469 lines
14 KiB
C
469 lines
14 KiB
C
/*
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* Copyright 1993 Robert J. Amstadt
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* Copyright 1995 Alexandre Julliard
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* This library 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 GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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*/
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#include "config.h"
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#include "wine/port.h"
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#include <assert.h>
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#include <stdlib.h>
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#include <string.h>
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#include <stdio.h>
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#include "windef.h"
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#include "wine/winbase16.h"
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#include "module.h"
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#include "stackframe.h"
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#include "selectors.h"
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#include "builtin16.h"
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#include "syslevel.h"
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#include "wine/library.h"
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#include "wine/debug.h"
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WINE_DEFAULT_DEBUG_CHANNEL(relay);
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/***********************************************************************
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* RELAY_Init
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*/
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BOOL RELAY_Init(void)
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{
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#ifdef __i386__
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WORD codesel;
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/* Allocate the code selector for CallTo16 routines */
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extern void Call16_Ret_Start(), Call16_Ret_End();
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extern void CallTo16_Ret();
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extern void CALL32_CBClient_Ret();
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extern void CALL32_CBClientEx_Ret();
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extern SEGPTR CallTo16_RetAddr;
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extern DWORD CallTo16_DataSelector;
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extern SEGPTR CALL32_CBClient_RetAddr;
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extern SEGPTR CALL32_CBClientEx_RetAddr;
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codesel = SELECTOR_AllocBlock( (void *)Call16_Ret_Start,
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(char *)Call16_Ret_End - (char *)Call16_Ret_Start,
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WINE_LDT_FLAGS_CODE | WINE_LDT_FLAGS_32BIT );
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if (!codesel) return FALSE;
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/* Patch the return addresses for CallTo16 routines */
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CallTo16_DataSelector = wine_get_ds();
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CallTo16_RetAddr =
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MAKESEGPTR( codesel, (char*)CallTo16_Ret - (char*)Call16_Ret_Start );
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CALL32_CBClient_RetAddr =
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MAKESEGPTR( codesel, (char*)CALL32_CBClient_Ret - (char*)Call16_Ret_Start );
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CALL32_CBClientEx_RetAddr =
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MAKESEGPTR( codesel, (char*)CALL32_CBClientEx_Ret - (char*)Call16_Ret_Start );
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#endif
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return TRUE;
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}
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/*
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* Stubs for the CallTo16/CallFrom16 routines on non-Intel architectures
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* (these will never be called but need to be present to satisfy the linker ...)
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*/
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#ifndef __i386__
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/***********************************************************************
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* wine_call_to_16 (KERNEL32.@)
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*/
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LONG WINAPI wine_call_to_16( FARPROC16 target, INT nArgs )
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{
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assert( FALSE );
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}
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/***********************************************************************
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* wine_call_to_16_regs_short (KERNEL32.@)
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*/
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void WINAPI wine_call_to_16_regs_short( CONTEXT86 *context, INT nArgs )
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{
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assert( FALSE );
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}
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/***********************************************************************
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* wine_call_to_16_regs_long (KERNEL32.@)
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*/
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void WINAPI wine_call_to_16_regs_long ( CONTEXT86 *context, INT nArgs )
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{
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assert( FALSE );
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}
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/***********************************************************************
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* __wine_call_from_16_word (KERNEL32.@)
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*/
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WORD __wine_call_from_16_word()
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{
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assert( FALSE );
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}
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/***********************************************************************
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* __wine_call_from_16_long (KERNEL32.@)
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*/
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LONG __wine_call_from_16_long()
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{
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assert( FALSE );
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}
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/***********************************************************************
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* __wine_call_from_16_regs (KERNEL32.@)
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*/
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void __wine_call_from_16_regs()
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{
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assert( FALSE );
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}
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DWORD WINAPI CALL32_CBClient( FARPROC proc, LPWORD args, DWORD *esi )
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{ assert( FALSE ); }
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DWORD WINAPI CALL32_CBClientEx( FARPROC proc, LPWORD args, DWORD *esi, INT *nArgs )
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{ assert( FALSE ); }
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#endif
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/***********************************************************************
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* RELAY_ShowDebugmsgRelay
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*
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* Simple function to decide if a particular debugging message is
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* wanted.
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*/
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static int RELAY_ShowDebugmsgRelay(const char *func)
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{
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/* from relay32/relay386.c */
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extern const char **debug_relay_excludelist,**debug_relay_includelist;
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if(debug_relay_excludelist || debug_relay_includelist) {
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const char *term = strchr(func, ':');
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const char **listitem;
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int len, len2, itemlen, show;
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if(debug_relay_excludelist) {
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show = 1;
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listitem = debug_relay_excludelist;
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} else {
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show = 0;
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listitem = debug_relay_includelist;
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}
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assert(term);
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assert(strlen(term) > 2);
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len = term - func;
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len2 = strchr(func, '.') - func;
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assert(len2 && len2 > 0 && len2 < 64);
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term += 2;
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for(; *listitem; listitem++) {
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itemlen = strlen(*listitem);
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if((itemlen == len && !strncasecmp(*listitem, func, len)) ||
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(itemlen == len2 && !strncasecmp(*listitem, func, len2)) ||
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!strcasecmp(*listitem, term)) {
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show = !show;
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break;
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}
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}
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return show;
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}
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return 1;
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}
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/***********************************************************************
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* get_entry_point
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*
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* Return the ordinal, name, and type info corresponding to a CS:IP address.
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*/
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static const CALLFROM16 *get_entry_point( STACK16FRAME *frame, LPSTR name, WORD *pOrd )
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{
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WORD i, max_offset;
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register BYTE *p;
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NE_MODULE *pModule;
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ET_BUNDLE *bundle;
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ET_ENTRY *entry;
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if (!(pModule = NE_GetPtr( FarGetOwner16( GlobalHandle16( frame->module_cs ) ))))
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return NULL;
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max_offset = 0;
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*pOrd = 0;
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bundle = (ET_BUNDLE *)((BYTE *)pModule + pModule->entry_table);
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do
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{
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entry = (ET_ENTRY *)((BYTE *)bundle+6);
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for (i = bundle->first + 1; i <= bundle->last; i++)
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{
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if ((entry->offs < frame->entry_ip)
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&& (entry->segnum == 1) /* code segment ? */
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&& (entry->offs >= max_offset))
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{
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max_offset = entry->offs;
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*pOrd = i;
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}
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entry++;
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}
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} while ( (bundle->next)
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&& (bundle = (ET_BUNDLE *)((BYTE *)pModule+bundle->next)));
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/* Search for the name in the resident names table */
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/* (built-in modules have no non-resident table) */
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p = (BYTE *)pModule + pModule->name_table;
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while (*p)
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{
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p += *p + 1 + sizeof(WORD);
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if (*(WORD *)(p + *p + 1) == *pOrd) break;
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}
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sprintf( name, "%.*s.%d: %.*s",
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*((BYTE *)pModule + pModule->name_table),
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(char *)pModule + pModule->name_table + 1,
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*pOrd, *p, (char *)(p + 1) );
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/* Retrieve entry point call structure */
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p = MapSL( MAKESEGPTR( frame->module_cs, frame->callfrom_ip ) );
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/* p now points to lret, get the start of CALLFROM16 structure */
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return (CALLFROM16 *)(p - (BYTE *)&((CALLFROM16 *)0)->lret);
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}
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/***********************************************************************
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* RELAY_DebugCallFrom16
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*/
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void RELAY_DebugCallFrom16( CONTEXT86 *context )
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{
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STACK16FRAME *frame;
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WORD ordinal;
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char *args16, funstr[80];
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const CALLFROM16 *call;
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int i;
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if (!TRACE_ON(relay)) return;
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frame = CURRENT_STACK16;
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call = get_entry_point( frame, funstr, &ordinal );
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if (!call) return; /* happens for the two snoop register relays */
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if (!RELAY_ShowDebugmsgRelay(funstr)) return;
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DPRINTF( "%04lx:Call %s(",GetCurrentThreadId(),funstr);
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VA_START16( args16 );
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if (call->lret == 0xcb66) /* cdecl */
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{
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for (i = 0; i < 20; i++)
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{
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int type = (call->arg_types[i / 10] >> (3 * (i % 10))) & 7;
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if (type == ARG_NONE) break;
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if (i) DPRINTF( "," );
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switch(type)
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{
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case ARG_WORD:
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case ARG_SWORD:
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DPRINTF( "%04x", *(WORD *)args16 );
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args16 += sizeof(WORD);
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break;
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case ARG_LONG:
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DPRINTF( "%08x", *(int *)args16 );
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args16 += sizeof(int);
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break;
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case ARG_PTR:
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DPRINTF( "%04x:%04x", *(WORD *)(args16+2), *(WORD *)args16 );
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args16 += sizeof(SEGPTR);
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break;
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case ARG_STR:
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DPRINTF( "%08x %s", *(int *)args16,
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debugstr_a( MapSL(*(SEGPTR *)args16 )));
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args16 += sizeof(int);
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break;
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case ARG_SEGSTR:
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DPRINTF( "%04x:%04x %s", *(WORD *)(args16+2), *(WORD *)args16,
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debugstr_a( MapSL(*(SEGPTR *)args16 )) );
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args16 += sizeof(SEGPTR);
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break;
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default:
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break;
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}
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}
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}
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else /* not cdecl */
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{
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/* Start with the last arg */
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args16 += call->nArgs;
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for (i = 0; i < 20; i++)
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{
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int type = (call->arg_types[i / 10] >> (3 * (i % 10))) & 7;
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if (type == ARG_NONE) break;
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if (i) DPRINTF( "," );
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switch(type)
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{
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case ARG_WORD:
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case ARG_SWORD:
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args16 -= sizeof(WORD);
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DPRINTF( "%04x", *(WORD *)args16 );
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break;
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case ARG_LONG:
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args16 -= sizeof(int);
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DPRINTF( "%08x", *(int *)args16 );
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break;
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case ARG_PTR:
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args16 -= sizeof(SEGPTR);
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DPRINTF( "%04x:%04x", *(WORD *)(args16+2), *(WORD *)args16 );
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break;
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case ARG_STR:
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args16 -= sizeof(int);
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DPRINTF( "%08x %s", *(int *)args16,
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debugstr_a( MapSL(*(SEGPTR *)args16 )));
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break;
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case ARG_SEGSTR:
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args16 -= sizeof(SEGPTR);
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DPRINTF( "%04x:%04x %s", *(WORD *)(args16+2), *(WORD *)args16,
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debugstr_a( MapSL(*(SEGPTR *)args16 )) );
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break;
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default:
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break;
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}
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}
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}
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DPRINTF( ") ret=%04x:%04x ds=%04x\n", frame->cs, frame->ip, frame->ds );
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VA_END16( args16 );
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if (call->arg_types[0] & ARG_REGISTER)
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DPRINTF(" AX=%04x BX=%04x CX=%04x DX=%04x SI=%04x DI=%04x ES=%04x EFL=%08lx\n",
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(WORD)context->Eax, (WORD)context->Ebx, (WORD)context->Ecx,
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(WORD)context->Edx, (WORD)context->Esi, (WORD)context->Edi,
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(WORD)context->SegEs, context->EFlags );
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SYSLEVEL_CheckNotLevel( 2 );
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}
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/***********************************************************************
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* RELAY_DebugCallFrom16Ret
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*/
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void RELAY_DebugCallFrom16Ret( CONTEXT86 *context, int ret_val )
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{
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STACK16FRAME *frame;
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WORD ordinal;
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char funstr[80];
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const CALLFROM16 *call;
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if (!TRACE_ON(relay)) return;
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frame = CURRENT_STACK16;
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call = get_entry_point( frame, funstr, &ordinal );
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if (!call) return;
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if (!RELAY_ShowDebugmsgRelay(funstr)) return;
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DPRINTF( "%04lx:Ret %s() ",GetCurrentThreadId(),funstr);
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if (call->arg_types[0] & ARG_REGISTER)
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{
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DPRINTF("retval=none ret=%04x:%04x ds=%04x\n",
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(WORD)context->SegCs, LOWORD(context->Eip), (WORD)context->SegDs);
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DPRINTF(" AX=%04x BX=%04x CX=%04x DX=%04x SI=%04x DI=%04x ES=%04x EFL=%08lx\n",
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(WORD)context->Eax, (WORD)context->Ebx, (WORD)context->Ecx,
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(WORD)context->Edx, (WORD)context->Esi, (WORD)context->Edi,
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(WORD)context->SegEs, context->EFlags );
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}
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else if (call->arg_types[0] & ARG_RET16)
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{
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DPRINTF( "retval=%04x ret=%04x:%04x ds=%04x\n",
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ret_val & 0xffff, frame->cs, frame->ip, frame->ds );
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}
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else
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{
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DPRINTF( "retval=%08x ret=%04x:%04x ds=%04x\n",
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ret_val, frame->cs, frame->ip, frame->ds );
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}
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SYSLEVEL_CheckNotLevel( 2 );
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}
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/***********************************************************************
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* RELAY_DebugCallTo16
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*
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* 'target' contains either the function to call (normal CallTo16)
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* or a pointer to the CONTEXT86 struct (register CallTo16).
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* 'nb_args' is the number of argument bytes on the 16-bit stack;
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* 'reg_func' specifies whether we have a register CallTo16 or not.
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*/
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void RELAY_DebugCallTo16( LPVOID target, int nb_args, BOOL reg_func )
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{
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WORD *stack16;
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TEB *teb;
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if (!TRACE_ON(relay)) return;
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teb = NtCurrentTeb();
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stack16 = (WORD *)THREAD_STACK16(teb);
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nb_args /= sizeof(WORD);
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if ( reg_func )
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{
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CONTEXT86 *context = (CONTEXT86 *)target;
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DPRINTF("%04lx:CallTo16(func=%04lx:%04x,ds=%04lx",
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GetCurrentThreadId(),
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context->SegCs, LOWORD(context->Eip), context->SegDs );
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while (nb_args--) DPRINTF( ",%04x", *--stack16 );
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DPRINTF(") ss:sp=%04x:%04x", SELECTOROF(teb->cur_stack),
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OFFSETOF(teb->cur_stack) );
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DPRINTF(" ax=%04x bx=%04x cx=%04x dx=%04x si=%04x di=%04x bp=%04x es=%04x fs=%04x\n",
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(WORD)context->Eax, (WORD)context->Ebx, (WORD)context->Ecx,
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(WORD)context->Edx, (WORD)context->Esi, (WORD)context->Edi,
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(WORD)context->Ebp, (WORD)context->SegEs, (WORD)context->SegFs );
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}
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else
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{
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DPRINTF("%04lx:CallTo16(func=%04x:%04x,ds=%04x",
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GetCurrentThreadId(),
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HIWORD(target), LOWORD(target), SELECTOROF(teb->cur_stack) );
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while (nb_args--) DPRINTF( ",%04x", *--stack16 );
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DPRINTF(") ss:sp=%04x:%04x\n", SELECTOROF(teb->cur_stack),
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OFFSETOF(teb->cur_stack) );
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}
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SYSLEVEL_CheckNotLevel( 2 );
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}
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/***********************************************************************
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* RELAY_DebugCallTo16Ret
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*/
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void RELAY_DebugCallTo16Ret( BOOL reg_func, int ret_val )
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{
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if (!TRACE_ON(relay)) return;
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if (!reg_func)
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{
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DPRINTF("%04lx:RetFrom16() ss:sp=%04x:%04x retval=%08x\n",
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GetCurrentThreadId(),
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SELECTOROF(NtCurrentTeb()->cur_stack),
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OFFSETOF(NtCurrentTeb()->cur_stack), ret_val);
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}
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else
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{
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CONTEXT86 *context = (CONTEXT86 *)ret_val;
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DPRINTF("%04lx:RetFrom16() ss:sp=%04x:%04x ",
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GetCurrentThreadId(),
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SELECTOROF(NtCurrentTeb()->cur_stack),
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OFFSETOF(NtCurrentTeb()->cur_stack));
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DPRINTF(" ax=%04x bx=%04x cx=%04x dx=%04x bp=%04x sp=%04x\n",
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(WORD)context->Eax, (WORD)context->Ebx, (WORD)context->Ecx,
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(WORD)context->Edx, (WORD)context->Ebp, (WORD)context->Esp );
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}
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SYSLEVEL_CheckNotLevel( 2 );
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}
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