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[/] [usb11/] [trunk/] [rtl/] [systemc/] [usb_fifo128x8.h] - Rev 15
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///////////////////////////////////////////////////////////////////// //// //// //// USB FIFO //// //// //// //// SystemC Version: usb_fifo128x8.h //// //// Author: Alfredo Luiz Foltran Fialho //// //// alfoltran@ig.com.br //// //// //// //// //// ///////////////////////////////////////////////////////////////////// //// //// //// Verilog Version: generic_fifo_sc_a.v //// //// Copyright (C) 2000-2002 Rudolf Usselmann //// //// www.asics.ws //// //// rudi@asics.ws //// //// //// //// This source file may be used and distributed without //// //// restriction provided that this copyright statement is not //// //// removed from the file and that any derivative work contains //// //// the original copyright notice and the associated disclaimer.//// //// //// //// THIS SOFTWARE IS PROVIDED ``AS IS'' AND WITHOUT ANY //// //// EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED //// //// TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS //// //// FOR A PARTICULAR PURPOSE. IN NO EVENT SHALL THE AUTHOR //// //// OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, //// //// INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES //// //// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE //// //// GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR //// //// BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF //// //// LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT //// //// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT //// //// OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE //// //// POSSIBILITY OF SUCH DAMAGE. //// //// //// ///////////////////////////////////////////////////////////////////// #ifndef USB_FIFO128X8_H #define USB_FIFO128X8_H #include "usb_ram128x8.h" #define FIFO_ASYNC_RESET //#define FIFO_ASYNC_RESET << rst.neg() SC_MODULE(usb_fifo128x8) { private: sc_signal<bool> vcc; public: sc_in<bool> clk; sc_in<bool> rst; sc_in<bool> clr; sc_in<bool> we; sc_in<sc_uint<8> > din; sc_in<bool> re; sc_out<sc_uint<8> > dout; sc_out<bool> empty; sc_out<bool> full; sc_signal<sc_uint<7> > wp, wp_pl1, wp_pl2; sc_signal<sc_uint<7> > rp, rp_pl1; sc_signal<bool> gb, n_rst; usb_ram128x8 *i_ram; void write_pointer_update(void); void read_pointer_update(void); void future_pointers_update(void); void fe_gb_update(void); void fe_full_update(void); void fe_empty_update(void); void reset_update(void); // ~usb_fifo128x8(void); SC_CTOR(usb_fifo128x8) { vcc.write(true); SC_METHOD(write_pointer_update); sensitive << clk.pos() FIFO_ASYNC_RESET; SC_METHOD(read_pointer_update); sensitive << clk.pos() FIFO_ASYNC_RESET; SC_METHOD(future_pointers_update); sensitive << wp << rp; SC_METHOD(fe_gb_update); sensitive << clk.pos() FIFO_ASYNC_RESET; SC_METHOD(fe_full_update); sensitive << clk.pos() FIFO_ASYNC_RESET; SC_METHOD(fe_empty_update); sensitive << clk.pos() FIFO_ASYNC_RESET; SC_METHOD(reset_update); sensitive << rst; i_ram = new usb_ram128x8("RAM128X8"); i_ram->rclk(clk); i_ram->rrst(n_rst); i_ram->rce(vcc); i_ram->oe(vcc); i_ram->raddr(rp); i_ram->dout(dout); i_ram->wclk(clk); i_ram->wrst(n_rst); i_ram->wce(vcc); i_ram->we(we); i_ram->waddr(wp); i_ram->din(din); } }; #endif
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