. struct acpi_rsdump_info acpi_rs_dump_address32[8] = {
  200. {ACPI_RSD_TITLE, ACPI_RSD_TABLE_SIZE(acpi_rs_dump_address32),
  201. "32-Bit DWORD Address Space", NULL},
  202. {ACPI_RSD_ADDRESS, 0, NULL, NULL},
  203. {ACPI_RSD_UINT32, ACPI_RSD_OFFSET(address32.granularity), "Granularity",
  204. NULL},
  205. {ACPI_RSD_UINT32, ACPI_RSD_OFFSET(address32.minimum), "Address Minimum",
  206. NULL},
  207. {ACPI_RSD_UINT32, ACPI_RSD_OFFSET(address32.maximum), "Address Maximum",
  208. NULL},
  209. {ACPI_RSD_UINT32, ACPI_RSD_OFFSET(address32.translation_offset),
  210. "Translation Offset", NULL},
  211. {ACPI_RSD_UINT32, ACPI_RSD_OFFSET(address32.address_length),
  212. "Address Length", NULL},
  213. {ACPI_RSD_SOURCE, ACPI_RSD_OFFSET(address32.resource_source), NULL, NULL}
  214. };
  215. struct acpi_rsdump_info acpi_rs_dump_address64[8] = {
  216. {ACPI_RSD_TITLE, ACPI_RSD_TABLE_SIZE(acpi_rs_dump_address64),
  217. "64-Bit QWORD Address Space", NULL},
  218. {ACPI_RSD_ADDRESS, 0, NULL, NULL},
  219. {ACPI_RSD_UINT64, ACPI_RSD_OFFSET(address64.granularity), "Granularity",
  220. NULL},
  221. {ACPI_RSD_UINT64, ACPI_RSD_OFFSET(address64.minimum), "Address Minimum",
  222. NULL},
  223. {ACPI_RSD_UINT64, ACPI_RSD_OFFSET(address64.maximum), "Address Maximum",
  224. NULL},
  225. {ACPI_RSD_UINT64, ACPI_RSD_OFFSET(address64.translation_offset),
  226. "Translation Offset", NULL},
  227. {ACPI_RSD_UINT64, ACPI_RSD_OFFSET(address64.address_length),
  228. "Address Length", NULL},
  229. {ACPI_RSD_SOURCE, ACPI_RSD_OFFSET(address64.resource_source), NULL, NULL}
  230. };
  231. struct acpi_rsdump_info acpi_rs_dump_ext_address64[8] = {
  232. {ACPI_RSD_TITLE, ACPI_RSD_TABLE_SIZE(acpi_rs_dump_ext_address64),
  233. "64-Bit Extended Address Space", NULL},
  234. {ACPI_RSD_ADDRESS, 0, NULL, NULL},
  235. {ACPI_RSD_UINT64, ACPI_RSD_OFFSET(ext_address64.granularity),
  236. "Granularity", NULL},
  237. {ACPI_RSD_UINT64, ACPI_RSD_OFFSET(ext_address64.minimum),
  238. "Address Minimum", NULL},
  239. {ACPI_RSD_UINT64, ACPI_RSD_OFFSET(ext_address64.maximum),
  240. "Address Maximum", NULL},
  241. {ACPI_RSD_UINT64, ACPI_RSD_OFFSET(ext_address64.translation_offset),
  242. "Translation Offset", NULL},
  243. {ACPI_RSD_UINT64, ACPI_RSD_OFFSET(ext_address64.address_length),
  244. "Address Length", NULL},
  245. {ACPI_RSD_UINT64, ACPI_RSD_OFFSET(ext_address64.type_specific),
  246. "Type-Specific Attribute", NULL}
  247. };
  248. struct acpi_rsdump_info acpi_rs_dump_ext_irq[8] = {
  249. {ACPI_RSD_TITLE, ACPI_RSD_TABLE_SIZE(acpi_rs_dump_ext_irq),
  250. "Extended IRQ", NULL},
  251. {ACPI_RSD_1BITFLAG, ACPI_RSD_OFFSET(extended_irq.producer_consumer),
  252. "Type", acpi_gbl_consume_decode},
  253. {ACPI_RSD_1BITFLAG, ACPI_RSD_OFFSET(extended_irq.triggering),
  254. "Triggering", acpi_gbl_he_decode},
  255. {ACPI_RSD_1BITFLAG, ACPI_RSD_OFFSET(extended_irq.polarity), "Polarity",
  256. acpi_gbl_ll_decode},
  257. {ACPI_RSD_1BITFLAG, ACPI_RSD_OFFSET(extended_irq.sharable), "Sharing",
  258. acpi_gbl_shr_decode},
  259. {ACPI_RSD_SOURCE, ACPI_RSD_OFFSET(extended_irq.resource_source), NULL,
  260. NULL},
  261. {ACPI_RSD_UINT8, ACPI_RSD_OFFSET(extended_irq.interrupt_count),
  262. "Interrupt Count", NULL},
  263. {ACPI_RSD_DWORDLIST, ACPI_RSD_OFFSET(extended_irq.interrupts[0]),
  264. "Interrupt List", NULL}
  265. };
  266. struct acpi_rsdump_info acpi_rs_dump_generic_reg[6] = {
  267. {ACPI_RSD_TITLE, ACPI_RSD_TABLE_SIZE(acpi_rs_dump_generic_reg),
  268. "Generic Register", NULL},
  269. {ACPI_RSD_UINT8, ACPI_RSD_OFFSET(generic_reg.space_id), "Space ID",
  270. NULL},
  271. {ACPI_RSD_UINT8, ACPI_RSD_OFFSET(generic_reg.bit_width), "Bit Width",
  272. NULL},
  273. {ACPI_RSD_UINT8, ACPI_RSD_OFFSET(generic_reg.bit_offset), "Bit Offset",
  274. NULL},
  275. {ACPI_RSD_UINT8, ACPI_RSD_OFFSET(generic_reg.access_size),
  276. "Access Size", NULL},
  277. {ACPI_RSD_UINT64, ACPI_RSD_OFFSET(generic_reg.address), "Address", NULL}
  278. };
  279. struct acpi_rsdump_info acpi_rs_dump_gpio[16] = {
  280. {ACPI_RSD_TITLE, ACPI_RSD_TABLE_SIZE(acpi_rs_dump_gpio), "GPIO", NULL},
  281. {ACPI_RSD_UINT8, ACPI_RSD_OFFSET(gpio.revision_id), "RevisionId", NULL},
  282. {ACPI_RSD_UINT8, ACPI_RSD_OFFSET(gpio.connection_type),
  283. "ConnectionType", acpi_gbl_ct_decode},
  284. {ACPI_RSD_1BITFLAG, ACPI_RSD_OFFSET(gpio.producer_consumer),
  285. "ProducerConsumer", acpi_gbl_consume_decode},
  286. {ACPI_RSD_UINT8, ACPI_RSD_OFFSET(gpio.pin_config), "PinConfig",
  287. acpi_gbl_ppc_decode},
  288. {ACPI_RSD_2BITFLAG, ACPI_RSD_OFFSET(gpio.sharable), "Sharable",
  289. acpi_gbl_shr_decode},
  290. {ACPI_RSD_2BITFLAG, ACPI_RSD_OFFSET(gpio.io_restriction),
  291. "IoRestriction", acpi_gbl_ior_decode},
  292. {ACPI_RSD_1BITFLAG, ACPI_RSD_OFFSET(gpio.triggering), "Triggering",
  293. acpi_gbl_he_decode},
  294. {ACPI_RSD_2BITFLAG, ACPI_RSD_OFFSET(gpio.polarity), "Polarity",
  295. acpi_gbl_ll_decode},
  296. {ACPI_RSD_UINT16, ACPI_RSD_OFFSET(gpio.drive_strength), "DriveStrength",
  297. NULL},
  298. {ACPI_RSD_UINT16, ACPI_RSD_OFFSET(gpio.debounce_timeout),
  299. "DebounceTimeout", NULL},
  300. {ACPI_RSD_SOURCE, ACPI_RSD_OFFSET(gpio.resource_source),
  301. "ResourceSource", NULL},
  302. {ACPI_RSD_UINT16, ACPI_RSD_OFFSET(gpio.pin_table_length),
  303. "PinTableLength", NULL},
  304. {ACPI_RSD_WORDLIST, ACPI_RSD_OFFSET(gpio.pin_table), "PinTable", NULL},
  305. {ACPI_RSD_UINT16, ACPI_RSD_OFFSET(gpio.vendor_length), "VendorLength",
  306. NULL},
  307. {ACPI_RSD_SHORTLISTX, ACPI_RSD_OFFSET(gpio.vendor_data), "VendorData",
  308. NULL},
  309. };
  310. struct acpi_rsdump_info acpi_rs_dump_fixed_dma[4] = {
  311. {ACPI_RSD_TITLE, ACPI_RSD_TABLE_SIZE(acpi_rs_dump_fixed_dma),
  312. "FixedDma", NULL},
  313. {ACPI_RSD_UINT16, ACPI_RSD_OFFSET(fixed_dma.request_lines),
  314. "RequestLines", NULL},
  315. {ACPI_RSD_UINT16, ACPI_RSD_OFFSET(fixed_dma.channels), "Channels",
  316. NULL},
  317. {ACPI_RSD_UINT8, ACPI_RSD_OFFSET(fixed_dma.width), "TransferWidth",
  318. acpi_gbl_dts_decode},
  319. };
  320. #define ACPI_RS_DUMP_COMMON_SERIAL_BUS \
  321. {ACPI_RSD_UINT8, ACPI_RSD_OFFSET (common_serial_bus.revision_id), "RevisionId", NULL}, \
  322. {ACPI_RSD_UINT8, ACPI_RSD_OFFSET (common_serial_bus.type), "Type", acpi_gbl_sbt_decode}, \
  323. {ACPI_RSD_1BITFLAG, ACPI_RSD_OFFSET (common_serial_bus.producer_consumer), "ProducerConsumer", acpi_gbl_consume_decode}, \
  324. {ACPI_RSD_1BITFLAG, ACPI_RSD_OFFSET (common_serial_bus.slave_mode), "SlaveMode", acpi_gbl_sm_decode}, \
  325. {ACPI_RSD_UINT8, ACPI_RSD_OFFSET (common_serial_bus.type_revision_id), "TypeRevisionId", NULL}, \
  326. {ACPI_RSD_UINT16, ACPI_RSD_OFFSET (common_serial_bus.type_data_length), "TypeDataLength", NULL}, \
  327. {ACPI_RSD_SOURCE, ACPI_RSD_OFFSET (common_serial_bus.resource_source), "ResourceSource", NULL}, \
  328. {ACPI_RSD_UINT16, ACPI_RSD_OFFSET (common_serial_bus.vendor_length), "VendorLength", NULL}, \
  329. {ACPI_RSD_SHORTLISTX,ACPI_RSD_OFFSET (common_serial_bus.vendor_data), "VendorData", NULL},
  330. struct acpi_rsdump_info acpi_rs_dump_common_serial_bus[10] = {
  331. {ACPI_RSD_TITLE, ACPI_RSD_TABLE_SIZE(acpi_rs_dump_common_serial_bus),
  332. "Common Serial Bus", NULL},
  333. ACPI_RS_DUMP_COMMON_SERIAL_BUS
  334. };
  335. struct acpi_rsdump_info acpi_rs_dump_i2c_serial_bus[13] = {
  336. {ACPI_RSD_TITLE, ACPI_RSD_TABLE_SIZE(acpi_rs_dump_i2c_serial_bus),
  337. "I2C Serial Bus", NULL},
  338. ACPI_RS_DUMP_COMMON_SERIAL_BUS {ACPI_RSD_1BITFLAG,
  339. ACPI_RSD_OFFSET(i2c_serial_bus.
  340. access_mode),
  341. "AccessMode", acpi_gbl_am_decode},
  342. {ACPI_RSD_UINT32, ACPI_RSD_OFFSET(i2c_serial_bus.connection_speed),
  343. "ConnectionSpeed", NULL},
  344. {ACPI_RSD_UINT16, ACPI_RSD_OFFSET(i2c_serial_bus.slave_address),
  345. "SlaveAddress", NULL},
  346. };
  347. struct acpi_rsdump_info acpi_rs_dump_spi_serial_bus[17] = {
  348. {ACPI_RSD_TITLE, ACPI_RSD_TABLE_SIZE(acpi_rs_dump_spi_serial_bus),
  349. "Spi Serial Bus", NULL},
  350. ACPI_RS_DUMP_COMMON_SERIAL_BUS {ACPI_RSD_1BITFLAG,
  351. ACPI_RSD_OFFSET(spi_serial_bus.
  352. wire_mode), "WireMode",
  353. acpi_gbl_wm_decode},
  354. {ACPI_RSD_1BITFLAG, ACPI_RSD_OFFSET(spi_serial_bus.device_polarity),
  355. "DevicePolarity", acpi_gbl_dp_decode},
  356. {ACPI_RSD_UINT8, ACPI_RSD_OFFSET(spi_serial_bus.data_bit_length),
  357. "DataBitLength", NULL},
  358. {ACPI_RSD_UINT8, ACPI_RSD_OFFSET(spi_serial_bus.clock_phase),
  359. "ClockPhase", acpi_gbl_cph_decode},
  360. {ACPI_RSD_UINT8, ACPI_RSD_OFFSET(spi_serial_bus.clock_polarity),
  361. "ClockPolarity", acpi_gbl_cpo_decode},
  362. {ACPI_RSD_UINT16, ACPI_RSD_OFFSET(spi_serial_bus.device_selection),
  363. "DeviceSelection", NULL},
  364. {ACPI_RSD_UINT32, ACPI_RSD_OFFSET(spi_serial_bus.connection_speed),
  365. "ConnectionSpeed", NULL},
  366. };
  367. struct acpi_rsdump_info acpi_rs_dump_uart_serial_bus[19] = {
  368. {ACPI_RSD_TITLE, ACPI_RSD_TABLE_SIZE(acpi_rs_dump_uart_serial_bus),
  369. "Uart Serial Bus", NULL},
  370. ACPI_RS_DUMP_COMMON_SERIAL_BUS {ACPI_RSD_2BITFLAG,
  371. ACPI_RSD_OFFSET(uart_serial_bus.
  372. flow_control),
  373. "FlowControl", acpi_gbl_fc_decode},
  374. {ACPI_RSD_2BITFLAG, ACPI_RSD_OFFSET(uart_serial_bus.stop_bits),
  375. "StopBits", acpi_gbl_sb_decode},
  376. {ACPI_RSD_3BITFLAG, ACPI_RSD_OFFSET(uart_serial_bus.data_bits),
  377. "DataBits", acpi_gbl_bpb_decode},
  378. {ACPI_RSD_1BITFLAG, ACPI_RSD_OFFSET(uart_serial_bus.endian), "Endian",
  379. acpi_gbl_ed_decode},
  380. {ACPI_RSD_UINT8, ACPI_RSD_OFFSET(uart_serial_bus.parity), "Parity",
  381. acpi_gbl_pt_decode},
  382. {ACPI_RSD_UINT8, ACPI_RSD_OFFSET(uart_serial_bus.lines_enabled),
  383. "LinesEnabled", NULL},
  384. {ACPI_RSD_UINT16, ACPI_RSD_OFFSET(uart_serial_bus.rx_fifo_size),
  385. "RxFifoSize", NULL},
  386. {ACPI_RSD_UINT16, ACPI_RSD_OFFSET(uart_serial_bus.tx_fifo_size),
  387. "TxFifoSize", NULL},
  388. {ACPI_RSD_UINT32, ACPI_RSD_OFFSET(uart_serial_bus.default_baud_rate),
  389. "ConnectionSpeed", NULL},
  390. };
  391. /*
  392. * Tables used for common address descriptor flag fields
  393. */
  394. static struct acpi_rsdump_info acpi_rs_dump_general_flags[5] = {
  395. {ACPI_RSD_TITLE, ACPI_RSD_TABLE_SIZE(acpi_rs_dump_general_flags), NULL,
  396. NULL},
  397. {ACPI_RSD_1BITFLAG, ACPI_RSD_OFFSET(address.producer_consumer),
  398. "Consumer/Producer", acpi_gbl_consume_decode},
  399. {ACPI_RSD_1BITFLAG, ACPI_RSD_OFFSET(address.decode), "Address Decode",
  400. acpi_gbl_dec_decode},
  401. {ACPI_RSD_1BITFLAG, ACPI_RSD_OFFSET(address.min_address_fixed),
  402. "Min Relocatability", acpi_gbl_min_decode},
  403. {ACPI_RSD_1BITFLAG, ACPI_RSD_OFFSET(address.max_address_fixed),
  404. "Max Relocatability", acpi_gbl_max_decode}
  405. };
  406. static struct acpi_rsdump_info acpi_rs_dump_memory_flags[5] = {
  407. {ACPI_RSD_LITERAL, ACPI_RSD_TABLE_SIZE(acpi_rs_dump_memory_flags),
  408. "Resource Type", (void *)"Memory Range"},
  409. {ACPI_RSD_1BITFLAG, ACPI_RSD_OFFSET(address.info.mem.write_protect),
  410. "Write Protect", acpi_gbl_rw_decode},
  411. {ACPI_RSD_2BITFLAG, ACPI_RSD_OFFSET(address.info.mem.caching),
  412. "Caching", acpi_gbl_mem_decode},
  413. {ACPI_RSD_2BITFLAG, ACPI_RSD_OFFSET(address.info.mem.range_type),
  414. "Range Type", acpi_gbl_mtp_decode},
  415. {ACPI_RSD_1BITFLAG, ACPI_RSD_OFFSET(address.info.mem.translation),
  416. "Translation", acpi_gbl_ttp_decode}
  417. };
  418. static struct acpi_rsdump_info acpi_rs_dump_io_flags[4] = {
  419. {ACPI_RSD_LITERAL, ACPI_RSD_TABLE_SIZE(acpi_rs_dump_io_flags),
  420. "Resource Type", (void *)"I/O Range"},
  421. {ACPI_RSD_2BITFLAG, ACPI_RSD_OFFSET(address.info.io.range_type),
  422. "Range Type", acpi_gbl_rng_decode},
  423. {ACPI_RSD_1BITFLAG, ACPI_RSD_OFFSET(address.info.io.translation),
  424. "Translation", acpi_gbl_ttp_decode},
  425. {ACPI_RSD_1BITFLAG, ACPI_RSD_OFFSET(address.info.io.translation_type),
  426. "Translation Type", acpi_gbl_trs_decode}
  427. };
  428. /*
  429. * Table used to dump _PRT contents
  430. */
  431. static struct acpi_rsdump_info acpi_rs_dump_prt[5] = {
  432. {ACPI_RSD_TITLE, ACPI_RSD_TABLE_SIZE(acpi_rs_dump_prt), NULL, NULL},
  433. {ACPI_RSD_UINT64, ACPI_PRT_OFFSET(address), "Address", NULL},
  434. {ACPI_RSD_UINT32, ACPI_PRT_OFFSET(pin), "Pin", NULL},
  435. {ACPI_RSD_STRING, ACPI_PRT_OFFSET(source[0]), "Source", NULL},
  436. {ACPI_RSD_UINT32, ACPI_PRT_OFFSET(source_index), "Source Index", NULL}
  437. };
  438. /*******************************************************************************
  439. *
  440. * FUNCTION: acpi_rs_dump_descriptor
  441. *
  442. * PARAMETERS: Resource
  443. *
  444. * RETURN: None
  445. *
  446. * DESCRIPTION:
  447. *
  448. ******************************************************************************/
  449. static void
  450. acpi_rs_dump_descriptor(void *resource, struct acpi_rsdump_info *table)
  451. {
  452. u8 *target = NULL;
  453. u8 *previous_target;
  454. char *name;
  455. u8 count;
  456. /* First table entry must contain the table length (# of table entries) */
  457. count = table->offset;
  458. while (count) {
  459. previous_target = target;
  460. target = ACPI_ADD_PTR(u8, resource, table->offset);
  461. name = table->name;
  462. switch (table->opcode) {
  463. case ACPI_RSD_TITLE:
  464. /*
  465. * Optional resource title
  466. */
  467. if (table->name) {
  468. acpi_os_printf("%s Resource\n", name);
  469. }
  470. break;
  471. /* Strings */
  472. case ACPI_RSD_LITERAL:
  473. acpi_rs_out_string(name,
  474. ACPI_CAST_PTR(char, table->pointer));
  475. break;
  476. case ACPI_RSD_STRING:
  477. acpi_rs_out_string(name, ACPI_CAST_PTR(char, target));
  478. break;
  479. /* Data items, 8/16/32/64 bit */
  480. case ACPI_RSD_UINT8:
  481. if (table->pointer) {
  482. acpi_rs_out_string(name, ACPI_CAST_PTR(char,
  483. table->
  484. pointer
  485. [*target]));
  486. } else {
  487. acpi_rs_out_integer8(name, ACPI_GET8(target));
  488. }
  489. break;
  490. case ACPI_RSD_UINT16:
  491. acpi_rs_out_integer16(name, ACPI_GET16(target));
  492. break;
  493. case ACPI_RSD_UINT32:
  494. acpi_rs_out_integer32(name, ACPI_GET32(target));
  495. break;
  496. case ACPI_RSD_UINT64:
  497. acpi_rs_out_integer64(name, ACPI_GET64(target));
  498. break;
  499. /* Flags: 1-bit and 2-bit flags supported */
  500. case ACPI_RSD_1BITFLAG:
  501. acpi_rs_out_string(name, ACPI_CAST_PTR(char,
  502. table->
  503. pointer[*target &
  504. 0x01]));
  505. break;
  506. case ACPI_RSD_2BITFLAG:
  507. acpi_rs_out_string(name, ACPI_CAST_PTR(char,
  508. table->
  509. pointer[*target &
  510. 0x03]));
  511. break;
  512. case ACPI_RSD_3BITFLAG:
  513. acpi_rs_out_string(name, ACPI_CAST_PTR(char,
  514. table->
  515. pointer[*target &
  516. 0x07]));
  517. break;
  518. case ACPI_RSD_SHORTLIST:
  519. /*
  520. * Short byte list (single line output) for DMA and IRQ resources
  521. * Note: The list length is obtained from the previous table entry
  522. */
  523. if (previous_target) {
  524. acpi_rs_out_title(name);
  525. acpi_rs_dump_short_byte_list(*previous_target,
  526. target);
  527. }
  528. break;
  529. case ACPI_RSD_SHORTLISTX:
  530. /*
  531. * Short byte list (single line output) for GPIO vendor data
  532. * Note: The list length is obtained from the previous table entry
  533. */
  534. if (previous_target) {
  535. acpi_rs_out_title(name);
  536. acpi_rs_dump_short_byte_list(*previous_target,
  537. *
  538. (ACPI_CAST_INDIRECT_PTR
  539. (u8, target)));
  540. }
  541. break;
  542. case ACPI_RSD_LONGLIST:
  543. /*
  544. * Long byte list for Vendor resource data
  545. * Note: The list length is obtained from the previous table entry
  546. */
  547. if (previous_target) {
  548. acpi_rs_dump_byte_list(ACPI_GET16
  549. (previous_target),
  550. target);
  551. }
  552. break;
  553. case ACPI_RSD_DWORDLIST:
  554. /*
  555. * Dword list for Extended Interrupt resources
  556. * Note: The list length is obtained from the previous table entry
  557. */
  558. if (previous_target) {
  559. acpi_rs_dump_dword_list(*previous_target,
  560. ACPI_CAST_PTR(u32,
  561. target));
  562. }
  563. break;
  564. case ACPI_RSD_WORDLIST:
  565. /*
  566. * Word list for GPIO Pin Table
  567. * Note: The list length is obtained from the previous table entry
  568. */
  569. if (previous_target) {
  570. acpi_rs_dump_word_list(*previous_target,
  571. *(ACPI_CAST_INDIRECT_PTR
  572. (u16, target)));
  573. }
  574. break;
  575. case ACPI_RSD_ADDRESS:
  576. /*
  577. * Common flags for all Address resources
  578. */
  579. acpi_rs_dump_address_common(ACPI_CAST_PTR
  580. (union acpi_resource_data,
  581. target));
  582. break;
  583. case ACPI_RSD_SOURCE:
  584. /*
  585. * Optional resource_source for Address resources
  586. */
  587. acpi_rs_dump_resource_source(ACPI_CAST_PTR(struct
  588. acpi_resource_source,
  589. target));
  590. break;
  591. default:
  592. acpi_os_printf("**** Invalid table opcode [%X] ****\n",
  593. table->opcode);
  594. return;
  595. }
  596. table++;
  597. count--;
  598. }
  599. }
  600. /*******************************************************************************
  601. *
  602. * FUNCTION: acpi_rs_dump_resource_source
  603. *
  604. * PARAMETERS: resource_source - Pointer to a Resource Source struct
  605. *
  606. * RETURN: None
  607. *
  608. * DESCRIPTION: Common routine for dumping the optional resource_source and the
  609. * corresponding resource_source_index.
  610. *
  611. ******************************************************************************/
  612. static void
  613. acpi_rs_dump_resource_source(struct acpi_resource_source *resource_source)
  614. {
  615. ACPI_FUNCTION_ENTRY();
  616. if (resource_source->index == 0xFF) {
  617. return;
  618. }
  619. acpi_rs_out_integer8("Resource Source Index", resource_source->index);
  620. acpi_rs_out_string("Resource Source",
  621. resource_source->string_ptr ?
  622. resource_source->string_ptr : "[Not Specified]");
  623. }
  624. /*******************************************************************************
  625. *
  626. * FUNCTION: acpi_rs_dump_address_common
  627. *
  628. * PARAMETERS: Resource - Pointer to an internal resource descriptor
  629. *
  630. * RETURN: None
  631. *
  632. * DESCRIPTION: Dump the fields that are common to all Address resource
  633. * descriptors
  634. *
  635. ******************************************************************************/
  636. static void acpi_rs_dump_address_common(union acpi_resource_data *resource)
  637. {
  638. ACPI_FUNCTION_ENTRY();
  639. /* Decode the type-specific flags */
  640. switch (resource->address.resource_type) {
  641. case ACPI_MEMORY_RANGE:
  642. acpi_rs_dump_descriptor(resource, acpi_rs_dump_memory_flags);
  643. break;
  644. case ACPI_IO_RANGE:
  645. acpi_rs_dump_descriptor(resource, acpi_rs_dump_io_flags);
  646. break;
  647. case ACPI_BUS_NUMBER_RANGE:
  648. acpi_rs_out_string("Resource Type", "Bus Number Range");
  649. break;
  650. default:
  651. acpi_rs_out_integer8("Resource Type",
  652. (u8) resource->address.resource_type);
  653. break;
  654. }
  655. /* Decode the general flags */
  656. acpi_rs_dump_descriptor(resource, acpi_rs_dump_general_flags);
  657. }
  658. /*******************************************************************************
  659. *
  660. * FUNCTION: acpi_rs_dump_resource_list
  661. *
  662. * PARAMETERS: resource_list - Pointer to a resource descriptor list
  663. *
  664. * RETURN: None
  665. *
  666. * DESCRIPTION: Dispatches the structure to the correct dump routine.
  667. *
  668. ******************************************************************************/
  669. void acpi_rs_dump_resource_list(struct acpi_resource *resource_list)
  670. {
  671. u32 count = 0;
  672. u32 type;
  673. ACPI_FUNCTION_ENTRY();
  674. if (!(acpi_dbg_level & ACPI_LV_RESOURCES)
  675. || !(_COMPONENT & acpi_dbg_layer)) {
  676. return;
  677. }
  678. /* Walk list and dump all resource descriptors (END_TAG terminates) */
  679. do {
  680. acpi_os_printf("\n[%02X] ", count);
  681. count++;
  682. /* Validate Type before dispatch */
  683. type = resource_list->type;
  684. if (type > ACPI_RESOURCE_TYPE_MAX) {
  685. acpi_os_printf
  686. ("Invalid descriptor type (%X) in resource list\n",
  687. resource_list->type);
  688. return;
  689. }
  690. /* Dump the resource descriptor */
  691. if (type == ACPI_RESOURCE_TYPE_SERIAL_BUS) {
  692. acpi_rs_dump_descriptor(&resource_list->data,
  693. acpi_gbl_dump_serial_bus_dispatch
  694. [resource_list->data.
  695. common_serial_bus.type]);
  696. } else {
  697. acpi_rs_dump_descriptor(&resource_list->data,
  698. acpi_gbl_dump_resource_dispatch
  699. [type]);
  700. }
  701. /* Point to the next resource structure */
  702. resource_list = ACPI_NEXT_RESOURCE(resource_list);
  703. /* Exit when END_TAG descriptor is reached */
  704. } while (type != ACPI_RESOURCE_TYPE_END_TAG);
  705. }
  706. /*******************************************************************************
  707. *
  708. * FUNCTION: acpi_rs_dump_irq_list
  709. *
  710. * PARAMETERS: route_table - Pointer to the routing table to dump.
  711. *
  712. * RETURN: None
  713. *
  714. * DESCRIPTION: Print IRQ routing table
  715. *
  716. ******************************************************************************/
  717. void acpi_rs_dump_irq_list(u8 * route_table)
  718. {
  719. struct acpi_pci_routing_table *prt_element;
  720. u8 count;
  721. ACPI_FUNCTION_ENTRY();
  722. if (!(acpi_dbg_level & ACPI_LV_RESOURCES)
  723. || !(_COMPONENT & acpi_dbg_layer)) {
  724. return;
  725. }
  726. prt_element = ACPI_CAST_PTR(struct acpi_pci_routing_table, route_table);
  727. /* Dump all table elements, Exit on zero length element */
  728. for (count = 0; prt_element->length; count++) {
  729. acpi_os_printf("\n[%02X] PCI IRQ Routing Table Package\n",
  730. count);
  731. acpi_rs_dump_descriptor(prt_element, acpi_rs_dump_prt);
  732. prt_element = ACPI_ADD_PTR(struct acpi_pci_routing_table,
  733. prt_element, prt_element->length);
  734. }
  735. }
  736. /*******************************************************************************
  737. *
  738. * FUNCTION: acpi_rs_out*
  739. *
  740. * PARAMETERS: Title - Name of the resource field
  741. * Value - Value of the resource field
  742. *
  743. * RETURN: None
  744. *
  745. * DESCRIPTION: Miscellaneous helper functions to consistently format the
  746. * output of the resource dump routines
  747. *
  748. ******************************************************************************/
  749. static void acpi_rs_out_string(char *title, char *value)
  750. {
  751. acpi_os_printf("%27s : %s", title, value);
  752. if (!*value) {
  753. acpi_os_printf("[NULL NAMESTRING]");
  754. }
  755. acpi_os_printf("\n");
  756. }
  757. static void acpi_rs_out_integer8(char *title, u8 value)
  758. {
  759. acpi_os_printf("%27s : %2.2X\n", title, value);
  760. }
  761. static void acpi_rs_out_integer16(char *title, u16 value)
  762. {
  763. acpi_os_printf("%27s : %4.4X\n", title, value);
  764. }
  765. static void acpi_rs_out_integer32(char *title, u32 value)
  766. {
  767. acpi_os_printf("%27s : %8.8X\n", title, value);
  768. }
  769. static void acpi_rs_out_integer64(char *title, u64 value)
  770. {
  771. acpi_os_printf("%27s : %8.8X%8.8X\n", title, ACPI_FORMAT_UINT64(value));
  772. }
  773. static void acpi_rs_out_title(char *title)
  774. {
  775. acpi_os_printf("%27s : ", title);
  776. }
  777. /*******************************************************************************
  778. *
  779. * FUNCTION: acpi_rs_dump*List
  780. *
  781. * PARAMETERS: Length - Number of elements in the list
  782. * Data - Start of the list
  783. *
  784. * RETURN: None
  785. *
  786. * DESCRIPTION: Miscellaneous functions to dump lists of raw data
  787. *
  788. ******************************************************************************/
  789. static void acpi_rs_dump_byte_list(u16 length, u8 * data)
  790. {
  791. u8 i;
  792. for (i = 0; i < length; i++) {
  793. acpi_os_printf("%25s%2.2X : %2.2X\n", "Byte", i, data[i]);
  794. }
  795. }
  796. static void acpi_rs_dump_short_byte_list(u8 length, u8 * data)
  797. {
  798. u8 i;
  799. for (i = 0; i < length; i++) {
  800. acpi_os_printf("%X ", data[i]);
  801. }
  802. acpi_os_printf("\n");
  803. }
  804. static void acpi_rs_dump_dword_list(u8 length, u32 * data)
  805. {
  806. u8 i;
  807. for (i = 0; i < length; i++) {
  808. acpi_os_printf("%25s%2.2X : %8.8X\n", "Dword", i, data[i]);
  809. }
  810. }
  811. static void acpi_rs_dump_word_list(u16 length, u16 *data)
  812. {
  813. u16 i;
  814. for (i = 0; i < length; i++) {
  815. acpi_os_printf("%25s%2.2X : %4.4X\n", "Word", i, data[i]);
  816. }
  817. }
  818. #endif