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KERB_NET_ADDRESSES
構造体サイズ=各フィールドのバイト数(x64/x86 で異なる場合は x64/x86 と併記)。x64/x86 列=フィールドのバイトオフセット(HSPで dupptr / lpoke / wpoke 等に使用)。
フィールド
| フィールド | 型 | サイズ | x64 | x86 | 説明 |
|---|---|---|---|---|---|
| Number | DWORD | 4 | +0 | +0 | Addresses配列に含まれるアドレス数。 |
| Addresses | KERB_NET_ADDRESS | 16/12 | +8 | +4 | ネットワークアドレス情報の配列(可変長)。 |
各言語での定義
#include <windows.h>
// KERB_NET_ADDRESS (x64 16 / x86 12 バイト)
typedef struct KERB_NET_ADDRESS {
DWORD Family;
DWORD Length;
LPSTR Address;
} KERB_NET_ADDRESS;
// KERB_NET_ADDRESSES (x64 24 / x86 16 バイト)
typedef struct KERB_NET_ADDRESSES {
DWORD Number;
KERB_NET_ADDRESS Addresses[1];
} KERB_NET_ADDRESSES;using System;
using System.Runtime.InteropServices;
[StructLayout(LayoutKind.Sequential, CharSet = CharSet.Unicode)]
public struct KERB_NET_ADDRESS
{
public uint Family;
public uint Length;
public IntPtr Address;
}
[StructLayout(LayoutKind.Sequential, CharSet = CharSet.Unicode)]
public struct KERB_NET_ADDRESSES
{
public uint Number;
[MarshalAs(UnmanagedType.ByValArray, SizeConst = 1)] public KERB_NET_ADDRESS[] Addresses;
}Imports System.Runtime.InteropServices
<StructLayout(LayoutKind.Sequential, CharSet:=CharSet.Unicode)>
Public Structure KERB_NET_ADDRESS
Public Family As UInteger
Public Length As UInteger
Public Address As IntPtr
End Structure
<StructLayout(LayoutKind.Sequential, CharSet:=CharSet.Unicode)>
Public Structure KERB_NET_ADDRESSES
Public Number As UInteger
<MarshalAs(UnmanagedType.ByValArray, SizeConst:=1)> Public Addresses() As KERB_NET_ADDRESS
End Structureimport ctypes
from ctypes import wintypes
class KERB_NET_ADDRESS(ctypes.Structure):
_fields_ = [
("Family", wintypes.DWORD),
("Length", wintypes.DWORD),
("Address", ctypes.c_void_p),
]
class KERB_NET_ADDRESSES(ctypes.Structure):
_fields_ = [
("Number", wintypes.DWORD),
("Addresses", KERB_NET_ADDRESS * 1),
]#[repr(C)]
pub struct KERB_NET_ADDRESS {
pub Family: u32,
pub Length: u32,
pub Address: *mut core::ffi::c_void,
}
#[repr(C)]
pub struct KERB_NET_ADDRESSES {
pub Number: u32,
pub Addresses: [KERB_NET_ADDRESS; 1],
}import "golang.org/x/sys/windows"
type KERB_NET_ADDRESS struct {
Family uint32
Length uint32
Address uintptr
}
type KERB_NET_ADDRESSES struct {
Number uint32
Addresses [1]KERB_NET_ADDRESS
}type
KERB_NET_ADDRESS = record
Family: DWORD;
Length: DWORD;
Address: Pointer;
end;
KERB_NET_ADDRESSES = record
Number: DWORD;
Addresses: array[0..0] of KERB_NET_ADDRESS;
end;const KERB_NET_ADDRESS = extern struct {
Family: u32,
Length: u32,
Address: ?*anyopaque,
};
const KERB_NET_ADDRESSES = extern struct {
Number: u32,
Addresses: [1]KERB_NET_ADDRESS,
};type
KERB_NET_ADDRESS {.bycopy.} = object
Family: uint32
Length: uint32
Address: pointer
KERB_NET_ADDRESSES {.bycopy.} = object
Number: uint32
Addresses: array[1, KERB_NET_ADDRESS]struct KERB_NET_ADDRESS
{
uint Family;
uint Length;
void* Address;
}
struct KERB_NET_ADDRESSES
{
uint Number;
KERB_NET_ADDRESS[1] Addresses;
}HSP用 定義
HSP3.7/3.8 は構造体機能が無いため4byte整数配列(dim)+peek/poke で操作(32/64bitでサイズ・位置が異なる場合はタブで分割)。IronHSP は NSTRUCT(#defstruct/stdim/->)で32/64bit共通。
; HSP3.7/3.8 は構造体機能が無いため、4byte整数の配列変数で操作します。(x86 レイアウト)
; KERB_NET_ADDRESSES サイズ: 16 バイト(x86)
dim st, 4 ; 4byte整数×4(構造体サイズ 16 / 4 切り上げ)
; Number : DWORD (+0, 4byte) st.0 = 値 / 値 = st.0 (lpoke/lpeek も可)
; Addresses : KERB_NET_ADDRESS (+4, 12byte) varptr(st)+4 を基点に操作(12byte:入れ子/配列)
; ※4byte境界の整数は添字 st.N(N=オフセット/4)で読み書き可。それ以外は peek/poke 系を使用。; HSP3.7/3.8 は構造体機能が無いため、4byte整数の配列変数で操作します。(x64 レイアウト)
; KERB_NET_ADDRESSES サイズ: 24 バイト(x64)
dim st, 6 ; 4byte整数×6(構造体サイズ 24 / 4 切り上げ)
; Number : DWORD (+0, 4byte) st.0 = 値 / 値 = st.0 (lpoke/lpeek も可)
; Addresses : KERB_NET_ADDRESS (+8, 16byte) varptr(st)+8 を基点に操作(16byte:入れ子/配列)
; ※4byte境界の整数は添字 st.N(N=オフセット/4)で読み書き可。それ以外は peek/poke 系を使用。; IronHSP は NSTRUCT(構造体)をサポート。32bit/64bit どちらでも同じコードで動作します。
; ※GUID・入れ子構造体はデフォルト型でないため、依存する #defstruct を先に定義(下記に同梱)。
#defstruct global KERB_NET_ADDRESS
#field int Family
#field int Length
#field intptr Address
#endstruct
#defstruct global KERB_NET_ADDRESSES
#field int Number
#field KERB_NET_ADDRESS Addresses 1
#endstruct
stdim st, KERB_NET_ADDRESSES ; NSTRUCT 変数を確保
st->Number = 100
mes "Number=" + st->Number