bhyve/tpm: create crb thread for sending tpm commands
Commands send to a tpm are very slow. They can take up to several seconds for completion. For that reason, create a thread which issues the commands to the tpm device. Reviewed by: markj MFC after: 1 week Sponsored by: Beckhoff Automation GmbH & Co. KG Differential Revision: https://reviews.freebsd.org/D40458
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@ -141,7 +141,7 @@ tpm_device_create(struct tpm_device **const new_dev, struct vmctx *const vm_ctx,
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}
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if (dev->intf->init) {
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error = dev->intf->init(&dev->intf_sc);
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error = dev->intf->init(&dev->intf_sc, dev->emul, dev->emul_sc);
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if (error)
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goto err_out;
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}
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@ -18,5 +18,7 @@ struct tpm_emul {
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int (*init)(void **sc, nvlist_t *nvl);
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void (*deinit)(void *sc);
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int (*execute_cmd)(void *sc, void *cmd, uint32_t cmd_size, void *rsp,
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uint32_t rsp_size);
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};
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#define TPM_EMUL_SET(x) DATA_SET(tpm_emul_set, x)
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@ -11,6 +11,7 @@
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#include "config.h"
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#include "tpm_device.h"
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#include "tpm_emul.h"
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#define TPM_INTF_TYPE_FIFO_PTP 0x0
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#define TPM_INTF_TYPE_CRB 0x1
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@ -30,7 +31,7 @@
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struct tpm_intf {
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const char *name;
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int (*init)(void **sc);
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int (*init)(void **sc, struct tpm_emul *emul, void *emul_sc);
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void (*deinit)(void *sc);
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int (*build_acpi_table)(void *sc, struct vmctx *vm_ctx);
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};
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@ -26,6 +26,7 @@
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#include "config.h"
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#include "mem.h"
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#include "qemu_fwcfg.h"
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#include "tpm_device.h"
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#include "tpm_intf.h"
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#define TPM_CRB_ADDRESS 0xFED40000
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@ -45,6 +46,8 @@
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#define TPM_CRB_LOG_AREA_FWCFG_NAME "etc/tpm/log"
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#define TPM_CRB_INTF_NAME "crb"
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struct tpm_crb_regs {
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union tpm_crb_reg_loc_state {
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struct {
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@ -164,17 +167,82 @@ static_assert(sizeof(struct tpm_crb_regs) == TPM_CRB_REGS_SIZE,
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} while (0)
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struct tpm_crb {
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struct tpm_emul *emul;
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void *emul_sc;
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uint8_t tpm_log_area[TPM_CRB_LOG_AREA_MINIMUM_SIZE];
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struct tpm_crb_regs regs;
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pthread_t thread;
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pthread_mutex_t mutex;
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pthread_cond_t cond;
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bool closing;
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};
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static void *
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tpm_crb_thread(void *const arg)
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{
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struct tpm_crb *const crb = arg;
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pthread_mutex_lock(&crb->mutex);
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for (;;) {
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pthread_cond_wait(&crb->cond, &crb->mutex);
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if (crb->closing)
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break;
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const uint64_t cmd_addr = CRB_CMD_ADDR_READ(crb->regs);
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const uint64_t rsp_addr = CRB_RSP_ADDR_READ(crb->regs);
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const uint32_t cmd_size = CRB_CMD_SIZE_READ(crb->regs);
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const uint32_t rsp_size = CRB_RSP_SIZE_READ(crb->regs);
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const uint64_t cmd_off = cmd_addr - TPM_CRB_DATA_BUFFER_ADDRESS;
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const uint64_t rsp_off = rsp_addr - TPM_CRB_DATA_BUFFER_ADDRESS;
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if (cmd_off > TPM_CRB_DATA_BUFFER_SIZE ||
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cmd_off + cmd_size > TPM_CRB_DATA_BUFFER_SIZE ||
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rsp_off > TPM_CRB_DATA_BUFFER_SIZE ||
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rsp_off + rsp_size > TPM_CRB_DATA_BUFFER_SIZE) {
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warnx(
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"%s: invalid cmd [%16lx, %16lx] --> [%16lx, %16lx]\n\r",
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__func__, cmd_addr, cmd_addr + cmd_size, rsp_addr,
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rsp_addr + rsp_size);
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break;
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}
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/*
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* The command response buffer interface uses a single buffer
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* for sending a command to and receiving a response from the
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* tpm. To avoid reading old data from the command buffer which
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* might be a security issue, we zero out the command buffer
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* before writing the response into it. The rsp_size parameter
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* is controlled by the guest and it's not guaranteed that the
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* response has a size of rsp_size (e.g. if the tpm returned an
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* error, the response would have a different size than
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* expected). For that reason, use a second buffer for the
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* response.
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*/
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uint8_t rsp[TPM_CRB_DATA_BUFFER_SIZE] = { 0 };
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crb->emul->execute_cmd(crb->emul_sc,
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&crb->regs.data_buffer[cmd_off], cmd_size, &rsp[rsp_off],
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rsp_size);
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memset(crb->regs.data_buffer, 0, TPM_CRB_DATA_BUFFER_SIZE);
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memcpy(&crb->regs.data_buffer[rsp_off], &rsp[rsp_off], rsp_size);
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crb->regs.ctrl_start.start = false;
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}
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pthread_mutex_unlock(&crb->mutex);
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return (NULL);
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}
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static int
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tpm_crb_init(void **sc)
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tpm_crb_init(void **sc, struct tpm_emul *emul, void *emul_sc)
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{
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struct tpm_crb *crb = NULL;
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int error;
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assert(sc != NULL);
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assert(emul != NULL);
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crb = calloc(1, sizeof(struct tpm_crb));
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if (crb == NULL) {
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@ -185,6 +253,9 @@ tpm_crb_init(void **sc)
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memset(crb, 0, sizeof(*crb));
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crb->emul = emul;
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crb->emul_sc = emul_sc;
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crb->regs.loc_state.tpm_req_valid_sts = true;
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crb->regs.loc_state.tpm_established = true;
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@ -216,6 +287,26 @@ tpm_crb_init(void **sc)
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goto err_out;
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}
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error = pthread_mutex_init(&crb->mutex, NULL);
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if (error) {
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warnc(error, "%s: failed to init mutex", __func__);
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goto err_out;
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}
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error = pthread_cond_init(&crb->cond, NULL);
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if (error) {
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warnc(error, "%s: failed to init cond", __func__);
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goto err_out;
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}
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error = pthread_create(&crb->thread, NULL, tpm_crb_thread, crb);
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if (error) {
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warnx("%s: failed to create thread\n", __func__);
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goto err_out;
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}
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pthread_set_name_np(crb->thread, "tpm_intf_crb");
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*sc = crb;
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return (0);
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@ -237,6 +328,13 @@ tpm_crb_deinit(void *sc)
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crb = sc;
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crb->closing = true;
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pthread_cond_signal(&crb->cond);
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pthread_join(crb->thread, NULL);
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pthread_cond_destroy(&crb->cond);
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pthread_mutex_destroy(&crb->mutex);
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free(crb);
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}
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@ -275,7 +373,7 @@ tpm_crb_build_acpi_table(void *sc __unused, struct vmctx *vm_ctx)
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}
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static struct tpm_intf tpm_intf_crb = {
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.name = "crb",
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.name = TPM_CRB_INTF_NAME,
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.init = tpm_crb_init,
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.deinit = tpm_crb_deinit,
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.build_acpi_table = tpm_crb_build_acpi_table,
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