477 lines
15 KiB
Python
477 lines
15 KiB
Python
#
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# \file generator.py
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#
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# \brief Generates the CUTLASS Library's instances
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#
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import enum
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import os.path
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import shutil
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from library import *
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from gemm_operation import *
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from rank_k_operation import *
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from rank_2k_operation import *
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from trmm_operation import *
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from symm_operation import *
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from conv2d_operation import *
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from conv3d_operation import *
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import logging
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###################################################################################################
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_LOGGER = logging.getLogger(__name__)
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class EmitOperationKindLibrary:
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def __init__(self, generated_path, kind, args):
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self.generated_path = generated_path
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self.kind = kind
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self.args = args
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self.emitters = {
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OperationKind.Gemm: EmitGemmConfigurationLibrary
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, OperationKind.Conv2d: EmitConv2dConfigurationLibrary
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, OperationKind.Conv3d: EmitConv3dConfigurationLibrary
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, OperationKind.RankK: EmitRankKConfigurationLibrary
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, OperationKind.Rank2K: EmitRank2KConfigurationLibrary
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, OperationKind.Trmm: EmitTrmmConfigurationLibrary
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, OperationKind.Symm: EmitSymmConfigurationLibrary
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}
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self.configurations = [];
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self.header_template ="""
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/*
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Generated by manifest.py - Do not edit.
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*/
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#include "cutlass/cutlass.h"
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#include "cutlass/library/library.h"
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#include "cutlass/library/manifest.h"
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namespace cutlass {
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namespace library {
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///////////////////////////////////////////////////////////////////////////////////////////////////
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"""
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self.entry_template = """
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//
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// Entry point to construct operations
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//
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void initialize_all_${operation_name}_operations(Manifest &manifest) {
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"""
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self.configuration_prototype_template = "void initialize_${configuration_name}(Manifest &manifest);\n"
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self.configuration_template =" initialize_${configuration_name}(manifest);\n"
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self.epilogue_template ="""
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}
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///////////////////////////////////////////////////////////////////////////////////////////////////
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} // namespace library
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} // namespace cutlass
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"""
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#
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def __enter__(self):
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self.operation_path = os.path.join(self.generated_path, OperationKindNames[self.kind])
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os.mkdir(self.operation_path)
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self.top_level_path = os.path.join(self.operation_path, "all_%s_operations.cu" % OperationKindNames[self.kind])
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self.top_level_file = open(self.top_level_path, "w")
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self.top_level_file.write(self.header_template)
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self.source_files = [self.top_level_path,]
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return self
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#
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def emit(self, configuration_name, operations):
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with self.emitters[self.kind](self.operation_path, configuration_name) as configuration_emitter:
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for operation in operations:
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configuration_emitter.emit(operation)
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self.source_files.append(configuration_emitter.configuration_path)
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self.configurations.append(configuration_name)
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self.top_level_file.write(SubstituteTemplate(self.configuration_prototype_template, {'configuration_name': configuration_name} ))
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#
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def __exit__(self, exception_type, exception_value, traceback):
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self.top_level_file.write(SubstituteTemplate(self.entry_template, {'operation_name': OperationKindNames[self.kind]}))
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for configuration_name in self.configurations:
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self.top_level_file.write(SubstituteTemplate(self.configuration_template, {'configuration_name': configuration_name}))
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self.top_level_file.write(self.epilogue_template)
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self.top_level_file.close()
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class EmitInterfaceLibrary:
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def __init__(self, generated_path, operation_count, args):
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self.generated_path = generated_path
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self.args = args
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self.prototypes = []
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self.fn_calls = []
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self.operation_count = str(operation_count)
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self.top_level_hdr_template = '''
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/*
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Generated by manifest.py - Do not edit.
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*/
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'''
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self.top_level_prologue = '''
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#include "cutlass/library/library.h"
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#include "cutlass/library/manifest.h"
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namespace cutlass {
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\tnamespace library {
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${prototypes}
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\t\tvoid initialize_all(Manifest &manifest) {
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\t\t\tmanifest.reserve(${operation_count});\n\n
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${fn_calls}
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\t\t\t}
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\t} // namespace library
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} // namespace cutlass
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'''
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#
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def __enter__(self):
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self.top_level_path = os.path.join(self.generated_path, 'initialize_all.cpp')
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self.top_level_file = open(self.top_level_path, "w")
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self.top_level_file.write(self.top_level_hdr_template)
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self.source_files = [self.top_level_path,]
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return self
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#
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def emit(self, operation_name):
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self.prototypes.append(SubstituteTemplate(
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"\t\tvoid initialize_all_${operation_kind}_operations(Manifest &manifest);",
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{'operation_kind': operation_name}))
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self.fn_calls.append(SubstituteTemplate(
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"\t\t\tinitialize_all_${operation_kind}_operations(manifest);",
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{'operation_kind': operation_name}))
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#
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def __exit__(self, exception_type, exception_value, traceback):
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self.top_level_file.write(SubstituteTemplate(self.top_level_prologue, {'prototypes':"\n".join(self.prototypes),
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'fn_calls':"\n".join(self.fn_calls),
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'operation_count': self.operation_count}))
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self.top_level_file.close()
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###################################################################################################
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###################################################################################################
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class Options:
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def __init__(self):
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pass
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###################################################################################################
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#
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class Manifest:
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#
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def __init__(self, args = None):
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self.operations = {}
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self.args = args
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self.operation_count = 0
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self.operations_by_name = {}
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self.kernel_filter = ''
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self.kernel_filter_list = []
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self.kernel_names = []
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self.operations_enabled = []
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self.selected_kernels = []
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self.ignore_kernel_names = []
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self.compute_capabilities = [50,]
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self.curr_build_dir = '.'
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self.filter_by_cc = True
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if self.args:
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self.kernel_filter = self.args.kernels
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self.curr_build_dir = args.curr_build_dir
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architectures = args.architectures.split(';') if len(args.architectures) else ['50',]
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architectures = [x if x != '90a' else '90' for x in architectures]
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self.compute_capabilities = [int(x) for x in architectures]
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if args.filter_by_cc in ['false', 'False', '0']:
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self.filter_by_cc = False
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if args.operations == 'all':
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self.operations_enabled = []
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else:
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operations_list = [
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OperationKind.Gemm
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, OperationKind.Conv2d
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, OperationKind.Conv3d
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, OperationKind.RankK
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, OperationKind.Trmm
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, OperationKind.Symm
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]
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self.operations_enabled = [x for x in operations_list if OperationKindNames[x] in args.operations.split(',')]
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if args.kernels == 'all':
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self.kernel_names = []
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else:
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self.kernel_names = [x for x in args.kernels.split(',') if x != '']
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self.ignore_kernel_names = [x for x in args.ignore_kernels.split(',') if x != '']
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if args.kernel_filter_file is None:
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self.kernel_filter_list = []
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else:
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self.kernel_filter_list = self.get_kernel_filters(args.kernel_filter_file)
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_LOGGER.info("Using {filter_count} kernel filters from {filter_file}".format(
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filter_count = len(self.kernel_filter_list),
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filter_file = args.kernel_filter_file))
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self.operation_count = 0
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self.operations_by_name = {}
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self.disable_full_archs_compilation = args.disable_full_archs_compilation
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def get_kernel_filters (self, kernelListFile):
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if os.path.isfile(kernelListFile):
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with open(kernelListFile, 'r') as fileReader:
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lines = [line.rstrip() for line in fileReader if not line.startswith("#")]
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lines = [re.compile(line) for line in lines if line]
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return lines
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else:
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return []
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#
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def filter_out_kernels(self, kernel_name, kernel_filter_list):
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for kernel_filter_re in kernel_filter_list:
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if kernel_filter_re.search(kernel_name) is not None:
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return True
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return False
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#
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def _filter_string_matches(self, filter_string, haystack):
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''' Returns true if all substrings appear in the haystack in order'''
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substrings = filter_string.split('*')
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for sub in substrings:
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idx = haystack.find(sub)
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if idx < 0:
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return False
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haystack = haystack[idx + len(sub):]
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return True
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#
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def filter(self, operation):
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''' Filtering operations based on various criteria'''
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# filter based on compute capability
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enabled = not (self.filter_by_cc)
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for cc in self.compute_capabilities:
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if cc >= operation.tile_description.minimum_compute_capability and \
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cc <= operation.tile_description.maximum_compute_capability and \
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(cc not in SharedMemPerCC or SharedMemPerCC[cc] >= CalculateSmemUsage(operation)):
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enabled = True
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break
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if not enabled:
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return False
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if len(self.operations_enabled) and not operation.operation_kind in self.operations_enabled:
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return False
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# eliminate duplicates
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if operation.procedural_name() in self.operations_by_name.keys():
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return False
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# Filter based on list of valid substrings
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if len(self.kernel_names):
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name = operation.procedural_name()
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enabled = False
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# compare against the include list
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for name_substr in self.kernel_names:
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if self._filter_string_matches(name_substr, name):
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_LOGGER.debug("Kernel {kernel} included due to filter string '{filt}'.".format(
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kernel = operation.procedural_name(),
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filt = name_substr))
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enabled = True
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break
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# compare against the exclude list
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for name_substr in self.ignore_kernel_names:
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if self._filter_string_matches(name_substr, name):
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_LOGGER.debug("Kernel {kernel} ignored due to filter string '{filt}'.".format(
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kernel = operation.procedural_name(),
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filt = name_substr))
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enabled = False
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break
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if len(self.kernel_filter_list) > 0:
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if self.filter_out_kernels(operation.procedural_name(), self.kernel_filter_list):
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_LOGGER.debug("Kernel {kernel} matched via kernel filter file.".format(kernel = operation.procedural_name()))
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enabled = True
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else:
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_LOGGER.debug("Kernel {kernel} culled due to no match in kernel filter file.".format(kernel = operation.procedural_name()))
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enabled = False
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# TODO: filter based on compute data type
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return enabled
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#
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#
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def append(self, operation):
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'''
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Inserts the operation.
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operation_kind -> configuration_name -> []
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'''
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if self.filter(operation):
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self.selected_kernels.append(operation.procedural_name())
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self.operations_by_name[operation.procedural_name()] = operation
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# add the configuration
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configuration_name = operation.configuration_name()
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if operation.operation_kind not in self.operations.keys():
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self.operations[operation.operation_kind] = {}
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if configuration_name not in self.operations[operation.operation_kind].keys():
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self.operations[operation.operation_kind][configuration_name] = []
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self.operations[operation.operation_kind][configuration_name].append(operation)
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self.operation_count += 1
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else:
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_LOGGER.debug("Culled {} from manifest".format(operation.procedural_name()))
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#
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#
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def emit(self, target = GeneratorTarget.Library):
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operation_emitters = {
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GeneratorTarget.Library: EmitOperationKindLibrary
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}
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interface_emitters = {
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GeneratorTarget.Library: EmitInterfaceLibrary
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}
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generated_path = os.path.join(self.curr_build_dir, 'generated')
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# create generated/
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if os.path.exists(generated_path):
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shutil.rmtree(generated_path)
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os.mkdir(generated_path)
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source_files = []
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with interface_emitters[target](generated_path, self.operation_count, self.args) as iface_emitter:
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for operation_kind, configurations in self.operations.items():
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iface_emitter.emit(OperationKindNames[operation_kind])
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source_files += iface_emitter.source_files
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# for each operation kind, emit initializer for all configurations
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for operation_kind, configurations in self.operations.items():
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with operation_emitters[target](generated_path, operation_kind, self.args) as operation_kind_emitter:
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for configuration_name, operations in configurations.items():
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_LOGGER.info("Emitting {config} with {num_ops} operations.".format(
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config = configuration_name, num_ops = len(operations)))
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operation_kind_emitter.emit(configuration_name, operations)
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source_files += operation_kind_emitter.source_files
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# write the manifest.cmake file containing paths from all targets
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manifest_path = os.path.join(generated_path, "manifest.cmake")
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with open(manifest_path, "w") as manifest_file:
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target_name = 'cutlass_library_objs'
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target_text = SubstituteTemplate("""cutlass_target_sources(
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${target_name}
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BATCH_SOURCES ON
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PRIVATE
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""", { 'target_name': target_name})
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manifest_file.write(target_text + '\n\n')
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for source_file in source_files:
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manifest_file.write(" %s\n" % str(source_file.replace('\\', '/')))
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manifest_file.write(")\n")
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if self.disable_full_archs_compilation:
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def for_hopper(name):
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pass
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def for_ampere(name):
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return "16816" in name or \
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"16832" in name or \
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"16864" in name or \
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("1688" in name and "tf32" in name)
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def for_turing(name):
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return ("1688" in name and "tf32" not in name) or \
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"8816" in name
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def for_volta(name):
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return "884" in name
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def is_cpp(name):
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return name.endswith(".cpp")
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def get_src_archs_str_given_requested_cuda_archs(archs, source_file):
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intersected_archs = archs & set(self.compute_capabilities)
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if intersected_archs == set():
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raise RuntimeError(
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"""
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Empty archs set for file {} after taking
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the intersection of {} (global requested archs) and
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{} (per file requested archs)
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""".format(source_file, set(self.compute_capabilities), archs))
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else:
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return " ".join(map(str, intersected_archs))
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for source_file in source_files:
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if is_cpp(source_file):
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continue # skip because source is cpp
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elif for_ampere(source_file):
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archs_str = get_src_archs_str_given_requested_cuda_archs({80, 87, 90}, source_file)
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elif for_turing(source_file):
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archs_str = get_src_archs_str_given_requested_cuda_archs({75}, source_file)
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elif for_volta(source_file):
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archs_str = get_src_archs_str_given_requested_cuda_archs({70, 72}, source_file)
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else:
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raise RuntimeError("Per file archs are not set {}, as there is no rule specified for this file pattern".format(source_file))
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manifest_file.write("cutlass_apply_cuda_gencode_flags({} SM_ARCHS {})\n".format(str(source_file.replace('\\', '/')), archs_str))
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#
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###################################################################################################
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