mirror of
https://github.com/Ed94/Odin.git
synced 2026-06-17 03:12:22 -07:00
351 lines
8.5 KiB
Odin
351 lines
8.5 KiB
Odin
#import win32 "sys/windows.odin";
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#import fmt "fmt.odin";
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Handle :: int;
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File_Time :: u64;
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Errno :: int;
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INVALID_HANDLE: Handle : -1;
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O_RDONLY :: 0x00000;
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O_WRONLY :: 0x00001;
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O_RDWR :: 0x00002;
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O_CREAT :: 0x00040;
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O_EXCL :: 0x00080;
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O_NOCTTY :: 0x00100;
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O_TRUNC :: 0x00200;
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O_NONBLOCK :: 0x00800;
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O_APPEND :: 0x00400;
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O_SYNC :: 0x01000;
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O_ASYNC :: 0x02000;
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O_CLOEXEC :: 0x80000;
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ERROR_NONE: Errno : 0;
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ERROR_FILE_NOT_FOUND: Errno : 2;
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ERROR_PATH_NOT_FOUND: Errno : 3;
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ERROR_ACCESS_DENIED: Errno : 5;
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ERROR_NO_MORE_FILES: Errno : 18;
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ERROR_HANDLE_EOF: Errno : 38;
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ERROR_NETNAME_DELETED: Errno : 64;
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ERROR_FILE_EXISTS: Errno : 80;
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ERROR_BROKEN_PIPE: Errno : 109;
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ERROR_BUFFER_OVERFLOW: Errno : 111;
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ERROR_INSUFFICIENT_BUFFER: Errno : 122;
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ERROR_MOD_NOT_FOUND: Errno : 126;
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ERROR_PROC_NOT_FOUND: Errno : 127;
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ERROR_DIR_NOT_EMPTY: Errno : 145;
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ERROR_ALREADY_EXISTS: Errno : 183;
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ERROR_ENVVAR_NOT_FOUND: Errno : 203;
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ERROR_MORE_DATA: Errno : 234;
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ERROR_OPERATION_ABORTED: Errno : 995;
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ERROR_IO_PENDING: Errno : 997;
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ERROR_NOT_FOUND: Errno : 1168;
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ERROR_PRIVILEGE_NOT_HELD: Errno : 1314;
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WSAEACCES: Errno : 10013;
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WSAECONNRESET: Errno : 10054;
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// Windows reserves errors >= 1<<29 for application use
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ERROR_FILE_IS_PIPE: Errno : 1<<29 + 0;
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// "Argv" arguments converted to Odin strings
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immutable args := _alloc_command_line_arguments();
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open :: proc(path: string, mode: int, perm: u32) -> (Handle, Errno) {
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if len(path) == 0 {
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return INVALID_HANDLE, ERROR_FILE_NOT_FOUND;
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}
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access: u32;
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match mode & (O_RDONLY|O_WRONLY|O_RDWR) {
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case O_RDONLY: access = win32.FILE_GENERIC_READ;
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case O_WRONLY: access = win32.FILE_GENERIC_WRITE;
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case O_RDWR: access = win32.FILE_GENERIC_READ | win32.FILE_GENERIC_WRITE;
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}
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if mode&O_CREAT != 0 {
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access |= win32.FILE_GENERIC_WRITE;
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}
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if mode&O_APPEND != 0 {
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access &~= win32.FILE_GENERIC_WRITE;
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access |= win32.FILE_APPEND_DATA;
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}
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share_mode := cast(u32)(win32.FILE_SHARE_READ|win32.FILE_SHARE_WRITE);
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sa: ^win32.Security_Attributes = nil;
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sa_inherit := win32.Security_Attributes{length = size_of(win32.Security_Attributes), inherit_handle = 1};
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if mode&O_CLOEXEC == 0 {
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sa = ^sa_inherit;
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}
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create_mode: u32;
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match {
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case mode&(O_CREAT|O_EXCL) == (O_CREAT | O_EXCL):
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create_mode = win32.CREATE_NEW;
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case mode&(O_CREAT|O_TRUNC) == (O_CREAT | O_TRUNC):
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create_mode = win32.CREATE_ALWAYS;
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case mode&O_CREAT == O_CREAT:
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create_mode = win32.OPEN_ALWAYS;
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case mode&O_TRUNC == O_TRUNC:
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create_mode = win32.TRUNCATE_EXISTING;
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default:
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create_mode = win32.OPEN_EXISTING;
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}
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buf: [300]byte;
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copy(buf[..], cast([]byte)path);
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handle := cast(Handle)win32.CreateFileA(^buf[0], access, share_mode, sa, create_mode, win32.FILE_ATTRIBUTE_NORMAL, nil);
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if handle != INVALID_HANDLE {
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return handle, ERROR_NONE;
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}
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err := win32.GetLastError();
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return INVALID_HANDLE, cast(Errno)err;
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}
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close :: proc(fd: Handle) {
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win32.CloseHandle(cast(win32.Handle)fd);
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}
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write :: proc(fd: Handle, data: []byte) -> (int, Errno) {
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if len(data) == 0 {
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return 0, ERROR_NONE;
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}
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bytes_written: i32;
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e := win32.WriteFile(cast(win32.Handle)fd, ^data[0], cast(i32)len(data), ^bytes_written, nil);
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if e == win32.FALSE {
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err := win32.GetLastError();
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return 0, cast(Errno)err;
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}
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return cast(int)bytes_written, ERROR_NONE;
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}
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read :: proc(fd: Handle, data: []byte) -> (int, Errno) {
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if len(data) == 0 {
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return 0, ERROR_NONE;
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}
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bytes_read: i32;
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e := win32.ReadFile(cast(win32.Handle)fd, ^data[0], cast(u32)len(data), ^bytes_read, nil);
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if e == win32.FALSE {
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err := win32.GetLastError();
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return 0, cast(Errno)err;
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}
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return cast(int)bytes_read, ERROR_NONE;
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}
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seek :: proc(fd: Handle, offset: i64, whence: int) -> (i64, Errno) {
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w: u32;
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match whence {
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case 0: w = win32.FILE_BEGIN;
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case 1: w = win32.FILE_CURRENT;
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case 2: w = win32.FILE_END;
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}
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hi := cast(i32)(offset>>32);
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lo := cast(i32)(offset);
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ft := win32.GetFileType(cast(win32.Handle)fd);
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if ft == win32.FILE_TYPE_PIPE {
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return 0, ERROR_FILE_IS_PIPE;
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}
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dw_ptr := win32.SetFilePointer(cast(win32.Handle)fd, lo, ^hi, w);
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if dw_ptr == win32.INVALID_SET_FILE_POINTER {
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err := win32.GetLastError();
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return 0, cast(Errno)err;
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}
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return cast(i64)hi<<32 + cast(i64)dw_ptr, ERROR_NONE;
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}
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// NOTE(bill): Uses startup to initialize it
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stdin := get_std_handle(win32.STD_INPUT_HANDLE);
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stdout := get_std_handle(win32.STD_OUTPUT_HANDLE);
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stderr := get_std_handle(win32.STD_ERROR_HANDLE);
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get_std_handle :: proc(h: int) -> Handle {
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fd := win32.GetStdHandle(cast(i32)h);
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win32.SetHandleInformation(fd, win32.HANDLE_FLAG_INHERIT, 0);
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return cast(Handle)fd;
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}
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last_write_time :: proc(fd: Handle) -> File_Time {
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file_info: win32.By_Handle_File_Information;
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win32.GetFileInformationByHandle(cast(win32.Handle)fd, ^file_info);
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lo := cast(File_Time)file_info.last_write_time.lo;
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hi := cast(File_Time)file_info.last_write_time.hi;
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return lo | hi << 32;
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}
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last_write_time_by_name :: proc(name: string) -> File_Time {
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last_write_time: win32.Filetime;
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data: win32.File_Attribute_Data;
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buf: [1024]byte;
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assert(len(buf) > len(name));
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copy(buf[..], cast([]byte)name);
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if win32.GetFileAttributesExA(^buf[0], win32.GetFileExInfoStandard, ^data) != 0 {
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last_write_time = data.last_write_time;
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}
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l := cast(File_Time)last_write_time.lo;
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h := cast(File_Time)last_write_time.hi;
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return l | h << 32;
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}
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read_entire_file :: proc(name: string) -> ([]byte, bool) {
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buf: [300]byte;
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copy(buf[..], cast([]byte)name);
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fd, err := open(name, O_RDONLY, 0);
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if err != ERROR_NONE {
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return nil, false;
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}
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defer close(fd);
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length: i64;
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if ok := win32.GetFileSizeEx(cast(win32.Handle)fd, ^length) != 0; !ok {
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return nil, false;
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}
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if length == 0 {
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return nil, true;
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}
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data := make([]byte, length);
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if data == nil {
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return nil, false;
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}
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single_read_length: i32;
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total_read: i64;
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for total_read < length {
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remaining := length - total_read;
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to_read: u32;
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MAX :: 1<<32-1;
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if remaining <= MAX {
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to_read = cast(u32)remaining;
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} else {
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to_read = MAX;
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}
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win32.ReadFile(cast(win32.Handle)fd, ^data[total_read], to_read, ^single_read_length, nil);
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if single_read_length <= 0 {
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free(data);
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return nil, false;
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}
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total_read += cast(i64)single_read_length;
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}
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return data, true;
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}
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heap_alloc :: proc(size: int) -> rawptr {
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return win32.HeapAlloc(win32.GetProcessHeap(), win32.HEAP_ZERO_MEMORY, size);
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}
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heap_resize :: proc(ptr: rawptr, new_size: int) -> rawptr {
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if new_size == 0 {
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heap_free(ptr);
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return nil;
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}
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if ptr == nil {
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return heap_alloc(new_size);
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}
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return win32.HeapReAlloc(win32.GetProcessHeap(), win32.HEAP_ZERO_MEMORY, ptr, new_size);
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}
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heap_free :: proc(ptr: rawptr) {
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if ptr == nil {
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return;
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}
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win32.HeapFree(win32.GetProcessHeap(), 0, ptr);
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}
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exit :: proc(code: int) {
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win32.ExitProcess(cast(u32)code);
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}
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current_thread_id :: proc() -> int {
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return cast(int)win32.GetCurrentThreadId();
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}
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_alloc_command_line_arguments :: proc() -> []string {
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alloc_ucs2_to_utf8 :: proc(wstr: ^u16) -> string {
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wstr_len := 0;
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for (wstr+wstr_len)^ != 0 {
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wstr_len++;
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}
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len := 2*wstr_len-1;
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buf := make([]byte, len+1);
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str := slice_ptr(wstr, wstr_len+1);
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i, j := 0, 0;
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for str[j] != 0 {
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match {
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case str[j] < 0x80:
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if i+1 > len {
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return "";
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}
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buf[i] = cast(byte)str[j]; i++;
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j++;
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case str[j] < 0x800:
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if i+2 > len {
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return "";
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}
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buf[i] = cast(byte)(0xc0 + (str[j]>>6)); i++;
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buf[i] = cast(byte)(0x80 + (str[j]&0x3f)); i++;
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j++;
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case 0xd800 <= str[j] && str[j] < 0xdc00:
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if i+4 > len {
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return "";
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}
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c := cast(rune)((str[j] - 0xd800) << 10) + cast(rune)((str[j+1]) - 0xdc00) + 0x10000;
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buf[i] = cast(byte)(0xf0 + (c >> 18)); i++;
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buf[i] = cast(byte)(0x80 + ((c >> 12) & 0x3f)); i++;
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buf[i] = cast(byte)(0x80 + ((c >> 6) & 0x3f)); i++;
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buf[i] = cast(byte)(0x80 + ((c ) & 0x3f)); i++;
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j += 2;
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case 0xdc00 <= str[j] && str[j] < 0xe000:
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return "";
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default:
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if i+3 > len {
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return "";
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}
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buf[i] = 0xe0 + cast(byte) (str[j] >> 12); i++;
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buf[i] = 0x80 + cast(byte)((str[j] >> 6) & 0x3f); i++;
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buf[i] = 0x80 + cast(byte)((str[j] ) & 0x3f); i++;
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j++;
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}
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}
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return cast(string)buf[0..<i];
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}
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arg_count: i32;
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arg_list_ptr := win32.CommandLineToArgvW(win32.GetCommandLineW(), ^arg_count);
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arg_list := make([]string, arg_count);
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for _, i in arg_list {
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arg_list[i] = alloc_ucs2_to_utf8((arg_list_ptr+i)^);
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}
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return arg_list;
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}
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