DPP = 0xa2,
QPP = 0x32,
QPP_4 = 0x34,
+ RDID_90 = 0x90,
+ RDID_AB = 0xab,
ERASE_4K = 0x20,
ERASE4_4K = 0x21,
MAN_MACRONIX,
MAN_NUMONYX,
MAN_WINBOND,
+ MAN_SST,
MAN_GENERIC,
} Manufacturer;
return MAN_SPANSION;
case 0xC2:
return MAN_MACRONIX;
+ case 0xBF:
+ return MAN_SST;
default:
return MAN_GENERIC;
}
case WEVCR:
s->enh_volatile_cfg = s->data[0];
break;
+ case RDID_90:
+ case RDID_AB:
+ if (get_man(s) == MAN_SST) {
+ if (s->cur_addr <= 1) {
+ if (s->cur_addr) {
+ s->data[0] = s->pi->id[2];
+ s->data[1] = s->pi->id[0];
+ } else {
+ s->data[0] = s->pi->id[0];
+ s->data[1] = s->pi->id[2];
+ }
+ s->pos = 0;
+ s->len = 2;
+ s->data_read_loop = true;
+ s->state = STATE_READING_DATA;
+ } else {
+ qemu_log_mask(LOG_GUEST_ERROR,
+ "M25P80: Invalid read id address\n");
+ }
+ } else {
+ qemu_log_mask(LOG_GUEST_ERROR,
+ "M25P80: Read id (command 0x90/0xAB) is not supported"
+ " by device\n");
+ }
+ break;
default:
break;
}
case PP4:
case PP4_4:
case DIE_ERASE:
+ case RDID_90:
+ case RDID_AB:
s->needed_bytes = get_addr_length(s);
s->pos = 0;
s->len = 0;