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This field, which is generated internally by the generator, is the name of the C function corresponding to each action. For actions that have NO optional arguments, it's just "guestfs_<name>". For actions that have any optional arguments, it is "guestfs_<name>_argv" (since any binding has to construct the optional argument struct explicitly). In a future commit, this mapping may become more complex. This commit also "fixes" the C# bindings which didn't handle optional arguments properly at all. In fact, it doesn't fix this, it just changes it enough that it probably now compiles. We should either compile and test the bindings routinely with Mono, or drop them, since they are starting to bit-rot. In the GObject bindings, I have added a space between the C function name and the first paren. Apart from the C# and GObject changes, this is just code motion. It was verified by diffing the output of the generator before and after.
252 lines
7.8 KiB
OCaml
252 lines
7.8 KiB
OCaml
(* libguestfs
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* Copyright (C) 2009-2012 Red Hat Inc.
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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*)
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(* Please read generator/README first. *)
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open Printf
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open Generator_types
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open Generator_utils
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open Generator_pr
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open Generator_docstrings
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open Generator_optgroups
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open Generator_actions
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open Generator_structs
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let rec generate_haskell_hs () =
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generate_header HaskellStyle LGPLv2plus;
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(* XXX We only know how to generate partial FFI for Haskell
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* at the moment. Please help out!
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*)
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let can_generate style =
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match style with
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| _, _, (_::_) -> false (* no optional args yet *)
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| RErr, _, []
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| RInt _, _, []
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| RInt64 _, _, [] -> true
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| RBool _, _, []
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| RConstString _, _, []
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| RConstOptString _, _, []
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| RString _, _, []
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| RStringList _, _, []
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| RStruct _, _, []
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| RStructList _, _, []
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| RHashtable _, _, []
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| RBufferOut _, _, [] -> false in
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pr "\
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{-# INCLUDE <guestfs.h> #-}
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{-# LANGUAGE ForeignFunctionInterface #-}
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module Guestfs (
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create";
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(* List out the names of the actions we want to export. *)
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List.iter (
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fun { name = name; style = style } ->
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if can_generate style then pr ",\n %s" name
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) all_functions;
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pr "
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) where
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-- Unfortunately some symbols duplicate ones already present
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-- in Prelude. We don't know which, so we hard-code a list
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-- here.
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import Prelude hiding (truncate)
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import Foreign
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import Foreign.C
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import Foreign.C.Types
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import System.IO
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import Control.Exception
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import Data.Typeable
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data GuestfsS = GuestfsS -- represents the opaque C struct
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type GuestfsP = Ptr GuestfsS -- guestfs_h *
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type GuestfsH = ForeignPtr GuestfsS -- guestfs_h * with attached finalizer
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-- XXX define properly later XXX
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data PV = PV
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data VG = VG
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data LV = LV
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data IntBool = IntBool
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data Stat = Stat
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data StatVFS = StatVFS
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data Hashtable = Hashtable
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foreign import ccall unsafe \"guestfs_create\" c_create
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:: IO GuestfsP
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foreign import ccall unsafe \"&guestfs_close\" c_close
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:: FunPtr (GuestfsP -> IO ())
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foreign import ccall unsafe \"guestfs_set_error_handler\" c_set_error_handler
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:: GuestfsP -> Ptr CInt -> Ptr CInt -> IO ()
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create :: IO GuestfsH
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create = do
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p <- c_create
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c_set_error_handler p nullPtr nullPtr
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h <- newForeignPtr c_close p
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return h
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foreign import ccall unsafe \"guestfs_last_error\" c_last_error
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:: GuestfsP -> IO CString
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-- last_error :: GuestfsH -> IO (Maybe String)
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-- last_error h = do
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-- str <- withForeignPtr h (\\p -> c_last_error p)
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-- maybePeek peekCString str
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last_error :: GuestfsH -> IO (String)
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last_error h = do
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str <- withForeignPtr h (\\p -> c_last_error p)
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if (str == nullPtr)
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then return \"no error\"
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else peekCString str
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";
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(* Generate wrappers for each foreign function. *)
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List.iter (
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fun { name = name; style = (ret, args, optargs as style);
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c_function = c_function } ->
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if can_generate style then (
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pr "foreign import ccall unsafe \"%s\" c_%s\n" c_function name;
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pr " :: ";
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generate_haskell_prototype ~handle:"GuestfsP" style;
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pr "\n";
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pr "\n";
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pr "%s :: " name;
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generate_haskell_prototype ~handle:"GuestfsH" ~hs:true style;
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pr "\n";
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pr "%s %s = do\n" name
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(String.concat " " ("h" :: List.map name_of_argt args));
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pr " r <- ";
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(* Convert pointer arguments using with* functions. *)
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List.iter (
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function
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| FileIn n
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| FileOut n
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| Pathname n | Device n | Dev_or_Path n | String n | Key n ->
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pr "withCString %s $ \\%s -> " n n
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| BufferIn n ->
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pr "withCStringLen %s $ \\(%s, %s_size) -> " n n n
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| OptString n -> pr "maybeWith withCString %s $ \\%s -> " n n
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| StringList n | DeviceList n -> pr "withMany withCString %s $ \\%s -> withArray0 nullPtr %s $ \\%s -> " n n n n
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| Bool _ | Int _ | Int64 _ | Pointer _ -> ()
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) args;
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(* Convert integer arguments. *)
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let args =
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List.map (
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function
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| Bool n -> sprintf "(fromBool %s)" n
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| Int n -> sprintf "(fromIntegral %s)" n
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| Int64 n | Pointer (_, n) -> sprintf "(fromIntegral %s)" n
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| FileIn n | FileOut n
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| Pathname n | Device n | Dev_or_Path n
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| String n | OptString n
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| StringList n | DeviceList n
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| Key n -> n
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| BufferIn n -> sprintf "%s (fromIntegral %s_size)" n n
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) args in
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pr "withForeignPtr h (\\p -> c_%s %s)\n" name
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(String.concat " " ("p" :: args));
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(match ret with
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| RErr | RInt _ | RInt64 _ | RBool _ ->
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pr " if (r == -1)\n";
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pr " then do\n";
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pr " err <- last_error h\n";
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pr " fail err\n";
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| RConstString _ | RConstOptString _ | RString _
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| RStringList _ | RStruct _
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| RStructList _ | RHashtable _ | RBufferOut _ ->
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pr " if (r == nullPtr)\n";
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pr " then do\n";
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pr " err <- last_error h\n";
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pr " fail err\n";
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);
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(match ret with
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| RErr ->
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pr " else return ()\n"
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| RInt _ ->
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pr " else return (fromIntegral r)\n"
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| RInt64 _ ->
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pr " else return (fromIntegral r)\n"
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| RBool _ ->
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pr " else return (toBool r)\n"
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| RConstString _
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| RConstOptString _
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| RString _
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| RStringList _
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| RStruct _
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| RStructList _
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| RHashtable _
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| RBufferOut _ ->
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pr " else return ()\n" (* XXXXXXXXXXXXXXXXXXXX *)
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);
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pr "\n";
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)
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) all_functions
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and generate_haskell_prototype ~handle ?(hs = false) (ret, args, optargs) =
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pr "%s -> " handle;
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let string = if hs then "String" else "CString" in
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let int = if hs then "Int" else "CInt" in
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let bool = if hs then "Bool" else "CInt" in
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let int64 = if hs then "Integer" else "Int64" in
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List.iter (
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fun arg ->
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(match arg with
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| Pathname _ | Device _ | Dev_or_Path _ | String _ | Key _ ->
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pr "%s" string
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| BufferIn _ ->
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if hs then pr "String"
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else pr "CString -> CInt"
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| OptString _ -> if hs then pr "Maybe String" else pr "CString"
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| StringList _ | DeviceList _ -> if hs then pr "[String]" else pr "Ptr CString"
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| Bool _ -> pr "%s" bool
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| Int _ -> pr "%s" int
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| Int64 _ -> pr "%s" int
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| Pointer _ -> pr "%s" int
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| FileIn _ -> pr "%s" string
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| FileOut _ -> pr "%s" string
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);
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pr " -> ";
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) args;
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pr "IO (";
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(match ret with
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| RErr -> if not hs then pr "CInt"
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| RInt _ -> pr "%s" int
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| RInt64 _ -> pr "%s" int64
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| RBool _ -> pr "%s" bool
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| RConstString _ -> pr "%s" string
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| RConstOptString _ -> pr "Maybe %s" string
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| RString _ -> pr "%s" string
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| RStringList _ -> pr "[%s]" string
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| RStruct (_, typ) ->
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let name = camel_name_of_struct typ in
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pr "%s" name
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| RStructList (_, typ) ->
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let name = camel_name_of_struct typ in
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pr "[%s]" name
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| RHashtable _ -> pr "Hashtable"
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| RBufferOut _ -> pr "%s" string
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);
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pr ")"
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