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Fix OCaml bindings crash, PR8847.
See http://caml.inria.fr/mantis/view.php?id=4166 If we call only external functions from a module, then its 'let _' bindings don't get executed, which means that the exceptions don't get registered for use in the C code. This in turn causes llvm_raise to call raise_with_arg() with a NULL pointer and cause a segmentation fault. The workaround is to declare all 'external' functions as 'val' in these .mli files. Also added a separate testcase (the testcase must call only external functions for the bug to occur). git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@122497 91177308-0d34-0410-b5e6-96231b3b80d8
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@ -18,12 +18,12 @@ exception Error of string
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memory buffer [mb] in the context [context]. Returns [m] if successful, or
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raises [Error msg] otherwise, where [msg] is a description of the error
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encountered. See the function [llvm::getBitcodeModule]. *)
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external get_module : Llvm.llcontext -> Llvm.llmemorybuffer -> Llvm.llmodule
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= "llvm_get_module"
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val get_module : Llvm.llcontext -> Llvm.llmemorybuffer -> Llvm.llmodule
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(** [parse_bitcode context mb] parses the bitcode for a new module [m] from the
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memory buffer [mb] in the context [context]. Returns [m] if successful, or
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raises [Error msg] otherwise, where [msg] is a description of the error
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encountered. See the function [llvm::ParseBitcodeFile]. *)
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external parse_bitcode : Llvm.llcontext -> Llvm.llmemorybuffer -> Llvm.llmodule
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= "llvm_parse_bitcode"
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val parse_bitcode : Llvm.llcontext -> Llvm.llmemorybuffer -> Llvm.llmodule
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@ -25,58 +25,58 @@ module GenericValue: sig
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(** [of_float fpty n] boxes the float [n] in a float-valued generic value
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according to the floating point type [fpty]. See the fields
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[llvm::GenericValue::DoubleVal] and [llvm::GenericValue::FloatVal]. *)
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external of_float : Llvm.lltype -> float -> t = "llvm_genericvalue_of_float"
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val of_float : Llvm.lltype -> float -> t
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(** [of_pointer v] boxes the pointer value [v] in a generic value. See the
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field [llvm::GenericValue::PointerVal]. *)
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external of_pointer : 'a -> t = "llvm_genericvalue_of_pointer"
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val of_pointer : 'a -> t
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(** [of_int32 n w] boxes the int32 [i] in a generic value with the bitwidth
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[w]. See the field [llvm::GenericValue::IntVal]. *)
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external of_int32 : Llvm.lltype -> int32 -> t = "llvm_genericvalue_of_int32"
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val of_int32 : Llvm.lltype -> int32 -> t
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(** [of_int n w] boxes the int [i] in a generic value with the bitwidth
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[w]. See the field [llvm::GenericValue::IntVal]. *)
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external of_int : Llvm.lltype -> int -> t = "llvm_genericvalue_of_int"
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val of_int : Llvm.lltype -> int -> t
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(** [of_natint n w] boxes the native int [i] in a generic value with the
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bitwidth [w]. See the field [llvm::GenericValue::IntVal]. *)
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external of_nativeint : Llvm.lltype -> nativeint -> t
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= "llvm_genericvalue_of_nativeint"
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val of_nativeint : Llvm.lltype -> nativeint -> t
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(** [of_int64 n w] boxes the int64 [i] in a generic value with the bitwidth
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[w]. See the field [llvm::GenericValue::IntVal]. *)
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external of_int64 : Llvm.lltype -> int64 -> t = "llvm_genericvalue_of_int64"
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val of_int64 : Llvm.lltype -> int64 -> t
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(** [as_float fpty gv] unboxes the floating point-valued generic value [gv] of
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floating point type [fpty]. See the fields [llvm::GenericValue::DoubleVal]
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and [llvm::GenericValue::FloatVal]. *)
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external as_float : Llvm.lltype -> t -> float = "llvm_genericvalue_as_float"
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val as_float : Llvm.lltype -> t -> float
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(** [as_pointer gv] unboxes the pointer-valued generic value [gv]. See the
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field [llvm::GenericValue::PointerVal]. *)
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external as_pointer : t -> 'a = "llvm_genericvalue_as_pointer"
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val as_pointer : t -> 'a
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(** [as_int32 gv] unboxes the integer-valued generic value [gv] as an [int32].
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Is invalid if [gv] has a bitwidth greater than 32 bits. See the field
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[llvm::GenericValue::IntVal]. *)
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external as_int32 : t -> int32 = "llvm_genericvalue_as_int32"
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val as_int32 : t -> int32
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(** [as_int gv] unboxes the integer-valued generic value [gv] as an [int].
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Is invalid if [gv] has a bitwidth greater than the host bit width (but the
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most significant bit may be lost). See the field
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[llvm::GenericValue::IntVal]. *)
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external as_int : t -> int = "llvm_genericvalue_as_int"
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val as_int : t -> int
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(** [as_natint gv] unboxes the integer-valued generic value [gv] as a
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[nativeint]. Is invalid if [gv] has a bitwidth greater than
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[nativeint]. See the field [llvm::GenericValue::IntVal]. *)
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external as_nativeint : t -> nativeint = "llvm_genericvalue_as_nativeint"
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val as_nativeint : t -> nativeint
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(** [as_int64 gv] returns the integer-valued generic value [gv] as an [int64].
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Is invalid if [gv] has a bitwidth greater than [int64]. See the field
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[llvm::GenericValue::IntVal]. *)
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external as_int64 : t -> int64 = "llvm_genericvalue_as_int64"
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val as_int64 : t -> int64
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end
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@ -91,73 +91,73 @@ module ExecutionEngine: sig
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interpreter. Raises [Error msg] if an error occurrs. The execution engine
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is not garbage collected and must be destroyed with [dispose ee].
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See the function [llvm::EngineBuilder::create]. *)
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external create : Llvm.llmodule -> t = "llvm_ee_create"
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val create : Llvm.llmodule -> t
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(** [create_interpreter m] creates a new interpreter, taking ownership of the
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module [m] if successful. Raises [Error msg] if an error occurrs. The
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execution engine is not garbage collected and must be destroyed with
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[dispose ee].
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See the function [llvm::EngineBuilder::create]. *)
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external create_interpreter : Llvm.llmodule -> t = "llvm_ee_create_interpreter"
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val create_interpreter : Llvm.llmodule -> t
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(** [create_jit m optlevel] creates a new JIT (just-in-time compiler), taking
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ownership of the module [m] if successful with the desired optimization
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level [optlevel]. Raises [Error msg] if an error occurrs. The execution
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engine is not garbage collected and must be destroyed with [dispose ee].
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See the function [llvm::EngineBuilder::create]. *)
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external create_jit : Llvm.llmodule -> int -> t = "llvm_ee_create_jit"
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val create_jit : Llvm.llmodule -> int -> t
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(** [dispose ee] releases the memory used by the execution engine and must be
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invoked to avoid memory leaks. *)
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external dispose : t -> unit = "llvm_ee_dispose"
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val dispose : t -> unit
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(** [add_module m ee] adds the module [m] to the execution engine [ee]. *)
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external add_module : Llvm.llmodule -> t -> unit = "llvm_ee_add_module"
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val add_module : Llvm.llmodule -> t -> unit
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(** [remove_module m ee] removes the module [m] from the execution engine
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[ee], disposing of [m] and the module referenced by [mp]. Raises
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[Error msg] if an error occurs. *)
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external remove_module : Llvm.llmodule -> t -> Llvm.llmodule
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= "llvm_ee_remove_module"
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val remove_module : Llvm.llmodule -> t -> Llvm.llmodule
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(** [find_function n ee] finds the function named [n] defined in any of the
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modules owned by the execution engine [ee]. Returns [None] if the function
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is not found and [Some f] otherwise. *)
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external find_function : string -> t -> Llvm.llvalue option
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= "llvm_ee_find_function"
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val find_function : string -> t -> Llvm.llvalue option
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(** [run_function f args ee] synchronously executes the function [f] with the
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arguments [args], which must be compatible with the parameter types. *)
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external run_function : Llvm.llvalue -> GenericValue.t array -> t ->
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val run_function : Llvm.llvalue -> GenericValue.t array -> t ->
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GenericValue.t
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= "llvm_ee_run_function"
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(** [run_static_ctors ee] executes the static constructors of each module in
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the execution engine [ee]. *)
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external run_static_ctors : t -> unit = "llvm_ee_run_static_ctors"
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val run_static_ctors : t -> unit
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(** [run_static_dtors ee] executes the static destructors of each module in
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the execution engine [ee]. *)
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external run_static_dtors : t -> unit = "llvm_ee_run_static_dtors"
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val run_static_dtors : t -> unit
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(** [run_function_as_main f args env ee] executes the function [f] as a main
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function, passing it [argv] and [argc] according to the string array
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[args], and [envp] as specified by the array [env]. Returns the integer
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return value of the function. *)
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external run_function_as_main : Llvm.llvalue -> string array ->
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val run_function_as_main : Llvm.llvalue -> string array ->
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(string * string) array -> t -> int
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= "llvm_ee_run_function_as_main"
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(** [free_machine_code f ee] releases the memory in the execution engine [ee]
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used to store the machine code for the function [f]. *)
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external free_machine_code : Llvm.llvalue -> t -> unit
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= "llvm_ee_free_machine_code"
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val free_machine_code : Llvm.llvalue -> t -> unit
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(** [target_data ee] is the target data owned by the execution engine
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[ee]. *)
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external target_data : t -> Llvm_target.TargetData.t
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= "LLVMGetExecutionEngineTargetData"
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val target_data : t -> Llvm_target.TargetData.t
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end
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external initialize_native_target : unit -> bool
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= "llvm_initialize_native_target"
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val initialize_native_target : unit -> bool
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File diff suppressed because it is too large
Load Diff
16
test/Bindings/Ocaml/ext_exc.ml
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16
test/Bindings/Ocaml/ext_exc.ml
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@ -0,0 +1,16 @@
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(* RUN: %ocamlopt -warn-error A llvm.cmxa llvm_bitreader.cmxa llvm_executionengine.cmxa %s -o %t
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* RUN: %t </dev/null
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*)
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let context = Llvm.global_context ()
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(* this used to crash, we must not use 'external' in .mli files, but 'val' if we
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* want the let _ bindings executed, see http://caml.inria.fr/mantis/view.php?id=4166 *)
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let _ =
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try
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ignore (Llvm_bitreader.get_module context (Llvm.MemoryBuffer.of_stdin ()))
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with
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Llvm_bitreader.Error _ -> ();;
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let _ =
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try
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ignore (Llvm.MemoryBuffer.of_file "/path/to/nonexistent/file")
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with
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Llvm.IoError _ -> ();;
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