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Gordon Henriksen96e3b722008-03-15 00:26:23 +00001/*===-- executionengine_ocaml.c - LLVM Ocaml Glue ---------------*- C++ -*-===*\
Gordon Henriksen8db172d2007-12-23 16:59:28 +00002|* *|
3|* The LLVM Compiler Infrastructure *|
4|* *|
Chris Lattner3023be42007-12-29 22:59:10 +00005|* This file is distributed under the University of Illinois Open Source *|
6|* License. See LICENSE.TXT for details. *|
Gordon Henriksen8db172d2007-12-23 16:59:28 +00007|* *|
8|*===----------------------------------------------------------------------===*|
9|* *|
10|* This file glues LLVM's ocaml interface to its C interface. These functions *|
11|* are by and large transparent wrappers to the corresponding C functions. *|
12|* *|
13|* Note that these functions intentionally take liberties with the CAMLparamX *|
14|* macros, since most of the parameters are not GC heap objects. *|
15|* *|
16\*===----------------------------------------------------------------------===*/
17
18#include "llvm-c/ExecutionEngine.h"
19#include "caml/alloc.h"
20#include "caml/custom.h"
21#include "caml/fail.h"
22#include "caml/memory.h"
23#include <string.h>
24#include <assert.h>
25
26
27/* Can't use the recommended caml_named_value mechanism for backwards
28 compatibility reasons. This is largely equivalent. */
29static value llvm_ee_error_exn;
30
31CAMLprim value llvm_register_ee_exns(value Error) {
32 llvm_ee_error_exn = Field(Error, 0);
33 register_global_root(&llvm_ee_error_exn);
34 return Val_unit;
35}
36
37static void llvm_raise(value Prototype, char *Message) {
38 CAMLparam1(Prototype);
39 CAMLlocal1(CamlMessage);
40
41 CamlMessage = copy_string(Message);
42 LLVMDisposeMessage(Message);
43
44 raise_with_arg(Prototype, CamlMessage);
45 abort(); /* NOTREACHED */
Gordon Henriksen3a36a9e2007-12-30 18:12:41 +000046#ifdef CAMLnoreturn
47 CAMLnoreturn; /* Silences warnings, but is missing in some versions. */
48#endif
Gordon Henriksen8db172d2007-12-23 16:59:28 +000049}
50
51
52/*--... Operations on generic values .......................................--*/
53
54#define Genericvalue_val(v) (*(LLVMGenericValueRef *)(Data_custom_val(v)))
55
56static void llvm_finalize_generic_value(value GenVal) {
57 LLVMDisposeGenericValue(Genericvalue_val(GenVal));
58}
59
60static struct custom_operations generic_value_ops = {
61 (char *) "LLVMGenericValue",
62 llvm_finalize_generic_value,
63 custom_compare_default,
64 custom_hash_default,
65 custom_serialize_default,
66 custom_deserialize_default
67};
68
69static value alloc_generic_value(LLVMGenericValueRef Ref) {
70 value Val = alloc_custom(&generic_value_ops, sizeof(LLVMGenericValueRef), 0, 1);
71 Genericvalue_val(Val) = Ref;
72 return Val;
73}
74
75/* Llvm.lltype -> float -> t */
76CAMLprim value llvm_genericvalue_of_float(LLVMTypeRef Ty, value N) {
Gordon Henriksen1f3677e2007-12-23 17:10:23 +000077 CAMLparam1(N);
78 CAMLreturn(alloc_generic_value(
79 LLVMCreateGenericValueOfFloat(Ty, Double_val(N))));
Gordon Henriksen8db172d2007-12-23 16:59:28 +000080}
81
82/* 'a -> t */
83CAMLprim value llvm_genericvalue_of_value(value V) {
Gordon Henriksen1f3677e2007-12-23 17:10:23 +000084 CAMLparam1(V);
85 CAMLreturn(alloc_generic_value(LLVMCreateGenericValueOfPointer(Op_val(V))));
Gordon Henriksen8db172d2007-12-23 16:59:28 +000086}
87
88/* Llvm.lltype -> int -> t */
89CAMLprim value llvm_genericvalue_of_int(LLVMTypeRef Ty, value Int) {
90 return alloc_generic_value(LLVMCreateGenericValueOfInt(Ty, Int_val(Int), 1));
91}
92
93/* Llvm.lltype -> int32 -> t */
94CAMLprim value llvm_genericvalue_of_int32(LLVMTypeRef Ty, value Int32) {
Gordon Henriksen1f3677e2007-12-23 17:10:23 +000095 CAMLparam1(Int32);
96 CAMLreturn(alloc_generic_value(
97 LLVMCreateGenericValueOfInt(Ty, Int32_val(Int32), 1)));
Gordon Henriksen8db172d2007-12-23 16:59:28 +000098}
99
100/* Llvm.lltype -> nativeint -> t */
101CAMLprim value llvm_genericvalue_of_nativeint(LLVMTypeRef Ty, value NatInt) {
Gordon Henriksen1f3677e2007-12-23 17:10:23 +0000102 CAMLparam1(NatInt);
103 CAMLreturn(alloc_generic_value(
104 LLVMCreateGenericValueOfInt(Ty, Nativeint_val(NatInt), 1)));
Gordon Henriksen8db172d2007-12-23 16:59:28 +0000105}
106
107/* Llvm.lltype -> int64 -> t */
108CAMLprim value llvm_genericvalue_of_int64(LLVMTypeRef Ty, value Int64) {
Gordon Henriksen1f3677e2007-12-23 17:10:23 +0000109 CAMLparam1(Int64);
110 CAMLreturn(alloc_generic_value(
111 LLVMCreateGenericValueOfInt(Ty, Int64_val(Int64), 1)));
Gordon Henriksen8db172d2007-12-23 16:59:28 +0000112}
113
114/* Llvm.lltype -> t -> float */
115CAMLprim value llvm_genericvalue_as_float(LLVMTypeRef Ty, value GenVal) {
Gordon Henriksen1f3677e2007-12-23 17:10:23 +0000116 CAMLparam1(GenVal);
117 CAMLreturn(copy_double(
118 LLVMGenericValueToFloat(Ty, Genericvalue_val(GenVal))));
Gordon Henriksen8db172d2007-12-23 16:59:28 +0000119}
120
121/* t -> 'a */
122CAMLprim value llvm_genericvalue_as_value(value GenVal) {
123 return Val_op(LLVMGenericValueToPointer(Genericvalue_val(GenVal)));
124}
125
126/* t -> int */
127CAMLprim value llvm_genericvalue_as_int(value GenVal) {
128 assert(LLVMGenericValueIntWidth(Genericvalue_val(GenVal)) <= 8 * sizeof(value)
129 && "Generic value too wide to treat as an int!");
130 return Val_int(LLVMGenericValueToInt(Genericvalue_val(GenVal), 1));
131}
132
133/* t -> int32 */
134CAMLprim value llvm_genericvalue_as_int32(value GenVal) {
Gordon Henriksen1f3677e2007-12-23 17:10:23 +0000135 CAMLparam1(GenVal);
Gordon Henriksen8db172d2007-12-23 16:59:28 +0000136 assert(LLVMGenericValueIntWidth(Genericvalue_val(GenVal)) <= 32
137 && "Generic value too wide to treat as an int32!");
Gordon Henriksen1f3677e2007-12-23 17:10:23 +0000138 CAMLreturn(copy_int32(LLVMGenericValueToInt(Genericvalue_val(GenVal), 1)));
Gordon Henriksen8db172d2007-12-23 16:59:28 +0000139}
140
141/* t -> int64 */
142CAMLprim value llvm_genericvalue_as_int64(value GenVal) {
Gordon Henriksen1f3677e2007-12-23 17:10:23 +0000143 CAMLparam1(GenVal);
Gordon Henriksen8db172d2007-12-23 16:59:28 +0000144 assert(LLVMGenericValueIntWidth(Genericvalue_val(GenVal)) <= 64
145 && "Generic value too wide to treat as an int64!");
Gordon Henriksen1f3677e2007-12-23 17:10:23 +0000146 CAMLreturn(copy_int64(LLVMGenericValueToInt(Genericvalue_val(GenVal), 1)));
Gordon Henriksen8db172d2007-12-23 16:59:28 +0000147}
148
149/* t -> nativeint */
150CAMLprim value llvm_genericvalue_as_nativeint(value GenVal) {
Gordon Henriksen1f3677e2007-12-23 17:10:23 +0000151 CAMLparam1(GenVal);
Gordon Henriksen8db172d2007-12-23 16:59:28 +0000152 assert(LLVMGenericValueIntWidth(Genericvalue_val(GenVal)) <= 8 * sizeof(value)
153 && "Generic value too wide to treat as a nativeint!");
Gordon Henriksen1f3677e2007-12-23 17:10:23 +0000154 CAMLreturn(copy_nativeint(LLVMGenericValueToInt(Genericvalue_val(GenVal),1)));
Gordon Henriksen8db172d2007-12-23 16:59:28 +0000155}
156
157
158/*--... Operations on execution engines ....................................--*/
159
160/* llmoduleprovider -> ExecutionEngine.t */
161CAMLprim LLVMExecutionEngineRef llvm_ee_create(LLVMModuleProviderRef MP) {
162 LLVMExecutionEngineRef Interp;
163 char *Error;
164 if (LLVMCreateExecutionEngine(&Interp, MP, &Error))
165 llvm_raise(llvm_ee_error_exn, Error);
166 return Interp;
167}
168
169/* llmoduleprovider -> ExecutionEngine.t */
170CAMLprim LLVMExecutionEngineRef
171llvm_ee_create_interpreter(LLVMModuleProviderRef MP) {
172 LLVMExecutionEngineRef Interp;
173 char *Error;
174 if (LLVMCreateInterpreter(&Interp, MP, &Error))
175 llvm_raise(llvm_ee_error_exn, Error);
176 return Interp;
177}
178
179/* llmoduleprovider -> ExecutionEngine.t */
180CAMLprim LLVMExecutionEngineRef
181llvm_ee_create_jit(LLVMModuleProviderRef MP) {
182 LLVMExecutionEngineRef JIT;
183 char *Error;
184 if (LLVMCreateJITCompiler(&JIT, MP, &Error))
185 llvm_raise(llvm_ee_error_exn, Error);
186 return JIT;
187}
188
189/* ExecutionEngine.t -> unit */
190CAMLprim value llvm_ee_dispose(LLVMExecutionEngineRef EE) {
191 LLVMDisposeExecutionEngine(EE);
192 return Val_unit;
193}
194
195/* llmoduleprovider -> ExecutionEngine.t -> unit */
196CAMLprim value llvm_ee_add_mp(LLVMModuleProviderRef MP,
197 LLVMExecutionEngineRef EE) {
198 LLVMAddModuleProvider(EE, MP);
199 return Val_unit;
200}
201
202/* llmoduleprovider -> ExecutionEngine.t -> llmodule */
203CAMLprim LLVMModuleRef llvm_ee_remove_mp(LLVMModuleProviderRef MP,
204 LLVMExecutionEngineRef EE) {
205 LLVMModuleRef RemovedModule;
206 char *Error;
207 if (LLVMRemoveModuleProvider(EE, MP, &RemovedModule, &Error))
208 llvm_raise(llvm_ee_error_exn, Error);
209 return RemovedModule;
210}
211
212/* string -> ExecutionEngine.t -> llvalue option */
213CAMLprim value llvm_ee_find_function(value Name, LLVMExecutionEngineRef EE) {
214 CAMLparam1(Name);
215 CAMLlocal1(Option);
216 LLVMValueRef Found;
217 if (LLVMFindFunction(EE, String_val(Name), &Found))
218 CAMLreturn(Val_unit);
219 Option = alloc(1, 1);
220 Field(Option, 0) = Val_op(Found);
221 CAMLreturn(Option);
222}
223
224/* llvalue -> GenericValue.t array -> ExecutionEngine.t -> GenericValue.t */
225CAMLprim value llvm_ee_run_function(LLVMValueRef F, value Args,
226 LLVMExecutionEngineRef EE) {
227 unsigned NumArgs;
228 LLVMGenericValueRef Result, *GVArgs;
229 unsigned I;
230
231 NumArgs = Wosize_val(Args);
232 GVArgs = (LLVMGenericValueRef*) malloc(NumArgs * sizeof(LLVMGenericValueRef));
233 for (I = 0; I != NumArgs; ++I)
234 GVArgs[I] = Genericvalue_val(Field(Args, I));
235
236 Result = LLVMRunFunction(EE, F, NumArgs, GVArgs);
237
238 free(GVArgs);
239 return alloc_generic_value(Result);
240}
241
242/* ExecutionEngine.t -> unit */
243CAMLprim value llvm_ee_run_static_ctors(LLVMExecutionEngineRef EE) {
244 LLVMRunStaticConstructors(EE);
245 return Val_unit;
246}
247
248/* ExecutionEngine.t -> unit */
249CAMLprim value llvm_ee_run_static_dtors(LLVMExecutionEngineRef EE) {
250 LLVMRunStaticDestructors(EE);
251 return Val_unit;
252}
253
254/* llvalue -> string array -> (string * string) array -> ExecutionEngine.t ->
255 int */
256CAMLprim value llvm_ee_run_function_as_main(LLVMValueRef F,
257 value Args, value Env,
258 LLVMExecutionEngineRef EE) {
259 CAMLparam2(Args, Env);
260 int I, NumArgs, NumEnv, EnvSize, Result;
261 const char **CArgs, **CEnv;
262 char *CEnvBuf, *Pos;
263
264 NumArgs = Wosize_val(Args);
265 NumEnv = Wosize_val(Env);
266
267 /* Build the environment. */
268 CArgs = (const char **) malloc(NumArgs * sizeof(char*));
269 for (I = 0; I != NumArgs; ++I)
270 CArgs[I] = String_val(Field(Args, I));
271
272 /* Compute the size of the environment string buffer. */
273 for (I = 0, EnvSize = 0; I != NumEnv; ++I) {
274 EnvSize += strlen(String_val(Field(Field(Env, I), 0))) + 1;
275 EnvSize += strlen(String_val(Field(Field(Env, I), 1))) + 1;
276 }
277
278 /* Build the environment. */
279 CEnv = (const char **) malloc((NumEnv + 1) * sizeof(char*));
280 CEnvBuf = (char*) malloc(EnvSize);
281 Pos = CEnvBuf;
282 for (I = 0; I != NumEnv; ++I) {
283 char *Name = String_val(Field(Field(Env, I), 0)),
284 *Value = String_val(Field(Field(Env, I), 1));
285 int NameLen = strlen(Name),
286 ValueLen = strlen(Value);
287
288 CEnv[I] = Pos;
289 memcpy(Pos, Name, NameLen);
290 Pos += NameLen;
291 *Pos++ = '=';
292 memcpy(Pos, Value, ValueLen);
293 Pos += ValueLen;
294 *Pos++ = '\0';
295 }
296 CEnv[NumEnv] = NULL;
297
298 Result = LLVMRunFunctionAsMain(EE, F, NumArgs, CArgs, CEnv);
299
300 free(CArgs);
301 free(CEnv);
302 free(CEnvBuf);
303
304 CAMLreturn(Val_int(Result));
305}
306
307/* llvalue -> ExecutionEngine.t -> unit */
308CAMLprim value llvm_ee_free_machine_code(LLVMValueRef F,
309 LLVMExecutionEngineRef EE) {
310 LLVMFreeMachineCodeForFunction(EE, F);
311 return Val_unit;
312}
313