mirror of
https://github.com/CrazyRedMachine/popnhax.git
synced 2024-11-30 16:54:29 +01:00
509 lines
11 KiB
OpenEdge ABL
509 lines
11 KiB
OpenEdge ABL
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%module x86disasm
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%{
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#include "../../libdis.h"
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#include "../../../config.h"
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%}
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%rename(version_string) x86_version_string;
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%include "../../libdis.h"
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#include "../../../config.h"
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%inline %{
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const char * x86_version_string( void ) {
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return PACKAGE_VERSION;
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}
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%}
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%rename(report_codes) x86_report_codes;
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%rename(report_error) x86_report_error;
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%rename(options) x86_options;
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%rename(init) x86_init;
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%rename(set_reporter) x86_set_reporter;
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%rename(set_options) x86_set_options;
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%rename(options) x86_get_options;
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%rename(cleanup) x86_cleanup;
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%rename(reg_type) x86_reg_type;
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%rename(reg) x86_reg_t;
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%rename(eaddr) x86_ea_t;
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%rename(op_type) x86_op_type;
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%rename(optype_is_address) x86_optype_is_address;
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%rename(optype_is_relative) x86_optype_is_relative;
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%rename(op_datatype) x86_op_datatype;
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%rename(op_access) x86_op_access;
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%rename(op_flags) x86_op_flags;
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%rename(operand) x86_op_t;
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%rename(insn_group) x86_insn_group;
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%rename(insn_type) x86_insn_type;
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%rename(insn_note) x86_insn_note ;
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%rename(flag_status) x86_flag_status;
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%rename(insn_cpu) x86_insn_cpu ;
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%rename(insn_isa) x86_insn_isa ;
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%rename(insn_prefix) x86_insn_prefix ;
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%rename(insn) x86_insn_t;
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%rename(insn_is_valid) x86_insn_is_valid;
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%rename(i_disasm) x86_disasm;
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%rename(i_disasm_range) x86_disasm_range;
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%rename(i_disasm_forward) x86_disasm_forward;
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%rename(insn_operand_count) x86_operand_count;
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%rename(insn_operand_1st) x86_operand_1st;
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%rename(insn_operand_2nd) x86_operand_2nd;
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%rename(insn_operand_3rd) x86_operand_3rd;
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%rename(insn_dest_operand) x86_get_dest_operand;
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%rename(insn_src_operand) x86_get_src_operand;
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%rename(insn_imm_operand) x86_get_imm_operand;
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%rename(operand_size) x86_operand_size;
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%rename(insn_rel_offset) x86_get_rel_offset;
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%rename(insn_branch_target) x86_get_branch_target;
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%rename(insn_imm) x86_get_imm;
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%rename(insn_raw_imm) x86_get_raw_imm;
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%rename(insn_set_addr) x86_set_insn_addr;
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%rename(insn_set_offset) x86_set_insn_offset;
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%rename(insn_set_function) x86_set_insn_function;
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%rename(insn_set_block) x86_set_insn_block;
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%rename(insn_tag) x86_tag_insn;
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%rename(insn_untag) x86_untag_insn;
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%rename(insn_is_tagged) x86_insn_is_tagged;
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%rename(asm_format) x86_asm_format;
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%rename(operand_format) x86_format_operand;
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%rename(insn_format_mnemonic) x86_format_mnemonic;
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%rename(insn_format) x86_format_insn;
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%rename(header_format) x86_format_header;
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%rename(endian) x86_endian;
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%rename(size_default_address) x86_addr_size;
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%rename(size_default_operand) x86_op_size;
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%rename(size_machine_word) x86_word_size;
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%rename(size_max_insn) x86_max_insn_size;
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%rename(reg_sp) x86_sp_reg;
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%rename(reg_fp) x86_fp_reg;
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%rename(reg_ip) x86_ip_reg;
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%rename(reg_from_id) x86_reg_from_id;
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%rename(reg_from_alias) x86_get_aliased_reg;
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%rename(invariant_op) x86_invariant_op_t;
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%rename(invariant) x86_invariant_t;
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%rename(disasm_invariant) x86_invariant_disasm;
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%rename(disasm_size) x86_size_disasm;
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%include "carrays.i"
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%array_class( unsigned char, byteArray );
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%apply (unsigned char *STRING, int LENGTH) {
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(unsigned char *buf, size_t buf_len)
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};
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%newobject x86_op_copy;
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%inline %{
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x86_op_t * x86_op_copy( x86_op_t * src ) {
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x86_op_t *op;
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if (! src ) {
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return NULL;
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}
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op = (x86_op_t *) calloc( sizeof(x86_op_t), 1 );
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if ( op ) {
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memcpy( op, src, sizeof(x86_op_t) );
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}
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return op;
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}
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typedef struct x86_op_list_node {
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x86_op_t *op;
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struct x86_op_list_node *next, *prev;
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} x86_op_list_node;
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typedef struct x86_op_list {
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size_t count;
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x86_op_list_node *head, *tail, *curr;
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} x86_op_list;
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x86_op_list * x86_op_list_new () {
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x86_op_list *list = (x86_op_list *)
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calloc( sizeof(x86_op_list), 1 );
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list->count = 0;
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return list;
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}
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void x86_op_list_free(x86_op_list *list) {
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x86_op_list_node *node, *next;
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node = list->head;
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while ( node ) {
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next = node->next;
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/* free( node->insn ); */
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free( node );
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node = next;
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}
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free( list );
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}
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x86_op_list_node * x86_op_list_first(x86_op_list *list) {
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return list->head;
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}
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x86_op_list_node * x86_op_list_last(x86_op_list *list) {
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return list->tail;
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}
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x86_op_list_node * x86_op_list_next(x86_op_list *list) {
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if (! list->curr ) {
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list->curr = list->head;
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return list->head;
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}
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list->curr = list->curr->next;
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return list->curr;
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}
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x86_op_list_node * x86_op_list_prev(x86_op_list *list) {
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if (! list->curr ) {
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list->curr = list->tail;
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return list->tail;
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}
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list->curr = list->curr->prev;
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return list->curr;
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}
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%}
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%newobject x86_op_list_append;
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%inline %{
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void x86_op_list_append( x86_op_list * list, x86_op_t *op ) {
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x86_op_list_node *node = (x86_op_list_node *)
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calloc( sizeof(x86_op_list_node) , 1 );
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if (! node ) {
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return;
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}
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list->count++;
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if ( ! list->tail ) {
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list->head = list->tail = node;
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} else {
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list->tail->next = node;
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node->prev = list->tail;
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list->tail = node;
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}
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node->op = x86_op_copy( op );
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}
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x86_oplist_t * x86_op_list_node_copy( x86_oplist_t * list ) {
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x86_oplist_t *ptr;
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ptr = (x86_oplist_t *) calloc( sizeof(x86_oplist_t), 1 );
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if ( ptr ) {
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memcpy( &ptr->op, &list->op, sizeof(x86_op_t) );
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}
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return ptr;
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}
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x86_insn_t * x86_insn_new() {
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x86_insn_t *insn = (x86_insn_t *)
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calloc( sizeof(x86_insn_t), 1 );
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return insn;
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}
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void x86_insn_free( x86_insn_t *insn ) {
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x86_oplist_free( insn );
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free( insn );
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}
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%}
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%newobject x86_insn_copy;
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%inline %{
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x86_insn_t * x86_insn_copy( x86_insn_t *src) {
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x86_oplist_t *ptr, *list, *last = NULL;
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x86_insn_t *insn = (x86_insn_t *)
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calloc( sizeof(x86_insn_t), 1 );
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if ( insn ) {
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memcpy( insn, src, sizeof(x86_insn_t) );
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insn->operands = NULL;
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insn->block = NULL;
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insn->function = NULL;
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/* copy operand list */
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for ( list = src->operands; list; list = list->next ) {
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ptr = x86_op_list_node_copy( list );
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if (! ptr ) {
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continue;
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}
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if ( insn->operands ) {
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last->next = ptr;
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} else {
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insn->operands = ptr;
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}
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last = ptr;
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}
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}
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return insn;
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}
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x86_op_list * x86_insn_op_list( x86_insn_t *insn ) {
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x86_oplist_t *list = insn->operands;
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x86_op_list *op_list = x86_op_list_new();
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for ( list = insn->operands; list; list = list->next ) {
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x86_op_list_append( op_list, &list->op );
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}
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return op_list;
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}
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typedef struct x86_insn_list_node {
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x86_insn_t *insn;
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struct x86_insn_list_node *next, *prev;
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} x86_insn_list_node;
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typedef struct x86_insn_list {
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size_t count;
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x86_insn_list_node *head, *tail, *curr;
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} x86_insn_list;
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%}
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%newobject x86_insn_list_new;
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%inline %{
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x86_insn_list * x86_insn_list_new () {
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x86_insn_list *list = (x86_insn_list *)
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calloc( sizeof(x86_insn_list), 1 );
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list->count = 0;
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return list;
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}
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void x86_insn_list_free( x86_insn_list * list ) {
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x86_insn_list_node *node, *next;
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if (! list ) {
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return;
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}
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node = list->head;
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while ( node ) {
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next = node->next;
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/* free( node->insn ); */
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free( node );
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node = next;
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}
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free( list );
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}
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x86_insn_list_node * x86_insn_list_first( x86_insn_list *list ) {
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if (! list ) {
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return NULL;
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}
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return list->head;
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}
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x86_insn_list_node * x86_insn_list_last( x86_insn_list *list ) {
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if (! list ) {
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return NULL;
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}
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return list->tail;
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}
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x86_insn_list_node * x86_insn_list_next( x86_insn_list *list ) {
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if (! list ) {
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return NULL;
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}
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if (! list->curr ) {
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list->curr = list->head;
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return list->head;
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}
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list->curr = list->curr->next;
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return list->curr;
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}
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x86_insn_list_node * x86_insn_list_prev( x86_insn_list *list ) {
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if (! list ) {
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return NULL;
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}
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if (! list->curr ) {
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list->curr = list->tail;
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return list->tail;
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}
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list->curr = list->curr->prev;
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return list->curr;
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}
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%}
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%newobject x86_insn_list_append;
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%inline %{
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void x86_insn_list_append( x86_insn_list *list, x86_insn_t *insn ) {
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x86_insn_list_node *node;
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if (! list ) {
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return;
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}
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node = (x86_insn_list_node *)
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calloc( sizeof(x86_insn_list_node) , 1 );
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if (! node ) {
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return;
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}
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list->count++;
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if ( ! list->tail ) {
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list->head = list->tail = node;
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} else {
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list->tail->next = node;
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node->prev = list->tail;
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list->tail = node;
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}
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node->insn = x86_insn_copy( insn );
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}
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typedef struct {
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enum x86_report_codes last_error;
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void * last_error_data;
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void * disasm_callback;
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void * disasm_resolver;
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} x86disasm;
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void x86_default_reporter( enum x86_report_codes code,
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void *data, void *arg ) {
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x86disasm *dis = (x86disasm *) arg;
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if ( dis ) {
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dis->last_error = code;
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dis->last_error_data = data;
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}
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}
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void x86_default_callback( x86_insn_t *insn, void *arg ) {
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x86_insn_list *list = (x86_insn_list *) arg;
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if ( list ) {
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x86_insn_list_append( list, insn );
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}
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}
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/* TODO: resolver stack, maybe a callback */
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long x86_default_resolver( x86_op_t *op, x86_insn_t *insn, void *arg ) {
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x86disasm *dis = (x86disasm *) arg;
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if ( dis ) {
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//return dis->resolver( op, insn );
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return 0;
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}
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return 0;
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}
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%}
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%newobject x86disasm_new;
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%inline %{
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x86disasm * x86disasm_new ( enum x86_options options ) {
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x86disasm * dis = (x86disasm *)
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calloc( sizeof( x86disasm ), 1 );
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x86_init( options, x86_default_reporter, dis );
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return dis;
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}
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void x86disasm_free( x86disasm * dis ) {
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x86_cleanup();
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free( dis );
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}
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%}
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%newobject x86_disasm;
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|
|
||
|
%inline %{
|
||
|
x86_insn_t * disasm( unsigned char *buf, size_t buf_len,
|
||
|
unsigned long buf_rva, unsigned int offset ) {
|
||
|
x86_insn_t *insn = calloc( sizeof( x86_insn_t ), 1 );
|
||
|
x86_disasm( buf, buf_len, buf_rva, offset, insn );
|
||
|
return insn;
|
||
|
}
|
||
|
|
||
|
int disasm_range( unsigned char *buf, size_t buf_len,
|
||
|
unsigned long buf_rva, unsigned int offset,
|
||
|
unsigned int len ) {
|
||
|
|
||
|
x86_insn_list *list = x86_insn_list_new();
|
||
|
|
||
|
if ( len > buf_len ) {
|
||
|
len = buf_len;
|
||
|
}
|
||
|
|
||
|
return x86_disasm_range( buf, buf_rva, offset, len,
|
||
|
x86_default_callback, list );
|
||
|
}
|
||
|
|
||
|
int disasm_forward( unsigned char *buf, size_t buf_len,
|
||
|
unsigned long buf_rva, unsigned int offset ) {
|
||
|
x86_insn_list *list = x86_insn_list_new();
|
||
|
|
||
|
/* use default resolver: damn SWIG callbacks! */
|
||
|
return x86_disasm_forward( buf, buf_len, buf_rva, offset,
|
||
|
x86_default_callback, list,
|
||
|
x86_default_resolver, NULL );
|
||
|
}
|
||
|
|
||
|
size_t disasm_invariant( unsigned char *buf, size_t buf_len,
|
||
|
x86_invariant_t *inv ) {
|
||
|
return x86_invariant_disasm( buf, buf_len, inv );
|
||
|
}
|
||
|
|
||
|
size_t disasm_size( unsigned char *buf, size_t buf_len ) {
|
||
|
return x86_size_disasm( buf, buf_len );
|
||
|
}
|
||
|
|
||
|
int x86_max_operand_string( enum x86_asm_format format ) {
|
||
|
switch ( format ) {
|
||
|
case xml_syntax:
|
||
|
return MAX_OP_XML_STRING;
|
||
|
break;
|
||
|
case raw_syntax:
|
||
|
return MAX_OP_RAW_STRING;
|
||
|
break;
|
||
|
case native_syntax:
|
||
|
case intel_syntax:
|
||
|
case att_syntax:
|
||
|
case unknown_syntax:
|
||
|
default:
|
||
|
return MAX_OP_STRING;
|
||
|
break;
|
||
|
}
|
||
|
}
|
||
|
|
||
|
|
||
|
int x86_max_insn_string( enum x86_asm_format format ) {
|
||
|
switch ( format ) {
|
||
|
case xml_syntax:
|
||
|
return MAX_INSN_XML_STRING;
|
||
|
break;
|
||
|
case raw_syntax:
|
||
|
return MAX_INSN_RAW_STRING;
|
||
|
break;
|
||
|
case native_syntax:
|
||
|
case intel_syntax:
|
||
|
case att_syntax:
|
||
|
case unknown_syntax:
|
||
|
default:
|
||
|
return MAX_INSN_STRING;
|
||
|
break;
|
||
|
}
|
||
|
}
|
||
|
|
||
|
int x86_max_num_operands( ) { return MAX_NUM_OPERANDS; }
|
||
|
%}
|
||
|
|