forked from AbleOS/ableos
165 lines
4 KiB
Plaintext
165 lines
4 KiB
Plaintext
stn := @use("../../../libraries/stn/src/lib.hb");
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.{string, memory, buffer, log} := stn
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VALID_JUMP_BYTES := [u8].(0xEB, 0x3C, 0x90)
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OemIdent := struct {
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dos_version: [u8; 8],
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dos_version_name: [u8; 8],
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}
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new_oem_ident := fn(major: int, minor: int): OemIdent {
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ver := [u8].(0, 0, 0, 0, 0, 0, 0, 0)
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return OemIdent.(ver, ver)
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}
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BiosParameterBlock := struct {
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jump_bytes: [u8; 3],
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oem_ident: OemIdent,
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bytes_per_sector: u16,
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sectors_per_cluster: u8,
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reserved_sectors: u16,
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// The amount of FileAllocationTables on the disk. Often 2.
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fat_count: u8,
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root_directory_count: u16,
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// if 0 then refer to large_sector_count
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total_sectors: u16,
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media_type: u8,
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// if 0 refer to sectors_per_fat in the ExtendedBootRecord
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sectors_per_fat: u16,
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sectors_per_track: u16,
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head_count: u16,
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hidden_sectors: u32,
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large_sector_count: u32,
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}
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bpb_sanity_check := fn(bpb: BiosParameterBlock): int {
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return 0
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}
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new_bpb := fn(): BiosParameterBlock {
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oem := new_oem_ident(0, 0)
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return BiosParameterBlock.(VALID_JUMP_BYTES, oem, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0)
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}
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sector_count := fn(bpb: BiosParameterBlock): u32 {
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if bpb.total_sectors == 0 {
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return bpb.large_sector_count
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} else {
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return bpb.total_sectors
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}
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}
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FatVersionNumber := struct {
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major_version: u8,
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minor_version: u8,
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}
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FormatReservation := [u8; 12]
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// Padded with spaces.
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VolumeName := [u8; 11]
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SystemIdentifierString := [u8; 8]
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VALID_SYSTEM_IDENTIFIER_STRING := [u8].(46, 41, 54, 33, 32, 20, 20, 20)
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BOOTABLE_PARTITION_SIGNATURE := 0xAA55
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BootCode := [u8; 420]
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ExtendedBootRecord := struct {
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sectors_per_fat: u32,
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flags: u16,
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fat_version_number: FatVersionNumber,
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// Typically set to 2.
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root_directory_cluster_number: u32,
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fsinfo_structure: u16,
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backup_boot_sector: u16,
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// When a volume is formated these bytes should be zero. As a sanity check I guess?
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format_reserved: FormatReservation,
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// 0x00 floppy or 0x80 hard disk
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drive_number: u8,
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nt_reserved: u8,
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// must be 0x28 or 0x29
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signature: u8,
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volume_id_serial: u32,
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volume_id_name: VolumeName,
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// The spec says this is always FAT32. Untrustworthy and another sanity check I guess.
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system_identifier_string: SystemIdentifierString,
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boot_code: BootCode,
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partition_signature: u16,
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}
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ebr_sanity_check := fn(ebr: ExtendedBootRecord): int {
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ret := 0
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if ebr.drive_number != 0x0 | ebr.drive_number != 0x80 {
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log.warn("EBR-Drive-Number sanity check failed\0")
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}
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if ebr.signature != 0x28 | ebr.signature != 0x29 {
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log.warn("EBR-Signature sanity check failed\0")
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}
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if ebr.system_identifier_string != VALID_SYSTEM_IDENTIFIER_STRING {
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log.warn("EBR-Signature-Identifier-String sanity check failed\0")
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}
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return 0
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}
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new_ebr := fn(): ExtendedBootRecord {
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version := FatVersionNumber.(0, 0)
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fmt_res := FormatReservation.(0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0)
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vol_name := @as([u8; 11], idk)
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boot_code := @as([u8; 420], idk)
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return ExtendedBootRecord.(
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0,
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0,
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version,
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0,
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0,
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0,
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fmt_res,
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0,
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0,
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0,
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0,
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vol_name,
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VALID_SYSTEM_IDENTIFIER_STRING,
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boot_code,
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0,
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)
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}
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VALID_LEAD_FS_INFO := 0x41615252
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VALID_TRAIL_FS_INFO := 0xAA550000
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FSInfo := struct {
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// Must be 0x41615252 to indicate a valid FSInfo structure
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lead_signature: u32,
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lead_reserved: [u8; 480],
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// If the value is 0xFFFFFFFF, then the free count is unknown and must be computed. However, this value might be incorrect and should at least be range checked (<= volume cluster count)
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last_known_free_cluster_count: u32,
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last_known_avalible_cluster: u32,
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trail_reserved: [u8; 12],
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trail_signature: u32,
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}
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fs_info_sanity_check := fn(fs_info: FSInfo): int {
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ret := 0
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if fs_info.last_known_free_cluster_count == 0xFFFFFFFF {
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ret &= 1
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log.warn("Last known free cluster count unknown\0")
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}
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if fs_info.last_known_avalible_cluster == 0xFFFFFFFF {
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ret &= 2
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log.warn("Last known avalible cluster count unknown\0")
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}
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return ret
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}
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new_fs_info := fn(): FSInfo {
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lead_reserved := @as([u8; 480], idk)
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trail_reserved := @as([u8; 12], idk)
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return FSInfo.(0, lead_reserved, 0, 0, trail_reserved, 0)
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} |