mirror of
https://github.com/fish-shell/fish-shell
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257 lines
5.8 KiB
C
257 lines
5.8 KiB
C
/** \file util.h
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Generic utilities library.
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All containers in this library except strinb_buffer_t are written
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so that they don't allocate any memory until the first element is
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inserted into them. That way it is known to be very cheap to
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initialize various containers at startup, supporting the fish
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notion of doing as much lazy initalization as possible.
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*/
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#ifndef FISH_UTIL_H
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#define FISH_UTIL_H
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#include <wchar.h>
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#include <stdarg.h>
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#include <unistd.h>
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/**
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Typedef for a generic function pointer
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*/
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typedef void (*func_ptr_t)();
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/**
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A union of all types that can be stored in an array_list_t. This is
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used to make sure that the pointer type can fit whatever we want to
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insert.
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*/
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typedef union
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{
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/**
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long value
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*/
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long long_val;
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/**
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pointer value
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*/
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void *ptr_val;
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/**
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function pointer value
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*/
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func_ptr_t func_val;
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}
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anything_t;
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/**
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Data structure for an automatically resizing dynamically allocated
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priority queue. A priority queue allows quick retrieval of the
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smallest element of a set (This implementation uses O(log n) time).
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This implementation uses a heap for storing the queue.
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*/
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typedef struct priority_queue
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{
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/** Array contining the data */
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void **arr;
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/** Number of elements*/
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int count;
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/** Length of array */
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int size;
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/** Comparison function */
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int (*compare)(void *e1, void *e2);
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}
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priority_queue_t;
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/**
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Linked list node.
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*/
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typedef struct _ll_node
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{
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/** Next node */
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struct _ll_node *next, /** Previous node */ *prev;
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/** Node data */
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void *data;
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}
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ll_node_t;
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/**
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Buffer for concatenating arbitrary data.
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*/
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typedef struct buffer
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{
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char *buff; /**<data buffer*/
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size_t length; /**< Size of buffer */
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size_t used; /**< Size of data in buffer */
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}
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buffer_t;
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/**
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String buffer struct. An autoallocating buffer used for
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concatenating strings. This is really just a buffer_t.
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*/
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typedef buffer_t string_buffer_t;
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/**
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Set the out-of-memory handler callback function. If a memory
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allocation fails, this function will be called.
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*/
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void (*util_set_oom_handler( void (*h)(void *) ))(void *);
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/**
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This is a possible out of memory handler that will kill the current
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process in response to any out of memory event, while also printing
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an error message describing what allocation failed.
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This is the default out of memory handler.
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*/
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void util_die_on_oom( void *p );
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/**
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Returns the larger of two ints
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*/
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int maxi( int a, int b );
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/**
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Returns the smaller of two ints
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*/
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int mini( int a, int b );
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/**
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Compares two wide character strings with an (arguably) intuitive
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ordering.
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This function tries to order strings in a way which is intuitive to
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humans with regards to sorting strings containing numbers.
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Most sorting functions would sort the strings 'file1.txt'
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'file5.txt' and 'file12.txt' as:
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file1.txt
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file12.txt
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file5.txt
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This function regards any sequence of digits as a single entity
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when performing comparisons, so the output is instead:
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file1.txt
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file5.txt
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file12.txt
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Which most people would find more intuitive.
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This won't return the optimum results for numbers in bases higher
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than ten, such as hexadecimal, but at least a stable sort order
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will result.
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This function performs a two-tiered sort, where difference in case
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and in number of leading zeroes in numbers only have effect if no
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other differences between strings are found. This way, a 'file1'
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and 'File1' will not be considered identical, and hence their
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internal sort order is not arbitrary, but the names 'file1',
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'File2' and 'file3' will still be sorted in the order given above.
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*/
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int wcsfilecmp( const wchar_t *a, const wchar_t *b );
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/*
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String buffer functions
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*/
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/**
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Initialize the specified string_buffer
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*/
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void sb_init( string_buffer_t * );
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/**
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Allocate memory for storing a stringbuffer and init it
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*/
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string_buffer_t *sb_new();
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/**
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Append a part of a string to the buffer.
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*/
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void sb_append_substring( string_buffer_t *, const wchar_t *, size_t );
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/**
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Append a character to the buffer.
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*/
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void sb_append_char( string_buffer_t *, wchar_t );
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/**
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Append all specified items to buffer.
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*/
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#define sb_append( sb,... ) sb_append_internal( sb, __VA_ARGS__, NULL )
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/**
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Append a null terminated list of strings to the buffer.
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Example:
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sb_append2( my_buff, L"foo", L"bar", NULL );
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Do not forget to cast the last 0 to (void *), or you might encounter errors on 64-bit platforms!
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*/
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__sentinel void sb_append_internal( string_buffer_t *, ... );
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/**
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Append formated string data to the buffer. This function internally
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relies on \c vswprintf, so any filter options supported by that
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function is also supported by this function.
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*/
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int sb_printf( string_buffer_t *buffer, const wchar_t *format, ... );
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/**
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Vararg version of sb_printf.
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*/
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int sb_vprintf( string_buffer_t *buffer, const wchar_t *format, va_list va_orig );
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/**
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Destroy the buffer and free its memory
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*/
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void sb_destroy( string_buffer_t * );
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/**
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Completely truncate the buffer. This will not deallocate the memory
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used, it will only set the contents of the string to L"\\0".
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*/
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void sb_clear( string_buffer_t * );
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/**
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Truncate the string to the specified number of characters. This
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will not deallocate the memory used.
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*/
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void sb_truncate( string_buffer_t *, int chars_left );
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/**
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Return the number of characters in the string
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*/
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ssize_t sb_length( string_buffer_t * );
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/*
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Buffer functions
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*/
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/**
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Initialize the specified buffer_t
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*/
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void b_init( buffer_t *b);
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/**
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Destroy the specified buffer_t
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*/
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void b_destroy( buffer_t *b );
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/**
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Add data of the specified length to the specified buffer_t
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\return 0 on error, non-zero otherwise
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*/
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int b_append( buffer_t *b, const void *d, ssize_t len );
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/**
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Get the current time in microseconds since Jan 1, 1970
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*/
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long long get_time();
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#endif
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