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bb3f47eb78
This add a helper for_each_tpm_device that run through all the tpm (1.x and 2.0) devices. Signed-off-by: Philippe Reynes <philippe.reynes@softathome.com> Reviewed-by: Miquel Raynal <miquel.raynal@bootlin.com>
299 lines
8 KiB
C
299 lines
8 KiB
C
/* SPDX-License-Identifier: GPL-2.0+ */
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/*
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* Copyright (c) 2013 The Chromium OS Authors.
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* Coypright (c) 2013 Guntermann & Drunck GmbH
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*/
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#ifndef __TPM_COMMON_H
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#define __TPM_COMMON_H
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enum tpm_duration {
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TPM_SHORT = 0,
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TPM_MEDIUM = 1,
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TPM_LONG = 2,
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TPM_UNDEFINED,
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TPM_DURATION_COUNT,
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};
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/*
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* Here is a partial implementation of TPM commands. Please consult TCG Main
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* Specification for definitions of TPM commands.
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*/
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#define TPM_HEADER_SIZE 10
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/* Max buffer size supported by our tpm */
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#define TPM_DEV_BUFSIZE 1260
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#define TPM_PCR_MINIMUM_DIGEST_SIZE 20
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/**
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* enum tpm_version - The version of the TPM stack to be used
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* @TPM_V1: Use TPM v1.x stack
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* @TPM_V2: Use TPM v2.x stack
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*/
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enum tpm_version {
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TPM_V1 = 0,
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TPM_V2,
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};
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/**
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* struct tpm_chip_priv - Information about a TPM, stored by the uclass
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*
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* These values must be set up by the device's probe() method before
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* communcation is attempted. If the device has an xfer() method, this is
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* not needed. There is no need to set up @buf.
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*
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* @version: TPM stack to be used
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* @duration_ms: Length of each duration type in milliseconds
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* @retry_time_ms: Time to wait before retrying receive
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* @buf: Buffer used during the exchanges with the chip
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* @pcr_count: Number of PCR per bank
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* @pcr_select_min: Minimum size in bytes of the pcrSelect array
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*/
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struct tpm_chip_priv {
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enum tpm_version version;
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uint duration_ms[TPM_DURATION_COUNT];
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uint retry_time_ms;
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u8 buf[TPM_DEV_BUFSIZE + sizeof(u8)]; /* Max buffer size + addr */
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/* TPM v2 specific data */
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uint pcr_count;
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uint pcr_select_min;
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};
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/**
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* struct tpm_ops - low-level TPM operations
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*
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* These are designed to avoid loops and delays in the driver itself. These
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* should be handled in the uclass.
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*
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* In gneral you should implement everything except xfer(). Where you need
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* complete control of the transfer, then xfer() can be provided and will
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* override the other methods.
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*
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* This interface is for low-level TPM access. It does not understand the
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* concept of localities or the various TPM messages. That interface is
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* defined in the functions later on in this file, but they all translate
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* to bytes which are sent and received.
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*/
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struct tpm_ops {
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/**
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* open() - Request access to locality 0 for the caller
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*
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* After all commands have been completed the caller should call
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* close().
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*
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* @dev: Device to open
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* @return 0 ok OK, -ve on error
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*/
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int (*open)(struct udevice *dev);
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/**
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* close() - Close the current session
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*
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* Releasing the locked locality. Returns 0 on success, -ve 1 on
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* failure (in case lock removal did not succeed).
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*
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* @dev: Device to close
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* @return 0 ok OK, -ve on error
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*/
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int (*close)(struct udevice *dev);
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/**
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* get_desc() - Get a text description of the TPM
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*
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* @dev: Device to check
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* @buf: Buffer to put the string
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* @size: Maximum size of buffer
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* @return length of string, or -ENOSPC it no space
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*/
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int (*get_desc)(struct udevice *dev, char *buf, int size);
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/**
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* send() - send data to the TPM
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*
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* @dev: Device to talk to
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* @sendbuf: Buffer of the data to send
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* @send_size: Size of the data to send
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*
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* Returns 0 on success or -ve on failure.
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*/
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int (*send)(struct udevice *dev, const u8 *sendbuf, size_t send_size);
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/**
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* recv() - receive a response from the TPM
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*
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* @dev: Device to talk to
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* @recvbuf: Buffer to save the response to
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* @max_size: Maximum number of bytes to receive
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*
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* Returns number of bytes received on success, -EAGAIN if the TPM
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* response is not ready, -EINTR if cancelled, or other -ve value on
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* failure.
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*/
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int (*recv)(struct udevice *dev, u8 *recvbuf, size_t max_size);
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/**
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* cleanup() - clean up after an operation in progress
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*
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* This is called if receiving times out. The TPM may need to abort
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* the current transaction if it did not complete, and make itself
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* ready for another.
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*
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* @dev: Device to talk to
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*/
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int (*cleanup)(struct udevice *dev);
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/**
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* xfer() - send data to the TPM and get response
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*
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* This method is optional. If it exists it is used in preference
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* to send(), recv() and cleanup(). It should handle all aspects of
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* TPM communication for a single transfer.
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*
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* @dev: Device to talk to
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* @sendbuf: Buffer of the data to send
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* @send_size: Size of the data to send
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* @recvbuf: Buffer to save the response to
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* @recv_size: Pointer to the size of the response buffer
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*
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* Returns 0 on success (and places the number of response bytes at
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* recv_size) or -ve on failure.
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*/
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int (*xfer)(struct udevice *dev, const u8 *sendbuf, size_t send_size,
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u8 *recvbuf, size_t *recv_size);
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};
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#define tpm_get_ops(dev) ((struct tpm_ops *)device_get_ops(dev))
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#define MAKE_TPM_CMD_ENTRY(cmd) \
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U_BOOT_CMD_MKENT(cmd, 0, 1, do_tpm_ ## cmd, "", "")
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#define TPM_COMMAND_NO_ARG(cmd) \
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int do_##cmd(cmd_tbl_t *cmdtp, int flag, \
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int argc, char * const argv[]) \
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{ \
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struct udevice *dev; \
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int rc; \
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\
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rc = get_tpm(&dev); \
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if (rc) \
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return rc; \
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if (argc != 1) \
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return CMD_RET_USAGE; \
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return report_return_code(cmd(dev)); \
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}
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/**
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* tpm_open() - Request access to locality 0 for the caller
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*
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* After all commands have been completed the caller is supposed to
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* call tpm_close().
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*
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* @dev - TPM device
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* Returns 0 on success, -ve on failure.
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*/
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int tpm_open(struct udevice *dev);
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/**
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* tpm_close() - Close the current session
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*
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* Releasing the locked locality. Returns 0 on success, -ve 1 on
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* failure (in case lock removal did not succeed).
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*
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* @dev - TPM device
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* Returns 0 on success, -ve on failure.
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*/
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int tpm_close(struct udevice *dev);
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/**
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* tpm_clear_and_reenable() - Force clear the TPM and reenable it
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*
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* @dev: TPM device
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* @return 0 on success, -ve on failure
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*/
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u32 tpm_clear_and_reenable(struct udevice *dev);
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/**
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* tpm_get_desc() - Get a text description of the TPM
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*
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* @dev: Device to check
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* @buf: Buffer to put the string
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* @size: Maximum size of buffer
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* @return length of string, or -ENOSPC it no space
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*/
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int tpm_get_desc(struct udevice *dev, char *buf, int size);
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/**
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* tpm_xfer() - send data to the TPM and get response
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*
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* This first uses the device's send() method to send the bytes. Then it calls
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* recv() to get the reply. If recv() returns -EAGAIN then it will delay a
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* short time and then call recv() again.
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*
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* Regardless of whether recv() completes successfully, it will then call
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* cleanup() to finish the transaction.
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*
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* Note that the outgoing data is inspected to determine command type
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* (ordinal) and a timeout is used for that command type.
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*
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* @dev - TPM device
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* @sendbuf - buffer of the data to send
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* @send_size size of the data to send
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* @recvbuf - memory to save the response to
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* @recv_len - pointer to the size of the response buffer
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*
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* Returns 0 on success (and places the number of response bytes at
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* recv_len) or -ve on failure.
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*/
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int tpm_xfer(struct udevice *dev, const u8 *sendbuf, size_t send_size,
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u8 *recvbuf, size_t *recv_size);
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/**
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* Initialize TPM device. It must be called before any TPM commands.
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*
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* @dev - TPM device
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* @return 0 on success, non-0 on error.
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*/
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int tpm_init(struct udevice *dev);
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/**
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* Retrieve the array containing all the v1 (resp. v2) commands.
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*
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* @return a cmd_tbl_t array.
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*/
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#if defined(CONFIG_TPM_V1)
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cmd_tbl_t *get_tpm1_commands(unsigned int *size);
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#else
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static inline cmd_tbl_t *get_tpm1_commands(unsigned int *size)
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{
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return NULL;
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}
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#endif
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#if defined(CONFIG_TPM_V2)
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cmd_tbl_t *get_tpm2_commands(unsigned int *size);
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#else
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static inline cmd_tbl_t *get_tpm2_commands(unsigned int *size)
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{
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return NULL;
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}
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#endif
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/**
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* tpm_get_version() - Find the version of a TPM
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*
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* This checks the uclass data for a TPM device and returns the version number
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* it supports.
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*
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* @dev: TPM device
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* @return version number (TPM_V1 or TPMV2)
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*/
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enum tpm_version tpm_get_version(struct udevice *dev);
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/* Iterate on all TPM devices */
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#define for_each_tpm_device(dev) uclass_foreach_dev_probe(UCLASS_TPM, (dev))
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#endif /* __TPM_COMMON_H */
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