mirror of
https://github.com/AsahiLinux/u-boot
synced 2024-11-14 08:57:58 +00:00
83d290c56f
When U-Boot started using SPDX tags we were among the early adopters and there weren't a lot of other examples to borrow from. So we picked the area of the file that usually had a full license text and replaced it with an appropriate SPDX-License-Identifier: entry. Since then, the Linux Kernel has adopted SPDX tags and they place it as the very first line in a file (except where shebangs are used, then it's second line) and with slightly different comment styles than us. In part due to community overlap, in part due to better tag visibility and in part for other minor reasons, switch over to that style. This commit changes all instances where we have a single declared license in the tag as both the before and after are identical in tag contents. There's also a few places where I found we did not have a tag and have introduced one. Signed-off-by: Tom Rini <trini@konsulko.com>
333 lines
8.9 KiB
C
333 lines
8.9 KiB
C
/* SPDX-License-Identifier: GPL-2.0+ */
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/*
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* Operating System Interface
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*
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* This provides access to useful OS routines for the sandbox architecture.
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* They are kept in a separate file so we can include system headers.
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*
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* Copyright (c) 2011 The Chromium OS Authors.
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*/
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#ifndef __OS_H__
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#define __OS_H__
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#include <linux/types.h>
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struct rtc_time;
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struct sandbox_state;
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/**
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* Access to the OS read() system call
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*
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* \param fd File descriptor as returned by os_open()
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* \param buf Buffer to place data
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* \param count Number of bytes to read
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* \return number of bytes read, or -1 on error
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*/
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ssize_t os_read(int fd, void *buf, size_t count);
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/**
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* Access to the OS read() system call with non-blocking access
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*
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* \param fd File descriptor as returned by os_open()
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* \param buf Buffer to place data
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* \param count Number of bytes to read
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* \return number of bytes read, or -1 on error
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*/
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ssize_t os_read_no_block(int fd, void *buf, size_t count);
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/**
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* Access to the OS write() system call
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*
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* \param fd File descriptor as returned by os_open()
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* \param buf Buffer containing data to write
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* \param count Number of bytes to write
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* \return number of bytes written, or -1 on error
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*/
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ssize_t os_write(int fd, const void *buf, size_t count);
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/**
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* Access to the OS lseek() system call
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*
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* \param fd File descriptor as returned by os_open()
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* \param offset File offset (based on whence)
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* \param whence Position offset is relative to (see below)
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* \return new file offset
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*/
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off_t os_lseek(int fd, off_t offset, int whence);
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/* Defines for "whence" in os_lseek() */
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#define OS_SEEK_SET 0
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#define OS_SEEK_CUR 1
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#define OS_SEEK_END 2
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/**
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* Access to the OS open() system call
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*
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* \param pathname Pathname of file to open
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* \param flags Flags, like OS_O_RDONLY, OS_O_RDWR
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* \return file descriptor, or -1 on error
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*/
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int os_open(const char *pathname, int flags);
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#define OS_O_RDONLY 0
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#define OS_O_WRONLY 1
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#define OS_O_RDWR 2
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#define OS_O_MASK 3 /* Mask for read/write flags */
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#define OS_O_CREAT 0100
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/**
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* Access to the OS close() system call
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*
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* \param fd File descriptor to close
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* \return 0 on success, -1 on error
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*/
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int os_close(int fd);
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/**
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* Access to the OS unlink() system call
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*
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* \param pathname Path of file to delete
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* \return 0 for success, other for error
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*/
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int os_unlink(const char *pathname);
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/**
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* Access to the OS exit() system call
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*
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* This exits with the supplied return code, which should be 0 to indicate
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* success.
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*
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* @param exit_code exit code for U-Boot
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*/
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void os_exit(int exit_code) __attribute__((noreturn));
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/**
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* Put tty into raw mode to mimic serial console better
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*
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* @param fd File descriptor of stdin (normally 0)
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* @param allow_sigs Allow Ctrl-C, Ctrl-Z to generate signals rather than
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* be handled by U-Boot
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*/
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void os_tty_raw(int fd, bool allow_sigs);
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/**
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* Restore the tty to its original mode
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*
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* Call this to restore the original terminal mode, after it has been changed
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* by os_tty_raw(). This is an internal function.
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*/
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void os_fd_restore(void);
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/**
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* Acquires some memory from the underlying os.
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*
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* \param length Number of bytes to be allocated
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* \return Pointer to length bytes or NULL on error
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*/
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void *os_malloc(size_t length);
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/**
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* Free memory previous allocated with os_malloc()/os_realloc()
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*
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* This returns the memory to the OS.
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*
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* \param ptr Pointer to memory block to free
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*/
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void os_free(void *ptr);
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/**
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* Reallocate previously-allocated memory to increase/decrease space
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*
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* This works in a similar way to the C library realloc() function. If
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* length is 0, then ptr is freed. Otherwise the space used by ptr is
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* expanded or reduced depending on whether length is larger or smaller
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* than before.
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*
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* If ptr is NULL, then this is similar to calling os_malloc().
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*
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* This function may need to move the memory block to make room for any
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* extra space, in which case the new pointer is returned.
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*
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* \param ptr Pointer to memory block to reallocate
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* \param length New length for memory block
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* \return pointer to new memory block, or NULL on failure or if length
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* is 0.
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*/
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void *os_realloc(void *ptr, size_t length);
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/**
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* Access to the usleep function of the os
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*
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* \param usec Time to sleep in micro seconds
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*/
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void os_usleep(unsigned long usec);
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/**
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* Gets a monotonic increasing number of nano seconds from the OS
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*
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* \return A monotonic increasing time scaled in nano seconds
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*/
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uint64_t os_get_nsec(void);
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/**
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* Parse arguments and update sandbox state.
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*
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* @param state Sandbox state to update
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* @param argc Argument count
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* @param argv Argument vector
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* @return 0 if ok, and program should continue;
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* 1 if ok, but program should stop;
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* -1 on error: program should terminate.
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*/
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int os_parse_args(struct sandbox_state *state, int argc, char *argv[]);
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/*
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* Types of directory entry that we support. See also os_dirent_typename in
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* the C file.
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*/
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enum os_dirent_t {
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OS_FILET_REG, /* Regular file */
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OS_FILET_LNK, /* Symbolic link */
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OS_FILET_DIR, /* Directory */
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OS_FILET_UNKNOWN, /* Something else */
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OS_FILET_COUNT,
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};
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/** A directory entry node, containing information about a single dirent */
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struct os_dirent_node {
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struct os_dirent_node *next; /* Pointer to next node, or NULL */
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ulong size; /* Size of file in bytes */
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enum os_dirent_t type; /* Type of entry */
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char name[0]; /* Name of entry */
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};
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/**
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* Get a directionry listing
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*
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* This allocates and returns a linked list containing the directory listing.
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*
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* @param dirname Directory to examine
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* @param headp Returns pointer to head of linked list, or NULL if none
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* @return 0 if ok, -ve on error
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*/
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int os_dirent_ls(const char *dirname, struct os_dirent_node **headp);
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/**
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* Free directory list
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*
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* This frees a linked list containing a directory listing.
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*
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* @param node Pointer to head of linked list
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*/
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void os_dirent_free(struct os_dirent_node *node);
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/**
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* Get the name of a directory entry type
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*
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* @param type Type to check
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* @return string containing the name of that type, or "???" if none/invalid
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*/
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const char *os_dirent_get_typename(enum os_dirent_t type);
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/**
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* Get the size of a file
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*
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* @param fname Filename to check
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* @param size size of file is returned if no error
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* @return 0 on success or -1 if an error ocurred
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*/
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int os_get_filesize(const char *fname, loff_t *size);
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/**
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* Write a character to the controlling OS terminal
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*
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* This bypasses the U-Boot console support and writes directly to the OS
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* stdout file descriptor.
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*
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* @param ch Character to write
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*/
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void os_putc(int ch);
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/**
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* Write a string to the controlling OS terminal
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*
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* This bypasses the U-Boot console support and writes directly to the OS
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* stdout file descriptor.
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*
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* @param str String to write (note that \n is not appended)
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*/
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void os_puts(const char *str);
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/**
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* Write the sandbox RAM buffer to a existing file
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*
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* @param fname Filename to write memory to (simple binary format)
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* @return 0 if OK, -ve on error
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*/
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int os_write_ram_buf(const char *fname);
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/**
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* Read the sandbox RAM buffer from an existing file
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*
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* @param fname Filename containing memory (simple binary format)
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* @return 0 if OK, -ve on error
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*/
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int os_read_ram_buf(const char *fname);
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/**
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* Jump to a new executable image
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*
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* This uses exec() to run a new executable image, after putting it in a
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* temporary file. The same arguments and environment are passed to this
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* new image, with the addition of:
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*
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* -j <filename> Specifies the filename the image was written to. The
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* calling image may want to delete this at some point.
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* -m <filename> Specifies the file containing the sandbox memory
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* (ram_buf) from this image, so that the new image can
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* have access to this. It also means that the original
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* memory filename passed to U-Boot will be left intact.
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*
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* @param dest Buffer containing executable image
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* @param size Size of buffer
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*/
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int os_jump_to_image(const void *dest, int size);
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/**
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* os_find_u_boot() - Determine the path to U-Boot proper
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*
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* This function is intended to be called from within sandbox SPL. It uses
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* a few heuristics to find U-Boot proper. Normally it is either in the same
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* directory, or the directory above (since u-boot-spl is normally in an
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* spl/ subdirectory when built).
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*
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* @fname: Place to put full path to U-Boot
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* @maxlen: Maximum size of @fname
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* @return 0 if OK, -NOSPC if the filename is too large, -ENOENT if not found
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*/
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int os_find_u_boot(char *fname, int maxlen);
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/**
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* os_spl_to_uboot() - Run U-Boot proper
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*
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* When called from SPL, this runs U-Boot proper. The filename is obtained by
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* calling os_find_u_boot().
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*
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* @fname: Full pathname to U-Boot executable
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* @return 0 if OK, -ve on error
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*/
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int os_spl_to_uboot(const char *fname);
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/**
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* Read the current system time
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*
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* This reads the current Local Time and places it into the provided
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* structure.
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*
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* @param rt Place to put system time
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*/
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void os_localtime(struct rtc_time *rt);
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#endif
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