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  1. /*
  2. * Copyright (C) 2006 Michael Brown <mbrown@fensystems.co.uk>.
  3. *
  4. * This program is free software; you can redistribute it and/or
  5. * modify it under the terms of the GNU General Public License as
  6. * published by the Free Software Foundation; either version 2 of the
  7. * License, or any later version.
  8. *
  9. * This program is distributed in the hope that it will be useful, but
  10. * WITHOUT ANY WARRANTY; without even the implied warranty of
  11. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  12. * General Public License for more details.
  13. *
  14. * You should have received a copy of the GNU General Public License
  15. * along with this program; if not, write to the Free Software
  16. * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  17. */
  18. FILE_LICENCE ( GPL2_OR_LATER );
  19. #include <gpxe/uaccess.h>
  20. #include <gpxe/init.h>
  21. #include <registers.h>
  22. #include <biosint.h>
  23. #include <pxe.h>
  24. #include <pxe_call.h>
  25. /** @file
  26. *
  27. * PXE API entry point
  28. */
  29. /** Vector for chaining INT 1A */
  30. extern struct segoff __text16 ( pxe_int_1a_vector );
  31. #define pxe_int_1a_vector __use_text16 ( pxe_int_1a_vector )
  32. /** INT 1A handler */
  33. extern void pxe_int_1a ( void );
  34. /** INT 1A hooked flag */
  35. static int int_1a_hooked = 0;
  36. /** A function pointer to hold any PXE API call
  37. *
  38. * Used by pxe_api_call() to avoid large swathes of duplicated code.
  39. */
  40. union pxenv_call {
  41. PXENV_EXIT_t ( * any ) ( union u_PXENV_ANY * );
  42. PXENV_EXIT_t ( * unknown ) ( struct s_PXENV_UNKNOWN * );
  43. PXENV_EXIT_t ( * unload_stack ) ( struct s_PXENV_UNLOAD_STACK * );
  44. PXENV_EXIT_t ( * get_cached_info )
  45. ( struct s_PXENV_GET_CACHED_INFO * );
  46. PXENV_EXIT_t ( * restart_tftp ) ( struct s_PXENV_TFTP_READ_FILE * );
  47. PXENV_EXIT_t ( * start_undi ) ( struct s_PXENV_START_UNDI * );
  48. PXENV_EXIT_t ( * stop_undi ) ( struct s_PXENV_STOP_UNDI * );
  49. PXENV_EXIT_t ( * start_base ) ( struct s_PXENV_START_BASE * );
  50. PXENV_EXIT_t ( * stop_base ) ( struct s_PXENV_STOP_BASE * );
  51. PXENV_EXIT_t ( * tftp_open ) ( struct s_PXENV_TFTP_OPEN * );
  52. PXENV_EXIT_t ( * tftp_close ) ( struct s_PXENV_TFTP_CLOSE * );
  53. PXENV_EXIT_t ( * tftp_read ) ( struct s_PXENV_TFTP_READ * );
  54. PXENV_EXIT_t ( * tftp_read_file ) ( struct s_PXENV_TFTP_READ_FILE * );
  55. PXENV_EXIT_t ( * tftp_get_fsize ) ( struct s_PXENV_TFTP_GET_FSIZE * );
  56. PXENV_EXIT_t ( * udp_open ) ( struct s_PXENV_UDP_OPEN * );
  57. PXENV_EXIT_t ( * udp_close ) ( struct s_PXENV_UDP_CLOSE * );
  58. PXENV_EXIT_t ( * udp_write ) ( struct s_PXENV_UDP_WRITE * );
  59. PXENV_EXIT_t ( * udp_read ) ( struct s_PXENV_UDP_READ * );
  60. PXENV_EXIT_t ( * undi_startup ) ( struct s_PXENV_UNDI_STARTUP * );
  61. PXENV_EXIT_t ( * undi_cleanup ) ( struct s_PXENV_UNDI_CLEANUP * );
  62. PXENV_EXIT_t ( * undi_initialize )
  63. ( struct s_PXENV_UNDI_INITIALIZE * );
  64. PXENV_EXIT_t ( * undi_reset_adapter ) ( struct s_PXENV_UNDI_RESET * );
  65. PXENV_EXIT_t ( * undi_shutdown ) ( struct s_PXENV_UNDI_SHUTDOWN * );
  66. PXENV_EXIT_t ( * undi_open ) ( struct s_PXENV_UNDI_OPEN * );
  67. PXENV_EXIT_t ( * undi_close ) ( struct s_PXENV_UNDI_CLOSE * );
  68. PXENV_EXIT_t ( * undi_transmit ) ( struct s_PXENV_UNDI_TRANSMIT * );
  69. PXENV_EXIT_t ( * undi_set_mcast_address )
  70. ( struct s_PXENV_UNDI_SET_MCAST_ADDRESS * );
  71. PXENV_EXIT_t ( * undi_set_station_address )
  72. ( struct s_PXENV_UNDI_SET_STATION_ADDRESS * );
  73. PXENV_EXIT_t ( * undi_set_packet_filter )
  74. ( struct s_PXENV_UNDI_SET_PACKET_FILTER * );
  75. PXENV_EXIT_t ( * undi_get_information )
  76. ( struct s_PXENV_UNDI_GET_INFORMATION * );
  77. PXENV_EXIT_t ( * undi_get_statistics )
  78. ( struct s_PXENV_UNDI_GET_STATISTICS * );
  79. PXENV_EXIT_t ( * undi_clear_statistics )
  80. ( struct s_PXENV_UNDI_CLEAR_STATISTICS * );
  81. PXENV_EXIT_t ( * undi_initiate_diags )
  82. ( struct s_PXENV_UNDI_INITIATE_DIAGS * );
  83. PXENV_EXIT_t ( * undi_force_interrupt )
  84. ( struct s_PXENV_UNDI_FORCE_INTERRUPT * );
  85. PXENV_EXIT_t ( * undi_get_mcast_address )
  86. ( struct s_PXENV_UNDI_GET_MCAST_ADDRESS * );
  87. PXENV_EXIT_t ( * undi_get_nic_type )
  88. ( struct s_PXENV_UNDI_GET_NIC_TYPE * );
  89. PXENV_EXIT_t ( * undi_get_iface_info )
  90. ( struct s_PXENV_UNDI_GET_IFACE_INFO * );
  91. PXENV_EXIT_t ( * undi_get_state ) ( struct s_PXENV_UNDI_GET_STATE * );
  92. PXENV_EXIT_t ( * undi_isr ) ( struct s_PXENV_UNDI_ISR * );
  93. PXENV_EXIT_t ( * file_open ) ( struct s_PXENV_FILE_OPEN * );
  94. PXENV_EXIT_t ( * file_close ) ( struct s_PXENV_FILE_CLOSE * );
  95. PXENV_EXIT_t ( * file_select ) ( struct s_PXENV_FILE_SELECT * );
  96. PXENV_EXIT_t ( * file_read ) ( struct s_PXENV_FILE_READ * );
  97. PXENV_EXIT_t ( * get_file_size ) ( struct s_PXENV_GET_FILE_SIZE * );
  98. PXENV_EXIT_t ( * file_exec ) ( struct s_PXENV_FILE_EXEC * );
  99. PXENV_EXIT_t ( * file_api_check ) ( struct s_PXENV_FILE_API_CHECK * );
  100. };
  101. /**
  102. * Handle an unknown PXE API call
  103. *
  104. * @v pxenv_unknown Pointer to a struct s_PXENV_UNKNOWN
  105. * @ret #PXENV_EXIT_FAILURE Always
  106. * @err #PXENV_STATUS_UNSUPPORTED Always
  107. */
  108. static PXENV_EXIT_t pxenv_unknown ( struct s_PXENV_UNKNOWN *pxenv_unknown ) {
  109. pxenv_unknown->Status = PXENV_STATUS_UNSUPPORTED;
  110. return PXENV_EXIT_FAILURE;
  111. }
  112. /**
  113. * Dispatch PXE API call
  114. *
  115. * @v bx PXE opcode
  116. * @v es:di Address of PXE parameter block
  117. * @ret ax PXE exit code
  118. */
  119. __asmcall void pxe_api_call ( struct i386_all_regs *ix86 ) {
  120. int opcode = ix86->regs.bx;
  121. userptr_t parameters = real_to_user ( ix86->segs.es, ix86->regs.di );
  122. size_t param_len;
  123. union u_PXENV_ANY pxenv_any;
  124. union pxenv_call pxenv_call;
  125. PXENV_EXIT_t ret;
  126. switch ( opcode ) {
  127. case PXENV_UNLOAD_STACK:
  128. pxenv_call.unload_stack = pxenv_unload_stack;
  129. param_len = sizeof ( pxenv_any.unload_stack );
  130. break;
  131. case PXENV_GET_CACHED_INFO:
  132. pxenv_call.get_cached_info = pxenv_get_cached_info;
  133. param_len = sizeof ( pxenv_any.get_cached_info );
  134. break;
  135. case PXENV_RESTART_TFTP:
  136. pxenv_call.restart_tftp = pxenv_restart_tftp;
  137. param_len = sizeof ( pxenv_any.restart_tftp );
  138. break;
  139. case PXENV_START_UNDI:
  140. pxenv_call.start_undi = pxenv_start_undi;
  141. param_len = sizeof ( pxenv_any.start_undi );
  142. break;
  143. case PXENV_STOP_UNDI:
  144. pxenv_call.stop_undi = pxenv_stop_undi;
  145. param_len = sizeof ( pxenv_any.stop_undi );
  146. break;
  147. case PXENV_START_BASE:
  148. pxenv_call.start_base = pxenv_start_base;
  149. param_len = sizeof ( pxenv_any.start_base );
  150. break;
  151. case PXENV_STOP_BASE:
  152. pxenv_call.stop_base = pxenv_stop_base;
  153. param_len = sizeof ( pxenv_any.stop_base );
  154. break;
  155. case PXENV_TFTP_OPEN:
  156. pxenv_call.tftp_open = pxenv_tftp_open;
  157. param_len = sizeof ( pxenv_any.tftp_open );
  158. break;
  159. case PXENV_TFTP_CLOSE:
  160. pxenv_call.tftp_close = pxenv_tftp_close;
  161. param_len = sizeof ( pxenv_any.tftp_close );
  162. break;
  163. case PXENV_TFTP_READ:
  164. pxenv_call.tftp_read = pxenv_tftp_read;
  165. param_len = sizeof ( pxenv_any.tftp_read );
  166. break;
  167. case PXENV_TFTP_READ_FILE:
  168. pxenv_call.tftp_read_file = pxenv_tftp_read_file;
  169. param_len = sizeof ( pxenv_any.tftp_read_file );
  170. break;
  171. case PXENV_TFTP_GET_FSIZE:
  172. pxenv_call.tftp_get_fsize = pxenv_tftp_get_fsize;
  173. param_len = sizeof ( pxenv_any.tftp_get_fsize );
  174. break;
  175. case PXENV_UDP_OPEN:
  176. pxenv_call.udp_open = pxenv_udp_open;
  177. param_len = sizeof ( pxenv_any.udp_open );
  178. break;
  179. case PXENV_UDP_CLOSE:
  180. pxenv_call.udp_close = pxenv_udp_close;
  181. param_len = sizeof ( pxenv_any.udp_close );
  182. break;
  183. case PXENV_UDP_WRITE:
  184. pxenv_call.udp_write = pxenv_udp_write;
  185. param_len = sizeof ( pxenv_any.udp_write );
  186. break;
  187. case PXENV_UDP_READ:
  188. pxenv_call.udp_read = pxenv_udp_read;
  189. param_len = sizeof ( pxenv_any.udp_read );
  190. break;
  191. case PXENV_UNDI_STARTUP:
  192. pxenv_call.undi_startup = pxenv_undi_startup;
  193. param_len = sizeof ( pxenv_any.undi_startup );
  194. break;
  195. case PXENV_UNDI_CLEANUP:
  196. pxenv_call.undi_cleanup = pxenv_undi_cleanup;
  197. param_len = sizeof ( pxenv_any.undi_cleanup );
  198. break;
  199. case PXENV_UNDI_INITIALIZE:
  200. pxenv_call.undi_initialize = pxenv_undi_initialize;
  201. param_len = sizeof ( pxenv_any.undi_initialize );
  202. break;
  203. case PXENV_UNDI_RESET_ADAPTER:
  204. pxenv_call.undi_reset_adapter = pxenv_undi_reset_adapter;
  205. param_len = sizeof ( pxenv_any.undi_reset_adapter );
  206. break;
  207. case PXENV_UNDI_SHUTDOWN:
  208. pxenv_call.undi_shutdown = pxenv_undi_shutdown;
  209. param_len = sizeof ( pxenv_any.undi_shutdown );
  210. break;
  211. case PXENV_UNDI_OPEN:
  212. pxenv_call.undi_open = pxenv_undi_open;
  213. param_len = sizeof ( pxenv_any.undi_open );
  214. break;
  215. case PXENV_UNDI_CLOSE:
  216. pxenv_call.undi_close = pxenv_undi_close;
  217. param_len = sizeof ( pxenv_any.undi_close );
  218. break;
  219. case PXENV_UNDI_TRANSMIT:
  220. pxenv_call.undi_transmit = pxenv_undi_transmit;
  221. param_len = sizeof ( pxenv_any.undi_transmit );
  222. break;
  223. case PXENV_UNDI_SET_MCAST_ADDRESS:
  224. pxenv_call.undi_set_mcast_address =
  225. pxenv_undi_set_mcast_address;
  226. param_len = sizeof ( pxenv_any.undi_set_mcast_address );
  227. break;
  228. case PXENV_UNDI_SET_STATION_ADDRESS:
  229. pxenv_call.undi_set_station_address =
  230. pxenv_undi_set_station_address;
  231. param_len = sizeof ( pxenv_any.undi_set_station_address );
  232. break;
  233. case PXENV_UNDI_SET_PACKET_FILTER:
  234. pxenv_call.undi_set_packet_filter =
  235. pxenv_undi_set_packet_filter;
  236. param_len = sizeof ( pxenv_any.undi_set_packet_filter );
  237. break;
  238. case PXENV_UNDI_GET_INFORMATION:
  239. pxenv_call.undi_get_information = pxenv_undi_get_information;
  240. param_len = sizeof ( pxenv_any.undi_get_information );
  241. break;
  242. case PXENV_UNDI_GET_STATISTICS:
  243. pxenv_call.undi_get_statistics = pxenv_undi_get_statistics;
  244. param_len = sizeof ( pxenv_any.undi_get_statistics );
  245. break;
  246. case PXENV_UNDI_CLEAR_STATISTICS:
  247. pxenv_call.undi_clear_statistics = pxenv_undi_clear_statistics;
  248. param_len = sizeof ( pxenv_any.undi_clear_statistics );
  249. break;
  250. case PXENV_UNDI_INITIATE_DIAGS:
  251. pxenv_call.undi_initiate_diags = pxenv_undi_initiate_diags;
  252. param_len = sizeof ( pxenv_any.undi_initiate_diags );
  253. break;
  254. case PXENV_UNDI_FORCE_INTERRUPT:
  255. pxenv_call.undi_force_interrupt = pxenv_undi_force_interrupt;
  256. param_len = sizeof ( pxenv_any.undi_force_interrupt );
  257. break;
  258. case PXENV_UNDI_GET_MCAST_ADDRESS:
  259. pxenv_call.undi_get_mcast_address =
  260. pxenv_undi_get_mcast_address;
  261. param_len = sizeof ( pxenv_any.undi_get_mcast_address );
  262. break;
  263. case PXENV_UNDI_GET_NIC_TYPE:
  264. pxenv_call.undi_get_nic_type = pxenv_undi_get_nic_type;
  265. param_len = sizeof ( pxenv_any.undi_get_nic_type );
  266. break;
  267. case PXENV_UNDI_GET_IFACE_INFO:
  268. pxenv_call.undi_get_iface_info = pxenv_undi_get_iface_info;
  269. param_len = sizeof ( pxenv_any.undi_get_iface_info );
  270. break;
  271. case PXENV_UNDI_ISR:
  272. pxenv_call.undi_isr = pxenv_undi_isr;
  273. param_len = sizeof ( pxenv_any.undi_isr );
  274. break;
  275. case PXENV_FILE_OPEN:
  276. pxenv_call.file_open = pxenv_file_open;
  277. param_len = sizeof ( pxenv_any.file_open );
  278. break;
  279. case PXENV_FILE_CLOSE:
  280. pxenv_call.file_close = pxenv_file_close;
  281. param_len = sizeof ( pxenv_any.file_close );
  282. break;
  283. case PXENV_FILE_SELECT:
  284. pxenv_call.file_select = pxenv_file_select;
  285. param_len = sizeof ( pxenv_any.file_select );
  286. break;
  287. case PXENV_FILE_READ:
  288. pxenv_call.file_read = pxenv_file_read;
  289. param_len = sizeof ( pxenv_any.file_read );
  290. break;
  291. case PXENV_GET_FILE_SIZE:
  292. pxenv_call.get_file_size = pxenv_get_file_size;
  293. param_len = sizeof ( pxenv_any.get_file_size );
  294. break;
  295. case PXENV_FILE_EXEC:
  296. pxenv_call.file_exec = pxenv_file_exec;
  297. param_len = sizeof ( pxenv_any.file_exec );
  298. break;
  299. case PXENV_FILE_API_CHECK:
  300. pxenv_call.file_api_check = pxenv_file_api_check;
  301. param_len = sizeof ( pxenv_any.file_api_check );
  302. break;
  303. default:
  304. DBG ( "PXENV_UNKNOWN_%hx", opcode );
  305. pxenv_call.unknown = pxenv_unknown;
  306. param_len = sizeof ( pxenv_any.unknown );
  307. break;
  308. }
  309. /* Copy parameter block from caller */
  310. copy_from_user ( &pxenv_any, parameters, 0, param_len );
  311. /* Set default status in case child routine fails to do so */
  312. pxenv_any.Status = PXENV_STATUS_FAILURE;
  313. /* Hand off to relevant API routine */
  314. DBG ( "[" );
  315. ret = pxenv_call.any ( &pxenv_any );
  316. if ( pxenv_any.Status != PXENV_STATUS_SUCCESS ) {
  317. DBG ( " %02x", pxenv_any.Status );
  318. }
  319. if ( ret != PXENV_EXIT_SUCCESS ) {
  320. DBG ( ret == PXENV_EXIT_FAILURE ? " err" : " ??" );
  321. }
  322. DBG ( "]" );
  323. /* Copy modified parameter block back to caller and return */
  324. copy_to_user ( parameters, 0, &pxenv_any, param_len );
  325. ix86->regs.ax = ret;
  326. }
  327. /**
  328. * Dispatch weak PXE API call with PXE stack available
  329. *
  330. * @v ix86 Registers for PXE call
  331. * @ret present Zero (PXE stack present)
  332. */
  333. int _pxe_api_call_weak ( struct i386_all_regs *ix86 )
  334. {
  335. pxe_api_call ( ix86 );
  336. return 0;
  337. }
  338. /**
  339. * Dispatch PXE loader call
  340. *
  341. * @v es:di Address of PXE parameter block
  342. * @ret ax PXE exit code
  343. */
  344. __asmcall void pxe_loader_call ( struct i386_all_regs *ix86 ) {
  345. userptr_t uparams = real_to_user ( ix86->segs.es, ix86->regs.di );
  346. struct s_UNDI_LOADER params;
  347. PXENV_EXIT_t ret;
  348. /* Copy parameter block from caller */
  349. copy_from_user ( &params, uparams, 0, sizeof ( params ) );
  350. /* Fill in ROM segment address */
  351. ppxe.UNDIROMID.segment = ix86->segs.ds;
  352. /* Set default status in case child routine fails to do so */
  353. params.Status = PXENV_STATUS_FAILURE;
  354. /* Call UNDI loader */
  355. ret = undi_loader ( &params );
  356. /* Copy modified parameter block back to caller and return */
  357. copy_to_user ( uparams, 0, &params, sizeof ( params ) );
  358. ix86->regs.ax = ret;
  359. }
  360. /**
  361. * Calculate byte checksum as used by PXE
  362. *
  363. * @v data Data
  364. * @v size Length of data
  365. * @ret sum Checksum
  366. */
  367. static uint8_t pxe_checksum ( void *data, size_t size ) {
  368. uint8_t *bytes = data;
  369. uint8_t sum = 0;
  370. while ( size-- ) {
  371. sum += *bytes++;
  372. }
  373. return sum;
  374. }
  375. /**
  376. * Initialise !PXE and PXENV+ structures
  377. *
  378. */
  379. static void pxe_init_structures ( void ) {
  380. uint32_t rm_cs_phys = ( rm_cs << 4 );
  381. uint32_t rm_ds_phys = ( rm_ds << 4 );
  382. /* Fill in missing segment fields */
  383. ppxe.EntryPointSP.segment = rm_cs;
  384. ppxe.EntryPointESP.segment = rm_cs;
  385. ppxe.Stack.segment_address = rm_ds;
  386. ppxe.Stack.Physical_address = rm_ds_phys;
  387. ppxe.UNDIData.segment_address = rm_ds;
  388. ppxe.UNDIData.Physical_address = rm_ds_phys;
  389. ppxe.UNDICode.segment_address = rm_cs;
  390. ppxe.UNDICode.Physical_address = rm_cs_phys;
  391. ppxe.UNDICodeWrite.segment_address = rm_cs;
  392. ppxe.UNDICodeWrite.Physical_address = rm_cs_phys;
  393. pxenv.RMEntry.segment = rm_cs;
  394. pxenv.StackSeg = rm_ds;
  395. pxenv.UNDIDataSeg = rm_ds;
  396. pxenv.UNDICodeSeg = rm_cs;
  397. pxenv.PXEPtr.segment = rm_cs;
  398. /* Update checksums */
  399. ppxe.StructCksum -= pxe_checksum ( &ppxe, sizeof ( ppxe ) );
  400. pxenv.Checksum -= pxe_checksum ( &pxenv, sizeof ( pxenv ) );
  401. }
  402. /** PXE structure initialiser */
  403. struct init_fn pxe_init_fn __init_fn ( INIT_NORMAL ) = {
  404. .initialise = pxe_init_structures,
  405. };
  406. /**
  407. * Activate PXE stack
  408. *
  409. * @v netdev Net device to use as PXE net device
  410. */
  411. void pxe_activate ( struct net_device *netdev ) {
  412. /* Ensure INT 1A is hooked */
  413. if ( ! int_1a_hooked ) {
  414. hook_bios_interrupt ( 0x1a, ( unsigned int ) pxe_int_1a,
  415. &pxe_int_1a_vector );
  416. int_1a_hooked = 1;
  417. }
  418. /* Set PXE network device */
  419. pxe_set_netdev ( netdev );
  420. }
  421. /**
  422. * Deactivate PXE stack
  423. *
  424. * @ret rc Return status code
  425. */
  426. int pxe_deactivate ( void ) {
  427. int rc;
  428. /* Clear PXE network device */
  429. pxe_set_netdev ( NULL );
  430. /* Ensure INT 1A is unhooked, if possible */
  431. if ( int_1a_hooked ) {
  432. if ( ( rc = unhook_bios_interrupt ( 0x1a,
  433. (unsigned int) pxe_int_1a,
  434. &pxe_int_1a_vector ))!= 0){
  435. DBG ( "Could not unhook INT 1A: %s\n",
  436. strerror ( rc ) );
  437. return rc;
  438. }
  439. int_1a_hooked = 0;
  440. }
  441. return 0;
  442. }
  443. /**
  444. * Start PXE NBP at 0000:7c00
  445. *
  446. * @ret rc Return status code
  447. */
  448. int pxe_start_nbp ( void ) {
  449. int discard_b, discard_c, discard_d, discard_D;
  450. uint16_t rc;
  451. /* Far call to PXE NBP */
  452. __asm__ __volatile__ ( REAL_CODE ( "movw %%cx, %%es\n\t"
  453. "pushw %%es\n\t"
  454. "pushw %%di\n\t"
  455. "sti\n\t"
  456. "lcall $0, $0x7c00\n\t"
  457. "addw $4, %%sp\n\t" )
  458. : "=a" ( rc ), "=b" ( discard_b ),
  459. "=c" ( discard_c ), "=d" ( discard_d ),
  460. "=D" ( discard_D )
  461. : "a" ( 0 ), "b" ( __from_text16 ( &pxenv ) ),
  462. "c" ( rm_cs ),
  463. "d" ( virt_to_phys ( &pxenv ) ),
  464. "D" ( __from_text16 ( &ppxe ) )
  465. : "esi", "ebp", "memory" );
  466. return rc;
  467. }