269 lines
8.1 KiB
C
269 lines
8.1 KiB
C
/* FCE Ultra - NES/Famicom Emulator
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*
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* Copyright notice for this file:
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* Copyright (C) 2014 CaitSith2
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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*/
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/*
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* Roms still using NES 1.0 format should be loaded as 32K CHR RAM.
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* Roms defined under NES 2.0 should use the VRAM size field, defining 7, 8 or 9, based on how much VRAM should be present.
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* UNIF doesn't have this problem, because unique board names can define this information.
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* The UNIF names are UNROM-512-8K, UNROM-512-16K and UNROM-512-32K
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*
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* The battery flag in the NES header enables flash, Mirrror mode 2 Enables MI_0 and MI_1 mode.
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* Known games to use this board are:
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* Battle Kid 2: Mountain of Torment (512K PRG, 8K CHR RAM, Horizontal Mirroring, Flash disabled)
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* Study Hall (128K PRG (in 512K flash chip), 8K CHR RAM, Horizontal Mirroring, Flash enabled)
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* Although Xmas 2013 uses a different board, where LEDs can be controlled (with writes to the $8000-BFFF space),
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* it otherwise functions identically.
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*
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* 17-10-20 - Works with Mystic Origins (Demo)
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*/
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#include "mapinc.h"
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/* Workaround for libretro api compatibility */
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#define ROM_size_max 32
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#define flashdata_size (ROM_size_max * 0x4000)
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#define flash_write_count_size (ROM_size_max * 4 * sizeof(uint32))
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static uint8 fceumm_flash_buf[flashdata_size + flash_write_count_size];
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static uint32 fceumm_flash_buf_size = sizeof(fceumm_flash_buf);
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static uint8 submapper;
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static uint8 latche, latcheinit, bus_conflict, chrram_mask, software_id=0;
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static uint16 latcha;
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static uint8 *flashdata = fceumm_flash_buf + flash_write_count_size;
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static uint32 *flash_write_count = (uint32*)fceumm_flash_buf;
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static uint8 *FlashPage[32];
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/* static uint32 *FlashWriteCountPage[32]; */
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/* static uint8 flashloaded = 0; */
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static uint8 flash_save = 0, flash_state = 0, flash_mode = 0, flash_bank;
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static void (*WLSync)(void);
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static void (*WHSync)(void);
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static INLINE void setfpageptr(int s, uint32 A, uint8 *p) {
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uint32 AB = A >> 11;
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int x;
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if (p)
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for (x = (s >> 1) - 1; x >= 0; x--) {
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FlashPage[AB + x] = p - A;
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}
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else
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for (x = (s >> 1) - 1; x >= 0; x--) {
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FlashPage[AB + x] = 0;
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}
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}
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void setfprg16(uint32 A, uint32 V) {
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if (PRGsize[0] >= 16384) {
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V &= PRGmask16[0];
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setfpageptr(16, A, flashdata ? (&flashdata[V << 14]) : 0);
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} else {
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int x;
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uint32 VA = V << 3;
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for (x = 0; x < 8; x++)
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setfpageptr(2, A + (x << 11), flashdata ? (&flashdata[((VA + x) & PRGmask2[0]) << 11]) : 0);
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}
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}
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void inc_flash_write_count(uint8 bank, uint32 A) {
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flash_write_count[(bank * 4) + ((A & 0x3000) >> 12)]++;
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if (!flash_write_count[(bank * 4) + ((A & 0x3000) >> 12)])
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flash_write_count[(bank * 4) + ((A & 0x3000) >> 12)]++;
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}
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uint32 GetFlashWriteCount(uint8 bank, uint32 A) {
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return flash_write_count[(bank * 4) + ((A & 0x3000) >> 12)];
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}
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static void StateRestore(int version) {
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WHSync();
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}
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static DECLFW(UNROM512LLatchWrite) {
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latche = V;
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latcha = A;
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WLSync();
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}
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static DECLFW(UNROM512HLatchWrite) {
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if (bus_conflict)
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latche = (V == CartBR(A)) ? V : 0;
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else
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latche = V;
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latcha = A;
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WHSync();
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}
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static DECLFR(UNROM512LatchRead) {
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uint8 flash_id[3] = { 0xB5, 0xB6, 0xB7 };
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if (software_id) {
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if (A & 1)
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return flash_id[ROM_size >> 4];
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else
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return 0xBF;
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}
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if (flash_save) {
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if (A < 0xC000) {
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if (GetFlashWriteCount(flash_bank, A))
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return FlashPage[A >> 11][A];
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} else {
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if (GetFlashWriteCount(ROM_size - 1, A))
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return FlashPage[A >> 11][A];
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}
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}
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return Page[A >> 11][A];
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}
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static void UNROM512LatchPower(void) {
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latche = latcheinit;
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WHSync();
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SetReadHandler(0x8000, 0xFFFF, UNROM512LatchRead);
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if (submapper == 0 && !flash_save || submapper == 2)
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SetWriteHandler(0x8000, 0xFFFF, UNROM512HLatchWrite);
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else
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{
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if (submapper != 4) SetWriteHandler(0x8000, 0xBFFF, UNROM512LLatchWrite);
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SetWriteHandler(0xC000, 0xFFFF, UNROM512HLatchWrite);
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}
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}
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static void UNROM512LatchClose(void) {
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}
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static void UNROM512LSync(void) {
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int erase_a[5] = { 0x9555, 0xAAAA, 0x9555, 0x9555, 0xAAAA };
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int erase_d[5] = { 0xAA, 0x55, 0x80, 0xAA, 0x55 };
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int erase_b[5] = { 1, 0, 1, 1, 0 };
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if (flash_mode==0) {
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if ((latcha == erase_a[flash_state]) && (latche == erase_d[flash_state]) && (flash_bank == erase_b[flash_state])) {
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flash_state++;
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if (flash_state == 5) {
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flash_mode = 1;
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}
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}
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else if ((flash_state == 2) && (latcha == 0x9555) && (latche == 0xA0) && (flash_bank == 1)) {
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flash_state++;
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flash_mode = 2;
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}
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else if ((flash_state == 2) && (latcha == 0x9555) && (latche == 0x90) && (flash_bank == 1)) {
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flash_state = 0;
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software_id = 1;
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} else {
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if (latche == 0xF0)
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software_id = 0;
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flash_state = 0;
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}
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}
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else if (flash_mode == 1) { /* Chip Erase or Sector Erase */
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if (latche == 0x30) {
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inc_flash_write_count(flash_bank,latcha);
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memset(&FlashPage[(latcha & 0xF000) >> 11][latcha & 0xF000], 0xFF, 0x1000);
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}
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else if (latche == 0x10) {
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uint32 i;
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for(i = 0; i < (ROM_size * 4); i++)
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inc_flash_write_count(i >> 2,i << 12);
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memset(flashdata, 0xFF, ROM_size * 0x4000); /* Erasing the rom chip as instructed. Crash rate calulated to be 99.9% :) */
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}
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flash_state = 0;
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flash_mode = 0;
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}
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else if (flash_mode == 2) { /* Byte Program */
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if (!GetFlashWriteCount(flash_bank, latcha)) {
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inc_flash_write_count(flash_bank, latcha);
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memcpy(&FlashPage[(latcha & 0xF000) >> 11][latcha & 0xF000], &Page[(latcha & 0xF000) >> 11][latcha & 0xF000], 0x1000);
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}
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FlashPage[latcha >> 11][latcha] &= latche;
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flash_state = 0;
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flash_mode = 0;
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}
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}
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static void UNROM512HSync(void) {
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flash_bank=latche&(ROM_size - 1);
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setprg16(0x8000, flash_bank);
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setprg16(0xc000, ~0);
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setfprg16(0x8000, flash_bank);
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setfprg16(0xC000, ~0);
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setchr8r(0, (latche & chrram_mask) >> 5);
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if (submapper == 3)
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setmirror(latche &0x80? MI_V: MI_H);
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else
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setmirror(MI_0 + (latche >> 7));
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}
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void UNROM512_Init(CartInfo *info) {
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int mirror;
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submapper = info->submapper;
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memset(fceumm_flash_buf, 0x00, fceumm_flash_buf_size);
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flash_state = 0;
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flash_bank = 0;
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flash_save = info->battery;
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if (info->CHRRamSize == 8192)
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chrram_mask = 0;
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else if (info->CHRRamSize == 16384)
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chrram_mask = 0x20;
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else
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chrram_mask = 0x60;
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mirror = (head.ROM_type & 1) | ((head.ROM_type & 8) >> 2);
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if (submapper == 3) /* Mega Man II (30th Anniversary Edition): switchable H/V */
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SetupCartMirroring(MI_V, 0, NULL);
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else
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switch (mirror) {
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case 0: /* hard horizontal, internal */
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SetupCartMirroring(MI_H, 1, NULL);
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break;
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case 1: /* hard vertical, internal */
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SetupCartMirroring(MI_V, 1, NULL);
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break;
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case 2: /* switchable 1-screen, internal (flags: 4-screen + horizontal) */
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SetupCartMirroring(MI_0, 0, NULL);
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break;
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case 3: /* hard four screen, last 8k of 32k RAM (flags: 4-screen + vertical) */
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SetupCartMirroring(4, 1, VROM + (info->CHRRamSize - 8192));
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break;
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}
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bus_conflict = submapper == 0 && !info->battery || submapper == 2;
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latcheinit = 0;
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WLSync = UNROM512LSync;
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WHSync = UNROM512HSync;
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info->Power = UNROM512LatchPower;
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info->Close = UNROM512LatchClose;
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GameStateRestore = StateRestore;
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if (flash_save)
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{
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info->SaveGame[0] = fceumm_flash_buf;
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info->SaveGameLen[0] = fceumm_flash_buf_size;
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AddExState(flash_write_count,ROM_size * 4 * sizeof(uint32), 0, "FLASH_WRITE_COUNT");
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AddExState(flashdata,ROM_size * 0x4000, 0, "FLASH_DATA");
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AddExState(&flash_state, 1, 0, "FLASH_STATE");
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AddExState(&flash_mode, 1, 0, "FLASH_MODE");
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AddExState(&flash_bank, 1, 0, "FLASH_BANK");
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AddExState(&latcha, 2, 0, "LATA");
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}
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AddExState(&latche, 1, 0, "LATC");
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AddExState(&bus_conflict, 1, 0, "BUSC");
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}
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