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pxe_preboot.c 9.8KB

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  1. /** @file
  2. *
  3. * PXE Preboot API
  4. *
  5. */
  6. /* PXE API interface for Etherboot.
  7. *
  8. * Copyright (C) 2004 Michael Brown <mbrown@fensystems.co.uk>.
  9. *
  10. * This program is free software; you can redistribute it and/or
  11. * modify it under the terms of the GNU General Public License as
  12. * published by the Free Software Foundation; either version 2 of the
  13. * License, or any later version.
  14. *
  15. * This program is distributed in the hope that it will be useful, but
  16. * WITHOUT ANY WARRANTY; without even the implied warranty of
  17. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  18. * General Public License for more details.
  19. *
  20. * You should have received a copy of the GNU General Public License
  21. * along with this program; if not, write to the Free Software
  22. * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  23. */
  24. FILE_LICENCE ( GPL2_OR_LATER );
  25. #include <stdint.h>
  26. #include <string.h>
  27. #include <stdlib.h>
  28. #include <ipxe/uaccess.h>
  29. #include <ipxe/dhcp.h>
  30. #include <ipxe/fakedhcp.h>
  31. #include <ipxe/device.h>
  32. #include <ipxe/netdevice.h>
  33. #include <ipxe/isapnp.h>
  34. #include <ipxe/init.h>
  35. #include <ipxe/if_ether.h>
  36. #include <basemem_packet.h>
  37. #include <biosint.h>
  38. #include "pxe.h"
  39. #include "pxe_call.h"
  40. /* Avoid dragging in isapnp.o unnecessarily */
  41. uint16_t isapnp_read_port;
  42. /** Zero-based versions of PXENV_GET_CACHED_INFO::PacketType */
  43. enum pxe_cached_info_indices {
  44. CACHED_INFO_DHCPDISCOVER = ( PXENV_PACKET_TYPE_DHCP_DISCOVER - 1 ),
  45. CACHED_INFO_DHCPACK = ( PXENV_PACKET_TYPE_DHCP_ACK - 1 ),
  46. CACHED_INFO_BINL = ( PXENV_PACKET_TYPE_CACHED_REPLY - 1 ),
  47. NUM_CACHED_INFOS
  48. };
  49. /** A cached DHCP packet */
  50. union pxe_cached_info {
  51. struct dhcphdr dhcphdr;
  52. /* This buffer must be *exactly* the size of a BOOTPLAYER_t
  53. * structure, otherwise WinPE will die horribly. It takes the
  54. * size of *our* buffer and feeds it in to us as the size of
  55. * one of *its* buffers. If our buffer is larger than it
  56. * expects, we therefore end up overwriting part of its data
  57. * segment, since it tells us to do so. (D'oh!)
  58. *
  59. * Note that a BOOTPLAYER_t is not necessarily large enough to
  60. * hold a DHCP packet; this is a flaw in the PXE spec.
  61. */
  62. BOOTPLAYER_t packet;
  63. } __attribute__ (( packed ));
  64. /** A PXE DHCP packet creator */
  65. struct pxe_dhcp_packet_creator {
  66. /** Create DHCP packet
  67. *
  68. * @v netdev Network device
  69. * @v data Buffer for DHCP packet
  70. * @v max_len Size of DHCP packet buffer
  71. * @ret rc Return status code
  72. */
  73. int ( * create ) ( struct net_device *netdev, void *data,
  74. size_t max_len );
  75. };
  76. /** PXE DHCP packet creators */
  77. static struct pxe_dhcp_packet_creator pxe_dhcp_packet_creators[] = {
  78. [CACHED_INFO_DHCPDISCOVER] = { create_fakedhcpdiscover },
  79. [CACHED_INFO_DHCPACK] = { create_fakedhcpack },
  80. [CACHED_INFO_BINL] = { create_fakepxebsack },
  81. };
  82. /* The case in which the caller doesn't supply a buffer is really
  83. * awkward to support given that we have multiple sources of options,
  84. * and that we don't actually store the DHCP packets. (We may not
  85. * even have performed DHCP; we may have obtained all configuration
  86. * from non-volatile stored options or from the command line.)
  87. *
  88. * Some NBPs rely on the buffers we provide being persistent, so we
  89. * can't just use the temporary packet buffer. 4.5kB of base memory
  90. * always wasted just because some clients are too lazy to provide
  91. * their own buffers...
  92. */
  93. static union pxe_cached_info __bss16_array ( cached_info, [NUM_CACHED_INFOS] );
  94. #define cached_info __use_data16 ( cached_info )
  95. /**
  96. * UNLOAD BASE CODE STACK
  97. *
  98. * @v None -
  99. * @ret ...
  100. *
  101. */
  102. PXENV_EXIT_t pxenv_unload_stack ( struct s_PXENV_UNLOAD_STACK *unload_stack ) {
  103. DBG ( "PXENV_UNLOAD_STACK" );
  104. unload_stack->Status = PXENV_STATUS_SUCCESS;
  105. return PXENV_EXIT_SUCCESS;
  106. }
  107. /* PXENV_GET_CACHED_INFO
  108. *
  109. * Status: working
  110. */
  111. PXENV_EXIT_t pxenv_get_cached_info ( struct s_PXENV_GET_CACHED_INFO
  112. *get_cached_info ) {
  113. struct pxe_dhcp_packet_creator *creator;
  114. union pxe_cached_info *info;
  115. unsigned int idx;
  116. size_t len;
  117. userptr_t buffer;
  118. int rc;
  119. DBG ( "PXENV_GET_CACHED_INFO %d", get_cached_info->PacketType );
  120. DBG ( " to %04x:%04x+%x", get_cached_info->Buffer.segment,
  121. get_cached_info->Buffer.offset, get_cached_info->BufferSize );
  122. /* Sanity check */
  123. idx = ( get_cached_info->PacketType - 1 );
  124. if ( idx >= NUM_CACHED_INFOS ) {
  125. DBG ( " bad PacketType" );
  126. goto err;
  127. }
  128. info = &cached_info[idx];
  129. /* Construct cached version of packet, if not already constructed. */
  130. if ( ! info->dhcphdr.op ) {
  131. /* Construct DHCP packet */
  132. creator = &pxe_dhcp_packet_creators[idx];
  133. if ( ( rc = creator->create ( pxe_netdev, info,
  134. sizeof ( *info ) ) ) != 0 ) {
  135. DBG ( " failed to build packet" );
  136. goto err;
  137. }
  138. }
  139. len = get_cached_info->BufferSize;
  140. if ( len == 0 ) {
  141. /* Point client at our cached buffer.
  142. *
  143. * To add to the fun, Intel decided at some point in
  144. * the evolution of the PXE specification to add the
  145. * BufferLimit field, which we are meant to fill in
  146. * with the length of our packet buffer, so that the
  147. * caller can safely modify the boot server reply
  148. * packet stored therein. However, this field was not
  149. * present in earlier versions of the PXE spec, and
  150. * there is at least one PXE NBP (Altiris) which
  151. * allocates only exactly enough space for this
  152. * earlier, shorter version of the structure. If we
  153. * actually fill in the BufferLimit field, we
  154. * therefore risk trashing random areas of the
  155. * caller's memory. If we *don't* fill it in, then
  156. * the caller is at liberty to assume that whatever
  157. * random value happened to be in that location
  158. * represents the length of the buffer we've just
  159. * passed back to it.
  160. *
  161. * Since older PXE stacks won't fill this field in
  162. * anyway, it's probably safe to assume that no
  163. * callers actually rely on it, so we choose to not
  164. * fill it in.
  165. */
  166. get_cached_info->Buffer.segment = rm_ds;
  167. get_cached_info->Buffer.offset = __from_data16 ( info );
  168. get_cached_info->BufferSize = sizeof ( *info );
  169. DBG ( " returning %04x:%04x+%04x['%x']",
  170. get_cached_info->Buffer.segment,
  171. get_cached_info->Buffer.offset,
  172. get_cached_info->BufferSize,
  173. get_cached_info->BufferLimit );
  174. } else {
  175. /* Copy packet to client buffer */
  176. if ( len > sizeof ( *info ) )
  177. len = sizeof ( *info );
  178. if ( len < sizeof ( *info ) )
  179. DBG ( " buffer may be too short" );
  180. buffer = real_to_user ( get_cached_info->Buffer.segment,
  181. get_cached_info->Buffer.offset );
  182. copy_to_user ( buffer, 0, info, len );
  183. get_cached_info->BufferSize = len;
  184. }
  185. get_cached_info->Status = PXENV_STATUS_SUCCESS;
  186. return PXENV_EXIT_SUCCESS;
  187. err:
  188. get_cached_info->Status = PXENV_STATUS_OUT_OF_RESOURCES;
  189. return PXENV_EXIT_FAILURE;
  190. }
  191. /* PXENV_RESTART_TFTP
  192. *
  193. * Status: working
  194. */
  195. PXENV_EXIT_t pxenv_restart_tftp ( struct s_PXENV_TFTP_READ_FILE
  196. *restart_tftp ) {
  197. PXENV_EXIT_t tftp_exit;
  198. DBG ( "PXENV_RESTART_TFTP " );
  199. /* Words cannot describe the complete mismatch between the PXE
  200. * specification and any possible version of reality...
  201. */
  202. restart_tftp->Buffer = PXE_LOAD_PHYS; /* Fixed by spec, apparently */
  203. restart_tftp->BufferSize = ( 0xa0000 - PXE_LOAD_PHYS ); /* Near enough */
  204. tftp_exit = pxenv_tftp_read_file ( restart_tftp );
  205. if ( tftp_exit != PXENV_EXIT_SUCCESS )
  206. return tftp_exit;
  207. /* Fire up the new NBP */
  208. restart_tftp->Status = pxe_start_nbp();
  209. /* Not sure what "SUCCESS" actually means, since we can only
  210. * return if the new NBP failed to boot...
  211. */
  212. return PXENV_EXIT_SUCCESS;
  213. }
  214. /* PXENV_START_UNDI
  215. *
  216. * Status: working
  217. */
  218. PXENV_EXIT_t pxenv_start_undi ( struct s_PXENV_START_UNDI *start_undi ) {
  219. unsigned int bus_type;
  220. unsigned int location;
  221. struct net_device *netdev;
  222. DBG ( "PXENV_START_UNDI %04x:%04x:%04x",
  223. start_undi->AX, start_undi->BX, start_undi->DX );
  224. /* Determine bus type and location. Use a heuristic to decide
  225. * whether we are PCI or ISAPnP
  226. */
  227. if ( ( start_undi->DX >= ISAPNP_READ_PORT_MIN ) &&
  228. ( start_undi->DX <= ISAPNP_READ_PORT_MAX ) &&
  229. ( start_undi->BX >= ISAPNP_CSN_MIN ) &&
  230. ( start_undi->BX <= ISAPNP_CSN_MAX ) ) {
  231. bus_type = BUS_TYPE_ISAPNP;
  232. location = start_undi->BX;
  233. /* Record ISAPnP read port for use by isapnp.c */
  234. isapnp_read_port = start_undi->DX;
  235. } else {
  236. bus_type = BUS_TYPE_PCI;
  237. location = start_undi->AX;
  238. }
  239. /* Probe for devices, etc. */
  240. startup();
  241. /* Look for a matching net device */
  242. netdev = find_netdev_by_location ( bus_type, location );
  243. if ( ! netdev ) {
  244. DBG ( " no net device found" );
  245. start_undi->Status = PXENV_STATUS_UNDI_CANNOT_INITIALIZE_NIC;
  246. return PXENV_EXIT_FAILURE;
  247. }
  248. DBG ( " using netdev %s", netdev->name );
  249. /* Activate PXE */
  250. pxe_activate ( netdev );
  251. start_undi->Status = PXENV_STATUS_SUCCESS;
  252. return PXENV_EXIT_SUCCESS;
  253. }
  254. /* PXENV_STOP_UNDI
  255. *
  256. * Status: working
  257. */
  258. PXENV_EXIT_t pxenv_stop_undi ( struct s_PXENV_STOP_UNDI *stop_undi ) {
  259. DBG ( "PXENV_STOP_UNDI" );
  260. /* Deactivate PXE */
  261. pxe_deactivate();
  262. /* Prepare for unload */
  263. shutdown ( SHUTDOWN_BOOT );
  264. /* Check to see if we still have any hooked interrupts */
  265. if ( hooked_bios_interrupts != 0 ) {
  266. DBG ( "PXENV_STOP_UNDI failed: %d interrupts still hooked\n",
  267. hooked_bios_interrupts );
  268. stop_undi->Status = PXENV_STATUS_KEEP_UNDI;
  269. return PXENV_EXIT_FAILURE;
  270. }
  271. stop_undi->Status = PXENV_STATUS_SUCCESS;
  272. return PXENV_EXIT_SUCCESS;
  273. }
  274. /* PXENV_START_BASE
  275. *
  276. * Status: won't implement (requires major structural changes)
  277. */
  278. PXENV_EXIT_t pxenv_start_base ( struct s_PXENV_START_BASE *start_base ) {
  279. DBG ( "PXENV_START_BASE" );
  280. start_base->Status = PXENV_STATUS_UNSUPPORTED;
  281. return PXENV_EXIT_FAILURE;
  282. }
  283. /* PXENV_STOP_BASE
  284. *
  285. * Status: working
  286. */
  287. PXENV_EXIT_t pxenv_stop_base ( struct s_PXENV_STOP_BASE *stop_base ) {
  288. DBG ( "PXENV_STOP_BASE" );
  289. /* The only time we will be called is when the NBP is trying
  290. * to shut down the PXE stack. There's nothing we need to do
  291. * in this call.
  292. */
  293. stop_base->Status = PXENV_STATUS_SUCCESS;
  294. return PXENV_EXIT_SUCCESS;
  295. }