version 1.22.2.14, 2012/07/31 15:58:08
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version 1.31.2.4, 2013/06/25 08:18:57
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Line 12 terms:
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Line 12 terms:
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All of the documentation and software included in the ELWIX and AITNET |
All of the documentation and software included in the ELWIX and AITNET |
Releases is copyrighted by ELWIX - Sofia/Bulgaria <info@elwix.org> |
Releases is copyrighted by ELWIX - Sofia/Bulgaria <info@elwix.org> |
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Copyright 2004, 2005, 2006, 2007, 2008, 2009, 2010, 2011, 2012 | Copyright 2004, 2005, 2006, 2007, 2008, 2009, 2010, 2011, 2012, 2013 |
by Michael Pounov <misho@elwix.org>. All rights reserved. |
by Michael Pounov <misho@elwix.org>. All rights reserved. |
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Redistribution and use in source and binary forms, with or without |
Redistribution and use in source and binary forms, with or without |
Line 50 SUCH DAMAGE.
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Line 50 SUCH DAMAGE.
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#define COMPAT_43TTY |
#define COMPAT_43TTY |
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#include <assert.h> |
#include <assert.h> |
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#include <syslog.h> |
#include <openssl/evp.h> |
#include <openssl/evp.h> |
#include <openssl/aes.h> |
#include <openssl/aes.h> |
#include <sys/tty.h> |
#include <sys/tty.h> |
#include <sys/ioctl_compat.h> |
#include <sys/ioctl_compat.h> |
#include <sys/socket.h> |
#include <sys/socket.h> |
#include <sys/un.h> |
#include <sys/un.h> |
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#include <sys/uio.h> |
#include <net/if_dl.h> |
#include <net/if_dl.h> |
#include <netinet/in.h> |
#include <netinet/in.h> |
#include <atree.h> |
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#include <ampool.h> |
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#ifndef STRSIZ |
#ifndef STRSIZ |
#define STRSIZ 256 |
#define STRSIZ 256 |
#endif |
#endif |
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#ifndef be16toh |
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#define be16toh betoh16 |
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#endif |
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#ifndef be32toh |
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#define be32toh betoh32 |
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#endif |
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#ifndef be64toh |
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#define be64toh betoh64 |
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#endif |
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#ifndef le16toh |
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#define le16toh letoh16 |
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#endif |
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#ifndef le32toh |
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#define le32toh letoh32 |
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#endif |
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#ifndef le64toh |
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#define le64toh letoh64 |
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#endif |
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#define IO_SYSM 0 |
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#define IO_MPOOL 1 |
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#define VACUUM_LEFT 1 |
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#define VACUUM_BETWEEN 2 |
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/* AIT arrays */ |
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typedef void ** sarr_seg_t; |
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typedef struct _tagSplitArray { |
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int sarr_num; |
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int sarr_seg; |
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int sarr_siz; |
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sarr_seg_t *sarr_data; |
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} sarr_t; |
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typedef struct _tagArray { |
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int arr_last; |
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int arr_num; |
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void **arr_data; |
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} array_t; |
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/* AIT RPC variables and managment */ |
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typedef enum { |
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empty, ptr, data, /* empty -> variable is not set; ptr -> void*; data -> data after struct */ |
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buffer, string, blob, /* buffer -> uint8_t*; string -> int8_t*; blob -> uint32_t blobID(+socket); */ |
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f32, f64, /* float -> f32; double -> f64 */ |
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u8, u16, u32, u64, /* unsigned integers ... */ |
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i8, i16, i32, i64, /* integers ... */ |
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} ait_type_t; |
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typedef struct { |
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uint8_t val_type; |
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union { |
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struct { |
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uint8_t val_in:1; |
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uint8_t val_be:1; |
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uint8_t val_le:1; |
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uint8_t val_pad:5; |
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}; |
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uint8_t val_opt; |
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}; |
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uint16_t val_key; |
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uint32_t val_len; |
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union { |
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uint64_t net; |
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void *ptr; |
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uint8_t *buffer; |
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int8_t *string; |
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uint32_t blob; |
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float f32; |
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double f64; |
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uint8_t u8; |
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uint16_t u16; |
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uint32_t u32; |
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uint64_t u64; |
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int8_t i8; |
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int16_t i16; |
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int32_t i32; |
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int64_t i64; |
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} val; |
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uint8_t val_data[0]; |
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} __packed ait_val_t; /* sizeof 16 bytes */ |
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#define AIT_TYPE(_vl) ((ait_type_t) (_vl)->val_type) |
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#define AIT_LEN(_vl) (_vl)->val_len |
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#define AIT_KEY(_vl) (_vl)->val_key |
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#define AIT_RAW(_vl) (_vl)->val.net |
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#define AIT_ADDR(_vl) (_vl)->val.ptr |
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#define AIT_IN(_vl) (_vl)->val_in |
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#define AIT_BE(_vl) (_vl)->val_be |
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#define AIT_LE(_vl) (_vl)->val_le |
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#define AIT_BLOB_CHUNKS(_vl, _n) (AIT_LEN((_vl)) / _n + (AIT_LEN((_vl)) % _n) ? 1 : 0) |
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#define AIT_ISEMPTY(_vl) (AIT_TYPE((_vl)) == empty) |
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#define AIT_GET_LIKE(_vl, _type) ((_type) AIT_ADDR((_vl))) |
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#define AIT_GET_PTR(_vl) (assert(AIT_TYPE((_vl)) == ptr), (_vl)->val.ptr) |
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#define AIT_GET_DATA(_vl) (assert(AIT_TYPE((_vl)) == data), (_vl)->val_data) |
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#define AIT_GET_BUF(_vl) (assert(AIT_TYPE((_vl)) == buffer), (_vl)->val.buffer) |
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#define AIT_GET_STR(_vl) (assert(AIT_TYPE((_vl)) == string), (char*) (_vl)->val.string) |
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#define AIT_GET_BLOB(_vl) (assert(AIT_TYPE((_vl)) == blob), (_vl)->val.blob) |
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#define AIT_GET_U8(_vl) (assert(AIT_TYPE((_vl)) == u8), (_vl)->val.u8) |
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#define AIT_GET_U16(_vl) (assert(AIT_TYPE((_vl)) == u16), (_vl)->val.u16) |
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#define AIT_GET_U32(_vl) (assert(AIT_TYPE((_vl)) == u32), (_vl)->val.u32) |
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#define AIT_GET_U64(_vl) (assert(AIT_TYPE((_vl)) == u64), (_vl)->val.u64) |
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#define AIT_GET_I8(_vl) (assert(AIT_TYPE((_vl)) == i8), (_vl)->val.i8) |
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#define AIT_GET_I16(_vl) (assert(AIT_TYPE((_vl)) == i16), (_vl)->val.i16) |
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#define AIT_GET_I32(_vl) (assert(AIT_TYPE((_vl)) == i32), (_vl)->val.i32) |
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#define AIT_GET_I64(_vl) (assert(AIT_TYPE((_vl)) == i64), (_vl)->val.i64) |
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#define AIT_GET_F32(_vl) (assert(AIT_TYPE((_vl)) == f32), (_vl)->val.f32) |
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#define AIT_GET_F64(_vl) (assert(AIT_TYPE((_vl)) == f64), (_vl)->val.f64) |
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#define AIT_SET_DATA(_vl, _p, _len) do { ait_val_t *__val = io_realloc((_vl), (sizeof(ait_val_t) + _len)); \ |
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if (__val) { \ |
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__val->val_type = data; AIT_LEN(__val) = _len; \ |
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if ((_p)) { \ |
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memcpy(__val->val_data, (_p), _len); \ |
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} \ |
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(_vl) = __val; \ |
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} \ |
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} while (0); |
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#define AIT_SET_PTR(_vl, _p, _len) do { ait_val_t *__val = (_vl); assert(__val); \ |
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__val->val_type = ptr; __val->val.ptr = _p; \ |
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AIT_LEN(__val) = _len; } while (0) |
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#define AIT_RE_BUF(_vl, _len) do { ait_val_t *__val = (_vl); assert(__val); \ |
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void *__ptr = io_realloc(AIT_GET_BUF(__val), _len); \ |
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if (__ptr) { \ |
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__val->val.buffer = __ptr; AIT_LEN(__val) = _len; \ |
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} } while (0) |
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#define AIT_SET_BUF2(_vl, _c, _len) do { ait_val_t *__val = (_vl); assert(__val); \ |
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__val->val.buffer = io_malloc(_len); \ |
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if (__val->val.buffer) { \ |
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__val->val_type = buffer; AIT_LEN(__val) = _len; \ |
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memset(__val->val.buffer, _c, _len); \ |
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} } while (0) |
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#define AIT_SET_BUF(_vl, _v, _len) do { ait_val_t *__val = (_vl); assert(__val); \ |
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__val->val.buffer = io_malloc(_len); \ |
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if (__val->val.buffer) { \ |
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__val->val_type = buffer; AIT_LEN(__val) = _len; \ |
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if ((_v)) \ |
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memcpy(__val->val.buffer, (_v), _len); \ |
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else \ |
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memset(__val->val.buffer, 0, _len); \ |
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} } while (0) |
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#define AIT_SET_STR(_vl, _v) do { ait_val_t *__val = (_vl); assert(__val); \ |
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__val->val_type = string; \ |
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if ((_v)) { \ |
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__val->val.string = (int8_t*) io_strdup((_v)); \ |
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AIT_LEN(__val) = strlen((const char*) \ |
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__val->val.string) + 1; \ |
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} else { \ |
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__val->val.string = NULL; \ |
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AIT_LEN(__val) = 0; \ |
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} \ |
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} while (0) |
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#define AIT_SET_STRSIZ(_vl, _len) do { ait_val_t *__val = (_vl); assert(__val); \ |
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__val->val.string = (int8_t*) io_malloc(_len); \ |
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if (__val->val.string) { \ |
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__val->val_type = string; AIT_LEN(__val) = _len; \ |
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memset(__val->val.string, 0, _len); \ |
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} \ |
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} while (0) |
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#define AIT_SET_STRCAT(_vl, _v) do { ait_val_t *__val = (_vl); assert(__val); \ |
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assert(AIT_TYPE(__val) == string); \ |
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if (!__val->val.string) \ |
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AIT_LEN(__val) = 1; \ |
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void *__p = io_realloc(__val->val.string, \ |
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AIT_LEN(__val) + strlen((_v))); \ |
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if (__p) { \ |
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AIT_LEN(__val) += strlen((_v)); \ |
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if (!__val->val.string) \ |
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memset(__p, 0, AIT_LEN(__val)); \ |
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__val->val.string = __p; \ |
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strlcat((char*) __val->val.string, (_v), \ |
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AIT_LEN(__val)); \ |
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} else \ |
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if (!__val->val.string) \ |
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AIT_LEN(__val) = 0; \ |
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} while (0) |
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#define AIT_SET_STRCPY(_vl, _v) do { ait_val_t *__val = (_vl); assert(__val); \ |
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assert(AIT_TYPE(__val) == string); \ |
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void *__p = io_realloc(__val->val.string, \ |
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strlen((_v)) + 1); \ |
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if (__p) { \ |
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__val->val.string = __p; \ |
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AIT_LEN(__val) = strlen((_v)) + 1; \ |
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strlcpy((char*) __val->val.string, (_v), \ |
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AIT_LEN(__val)); \ |
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} } while (0) |
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#define AIT_SET_STRLCPY(_vl, _v, _len) do { ait_val_t *__val = (_vl); assert(__val); \ |
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assert(AIT_TYPE(__val) == string); \ |
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void *__p = io_realloc(__val->val.string, _len); \ |
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if (__p) { \ |
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__val->val.string = __p; AIT_LEN(__val) = _len; \ |
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strlcpy((char*) __val->val.string, (_v), \ |
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AIT_LEN(__val)); \ |
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} } while (0) |
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#define AIT_SET_BLOB(_vl, _n, _len) do { ait_val_t *__val = (_vl); assert(__val); \ |
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__val->val_type = blob; __val->val.blob = _n; \ |
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AIT_LEN(__val) = _len; } while (0) |
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#define AIT_SET_BLOB2(_vl, _bv) do { ait_val_t *__val = (_vl); assert(__val); assert((_bv)); \ |
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__val->val_type = blob; AIT_LEN(__val) = \ |
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(_bv)->blob_len; \ |
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__val->val.blob = (_bv)->blob_var; } while (0) |
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#define AIT_NEW_BLOB(_vl, _len) AIT_SET_BLOB((_vl), 0, _len) |
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#define AIT_SET_U8(_vl, _n) do { ait_val_t *__val = (_vl); assert(__val); \ |
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__val->val_type = u8; __val->val.u8 = _n; \ |
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AIT_LEN(__val) = sizeof(uint8_t); } while (0) |
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#define AIT_SET_U16(_vl, _n) do { ait_val_t *__val = (_vl); assert(__val); \ |
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__val->val_type = u16; __val->val.u16 = _n; \ |
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AIT_LEN(__val) = sizeof(uint16_t); } while (0) |
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#define AIT_SET_U32(_vl, _n) do { ait_val_t *__val = (_vl); assert(__val); \ |
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__val->val_type = u32; __val->val.u32 = _n; \ |
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AIT_LEN(__val) = sizeof(uint32_t); } while (0) |
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#define AIT_SET_U64(_vl, _n) do { ait_val_t *__val = (_vl); assert(__val); \ |
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__val->val_type = u64; __val->val.u64 = _n; \ |
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AIT_LEN(__val) = sizeof(uint64_t); } while (0) |
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#define AIT_SET_I8(_vl, _n) do { ait_val_t *__val = (_vl); assert(__val); \ |
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__val->val_type = i8; __val->val.i8 = _n; \ |
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AIT_LEN(__val) = sizeof(int8_t); } while (0) |
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#define AIT_SET_I16(_vl, _n) do { ait_val_t *__val = (_vl); assert(__val); \ |
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__val->val_type = i16; __val->val.i16 = _n; \ |
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AIT_LEN(__val) = sizeof(int16_t); } while (0) |
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#define AIT_SET_I32(_vl, _n) do { ait_val_t *__val = (_vl); assert(__val); \ |
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__val->val_type = i32; __val->val.i32 = _n; \ |
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AIT_LEN(__val) = sizeof(int32_t); } while (0) |
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#define AIT_SET_I64(_vl, _n) do { ait_val_t *__val = (_vl); assert(__val); \ |
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__val->val_type = i64; __val->val.i64 = _n; \ |
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AIT_LEN(__val) = sizeof(int64_t); } while (0) |
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#define AIT_SET_F32(_vl, _n) do { ait_val_t *__val = (_vl); assert(__val); \ |
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__val->val_type = f32; __val->val.f32 = _n; \ |
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AIT_LEN(__val) = sizeof(float); } while (0) |
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#define AIT_SET_F64(_vl, _n) do { ait_val_t *__val = (_vl); assert(__val); \ |
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__val->val_type = f64; __val->val.f64 = _n; \ |
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AIT_LEN(__val) = sizeof(double); } while (0) |
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#define AIT_COPY_VAL(_vl, _v) do { memcpy((_vl), (_v), sizeof(ait_val_t)); \ |
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switch (AIT_TYPE((_vl))) { \ |
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case buffer: \ |
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AIT_SET_BUF((_vl), \ |
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AIT_GET_BUF((_v)), \ |
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AIT_LEN((_v))); \ |
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break; \ |
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case string: \ |
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AIT_SET_STR((_vl), \ |
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AIT_GET_STR((_v))); \ |
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break; \ |
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default: \ |
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break; \ |
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} \ |
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} while (0) |
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#define AIT_COPY_VAL2(_vl, _v) do { AIT_COPY_VAL((_vl), (_v)); \ |
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if (AIT_TYPE((_vl)) == data) \ |
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AIT_SET_DATA((_vl), AIT_GET_DATA((_v)), \ |
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AIT_LEN((_v))); \ |
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} while (0) |
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#define AIT_INIT_VAL(_vl) (memset((_vl), 0, sizeof(ait_val_t))) |
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#define AIT_INIT_VAL2(_vl, _t) do { \ |
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AIT_INIT_VAL((_vl)); \ |
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(_vl)->val_type = _t; \ |
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} while (0) |
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/* if attribute zeroCopy is set not execute io_free() */ |
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#define AIT_FREE_VAL(_vl) do { ait_val_t *__val = (_vl); assert(__val); \ |
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switch (AIT_TYPE(__val)) { \ |
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case buffer: \ |
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if (!__val->val_in && \ |
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__val->val.buffer) \ |
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io_free(__val->val.buffer); \ |
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__val->val.buffer = NULL; \ |
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break; \ |
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case string: \ |
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if (!__val->val_in && \ |
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__val->val.string) \ |
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io_free(__val->val.string); \ |
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__val->val.string = NULL; \ |
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break; \ |
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default: \ |
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break; \ |
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} \ |
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__val->val_type = empty; \ |
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__val->val_opt ^= __val->val_opt; \ |
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AIT_LEN(__val) = 0; \ |
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AIT_KEY(__val) = 0; \ |
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} while (0) |
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#define AIT_ZERO_VAL(_vl) do { ait_val_t *__val = (_vl); assert(__val); \ |
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switch (AIT_TYPE(__val)) { \ |
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case buffer: \ |
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case string: \ |
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if (__val->val.buffer) \ |
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memset(__val->val.buffer, 0, \ |
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AIT_LEN(__val)); \ |
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break; \ |
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default: \ |
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__val->val.net = 0LL; \ |
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break; \ |
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} \ |
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AIT_KEY(__val) = 0; \ |
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} while (0) |
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#define AIT_ZERO_VAL2(_vl) do { assert((_vl)); \ |
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if (AIT_TYPE((_vl)) == data) \ |
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memset((_vl)->val_data, 0, AIT_LEN((_vl))); \ |
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} while (0) |
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struct io_ether_addr { |
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u_int8_t ether_addr_octet[6]; |
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}; |
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typedef struct io_ether_addr io_ether_addr_t; |
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typedef union { |
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struct sockaddr_storage ss; |
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struct sockaddr sa; |
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struct sockaddr_un sun; |
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struct sockaddr_in sin; |
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struct sockaddr_in6 sin6; |
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struct sockaddr_dl sdl; |
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} io_sockaddr_t; |
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#define IO_SOCKADDR_INIT { .ss = { 0 } } |
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#define io_align(x, a) (((x) + (a)) & ~(a)) |
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// io_GetErrno() Get error code of last operation |
// io_GetErrno() Get error code of last operation |
inline int io_GetErrno(); | int io_GetErrno(); |
// io_GetError() Get error text of last operation |
// io_GetError() Get error text of last operation |
inline const char *io_GetError(); | const char *io_GetError(); |
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// io_mm_inuse() Check for memory management model |
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inline int io_mm_inuse(); |
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/* |
/* |
* ioLibInit() - Init libaitio library memory management |
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* |
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* @mm = memory management (IO_SYSM or IO_MPOOL) |
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* @maxmem = memory limit |
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* return: -1 error or !=-1 used memory management model |
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*/ |
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inline int ioLibInit(int mm, unsigned long maxmem); |
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/* |
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* ioLibFini() - Finish libaitio library memory management |
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* |
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* return: none |
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*/ |
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inline void ioLibFini(); |
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/* memory management hooks */ |
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extern void *(*io_malloc)(size_t); |
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extern void *(*io_calloc)(size_t, size_t); |
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extern void *(*io_realloc)(void*, size_t); |
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extern char *(*io_strdup)(const char*); |
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extern void (*io_free)(void*); |
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/* |
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* io_ether_ntoa() - Convert ethernet address to string |
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* |
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* @n = ethernet address structure, like struct ether_addr |
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* @a = string |
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* @len = string length |
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* return: NULL error or !=NULL string a |
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*/ |
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inline char *io_ether_ntoa(const struct io_ether_addr *n, char * __restrict a, int len); |
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/* |
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* io_ether_aton() - Convert string to ethernet address |
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* |
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* @a = string |
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* @e = ethernet address structure, like struct ether_addr |
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* return: NULL error or !=NULL ethernet address structure |
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*/ |
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inline struct io_ether_addr *io_ether_aton(const char *a, struct io_ether_addr *e); |
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/* |
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* io_n2port() - Extract port from network structure |
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* |
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* @addr = Address |
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* return: 0 not supported family type or port number |
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*/ |
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inline u_short io_n2port(io_sockaddr_t * __restrict addr); |
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/* |
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* io_n2addr() - Extract address from network structure |
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* |
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* @addr = Address |
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* @val = Value for store string address |
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* return: NULL error or !=NULL string address from val |
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*/ |
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const char *io_n2addr(io_sockaddr_t * __restrict addr, ait_val_t * __restrict val); |
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/* |
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* io_gethostbyname() - Get host and port and make network structure |
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* |
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* @psHost = Hostname |
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* @port = Port |
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* @addr = Network address structure |
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* return: NULL error or !=NULL network structure |
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*/ |
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io_sockaddr_t *io_gethostbyname(const char *psHost, unsigned short port, |
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io_sockaddr_t * __restrict addr); |
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/* |
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* io_vars2buffer() - Marshaling data from array with variables to buffer |
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* |
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* @buf = Buffer |
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* @buflen = Size of buffer |
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* @vars = Variable array |
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* return: -1 error, 0 nothing done or >0 size of marshaled data |
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*/ |
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inline int io_vars2buffer(unsigned char * __restrict buf, int buflen, |
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array_t * __restrict vars); |
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/* |
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* io_buffer2vars() - De-marshaling data from buffer to array with variables |
|
* |
|
* @buf = Buffer |
|
* @buflen = Size of buffer |
|
* @vnum = Number of variables into buffer |
|
* @zcpy = Zero-copy for variables, if !=0 don't use io_arrayFree() for free variables and |
|
*DON'T MODIFY OR DESTROY BUFFER*. =0 call io_arrayFree() before io_arrayDestroy() |
|
* return: =NULL error, !=NULL allocated variable array, after use must free with io_arrayDestroy() |
|
*/ |
|
inline array_t *io_buffer2vars(unsigned char * __restrict buf, int buflen, int vnum, int zcpy); |
|
/* |
|
* io_vars2map() - Marshaling data from array with variables to memory map |
|
* |
|
* @buf = Buffer |
|
* @buflen = Size of buffer |
|
* @vars = Variable array |
|
* return: -1 error, 0 nothing done or >0 size of marshaled data |
|
*/ |
|
inline int io_vars2map(unsigned char * __restrict buf, int buflen, |
|
array_t * __restrict vars); |
|
/* |
|
* io_map2vars() - De-marshaling data from memory map to array with variables |
|
* |
|
* @buf = Buffer |
|
* @buflen = Size of buffer |
|
* @vnum = Number of variables into buffer |
|
* @zcpy = Zero-copy for variables, if !=0 don't use io_arrayFree() for free variables and |
|
*DON'T MODIFY OR DESTROY BUFFER*. =0 call io_arrayFree() before io_arrayDestroy() |
|
* return: =NULL error, !=NULL allocated variable array, after use must free with io_arrayDestroy() |
|
*/ |
|
inline array_t *io_map2vars(unsigned char * __restrict buf, int buflen, int vnum, int zcpy); |
|
|
|
/* |
|
* io_allocVar() - Allocate memory for variable |
|
* |
|
* return: NULL error or new variable, after use free variable with io_freeVar() |
|
*/ |
|
inline ait_val_t *io_allocVar(void); |
|
/* |
|
* io_freeVar() - Free allocated memory for variable |
|
* |
|
* @val = Variable |
|
* return: none |
|
*/ |
|
inline void io_freeVar(ait_val_t ** __restrict val); |
|
/* |
|
* io_makeVar() - Allocate memory and fill variable |
|
* |
|
* @type = type of variable |
|
* @... = arg1 is value of variable |
|
* @... = arg2 is length of variabla. Not required for numbers and strings! |
|
* return: NULL error or new variable, after use free variable with io_freeVar() |
|
*/ |
|
ait_val_t *io_makeVar(ait_type_t type, ...); |
|
/* |
|
* io_allocVars() - Allocate ait_val_t array |
|
* |
|
* @varnum = Number of variables |
|
* return: =NULL error or !=NULL allocated array |
|
*/ |
|
inline array_t *io_allocVars(int varnum); |
|
/* |
|
* io_clrVars() - Clear ait_val_t elements from array |
|
* |
|
* @vars = Variable array |
|
* return: -1 error or size of array |
|
*/ |
|
inline int io_clrVars(array_t * __restrict vars); |
|
/* |
|
* io_freeVars() - Free ait_val_t array |
|
* |
|
* @vars = Variable array |
|
* return: none |
|
*/ |
|
inline void io_freeVars(array_t ** __restrict vars); |
|
/* |
|
* io_getVars() - Get ait_val_t element from array and if not exists allocate it |
|
* |
|
* @vars = Variable array |
|
* @n = index of variable into array |
|
* return: NULL error or !=NULL ait_val_t element |
|
*/ |
|
inline ait_val_t *io_getVars(array_t ** __restrict vars, int n); |
|
/* |
|
* io_sortVarsByKey() - Sorting array with variables by key |
|
* |
|
* @vars = Variable array |
|
* @order = Sort order. If =0 ascend or !=0 descend |
|
* return: none |
|
*/ |
|
inline void io_sortVarsByKey(array_t * __restrict vars, int order); |
|
/* |
|
* io_sortVarsByVal() - Sorting array with variables by value |
|
* |
|
* @vars = Variable array |
|
* @order = Sort order. If =0 ascend or !=0 descend |
|
* @cmp = Custom compare function for sorting. If =NULL compare by value |
|
* return: none |
|
*/ |
|
inline void io_sortVarsByVal(array_t * __restrict vars, int order, |
|
int (*cmp)(const void*, const void*)); |
|
/* |
|
* io_findKeyVars() - Find variable by key from array |
|
* |
|
* @vars = Variables |
|
* @key = Search key |
|
* return: NULL error or not found, !=NULL valid element |
|
*/ |
|
ait_val_t *io_findKeyVars(array_t * __restrict vars, u_short key); |
|
|
|
|
|
/* |
|
* ioPromptRead() - Read data from input h[0] with prompt to output h[1] |
* ioPromptRead() - Read data from input h[0] with prompt to output h[1] |
* |
* |
* @h = file handles h[0] = input, h[1] = output, if NULL use stdin, stdout |
* @h = file handles h[0] = input, h[1] = output, if NULL use stdin, stdout |
Line 611 int ioPromptRead(int *h, const char *csPrompt, char *
|
Line 95 int ioPromptRead(int *h, const char *csPrompt, char *
|
*/ |
*/ |
int ioPromptPassword(int *h, const char *csPrompt, char * __restrict psPass, int passLen, int confirm); |
int ioPromptPassword(int *h, const char *csPrompt, char * __restrict psPass, int passLen, int confirm); |
|
|
/* |
|
* ioRegexVerify() - Function for verify data match in regex expression |
|
* |
|
* @csRegex = Regulare expression pattern |
|
* @csData = Data for check and verify |
|
* @startPos = Return start positions |
|
* @endPos = Return end positions |
|
* return: NULL not match or error; !=NULL begin of matched data |
|
*/ |
|
const char *ioRegexVerify(const char *csRegex, const char *csData, int *startPos, int *endPos); |
|
/* |
|
* ioRegexGet() - Function for get data match in regex expression |
|
* |
|
* @csRegex = Regulare expression pattern |
|
* @csData = Data from get |
|
* @psString = Returned string if match |
|
* @strLen = Length of string |
|
* return: 0 not match; >0 count of returned chars |
|
*/ |
|
int ioRegexGet(const char *csRegex, const char *csData, char * __restrict psString, int strLen); |
|
/* |
|
* ioRegexReplace() - Function for replace data match in regex expression with newdata |
|
* |
|
* @csRegex = Regulare expression pattern |
|
* @csData = Source data |
|
* @csNew = Data for replace |
|
* return: NULL not match or error; !=NULL allocated new string, must be io_free after use! |
|
*/ |
|
char *ioRegexReplace(const char *csRegex, const char *csData, const char *csNew); |
|
|
|
/* |
/* |
* ioStrAst() - Function for evaluate string like asterisk variable "{text[:[-]#[:#]]}" |
|
* |
|
* @csString = Input string |
|
* return: NULL error, !=NULL Allocated new string evaluated from input string, must be io_free() |
|
*/ |
|
char *ioStrAst(const char *csString); |
|
|
|
/* |
|
* io_UnquotStr() - Remove quots from input text string |
|
* |
|
* @psLine = Text string |
|
* return: 0 nothing to do; 1 successful unquoted string |
|
*/ |
|
inline int io_UnquotStr(char * __restrict psLine); |
|
/* |
|
* io_LTrimStr() - Remove left whitespaces from text string |
|
* |
|
* @psLine = Text string |
|
* return: 0 nothing to do; !=0 Removed bytes |
|
*/ |
|
inline int io_LTrimStr(char * __restrict psLine); |
|
/* |
|
* io_RTrimStr() - Remove right whitespaces from text string |
|
* |
|
* @psLine = Text string |
|
* return: 0 nothing to do; !=0 Removed bytes |
|
*/ |
|
inline int io_RTrimStr(char * __restrict psLine); |
|
/* |
|
* io_TrimStr() - Remove left and right whitespaces from text string |
|
* |
|
* @psLine = Text string |
|
* return: 0 nothing to do; !=0 Removed bytes |
|
*/ |
|
inline int io_TrimStr(char * __restrict psLine); |
|
/* |
|
* io_Ch2Hex() - Convert from Char string to Hex string |
|
* |
|
* @psLine = Text string |
|
* @lineLen = Length of Text string |
|
* return: NULL nothing to do or error; !=0 Allocated new converted data without term\0 (must be io_free) |
|
*/ |
|
inline unsigned char *io_Ch2Hex(unsigned char *psLine, int lineLen); |
|
/* |
|
* io_Hex2Ch() - Convert from Hex string to Char string |
|
* |
|
* @psLine = Text string |
|
* @lineLen = Length of Text string |
|
* return: NULL nothing to do or error; !=0 Allocated new converted string(must be io_free) |
|
*/ |
|
inline char *io_Hex2Ch(unsigned char *psLine, int lineLen); |
|
|
|
/* |
|
* io_Path2File() - Parse and make path/filename pair |
|
* |
|
* @csArgs = Input argument line |
|
* @psPath = Output Path, if ==NULL path not returned |
|
* @pathLen = Size of path array |
|
* @psFile = Output File |
|
* @fileLen = Size of file array |
|
* return: 0 error format; -1 error:: can`t read; >0 ok, number of readed items |
|
*/ |
|
inline int |
|
io_Path2File(const char * __restrict csArgs, char * __restrict psPath, |
|
int pathLen, char * __restrict psFile, int fileLen); |
|
|
|
/* |
|
* io_arrayInit() - Create and initialize dynamic array |
|
* |
|
* @numItems = Number of Items |
|
* return: NULL error, != NULL allocated memory for array |
|
*/ |
|
inline array_t *io_arrayInit(int numItems); |
|
/* |
|
* io_arrayDestroy() - Free and destroy dynamic array |
|
* |
|
* @parr = Array |
|
* return: none |
|
*/ |
|
inline void io_arrayDestroy(array_t ** __restrict parr); |
|
/* |
|
* io_arrayFree() - Free all data in dynamic array items |
|
* (WARNING! If assign static array dont use this!!!) |
|
* |
|
* @arr = Array |
|
* return: none |
|
*/ |
|
inline void io_arrayFree(array_t * __restrict arr); |
|
/* |
|
* io_arrayFrom() - Create and fill array from array with pointers |
|
* |
|
* @pargv = Array with pointers |
|
* @argc = Number of Items, if 0 walk through argv and stop when reach NULL item |
|
* return: NULL error, != NULL allocated new array |
|
*/ |
|
inline array_t *io_arrayFrom(const char *** __restrict pargv, int argc); |
|
/* |
|
* io_arrayTo() - Create and fill array with pointers from dynamic array |
|
* |
|
* @arr = Array |
|
* return: NULL error, != NULL allocated memory for array, NULL terminated |
|
*/ |
|
inline char **io_arrayTo(array_t * __restrict arr); |
|
/* |
|
* io_arrayLen() - Get last used element in dynamic array (array Length) |
|
* |
|
* @arr = Array |
|
* return: -1 empty or >-1 position of last used element |
|
*/ |
|
inline int io_arrayLen(array_t * __restrict arr); |
|
/* |
|
* io_arrayConcat() Concat source array to destination array |
|
* |
|
* @dest = Destination array |
|
* @src = Source array |
|
* return: -1 error; >0 new count of destination array |
|
*/ |
|
int io_arrayConcat(array_t * __restrict dest, array_t * __restrict src); |
|
/* |
|
* io_arrayCopy() Copy source array to destination array |
|
* |
|
* @dest = Destination array, after use free with io_arrayDestroy() |
|
* @src = Source array |
|
* return: -1 error; >0 count of destination array |
|
*/ |
|
int io_arrayCopy(array_t ** __restrict dest, array_t * __restrict src); |
|
/* |
|
* io_arrayGrow() - Grow/Shrink dynamic array, Use with care when it shrink!!! |
|
* |
|
* @arr = Array |
|
* @newNumItems = Number of Items |
|
* @freeShrink = Free elements before shrink array |
|
* return: -1 error, 0 ok |
|
*/ |
|
int io_arrayGrow(array_t * __restrict arr, int newNumItems, int freeShrink); |
|
/* |
|
* io_arrayVacuum() - Vacuum dynamic array, empty elements will be deleted |
|
* |
|
* @arr = Array |
|
* @fromWhere = 1 begin, 2 ALL empty elements |
|
* return: -1 error, 0 ok |
|
*/ |
|
int io_arrayVacuum(array_t * __restrict arr, int fromWhere); |
|
|
|
#define io_arraySize(_arr) ((_arr) ? (_arr)->arr_num : 0) |
|
#define io_arrayLast(_arr) (io_arraySize((_arr)) ? (_arr)->arr_last : -1) |
|
#define io_arrayZero(_arr) (assert((_arr)), memset((_arr)->arr_data, 0, \ |
|
io_arraySize((_arr)) * sizeof(void*))) |
|
|
|
#define io_arrayGet2(_arr, _d) (assert((_arr) && (_arr)->arr_num > _d), ((_arr)->arr_data + _d)) |
|
#define io_arrayGet(_arr, _d) (assert((_arr) && (_arr)->arr_num > _d), (_arr)->arr_data[_d]) |
|
#define io_array(_arr, _d, _type) (assert((_arr) && (_arr)->arr_num > _d), \ |
|
((_type) (_arr)->arr_data[_d])) |
|
#define io_arraySet(_arr, _d, _ptr) do { \ |
|
assert((_arr) && (_arr)->arr_num > _d); \ |
|
if ((_arr)->arr_last < _d) \ |
|
(_arr)->arr_last = _d; \ |
|
(_arr)->arr_data[_d] = (void*) (_ptr); \ |
|
} while (0) |
|
#define io_arrayDel(_arr, _d, _fri) do { \ |
|
assert((_arr) && (_arr)->arr_num > _d); \ |
|
if (_fri && (_arr)->arr_data[_d]) \ |
|
free((_arr)->arr_data[_d]); \ |
|
(_arr)->arr_data[_d] = NULL; \ |
|
} while (0) |
|
|
|
/* |
|
* io_arrayElem() - Always GET/PUT element into dynamic array, if not enough elements grow array |
|
* |
|
* @arr = Array |
|
* @n = Position |
|
* @data = Element, if set NULL GET element at position or !=NULL PUT element at position |
|
* return: -1 error or !=-1 return element at position |
|
*/ |
|
inline void *io_arrayElem(array_t * __restrict arr, int n, void *data); |
|
/* |
|
* io_arrayPush() - Push element into dynamic array like stack manner, place at first empty position |
|
* |
|
* @arr = Array |
|
* @data = Element, if set NULL return only first empty position |
|
* @mayGrow = Array may to grow, if not enough room for new element |
|
* return: -1 not found empty position, array is full!, >-1 return position of stored element into array |
|
*/ |
|
inline int io_arrayPush(array_t * __restrict arr, void **data, int mayGrow); |
|
/* |
|
* io_arrayPop() - Pop element from dynamic array like stack manner, last used position |
|
* |
|
* @arr = Array |
|
* @data = Element, if set NULL return only last used position |
|
* @delAfter = Delete after Pop element, !=0 delete element from array after return data |
|
* return: -1 not found used position, array is empty!, >-1 return element position |
|
*/ |
|
inline int io_arrayPop(array_t * __restrict arr, void ** __restrict data, int delAfter); |
|
|
|
/* |
|
* io_argsNum() - Parse and calculate number of arguments |
|
* |
|
* @csArgs = Input arguments line |
|
* @csDelim = Delimiter(s) for separate |
|
* return: 0 error format; -1 error:: can`t read; >0 ok, number of items |
|
*/ |
|
inline int io_argsNum(const char *csArgs, const char *csDelim); |
|
|
|
/* |
|
* io_arrayMake() - Parse and make array from arguments ... (input string will be modified!!! |
|
* and output array must be free with io_arrayDestroy() after use!) |
|
* |
|
* @psArgs = Input arguments line, after execute string is modified!!! |
|
* @nargs = Maximum requested count of arguments from input string psArgs, if 0 all psArgs |
|
* @csDelim = Delimiter(s) for separate |
|
* @parr = Output array of arguments ... (must be io_free with io_arrayDestroy() after use!) |
|
* return: 0 error format; -1 error:: can`t read; >0 ok, number of readed items |
|
*/ |
|
int io_arrayMake(char * __restrict psArgs, int nargs, const char *csDelim, |
|
array_t ** __restrict parr); |
|
|
|
/* |
|
* io_MakeAV() - Parse and make attribute/value pair |
|
* |
|
* @csArgs = Input argument line |
|
* @csDelim = Delimiter for separate |
|
* @psAttr = Output Attribute |
|
* @attrLen = Size of attribute array |
|
* @psValue = Output Value, if ==NULL this element not present value or not wanted for return |
|
* @valLen = Size of value array |
|
* return: 0 error format; -1 error:: can`t read; >0 ok, number of readed items |
|
*/ |
|
int io_MakeAV(const char * __restrict csArgs, const char *csDelim, |
|
char * __restrict psAttr, int attrLen, char * __restrict psValue, int valLen); |
|
/* |
|
* io_MakeAV2() Parse and make attribute/value pair over input string |
|
* |
|
* @csArgs = Input argument line, will be modified! |
|
* @csDelim = Delimiter for separate |
|
* @psAttr = Output Attribute |
|
* @psValue = Output Value, if ==NULL this element not present value or not wanted for return |
|
* return: 0 error format; -1 error:: can`t read; >0 ok, number of readed items |
|
*/ |
|
int io_MakeAV2(char * __restrict psArgs, const char *csDelim, |
|
char ** __restrict psAttr, char ** __restrict psValue); |
|
|
|
/* |
|
* io_sarrInit() - Create and initialize dynamic split-order array |
|
* |
|
* @numItems = Number of Items |
|
* @segLen = Length of segment |
|
* return: NULL error, != NULL allocated memory for array |
|
*/ |
|
inline sarr_t *io_sarrInit(int numItems, int segLen); |
|
/* |
|
* io_sarrDestroy() - Free all data in dynamic split-order array and Destroy array |
|
* |
|
* @parr = Array |
|
* return: none |
|
*/ |
|
inline void io_sarrDestroy(sarr_t ** __restrict parr); |
|
/* |
|
* io_sarrGrow() - Grow/Shrink dynamic split-order array, Use with care when it shrink!!! |
|
* |
|
* @arr = Array |
|
* @newNumItems = Number of Items |
|
* return: -1 error, 0 ok |
|
*/ |
|
int io_sarrGrow(sarr_t * __restrict arr, int newNumItems); |
|
/* |
|
* io_sarrVacuum() - Vacuum dynamic split-order array, empty segments will be freed |
|
* |
|
* @arr = Array |
|
* return: -1 error, >-1 freed segments |
|
*/ |
|
inline int io_sarrVacuum(sarr_t * __restrict arr); |
|
#define io_sarrSize(_arr) ((_arr) ? (_arr)->sarr_num : 0) |
|
#define io_sarrSeg(_arr) (assert((_arr)), (_arr)->sarr_seg) |
|
/* |
|
* io_sarrCopy() Copy source split array to destination split array |
|
* |
|
* @dest = Destination split array, after use free with io_sarrDestroy() |
|
* @src = Source split array |
|
* return: -1 error; >0 count of destination split array |
|
*/ |
|
int io_sarrCopy(sarr_t ** __restrict dest, sarr_t * __restrict src); |
|
/* |
|
* io_sarrGet() - Get element from dynamic split-order array |
|
* |
|
* @arr = Array |
|
* @idx = Index (warning 1st element is at position 1) |
|
* return: NULL not found, !=NULL element |
|
*/ |
|
inline void *io_sarrGet(sarr_t * __restrict arr, unsigned int idx); |
|
/* |
|
* io_sarrGet2() - Always get element from dynamic split-order array |
|
* Function automatic grow array. Good use for Hash tables! |
|
* |
|
* @arr = Array |
|
* @idx = Index (warning 1st element is at position 1) |
|
* return: NULL not found, !=NULL element |
|
*/ |
|
void *io_sarrGet2(sarr_t * __restrict arr, unsigned int idx); |
|
/* |
|
* io_sarrSet() - Set element to dynamic split-order array |
|
* |
|
* @arr = Array |
|
* @idx = Index (warning 1st element is at position 1) |
|
* @data = Value |
|
* return: NULL error or empty, !=NULL old value in element |
|
*/ |
|
inline void *io_sarrSet(sarr_t * __restrict arr, unsigned int idx, void *data); |
|
#define io_sarrDel(_arr, _idx) io_sarrSet((_arr), _idx, NULL) |
|
#define io_sarr(_arr, _idx, _type) (_type)io_sarrGet((_arr), _idx) |
|
/* |
|
* io_sarr2array() - Convert from split-order array to dynamic array |
|
* |
|
* @sa = split array |
|
* @sarrFree = after convert split array !=0 will be destroyed sarray |
|
* return: NULL error or != NULL new array |
|
*/ |
|
array_t *io_sarr2array(sarr_t ** __restrict sa, int sarrFree); |
|
/* |
|
* io_array2sarr() - Convert from dynamic array to split-order array |
|
* |
|
* @a = array |
|
* @segLen = Length of segment |
|
* @arrFree = after convert array !=0 will be destroyed |
|
* return: NULL error or != NULL new sarr |
|
*/ |
|
sarr_t *io_array2sarr(array_t ** __restrict a, int segLen, int arrFree); |
|
|
|
/* |
|
* io_CopyEnv() - Copy environment to new environment array; |
|
* |
|
* @oldenv = Environment array |
|
* return: NULL error; !=NULL Allocated new environment array(must be io_free) |
|
*/ |
|
char **io_CopyEnv(const char **oldenv); |
|
/* |
|
* io_ExecArgs() - Build exec arguments from other array |
|
* |
|
* @psProg = Program name for execute |
|
* @oldarg = Arguments array |
|
* return: NULL error; !=NULL Allocated execution array(must be io_free) |
|
*/ |
|
char **io_ExecArgs(const char *psProg, const char **oldarg); |
|
/* |
|
* io_FreeNullTerm() - Free dynamic allocated null terminated array with strings |
|
* |
|
* @arr = Pointer to array for free |
|
* return: none |
|
*/ |
|
inline void io_FreeNullTerm(char *** __restrict arr); |
|
|
|
/* |
|
* ioMkDir() - Function for racursive directory creation and validation |
* ioMkDir() - Function for racursive directory creation and validation |
* |
* |
* @csDir = Full directory path |
* @csDir = Full directory path |
Line 1011 int ioMkDir(const char *csDir, int mode);
|
Line 115 int ioMkDir(const char *csDir, int mode);
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int ioWatchDirLoop(const char *csDir, int (*callback)(const char *csName, int nOp)); |
int ioWatchDirLoop(const char *csDir, int (*callback)(const char *csName, int nOp)); |
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#ifdef AIO_OPS |
/* |
/* |
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* io_aiobulk() - AIO bulk R/W function |
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* |
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* @mode = Bulk wait mode |
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* @acbs = List of aiocb structures |
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* @nacb = Number of aiocb in list |
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* @sig = Event for completed operations, may be =NULL |
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* return: -1 error or 0 ok |
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*/ |
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int io_aiobulk(int mode, struct aiocb ** __restrict acbs, int nacb, |
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struct sigevent *sig); |
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#endif |
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/* |
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* io_rreadv() - Raw VFS bulk read function |
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* |
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* @fd = File handle |
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* @bufs = Read buffers |
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* @nbufs = Number of read buffers |
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* @offset = Read from position, if -1 read nbytes from current position |
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* @update = Update file handle position !0 |
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* return: -1 error or !=-1 readed bytes |
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*/ |
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int io_rreadv(int fd, struct iovec * __restrict bufs, int nbufs, off_t offset, |
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int update); |
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/* |
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* io_rwritev() - Raw VFS bulk write function |
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* |
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* @fd = File handle |
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* @bufs = Write buffers |
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* @nbufs = Number of write buffers |
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* @offset = Write to position, if -1 write nbytes to current position |
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* @update = Update file handle position !0 |
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* return: -1 error or !=-1 written bytes |
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*/ |
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int io_rwritev(int fd, struct iovec * __restrict bufs, int nbufs, off_t offset, |
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int update); |
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/* |
* io_rread() - Raw VFS read function |
* io_rread() - Raw VFS read function |
* |
* |
* @fd = File handle |
* @fd = File handle |
Line 1021 int ioWatchDirLoop(const char *csDir, int (*callback)(
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Line 162 int ioWatchDirLoop(const char *csDir, int (*callback)(
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* @update = Update file handle position !0 |
* @update = Update file handle position !0 |
* return: -1 error or !=-1 readed bytes |
* return: -1 error or !=-1 readed bytes |
*/ |
*/ |
inline int io_rread(int fd, void * __restrict buf, size_t nbytes, off_t offset, int update); | int io_rread(int fd, void * __restrict buf, size_t nbytes, off_t offset, |
| int update); |
/* |
/* |
* io_rwrite() - Raw VFS write function |
* io_rwrite() - Raw VFS write function |
* |
* |
Line 1030 inline int io_rread(int fd, void * __restrict buf, siz
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Line 172 inline int io_rread(int fd, void * __restrict buf, siz
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* @nbytes = Write bytes from buffer |
* @nbytes = Write bytes from buffer |
* @offset = Write at position, if -1 write nbytes from current position |
* @offset = Write at position, if -1 write nbytes from current position |
* @update = Update file handle position !0 |
* @update = Update file handle position !0 |
* return: -1 error or !=-1 writed bytes | * return: -1 error or !=-1 written bytes |
*/ |
*/ |
inline int io_rwrite(int fd, void * __restrict buf, size_t nbytes, off_t offset, int update); | int io_rwrite(int fd, void * __restrict buf, size_t nbytes, off_t offset, |
| int update); |
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/* Disk I/O helper macros */ |
/* Disk I/O helper macros */ |
#define io_read(f, b, n) io_rread(f, b, n, -1, 1) |
#define io_read(f, b, n) io_rread(f, b, n, -1, 1) |
#define io_write(f, b, n) io_rwrite(f, b, n, -1, 1) |
#define io_write(f, b, n) io_rwrite(f, b, n, -1, 1) |
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/* Debug helper macros */ |
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extern int io_Debug; |
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#define io_enableDEBUG int io_Debug |
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#define io_initDebug(x) (io_Debug = (x)) |
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#define io_incDebug (io_Debug++) |
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#define io_decDebug (io_Debug--) |
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/* Debug macros */ |
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#define ioVERBOSE(x) if ((x) <= io_Debug) |
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#define ioTRACE(x) if ((x) <= io_Debug) \ |
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syslog(LOG_DEBUG, "I'm in %s(%d)", __func__, __LINE__) |
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#define ioDEBUG(x, fmt, ...) do { \ |
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assert((fmt)); \ |
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char str[STRSIZ] = { 0 }; \ |
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snprintf(str, sizeof str, (fmt), ##__VA_ARGS__); \ |
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if ((x) <= io_Debug) \ |
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syslog(LOG_DEBUG, "Debug(%d):%s(%d): %s\n", \ |
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(x), __func__, __LINE__, str); \ |
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} while (0) |
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/* Logger macro */ |
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#define ioLOGGER(x, fmt, ...) do { \ |
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assert((fmt)); \ |
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char str[STRSIZ] = { 0 }; \ |
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snprintf(str, sizeof str, (fmt), ##__VA_ARGS__); \ |
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syslog((x), "Logger:%s(%d): %s\n", \ |
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__func__, __LINE__, str); \ |
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} while (0) |
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/* Error state macros */ |
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#define ioERROR(x, fmt, ...) do { \ |
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assert((fmt)); \ |
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char str[STRSIZ] = { 0 }; \ |
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snprintf(str, sizeof str, (fmt), ##__VA_ARGS__); \ |
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syslog(LOG_ERR, "Error:%s(%d): #%d - %s\n", \ |
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__func__, __LINE__, (x), str); \ |
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} while (0) |
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#define ioSYSERR(x) do { \ |
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if (x > 0 || errno) \ |
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syslog(LOG_ERR, "Error(sys):%s(%d): #%d - %s\n", \ |
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__func__, __LINE__, x > 0 ? x : errno, \ |
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strerror(x > 0 ? x : errno)); \ |
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} while (0) |
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#define ioLIBERR(ait) do { \ |
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if (ait##_GetErrno()) \ |
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syslog(LOG_ERR, "Error(lib):%s(%d): #%d - %s\n", \ |
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__func__, __LINE__, ait##_GetErrno(), \ |
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ait##_GetError()); \ |
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} while (0) |
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/* Crypto framework */ |
/* Crypto framework */ |
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/* |
/* |
Line 1098 extern int io_Debug;
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Line 189 extern int io_Debug;
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* |
* |
* @pInput = input buffer |
* @pInput = input buffer |
* @inLen = input buffer len |
* @inLen = input buffer len |
* @ppOutput = output allocated buffe, must be io_free after use | * @ppOutput = output allocated buffe, must be e_free after use |
* @Cipher = cipher engine, like EVP_bf_cbc() or etc... |
* @Cipher = cipher engine, like EVP_bf_cbc() or etc... |
* @pKey = key |
* @pKey = key |
* @pIV = IV, salt (8 bytes) |
* @pIV = IV, salt (8 bytes) |
Line 1113 int ioCipher(unsigned char *pInput, int inLen, unsigne
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Line 204 int ioCipher(unsigned char *pInput, int inLen, unsigne
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* |
* |
* @pInput = input buffer |
* @pInput = input buffer |
* @inLen = input buffer len |
* @inLen = input buffer len |
* @ppOutput = output allocated buffe, must be io_free after use | * @ppOutput = output allocated buffe, must be e_free after use |
* @pKey = key |
* @pKey = key |
* @pIV = IV, salt (8 bytes) |
* @pIV = IV, salt (8 bytes) |
* @nMode = Mode 0 - decrypting or 1 - encrypting |
* @nMode = Mode 0 - decrypting or 1 - encrypting |
Line 1126 int io_Blowfish(unsigned char *pInput, int inLen, unsi
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Line 217 int io_Blowfish(unsigned char *pInput, int inLen, unsi
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* |
* |
* @pInput = Input buffer with ASCII |
* @pInput = Input buffer with ASCII |
* @inLen = Input buffer data length |
* @inLen = Input buffer data length |
* @ppOutput = Output buffer with cipher data, must be io_free after use | * @ppOutput = Output buffer with cipher data, must be e_free after use |
* @pKey = Key |
* @pKey = Key |
* @IV = IVector/Nonce/Counter, Warning: IV must be variable, because we write there!!! |
* @IV = IVector/Nonce/Counter, Warning: IV must be variable, because we write there!!! |
* return: -1 error or >-1 how many cipher blocks proceeded |
* return: -1 error or >-1 how many cipher blocks proceeded |
Line 1146 int io_ctr_AES(unsigned char *pInput, int inLen, unsig
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Line 237 int io_ctr_AES(unsigned char *pInput, int inLen, unsig
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* @winz = winsize for terminal |
* @winz = winsize for terminal |
* return: -1 error or 0 ok |
* return: -1 error or 0 ok |
*/ |
*/ |
inline int ioAllocPTY(int *ptyfd, int *ttyfd, char * __restrict name, int namesiz, | int ioAllocPTY(int *ptyfd, int *ttyfd, char * __restrict name, int namesiz, |
struct termios * __restrict term, struct winsize * __restrict winz); |
struct termios * __restrict term, struct winsize * __restrict winz); |
/* |
/* |
* ioFreePTY() - Release PTY and TTY device |
* ioFreePTY() - Release PTY and TTY device |
Line 1155 inline int ioAllocPTY(int *ptyfd, int *ttyfd, char * _
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Line 246 inline int ioAllocPTY(int *ptyfd, int *ttyfd, char * _
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* @ttyname = tty filename |
* @ttyname = tty filename |
* return: none |
* return: none |
*/ |
*/ |
inline void ioFreePTY(int ptyfd, const char *ttyname); | void ioFreePTY(int ptyfd, const char *ttyname); |
/* |
/* |
* ioChgWinPTY() - Change window size of PTY |
* ioChgWinPTY() - Change window size of PTY |
* |
* |
Line 1166 inline void ioFreePTY(int ptyfd, const char *ttyname);
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Line 257 inline void ioFreePTY(int ptyfd, const char *ttyname);
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* @ypxl = y pixels |
* @ypxl = y pixels |
* return: -1 error or 0 ok |
* return: -1 error or 0 ok |
*/ |
*/ |
inline int ioChgWinPTY(int ptyfd, unsigned short row, unsigned short col, | int ioChgWinPTY(int ptyfd, unsigned short row, unsigned short col, |
unsigned short xpxl, unsigned short ypxl); |
unsigned short xpxl, unsigned short ypxl); |
/* |
/* |
* ioSetOwnerTTY() - Set owner to TTY |
* ioSetOwnerTTY() - Set owner to TTY |
Line 1192 int ioSetSidTTY(int *ttyfd, const char *ttyname);
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Line 283 int ioSetSidTTY(int *ttyfd, const char *ttyname);
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* @otio = saved old termios for later restore if !=NULL |
* @otio = saved old termios for later restore if !=NULL |
* return: -1 error or 0 ok |
* return: -1 error or 0 ok |
*/ |
*/ |
inline int ioSetRAWMode(int fd, struct termios *otio); | int ioSetRAWMode(int fd, struct termios *otio); |
/* |
/* |
* ioRestoreMode() - Restore termios to tty fd |
* ioRestoreMode() - Restore termios to tty fd |
* |
* |
Line 1200 inline int ioSetRAWMode(int fd, struct termios *otio);
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Line 291 inline int ioSetRAWMode(int fd, struct termios *otio);
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* @tio = termios structure for restore |
* @tio = termios structure for restore |
* return: -1 error or 0 ok |
* return: -1 error or 0 ok |
*/ |
*/ |
inline int ioRestoreMode(int fd, struct termios tio); | int ioRestoreMode(int fd, struct termios tio); |
/* |
/* |
* ioForkPTY() - Fork new process with session leader and new TTY |
* ioForkPTY() - Fork new process with session leader and new TTY |
* |
* |
Line 1222 pid_t ioForkPTY(int *ptyfd, char * __restrict name, in
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Line 313 pid_t ioForkPTY(int *ptyfd, char * __restrict name, in
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* @ifExists = !=0 if filename exists return error |
* @ifExists = !=0 if filename exists return error |
* return: -1 error or 0 ok |
* return: -1 error or 0 ok |
*/ |
*/ |
inline int ioCreatePIDFile(const char *csName, int ifExists); | int ioCreatePIDFile(const char *csName, int ifExists); |
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/* |
/* |
* ioSendFile() - AITNET sendfile() userland implementation, not dependant from OS |
* ioSendFile() - AITNET sendfile() userland implementation, not dependant from OS |
Line 1247 size_t ioSendFile(int s, const char *csFile, size_t se
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Line 338 size_t ioSendFile(int s, const char *csFile, size_t se
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*/ |
*/ |
size_t ioRecvFile(int s, const char *csFile, size_t recvLen, int over, int rcvbuf); |
size_t ioRecvFile(int s, const char *csFile, size_t recvLen, int over, int rcvbuf); |
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/* |
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* ioRealFileName() - Get real file name |
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* |
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* @fname = filename |
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* return: =NULL error or !=NULL real filename, should be free with e_free() |
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*/ |
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char *ioRealFileName(const char *fname); |
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/* Buffered file access over memory block */ |
/* Buffered file access over memory block */ |
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Line 1277 FILE *io_fmapopen(const char *csFile, int mode, int pe
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Line 375 FILE *io_fmapopen(const char *csFile, int mode, int pe
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* @mode = Permissions for new buffered file I/O |
* @mode = Permissions for new buffered file I/O |
* return: NULL error or open buffered file |
* return: NULL error or open buffered file |
*/ |
*/ |
inline FILE *io_fd2buf(int fd, const char *mode); | FILE *io_fd2buf(int fd, const char *mode); |
/* |
/* |
* io_dumbFile() - Create empry or dumb file with fixed size |
* io_dumbFile() - Create empry or dumb file with fixed size |
* |
* |
Line 1287 inline FILE *io_fd2buf(int fd, const char *mode);
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Line 385 inline FILE *io_fd2buf(int fd, const char *mode);
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* return: -1 error or open file handle |
* return: -1 error or open file handle |
*/ |
*/ |
int io_dumbFile(const char *csFile, int mode, off_t size); |
int io_dumbFile(const char *csFile, int mode, off_t size); |
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/* |
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* io_get1stiface() - Get first interface of host |
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* |
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* @szIface = interface string buffer |
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* @iflen = size of interface buffer |
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* return: -1 error or 0 ok |
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*/ |
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int io_get1stiface(char *szIface, int iflen); |
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/* |
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* io_etherOpen() - Open BPF interface to device |
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* |
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* @csIface = interface name |
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* @flags = open flags |
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* @whdr = with complete headers |
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* @buflen = buffer length |
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* @zcbuf = zero copy buffer, if BPF supports it and isn't NULL |
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* return: -1 error or >-1 bpf handle |
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*/ |
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int io_etherOpen(const char *csIface, int flags, int whdr, |
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unsigned int *buflen, void **zcbuf); |
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/* |
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* io_etherClose() - Close BPF interface |
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* |
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* @eth = bpf handle |
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* @zcbuf = zero copy buffer, if BPF supports it and isn't NULL |
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* return: none |
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*/ |
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void io_etherClose(int eth, void **zcbuf); |
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/* |
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* io_etherSend() - Send packet to bpf |
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* |
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* @eth = bpf handle |
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* @buf = buffer |
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* @buflen = buffer length |
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* return: -1 error or !=-1 written bytes |
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*/ |
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ssize_t io_etherSend(int eth, const void *buf, size_t buflen); |
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/* |
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* io_etherRecv() - Receive packet from bpf |
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* |
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* @eth = bpf handle |
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* @buf = buffer |
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* @buflen = buffer length |
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* @zcbuf = zero copy buffer, if BPF supports it and isn't NULL |
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* return: -1 error or !=-1 readed bytes |
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*/ |
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ssize_t io_etherRecv(int eth, void * __restrict buf, |
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size_t buflen, void * __restrict zcbuf); |
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#endif |
#endif |