Class: BOAST::CKernel
- Includes:
- Rake::DSL
- Defined in:
- lib/BOAST/CKernel.rb
Instance Attribute Summary collapse
-
#binary ⇒ Object
Returns the value of attribute binary.
-
#code ⇒ Object
Returns the value of attribute code.
-
#cost_function ⇒ Object
Returns the value of attribute cost_function.
-
#kernels ⇒ Object
Returns the value of attribute kernels.
-
#lang ⇒ Object
Returns the value of attribute lang.
-
#procedure ⇒ Object
Returns the value of attribute procedure.
Instance Method Summary collapse
- #build(options = {}) ⇒ Object
- #build_opencl(options) ⇒ Object
- #cost(*args) ⇒ Object
- #fill_code(source_file) ⇒ Object
- #fill_module(module_file, module_name) ⇒ Object
-
#initialize(options = {}) ⇒ CKernel
constructor
A new instance of CKernel.
- #method_missing(meth, *args, &block) ⇒ Object
- #print ⇒ Object
- #setup_compiler(options = {}) ⇒ Object
- #to_s ⇒ Object
- #to_str ⇒ Object
Constructor Details
#initialize(options = {}) ⇒ CKernel
Returns a new instance of CKernel.
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# File 'lib/BOAST/CKernel.rb', line 96 def initialize(={}) if [:code] then @code = [:code] elsif BOAST::get_chain_code @code = BOAST::get_output @code.seek(0,SEEK_END) else @code = StringIO::new end BOAST::set_output( @code ) if [:kernels] then @kernels = [:kernels] else @kernels = [] end if [:lang] then @lang = [:lang] else @lang = BOAST::get_lang end end |
Dynamic Method Handling
This class handles dynamic methods through the method_missing method
#method_missing(meth, *args, &block) ⇒ Object
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# File 'lib/BOAST/CKernel.rb', line 647 def method_missing(meth, *args, &block) if meth.to_s == "run" then self.build self.run(*args,&block) else super end end |
Instance Attribute Details
#binary ⇒ Object
Returns the value of attribute binary.
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# File 'lib/BOAST/CKernel.rb', line 92 def binary @binary end |
#code ⇒ Object
Returns the value of attribute code.
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# File 'lib/BOAST/CKernel.rb', line 89 def code @code end |
#cost_function ⇒ Object
Returns the value of attribute cost_function.
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# File 'lib/BOAST/CKernel.rb', line 94 def cost_function @cost_function end |
#kernels ⇒ Object
Returns the value of attribute kernels.
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# File 'lib/BOAST/CKernel.rb', line 93 def kernels @kernels end |
#lang ⇒ Object
Returns the value of attribute lang.
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# File 'lib/BOAST/CKernel.rb', line 91 def lang @lang end |
#procedure ⇒ Object
Returns the value of attribute procedure.
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# File 'lib/BOAST/CKernel.rb', line 90 def procedure @procedure end |
Instance Method Details
#build(options = {}) ⇒ Object
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# File 'lib/BOAST/CKernel.rb', line 343 def build( = {}) = BOAST:: .update() return build_opencl() if @lang == BOAST::CL ldflags = self.setup_compiler() extension = ".c" if @lang == BOAST::C extension = ".cu" if @lang == BOAST::CUDA extension = ".f90" if @lang == BOAST::FORTRAN #temporary c_compiler = [:CC] c_compiler = "cc" if not c_compiler linker = [:LD] linker = c_compiler if not linker #end temporary if [:openmp] then openmp_ld_flags = BOAST::get_openmp_flags[linker] if not openmp_ld_flags then keys = BOAST::get_openmp_flags.keys keys.each { |k| openmp_ld_flags = BOAST::get_openmp_flags[k] if linker.match(k) } end raise "unkwown openmp flags for: #{linker}" if not openmp_ld_flags ldflags += " #{openmp_ld_flags}" end source_file = Tempfile::new([@procedure.name,extension]) path = source_file.path target = path.chomp(File::extname(path))+".o" fill_code(source_file) source_file.close previous_lang = BOAST::get_lang previous_output = BOAST::get_output BOAST::set_lang(BOAST::C) module_file_name = File::split(path.chomp(File::extname(path)))[0] + "/Mod_" + File::split(path.chomp(File::extname(path)))[1].gsub("-","_") + ".c" module_name = File::split(module_file_name.chomp(File::extname(module_file_name)))[1] module_file = File::open(module_file_name,"w+") BOAST::set_output(module_file) fill_module(module_file, module_name) module_file.rewind # puts module_file.read module_file.close BOAST::set_lang(previous_lang) BOAST::set_output(previous_output) module_target = module_file_name.chomp(File::extname(module_file_name))+".o" module_final = module_file_name.chomp(File::extname(module_file_name))+".so" kernel_files = [] @kernels.each { |kernel| kernel_file = Tempfile::new([kernel.procedure.name,".o"]) kernel.binary.rewind kernel_file.write( kernel.binary.read ) kernel_file.close kernel_files.push(kernel_file) } file module_final => [module_target, target] do #puts "#{linker} -shared -o #{module_final} #{module_target} #{target} #{kernel_files.join(" ")} -Wl,-Bsymbolic-functions -Wl,-z,relro -rdynamic -Wl,-export-dynamic #{ldflags}" sh "#{linker} -shared -o #{module_final} #{module_target} #{target} #{(kernel_files.collect {|f| f.path}).join(" ")} -Wl,-Bsymbolic-functions -Wl,-z,relro -rdynamic -Wl,-export-dynamic #{ldflags}" end Rake::Task[module_final].invoke require(module_final) eval "self.extend(#{module_name})" f = File::open(target,"rb") @binary = StringIO::new @binary.write( f.read ) f.close File.unlink(target) File.unlink(module_target) File.unlink(module_file_name) File.unlink(module_final) kernel_files.each { |f| f.unlink } return self end |
#build_opencl(options) ⇒ Object
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# File 'lib/BOAST/CKernel.rb', line 246 def build_opencl() require 'opencl_ruby_ffi' platform = nil platforms = OpenCL::get_platforms if [:platform_vendor] then platforms.each{ |p| platform = p if p.vendor.match([:platform_vendor]) } else platform = platforms.first end device = nil type = [:device_type] ? [:device_type] : OpenCL::Device::Type::ALL devices = platform.devices(type) if [:device_name] then devices.each{ |d| device = d if d.name.match([:device_name]) } else device = devices.first end @context = OpenCL::create_context([device]) program = @context.create_program_with_source([@code.string]) opts = [:CLFLAGS] program.build(:options => [:CLFLAGS]) if [:verbose] then program.build_log.each {|dev,log| STDERR.puts "#{device.name}: #{log}" } end @queue = @context.create_command_queue(device, :properties => OpenCL::CommandQueue::PROFILING_ENABLE) @kernel = program.create_kernel(@procedure.name) run_method = <<EOF def self.run(*args) raise "Wrong number of arguments \#{args.length} for #{@procedure.parameters.length}" if args.length > #{@procedure.parameters.length+1} or args.length < #{@procedure.parameters.length} params = [] opts = {} opts = args.pop if args.length == #{@procedure.parameters.length+1} @procedure.parameters.each_index { |i| if @procedure.parameters[i].dimension then if @procedure.parameters[i].direction == :in and @procedure.parameters[i].direction == :out then params[i] = @context.create_buffer( args[i].size * args[i].element_size ) @queue.enqueue_write_buffer( params[i], args[i], :blocking => true ) elsif @procedure.parameters[i].direction == :in then params[i] = @context.create_buffer( args[i].size * args[i].element_size, :flags => OpenCL::Mem::Flags::READ_ONLY ) @queue.enqueue_write_buffer( params[i], args[i], :blocking => true ) elsif @procedure.parameters[i].direction == :out then params[i] = @context.create_buffer( args[i].size * args[i].element_size, :flags => OpenCL::Mem::Flags::WRITE_ONLY ) else params[i] = @context.create_buffer( args[i].size * args[i].element_size ) end else if @procedure.parameters[i].type.is_a?(Real) then params[i] = OpenCL::Half::new(args[i]) if @procedure.parameters[i].type.size == 2 params[i] = OpenCL::Float::new(args[i]) if @procedure.parameters[i].type.size == 4 params[i] = OpenCL::Double::new(args[i]) if @procedure.parameters[i].type.size == 8 elsif @procedure.parameters[i].type.is_a?(Int) then if @procedure.parameters[i].type.signed params[i] = OpenCL::Char::new(args[i]) if @procedure.parameters[i].type.size == 1 params[i] = OpenCL::Short::new(args[i]) if @procedure.parameters[i].type.size == 2 params[i] = OpenCL::Int::new(args[i]) if @procedure.parameters[i].type.size == 4 params[i] = OpenCL::Long::new(args[i]) if @procedure.parameters[i].type.size == 8 else params[i] = OpenCL::UChar::new(args[i]) if @procedure.parameters[i].type.size == 1 params[i] = OpenCL::UShort::new(args[i]) if @procedure.parameters[i].type.size == 2 params[i] = OpenCL::UInt::new(args[i]) if @procedure.parameters[i].type.size == 4 params[i] = OpenCL::ULong::new(args[i]) if @procedure.parameters[i].type.size == 8 end else params[i] = args[i] end end } params.each_index{ |i| @kernel.set_arg(i, params[i]) } event = @queue.enqueue_NDrange_kernel(@kernel, opts[:global_work_size], :local_work_size => opts[:local_work_size]) @procedure.parameters.each_index { |i| if @procedure.parameters[i].dimension then if @procedure.parameters[i].direction == :in and @procedure.parameters[i].direction == :out then @queue.enqueue_read_buffer( params[i], args[i], :blocking => true ) elsif @procedure.parameters[i].direction == :out then @queue.enqueue_read_buffer( params[i], args[i], :blocking => true ) end end } result = {} result[:start] = event.profiling_command_start result[:end] = event.profiling_command_end result[:duration] = (result[:end] - result[:start])/1000000000.0 return result end EOF eval run_method return self end |
#cost(*args) ⇒ Object
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# File 'lib/BOAST/CKernel.rb', line 656 def cost(*args) @cost_function.call(*args) end |
#fill_code(source_file) ⇒ Object
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# File 'lib/BOAST/CKernel.rb', line 418 def fill_code(source_file) @code.rewind source_file.puts "#include <inttypes.h>" if @lang == BOAST::C or @lang == BOAST::CUDA source_file.puts "#include <cuda.h>" if @lang == BOAST::CUDA source_file.write @code.read if @lang == BOAST::CUDA then source_file.write <<EOF extern "C" { #{@procedure.header(BOAST::CUDA,false)}{ dim3 dimBlock(block_size[0], block_size[1], block_size[2]); dim3 dimGrid(block_number[0], block_number[1], block_number[2]); cudaEvent_t __start, __stop; float __time; cudaEventCreate(&__start); cudaEventCreate(&__stop); cudaEventRecord(__start, 0); #{@procedure.name}<<<dimGrid,dimBlock>>>(#{@procedure.parameters.join(", ")}); cudaEventRecord(__stop, 0); cudaEventSynchronize(__stop); cudaEventElapsedTime(&__time, __start, __stop); return (unsigned long long int)((double)__time*(double)1e6); } } EOF end @code.rewind end |
#fill_module(module_file, module_name) ⇒ Object
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# File 'lib/BOAST/CKernel.rb', line 446 def fill_module(module_file, module_name) module_file.write <<EOF #include "ruby.h" #include <inttypes.h> #include <time.h> #ifdef HAVE_NARRAY_H #include "narray.h" #endif EOF if( @lang == BOAST::CUDA ) then module_file.print "#include <cuda_runtime.h>\n" end module_file.print @procedure.header(@lang) module_file.write <<EOF VALUE #{module_name} = Qnil; void Init_#{module_name}(); VALUE method_run(int argc, VALUE *argv, VALUE self); void Init_#{module_name}() { #{module_name} = rb_define_module("#{module_name}"); rb_define_method(#{module_name}, "run", method_run, -1); } VALUE method_run(int argc, VALUE *argv, VALUE self) { EOF if( @lang == BOAST::CUDA ) then module_file.write <<EOF if( argc < #{@procedure.parameters.length} || argc > #{@procedure.parameters.length + 1} ) rb_raise(rb_eArgError, "wrong number of arguments for #{@procedure.name} (%d for #{@procedure.parameters.length})", argc); VALUE rb_opts; VALUE rb_ptr; size_t block_size[3] = {1,1,1}; size_t block_number[3] = {1,1,1}; EOF else module_file.write <<EOF if( argc != #{@procedure.parameters.length} ) rb_raise(rb_eArgError, "wrong number of arguments for #{@procedure.name} (%d for #{@procedure.parameters.length})", argc); VALUE rb_ptr; EOF end argc = @procedure.parameters.length argv = Variable::new("argv",Real,{:dimension => [ Dimension::new(0,argc-1) ] }) rb_ptr = Variable::new("rb_ptr",Int) @procedure.parameters.each { |param| param_copy = param.copy param_copy.constant = nil param_copy.direction = nil param_copy.decl } @procedure.parameters.each_index do |i| param = @procedure.parameters[i] if not param.dimension then case param.type when Int (param === FuncCall::new("NUM2INT", argv[i])).print if param.type.size == 4 (param === FuncCall::new("NUM2LONG", argv[i])).print if param.type.size == 8 when Real (param === FuncCall::new("NUM2DBL", argv[i])).print end else (rb_ptr === argv[i]).print if @lang == BOAST::CUDA then module_file.print <<EOF if ( IsNArray(rb_ptr) ) { struct NARRAY *n_ary; size_t array_size; Data_Get_Struct(rb_ptr, struct NARRAY, n_ary); array_size = n_ary->total * na_sizeof[n_ary->type]; cudaMalloc( (void **) &#{param.name}, array_size); EOF if param.direction == :in then module_file.print <<EOF cudaMemcpy(#{param.name}, (void *) n_ary->ptr, array_size, cudaMemcpyHostToDevice); EOF end module_file.print <<EOF } else rb_raise(rb_eArgError, "wrong type of argument %d", #{i}); EOF else module_file.print <<EOF if (TYPE(rb_ptr) == T_STRING) { #{param.name} = (void *) RSTRING_PTR(rb_ptr); } else if ( IsNArray(rb_ptr) ) { struct NARRAY *n_ary; Data_Get_Struct(rb_ptr, struct NARRAY, n_ary); #{param.name} = (void *) n_ary->ptr; } else rb_raise(rb_eArgError, "wrong type of argument %d", #{i}); EOF end end end if @lang == BOAST::CUDA then module_file.write <<EOF if( argc == #{@procedure.parameters.length + 1} ) { rb_opts = argv[argc -1]; if ( rb_opts != Qnil ) { VALUE rb_array_data = Qnil; int i; if (TYPE(rb_opts) != T_HASH) rb_raise(rb_eArgError, "Cuda options should be passed as a hash"); rb_ptr = rb_hash_aref(rb_opts, ID2SYM(rb_intern("block_size"))); if( rb_ptr != Qnil ) { if (TYPE(rb_ptr) != T_ARRAY) rb_raise(rb_eArgError, "Cuda option block_size should be an array"); for(i=0; i<3; i++) { rb_array_data = rb_ary_entry(rb_ptr, i); if( rb_array_data != Qnil ) block_size[i] = (size_t) NUM2LONG( rb_array_data ); } } rb_ptr = rb_hash_aref(rb_opts, ID2SYM(rb_intern("block_number"))); if( rb_ptr != Qnil ) { if (TYPE(rb_ptr) != T_ARRAY) rb_raise(rb_eArgError, "Cuda option block_number should be an array"); for(i=0; i<3; i++) { rb_array_data = rb_ary_entry(rb_ptr, i); if( rb_array_data != Qnil ) block_number[i] = (size_t) NUM2LONG( rb_array_data ); } } } } EOF end module_file.print " #{@procedure.properties[:return].type.decl} ret;\n" if @procedure.properties[:return] module_file.print " VALUE stats = rb_hash_new();\n" module_file.print " struct timespec start, stop;\n" module_file.print " unsigned long long int duration;\n" module_file.print " clock_gettime(CLOCK_REALTIME, &start);\n" if @lang == BOAST::CUDA then module_file.print " duration = " elsif @procedure.properties[:return] then module_file.print " ret = " end module_file.print " #{@procedure.name}" module_file.print "_" if @lang == BOAST::FORTRAN module_file.print "_wrapper" if @lang == BOAST::CUDA module_file.print "(" if(@lang == BOAST::FORTRAN) then params = [] @procedure.parameters.each { |param| if param.dimension then params.push( param.name ) else params.push( "&"+param.name ) end } module_file.print params.join(", ") else module_file.print @procedure.parameters.join(", ") end if @lang == BOAST::CUDA then module_file.print ", " if @procedure.parameters.length > 0 module_file.print "block_number, block_size" end module_file.print " );\n" module_file.print " clock_gettime(CLOCK_REALTIME, &stop);\n" if @lang == BOAST::CUDA then @procedure.parameters.each_index do |i| param = @procedure.parameters[i] if param.dimension then (rb_ptr === argv[i]).print module_file.print <<EOF if ( IsNArray(rb_ptr) ) { EOF if param.direction == :out then module_file.print <<EOF struct NARRAY *n_ary; size_t array_size; Data_Get_Struct(rb_ptr, struct NARRAY, n_ary); array_size = n_ary->total * na_sizeof[n_ary->type]; cudaMemcpy(#{param.name}, (void *) n_ary->ptr, array_size, cudaMemcpyDeviceToHost); EOF end module_file.print <<EOF cudaFree( (void *) #{param.name}); } else rb_raise(rb_eArgError, "wrong type of argument %d", #{i}); EOF end end end if @lang != BOAST::CUDA then module_file.print " duration = (unsigned long long int)stop.tv_sec * (unsigned long long int)1000000000 + stop.tv_nsec;\n" module_file.print " duration -= (unsigned long long int)start.tv_sec * (unsigned long long int)1000000000 + start.tv_nsec;\n" end module_file.print " rb_hash_aset(stats,ID2SYM(rb_intern(\"duration\")),rb_float_new((double)duration*(double)1e-9));\n" if @procedure.properties[:return] then type_ret = @procedure.properties[:return].type module_file.print " rb_hash_aset(stats,ID2SYM(rb_intern(\"return\")),rb_int_new((long long)ret));\n" if type_ret.kind_of?(Int) and type_ret.signed module_file.print " rb_hash_aset(stats,ID2SYM(rb_intern(\"return\")),rb_int_new((unsigned long long)ret));\n" if type_ret.kind_of?(Int) and not type_ret.signed module_file.print " rb_hash_aset(stats,ID2SYM(rb_intern(\"return\")),rb_float_new((double)ret));\n" if type_ret.kind_of?(Real) end module_file.print " return stats;\n" module_file.print "}" end |
#print ⇒ Object
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# File 'lib/BOAST/CKernel.rb', line 118 def print @code.rewind puts @code.read end |
#setup_compiler(options = {}) ⇒ Object
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# File 'lib/BOAST/CKernel.rb', line 133 def setup_compiler( = {}) Rake::Task::clear verbose = [:verbose] verbose = BOAST::get_verbose if not verbose Rake::verbose(verbose) Rake::FileUtilsExt.verbose_flag=verbose f_compiler = [:FC] c_compiler = [:CC] cxx_compiler = [:CXX] cuda_compiler = [:NVCC] f_flags = [:FCFLAGS] f_flags += " -fPIC" f_flags += " -fno-second-underscore" if f_compiler == 'g95' ld_flags = [:LDFLAGS] cuda_flags = [:NVCCFLAGS] cuda_flags += " --compiler-options '-fPIC'" includes = "-I#{RbConfig::CONFIG["archdir"]}" includes += " -I#{RbConfig::CONFIG["rubyhdrdir"]} -I#{RbConfig::CONFIG["rubyhdrdir"]}/#{RbConfig::CONFIG["arch"]}" includes += " -I#{RbConfig::CONFIG["rubyarchhdrdir"]}" if RbConfig::CONFIG["rubyarchhdrdir"] ld_flags += " -L#{RbConfig::CONFIG["libdir"]} #{RbConfig::CONFIG["LIBRUBYARG"]} -lrt" ld_flags += " -lcudart" if @lang == BOAST::CUDA narray_path = nil begin spec = Gem::Specification::find_by_name('narray') narray_path = spec.full_gem_path rescue Gem::LoadError => e rescue NoMethodError => e spec = Gem::available?('narray') if spec then require 'narray' narray_path = Gem.loaded_specs['narray'].full_gem_path end end includes += " -I#{narray_path}" if narray_path cflags = [:CFLAGS] cxxflags = [:CXXFLAGS] cflags += " -fPIC #{includes}" cxxflags += " -fPIC #{includes}" cflags += " -DHAVE_NARRAY_H" if narray_path fcflags = f_flags cudaflags = cuda_flags if [:openmp] then case @lang when BOAST::C openmp_c_flags = BOAST::get_openmp_flags[c_compiler] if not openmp_c_flags then keys = BOAST::get_openmp_flags.keys keys.each { |k| openmp_c_flags = BOAST::get_openmp_flags[k] if c_compiler.match(k) } end raise "unkwown openmp flags for: #{c_compiler}" if not openmp_c_flags cflags += " #{openmp_c_flags}" openmp_cxx_flags = BOAST::get_openmp_flags[cxx_compiler] if not openmp_cxx_flags then keys = BOAST::get_openmp_flags.keys keys.each { |k| openmp_cxx_flags = BOAST::get_openmp_flags[k] if cxx_compiler.match(k) } end raise "unkwown openmp flags for: #{cxx_compiler}" if not openmp_cxx_flags cxxflags += " #{openmp_cxx_flags}" when BOAST::FORTRAN openmp_f_flags = BOAST::get_openmp_flags[f_compiler] if not openmp_f_flags then keys = BOAST::get_openmp_flags.keys keys.each { |k| openmp_f_flags = BOAST::get_openmp_flags[k] if f_compiler.match(k) } end raise "unkwown openmp flags for: #{f_compiler}" if not openmp_f_flags fcflags += " #{openmp_f_flags}" end end runner = lambda { |t, call_string| if verbose then sh call_string else status, stdout, stderr = systemu call_string if not status.success? then puts stderr fail "#{t.source}: compilation failed" end status.success? end } rule '.o' => '.c' do |t| c_call_string = "#{c_compiler} #{cflags} -c -o #{t.name} #{t.source}" runner.call(t, c_call_string) end rule '.o' => '.f90' do |t| f_call_string = "#{f_compiler} #{fcflags} -c -o #{t.name} #{t.source}" runner.call(t, f_call_string) end rule '.o' => '.cpp' do |t| cxx_call_string = "#{cxx_compiler} #{cxxflags} -c -o #{t.name} #{t.source}" runner.call(t, cxx_call_string) end rule '.o' => '.cu' do |t| cuda_call_string = "#{cuda_compiler} #{cudaflags} -c -o #{t.name} #{t.source}" runner.call(t, cuda_call_string) end return ld_flags end |
#to_s ⇒ Object
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# File 'lib/BOAST/CKernel.rb', line 128 def to_s @code.rewind return code.read end |
#to_str ⇒ Object
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# File 'lib/BOAST/CKernel.rb', line 123 def to_str @code.rewind return code.read end |