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/*
* Interactive disassembler (IDA).
* Copyright (c) 1990-2000 by Ilfak Guilfanov.
* ALL RIGHTS RESERVED.
* E-mail: ig@datarescue.com
*
*
*/
#ifndef _ST20_HPP
#define _ST20_HPP
#include "../idaidp.hpp"
#include <diskio.hpp>
#include "ins.hpp"
#include "../iohandler.hpp"
#define PROCMOD_NAME st20
#define PROCMOD_NODE_NAME "$ st20"
//------------------------------------------------------------------
enum regnum_t
{
Areg, // Evaluation stack register A
Breg, // Evaluation stack register B
Creg, // Evaluation stack register C
Iptr, // Instruction pointer register, pointing to the next instruction to be executed
Status, // Status register
Wptr, // Work space pointer, pointing to the stack of the currently executing process
Tdesc, // Task descriptor
IOreg, // Input and output register
cs,
ds,
};
//------------------------------------------------------------------
#define PROC_C1 0
#define PROC_C4 1
//------------------------------------------------------------------
struct st20_iohandler_t : public iohandler_t
{
st20_iohandler_t(netnode &nn) : iohandler_t(nn) {}
};
struct st20_t : public procmod_t
{
netnode helper;
st20_iohandler_t ioh = st20_iohandler_t(helper);
int procnum;
bool flow;
virtual ssize_t idaapi on_event(ssize_t msgid, va_list va) override;
const char *idaapi set_idp_options(
const char *keyword,
int /*value_type*/,
const void * /*value*/,
bool /*idb_loaded*/);
int st20_ana(insn_t *insn);
int st20_emu(const insn_t &insn);
void handle_operand(const insn_t &insn, const op_t &x, bool isload);
bool isc4(void) { return procnum == PROC_C4; }
void st20_footer(outctx_t &ctx) const;
void load_from_idb();
};
extern int data_id;
ea_t calc_mem(const insn_t &insn, ea_t ea); // map virtual to physical ea
//------------------------------------------------------------------
void idaapi st20_header(outctx_t &ctx);
void idaapi st20_segstart(outctx_t &ctx, segment_t *seg);
void idaapi st20_segend(outctx_t &ctx, segment_t *seg);
void idaapi st20_assumes(outctx_t &ctx); // function to produce assume directives
int idaapi is_align_insn(ea_t ea);
int is_jump_func(const func_t *pfn, ea_t *jump_target);
int is_sane_insn(const insn_t &insn, int nocrefs);
int may_be_func(const insn_t &insn); // can a function start here?
#endif // _ST20_HPP