blob: a5072b166ab84d8f564a79bb5b9b93ebd1452ca1 [file] [log] [blame]
Brijesh Singh2a6170d2017-12-04 10:57:28 -06001/*
2 * AMD Platform Security Processor (PSP) interface
3 *
4 * Copyright (C) 2016-2017 Advanced Micro Devices, Inc.
5 *
6 * Author: Brijesh Singh <brijesh.singh@amd.com>
7 *
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License version 2 as
10 * published by the Free Software Foundation.
11 */
12
13#include <linux/module.h>
14#include <linux/kernel.h>
15#include <linux/kthread.h>
16#include <linux/sched.h>
17#include <linux/interrupt.h>
18#include <linux/spinlock.h>
19#include <linux/spinlock_types.h>
20#include <linux/types.h>
21#include <linux/mutex.h>
22#include <linux/delay.h>
23#include <linux/hw_random.h>
24#include <linux/ccp.h>
25
26#include "sp-dev.h"
27#include "psp-dev.h"
28
Brijesh Singh200664d2017-12-04 10:57:28 -060029#define DEVICE_NAME "sev"
30
31static DEFINE_MUTEX(sev_cmd_mutex);
32static struct sev_misc_dev *misc_dev;
33static struct psp_device *psp_master;
34
Brijesh Singh2a6170d2017-12-04 10:57:28 -060035static struct psp_device *psp_alloc_struct(struct sp_device *sp)
36{
37 struct device *dev = sp->dev;
38 struct psp_device *psp;
39
40 psp = devm_kzalloc(dev, sizeof(*psp), GFP_KERNEL);
41 if (!psp)
42 return NULL;
43
44 psp->dev = dev;
45 psp->sp = sp;
46
47 snprintf(psp->name, sizeof(psp->name), "psp-%u", sp->ord);
48
49 return psp;
50}
51
52static irqreturn_t psp_irq_handler(int irq, void *data)
53{
Brijesh Singh200664d2017-12-04 10:57:28 -060054 struct psp_device *psp = data;
55 unsigned int status;
56 int reg;
57
58 /* Read the interrupt status: */
59 status = ioread32(psp->io_regs + PSP_P2CMSG_INTSTS);
60
61 /* Check if it is command completion: */
62 if (!(status & BIT(PSP_CMD_COMPLETE_REG)))
63 goto done;
64
65 /* Check if it is SEV command completion: */
66 reg = ioread32(psp->io_regs + PSP_CMDRESP);
67 if (reg & PSP_CMDRESP_RESP) {
68 psp->sev_int_rcvd = 1;
69 wake_up(&psp->sev_int_queue);
70 }
71
72done:
73 /* Clear the interrupt status by writing the same value we read. */
74 iowrite32(status, psp->io_regs + PSP_P2CMSG_INTSTS);
75
Brijesh Singh2a6170d2017-12-04 10:57:28 -060076 return IRQ_HANDLED;
77}
78
Brijesh Singh200664d2017-12-04 10:57:28 -060079static void sev_wait_cmd_ioc(struct psp_device *psp, unsigned int *reg)
80{
81 psp->sev_int_rcvd = 0;
82
83 wait_event(psp->sev_int_queue, psp->sev_int_rcvd);
84 *reg = ioread32(psp->io_regs + PSP_CMDRESP);
85}
86
87static int sev_cmd_buffer_len(int cmd)
88{
89 switch (cmd) {
90 case SEV_CMD_INIT: return sizeof(struct sev_data_init);
91 case SEV_CMD_PLATFORM_STATUS: return sizeof(struct sev_user_data_status);
92 case SEV_CMD_PEK_CSR: return sizeof(struct sev_data_pek_csr);
93 case SEV_CMD_PEK_CERT_IMPORT: return sizeof(struct sev_data_pek_cert_import);
94 case SEV_CMD_PDH_CERT_EXPORT: return sizeof(struct sev_data_pdh_cert_export);
95 case SEV_CMD_LAUNCH_START: return sizeof(struct sev_data_launch_start);
96 case SEV_CMD_LAUNCH_UPDATE_DATA: return sizeof(struct sev_data_launch_update_data);
97 case SEV_CMD_LAUNCH_UPDATE_VMSA: return sizeof(struct sev_data_launch_update_vmsa);
98 case SEV_CMD_LAUNCH_FINISH: return sizeof(struct sev_data_launch_finish);
99 case SEV_CMD_LAUNCH_MEASURE: return sizeof(struct sev_data_launch_measure);
100 case SEV_CMD_ACTIVATE: return sizeof(struct sev_data_activate);
101 case SEV_CMD_DEACTIVATE: return sizeof(struct sev_data_deactivate);
102 case SEV_CMD_DECOMMISSION: return sizeof(struct sev_data_decommission);
103 case SEV_CMD_GUEST_STATUS: return sizeof(struct sev_data_guest_status);
104 case SEV_CMD_DBG_DECRYPT: return sizeof(struct sev_data_dbg);
105 case SEV_CMD_DBG_ENCRYPT: return sizeof(struct sev_data_dbg);
106 case SEV_CMD_SEND_START: return sizeof(struct sev_data_send_start);
107 case SEV_CMD_SEND_UPDATE_DATA: return sizeof(struct sev_data_send_update_data);
108 case SEV_CMD_SEND_UPDATE_VMSA: return sizeof(struct sev_data_send_update_vmsa);
109 case SEV_CMD_SEND_FINISH: return sizeof(struct sev_data_send_finish);
110 case SEV_CMD_RECEIVE_START: return sizeof(struct sev_data_receive_start);
111 case SEV_CMD_RECEIVE_FINISH: return sizeof(struct sev_data_receive_finish);
112 case SEV_CMD_RECEIVE_UPDATE_DATA: return sizeof(struct sev_data_receive_update_data);
113 case SEV_CMD_RECEIVE_UPDATE_VMSA: return sizeof(struct sev_data_receive_update_vmsa);
114 case SEV_CMD_LAUNCH_UPDATE_SECRET: return sizeof(struct sev_data_launch_secret);
115 default: return 0;
116 }
117
118 return 0;
119}
120
121static int __sev_do_cmd_locked(int cmd, void *data, int *psp_ret)
122{
123 struct psp_device *psp = psp_master;
124 unsigned int phys_lsb, phys_msb;
125 unsigned int reg, ret = 0;
126
127 if (!psp)
128 return -ENODEV;
129
130 /* Get the physical address of the command buffer */
131 phys_lsb = data ? lower_32_bits(__psp_pa(data)) : 0;
132 phys_msb = data ? upper_32_bits(__psp_pa(data)) : 0;
133
134 dev_dbg(psp->dev, "sev command id %#x buffer 0x%08x%08x\n",
135 cmd, phys_msb, phys_lsb);
136
137 print_hex_dump_debug("(in): ", DUMP_PREFIX_OFFSET, 16, 2, data,
138 sev_cmd_buffer_len(cmd), false);
139
140 iowrite32(phys_lsb, psp->io_regs + PSP_CMDBUFF_ADDR_LO);
141 iowrite32(phys_msb, psp->io_regs + PSP_CMDBUFF_ADDR_HI);
142
143 reg = cmd;
144 reg <<= PSP_CMDRESP_CMD_SHIFT;
145 reg |= PSP_CMDRESP_IOC;
146 iowrite32(reg, psp->io_regs + PSP_CMDRESP);
147
148 /* wait for command completion */
149 sev_wait_cmd_ioc(psp, &reg);
150
151 if (psp_ret)
152 *psp_ret = reg & PSP_CMDRESP_ERR_MASK;
153
154 if (reg & PSP_CMDRESP_ERR_MASK) {
155 dev_dbg(psp->dev, "sev command %#x failed (%#010x)\n",
156 cmd, reg & PSP_CMDRESP_ERR_MASK);
157 ret = -EIO;
158 }
159
160 print_hex_dump_debug("(out): ", DUMP_PREFIX_OFFSET, 16, 2, data,
161 sev_cmd_buffer_len(cmd), false);
162
163 return ret;
164}
165
166static int sev_do_cmd(int cmd, void *data, int *psp_ret)
167{
168 int rc;
169
170 mutex_lock(&sev_cmd_mutex);
171 rc = __sev_do_cmd_locked(cmd, data, psp_ret);
172 mutex_unlock(&sev_cmd_mutex);
173
174 return rc;
175}
176
177static int __sev_platform_init_locked(int *error)
178{
179 struct psp_device *psp = psp_master;
180 int rc = 0;
181
182 if (!psp)
183 return -ENODEV;
184
185 if (psp->sev_state == SEV_STATE_INIT)
186 return 0;
187
188 rc = __sev_do_cmd_locked(SEV_CMD_INIT, &psp->init_cmd_buf, error);
189 if (rc)
190 return rc;
191
192 psp->sev_state = SEV_STATE_INIT;
193 dev_dbg(psp->dev, "SEV firmware initialized\n");
194
195 return rc;
196}
197
198int sev_platform_init(int *error)
199{
200 int rc;
201
202 mutex_lock(&sev_cmd_mutex);
203 rc = __sev_platform_init_locked(error);
204 mutex_unlock(&sev_cmd_mutex);
205
206 return rc;
207}
208EXPORT_SYMBOL_GPL(sev_platform_init);
209
210static int __sev_platform_shutdown_locked(int *error)
211{
212 int ret;
213
214 ret = __sev_do_cmd_locked(SEV_CMD_SHUTDOWN, 0, error);
215 if (ret)
216 return ret;
217
218 psp_master->sev_state = SEV_STATE_UNINIT;
219 dev_dbg(psp_master->dev, "SEV firmware shutdown\n");
220
221 return ret;
222}
223
224static int sev_platform_shutdown(int *error)
225{
226 int rc;
227
228 mutex_lock(&sev_cmd_mutex);
229 rc = __sev_platform_shutdown_locked(NULL);
230 mutex_unlock(&sev_cmd_mutex);
231
232 return rc;
233}
234
Brijesh Singh2960f9a2017-12-04 10:57:29 -0600235static int sev_get_platform_state(int *state, int *error)
236{
237 int rc;
238
239 rc = __sev_do_cmd_locked(SEV_CMD_PLATFORM_STATUS,
240 &psp_master->status_cmd_buf, error);
241 if (rc)
242 return rc;
243
244 *state = psp_master->status_cmd_buf.state;
245 return rc;
246}
247
248static int sev_ioctl_do_reset(struct sev_issue_cmd *argp)
249{
250 int state, rc;
251
252 /*
253 * The SEV spec requires that FACTORY_RESET must be issued in
254 * UNINIT state. Before we go further lets check if any guest is
255 * active.
256 *
257 * If FW is in WORKING state then deny the request otherwise issue
258 * SHUTDOWN command do INIT -> UNINIT before issuing the FACTORY_RESET.
259 *
260 */
261 rc = sev_get_platform_state(&state, &argp->error);
262 if (rc)
263 return rc;
264
265 if (state == SEV_STATE_WORKING)
266 return -EBUSY;
267
268 if (state == SEV_STATE_INIT) {
269 rc = __sev_platform_shutdown_locked(&argp->error);
270 if (rc)
271 return rc;
272 }
273
274 return __sev_do_cmd_locked(SEV_CMD_FACTORY_RESET, 0, &argp->error);
275}
276
Brijesh Singhefe18292017-12-04 10:57:29 -0600277static int sev_ioctl_do_platform_status(struct sev_issue_cmd *argp)
278{
279 struct sev_user_data_status *data = &psp_master->status_cmd_buf;
280 int ret;
281
282 ret = __sev_do_cmd_locked(SEV_CMD_PLATFORM_STATUS, data, &argp->error);
283 if (ret)
284 return ret;
285
286 if (copy_to_user((void __user *)argp->data, data, sizeof(*data)))
287 ret = -EFAULT;
288
289 return ret;
290}
291
Brijesh Singh200664d2017-12-04 10:57:28 -0600292static long sev_ioctl(struct file *file, unsigned int ioctl, unsigned long arg)
293{
Brijesh Singh2960f9a2017-12-04 10:57:29 -0600294 void __user *argp = (void __user *)arg;
295 struct sev_issue_cmd input;
296 int ret = -EFAULT;
297
298 if (!psp_master)
299 return -ENODEV;
300
301 if (ioctl != SEV_ISSUE_CMD)
302 return -EINVAL;
303
304 if (copy_from_user(&input, argp, sizeof(struct sev_issue_cmd)))
305 return -EFAULT;
306
307 if (input.cmd > SEV_MAX)
308 return -EINVAL;
309
310 mutex_lock(&sev_cmd_mutex);
311
312 switch (input.cmd) {
313
314 case SEV_FACTORY_RESET:
315 ret = sev_ioctl_do_reset(&input);
316 break;
Brijesh Singhefe18292017-12-04 10:57:29 -0600317 case SEV_PLATFORM_STATUS:
318 ret = sev_ioctl_do_platform_status(&input);
319 break;
Brijesh Singh2960f9a2017-12-04 10:57:29 -0600320 default:
321 ret = -EINVAL;
322 goto out;
323 }
324
325 if (copy_to_user(argp, &input, sizeof(struct sev_issue_cmd)))
326 ret = -EFAULT;
327out:
328 mutex_unlock(&sev_cmd_mutex);
329
330 return ret;
Brijesh Singh200664d2017-12-04 10:57:28 -0600331}
332
333static const struct file_operations sev_fops = {
334 .owner = THIS_MODULE,
335 .unlocked_ioctl = sev_ioctl,
336};
337
338int sev_platform_status(struct sev_user_data_status *data, int *error)
339{
340 return sev_do_cmd(SEV_CMD_PLATFORM_STATUS, data, error);
341}
342EXPORT_SYMBOL_GPL(sev_platform_status);
343
344int sev_guest_deactivate(struct sev_data_deactivate *data, int *error)
345{
346 return sev_do_cmd(SEV_CMD_DEACTIVATE, data, error);
347}
348EXPORT_SYMBOL_GPL(sev_guest_deactivate);
349
350int sev_guest_activate(struct sev_data_activate *data, int *error)
351{
352 return sev_do_cmd(SEV_CMD_ACTIVATE, data, error);
353}
354EXPORT_SYMBOL_GPL(sev_guest_activate);
355
356int sev_guest_decommission(struct sev_data_decommission *data, int *error)
357{
358 return sev_do_cmd(SEV_CMD_DECOMMISSION, data, error);
359}
360EXPORT_SYMBOL_GPL(sev_guest_decommission);
361
362int sev_guest_df_flush(int *error)
363{
364 return sev_do_cmd(SEV_CMD_DF_FLUSH, 0, error);
365}
366EXPORT_SYMBOL_GPL(sev_guest_df_flush);
367
368static void sev_exit(struct kref *ref)
369{
370 struct sev_misc_dev *misc_dev = container_of(ref, struct sev_misc_dev, refcount);
371
372 misc_deregister(&misc_dev->misc);
373}
374
375static int sev_misc_init(struct psp_device *psp)
376{
377 struct device *dev = psp->dev;
378 int ret;
379
380 /*
381 * SEV feature support can be detected on multiple devices but the SEV
382 * FW commands must be issued on the master. During probe, we do not
383 * know the master hence we create /dev/sev on the first device probe.
384 * sev_do_cmd() finds the right master device to which to issue the
385 * command to the firmware.
386 */
387 if (!misc_dev) {
388 struct miscdevice *misc;
389
390 misc_dev = devm_kzalloc(dev, sizeof(*misc_dev), GFP_KERNEL);
391 if (!misc_dev)
392 return -ENOMEM;
393
394 misc = &misc_dev->misc;
395 misc->minor = MISC_DYNAMIC_MINOR;
396 misc->name = DEVICE_NAME;
397 misc->fops = &sev_fops;
398
399 ret = misc_register(misc);
400 if (ret)
401 return ret;
402
403 kref_init(&misc_dev->refcount);
404 } else {
405 kref_get(&misc_dev->refcount);
406 }
407
408 init_waitqueue_head(&psp->sev_int_queue);
409 psp->sev_misc = misc_dev;
410 dev_dbg(dev, "registered SEV device\n");
411
412 return 0;
413}
414
415static int sev_init(struct psp_device *psp)
416{
417 /* Check if device supports SEV feature */
418 if (!(ioread32(psp->io_regs + PSP_FEATURE_REG) & 1)) {
419 dev_dbg(psp->dev, "device does not support SEV\n");
420 return 1;
421 }
422
423 return sev_misc_init(psp);
424}
425
Brijesh Singh2a6170d2017-12-04 10:57:28 -0600426int psp_dev_init(struct sp_device *sp)
427{
428 struct device *dev = sp->dev;
429 struct psp_device *psp;
430 int ret;
431
432 ret = -ENOMEM;
433 psp = psp_alloc_struct(sp);
434 if (!psp)
435 goto e_err;
436
437 sp->psp_data = psp;
438
439 psp->vdata = (struct psp_vdata *)sp->dev_vdata->psp_vdata;
440 if (!psp->vdata) {
441 ret = -ENODEV;
442 dev_err(dev, "missing driver data\n");
443 goto e_err;
444 }
445
446 psp->io_regs = sp->io_map + psp->vdata->offset;
447
448 /* Disable and clear interrupts until ready */
449 iowrite32(0, psp->io_regs + PSP_P2CMSG_INTEN);
450 iowrite32(-1, psp->io_regs + PSP_P2CMSG_INTSTS);
451
452 /* Request an irq */
453 ret = sp_request_psp_irq(psp->sp, psp_irq_handler, psp->name, psp);
454 if (ret) {
455 dev_err(dev, "psp: unable to allocate an IRQ\n");
456 goto e_err;
457 }
458
Brijesh Singh200664d2017-12-04 10:57:28 -0600459 ret = sev_init(psp);
460 if (ret)
461 goto e_irq;
462
Brijesh Singh2a6170d2017-12-04 10:57:28 -0600463 if (sp->set_psp_master_device)
464 sp->set_psp_master_device(sp);
465
466 /* Enable interrupt */
467 iowrite32(-1, psp->io_regs + PSP_P2CMSG_INTEN);
468
469 return 0;
470
Brijesh Singh200664d2017-12-04 10:57:28 -0600471e_irq:
472 sp_free_psp_irq(psp->sp, psp);
Brijesh Singh2a6170d2017-12-04 10:57:28 -0600473e_err:
474 sp->psp_data = NULL;
475
476 dev_notice(dev, "psp initialization failed\n");
477
478 return ret;
479}
480
481void psp_dev_destroy(struct sp_device *sp)
482{
483 struct psp_device *psp = sp->psp_data;
484
Brijesh Singh200664d2017-12-04 10:57:28 -0600485 if (psp->sev_misc)
486 kref_put(&misc_dev->refcount, sev_exit);
487
Brijesh Singh2a6170d2017-12-04 10:57:28 -0600488 sp_free_psp_irq(sp, psp);
489}
Brijesh Singh200664d2017-12-04 10:57:28 -0600490
491int sev_issue_cmd_external_user(struct file *filep, unsigned int cmd,
492 void *data, int *error)
493{
494 if (!filep || filep->f_op != &sev_fops)
495 return -EBADF;
496
497 return sev_do_cmd(cmd, data, error);
498}
499EXPORT_SYMBOL_GPL(sev_issue_cmd_external_user);
500
501void psp_pci_init(void)
502{
503 struct sev_user_data_status *status;
504 struct sp_device *sp;
505 int error, rc;
506
507 sp = sp_get_psp_master_device();
508 if (!sp)
509 return;
510
511 psp_master = sp->psp_data;
512
513 /* Initialize the platform */
514 rc = sev_platform_init(&error);
515 if (rc) {
516 dev_err(sp->dev, "SEV: failed to INIT error %#x\n", error);
517 goto err;
518 }
519
520 /* Display SEV firmware version */
521 status = &psp_master->status_cmd_buf;
522 rc = sev_platform_status(status, &error);
523 if (rc) {
524 dev_err(sp->dev, "SEV: failed to get status error %#x\n", error);
525 goto err;
526 }
527
528 dev_info(sp->dev, "SEV API:%d.%d build:%d\n", status->api_major,
529 status->api_minor, status->build);
530 return;
531
532err:
533 psp_master = NULL;
534}
535
536void psp_pci_exit(void)
537{
538 if (!psp_master)
539 return;
540
541 sev_platform_shutdown(NULL);
542}