Added signals for clock and reset

This commit is contained in:
Eyck Jentzsch 2019-01-03 21:18:09 +01:00
parent 0120610f83
commit 3eb2e4b4f7
23 changed files with 254 additions and 468 deletions

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@ -5,7 +5,7 @@
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@ -19,7 +19,7 @@
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@ -2,6 +2,8 @@ set(LIB_SOURCES
initiator.cpp
logging.cpp
target.cpp
clkgen.cpp
resetgen.cpp
)
# Define two variables in order not to repeat ourselves.

23
components/clkgen.cpp Normal file
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@ -0,0 +1,23 @@
/*
* clkgen.cpp
*
* Created on: 02.01.2019
* Author: eyck
*/
#include <clkgen.h>
#include <scc/utilities.h>
ClkGen::ClkGen(const sc_core::sc_module_name& nm)
: sc_core::sc_module(nm)
, clk_o("clk_o")
{
}
ClkGen::~ClkGen() {
// TODO Auto-generated destructor stub
}
void ClkGen::end_of_elabortation() {
clk_o.write(10_ns);
}

23
components/clkgen.h Normal file
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@ -0,0 +1,23 @@
/*
* clkgen.h
*
* Created on: 02.01.2019
* Author: eyck
*/
#ifndef COMPONENTS_CLKGEN_H_
#define COMPONENTS_CLKGEN_H_
#include <systemc>
class ClkGen: public sc_core::sc_module {
public:
sc_core::sc_out<sc_core::sc_time> clk_o;
ClkGen(const sc_core::sc_module_name&);
virtual ~ClkGen();
protected:
void end_of_elabortation();
};
#endif /* COMPONENTS_CLKGEN_H_ */

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@ -8,8 +8,8 @@
#ifndef COMPONENTS_H_
#define COMPONENTS_H_
//#include "tx_example_mods.h"
//#include "logging.h"
#include "clkgen.h"
#include "resetgen.h"
#include "initiator.h"
#include "router.h"
#include "target.h"

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@ -12,6 +12,8 @@
Initiator::Initiator(::sc_core::sc_module_name nm)
: socket("socket") // Construct and name socket
, clk_i("clk_i")
, reset_i("reset_i")
, dmi_ptr_valid(false)
{
// Register callbacks for incoming interface method calls
@ -21,6 +23,7 @@ Initiator::Initiator(::sc_core::sc_module_name nm)
}
void Initiator::thread_process() {
wait(reset_i.negedge_event());
{
// TLM-2 generic payload transaction, reused across calls to b_transport, DMI and debug
tlm::tlm_generic_payload* trans = new tlm::tlm_generic_payload;

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@ -17,6 +17,9 @@ struct Initiator: sc_module
// TLM-2 socket, defaults to 32-bits wide, base protocol
tlm_utils::simple_initiator_socket<Initiator> socket;
sc_core::sc_in<sc_core::sc_time> clk_i;
sc_core::sc_in<sc_dt::sc_logic> reset_i;
SC_HAS_PROCESS(Initiator);
Initiator( ::sc_core::sc_module_name );

25
components/resetgen.cpp Normal file
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@ -0,0 +1,25 @@
/*
* resetgen.cpp
*
* Created on: 02.01.2019
* Author: eyck
*/
#include <resetgen.h>
#include <scc/utilities.h>
ResetGen::ResetGen(const sc_core::sc_module_name& nm)
: sc_core::sc_module(nm)
, reset_o("reset_o")
{
SC_THREAD(thread);
}
ResetGen::~ResetGen() {
}
void ResetGen::thread() {
reset_o=sc_dt::SC_LOGIC_1;
wait(100_ns);
reset_o=sc_dt::SC_LOGIC_0;
}

26
components/resetgen.h Normal file
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@ -0,0 +1,26 @@
/*
* resetgen.h
*
* Created on: 02.01.2019
* Author: eyck
*/
#ifndef COMPONENTS_RESETGEN_H_
#define COMPONENTS_RESETGEN_H_
#include <systemc>
class ResetGen: public sc_core::sc_module {
public:
SC_HAS_PROCESS(ResetGen);
sc_core::sc_out<sc_dt::sc_logic> reset_o;
ResetGen(const sc_core::sc_module_name&);
virtual ~ResetGen();
protected:
void thread();
};
#endif /* COMPONENTS_RESETGEN_H_ */

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@ -27,9 +27,14 @@ struct Router: sc_module
sc_core::sc_vector<tlm_utils::simple_initiator_socket_tagged<Router>> initiator_socket;
sc_core::sc_in<sc_core::sc_time> clk_i;
sc_core::sc_in<sc_dt::sc_logic> reset_i;
SC_CTOR(Router)
: target_socket("target_socket")
, initiator_socket("socket", N_TARGETS)
, clk_i("clk_i")
, reset_i("reset_i")
{
// Register callbacks for incoming interface method calls
target_socket.register_b_transport( this, &Router::b_transport);

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@ -1,18 +0,0 @@
/*
* router_example.cpp
*
* Created on: 02.12.2018
* Author: eyck
*/
#include "top.h"
int sc_main(int argc, char* argv[])
{
Top top("top");
sc_start();
return 0;
}

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@ -66,7 +66,10 @@ bool Memory::get_direct_mem_ptr(tlm::tlm_generic_payload& trans,
}
Memory::Memory(sc_core::sc_module_name nm)
: socket("socket"), LATENCY(10, SC_NS)
: socket("socket")
, clk_i("clk_i")
, reset_i("reset_i")
, LATENCY(10, SC_NS)
{
// Register callbacks for incoming interface method calls
socket.register_b_transport( this, &Memory::b_transport);

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@ -19,6 +19,9 @@ struct Memory: sc_module
{
// TLM-2 socket, defaults to 32-bits wide, base protocol
tlm_utils::simple_target_socket<Memory> socket;
sc_core::sc_in<sc_core::sc_time> clk_i;
sc_core::sc_in<sc_dt::sc_logic> reset_i;
enum { SIZE = 256 };
const sc_time LATENCY;

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@ -1,33 +0,0 @@
#ifndef TOP_H
#define TOP_H
#include "initiator.h"
#include "target.h"
#include "router.h"
SC_MODULE(Top)
{
Initiator* initiator;
Router<4>* router;
Memory* memory[4];
SC_CTOR(Top)
{
// Instantiate components
initiator = new Initiator("initiator");
router = new Router<4>("router");
for (int i = 0; i < 4; i++)
{
char txt[20];
sprintf(txt, "memory_%d", i);
memory[i] = new Memory(txt);
}
// Bind sockets
initiator->socket.bind( router->target_socket );
for (int i = 0; i < 4; i++)
router->initiator_socket[i].bind( memory[i]->socket );
}
};
#endif

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@ -1,44 +0,0 @@
// -*- C++ -*- <this line is for emacs to recognize it as C++ code>
/*****************************************************************************
Licensed to Accellera Systems Initiative Inc. (Accellera)
under one or more contributor license agreements. See the
NOTICE file distributed with this work for additional
information regarding copyright ownership. Accellera licenses
this file to you under the Apache License, Version 2.0 (the
"License"); you may not use this file except in compliance
with the License. You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing,
software distributed under the License is distributed on an
"AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
KIND, either express or implied. See the License for the
specific language governing permissions and limitations
under the License.
*****************************************************************************/
// this code compiles and runs with our latest prototype for this specification
#include "txtop.h"
int sc_main (int argc , char *argv[])
{
scv_startup();
scv_tr_text_init();
scv_tr_db db("transaction_example.txlog");
scv_tr_db::set_default_db(&db);
tx_top top("top");
// Accellera SystemC >=2.2 got picky about multiple drivers.
// Disable check for bus simulation.
sc_report_handler::set_actions(SC_ID_MORE_THAN_ONE_SIGNAL_DRIVER_, SC_DO_NOTHING);
// run the simulation
sc_start(1.0, SC_MS);
return 0;
}

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@ -1,140 +0,0 @@
// -*- C++ -*- <this line is for emacs to recognize it as C++ code>
/*****************************************************************************
Licensed to Accellera Systems Initiative Inc. (Accellera)
under one or more contributor license agreements. See the
NOTICE file distributed with this work for additional
information regarding copyright ownership. Accellera licenses
this file to you under the Apache License, Version 2.0 (the
"License"); you may not use this file except in compliance
with the License. You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing,
software distributed under the License is distributed on an
"AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
KIND, either express or implied. See the License for the
specific language governing permissions and limitations
under the License.
*****************************************************************************/
// this code compiles and runs with our latest prototype for this specification
#include "tx_example_mods.h"
rw_task_if::data_t rw_pipelined_transactor::read(const rw_task_if::addr_t*
addr) {
addr_phase.lock();
scv_tr_handle h = read_gen.begin_transaction(*addr);
scv_tr_handle h1 = addr_gen.begin_transaction(*addr,"addr_phase",h);
wait(clk->posedge_event());
bus_addr = *addr;
addr_req = 1;
wait(addr_ack->posedge_event());
wait(clk->negedge_event());
addr_req = 0;
wait(addr_ack->negedge_event());
addr_gen.end_transaction(h1);
addr_phase.unlock();
data_phase.lock();
scv_tr_handle h2 = data_gen.begin_transaction("data_phase",h);
wait(data_rdy->posedge_event());
data_t data = bus_data.read();
wait(data_rdy->negedge_event());
data_gen.end_transaction(h2);
read_gen.end_transaction(h,data);
data_phase.unlock();
return data;
}
void rw_pipelined_transactor::write(const write_t * req) {
scv_tr_handle h = write_gen.begin_transaction(req->addr);
// ...
write_gen.end_transaction(h,req->data);
}
void test::main() {
// simple sequential tests
for (int i=0; i<3; i++) {
rw_task_if::addr_t addr = i;
rw_task_if::data_t data = transactor->read(&addr);
cout << "at time " << sc_time_stamp() << ": ";
cout << "received data : " << data << endl;
}
scv_smart_ptr<rw_task_if::addr_t> addr;
for (int i=0; i<3; i++) {
addr->next();
rw_task_if::data_t data = transactor->read( addr->get_instance() );
cout << "data for address " << *addr << " is " << data << endl;
}
scv_smart_ptr<rw_task_if::write_t> write;
for (int i=0; i<3; i++) {
write->next();
transactor->write( write->get_instance() );
cout << "send data : " << write->data << endl;
}
scv_smart_ptr<int> data;
scv_bag<int> distribution;
distribution.push(1,40);
distribution.push(2,60);
data->set_mode(distribution);
for (int i=0;i<3; i++) { data->next(); process(data); }
}
void design::addr_phase() {
while (1) {
while (addr_req.read() != 1) {
wait(addr_req->value_changed_event());
}
sc_uint<8> _addr = bus_addr.read();
bool _rw = rw.read();
int cycle = rand() % 10 + 1;
while (cycle-- > 0) {
wait(clk->posedge_event());
}
addr_ack = 1;
wait(clk->posedge_event());
addr_ack = 0;
outstandingAddresses.push_back(_addr);
outstandingType.push_back(_rw);
cout << "at time " << sc_time_stamp() << ": ";
cout << "received request for memory address " << _addr << endl;
}
}
void design::data_phase() {
while (1) {
while (outstandingAddresses.empty()) {
wait(clk->posedge_event());
}
int cycle = rand() % 10 + 1;
while (cycle-- > 0) {
wait(clk->posedge_event());
}
if (outstandingType.front() == 0) {
cout << "reading memory address " << outstandingAddresses.front()
<< " with value " << memory[outstandingAddresses.front().to_ulong()] << endl;
bus_data = memory[outstandingAddresses.front().to_ulong()];
data_rdy = 1;
wait(clk->posedge_event());
data_rdy = 0;
} else {
cout << "not implemented yet" << endl;
}
outstandingAddresses.pop_front();
outstandingType.pop_front();
}
}

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@ -1,136 +0,0 @@
// -*- C++ -*- <this line is for emacs to recognize it as C++ code>
/*****************************************************************************
Licensed to Accellera Systems Initiative Inc. (Accellera)
under one or more contributor license agreements. See the
NOTICE file distributed with this work for additional
information regarding copyright ownership. Accellera licenses
this file to you under the Apache License, Version 2.0 (the
"License"); you may not use this file except in compliance
with the License. You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing,
software distributed under the License is distributed on an
"AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
KIND, either express or implied. See the License for the
specific language governing permissions and limitations
under the License.
*****************************************************************************/
// this code compiles and runs with our latest prototype for this specification
#include <scv.h>
#include <systemc.h>
// hack to fake a true fifo_mutex
#define fifo_mutex sc_mutex
const unsigned ram_size = 256;
class rw_task_if : virtual public sc_interface {
public:
typedef sc_uint<8> addr_t;
typedef sc_uint<8> data_t;
struct write_t {
addr_t addr;
data_t data;
};
virtual data_t read(const addr_t*) = 0;
virtual void write(const write_t*) = 0;
};
SCV_EXTENSIONS(rw_task_if::write_t) {
public:
scv_extensions<rw_task_if::addr_t> addr;
scv_extensions<rw_task_if::data_t> data;
SCV_EXTENSIONS_CTOR(rw_task_if::write_t) {
SCV_FIELD(addr);
SCV_FIELD(data);
}
};
class pipelined_bus_ports : public sc_module {
public:
sc_in< bool > clk;
sc_inout< bool > rw;
sc_inout< bool > addr_req;
sc_inout< bool > addr_ack;
sc_inout< sc_uint<8> > bus_addr;
sc_inout< bool > data_rdy;
sc_inout< sc_uint<8> > bus_data;
SC_CTOR(pipelined_bus_ports)
: clk("clk"), rw("rw"),
addr_req("addr_req"),
addr_ack("addr_ack"), bus_addr("bus_addr"),
data_rdy("data_rdy"), bus_data("bus_data") {}
};
class rw_pipelined_transactor
: public rw_task_if,
public pipelined_bus_ports {
fifo_mutex addr_phase;
fifo_mutex data_phase;
scv_tr_stream pipelined_stream;
scv_tr_stream addr_stream;
scv_tr_stream data_stream;
scv_tr_generator<sc_uint<8>, sc_uint<8> > read_gen;
scv_tr_generator<sc_uint<8>, sc_uint<8> > write_gen;
scv_tr_generator<sc_uint<8> > addr_gen;
scv_tr_generator<sc_uint<8> > data_gen;
public:
rw_pipelined_transactor(sc_module_name nm) :
pipelined_bus_ports(nm),
addr_phase("addr_phase"),
data_phase("data_phase"),
pipelined_stream("pipelined_stream", "transactor"),
addr_stream("addr_stream", "transactor"),
data_stream("data_stream", "transactor"),
read_gen("read",pipelined_stream,"addr","data"),
write_gen("write",pipelined_stream,"addr","data"),
addr_gen("addr",addr_stream,"addr"),
data_gen("data",data_stream,"data")
{}
virtual data_t read(const addr_t* p_addr);
virtual void write(const write_t * req);
};
class test : public sc_module {
public:
sc_port< rw_task_if > transactor;
SC_CTOR(test) {
SC_THREAD(main);
}
void main();
};
class write_constraint : virtual public scv_constraint_base {
public:
scv_smart_ptr<rw_task_if::write_t> write;
SCV_CONSTRAINT_CTOR(write_constraint) {
SCV_CONSTRAINT( write->addr() <= ram_size );
SCV_CONSTRAINT( write->addr() != write->data() );
}
};
inline void process(scv_smart_ptr<int> data) {}
class design : public pipelined_bus_ports {
std::list< sc_uint<8> > outstandingAddresses;
std::list< bool > outstandingType;
sc_uint<8> memory[ram_size];
public:
SC_HAS_PROCESS(design);
design(sc_module_name nm) : pipelined_bus_ports(nm) {
for (unsigned i=0; i<ram_size; ++i) { memory[i] = i; }
SC_THREAD(addr_phase);
SC_THREAD(data_phase);
}
void addr_phase();
void data_phase();
};

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@ -1,49 +0,0 @@
/*
* top1.cpp
*
* Created on: 02.12.2018
* Author: eyck
*/
#include "txtop.h"
using namespace sc_core;
tx_top::tx_top(sc_core::sc_module_name nm)
: sc_module(nm)
, clk("clk", 20.0, SC_NS, 0.5 ,0.0, SC_NS, true)
, rw("rw")
, addr_req("addr_reg")
, addr_ack("addr_ack")
, bus_addr("bus_addr")
, data_rdy("data_rdy")
, bus_data("bus_data")
, t("t")
, tr("tr")
, duv("duv")
{
// TODO Auto-generated constructor stub
// connect them up
t.transactor(tr);
tr.clk(clk);
tr.rw(rw);
tr.addr_req(addr_req);
tr.addr_ack(addr_ack);
tr.bus_addr(bus_addr);
tr.data_rdy(data_rdy);
tr.bus_data(bus_data);
duv.clk(clk);
duv.rw(rw);
duv.addr_req(addr_req);
duv.addr_ack(addr_ack);
duv.bus_addr(bus_addr);
duv.data_rdy(data_rdy);
duv.bus_data(bus_data);
}
tx_top::~tx_top() {
// TODO Auto-generated destructor stub
}

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@ -1,31 +0,0 @@
/*
* top1.h
*
* Created on: 02.12.2018
* Author: eyck
*/
#ifndef TXTOP_H_
#define TXTOP_H_
#include "tx_example_mods.h"
#include <systemc>
class tx_top: public sc_core::sc_module {
public:
tx_top(sc_core::sc_module_name nm);
virtual ~tx_top();
sc_core::sc_clock clk;
sc_core::sc_signal< bool > rw;
sc_core::sc_signal< bool > addr_req;
sc_core::sc_signal< bool > addr_ack;
sc_core::sc_signal< sc_dt::sc_uint<8> > bus_addr;
sc_core::sc_signal< bool > data_rdy;
sc_core::sc_signal< sc_dt::sc_uint<8> > bus_data;
test t;
rw_pipelined_transactor tr;
design duv;
};
#endif /* TXTOP_H_ */

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@ -1,41 +1,56 @@
import os.path
import cppyy
import logging
from cppyy import gbl as cpp
import pysysc as scpy
import pysysc
###############################################################################
# setup and load
###############################################################################
myDir = os.path.dirname( os.path.realpath(__file__))
conan_err = scpy.read_config_from_conan(os.path.join(myDir, 'conanfile.txt'))
scpy.load_systemc()
print("Loading SC-Components lib")
scpy.add_include_path(os.path.join(myDir, 'sc-components/incl'))
scpy.add_library('scc.h', os.path.join(myDir, 'build/Debug/lib/libsc-components.so'))
print("Loading Components lib")
scpy.add_include_path(os.path.join(myDir, 'components'))
scpy.add_library('components.h', os.path.join(myDir, 'build/Debug/lib/libcomponents.so'))
conan_err = pysysc.read_config_from_conan(os.path.join(myDir, 'conanfile.txt'))
pysysc.load_systemc()
logging.debug("Loading SC-Components lib")
pysysc.add_include_path(os.path.join(myDir, 'sc-components/incl'))
pysysc.add_library('scc.h', os.path.join(myDir, 'build/Debug/lib/libsc-components.so'))
logging.debug("Loading Components lib")
pysysc.add_include_path(os.path.join(myDir, 'components'))
pysysc.add_library('components.h', os.path.join(myDir, 'build/Debug/lib/libcomponents.so'))
###############################################################################
# configure
###############################################################################
#cpp.IoRedirector.get().start()
cpp.scc.init_logging(cpp.logging.INFO, False);
#cpp.scc.init_logging(cpp.logging.WARNING, False);
cpp.sc_core.sc_report_handler.set_actions(cpp.sc_core.SC_ID_MORE_THAN_ONE_SIGNAL_DRIVER_, cpp.sc_core.SC_DO_NOTHING);
###############################################################################
# instantiate
###############################################################################
clkgen = cpp.ClkGen(cpp.sc_core.sc_module_name("clk_gen"))
rstgen = cpp.ResetGen(cpp.sc_core.sc_module_name("rst_gen"))
initiator = cpp.Initiator(cpp.sc_core.sc_module_name("initiator"))
memories = [cpp.Memory(cpp.sc_core.sc_module_name(name)) for name in ["mem0", "mem1", "mem2", "mem3"]]
router = cpp.Router[4](cpp.sc_core.sc_module_name("router"))
###############################################################################
# signals
##################sS#############################################################
sig_clk = cpp.sc_core.sc_signal[cpp.sc_core.sc_time]("clk")
sig_rst = cpp.sc_core.sc_signal[cpp.sc_dt.sc_logic]("rst")
###############################################################################
# connect it
###############################################################################
clkgen.clk_o(sig_clk)
rstgen.reset_o(sig_rst)
initiator.socket.bind(router.target_socket)
initiator.clk_i(sig_clk)
initiator.reset_i(sig_rst)
router.clk_i(sig_clk)
router.reset_i(sig_rst)
for idx,m in enumerate(memories):
router.initiator_socket.at(idx).bind(m.socket)
m.clk_i(sig_clk)
m.reset_i(sig_rst)
###############################################################################
# run if it is standalone
###############################################################################
if __name__ == "__main__":
cpp.sc_core.sc_in_action=True
cpp.sc_core.sc_start()
print("Done")
logging.debug("Done")

49
router_example2.py Normal file
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@ -0,0 +1,49 @@
import os.path
import logging
from cppyy import gbl as cpp
import pysysc
from pysysc.structural import Connection, Module, Signal
###############################################################################
# setup and load
###############################################################################
myDir = os.path.dirname( os.path.realpath(__file__))
conan_err = pysysc.read_config_from_conan(os.path.join(myDir, 'conanfile.txt'))
pysysc.load_systemc()
logging.debug("Loading SC-Components lib")
pysysc.add_include_path(os.path.join(myDir, 'sc-components/incl'))
pysysc.add_library('scc.h', os.path.join(myDir, 'build/Debug/lib/libsc-components.so'))
logging.debug("Loading Components lib")
pysysc.add_include_path(os.path.join(myDir, 'components'))
pysysc.add_library('components.h', os.path.join(myDir, 'build/Debug/lib/libcomponents.so'))
###############################################################################
# configure
###############################################################################
cpp.scc.init_logging(cpp.logging.INFO, False);
#cpp.scc.init_logging(cpp.logging.WARNING, False);
cpp.sc_core.sc_report_handler.set_actions(cpp.sc_core.SC_ID_MORE_THAN_ONE_SIGNAL_DRIVER_, cpp.sc_core.SC_DO_NOTHING);
###############################################################################
# instantiate
###############################################################################
clk_gen = Module(cpp.ClkGen).create("clk_gen")
rst_gen = Module(cpp.ResetGen).create("rst_gen")
initiator = Module(cpp.Initiator).create("initiator")
memories = [Module(cpp.Memory).create(name) for name in ["mem0", "mem1", "mem2", "mem3"]]
router = Module(cpp.Router[4]).create("router")
###############################################################################
# connect it
###############################################################################
clk = Signal("clk").src(clk_gen.clk_o).sink(initiator.clk_i).sink(router.clk_i)
[clk.sink(m.clk_i) for m in memories]
rst = Signal("rst").src(rst_gen.reset_o).sink(initiator.reset_i).sink(router.reset_i)
[rst.sink(m.reset_i) for m in memories]
Connection().src(initiator.socket).sink(router.target_socket)
for idx,m in enumerate(memories):
Connection().src(router.initiator_socket.at(idx)).sink(m.socket)
###############################################################################
# run if it is standalone
###############################################################################
if __name__ == "__main__":
cpp.sc_core.sc_in_action=True
cpp.sc_core.sc_start()
logging.debug("Done")

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@ -30,6 +30,7 @@ int sc_main(int argc, char *argv[]) {
// configure logging
///////////////////////////////////////////////////////////////////////////
scc::init_logging(logging::INFO);
//scc::init_logging(logging::WARNING);
///////////////////////////////////////////////////////////////////////////
// instantiate top level

56
top/top.h Normal file
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#ifndef TOP_H
#define TOP_H
#include <clkgen.h>
#include <resetgen.h>
#include <initiator.h>
#include <target.h>
#include <router.h>
SC_MODULE(Top) {
ClkGen * clk_gen;
ResetGen* reset_gen;
Initiator* initiator;
Router<4>* router;
Memory* memory[4];
Top(const sc_core::sc_module_name& nm)
: sc_core::sc_module()
, clk("clk")
, reset("reset")
{
// Instantiate components
clk_gen=new ClkGen("clk_gen");
reset_gen=new ResetGen("reset_gen");
initiator = new Initiator("initiator");
router = new Router<4>("router");
for (int i = 0; i < 4; i++) {
char txt[20];
sprintf(txt, "memory_%d", i);
memory[i] = new Memory(txt);
}
// Bind sockets
initiator->socket.bind(router->target_socket);
for (int i = 0; i < 4; i++)
router->initiator_socket[i].bind(memory[i]->socket);
// connect signals
clk_gen->clk_o(clk);
reset_gen->reset_o(reset);
initiator->clk_i(clk);
initiator->reset_i(reset);
router->clk_i(clk);
router->reset_i(reset);
for(auto& m: memory){
m->clk_i(clk);
m->reset_i(reset);
}
}
sc_core::sc_signal<sc_core::sc_time> clk;
sc_core::sc_signal<sc_dt::sc_logic> reset;
};
#endif