723 lines
24 KiB
Plaintext
723 lines
24 KiB
Plaintext
%{
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/*
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* Parser for command lines in the Wine debugger
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*
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* Copyright 1993 Eric Youngdale
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* Copyright 1995 Morten Welinder
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*/
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#include "config.h"
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <signal.h>
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#include <sys/stat.h>
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#include <unistd.h>
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#ifdef HAVE_ALLOCA_H
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#include <alloca.h>
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#endif
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#include "winbase.h"
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#include "module.h"
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#include "task.h"
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#include "options.h"
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#include "queue.h"
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#include "wine/winbase16.h"
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#include "winnt.h"
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#include "x11drv.h"
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#include "win.h"
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#include "debugger.h"
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#include "neexe.h"
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#include "process.h"
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#include "server.h"
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#include "main.h"
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#include "expr.h"
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#include "user.h"
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extern FILE * yyin;
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unsigned int dbg_mode = 0;
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HANDLE dbg_heap = 0;
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int curr_frame = 0;
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static enum exec_mode dbg_exec_mode = EXEC_CONT;
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static int dbg_exec_count = 0;
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void issue_prompt(void);
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void mode_command(int);
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void flush_symbols(void);
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int yylex(void);
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int yyerror(char *);
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#ifdef DBG_need_heap
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#define malloc(x) DBG_alloc(x)
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#define realloc(x,y) DBG_realloc(x,y)
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#define free(x) DBG_free(x)
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#endif
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extern void VIRTUAL_Dump(void); /* memory/virtual.c */
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%}
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%union
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{
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DBG_ADDR address;
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enum debug_regs reg;
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char * string;
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int integer;
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struct list_id listing;
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struct expr * expression;
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struct datatype * type;
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}
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%token tCONT tPASS tSTEP tLIST tNEXT tQUIT tHELP tBACKTRACE tINFO tWALK tUP tDOWN
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%token tENABLE tDISABLE tBREAK tDELETE tSET tMODE tPRINT tEXAM tABORT tDEBUGMSG
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%token tCLASS tMAPS tMODULE tSTACK tSEGMENTS tREGS tWND tQUEUE tLOCAL
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%token tPROCESS tMODREF
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%token tEOL tSTRING tDEBUGSTR
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%token tFRAME tSHARE tCOND tDISPLAY tUNDISPLAY tDISASSEMBLE
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%token tSTEPI tNEXTI tFINISH tSHOW tDIR
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%token <string> tPATH
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%token <string> tIDENTIFIER tSTRING tDEBUGSTR
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%token <integer> tNUM tFORMAT
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%token <reg> tREG
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%token tSYMBOLFILE
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%token tCHAR tSHORT tINT tLONG tFLOAT tDOUBLE tUNSIGNED tSIGNED
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%token tSTRUCT tUNION tENUM
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/* %left ',' */
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/* %left '=' OP_OR_EQUAL OP_XOR_EQUAL OP_AND_EQUAL OP_SHL_EQUAL \
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OP_SHR_EQUAL OP_PLUS_EQUAL OP_MINUS_EQUAL \
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OP_TIMES_EQUAL OP_DIVIDE_EQUAL OP_MODULO_EQUAL */
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/* %left OP_COND */ /* ... ? ... : ... */
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%left OP_LOR
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%left OP_LAND
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%left '|'
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%left '^'
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%left '&'
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%left OP_EQ OP_NE
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%left '<' '>' OP_LE OP_GE
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%left OP_SHL OP_SHR
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%left '+' '-'
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%left '*' '/' '%'
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%left OP_SIGN '!' '~' OP_DEREF /* OP_INC OP_DEC OP_ADDR */
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%left '.' '[' OP_DRF
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%nonassoc ':'
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%type <expression> expr lval lvalue
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%type <type> type_cast type_expr
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%type <address> expr_addr lval_addr
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%type <integer> expr_value
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%type <string> pathname
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%type <listing> list_arg
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%%
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input: line { issue_prompt(); }
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| input line { issue_prompt(); }
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line: command
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| tEOL
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| error tEOL { yyerrok; }
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command:
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tQUIT tEOL { DEBUG_Exit(0); }
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| tHELP tEOL { DEBUG_Help(); }
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| tHELP tINFO tEOL { DEBUG_HelpInfo(); }
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| tCONT tEOL { dbg_exec_count = 1;
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dbg_exec_mode = EXEC_CONT; return 0; }
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| tPASS tEOL { dbg_exec_count = 1;
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dbg_exec_mode = EXEC_PASS; return 0; }
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| tCONT tNUM tEOL { dbg_exec_count = $2;
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dbg_exec_mode = EXEC_CONT; return 0; }
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| tSTEP tEOL { dbg_exec_count = 1;
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dbg_exec_mode = EXEC_STEP_INSTR; return 0; }
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| tNEXT tEOL { dbg_exec_count = 1;
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dbg_exec_mode = EXEC_STEP_OVER; return 0; }
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| tSTEP tNUM tEOL { dbg_exec_count = $2;
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dbg_exec_mode = EXEC_STEP_INSTR; return 0; }
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| tNEXT tNUM tEOL { dbg_exec_count = $2;
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dbg_exec_mode = EXEC_STEP_OVER; return 0; }
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| tSTEPI tEOL { dbg_exec_count = 1;
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dbg_exec_mode = EXEC_STEPI_INSTR; return 0; }
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| tNEXTI tEOL { dbg_exec_count = 1;
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dbg_exec_mode = EXEC_STEPI_OVER; return 0; }
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| tSTEPI tNUM tEOL { dbg_exec_count = $2;
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dbg_exec_mode = EXEC_STEPI_INSTR; return 0; }
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| tNEXTI tNUM tEOL { dbg_exec_count = $2;
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dbg_exec_mode = EXEC_STEPI_OVER; return 0; }
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| tABORT tEOL { kill(getpid(), SIGABRT); }
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| tMODE tNUM tEOL { mode_command($2); }
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| tENABLE tNUM tEOL { DEBUG_EnableBreakpoint( $2, TRUE ); }
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| tDISABLE tNUM tEOL { DEBUG_EnableBreakpoint( $2, FALSE ); }
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| tDELETE tBREAK tNUM tEOL { DEBUG_DelBreakpoint( $3 ); }
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| tBACKTRACE tEOL { DEBUG_BackTrace(); }
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| tUP tEOL { DEBUG_SetFrame( curr_frame + 1 ); }
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| tUP tNUM tEOL { DEBUG_SetFrame( curr_frame + $2 ); }
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| tDOWN tEOL { DEBUG_SetFrame( curr_frame - 1 ); }
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| tDOWN tNUM tEOL { DEBUG_SetFrame( curr_frame - $2 ); }
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| tFRAME tNUM tEOL { DEBUG_SetFrame( $2 ); }
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| tFINISH tEOL { dbg_exec_count = 0;
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dbg_exec_mode = EXEC_FINISH; return 0; }
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| tSHOW tDIR tEOL { DEBUG_ShowDir(); }
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| tDIR pathname tEOL { DEBUG_AddPath( $2 ); }
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| tDIR tEOL { DEBUG_NukePath(); }
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| tDISPLAY tEOL { DEBUG_InfoDisplay(); }
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| tDISPLAY expr tEOL { DEBUG_AddDisplay($2, 1, 0); }
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| tDISPLAY tFORMAT expr tEOL { DEBUG_AddDisplay($3, $2 >> 8, $2 & 0xff); }
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| tDELETE tDISPLAY tNUM tEOL { DEBUG_DelDisplay( $3 ); }
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| tDELETE tDISPLAY tEOL { DEBUG_DelDisplay( -1 ); }
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| tUNDISPLAY tNUM tEOL { DEBUG_DelDisplay( $2 ); }
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| tUNDISPLAY tEOL { DEBUG_DelDisplay( -1 ); }
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| tCOND tNUM tEOL { DEBUG_AddBPCondition($2, NULL); }
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| tCOND tNUM expr tEOL { DEBUG_AddBPCondition($2, $3); }
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| tDEBUGMSG tDEBUGSTR tEOL { MAIN_ParseDebugOptions($2); }
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| tSYMBOLFILE pathname tEOL{ DEBUG_ReadSymbolTable($2); }
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| list_command
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| disassemble_command
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| set_command
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| x_command
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| print_command
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| break_command
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| info_command
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| walk_command
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set_command:
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tSET tREG '=' expr_value tEOL { DEBUG_SetRegister( $2, $4 );
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DEBUG_FreeExprMem(); }
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| tSET lval_addr '=' expr_value tEOL { DEBUG_WriteMemory( &$2, $4 );
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DEBUG_FreeExprMem(); }
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pathname:
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tIDENTIFIER { $$ = $1; }
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| tPATH { $$ = $1; }
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disassemble_command:
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tDISASSEMBLE tEOL { DEBUG_Disassemble( NULL, NULL, 10 ); }
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| tDISASSEMBLE expr_addr tEOL { DEBUG_Disassemble( & $2, NULL, 10 ); }
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| tDISASSEMBLE expr_addr ',' expr_addr tEOL { DEBUG_Disassemble( & $2, & $4, 0 ); }
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list_command:
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tLIST tEOL { DEBUG_List( NULL, NULL, 10 ); }
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| tLIST '-' tEOL { DEBUG_List( NULL, NULL, -10 ); }
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| tLIST list_arg tEOL { DEBUG_List( & $2, NULL, 10 ); }
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| tLIST ',' list_arg tEOL { DEBUG_List( NULL, & $3, -10 ); }
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| tLIST list_arg ',' list_arg tEOL { DEBUG_List( & $2, & $4, 0 ); }
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list_arg:
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tNUM { $$.sourcefile = NULL; $$.line = $1; }
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| pathname ':' tNUM { $$.sourcefile = $1; $$.line = $3; }
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| tIDENTIFIER { DEBUG_GetFuncInfo( & $$, NULL, $1); }
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| pathname ':' tIDENTIFIER { DEBUG_GetFuncInfo( & $$, $1, $3); }
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| '*' expr_addr { DEBUG_FindNearestSymbol( & $2, FALSE, NULL,
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0, & $$ );
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DEBUG_FreeExprMem(); }
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x_command:
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tEXAM expr_addr tEOL { DEBUG_ExamineMemory( &$2, 1, 'x');
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DEBUG_FreeExprMem(); }
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| tEXAM tFORMAT expr_addr tEOL { DEBUG_ExamineMemory( &$3, $2>>8, $2&0xff );
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DEBUG_FreeExprMem(); }
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print_command:
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tPRINT expr_addr tEOL { DEBUG_Print( &$2, 1, 0, 0 );
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DEBUG_FreeExprMem(); }
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| tPRINT tFORMAT expr_addr tEOL { DEBUG_Print( &$3, $2 >> 8, $2 & 0xff, 0 );
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DEBUG_FreeExprMem(); }
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break_command:
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tBREAK '*' expr_addr tEOL { DEBUG_AddBreakpoint( &$3 );
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DEBUG_FreeExprMem(); }
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| tBREAK tIDENTIFIER tEOL { DBG_ADDR addr;
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if( DEBUG_GetSymbolValue($2, -1, &addr, TRUE) )
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{
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DEBUG_AddBreakpoint( &addr );
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}
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else
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{
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fprintf(stderr,"Unable to add breakpoint\n");
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}
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}
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| tBREAK tIDENTIFIER ':' tNUM tEOL { DBG_ADDR addr;
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if( DEBUG_GetSymbolValue($2, $4, &addr, TRUE) )
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{
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DEBUG_AddBreakpoint( &addr );
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}
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else
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{
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fprintf(stderr,"Unable to add breakpoint\n");
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}
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}
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| tBREAK tNUM tEOL { struct name_hash *nh;
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DBG_ADDR addr;
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DEBUG_GetCurrentAddress( &addr );
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DEBUG_FindNearestSymbol(&addr, TRUE,
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&nh, 0, NULL);
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if( nh != NULL )
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{
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DEBUG_GetLineNumberAddr(nh,
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$2, &addr, TRUE);
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DEBUG_AddBreakpoint( &addr );
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}
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else
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{
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fprintf(stderr,"Unable to add breakpoint\n");
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}
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}
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| tBREAK tEOL { DBG_ADDR addr;
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DEBUG_GetCurrentAddress( &addr );
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DEBUG_AddBreakpoint( &addr );
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}
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info_command:
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tINFO tBREAK tEOL { DEBUG_InfoBreakpoints(); }
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| tINFO tCLASS expr_value tEOL { CLASS_DumpClass( (struct tagCLASS *)$3 );
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DEBUG_FreeExprMem(); }
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| tINFO tSHARE tEOL { DEBUG_InfoShare(); }
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| tINFO tMODULE expr_value tEOL { NE_DumpModule( $3 );
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DEBUG_FreeExprMem(); }
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| tINFO tQUEUE expr_value tEOL { QUEUE_DumpQueue( $3 );
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DEBUG_FreeExprMem(); }
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| tINFO tREGS tEOL { DEBUG_InfoRegisters(); }
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| tINFO tSEGMENTS expr_value tEOL { LDT_Print( SELECTOR_TO_ENTRY($3), 1 );
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DEBUG_FreeExprMem(); }
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| tINFO tSEGMENTS tEOL { LDT_Print( 0, -1 ); }
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| tINFO tSTACK tEOL { DEBUG_InfoStack(); }
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| tINFO tMAPS tEOL { VIRTUAL_Dump(); }
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| tINFO tWND expr_value tEOL { WIN_DumpWindow( $3 );
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DEBUG_FreeExprMem(); }
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| tINFO tLOCAL tEOL { DEBUG_InfoLocals(); }
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| tINFO tDISPLAY tEOL { DEBUG_InfoDisplay(); }
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walk_command:
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tWALK tCLASS tEOL { CLASS_WalkClasses(); }
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| tWALK tMODULE tEOL { NE_WalkModules(); }
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| tWALK tQUEUE tEOL { QUEUE_WalkQueues(); }
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| tWALK tWND tEOL { WIN_WalkWindows( 0, 0 ); }
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| tWALK tWND tNUM tEOL { WIN_WalkWindows( $3, 0 ); }
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| tWALK tPROCESS tEOL { PROCESS_WalkProcess(); }
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| tWALK tMODREF expr_value tEOL { MODULE_WalkModref( $3 ); }
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type_cast:
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'(' type_expr ')' { $$ = $2; }
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type_expr:
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type_expr '*' { $$ = DEBUG_FindOrMakePointerType($1); }
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| tINT { $$ = DEBUG_TypeCast(DT_BASIC, "int"); }
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| tCHAR { $$ = DEBUG_TypeCast(DT_BASIC, "char"); }
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| tLONG tINT { $$ = DEBUG_TypeCast(DT_BASIC, "long int"); }
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| tUNSIGNED tINT { $$ = DEBUG_TypeCast(DT_BASIC, "unsigned int"); }
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| tLONG tUNSIGNED tINT { $$ = DEBUG_TypeCast(DT_BASIC, "long unsigned int"); }
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| tLONG tLONG tINT { $$ = DEBUG_TypeCast(DT_BASIC, "long long int"); }
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| tLONG tLONG tUNSIGNED tINT { $$ = DEBUG_TypeCast(DT_BASIC, "long long unsigned int"); }
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| tSHORT tINT { $$ = DEBUG_TypeCast(DT_BASIC, "short int"); }
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| tSHORT tUNSIGNED tINT { $$ = DEBUG_TypeCast(DT_BASIC, "short unsigned int"); }
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| tSIGNED tCHAR { $$ = DEBUG_TypeCast(DT_BASIC, "signed char"); }
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| tUNSIGNED tCHAR { $$ = DEBUG_TypeCast(DT_BASIC, "unsigned char"); }
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| tFLOAT { $$ = DEBUG_TypeCast(DT_BASIC, "float"); }
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| tDOUBLE { $$ = DEBUG_TypeCast(DT_BASIC, "double"); }
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| tLONG tDOUBLE { $$ = DEBUG_TypeCast(DT_BASIC, "long double"); }
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| tSTRUCT tIDENTIFIER { $$ = DEBUG_TypeCast(DT_STRUCT, $2); }
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| tUNION tIDENTIFIER { $$ = DEBUG_TypeCast(DT_STRUCT, $2); }
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| tENUM tIDENTIFIER { $$ = DEBUG_TypeCast(DT_ENUM, $2); }
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expr_addr:
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expr { $$ = DEBUG_EvalExpr($1); }
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expr_value:
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expr { DBG_ADDR addr = DEBUG_EvalExpr($1);
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$$ = addr.off ? *(unsigned int *) addr.off : 0; }
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/*
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* The expr rule builds an expression tree. When we are done, we call
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* EvalExpr to evaluate the value of the expression. The advantage of
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* the two-step approach is that it is possible to save expressions for
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* use in 'display' commands, and in conditional watchpoints.
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*/
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expr:
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tNUM { $$ = DEBUG_ConstExpr($1); }
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| tSTRING { $$ = DEBUG_StringExpr($1); }
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| tREG { $$ = DEBUG_RegisterExpr($1); }
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| tIDENTIFIER { $$ = DEBUG_SymbolExpr($1); }
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| expr OP_DRF tIDENTIFIER { $$ = DEBUG_StructPExpr($1, $3); }
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| expr '.' tIDENTIFIER { $$ = DEBUG_StructExpr($1, $3); }
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| tIDENTIFIER '(' ')' { $$ = DEBUG_CallExpr($1, 0); }
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| tIDENTIFIER '(' expr ')' { $$ = DEBUG_CallExpr($1, 1, $3); }
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| tIDENTIFIER '(' expr ',' expr ')' { $$ = DEBUG_CallExpr($1, 2, $3,
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$5); }
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| tIDENTIFIER '(' expr ',' expr ',' expr ')' { $$ = DEBUG_CallExpr($1, 3, $3, $5, $7); }
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| tIDENTIFIER '(' expr ',' expr ',' expr ',' expr ')' { $$ = DEBUG_CallExpr($1, 3, $3, $5, $7, $9); }
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| tIDENTIFIER '(' expr ',' expr ',' expr ',' expr ',' expr ')' { $$ = DEBUG_CallExpr($1, 3, $3, $5, $7, $9, $11); }
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| expr '[' expr ']' { $$ = DEBUG_BinopExpr(EXP_OP_ARR, $1, $3); }
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| expr ':' expr { $$ = DEBUG_BinopExpr(EXP_OP_SEG, $1, $3); }
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| expr OP_LOR expr { $$ = DEBUG_BinopExpr(EXP_OP_LOR, $1, $3); }
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| expr OP_LAND expr { $$ = DEBUG_BinopExpr(EXP_OP_LAND, $1, $3); }
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| expr '|' expr { $$ = DEBUG_BinopExpr(EXP_OP_OR, $1, $3); }
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| expr '&' expr { $$ = DEBUG_BinopExpr(EXP_OP_AND, $1, $3); }
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| expr '^' expr { $$ = DEBUG_BinopExpr(EXP_OP_XOR, $1, $3); }
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| expr OP_EQ expr { $$ = DEBUG_BinopExpr(EXP_OP_EQ, $1, $3); }
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| expr '>' expr { $$ = DEBUG_BinopExpr(EXP_OP_GT, $1, $3); }
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| expr '<' expr { $$ = DEBUG_BinopExpr(EXP_OP_LT, $1, $3); }
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| expr OP_GE expr { $$ = DEBUG_BinopExpr(EXP_OP_GE, $1, $3); }
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| expr OP_LE expr { $$ = DEBUG_BinopExpr(EXP_OP_LE, $1, $3); }
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| expr OP_NE expr { $$ = DEBUG_BinopExpr(EXP_OP_NE, $1, $3); }
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| expr OP_SHL expr { $$ = DEBUG_BinopExpr(EXP_OP_SHL, $1, $3); }
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| expr OP_SHR expr { $$ = DEBUG_BinopExpr(EXP_OP_SHR, $1, $3); }
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| expr '+' expr { $$ = DEBUG_BinopExpr(EXP_OP_ADD, $1, $3); }
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| expr '-' expr { $$ = DEBUG_BinopExpr(EXP_OP_SUB, $1, $3); }
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| expr '*' expr { $$ = DEBUG_BinopExpr(EXP_OP_MUL, $1, $3); }
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| expr '/' expr { $$ = DEBUG_BinopExpr(EXP_OP_DIV, $1, $3); }
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| expr '%' expr { $$ = DEBUG_BinopExpr(EXP_OP_REM, $1, $3); }
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| '-' expr %prec OP_SIGN { $$ = DEBUG_UnopExpr(EXP_OP_NEG, $2); }
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| '+' expr %prec OP_SIGN { $$ = $2; }
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| '!' expr { $$ = DEBUG_UnopExpr(EXP_OP_NOT, $2); }
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| '~' expr { $$ = DEBUG_UnopExpr(EXP_OP_LNOT, $2); }
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| '(' expr ')' { $$ = $2; }
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| '*' expr %prec OP_DEREF { $$ = DEBUG_UnopExpr(EXP_OP_DEREF, $2); }
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| '&' expr %prec OP_DEREF { $$ = DEBUG_UnopExpr(EXP_OP_ADDR, $2); }
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| type_cast expr %prec OP_DEREF { $$ = DEBUG_TypeCastExpr($1, $2); }
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/*
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* The lvalue rule builds an expression tree. This is a limited form
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* of expression that is suitable to be used as an lvalue.
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*/
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lval_addr:
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lval { $$ = DEBUG_EvalExpr($1); }
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lval:
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lvalue { $$ = $1; }
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| '*' expr { $$ = DEBUG_UnopExpr(EXP_OP_FORCE_DEREF, $2); }
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lvalue:
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tNUM { $$ = DEBUG_ConstExpr($1); }
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| tREG { $$ = DEBUG_RegisterExpr($1); }
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| tIDENTIFIER { $$ = DEBUG_SymbolExpr($1); }
|
|
| lvalue OP_DRF tIDENTIFIER { $$ = DEBUG_StructPExpr($1, $3); }
|
|
| lvalue '.' tIDENTIFIER { $$ = DEBUG_StructExpr($1, $3); }
|
|
| lvalue '[' expr ']' { $$ = DEBUG_BinopExpr(EXP_OP_ARR, $1, $3); }
|
|
|
|
%%
|
|
|
|
void
|
|
issue_prompt(){
|
|
#ifdef DONT_USE_READLINE
|
|
fprintf(stderr,"Wine-dbg>");
|
|
#endif
|
|
}
|
|
|
|
void mode_command(int newmode)
|
|
{
|
|
if ((newmode == 16) || (newmode == 32)) dbg_mode = newmode;
|
|
else fprintf(stderr,"Invalid mode (use 16 or 32)\n");
|
|
}
|
|
|
|
/***********************************************************************
|
|
* DEBUG_Freeze
|
|
*/
|
|
static void DEBUG_Freeze( BOOL freeze )
|
|
{
|
|
static BOOL frozen = FALSE;
|
|
|
|
if ( freeze && !frozen )
|
|
{
|
|
if ( X11DRV_CritSection.LockSemaphore )
|
|
{
|
|
/* Don't freeze thread currently holding the X crst! */
|
|
EnterCriticalSection( &X11DRV_CritSection );
|
|
CLIENT_DebuggerRequest( DEBUGGER_FREEZE_ALL );
|
|
LeaveCriticalSection( &X11DRV_CritSection );
|
|
}
|
|
else
|
|
CLIENT_DebuggerRequest( DEBUGGER_FREEZE_ALL );
|
|
|
|
frozen = TRUE;
|
|
}
|
|
|
|
if ( !freeze && frozen )
|
|
{
|
|
CLIENT_DebuggerRequest( DEBUGGER_UNFREEZE_ALL );
|
|
frozen = FALSE;
|
|
}
|
|
}
|
|
|
|
/***********************************************************************
|
|
* DEBUG_Exit
|
|
*
|
|
* Kill current process.
|
|
*/
|
|
void DEBUG_Exit( DWORD exit_code )
|
|
{
|
|
DEBUG_Freeze( FALSE );
|
|
|
|
TASK_KillTask( 0 ); /* FIXME: should not be necessary */
|
|
TerminateProcess( GetCurrentProcess(), exit_code );
|
|
}
|
|
|
|
/***********************************************************************
|
|
* DEBUG_Main
|
|
*
|
|
* Debugger main loop.
|
|
*/
|
|
static void DEBUG_Main( BOOL is_debug )
|
|
{
|
|
static int loaded_symbols = 0;
|
|
static BOOL in_debugger = FALSE;
|
|
char SymbolTableFile[256];
|
|
int newmode;
|
|
BOOL ret_ok;
|
|
#ifdef YYDEBUG
|
|
yydebug = 0;
|
|
#endif
|
|
|
|
if (in_debugger)
|
|
{
|
|
fprintf( stderr, " inside debugger, trying to invoke external debugger.\n" );
|
|
DEBUG_ExternalDebugger();
|
|
DEBUG_Exit(1);
|
|
}
|
|
in_debugger = TRUE;
|
|
yyin = stdin;
|
|
|
|
DEBUG_SetBreakpoints( FALSE );
|
|
|
|
if (!is_debug)
|
|
{
|
|
#ifdef __i386__
|
|
if (IS_SELECTOR_SYSTEM(CS_reg(&DEBUG_context)))
|
|
fprintf( stderr, " in 32-bit code (0x%08lx).\n", EIP_reg(&DEBUG_context));
|
|
else
|
|
fprintf( stderr, " in 16-bit code (%04x:%04lx).\n",
|
|
(WORD)CS_reg(&DEBUG_context), EIP_reg(&DEBUG_context) );
|
|
#else
|
|
fprintf( stderr, " (%p).\n", GET_IP(&DEBUG_context) );
|
|
#endif
|
|
}
|
|
|
|
if (!loaded_symbols)
|
|
{
|
|
loaded_symbols++;
|
|
|
|
DEBUG_Freeze( TRUE );
|
|
|
|
#ifdef DBG_need_heap
|
|
/*
|
|
* Initialize the debugger heap.
|
|
*/
|
|
dbg_heap = HeapCreate(HEAP_NO_SERIALIZE, 0x1000, 0x8000000); /* 128MB */
|
|
#endif
|
|
|
|
/*
|
|
* Initialize the type handling stuff.
|
|
*/
|
|
DEBUG_InitTypes();
|
|
DEBUG_InitCVDataTypes();
|
|
|
|
/*
|
|
* In some cases we can read the stabs information directly
|
|
* from the executable. If this is the case, we don't need
|
|
* to bother with trying to read a symbol file, as the stabs
|
|
* also have line number and local variable information.
|
|
* As long as gcc is used for the compiler, stabs will
|
|
* be the default. On SVr4, DWARF could be used, but we
|
|
* don't grok that yet, and in this case we fall back to using
|
|
* the wine.sym file.
|
|
*/
|
|
if( DEBUG_ReadExecutableDbgInfo() == FALSE )
|
|
{
|
|
char *symfilename = "wine.sym";
|
|
struct stat statbuf;
|
|
if (-1 == stat(symfilename, &statbuf) )
|
|
symfilename = LIBDIR "wine.sym";
|
|
|
|
PROFILE_GetWineIniString( "wine", "SymbolTableFile", symfilename,
|
|
SymbolTableFile, sizeof(SymbolTableFile));
|
|
DEBUG_ReadSymbolTable( SymbolTableFile );
|
|
}
|
|
DEBUG_LoadEntryPoints(NULL);
|
|
DEBUG_ProcessDeferredDebug();
|
|
}
|
|
else
|
|
{
|
|
if (DEBUG_LoadEntryPoints("Loading new modules symbols:\n"))
|
|
DEBUG_ProcessDeferredDebug();
|
|
}
|
|
|
|
#if 0
|
|
fprintf(stderr, "Entering debugger PC=%x, mode=%d, count=%d\n",
|
|
EIP_reg(&DEBUG_context),
|
|
dbg_exec_mode, dbg_exec_count);
|
|
|
|
sleep(1);
|
|
#endif
|
|
|
|
if (!is_debug || !DEBUG_ShouldContinue( dbg_exec_mode, &dbg_exec_count ))
|
|
{
|
|
DBG_ADDR addr;
|
|
DEBUG_GetCurrentAddress( &addr );
|
|
|
|
DEBUG_Freeze( TRUE );
|
|
|
|
/* Put the display in a correct state */
|
|
if (USER_Driver) USER_Driver->pBeginDebugging();
|
|
|
|
#ifdef __i386__
|
|
newmode = ISV86(&DEBUG_context) ? 16 : IS_SELECTOR_32BIT(addr.seg) ? 32 : 16;
|
|
#else
|
|
newmode = 32;
|
|
#endif
|
|
if (newmode != dbg_mode)
|
|
fprintf(stderr,"In %d bit mode.\n", dbg_mode = newmode);
|
|
|
|
DEBUG_DoDisplay();
|
|
|
|
if (!is_debug) /* This is a real crash, dump some info */
|
|
{
|
|
DEBUG_InfoRegisters();
|
|
DEBUG_InfoStack();
|
|
#ifdef __i386__
|
|
if (dbg_mode == 16)
|
|
{
|
|
LDT_Print( SELECTOR_TO_ENTRY(DS_reg(&DEBUG_context)), 1 );
|
|
if (ES_reg(&DEBUG_context) != DS_reg(&DEBUG_context))
|
|
LDT_Print( SELECTOR_TO_ENTRY(ES_reg(&DEBUG_context)), 1 );
|
|
}
|
|
LDT_Print( SELECTOR_TO_ENTRY(FS_reg(&DEBUG_context)), 1 );
|
|
#endif
|
|
DEBUG_BackTrace();
|
|
}
|
|
else
|
|
{
|
|
/*
|
|
* Do a quiet backtrace so that we have an idea of what the situation
|
|
* is WRT the source files.
|
|
*/
|
|
DEBUG_SilentBackTrace();
|
|
}
|
|
|
|
if (!is_debug ||
|
|
(dbg_exec_mode == EXEC_STEPI_OVER) ||
|
|
(dbg_exec_mode == EXEC_STEPI_INSTR))
|
|
{
|
|
/* Show where we crashed */
|
|
curr_frame = 0;
|
|
DEBUG_PrintAddress( &addr, dbg_mode, TRUE );
|
|
fprintf(stderr,": ");
|
|
if (DBG_CHECK_READ_PTR( &addr, 1 ))
|
|
{
|
|
DEBUG_Disasm( &addr, TRUE );
|
|
fprintf(stderr,"\n");
|
|
}
|
|
}
|
|
|
|
ret_ok = 0;
|
|
do
|
|
{
|
|
issue_prompt();
|
|
yyparse();
|
|
flush_symbols();
|
|
|
|
DEBUG_GetCurrentAddress( &addr );
|
|
ret_ok = DEBUG_ValidateRegisters();
|
|
if (ret_ok) ret_ok = DBG_CHECK_READ_PTR( &addr, 1 );
|
|
} while (!ret_ok);
|
|
}
|
|
|
|
dbg_exec_mode = DEBUG_RestartExecution( dbg_exec_mode, dbg_exec_count );
|
|
/*
|
|
* This will have gotten absorbed into the breakpoint info
|
|
* if it was used. Otherwise it would have been ignored.
|
|
* In any case, we don't mess with it any more.
|
|
*/
|
|
if ((dbg_exec_mode == EXEC_CONT) || (dbg_exec_mode == EXEC_PASS))
|
|
{
|
|
dbg_exec_count = 0;
|
|
|
|
DEBUG_Freeze( FALSE );
|
|
}
|
|
|
|
in_debugger = FALSE;
|
|
|
|
if (USER_Driver) USER_Driver->pEndDebugging();
|
|
}
|
|
|
|
|
|
DWORD wine_debugger( EXCEPTION_RECORD *rec, CONTEXT *context, BOOL first_chance )
|
|
{
|
|
BOOL is_debug = FALSE;
|
|
|
|
if (first_chance && !Options.debug) return 0; /* pass to app first */
|
|
|
|
switch(rec->ExceptionCode)
|
|
{
|
|
case EXCEPTION_BREAKPOINT:
|
|
case EXCEPTION_SINGLE_STEP:
|
|
is_debug = TRUE;
|
|
break;
|
|
case CONTROL_C_EXIT:
|
|
if (!Options.debug) DEBUG_Exit(0);
|
|
break;
|
|
}
|
|
|
|
if (!is_debug)
|
|
{
|
|
/* print some infos */
|
|
fprintf( stderr, "%s: ",
|
|
first_chance ? "First chance exception" : "Unhandled exception" );
|
|
switch(rec->ExceptionCode)
|
|
{
|
|
case EXCEPTION_INT_DIVIDE_BY_ZERO:
|
|
fprintf( stderr, "divide by zero" );
|
|
break;
|
|
case EXCEPTION_INT_OVERFLOW:
|
|
fprintf( stderr, "overflow" );
|
|
break;
|
|
case EXCEPTION_ARRAY_BOUNDS_EXCEEDED:
|
|
fprintf( stderr, "array bounds " );
|
|
break;
|
|
case EXCEPTION_ILLEGAL_INSTRUCTION:
|
|
fprintf( stderr, "illegal instruction" );
|
|
break;
|
|
case EXCEPTION_STACK_OVERFLOW:
|
|
fprintf( stderr, "stack overflow" );
|
|
break;
|
|
case EXCEPTION_PRIV_INSTRUCTION:
|
|
fprintf( stderr, "priviledged instruction" );
|
|
break;
|
|
case EXCEPTION_ACCESS_VIOLATION:
|
|
if (rec->NumberParameters == 2)
|
|
fprintf( stderr, "page fault on %s access to 0x%08lx",
|
|
rec->ExceptionInformation[0] ? "write" : "read",
|
|
rec->ExceptionInformation[1] );
|
|
else
|
|
fprintf( stderr, "page fault" );
|
|
break;
|
|
case EXCEPTION_DATATYPE_MISALIGNMENT:
|
|
fprintf( stderr, "Alignment" );
|
|
break;
|
|
case CONTROL_C_EXIT:
|
|
fprintf( stderr, "^C" );
|
|
break;
|
|
case EXCEPTION_CRITICAL_SECTION_WAIT:
|
|
fprintf( stderr, "critical section %08lx wait failed", rec->ExceptionInformation[0] );
|
|
break;
|
|
default:
|
|
fprintf( stderr, "%08lx", rec->ExceptionCode );
|
|
break;
|
|
}
|
|
}
|
|
|
|
DEBUG_context = *context;
|
|
DEBUG_Main( is_debug );
|
|
*context = DEBUG_context;
|
|
return (dbg_exec_mode == EXEC_PASS) ? 0 : DBG_CONTINUE;
|
|
}
|
|
|
|
int yyerror(char * s)
|
|
{
|
|
fprintf(stderr,"%s\n", s);
|
|
return 0;
|
|
}
|