package MlFront_Thunk
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  Describes and runs reproducible units of work called thunks
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    dune-project
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      MlFront.tar.gz
    
    
        
    
  
  
  
    
  
  
    
  
        md5=aeb01176ff012ed278135b2f8347ee97
    
    
  sha512=8bcddec2ab379ebd20cb9dedc216cd94ee0c9f5462294736c5ea12799a90bb1e16fb68c63e42a46539a58d318850186823d370682e145bed22ec40a89cf7d202
    
    
  doc/src/MlFront_Thunk.ThunkIoDisk/ThunkIoDisk.ml.html
Source file ThunkIoDisk.ml
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Unix.rmdir path end else Unix.unlink path end in aux (MlFront_Core.FilePath.to_string dir); return `Deleted with | Unix.Unix_error (e, fname, arg) -> return (`Error (Printf.sprintf "deleting directory `%s` had the error `%s` in `%s`" (MlFront_Core.FilePath.to_string dir) (Unix.error_message e) (if String.equal arg "" then fname else fname ^ " " ^ arg))) | Sys_error e -> return (`Error (Printf.sprintf "deleting directory `%s` had the error `%s`" (MlFront_Core.FilePath.to_string dir) e)) (** Make a directory recursively *) let make_directory_recursively ~return (dir : MlFront_Core.FilePath.t) = let dir_s = MlFront_Core.FilePath.to_string dir in try if Sys.file_exists dir_s then (* optimization 1: short-circuit if the directory exists *) return `Created else let parent_dir_s = MlFront_Core.FilePath.(parent dir |> to_string) in if Sys.file_exists parent_dir_s then ( (* optimization 2: parent directory exists *) Unix.mkdir dir_s 0o755; return `Created) else (* possibly expensive fallback: recreate from root *) let root_result = MlFront_Core.FilePath.( of_string (if is_absolute dir then root_noslash dir ^ slash dir else "")) in match root_result with | Error msg -> return (`Error (Printf.sprintf "invalid file path `%s`: %s" dir_s msg)) | Ok root -> let rec aux fp = function | [] -> `Created | segment :: rest -> begin match MlFront_Core.FilePath.append segment fp with | Error msg -> `Error (Printf.sprintf "`%s` can't be added to file path `%s`: %s" segment (MlFront_Core.FilePath.to_string fp) msg) | Ok fp -> let path_s = MlFront_Core.FilePath.to_string fp in if not (Sys.file_exists path_s) then begin Unix.mkdir path_s 0o755 end; aux fp rest end in return (aux root (MlFront_Core.FilePath.rootless_segments dir)) with | Unix.Unix_error (e, fname, arg) -> return (`Error (Printf.sprintf "creating directory `%s` had the error `%s` in `%s`" dir_s (Unix.error_message e) (if String.equal arg "" then fname else fname ^ " " ^ arg))) | Sys_error e -> return (`Error (Printf.sprintf "creating directory `%s` had the error `%s`" dir_s e)) let delete_local_file ~return local_file = try (* For Windows, can't write (or delete) without turning off read-only flag. *) (if Sys.win32 then try Unix.chmod local_file 0o644 with Sys_error _ -> ()); Unix.unlink local_file; return `Deleted with | Unix.Unix_error (Unix.ENOENT, _, _) -> (* If the file does not exist, we do not raise an error. *) return `Deleted | Unix.Unix_error (e, fname, arg) -> return (`Error (Printf.sprintf "deleting file `%s` had the error `%s` in `%s`" local_file (Unix.error_message e) (if String.equal arg "" then fname else fname ^ " " ^ arg))) | Sys_error e -> if Sys.file_exists local_file then return (`Error (Printf.sprintf "deleting file `%s` had the error `%s`" local_file e)) else return `Deleted let checksum_local_file ?strip_carriage_returns ~algo ~return local_file = let m = match algo with | `Sha1 -> (module Digestif.SHA1 : Digestif.S) | `Sha256 -> (module Digestif.SHA256 : Digestif.S) in let module D = (val m) in let ctx = ref (D.init ()) in try In_channel.with_open_bin local_file (fun ic -> let buf = Bytes.create 32_768 in (* feed only the bytes that are not carriage returns *) let rec feed_no_cr_bytes i n = if i >= n then !ctx else if Bytes.get buf i = '\r' then feed_no_cr_bytes (i + 1) n else let j = ref (i + 1) in while !j < n && Bytes.get buf !j <> '\r' do incr j done; ctx := D.feed_bytes !ctx ~off:i ~len:(!j - i) buf; feed_no_cr_bytes !j n in let rec aux total = match In_channel.input ic buf 0 32_768 with | 0 -> let cksum = D.(get !ctx |> to_hex) in return (`Checksum (cksum, total)) | n -> if strip_carriage_returns = Some () then ctx := feed_no_cr_bytes 0 n else ctx := D.feed_bytes !ctx ~off:0 ~len:n buf; aux (Int64.add total (Int64.of_int n)) in aux 0L) with Sys_error e -> return (`Error e) module Make (M : MlFront_Thunk.BuildConstraints.MONAD_PROMISE) = struct include MlFront_Thunk.ThunkIo.Make (M) (** [memory_limit]. 16 MiB is the maximum on 32-bit OCaml platforms for a single string. However, js_of_ocaml uses maximum JavaScript string size which is undocumented but at least 2^51. We'll use [2^31 - 1] as limit for now as that is the memory bound for 32-bit signed C integers. *) let memory_limit = 2147483647L open struct let safe_is_directory s = try Sys.is_directory s with Sys_error _ -> false let sys_error_is_a_directory ~path s = if String.equal s "Is a directory" then (* macOS *) true else if String.ends_with ~suffix:"Permission denied" s && Sys.win32 && safe_is_directory path then (* Windows has errors like: "./src: Permission denied". We double-check with a racy check. *) true else false let default_open_bufsize = 16384 let default_read_bufsize = match Sys.backend_type with | Sys.Other "js_of_ocaml" | Sys.Bytecode -> 16_384 | Sys.Native | Sys.Other _ -> 1_048_576 let disk_node_id = ref 0L end open struct let mk_env envmods = let envpairs = Unix.environment () |> Array.to_list |> List.map (Stringext.cut ~on:"=") |> List.filter_map Fun.id in Array.of_list (List.map (fun (k, v) -> k ^ "=" ^ v) (MlFront_Core.EnvMods.apply ~win32:Sys.win32 envmods envpairs)) end let rec disk_dir origin = let origin_s = MlFront_Core.FilePath.to_string origin in let create_directory () = make_directory_recursively ~return:M.return origin in let delete_directory () = remove_directory_recursively ~return:M.return origin in let zip_directory ?intermediate ~staging_dir () = let pending_deletion_file = ref None in Fun.protect ~finally:(fun () -> if intermediate = None then try Option.iter Sys.remove !pending_deletion_file with Sys_error _ -> ()) (fun () -> (* make a zip file *) let zipfile = Filename.temp_file ~temp_dir:(directory_origin staging_dir) "thunk" ".zip" in pending_deletion_file := Some zipfile; match MlFront_Core.FilePath.of_string zipfile with | Error msg -> M.pure (`Error (Printf.sprintf "invalid zipfile path: %s" msg)) | Ok zipfile_fp -> begin match MlFront_ZipFile.ZipFile.zip_exn ~deterministic:() ~srcdir:origin_s ~destzip:zipfile () with | () -> pending_deletion_file := None; M.pure (`ZipFile (disk_file zipfile_fp)) | exception MlFront_ZipFile.ZipFile.ZipError (_zipfile, message) -> M.pure (`Error (Printf.sprintf "zipping had error '%s'" message)) end) in let spawn_in_directory ~command ~args ~envmods ~stdout ~stderr () = let env = mk_env envmods in let command_s = MlFront_Core.FilePath.to_string command in let args = Array.of_list (command_s :: args) in let in_channel, out_channel, err_channel = (ref None, ref None, ref None) in Fun.protect ~finally:(fun () -> (match !in_channel with Some ic -> Unix.close ic | None -> ()); (match !out_channel with Some oc -> Unix.close oc | None -> ()); match !err_channel with Some ec -> Unix.close ec | None -> ()) (fun () -> (* /dev/null or NUL for stdin *) let in_fd = Unix.openfile (if Sys.win32 then "NUL" else "/dev/null") [ Unix.O_RDONLY ] 0o644 in in_channel := Some in_fd; (* files for stdout and stderr *) let out_fd = Unix.openfile (file_origin stdout) [ Unix.O_WRONLY; Unix.O_CREAT; Unix.O_TRUNC; Unix.O_CLOEXEC ] 0o644 in out_channel := Some out_fd; let err_fd = Unix.openfile (file_origin stderr) [ Unix.O_WRONLY; Unix.O_CREAT; Unix.O_TRUNC; Unix.O_CLOEXEC ] 0o644 in err_channel := Some err_fd; (* create the process *) try (* for an instant before we create the process asynchronously, we have to change the directory. *) let pwd = Sys.getcwd () in Unix.chdir origin_s; let pid = Fun.protect ~finally:(fun () -> Unix.chdir pwd) (fun () -> Unix.create_process_env command_s args env in_fd out_fd err_fd) in (* wait for process to finish *) let ret = match Unix.waitpid [] pid with | _childpid, Unix.WEXITED ec -> `Exited ec | _childpid, Unix.WSIGNALED s -> `Signaled s | _childpid, Unix.WSTOPPED s -> `Stopped s in M.pure ret with Unix.Unix_error (Unix.ENOENT, _, _) -> M.pure (`Error (Printf.sprintf "command not found: `%s`" command_s))) in let interactive_shell_in_directory ?promptname ~envmods () = let ( let* ) = M.bind in (* Common functions for using the optional prompt *) let template name = (* Avoid escaping of % in Printf. Instead use literal search/replace *) Stringext.replace_all ~pattern:"<PROMPTNAME>" ~with_:name in let add_if_prompt opts l = match promptname with | None -> l | Some pname -> l @ List.map (template pname) opts in (* Different logic based on Windows or Unix *) if Sys.win32 then let original_pwd = Sys.getcwd () in match MlFront_Core.FilePath.of_string original_pwd with | Error msg -> M.pure (`Error (Printf.sprintf "invalid current working directory `%s`: %s" original_pwd msg)) | Ok original_pwd_fp -> ( let absolute_origin = MlFront_Core.FilePath.to_string (MlFront_Core.FilePath.concat original_pwd_fp origin) in let env = mk_env envmods in (* NOTE: We can use [Sys.command], [Unix.create_process*] and [Unix.open_process*] but not [Unix.exec*] because the latter cooks the Windows Terminal. Confer https://github.com/ocaml/ocaml/pull/13879 *) let run_get_trimmed_stdout cmd = let stdout, stdin, stderr = Unix.open_process_full cmd env in Out_channel.close stdin; In_channel.close stderr; let output = In_channel.input_all stdout in In_channel.close stdout; String.trim output in let attempt : [ `Error of string | `Exited of int | `Signaled of int | `Stopped of int | `TryNext ] = `TryNext in let attempt_chdir_and_run_if_needed attempt command args = match attempt with | `Error e -> M.pure (`Error e) | `Exited ec -> M.pure (`Exited ec) | `Signaled ec -> M.pure (`Signaled ec) | `Stopped ec -> M.pure (`Stopped ec) | `TryNext -> let full_command = run_get_trimmed_stdout (Printf.sprintf "where.exe %s" command) in if String.equal full_command "" then M.pure `TryNext else begin Unix.chdir origin_s; let pid = Fun.protect ~finally:(fun () -> Unix.chdir original_pwd) (fun () -> Unix.create_process_env full_command (Array.of_list (full_command :: args)) env Unix.stdin Unix.stdout Unix.stderr) in (* wait for process to finish *) let ret = match Unix.waitpid [] pid with | _childpid, Unix.WEXITED ec -> `Exited ec | _childpid, Unix.WSIGNALED s -> `Signaled s | _childpid, Unix.WSTOPPED s -> `Stopped s in M.pure ret end in (* PowerShell prompt ... https://learn.microsoft.com/en-us/powershell/module/microsoft.powershell.core/about/about_prompts?view=powershell-7.5#how-to-customize-the-prompt *) let powershell_prompt () = [ Printf.sprintf {|function prompt { $currentLocation = Get-Location $BaseDirectory = "%s" $PromptName = "<PROMPTNAME>" if ($currentLocation.Path.StartsWith($BaseDirectory)) { $relativePath = $currentLocation.Path.Substring($BaseDirectory.Length) if ($relativePath -eq "") { $PromptValue = "$PromptName" } else { $PromptValue = "$PromptName$relativePath" } } else { $PromptValue = $currentLocation.Path } Write-Host "PS $PromptValue>" -NoNewline -ForegroundColor 3 return " " } |} absolute_origin; ] (* [@@warning "-unused-var"] *) in (* Powershell 7+. https://learn.microsoft.com/en-us/powershell/module/microsoft.powershell.core/about/about_pwsh?view=powershell-7.5 *) let* attempt = attempt_chdir_and_run_if_needed attempt "pwsh" ([ "-Interactive"; "-NoProfile"; "-NoExit"; "-Command" ] |> add_if_prompt (powershell_prompt ())) in (* Powershell 3+. https://learn.microsoft.com/en-us/powershell/module/microsoft.powershell.core/about/about_powershell_exe?view=powershell-5.1 *) let* attempt = attempt_chdir_and_run_if_needed attempt "powershell" ([ "-NoProfile"; "-NoExit"; "-Command" ] |> add_if_prompt (powershell_prompt ())) in (* Command Prompt. https://learn.microsoft.com/en-us/windows-server/administration/windows-commands/cmd *) let* attempt = attempt_chdir_and_run_if_needed attempt "cmd" [ "/d"; "/u"; "/e:on"; "/f:on" ] in (* Gather errors *) match attempt with | `Signaled ec -> M.pure (`Signaled ec) | `Stopped ec -> M.pure (`Stopped ec) | `Exited 0 -> M.pure (`Exited 0) | `Exited ec -> M.pure (`Error (Printf.sprintf "failed with exit code %d" ec)) | `TryNext -> M.pure (`Error (Printf.sprintf "Command Prompt `cmd.exe` interpreter was not found")) | `Error e -> M.pure (`Error e)) else begin (* Unix shells do not have something like -WorkingDirectory. *) Unix.chdir origin_s; (* *) let shell, opts, envmods = let ew suffix = String.ends_with ~suffix in let set_if_prompt name value envmods = match promptname with | None -> envmods | Some pname -> (* Use [union] to not override the thunk envmods! *) MlFront_Core.EnvMods.( union (add name (template pname value) empty) envmods) in match Sys.getenv_opt "SHELL" with | None | Some "" -> ("/bin/sh", [ "-i" ], envmods) | Some s when ew "bash" s -> (* GNU bash, version 5.2.37(1)-release (aarch64-apple-darwin23.4.0) requires [-i] after long options. *) ( s, [ "--norc"; "--noprofile"; "-i" ], set_if_prompt "PS1" {|\[\033[32m\]<PROMPTNAME> \[\033[34m\]\W\[\033[0m\]\$ |} envmods |> set_if_prompt "PROMPT_DIRTRIM" "2" ) | Some s when ew "zsh" s -> ( s, [ "-i"; "--no-rcs"; "--no-globalrcs" ], set_if_prompt "PROMPT" {|%F{green}<PROMPTNAME>%f %F{blue}%2~%f %# |} envmods ) | Some s when ew "fish" s -> ( s, [ "-i"; "--no-config" ] |> add_if_prompt [ "-C"; {|function fish_prompt; set_color green; echo -n '<PROMPTNAME> '; set_color blue; echo -n (prompt_pwd); set_color normal; echo -n '> '; end|}; ], envmods ) | Some s when ew "tcsh" s -> ( s, [ "-i"; "-f" ] (* sigh ... no way in tcsh to set this without adding files ... |> add_if_prompt [ "-c"; {|set prompt = "<PROMPTNAME>:%c3/> "; exec tcsh -i -f|}; ] *), envmods ) | Some s when ew "csh" s -> (s, [ "-i"; "-f" ], envmods) | Some s -> (s, [ "-i" ], envmods) in let env = mk_env envmods in Unix.execvpe shell (Array.of_list (shell :: opts)) env end in generic_dir ~origin:origin_s ~create_directory ~delete_directory ~zip_directory ~spawn_in_directory ~interactive_shell_in_directory () (** [disk_file origin] creates a new file object that reads from the disk from the file [origin]. The file is {b read synchronously}, so use a different file object implementation for asynchronous reads. *) and disk_file origin : file_object = let origin_s = MlFront_Core.FilePath.to_string origin in let out_channels = Hashtbl.create 1 in let in_channels = Hashtbl.create 1 in let open_for_writing () = (* We flush _before_ the file is opened to ensure that the output is writable (it is not a directory, etc.). If the file is lazily opened, we can't distinguish input exceptions from output exceptions. *) let success = ref false in try let oc = Out_channel.open_bin origin_s in Fun.protect ~finally:(fun () -> if not !success then Out_channel.close oc) (fun () -> match Out_channel.flush oc with | () -> let idx = !disk_node_id in disk_node_id := Int64.succ !disk_node_id; Hashtbl.add out_channels idx oc; success := true; M.return (`Node idx) | exception Sys_error s when sys_error_is_a_directory ~path:origin_s s -> M.return (`IsDirectory (disk_dir origin))) with Sys_error s -> M.return @@ `Error (Format.asprintf "`%s` while opening `%s` for writing" s origin_s) in let open_for_reading () = (* We have to read at least one byte to make sure the file is not readable rather than lazily opened. Similar to flushing in open_for_writing to raise exceptions early. *) let success = ref false in try let ic = In_channel.open_bin origin_s in Fun.protect ~finally:(fun () -> if not !success then In_channel.close ic) (fun () -> let first_byte_queue = Queue.create () in (match In_channel.input_byte ic with | None -> () | Some first_byte -> Queue.add first_byte first_byte_queue); let idx = !disk_node_id in disk_node_id := Int64.succ !disk_node_id; Hashtbl.add in_channels idx (ic, Bytes.create default_open_bufsize, first_byte_queue); success := true; M.return (`Node idx)) with | Sys_error s when sys_error_is_a_directory ~path:origin_s s -> M.return (`IsDirectory (disk_dir origin)) | Sys_error s -> M.return @@ `Error (Format.asprintf "`%s` while opening `%s` for reading" s origin_s) in let read_some idx = match Hashtbl.find_opt in_channels idx with | None -> M.return (`Error (Printf.sprintf "file `%s` is not open" origin_s)) | Some (channel, bytes, first_byte_queue) -> begin match Queue.take_opt first_byte_queue with | Some first_byte -> Bytes.set_int8 bytes 0 first_byte; M.return (`Bytes (bytes, 0, 1)) | None -> let bytes_read = In_channel.input channel bytes 0 (Bytes.length bytes) in if bytes_read = 0 then M.return `Eof else M.return (`Bytes (bytes, 0, bytes_read)) end in let write_all idx str pos len = match Hashtbl.find_opt out_channels idx with | Some channel -> if pos = 0 && len = String.length str then Out_channel.output_string channel str else Out_channel.output channel (Bytes.unsafe_of_string str) pos len; M.return `WroteBytes | None -> M.return (`Error (Printf.sprintf "file `%s` is not open" origin_s)) in let close idx = (match Hashtbl.find_opt out_channels idx with | Some channel -> Out_channel.close channel; (* All generated files should be executable per the file_object docs. *) Unix.chmod origin_s 0o755; Hashtbl.remove out_channels idx | None -> ()); (match Hashtbl.find_opt in_channels idx with | Some (channel, _bytes, _first_byte_queue) -> In_channel.close channel; Hashtbl.remove in_channels idx | None -> ()); M.return () in let read_all () = let bytes_sz = default_read_bufsize in let buf = Buffer.create bytes_sz in let bytes = Bytes.create bytes_sz in M.pure @@ try In_channel.with_open_bin origin_s (fun ic -> (* Loop and read up to 1 MB of data *) let rec read_loop total_read = if Int64.compare total_read memory_limit < 0 then let bytes_read = In_channel.input ic bytes 0 bytes_sz in if bytes_read = 0 then `Content (Buffer.contents buf) else ( Buffer.add_subbytes buf bytes 0 bytes_read; read_loop (Int64.add total_read (Int64.of_int bytes_read))) else (* Exceeded memory. Too big! *) `ExceededSizeLimit memory_limit in read_loop 0L) with Sys_error s -> `Error (Printf.sprintf "`%s` while reading file `%s`" s (MlFront_Core.FilePath.show origin)) in let delete_file () = delete_local_file ~return:M.return origin_s in let prepare_as_copy_destination () = (* For Windows, can't write without turning off read-only flag. In fact, you can still get Permission Denied even after turning off read-only flag, perhaps because Windows has a richer permissions model than POSIX. So we remove the file after turning off read-only *) let ( let* ) = M.bind in let* predelete_result = if Sys.win32 then begin delete_file () end else M.return `Deleted in match predelete_result with | `Error e -> M.return (`Error e) | `Deleted -> M.return `Ready in let checksum_file ~strip_carriage_returns ~algo () = let strip_carriage_returns = if strip_carriage_returns then Some () else None in checksum_local_file ?strip_carriage_returns ~algo ~return:M.return origin_s in generic_file ~origin:origin_s ~is_local_file:true ~open_for_writing ~open_for_reading ~read_some ~write_all ~close ~read_all ~prepare_as_copy_destination ~delete_file ~checksum_file () end
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