clover: little OpenCL status code logging clean
[mesa.git] / src / gallium / state_trackers / clover / llvm / invocation.cpp
1 //
2 // Copyright 2012 Francisco Jerez
3 //
4 // Permission is hereby granted, free of charge, to any person obtaining a
5 // copy of this software and associated documentation files (the "Software"),
6 // to deal in the Software without restriction, including without limitation
7 // the rights to use, copy, modify, merge, publish, distribute, sublicense,
8 // and/or sell copies of the Software, and to permit persons to whom the
9 // Software is furnished to do so, subject to the following conditions:
10 //
11 // The above copyright notice and this permission notice shall be included in
12 // all copies or substantial portions of the Software.
13 //
14 // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
15 // IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
16 // FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
17 // THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
18 // OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
19 // ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
20 // OTHER DEALINGS IN THE SOFTWARE.
21 //
22
23 #include "core/compiler.hpp"
24
25 #include <clang/Frontend/CompilerInstance.h>
26 #include <clang/Frontend/TextDiagnosticBuffer.h>
27 #include <clang/Frontend/TextDiagnosticPrinter.h>
28 #include <clang/CodeGen/CodeGenAction.h>
29 #include <clang/Basic/TargetInfo.h>
30 #include <llvm/Bitcode/BitstreamWriter.h>
31 #include <llvm/Bitcode/ReaderWriter.h>
32 #include <llvm/Linker/Linker.h>
33 #include <llvm/IR/DiagnosticInfo.h>
34 #include <llvm/IR/DiagnosticPrinter.h>
35 #include <llvm/IR/DerivedTypes.h>
36 #include <llvm/IR/LLVMContext.h>
37 #include <llvm/IR/Module.h>
38 #include <llvm/Support/SourceMgr.h>
39 #include <llvm/IRReader/IRReader.h>
40 #if HAVE_LLVM >= 0x0307
41 #include <llvm/IR/LegacyPassManager.h>
42 #else
43 #include <llvm/PassManager.h>
44 #endif
45 #include <llvm/Support/CodeGen.h>
46 #include <llvm/Support/TargetSelect.h>
47 #include <llvm/Support/MemoryBuffer.h>
48 #include <llvm/Support/FormattedStream.h>
49 #include <llvm/Support/TargetRegistry.h>
50 #include <llvm/Transforms/IPO.h>
51 #include <llvm/Transforms/IPO/PassManagerBuilder.h>
52 #include <llvm/Transforms/Utils/Cloning.h>
53
54
55 #include <llvm/IR/DataLayout.h>
56 #if HAVE_LLVM >= 0x0307
57 #include <llvm/Analysis/TargetLibraryInfo.h>
58 #else
59 #include <llvm/Target/TargetLibraryInfo.h>
60 #endif
61 #include <llvm/Target/TargetMachine.h>
62 #include <llvm/Target/TargetOptions.h>
63
64 #include <llvm-c/Target.h>
65 #include <llvm-c/TargetMachine.h>
66 #include <llvm-c/Core.h>
67
68 #include "pipe/p_state.h"
69 #include "util/u_memory.h"
70 #include "util/u_math.h"
71
72 #include <iostream>
73 #include <iomanip>
74 #include <fstream>
75 #include <cstdio>
76 #include <sstream>
77 #include <libelf.h>
78 #include <gelf.h>
79
80 using namespace clover;
81
82 namespace {
83 #if 0
84 void
85 build_binary(const std::string &source, const std::string &target,
86 const std::string &name) {
87 clang::CompilerInstance c;
88 clang::EmitObjAction act(&llvm::getGlobalContext());
89 std::string log;
90 llvm::raw_string_ostream s_log(log);
91
92 LLVMInitializeTGSITarget();
93 LLVMInitializeTGSITargetInfo();
94 LLVMInitializeTGSITargetMC();
95 LLVMInitializeTGSIAsmPrinter();
96
97 c.getFrontendOpts().Inputs.push_back(
98 std::make_pair(clang::IK_OpenCL, name));
99 c.getHeaderSearchOpts().UseBuiltinIncludes = false;
100 c.getHeaderSearchOpts().UseStandardIncludes = false;
101 c.getLangOpts().NoBuiltin = true;
102 c.getTargetOpts().Triple = target;
103 c.getInvocation().setLangDefaults(clang::IK_OpenCL);
104 c.createDiagnostics(0, NULL, new clang::TextDiagnosticPrinter(
105 s_log, c.getDiagnosticOpts()));
106
107 c.getPreprocessorOpts().addRemappedFile(
108 name, llvm::MemoryBuffer::getMemBuffer(source));
109
110 if (!c.ExecuteAction(act))
111 throw compile_error(log);
112 }
113
114 module
115 load_binary(const char *name) {
116 std::ifstream fs((name));
117 std::vector<unsigned char> str((std::istreambuf_iterator<char>(fs)),
118 (std::istreambuf_iterator<char>()));
119 compat::istream cs(str);
120 return module::deserialize(cs);
121 }
122 #endif
123 void debug_log(const std::string &msg, const std::string &suffix) {
124 const char *dbg_file = debug_get_option("CLOVER_DEBUG_FILE", "stderr");
125 if (!strcmp("stderr", dbg_file)) {
126 std::cerr << msg;
127 } else {
128 std::ofstream file(dbg_file + suffix, std::ios::app);
129 file << msg;
130 }
131 }
132
133 llvm::Module *
134 compile_llvm(llvm::LLVMContext &llvm_ctx, const std::string &source,
135 const header_map &headers,
136 const std::string &name, const std::string &triple,
137 const std::string &processor, const std::string &opts,
138 clang::LangAS::Map& address_spaces, unsigned &optimization_level,
139 std::string &r_log) {
140
141 clang::CompilerInstance c;
142 clang::EmitLLVMOnlyAction act(&llvm_ctx);
143 std::string log;
144 llvm::raw_string_ostream s_log(log);
145 std::string libclc_path = LIBCLC_LIBEXECDIR + processor + "-"
146 + triple + ".bc";
147
148 // Parse the compiler options:
149 std::vector<std::string> opts_array;
150 std::istringstream ss(opts);
151
152 while (!ss.eof()) {
153 std::string opt;
154 getline(ss, opt, ' ');
155 opts_array.push_back(opt);
156 }
157
158 opts_array.push_back(name);
159
160 std::vector<const char *> opts_carray;
161 for (unsigned i = 0; i < opts_array.size(); i++) {
162 opts_carray.push_back(opts_array.at(i).c_str());
163 }
164
165 llvm::IntrusiveRefCntPtr<clang::DiagnosticIDs> DiagID;
166 llvm::IntrusiveRefCntPtr<clang::DiagnosticOptions> DiagOpts;
167 clang::TextDiagnosticBuffer *DiagsBuffer;
168
169 DiagID = new clang::DiagnosticIDs();
170 DiagOpts = new clang::DiagnosticOptions();
171 DiagsBuffer = new clang::TextDiagnosticBuffer();
172
173 clang::DiagnosticsEngine Diags(DiagID, &*DiagOpts, DiagsBuffer);
174 bool Success;
175
176 Success = clang::CompilerInvocation::CreateFromArgs(c.getInvocation(),
177 opts_carray.data(),
178 opts_carray.data() + opts_carray.size(),
179 Diags);
180 if (!Success) {
181 throw error(CL_INVALID_COMPILER_OPTIONS);
182 }
183 c.getFrontendOpts().ProgramAction = clang::frontend::EmitLLVMOnly;
184 c.getHeaderSearchOpts().UseBuiltinIncludes = true;
185 c.getHeaderSearchOpts().UseStandardSystemIncludes = true;
186 c.getHeaderSearchOpts().ResourceDir = CLANG_RESOURCE_DIR;
187
188 // Add libclc generic search path
189 c.getHeaderSearchOpts().AddPath(LIBCLC_INCLUDEDIR,
190 clang::frontend::Angled,
191 false, false
192 );
193
194 // Add libclc include
195 c.getPreprocessorOpts().Includes.push_back("clc/clc.h");
196
197 // clc.h requires that this macro be defined:
198 c.getPreprocessorOpts().addMacroDef("cl_clang_storage_class_specifiers");
199
200 c.getLangOpts().NoBuiltin = true;
201 c.getTargetOpts().Triple = triple;
202 c.getTargetOpts().CPU = processor;
203
204 // This is a workaround for a Clang bug which causes the number
205 // of warnings and errors to be printed to stderr.
206 // http://www.llvm.org/bugs/show_bug.cgi?id=19735
207 c.getDiagnosticOpts().ShowCarets = false;
208 c.getInvocation().setLangDefaults(c.getLangOpts(), clang::IK_OpenCL,
209 clang::LangStandard::lang_opencl11);
210 c.createDiagnostics(
211 new clang::TextDiagnosticPrinter(
212 s_log,
213 &c.getDiagnosticOpts()));
214
215 #if HAVE_LLVM >= 0x0306
216 c.getPreprocessorOpts().addRemappedFile(name,
217 llvm::MemoryBuffer::getMemBuffer(source).release());
218 #else
219 c.getPreprocessorOpts().addRemappedFile(name,
220 llvm::MemoryBuffer::getMemBuffer(source));
221 #endif
222
223 if (headers.size()) {
224 const std::string tmp_header_path = "/tmp/clover/";
225
226 c.getHeaderSearchOpts().AddPath(tmp_header_path,
227 clang::frontend::Angled,
228 false, false
229 );
230
231 for (header_map::const_iterator it = headers.begin();
232 it != headers.end(); ++it) {
233 const std::string path = tmp_header_path + std::string(it->first);
234 c.getPreprocessorOpts().addRemappedFile(path,
235 #if HAVE_LLVM >= 0x0306
236 llvm::MemoryBuffer::getMemBuffer(it->second.c_str()).release());
237 #else
238 llvm::MemoryBuffer::getMemBuffer(it->second.c_str()));
239 #endif
240 }
241 }
242
243 // Setting this attribute tells clang to link this file before
244 // performing any optimizations. This is required so that
245 // we can replace calls to the OpenCL C barrier() builtin
246 // with calls to target intrinsics that have the noduplicate
247 // attribute. This attribute will prevent Clang from creating
248 // illegal uses of barrier() (e.g. Moving barrier() inside a conditional
249 // that is no executed by all threads) during its optimizaton passes.
250 c.getCodeGenOpts().LinkBitcodeFile = libclc_path;
251
252 optimization_level = c.getCodeGenOpts().OptimizationLevel;
253
254 // Compile the code
255 bool ExecSuccess = c.ExecuteAction(act);
256 r_log = log;
257
258 if (!ExecSuccess)
259 throw compile_error();
260
261 // Get address spaces map to be able to find kernel argument address space
262 memcpy(address_spaces, c.getTarget().getAddressSpaceMap(),
263 sizeof(address_spaces));
264
265 #if HAVE_LLVM >= 0x0306
266 return act.takeModule().release();
267 #else
268 return act.takeModule();
269 #endif
270 }
271
272 void
273 find_kernels(llvm::Module *mod, std::vector<llvm::Function *> &kernels) {
274 const llvm::NamedMDNode *kernel_node =
275 mod->getNamedMetadata("opencl.kernels");
276 // This means there are no kernels in the program. The spec does not
277 // require that we return an error here, but there will be an error if
278 // the user tries to pass this program to a clCreateKernel() call.
279 if (!kernel_node) {
280 return;
281 }
282
283 for (unsigned i = 0; i < kernel_node->getNumOperands(); ++i) {
284 #if HAVE_LLVM >= 0x0306
285 kernels.push_back(llvm::mdconst::dyn_extract<llvm::Function>(
286 #else
287 kernels.push_back(llvm::dyn_cast<llvm::Function>(
288 #endif
289 kernel_node->getOperand(i)->getOperand(0)));
290 }
291 }
292
293 void
294 optimize(llvm::Module *mod, unsigned optimization_level,
295 const std::vector<llvm::Function *> &kernels) {
296
297 #if HAVE_LLVM >= 0x0307
298 llvm::legacy::PassManager PM;
299 #else
300 llvm::PassManager PM;
301 #endif
302
303 // Add a function internalizer pass.
304 //
305 // By default, the function internalizer pass will look for a function
306 // called "main" and then mark all other functions as internal. Marking
307 // functions as internal enables the optimizer to perform optimizations
308 // like function inlining and global dead-code elimination.
309 //
310 // When there is no "main" function in a module, the internalize pass will
311 // treat the module like a library, and it won't internalize any functions.
312 // Since there is no "main" function in our kernels, we need to tell
313 // the internalizer pass that this module is not a library by passing a
314 // list of kernel functions to the internalizer. The internalizer will
315 // treat the functions in the list as "main" functions and internalize
316 // all of the other functions.
317 std::vector<const char*> export_list;
318 for (std::vector<llvm::Function *>::const_iterator I = kernels.begin(),
319 E = kernels.end();
320 I != E; ++I) {
321 llvm::Function *kernel = *I;
322 export_list.push_back(kernel->getName().data());
323 }
324 #if HAVE_LLVM < 0x0306
325 PM.add(new llvm::DataLayoutPass(mod));
326 #elif HAVE_LLVM < 0x0307
327 PM.add(new llvm::DataLayoutPass());
328 #endif
329 PM.add(llvm::createInternalizePass(export_list));
330
331 llvm::PassManagerBuilder PMB;
332 PMB.OptLevel = optimization_level;
333 #if HAVE_LLVM < 0x0307
334 PMB.LibraryInfo = new llvm::TargetLibraryInfo(
335 #else
336 PMB.LibraryInfo = new llvm::TargetLibraryInfoImpl(
337 #endif
338 llvm::Triple(mod->getTargetTriple()));
339 PMB.populateModulePassManager(PM);
340 PM.run(*mod);
341 }
342
343 std::vector<module::argument>
344 get_kernel_args(const llvm::Module *mod, const std::string &kernel_name,
345 const clang::LangAS::Map &address_spaces) {
346
347 std::vector<module::argument> args;
348 llvm::Function *kernel_func = mod->getFunction(kernel_name);
349
350 llvm::DataLayout TD(mod);
351
352 for (llvm::Function::const_arg_iterator I = kernel_func->arg_begin(),
353 E = kernel_func->arg_end(); I != E; ++I) {
354 const llvm::Argument &arg = *I;
355
356 llvm::Type *arg_type = arg.getType();
357 const unsigned arg_store_size = TD.getTypeStoreSize(arg_type);
358
359 // OpenCL 1.2 specification, Ch. 6.1.5: "A built-in data
360 // type that is not a power of two bytes in size must be
361 // aligned to the next larger power of two". We need this
362 // alignment for three element vectors, which have
363 // non-power-of-2 store size.
364 const unsigned arg_api_size = util_next_power_of_two(arg_store_size);
365
366 llvm::Type *target_type = arg_type->isIntegerTy() ?
367 TD.getSmallestLegalIntType(mod->getContext(), arg_store_size * 8)
368 : arg_type;
369 unsigned target_size = TD.getTypeStoreSize(target_type);
370 unsigned target_align = TD.getABITypeAlignment(target_type);
371
372 if (llvm::isa<llvm::PointerType>(arg_type) && arg.hasByValAttr()) {
373 arg_type =
374 llvm::dyn_cast<llvm::PointerType>(arg_type)->getElementType();
375 }
376
377 if (arg_type->isPointerTy()) {
378 unsigned address_space = llvm::cast<llvm::PointerType>(arg_type)->getAddressSpace();
379 if (address_space == address_spaces[clang::LangAS::opencl_local
380 - clang::LangAS::Offset]) {
381 args.push_back(module::argument(module::argument::local,
382 arg_api_size, target_size,
383 target_align,
384 module::argument::zero_ext));
385 } else {
386 // XXX: Correctly handle constant address space. There is no
387 // way for r600g to pass a handle for constant buffers back
388 // to clover like it can for global buffers, so
389 // creating constant arguments will break r600g. For now,
390 // continue treating constant buffers as global buffers
391 // until we can come up with a way to create handles for
392 // constant buffers.
393 args.push_back(module::argument(module::argument::global,
394 arg_api_size, target_size,
395 target_align,
396 module::argument::zero_ext));
397 }
398
399 } else {
400 llvm::AttributeSet attrs = kernel_func->getAttributes();
401 enum module::argument::ext_type ext_type =
402 (attrs.hasAttribute(arg.getArgNo() + 1,
403 llvm::Attribute::SExt) ?
404 module::argument::sign_ext :
405 module::argument::zero_ext);
406
407 args.push_back(
408 module::argument(module::argument::scalar, arg_api_size,
409 target_size, target_align, ext_type));
410 }
411 }
412
413 // Append implicit arguments. XXX - The types, ordering and
414 // vector size of the implicit arguments should depend on the
415 // target according to the selected calling convention.
416 llvm::Type *size_type =
417 TD.getSmallestLegalIntType(mod->getContext(), sizeof(cl_uint) * 8);
418
419 args.push_back(
420 module::argument(module::argument::scalar, sizeof(cl_uint),
421 TD.getTypeStoreSize(size_type),
422 TD.getABITypeAlignment(size_type),
423 module::argument::zero_ext,
424 module::argument::grid_dimension));
425
426 args.push_back(
427 module::argument(module::argument::scalar, sizeof(cl_uint),
428 TD.getTypeStoreSize(size_type),
429 TD.getABITypeAlignment(size_type),
430 module::argument::zero_ext,
431 module::argument::grid_offset));
432
433 return args;
434 }
435
436 module
437 build_module_llvm(llvm::Module *mod,
438 const std::vector<llvm::Function *> &kernels,
439 clang::LangAS::Map& address_spaces) {
440
441 module m;
442 struct pipe_llvm_program_header header;
443
444 llvm::SmallVector<char, 1024> llvm_bitcode;
445 llvm::raw_svector_ostream bitcode_ostream(llvm_bitcode);
446 llvm::BitstreamWriter writer(llvm_bitcode);
447 llvm::WriteBitcodeToFile(mod, bitcode_ostream);
448 bitcode_ostream.flush();
449
450 for (unsigned i = 0; i < kernels.size(); ++i) {
451 std::string kernel_name = kernels[i]->getName();
452 std::vector<module::argument> args =
453 get_kernel_args(mod, kernel_name, address_spaces);
454
455 m.syms.push_back(module::symbol(kernel_name, 0, i, args ));
456 }
457
458 header.num_bytes = llvm_bitcode.size();
459 std::vector<char> data;
460 data.insert(data.end(), (char*)(&header),
461 (char*)(&header) + sizeof(header));
462 data.insert(data.end(), llvm_bitcode.begin(),
463 llvm_bitcode.end());
464 m.secs.push_back(module::section(0, module::section::text,
465 header.num_bytes, data));
466
467 return m;
468 }
469
470 void
471 emit_code(LLVMTargetMachineRef tm, LLVMModuleRef mod,
472 LLVMCodeGenFileType file_type,
473 LLVMMemoryBufferRef *out_buffer,
474 std::string &r_log) {
475 LLVMBool err;
476 char *err_message = NULL;
477
478 err = LLVMTargetMachineEmitToMemoryBuffer(tm, mod, file_type,
479 &err_message, out_buffer);
480
481 if (err) {
482 r_log = std::string(err_message);
483 }
484
485 LLVMDisposeMessage(err_message);
486
487 if (err) {
488 throw compile_error();
489 }
490 }
491
492 std::vector<char>
493 compile_native(const llvm::Module *mod, const std::string &triple,
494 const std::string &processor, unsigned dump_asm,
495 std::string &r_log) {
496
497 std::string log;
498 LLVMTargetRef target;
499 char *error_message;
500 LLVMMemoryBufferRef out_buffer;
501 unsigned buffer_size;
502 const char *buffer_data;
503 LLVMModuleRef mod_ref = wrap(mod);
504
505 if (LLVMGetTargetFromTriple(triple.c_str(), &target, &error_message)) {
506 r_log = std::string(error_message);
507 LLVMDisposeMessage(error_message);
508 throw compile_error();
509 }
510
511 LLVMTargetMachineRef tm = LLVMCreateTargetMachine(
512 target, triple.c_str(), processor.c_str(), "",
513 LLVMCodeGenLevelDefault, LLVMRelocDefault, LLVMCodeModelDefault);
514
515 if (!tm) {
516 r_log = "Could not create TargetMachine: " + triple;
517 throw compile_error();
518 }
519
520 if (dump_asm) {
521 LLVMSetTargetMachineAsmVerbosity(tm, true);
522 LLVMModuleRef debug_mod = wrap(llvm::CloneModule(mod));
523 emit_code(tm, debug_mod, LLVMAssemblyFile, &out_buffer, r_log);
524 buffer_size = LLVMGetBufferSize(out_buffer);
525 buffer_data = LLVMGetBufferStart(out_buffer);
526 debug_log(std::string(buffer_data, buffer_size), ".asm");
527
528 LLVMSetTargetMachineAsmVerbosity(tm, false);
529 LLVMDisposeMemoryBuffer(out_buffer);
530 LLVMDisposeModule(debug_mod);
531 }
532
533 emit_code(tm, mod_ref, LLVMObjectFile, &out_buffer, r_log);
534
535 buffer_size = LLVMGetBufferSize(out_buffer);
536 buffer_data = LLVMGetBufferStart(out_buffer);
537
538 std::vector<char> code(buffer_data, buffer_data + buffer_size);
539
540 LLVMDisposeMemoryBuffer(out_buffer);
541 LLVMDisposeTargetMachine(tm);
542
543 return code;
544 }
545
546 std::map<std::string, unsigned>
547 get_kernel_offsets(std::vector<char> &code,
548 const std::vector<llvm::Function *> &kernels,
549 std::string &r_log) {
550
551 // One of the libelf implementations
552 // (http://www.mr511.de/software/english.htm) requires calling
553 // elf_version() before elf_memory().
554 //
555 elf_version(EV_CURRENT);
556
557 Elf *elf = elf_memory(&code[0], code.size());
558 size_t section_str_index;
559 elf_getshdrstrndx(elf, &section_str_index);
560 Elf_Scn *section = NULL;
561 Elf_Scn *symtab = NULL;
562 GElf_Shdr symtab_header;
563
564 // Find the symbol table
565 try {
566 while ((section = elf_nextscn(elf, section))) {
567 const char *name;
568 if (gelf_getshdr(section, &symtab_header) != &symtab_header) {
569 r_log = "Failed to read ELF section header.";
570 throw compile_error();
571 }
572 name = elf_strptr(elf, section_str_index, symtab_header.sh_name);
573 if (!strcmp(name, ".symtab")) {
574 symtab = section;
575 break;
576 }
577 }
578 if (!symtab) {
579 r_log = "Unable to find symbol table.";
580 throw compile_error();
581 }
582 } catch (compile_error &e) {
583 elf_end(elf);
584 throw e;
585 }
586
587
588 // Extract symbol information from the table
589 Elf_Data *symtab_data = NULL;
590 GElf_Sym *symbol;
591 GElf_Sym s;
592
593 std::map<std::string, unsigned> kernel_offsets;
594 symtab_data = elf_getdata(symtab, symtab_data);
595
596 // Determine the offsets for each kernel
597 for (int i = 0; (symbol = gelf_getsym(symtab_data, i, &s)); i++) {
598 char *name = elf_strptr(elf, symtab_header.sh_link, symbol->st_name);
599 for (std::vector<llvm::Function*>::const_iterator it = kernels.begin(),
600 e = kernels.end(); it != e; ++it) {
601 llvm::Function *f = *it;
602 if (f->getName() == std::string(name))
603 kernel_offsets[f->getName()] = symbol->st_value;
604 }
605 }
606 elf_end(elf);
607 return kernel_offsets;
608 }
609
610 module
611 build_module_native(std::vector<char> &code,
612 const llvm::Module *mod,
613 const std::vector<llvm::Function *> &kernels,
614 const clang::LangAS::Map &address_spaces,
615 std::string &r_log) {
616
617 std::map<std::string, unsigned> kernel_offsets =
618 get_kernel_offsets(code, kernels, r_log);
619
620 // Begin building the clover module
621 module m;
622 struct pipe_llvm_program_header header;
623
624 // Store the generated ELF binary in the module's text section.
625 header.num_bytes = code.size();
626 std::vector<char> data;
627 data.insert(data.end(), (char*)(&header),
628 (char*)(&header) + sizeof(header));
629 data.insert(data.end(), code.begin(), code.end());
630 m.secs.push_back(module::section(0, module::section::text,
631 header.num_bytes, data));
632
633 for (std::map<std::string, unsigned>::iterator i = kernel_offsets.begin(),
634 e = kernel_offsets.end(); i != e; ++i) {
635 std::vector<module::argument> args =
636 get_kernel_args(mod, i->first, address_spaces);
637 m.syms.push_back(module::symbol(i->first, 0, i->second, args ));
638 }
639
640 return m;
641 }
642
643 void
644 diagnostic_handler(const llvm::DiagnosticInfo &di, void *data) {
645 if (di.getSeverity() == llvm::DS_Error) {
646 std::string message = *(std::string*)data;
647 llvm::raw_string_ostream stream(message);
648 llvm::DiagnosticPrinterRawOStream dp(stream);
649 di.print(dp);
650 stream.flush();
651 *(std::string*)data = message;
652
653 throw compile_error();
654 }
655 }
656
657 void
658 init_targets() {
659 static bool targets_initialized = false;
660 if (!targets_initialized) {
661 LLVMInitializeAllTargets();
662 LLVMInitializeAllTargetInfos();
663 LLVMInitializeAllTargetMCs();
664 LLVMInitializeAllAsmPrinters();
665 targets_initialized = true;
666 }
667 }
668
669 #define DBG_CLC (1 << 0)
670 #define DBG_LLVM (1 << 1)
671 #define DBG_ASM (1 << 2)
672
673 unsigned
674 get_debug_flags() {
675 static const struct debug_named_value debug_options[] = {
676 {"clc", DBG_CLC, "Dump the OpenCL C code for all kernels."},
677 {"llvm", DBG_LLVM, "Dump the generated LLVM IR for all kernels."},
678 {"asm", DBG_ASM, "Dump kernel assembly code for targets specifying "
679 "PIPE_SHADER_IR_NATIVE"},
680 DEBUG_NAMED_VALUE_END // must be last
681 };
682 static const unsigned debug_flags =
683 debug_get_flags_option("CLOVER_DEBUG", debug_options, 0);
684
685 return debug_flags;
686 }
687
688 } // End anonymous namespace
689
690 module
691 clover::compile_program_llvm(const std::string &source,
692 const header_map &headers,
693 enum pipe_shader_ir ir,
694 const std::string &target,
695 const std::string &opts,
696 std::string &r_log) {
697
698 init_targets();
699
700 std::vector<llvm::Function *> kernels;
701 size_t processor_str_len = std::string(target).find_first_of("-");
702 std::string processor(target, 0, processor_str_len);
703 std::string triple(target, processor_str_len + 1,
704 target.size() - processor_str_len - 1);
705 clang::LangAS::Map address_spaces;
706 llvm::LLVMContext llvm_ctx;
707 unsigned optimization_level;
708
709 llvm_ctx.setDiagnosticHandler(diagnostic_handler, &r_log);
710
711 if (get_debug_flags() & DBG_CLC)
712 debug_log("// Build options: " + opts + '\n' + source, ".cl");
713
714 // The input file name must have the .cl extension in order for the
715 // CompilerInvocation class to recognize it as an OpenCL source file.
716 llvm::Module *mod = compile_llvm(llvm_ctx, source, headers, "input.cl",
717 triple, processor, opts, address_spaces,
718 optimization_level, r_log);
719
720 find_kernels(mod, kernels);
721
722 optimize(mod, optimization_level, kernels);
723
724 if (get_debug_flags() & DBG_LLVM) {
725 std::string log;
726 llvm::raw_string_ostream s_log(log);
727 mod->print(s_log, NULL);
728 s_log.flush();
729 debug_log(log, ".ll");
730 }
731
732 module m;
733 // Build the clover::module
734 switch (ir) {
735 case PIPE_SHADER_IR_TGSI:
736 //XXX: Handle TGSI
737 assert(0);
738 m = module();
739 break;
740 case PIPE_SHADER_IR_LLVM:
741 m = build_module_llvm(mod, kernels, address_spaces);
742 break;
743 case PIPE_SHADER_IR_NATIVE: {
744 std::vector<char> code = compile_native(mod, triple, processor,
745 get_debug_flags() & DBG_ASM,
746 r_log);
747 m = build_module_native(code, mod, kernels, address_spaces, r_log);
748 break;
749 }
750 }
751 #if HAVE_LLVM >= 0x0306
752 // LLVM 3.6 and newer, the user takes ownership of the module.
753 delete mod;
754 #endif
755
756 return m;
757 }