578 lines
17 KiB
C
578 lines
17 KiB
C
#include <stdio.h>
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#include <string.h>
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#include <stdlib.h>
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#include <ctype.h>
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#include <assert.h>
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#include <errno.h>
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#include <unistd.h>
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#include <libusb.h>
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//uncomment to DEBUG this file alone
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#define DEBUG
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//"make debug" to get DEBUG msgs on entire program
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#include "dbg.h"
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//#include "shared_dictionaries.h"
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#include "usb_operations.h"
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//#include "dictionary.h"
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//#include "write_operations.h"
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//#include "erase.h"
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//#include "test.h"
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//#include "cartridge.h"
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//#include "file.h"
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//#include "dump.h"
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//#include "flash.h"
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//#include "shared_enums.h"
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//lua libraries
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#include "lua/lua.h"
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#include "lua/lauxlib.h"
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#include "lua/lualib.h"
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// TODO: Finish HELP for all currently supported options.
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// TODO: Migrate to argp for more descriptive flags.
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const char *HELP = "Usage: inlretro [options]\n\n"\
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"Options:\n"\
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" -a [dumpram_filename]\tIf provided write ram to this filename\n"\
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" -b [writeram_filename]If provided write this file's contents to ram\n"\
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" -c [console]\t\tConsole port, {NES}\n"\
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" -d [dump_filename]\tIf provided, dump cartridge ROMs to this filename\n"\
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" -h\t\t\tDisplays this message.\n"\
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" -m [mapper]\t\tNES console only, mapper ASIC on cartridge\n"\
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" \t\t\t{mmc1,mmc3,nrom}\n"\
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" -p [program_filename]\tIf provided, write this data to cartridge\n"\
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" -s [lua_script]\tIf provided, use this script for main application logic\n"\
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" -v [verify_filename]\tIf provided, writeback written rom to this filename\n"
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" -w [wram_size_kb]\tNES-only, size of WRAM in kb\n"\
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" -x [prg_rom_size_kb]\tNES-only, size of PRG-ROM in kb\n"\
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" -y [chr_rom_size_kb]\tNES-only, size of CHR-ROM in kb\n";
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// Struct used to control functionality.
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typedef struct {
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char *console_name;
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char *mapper_name;
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int display_help;
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// NES Functionality
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int chr_rom_size_kb;
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int prg_rom_size_kb;
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int wram_size_kb;
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char *dump_filename;
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char *program_filename;
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char *ramdump_filename;
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char *ramwrite_filename;
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char *verify_filename;
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char *lua_filename;
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} INLOptions;
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// Returns true if given number is a power of 2, and at least minimum size.
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int isValidROMSize(int x, int min) {
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return ((x & (x - 1)) == 0) && x >= min;
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}
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// Parse options and flags, create struct to drive program.
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INLOptions* parseOptions(int argc, char *argv[]) {
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// lower case flags suggested for average user
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const char *FLAG_FORMAT = "a:b:hc:d:m:p:s:v:w:x:y:";
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int index = 0;
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int rv = 0;
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// opterr = 0;
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/* FLAGS NOT YET SUPPORTED
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int e_flag = 0; //FORCE ERASE
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int f_flag = 0; //FORCE ALL CHECKS PASSING
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int i_flag = 0; //input file is interlaced
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int n_flag = 0; //LED OFF
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int o_flag = 0; //LED ON
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int t_flag = 0; //test all SRAMs found
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int x_flag = 0; //disable all auto detecting
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int y_flag = 0; //diable all auto doubling
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char *b_value = NULL; //SUBMAPPER #
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char *p_value = NULL; //PROGRAM FILE
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char *v_value = NULL; //MAPPER VARIANT
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//upper case flags suggested for ADVANCED users
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int T_flag = 0; //TEST
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char *C_value = NULL; //program chr file
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char *L_value = NULL; //LIBUSB debugging value
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char *K_value = NULL; //connect to kazzo firmware version #
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char *O_value = NULL; //start read/writing at offset base value
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char *P_value = NULL; //program prg file
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char *S_value = NULL; //program SNES binary file
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char *W_value = NULL; //program WRAM/SRAM file
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*/
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INLOptions *opts = calloc(1, sizeof(INLOptions));
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//getopt returns args till done then returns -1
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//string of possible args : denotes 1 required additional arg
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//:: denotes optional additional arg follows
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while((rv = getopt(argc, argv, FLAG_FORMAT)) != -1) {
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switch(rv) {
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// case 'o': o_flag = 1; break;
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// case 'n': n_flag = 1; break;
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// case 'e': e_flag = 1; break;
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// case 'f': f_flag = 1; break;
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case 'a': opts->ramdump_filename = optarg; break;
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case 'b': opts->ramwrite_filename = optarg; break;
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case 'h': opts->display_help = 1; break;
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// case 'i': i_flag = 1; break;
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// case 't': t_flag = 1; break;
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// case 'x': x_flag = 1; break;
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// case 'y': y_flag = 1; break;
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// case 'T': T_flag = 1; break;
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// case 'b': b_value = optarg; break;
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case 'c': opts->console_name = optarg; break;
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case 'd': opts->dump_filename = optarg; break;
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case 'm': opts->mapper_name = optarg; break;
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case 'p': opts->program_filename = optarg; break;
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case 's': opts->lua_filename = optarg; break;
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case 'v': opts->verify_filename = optarg; break;
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case 'w': opts->wram_size_kb = atoi(optarg); break;
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case 'x': opts->prg_rom_size_kb = atoi(optarg); break;
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case 'y': opts->chr_rom_size_kb = atoi(optarg); break;
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// case 'v': v_value = optarg; break;
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// case 'C': C_value = optarg; break;
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// case 'L': L_value = optarg; break;
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// case 'K': K_value = optarg; break;
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// case 'O': O_value = optarg; break;
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// case 'P': P_value = optarg; break;
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// case 'S': S_value = optarg; break;
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// case 'W': W_value = optarg; break;
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case '?':
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if(
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// ( optopt == 'b' ) ||
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( optopt == 'c' )
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|| ( optopt == 'd' )
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|| ( optopt == 'm' )
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|| ( optopt == 'p' )
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|| ( optopt == 's' )
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// || ( optopt == 'v' )
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// || ( optopt == 'C' )
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// || ( optopt == 'L' )
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// || ( optopt == 'K' )
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// || ( optopt == 'O' )
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// || ( optopt == 'P' )
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// || ( optopt == 'S' )
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// || ( optopt == 'W' )
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){
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log_err("Option -%c requires an argument.", optopt);
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//goto error;
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return NULL;
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} else if ( isprint(optopt)) {
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log_err("Unknown option -%c .", optopt);
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return NULL;
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// goto error;
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} else {
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log_err("Unknown option character '\\x%x'", optopt);
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// goto error;
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return NULL;
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}
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log_err("Improper arguements passed");
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// goto error;
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return NULL;
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break;
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default:
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//sentinel("getopt failed to catch all arg cases");
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printf("getopt failed to catch all arg cases");
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return 0;
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}
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}
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// debug("flags= o:%d n:%d e:%d f:%d h:%d i:%d t:%d x:%d y:%d T:%d",
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// o_flag, n_flag, e_flag, f_flag, h_flag, i_flag, t_flag, x_flag, y_flag, T_flag );
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// debug("args= b:%s c:%s d:%s m:%s p:%s", b_value, c_value, d_value, m_value, p_value);
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// debug("args= s:%s v:%s C:%s L:%s K:%s", s_value, v_value, C_value, L_value, K_value);
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// debug("args= O:%s P:%s S:%s W:%s", O_value, P_value, S_value, W_value);
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for( index = optind; index < argc; index++) {
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log_err("Non-option arguement: %s \n", argv[index]);
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}
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if (opts->display_help) {
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printf("%s", HELP);
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return NULL;
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}
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return opts;
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}
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void error_lua (lua_State *L, const char *fmt, ...) {
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va_list argp;
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va_start(argp, fmt);
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vfprintf(stderr, fmt, argp);
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va_end(argp);
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lua_close(L);
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exit(EXIT_FAILURE);
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}
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int getglobint (lua_State *L, const char *var) {
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int isnum, result;
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lua_getglobal(L, var);
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result = (int)lua_tointegerx(L, -1, &isnum);
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if (!isnum)
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error_lua(L, "'%s' should be a number\n", var);
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lua_pop(L, 1); /* remove result from the stack */
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return result;
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}
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void load (lua_State *L, const char *fname, int *w, int *h) {
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if (luaL_loadfile(L, fname) || lua_pcall(L, 0, 0, 0))
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error_lua(L, "cannot run config. file: %s", lua_tostring(L, -1));
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*w = getglobint(L, "width");
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*h = getglobint(L, "height");
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}
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// Setup Lua environment.
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lua_State *lua_init() {
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lua_State *L = luaL_newstate(); //opens Lua
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luaL_openlibs(L); //opens the standard libraries
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// Register C functions that can be called from Lua.
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// lua_pushcfunction(L, lua_dictionary_call);
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lua_pushcfunction(L, lua_usb_vend_xfr);
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lua_setglobal(L, "usb_vend_xfr");
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return L;
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}
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// Setup INL USB Device.
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USBtransfer *usb_init_inldevice(libusb_context *context, int libusb_log) {
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// Create USBtransfer struct to hold all transfer info
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USBtransfer *transfer = calloc(1, sizeof(USBtransfer));
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// Create USB device handle pointer to interact with retro-prog.
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transfer->handle = open_usb_device( context, libusb_log );
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return transfer;
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}
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// Close and cleanup INL USB Device.
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void usb_close_inldevice(libusb_context* context, USBtransfer* transfer) {
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if (context && transfer) {
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close_usb(context, transfer->handle);
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}
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if (transfer) {
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free(transfer);
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}
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}
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// Safely cleanup for exiting program and release resources.
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void cleanup(libusb_context *context, USBtransfer *transfer, lua_State *L) {
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usb_close_inldevice(context, transfer);
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if (L) {
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lua_close(L);
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}
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/*
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if(rom->fileptr != NULL) {
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fclose(rom->fileptr);
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}
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*/
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}
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int main(int argc, char *argv[])
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{
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// int operation = 0; //used to denote the overall operation being requested flash/dump/verify etc
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// opterr = 0;
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// USB variables
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USBtransfer *transfer = NULL;
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// Context set to NULL since only acting as single user of libusb.
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libusb_context *context = NULL;
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// Default to no libusb logging.
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int libusb_log = LIBUSB_LOG_LEVEL_NONE;
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// Lua variables.
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lua_State *L = NULL;
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const char *LUA_SCRIPT_USB = "scripts/app/usb_device.lua";
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// Parse command-line options and flags.
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INLOptions *opts = parseOptions(argc, argv);
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if(!opts) {
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// If unparseable, exit.
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return 1;
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}
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// Check for sane user input.
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if (strcmp("NES", opts->console_name) == 0) {
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// ROM sizes must be non-zero, power of 2, and greater than 16.
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if (isValidROMSize(opts->prg_rom_size_kb, 16)) {
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printf("PRG-ROM must be non-zero power of 2, 16kb or greater.\n");
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return 1;
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}
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// Not having CHR-ROM is normal for certain types of carts.
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// TODO: Update these checks with known info about mappers/carts.
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if (isValidROMSize(opts->chr_rom_size_kb, 8) || opts->chr_rom_size_kb == 0) {
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printf("CHR-ROM must be zero or power of 2, 8kb or greater.\n");
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return 1;
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}
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// Not having WRAM is very normal.
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if (isValidROMSize(opts->wram_size_kb, 8) || opts->wram_size_kb == 0) {
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printf("WRAM must be zero or power of 2, 8kb or greater.\n");
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return 1;
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}
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}
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//Start up Lua
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L = lua_init();
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/*
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//flags about input files only used for writes
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if ( p_value || i_flag || C_value || P_value || S_value || W_value ) {
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check( d_value == NULL, "input args conflict can't program and dump in same operation.");
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operation = WRITE;
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}
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//flags about output files used for reads
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if ( d_value ) {
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check( e_flag == 0, "input args conflict can't erase and dump in same operation.");
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operation = READ;
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}
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*/
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//TODO all commandline args must be collected and passed into lua
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//create file object/struct
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// rom_image *rom = malloc( sizeof(rom_image));
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//
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// check_mem(rom);
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// init_rom_elements(rom);
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// Setup and check connection to USB Device.
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// TODO get usb device settings from usb_device.lua
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// Lua script arg to set different libusb debugging options.
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check(!(luaL_loadfile(L, LUA_SCRIPT_USB) || lua_pcall(L, 0, 0, 0)),
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"Cannot run config. file: %s", lua_tostring(L, -1));
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// Any value > 0 for libusb_log also prints debug statements in open_usb_device function.
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libusb_log = getglobint(L, "libusb_log");
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check(((libusb_log >= LIBUSB_LOG_LEVEL_NONE) && (libusb_log <= LIBUSB_LOG_LEVEL_DEBUG)),
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"Invalid LIBUSB_LOG_LEVEL: %d, must be from 0 to 4", libusb_log );
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transfer = usb_init_inldevice(context, libusb_log);
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check_mem(transfer);
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check(transfer->handle != NULL, "Unable to open INL retro-prog usb device handle.");
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//open INL retro prog with firmware version 2.0 or greater
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//if (K_value != NULL) {
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// //TODO take K_value option to connect to different version kazzo
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//}
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//provide dictionary.c with pointer to transfer so it can update it's local pointer
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//init_dictionary( transfer );
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// Pass args to Lua
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lua_pushstring(L, opts->console_name);
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lua_setglobal(L, "console_name");
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lua_pushstring(L, opts->mapper_name);
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lua_setglobal(L, "mapper_name");
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lua_pushstring(L, opts->dump_filename);
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lua_setglobal(L, "dump_filename");
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lua_pushstring(L, opts->program_filename);
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lua_setglobal(L, "flash_filename");
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lua_pushstring(L, opts->verify_filename);
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lua_setglobal(L, "verify_filename");
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lua_pushstring(L, opts->ramdump_filename);
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lua_setglobal(L, "ramdump_filename");
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lua_pushstring(L, opts->ramwrite_filename);
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lua_setglobal(L, "ramwrite_filename");
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lua_pushinteger(L, opts->wram_size_kb);
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lua_setglobal(L, "nes_wram_size_kb");
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lua_pushinteger(L, opts->prg_rom_size_kb);
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lua_setglobal(L, "nes_prg_rom_size_kb");
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lua_pushinteger(L, opts->chr_rom_size_kb);
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lua_setglobal(L, "nes_chr_rom_size_kb");
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// USB device is open, pass args and control over to Lua.
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// If lua_filename isn't set from args, use default script.
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char *DEFAULT_SCRIPT = "scripts/inlretro.lua";
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char *script = DEFAULT_SCRIPT;
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if (opts->lua_filename) {
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script = opts->lua_filename;
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}
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check(!(luaL_loadfile(L, script) || lua_pcall(L, 0, 0, 0)),
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"cannot run config. file: %s", lua_tostring(L, -1));
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//program flow doesn't come back to this point until script call ends/returns
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/*
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//create board object/struct
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cartridge *cart = malloc( sizeof(cartridge));
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check_mem(cart);
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//set all cart elements to UNKNOWN and allocate memory object within
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init_cart_elements(cart);
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//TEST flag for development use to provide means to only call test.c functions
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if (T_flag) {
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test_function( cart, transfer );
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goto close;
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}
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// -x flag turns off all autodection
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if (!x_flag) {
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//attempt to detect board inserted in device
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check(!detect_console( cart, transfer ), "Problem detecting cartridge.");
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//detect mapper as much as possible
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check(!detect_mirroring( cart, transfer ), "Problem detecting cart mirroring.");
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//TODO first step for SNES is mapping mode
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//By this point we know a lot about the cartridge but for things like NES discrete
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//mappers we'll have to play around with the memory to determine exact mapper
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//detect board manufacturer/flash memories as much as possible
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check(!detect_map_mem( cart, transfer, operation ), "Problem detecting cart map & memory.");
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//detect rom sizes as much as possible
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} else {
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printf("auto-detection turned off\n");
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}
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//read in user files/args that glean info about expected board
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//compare detections to user args and get permission to continue if there are discrepencies
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//just dump based on input args for now
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if ( d_value ) {
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//TODO input arg checking
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if ( c_value ) {
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if ( strcmp( "NES", c_value ) == 0 ) rom->console = NES_CART;
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if ( strcmp( "FC", c_value ) == 0 ) rom->console = FC_CART;
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if ( strcmp( "SNES", c_value ) == 0 ) rom->console = SNES_CART;
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}
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//TODO interpret provided file extension to determine desired console
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debug("console is: %c", rom->console);
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if ( m_value ) rom->mapper = atoi(m_value);
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debug("mapper is: %d", rom->mapper);
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if ( rom->mapper == NROM ) {
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rom->prg_size = 32 * KByte;
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rom->chr_size = 8 * KByte;
|
|
}
|
|
|
|
//TODO check if enough input args were provided or can be detected
|
|
check( !create_file( rom, d_value ), "Unable to create file %s", d_value);
|
|
|
|
//collected as much info as can dump cart without reading any data
|
|
check( !dump_cart( transfer, rom, cart ), "Error while dumping cart");
|
|
debug("done dumping, closing");
|
|
|
|
check(! close_rom( rom ), "Problem closing file");
|
|
rom->fileptr = NULL;
|
|
debug("closed");
|
|
}
|
|
//if flashing, determine if erasures are necessary and where
|
|
|
|
//erase required sectors of flash
|
|
|
|
//forced to erase board regardless of current status
|
|
//if (e_flag || p_value) {
|
|
if (e_flag) {
|
|
erase_nes( transfer );
|
|
}
|
|
|
|
//if flashing determine auto-doubling for oversized flash
|
|
|
|
//determine if rom can be flashed in a manner to make board compatible with rom
|
|
//ie CNROM/colordreams can be over flashed to play NROM
|
|
//BNROM can be overflashed to simulate UNROM
|
|
//SUROM can be overflashed to run as SNROM
|
|
|
|
//determine if snes input rom needs deinterleaved
|
|
|
|
if ( p_value ) {
|
|
//program file provided at commandline
|
|
check( !open_rom( rom, p_value ), "Problem opening file %s", p_value);
|
|
detect_file( rom );
|
|
|
|
check( !flash_cart( transfer, rom, cart ), "Error while flashing cart");
|
|
debug("done flashing, closing");
|
|
|
|
check(! close_rom( rom ), "Problem closing file");
|
|
rom->fileptr = NULL;
|
|
debug("closed");
|
|
}
|
|
*/
|
|
|
|
|
|
//dump or program data based on user args
|
|
|
|
//find some fun trivia to present to user while waiting for flash operatoin..?
|
|
|
|
//perform CRC checking to check integrity of dump/flash operation
|
|
|
|
//handle simple LED ON/OFF within main for now
|
|
//TODO cut this newbie code out of here
|
|
/*
|
|
int xfr_cnt = 0;
|
|
uint8_t rbuf[8];
|
|
|
|
int i;
|
|
|
|
if (o_flag | n_flag) {
|
|
printf("before return buffer: ");
|
|
for (i = 0; i < 8; i++) {
|
|
rbuf[i] = 7;
|
|
printf("%x ", rbuf[i]);
|
|
}
|
|
printf("\n");
|
|
transfer->endpoint = USB_IN;
|
|
transfer->request = DICT_PINPORT;
|
|
if (o_flag) transfer->wValueLSB = LED_ON;
|
|
if (n_flag) transfer->wValueLSB = LED_OFF;
|
|
transfer->data = rbuf;
|
|
transfer->wLength = 1;
|
|
|
|
//send command
|
|
xfr_cnt = usb_transfer( transfer );
|
|
|
|
printf("total bytes xfrd: %d \n", xfr_cnt);
|
|
printf("after buffer: ");
|
|
for (i = 0; i < 8; i++) {
|
|
printf("%x ", rbuf[i]);
|
|
}
|
|
printf("\n");
|
|
}
|
|
*/
|
|
|
|
cleanup(context, transfer, L);
|
|
return 0;
|
|
|
|
// 'check' macros goto this label if they fail.
|
|
error:
|
|
printf("Fatal error encountered, exiting.\n");
|
|
cleanup(context, transfer, L);
|
|
return 1;
|
|
|
|
}
|