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| /* | |
| * This file is part of the DSLogic-hdl project. | |
| * | |
| * Copyright (C) 2014 DreamSourceLab <support@dreamsourcelab.com> | |
| * | |
| * This program is free software; you can redistribute it and/or modify | |
| * it under the terms of the GNU General Public License as published by | |
| * the Free Software Foundation; either version 2 of the License, or | |
| * (at your option) any later version. | |
| * | |
| * This program is distributed in the hope that it will be useful, | |
| * but WITHOUT ANY WARRANTY; without even the implied warranty of | |
| * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the | |
| * GNU General Public License for more details. | |
| * | |
| * You should have received a copy of the GNU General Public License | |
| * along with this program; if not, write to the Free Software | |
| * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA | |
| */ | |
| module loopback( | |
| // -- clock & reset | |
| input core_clk, | |
| input core_rst, | |
| input sdram_clk, | |
| input sdram_rst, | |
| input usb_clk, | |
| input usb_rst, | |
| input sd_lpb_mode, | |
| input mux, | |
| // -- control | |
| input sd_dcm0_locked, | |
| input sd_dcm1_locked, | |
| output reg sd_clk_rst, | |
| output reg sd_clk_sel, | |
| output reg sd_clk_en, | |
| // -- write | |
| output [31:0] sample_depth, | |
| output capture_done, | |
| output reg capture_valid, | |
| output reg [15:0] capture_data, | |
| input sdwr_done, | |
| input sd_init_done, | |
| // -- read | |
| output reg read_done, | |
| output reg lpb_read, | |
| output read_start, | |
| output [31:0] sd_saddr, | |
| output sd_fbe, | |
| output reg usb_rd, | |
| input usb_rd_valid, | |
| input [15:0] usb_rdata, | |
| input usb_rdy, | |
| // -- error | |
| output reg lpb_error | |
| ); | |
| //parameter DEPTH = 32'h3fffff; | |
| parameter DEPTH = 32'hffffff; | |
| parameter INIT = 3'b000; | |
| parameter SW_WR = 3'b001; | |
| parameter WRITE = 3'b010; | |
| parameter SW_RD = 3'b100; | |
| parameter READ = 3'b101; | |
| // -- | |
| // signal declare | |
| // -- | |
| wire sd_clk_rst_nxt; | |
| wire sd_clk_sel_nxt; | |
| wire sd_clk_en_nxt; | |
| reg [3:0] sd_clk_rst_cnt; | |
| wire [3:0] sd_clk_rst_cnt_nxt; | |
| reg [2:0] lpb_cstate; | |
| reg [2:0] lpb_nstate; | |
| reg swwr_done; | |
| wire swwr_done_nxt; | |
| reg swrd_done; | |
| wire swrd_done_nxt; | |
| reg sd_init_done_sync; | |
| reg init_done; | |
| reg sdwr_done_sync; | |
| reg write_done; | |
| reg mux_sync; | |
| reg mux_trig; | |
| // -- loopback test for 128Mbit SDRAM | |
| assign sample_depth = DEPTH; | |
| // -- sd_clk_sel / sd_clk_en | |
| assign sd_clk_sel_nxt = ((lpb_cstate != SW_WR) & (lpb_nstate == SW_WR)) ? 1'b1 : | |
| ((lpb_cstate != SW_RD) & (lpb_nstate == SW_RD)) ? 1'b0 : sd_clk_sel; | |
| assign sd_clk_en_nxt = ((lpb_nstate != SW_WR) & (lpb_nstate != SW_RD)) ? 1'b1 : 1'b0; | |
| assign sd_clk_rst_nxt = ((lpb_cstate != SW_WR) & (lpb_nstate == SW_WR)) ? 1'b1 : | |
| ((lpb_cstate != SW_RD) & (lpb_nstate == SW_RD)) ? 1'b1 : | |
| ~|sd_clk_rst_cnt ? 1'b0 : sd_clk_rst; | |
| assign sd_clk_rst_cnt_nxt = ((lpb_cstate != SW_WR) & (lpb_nstate == SW_WR)) ? 4'b1111 : | |
| ((lpb_cstate != SW_RD) & (lpb_nstate == SW_RD)) ? 4'b1111 : | |
| |sd_clk_rst_cnt ? sd_clk_rst_cnt - 1'b1 : sd_clk_rst_cnt; | |
| always @(posedge usb_clk or posedge usb_rst) | |
| begin | |
| if (usb_rst) begin | |
| sd_clk_sel <= `D 1'b0; | |
| sd_clk_en <= `D 1'b0; | |
| sd_clk_rst <= `D 1'b0; | |
| sd_clk_rst_cnt <= `D 4'b0; | |
| end else begin | |
| sd_clk_sel <= `D sd_clk_sel_nxt; | |
| sd_clk_en <= `D sd_clk_en_nxt; | |
| sd_clk_rst <= `D sd_clk_rst_nxt; | |
| sd_clk_rst_cnt <= `D sd_clk_rst_cnt_nxt; | |
| end | |
| end | |
| // -- swwr_done / swrd_done | |
| reg sd_dcm0_locked_sync; | |
| reg sd_clk0_locked; | |
| reg sd_clk0_locked_1T; | |
| reg sd_dcm1_locked_sync; | |
| reg sd_clk1_locked; | |
| reg sd_clk1_locked_1T; | |
| reg sd_clk_locked; | |
| reg sd_clk_locked_1T; | |
| always @(posedge usb_clk) | |
| begin | |
| sd_dcm0_locked_sync <= `D sd_dcm0_locked; | |
| sd_clk0_locked <= `D sd_dcm0_locked_sync; | |
| sd_clk0_locked_1T <= `D sd_clk0_locked; | |
| sd_dcm1_locked_sync <= `D sd_dcm1_locked; | |
| sd_clk1_locked <= `D sd_dcm1_locked_sync; | |
| sd_clk1_locked_1T <= `D sd_clk1_locked; | |
| sd_clk_locked <= `D sd_clk0_locked & sd_clk1_locked; | |
| sd_clk_locked_1T <= `D sd_clk_locked; | |
| end | |
| //assign swwr_done_nxt = ((lpb_cstate == SW_WR) & sd_clk_locked & ~sd_clk_locked_1T) ? 1'b1 : 1'b0; | |
| //assign swrd_done_nxt = ((lpb_cstate == SW_RD) & sd_clk_locked & ~sd_clk_locked_1T) ? 1'b1 : 1'b0; | |
| assign swwr_done_nxt = ((lpb_cstate == SW_WR) & sd_clk_locked) ? 1'b1 : 1'b0; | |
| assign swrd_done_nxt = ((lpb_cstate == SW_RD) & sd_clk_locked) ? 1'b1 : 1'b0; | |
| always @(posedge usb_clk or posedge usb_rst) | |
| begin | |
| if (usb_rst) begin | |
| swwr_done <= `D 1'b0; | |
| swrd_done <= `D 1'b0; | |
| end else begin | |
| swwr_done <= `D swwr_done_nxt; | |
| swrd_done <= `D swrd_done_nxt; | |
| end | |
| end | |
| // -- state machine | |
| always @(posedge usb_clk or posedge usb_rst) | |
| begin | |
| if (usb_rst) | |
| lpb_cstate <= `D INIT; | |
| else | |
| lpb_cstate <= `D lpb_nstate; | |
| end | |
| always @(*) | |
| begin | |
| case(lpb_cstate) | |
| INIT: | |
| if (sd_lpb_mode & init_done & mux_trig) | |
| lpb_nstate = SW_WR; | |
| else | |
| lpb_nstate = INIT; | |
| SW_WR: | |
| if (swwr_done) | |
| lpb_nstate = WRITE; | |
| else | |
| lpb_nstate = SW_WR; | |
| WRITE: | |
| if (write_done) | |
| lpb_nstate = SW_RD; | |
| else | |
| lpb_nstate = WRITE; | |
| SW_RD: | |
| //if (swrd_done) | |
| if (usb_rdy) | |
| lpb_nstate = READ; | |
| else | |
| lpb_nstate = SW_RD; | |
| READ: | |
| if (read_done) | |
| lpb_nstate = SW_WR; | |
| else | |
| lpb_nstate = READ; | |
| default: | |
| lpb_nstate = INIT; | |
| endcase | |
| end | |
| // -- init_done / write_done | |
| reg [7:0] sdwr_done_shift; | |
| reg sdwr_done_extend; | |
| wire sdwr_done_extend_nxt; | |
| assign sdwr_done_extend_nxt = |sdwr_done_shift; | |
| always @(posedge sdram_clk) | |
| begin | |
| sdwr_done_shift <= `D {sdwr_done_shift[6:0], sdwr_done}; | |
| sdwr_done_extend <= `D sdwr_done_extend_nxt; | |
| end | |
| always @(posedge usb_clk) | |
| begin | |
| sd_init_done_sync <= `D sd_init_done; | |
| init_done <= `D sd_init_done_sync; | |
| mux_sync <= `D mux; | |
| mux_trig <= `D mux_sync; | |
| sdwr_done_sync <= `D sdwr_done_extend; | |
| write_done <= `D sdwr_done_sync; | |
| end | |
| reg wr_phase; | |
| reg rd_phase; | |
| wire wr_phase_nxt; | |
| wire rd_phase_nxt; | |
| wire lpb_read_nxt; | |
| assign wr_phase_nxt = (lpb_nstate == WRITE); | |
| assign rd_phase_nxt = (lpb_nstate == READ); | |
| assign lpb_read_nxt = (lpb_nstate == SW_RD) | (lpb_nstate == READ); | |
| always @(posedge usb_clk) | |
| begin | |
| wr_phase <= `D wr_phase_nxt; | |
| rd_phase <= `D rd_phase_nxt; | |
| lpb_read <= `D lpb_read_nxt; | |
| end | |
| // -- write @ core_clk | |
| reg wr_phase_sync; | |
| reg wr_flag; | |
| reg wr_flag_1T; | |
| always @(posedge core_clk) | |
| begin | |
| wr_phase_sync <= `D wr_phase; | |
| wr_flag <= `D wr_phase_sync; | |
| wr_flag_1T <= `D wr_flag; | |
| end | |
| reg [31:0] write_cnt; | |
| wire [31:0] write_cnt_nxt; | |
| reg wr_loop; | |
| wire wr_loop_nxt; | |
| assign wr_loop_nxt = (wr_flag & ~wr_flag_1T) ? ~wr_loop : wr_loop; | |
| assign write_cnt_nxt = (wr_flag & ~wr_flag_1T) ? DEPTH : | |
| capture_valid ? write_cnt - 1'b1 : write_cnt; | |
| always @(posedge core_clk or posedge core_rst) | |
| begin | |
| if (core_rst) begin | |
| wr_loop <= `D 1'b0; | |
| write_cnt <= `D DEPTH; | |
| end else begin | |
| wr_loop <= `D wr_loop_nxt; | |
| write_cnt <= `D write_cnt_nxt; | |
| end | |
| end | |
| wire capture_valid_nxt; | |
| wire [31:0] capture_data_nxt; | |
| assign capture_done = capture_valid & ~|write_cnt; | |
| assign capture_valid_nxt = (wr_flag & ~wr_flag_1T) ? 1'b1 : | |
| ~|write_cnt ? 1'b0 : capture_valid; | |
| assign capture_data_nxt = (~wr_loop & capture_valid) ? capture_data + 1'b1 : | |
| (wr_loop & capture_valid) ? capture_data - 1'b1 : capture_data; | |
| always @(posedge core_clk or posedge core_rst) | |
| begin | |
| if (core_rst) begin | |
| capture_data <= `D 16'b0; | |
| capture_valid <= `D 1'b0; | |
| end else begin | |
| capture_data <= `D capture_data_nxt; | |
| //capture_data <= `D 16'h1; | |
| capture_valid <= `D capture_valid_nxt; | |
| end | |
| end | |
| // -- read @ usb_clk | |
| reg [31:0] read_cnt; | |
| wire [31:0] read_cnt_nxt; | |
| reg read_loop; | |
| wire read_loop_nxt; | |
| reg rd_phase_sync; | |
| reg rd_phase_sdram; | |
| reg rd_phase_sdram_1T; | |
| always @(posedge sdram_clk) | |
| begin | |
| rd_phase_sync <= `D rd_phase; | |
| rd_phase_sdram <= `D rd_phase_sync; | |
| rd_phase_sdram_1T <= `D rd_phase_sdram; | |
| end | |
| assign read_start = rd_phase_sdram & ~rd_phase_sdram_1T; | |
| // -- | |
| reg rd_phase_1T; | |
| always @(posedge usb_clk) | |
| begin | |
| rd_phase_1T <= `D rd_phase; | |
| end | |
| assign usb_start = rd_phase & ~rd_phase_1T; | |
| // -- | |
| assign sd_saddr = 32'b0; | |
| assign sd_fbe = 1'b0; | |
| wire usb_rd_nxt; | |
| assign usb_rd_nxt = usb_start ? 1'b1 : | |
| ((read_cnt == 32'b0) & usb_rd & usb_rd_valid) ? 1'b0 : usb_rd; | |
| always @(posedge usb_clk or posedge usb_rst) | |
| begin | |
| if (usb_rst) begin | |
| usb_rd <= `D 1'b0; | |
| end else begin | |
| usb_rd <= `D usb_rd_nxt; | |
| end | |
| end | |
| assign read_done_nxt = read_done ? 1'b0 : | |
| (read_cnt == 32'b0 & usb_rd & usb_rd_valid) ? 1'b1 : read_done; | |
| assign read_loop_nxt = usb_start ? ~read_loop : read_loop; | |
| assign read_cnt_nxt = usb_start ? DEPTH : | |
| (usb_rd & usb_rd_valid) ? read_cnt - 1'b1 : read_cnt; | |
| always @(posedge usb_clk or posedge usb_rst) | |
| begin | |
| if (usb_rst) begin | |
| read_cnt <= `D 32'b0; | |
| read_done <= `D 1'b0; | |
| read_loop <= `D 1'b0; | |
| end else begin | |
| read_cnt <= `D read_cnt_nxt; | |
| read_done <= `D read_done_nxt; | |
| read_loop <= `D read_loop_nxt; | |
| end | |
| end | |
| // -- read data check | |
| reg [15:0] exp_data; | |
| wire [15:0] exp_data_nxt; | |
| wire lpb_error_nxt; | |
| assign exp_data_nxt = (~read_loop & usb_rd & usb_rd_valid) ? exp_data + 1'b1 : | |
| (read_loop & usb_rd & usb_rd_valid) ? exp_data - 1'b1 : exp_data; | |
| assign lpb_error_nxt = (usb_rd & usb_rd_valid & (exp_data != usb_rdata) | lpb_error) ? 1'b1 : 1'b0; | |
| always @(posedge usb_clk or posedge usb_rst) | |
| begin | |
| if (usb_rst) begin | |
| exp_data <= `D 16'b0; | |
| lpb_error <= `D 1'b0; | |
| end else begin | |
| exp_data <= `D exp_data_nxt; | |
| //exp_data <= `D 16'h1; | |
| lpb_error <= `D lpb_error_nxt; | |
| end | |
| end | |
| endmodule | |