z90hardware.c 67 KB

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  1. /*
  2. * linux/drivers/s390/crypto/z90hardware.c
  3. *
  4. * z90crypt 1.3.3
  5. *
  6. * Copyright (C) 2001, 2005 IBM Corporation
  7. * Author(s): Robert Burroughs (burrough@us.ibm.com)
  8. * Eric Rossman (edrossma@us.ibm.com)
  9. *
  10. * Hotplug & misc device support: Jochen Roehrig (roehrig@de.ibm.com)
  11. *
  12. * This program is free software; you can redistribute it and/or modify
  13. * it under the terms of the GNU General Public License as published by
  14. * the Free Software Foundation; either version 2, or (at your option)
  15. * any later version.
  16. *
  17. * This program is distributed in the hope that it will be useful,
  18. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  19. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  20. * GNU General Public License for more details.
  21. *
  22. * You should have received a copy of the GNU General Public License
  23. * along with this program; if not, write to the Free Software
  24. * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  25. */
  26. #include <asm/uaccess.h>
  27. #include <linux/compiler.h>
  28. #include <linux/delay.h>
  29. #include <linux/init.h>
  30. #include <linux/module.h>
  31. #include "z90crypt.h"
  32. #include "z90common.h"
  33. struct cca_token_hdr {
  34. unsigned char token_identifier;
  35. unsigned char version;
  36. unsigned short token_length;
  37. unsigned char reserved[4];
  38. };
  39. #define CCA_TKN_HDR_ID_EXT 0x1E
  40. struct cca_private_ext_ME_sec {
  41. unsigned char section_identifier;
  42. unsigned char version;
  43. unsigned short section_length;
  44. unsigned char private_key_hash[20];
  45. unsigned char reserved1[4];
  46. unsigned char key_format;
  47. unsigned char reserved2;
  48. unsigned char key_name_hash[20];
  49. unsigned char key_use_flags[4];
  50. unsigned char reserved3[6];
  51. unsigned char reserved4[24];
  52. unsigned char confounder[24];
  53. unsigned char exponent[128];
  54. unsigned char modulus[128];
  55. };
  56. #define CCA_PVT_USAGE_ALL 0x80
  57. struct cca_public_sec {
  58. unsigned char section_identifier;
  59. unsigned char version;
  60. unsigned short section_length;
  61. unsigned char reserved[2];
  62. unsigned short exponent_len;
  63. unsigned short modulus_bit_len;
  64. unsigned short modulus_byte_len;
  65. unsigned char exponent[3];
  66. };
  67. struct cca_private_ext_ME {
  68. struct cca_token_hdr pvtMEHdr;
  69. struct cca_private_ext_ME_sec pvtMESec;
  70. struct cca_public_sec pubMESec;
  71. };
  72. struct cca_public_key {
  73. struct cca_token_hdr pubHdr;
  74. struct cca_public_sec pubSec;
  75. };
  76. struct cca_pvt_ext_CRT_sec {
  77. unsigned char section_identifier;
  78. unsigned char version;
  79. unsigned short section_length;
  80. unsigned char private_key_hash[20];
  81. unsigned char reserved1[4];
  82. unsigned char key_format;
  83. unsigned char reserved2;
  84. unsigned char key_name_hash[20];
  85. unsigned char key_use_flags[4];
  86. unsigned short p_len;
  87. unsigned short q_len;
  88. unsigned short dp_len;
  89. unsigned short dq_len;
  90. unsigned short u_len;
  91. unsigned short mod_len;
  92. unsigned char reserved3[4];
  93. unsigned short pad_len;
  94. unsigned char reserved4[52];
  95. unsigned char confounder[8];
  96. };
  97. #define CCA_PVT_EXT_CRT_SEC_ID_PVT 0x08
  98. #define CCA_PVT_EXT_CRT_SEC_FMT_CL 0x40
  99. struct cca_private_ext_CRT {
  100. struct cca_token_hdr pvtCrtHdr;
  101. struct cca_pvt_ext_CRT_sec pvtCrtSec;
  102. struct cca_public_sec pubCrtSec;
  103. };
  104. struct ap_status_word {
  105. unsigned char q_stat_flags;
  106. unsigned char response_code;
  107. unsigned char reserved[2];
  108. };
  109. #define AP_Q_STATUS_EMPTY 0x80
  110. #define AP_Q_STATUS_REPLIES_WAITING 0x40
  111. #define AP_Q_STATUS_ARRAY_FULL 0x20
  112. #define AP_RESPONSE_NORMAL 0x00
  113. #define AP_RESPONSE_Q_NOT_AVAIL 0x01
  114. #define AP_RESPONSE_RESET_IN_PROGRESS 0x02
  115. #define AP_RESPONSE_DECONFIGURED 0x03
  116. #define AP_RESPONSE_CHECKSTOPPED 0x04
  117. #define AP_RESPONSE_BUSY 0x05
  118. #define AP_RESPONSE_Q_FULL 0x10
  119. #define AP_RESPONSE_NO_PENDING_REPLY 0x10
  120. #define AP_RESPONSE_INDEX_TOO_BIG 0x11
  121. #define AP_RESPONSE_NO_FIRST_PART 0x13
  122. #define AP_RESPONSE_MESSAGE_TOO_BIG 0x15
  123. #define AP_MAX_CDX_BITL 4
  124. #define AP_RQID_RESERVED_BITL 4
  125. #define SKIP_BITL (AP_MAX_CDX_BITL + AP_RQID_RESERVED_BITL)
  126. struct type4_hdr {
  127. unsigned char reserved1;
  128. unsigned char msg_type_code;
  129. unsigned short msg_len;
  130. unsigned char request_code;
  131. unsigned char msg_fmt;
  132. unsigned short reserved2;
  133. };
  134. #define TYPE4_TYPE_CODE 0x04
  135. #define TYPE4_REQU_CODE 0x40
  136. #define TYPE4_SME_LEN 0x0188
  137. #define TYPE4_LME_LEN 0x0308
  138. #define TYPE4_SCR_LEN 0x01E0
  139. #define TYPE4_LCR_LEN 0x03A0
  140. #define TYPE4_SME_FMT 0x00
  141. #define TYPE4_LME_FMT 0x10
  142. #define TYPE4_SCR_FMT 0x40
  143. #define TYPE4_LCR_FMT 0x50
  144. struct type4_sme {
  145. struct type4_hdr header;
  146. unsigned char message[128];
  147. unsigned char exponent[128];
  148. unsigned char modulus[128];
  149. };
  150. struct type4_lme {
  151. struct type4_hdr header;
  152. unsigned char message[256];
  153. unsigned char exponent[256];
  154. unsigned char modulus[256];
  155. };
  156. struct type4_scr {
  157. struct type4_hdr header;
  158. unsigned char message[128];
  159. unsigned char dp[72];
  160. unsigned char dq[64];
  161. unsigned char p[72];
  162. unsigned char q[64];
  163. unsigned char u[72];
  164. };
  165. struct type4_lcr {
  166. struct type4_hdr header;
  167. unsigned char message[256];
  168. unsigned char dp[136];
  169. unsigned char dq[128];
  170. unsigned char p[136];
  171. unsigned char q[128];
  172. unsigned char u[136];
  173. };
  174. union type4_msg {
  175. struct type4_sme sme;
  176. struct type4_lme lme;
  177. struct type4_scr scr;
  178. struct type4_lcr lcr;
  179. };
  180. struct type84_hdr {
  181. unsigned char reserved1;
  182. unsigned char code;
  183. unsigned short len;
  184. unsigned char reserved2[4];
  185. };
  186. #define TYPE84_RSP_CODE 0x84
  187. struct type6_hdr {
  188. unsigned char reserved1;
  189. unsigned char type;
  190. unsigned char reserved2[2];
  191. unsigned char right[4];
  192. unsigned char reserved3[2];
  193. unsigned char reserved4[2];
  194. unsigned char apfs[4];
  195. unsigned int offset1;
  196. unsigned int offset2;
  197. unsigned int offset3;
  198. unsigned int offset4;
  199. unsigned char agent_id[16];
  200. unsigned char rqid[2];
  201. unsigned char reserved5[2];
  202. unsigned char function_code[2];
  203. unsigned char reserved6[2];
  204. unsigned int ToCardLen1;
  205. unsigned int ToCardLen2;
  206. unsigned int ToCardLen3;
  207. unsigned int ToCardLen4;
  208. unsigned int FromCardLen1;
  209. unsigned int FromCardLen2;
  210. unsigned int FromCardLen3;
  211. unsigned int FromCardLen4;
  212. };
  213. struct CPRB {
  214. unsigned char cprb_len[2];
  215. unsigned char cprb_ver_id;
  216. unsigned char pad_000;
  217. unsigned char srpi_rtcode[4];
  218. unsigned char srpi_verb;
  219. unsigned char flags;
  220. unsigned char func_id[2];
  221. unsigned char checkpoint_flag;
  222. unsigned char resv2;
  223. unsigned char req_parml[2];
  224. unsigned char req_parmp[4];
  225. unsigned char req_datal[4];
  226. unsigned char req_datap[4];
  227. unsigned char rpl_parml[2];
  228. unsigned char pad_001[2];
  229. unsigned char rpl_parmp[4];
  230. unsigned char rpl_datal[4];
  231. unsigned char rpl_datap[4];
  232. unsigned char ccp_rscode[2];
  233. unsigned char ccp_rtcode[2];
  234. unsigned char repd_parml[2];
  235. unsigned char mac_data_len[2];
  236. unsigned char repd_datal[4];
  237. unsigned char req_pc[2];
  238. unsigned char res_origin[8];
  239. unsigned char mac_value[8];
  240. unsigned char logon_id[8];
  241. unsigned char usage_domain[2];
  242. unsigned char resv3[18];
  243. unsigned char svr_namel[2];
  244. unsigned char svr_name[8];
  245. };
  246. struct type6_msg {
  247. struct type6_hdr header;
  248. struct CPRB CPRB;
  249. };
  250. struct type86_hdr {
  251. unsigned char reserved1;
  252. unsigned char type;
  253. unsigned char format;
  254. unsigned char reserved2;
  255. unsigned char reply_code;
  256. unsigned char reserved3[3];
  257. };
  258. #define TYPE86_RSP_CODE 0x86
  259. #define TYPE86_FMT2 0x02
  260. struct type86_fmt2_msg {
  261. struct type86_hdr header;
  262. unsigned char reserved[4];
  263. unsigned char apfs[4];
  264. unsigned int count1;
  265. unsigned int offset1;
  266. unsigned int count2;
  267. unsigned int offset2;
  268. unsigned int count3;
  269. unsigned int offset3;
  270. unsigned int count4;
  271. unsigned int offset4;
  272. };
  273. static struct type6_hdr static_type6_hdr = {
  274. 0x00,
  275. 0x06,
  276. {0x00,0x00},
  277. {0x00,0x00,0x00,0x00},
  278. {0x00,0x00},
  279. {0x00,0x00},
  280. {0x00,0x00,0x00,0x00},
  281. 0x00000058,
  282. 0x00000000,
  283. 0x00000000,
  284. 0x00000000,
  285. {0x01,0x00,0x43,0x43,0x41,0x2D,0x41,0x50,
  286. 0x50,0x4C,0x20,0x20,0x20,0x01,0x01,0x01},
  287. {0x00,0x00},
  288. {0x00,0x00},
  289. {0x50,0x44},
  290. {0x00,0x00},
  291. 0x00000000,
  292. 0x00000000,
  293. 0x00000000,
  294. 0x00000000,
  295. 0x00000000,
  296. 0x00000000,
  297. 0x00000000,
  298. 0x00000000
  299. };
  300. static struct type6_hdr static_type6_hdrX = {
  301. 0x00,
  302. 0x06,
  303. {0x00,0x00},
  304. {0x00,0x00,0x00,0x00},
  305. {0x00,0x00},
  306. {0x00,0x00},
  307. {0x00,0x00,0x00,0x00},
  308. 0x00000058,
  309. 0x00000000,
  310. 0x00000000,
  311. 0x00000000,
  312. {0x43,0x41,0x00,0x00,0x00,0x00,0x00,0x00,
  313. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
  314. {0x00,0x00},
  315. {0x00,0x00},
  316. {0x50,0x44},
  317. {0x00,0x00},
  318. 0x00000000,
  319. 0x00000000,
  320. 0x00000000,
  321. 0x00000000,
  322. 0x00000000,
  323. 0x00000000,
  324. 0x00000000,
  325. 0x00000000
  326. };
  327. static struct CPRB static_cprb = {
  328. {0x70,0x00},
  329. 0x41,
  330. 0x00,
  331. {0x00,0x00,0x00,0x00},
  332. 0x00,
  333. 0x00,
  334. {0x54,0x32},
  335. 0x01,
  336. 0x00,
  337. {0x00,0x00},
  338. {0x00,0x00,0x00,0x00},
  339. {0x00,0x00,0x00,0x00},
  340. {0x00,0x00,0x00,0x00},
  341. {0x00,0x00},
  342. {0x00,0x00},
  343. {0x00,0x00,0x00,0x00},
  344. {0x00,0x00,0x00,0x00},
  345. {0x00,0x00,0x00,0x00},
  346. {0x00,0x00},
  347. {0x00,0x00},
  348. {0x00,0x00},
  349. {0x00,0x00},
  350. {0x00,0x00,0x00,0x00},
  351. {0x00,0x00},
  352. {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
  353. {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
  354. {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
  355. {0x00,0x00},
  356. {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  357. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  358. 0x00,0x00},
  359. {0x08,0x00},
  360. {0x49,0x43,0x53,0x46,0x20,0x20,0x20,0x20}
  361. };
  362. struct function_and_rules_block {
  363. unsigned char function_code[2];
  364. unsigned char ulen[2];
  365. unsigned char only_rule[8];
  366. };
  367. static struct function_and_rules_block static_pkd_function_and_rules = {
  368. {0x50,0x44},
  369. {0x0A,0x00},
  370. {'P','K','C','S','-','1','.','2'}
  371. };
  372. static struct function_and_rules_block static_pke_function_and_rules = {
  373. {0x50,0x4B},
  374. {0x0A,0x00},
  375. {'P','K','C','S','-','1','.','2'}
  376. };
  377. struct T6_keyBlock_hdr {
  378. unsigned char blen[2];
  379. unsigned char ulen[2];
  380. unsigned char flags[2];
  381. };
  382. static struct T6_keyBlock_hdr static_T6_keyBlock_hdr = {
  383. {0x89,0x01},
  384. {0x87,0x01},
  385. {0x00}
  386. };
  387. static struct CPRBX static_cprbx = {
  388. 0x00DC,
  389. 0x02,
  390. {0x00,0x00,0x00},
  391. {0x54,0x32},
  392. {0x00,0x00,0x00,0x00},
  393. 0x00000000,
  394. 0x00000000,
  395. 0x00000000,
  396. 0x00000000,
  397. 0x00000000,
  398. 0x00000000,
  399. 0x00000000,
  400. {0x00,0x00,0x00,0x00},
  401. 0x00000000,
  402. {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  403. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
  404. {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  405. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
  406. {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  407. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
  408. {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  409. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
  410. {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  411. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
  412. {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  413. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
  414. 0x0000,
  415. 0x0000,
  416. 0x00000000,
  417. {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
  418. {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
  419. 0x00,
  420. 0x00,
  421. 0x0000,
  422. {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
  423. {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  424. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  425. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00}
  426. };
  427. static struct function_and_rules_block static_pkd_function_and_rulesX_MCL2 = {
  428. {0x50,0x44},
  429. {0x00,0x0A},
  430. {'P','K','C','S','-','1','.','2'}
  431. };
  432. static struct function_and_rules_block static_pke_function_and_rulesX_MCL2 = {
  433. {0x50,0x4B},
  434. {0x00,0x0A},
  435. {'Z','E','R','O','-','P','A','D'}
  436. };
  437. static struct function_and_rules_block static_pkd_function_and_rulesX = {
  438. {0x50,0x44},
  439. {0x00,0x0A},
  440. {'Z','E','R','O','-','P','A','D'}
  441. };
  442. static struct function_and_rules_block static_pke_function_and_rulesX = {
  443. {0x50,0x4B},
  444. {0x00,0x0A},
  445. {'M','R','P',' ',' ',' ',' ',' '}
  446. };
  447. static unsigned char static_PKE_function_code[2] = {0x50, 0x4B};
  448. struct T6_keyBlock_hdrX {
  449. unsigned short blen;
  450. unsigned short ulen;
  451. unsigned char flags[2];
  452. };
  453. static unsigned char static_pad[256] = {
  454. 0x1B,0x7B,0x5D,0xB5,0x75,0x01,0x3D,0xFD,0x8D,0xD1,0xC7,0x03,0x2D,0x09,0x23,0x57,
  455. 0x89,0x49,0xB9,0x3F,0xBB,0x99,0x41,0x5B,0x75,0x21,0x7B,0x9D,0x3B,0x6B,0x51,0x39,
  456. 0xBB,0x0D,0x35,0xB9,0x89,0x0F,0x93,0xA5,0x0B,0x47,0xF1,0xD3,0xBB,0xCB,0xF1,0x9D,
  457. 0x23,0x73,0x71,0xFF,0xF3,0xF5,0x45,0xFB,0x61,0x29,0x23,0xFD,0xF1,0x29,0x3F,0x7F,
  458. 0x17,0xB7,0x1B,0xA9,0x19,0xBD,0x57,0xA9,0xD7,0x95,0xA3,0xCB,0xED,0x1D,0xDB,0x45,
  459. 0x7D,0x11,0xD1,0x51,0x1B,0xED,0x71,0xE9,0xB1,0xD1,0xAB,0xAB,0x21,0x2B,0x1B,0x9F,
  460. 0x3B,0x9F,0xF7,0xF7,0xBD,0x63,0xEB,0xAD,0xDF,0xB3,0x6F,0x5B,0xDB,0x8D,0xA9,0x5D,
  461. 0xE3,0x7D,0x77,0x49,0x47,0xF5,0xA7,0xFD,0xAB,0x2F,0x27,0x35,0x77,0xD3,0x49,0xC9,
  462. 0x09,0xEB,0xB1,0xF9,0xBF,0x4B,0xCB,0x2B,0xEB,0xEB,0x05,0xFF,0x7D,0xC7,0x91,0x8B,
  463. 0x09,0x83,0xB9,0xB9,0x69,0x33,0x39,0x6B,0x79,0x75,0x19,0xBF,0xBB,0x07,0x1D,0xBD,
  464. 0x29,0xBF,0x39,0x95,0x93,0x1D,0x35,0xC7,0xC9,0x4D,0xE5,0x97,0x0B,0x43,0x9B,0xF1,
  465. 0x16,0x93,0x03,0x1F,0xA5,0xFB,0xDB,0xF3,0x27,0x4F,0x27,0x61,0x05,0x1F,0xB9,0x23,
  466. 0x2F,0xC3,0x81,0xA9,0x23,0x71,0x55,0x55,0xEB,0xED,0x41,0xE5,0xF3,0x11,0xF1,0x43,
  467. 0x69,0x03,0xBD,0x0B,0x37,0x0F,0x51,0x8F,0x0B,0xB5,0x89,0x5B,0x67,0xA9,0xD9,0x4F,
  468. 0x01,0xF9,0x21,0x77,0x37,0x73,0x79,0xC5,0x7F,0x51,0xC1,0xCF,0x97,0xA1,0x75,0xAD,
  469. 0x35,0x9D,0xD3,0xD3,0xA7,0x9D,0x5D,0x41,0x6F,0x65,0x1B,0xCF,0xA9,0x87,0x91,0x09
  470. };
  471. static struct cca_private_ext_ME static_pvt_me_key = {
  472. {
  473. 0x1E,
  474. 0x00,
  475. 0x0183,
  476. {0x00,0x00,0x00,0x00}
  477. },
  478. {
  479. 0x02,
  480. 0x00,
  481. 0x016C,
  482. {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  483. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  484. 0x00,0x00,0x00,0x00},
  485. {0x00,0x00,0x00,0x00},
  486. 0x00,
  487. 0x00,
  488. {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  489. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  490. 0x00,0x00,0x00,0x00},
  491. {0x80,0x00,0x00,0x00},
  492. {0x00,0x00,0x00,0x00,0x00,0x00},
  493. {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  494. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  495. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
  496. {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  497. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  498. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
  499. {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  500. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  501. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  502. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  503. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  504. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  505. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  506. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  507. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  508. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  509. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  510. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  511. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  512. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  513. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  514. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00},
  515. {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  516. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  517. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  518. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  519. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  520. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  521. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  522. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  523. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  524. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  525. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  526. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  527. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  528. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  529. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
  530. 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00}
  531. },
  532. {
  533. 0x04,
  534. 0x00,
  535. 0x000F,
  536. {0x00,0x00},
  537. 0x0003,
  538. 0x0000,
  539. 0x0000,
  540. {0x01,0x00,0x01}
  541. }
  542. };
  543. static struct cca_public_key static_public_key = {
  544. {
  545. 0x1E,
  546. 0x00,
  547. 0x0000,
  548. {0x00,0x00,0x00,0x00}
  549. },
  550. {
  551. 0x04,
  552. 0x00,
  553. 0x0000,
  554. {0x00,0x00},
  555. 0x0000,
  556. 0x0000,
  557. 0x0000,
  558. {0x01,0x00,0x01}
  559. }
  560. };
  561. #define FIXED_TYPE6_ME_LEN 0x0000025F
  562. #define FIXED_TYPE6_ME_EN_LEN 0x000000F0
  563. #define FIXED_TYPE6_ME_LENX 0x000002CB
  564. #define FIXED_TYPE6_ME_EN_LENX 0x0000015C
  565. static struct cca_public_sec static_cca_pub_sec = {
  566. 0x04,
  567. 0x00,
  568. 0x000f,
  569. {0x00,0x00},
  570. 0x0003,
  571. 0x0000,
  572. 0x0000,
  573. {0x01,0x00,0x01}
  574. };
  575. #define FIXED_TYPE6_CR_LEN 0x00000177
  576. #define FIXED_TYPE6_CR_LENX 0x000001E3
  577. #define MAX_RESPONSE_SIZE 0x00000710
  578. #define MAX_RESPONSEX_SIZE 0x0000077C
  579. #define RESPONSE_CPRB_SIZE 0x000006B8
  580. #define RESPONSE_CPRBX_SIZE 0x00000724
  581. struct type50_hdr {
  582. u8 reserved1;
  583. u8 msg_type_code;
  584. u16 msg_len;
  585. u8 reserved2;
  586. u8 ignored;
  587. u16 reserved3;
  588. };
  589. #define TYPE50_TYPE_CODE 0x50
  590. #define TYPE50_MEB1_LEN (sizeof(struct type50_meb1_msg))
  591. #define TYPE50_MEB2_LEN (sizeof(struct type50_meb2_msg))
  592. #define TYPE50_CRB1_LEN (sizeof(struct type50_crb1_msg))
  593. #define TYPE50_CRB2_LEN (sizeof(struct type50_crb2_msg))
  594. #define TYPE50_MEB1_FMT 0x0001
  595. #define TYPE50_MEB2_FMT 0x0002
  596. #define TYPE50_CRB1_FMT 0x0011
  597. #define TYPE50_CRB2_FMT 0x0012
  598. struct type50_meb1_msg {
  599. struct type50_hdr header;
  600. u16 keyblock_type;
  601. u8 reserved[6];
  602. u8 exponent[128];
  603. u8 modulus[128];
  604. u8 message[128];
  605. };
  606. struct type50_meb2_msg {
  607. struct type50_hdr header;
  608. u16 keyblock_type;
  609. u8 reserved[6];
  610. u8 exponent[256];
  611. u8 modulus[256];
  612. u8 message[256];
  613. };
  614. struct type50_crb1_msg {
  615. struct type50_hdr header;
  616. u16 keyblock_type;
  617. u8 reserved[6];
  618. u8 p[64];
  619. u8 q[64];
  620. u8 dp[64];
  621. u8 dq[64];
  622. u8 u[64];
  623. u8 message[128];
  624. };
  625. struct type50_crb2_msg {
  626. struct type50_hdr header;
  627. u16 keyblock_type;
  628. u8 reserved[6];
  629. u8 p[128];
  630. u8 q[128];
  631. u8 dp[128];
  632. u8 dq[128];
  633. u8 u[128];
  634. u8 message[256];
  635. };
  636. union type50_msg {
  637. struct type50_meb1_msg meb1;
  638. struct type50_meb2_msg meb2;
  639. struct type50_crb1_msg crb1;
  640. struct type50_crb2_msg crb2;
  641. };
  642. struct type80_hdr {
  643. u8 reserved1;
  644. u8 type;
  645. u16 len;
  646. u8 code;
  647. u8 reserved2[3];
  648. u8 reserved3[8];
  649. };
  650. #define TYPE80_RSP_CODE 0x80
  651. struct error_hdr {
  652. unsigned char reserved1;
  653. unsigned char type;
  654. unsigned char reserved2[2];
  655. unsigned char reply_code;
  656. unsigned char reserved3[3];
  657. };
  658. #define TYPE82_RSP_CODE 0x82
  659. #define TYPE88_RSP_CODE 0x88
  660. #define REP82_ERROR_MACHINE_FAILURE 0x10
  661. #define REP82_ERROR_PREEMPT_FAILURE 0x12
  662. #define REP82_ERROR_CHECKPT_FAILURE 0x14
  663. #define REP82_ERROR_MESSAGE_TYPE 0x20
  664. #define REP82_ERROR_INVALID_COMM_CD 0x21
  665. #define REP82_ERROR_INVALID_MSG_LEN 0x23
  666. #define REP82_ERROR_RESERVD_FIELD 0x24
  667. #define REP82_ERROR_FORMAT_FIELD 0x29
  668. #define REP82_ERROR_INVALID_COMMAND 0x30
  669. #define REP82_ERROR_MALFORMED_MSG 0x40
  670. #define REP82_ERROR_RESERVED_FIELDO 0x50
  671. #define REP82_ERROR_WORD_ALIGNMENT 0x60
  672. #define REP82_ERROR_MESSAGE_LENGTH 0x80
  673. #define REP82_ERROR_OPERAND_INVALID 0x82
  674. #define REP82_ERROR_OPERAND_SIZE 0x84
  675. #define REP82_ERROR_EVEN_MOD_IN_OPND 0x85
  676. #define REP82_ERROR_RESERVED_FIELD 0x88
  677. #define REP82_ERROR_TRANSPORT_FAIL 0x90
  678. #define REP82_ERROR_PACKET_TRUNCATED 0xA0
  679. #define REP82_ERROR_ZERO_BUFFER_LEN 0xB0
  680. #define REP88_ERROR_MODULE_FAILURE 0x10
  681. #define REP88_ERROR_MODULE_TIMEOUT 0x11
  682. #define REP88_ERROR_MODULE_NOTINIT 0x13
  683. #define REP88_ERROR_MODULE_NOTAVAIL 0x14
  684. #define REP88_ERROR_MODULE_DISABLED 0x15
  685. #define REP88_ERROR_MODULE_IN_DIAGN 0x17
  686. #define REP88_ERROR_FASTPATH_DISABLD 0x19
  687. #define REP88_ERROR_MESSAGE_TYPE 0x20
  688. #define REP88_ERROR_MESSAGE_MALFORMD 0x22
  689. #define REP88_ERROR_MESSAGE_LENGTH 0x23
  690. #define REP88_ERROR_RESERVED_FIELD 0x24
  691. #define REP88_ERROR_KEY_TYPE 0x34
  692. #define REP88_ERROR_INVALID_KEY 0x82
  693. #define REP88_ERROR_OPERAND 0x84
  694. #define REP88_ERROR_OPERAND_EVEN_MOD 0x85
  695. #define CALLER_HEADER 12
  696. static inline int
  697. testq(int q_nr, int *q_depth, int *dev_type, struct ap_status_word *stat)
  698. {
  699. int ccode;
  700. asm volatile
  701. #ifdef CONFIG_64BIT
  702. (" llgfr 0,%4 \n"
  703. " slgr 1,1 \n"
  704. " lgr 2,1 \n"
  705. "0: .long 0xb2af0000 \n"
  706. "1: ipm %0 \n"
  707. " srl %0,28 \n"
  708. " iihh %0,0 \n"
  709. " iihl %0,0 \n"
  710. " lgr %1,1 \n"
  711. " lgr %3,2 \n"
  712. " srl %3,24 \n"
  713. " sll 2,24 \n"
  714. " srl 2,24 \n"
  715. " lgr %2,2 \n"
  716. "2: \n"
  717. ".section .fixup,\"ax\" \n"
  718. "3: \n"
  719. " lhi %0,%h5 \n"
  720. " jg 2b \n"
  721. ".previous \n"
  722. ".section __ex_table,\"a\" \n"
  723. " .align 8 \n"
  724. " .quad 0b,3b \n"
  725. " .quad 1b,3b \n"
  726. ".previous"
  727. :"=d" (ccode),"=d" (*stat),"=d" (*q_depth), "=d" (*dev_type)
  728. :"d" (q_nr), "K" (DEV_TSQ_EXCEPTION)
  729. :"cc","0","1","2","memory");
  730. #else
  731. (" lr 0,%4 \n"
  732. " slr 1,1 \n"
  733. " lr 2,1 \n"
  734. "0: .long 0xb2af0000 \n"
  735. "1: ipm %0 \n"
  736. " srl %0,28 \n"
  737. " lr %1,1 \n"
  738. " lr %3,2 \n"
  739. " srl %3,24 \n"
  740. " sll 2,24 \n"
  741. " srl 2,24 \n"
  742. " lr %2,2 \n"
  743. "2: \n"
  744. ".section .fixup,\"ax\" \n"
  745. "3: \n"
  746. " lhi %0,%h5 \n"
  747. " bras 1,4f \n"
  748. " .long 2b \n"
  749. "4: \n"
  750. " l 1,0(1) \n"
  751. " br 1 \n"
  752. ".previous \n"
  753. ".section __ex_table,\"a\" \n"
  754. " .align 4 \n"
  755. " .long 0b,3b \n"
  756. " .long 1b,3b \n"
  757. ".previous"
  758. :"=d" (ccode),"=d" (*stat),"=d" (*q_depth), "=d" (*dev_type)
  759. :"d" (q_nr), "K" (DEV_TSQ_EXCEPTION)
  760. :"cc","0","1","2","memory");
  761. #endif
  762. return ccode;
  763. }
  764. static inline int
  765. resetq(int q_nr, struct ap_status_word *stat_p)
  766. {
  767. int ccode;
  768. asm volatile
  769. #ifdef CONFIG_64BIT
  770. (" llgfr 0,%2 \n"
  771. " lghi 1,1 \n"
  772. " sll 1,24 \n"
  773. " or 0,1 \n"
  774. " slgr 1,1 \n"
  775. " lgr 2,1 \n"
  776. "0: .long 0xb2af0000 \n"
  777. "1: ipm %0 \n"
  778. " srl %0,28 \n"
  779. " iihh %0,0 \n"
  780. " iihl %0,0 \n"
  781. " lgr %1,1 \n"
  782. "2: \n"
  783. ".section .fixup,\"ax\" \n"
  784. "3: \n"
  785. " lhi %0,%h3 \n"
  786. " jg 2b \n"
  787. ".previous \n"
  788. ".section __ex_table,\"a\" \n"
  789. " .align 8 \n"
  790. " .quad 0b,3b \n"
  791. " .quad 1b,3b \n"
  792. ".previous"
  793. :"=d" (ccode),"=d" (*stat_p)
  794. :"d" (q_nr), "K" (DEV_RSQ_EXCEPTION)
  795. :"cc","0","1","2","memory");
  796. #else
  797. (" lr 0,%2 \n"
  798. " lhi 1,1 \n"
  799. " sll 1,24 \n"
  800. " or 0,1 \n"
  801. " slr 1,1 \n"
  802. " lr 2,1 \n"
  803. "0: .long 0xb2af0000 \n"
  804. "1: ipm %0 \n"
  805. " srl %0,28 \n"
  806. " lr %1,1 \n"
  807. "2: \n"
  808. ".section .fixup,\"ax\" \n"
  809. "3: \n"
  810. " lhi %0,%h3 \n"
  811. " bras 1,4f \n"
  812. " .long 2b \n"
  813. "4: \n"
  814. " l 1,0(1) \n"
  815. " br 1 \n"
  816. ".previous \n"
  817. ".section __ex_table,\"a\" \n"
  818. " .align 4 \n"
  819. " .long 0b,3b \n"
  820. " .long 1b,3b \n"
  821. ".previous"
  822. :"=d" (ccode),"=d" (*stat_p)
  823. :"d" (q_nr), "K" (DEV_RSQ_EXCEPTION)
  824. :"cc","0","1","2","memory");
  825. #endif
  826. return ccode;
  827. }
  828. static inline int
  829. sen(int msg_len, unsigned char *msg_ext, struct ap_status_word *stat)
  830. {
  831. int ccode;
  832. asm volatile
  833. #ifdef CONFIG_64BIT
  834. (" lgr 6,%3 \n"
  835. " llgfr 7,%2 \n"
  836. " llgt 0,0(6) \n"
  837. " lghi 1,64 \n"
  838. " sll 1,24 \n"
  839. " or 0,1 \n"
  840. " la 6,4(6) \n"
  841. " llgt 2,0(6) \n"
  842. " llgt 3,4(6) \n"
  843. " la 6,8(6) \n"
  844. " slr 1,1 \n"
  845. "0: .long 0xb2ad0026 \n"
  846. "1: brc 2,0b \n"
  847. " ipm %0 \n"
  848. " srl %0,28 \n"
  849. " iihh %0,0 \n"
  850. " iihl %0,0 \n"
  851. " lgr %1,1 \n"
  852. "2: \n"
  853. ".section .fixup,\"ax\" \n"
  854. "3: \n"
  855. " lhi %0,%h4 \n"
  856. " jg 2b \n"
  857. ".previous \n"
  858. ".section __ex_table,\"a\" \n"
  859. " .align 8 \n"
  860. " .quad 0b,3b \n"
  861. " .quad 1b,3b \n"
  862. ".previous"
  863. :"=d" (ccode),"=d" (*stat)
  864. :"d" (msg_len),"a" (msg_ext), "K" (DEV_SEN_EXCEPTION)
  865. :"cc","0","1","2","3","6","7","memory");
  866. #else
  867. (" lr 6,%3 \n"
  868. " lr 7,%2 \n"
  869. " l 0,0(6) \n"
  870. " lhi 1,64 \n"
  871. " sll 1,24 \n"
  872. " or 0,1 \n"
  873. " la 6,4(6) \n"
  874. " l 2,0(6) \n"
  875. " l 3,4(6) \n"
  876. " la 6,8(6) \n"
  877. " slr 1,1 \n"
  878. "0: .long 0xb2ad0026 \n"
  879. "1: brc 2,0b \n"
  880. " ipm %0 \n"
  881. " srl %0,28 \n"
  882. " lr %1,1 \n"
  883. "2: \n"
  884. ".section .fixup,\"ax\" \n"
  885. "3: \n"
  886. " lhi %0,%h4 \n"
  887. " bras 1,4f \n"
  888. " .long 2b \n"
  889. "4: \n"
  890. " l 1,0(1) \n"
  891. " br 1 \n"
  892. ".previous \n"
  893. ".section __ex_table,\"a\" \n"
  894. " .align 4 \n"
  895. " .long 0b,3b \n"
  896. " .long 1b,3b \n"
  897. ".previous"
  898. :"=d" (ccode),"=d" (*stat)
  899. :"d" (msg_len),"a" (msg_ext), "K" (DEV_SEN_EXCEPTION)
  900. :"cc","0","1","2","3","6","7","memory");
  901. #endif
  902. return ccode;
  903. }
  904. static inline int
  905. rec(int q_nr, int buff_l, unsigned char *rsp, unsigned char *id,
  906. struct ap_status_word *st)
  907. {
  908. int ccode;
  909. asm volatile
  910. #ifdef CONFIG_64BIT
  911. (" llgfr 0,%2 \n"
  912. " lgr 3,%4 \n"
  913. " lgr 6,%3 \n"
  914. " llgfr 7,%5 \n"
  915. " lghi 1,128 \n"
  916. " sll 1,24 \n"
  917. " or 0,1 \n"
  918. " slgr 1,1 \n"
  919. " lgr 2,1 \n"
  920. " lgr 4,1 \n"
  921. " lgr 5,1 \n"
  922. "0: .long 0xb2ae0046 \n"
  923. "1: brc 2,0b \n"
  924. " brc 4,0b \n"
  925. " ipm %0 \n"
  926. " srl %0,28 \n"
  927. " iihh %0,0 \n"
  928. " iihl %0,0 \n"
  929. " lgr %1,1 \n"
  930. " st 4,0(3) \n"
  931. " st 5,4(3) \n"
  932. "2: \n"
  933. ".section .fixup,\"ax\" \n"
  934. "3: \n"
  935. " lhi %0,%h6 \n"
  936. " jg 2b \n"
  937. ".previous \n"
  938. ".section __ex_table,\"a\" \n"
  939. " .align 8 \n"
  940. " .quad 0b,3b \n"
  941. " .quad 1b,3b \n"
  942. ".previous"
  943. :"=d"(ccode),"=d"(*st)
  944. :"d" (q_nr), "d" (rsp), "d" (id), "d" (buff_l), "K" (DEV_REC_EXCEPTION)
  945. :"cc","0","1","2","3","4","5","6","7","memory");
  946. #else
  947. (" lr 0,%2 \n"
  948. " lr 3,%4 \n"
  949. " lr 6,%3 \n"
  950. " lr 7,%5 \n"
  951. " lhi 1,128 \n"
  952. " sll 1,24 \n"
  953. " or 0,1 \n"
  954. " slr 1,1 \n"
  955. " lr 2,1 \n"
  956. " lr 4,1 \n"
  957. " lr 5,1 \n"
  958. "0: .long 0xb2ae0046 \n"
  959. "1: brc 2,0b \n"
  960. " brc 4,0b \n"
  961. " ipm %0 \n"
  962. " srl %0,28 \n"
  963. " lr %1,1 \n"
  964. " st 4,0(3) \n"
  965. " st 5,4(3) \n"
  966. "2: \n"
  967. ".section .fixup,\"ax\" \n"
  968. "3: \n"
  969. " lhi %0,%h6 \n"
  970. " bras 1,4f \n"
  971. " .long 2b \n"
  972. "4: \n"
  973. " l 1,0(1) \n"
  974. " br 1 \n"
  975. ".previous \n"
  976. ".section __ex_table,\"a\" \n"
  977. " .align 4 \n"
  978. " .long 0b,3b \n"
  979. " .long 1b,3b \n"
  980. ".previous"
  981. :"=d"(ccode),"=d"(*st)
  982. :"d" (q_nr), "d" (rsp), "d" (id), "d" (buff_l), "K" (DEV_REC_EXCEPTION)
  983. :"cc","0","1","2","3","4","5","6","7","memory");
  984. #endif
  985. return ccode;
  986. }
  987. static inline void
  988. itoLe2(int *i_p, unsigned char *lechars)
  989. {
  990. *lechars = *((unsigned char *) i_p + sizeof(int) - 1);
  991. *(lechars + 1) = *((unsigned char *) i_p + sizeof(int) - 2);
  992. }
  993. static inline void
  994. le2toI(unsigned char *lechars, int *i_p)
  995. {
  996. unsigned char *ic_p;
  997. *i_p = 0;
  998. ic_p = (unsigned char *) i_p;
  999. *(ic_p + 2) = *(lechars + 1);
  1000. *(ic_p + 3) = *(lechars);
  1001. }
  1002. static inline int
  1003. is_empty(unsigned char *ptr, int len)
  1004. {
  1005. return !memcmp(ptr, (unsigned char *) &static_pvt_me_key+60, len);
  1006. }
  1007. enum hdstat
  1008. query_online(int deviceNr, int cdx, int resetNr, int *q_depth, int *dev_type)
  1009. {
  1010. int q_nr, i, t_depth, t_dev_type;
  1011. enum devstat ccode;
  1012. struct ap_status_word stat_word;
  1013. enum hdstat stat;
  1014. int break_out;
  1015. q_nr = (deviceNr << SKIP_BITL) + cdx;
  1016. stat = HD_BUSY;
  1017. ccode = testq(q_nr, &t_depth, &t_dev_type, &stat_word);
  1018. PDEBUG("ccode %d response_code %02X\n", ccode, stat_word.response_code);
  1019. break_out = 0;
  1020. for (i = 0; i < resetNr; i++) {
  1021. if (ccode > 3) {
  1022. PRINTKC("Exception testing device %d\n", i);
  1023. return HD_TSQ_EXCEPTION;
  1024. }
  1025. switch (ccode) {
  1026. case 0:
  1027. PDEBUG("t_dev_type %d\n", t_dev_type);
  1028. break_out = 1;
  1029. stat = HD_ONLINE;
  1030. *q_depth = t_depth + 1;
  1031. switch (t_dev_type) {
  1032. case PCICA_HW:
  1033. *dev_type = PCICA;
  1034. break;
  1035. case PCICC_HW:
  1036. *dev_type = PCICC;
  1037. break;
  1038. case PCIXCC_HW:
  1039. *dev_type = PCIXCC_UNK;
  1040. break;
  1041. case CEX2C_HW:
  1042. *dev_type = CEX2C;
  1043. break;
  1044. case CEX2A_HW:
  1045. *dev_type = CEX2A;
  1046. break;
  1047. default:
  1048. *dev_type = NILDEV;
  1049. break;
  1050. }
  1051. PDEBUG("available device %d: Q depth = %d, dev "
  1052. "type = %d, stat = %02X%02X%02X%02X\n",
  1053. deviceNr, *q_depth, *dev_type,
  1054. stat_word.q_stat_flags,
  1055. stat_word.response_code,
  1056. stat_word.reserved[0],
  1057. stat_word.reserved[1]);
  1058. break;
  1059. case 3:
  1060. switch (stat_word.response_code) {
  1061. case AP_RESPONSE_NORMAL:
  1062. stat = HD_ONLINE;
  1063. break_out = 1;
  1064. *q_depth = t_depth + 1;
  1065. *dev_type = t_dev_type;
  1066. PDEBUG("cc3, available device "
  1067. "%d: Q depth = %d, dev "
  1068. "type = %d, stat = "
  1069. "%02X%02X%02X%02X\n",
  1070. deviceNr, *q_depth,
  1071. *dev_type,
  1072. stat_word.q_stat_flags,
  1073. stat_word.response_code,
  1074. stat_word.reserved[0],
  1075. stat_word.reserved[1]);
  1076. break;
  1077. case AP_RESPONSE_Q_NOT_AVAIL:
  1078. stat = HD_NOT_THERE;
  1079. break_out = 1;
  1080. break;
  1081. case AP_RESPONSE_RESET_IN_PROGRESS:
  1082. PDEBUG("device %d in reset\n",
  1083. deviceNr);
  1084. break;
  1085. case AP_RESPONSE_DECONFIGURED:
  1086. stat = HD_DECONFIGURED;
  1087. break_out = 1;
  1088. break;
  1089. case AP_RESPONSE_CHECKSTOPPED:
  1090. stat = HD_CHECKSTOPPED;
  1091. break_out = 1;
  1092. break;
  1093. case AP_RESPONSE_BUSY:
  1094. PDEBUG("device %d busy\n",
  1095. deviceNr);
  1096. break;
  1097. default:
  1098. break;
  1099. }
  1100. break;
  1101. default:
  1102. stat = HD_NOT_THERE;
  1103. break_out = 1;
  1104. break;
  1105. }
  1106. if (break_out)
  1107. break;
  1108. udelay(5);
  1109. ccode = testq(q_nr, &t_depth, &t_dev_type, &stat_word);
  1110. }
  1111. return stat;
  1112. }
  1113. enum devstat
  1114. reset_device(int deviceNr, int cdx, int resetNr)
  1115. {
  1116. int q_nr, ccode = 0, dummy_qdepth, dummy_devType, i;
  1117. struct ap_status_word stat_word;
  1118. enum devstat stat;
  1119. int break_out;
  1120. q_nr = (deviceNr << SKIP_BITL) + cdx;
  1121. stat = DEV_GONE;
  1122. ccode = resetq(q_nr, &stat_word);
  1123. if (ccode > 3)
  1124. return DEV_RSQ_EXCEPTION;
  1125. break_out = 0;
  1126. for (i = 0; i < resetNr; i++) {
  1127. switch (ccode) {
  1128. case 0:
  1129. stat = DEV_ONLINE;
  1130. if (stat_word.q_stat_flags & AP_Q_STATUS_EMPTY)
  1131. break_out = 1;
  1132. break;
  1133. case 3:
  1134. switch (stat_word.response_code) {
  1135. case AP_RESPONSE_NORMAL:
  1136. stat = DEV_ONLINE;
  1137. if (stat_word.q_stat_flags & AP_Q_STATUS_EMPTY)
  1138. break_out = 1;
  1139. break;
  1140. case AP_RESPONSE_Q_NOT_AVAIL:
  1141. case AP_RESPONSE_DECONFIGURED:
  1142. case AP_RESPONSE_CHECKSTOPPED:
  1143. stat = DEV_GONE;
  1144. break_out = 1;
  1145. break;
  1146. case AP_RESPONSE_RESET_IN_PROGRESS:
  1147. case AP_RESPONSE_BUSY:
  1148. default:
  1149. break;
  1150. }
  1151. break;
  1152. default:
  1153. stat = DEV_GONE;
  1154. break_out = 1;
  1155. break;
  1156. }
  1157. if (break_out == 1)
  1158. break;
  1159. udelay(5);
  1160. ccode = testq(q_nr, &dummy_qdepth, &dummy_devType, &stat_word);
  1161. if (ccode > 3) {
  1162. stat = DEV_TSQ_EXCEPTION;
  1163. break;
  1164. }
  1165. }
  1166. PDEBUG("Number of testq's needed for reset: %d\n", i);
  1167. if (i >= resetNr) {
  1168. stat = DEV_GONE;
  1169. }
  1170. return stat;
  1171. }
  1172. #ifdef DEBUG_HYDRA_MSGS
  1173. static inline void
  1174. print_buffer(unsigned char *buffer, int bufflen)
  1175. {
  1176. int i;
  1177. for (i = 0; i < bufflen; i += 16) {
  1178. PRINTK("%04X: %02X%02X%02X%02X %02X%02X%02X%02X "
  1179. "%02X%02X%02X%02X %02X%02X%02X%02X\n", i,
  1180. buffer[i+0], buffer[i+1], buffer[i+2], buffer[i+3],
  1181. buffer[i+4], buffer[i+5], buffer[i+6], buffer[i+7],
  1182. buffer[i+8], buffer[i+9], buffer[i+10], buffer[i+11],
  1183. buffer[i+12], buffer[i+13], buffer[i+14], buffer[i+15]);
  1184. }
  1185. }
  1186. #endif
  1187. enum devstat
  1188. send_to_AP(int dev_nr, int cdx, int msg_len, unsigned char *msg_ext)
  1189. {
  1190. struct ap_status_word stat_word;
  1191. enum devstat stat;
  1192. int ccode;
  1193. u32 *q_nr_p = (u32 *)msg_ext;
  1194. *q_nr_p = (dev_nr << SKIP_BITL) + cdx;
  1195. PDEBUG("msg_len passed to sen: %d\n", msg_len);
  1196. PDEBUG("q number passed to sen: %02x%02x%02x%02x\n",
  1197. msg_ext[0], msg_ext[1], msg_ext[2], msg_ext[3]);
  1198. stat = DEV_GONE;
  1199. #ifdef DEBUG_HYDRA_MSGS
  1200. PRINTK("Request header: %02X%02X%02X%02X %02X%02X%02X%02X "
  1201. "%02X%02X%02X%02X\n",
  1202. msg_ext[0], msg_ext[1], msg_ext[2], msg_ext[3],
  1203. msg_ext[4], msg_ext[5], msg_ext[6], msg_ext[7],
  1204. msg_ext[8], msg_ext[9], msg_ext[10], msg_ext[11]);
  1205. print_buffer(msg_ext+CALLER_HEADER, msg_len);
  1206. #endif
  1207. ccode = sen(msg_len, msg_ext, &stat_word);
  1208. if (ccode > 3)
  1209. return DEV_SEN_EXCEPTION;
  1210. PDEBUG("nq cc: %u, st: %02x%02x%02x%02x\n",
  1211. ccode, stat_word.q_stat_flags, stat_word.response_code,
  1212. stat_word.reserved[0], stat_word.reserved[1]);
  1213. switch (ccode) {
  1214. case 0:
  1215. stat = DEV_ONLINE;
  1216. break;
  1217. case 1:
  1218. stat = DEV_GONE;
  1219. break;
  1220. case 3:
  1221. switch (stat_word.response_code) {
  1222. case AP_RESPONSE_NORMAL:
  1223. stat = DEV_ONLINE;
  1224. break;
  1225. case AP_RESPONSE_Q_FULL:
  1226. stat = DEV_QUEUE_FULL;
  1227. break;
  1228. default:
  1229. stat = DEV_GONE;
  1230. break;
  1231. }
  1232. break;
  1233. default:
  1234. stat = DEV_GONE;
  1235. break;
  1236. }
  1237. return stat;
  1238. }
  1239. enum devstat
  1240. receive_from_AP(int dev_nr, int cdx, int resplen, unsigned char *resp,
  1241. unsigned char *psmid)
  1242. {
  1243. int ccode;
  1244. struct ap_status_word stat_word;
  1245. enum devstat stat;
  1246. memset(resp, 0x00, 8);
  1247. ccode = rec((dev_nr << SKIP_BITL) + cdx, resplen, resp, psmid,
  1248. &stat_word);
  1249. if (ccode > 3)
  1250. return DEV_REC_EXCEPTION;
  1251. PDEBUG("dq cc: %u, st: %02x%02x%02x%02x\n",
  1252. ccode, stat_word.q_stat_flags, stat_word.response_code,
  1253. stat_word.reserved[0], stat_word.reserved[1]);
  1254. stat = DEV_GONE;
  1255. switch (ccode) {
  1256. case 0:
  1257. stat = DEV_ONLINE;
  1258. #ifdef DEBUG_HYDRA_MSGS
  1259. print_buffer(resp, resplen);
  1260. #endif
  1261. break;
  1262. case 3:
  1263. switch (stat_word.response_code) {
  1264. case AP_RESPONSE_NORMAL:
  1265. stat = DEV_ONLINE;
  1266. break;
  1267. case AP_RESPONSE_NO_PENDING_REPLY:
  1268. if (stat_word.q_stat_flags & AP_Q_STATUS_EMPTY)
  1269. stat = DEV_EMPTY;
  1270. else
  1271. stat = DEV_NO_WORK;
  1272. break;
  1273. case AP_RESPONSE_INDEX_TOO_BIG:
  1274. case AP_RESPONSE_NO_FIRST_PART:
  1275. case AP_RESPONSE_MESSAGE_TOO_BIG:
  1276. stat = DEV_BAD_MESSAGE;
  1277. break;
  1278. default:
  1279. break;
  1280. }
  1281. break;
  1282. default:
  1283. break;
  1284. }
  1285. return stat;
  1286. }
  1287. static inline int
  1288. pad_msg(unsigned char *buffer, int totalLength, int msgLength)
  1289. {
  1290. int pad_len;
  1291. for (pad_len = 0; pad_len < (totalLength - msgLength); pad_len++)
  1292. if (buffer[pad_len] != 0x00)
  1293. break;
  1294. pad_len -= 3;
  1295. if (pad_len < 8)
  1296. return SEN_PAD_ERROR;
  1297. buffer[0] = 0x00;
  1298. buffer[1] = 0x02;
  1299. memcpy(buffer+2, static_pad, pad_len);
  1300. buffer[pad_len + 2] = 0x00;
  1301. return 0;
  1302. }
  1303. static inline int
  1304. is_common_public_key(unsigned char *key, int len)
  1305. {
  1306. int i;
  1307. for (i = 0; i < len; i++)
  1308. if (key[i])
  1309. break;
  1310. key += i;
  1311. len -= i;
  1312. if (((len == 1) && (key[0] == 3)) ||
  1313. ((len == 3) && (key[0] == 1) && (key[1] == 0) && (key[2] == 1)))
  1314. return 1;
  1315. return 0;
  1316. }
  1317. static int
  1318. ICAMEX_msg_to_type4MEX_msg(struct ica_rsa_modexpo *icaMex_p, int *z90cMsg_l_p,
  1319. union type4_msg *z90cMsg_p)
  1320. {
  1321. int mod_len, msg_size, mod_tgt_len, exp_tgt_len, inp_tgt_len;
  1322. unsigned char *mod_tgt, *exp_tgt, *inp_tgt;
  1323. union type4_msg *tmp_type4_msg;
  1324. mod_len = icaMex_p->inputdatalength;
  1325. msg_size = ((mod_len <= 128) ? TYPE4_SME_LEN : TYPE4_LME_LEN) +
  1326. CALLER_HEADER;
  1327. memset(z90cMsg_p, 0, msg_size);
  1328. tmp_type4_msg = (union type4_msg *)
  1329. ((unsigned char *) z90cMsg_p + CALLER_HEADER);
  1330. tmp_type4_msg->sme.header.msg_type_code = TYPE4_TYPE_CODE;
  1331. tmp_type4_msg->sme.header.request_code = TYPE4_REQU_CODE;
  1332. if (mod_len <= 128) {
  1333. tmp_type4_msg->sme.header.msg_fmt = TYPE4_SME_FMT;
  1334. tmp_type4_msg->sme.header.msg_len = TYPE4_SME_LEN;
  1335. mod_tgt = tmp_type4_msg->sme.modulus;
  1336. mod_tgt_len = sizeof(tmp_type4_msg->sme.modulus);
  1337. exp_tgt = tmp_type4_msg->sme.exponent;
  1338. exp_tgt_len = sizeof(tmp_type4_msg->sme.exponent);
  1339. inp_tgt = tmp_type4_msg->sme.message;
  1340. inp_tgt_len = sizeof(tmp_type4_msg->sme.message);
  1341. } else {
  1342. tmp_type4_msg->lme.header.msg_fmt = TYPE4_LME_FMT;
  1343. tmp_type4_msg->lme.header.msg_len = TYPE4_LME_LEN;
  1344. mod_tgt = tmp_type4_msg->lme.modulus;
  1345. mod_tgt_len = sizeof(tmp_type4_msg->lme.modulus);
  1346. exp_tgt = tmp_type4_msg->lme.exponent;
  1347. exp_tgt_len = sizeof(tmp_type4_msg->lme.exponent);
  1348. inp_tgt = tmp_type4_msg->lme.message;
  1349. inp_tgt_len = sizeof(tmp_type4_msg->lme.message);
  1350. }
  1351. mod_tgt += (mod_tgt_len - mod_len);
  1352. if (copy_from_user(mod_tgt, icaMex_p->n_modulus, mod_len))
  1353. return SEN_RELEASED;
  1354. if (is_empty(mod_tgt, mod_len))
  1355. return SEN_USER_ERROR;
  1356. exp_tgt += (exp_tgt_len - mod_len);
  1357. if (copy_from_user(exp_tgt, icaMex_p->b_key, mod_len))
  1358. return SEN_RELEASED;
  1359. if (is_empty(exp_tgt, mod_len))
  1360. return SEN_USER_ERROR;
  1361. inp_tgt += (inp_tgt_len - mod_len);
  1362. if (copy_from_user(inp_tgt, icaMex_p->inputdata, mod_len))
  1363. return SEN_RELEASED;
  1364. if (is_empty(inp_tgt, mod_len))
  1365. return SEN_USER_ERROR;
  1366. *z90cMsg_l_p = msg_size - CALLER_HEADER;
  1367. return 0;
  1368. }
  1369. static int
  1370. ICACRT_msg_to_type4CRT_msg(struct ica_rsa_modexpo_crt *icaMsg_p,
  1371. int *z90cMsg_l_p, union type4_msg *z90cMsg_p)
  1372. {
  1373. int mod_len, short_len, long_len, tmp_size, p_tgt_len, q_tgt_len,
  1374. dp_tgt_len, dq_tgt_len, u_tgt_len, inp_tgt_len;
  1375. unsigned char *p_tgt, *q_tgt, *dp_tgt, *dq_tgt, *u_tgt, *inp_tgt;
  1376. union type4_msg *tmp_type4_msg;
  1377. mod_len = icaMsg_p->inputdatalength;
  1378. short_len = mod_len / 2;
  1379. long_len = mod_len / 2 + 8;
  1380. tmp_size = ((mod_len <= 128) ? TYPE4_SCR_LEN : TYPE4_LCR_LEN) +
  1381. CALLER_HEADER;
  1382. memset(z90cMsg_p, 0, tmp_size);
  1383. tmp_type4_msg = (union type4_msg *)
  1384. ((unsigned char *) z90cMsg_p + CALLER_HEADER);
  1385. tmp_type4_msg->scr.header.msg_type_code = TYPE4_TYPE_CODE;
  1386. tmp_type4_msg->scr.header.request_code = TYPE4_REQU_CODE;
  1387. if (mod_len <= 128) {
  1388. tmp_type4_msg->scr.header.msg_fmt = TYPE4_SCR_FMT;
  1389. tmp_type4_msg->scr.header.msg_len = TYPE4_SCR_LEN;
  1390. p_tgt = tmp_type4_msg->scr.p;
  1391. p_tgt_len = sizeof(tmp_type4_msg->scr.p);
  1392. q_tgt = tmp_type4_msg->scr.q;
  1393. q_tgt_len = sizeof(tmp_type4_msg->scr.q);
  1394. dp_tgt = tmp_type4_msg->scr.dp;
  1395. dp_tgt_len = sizeof(tmp_type4_msg->scr.dp);
  1396. dq_tgt = tmp_type4_msg->scr.dq;
  1397. dq_tgt_len = sizeof(tmp_type4_msg->scr.dq);
  1398. u_tgt = tmp_type4_msg->scr.u;
  1399. u_tgt_len = sizeof(tmp_type4_msg->scr.u);
  1400. inp_tgt = tmp_type4_msg->scr.message;
  1401. inp_tgt_len = sizeof(tmp_type4_msg->scr.message);
  1402. } else {
  1403. tmp_type4_msg->lcr.header.msg_fmt = TYPE4_LCR_FMT;
  1404. tmp_type4_msg->lcr.header.msg_len = TYPE4_LCR_LEN;
  1405. p_tgt = tmp_type4_msg->lcr.p;
  1406. p_tgt_len = sizeof(tmp_type4_msg->lcr.p);
  1407. q_tgt = tmp_type4_msg->lcr.q;
  1408. q_tgt_len = sizeof(tmp_type4_msg->lcr.q);
  1409. dp_tgt = tmp_type4_msg->lcr.dp;
  1410. dp_tgt_len = sizeof(tmp_type4_msg->lcr.dp);
  1411. dq_tgt = tmp_type4_msg->lcr.dq;
  1412. dq_tgt_len = sizeof(tmp_type4_msg->lcr.dq);
  1413. u_tgt = tmp_type4_msg->lcr.u;
  1414. u_tgt_len = sizeof(tmp_type4_msg->lcr.u);
  1415. inp_tgt = tmp_type4_msg->lcr.message;
  1416. inp_tgt_len = sizeof(tmp_type4_msg->lcr.message);
  1417. }
  1418. p_tgt += (p_tgt_len - long_len);
  1419. if (copy_from_user(p_tgt, icaMsg_p->np_prime, long_len))
  1420. return SEN_RELEASED;
  1421. if (is_empty(p_tgt, long_len))
  1422. return SEN_USER_ERROR;
  1423. q_tgt += (q_tgt_len - short_len);
  1424. if (copy_from_user(q_tgt, icaMsg_p->nq_prime, short_len))
  1425. return SEN_RELEASED;
  1426. if (is_empty(q_tgt, short_len))
  1427. return SEN_USER_ERROR;
  1428. dp_tgt += (dp_tgt_len - long_len);
  1429. if (copy_from_user(dp_tgt, icaMsg_p->bp_key, long_len))
  1430. return SEN_RELEASED;
  1431. if (is_empty(dp_tgt, long_len))
  1432. return SEN_USER_ERROR;
  1433. dq_tgt += (dq_tgt_len - short_len);
  1434. if (copy_from_user(dq_tgt, icaMsg_p->bq_key, short_len))
  1435. return SEN_RELEASED;
  1436. if (is_empty(dq_tgt, short_len))
  1437. return SEN_USER_ERROR;
  1438. u_tgt += (u_tgt_len - long_len);
  1439. if (copy_from_user(u_tgt, icaMsg_p->u_mult_inv, long_len))
  1440. return SEN_RELEASED;
  1441. if (is_empty(u_tgt, long_len))
  1442. return SEN_USER_ERROR;
  1443. inp_tgt += (inp_tgt_len - mod_len);
  1444. if (copy_from_user(inp_tgt, icaMsg_p->inputdata, mod_len))
  1445. return SEN_RELEASED;
  1446. if (is_empty(inp_tgt, mod_len))
  1447. return SEN_USER_ERROR;
  1448. *z90cMsg_l_p = tmp_size - CALLER_HEADER;
  1449. return 0;
  1450. }
  1451. static int
  1452. ICAMEX_msg_to_type6MEX_de_msg(struct ica_rsa_modexpo *icaMsg_p, int cdx,
  1453. int *z90cMsg_l_p, struct type6_msg *z90cMsg_p)
  1454. {
  1455. int mod_len, vud_len, tmp_size, total_CPRB_len, parmBlock_l;
  1456. unsigned char *temp;
  1457. struct type6_hdr *tp6Hdr_p;
  1458. struct CPRB *cprb_p;
  1459. struct cca_private_ext_ME *key_p;
  1460. static int deprecated_msg_count = 0;
  1461. mod_len = icaMsg_p->inputdatalength;
  1462. tmp_size = FIXED_TYPE6_ME_LEN + mod_len;
  1463. total_CPRB_len = tmp_size - sizeof(struct type6_hdr);
  1464. parmBlock_l = total_CPRB_len - sizeof(struct CPRB);
  1465. tmp_size = 4*((tmp_size + 3)/4) + CALLER_HEADER;
  1466. memset(z90cMsg_p, 0, tmp_size);
  1467. temp = (unsigned char *)z90cMsg_p + CALLER_HEADER;
  1468. memcpy(temp, &static_type6_hdr, sizeof(struct type6_hdr));
  1469. tp6Hdr_p = (struct type6_hdr *)temp;
  1470. tp6Hdr_p->ToCardLen1 = 4*((total_CPRB_len+3)/4);
  1471. tp6Hdr_p->FromCardLen1 = RESPONSE_CPRB_SIZE;
  1472. temp += sizeof(struct type6_hdr);
  1473. memcpy(temp, &static_cprb, sizeof(struct CPRB));
  1474. cprb_p = (struct CPRB *) temp;
  1475. cprb_p->usage_domain[0]= (unsigned char)cdx;
  1476. itoLe2(&parmBlock_l, cprb_p->req_parml);
  1477. itoLe2((int *)&(tp6Hdr_p->FromCardLen1), cprb_p->rpl_parml);
  1478. temp += sizeof(struct CPRB);
  1479. memcpy(temp, &static_pkd_function_and_rules,
  1480. sizeof(struct function_and_rules_block));
  1481. temp += sizeof(struct function_and_rules_block);
  1482. vud_len = 2 + icaMsg_p->inputdatalength;
  1483. itoLe2(&vud_len, temp);
  1484. temp += 2;
  1485. if (copy_from_user(temp, icaMsg_p->inputdata, mod_len))
  1486. return SEN_RELEASED;
  1487. if (is_empty(temp, mod_len))
  1488. return SEN_USER_ERROR;
  1489. temp += mod_len;
  1490. memcpy(temp, &static_T6_keyBlock_hdr, sizeof(struct T6_keyBlock_hdr));
  1491. temp += sizeof(struct T6_keyBlock_hdr);
  1492. memcpy(temp, &static_pvt_me_key, sizeof(struct cca_private_ext_ME));
  1493. key_p = (struct cca_private_ext_ME *)temp;
  1494. temp = key_p->pvtMESec.exponent + sizeof(key_p->pvtMESec.exponent)
  1495. - mod_len;
  1496. if (copy_from_user(temp, icaMsg_p->b_key, mod_len))
  1497. return SEN_RELEASED;
  1498. if (is_empty(temp, mod_len))
  1499. return SEN_USER_ERROR;
  1500. if (is_common_public_key(temp, mod_len)) {
  1501. if (deprecated_msg_count < 20) {
  1502. PRINTK("Common public key used for modex decrypt\n");
  1503. deprecated_msg_count++;
  1504. if (deprecated_msg_count == 20)
  1505. PRINTK("No longer issuing messages about common"
  1506. " public key for modex decrypt.\n");
  1507. }
  1508. return SEN_NOT_AVAIL;
  1509. }
  1510. temp = key_p->pvtMESec.modulus + sizeof(key_p->pvtMESec.modulus)
  1511. - mod_len;
  1512. if (copy_from_user(temp, icaMsg_p->n_modulus, mod_len))
  1513. return SEN_RELEASED;
  1514. if (is_empty(temp, mod_len))
  1515. return SEN_USER_ERROR;
  1516. key_p->pubMESec.modulus_bit_len = 8 * mod_len;
  1517. *z90cMsg_l_p = tmp_size - CALLER_HEADER;
  1518. return 0;
  1519. }
  1520. static int
  1521. ICAMEX_msg_to_type6MEX_en_msg(struct ica_rsa_modexpo *icaMsg_p, int cdx,
  1522. int *z90cMsg_l_p, struct type6_msg *z90cMsg_p)
  1523. {
  1524. int mod_len, vud_len, exp_len, key_len;
  1525. int pad_len, tmp_size, total_CPRB_len, parmBlock_l, i;
  1526. unsigned char *temp_exp, *exp_p, *temp;
  1527. struct type6_hdr *tp6Hdr_p;
  1528. struct CPRB *cprb_p;
  1529. struct cca_public_key *key_p;
  1530. struct T6_keyBlock_hdr *keyb_p;
  1531. temp_exp = kmalloc(256, GFP_KERNEL);
  1532. if (!temp_exp)
  1533. return EGETBUFF;
  1534. mod_len = icaMsg_p->inputdatalength;
  1535. if (copy_from_user(temp_exp, icaMsg_p->b_key, mod_len)) {
  1536. kfree(temp_exp);
  1537. return SEN_RELEASED;
  1538. }
  1539. if (is_empty(temp_exp, mod_len)) {
  1540. kfree(temp_exp);
  1541. return SEN_USER_ERROR;
  1542. }
  1543. exp_p = temp_exp;
  1544. for (i = 0; i < mod_len; i++)
  1545. if (exp_p[i])
  1546. break;
  1547. if (i >= mod_len) {
  1548. kfree(temp_exp);
  1549. return SEN_USER_ERROR;
  1550. }
  1551. exp_len = mod_len - i;
  1552. exp_p += i;
  1553. PDEBUG("exp_len after computation: %08x\n", exp_len);
  1554. tmp_size = FIXED_TYPE6_ME_EN_LEN + 2 * mod_len + exp_len;
  1555. total_CPRB_len = tmp_size - sizeof(struct type6_hdr);
  1556. parmBlock_l = total_CPRB_len - sizeof(struct CPRB);
  1557. tmp_size = 4*((tmp_size + 3)/4) + CALLER_HEADER;
  1558. vud_len = 2 + mod_len;
  1559. memset(z90cMsg_p, 0, tmp_size);
  1560. temp = (unsigned char *)z90cMsg_p + CALLER_HEADER;
  1561. memcpy(temp, &static_type6_hdr, sizeof(struct type6_hdr));
  1562. tp6Hdr_p = (struct type6_hdr *)temp;
  1563. tp6Hdr_p->ToCardLen1 = 4*((total_CPRB_len+3)/4);
  1564. tp6Hdr_p->FromCardLen1 = RESPONSE_CPRB_SIZE;
  1565. memcpy(tp6Hdr_p->function_code, static_PKE_function_code,
  1566. sizeof(static_PKE_function_code));
  1567. temp += sizeof(struct type6_hdr);
  1568. memcpy(temp, &static_cprb, sizeof(struct CPRB));
  1569. cprb_p = (struct CPRB *) temp;
  1570. cprb_p->usage_domain[0]= (unsigned char)cdx;
  1571. itoLe2((int *)&(tp6Hdr_p->FromCardLen1), cprb_p->rpl_parml);
  1572. temp += sizeof(struct CPRB);
  1573. memcpy(temp, &static_pke_function_and_rules,
  1574. sizeof(struct function_and_rules_block));
  1575. temp += sizeof(struct function_and_rules_block);
  1576. temp += 2;
  1577. if (copy_from_user(temp, icaMsg_p->inputdata, mod_len)) {
  1578. kfree(temp_exp);
  1579. return SEN_RELEASED;
  1580. }
  1581. if (is_empty(temp, mod_len)) {
  1582. kfree(temp_exp);
  1583. return SEN_USER_ERROR;
  1584. }
  1585. if ((temp[0] != 0x00) || (temp[1] != 0x02)) {
  1586. kfree(temp_exp);
  1587. return SEN_NOT_AVAIL;
  1588. }
  1589. for (i = 2; i < mod_len; i++)
  1590. if (temp[i] == 0x00)
  1591. break;
  1592. if ((i < 9) || (i > (mod_len - 2))) {
  1593. kfree(temp_exp);
  1594. return SEN_NOT_AVAIL;
  1595. }
  1596. pad_len = i + 1;
  1597. vud_len = mod_len - pad_len;
  1598. memmove(temp, temp+pad_len, vud_len);
  1599. temp -= 2;
  1600. vud_len += 2;
  1601. itoLe2(&vud_len, temp);
  1602. temp += (vud_len);
  1603. keyb_p = (struct T6_keyBlock_hdr *)temp;
  1604. temp += sizeof(struct T6_keyBlock_hdr);
  1605. memcpy(temp, &static_public_key, sizeof(static_public_key));
  1606. key_p = (struct cca_public_key *)temp;
  1607. temp = key_p->pubSec.exponent;
  1608. memcpy(temp, exp_p, exp_len);
  1609. kfree(temp_exp);
  1610. temp += exp_len;
  1611. if (copy_from_user(temp, icaMsg_p->n_modulus, mod_len))
  1612. return SEN_RELEASED;
  1613. if (is_empty(temp, mod_len))
  1614. return SEN_USER_ERROR;
  1615. key_p->pubSec.modulus_bit_len = 8 * mod_len;
  1616. key_p->pubSec.modulus_byte_len = mod_len;
  1617. key_p->pubSec.exponent_len = exp_len;
  1618. key_p->pubSec.section_length = CALLER_HEADER + mod_len + exp_len;
  1619. key_len = key_p->pubSec.section_length + sizeof(struct cca_token_hdr);
  1620. key_p->pubHdr.token_length = key_len;
  1621. key_len += 4;
  1622. itoLe2(&key_len, keyb_p->ulen);
  1623. key_len += 2;
  1624. itoLe2(&key_len, keyb_p->blen);
  1625. parmBlock_l -= pad_len;
  1626. itoLe2(&parmBlock_l, cprb_p->req_parml);
  1627. *z90cMsg_l_p = tmp_size - CALLER_HEADER;
  1628. return 0;
  1629. }
  1630. static int
  1631. ICACRT_msg_to_type6CRT_msg(struct ica_rsa_modexpo_crt *icaMsg_p, int cdx,
  1632. int *z90cMsg_l_p, struct type6_msg *z90cMsg_p)
  1633. {
  1634. int mod_len, vud_len, tmp_size, total_CPRB_len, parmBlock_l, short_len;
  1635. int long_len, pad_len, keyPartsLen, tmp_l;
  1636. unsigned char *tgt_p, *temp;
  1637. struct type6_hdr *tp6Hdr_p;
  1638. struct CPRB *cprb_p;
  1639. struct cca_token_hdr *keyHdr_p;
  1640. struct cca_pvt_ext_CRT_sec *pvtSec_p;
  1641. struct cca_public_sec *pubSec_p;
  1642. mod_len = icaMsg_p->inputdatalength;
  1643. short_len = mod_len / 2;
  1644. long_len = 8 + short_len;
  1645. keyPartsLen = 3 * long_len + 2 * short_len;
  1646. pad_len = (8 - (keyPartsLen % 8)) % 8;
  1647. keyPartsLen += pad_len + mod_len;
  1648. tmp_size = FIXED_TYPE6_CR_LEN + keyPartsLen + mod_len;
  1649. total_CPRB_len = tmp_size - sizeof(struct type6_hdr);
  1650. parmBlock_l = total_CPRB_len - sizeof(struct CPRB);
  1651. vud_len = 2 + mod_len;
  1652. tmp_size = 4*((tmp_size + 3)/4) + CALLER_HEADER;
  1653. memset(z90cMsg_p, 0, tmp_size);
  1654. tgt_p = (unsigned char *)z90cMsg_p + CALLER_HEADER;
  1655. memcpy(tgt_p, &static_type6_hdr, sizeof(struct type6_hdr));
  1656. tp6Hdr_p = (struct type6_hdr *)tgt_p;
  1657. tp6Hdr_p->ToCardLen1 = 4*((total_CPRB_len+3)/4);
  1658. tp6Hdr_p->FromCardLen1 = RESPONSE_CPRB_SIZE;
  1659. tgt_p += sizeof(struct type6_hdr);
  1660. cprb_p = (struct CPRB *) tgt_p;
  1661. memcpy(tgt_p, &static_cprb, sizeof(struct CPRB));
  1662. cprb_p->usage_domain[0]= *((unsigned char *)(&(cdx))+3);
  1663. itoLe2(&parmBlock_l, cprb_p->req_parml);
  1664. memcpy(cprb_p->rpl_parml, cprb_p->req_parml,
  1665. sizeof(cprb_p->req_parml));
  1666. tgt_p += sizeof(struct CPRB);
  1667. memcpy(tgt_p, &static_pkd_function_and_rules,
  1668. sizeof(struct function_and_rules_block));
  1669. tgt_p += sizeof(struct function_and_rules_block);
  1670. itoLe2(&vud_len, tgt_p);
  1671. tgt_p += 2;
  1672. if (copy_from_user(tgt_p, icaMsg_p->inputdata, mod_len))
  1673. return SEN_RELEASED;
  1674. if (is_empty(tgt_p, mod_len))
  1675. return SEN_USER_ERROR;
  1676. tgt_p += mod_len;
  1677. tmp_l = sizeof(struct T6_keyBlock_hdr) + sizeof(struct cca_token_hdr) +
  1678. sizeof(struct cca_pvt_ext_CRT_sec) + 0x0F + keyPartsLen;
  1679. itoLe2(&tmp_l, tgt_p);
  1680. temp = tgt_p + 2;
  1681. tmp_l -= 2;
  1682. itoLe2(&tmp_l, temp);
  1683. tgt_p += sizeof(struct T6_keyBlock_hdr);
  1684. keyHdr_p = (struct cca_token_hdr *)tgt_p;
  1685. keyHdr_p->token_identifier = CCA_TKN_HDR_ID_EXT;
  1686. tmp_l -= 4;
  1687. keyHdr_p->token_length = tmp_l;
  1688. tgt_p += sizeof(struct cca_token_hdr);
  1689. pvtSec_p = (struct cca_pvt_ext_CRT_sec *)tgt_p;
  1690. pvtSec_p->section_identifier = CCA_PVT_EXT_CRT_SEC_ID_PVT;
  1691. pvtSec_p->section_length =
  1692. sizeof(struct cca_pvt_ext_CRT_sec) + keyPartsLen;
  1693. pvtSec_p->key_format = CCA_PVT_EXT_CRT_SEC_FMT_CL;
  1694. pvtSec_p->key_use_flags[0] = CCA_PVT_USAGE_ALL;
  1695. pvtSec_p->p_len = long_len;
  1696. pvtSec_p->q_len = short_len;
  1697. pvtSec_p->dp_len = long_len;
  1698. pvtSec_p->dq_len = short_len;
  1699. pvtSec_p->u_len = long_len;
  1700. pvtSec_p->mod_len = mod_len;
  1701. pvtSec_p->pad_len = pad_len;
  1702. tgt_p += sizeof(struct cca_pvt_ext_CRT_sec);
  1703. if (copy_from_user(tgt_p, icaMsg_p->np_prime, long_len))
  1704. return SEN_RELEASED;
  1705. if (is_empty(tgt_p, long_len))
  1706. return SEN_USER_ERROR;
  1707. tgt_p += long_len;
  1708. if (copy_from_user(tgt_p, icaMsg_p->nq_prime, short_len))
  1709. return SEN_RELEASED;
  1710. if (is_empty(tgt_p, short_len))
  1711. return SEN_USER_ERROR;
  1712. tgt_p += short_len;
  1713. if (copy_from_user(tgt_p, icaMsg_p->bp_key, long_len))
  1714. return SEN_RELEASED;
  1715. if (is_empty(tgt_p, long_len))
  1716. return SEN_USER_ERROR;
  1717. tgt_p += long_len;
  1718. if (copy_from_user(tgt_p, icaMsg_p->bq_key, short_len))
  1719. return SEN_RELEASED;
  1720. if (is_empty(tgt_p, short_len))
  1721. return SEN_USER_ERROR;
  1722. tgt_p += short_len;
  1723. if (copy_from_user(tgt_p, icaMsg_p->u_mult_inv, long_len))
  1724. return SEN_RELEASED;
  1725. if (is_empty(tgt_p, long_len))
  1726. return SEN_USER_ERROR;
  1727. tgt_p += long_len;
  1728. tgt_p += pad_len;
  1729. memset(tgt_p, 0xFF, mod_len);
  1730. tgt_p += mod_len;
  1731. memcpy(tgt_p, &static_cca_pub_sec, sizeof(struct cca_public_sec));
  1732. pubSec_p = (struct cca_public_sec *) tgt_p;
  1733. pubSec_p->modulus_bit_len = 8 * mod_len;
  1734. *z90cMsg_l_p = tmp_size - CALLER_HEADER;
  1735. return 0;
  1736. }
  1737. static int
  1738. ICAMEX_msg_to_type6MEX_msgX(struct ica_rsa_modexpo *icaMsg_p, int cdx,
  1739. int *z90cMsg_l_p, struct type6_msg *z90cMsg_p,
  1740. int dev_type)
  1741. {
  1742. int mod_len, exp_len, vud_len, tmp_size, total_CPRB_len, parmBlock_l;
  1743. int key_len, i;
  1744. unsigned char *temp_exp, *tgt_p, *temp, *exp_p;
  1745. struct type6_hdr *tp6Hdr_p;
  1746. struct CPRBX *cprbx_p;
  1747. struct cca_public_key *key_p;
  1748. struct T6_keyBlock_hdrX *keyb_p;
  1749. temp_exp = kmalloc(256, GFP_KERNEL);
  1750. if (!temp_exp)
  1751. return EGETBUFF;
  1752. mod_len = icaMsg_p->inputdatalength;
  1753. if (copy_from_user(temp_exp, icaMsg_p->b_key, mod_len)) {
  1754. kfree(temp_exp);
  1755. return SEN_RELEASED;
  1756. }
  1757. if (is_empty(temp_exp, mod_len)) {
  1758. kfree(temp_exp);
  1759. return SEN_USER_ERROR;
  1760. }
  1761. exp_p = temp_exp;
  1762. for (i = 0; i < mod_len; i++)
  1763. if (exp_p[i])
  1764. break;
  1765. if (i >= mod_len) {
  1766. kfree(temp_exp);
  1767. return SEN_USER_ERROR;
  1768. }
  1769. exp_len = mod_len - i;
  1770. exp_p += i;
  1771. PDEBUG("exp_len after computation: %08x\n", exp_len);
  1772. tmp_size = FIXED_TYPE6_ME_EN_LENX + 2 * mod_len + exp_len;
  1773. total_CPRB_len = tmp_size - sizeof(struct type6_hdr);
  1774. parmBlock_l = total_CPRB_len - sizeof(struct CPRBX);
  1775. tmp_size = tmp_size + CALLER_HEADER;
  1776. vud_len = 2 + mod_len;
  1777. memset(z90cMsg_p, 0, tmp_size);
  1778. tgt_p = (unsigned char *)z90cMsg_p + CALLER_HEADER;
  1779. memcpy(tgt_p, &static_type6_hdrX, sizeof(struct type6_hdr));
  1780. tp6Hdr_p = (struct type6_hdr *)tgt_p;
  1781. tp6Hdr_p->ToCardLen1 = total_CPRB_len;
  1782. tp6Hdr_p->FromCardLen1 = RESPONSE_CPRBX_SIZE;
  1783. memcpy(tp6Hdr_p->function_code, static_PKE_function_code,
  1784. sizeof(static_PKE_function_code));
  1785. tgt_p += sizeof(struct type6_hdr);
  1786. memcpy(tgt_p, &static_cprbx, sizeof(struct CPRBX));
  1787. cprbx_p = (struct CPRBX *) tgt_p;
  1788. cprbx_p->domain = (unsigned short)cdx;
  1789. cprbx_p->rpl_msgbl = RESPONSE_CPRBX_SIZE;
  1790. tgt_p += sizeof(struct CPRBX);
  1791. if (dev_type == PCIXCC_MCL2)
  1792. memcpy(tgt_p, &static_pke_function_and_rulesX_MCL2,
  1793. sizeof(struct function_and_rules_block));
  1794. else
  1795. memcpy(tgt_p, &static_pke_function_and_rulesX,
  1796. sizeof(struct function_and_rules_block));
  1797. tgt_p += sizeof(struct function_and_rules_block);
  1798. tgt_p += 2;
  1799. if (copy_from_user(tgt_p, icaMsg_p->inputdata, mod_len)) {
  1800. kfree(temp_exp);
  1801. return SEN_RELEASED;
  1802. }
  1803. if (is_empty(tgt_p, mod_len)) {
  1804. kfree(temp_exp);
  1805. return SEN_USER_ERROR;
  1806. }
  1807. tgt_p -= 2;
  1808. *((short *)tgt_p) = (short) vud_len;
  1809. tgt_p += vud_len;
  1810. keyb_p = (struct T6_keyBlock_hdrX *)tgt_p;
  1811. tgt_p += sizeof(struct T6_keyBlock_hdrX);
  1812. memcpy(tgt_p, &static_public_key, sizeof(static_public_key));
  1813. key_p = (struct cca_public_key *)tgt_p;
  1814. temp = key_p->pubSec.exponent;
  1815. memcpy(temp, exp_p, exp_len);
  1816. kfree(temp_exp);
  1817. temp += exp_len;
  1818. if (copy_from_user(temp, icaMsg_p->n_modulus, mod_len))
  1819. return SEN_RELEASED;
  1820. if (is_empty(temp, mod_len))
  1821. return SEN_USER_ERROR;
  1822. key_p->pubSec.modulus_bit_len = 8 * mod_len;
  1823. key_p->pubSec.modulus_byte_len = mod_len;
  1824. key_p->pubSec.exponent_len = exp_len;
  1825. key_p->pubSec.section_length = CALLER_HEADER + mod_len + exp_len;
  1826. key_len = key_p->pubSec.section_length + sizeof(struct cca_token_hdr);
  1827. key_p->pubHdr.token_length = key_len;
  1828. key_len += 4;
  1829. keyb_p->ulen = (unsigned short)key_len;
  1830. key_len += 2;
  1831. keyb_p->blen = (unsigned short)key_len;
  1832. cprbx_p->req_parml = parmBlock_l;
  1833. *z90cMsg_l_p = tmp_size - CALLER_HEADER;
  1834. return 0;
  1835. }
  1836. static int
  1837. ICACRT_msg_to_type6CRT_msgX(struct ica_rsa_modexpo_crt *icaMsg_p, int cdx,
  1838. int *z90cMsg_l_p, struct type6_msg *z90cMsg_p,
  1839. int dev_type)
  1840. {
  1841. int mod_len, vud_len, tmp_size, total_CPRB_len, parmBlock_l, short_len;
  1842. int long_len, pad_len, keyPartsLen, tmp_l;
  1843. unsigned char *tgt_p, *temp;
  1844. struct type6_hdr *tp6Hdr_p;
  1845. struct CPRBX *cprbx_p;
  1846. struct cca_token_hdr *keyHdr_p;
  1847. struct cca_pvt_ext_CRT_sec *pvtSec_p;
  1848. struct cca_public_sec *pubSec_p;
  1849. mod_len = icaMsg_p->inputdatalength;
  1850. short_len = mod_len / 2;
  1851. long_len = 8 + short_len;
  1852. keyPartsLen = 3 * long_len + 2 * short_len;
  1853. pad_len = (8 - (keyPartsLen % 8)) % 8;
  1854. keyPartsLen += pad_len + mod_len;
  1855. tmp_size = FIXED_TYPE6_CR_LENX + keyPartsLen + mod_len;
  1856. total_CPRB_len = tmp_size - sizeof(struct type6_hdr);
  1857. parmBlock_l = total_CPRB_len - sizeof(struct CPRBX);
  1858. vud_len = 2 + mod_len;
  1859. tmp_size = tmp_size + CALLER_HEADER;
  1860. memset(z90cMsg_p, 0, tmp_size);
  1861. tgt_p = (unsigned char *)z90cMsg_p + CALLER_HEADER;
  1862. memcpy(tgt_p, &static_type6_hdrX, sizeof(struct type6_hdr));
  1863. tp6Hdr_p = (struct type6_hdr *)tgt_p;
  1864. tp6Hdr_p->ToCardLen1 = total_CPRB_len;
  1865. tp6Hdr_p->FromCardLen1 = RESPONSE_CPRBX_SIZE;
  1866. tgt_p += sizeof(struct type6_hdr);
  1867. cprbx_p = (struct CPRBX *) tgt_p;
  1868. memcpy(tgt_p, &static_cprbx, sizeof(struct CPRBX));
  1869. cprbx_p->domain = (unsigned short)cdx;
  1870. cprbx_p->req_parml = parmBlock_l;
  1871. cprbx_p->rpl_msgbl = parmBlock_l;
  1872. tgt_p += sizeof(struct CPRBX);
  1873. if (dev_type == PCIXCC_MCL2)
  1874. memcpy(tgt_p, &static_pkd_function_and_rulesX_MCL2,
  1875. sizeof(struct function_and_rules_block));
  1876. else
  1877. memcpy(tgt_p, &static_pkd_function_and_rulesX,
  1878. sizeof(struct function_and_rules_block));
  1879. tgt_p += sizeof(struct function_and_rules_block);
  1880. *((short *)tgt_p) = (short) vud_len;
  1881. tgt_p += 2;
  1882. if (copy_from_user(tgt_p, icaMsg_p->inputdata, mod_len))
  1883. return SEN_RELEASED;
  1884. if (is_empty(tgt_p, mod_len))
  1885. return SEN_USER_ERROR;
  1886. tgt_p += mod_len;
  1887. tmp_l = sizeof(struct T6_keyBlock_hdr) + sizeof(struct cca_token_hdr) +
  1888. sizeof(struct cca_pvt_ext_CRT_sec) + 0x0F + keyPartsLen;
  1889. *((short *)tgt_p) = (short) tmp_l;
  1890. temp = tgt_p + 2;
  1891. tmp_l -= 2;
  1892. *((short *)temp) = (short) tmp_l;
  1893. tgt_p += sizeof(struct T6_keyBlock_hdr);
  1894. keyHdr_p = (struct cca_token_hdr *)tgt_p;
  1895. keyHdr_p->token_identifier = CCA_TKN_HDR_ID_EXT;
  1896. tmp_l -= 4;
  1897. keyHdr_p->token_length = tmp_l;
  1898. tgt_p += sizeof(struct cca_token_hdr);
  1899. pvtSec_p = (struct cca_pvt_ext_CRT_sec *)tgt_p;
  1900. pvtSec_p->section_identifier = CCA_PVT_EXT_CRT_SEC_ID_PVT;
  1901. pvtSec_p->section_length =
  1902. sizeof(struct cca_pvt_ext_CRT_sec) + keyPartsLen;
  1903. pvtSec_p->key_format = CCA_PVT_EXT_CRT_SEC_FMT_CL;
  1904. pvtSec_p->key_use_flags[0] = CCA_PVT_USAGE_ALL;
  1905. pvtSec_p->p_len = long_len;
  1906. pvtSec_p->q_len = short_len;
  1907. pvtSec_p->dp_len = long_len;
  1908. pvtSec_p->dq_len = short_len;
  1909. pvtSec_p->u_len = long_len;
  1910. pvtSec_p->mod_len = mod_len;
  1911. pvtSec_p->pad_len = pad_len;
  1912. tgt_p += sizeof(struct cca_pvt_ext_CRT_sec);
  1913. if (copy_from_user(tgt_p, icaMsg_p->np_prime, long_len))
  1914. return SEN_RELEASED;
  1915. if (is_empty(tgt_p, long_len))
  1916. return SEN_USER_ERROR;
  1917. tgt_p += long_len;
  1918. if (copy_from_user(tgt_p, icaMsg_p->nq_prime, short_len))
  1919. return SEN_RELEASED;
  1920. if (is_empty(tgt_p, short_len))
  1921. return SEN_USER_ERROR;
  1922. tgt_p += short_len;
  1923. if (copy_from_user(tgt_p, icaMsg_p->bp_key, long_len))
  1924. return SEN_RELEASED;
  1925. if (is_empty(tgt_p, long_len))
  1926. return SEN_USER_ERROR;
  1927. tgt_p += long_len;
  1928. if (copy_from_user(tgt_p, icaMsg_p->bq_key, short_len))
  1929. return SEN_RELEASED;
  1930. if (is_empty(tgt_p, short_len))
  1931. return SEN_USER_ERROR;
  1932. tgt_p += short_len;
  1933. if (copy_from_user(tgt_p, icaMsg_p->u_mult_inv, long_len))
  1934. return SEN_RELEASED;
  1935. if (is_empty(tgt_p, long_len))
  1936. return SEN_USER_ERROR;
  1937. tgt_p += long_len;
  1938. tgt_p += pad_len;
  1939. memset(tgt_p, 0xFF, mod_len);
  1940. tgt_p += mod_len;
  1941. memcpy(tgt_p, &static_cca_pub_sec, sizeof(struct cca_public_sec));
  1942. pubSec_p = (struct cca_public_sec *) tgt_p;
  1943. pubSec_p->modulus_bit_len = 8 * mod_len;
  1944. *z90cMsg_l_p = tmp_size - CALLER_HEADER;
  1945. return 0;
  1946. }
  1947. static int
  1948. ICAMEX_msg_to_type50MEX_msg(struct ica_rsa_modexpo *icaMex_p, int *z90cMsg_l_p,
  1949. union type50_msg *z90cMsg_p)
  1950. {
  1951. int mod_len, msg_size, mod_tgt_len, exp_tgt_len, inp_tgt_len;
  1952. unsigned char *mod_tgt, *exp_tgt, *inp_tgt;
  1953. union type50_msg *tmp_type50_msg;
  1954. mod_len = icaMex_p->inputdatalength;
  1955. msg_size = ((mod_len <= 128) ? TYPE50_MEB1_LEN : TYPE50_MEB2_LEN) +
  1956. CALLER_HEADER;
  1957. memset(z90cMsg_p, 0, msg_size);
  1958. tmp_type50_msg = (union type50_msg *)
  1959. ((unsigned char *) z90cMsg_p + CALLER_HEADER);
  1960. tmp_type50_msg->meb1.header.msg_type_code = TYPE50_TYPE_CODE;
  1961. if (mod_len <= 128) {
  1962. tmp_type50_msg->meb1.header.msg_len = TYPE50_MEB1_LEN;
  1963. tmp_type50_msg->meb1.keyblock_type = TYPE50_MEB1_FMT;
  1964. mod_tgt = tmp_type50_msg->meb1.modulus;
  1965. mod_tgt_len = sizeof(tmp_type50_msg->meb1.modulus);
  1966. exp_tgt = tmp_type50_msg->meb1.exponent;
  1967. exp_tgt_len = sizeof(tmp_type50_msg->meb1.exponent);
  1968. inp_tgt = tmp_type50_msg->meb1.message;
  1969. inp_tgt_len = sizeof(tmp_type50_msg->meb1.message);
  1970. } else {
  1971. tmp_type50_msg->meb2.header.msg_len = TYPE50_MEB2_LEN;
  1972. tmp_type50_msg->meb2.keyblock_type = TYPE50_MEB2_FMT;
  1973. mod_tgt = tmp_type50_msg->meb2.modulus;
  1974. mod_tgt_len = sizeof(tmp_type50_msg->meb2.modulus);
  1975. exp_tgt = tmp_type50_msg->meb2.exponent;
  1976. exp_tgt_len = sizeof(tmp_type50_msg->meb2.exponent);
  1977. inp_tgt = tmp_type50_msg->meb2.message;
  1978. inp_tgt_len = sizeof(tmp_type50_msg->meb2.message);
  1979. }
  1980. mod_tgt += (mod_tgt_len - mod_len);
  1981. if (copy_from_user(mod_tgt, icaMex_p->n_modulus, mod_len))
  1982. return SEN_RELEASED;
  1983. if (is_empty(mod_tgt, mod_len))
  1984. return SEN_USER_ERROR;
  1985. exp_tgt += (exp_tgt_len - mod_len);
  1986. if (copy_from_user(exp_tgt, icaMex_p->b_key, mod_len))
  1987. return SEN_RELEASED;
  1988. if (is_empty(exp_tgt, mod_len))
  1989. return SEN_USER_ERROR;
  1990. inp_tgt += (inp_tgt_len - mod_len);
  1991. if (copy_from_user(inp_tgt, icaMex_p->inputdata, mod_len))
  1992. return SEN_RELEASED;
  1993. if (is_empty(inp_tgt, mod_len))
  1994. return SEN_USER_ERROR;
  1995. *z90cMsg_l_p = msg_size - CALLER_HEADER;
  1996. return 0;
  1997. }
  1998. static int
  1999. ICACRT_msg_to_type50CRT_msg(struct ica_rsa_modexpo_crt *icaMsg_p,
  2000. int *z90cMsg_l_p, union type50_msg *z90cMsg_p)
  2001. {
  2002. int mod_len, short_len, long_len, tmp_size, p_tgt_len, q_tgt_len,
  2003. dp_tgt_len, dq_tgt_len, u_tgt_len, inp_tgt_len, long_offset;
  2004. unsigned char *p_tgt, *q_tgt, *dp_tgt, *dq_tgt, *u_tgt, *inp_tgt,
  2005. temp[8];
  2006. union type50_msg *tmp_type50_msg;
  2007. mod_len = icaMsg_p->inputdatalength;
  2008. short_len = mod_len / 2;
  2009. long_len = mod_len / 2 + 8;
  2010. long_offset = 0;
  2011. if (long_len > 128) {
  2012. memset(temp, 0x00, sizeof(temp));
  2013. if (copy_from_user(temp, icaMsg_p->np_prime, long_len-128))
  2014. return SEN_RELEASED;
  2015. if (!is_empty(temp, 8))
  2016. return SEN_NOT_AVAIL;
  2017. if (copy_from_user(temp, icaMsg_p->bp_key, long_len-128))
  2018. return SEN_RELEASED;
  2019. if (!is_empty(temp, 8))
  2020. return SEN_NOT_AVAIL;
  2021. if (copy_from_user(temp, icaMsg_p->u_mult_inv, long_len-128))
  2022. return SEN_RELEASED;
  2023. if (!is_empty(temp, 8))
  2024. return SEN_NOT_AVAIL;
  2025. long_offset = long_len - 128;
  2026. long_len = 128;
  2027. }
  2028. tmp_size = ((mod_len <= 128) ? TYPE50_CRB1_LEN : TYPE50_CRB2_LEN) +
  2029. CALLER_HEADER;
  2030. memset(z90cMsg_p, 0, tmp_size);
  2031. tmp_type50_msg = (union type50_msg *)
  2032. ((unsigned char *) z90cMsg_p + CALLER_HEADER);
  2033. tmp_type50_msg->crb1.header.msg_type_code = TYPE50_TYPE_CODE;
  2034. if (long_len <= 64) {
  2035. tmp_type50_msg->crb1.header.msg_len = TYPE50_CRB1_LEN;
  2036. tmp_type50_msg->crb1.keyblock_type = TYPE50_CRB1_FMT;
  2037. p_tgt = tmp_type50_msg->crb1.p;
  2038. p_tgt_len = sizeof(tmp_type50_msg->crb1.p);
  2039. q_tgt = tmp_type50_msg->crb1.q;
  2040. q_tgt_len = sizeof(tmp_type50_msg->crb1.q);
  2041. dp_tgt = tmp_type50_msg->crb1.dp;
  2042. dp_tgt_len = sizeof(tmp_type50_msg->crb1.dp);
  2043. dq_tgt = tmp_type50_msg->crb1.dq;
  2044. dq_tgt_len = sizeof(tmp_type50_msg->crb1.dq);
  2045. u_tgt = tmp_type50_msg->crb1.u;
  2046. u_tgt_len = sizeof(tmp_type50_msg->crb1.u);
  2047. inp_tgt = tmp_type50_msg->crb1.message;
  2048. inp_tgt_len = sizeof(tmp_type50_msg->crb1.message);
  2049. } else {
  2050. tmp_type50_msg->crb2.header.msg_len = TYPE50_CRB2_LEN;
  2051. tmp_type50_msg->crb2.keyblock_type = TYPE50_CRB2_FMT;
  2052. p_tgt = tmp_type50_msg->crb2.p;
  2053. p_tgt_len = sizeof(tmp_type50_msg->crb2.p);
  2054. q_tgt = tmp_type50_msg->crb2.q;
  2055. q_tgt_len = sizeof(tmp_type50_msg->crb2.q);
  2056. dp_tgt = tmp_type50_msg->crb2.dp;
  2057. dp_tgt_len = sizeof(tmp_type50_msg->crb2.dp);
  2058. dq_tgt = tmp_type50_msg->crb2.dq;
  2059. dq_tgt_len = sizeof(tmp_type50_msg->crb2.dq);
  2060. u_tgt = tmp_type50_msg->crb2.u;
  2061. u_tgt_len = sizeof(tmp_type50_msg->crb2.u);
  2062. inp_tgt = tmp_type50_msg->crb2.message;
  2063. inp_tgt_len = sizeof(tmp_type50_msg->crb2.message);
  2064. }
  2065. p_tgt += (p_tgt_len - long_len);
  2066. if (copy_from_user(p_tgt, icaMsg_p->np_prime + long_offset, long_len))
  2067. return SEN_RELEASED;
  2068. if (is_empty(p_tgt, long_len))
  2069. return SEN_USER_ERROR;
  2070. q_tgt += (q_tgt_len - short_len);
  2071. if (copy_from_user(q_tgt, icaMsg_p->nq_prime, short_len))
  2072. return SEN_RELEASED;
  2073. if (is_empty(q_tgt, short_len))
  2074. return SEN_USER_ERROR;
  2075. dp_tgt += (dp_tgt_len - long_len);
  2076. if (copy_from_user(dp_tgt, icaMsg_p->bp_key + long_offset, long_len))
  2077. return SEN_RELEASED;
  2078. if (is_empty(dp_tgt, long_len))
  2079. return SEN_USER_ERROR;
  2080. dq_tgt += (dq_tgt_len - short_len);
  2081. if (copy_from_user(dq_tgt, icaMsg_p->bq_key, short_len))
  2082. return SEN_RELEASED;
  2083. if (is_empty(dq_tgt, short_len))
  2084. return SEN_USER_ERROR;
  2085. u_tgt += (u_tgt_len - long_len);
  2086. if (copy_from_user(u_tgt, icaMsg_p->u_mult_inv + long_offset, long_len))
  2087. return SEN_RELEASED;
  2088. if (is_empty(u_tgt, long_len))
  2089. return SEN_USER_ERROR;
  2090. inp_tgt += (inp_tgt_len - mod_len);
  2091. if (copy_from_user(inp_tgt, icaMsg_p->inputdata, mod_len))
  2092. return SEN_RELEASED;
  2093. if (is_empty(inp_tgt, mod_len))
  2094. return SEN_USER_ERROR;
  2095. *z90cMsg_l_p = tmp_size - CALLER_HEADER;
  2096. return 0;
  2097. }
  2098. int
  2099. convert_request(unsigned char *buffer, int func, unsigned short function,
  2100. int cdx, int dev_type, int *msg_l_p, unsigned char *msg_p)
  2101. {
  2102. if (dev_type == PCICA) {
  2103. if (func == ICARSACRT)
  2104. return ICACRT_msg_to_type4CRT_msg(
  2105. (struct ica_rsa_modexpo_crt *) buffer,
  2106. msg_l_p, (union type4_msg *) msg_p);
  2107. else
  2108. return ICAMEX_msg_to_type4MEX_msg(
  2109. (struct ica_rsa_modexpo *) buffer,
  2110. msg_l_p, (union type4_msg *) msg_p);
  2111. }
  2112. if (dev_type == PCICC) {
  2113. if (func == ICARSACRT)
  2114. return ICACRT_msg_to_type6CRT_msg(
  2115. (struct ica_rsa_modexpo_crt *) buffer,
  2116. cdx, msg_l_p, (struct type6_msg *)msg_p);
  2117. if (function == PCI_FUNC_KEY_ENCRYPT)
  2118. return ICAMEX_msg_to_type6MEX_en_msg(
  2119. (struct ica_rsa_modexpo *) buffer,
  2120. cdx, msg_l_p, (struct type6_msg *) msg_p);
  2121. else
  2122. return ICAMEX_msg_to_type6MEX_de_msg(
  2123. (struct ica_rsa_modexpo *) buffer,
  2124. cdx, msg_l_p, (struct type6_msg *) msg_p);
  2125. }
  2126. if ((dev_type == PCIXCC_MCL2) ||
  2127. (dev_type == PCIXCC_MCL3) ||
  2128. (dev_type == CEX2C)) {
  2129. if (func == ICARSACRT)
  2130. return ICACRT_msg_to_type6CRT_msgX(
  2131. (struct ica_rsa_modexpo_crt *) buffer,
  2132. cdx, msg_l_p, (struct type6_msg *) msg_p,
  2133. dev_type);
  2134. else
  2135. return ICAMEX_msg_to_type6MEX_msgX(
  2136. (struct ica_rsa_modexpo *) buffer,
  2137. cdx, msg_l_p, (struct type6_msg *) msg_p,
  2138. dev_type);
  2139. }
  2140. if (dev_type == CEX2A) {
  2141. if (func == ICARSACRT)
  2142. return ICACRT_msg_to_type50CRT_msg(
  2143. (struct ica_rsa_modexpo_crt *) buffer,
  2144. msg_l_p, (union type50_msg *) msg_p);
  2145. else
  2146. return ICAMEX_msg_to_type50MEX_msg(
  2147. (struct ica_rsa_modexpo *) buffer,
  2148. msg_l_p, (union type50_msg *) msg_p);
  2149. }
  2150. return 0;
  2151. }
  2152. int ext_bitlens_msg_count = 0;
  2153. static inline void
  2154. unset_ext_bitlens(void)
  2155. {
  2156. if (!ext_bitlens_msg_count) {
  2157. PRINTK("Unable to use coprocessors for extended bitlengths. "
  2158. "Using PCICAs/CEX2As (if present) for extended "
  2159. "bitlengths. This is not an error.\n");
  2160. ext_bitlens_msg_count++;
  2161. }
  2162. ext_bitlens = 0;
  2163. }
  2164. int
  2165. convert_response(unsigned char *response, unsigned char *buffer,
  2166. int *respbufflen_p, unsigned char *resp_buff)
  2167. {
  2168. struct ica_rsa_modexpo *icaMsg_p = (struct ica_rsa_modexpo *) buffer;
  2169. struct error_hdr *errh_p = (struct error_hdr *) response;
  2170. struct type80_hdr *t80h_p = (struct type80_hdr *) response;
  2171. struct type84_hdr *t84h_p = (struct type84_hdr *) response;
  2172. struct type86_fmt2_msg *t86m_p = (struct type86_fmt2_msg *) response;
  2173. int reply_code, service_rc, service_rs, src_l;
  2174. unsigned char *src_p, *tgt_p;
  2175. struct CPRB *cprb_p;
  2176. struct CPRBX *cprbx_p;
  2177. src_p = 0;
  2178. reply_code = 0;
  2179. service_rc = 0;
  2180. service_rs = 0;
  2181. src_l = 0;
  2182. switch (errh_p->type) {
  2183. case TYPE82_RSP_CODE:
  2184. case TYPE88_RSP_CODE:
  2185. reply_code = errh_p->reply_code;
  2186. src_p = (unsigned char *)errh_p;
  2187. PRINTK("Hardware error: Type %02X Message Header: "
  2188. "%02x%02x%02x%02x%02x%02x%02x%02x\n",
  2189. errh_p->type,
  2190. src_p[0], src_p[1], src_p[2], src_p[3],
  2191. src_p[4], src_p[5], src_p[6], src_p[7]);
  2192. break;
  2193. case TYPE80_RSP_CODE:
  2194. src_l = icaMsg_p->outputdatalength;
  2195. src_p = response + (int)t80h_p->len - src_l;
  2196. break;
  2197. case TYPE84_RSP_CODE:
  2198. src_l = icaMsg_p->outputdatalength;
  2199. src_p = response + (int)t84h_p->len - src_l;
  2200. break;
  2201. case TYPE86_RSP_CODE:
  2202. reply_code = t86m_p->header.reply_code;
  2203. if (reply_code != 0)
  2204. break;
  2205. cprb_p = (struct CPRB *)
  2206. (response + sizeof(struct type86_fmt2_msg));
  2207. cprbx_p = (struct CPRBX *) cprb_p;
  2208. if (cprb_p->cprb_ver_id != 0x02) {
  2209. le2toI(cprb_p->ccp_rtcode, &service_rc);
  2210. if (service_rc != 0) {
  2211. le2toI(cprb_p->ccp_rscode, &service_rs);
  2212. if ((service_rc == 8) && (service_rs == 66))
  2213. PDEBUG("Bad block format on PCICC\n");
  2214. else if ((service_rc == 8) && (service_rs == 65))
  2215. PDEBUG("Probably an even modulus on "
  2216. "PCICC\n");
  2217. else if ((service_rc == 8) && (service_rs == 770)) {
  2218. PDEBUG("Invalid key length on PCICC\n");
  2219. unset_ext_bitlens();
  2220. return REC_USE_PCICA;
  2221. }
  2222. else if ((service_rc == 8) && (service_rs == 783)) {
  2223. PDEBUG("Extended bitlengths not enabled"
  2224. "on PCICC\n");
  2225. unset_ext_bitlens();
  2226. return REC_USE_PCICA;
  2227. }
  2228. else
  2229. PRINTK("service rc/rs (PCICC): %d/%d\n",
  2230. service_rc, service_rs);
  2231. return REC_OPERAND_INV;
  2232. }
  2233. src_p = (unsigned char *)cprb_p + sizeof(struct CPRB);
  2234. src_p += 4;
  2235. le2toI(src_p, &src_l);
  2236. src_l -= 2;
  2237. src_p += 2;
  2238. } else {
  2239. service_rc = (int)cprbx_p->ccp_rtcode;
  2240. if (service_rc != 0) {
  2241. service_rs = (int) cprbx_p->ccp_rscode;
  2242. if ((service_rc == 8) && (service_rs == 66))
  2243. PDEBUG("Bad block format on PCIXCC\n");
  2244. else if ((service_rc == 8) && (service_rs == 65))
  2245. PDEBUG("Probably an even modulus on "
  2246. "PCIXCC\n");
  2247. else if ((service_rc == 8) && (service_rs == 770)) {
  2248. PDEBUG("Invalid key length on PCIXCC\n");
  2249. unset_ext_bitlens();
  2250. return REC_USE_PCICA;
  2251. }
  2252. else if ((service_rc == 8) && (service_rs == 783)) {
  2253. PDEBUG("Extended bitlengths not enabled"
  2254. "on PCIXCC\n");
  2255. unset_ext_bitlens();
  2256. return REC_USE_PCICA;
  2257. }
  2258. else
  2259. PRINTK("service rc/rs (PCIXCC): %d/%d\n",
  2260. service_rc, service_rs);
  2261. return REC_OPERAND_INV;
  2262. }
  2263. src_p = (unsigned char *)
  2264. cprbx_p + sizeof(struct CPRBX);
  2265. src_p += 4;
  2266. src_l = (int)(*((short *) src_p));
  2267. src_l -= 2;
  2268. src_p += 2;
  2269. }
  2270. break;
  2271. default:
  2272. src_p = (unsigned char *)errh_p;
  2273. PRINTK("Unrecognized Message Header: "
  2274. "%02x%02x%02x%02x%02x%02x%02x%02x\n",
  2275. src_p[0], src_p[1], src_p[2], src_p[3],
  2276. src_p[4], src_p[5], src_p[6], src_p[7]);
  2277. return REC_BAD_MESSAGE;
  2278. }
  2279. if (reply_code)
  2280. switch (reply_code) {
  2281. case REP82_ERROR_OPERAND_INVALID:
  2282. case REP88_ERROR_MESSAGE_MALFORMD:
  2283. return REC_OPERAND_INV;
  2284. case REP82_ERROR_OPERAND_SIZE:
  2285. return REC_OPERAND_SIZE;
  2286. case REP82_ERROR_EVEN_MOD_IN_OPND:
  2287. return REC_EVEN_MOD;
  2288. case REP82_ERROR_MESSAGE_TYPE:
  2289. return WRONG_DEVICE_TYPE;
  2290. case REP82_ERROR_TRANSPORT_FAIL:
  2291. PRINTKW("Transport failed (APFS = %02X%02X%02X%02X)\n",
  2292. t86m_p->apfs[0], t86m_p->apfs[1],
  2293. t86m_p->apfs[2], t86m_p->apfs[3]);
  2294. return REC_HARDWAR_ERR;
  2295. default:
  2296. PRINTKW("reply code = %d\n", reply_code);
  2297. return REC_HARDWAR_ERR;
  2298. }
  2299. if (service_rc != 0)
  2300. return REC_OPERAND_INV;
  2301. if ((src_l > icaMsg_p->outputdatalength) ||
  2302. (src_l > RESPBUFFSIZE) ||
  2303. (src_l <= 0))
  2304. return REC_OPERAND_SIZE;
  2305. PDEBUG("Length returned = %d\n", src_l);
  2306. tgt_p = resp_buff + icaMsg_p->outputdatalength - src_l;
  2307. memcpy(tgt_p, src_p, src_l);
  2308. if ((errh_p->type == TYPE86_RSP_CODE) && (resp_buff < tgt_p)) {
  2309. memset(resp_buff, 0, icaMsg_p->outputdatalength - src_l);
  2310. if (pad_msg(resp_buff, icaMsg_p->outputdatalength, src_l))
  2311. return REC_INVALID_PAD;
  2312. }
  2313. *respbufflen_p = icaMsg_p->outputdatalength;
  2314. if (*respbufflen_p == 0)
  2315. PRINTK("Zero *respbufflen_p\n");
  2316. return 0;
  2317. }