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/*
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 *  TAP-Win32 -- A kernel driver to provide virtual tap device functionality
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 *               on Windows.  Originally derived from the CIPE-Win32
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 *               project by Damion K. Wilson, with extensive modifications by
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 *               James Yonan.
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 *
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 *  All source code which derives from the CIPE-Win32 project is
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 *  Copyright (C) Damion K. Wilson, 2003, and is released under the
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 *  GPL version 2 (see below).
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 *
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 *  All other source code is Copyright (C) James Yonan, 2003-2004,
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 *  and is released under the GPL version 2 (see below).
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 *
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 *  This program is free software; you can redistribute it and/or modify
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 *  it under the terms of the GNU General Public License as published by
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 *  the Free Software Foundation; either version 2 of the License, or
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 *  (at your option) any later version.
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 *
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 *  This program is distributed in the hope that it will be useful,
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 *  but WITHOUT ANY WARRANTY; without even the implied warranty of
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 *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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 *  GNU General Public License for more details.
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 *
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 *  You should have received a copy of the GNU General Public License
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 *  along with this program (see the file COPYING included with this
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 *  distribution); if not, write to the Free Software Foundation, Inc.,
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 *  59 Temple Place, Suite 330, Boston, MA  02111-1307  USA
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 */
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#include "qemu-common.h"
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#include "net.h"
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#include "sysemu.h"
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#include <stdio.h>
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#define WIN32_LEAN_AND_MEAN
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#include <windows.h>
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/* NOTE: PCIBus is redefined in winddk.h */
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#define PCIBus _PCIBus
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#include <ddk/ntapi.h>
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#include <ddk/winddk.h>
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#include <ddk/ntddk.h>
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#undef PCIBus
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//=============
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// TAP IOCTLs
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//=============
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#define TAP_CONTROL_CODE(request,method) \
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  CTL_CODE (FILE_DEVICE_UNKNOWN, request, method, FILE_ANY_ACCESS)
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#define TAP_IOCTL_GET_MAC               TAP_CONTROL_CODE (1, METHOD_BUFFERED)
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#define TAP_IOCTL_GET_VERSION           TAP_CONTROL_CODE (2, METHOD_BUFFERED)
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#define TAP_IOCTL_GET_MTU               TAP_CONTROL_CODE (3, METHOD_BUFFERED)
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#define TAP_IOCTL_GET_INFO              TAP_CONTROL_CODE (4, METHOD_BUFFERED)
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#define TAP_IOCTL_CONFIG_POINT_TO_POINT TAP_CONTROL_CODE (5, METHOD_BUFFERED)
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#define TAP_IOCTL_SET_MEDIA_STATUS      TAP_CONTROL_CODE (6, METHOD_BUFFERED)
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#define TAP_IOCTL_CONFIG_DHCP_MASQ      TAP_CONTROL_CODE (7, METHOD_BUFFERED)
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#define TAP_IOCTL_GET_LOG_LINE          TAP_CONTROL_CODE (8, METHOD_BUFFERED)
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#define TAP_IOCTL_CONFIG_DHCP_SET_OPT   TAP_CONTROL_CODE (9, METHOD_BUFFERED)
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//=================
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// Registry keys
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//=================
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#define ADAPTER_KEY "SYSTEM\\CurrentControlSet\\Control\\Class\\{4D36E972-E325-11CE-BFC1-08002BE10318}"
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#define NETWORK_CONNECTIONS_KEY "SYSTEM\\CurrentControlSet\\Control\\Network\\{4D36E972-E325-11CE-BFC1-08002BE10318}"
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//======================
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// Filesystem prefixes
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//======================
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#define USERMODEDEVICEDIR "\\\\.\\Global\\"
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#define TAPSUFFIX         ".tap"
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//======================
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// Compile time configuration
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//======================
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//#define DEBUG_TAP_WIN32 1
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#define TUN_ASYNCHRONOUS_WRITES 1
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#define TUN_BUFFER_SIZE 1560
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#define TUN_MAX_BUFFER_COUNT 32
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/*
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 * The data member "buffer" must be the first element in the tun_buffer
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 * structure. See the function, tap_win32_free_buffer.
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 */
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typedef struct tun_buffer_s {
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    unsigned char buffer [TUN_BUFFER_SIZE];
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    unsigned long read_size;
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    struct tun_buffer_s* next;
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} tun_buffer_t;
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typedef struct tap_win32_overlapped {
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    HANDLE handle;
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    HANDLE read_event;
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    HANDLE write_event;
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    HANDLE output_queue_semaphore;
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    HANDLE free_list_semaphore;
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    HANDLE tap_semaphore;
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    CRITICAL_SECTION output_queue_cs;
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    CRITICAL_SECTION free_list_cs;
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    OVERLAPPED read_overlapped;
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    OVERLAPPED write_overlapped;
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    tun_buffer_t buffers[TUN_MAX_BUFFER_COUNT];
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    tun_buffer_t* free_list;
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    tun_buffer_t* output_queue_front;
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    tun_buffer_t* output_queue_back;
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} tap_win32_overlapped_t;
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static tap_win32_overlapped_t tap_overlapped;
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static tun_buffer_t* get_buffer_from_free_list(tap_win32_overlapped_t* const overlapped)
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{
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    tun_buffer_t* buffer = NULL;
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    WaitForSingleObject(overlapped->free_list_semaphore, INFINITE);
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    EnterCriticalSection(&overlapped->free_list_cs);
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    buffer = overlapped->free_list;
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//    assert(buffer != NULL);
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    overlapped->free_list = buffer->next;
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    LeaveCriticalSection(&overlapped->free_list_cs);
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    buffer->next = NULL;
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    return buffer;
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}
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static void put_buffer_on_free_list(tap_win32_overlapped_t* const overlapped, tun_buffer_t* const buffer)
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{
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    EnterCriticalSection(&overlapped->free_list_cs);
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    buffer->next = overlapped->free_list;
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    overlapped->free_list = buffer;
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    LeaveCriticalSection(&overlapped->free_list_cs);
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    ReleaseSemaphore(overlapped->free_list_semaphore, 1, NULL);
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}
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static tun_buffer_t* get_buffer_from_output_queue(tap_win32_overlapped_t* const overlapped, const int block)
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{
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    tun_buffer_t* buffer = NULL;
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    DWORD result, timeout = block ? INFINITE : 0L;
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    // Non-blocking call
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    result = WaitForSingleObject(overlapped->output_queue_semaphore, timeout);
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    switch (result)
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    {
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        // The semaphore object was signaled.
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        case WAIT_OBJECT_0:
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            EnterCriticalSection(&overlapped->output_queue_cs);
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            buffer = overlapped->output_queue_front;
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            overlapped->output_queue_front = buffer->next;
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            if(overlapped->output_queue_front == NULL) {
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                overlapped->output_queue_back = NULL;
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            }
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            LeaveCriticalSection(&overlapped->output_queue_cs);
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            break;
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        // Semaphore was nonsignaled, so a time-out occurred.
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        case WAIT_TIMEOUT:
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            // Cannot open another window.
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            break;
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    }
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    return buffer;
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}
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static tun_buffer_t* get_buffer_from_output_queue_immediate (tap_win32_overlapped_t* const overlapped)
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{
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    return get_buffer_from_output_queue(overlapped, 0);
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}
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static void put_buffer_on_output_queue(tap_win32_overlapped_t* const overlapped, tun_buffer_t* const buffer)
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{
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    EnterCriticalSection(&overlapped->output_queue_cs);
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    if(overlapped->output_queue_front == NULL && overlapped->output_queue_back == NULL) {
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        overlapped->output_queue_front = overlapped->output_queue_back = buffer;
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    } else {
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        buffer->next = NULL;
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        overlapped->output_queue_back->next = buffer;
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        overlapped->output_queue_back = buffer;
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    }
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    LeaveCriticalSection(&overlapped->output_queue_cs);
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    ReleaseSemaphore(overlapped->output_queue_semaphore, 1, NULL);
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}
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static int is_tap_win32_dev(const char *guid)
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{
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    HKEY netcard_key;
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    LONG status;
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    DWORD len;
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    int i = 0;
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    status = RegOpenKeyEx(
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        HKEY_LOCAL_MACHINE,
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        ADAPTER_KEY,
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        0,
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        KEY_READ,
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        &netcard_key);
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    if (status != ERROR_SUCCESS) {
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        return FALSE;
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    }
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    for (;;) {
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        char enum_name[256];
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        char unit_string[256];
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        HKEY unit_key;
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        char component_id_string[] = "ComponentId";
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        char component_id[256];
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        char net_cfg_instance_id_string[] = "NetCfgInstanceId";
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        char net_cfg_instance_id[256];
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        DWORD data_type;
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        len = sizeof (enum_name);
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        status = RegEnumKeyEx(
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            netcard_key,
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            i,
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            enum_name,
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            &len,
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            NULL,
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            NULL,
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            NULL,
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            NULL);
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        if (status == ERROR_NO_MORE_ITEMS)
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            break;
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        else if (status != ERROR_SUCCESS) {
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            return FALSE;
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        }
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        snprintf (unit_string, sizeof(unit_string), "%s\\%s",
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                  ADAPTER_KEY, enum_name);
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        status = RegOpenKeyEx(
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            HKEY_LOCAL_MACHINE,
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            unit_string,
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            0,
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            KEY_READ,
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            &unit_key);
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        if (status != ERROR_SUCCESS) {
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            return FALSE;
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        } else {
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            len = sizeof (component_id);
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            status = RegQueryValueEx(
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                unit_key,
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                component_id_string,
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                NULL,
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                &data_type,
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                component_id,
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                &len);
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            if (!(status != ERROR_SUCCESS || data_type != REG_SZ)) {
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                len = sizeof (net_cfg_instance_id);
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                status = RegQueryValueEx(
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                    unit_key,
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                    net_cfg_instance_id_string,
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                    NULL,
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                    &data_type,
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                    net_cfg_instance_id,
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                    &len);
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                if (status == ERROR_SUCCESS && data_type == REG_SZ) {
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                    if (/* !strcmp (component_id, TAP_COMPONENT_ID) &&*/
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                        !strcmp (net_cfg_instance_id, guid)) {
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                        RegCloseKey (unit_key);
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                        RegCloseKey (netcard_key);
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                        return TRUE;
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                    }
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                }
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            }
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            RegCloseKey (unit_key);
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        }
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        ++i;
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    }
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    RegCloseKey (netcard_key);
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    return FALSE;
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}
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static int get_device_guid(
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    char *name,
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    int name_size,
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    char *actual_name,
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    int actual_name_size)
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{
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    LONG status;
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    HKEY control_net_key;
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    DWORD len;
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    int i = 0;
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    int stop = 0;
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    status = RegOpenKeyEx(
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        HKEY_LOCAL_MACHINE,
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        NETWORK_CONNECTIONS_KEY,
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        0,
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        KEY_READ,
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        &control_net_key);
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    if (status != ERROR_SUCCESS) {
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        return -1;
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    }
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    while (!stop)
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    {
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        char enum_name[256];
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        char connection_string[256];
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        HKEY connection_key;
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        char name_data[256];
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        DWORD name_type;
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        const char name_string[] = "Name";
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        len = sizeof (enum_name);
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        status = RegEnumKeyEx(
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            control_net_key,
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            i,
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            enum_name,
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            &len,
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            NULL,
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            NULL,
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            NULL,
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            NULL);
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        if (status == ERROR_NO_MORE_ITEMS)
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            break;
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        else if (status != ERROR_SUCCESS) {
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            return -1;
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        }
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        snprintf(connection_string,
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             sizeof(connection_string),
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             "%s\\%s\\Connection",
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             NETWORK_CONNECTIONS_KEY, enum_name);
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        status = RegOpenKeyEx(
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            HKEY_LOCAL_MACHINE,
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            connection_string,
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            0,
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            KEY_READ,
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            &connection_key);
349 3b46e624 ths
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        if (status == ERROR_SUCCESS) {
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            len = sizeof (name_data);
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            status = RegQueryValueEx(
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                connection_key,
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                name_string,
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                NULL,
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                &name_type,
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                name_data,
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                &len);
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            if (status != ERROR_SUCCESS || name_type != REG_SZ) {
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                    return -1;
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            }
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            else {
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                if (is_tap_win32_dev(enum_name)) {
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                    snprintf(name, name_size, "%s", enum_name);
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                    if (actual_name) {
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                        if (strcmp(actual_name, "") != 0) {
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                            if (strcmp(name_data, actual_name) != 0) {
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                                RegCloseKey (connection_key);
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                                ++i;
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                                continue;
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                            }
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                        }
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                        else {
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                            snprintf(actual_name, actual_name_size, "%s", name_data);
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                        }
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                    }
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                    stop = 1;
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                }
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            }
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            RegCloseKey (connection_key);
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        }
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        ++i;
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    }
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    RegCloseKey (control_net_key);
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    if (stop == 0)
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        return -1;
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    return 0;
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}
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static int tap_win32_set_status(HANDLE handle, int status)
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{
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    unsigned long len = 0;
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    return DeviceIoControl(handle, TAP_IOCTL_SET_MEDIA_STATUS,
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                &status, sizeof (status),
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                &status, sizeof (status), &len, NULL);
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}
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static void tap_win32_overlapped_init(tap_win32_overlapped_t* const overlapped, const HANDLE handle)
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{
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    overlapped->handle = handle;
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    overlapped->read_event = CreateEvent(NULL, FALSE, FALSE, NULL);
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    overlapped->write_event = CreateEvent(NULL, FALSE, FALSE, NULL);
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    overlapped->read_overlapped.Offset = 0;
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    overlapped->read_overlapped.OffsetHigh = 0;
413 7fb843f8 bellard
    overlapped->read_overlapped.hEvent = overlapped->read_event;
414 7fb843f8 bellard
415 7fb843f8 bellard
    overlapped->write_overlapped.Offset = 0;
416 7fb843f8 bellard
    overlapped->write_overlapped.OffsetHigh = 0;
417 7fb843f8 bellard
    overlapped->write_overlapped.hEvent = overlapped->write_event;
418 7fb843f8 bellard
419 7fb843f8 bellard
    InitializeCriticalSection(&overlapped->output_queue_cs);
420 7fb843f8 bellard
    InitializeCriticalSection(&overlapped->free_list_cs);
421 7fb843f8 bellard
422 5fafdf24 ths
    overlapped->output_queue_semaphore = CreateSemaphore(
423 7fb843f8 bellard
        NULL,   // default security attributes
424 7fb843f8 bellard
        0,   // initial count
425 7fb843f8 bellard
        TUN_MAX_BUFFER_COUNT,   // maximum count
426 7fb843f8 bellard
        NULL);  // unnamed semaphore
427 7fb843f8 bellard
428 7fb843f8 bellard
    if(!overlapped->output_queue_semaphore)  {
429 7fb843f8 bellard
        fprintf(stderr, "error creating output queue semaphore!\n");
430 7fb843f8 bellard
    }
431 7fb843f8 bellard
432 5fafdf24 ths
    overlapped->free_list_semaphore = CreateSemaphore(
433 7fb843f8 bellard
        NULL,   // default security attributes
434 7fb843f8 bellard
        TUN_MAX_BUFFER_COUNT,   // initial count
435 7fb843f8 bellard
        TUN_MAX_BUFFER_COUNT,   // maximum count
436 7fb843f8 bellard
        NULL);  // unnamed semaphore
437 7fb843f8 bellard
438 7fb843f8 bellard
    if(!overlapped->free_list_semaphore)  {
439 7fb843f8 bellard
        fprintf(stderr, "error creating free list semaphore!\n");
440 7fb843f8 bellard
    }
441 7fb843f8 bellard
442 7fb843f8 bellard
    overlapped->free_list = overlapped->output_queue_front = overlapped->output_queue_back = NULL;
443 7fb843f8 bellard
444 7fb843f8 bellard
    {
445 7fb843f8 bellard
        unsigned index;
446 7fb843f8 bellard
        for(index = 0; index < TUN_MAX_BUFFER_COUNT; index++) {
447 7fb843f8 bellard
            tun_buffer_t* element = &overlapped->buffers[index];
448 7fb843f8 bellard
            element->next = overlapped->free_list;
449 7fb843f8 bellard
            overlapped->free_list = element;
450 7fb843f8 bellard
        }
451 7fb843f8 bellard
    }
452 e6cda8e2 bellard
    /* To count buffers, initially no-signal. */
453 e6cda8e2 bellard
    overlapped->tap_semaphore = CreateSemaphore(NULL, 0, TUN_MAX_BUFFER_COUNT, NULL);
454 e6cda8e2 bellard
    if(!overlapped->tap_semaphore)
455 e6cda8e2 bellard
        fprintf(stderr, "error creating tap_semaphore.\n");
456 7fb843f8 bellard
}
457 7fb843f8 bellard
458 5fafdf24 ths
static int tap_win32_write(tap_win32_overlapped_t *overlapped,
459 7fb843f8 bellard
                           const void *buffer, unsigned long size)
460 7fb843f8 bellard
{
461 7fb843f8 bellard
    unsigned long write_size;
462 7fb843f8 bellard
    BOOL result;
463 7fb843f8 bellard
    DWORD error;
464 7fb843f8 bellard
465 7fb843f8 bellard
    result = GetOverlappedResult( overlapped->handle, &overlapped->write_overlapped,
466 7fb843f8 bellard
                                  &write_size, FALSE);
467 7fb843f8 bellard
468 7fb843f8 bellard
    if (!result && GetLastError() == ERROR_IO_INCOMPLETE)
469 7fb843f8 bellard
        WaitForSingleObject(overlapped->write_event, INFINITE);
470 7fb843f8 bellard
471 7fb843f8 bellard
    result = WriteFile(overlapped->handle, buffer, size,
472 7fb843f8 bellard
                       &write_size, &overlapped->write_overlapped);
473 3b46e624 ths
474 5fafdf24 ths
    if (!result) {
475 7fb843f8 bellard
        switch (error = GetLastError())
476 5fafdf24 ths
        {
477 5fafdf24 ths
        case ERROR_IO_PENDING:
478 7fb843f8 bellard
#ifndef TUN_ASYNCHRONOUS_WRITES
479 7fb843f8 bellard
            WaitForSingleObject(overlapped->write_event, INFINITE);
480 7fb843f8 bellard
#endif
481 7fb843f8 bellard
            break;
482 7fb843f8 bellard
        default:
483 7fb843f8 bellard
            return -1;
484 5fafdf24 ths
        }
485 7fb843f8 bellard
    }
486 7fb843f8 bellard
487 7fb843f8 bellard
    return 0;
488 7fb843f8 bellard
}
489 7fb843f8 bellard
490 7fb843f8 bellard
static DWORD WINAPI tap_win32_thread_entry(LPVOID param)
491 7fb843f8 bellard
{
492 7fb843f8 bellard
    tap_win32_overlapped_t *overlapped = (tap_win32_overlapped_t*)param;
493 7fb843f8 bellard
    unsigned long read_size;
494 7fb843f8 bellard
    BOOL result;
495 7fb843f8 bellard
    DWORD dwError;
496 7fb843f8 bellard
    tun_buffer_t* buffer = get_buffer_from_free_list(overlapped);
497 7fb843f8 bellard
498 7fb843f8 bellard
499 7fb843f8 bellard
    for (;;) {
500 7fb843f8 bellard
        result = ReadFile(overlapped->handle,
501 7fb843f8 bellard
                          buffer->buffer,
502 7fb843f8 bellard
                          sizeof(buffer->buffer),
503 7fb843f8 bellard
                          &read_size,
504 7fb843f8 bellard
                          &overlapped->read_overlapped);
505 7fb843f8 bellard
        if (!result) {
506 7fb843f8 bellard
            dwError = GetLastError();
507 7fb843f8 bellard
            if (dwError == ERROR_IO_PENDING) {
508 7fb843f8 bellard
                WaitForSingleObject(overlapped->read_event, INFINITE);
509 7fb843f8 bellard
                result = GetOverlappedResult( overlapped->handle, &overlapped->read_overlapped,
510 7fb843f8 bellard
                                              &read_size, FALSE);
511 7fb843f8 bellard
                if (!result) {
512 7fb843f8 bellard
#if DEBUG_TAP_WIN32
513 7fb843f8 bellard
                    LPVOID lpBuffer;
514 7fb843f8 bellard
                    dwError = GetLastError();
515 7fb843f8 bellard
                    FormatMessage( FORMAT_MESSAGE_ALLOCATE_BUFFER | FORMAT_MESSAGE_FROM_SYSTEM,
516 7fb843f8 bellard
                                   NULL, dwError, MAKELANGID(LANG_NEUTRAL, SUBLANG_DEFAULT),
517 7fb843f8 bellard
                                   (LPTSTR) & lpBuffer, 0, NULL );
518 7fb843f8 bellard
                    fprintf(stderr, "Tap-Win32: Error GetOverlappedResult %d - %s\n", dwError, lpBuffer);
519 7fb843f8 bellard
                    LocalFree( lpBuffer );
520 7fb843f8 bellard
#endif
521 7fb843f8 bellard
                }
522 7fb843f8 bellard
            } else {
523 7fb843f8 bellard
#if DEBUG_TAP_WIN32
524 7fb843f8 bellard
                LPVOID lpBuffer;
525 7fb843f8 bellard
                FormatMessage( FORMAT_MESSAGE_ALLOCATE_BUFFER | FORMAT_MESSAGE_FROM_SYSTEM,
526 7fb843f8 bellard
                               NULL, dwError, MAKELANGID(LANG_NEUTRAL, SUBLANG_DEFAULT),
527 7fb843f8 bellard
                               (LPTSTR) & lpBuffer, 0, NULL );
528 7fb843f8 bellard
                fprintf(stderr, "Tap-Win32: Error ReadFile %d - %s\n", dwError, lpBuffer);
529 7fb843f8 bellard
                LocalFree( lpBuffer );
530 7fb843f8 bellard
#endif
531 7fb843f8 bellard
            }
532 7fb843f8 bellard
        }
533 7fb843f8 bellard
534 7fb843f8 bellard
        if(read_size > 0) {
535 7fb843f8 bellard
            buffer->read_size = read_size;
536 7fb843f8 bellard
            put_buffer_on_output_queue(overlapped, buffer);
537 e6cda8e2 bellard
            ReleaseSemaphore(overlapped->tap_semaphore, 1, NULL);
538 7fb843f8 bellard
            buffer = get_buffer_from_free_list(overlapped);
539 7fb843f8 bellard
        }
540 7fb843f8 bellard
    }
541 7fb843f8 bellard
542 7fb843f8 bellard
    return 0;
543 7fb843f8 bellard
}
544 7fb843f8 bellard
545 5fafdf24 ths
static int tap_win32_read(tap_win32_overlapped_t *overlapped,
546 7fb843f8 bellard
                          uint8_t **pbuf, int max_size)
547 7fb843f8 bellard
{
548 7fb843f8 bellard
    int size = 0;
549 7fb843f8 bellard
550 7fb843f8 bellard
    tun_buffer_t* buffer = get_buffer_from_output_queue_immediate(overlapped);
551 7fb843f8 bellard
552 7fb843f8 bellard
    if(buffer != NULL) {
553 7fb843f8 bellard
        *pbuf = buffer->buffer;
554 7fb843f8 bellard
        size = (int)buffer->read_size;
555 7fb843f8 bellard
        if(size > max_size) {
556 7fb843f8 bellard
            size = max_size;
557 7fb843f8 bellard
        }
558 7fb843f8 bellard
    }
559 7fb843f8 bellard
560 7fb843f8 bellard
    return size;
561 7fb843f8 bellard
}
562 7fb843f8 bellard
563 5fafdf24 ths
static void tap_win32_free_buffer(tap_win32_overlapped_t *overlapped,
564 5fafdf24 ths
                                  char* pbuf)
565 7fb843f8 bellard
{
566 7fb843f8 bellard
    tun_buffer_t* buffer = (tun_buffer_t*)pbuf;
567 7fb843f8 bellard
    put_buffer_on_free_list(overlapped, buffer);
568 7fb843f8 bellard
}
569 7fb843f8 bellard
570 5fafdf24 ths
static int tap_win32_open(tap_win32_overlapped_t **phandle,
571 7fb843f8 bellard
                          const char *prefered_name)
572 7fb843f8 bellard
{
573 7fb843f8 bellard
    char device_path[256];
574 7fb843f8 bellard
    char device_guid[0x100];
575 7fb843f8 bellard
    int rc;
576 7fb843f8 bellard
    HANDLE handle;
577 7fb843f8 bellard
    BOOL bret;
578 7fb843f8 bellard
    char name_buffer[0x100] = {0, };
579 7fb843f8 bellard
    struct {
580 7fb843f8 bellard
        unsigned long major;
581 7fb843f8 bellard
        unsigned long minor;
582 7fb843f8 bellard
        unsigned long debug;
583 7fb843f8 bellard
    } version;
584 7fb843f8 bellard
    LONG version_len;
585 7fb843f8 bellard
    DWORD idThread;
586 7fb843f8 bellard
    HANDLE hThread;
587 7fb843f8 bellard
588 7fb843f8 bellard
    if (prefered_name != NULL)
589 7fb843f8 bellard
        snprintf(name_buffer, sizeof(name_buffer), "%s", prefered_name);
590 7fb843f8 bellard
591 7fb843f8 bellard
    rc = get_device_guid(device_guid, sizeof(device_guid), name_buffer, sizeof(name_buffer));
592 7fb843f8 bellard
    if (rc)
593 7fb843f8 bellard
        return -1;
594 7fb843f8 bellard
595 7fb843f8 bellard
    snprintf (device_path, sizeof(device_path), "%s%s%s",
596 7fb843f8 bellard
              USERMODEDEVICEDIR,
597 7fb843f8 bellard
              device_guid,
598 7fb843f8 bellard
              TAPSUFFIX);
599 7fb843f8 bellard
600 7fb843f8 bellard
    handle = CreateFile (
601 7fb843f8 bellard
        device_path,
602 7fb843f8 bellard
        GENERIC_READ | GENERIC_WRITE,
603 7fb843f8 bellard
        0,
604 7fb843f8 bellard
        0,
605 7fb843f8 bellard
        OPEN_EXISTING,
606 7fb843f8 bellard
        FILE_ATTRIBUTE_SYSTEM | FILE_FLAG_OVERLAPPED,
607 7fb843f8 bellard
        0 );
608 7fb843f8 bellard
609 7fb843f8 bellard
    if (handle == INVALID_HANDLE_VALUE) {
610 7fb843f8 bellard
        return -1;
611 7fb843f8 bellard
    }
612 7fb843f8 bellard
613 7fb843f8 bellard
    bret = DeviceIoControl(handle, TAP_IOCTL_GET_VERSION,
614 7fb843f8 bellard
                           &version, sizeof (version),
615 7fb843f8 bellard
                           &version, sizeof (version), &version_len, NULL);
616 7fb843f8 bellard
617 7fb843f8 bellard
    if (bret == FALSE) {
618 7fb843f8 bellard
        CloseHandle(handle);
619 7fb843f8 bellard
        return -1;
620 7fb843f8 bellard
    }
621 7fb843f8 bellard
622 7fb843f8 bellard
    if (!tap_win32_set_status(handle, TRUE)) {
623 7fb843f8 bellard
        return -1;
624 7fb843f8 bellard
    }
625 7fb843f8 bellard
626 7fb843f8 bellard
    tap_win32_overlapped_init(&tap_overlapped, handle);
627 7fb843f8 bellard
628 7fb843f8 bellard
    *phandle = &tap_overlapped;
629 7fb843f8 bellard
630 7fb843f8 bellard
    hThread = CreateThread(NULL, 0, tap_win32_thread_entry,
631 7fb843f8 bellard
                           (LPVOID)&tap_overlapped, 0, &idThread);
632 7fb843f8 bellard
    return 0;
633 7fb843f8 bellard
}
634 7fb843f8 bellard
635 7fb843f8 bellard
/********************************************/
636 7fb843f8 bellard
637 7fb843f8 bellard
 typedef struct TAPState {
638 7fb843f8 bellard
     VLANClientState *vc;
639 7fb843f8 bellard
     tap_win32_overlapped_t *handle;
640 7fb843f8 bellard
 } TAPState;
641 7fb843f8 bellard
642 7fb843f8 bellard
static void tap_receive(void *opaque, const uint8_t *buf, int size)
643 7fb843f8 bellard
{
644 7fb843f8 bellard
    TAPState *s = opaque;
645 7fb843f8 bellard
646 7fb843f8 bellard
    tap_win32_write(s->handle, buf, size);
647 7fb843f8 bellard
}
648 7fb843f8 bellard
649 e6cda8e2 bellard
static void tap_win32_send(void *opaque)
650 7fb843f8 bellard
{
651 e6cda8e2 bellard
    TAPState *s = opaque;
652 7fb843f8 bellard
    uint8_t *buf;
653 7fb843f8 bellard
    int max_size = 4096;
654 7fb843f8 bellard
    int size;
655 7fb843f8 bellard
656 7fb843f8 bellard
    size = tap_win32_read(s->handle, &buf, max_size);
657 7fb843f8 bellard
    if (size > 0) {
658 7fb843f8 bellard
        qemu_send_packet(s->vc, buf, size);
659 7fb843f8 bellard
        tap_win32_free_buffer(s->handle, buf);
660 7fb843f8 bellard
    }
661 7fb843f8 bellard
}
662 7fb843f8 bellard
663 7fb843f8 bellard
int tap_win32_init(VLANState *vlan, const char *ifname)
664 7fb843f8 bellard
{
665 7fb843f8 bellard
    TAPState *s;
666 3b46e624 ths
667 7fb843f8 bellard
    s = qemu_mallocz(sizeof(TAPState));
668 7fb843f8 bellard
    if (!s)
669 7fb843f8 bellard
        return -1;
670 7fb843f8 bellard
    if (tap_win32_open(&s->handle, ifname) < 0) {
671 7fb843f8 bellard
        printf("tap: Could not open '%s'\n", ifname);
672 7fb843f8 bellard
        return -1;
673 7fb843f8 bellard
    }
674 7fb843f8 bellard
675 4081fccf pbrook
    s->vc = qemu_new_vlan_client(vlan, tap_receive, NULL, s);
676 3b46e624 ths
677 7fb843f8 bellard
    snprintf(s->vc->info_str, sizeof(s->vc->info_str),
678 7fb843f8 bellard
             "tap: ifname=%s", ifname);
679 a18e524a bellard
680 e6cda8e2 bellard
    qemu_add_wait_object(s->handle->tap_semaphore, tap_win32_send, s);
681 7fb843f8 bellard
    return 0;
682 7fb843f8 bellard
}