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COMMON_REPO := ../common_xilinx/

#Common Includes
include $(COMMON_REPO)/utility/boards.mk
include $(COMMON_REPO)/libs/xcl2/xcl2.mk
include $(COMMON_REPO)/libs/opencl/opencl.mk






# Host Application

#helloworld_SRCS=./src/host.cpp $(oclHelper_SRCS) $(xcl2_SRCS)
#helloworld_HDRS=$(xcl2_HDRS)

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#helloworld_SRCS=$(wildcard ../common/src/AOCLUtils/*.cpp wrapcl/src/*.cpp host/src/*.cpp) \
#		$(oclHelper_SRCS) \
#		$(xcl2_SRCS)

#helloworld_HDRS=$(wildcard ./host/inc/*.h) \
#		$(xcl2_HDRS)

hostbin_SRCS=$(wildcard ../common/src/AOCLUtils/*.cpp wrapcl/src/*.cpp host/src/*.cpp) \
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		$(oclHelper_SRCS) \
		$(xcl2_SRCS)

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hostbin_HDRS=$(wildcard ./host/inc/*.h) \
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		$(xcl2_HDRS)

# -U__STRICT_ANSI__: to avoid: ‘cl_float3 {aka union cl_float4}’ has no member named ‘y’


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#helloworld_CXXFLAGS=-I../common/inc/ \
#		    -I./host/inc/ \
#		    -I. \
#		    -I./wrapcl/inc/ \
#		    $(opencl_CXXFLAGS) $(xcl2_CXXFLAGS) $(oclHelper_CXXFLAGS) \
#		    -std=c++0x \
#		    -U__STRICT_ANSI__ \
#		    $(ENABLE_KERNELS) \
#		    $(REP) \
#		    $(FIPO_FLAG)

hostbin_CXXFLAGS=-I../common/inc/ \
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		    -I./host/inc/ \
		    -I. \
		    -I./wrapcl/inc/ \
		    $(opencl_CXXFLAGS) $(xcl2_CXXFLAGS) $(oclHelper_CXXFLAGS) \
		    -std=c++0x \
		    -U__STRICT_ANSI__ \
		    $(ENABLE_KERNELS) \
		    $(REP) \
		    $(FIPO_FLAG)
		    
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#helloworld_LDFLAGS=$(opencl_LDFLAGS)
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#hostbin_LDFLAGS=$(opencl_LDFLAGS)
hostbin_LDFLAGS=$(opencl_LDFLAGS) -lrt
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#EXES=helloworld
EXES=hostbin
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# Kernel
#vector_addition_SRCS=./src/vector_addition.cl
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#vector_addition_SRCS=./device/Krnl_GA.cl
Krnl_GA_SRCS=./device/Krnl_GA.cl
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#-------------------------------
# AWS only: apply the following 
# kernel compile & link configuration options

# Otherwise error during VPL
# "dr.bd.tcl" seems to be using a configuration for VCU1525
# instead for AWS VU9P

# Problem reported here:
# https://forums.xilinx.com/t5/SDAccel/Building-ERROR-VPL-17-55-set-property-expects-at-least-one/td-p/893221

# AWS reference guide
# https://github.com/aws/aws-fpga/blob/master/SDAccel/docs/On_Premises_Development_Steps.md
# aws-fpga/SDAccel/examples/aws/kernel_3ddr_bandwidth/Makefile

# https://www.xilinx.com/support/documentation/sw_manuals/xilinx2017_2/ug1023-sdaccel-user-guide.pdf
# Page 33 (could not find in the v2017.4)
# --max_memory_ports [all | <kernel_name>]
# Optional
# Sets the maximum memory port property 
# for all kernels or a given kernel

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## Commented because it is example
## Choosing the "bandwidth" kernel for maximum memory port property 
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# krnl_GA_CLFLAGS=--max_memory_ports bandwidth

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## Commented because not all kernels in design need that
## Choosing the all kernels in design for maximum memory port property 
# Krnl_GA_CLFLAGS=--max_memory_ports all

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## Ideal configuration, but results in routing error
#Krnl_GA_CLFLAGS=--max_memory_ports Krnl_GA \
#		--max_memory_ports Krnl_Conform \
#		--max_memory_ports Krnl_InterE \
#		--max_memory_ports Krnl_IntraE

#Krnl_GA_CLFLAGS=--max_memory_ports Krnl_GA
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# https://www.xilinx.com/support/documentation/sw_manuals/xilinx2017_4/ug1023-sdaccel-user-guide.pdf
# Page 44
# --sp <kernel_inst_name>.<interface_name>:<bank>
# Valid DDR4 bank names are 
# bank0, bank1, bank2, and bank3 
# for platforms with 4 DDR banks.

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## Commented because it is example
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#krnl_GA_LDCLFLAGS+= --sp bandwidth_1.m_axi_gmem0:bank0 \
#		    --sp bandwidth_1.m_axi_gmem1:bank1 \
#		    --sp bandwidth_1.m_axi_gmem2:bank2	

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## Ideal configuration, but results in routing error
# First two args of IntraE are the 2nd and 3rd of InterE (atom_charges & atom_types),
# Therefore they are mapped to the same DDR bank
#Krnl_GA_LDCLFLAGS+=--sp Krnl_GA_1.m_axi_gmem0:bank0 \
#		   --sp Krnl_GA_1.m_axi_gmem1:bank0 \
#		   --sp Krnl_GA_1.m_axi_gmem2:bank0 \
#		   --sp Krnl_GA_1.m_axi_gmem3:bank0 \
#		   --sp Krnl_Conform_1.m_axi_gmem0:bank1 \
#		   --sp Krnl_Conform_1.m_axi_gmem1:bank1 \
#		   --sp Krnl_Conform_1.m_axi_gmem2:bank1 \
#		   --sp Krnl_Conform_1.m_axi_gmem3:bank1 \
#		   --sp Krnl_Conform_1.m_axi_gmem4:bank1 \
#		   --sp Krnl_InterE_1.m_axi_gmem0:bank2 \
#		   --sp Krnl_InterE_1.m_axi_gmem1:bank2 \
#		   --sp Krnl_InterE_1.m_axi_gmem2:bank2 \
#		   --sp Krnl_IntraE_1.m_axi_gmem0:bank2	\
#		   --sp Krnl_IntraE_1.m_axi_gmem1:bank2	\
#		   --sp Krnl_IntraE_1.m_axi_gmem2:bank3	\
#		   --sp Krnl_IntraE_1.m_axi_gmem3:bank3	\
#		   --sp Krnl_IntraE_1.m_axi_gmem4:bank3	\
#		   --sp Krnl_IntraE_1.m_axi_gmem5:bank3	\
#		   --sp Krnl_IntraE_1.m_axi_gmem6:bank3	\
#		   --sp Krnl_IntraE_1.m_axi_gmem7:bank3	\
# 		   --sp Krnl_IntraE_1.m_axi_gmem8:bank3	\
#		   --sp Krnl_IntraE_1.m_axi_gmem9:bank3	\
#		   --sp Krnl_IntraE_1.m_axi_gmem10:bank3

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#Krnl_GA_LDCLFLAGS+=--sp Krnl_GA_1.m_axi_gmem:bank0      \
#		   --sp Krnl_Conform_1.m_axi_gmem:bank1 \
#		   --sp Krnl_InterE_1.m_axi_gmem:bank2  \
#		   --sp Krnl_IntraE_1.m_axi_gmem:bank3

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Krnl_GA_LDCLFLAGS+=--sp Krnl_GA_1.m_axi_gmem:bank0      \
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		   --sp Krnl_Conform_1.m_axi_gmem:bank0 \
		   --sp Krnl_InterE_1.m_axi_gmem:bank1  \
		   --sp Krnl_IntraE_1.m_axi_gmem:bank1

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##
# https://www.xilinx.com/support/documentation/sw_manuals/xilinx2017_4/ug1281-sdaccel-debugging-guide.pdf
# Page 32
# Instrumentation 1: Kernel Hangs due to AXI Violations
##

# Add Lightweight AXI Protocol Checker (lapc)
# <protocol:< compute_unit_name >:< interface_name >>
LAPC:=none

ifneq ($(LAPC),none)
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## Commented because error was obtained:
## Number of axi protocol checkers requested must be between 1 and 63.
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#Krnl_GA_LDCLFLAGS+=--dk protocol:all:all

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## Warning obtained (not sure if because of configuration)
## # xbsak status --lapc
## Invalid codes read, skip decoding
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Krnl_GA_LDCLFLAGS+=--dk protocol:Krnl_GA_1:m_axi_gmem0 \
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		   --dk protocol:Krnl_GA_1:m_axi_gmem1 \
		   --dk protocol:Krnl_GA_1:m_axi_gmem2 \
		   --dk protocol:Krnl_GA_1:m_axi_gmem3 \
		   --dk protocol:Krnl_Conform_1:m_axi_gmem0 \
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		   --dk protocol:Krnl_Conform_1:m_axi_gmem1 \
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		   --dk protocol:Krnl_Conform_1:m_axi_gmem2 \
		   --dk protocol:Krnl_Conform_1:m_axi_gmem3 \
		   --dk protocol:Krnl_Conform_1:m_axi_gmem4 \
                   --dk protocol:Krnl_InterE_1:m_axi_gmem0 \
	 	   --dk protocol:Krnl_InterE_1:m_axi_gmem1 \
		   --dk protocol:Krnl_InterE_1:m_axi_gmem2 \
	           --dk protocol:Krnl_IntraE_1:m_axi_gmem0 \
		   --dk protocol:Krnl_IntraE_1:m_axi_gmem1 \
		   --dk protocol:Krnl_IntraE_1:m_axi_gmem2 \
	           --dk protocol:Krnl_IntraE_1:m_axi_gmem3 \
		   --dk protocol:Krnl_IntraE_1:m_axi_gmem4 \
		   --dk protocol:Krnl_IntraE_1:m_axi_gmem5 \
	           --dk protocol:Krnl_IntraE_1:m_axi_gmem6 \
		   --dk protocol:Krnl_IntraE_1:m_axi_gmem7 \
		   --dk protocol:Krnl_IntraE_1:m_axi_gmem8 \
	           --dk protocol:Krnl_IntraE_1:m_axi_gmem9 \
		   --dk protocol:Krnl_IntraE_1:m_axi_gmem10
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## Commented because error was obtained:
## No interface pins matched 'get_bd_intf_pins -of /Krnl_Conform_1 -filter NAME=~m_axi_gmem'
## ERROR: caught error: Unable to find interface pin  for AXI protocol checker insertion
#Krnl_GA_LDCLFLAGS+=--dk protocol:Krnl_GA_1:m_axi_gmem \
#		   --dk protocol:Krnl_Conform_1:m_axi_gmem \
#                  --dk protocol:Krnl_InterE_1:m_axi_gmem \
#	           --dk protocol:Krnl_IntraE_1:m_axi_gmem
endif

## Adding Performance Monitors (spm) 
## enables the listing of detailed communication statistics (counters). 
## --profile_kernel data:<kernel_name|all>:<cu_name|all>:<interface_name|all>
SPM:=none

ifneq ($(SPM),none)
##--profile_kernel data:krnl1:cu1:m_axi_gmem0
##--profile_kernel data:krnl2:cu2:m_axi_gmem
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Krnl_GA_LDCLFLAGS+=--profile_kernel data:Krnl_GA:Krnl_GA_1:all \
		   --profile_kernel data:Krnl_Conform:Krnl_Conform_1:all \
		   --profile_kernel data:Krnl_InterE:Krnl_InterE_1:all \
		   --profile_kernel data:Krnl_IntraE:Krnl_IntraE_1:all
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endif

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#-------------------------------



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#XOS=vector_addition
XOS=Krnl_GA
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#vector_addition_XOS=vector_addition
Krnl_GA_XOS=Krnl_GA
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#XCLBINS=vector_addition
XCLBINS=Krnl_GA
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# check
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#check_EXE=helloworld
check_EXE=hostbin
#check_XCLBINS=vector_addition
check_XCLBINS=Krnl_GA
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CHECKS=check

include $(COMMON_REPO)/utility/rules.mk
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# Note that the definition of "newline" contains two blank lines.
# Using $(newline) will expand into only one newline.
define newline


endef

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# Docking parameters 
# that directly determine the execution time
# Following values are used only for emulation
# to have a short but still a representative test
PDB  := 1stp
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PSIZE:= 150
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NRUN := 10
NEV  := 800000
NGEN := 27000
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GFPOP:= 0
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# Switching to the other SDAccel 2017.4 default platform
# As it is available in Xelera "saruman" server
#DEVICES:= xilinx:kcu1500:dynamic (in ../common_xilinx/utility/boards.mk)
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# Boards in SDAccel installation path: /opt/cad/xilinx/SDx/2017.4/platforms/

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# If several versions are present, e.g.: "vcu1525_5_0" and "vcu1525_5_1"
# Pay attention to which should be used
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#BOARD:= xilinx:kcu1500:dynamic
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#BOARD:= xilinx:vcu1525:dynamic

# Boards in external paths
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# Cloned from https://github.com/aws/aws-fpga
# This corresponds to AWS Shell v04261818 
# https://github.com/aws/aws-fpga/blob/master/hdk/docs/AWS_Shell_RELEASE_NOTES.md
# IMPORTANT: source scripts to get the full DSA
# Because by default only the "sw" component is provided in GitHub
#BOARD:= /home/wimi/lvs/ocl_xilinx/aws-fpga/SDAccel/aws_platform/xilinx_aws-vu9p-f1-04261818_dynamic_5_0/xilinx_aws-vu9p-f1-04261818_dynamic_5_0.xpfm
BOARD:= /home/wimi/lvs/DSA_SDACCEL_AWS_VU9P/xilinx_aws-vu9p-f1-04261818_dynamic_5_0/xilinx_aws-vu9p-f1-04261818_dynamic_5_0.xpfm

# Copied from Xelera (saruman) SDAccel installation path
#BOARD:= /home/wimi/lvs/DSA_SDACCEL_AWS_VU9P/xilinx_aws-vu9p-f1_dynamic_5_0/xilinx_aws-vu9p-f1_dynamic_5_0.xpfm
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#BOARD:= /home/wimi/lvs/DSA_SDACCEL_VCU1525_5_1/xilinx_vcu1525_dynamic_5_1/xilinx_vcu1525_dynamic_5_1.xpfm
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#BOARD:= /opt/cad/xilinx/SDx/2017.1/platforms/xilinx_adm-pcie-7v3_1ddr_3_0/xilinx_adm-pcie-7v3_1ddr_3_0.xpfm
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NDEVICES_EMU:=1

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# Compile and generate report
kerrpt-sw:
	make clean
	@echo $(newline)
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	make all REPORT=estimate TARGETS=sw_emu DEVICES=$(BOARD)
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	@echo $(newline)
	cp ./xclbin/$(XCLBINS).sw_emu.*.xclbin .
	@echo $(newline)
	mv ./$(XCLBINS).sw_emu.*.xclbin ./$(XCLBINS).xclbin
	@echo $(newline)
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	@echo "==============================================================================="
	@echo "INFO: sw emulation file created under: \"./xclbin/$(XCLBINS).sw_emu.*.xclbin\" "
	@echo "INFO: ... was copied and renamed as \"./$(XCLBINS).xclbin\"                    "
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	@echo $(newline)
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	@echo "INFO: a \"./system_estimate.xtxt\" report was generated!                       "
	@echo "==============================================================================="
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	@echo $(newline)

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# Compile for sw and hw emulation
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kerswemu:
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	make all TARGETS=sw_emu DEVICES=$(BOARD)
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	cp ./xclbin/$(XCLBINS).sw_emu.*.xclbin .
	mv ./$(XCLBINS).sw_emu.*.xclbin ./$(XCLBINS).xclbin
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	@echo $(newline)
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	@echo "==============================================================================="
	@echo "INFO: sw emulation file created under: \"./xclbin/$(XCLBINS).sw_emu.*.xclbin\" "
	@echo "INFO: ... was copied and renamed as \"./$(XCLBINS).xclbin\"    	              "
	@echo "==============================================================================="
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	@echo $(newline)
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kerhwemu:
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	make all TARGETS=hw_emu	DEVICES=$(BOARD)
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	cp ./xclbin/$(XCLBINS).hw_emu.*.xclbin .
	mv ./$(XCLBINS).hw_emu.*.xclbin ./$(XCLBINS).xclbin
	@echo $(newline)
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	@echo "==============================================================================="
	@echo "INFO: hw emulation file created under: \"./xclbin/$(XCLBINS).hw_emu.*.xclbin\" "
	@echo "INFO: ... was copied and renamed as \"./$(XCLBINS).xclbin\"                    "
	@echo "==============================================================================="
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	@echo $(newline)
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# Run emulation
# Compilation (host & device) if not done previously
# The .dlg file is written in ./
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# "exe" and "xclbin" are rules from "rules.mk"
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# SDAccel 2017.4: User Guide UG1023, "Running Software and Hardware Emulation in XOCC Flow"
#emconfigutil --platform xilinx_vcu1525_dynamic_5_0 --nd 1
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swemu: kerswemu
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	emconfigutil --platform $(BOARD) --nd $(NDEVICES_EMU)
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	XCL_EMULATION_MODE=sw_emu ./$(EXES) \
	-ffile input/$(PDB)/derived/$(PDB)_protein.maps.fld \
	-lfile input/$(PDB)/derived/$(PDB)_ligand.pdbqt \
	-psize $(PSIZE) -nrun $(NRUN) -nev $(NEV) -ngen $(NGEN) -gfpop 1
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	@echo $(newline)
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	@echo "===================================================================================="
	@echo "INFO: swemu log file is under: \"./docking.dlg\"                                    "
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	@echo $(newline)
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	@echo "INFO: profile and timeline trace report files are formatted for SDx GUI             "
	@echo "INFO: ... if reports not generated, verify that \"sdaccel.ini\" exists!             "
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	@echo $(newline)
	sdx_analyze profile sdaccel_profile_summary.csv
	@echo $(newline)
	sdx_analyze trace sdaccel_timeline_trace.csv
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	@echo $(newline)
	@echo "INFO: (1) open sdx, (2) select \"File->Open File\", (3) browse to *.xprf or *.wdb  "
	@echo "===================================================================================="
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	@echo $(newline)

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# Debug on software using Xilinx GDB
# Analyze hangs with the following gdb extensions:
# xprint queue [<cl_command_queue>]
# xprint event <cl_event>
# xprint mem [<cl_mem>]
# xprint kernel
# xprint all
swemudebug:
	xgdb --args \
	./$(EXES) \
	-ffile input/$(PDB)/derived/$(PDB)_protein.maps.fld \
	-lfile input/$(PDB)/derived/$(PDB)_ligand.pdbqt \
	-psize $(PSIZE) -nrun $(NRUN) -nev $(NEV) -ngen $(NGEN) -gfpop 1

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hwemu: kerhwemu
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	emconfigutil --platform $(BOARD) --nd $(NDEVICES_EMU)
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	XCL_EMULATION_MODE=hw_emu ./$(EXES) \
	-ffile input/$(PDB)/derived/$(PDB)_protein.maps.fld \
	-lfile input/$(PDB)/derived/$(PDB)_ligand.pdbqt \
	-psize $(PSIZE) -nrun $(NRUN) -nev $(NEV) -ngen $(NGEN) -gfpop 1
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	@echo $(newline)
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	@echo "==========================================================================="
	@echo "INFO: hwemu log file is under: \"./docking.dlg\"                           "
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	@echo $(newline)
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	@echo "INFO: profile and timeline trace report files are formatted for SDx GUI    "
	@echo "INFO: ... if reports not generated, verify that \"sdaccel.ini\" exists!    "
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	@echo $(newline)
	sdx_analyze profile sdaccel_profile_summary.csv
	@echo $(newline)
	sdx_analyze trace sdaccel_timeline_trace.csv
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	@echo "==========================================================================="
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	@echo $(newline)
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# Build hw (FPGA bitstream)
# NOT integrated yet in a multistep compilation
hw: 	
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	make all TARGETS=hw DEVICES=$(BOARD)
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	@echo $(newline)
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	@echo "========================================================================="
	@echo "INFO: FPGA bitstream is under: \"./xclbin/$(XCLBINS).hw.*.xclbin\"       " 
	@echo "========================================================================="
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	@echo $(newline)
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# Build instrumented hw (FPGA bitstream)
# NOT integrated yet in a multistep compilation
hw-instr: 	
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	make all TARGETS=hw DEVICES=$(BOARD) LAPC=yes SPM=yes
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	@echo $(newline)
	@echo "=============================================================================================="
	@echo "INFO: [instrumented] FPGA bitstream is under: \"./xclbin/$(XCLBINS).hw.*.xclbin\"             " 
	@echo "=============================================================================================="
	@echo $(newline)



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# Execute on remote server
# Host-recompilation
# Copy of host to $(TARGET_DIR_HW)
# The working directory is changed
# So .dlg file is written in $(TARGET_DIR_HW)
eva: exe
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	./$(EXES) \
	-ffile input/$(PDB)/derived/$(PDB)_protein.maps.fld \
	-lfile input/$(PDB)/derived/$(PDB)_ligand.pdbqt \
	-resnam docking_$(PDB)_$(NRUN) \
	-nrun $(NRUN) -gfpop $(GFPOP)
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	@echo $(newline)
	@echo "==========================================================================="
	@echo "INFO: evaluation log file is under: \"./docking.dlg\"                      "
	@echo $(newline)
	@echo "INFO: profile and timeline trace report files are formatted for SDx GUI    "
	@echo "INFO: ... if reports not generated, verify that \"sdaccel.ini\" exists!    "
	@echo $(newline)
	sdx_analyze profile sdaccel_profile_summary.csv
	@echo $(newline)
	sdx_analyze trace sdaccel_timeline_trace.csv
	@echo "==========================================================================="
	@echo $(newline)


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# Debug on hardware using Xilinx GDB
# Analyze hangs with the following gdb extensions:
# xprint queue [<cl_command_queue>]
# xprint event <cl_event>
# xprint mem [<cl_mem>]
# xprint kernel
# xprint all
evadebug:
	xgdb --args \
	./$(EXES) \
	-ffile input/$(PDB)/derived/$(PDB)_protein.maps.fld \
	-lfile input/$(PDB)/derived/$(PDB)_ligand.pdbqt \
	-resnam docking_debug_$(PDB)_$(NRUN) \
	-nrun $(NRUN) -gfpop $(GFPOP)


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# Project name
PROJECT_NAME := ofdock_taskpar_xl

COPY_DIR := copy_$(PROJECT_NAME)
COPY_DIR_DOCK := $(PROJECT_NAME)

# Make sure this remote-server alias exists (in ~/.ssh/config)

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## Xelera
#SERVER_BRIDGE := erebor:/scratch/
#SERVER_EXEC   := saruman:~/ocladock_sdx17_4

## AWS
SERVER_BRIDGE := eredmithrim:/home/lvs/ESA/AWS
SERVER_EXEC   := AWS
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# Delete an existing folder if previously created
# Create a folder $(COPY_DIR) in the parent directory
# Copy binaries into $(COPY_DIR) folder, avoiding the (innecesary) compilation intermediate files
# Copy source files into $(COPY_DIR) as host is built in the remote $(SERVER)
# Create a zip file out of the $(COPY_DIR) folder
copy: clean-copy
	mkdir ../$(COPY_DIR)
	mkdir ../$(COPY_DIR)/$(COPY_DIR_DOCK)
	mkdir ../$(COPY_DIR)/$(COPY_DIR_DOCK)/xclbin
	cp ./xclbin/$(XCLBINS).hw.*.xclbin ../$(COPY_DIR)/$(COPY_DIR_DOCK)/xclbin/
	cp ./xclbin/$(XCLBINS).hw.*.xo ../$(COPY_DIR)/$(COPY_DIR_DOCK)/xclbin/
	cp ./xclbin/$(XCLBINS).hw.*.xclbin ../$(COPY_DIR)/$(COPY_DIR_DOCK)/
	mv ../$(COPY_DIR)/$(COPY_DIR_DOCK)/$(XCLBINS).hw.*.xclbin ../$(COPY_DIR)/$(COPY_DIR_DOCK)/$(XCLBINS).xclbin
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	cp sdaccel.ini ../$(COPY_DIR)/$(COPY_DIR_DOCK)/
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	cp Makefile ../$(COPY_DIR)/$(COPY_DIR_DOCK)/
	cp defines.h ../$(COPY_DIR)/$(COPY_DIR_DOCK)/
	cp defines_fixedpt.h ../$(COPY_DIR)/$(COPY_DIR_DOCK)/
	cp defines_fixedpt_64.h ../$(COPY_DIR)/$(COPY_DIR_DOCK)/
	cp -r device/ ../$(COPY_DIR)/$(COPY_DIR_DOCK)/
	cp -r host/ ../$(COPY_DIR)/$(COPY_DIR_DOCK)/
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	#cp -r input/ ../$(COPY_DIR)/$(COPY_DIR_DOCK)/
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	cp -r wrapcl/ ../$(COPY_DIR)/$(COPY_DIR_DOCK)/
	cp -r ../common ../$(COPY_DIR)/
	cp -r ../common_xilinx ../$(COPY_DIR)/
	cp ../conf_sdx174_saruman.sh ../$(COPY_DIR)/
	cd ../;	zip -r $(COPY_DIR).zip $(COPY_DIR)
	@echo $(newline)
	@echo "Transfer the \"$(COPY_DIR).zip\" file to $(SERVER_BRIDGE) server: "
	@echo " "
	cd ../ && scp $(COPY_DIR).zip $(SERVER_BRIDGE)
	@echo $(newline)
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	@echo "=================================================================="
	@echo "Files listed were transferred to $(SERVER_BRIDGE)                 "
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	@echo $(newline)
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	@echo "Then, create AFI and transfer files manually                      "
	@echo "from $(SERVER_BRIDGE) to $(SERVER_EXEC)                           "
	@echo "=================================================================="
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	@echo $(newline)


clean-copy:
	rm -rf ../$(COPY_DIR)
	rm -f ../$(COPY_DIR).zip
	@echo $(newline)
	@echo "=================================================================="
	@echo "Previous \"$(COPY_DIR).zip\" and its folder were deleted          "
	@echo "=================================================================="
	@echo $(newline)