static u32 p32x_sh2reg_read16(u32 a, SH2 *sh2)
{
u16 *r = Pico32x.regs;
- a &= 0xfe; // ?
+ a &= 0x3e;
switch (a) {
case 0x00: // adapter/irq ctl
u16 *r = Pico32x.regs;
u32 old;
- a &= 0xff;
+ a &= 0x3f;
sh2->poll_addr = 0;
switch (a) {
static void p32x_sh2reg_write16(u32 a, u32 d, SH2 *sh2)
{
- a &= 0xfe;
+ a &= 0x3e;
sh2->poll_addr = 0;
sh2_burn_cycles(sh2, 1*2);
- // 0x3ff00 is veridied
- if ((a & 0x3ff00) == 0x4000) {
+ // 0x3ffc0 is veridied
+ if ((a & 0x3ffc0) == 0x4000) {
d = p32x_sh2reg_read16(a, sh2);
goto out_16to8;
}
- if ((a & 0x3ff00) == 0x4100) {
+ if ((a & 0x3fff0) == 0x4100) {
d = p32x_vdp_read16(a);
sh2_poll_detect(sh2, a, SH2_STATE_VPOLL, 7);
goto out_16to8;
// TODO: mirroring?
if (!sh2->is_slave && a < sizeof(Pico32xMem->sh2_rom_m))
- return Pico32xMem->sh2_rom_m[a ^ 1];
+ return Pico32xMem->sh2_rom_m.b[a ^ 1];
if (sh2->is_slave && a < sizeof(Pico32xMem->sh2_rom_s))
- return Pico32xMem->sh2_rom_s[a ^ 1];
+ return Pico32xMem->sh2_rom_s.b[a ^ 1];
if ((a & 0x3fe00) == 0x4200) {
d = Pico32xMem->pal[(a & 0x1ff) / 2];
sh2_burn_cycles(sh2, 1*2);
- if ((a & 0x3ff00) == 0x4000) {
+ if ((a & 0x3ffc0) == 0x4000) {
d = p32x_sh2reg_read16(a, sh2);
if (!(EL_LOGMASK & EL_PWM) && (a & 0x30) == 0x30) // hide PWM
return d;
goto out;
}
- if ((a & 0x3ff00) == 0x4100) {
+ if ((a & 0x3fff0) == 0x4100) {
d = p32x_vdp_read16(a);
sh2_poll_detect(sh2, a, SH2_STATE_VPOLL, 7);
goto out;
}
if (!sh2->is_slave && a < sizeof(Pico32xMem->sh2_rom_m))
- return *(u16 *)(Pico32xMem->sh2_rom_m + a);
+ return Pico32xMem->sh2_rom_m.w[a / 2];
if (sh2->is_slave && a < sizeof(Pico32xMem->sh2_rom_s))
- return *(u16 *)(Pico32xMem->sh2_rom_s + a);
+ return Pico32xMem->sh2_rom_s.w[a / 2];
if ((a & 0x3fe00) == 0x4200) {
d = Pico32xMem->pal[(a & 0x1ff) / 2];
a, d & 0xff, sh2_pc(sh2));
if (Pico32x.regs[0] & P32XS_FM) {
- if ((a & 0x3ff00) == 0x4100) {
+ if ((a & 0x3fff0) == 0x4100) {
sh2->poll_addr = 0;
p32x_vdp_write8(a, d);
return;
}
}
- if ((a & 0x3ff00) == 0x4000) {
+ if ((a & 0x3ffc0) == 0x4000) {
p32x_sh2reg_write8(a, d, sh2);
return;
}
a, d & 0xffff, sh2_pc(sh2));
if (Pico32x.regs[0] & P32XS_FM) {
- if ((a & 0x3ff00) == 0x4100) {
+ if ((a & 0x3fff0) == 0x4100) {
sh2->poll_addr = 0;
p32x_vdp_write16(a, d, sh2);
return;
}
}
- if ((a & 0x3ff00) == 0x4000) {
+ if ((a & 0x3ffc0) == 0x4000) {
p32x_sh2reg_write16(a, d, sh2);
return;
}
// MSH2
if (p32x_bios_m != NULL) {
elprintf(EL_STATUS|EL_32X, "32x: using supplied master SH2 BIOS");
- Byteswap(Pico32xMem->sh2_rom_m, p32x_bios_m, sizeof(Pico32xMem->sh2_rom_m));
+ Byteswap(&Pico32xMem->sh2_rom_m, p32x_bios_m, sizeof(Pico32xMem->sh2_rom_m));
}
else {
- pl = (u32 *)Pico32xMem->sh2_rom_m;
+ pl = (u32 *)&Pico32xMem->sh2_rom_m;
// fill exception vector table to our trap address
for (i = 0; i < 128; i++)
pl[i] = HWSWAP(0x200);
// startup code
- memcpy(Pico32xMem->sh2_rom_m + 0x200, msh2_code, sizeof(msh2_code));
+ memcpy(&Pico32xMem->sh2_rom_m.b[0x200], msh2_code, sizeof(msh2_code));
// reset SP
pl[1] = pl[3] = HWSWAP(0x6040000);
// SSH2
if (p32x_bios_s != NULL) {
elprintf(EL_STATUS|EL_32X, "32x: using supplied slave SH2 BIOS");
- Byteswap(Pico32xMem->sh2_rom_s, p32x_bios_s, sizeof(Pico32xMem->sh2_rom_s));
+ Byteswap(&Pico32xMem->sh2_rom_s, p32x_bios_s, sizeof(Pico32xMem->sh2_rom_s));
}
else {
- pl = (u32 *)Pico32xMem->sh2_rom_s;
+ pl = (u32 *)&Pico32xMem->sh2_rom_s;
// fill exception vector table to our trap address
for (i = 0; i < 128; i++)
pl[i] = HWSWAP(0x200);
// startup code
- memcpy(Pico32xMem->sh2_rom_s + 0x200, ssh2_code, sizeof(ssh2_code));
+ memcpy(&Pico32xMem->sh2_rom_s.b[0x200], ssh2_code, sizeof(ssh2_code));
// reset SP
pl[1] = pl[3] = HWSWAP(0x603f800);