blob: 019fe80fedd832b73f28460a2ffb74321739195c [file] [log] [blame]
rjw1f884582022-01-06 17:20:42 +08001/*
2 * Copyright (C) 2004 IBM Corporation
3 * Copyright (C) 2015 Intel Corporation
4 *
5 * Authors:
6 * Leendert van Doorn <leendert@watson.ibm.com>
7 * Dave Safford <safford@watson.ibm.com>
8 * Reiner Sailer <sailer@watson.ibm.com>
9 * Kylene Hall <kjhall@us.ibm.com>
10 *
11 * Maintained by: <tpmdd-devel@lists.sourceforge.net>
12 *
13 * Device driver for TCG/TCPA TPM (trusted platform module).
14 * Specifications at www.trustedcomputinggroup.org
15 *
16 * This program is free software; you can redistribute it and/or
17 * modify it under the terms of the GNU General Public License as
18 * published by the Free Software Foundation, version 2 of the
19 * License.
20 *
21 */
22
23#ifndef __TPM_H__
24#define __TPM_H__
25
26#include <linux/module.h>
27#include <linux/delay.h>
28#include <linux/fs.h>
29#include <linux/mutex.h>
30#include <linux/sched.h>
31#include <linux/platform_device.h>
32#include <linux/io.h>
33#include <linux/tpm.h>
34#include <linux/acpi.h>
35#include <linux/cdev.h>
36#include <linux/highmem.h>
37#include <crypto/hash_info.h>
38
39#ifdef CONFIG_X86
40#include <asm/intel-family.h>
41#endif
42
43enum tpm_const {
44 TPM_MINOR = 224, /* officially assigned */
45 TPM_BUFSIZE = 4096,
46 TPM_NUM_DEVICES = 65536,
47 TPM_RETRY = 50, /* 5 seconds */
48 TPM_NUM_EVENT_LOG_FILES = 3,
49};
50
51enum tpm_timeout {
52 TPM_TIMEOUT = 5, /* msecs */
53 TPM_TIMEOUT_RETRY = 100, /* msecs */
54 TPM_TIMEOUT_RANGE_US = 300 /* usecs */
55};
56
57/* TPM addresses */
58enum tpm_addr {
59 TPM_SUPERIO_ADDR = 0x2E,
60 TPM_ADDR = 0x4E,
61};
62
63/* Indexes the duration array */
64enum tpm_duration {
65 TPM_SHORT = 0,
66 TPM_MEDIUM = 1,
67 TPM_LONG = 2,
68 TPM_UNDEFINED,
69};
70
71#define TPM_WARN_RETRY 0x800
72#define TPM_WARN_DOING_SELFTEST 0x802
73#define TPM_ERR_DEACTIVATED 0x6
74#define TPM_ERR_DISABLED 0x7
75#define TPM_ERR_INVALID_POSTINIT 38
76
77#define TPM_HEADER_SIZE 10
78
79enum tpm2_const {
80 TPM2_PLATFORM_PCR = 24,
81 TPM2_PCR_SELECT_MIN = ((TPM2_PLATFORM_PCR + 7) / 8),
82 TPM2_TIMEOUT_A = 750,
83 TPM2_TIMEOUT_B = 2000,
84 TPM2_TIMEOUT_C = 200,
85 TPM2_TIMEOUT_D = 30,
86 TPM2_DURATION_SHORT = 20,
87 TPM2_DURATION_MEDIUM = 750,
88 TPM2_DURATION_LONG = 2000,
89};
90
91enum tpm2_structures {
92 TPM2_ST_NO_SESSIONS = 0x8001,
93 TPM2_ST_SESSIONS = 0x8002,
94};
95
96/* Indicates from what layer of the software stack the error comes from */
97#define TSS2_RC_LAYER_SHIFT 16
98#define TSS2_RESMGR_TPM_RC_LAYER (11 << TSS2_RC_LAYER_SHIFT)
99
100enum tpm2_return_codes {
101 TPM2_RC_SUCCESS = 0x0000,
102 TPM2_RC_HASH = 0x0083, /* RC_FMT1 */
103 TPM2_RC_HANDLE = 0x008B,
104 TPM2_RC_INITIALIZE = 0x0100, /* RC_VER1 */
105 TPM2_RC_DISABLED = 0x0120,
106 TPM2_RC_COMMAND_CODE = 0x0143,
107 TPM2_RC_TESTING = 0x090A, /* RC_WARN */
108 TPM2_RC_REFERENCE_H0 = 0x0910,
109 TPM2_RC_RETRY = 0x0922,
110};
111
112enum tpm2_algorithms {
113 TPM2_ALG_ERROR = 0x0000,
114 TPM2_ALG_SHA1 = 0x0004,
115 TPM2_ALG_KEYEDHASH = 0x0008,
116 TPM2_ALG_SHA256 = 0x000B,
117 TPM2_ALG_SHA384 = 0x000C,
118 TPM2_ALG_SHA512 = 0x000D,
119 TPM2_ALG_NULL = 0x0010,
120 TPM2_ALG_SM3_256 = 0x0012,
121};
122
123enum tpm2_command_codes {
124 TPM2_CC_FIRST = 0x011F,
125 TPM2_CC_SELF_TEST = 0x0143,
126 TPM2_CC_STARTUP = 0x0144,
127 TPM2_CC_SHUTDOWN = 0x0145,
128 TPM2_CC_CREATE = 0x0153,
129 TPM2_CC_LOAD = 0x0157,
130 TPM2_CC_UNSEAL = 0x015E,
131 TPM2_CC_CONTEXT_LOAD = 0x0161,
132 TPM2_CC_CONTEXT_SAVE = 0x0162,
133 TPM2_CC_FLUSH_CONTEXT = 0x0165,
134 TPM2_CC_GET_CAPABILITY = 0x017A,
135 TPM2_CC_GET_RANDOM = 0x017B,
136 TPM2_CC_PCR_READ = 0x017E,
137 TPM2_CC_PCR_EXTEND = 0x0182,
138 TPM2_CC_LAST = 0x018F,
139};
140
141enum tpm2_permanent_handles {
142 TPM2_RS_PW = 0x40000009,
143};
144
145enum tpm2_capabilities {
146 TPM2_CAP_HANDLES = 1,
147 TPM2_CAP_COMMANDS = 2,
148 TPM2_CAP_PCRS = 5,
149 TPM2_CAP_TPM_PROPERTIES = 6,
150};
151
152enum tpm2_properties {
153 TPM_PT_TOTAL_COMMANDS = 0x0129,
154};
155
156enum tpm2_startup_types {
157 TPM2_SU_CLEAR = 0x0000,
158 TPM2_SU_STATE = 0x0001,
159};
160
161enum tpm2_cc_attrs {
162 TPM2_CC_ATTR_CHANDLES = 25,
163 TPM2_CC_ATTR_RHANDLE = 28,
164};
165
166#define TPM_VID_INTEL 0x8086
167#define TPM_VID_WINBOND 0x1050
168#define TPM_VID_STM 0x104A
169
170#define TPM_PPI_VERSION_LEN 3
171
172struct tpm_space {
173 u32 context_tbl[3];
174 u8 *context_buf;
175 u32 session_tbl[3];
176 u8 *session_buf;
177 u32 buf_size;
178};
179
180enum tpm_chip_flags {
181 TPM_CHIP_FLAG_TPM2 = BIT(1),
182 TPM_CHIP_FLAG_IRQ = BIT(2),
183 TPM_CHIP_FLAG_VIRTUAL = BIT(3),
184 TPM_CHIP_FLAG_HAVE_TIMEOUTS = BIT(4),
185 TPM_CHIP_FLAG_ALWAYS_POWERED = BIT(5),
186};
187
188struct tpm_bios_log {
189 void *bios_event_log;
190 void *bios_event_log_end;
191};
192
193struct tpm_chip_seqops {
194 struct tpm_chip *chip;
195 const struct seq_operations *seqops;
196};
197
198struct tpm_chip {
199 struct device dev;
200 struct device devs;
201 struct cdev cdev;
202 struct cdev cdevs;
203
204 /* A driver callback under ops cannot be run unless ops_sem is held
205 * (sometimes implicitly, eg for the sysfs code). ops becomes null
206 * when the driver is unregistered, see tpm_try_get_ops.
207 */
208 struct rw_semaphore ops_sem;
209 const struct tpm_class_ops *ops;
210
211 struct tpm_bios_log log;
212 struct tpm_chip_seqops bin_log_seqops;
213 struct tpm_chip_seqops ascii_log_seqops;
214
215 unsigned int flags;
216
217 int dev_num; /* /dev/tpm# */
218 unsigned long is_open; /* only one allowed */
219
220 struct mutex tpm_mutex; /* tpm is processing */
221
222 unsigned long timeout_a; /* jiffies */
223 unsigned long timeout_b; /* jiffies */
224 unsigned long timeout_c; /* jiffies */
225 unsigned long timeout_d; /* jiffies */
226 bool timeout_adjusted;
227 unsigned long duration[3]; /* jiffies */
228 bool duration_adjusted;
229
230 struct dentry *bios_dir[TPM_NUM_EVENT_LOG_FILES];
231
232 const struct attribute_group *groups[3];
233 unsigned int groups_cnt;
234
235 u16 active_banks[7];
236#ifdef CONFIG_ACPI
237 acpi_handle acpi_dev_handle;
238 char ppi_version[TPM_PPI_VERSION_LEN + 1];
239#endif /* CONFIG_ACPI */
240
241 struct tpm_space work_space;
242 u32 nr_commands;
243 u32 *cc_attrs_tbl;
244
245 /* active locality */
246 int locality;
247};
248
249#define to_tpm_chip(d) container_of(d, struct tpm_chip, dev)
250
251struct tpm_input_header {
252 __be16 tag;
253 __be32 length;
254 __be32 ordinal;
255} __packed;
256
257struct tpm_output_header {
258 __be16 tag;
259 __be32 length;
260 __be32 return_code;
261} __packed;
262
263#define TPM_TAG_RQU_COMMAND 193
264
265/* TPM2 specific constants. */
266#define TPM2_SPACE_BUFFER_SIZE 16384 /* 16 kB */
267
268struct stclear_flags_t {
269 __be16 tag;
270 u8 deactivated;
271 u8 disableForceClear;
272 u8 physicalPresence;
273 u8 physicalPresenceLock;
274 u8 bGlobalLock;
275} __packed;
276
277struct tpm_version_t {
278 u8 Major;
279 u8 Minor;
280 u8 revMajor;
281 u8 revMinor;
282} __packed;
283
284struct tpm_version_1_2_t {
285 __be16 tag;
286 u8 Major;
287 u8 Minor;
288 u8 revMajor;
289 u8 revMinor;
290} __packed;
291
292struct timeout_t {
293 __be32 a;
294 __be32 b;
295 __be32 c;
296 __be32 d;
297} __packed;
298
299struct duration_t {
300 __be32 tpm_short;
301 __be32 tpm_medium;
302 __be32 tpm_long;
303} __packed;
304
305struct permanent_flags_t {
306 __be16 tag;
307 u8 disable;
308 u8 ownership;
309 u8 deactivated;
310 u8 readPubek;
311 u8 disableOwnerClear;
312 u8 allowMaintenance;
313 u8 physicalPresenceLifetimeLock;
314 u8 physicalPresenceHWEnable;
315 u8 physicalPresenceCMDEnable;
316 u8 CEKPUsed;
317 u8 TPMpost;
318 u8 TPMpostLock;
319 u8 FIPS;
320 u8 operator;
321 u8 enableRevokeEK;
322 u8 nvLocked;
323 u8 readSRKPub;
324 u8 tpmEstablished;
325 u8 maintenanceDone;
326 u8 disableFullDALogicInfo;
327} __packed;
328
329typedef union {
330 struct permanent_flags_t perm_flags;
331 struct stclear_flags_t stclear_flags;
332 __u8 owned;
333 __be32 num_pcrs;
334 struct tpm_version_t tpm_version;
335 struct tpm_version_1_2_t tpm_version_1_2;
336 __be32 manufacturer_id;
337 struct timeout_t timeout;
338 struct duration_t duration;
339} cap_t;
340
341enum tpm_capabilities {
342 TPM_CAP_FLAG = 4,
343 TPM_CAP_PROP = 5,
344 TPM_CAP_VERSION_1_1 = 0x06,
345 TPM_CAP_VERSION_1_2 = 0x1A,
346};
347
348enum tpm_sub_capabilities {
349 TPM_CAP_PROP_PCR = 0x101,
350 TPM_CAP_PROP_MANUFACTURER = 0x103,
351 TPM_CAP_FLAG_PERM = 0x108,
352 TPM_CAP_FLAG_VOL = 0x109,
353 TPM_CAP_PROP_OWNER = 0x111,
354 TPM_CAP_PROP_TIS_TIMEOUT = 0x115,
355 TPM_CAP_PROP_TIS_DURATION = 0x120,
356};
357
358typedef union {
359 struct tpm_input_header in;
360 struct tpm_output_header out;
361} tpm_cmd_header;
362
363struct tpm_pcrread_out {
364 u8 pcr_result[TPM_DIGEST_SIZE];
365} __packed;
366
367struct tpm_pcrread_in {
368 __be32 pcr_idx;
369} __packed;
370
371/* 128 bytes is an arbitrary cap. This could be as large as TPM_BUFSIZE - 18
372 * bytes, but 128 is still a relatively large number of random bytes and
373 * anything much bigger causes users of struct tpm_cmd_t to start getting
374 * compiler warnings about stack frame size. */
375#define TPM_MAX_RNG_DATA 128
376
377struct tpm_getrandom_out {
378 __be32 rng_data_len;
379 u8 rng_data[TPM_MAX_RNG_DATA];
380} __packed;
381
382struct tpm_getrandom_in {
383 __be32 num_bytes;
384} __packed;
385
386typedef union {
387 struct tpm_pcrread_in pcrread_in;
388 struct tpm_pcrread_out pcrread_out;
389 struct tpm_getrandom_in getrandom_in;
390 struct tpm_getrandom_out getrandom_out;
391} tpm_cmd_params;
392
393struct tpm_cmd_t {
394 tpm_cmd_header header;
395 tpm_cmd_params params;
396} __packed;
397
398struct tpm2_digest {
399 u16 alg_id;
400 u8 digest[SHA512_DIGEST_SIZE];
401} __packed;
402
403/* A string buffer type for constructing TPM commands. This is based on the
404 * ideas of string buffer code in security/keys/trusted.h but is heap based
405 * in order to keep the stack usage minimal.
406 */
407
408enum tpm_buf_flags {
409 TPM_BUF_OVERFLOW = BIT(0),
410};
411
412struct tpm_buf {
413 struct page *data_page;
414 unsigned int flags;
415 u8 *data;
416};
417
418static inline int tpm_buf_init(struct tpm_buf *buf, u16 tag, u32 ordinal)
419{
420 struct tpm_input_header *head;
421
422 buf->data_page = alloc_page(GFP_HIGHUSER);
423 if (!buf->data_page)
424 return -ENOMEM;
425
426 buf->flags = 0;
427 buf->data = kmap(buf->data_page);
428
429 head = (struct tpm_input_header *) buf->data;
430
431 head->tag = cpu_to_be16(tag);
432 head->length = cpu_to_be32(sizeof(*head));
433 head->ordinal = cpu_to_be32(ordinal);
434
435 return 0;
436}
437
438static inline void tpm_buf_destroy(struct tpm_buf *buf)
439{
440 kunmap(buf->data_page);
441 __free_page(buf->data_page);
442}
443
444static inline u32 tpm_buf_length(struct tpm_buf *buf)
445{
446 struct tpm_input_header *head = (struct tpm_input_header *) buf->data;
447
448 return be32_to_cpu(head->length);
449}
450
451static inline u16 tpm_buf_tag(struct tpm_buf *buf)
452{
453 struct tpm_input_header *head = (struct tpm_input_header *) buf->data;
454
455 return be16_to_cpu(head->tag);
456}
457
458static inline void tpm_buf_append(struct tpm_buf *buf,
459 const unsigned char *new_data,
460 unsigned int new_len)
461{
462 struct tpm_input_header *head = (struct tpm_input_header *) buf->data;
463 u32 len = tpm_buf_length(buf);
464
465 /* Return silently if overflow has already happened. */
466 if (buf->flags & TPM_BUF_OVERFLOW)
467 return;
468
469 if ((len + new_len) > PAGE_SIZE) {
470 WARN(1, "tpm_buf: overflow\n");
471 buf->flags |= TPM_BUF_OVERFLOW;
472 return;
473 }
474
475 memcpy(&buf->data[len], new_data, new_len);
476 head->length = cpu_to_be32(len + new_len);
477}
478
479static inline void tpm_buf_append_u8(struct tpm_buf *buf, const u8 value)
480{
481 tpm_buf_append(buf, &value, 1);
482}
483
484static inline void tpm_buf_append_u16(struct tpm_buf *buf, const u16 value)
485{
486 __be16 value2 = cpu_to_be16(value);
487
488 tpm_buf_append(buf, (u8 *) &value2, 2);
489}
490
491static inline void tpm_buf_append_u32(struct tpm_buf *buf, const u32 value)
492{
493 __be32 value2 = cpu_to_be32(value);
494
495 tpm_buf_append(buf, (u8 *) &value2, 4);
496}
497
498extern struct class *tpm_class;
499extern struct class *tpmrm_class;
500extern dev_t tpm_devt;
501extern const struct file_operations tpm_fops;
502extern const struct file_operations tpmrm_fops;
503extern struct idr dev_nums_idr;
504
505/**
506 * enum tpm_transmit_flags
507 *
508 * @TPM_TRANSMIT_UNLOCKED: used to lock sequence of tpm_transmit calls.
509 * @TPM_TRANSMIT_RAW: prevent recursive calls into setup steps
510 * (go idle, locality,..). Always use with UNLOCKED
511 * as it will fail on double locking.
512 */
513enum tpm_transmit_flags {
514 TPM_TRANSMIT_UNLOCKED = BIT(0),
515 TPM_TRANSMIT_RAW = BIT(1),
516};
517
518ssize_t tpm_transmit(struct tpm_chip *chip, struct tpm_space *space,
519 u8 *buf, size_t bufsiz, unsigned int flags);
520ssize_t tpm_transmit_cmd(struct tpm_chip *chip, struct tpm_space *space,
521 const void *buf, size_t bufsiz,
522 size_t min_rsp_body_length, unsigned int flags,
523 const char *desc);
524int tpm_startup(struct tpm_chip *chip);
525ssize_t tpm_getcap(struct tpm_chip *chip, u32 subcap_id, cap_t *cap,
526 const char *desc, size_t min_cap_length);
527int tpm_get_timeouts(struct tpm_chip *);
528int tpm1_auto_startup(struct tpm_chip *chip);
529int tpm_do_selftest(struct tpm_chip *chip);
530unsigned long tpm_calc_ordinal_duration(struct tpm_chip *chip, u32 ordinal);
531int tpm_pm_suspend(struct device *dev);
532int tpm_pm_resume(struct device *dev);
533int wait_for_tpm_stat(struct tpm_chip *chip, u8 mask, unsigned long timeout,
534 wait_queue_head_t *queue, bool check_cancel);
535
536static inline void tpm_msleep(unsigned int delay_msec)
537{
538 usleep_range(delay_msec * 1000,
539 (delay_msec * 1000) + TPM_TIMEOUT_RANGE_US);
540};
541
542struct tpm_chip *tpm_chip_find_get(int chip_num);
543__must_check int tpm_try_get_ops(struct tpm_chip *chip);
544void tpm_put_ops(struct tpm_chip *chip);
545
546struct tpm_chip *tpm_chip_alloc(struct device *dev,
547 const struct tpm_class_ops *ops);
548struct tpm_chip *tpmm_chip_alloc(struct device *pdev,
549 const struct tpm_class_ops *ops);
550int tpm_chip_register(struct tpm_chip *chip);
551void tpm_chip_unregister(struct tpm_chip *chip);
552
553void tpm_sysfs_add_device(struct tpm_chip *chip);
554
555int tpm_pcr_read_dev(struct tpm_chip *chip, int pcr_idx, u8 *res_buf);
556
557#ifdef CONFIG_ACPI
558extern void tpm_add_ppi(struct tpm_chip *chip);
559#else
560static inline void tpm_add_ppi(struct tpm_chip *chip)
561{
562}
563#endif
564
565static inline inline u32 tpm2_rc_value(u32 rc)
566{
567 return (rc & BIT(7)) ? rc & 0xff : rc;
568}
569
570int tpm2_pcr_read(struct tpm_chip *chip, int pcr_idx, u8 *res_buf);
571int tpm2_pcr_extend(struct tpm_chip *chip, int pcr_idx, u32 count,
572 struct tpm2_digest *digests);
573int tpm2_get_random(struct tpm_chip *chip, u8 *out, size_t max);
574void tpm2_flush_context_cmd(struct tpm_chip *chip, u32 handle,
575 unsigned int flags);
576int tpm2_seal_trusted(struct tpm_chip *chip,
577 struct trusted_key_payload *payload,
578 struct trusted_key_options *options);
579int tpm2_unseal_trusted(struct tpm_chip *chip,
580 struct trusted_key_payload *payload,
581 struct trusted_key_options *options);
582ssize_t tpm2_get_tpm_pt(struct tpm_chip *chip, u32 property_id,
583 u32 *value, const char *desc);
584
585int tpm2_auto_startup(struct tpm_chip *chip);
586void tpm2_shutdown(struct tpm_chip *chip, u16 shutdown_type);
587unsigned long tpm2_calc_ordinal_duration(struct tpm_chip *chip, u32 ordinal);
588int tpm2_probe(struct tpm_chip *chip);
589int tpm2_find_cc(struct tpm_chip *chip, u32 cc);
590int tpm2_init_space(struct tpm_space *space, unsigned int buf_size);
591void tpm2_del_space(struct tpm_chip *chip, struct tpm_space *space);
592int tpm2_prepare_space(struct tpm_chip *chip, struct tpm_space *space, u32 cc,
593 u8 *cmd);
594int tpm2_commit_space(struct tpm_chip *chip, struct tpm_space *space,
595 u32 cc, u8 *buf, size_t *bufsiz);
596#endif