1812141a9SGreg Kroah-Hartman // SPDX-License-Identifier: GPL-2.0 2e80d4af0SHarald Freudenberger /* 3e80d4af0SHarald Freudenberger * pkey device driver 4e80d4af0SHarald Freudenberger * 5e80d4af0SHarald Freudenberger * Copyright IBM Corp. 2017 6e80d4af0SHarald Freudenberger * Author(s): Harald Freudenberger 7e80d4af0SHarald Freudenberger */ 8e80d4af0SHarald Freudenberger 9e80d4af0SHarald Freudenberger #define KMSG_COMPONENT "pkey" 10e80d4af0SHarald Freudenberger #define pr_fmt(fmt) KMSG_COMPONENT ": " fmt 11e80d4af0SHarald Freudenberger 12e80d4af0SHarald Freudenberger #include <linux/fs.h> 13e80d4af0SHarald Freudenberger #include <linux/init.h> 14e80d4af0SHarald Freudenberger #include <linux/miscdevice.h> 15e80d4af0SHarald Freudenberger #include <linux/module.h> 16e80d4af0SHarald Freudenberger #include <linux/slab.h> 17e80d4af0SHarald Freudenberger #include <linux/kallsyms.h> 18e80d4af0SHarald Freudenberger #include <linux/debugfs.h> 19a45a5c7dSIngo Franzki #include <linux/random.h> 20e80d4af0SHarald Freudenberger #include <asm/zcrypt.h> 21e80d4af0SHarald Freudenberger #include <asm/cpacf.h> 22e80d4af0SHarald Freudenberger #include <asm/pkey.h> 23cb26b9ffSIngo Franzki #include <crypto/aes.h> 24e80d4af0SHarald Freudenberger 25e80d4af0SHarald Freudenberger #include "zcrypt_api.h" 26e80d4af0SHarald Freudenberger 27e80d4af0SHarald Freudenberger MODULE_LICENSE("GPL"); 28e80d4af0SHarald Freudenberger MODULE_AUTHOR("IBM Corporation"); 29e80d4af0SHarald Freudenberger MODULE_DESCRIPTION("s390 protected key interface"); 30e80d4af0SHarald Freudenberger 31e80d4af0SHarald Freudenberger /* Size of parameter block used for all cca requests/replies */ 32e80d4af0SHarald Freudenberger #define PARMBSIZE 512 33e80d4af0SHarald Freudenberger 34e80d4af0SHarald Freudenberger /* Size of vardata block used for some of the cca requests/replies */ 35e80d4af0SHarald Freudenberger #define VARDATASIZE 4096 36e80d4af0SHarald Freudenberger 37e80d4af0SHarald Freudenberger /* 38e80d4af0SHarald Freudenberger * debug feature data and functions 39e80d4af0SHarald Freudenberger */ 40e80d4af0SHarald Freudenberger 41e80d4af0SHarald Freudenberger static debug_info_t *debug_info; 42e80d4af0SHarald Freudenberger 43e80d4af0SHarald Freudenberger #define DEBUG_DBG(...) debug_sprintf_event(debug_info, 6, ##__VA_ARGS__) 44e80d4af0SHarald Freudenberger #define DEBUG_INFO(...) debug_sprintf_event(debug_info, 5, ##__VA_ARGS__) 45e80d4af0SHarald Freudenberger #define DEBUG_WARN(...) debug_sprintf_event(debug_info, 4, ##__VA_ARGS__) 46e80d4af0SHarald Freudenberger #define DEBUG_ERR(...) debug_sprintf_event(debug_info, 3, ##__VA_ARGS__) 47e80d4af0SHarald Freudenberger 48e80d4af0SHarald Freudenberger static void __init pkey_debug_init(void) 49e80d4af0SHarald Freudenberger { 50e80d4af0SHarald Freudenberger debug_info = debug_register("pkey", 1, 1, 4 * sizeof(long)); 51e80d4af0SHarald Freudenberger debug_register_view(debug_info, &debug_sprintf_view); 52e80d4af0SHarald Freudenberger debug_set_level(debug_info, 3); 53e80d4af0SHarald Freudenberger } 54e80d4af0SHarald Freudenberger 55e80d4af0SHarald Freudenberger static void __exit pkey_debug_exit(void) 56e80d4af0SHarald Freudenberger { 57e80d4af0SHarald Freudenberger debug_unregister(debug_info); 58e80d4af0SHarald Freudenberger } 59e80d4af0SHarald Freudenberger 600534bde7SIngo Franzki /* Key token types */ 610534bde7SIngo Franzki #define TOKTYPE_NON_CCA 0x00 /* Non-CCA key token */ 620534bde7SIngo Franzki #define TOKTYPE_CCA_INTERNAL 0x01 /* CCA internal key token */ 630534bde7SIngo Franzki 640534bde7SIngo Franzki /* For TOKTYPE_NON_CCA: */ 650534bde7SIngo Franzki #define TOKVER_PROTECTED_KEY 0x01 /* Protected key token */ 660534bde7SIngo Franzki 670534bde7SIngo Franzki /* For TOKTYPE_CCA_INTERNAL: */ 680534bde7SIngo Franzki #define TOKVER_CCA_AES 0x04 /* CCA AES key token */ 690534bde7SIngo Franzki 70*fb1136d6SIngo Franzki /* header part of a key token */ 71*fb1136d6SIngo Franzki struct keytoken_header { 72*fb1136d6SIngo Franzki u8 type; /* one of the TOKTYPE values */ 73*fb1136d6SIngo Franzki u8 res0[3]; 74*fb1136d6SIngo Franzki u8 version; /* one of the TOKVER values */ 75*fb1136d6SIngo Franzki u8 res1[3]; 76*fb1136d6SIngo Franzki } __packed; 77*fb1136d6SIngo Franzki 78e80d4af0SHarald Freudenberger /* inside view of a secure key token (only type 0x01 version 0x04) */ 79e80d4af0SHarald Freudenberger struct secaeskeytoken { 80e80d4af0SHarald Freudenberger u8 type; /* 0x01 for internal key token */ 81e80d4af0SHarald Freudenberger u8 res0[3]; 82e80d4af0SHarald Freudenberger u8 version; /* should be 0x04 */ 83e80d4af0SHarald Freudenberger u8 res1[1]; 84e80d4af0SHarald Freudenberger u8 flag; /* key flags */ 85e80d4af0SHarald Freudenberger u8 res2[1]; 86e80d4af0SHarald Freudenberger u64 mkvp; /* master key verification pattern */ 87e80d4af0SHarald Freudenberger u8 key[32]; /* key value (encrypted) */ 88e80d4af0SHarald Freudenberger u8 cv[8]; /* control vector */ 89e80d4af0SHarald Freudenberger u16 bitsize; /* key bit size */ 90e80d4af0SHarald Freudenberger u16 keysize; /* key byte size */ 91e80d4af0SHarald Freudenberger u8 tvv[4]; /* token validation value */ 92e80d4af0SHarald Freudenberger } __packed; 93e80d4af0SHarald Freudenberger 940534bde7SIngo Franzki /* inside view of a protected key token (only type 0x00 version 0x01) */ 950534bde7SIngo Franzki struct protaeskeytoken { 960534bde7SIngo Franzki u8 type; /* 0x00 for PAES specific key tokens */ 970534bde7SIngo Franzki u8 res0[3]; 980534bde7SIngo Franzki u8 version; /* should be 0x01 for protected AES key token */ 990534bde7SIngo Franzki u8 res1[3]; 1000534bde7SIngo Franzki u32 keytype; /* key type, one of the PKEY_KEYTYPE values */ 1010534bde7SIngo Franzki u32 len; /* bytes actually stored in protkey[] */ 1020534bde7SIngo Franzki u8 protkey[MAXPROTKEYSIZE]; /* the protected key blob */ 1030534bde7SIngo Franzki } __packed; 1040534bde7SIngo Franzki 105e80d4af0SHarald Freudenberger /* 106e80d4af0SHarald Freudenberger * Simple check if the token is a valid CCA secure AES key 107e80d4af0SHarald Freudenberger * token. If keybitsize is given, the bitsize of the key is 108e80d4af0SHarald Freudenberger * also checked. Returns 0 on success or errno value on failure. 109e80d4af0SHarald Freudenberger */ 110e61a6134SHarald Freudenberger static int check_secaeskeytoken(const u8 *token, int keybitsize) 111e80d4af0SHarald Freudenberger { 112e80d4af0SHarald Freudenberger struct secaeskeytoken *t = (struct secaeskeytoken *) token; 113e80d4af0SHarald Freudenberger 1140534bde7SIngo Franzki if (t->type != TOKTYPE_CCA_INTERNAL) { 115e80d4af0SHarald Freudenberger DEBUG_ERR( 1160534bde7SIngo Franzki "%s secure token check failed, type mismatch 0x%02x != 0x%02x\n", 1170534bde7SIngo Franzki __func__, (int) t->type, TOKTYPE_CCA_INTERNAL); 118e80d4af0SHarald Freudenberger return -EINVAL; 119e80d4af0SHarald Freudenberger } 1200534bde7SIngo Franzki if (t->version != TOKVER_CCA_AES) { 121e80d4af0SHarald Freudenberger DEBUG_ERR( 1220534bde7SIngo Franzki "%s secure token check failed, version mismatch 0x%02x != 0x%02x\n", 1230534bde7SIngo Franzki __func__, (int) t->version, TOKVER_CCA_AES); 124e80d4af0SHarald Freudenberger return -EINVAL; 125e80d4af0SHarald Freudenberger } 126e80d4af0SHarald Freudenberger if (keybitsize > 0 && t->bitsize != keybitsize) { 127e80d4af0SHarald Freudenberger DEBUG_ERR( 128ac2b96f3SHarald Freudenberger "%s secure token check failed, bitsize mismatch %d != %d\n", 129ac2b96f3SHarald Freudenberger __func__, (int) t->bitsize, keybitsize); 130e80d4af0SHarald Freudenberger return -EINVAL; 131e80d4af0SHarald Freudenberger } 132e80d4af0SHarald Freudenberger 133e80d4af0SHarald Freudenberger return 0; 134e80d4af0SHarald Freudenberger } 135e80d4af0SHarald Freudenberger 136e80d4af0SHarald Freudenberger /* 137e80d4af0SHarald Freudenberger * Allocate consecutive memory for request CPRB, request param 138e80d4af0SHarald Freudenberger * block, reply CPRB and reply param block and fill in values 139e80d4af0SHarald Freudenberger * for the common fields. Returns 0 on success or errno value 140e80d4af0SHarald Freudenberger * on failure. 141e80d4af0SHarald Freudenberger */ 142e80d4af0SHarald Freudenberger static int alloc_and_prep_cprbmem(size_t paramblen, 143e80d4af0SHarald Freudenberger u8 **pcprbmem, 144e80d4af0SHarald Freudenberger struct CPRBX **preqCPRB, 145e80d4af0SHarald Freudenberger struct CPRBX **prepCPRB) 146e80d4af0SHarald Freudenberger { 147e80d4af0SHarald Freudenberger u8 *cprbmem; 148e80d4af0SHarald Freudenberger size_t cprbplusparamblen = sizeof(struct CPRBX) + paramblen; 149e80d4af0SHarald Freudenberger struct CPRBX *preqcblk, *prepcblk; 150e80d4af0SHarald Freudenberger 151e80d4af0SHarald Freudenberger /* 152e80d4af0SHarald Freudenberger * allocate consecutive memory for request CPRB, request param 153e80d4af0SHarald Freudenberger * block, reply CPRB and reply param block 154e80d4af0SHarald Freudenberger */ 1556396bb22SKees Cook cprbmem = kcalloc(2, cprbplusparamblen, GFP_KERNEL); 156e80d4af0SHarald Freudenberger if (!cprbmem) 157e80d4af0SHarald Freudenberger return -ENOMEM; 158e80d4af0SHarald Freudenberger 159e80d4af0SHarald Freudenberger preqcblk = (struct CPRBX *) cprbmem; 160e80d4af0SHarald Freudenberger prepcblk = (struct CPRBX *) (cprbmem + cprbplusparamblen); 161e80d4af0SHarald Freudenberger 162e80d4af0SHarald Freudenberger /* fill request cprb struct */ 163e80d4af0SHarald Freudenberger preqcblk->cprb_len = sizeof(struct CPRBX); 164e80d4af0SHarald Freudenberger preqcblk->cprb_ver_id = 0x02; 165e80d4af0SHarald Freudenberger memcpy(preqcblk->func_id, "T2", 2); 166e80d4af0SHarald Freudenberger preqcblk->rpl_msgbl = cprbplusparamblen; 167e80d4af0SHarald Freudenberger if (paramblen) { 168e80d4af0SHarald Freudenberger preqcblk->req_parmb = 169e80d4af0SHarald Freudenberger ((u8 *) preqcblk) + sizeof(struct CPRBX); 170e80d4af0SHarald Freudenberger preqcblk->rpl_parmb = 171e80d4af0SHarald Freudenberger ((u8 *) prepcblk) + sizeof(struct CPRBX); 172e80d4af0SHarald Freudenberger } 173e80d4af0SHarald Freudenberger 174e80d4af0SHarald Freudenberger *pcprbmem = cprbmem; 175e80d4af0SHarald Freudenberger *preqCPRB = preqcblk; 176e80d4af0SHarald Freudenberger *prepCPRB = prepcblk; 177e80d4af0SHarald Freudenberger 178e80d4af0SHarald Freudenberger return 0; 179e80d4af0SHarald Freudenberger } 180e80d4af0SHarald Freudenberger 181e80d4af0SHarald Freudenberger /* 182e80d4af0SHarald Freudenberger * Free the cprb memory allocated with the function above. 183e80d4af0SHarald Freudenberger * If the scrub value is not zero, the memory is filled 184e80d4af0SHarald Freudenberger * with zeros before freeing (useful if there was some 185e80d4af0SHarald Freudenberger * clear key material in there). 186e80d4af0SHarald Freudenberger */ 187e80d4af0SHarald Freudenberger static void free_cprbmem(void *mem, size_t paramblen, int scrub) 188e80d4af0SHarald Freudenberger { 189e80d4af0SHarald Freudenberger if (scrub) 190e80d4af0SHarald Freudenberger memzero_explicit(mem, 2 * (sizeof(struct CPRBX) + paramblen)); 191e80d4af0SHarald Freudenberger kfree(mem); 192e80d4af0SHarald Freudenberger } 193e80d4af0SHarald Freudenberger 194e80d4af0SHarald Freudenberger /* 195e80d4af0SHarald Freudenberger * Helper function to prepare the xcrb struct 196e80d4af0SHarald Freudenberger */ 197e80d4af0SHarald Freudenberger static inline void prep_xcrb(struct ica_xcRB *pxcrb, 198e80d4af0SHarald Freudenberger u16 cardnr, 199e80d4af0SHarald Freudenberger struct CPRBX *preqcblk, 200e80d4af0SHarald Freudenberger struct CPRBX *prepcblk) 201e80d4af0SHarald Freudenberger { 202e80d4af0SHarald Freudenberger memset(pxcrb, 0, sizeof(*pxcrb)); 203e80d4af0SHarald Freudenberger pxcrb->agent_ID = 0x4341; /* 'CA' */ 204e80d4af0SHarald Freudenberger pxcrb->user_defined = (cardnr == 0xFFFF ? AUTOSELECT : cardnr); 205e80d4af0SHarald Freudenberger pxcrb->request_control_blk_length = 206e80d4af0SHarald Freudenberger preqcblk->cprb_len + preqcblk->req_parml; 2077a003637SHeiko Carstens pxcrb->request_control_blk_addr = (void __user *) preqcblk; 208e80d4af0SHarald Freudenberger pxcrb->reply_control_blk_length = preqcblk->rpl_msgbl; 2097a003637SHeiko Carstens pxcrb->reply_control_blk_addr = (void __user *) prepcblk; 210e80d4af0SHarald Freudenberger } 211e80d4af0SHarald Freudenberger 212e80d4af0SHarald Freudenberger /* 213e80d4af0SHarald Freudenberger * Helper function which calls zcrypt_send_cprb with 214e80d4af0SHarald Freudenberger * memory management segment adjusted to kernel space 215e80d4af0SHarald Freudenberger * so that the copy_from_user called within this 216e80d4af0SHarald Freudenberger * function do in fact copy from kernel space. 217e80d4af0SHarald Freudenberger */ 218e80d4af0SHarald Freudenberger static inline int _zcrypt_send_cprb(struct ica_xcRB *xcrb) 219e80d4af0SHarald Freudenberger { 220e80d4af0SHarald Freudenberger int rc; 221e80d4af0SHarald Freudenberger mm_segment_t old_fs = get_fs(); 222e80d4af0SHarald Freudenberger 223e80d4af0SHarald Freudenberger set_fs(KERNEL_DS); 224e80d4af0SHarald Freudenberger rc = zcrypt_send_cprb(xcrb); 225e80d4af0SHarald Freudenberger set_fs(old_fs); 226e80d4af0SHarald Freudenberger 227e80d4af0SHarald Freudenberger return rc; 228e80d4af0SHarald Freudenberger } 229e80d4af0SHarald Freudenberger 230e80d4af0SHarald Freudenberger /* 231e80d4af0SHarald Freudenberger * Generate (random) AES secure key. 232e80d4af0SHarald Freudenberger */ 233e80d4af0SHarald Freudenberger int pkey_genseckey(u16 cardnr, u16 domain, 234e80d4af0SHarald Freudenberger u32 keytype, struct pkey_seckey *seckey) 235e80d4af0SHarald Freudenberger { 236e80d4af0SHarald Freudenberger int i, rc, keysize; 237e80d4af0SHarald Freudenberger int seckeysize; 238e80d4af0SHarald Freudenberger u8 *mem; 239e80d4af0SHarald Freudenberger struct CPRBX *preqcblk, *prepcblk; 240e80d4af0SHarald Freudenberger struct ica_xcRB xcrb; 241e80d4af0SHarald Freudenberger struct kgreqparm { 242e80d4af0SHarald Freudenberger u8 subfunc_code[2]; 243e80d4af0SHarald Freudenberger u16 rule_array_len; 244e80d4af0SHarald Freudenberger struct lv1 { 245e80d4af0SHarald Freudenberger u16 len; 246e80d4af0SHarald Freudenberger char key_form[8]; 247e80d4af0SHarald Freudenberger char key_length[8]; 248e80d4af0SHarald Freudenberger char key_type1[8]; 249e80d4af0SHarald Freudenberger char key_type2[8]; 250e80d4af0SHarald Freudenberger } lv1; 251e80d4af0SHarald Freudenberger struct lv2 { 252e80d4af0SHarald Freudenberger u16 len; 253e80d4af0SHarald Freudenberger struct keyid { 254e80d4af0SHarald Freudenberger u16 len; 255e80d4af0SHarald Freudenberger u16 attr; 256e80d4af0SHarald Freudenberger u8 data[SECKEYBLOBSIZE]; 257e80d4af0SHarald Freudenberger } keyid[6]; 258e80d4af0SHarald Freudenberger } lv2; 259e80d4af0SHarald Freudenberger } *preqparm; 260e80d4af0SHarald Freudenberger struct kgrepparm { 261e80d4af0SHarald Freudenberger u8 subfunc_code[2]; 262e80d4af0SHarald Freudenberger u16 rule_array_len; 263e80d4af0SHarald Freudenberger struct lv3 { 264e80d4af0SHarald Freudenberger u16 len; 265e80d4af0SHarald Freudenberger u16 keyblocklen; 266e80d4af0SHarald Freudenberger struct { 267e80d4af0SHarald Freudenberger u16 toklen; 268e80d4af0SHarald Freudenberger u16 tokattr; 269e80d4af0SHarald Freudenberger u8 tok[0]; 270e80d4af0SHarald Freudenberger /* ... some more data ... */ 271e80d4af0SHarald Freudenberger } keyblock; 272e80d4af0SHarald Freudenberger } lv3; 273e80d4af0SHarald Freudenberger } *prepparm; 274e80d4af0SHarald Freudenberger 275e80d4af0SHarald Freudenberger /* get already prepared memory for 2 cprbs with param block each */ 276e80d4af0SHarald Freudenberger rc = alloc_and_prep_cprbmem(PARMBSIZE, &mem, &preqcblk, &prepcblk); 277e80d4af0SHarald Freudenberger if (rc) 278e80d4af0SHarald Freudenberger return rc; 279e80d4af0SHarald Freudenberger 280e80d4af0SHarald Freudenberger /* fill request cprb struct */ 281e80d4af0SHarald Freudenberger preqcblk->domain = domain; 282e80d4af0SHarald Freudenberger 283e80d4af0SHarald Freudenberger /* fill request cprb param block with KG request */ 284e80d4af0SHarald Freudenberger preqparm = (struct kgreqparm *) preqcblk->req_parmb; 285e80d4af0SHarald Freudenberger memcpy(preqparm->subfunc_code, "KG", 2); 286e80d4af0SHarald Freudenberger preqparm->rule_array_len = sizeof(preqparm->rule_array_len); 287e80d4af0SHarald Freudenberger preqparm->lv1.len = sizeof(struct lv1); 288e80d4af0SHarald Freudenberger memcpy(preqparm->lv1.key_form, "OP ", 8); 289e80d4af0SHarald Freudenberger switch (keytype) { 290e80d4af0SHarald Freudenberger case PKEY_KEYTYPE_AES_128: 291e80d4af0SHarald Freudenberger keysize = 16; 292e80d4af0SHarald Freudenberger memcpy(preqparm->lv1.key_length, "KEYLN16 ", 8); 293e80d4af0SHarald Freudenberger break; 294e80d4af0SHarald Freudenberger case PKEY_KEYTYPE_AES_192: 295e80d4af0SHarald Freudenberger keysize = 24; 296e80d4af0SHarald Freudenberger memcpy(preqparm->lv1.key_length, "KEYLN24 ", 8); 297e80d4af0SHarald Freudenberger break; 298e80d4af0SHarald Freudenberger case PKEY_KEYTYPE_AES_256: 299e80d4af0SHarald Freudenberger keysize = 32; 300e80d4af0SHarald Freudenberger memcpy(preqparm->lv1.key_length, "KEYLN32 ", 8); 301e80d4af0SHarald Freudenberger break; 302e80d4af0SHarald Freudenberger default: 303e80d4af0SHarald Freudenberger DEBUG_ERR( 304ac2b96f3SHarald Freudenberger "%s unknown/unsupported keytype %d\n", 305ac2b96f3SHarald Freudenberger __func__, keytype); 306e80d4af0SHarald Freudenberger rc = -EINVAL; 307e80d4af0SHarald Freudenberger goto out; 308e80d4af0SHarald Freudenberger } 309e80d4af0SHarald Freudenberger memcpy(preqparm->lv1.key_type1, "AESDATA ", 8); 310e80d4af0SHarald Freudenberger preqparm->lv2.len = sizeof(struct lv2); 311e80d4af0SHarald Freudenberger for (i = 0; i < 6; i++) { 312e80d4af0SHarald Freudenberger preqparm->lv2.keyid[i].len = sizeof(struct keyid); 313e80d4af0SHarald Freudenberger preqparm->lv2.keyid[i].attr = (i == 2 ? 0x30 : 0x10); 314e80d4af0SHarald Freudenberger } 315e80d4af0SHarald Freudenberger preqcblk->req_parml = sizeof(struct kgreqparm); 316e80d4af0SHarald Freudenberger 317e80d4af0SHarald Freudenberger /* fill xcrb struct */ 318e80d4af0SHarald Freudenberger prep_xcrb(&xcrb, cardnr, preqcblk, prepcblk); 319e80d4af0SHarald Freudenberger 320e80d4af0SHarald Freudenberger /* forward xcrb with request CPRB and reply CPRB to zcrypt dd */ 321e80d4af0SHarald Freudenberger rc = _zcrypt_send_cprb(&xcrb); 322e80d4af0SHarald Freudenberger if (rc) { 323e80d4af0SHarald Freudenberger DEBUG_ERR( 324ac2b96f3SHarald Freudenberger "%s zcrypt_send_cprb (cardnr=%d domain=%d) failed with errno %d\n", 325ac2b96f3SHarald Freudenberger __func__, (int) cardnr, (int) domain, rc); 326e80d4af0SHarald Freudenberger goto out; 327e80d4af0SHarald Freudenberger } 328e80d4af0SHarald Freudenberger 329e80d4af0SHarald Freudenberger /* check response returncode and reasoncode */ 330e80d4af0SHarald Freudenberger if (prepcblk->ccp_rtcode != 0) { 331e80d4af0SHarald Freudenberger DEBUG_ERR( 332ac2b96f3SHarald Freudenberger "%s secure key generate failure, card response %d/%d\n", 333ac2b96f3SHarald Freudenberger __func__, 334e80d4af0SHarald Freudenberger (int) prepcblk->ccp_rtcode, 335e80d4af0SHarald Freudenberger (int) prepcblk->ccp_rscode); 336e80d4af0SHarald Freudenberger rc = -EIO; 337e80d4af0SHarald Freudenberger goto out; 338e80d4af0SHarald Freudenberger } 339e80d4af0SHarald Freudenberger 340e80d4af0SHarald Freudenberger /* process response cprb param block */ 341e80d4af0SHarald Freudenberger prepcblk->rpl_parmb = ((u8 *) prepcblk) + sizeof(struct CPRBX); 342e80d4af0SHarald Freudenberger prepparm = (struct kgrepparm *) prepcblk->rpl_parmb; 343e80d4af0SHarald Freudenberger 344e80d4af0SHarald Freudenberger /* check length of the returned secure key token */ 345e80d4af0SHarald Freudenberger seckeysize = prepparm->lv3.keyblock.toklen 346e80d4af0SHarald Freudenberger - sizeof(prepparm->lv3.keyblock.toklen) 347e80d4af0SHarald Freudenberger - sizeof(prepparm->lv3.keyblock.tokattr); 348e80d4af0SHarald Freudenberger if (seckeysize != SECKEYBLOBSIZE) { 349e80d4af0SHarald Freudenberger DEBUG_ERR( 350ac2b96f3SHarald Freudenberger "%s secure token size mismatch %d != %d bytes\n", 351ac2b96f3SHarald Freudenberger __func__, seckeysize, SECKEYBLOBSIZE); 352e80d4af0SHarald Freudenberger rc = -EIO; 353e80d4af0SHarald Freudenberger goto out; 354e80d4af0SHarald Freudenberger } 355e80d4af0SHarald Freudenberger 356e80d4af0SHarald Freudenberger /* check secure key token */ 357e80d4af0SHarald Freudenberger rc = check_secaeskeytoken(prepparm->lv3.keyblock.tok, 8*keysize); 358e80d4af0SHarald Freudenberger if (rc) { 359e80d4af0SHarald Freudenberger rc = -EIO; 360e80d4af0SHarald Freudenberger goto out; 361e80d4af0SHarald Freudenberger } 362e80d4af0SHarald Freudenberger 363e80d4af0SHarald Freudenberger /* copy the generated secure key token */ 364e80d4af0SHarald Freudenberger memcpy(seckey->seckey, prepparm->lv3.keyblock.tok, SECKEYBLOBSIZE); 365e80d4af0SHarald Freudenberger 366e80d4af0SHarald Freudenberger out: 367e80d4af0SHarald Freudenberger free_cprbmem(mem, PARMBSIZE, 0); 368e80d4af0SHarald Freudenberger return rc; 369e80d4af0SHarald Freudenberger } 370e80d4af0SHarald Freudenberger EXPORT_SYMBOL(pkey_genseckey); 371e80d4af0SHarald Freudenberger 372e80d4af0SHarald Freudenberger /* 373e80d4af0SHarald Freudenberger * Generate an AES secure key with given key value. 374e80d4af0SHarald Freudenberger */ 375e80d4af0SHarald Freudenberger int pkey_clr2seckey(u16 cardnr, u16 domain, u32 keytype, 376e80d4af0SHarald Freudenberger const struct pkey_clrkey *clrkey, 377e80d4af0SHarald Freudenberger struct pkey_seckey *seckey) 378e80d4af0SHarald Freudenberger { 379e80d4af0SHarald Freudenberger int rc, keysize, seckeysize; 380e80d4af0SHarald Freudenberger u8 *mem; 381e80d4af0SHarald Freudenberger struct CPRBX *preqcblk, *prepcblk; 382e80d4af0SHarald Freudenberger struct ica_xcRB xcrb; 383e80d4af0SHarald Freudenberger struct cmreqparm { 384e80d4af0SHarald Freudenberger u8 subfunc_code[2]; 385e80d4af0SHarald Freudenberger u16 rule_array_len; 386e80d4af0SHarald Freudenberger char rule_array[8]; 387e80d4af0SHarald Freudenberger struct lv1 { 388e80d4af0SHarald Freudenberger u16 len; 389e80d4af0SHarald Freudenberger u8 clrkey[0]; 390e80d4af0SHarald Freudenberger } lv1; 391e80d4af0SHarald Freudenberger struct lv2 { 392e80d4af0SHarald Freudenberger u16 len; 393e80d4af0SHarald Freudenberger struct keyid { 394e80d4af0SHarald Freudenberger u16 len; 395e80d4af0SHarald Freudenberger u16 attr; 396e80d4af0SHarald Freudenberger u8 data[SECKEYBLOBSIZE]; 397e80d4af0SHarald Freudenberger } keyid; 398e80d4af0SHarald Freudenberger } lv2; 399e80d4af0SHarald Freudenberger } *preqparm; 400e80d4af0SHarald Freudenberger struct lv2 *plv2; 401e80d4af0SHarald Freudenberger struct cmrepparm { 402e80d4af0SHarald Freudenberger u8 subfunc_code[2]; 403e80d4af0SHarald Freudenberger u16 rule_array_len; 404e80d4af0SHarald Freudenberger struct lv3 { 405e80d4af0SHarald Freudenberger u16 len; 406e80d4af0SHarald Freudenberger u16 keyblocklen; 407e80d4af0SHarald Freudenberger struct { 408e80d4af0SHarald Freudenberger u16 toklen; 409e80d4af0SHarald Freudenberger u16 tokattr; 410e80d4af0SHarald Freudenberger u8 tok[0]; 411e80d4af0SHarald Freudenberger /* ... some more data ... */ 412e80d4af0SHarald Freudenberger } keyblock; 413e80d4af0SHarald Freudenberger } lv3; 414e80d4af0SHarald Freudenberger } *prepparm; 415e80d4af0SHarald Freudenberger 416e80d4af0SHarald Freudenberger /* get already prepared memory for 2 cprbs with param block each */ 417e80d4af0SHarald Freudenberger rc = alloc_and_prep_cprbmem(PARMBSIZE, &mem, &preqcblk, &prepcblk); 418e80d4af0SHarald Freudenberger if (rc) 419e80d4af0SHarald Freudenberger return rc; 420e80d4af0SHarald Freudenberger 421e80d4af0SHarald Freudenberger /* fill request cprb struct */ 422e80d4af0SHarald Freudenberger preqcblk->domain = domain; 423e80d4af0SHarald Freudenberger 424e80d4af0SHarald Freudenberger /* fill request cprb param block with CM request */ 425e80d4af0SHarald Freudenberger preqparm = (struct cmreqparm *) preqcblk->req_parmb; 426e80d4af0SHarald Freudenberger memcpy(preqparm->subfunc_code, "CM", 2); 427e80d4af0SHarald Freudenberger memcpy(preqparm->rule_array, "AES ", 8); 428e80d4af0SHarald Freudenberger preqparm->rule_array_len = 429e80d4af0SHarald Freudenberger sizeof(preqparm->rule_array_len) + sizeof(preqparm->rule_array); 430e80d4af0SHarald Freudenberger switch (keytype) { 431e80d4af0SHarald Freudenberger case PKEY_KEYTYPE_AES_128: 432e80d4af0SHarald Freudenberger keysize = 16; 433e80d4af0SHarald Freudenberger break; 434e80d4af0SHarald Freudenberger case PKEY_KEYTYPE_AES_192: 435e80d4af0SHarald Freudenberger keysize = 24; 436e80d4af0SHarald Freudenberger break; 437e80d4af0SHarald Freudenberger case PKEY_KEYTYPE_AES_256: 438e80d4af0SHarald Freudenberger keysize = 32; 439e80d4af0SHarald Freudenberger break; 440e80d4af0SHarald Freudenberger default: 441e80d4af0SHarald Freudenberger DEBUG_ERR( 442ac2b96f3SHarald Freudenberger "%s unknown/unsupported keytype %d\n", 443ac2b96f3SHarald Freudenberger __func__, keytype); 444e80d4af0SHarald Freudenberger rc = -EINVAL; 445e80d4af0SHarald Freudenberger goto out; 446e80d4af0SHarald Freudenberger } 447e80d4af0SHarald Freudenberger preqparm->lv1.len = sizeof(struct lv1) + keysize; 448e80d4af0SHarald Freudenberger memcpy(preqparm->lv1.clrkey, clrkey->clrkey, keysize); 449e80d4af0SHarald Freudenberger plv2 = (struct lv2 *) (((u8 *) &preqparm->lv2) + keysize); 450e80d4af0SHarald Freudenberger plv2->len = sizeof(struct lv2); 451e80d4af0SHarald Freudenberger plv2->keyid.len = sizeof(struct keyid); 452e80d4af0SHarald Freudenberger plv2->keyid.attr = 0x30; 453e80d4af0SHarald Freudenberger preqcblk->req_parml = sizeof(struct cmreqparm) + keysize; 454e80d4af0SHarald Freudenberger 455e80d4af0SHarald Freudenberger /* fill xcrb struct */ 456e80d4af0SHarald Freudenberger prep_xcrb(&xcrb, cardnr, preqcblk, prepcblk); 457e80d4af0SHarald Freudenberger 458e80d4af0SHarald Freudenberger /* forward xcrb with request CPRB and reply CPRB to zcrypt dd */ 459e80d4af0SHarald Freudenberger rc = _zcrypt_send_cprb(&xcrb); 460e80d4af0SHarald Freudenberger if (rc) { 461e80d4af0SHarald Freudenberger DEBUG_ERR( 462ac2b96f3SHarald Freudenberger "%s zcrypt_send_cprb (cardnr=%d domain=%d) failed with errno %d\n", 463ac2b96f3SHarald Freudenberger __func__, (int) cardnr, (int) domain, rc); 464e80d4af0SHarald Freudenberger goto out; 465e80d4af0SHarald Freudenberger } 466e80d4af0SHarald Freudenberger 467e80d4af0SHarald Freudenberger /* check response returncode and reasoncode */ 468e80d4af0SHarald Freudenberger if (prepcblk->ccp_rtcode != 0) { 469e80d4af0SHarald Freudenberger DEBUG_ERR( 470ac2b96f3SHarald Freudenberger "%s clear key import failure, card response %d/%d\n", 471ac2b96f3SHarald Freudenberger __func__, 472e80d4af0SHarald Freudenberger (int) prepcblk->ccp_rtcode, 473e80d4af0SHarald Freudenberger (int) prepcblk->ccp_rscode); 474e80d4af0SHarald Freudenberger rc = -EIO; 475e80d4af0SHarald Freudenberger goto out; 476e80d4af0SHarald Freudenberger } 477e80d4af0SHarald Freudenberger 478e80d4af0SHarald Freudenberger /* process response cprb param block */ 479e80d4af0SHarald Freudenberger prepcblk->rpl_parmb = ((u8 *) prepcblk) + sizeof(struct CPRBX); 480e80d4af0SHarald Freudenberger prepparm = (struct cmrepparm *) prepcblk->rpl_parmb; 481e80d4af0SHarald Freudenberger 482e80d4af0SHarald Freudenberger /* check length of the returned secure key token */ 483e80d4af0SHarald Freudenberger seckeysize = prepparm->lv3.keyblock.toklen 484e80d4af0SHarald Freudenberger - sizeof(prepparm->lv3.keyblock.toklen) 485e80d4af0SHarald Freudenberger - sizeof(prepparm->lv3.keyblock.tokattr); 486e80d4af0SHarald Freudenberger if (seckeysize != SECKEYBLOBSIZE) { 487e80d4af0SHarald Freudenberger DEBUG_ERR( 488ac2b96f3SHarald Freudenberger "%s secure token size mismatch %d != %d bytes\n", 489ac2b96f3SHarald Freudenberger __func__, seckeysize, SECKEYBLOBSIZE); 490e80d4af0SHarald Freudenberger rc = -EIO; 491e80d4af0SHarald Freudenberger goto out; 492e80d4af0SHarald Freudenberger } 493e80d4af0SHarald Freudenberger 494e80d4af0SHarald Freudenberger /* check secure key token */ 495e80d4af0SHarald Freudenberger rc = check_secaeskeytoken(prepparm->lv3.keyblock.tok, 8*keysize); 496e80d4af0SHarald Freudenberger if (rc) { 497e80d4af0SHarald Freudenberger rc = -EIO; 498e80d4af0SHarald Freudenberger goto out; 499e80d4af0SHarald Freudenberger } 500e80d4af0SHarald Freudenberger 501e80d4af0SHarald Freudenberger /* copy the generated secure key token */ 502e80d4af0SHarald Freudenberger memcpy(seckey->seckey, prepparm->lv3.keyblock.tok, SECKEYBLOBSIZE); 503e80d4af0SHarald Freudenberger 504e80d4af0SHarald Freudenberger out: 505e80d4af0SHarald Freudenberger free_cprbmem(mem, PARMBSIZE, 1); 506e80d4af0SHarald Freudenberger return rc; 507e80d4af0SHarald Freudenberger } 508e80d4af0SHarald Freudenberger EXPORT_SYMBOL(pkey_clr2seckey); 509e80d4af0SHarald Freudenberger 510e80d4af0SHarald Freudenberger /* 511e80d4af0SHarald Freudenberger * Derive a proteced key from the secure key blob. 512e80d4af0SHarald Freudenberger */ 513e80d4af0SHarald Freudenberger int pkey_sec2protkey(u16 cardnr, u16 domain, 514e80d4af0SHarald Freudenberger const struct pkey_seckey *seckey, 515e80d4af0SHarald Freudenberger struct pkey_protkey *protkey) 516e80d4af0SHarald Freudenberger { 517e80d4af0SHarald Freudenberger int rc; 518e80d4af0SHarald Freudenberger u8 *mem; 519e80d4af0SHarald Freudenberger struct CPRBX *preqcblk, *prepcblk; 520e80d4af0SHarald Freudenberger struct ica_xcRB xcrb; 521e80d4af0SHarald Freudenberger struct uskreqparm { 522e80d4af0SHarald Freudenberger u8 subfunc_code[2]; 523e80d4af0SHarald Freudenberger u16 rule_array_len; 524e80d4af0SHarald Freudenberger struct lv1 { 525e80d4af0SHarald Freudenberger u16 len; 526e80d4af0SHarald Freudenberger u16 attr_len; 527e80d4af0SHarald Freudenberger u16 attr_flags; 528e80d4af0SHarald Freudenberger } lv1; 529e80d4af0SHarald Freudenberger struct lv2 { 530e80d4af0SHarald Freudenberger u16 len; 531e80d4af0SHarald Freudenberger u16 attr_len; 532e80d4af0SHarald Freudenberger u16 attr_flags; 533e80d4af0SHarald Freudenberger u8 token[0]; /* cca secure key token */ 534e80d4af0SHarald Freudenberger } lv2 __packed; 535e80d4af0SHarald Freudenberger } *preqparm; 536e80d4af0SHarald Freudenberger struct uskrepparm { 537e80d4af0SHarald Freudenberger u8 subfunc_code[2]; 538e80d4af0SHarald Freudenberger u16 rule_array_len; 539e80d4af0SHarald Freudenberger struct lv3 { 540e80d4af0SHarald Freudenberger u16 len; 541e80d4af0SHarald Freudenberger u16 attr_len; 542e80d4af0SHarald Freudenberger u16 attr_flags; 543e80d4af0SHarald Freudenberger struct cpacfkeyblock { 544e80d4af0SHarald Freudenberger u8 version; /* version of this struct */ 545e80d4af0SHarald Freudenberger u8 flags[2]; 546e80d4af0SHarald Freudenberger u8 algo; 547e80d4af0SHarald Freudenberger u8 form; 548e80d4af0SHarald Freudenberger u8 pad1[3]; 549e80d4af0SHarald Freudenberger u16 keylen; 550e80d4af0SHarald Freudenberger u8 key[64]; /* the key (keylen bytes) */ 551e80d4af0SHarald Freudenberger u16 keyattrlen; 552e80d4af0SHarald Freudenberger u8 keyattr[32]; 553e80d4af0SHarald Freudenberger u8 pad2[1]; 554e80d4af0SHarald Freudenberger u8 vptype; 555e80d4af0SHarald Freudenberger u8 vp[32]; /* verification pattern */ 556e80d4af0SHarald Freudenberger } keyblock; 557e80d4af0SHarald Freudenberger } lv3 __packed; 558e80d4af0SHarald Freudenberger } *prepparm; 559e80d4af0SHarald Freudenberger 560e80d4af0SHarald Freudenberger /* get already prepared memory for 2 cprbs with param block each */ 561e80d4af0SHarald Freudenberger rc = alloc_and_prep_cprbmem(PARMBSIZE, &mem, &preqcblk, &prepcblk); 562e80d4af0SHarald Freudenberger if (rc) 563e80d4af0SHarald Freudenberger return rc; 564e80d4af0SHarald Freudenberger 565e80d4af0SHarald Freudenberger /* fill request cprb struct */ 566e80d4af0SHarald Freudenberger preqcblk->domain = domain; 567e80d4af0SHarald Freudenberger 568e80d4af0SHarald Freudenberger /* fill request cprb param block with USK request */ 569e80d4af0SHarald Freudenberger preqparm = (struct uskreqparm *) preqcblk->req_parmb; 570e80d4af0SHarald Freudenberger memcpy(preqparm->subfunc_code, "US", 2); 571e80d4af0SHarald Freudenberger preqparm->rule_array_len = sizeof(preqparm->rule_array_len); 572e80d4af0SHarald Freudenberger preqparm->lv1.len = sizeof(struct lv1); 573e80d4af0SHarald Freudenberger preqparm->lv1.attr_len = sizeof(struct lv1) - sizeof(preqparm->lv1.len); 574e80d4af0SHarald Freudenberger preqparm->lv1.attr_flags = 0x0001; 575e80d4af0SHarald Freudenberger preqparm->lv2.len = sizeof(struct lv2) + SECKEYBLOBSIZE; 576e80d4af0SHarald Freudenberger preqparm->lv2.attr_len = sizeof(struct lv2) 577e80d4af0SHarald Freudenberger - sizeof(preqparm->lv2.len) + SECKEYBLOBSIZE; 578e80d4af0SHarald Freudenberger preqparm->lv2.attr_flags = 0x0000; 579e80d4af0SHarald Freudenberger memcpy(preqparm->lv2.token, seckey->seckey, SECKEYBLOBSIZE); 580e80d4af0SHarald Freudenberger preqcblk->req_parml = sizeof(struct uskreqparm) + SECKEYBLOBSIZE; 581e80d4af0SHarald Freudenberger 582e80d4af0SHarald Freudenberger /* fill xcrb struct */ 583e80d4af0SHarald Freudenberger prep_xcrb(&xcrb, cardnr, preqcblk, prepcblk); 584e80d4af0SHarald Freudenberger 585e80d4af0SHarald Freudenberger /* forward xcrb with request CPRB and reply CPRB to zcrypt dd */ 586e80d4af0SHarald Freudenberger rc = _zcrypt_send_cprb(&xcrb); 587e80d4af0SHarald Freudenberger if (rc) { 588e80d4af0SHarald Freudenberger DEBUG_ERR( 589ac2b96f3SHarald Freudenberger "%s zcrypt_send_cprb (cardnr=%d domain=%d) failed with errno %d\n", 590ac2b96f3SHarald Freudenberger __func__, (int) cardnr, (int) domain, rc); 591e80d4af0SHarald Freudenberger goto out; 592e80d4af0SHarald Freudenberger } 593e80d4af0SHarald Freudenberger 594e80d4af0SHarald Freudenberger /* check response returncode and reasoncode */ 595e80d4af0SHarald Freudenberger if (prepcblk->ccp_rtcode != 0) { 596e80d4af0SHarald Freudenberger DEBUG_ERR( 597ac2b96f3SHarald Freudenberger "%s unwrap secure key failure, card response %d/%d\n", 598ac2b96f3SHarald Freudenberger __func__, 599e80d4af0SHarald Freudenberger (int) prepcblk->ccp_rtcode, 600e80d4af0SHarald Freudenberger (int) prepcblk->ccp_rscode); 601e80d4af0SHarald Freudenberger rc = -EIO; 602e80d4af0SHarald Freudenberger goto out; 603e80d4af0SHarald Freudenberger } 604ca681ec8SHarald Freudenberger if (prepcblk->ccp_rscode != 0) { 605ca681ec8SHarald Freudenberger DEBUG_WARN( 606ac2b96f3SHarald Freudenberger "%s unwrap secure key warning, card response %d/%d\n", 607ac2b96f3SHarald Freudenberger __func__, 608ca681ec8SHarald Freudenberger (int) prepcblk->ccp_rtcode, 609ca681ec8SHarald Freudenberger (int) prepcblk->ccp_rscode); 610ca681ec8SHarald Freudenberger } 611e80d4af0SHarald Freudenberger 612e80d4af0SHarald Freudenberger /* process response cprb param block */ 613e80d4af0SHarald Freudenberger prepcblk->rpl_parmb = ((u8 *) prepcblk) + sizeof(struct CPRBX); 614e80d4af0SHarald Freudenberger prepparm = (struct uskrepparm *) prepcblk->rpl_parmb; 615e80d4af0SHarald Freudenberger 616e80d4af0SHarald Freudenberger /* check the returned keyblock */ 617e80d4af0SHarald Freudenberger if (prepparm->lv3.keyblock.version != 0x01) { 618e80d4af0SHarald Freudenberger DEBUG_ERR( 619ac2b96f3SHarald Freudenberger "%s reply param keyblock version mismatch 0x%02x != 0x01\n", 620ac2b96f3SHarald Freudenberger __func__, (int) prepparm->lv3.keyblock.version); 621e80d4af0SHarald Freudenberger rc = -EIO; 622e80d4af0SHarald Freudenberger goto out; 623e80d4af0SHarald Freudenberger } 624e80d4af0SHarald Freudenberger 625e80d4af0SHarald Freudenberger /* copy the tanslated protected key */ 626e80d4af0SHarald Freudenberger switch (prepparm->lv3.keyblock.keylen) { 627e80d4af0SHarald Freudenberger case 16+32: 628e80d4af0SHarald Freudenberger protkey->type = PKEY_KEYTYPE_AES_128; 629e80d4af0SHarald Freudenberger break; 630e80d4af0SHarald Freudenberger case 24+32: 631e80d4af0SHarald Freudenberger protkey->type = PKEY_KEYTYPE_AES_192; 632e80d4af0SHarald Freudenberger break; 633e80d4af0SHarald Freudenberger case 32+32: 634e80d4af0SHarald Freudenberger protkey->type = PKEY_KEYTYPE_AES_256; 635e80d4af0SHarald Freudenberger break; 636e80d4af0SHarald Freudenberger default: 637ac2b96f3SHarald Freudenberger DEBUG_ERR("%s unknown/unsupported keytype %d\n", 638ac2b96f3SHarald Freudenberger __func__, prepparm->lv3.keyblock.keylen); 639e80d4af0SHarald Freudenberger rc = -EIO; 640e80d4af0SHarald Freudenberger goto out; 641e80d4af0SHarald Freudenberger } 642e80d4af0SHarald Freudenberger protkey->len = prepparm->lv3.keyblock.keylen; 643e80d4af0SHarald Freudenberger memcpy(protkey->protkey, prepparm->lv3.keyblock.key, protkey->len); 644e80d4af0SHarald Freudenberger 645e80d4af0SHarald Freudenberger out: 646e80d4af0SHarald Freudenberger free_cprbmem(mem, PARMBSIZE, 0); 647e80d4af0SHarald Freudenberger return rc; 648e80d4af0SHarald Freudenberger } 649e80d4af0SHarald Freudenberger EXPORT_SYMBOL(pkey_sec2protkey); 650e80d4af0SHarald Freudenberger 651e80d4af0SHarald Freudenberger /* 652e80d4af0SHarald Freudenberger * Create a protected key from a clear key value. 653e80d4af0SHarald Freudenberger */ 654e80d4af0SHarald Freudenberger int pkey_clr2protkey(u32 keytype, 655e80d4af0SHarald Freudenberger const struct pkey_clrkey *clrkey, 656e80d4af0SHarald Freudenberger struct pkey_protkey *protkey) 657e80d4af0SHarald Freudenberger { 658e80d4af0SHarald Freudenberger long fc; 659e80d4af0SHarald Freudenberger int keysize; 660e80d4af0SHarald Freudenberger u8 paramblock[64]; 661e80d4af0SHarald Freudenberger 662e80d4af0SHarald Freudenberger switch (keytype) { 663e80d4af0SHarald Freudenberger case PKEY_KEYTYPE_AES_128: 664e80d4af0SHarald Freudenberger keysize = 16; 665e80d4af0SHarald Freudenberger fc = CPACF_PCKMO_ENC_AES_128_KEY; 666e80d4af0SHarald Freudenberger break; 667e80d4af0SHarald Freudenberger case PKEY_KEYTYPE_AES_192: 668e80d4af0SHarald Freudenberger keysize = 24; 669e80d4af0SHarald Freudenberger fc = CPACF_PCKMO_ENC_AES_192_KEY; 670e80d4af0SHarald Freudenberger break; 671e80d4af0SHarald Freudenberger case PKEY_KEYTYPE_AES_256: 672e80d4af0SHarald Freudenberger keysize = 32; 673e80d4af0SHarald Freudenberger fc = CPACF_PCKMO_ENC_AES_256_KEY; 674e80d4af0SHarald Freudenberger break; 675e80d4af0SHarald Freudenberger default: 676ac2b96f3SHarald Freudenberger DEBUG_ERR("%s unknown/unsupported keytype %d\n", 677ac2b96f3SHarald Freudenberger __func__, keytype); 678e80d4af0SHarald Freudenberger return -EINVAL; 679e80d4af0SHarald Freudenberger } 680e80d4af0SHarald Freudenberger 681e80d4af0SHarald Freudenberger /* prepare param block */ 682e80d4af0SHarald Freudenberger memset(paramblock, 0, sizeof(paramblock)); 683e80d4af0SHarald Freudenberger memcpy(paramblock, clrkey->clrkey, keysize); 684e80d4af0SHarald Freudenberger 685e80d4af0SHarald Freudenberger /* call the pckmo instruction */ 686e80d4af0SHarald Freudenberger cpacf_pckmo(fc, paramblock); 687e80d4af0SHarald Freudenberger 688e80d4af0SHarald Freudenberger /* copy created protected key */ 689e80d4af0SHarald Freudenberger protkey->type = keytype; 690e80d4af0SHarald Freudenberger protkey->len = keysize + 32; 691e80d4af0SHarald Freudenberger memcpy(protkey->protkey, paramblock, keysize + 32); 692e80d4af0SHarald Freudenberger 693e80d4af0SHarald Freudenberger return 0; 694e80d4af0SHarald Freudenberger } 695e80d4af0SHarald Freudenberger EXPORT_SYMBOL(pkey_clr2protkey); 696e80d4af0SHarald Freudenberger 697e80d4af0SHarald Freudenberger /* 698e80d4af0SHarald Freudenberger * query cryptographic facility from adapter 699e80d4af0SHarald Freudenberger */ 700e80d4af0SHarald Freudenberger static int query_crypto_facility(u16 cardnr, u16 domain, 701e80d4af0SHarald Freudenberger const char *keyword, 702e80d4af0SHarald Freudenberger u8 *rarray, size_t *rarraylen, 703e80d4af0SHarald Freudenberger u8 *varray, size_t *varraylen) 704e80d4af0SHarald Freudenberger { 705e80d4af0SHarald Freudenberger int rc; 706e80d4af0SHarald Freudenberger u16 len; 707e80d4af0SHarald Freudenberger u8 *mem, *ptr; 708e80d4af0SHarald Freudenberger struct CPRBX *preqcblk, *prepcblk; 709e80d4af0SHarald Freudenberger struct ica_xcRB xcrb; 710e80d4af0SHarald Freudenberger struct fqreqparm { 711e80d4af0SHarald Freudenberger u8 subfunc_code[2]; 712e80d4af0SHarald Freudenberger u16 rule_array_len; 713e80d4af0SHarald Freudenberger char rule_array[8]; 714e80d4af0SHarald Freudenberger struct lv1 { 715e80d4af0SHarald Freudenberger u16 len; 716e80d4af0SHarald Freudenberger u8 data[VARDATASIZE]; 717e80d4af0SHarald Freudenberger } lv1; 718e80d4af0SHarald Freudenberger u16 dummylen; 719e80d4af0SHarald Freudenberger } *preqparm; 720e80d4af0SHarald Freudenberger size_t parmbsize = sizeof(struct fqreqparm); 721e80d4af0SHarald Freudenberger struct fqrepparm { 722e80d4af0SHarald Freudenberger u8 subfunc_code[2]; 723e80d4af0SHarald Freudenberger u8 lvdata[0]; 724e80d4af0SHarald Freudenberger } *prepparm; 725e80d4af0SHarald Freudenberger 726e80d4af0SHarald Freudenberger /* get already prepared memory for 2 cprbs with param block each */ 727e80d4af0SHarald Freudenberger rc = alloc_and_prep_cprbmem(parmbsize, &mem, &preqcblk, &prepcblk); 728e80d4af0SHarald Freudenberger if (rc) 729e80d4af0SHarald Freudenberger return rc; 730e80d4af0SHarald Freudenberger 731e80d4af0SHarald Freudenberger /* fill request cprb struct */ 732e80d4af0SHarald Freudenberger preqcblk->domain = domain; 733e80d4af0SHarald Freudenberger 734e80d4af0SHarald Freudenberger /* fill request cprb param block with FQ request */ 735e80d4af0SHarald Freudenberger preqparm = (struct fqreqparm *) preqcblk->req_parmb; 736e80d4af0SHarald Freudenberger memcpy(preqparm->subfunc_code, "FQ", 2); 737a09baa95SVasily Gorbik memcpy(preqparm->rule_array, keyword, sizeof(preqparm->rule_array)); 738e80d4af0SHarald Freudenberger preqparm->rule_array_len = 739e80d4af0SHarald Freudenberger sizeof(preqparm->rule_array_len) + sizeof(preqparm->rule_array); 740e80d4af0SHarald Freudenberger preqparm->lv1.len = sizeof(preqparm->lv1); 741e80d4af0SHarald Freudenberger preqparm->dummylen = sizeof(preqparm->dummylen); 742e80d4af0SHarald Freudenberger preqcblk->req_parml = parmbsize; 743e80d4af0SHarald Freudenberger 744e80d4af0SHarald Freudenberger /* fill xcrb struct */ 745e80d4af0SHarald Freudenberger prep_xcrb(&xcrb, cardnr, preqcblk, prepcblk); 746e80d4af0SHarald Freudenberger 747e80d4af0SHarald Freudenberger /* forward xcrb with request CPRB and reply CPRB to zcrypt dd */ 748e80d4af0SHarald Freudenberger rc = _zcrypt_send_cprb(&xcrb); 749e80d4af0SHarald Freudenberger if (rc) { 750e80d4af0SHarald Freudenberger DEBUG_ERR( 751ac2b96f3SHarald Freudenberger "%s zcrypt_send_cprb (cardnr=%d domain=%d) failed with errno %d\n", 752ac2b96f3SHarald Freudenberger __func__, (int) cardnr, (int) domain, rc); 753e80d4af0SHarald Freudenberger goto out; 754e80d4af0SHarald Freudenberger } 755e80d4af0SHarald Freudenberger 756e80d4af0SHarald Freudenberger /* check response returncode and reasoncode */ 757e80d4af0SHarald Freudenberger if (prepcblk->ccp_rtcode != 0) { 758e80d4af0SHarald Freudenberger DEBUG_ERR( 759ac2b96f3SHarald Freudenberger "%s unwrap secure key failure, card response %d/%d\n", 760ac2b96f3SHarald Freudenberger __func__, 761e80d4af0SHarald Freudenberger (int) prepcblk->ccp_rtcode, 762e80d4af0SHarald Freudenberger (int) prepcblk->ccp_rscode); 763e80d4af0SHarald Freudenberger rc = -EIO; 764e80d4af0SHarald Freudenberger goto out; 765e80d4af0SHarald Freudenberger } 766e80d4af0SHarald Freudenberger 767e80d4af0SHarald Freudenberger /* process response cprb param block */ 768e80d4af0SHarald Freudenberger prepcblk->rpl_parmb = ((u8 *) prepcblk) + sizeof(struct CPRBX); 769e80d4af0SHarald Freudenberger prepparm = (struct fqrepparm *) prepcblk->rpl_parmb; 770e80d4af0SHarald Freudenberger ptr = prepparm->lvdata; 771e80d4af0SHarald Freudenberger 772e80d4af0SHarald Freudenberger /* check and possibly copy reply rule array */ 773e80d4af0SHarald Freudenberger len = *((u16 *) ptr); 774e80d4af0SHarald Freudenberger if (len > sizeof(u16)) { 775e80d4af0SHarald Freudenberger ptr += sizeof(u16); 776e80d4af0SHarald Freudenberger len -= sizeof(u16); 777e80d4af0SHarald Freudenberger if (rarray && rarraylen && *rarraylen > 0) { 778e80d4af0SHarald Freudenberger *rarraylen = (len > *rarraylen ? *rarraylen : len); 779e80d4af0SHarald Freudenberger memcpy(rarray, ptr, *rarraylen); 780e80d4af0SHarald Freudenberger } 781e80d4af0SHarald Freudenberger ptr += len; 782e80d4af0SHarald Freudenberger } 783e80d4af0SHarald Freudenberger /* check and possible copy reply var array */ 784e80d4af0SHarald Freudenberger len = *((u16 *) ptr); 785e80d4af0SHarald Freudenberger if (len > sizeof(u16)) { 786e80d4af0SHarald Freudenberger ptr += sizeof(u16); 787e80d4af0SHarald Freudenberger len -= sizeof(u16); 788e80d4af0SHarald Freudenberger if (varray && varraylen && *varraylen > 0) { 789e80d4af0SHarald Freudenberger *varraylen = (len > *varraylen ? *varraylen : len); 790e80d4af0SHarald Freudenberger memcpy(varray, ptr, *varraylen); 791e80d4af0SHarald Freudenberger } 792e80d4af0SHarald Freudenberger ptr += len; 793e80d4af0SHarald Freudenberger } 794e80d4af0SHarald Freudenberger 795e80d4af0SHarald Freudenberger out: 796e80d4af0SHarald Freudenberger free_cprbmem(mem, parmbsize, 0); 797e80d4af0SHarald Freudenberger return rc; 798e80d4af0SHarald Freudenberger } 799e80d4af0SHarald Freudenberger 800e80d4af0SHarald Freudenberger /* 801ca681ec8SHarald Freudenberger * Fetch the current and old mkvp values via 802ca681ec8SHarald Freudenberger * query_crypto_facility from adapter. 803e80d4af0SHarald Freudenberger */ 804ca681ec8SHarald Freudenberger static int fetch_mkvp(u16 cardnr, u16 domain, u64 mkvp[2]) 805e80d4af0SHarald Freudenberger { 806e80d4af0SHarald Freudenberger int rc, found = 0; 807e80d4af0SHarald Freudenberger size_t rlen, vlen; 808e80d4af0SHarald Freudenberger u8 *rarray, *varray, *pg; 809e80d4af0SHarald Freudenberger 810e80d4af0SHarald Freudenberger pg = (u8 *) __get_free_page(GFP_KERNEL); 811e80d4af0SHarald Freudenberger if (!pg) 812e80d4af0SHarald Freudenberger return -ENOMEM; 813e80d4af0SHarald Freudenberger rarray = pg; 814e80d4af0SHarald Freudenberger varray = pg + PAGE_SIZE/2; 815e80d4af0SHarald Freudenberger rlen = vlen = PAGE_SIZE/2; 816e80d4af0SHarald Freudenberger 817e80d4af0SHarald Freudenberger rc = query_crypto_facility(cardnr, domain, "STATICSA", 818e80d4af0SHarald Freudenberger rarray, &rlen, varray, &vlen); 819e80d4af0SHarald Freudenberger if (rc == 0 && rlen > 8*8 && vlen > 184+8) { 820ca681ec8SHarald Freudenberger if (rarray[8*8] == '2') { 821e80d4af0SHarald Freudenberger /* current master key state is valid */ 822ca681ec8SHarald Freudenberger mkvp[0] = *((u64 *)(varray + 184)); 823ca681ec8SHarald Freudenberger mkvp[1] = *((u64 *)(varray + 172)); 824e80d4af0SHarald Freudenberger found = 1; 825e80d4af0SHarald Freudenberger } 826e80d4af0SHarald Freudenberger } 827e80d4af0SHarald Freudenberger 828e80d4af0SHarald Freudenberger free_page((unsigned long) pg); 829e80d4af0SHarald Freudenberger 830e80d4af0SHarald Freudenberger return found ? 0 : -ENOENT; 831e80d4af0SHarald Freudenberger } 832e80d4af0SHarald Freudenberger 833e80d4af0SHarald Freudenberger /* struct to hold cached mkvp info for each card/domain */ 834e80d4af0SHarald Freudenberger struct mkvp_info { 835e80d4af0SHarald Freudenberger struct list_head list; 836e80d4af0SHarald Freudenberger u16 cardnr; 837e80d4af0SHarald Freudenberger u16 domain; 838ca681ec8SHarald Freudenberger u64 mkvp[2]; 839e80d4af0SHarald Freudenberger }; 840e80d4af0SHarald Freudenberger 841e80d4af0SHarald Freudenberger /* a list with mkvp_info entries */ 842e80d4af0SHarald Freudenberger static LIST_HEAD(mkvp_list); 843e80d4af0SHarald Freudenberger static DEFINE_SPINLOCK(mkvp_list_lock); 844e80d4af0SHarald Freudenberger 845ca681ec8SHarald Freudenberger static int mkvp_cache_fetch(u16 cardnr, u16 domain, u64 mkvp[2]) 846e80d4af0SHarald Freudenberger { 847e80d4af0SHarald Freudenberger int rc = -ENOENT; 848e80d4af0SHarald Freudenberger struct mkvp_info *ptr; 849e80d4af0SHarald Freudenberger 850e80d4af0SHarald Freudenberger spin_lock_bh(&mkvp_list_lock); 851e80d4af0SHarald Freudenberger list_for_each_entry(ptr, &mkvp_list, list) { 852e80d4af0SHarald Freudenberger if (ptr->cardnr == cardnr && 853e80d4af0SHarald Freudenberger ptr->domain == domain) { 854ca681ec8SHarald Freudenberger memcpy(mkvp, ptr->mkvp, 2 * sizeof(u64)); 855e80d4af0SHarald Freudenberger rc = 0; 856e80d4af0SHarald Freudenberger break; 857e80d4af0SHarald Freudenberger } 858e80d4af0SHarald Freudenberger } 859e80d4af0SHarald Freudenberger spin_unlock_bh(&mkvp_list_lock); 860e80d4af0SHarald Freudenberger 861e80d4af0SHarald Freudenberger return rc; 862e80d4af0SHarald Freudenberger } 863e80d4af0SHarald Freudenberger 864ca681ec8SHarald Freudenberger static void mkvp_cache_update(u16 cardnr, u16 domain, u64 mkvp[2]) 865e80d4af0SHarald Freudenberger { 866e80d4af0SHarald Freudenberger int found = 0; 867e80d4af0SHarald Freudenberger struct mkvp_info *ptr; 868e80d4af0SHarald Freudenberger 869e80d4af0SHarald Freudenberger spin_lock_bh(&mkvp_list_lock); 870e80d4af0SHarald Freudenberger list_for_each_entry(ptr, &mkvp_list, list) { 871e80d4af0SHarald Freudenberger if (ptr->cardnr == cardnr && 872e80d4af0SHarald Freudenberger ptr->domain == domain) { 873ca681ec8SHarald Freudenberger memcpy(ptr->mkvp, mkvp, 2 * sizeof(u64)); 874e80d4af0SHarald Freudenberger found = 1; 875e80d4af0SHarald Freudenberger break; 876e80d4af0SHarald Freudenberger } 877e80d4af0SHarald Freudenberger } 878e80d4af0SHarald Freudenberger if (!found) { 879e80d4af0SHarald Freudenberger ptr = kmalloc(sizeof(*ptr), GFP_ATOMIC); 880e80d4af0SHarald Freudenberger if (!ptr) { 881e80d4af0SHarald Freudenberger spin_unlock_bh(&mkvp_list_lock); 882e80d4af0SHarald Freudenberger return; 883e80d4af0SHarald Freudenberger } 884e80d4af0SHarald Freudenberger ptr->cardnr = cardnr; 885e80d4af0SHarald Freudenberger ptr->domain = domain; 886ca681ec8SHarald Freudenberger memcpy(ptr->mkvp, mkvp, 2 * sizeof(u64)); 887e80d4af0SHarald Freudenberger list_add(&ptr->list, &mkvp_list); 888e80d4af0SHarald Freudenberger } 889e80d4af0SHarald Freudenberger spin_unlock_bh(&mkvp_list_lock); 890e80d4af0SHarald Freudenberger } 891e80d4af0SHarald Freudenberger 892e80d4af0SHarald Freudenberger static void mkvp_cache_scrub(u16 cardnr, u16 domain) 893e80d4af0SHarald Freudenberger { 894e80d4af0SHarald Freudenberger struct mkvp_info *ptr; 895e80d4af0SHarald Freudenberger 896e80d4af0SHarald Freudenberger spin_lock_bh(&mkvp_list_lock); 897e80d4af0SHarald Freudenberger list_for_each_entry(ptr, &mkvp_list, list) { 898e80d4af0SHarald Freudenberger if (ptr->cardnr == cardnr && 899e80d4af0SHarald Freudenberger ptr->domain == domain) { 900e80d4af0SHarald Freudenberger list_del(&ptr->list); 901e80d4af0SHarald Freudenberger kfree(ptr); 902e80d4af0SHarald Freudenberger break; 903e80d4af0SHarald Freudenberger } 904e80d4af0SHarald Freudenberger } 905e80d4af0SHarald Freudenberger spin_unlock_bh(&mkvp_list_lock); 906e80d4af0SHarald Freudenberger } 907e80d4af0SHarald Freudenberger 908e80d4af0SHarald Freudenberger static void __exit mkvp_cache_free(void) 909e80d4af0SHarald Freudenberger { 910e80d4af0SHarald Freudenberger struct mkvp_info *ptr, *pnext; 911e80d4af0SHarald Freudenberger 912e80d4af0SHarald Freudenberger spin_lock_bh(&mkvp_list_lock); 913e80d4af0SHarald Freudenberger list_for_each_entry_safe(ptr, pnext, &mkvp_list, list) { 914e80d4af0SHarald Freudenberger list_del(&ptr->list); 915e80d4af0SHarald Freudenberger kfree(ptr); 916e80d4af0SHarald Freudenberger } 917e80d4af0SHarald Freudenberger spin_unlock_bh(&mkvp_list_lock); 918e80d4af0SHarald Freudenberger } 919e80d4af0SHarald Freudenberger 920e80d4af0SHarald Freudenberger /* 921e80d4af0SHarald Freudenberger * Search for a matching crypto card based on the Master Key 922e80d4af0SHarald Freudenberger * Verification Pattern provided inside a secure key. 923e80d4af0SHarald Freudenberger */ 924e80d4af0SHarald Freudenberger int pkey_findcard(const struct pkey_seckey *seckey, 925e80d4af0SHarald Freudenberger u16 *pcardnr, u16 *pdomain, int verify) 926e80d4af0SHarald Freudenberger { 927e80d4af0SHarald Freudenberger struct secaeskeytoken *t = (struct secaeskeytoken *) seckey; 928af4a7227SHarald Freudenberger struct zcrypt_device_status_ext *device_status; 929e80d4af0SHarald Freudenberger u16 card, dom; 930ca681ec8SHarald Freudenberger u64 mkvp[2]; 931ca681ec8SHarald Freudenberger int i, rc, oi = -1; 932e80d4af0SHarald Freudenberger 933e80d4af0SHarald Freudenberger /* mkvp must not be zero */ 934e80d4af0SHarald Freudenberger if (t->mkvp == 0) 935e80d4af0SHarald Freudenberger return -EINVAL; 936e80d4af0SHarald Freudenberger 937e80d4af0SHarald Freudenberger /* fetch status of all crypto cards */ 9386da2ec56SKees Cook device_status = kmalloc_array(MAX_ZDEV_ENTRIES_EXT, 9396da2ec56SKees Cook sizeof(struct zcrypt_device_status_ext), 940e80d4af0SHarald Freudenberger GFP_KERNEL); 941af4a7227SHarald Freudenberger if (!device_status) 942e80d4af0SHarald Freudenberger return -ENOMEM; 943af4a7227SHarald Freudenberger zcrypt_device_status_mask_ext(device_status); 944e80d4af0SHarald Freudenberger 945e80d4af0SHarald Freudenberger /* walk through all crypto cards */ 946af4a7227SHarald Freudenberger for (i = 0; i < MAX_ZDEV_ENTRIES_EXT; i++) { 947af4a7227SHarald Freudenberger card = AP_QID_CARD(device_status[i].qid); 948af4a7227SHarald Freudenberger dom = AP_QID_QUEUE(device_status[i].qid); 949af4a7227SHarald Freudenberger if (device_status[i].online && 950af4a7227SHarald Freudenberger device_status[i].functions & 0x04) { 951e80d4af0SHarald Freudenberger /* an enabled CCA Coprocessor card */ 952e80d4af0SHarald Freudenberger /* try cached mkvp */ 953ca681ec8SHarald Freudenberger if (mkvp_cache_fetch(card, dom, mkvp) == 0 && 954ca681ec8SHarald Freudenberger t->mkvp == mkvp[0]) { 955e80d4af0SHarald Freudenberger if (!verify) 956e80d4af0SHarald Freudenberger break; 957e80d4af0SHarald Freudenberger /* verify: fetch mkvp from adapter */ 958ca681ec8SHarald Freudenberger if (fetch_mkvp(card, dom, mkvp) == 0) { 959e80d4af0SHarald Freudenberger mkvp_cache_update(card, dom, mkvp); 960ca681ec8SHarald Freudenberger if (t->mkvp == mkvp[0]) 961e80d4af0SHarald Freudenberger break; 962e80d4af0SHarald Freudenberger } 963e80d4af0SHarald Freudenberger } 964e80d4af0SHarald Freudenberger } else { 965e80d4af0SHarald Freudenberger /* Card is offline and/or not a CCA card. */ 966e80d4af0SHarald Freudenberger /* del mkvp entry from cache if it exists */ 967e80d4af0SHarald Freudenberger mkvp_cache_scrub(card, dom); 968e80d4af0SHarald Freudenberger } 969e80d4af0SHarald Freudenberger } 970af4a7227SHarald Freudenberger if (i >= MAX_ZDEV_ENTRIES_EXT) { 971e80d4af0SHarald Freudenberger /* nothing found, so this time without cache */ 972af4a7227SHarald Freudenberger for (i = 0; i < MAX_ZDEV_ENTRIES_EXT; i++) { 973af4a7227SHarald Freudenberger if (!(device_status[i].online && 974af4a7227SHarald Freudenberger device_status[i].functions & 0x04)) 975e80d4af0SHarald Freudenberger continue; 976af4a7227SHarald Freudenberger card = AP_QID_CARD(device_status[i].qid); 977af4a7227SHarald Freudenberger dom = AP_QID_QUEUE(device_status[i].qid); 978e80d4af0SHarald Freudenberger /* fresh fetch mkvp from adapter */ 979ca681ec8SHarald Freudenberger if (fetch_mkvp(card, dom, mkvp) == 0) { 980e80d4af0SHarald Freudenberger mkvp_cache_update(card, dom, mkvp); 981ca681ec8SHarald Freudenberger if (t->mkvp == mkvp[0]) 982e80d4af0SHarald Freudenberger break; 983ca681ec8SHarald Freudenberger if (t->mkvp == mkvp[1] && oi < 0) 984ca681ec8SHarald Freudenberger oi = i; 985e80d4af0SHarald Freudenberger } 986e80d4af0SHarald Freudenberger } 987af4a7227SHarald Freudenberger if (i >= MAX_ZDEV_ENTRIES_EXT && oi >= 0) { 988ca681ec8SHarald Freudenberger /* old mkvp matched, use this card then */ 989af4a7227SHarald Freudenberger card = AP_QID_CARD(device_status[oi].qid); 990af4a7227SHarald Freudenberger dom = AP_QID_QUEUE(device_status[oi].qid); 991e80d4af0SHarald Freudenberger } 992ca681ec8SHarald Freudenberger } 993af4a7227SHarald Freudenberger if (i < MAX_ZDEV_ENTRIES_EXT || oi >= 0) { 994e80d4af0SHarald Freudenberger if (pcardnr) 995e80d4af0SHarald Freudenberger *pcardnr = card; 996e80d4af0SHarald Freudenberger if (pdomain) 997e80d4af0SHarald Freudenberger *pdomain = dom; 998e80d4af0SHarald Freudenberger rc = 0; 999e80d4af0SHarald Freudenberger } else 1000e80d4af0SHarald Freudenberger rc = -ENODEV; 1001e80d4af0SHarald Freudenberger 1002af4a7227SHarald Freudenberger kfree(device_status); 1003e80d4af0SHarald Freudenberger return rc; 1004e80d4af0SHarald Freudenberger } 1005e80d4af0SHarald Freudenberger EXPORT_SYMBOL(pkey_findcard); 1006e80d4af0SHarald Freudenberger 1007e80d4af0SHarald Freudenberger /* 1008e80d4af0SHarald Freudenberger * Find card and transform secure key into protected key. 1009e80d4af0SHarald Freudenberger */ 1010e80d4af0SHarald Freudenberger int pkey_skey2pkey(const struct pkey_seckey *seckey, 1011e80d4af0SHarald Freudenberger struct pkey_protkey *protkey) 1012e80d4af0SHarald Freudenberger { 1013e80d4af0SHarald Freudenberger u16 cardnr, domain; 1014e80d4af0SHarald Freudenberger int rc, verify; 1015e80d4af0SHarald Freudenberger 1016e80d4af0SHarald Freudenberger /* 1017e80d4af0SHarald Freudenberger * The pkey_sec2protkey call may fail when a card has been 1018e80d4af0SHarald Freudenberger * addressed where the master key was changed after last fetch 1019e80d4af0SHarald Freudenberger * of the mkvp into the cache. So first try without verify then 1020e80d4af0SHarald Freudenberger * with verify enabled (thus refreshing the mkvp for each card). 1021e80d4af0SHarald Freudenberger */ 1022e80d4af0SHarald Freudenberger for (verify = 0; verify < 2; verify++) { 1023e80d4af0SHarald Freudenberger rc = pkey_findcard(seckey, &cardnr, &domain, verify); 1024e80d4af0SHarald Freudenberger if (rc) 1025e80d4af0SHarald Freudenberger continue; 1026e80d4af0SHarald Freudenberger rc = pkey_sec2protkey(cardnr, domain, seckey, protkey); 1027e80d4af0SHarald Freudenberger if (rc == 0) 1028e80d4af0SHarald Freudenberger break; 1029e80d4af0SHarald Freudenberger } 1030e80d4af0SHarald Freudenberger 1031e80d4af0SHarald Freudenberger if (rc) 1032ac2b96f3SHarald Freudenberger DEBUG_DBG("%s failed rc=%d\n", __func__, rc); 1033e80d4af0SHarald Freudenberger 1034e80d4af0SHarald Freudenberger return rc; 1035e80d4af0SHarald Freudenberger } 1036e80d4af0SHarald Freudenberger EXPORT_SYMBOL(pkey_skey2pkey); 1037e80d4af0SHarald Freudenberger 1038e80d4af0SHarald Freudenberger /* 1039e61a6134SHarald Freudenberger * Verify key and give back some info about the key. 1040e61a6134SHarald Freudenberger */ 1041e61a6134SHarald Freudenberger int pkey_verifykey(const struct pkey_seckey *seckey, 1042e61a6134SHarald Freudenberger u16 *pcardnr, u16 *pdomain, 1043e61a6134SHarald Freudenberger u16 *pkeysize, u32 *pattributes) 1044e61a6134SHarald Freudenberger { 1045e61a6134SHarald Freudenberger struct secaeskeytoken *t = (struct secaeskeytoken *) seckey; 1046e61a6134SHarald Freudenberger u16 cardnr, domain; 1047e61a6134SHarald Freudenberger u64 mkvp[2]; 1048e61a6134SHarald Freudenberger int rc; 1049e61a6134SHarald Freudenberger 1050e61a6134SHarald Freudenberger /* check the secure key for valid AES secure key */ 1051e61a6134SHarald Freudenberger rc = check_secaeskeytoken((u8 *) seckey, 0); 1052e61a6134SHarald Freudenberger if (rc) 1053e61a6134SHarald Freudenberger goto out; 1054e61a6134SHarald Freudenberger if (pattributes) 1055e61a6134SHarald Freudenberger *pattributes = PKEY_VERIFY_ATTR_AES; 1056e61a6134SHarald Freudenberger if (pkeysize) 1057e61a6134SHarald Freudenberger *pkeysize = t->bitsize; 1058e61a6134SHarald Freudenberger 1059e61a6134SHarald Freudenberger /* try to find a card which can handle this key */ 1060e61a6134SHarald Freudenberger rc = pkey_findcard(seckey, &cardnr, &domain, 1); 1061e61a6134SHarald Freudenberger if (rc) 1062e61a6134SHarald Freudenberger goto out; 1063e61a6134SHarald Freudenberger 1064e61a6134SHarald Freudenberger /* check mkvp for old mkvp match */ 1065e61a6134SHarald Freudenberger rc = mkvp_cache_fetch(cardnr, domain, mkvp); 1066e61a6134SHarald Freudenberger if (rc) 1067e61a6134SHarald Freudenberger goto out; 1068e61a6134SHarald Freudenberger if (t->mkvp == mkvp[1]) { 1069ac2b96f3SHarald Freudenberger DEBUG_DBG("%s secure key has old mkvp\n", __func__); 1070e61a6134SHarald Freudenberger if (pattributes) 1071e61a6134SHarald Freudenberger *pattributes |= PKEY_VERIFY_ATTR_OLD_MKVP; 1072e61a6134SHarald Freudenberger } 1073e61a6134SHarald Freudenberger 1074e61a6134SHarald Freudenberger if (pcardnr) 1075e61a6134SHarald Freudenberger *pcardnr = cardnr; 1076e61a6134SHarald Freudenberger if (pdomain) 1077e61a6134SHarald Freudenberger *pdomain = domain; 1078e61a6134SHarald Freudenberger 1079e61a6134SHarald Freudenberger out: 1080ac2b96f3SHarald Freudenberger DEBUG_DBG("%s rc=%d\n", __func__, rc); 1081e61a6134SHarald Freudenberger return rc; 1082e61a6134SHarald Freudenberger } 1083e61a6134SHarald Freudenberger EXPORT_SYMBOL(pkey_verifykey); 1084e61a6134SHarald Freudenberger 1085e61a6134SHarald Freudenberger /* 1086a45a5c7dSIngo Franzki * Generate a random protected key 1087a45a5c7dSIngo Franzki */ 1088a45a5c7dSIngo Franzki int pkey_genprotkey(__u32 keytype, struct pkey_protkey *protkey) 1089a45a5c7dSIngo Franzki { 1090a45a5c7dSIngo Franzki struct pkey_clrkey clrkey; 1091a45a5c7dSIngo Franzki int keysize; 1092a45a5c7dSIngo Franzki int rc; 1093a45a5c7dSIngo Franzki 1094a45a5c7dSIngo Franzki switch (keytype) { 1095a45a5c7dSIngo Franzki case PKEY_KEYTYPE_AES_128: 1096a45a5c7dSIngo Franzki keysize = 16; 1097a45a5c7dSIngo Franzki break; 1098a45a5c7dSIngo Franzki case PKEY_KEYTYPE_AES_192: 1099a45a5c7dSIngo Franzki keysize = 24; 1100a45a5c7dSIngo Franzki break; 1101a45a5c7dSIngo Franzki case PKEY_KEYTYPE_AES_256: 1102a45a5c7dSIngo Franzki keysize = 32; 1103a45a5c7dSIngo Franzki break; 1104a45a5c7dSIngo Franzki default: 1105a45a5c7dSIngo Franzki DEBUG_ERR("%s unknown/unsupported keytype %d\n", __func__, 1106a45a5c7dSIngo Franzki keytype); 1107a45a5c7dSIngo Franzki return -EINVAL; 1108a45a5c7dSIngo Franzki } 1109a45a5c7dSIngo Franzki 1110a45a5c7dSIngo Franzki /* generate a dummy random clear key */ 1111a45a5c7dSIngo Franzki get_random_bytes(clrkey.clrkey, keysize); 1112a45a5c7dSIngo Franzki 1113a45a5c7dSIngo Franzki /* convert it to a dummy protected key */ 1114a45a5c7dSIngo Franzki rc = pkey_clr2protkey(keytype, &clrkey, protkey); 1115a45a5c7dSIngo Franzki if (rc) 1116a45a5c7dSIngo Franzki return rc; 1117a45a5c7dSIngo Franzki 1118a45a5c7dSIngo Franzki /* replace the key part of the protected key with random bytes */ 1119a45a5c7dSIngo Franzki get_random_bytes(protkey->protkey, keysize); 1120a45a5c7dSIngo Franzki 1121a45a5c7dSIngo Franzki return 0; 1122a45a5c7dSIngo Franzki } 1123a45a5c7dSIngo Franzki EXPORT_SYMBOL(pkey_genprotkey); 1124a45a5c7dSIngo Franzki 1125a45a5c7dSIngo Franzki /* 1126cb26b9ffSIngo Franzki * Verify if a protected key is still valid 1127cb26b9ffSIngo Franzki */ 1128cb26b9ffSIngo Franzki int pkey_verifyprotkey(const struct pkey_protkey *protkey) 1129cb26b9ffSIngo Franzki { 1130cb26b9ffSIngo Franzki unsigned long fc; 1131cb26b9ffSIngo Franzki struct { 1132cb26b9ffSIngo Franzki u8 iv[AES_BLOCK_SIZE]; 1133cb26b9ffSIngo Franzki u8 key[MAXPROTKEYSIZE]; 1134cb26b9ffSIngo Franzki } param; 1135cb26b9ffSIngo Franzki u8 null_msg[AES_BLOCK_SIZE]; 1136cb26b9ffSIngo Franzki u8 dest_buf[AES_BLOCK_SIZE]; 1137cb26b9ffSIngo Franzki unsigned int k; 1138cb26b9ffSIngo Franzki 1139cb26b9ffSIngo Franzki switch (protkey->type) { 1140cb26b9ffSIngo Franzki case PKEY_KEYTYPE_AES_128: 1141cb26b9ffSIngo Franzki fc = CPACF_KMC_PAES_128; 1142cb26b9ffSIngo Franzki break; 1143cb26b9ffSIngo Franzki case PKEY_KEYTYPE_AES_192: 1144cb26b9ffSIngo Franzki fc = CPACF_KMC_PAES_192; 1145cb26b9ffSIngo Franzki break; 1146cb26b9ffSIngo Franzki case PKEY_KEYTYPE_AES_256: 1147cb26b9ffSIngo Franzki fc = CPACF_KMC_PAES_256; 1148cb26b9ffSIngo Franzki break; 1149cb26b9ffSIngo Franzki default: 1150cb26b9ffSIngo Franzki DEBUG_ERR("%s unknown/unsupported keytype %d\n", __func__, 1151cb26b9ffSIngo Franzki protkey->type); 1152cb26b9ffSIngo Franzki return -EINVAL; 1153cb26b9ffSIngo Franzki } 1154cb26b9ffSIngo Franzki 1155cb26b9ffSIngo Franzki memset(null_msg, 0, sizeof(null_msg)); 1156cb26b9ffSIngo Franzki 1157cb26b9ffSIngo Franzki memset(param.iv, 0, sizeof(param.iv)); 1158cb26b9ffSIngo Franzki memcpy(param.key, protkey->protkey, sizeof(param.key)); 1159cb26b9ffSIngo Franzki 1160cb26b9ffSIngo Franzki k = cpacf_kmc(fc | CPACF_ENCRYPT, ¶m, null_msg, dest_buf, 1161cb26b9ffSIngo Franzki sizeof(null_msg)); 1162cb26b9ffSIngo Franzki if (k != sizeof(null_msg)) { 1163cb26b9ffSIngo Franzki DEBUG_ERR("%s protected key is not valid\n", __func__); 1164cb26b9ffSIngo Franzki return -EKEYREJECTED; 1165cb26b9ffSIngo Franzki } 1166cb26b9ffSIngo Franzki 1167cb26b9ffSIngo Franzki return 0; 1168cb26b9ffSIngo Franzki } 1169cb26b9ffSIngo Franzki EXPORT_SYMBOL(pkey_verifyprotkey); 1170cb26b9ffSIngo Franzki 1171cb26b9ffSIngo Franzki /* 1172*fb1136d6SIngo Franzki * Transform a non-CCA key token into a protected key 1173*fb1136d6SIngo Franzki */ 1174*fb1136d6SIngo Franzki static int pkey_nonccatok2pkey(const __u8 *key, __u32 keylen, 1175*fb1136d6SIngo Franzki struct pkey_protkey *protkey) 1176*fb1136d6SIngo Franzki { 1177*fb1136d6SIngo Franzki struct keytoken_header *hdr = (struct keytoken_header *)key; 1178*fb1136d6SIngo Franzki struct protaeskeytoken *t; 1179*fb1136d6SIngo Franzki 1180*fb1136d6SIngo Franzki switch (hdr->version) { 1181*fb1136d6SIngo Franzki case TOKVER_PROTECTED_KEY: 1182*fb1136d6SIngo Franzki if (keylen != sizeof(struct protaeskeytoken)) 1183*fb1136d6SIngo Franzki return -EINVAL; 1184*fb1136d6SIngo Franzki 1185*fb1136d6SIngo Franzki t = (struct protaeskeytoken *)key; 1186*fb1136d6SIngo Franzki protkey->len = t->len; 1187*fb1136d6SIngo Franzki protkey->type = t->keytype; 1188*fb1136d6SIngo Franzki memcpy(protkey->protkey, t->protkey, 1189*fb1136d6SIngo Franzki sizeof(protkey->protkey)); 1190*fb1136d6SIngo Franzki 1191*fb1136d6SIngo Franzki return pkey_verifyprotkey(protkey); 1192*fb1136d6SIngo Franzki default: 1193*fb1136d6SIngo Franzki DEBUG_ERR("%s unknown/unsupported non-CCA token version %d\n", 1194*fb1136d6SIngo Franzki __func__, hdr->version); 1195*fb1136d6SIngo Franzki return -EINVAL; 1196*fb1136d6SIngo Franzki } 1197*fb1136d6SIngo Franzki } 1198*fb1136d6SIngo Franzki 1199*fb1136d6SIngo Franzki /* 1200*fb1136d6SIngo Franzki * Transform a CCA internal key token into a protected key 1201*fb1136d6SIngo Franzki */ 1202*fb1136d6SIngo Franzki static int pkey_ccainttok2pkey(const __u8 *key, __u32 keylen, 1203*fb1136d6SIngo Franzki struct pkey_protkey *protkey) 1204*fb1136d6SIngo Franzki { 1205*fb1136d6SIngo Franzki struct keytoken_header *hdr = (struct keytoken_header *)key; 1206*fb1136d6SIngo Franzki 1207*fb1136d6SIngo Franzki switch (hdr->version) { 1208*fb1136d6SIngo Franzki case TOKVER_CCA_AES: 1209*fb1136d6SIngo Franzki if (keylen != sizeof(struct secaeskeytoken)) 1210*fb1136d6SIngo Franzki return -EINVAL; 1211*fb1136d6SIngo Franzki 1212*fb1136d6SIngo Franzki return pkey_skey2pkey((struct pkey_seckey *)key, 1213*fb1136d6SIngo Franzki protkey); 1214*fb1136d6SIngo Franzki default: 1215*fb1136d6SIngo Franzki DEBUG_ERR("%s unknown/unsupported CCA internal token version %d\n", 1216*fb1136d6SIngo Franzki __func__, hdr->version); 1217*fb1136d6SIngo Franzki return -EINVAL; 1218*fb1136d6SIngo Franzki } 1219*fb1136d6SIngo Franzki } 1220*fb1136d6SIngo Franzki 1221*fb1136d6SIngo Franzki /* 1222*fb1136d6SIngo Franzki * Transform a key blob (of any type) into a protected key 1223*fb1136d6SIngo Franzki */ 1224*fb1136d6SIngo Franzki int pkey_keyblob2pkey(const __u8 *key, __u32 keylen, 1225*fb1136d6SIngo Franzki struct pkey_protkey *protkey) 1226*fb1136d6SIngo Franzki { 1227*fb1136d6SIngo Franzki struct keytoken_header *hdr = (struct keytoken_header *)key; 1228*fb1136d6SIngo Franzki 1229*fb1136d6SIngo Franzki if (keylen < sizeof(struct keytoken_header)) 1230*fb1136d6SIngo Franzki return -EINVAL; 1231*fb1136d6SIngo Franzki 1232*fb1136d6SIngo Franzki switch (hdr->type) { 1233*fb1136d6SIngo Franzki case TOKTYPE_NON_CCA: 1234*fb1136d6SIngo Franzki return pkey_nonccatok2pkey(key, keylen, protkey); 1235*fb1136d6SIngo Franzki case TOKTYPE_CCA_INTERNAL: 1236*fb1136d6SIngo Franzki return pkey_ccainttok2pkey(key, keylen, protkey); 1237*fb1136d6SIngo Franzki default: 1238*fb1136d6SIngo Franzki DEBUG_ERR("%s unknown/unsupported blob type %d\n", __func__, 1239*fb1136d6SIngo Franzki hdr->type); 1240*fb1136d6SIngo Franzki return -EINVAL; 1241*fb1136d6SIngo Franzki } 1242*fb1136d6SIngo Franzki } 1243*fb1136d6SIngo Franzki EXPORT_SYMBOL(pkey_keyblob2pkey); 1244*fb1136d6SIngo Franzki 1245*fb1136d6SIngo Franzki /* 1246e80d4af0SHarald Freudenberger * File io functions 1247e80d4af0SHarald Freudenberger */ 1248e80d4af0SHarald Freudenberger 1249e80d4af0SHarald Freudenberger static long pkey_unlocked_ioctl(struct file *filp, unsigned int cmd, 1250e80d4af0SHarald Freudenberger unsigned long arg) 1251e80d4af0SHarald Freudenberger { 1252e80d4af0SHarald Freudenberger int rc; 1253e80d4af0SHarald Freudenberger 1254e80d4af0SHarald Freudenberger switch (cmd) { 1255e80d4af0SHarald Freudenberger case PKEY_GENSECK: { 1256e80d4af0SHarald Freudenberger struct pkey_genseck __user *ugs = (void __user *) arg; 1257e80d4af0SHarald Freudenberger struct pkey_genseck kgs; 1258e80d4af0SHarald Freudenberger 1259e80d4af0SHarald Freudenberger if (copy_from_user(&kgs, ugs, sizeof(kgs))) 1260e80d4af0SHarald Freudenberger return -EFAULT; 1261e80d4af0SHarald Freudenberger rc = pkey_genseckey(kgs.cardnr, kgs.domain, 1262e80d4af0SHarald Freudenberger kgs.keytype, &kgs.seckey); 1263ac2b96f3SHarald Freudenberger DEBUG_DBG("%s pkey_genseckey()=%d\n", __func__, rc); 1264e80d4af0SHarald Freudenberger if (rc) 1265e80d4af0SHarald Freudenberger break; 1266e80d4af0SHarald Freudenberger if (copy_to_user(ugs, &kgs, sizeof(kgs))) 1267e80d4af0SHarald Freudenberger return -EFAULT; 1268e80d4af0SHarald Freudenberger break; 1269e80d4af0SHarald Freudenberger } 1270e80d4af0SHarald Freudenberger case PKEY_CLR2SECK: { 1271e80d4af0SHarald Freudenberger struct pkey_clr2seck __user *ucs = (void __user *) arg; 1272e80d4af0SHarald Freudenberger struct pkey_clr2seck kcs; 1273e80d4af0SHarald Freudenberger 1274e80d4af0SHarald Freudenberger if (copy_from_user(&kcs, ucs, sizeof(kcs))) 1275e80d4af0SHarald Freudenberger return -EFAULT; 1276e80d4af0SHarald Freudenberger rc = pkey_clr2seckey(kcs.cardnr, kcs.domain, kcs.keytype, 1277e80d4af0SHarald Freudenberger &kcs.clrkey, &kcs.seckey); 1278ac2b96f3SHarald Freudenberger DEBUG_DBG("%s pkey_clr2seckey()=%d\n", __func__, rc); 1279e80d4af0SHarald Freudenberger if (rc) 1280e80d4af0SHarald Freudenberger break; 1281e80d4af0SHarald Freudenberger if (copy_to_user(ucs, &kcs, sizeof(kcs))) 1282e80d4af0SHarald Freudenberger return -EFAULT; 1283e80d4af0SHarald Freudenberger memzero_explicit(&kcs, sizeof(kcs)); 1284e80d4af0SHarald Freudenberger break; 1285e80d4af0SHarald Freudenberger } 1286e80d4af0SHarald Freudenberger case PKEY_SEC2PROTK: { 1287e80d4af0SHarald Freudenberger struct pkey_sec2protk __user *usp = (void __user *) arg; 1288e80d4af0SHarald Freudenberger struct pkey_sec2protk ksp; 1289e80d4af0SHarald Freudenberger 1290e80d4af0SHarald Freudenberger if (copy_from_user(&ksp, usp, sizeof(ksp))) 1291e80d4af0SHarald Freudenberger return -EFAULT; 1292e80d4af0SHarald Freudenberger rc = pkey_sec2protkey(ksp.cardnr, ksp.domain, 1293e80d4af0SHarald Freudenberger &ksp.seckey, &ksp.protkey); 1294ac2b96f3SHarald Freudenberger DEBUG_DBG("%s pkey_sec2protkey()=%d\n", __func__, rc); 1295e80d4af0SHarald Freudenberger if (rc) 1296e80d4af0SHarald Freudenberger break; 1297e80d4af0SHarald Freudenberger if (copy_to_user(usp, &ksp, sizeof(ksp))) 1298e80d4af0SHarald Freudenberger return -EFAULT; 1299e80d4af0SHarald Freudenberger break; 1300e80d4af0SHarald Freudenberger } 1301e80d4af0SHarald Freudenberger case PKEY_CLR2PROTK: { 1302e80d4af0SHarald Freudenberger struct pkey_clr2protk __user *ucp = (void __user *) arg; 1303e80d4af0SHarald Freudenberger struct pkey_clr2protk kcp; 1304e80d4af0SHarald Freudenberger 1305e80d4af0SHarald Freudenberger if (copy_from_user(&kcp, ucp, sizeof(kcp))) 1306e80d4af0SHarald Freudenberger return -EFAULT; 1307e80d4af0SHarald Freudenberger rc = pkey_clr2protkey(kcp.keytype, 1308e80d4af0SHarald Freudenberger &kcp.clrkey, &kcp.protkey); 1309ac2b96f3SHarald Freudenberger DEBUG_DBG("%s pkey_clr2protkey()=%d\n", __func__, rc); 1310e80d4af0SHarald Freudenberger if (rc) 1311e80d4af0SHarald Freudenberger break; 1312e80d4af0SHarald Freudenberger if (copy_to_user(ucp, &kcp, sizeof(kcp))) 1313e80d4af0SHarald Freudenberger return -EFAULT; 1314e80d4af0SHarald Freudenberger memzero_explicit(&kcp, sizeof(kcp)); 1315e80d4af0SHarald Freudenberger break; 1316e80d4af0SHarald Freudenberger } 1317e80d4af0SHarald Freudenberger case PKEY_FINDCARD: { 1318e80d4af0SHarald Freudenberger struct pkey_findcard __user *ufc = (void __user *) arg; 1319e80d4af0SHarald Freudenberger struct pkey_findcard kfc; 1320e80d4af0SHarald Freudenberger 1321e80d4af0SHarald Freudenberger if (copy_from_user(&kfc, ufc, sizeof(kfc))) 1322e80d4af0SHarald Freudenberger return -EFAULT; 1323e80d4af0SHarald Freudenberger rc = pkey_findcard(&kfc.seckey, 1324e80d4af0SHarald Freudenberger &kfc.cardnr, &kfc.domain, 1); 1325ac2b96f3SHarald Freudenberger DEBUG_DBG("%s pkey_findcard()=%d\n", __func__, rc); 1326e80d4af0SHarald Freudenberger if (rc) 1327e80d4af0SHarald Freudenberger break; 1328e80d4af0SHarald Freudenberger if (copy_to_user(ufc, &kfc, sizeof(kfc))) 1329e80d4af0SHarald Freudenberger return -EFAULT; 1330e80d4af0SHarald Freudenberger break; 1331e80d4af0SHarald Freudenberger } 1332e80d4af0SHarald Freudenberger case PKEY_SKEY2PKEY: { 1333e80d4af0SHarald Freudenberger struct pkey_skey2pkey __user *usp = (void __user *) arg; 1334e80d4af0SHarald Freudenberger struct pkey_skey2pkey ksp; 1335e80d4af0SHarald Freudenberger 1336e80d4af0SHarald Freudenberger if (copy_from_user(&ksp, usp, sizeof(ksp))) 1337e80d4af0SHarald Freudenberger return -EFAULT; 1338e80d4af0SHarald Freudenberger rc = pkey_skey2pkey(&ksp.seckey, &ksp.protkey); 1339ac2b96f3SHarald Freudenberger DEBUG_DBG("%s pkey_skey2pkey()=%d\n", __func__, rc); 1340e80d4af0SHarald Freudenberger if (rc) 1341e80d4af0SHarald Freudenberger break; 1342e80d4af0SHarald Freudenberger if (copy_to_user(usp, &ksp, sizeof(ksp))) 1343e80d4af0SHarald Freudenberger return -EFAULT; 1344e80d4af0SHarald Freudenberger break; 1345e80d4af0SHarald Freudenberger } 1346e61a6134SHarald Freudenberger case PKEY_VERIFYKEY: { 1347e61a6134SHarald Freudenberger struct pkey_verifykey __user *uvk = (void __user *) arg; 1348e61a6134SHarald Freudenberger struct pkey_verifykey kvk; 1349e61a6134SHarald Freudenberger 1350e61a6134SHarald Freudenberger if (copy_from_user(&kvk, uvk, sizeof(kvk))) 1351e61a6134SHarald Freudenberger return -EFAULT; 1352e61a6134SHarald Freudenberger rc = pkey_verifykey(&kvk.seckey, &kvk.cardnr, &kvk.domain, 1353e61a6134SHarald Freudenberger &kvk.keysize, &kvk.attributes); 1354ac2b96f3SHarald Freudenberger DEBUG_DBG("%s pkey_verifykey()=%d\n", __func__, rc); 1355e61a6134SHarald Freudenberger if (rc) 1356e61a6134SHarald Freudenberger break; 1357e61a6134SHarald Freudenberger if (copy_to_user(uvk, &kvk, sizeof(kvk))) 1358e61a6134SHarald Freudenberger return -EFAULT; 1359e61a6134SHarald Freudenberger break; 1360e61a6134SHarald Freudenberger } 1361a45a5c7dSIngo Franzki case PKEY_GENPROTK: { 1362a45a5c7dSIngo Franzki struct pkey_genprotk __user *ugp = (void __user *) arg; 1363a45a5c7dSIngo Franzki struct pkey_genprotk kgp; 1364a45a5c7dSIngo Franzki 1365a45a5c7dSIngo Franzki if (copy_from_user(&kgp, ugp, sizeof(kgp))) 1366a45a5c7dSIngo Franzki return -EFAULT; 1367a45a5c7dSIngo Franzki rc = pkey_genprotkey(kgp.keytype, &kgp.protkey); 1368a45a5c7dSIngo Franzki DEBUG_DBG("%s pkey_genprotkey()=%d\n", __func__, rc); 1369a45a5c7dSIngo Franzki if (rc) 1370a45a5c7dSIngo Franzki break; 1371a45a5c7dSIngo Franzki if (copy_to_user(ugp, &kgp, sizeof(kgp))) 1372a45a5c7dSIngo Franzki return -EFAULT; 1373a45a5c7dSIngo Franzki break; 1374a45a5c7dSIngo Franzki } 1375cb26b9ffSIngo Franzki case PKEY_VERIFYPROTK: { 1376cb26b9ffSIngo Franzki struct pkey_verifyprotk __user *uvp = (void __user *) arg; 1377cb26b9ffSIngo Franzki struct pkey_verifyprotk kvp; 1378cb26b9ffSIngo Franzki 1379cb26b9ffSIngo Franzki if (copy_from_user(&kvp, uvp, sizeof(kvp))) 1380cb26b9ffSIngo Franzki return -EFAULT; 1381cb26b9ffSIngo Franzki rc = pkey_verifyprotkey(&kvp.protkey); 1382cb26b9ffSIngo Franzki DEBUG_DBG("%s pkey_verifyprotkey()=%d\n", __func__, rc); 1383cb26b9ffSIngo Franzki break; 1384cb26b9ffSIngo Franzki } 1385*fb1136d6SIngo Franzki case PKEY_KBLOB2PROTK: { 1386*fb1136d6SIngo Franzki struct pkey_kblob2pkey __user *utp = (void __user *) arg; 1387*fb1136d6SIngo Franzki struct pkey_kblob2pkey ktp; 1388*fb1136d6SIngo Franzki __u8 __user *ukey; 1389*fb1136d6SIngo Franzki __u8 *kkey; 1390*fb1136d6SIngo Franzki 1391*fb1136d6SIngo Franzki if (copy_from_user(&ktp, utp, sizeof(ktp))) 1392*fb1136d6SIngo Franzki return -EFAULT; 1393*fb1136d6SIngo Franzki if (ktp.keylen < MINKEYBLOBSIZE || 1394*fb1136d6SIngo Franzki ktp.keylen > MAXKEYBLOBSIZE) 1395*fb1136d6SIngo Franzki return -EINVAL; 1396*fb1136d6SIngo Franzki ukey = ktp.key; 1397*fb1136d6SIngo Franzki kkey = kmalloc(ktp.keylen, GFP_KERNEL); 1398*fb1136d6SIngo Franzki if (kkey == NULL) 1399*fb1136d6SIngo Franzki return -ENOMEM; 1400*fb1136d6SIngo Franzki if (copy_from_user(kkey, ukey, ktp.keylen)) { 1401*fb1136d6SIngo Franzki kfree(kkey); 1402*fb1136d6SIngo Franzki return -EFAULT; 1403*fb1136d6SIngo Franzki } 1404*fb1136d6SIngo Franzki rc = pkey_keyblob2pkey(kkey, ktp.keylen, &ktp.protkey); 1405*fb1136d6SIngo Franzki DEBUG_DBG("%s pkey_keyblob2pkey()=%d\n", __func__, rc); 1406*fb1136d6SIngo Franzki kfree(kkey); 1407*fb1136d6SIngo Franzki if (rc) 1408*fb1136d6SIngo Franzki break; 1409*fb1136d6SIngo Franzki if (copy_to_user(utp, &ktp, sizeof(ktp))) 1410*fb1136d6SIngo Franzki return -EFAULT; 1411*fb1136d6SIngo Franzki break; 1412*fb1136d6SIngo Franzki } 1413e80d4af0SHarald Freudenberger default: 1414e80d4af0SHarald Freudenberger /* unknown/unsupported ioctl cmd */ 1415e80d4af0SHarald Freudenberger return -ENOTTY; 1416e80d4af0SHarald Freudenberger } 1417e80d4af0SHarald Freudenberger 1418e80d4af0SHarald Freudenberger return rc; 1419e80d4af0SHarald Freudenberger } 1420e80d4af0SHarald Freudenberger 1421e80d4af0SHarald Freudenberger /* 1422e80d4af0SHarald Freudenberger * Sysfs and file io operations 1423e80d4af0SHarald Freudenberger */ 1424d632c047SIngo Franzki 1425d632c047SIngo Franzki /* 1426d632c047SIngo Franzki * Sysfs attribute read function for all protected key binary attributes. 1427d632c047SIngo Franzki * The implementation can not deal with partial reads, because a new random 1428d632c047SIngo Franzki * protected key blob is generated with each read. In case of partial reads 1429d632c047SIngo Franzki * (i.e. off != 0 or count < key blob size) -EINVAL is returned. 1430d632c047SIngo Franzki */ 1431d632c047SIngo Franzki static ssize_t pkey_protkey_aes_attr_read(u32 keytype, bool is_xts, char *buf, 1432d632c047SIngo Franzki loff_t off, size_t count) 1433d632c047SIngo Franzki { 1434d632c047SIngo Franzki struct protaeskeytoken protkeytoken; 1435d632c047SIngo Franzki struct pkey_protkey protkey; 1436d632c047SIngo Franzki int rc; 1437d632c047SIngo Franzki 1438d632c047SIngo Franzki if (off != 0 || count < sizeof(protkeytoken)) 1439d632c047SIngo Franzki return -EINVAL; 1440d632c047SIngo Franzki if (is_xts) 1441d632c047SIngo Franzki if (count < 2 * sizeof(protkeytoken)) 1442d632c047SIngo Franzki return -EINVAL; 1443d632c047SIngo Franzki 1444d632c047SIngo Franzki memset(&protkeytoken, 0, sizeof(protkeytoken)); 1445d632c047SIngo Franzki protkeytoken.type = TOKTYPE_NON_CCA; 1446d632c047SIngo Franzki protkeytoken.version = TOKVER_PROTECTED_KEY; 1447d632c047SIngo Franzki protkeytoken.keytype = keytype; 1448d632c047SIngo Franzki 1449d632c047SIngo Franzki rc = pkey_genprotkey(protkeytoken.keytype, &protkey); 1450d632c047SIngo Franzki if (rc) 1451d632c047SIngo Franzki return rc; 1452d632c047SIngo Franzki 1453d632c047SIngo Franzki protkeytoken.len = protkey.len; 1454d632c047SIngo Franzki memcpy(&protkeytoken.protkey, &protkey.protkey, protkey.len); 1455d632c047SIngo Franzki 1456d632c047SIngo Franzki memcpy(buf, &protkeytoken, sizeof(protkeytoken)); 1457d632c047SIngo Franzki 1458d632c047SIngo Franzki if (is_xts) { 1459d632c047SIngo Franzki rc = pkey_genprotkey(protkeytoken.keytype, &protkey); 1460d632c047SIngo Franzki if (rc) 1461d632c047SIngo Franzki return rc; 1462d632c047SIngo Franzki 1463d632c047SIngo Franzki protkeytoken.len = protkey.len; 1464d632c047SIngo Franzki memcpy(&protkeytoken.protkey, &protkey.protkey, protkey.len); 1465d632c047SIngo Franzki 1466d632c047SIngo Franzki memcpy(buf + sizeof(protkeytoken), &protkeytoken, 1467d632c047SIngo Franzki sizeof(protkeytoken)); 1468d632c047SIngo Franzki 1469d632c047SIngo Franzki return 2 * sizeof(protkeytoken); 1470d632c047SIngo Franzki } 1471d632c047SIngo Franzki 1472d632c047SIngo Franzki return sizeof(protkeytoken); 1473d632c047SIngo Franzki } 1474d632c047SIngo Franzki 1475d632c047SIngo Franzki static ssize_t protkey_aes_128_read(struct file *filp, 1476d632c047SIngo Franzki struct kobject *kobj, 1477d632c047SIngo Franzki struct bin_attribute *attr, 1478d632c047SIngo Franzki char *buf, loff_t off, 1479d632c047SIngo Franzki size_t count) 1480d632c047SIngo Franzki { 1481d632c047SIngo Franzki return pkey_protkey_aes_attr_read(PKEY_KEYTYPE_AES_128, false, buf, 1482d632c047SIngo Franzki off, count); 1483d632c047SIngo Franzki } 1484d632c047SIngo Franzki 1485d632c047SIngo Franzki static ssize_t protkey_aes_192_read(struct file *filp, 1486d632c047SIngo Franzki struct kobject *kobj, 1487d632c047SIngo Franzki struct bin_attribute *attr, 1488d632c047SIngo Franzki char *buf, loff_t off, 1489d632c047SIngo Franzki size_t count) 1490d632c047SIngo Franzki { 1491d632c047SIngo Franzki return pkey_protkey_aes_attr_read(PKEY_KEYTYPE_AES_192, false, buf, 1492d632c047SIngo Franzki off, count); 1493d632c047SIngo Franzki } 1494d632c047SIngo Franzki 1495d632c047SIngo Franzki static ssize_t protkey_aes_256_read(struct file *filp, 1496d632c047SIngo Franzki struct kobject *kobj, 1497d632c047SIngo Franzki struct bin_attribute *attr, 1498d632c047SIngo Franzki char *buf, loff_t off, 1499d632c047SIngo Franzki size_t count) 1500d632c047SIngo Franzki { 1501d632c047SIngo Franzki return pkey_protkey_aes_attr_read(PKEY_KEYTYPE_AES_256, false, buf, 1502d632c047SIngo Franzki off, count); 1503d632c047SIngo Franzki } 1504d632c047SIngo Franzki 1505d632c047SIngo Franzki static ssize_t protkey_aes_128_xts_read(struct file *filp, 1506d632c047SIngo Franzki struct kobject *kobj, 1507d632c047SIngo Franzki struct bin_attribute *attr, 1508d632c047SIngo Franzki char *buf, loff_t off, 1509d632c047SIngo Franzki size_t count) 1510d632c047SIngo Franzki { 1511d632c047SIngo Franzki return pkey_protkey_aes_attr_read(PKEY_KEYTYPE_AES_128, true, buf, 1512d632c047SIngo Franzki off, count); 1513d632c047SIngo Franzki } 1514d632c047SIngo Franzki 1515d632c047SIngo Franzki static ssize_t protkey_aes_256_xts_read(struct file *filp, 1516d632c047SIngo Franzki struct kobject *kobj, 1517d632c047SIngo Franzki struct bin_attribute *attr, 1518d632c047SIngo Franzki char *buf, loff_t off, 1519d632c047SIngo Franzki size_t count) 1520d632c047SIngo Franzki { 1521d632c047SIngo Franzki return pkey_protkey_aes_attr_read(PKEY_KEYTYPE_AES_256, true, buf, 1522d632c047SIngo Franzki off, count); 1523d632c047SIngo Franzki } 1524d632c047SIngo Franzki 1525d632c047SIngo Franzki static BIN_ATTR_RO(protkey_aes_128, sizeof(struct protaeskeytoken)); 1526d632c047SIngo Franzki static BIN_ATTR_RO(protkey_aes_192, sizeof(struct protaeskeytoken)); 1527d632c047SIngo Franzki static BIN_ATTR_RO(protkey_aes_256, sizeof(struct protaeskeytoken)); 1528d632c047SIngo Franzki static BIN_ATTR_RO(protkey_aes_128_xts, 2 * sizeof(struct protaeskeytoken)); 1529d632c047SIngo Franzki static BIN_ATTR_RO(protkey_aes_256_xts, 2 * sizeof(struct protaeskeytoken)); 1530d632c047SIngo Franzki 1531d632c047SIngo Franzki static struct bin_attribute *protkey_attrs[] = { 1532d632c047SIngo Franzki &bin_attr_protkey_aes_128, 1533d632c047SIngo Franzki &bin_attr_protkey_aes_192, 1534d632c047SIngo Franzki &bin_attr_protkey_aes_256, 1535d632c047SIngo Franzki &bin_attr_protkey_aes_128_xts, 1536d632c047SIngo Franzki &bin_attr_protkey_aes_256_xts, 1537d632c047SIngo Franzki NULL 1538d632c047SIngo Franzki }; 1539d632c047SIngo Franzki 1540d632c047SIngo Franzki static struct attribute_group protkey_attr_group = { 1541d632c047SIngo Franzki .name = "protkey", 1542d632c047SIngo Franzki .bin_attrs = protkey_attrs, 1543d632c047SIngo Franzki }; 1544d632c047SIngo Franzki 1545af504452SIngo Franzki /* 1546af504452SIngo Franzki * Sysfs attribute read function for all secure key ccadata binary attributes. 1547af504452SIngo Franzki * The implementation can not deal with partial reads, because a new random 1548af504452SIngo Franzki * protected key blob is generated with each read. In case of partial reads 1549af504452SIngo Franzki * (i.e. off != 0 or count < key blob size) -EINVAL is returned. 1550af504452SIngo Franzki */ 1551af504452SIngo Franzki static ssize_t pkey_ccadata_aes_attr_read(u32 keytype, bool is_xts, char *buf, 1552af504452SIngo Franzki loff_t off, size_t count) 1553af504452SIngo Franzki { 1554af504452SIngo Franzki int rc; 1555af504452SIngo Franzki 1556af504452SIngo Franzki if (off != 0 || count < sizeof(struct secaeskeytoken)) 1557af504452SIngo Franzki return -EINVAL; 1558af504452SIngo Franzki if (is_xts) 1559af504452SIngo Franzki if (count < 2 * sizeof(struct secaeskeytoken)) 1560af504452SIngo Franzki return -EINVAL; 1561af504452SIngo Franzki 1562af504452SIngo Franzki rc = pkey_genseckey(-1, -1, keytype, (struct pkey_seckey *)buf); 1563af504452SIngo Franzki if (rc) 1564af504452SIngo Franzki return rc; 1565af504452SIngo Franzki 1566af504452SIngo Franzki if (is_xts) { 1567af504452SIngo Franzki buf += sizeof(struct pkey_seckey); 1568af504452SIngo Franzki rc = pkey_genseckey(-1, -1, keytype, (struct pkey_seckey *)buf); 1569af504452SIngo Franzki if (rc) 1570af504452SIngo Franzki return rc; 1571af504452SIngo Franzki 1572af504452SIngo Franzki return 2 * sizeof(struct secaeskeytoken); 1573af504452SIngo Franzki } 1574af504452SIngo Franzki 1575af504452SIngo Franzki return sizeof(struct secaeskeytoken); 1576af504452SIngo Franzki } 1577af504452SIngo Franzki 1578af504452SIngo Franzki static ssize_t ccadata_aes_128_read(struct file *filp, 1579af504452SIngo Franzki struct kobject *kobj, 1580af504452SIngo Franzki struct bin_attribute *attr, 1581af504452SIngo Franzki char *buf, loff_t off, 1582af504452SIngo Franzki size_t count) 1583af504452SIngo Franzki { 1584af504452SIngo Franzki return pkey_ccadata_aes_attr_read(PKEY_KEYTYPE_AES_128, false, buf, 1585af504452SIngo Franzki off, count); 1586af504452SIngo Franzki } 1587af504452SIngo Franzki 1588af504452SIngo Franzki static ssize_t ccadata_aes_192_read(struct file *filp, 1589af504452SIngo Franzki struct kobject *kobj, 1590af504452SIngo Franzki struct bin_attribute *attr, 1591af504452SIngo Franzki char *buf, loff_t off, 1592af504452SIngo Franzki size_t count) 1593af504452SIngo Franzki { 1594af504452SIngo Franzki return pkey_ccadata_aes_attr_read(PKEY_KEYTYPE_AES_192, false, buf, 1595af504452SIngo Franzki off, count); 1596af504452SIngo Franzki } 1597af504452SIngo Franzki 1598af504452SIngo Franzki static ssize_t ccadata_aes_256_read(struct file *filp, 1599af504452SIngo Franzki struct kobject *kobj, 1600af504452SIngo Franzki struct bin_attribute *attr, 1601af504452SIngo Franzki char *buf, loff_t off, 1602af504452SIngo Franzki size_t count) 1603af504452SIngo Franzki { 1604af504452SIngo Franzki return pkey_ccadata_aes_attr_read(PKEY_KEYTYPE_AES_256, false, buf, 1605af504452SIngo Franzki off, count); 1606af504452SIngo Franzki } 1607af504452SIngo Franzki 1608af504452SIngo Franzki static ssize_t ccadata_aes_128_xts_read(struct file *filp, 1609af504452SIngo Franzki struct kobject *kobj, 1610af504452SIngo Franzki struct bin_attribute *attr, 1611af504452SIngo Franzki char *buf, loff_t off, 1612af504452SIngo Franzki size_t count) 1613af504452SIngo Franzki { 1614af504452SIngo Franzki return pkey_ccadata_aes_attr_read(PKEY_KEYTYPE_AES_128, true, buf, 1615af504452SIngo Franzki off, count); 1616af504452SIngo Franzki } 1617af504452SIngo Franzki 1618af504452SIngo Franzki static ssize_t ccadata_aes_256_xts_read(struct file *filp, 1619af504452SIngo Franzki struct kobject *kobj, 1620af504452SIngo Franzki struct bin_attribute *attr, 1621af504452SIngo Franzki char *buf, loff_t off, 1622af504452SIngo Franzki size_t count) 1623af504452SIngo Franzki { 1624af504452SIngo Franzki return pkey_ccadata_aes_attr_read(PKEY_KEYTYPE_AES_256, true, buf, 1625af504452SIngo Franzki off, count); 1626af504452SIngo Franzki } 1627af504452SIngo Franzki 1628af504452SIngo Franzki static BIN_ATTR_RO(ccadata_aes_128, sizeof(struct secaeskeytoken)); 1629af504452SIngo Franzki static BIN_ATTR_RO(ccadata_aes_192, sizeof(struct secaeskeytoken)); 1630af504452SIngo Franzki static BIN_ATTR_RO(ccadata_aes_256, sizeof(struct secaeskeytoken)); 1631af504452SIngo Franzki static BIN_ATTR_RO(ccadata_aes_128_xts, 2 * sizeof(struct secaeskeytoken)); 1632af504452SIngo Franzki static BIN_ATTR_RO(ccadata_aes_256_xts, 2 * sizeof(struct secaeskeytoken)); 1633af504452SIngo Franzki 1634af504452SIngo Franzki static struct bin_attribute *ccadata_attrs[] = { 1635af504452SIngo Franzki &bin_attr_ccadata_aes_128, 1636af504452SIngo Franzki &bin_attr_ccadata_aes_192, 1637af504452SIngo Franzki &bin_attr_ccadata_aes_256, 1638af504452SIngo Franzki &bin_attr_ccadata_aes_128_xts, 1639af504452SIngo Franzki &bin_attr_ccadata_aes_256_xts, 1640af504452SIngo Franzki NULL 1641af504452SIngo Franzki }; 1642af504452SIngo Franzki 1643af504452SIngo Franzki static struct attribute_group ccadata_attr_group = { 1644af504452SIngo Franzki .name = "ccadata", 1645af504452SIngo Franzki .bin_attrs = ccadata_attrs, 1646af504452SIngo Franzki }; 1647af504452SIngo Franzki 1648d632c047SIngo Franzki static const struct attribute_group *pkey_attr_groups[] = { 1649d632c047SIngo Franzki &protkey_attr_group, 1650af504452SIngo Franzki &ccadata_attr_group, 1651d632c047SIngo Franzki NULL, 1652d632c047SIngo Franzki }; 1653d632c047SIngo Franzki 1654e80d4af0SHarald Freudenberger static const struct file_operations pkey_fops = { 1655e80d4af0SHarald Freudenberger .owner = THIS_MODULE, 1656e80d4af0SHarald Freudenberger .open = nonseekable_open, 1657e80d4af0SHarald Freudenberger .llseek = no_llseek, 1658e80d4af0SHarald Freudenberger .unlocked_ioctl = pkey_unlocked_ioctl, 1659e80d4af0SHarald Freudenberger }; 1660e80d4af0SHarald Freudenberger 1661e80d4af0SHarald Freudenberger static struct miscdevice pkey_dev = { 1662e80d4af0SHarald Freudenberger .name = "pkey", 1663e80d4af0SHarald Freudenberger .minor = MISC_DYNAMIC_MINOR, 1664e80d4af0SHarald Freudenberger .mode = 0666, 1665e80d4af0SHarald Freudenberger .fops = &pkey_fops, 1666d632c047SIngo Franzki .groups = pkey_attr_groups, 1667e80d4af0SHarald Freudenberger }; 1668e80d4af0SHarald Freudenberger 1669e80d4af0SHarald Freudenberger /* 1670e80d4af0SHarald Freudenberger * Module init 1671e80d4af0SHarald Freudenberger */ 1672cb4ef3c2SHeiko Carstens static int __init pkey_init(void) 1673e80d4af0SHarald Freudenberger { 1674cb26b9ffSIngo Franzki cpacf_mask_t pckmo_functions, kmc_functions; 1675e80d4af0SHarald Freudenberger 1676e80d4af0SHarald Freudenberger /* check for pckmo instructions available */ 1677e80d4af0SHarald Freudenberger if (!cpacf_query(CPACF_PCKMO, &pckmo_functions)) 1678e80d4af0SHarald Freudenberger return -EOPNOTSUPP; 1679e80d4af0SHarald Freudenberger if (!cpacf_test_func(&pckmo_functions, CPACF_PCKMO_ENC_AES_128_KEY) || 1680e80d4af0SHarald Freudenberger !cpacf_test_func(&pckmo_functions, CPACF_PCKMO_ENC_AES_192_KEY) || 1681e80d4af0SHarald Freudenberger !cpacf_test_func(&pckmo_functions, CPACF_PCKMO_ENC_AES_256_KEY)) 1682e80d4af0SHarald Freudenberger return -EOPNOTSUPP; 1683e80d4af0SHarald Freudenberger 1684cb26b9ffSIngo Franzki /* check for kmc instructions available */ 1685cb26b9ffSIngo Franzki if (!cpacf_query(CPACF_KMC, &kmc_functions)) 1686cb26b9ffSIngo Franzki return -EOPNOTSUPP; 1687cb26b9ffSIngo Franzki if (!cpacf_test_func(&kmc_functions, CPACF_KMC_PAES_128) || 1688cb26b9ffSIngo Franzki !cpacf_test_func(&kmc_functions, CPACF_KMC_PAES_192) || 1689cb26b9ffSIngo Franzki !cpacf_test_func(&kmc_functions, CPACF_KMC_PAES_256)) 1690cb26b9ffSIngo Franzki return -EOPNOTSUPP; 1691cb26b9ffSIngo Franzki 1692e80d4af0SHarald Freudenberger pkey_debug_init(); 1693e80d4af0SHarald Freudenberger 1694e80d4af0SHarald Freudenberger return misc_register(&pkey_dev); 1695e80d4af0SHarald Freudenberger } 1696e80d4af0SHarald Freudenberger 1697e80d4af0SHarald Freudenberger /* 1698e80d4af0SHarald Freudenberger * Module exit 1699e80d4af0SHarald Freudenberger */ 1700e80d4af0SHarald Freudenberger static void __exit pkey_exit(void) 1701e80d4af0SHarald Freudenberger { 1702e80d4af0SHarald Freudenberger misc_deregister(&pkey_dev); 1703e80d4af0SHarald Freudenberger mkvp_cache_free(); 1704e80d4af0SHarald Freudenberger pkey_debug_exit(); 1705e80d4af0SHarald Freudenberger } 1706e80d4af0SHarald Freudenberger 1707e80d4af0SHarald Freudenberger module_init(pkey_init); 1708e80d4af0SHarald Freudenberger module_exit(pkey_exit); 1709