mirror of
https://github.com/Gehstock/Mist_FPGA.git
synced 2026-03-09 12:05:55 +00:00
Vectrex: move to common MiST components
This commit is contained in:
@@ -1,491 +0,0 @@
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//
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// mist_io.v
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//
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// mist_io for the MiST board
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// http://code.google.com/p/mist-board/
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//
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// Copyright (c) 2014 Till Harbaum <till@harbaum.org>
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//
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// This source file is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published
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// by the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// This source file is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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//
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// You should have received a copy of the GNU General Public License
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// along with this program. If not, see <http://www.gnu.org/licenses/>.
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//
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///////////////////////////////////////////////////////////////////////
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//
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// Use buffer to access SD card. It's time-critical part.
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// Made module synchroneous with 2 clock domains: clk_sys and SPI_SCK
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// (Sorgelig)
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//
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// for synchronous projects default value for PS2DIV is fine for any frequency of system clock.
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// clk_ps2 = clk_sys/(PS2DIV*2)
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//
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module mist_io #(parameter STRLEN=0, parameter PS2DIV=100)
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(
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// parameter STRLEN and the actual length of conf_str have to match
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input [(8*STRLEN)-1:0] conf_str,
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// Global clock. It should be around 100MHz (higher is better).
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input clk_sys,
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// Global SPI clock from ARM. 24MHz
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input SPI_SCK,
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input CONF_DATA0,
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input SPI_SS2,
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output SPI_DO,
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input SPI_DI,
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output reg [7:0] joystick_0,
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output reg [7:0] joystick_1,
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output reg [15:0] joystick_analog_0,
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output reg [15:0] joystick_analog_1,
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output [1:0] buttons,
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output [1:0] switches,
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output scandoubler_disable,
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output ypbpr,
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output reg [31:0] status,
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// SD config
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input sd_conf,
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input sd_sdhc,
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output img_mounted, // signaling that new image has been mounted
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output reg [31:0] img_size, // size of image in bytes
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// SD block level access
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input [31:0] sd_lba,
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input sd_rd,
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input sd_wr,
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output reg sd_ack,
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output reg sd_ack_conf,
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// SD byte level access. Signals for 2-PORT altsyncram.
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output reg [8:0] sd_buff_addr,
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output reg [7:0] sd_buff_dout,
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input [7:0] sd_buff_din,
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output reg sd_buff_wr,
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// ps2 keyboard emulation
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output ps2_kbd_clk,
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output reg ps2_kbd_data,
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output ps2_mouse_clk,
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output reg ps2_mouse_data,
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input ps2_caps_led,
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// ARM -> FPGA download
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output reg ioctl_download = 0, // signal indicating an active download
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output reg [7:0] ioctl_index, // menu index used to upload the file
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output ioctl_wr,
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output reg [24:0] ioctl_addr,
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output reg [7:0] ioctl_dout
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);
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reg [7:0] b_data;
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reg [6:0] sbuf;
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reg [7:0] cmd;
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reg [2:0] bit_cnt; // counts bits 0-7 0-7 ...
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reg [9:0] byte_cnt; // counts bytes
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reg [7:0] but_sw;
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reg [2:0] stick_idx;
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reg mount_strobe = 0;
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assign img_mounted = mount_strobe;
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assign buttons = but_sw[1:0];
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assign switches = but_sw[3:2];
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assign scandoubler_disable = but_sw[4];
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assign ypbpr = but_sw[5];
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wire [7:0] spi_dout = { sbuf, SPI_DI};
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// this variant of user_io is for 8 bit cores (type == a4) only
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wire [7:0] core_type = 8'ha4;
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// command byte read by the io controller
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wire [7:0] sd_cmd = { 4'h5, sd_conf, sd_sdhc, sd_wr, sd_rd };
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reg spi_do;
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assign SPI_DO = CONF_DATA0 ? 1'bZ : spi_do;
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wire [7:0] kbd_led = { 2'b01, 4'b0000, ps2_caps_led, 1'b1};
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// drive MISO only when transmitting core id
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always@(negedge SPI_SCK) begin
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if(!CONF_DATA0) begin
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// first byte returned is always core type, further bytes are
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// command dependent
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if(byte_cnt == 0) begin
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spi_do <= core_type[~bit_cnt];
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end else begin
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case(cmd)
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// reading config string
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8'h14: begin
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// returning a byte from string
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if(byte_cnt < STRLEN + 1) spi_do <= conf_str[{STRLEN - byte_cnt,~bit_cnt}];
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else spi_do <= 0;
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end
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// reading sd card status
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8'h16: begin
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if(byte_cnt == 1) spi_do <= sd_cmd[~bit_cnt];
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else if((byte_cnt >= 2) && (byte_cnt < 6)) spi_do <= sd_lba[{5-byte_cnt, ~bit_cnt}];
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else spi_do <= 0;
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end
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// reading sd card write data
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8'h18:
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spi_do <= b_data[~bit_cnt];
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// reading keyboard LED status
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8'h1f:
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spi_do <= kbd_led[~bit_cnt];
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default:
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spi_do <= 0;
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endcase
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end
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end
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end
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reg b_wr2,b_wr3;
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always @(negedge clk_sys) begin
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b_wr3 <= b_wr2;
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sd_buff_wr <= b_wr3;
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end
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// SPI receiver
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always@(posedge SPI_SCK or posedge CONF_DATA0) begin
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if(CONF_DATA0) begin
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b_wr2 <= 0;
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bit_cnt <= 0;
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byte_cnt <= 0;
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sd_ack <= 0;
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sd_ack_conf <= 0;
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end else begin
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b_wr2 <= 0;
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sbuf <= spi_dout[6:0];
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bit_cnt <= bit_cnt + 1'd1;
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if(bit_cnt == 5) begin
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if (byte_cnt == 0) sd_buff_addr <= 0;
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if((byte_cnt != 0) & (sd_buff_addr != 511)) sd_buff_addr <= sd_buff_addr + 1'b1;
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if((byte_cnt == 1) & ((cmd == 8'h17) | (cmd == 8'h19))) sd_buff_addr <= 0;
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end
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// finished reading command byte
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if(bit_cnt == 7) begin
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if(~&byte_cnt) byte_cnt <= byte_cnt + 8'd1;
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if(byte_cnt == 0) begin
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cmd <= spi_dout;
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if(spi_dout == 8'h19) begin
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sd_ack_conf <= 1;
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sd_buff_addr <= 0;
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end
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if((spi_dout == 8'h17) || (spi_dout == 8'h18)) begin
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sd_ack <= 1;
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sd_buff_addr <= 0;
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end
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if(spi_dout == 8'h18) b_data <= sd_buff_din;
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mount_strobe <= 0;
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end else begin
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case(cmd)
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// buttons and switches
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8'h01: but_sw <= spi_dout;
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8'h02: joystick_0 <= spi_dout;
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8'h03: joystick_1 <= spi_dout;
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// store incoming ps2 mouse bytes
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8'h04: begin
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ps2_mouse_fifo[ps2_mouse_wptr] <= spi_dout;
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ps2_mouse_wptr <= ps2_mouse_wptr + 1'd1;
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end
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// store incoming ps2 keyboard bytes
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8'h05: begin
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ps2_kbd_fifo[ps2_kbd_wptr] <= spi_dout;
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ps2_kbd_wptr <= ps2_kbd_wptr + 1'd1;
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end
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8'h15: status[7:0] <= spi_dout;
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// send SD config IO -> FPGA
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// flag that download begins
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// sd card knows data is config if sd_dout_strobe is asserted
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// with sd_ack still being inactive (low)
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8'h19,
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// send sector IO -> FPGA
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// flag that download begins
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8'h17: begin
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sd_buff_dout <= spi_dout;
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b_wr2 <= 1;
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end
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8'h18: b_data <= sd_buff_din;
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// joystick analog
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8'h1a: begin
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// first byte is joystick index
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if(byte_cnt == 1) stick_idx <= spi_dout[2:0];
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else if(byte_cnt == 2) begin
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// second byte is x axis
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if(stick_idx == 0) joystick_analog_0[15:8] <= spi_dout;
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else if(stick_idx == 1) joystick_analog_1[15:8] <= spi_dout;
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end else if(byte_cnt == 3) begin
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// third byte is y axis
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if(stick_idx == 0) joystick_analog_0[7:0] <= spi_dout;
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else if(stick_idx == 1) joystick_analog_1[7:0] <= spi_dout;
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end
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end
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// notify image selection
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8'h1c: mount_strobe <= 1;
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// send image info
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8'h1d: if(byte_cnt<5) img_size[(byte_cnt-1)<<3 +:8] <= spi_dout;
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// status, 32bit version
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8'h1e: if(byte_cnt<5) status[(byte_cnt-1)<<3 +:8] <= spi_dout;
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default: ;
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endcase
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end
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end
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end
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end
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/////////////////////////////// PS2 ///////////////////////////////
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// 8 byte fifos to store ps2 bytes
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localparam PS2_FIFO_BITS = 3;
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reg clk_ps2;
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always @(negedge clk_sys) begin
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integer cnt;
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cnt <= cnt + 1'd1;
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if(cnt == PS2DIV) begin
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clk_ps2 <= ~clk_ps2;
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cnt <= 0;
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end
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end
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// keyboard
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reg [7:0] ps2_kbd_fifo[1<<PS2_FIFO_BITS];
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reg [PS2_FIFO_BITS-1:0] ps2_kbd_wptr;
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reg [PS2_FIFO_BITS-1:0] ps2_kbd_rptr;
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// ps2 transmitter state machine
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reg [3:0] ps2_kbd_tx_state;
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reg [7:0] ps2_kbd_tx_byte;
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reg ps2_kbd_parity;
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assign ps2_kbd_clk = clk_ps2 || (ps2_kbd_tx_state == 0);
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// ps2 transmitter
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// Takes a byte from the FIFO and sends it in a ps2 compliant serial format.
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reg ps2_kbd_r_inc;
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always@(posedge clk_sys) begin
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reg old_clk;
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old_clk <= clk_ps2;
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if(~old_clk & clk_ps2) begin
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ps2_kbd_r_inc <= 0;
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if(ps2_kbd_r_inc) ps2_kbd_rptr <= ps2_kbd_rptr + 1'd1;
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// transmitter is idle?
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if(ps2_kbd_tx_state == 0) begin
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// data in fifo present?
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if(ps2_kbd_wptr != ps2_kbd_rptr) begin
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// load tx register from fifo
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ps2_kbd_tx_byte <= ps2_kbd_fifo[ps2_kbd_rptr];
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ps2_kbd_r_inc <= 1;
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// reset parity
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ps2_kbd_parity <= 1;
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// start transmitter
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ps2_kbd_tx_state <= 1;
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// put start bit on data line
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ps2_kbd_data <= 0; // start bit is 0
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end
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end else begin
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// transmission of 8 data bits
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if((ps2_kbd_tx_state >= 1)&&(ps2_kbd_tx_state < 9)) begin
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ps2_kbd_data <= ps2_kbd_tx_byte[0]; // data bits
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ps2_kbd_tx_byte[6:0] <= ps2_kbd_tx_byte[7:1]; // shift down
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if(ps2_kbd_tx_byte[0])
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ps2_kbd_parity <= !ps2_kbd_parity;
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end
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// transmission of parity
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if(ps2_kbd_tx_state == 9) ps2_kbd_data <= ps2_kbd_parity;
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// transmission of stop bit
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if(ps2_kbd_tx_state == 10) ps2_kbd_data <= 1; // stop bit is 1
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// advance state machine
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if(ps2_kbd_tx_state < 11) ps2_kbd_tx_state <= ps2_kbd_tx_state + 1'd1;
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else ps2_kbd_tx_state <= 0;
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end
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end
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end
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// mouse
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reg [7:0] ps2_mouse_fifo[1<<PS2_FIFO_BITS];
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reg [PS2_FIFO_BITS-1:0] ps2_mouse_wptr;
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reg [PS2_FIFO_BITS-1:0] ps2_mouse_rptr;
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// ps2 transmitter state machine
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reg [3:0] ps2_mouse_tx_state;
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reg [7:0] ps2_mouse_tx_byte;
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reg ps2_mouse_parity;
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assign ps2_mouse_clk = clk_ps2 || (ps2_mouse_tx_state == 0);
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// ps2 transmitter
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// Takes a byte from the FIFO and sends it in a ps2 compliant serial format.
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reg ps2_mouse_r_inc;
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always@(posedge clk_sys) begin
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reg old_clk;
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old_clk <= clk_ps2;
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if(~old_clk & clk_ps2) begin
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ps2_mouse_r_inc <= 0;
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if(ps2_mouse_r_inc) ps2_mouse_rptr <= ps2_mouse_rptr + 1'd1;
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// transmitter is idle?
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if(ps2_mouse_tx_state == 0) begin
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// data in fifo present?
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if(ps2_mouse_wptr != ps2_mouse_rptr) begin
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// load tx register from fifo
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ps2_mouse_tx_byte <= ps2_mouse_fifo[ps2_mouse_rptr];
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ps2_mouse_r_inc <= 1;
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// reset parity
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ps2_mouse_parity <= 1;
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// start transmitter
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ps2_mouse_tx_state <= 1;
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// put start bit on data line
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ps2_mouse_data <= 0; // start bit is 0
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end
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end else begin
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// transmission of 8 data bits
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if((ps2_mouse_tx_state >= 1)&&(ps2_mouse_tx_state < 9)) begin
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ps2_mouse_data <= ps2_mouse_tx_byte[0]; // data bits
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||||
ps2_mouse_tx_byte[6:0] <= ps2_mouse_tx_byte[7:1]; // shift down
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||||
if(ps2_mouse_tx_byte[0])
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ps2_mouse_parity <= !ps2_mouse_parity;
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end
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// transmission of parity
|
||||
if(ps2_mouse_tx_state == 9) ps2_mouse_data <= ps2_mouse_parity;
|
||||
|
||||
// transmission of stop bit
|
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if(ps2_mouse_tx_state == 10) ps2_mouse_data <= 1; // stop bit is 1
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||||
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// advance state machine
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||||
if(ps2_mouse_tx_state < 11) ps2_mouse_tx_state <= ps2_mouse_tx_state + 1'd1;
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||||
else ps2_mouse_tx_state <= 0;
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end
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||||
end
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||||
end
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||||
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/////////////////////////////// DOWNLOADING ///////////////////////////////
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reg [7:0] data_w;
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reg [24:0] addr_w;
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reg rclk = 0;
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||||
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||||
localparam UIO_FILE_TX = 8'h53;
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localparam UIO_FILE_TX_DAT = 8'h54;
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localparam UIO_FILE_INDEX = 8'h55;
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||||
// data_io has its own SPI interface to the io controller
|
||||
always@(posedge SPI_SCK, posedge SPI_SS2) begin
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reg [6:0] sbuf;
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reg [7:0] cmd;
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||||
reg [4:0] cnt;
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reg [24:0] addr;
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if(SPI_SS2) cnt <= 0;
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||||
else begin
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||||
rclk <= 0;
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||||
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||||
// don't shift in last bit. It is evaluated directly
|
||||
// when writing to ram
|
||||
if(cnt != 15) sbuf <= { sbuf[5:0], SPI_DI};
|
||||
|
||||
// increase target address after write
|
||||
if(rclk) addr <= addr + 1'd1;
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||||
|
||||
// count 0-7 8-15 8-15 ...
|
||||
if(cnt < 15) cnt <= cnt + 1'd1;
|
||||
else cnt <= 8;
|
||||
|
||||
// finished command byte
|
||||
if(cnt == 7) cmd <= {sbuf, SPI_DI};
|
||||
|
||||
// prepare/end transmission
|
||||
if((cmd == UIO_FILE_TX) && (cnt == 15)) begin
|
||||
// prepare
|
||||
if(SPI_DI) begin
|
||||
addr <= 0;
|
||||
ioctl_download <= 1;
|
||||
end else begin
|
||||
addr_w <= addr;
|
||||
ioctl_download <= 0;
|
||||
end
|
||||
end
|
||||
|
||||
// command 0x54: UIO_FILE_TX
|
||||
if((cmd == UIO_FILE_TX_DAT) && (cnt == 15)) begin
|
||||
addr_w <= addr;
|
||||
data_w <= {sbuf, SPI_DI};
|
||||
rclk <= 1;
|
||||
end
|
||||
|
||||
// expose file (menu) index
|
||||
if((cmd == UIO_FILE_INDEX) && (cnt == 15)) ioctl_index <= {sbuf, SPI_DI};
|
||||
end
|
||||
end
|
||||
|
||||
assign ioctl_wr = |ioctl_wrd;
|
||||
reg [1:0] ioctl_wrd;
|
||||
|
||||
always@(negedge clk_sys) begin
|
||||
reg rclkD, rclkD2;
|
||||
|
||||
rclkD <= rclk;
|
||||
rclkD2 <= rclkD;
|
||||
ioctl_wrd<= {ioctl_wrd[0],1'b0};
|
||||
|
||||
if(rclkD & ~rclkD2) begin
|
||||
ioctl_dout <= data_w;
|
||||
ioctl_addr <= addr_w;
|
||||
ioctl_wrd <= 2'b11;
|
||||
end
|
||||
end
|
||||
|
||||
endmodule
|
||||
@@ -1,183 +0,0 @@
|
||||
// A simple OSD implementation. Can be hooked up between a cores
|
||||
// VGA output and the physical VGA pins
|
||||
|
||||
module osd (
|
||||
// OSDs pixel clock, should be synchronous to cores pixel clock to
|
||||
// avoid jitter.
|
||||
input clk_sys,
|
||||
|
||||
// SPI interface
|
||||
input SPI_SCK,
|
||||
input SPI_SS3,
|
||||
input SPI_DI,
|
||||
|
||||
// VGA signals coming from core
|
||||
input [5:0] R_in,
|
||||
input [5:0] G_in,
|
||||
input [5:0] B_in,
|
||||
input HSync,
|
||||
input VSync,
|
||||
|
||||
// VGA signals going to video connector
|
||||
output [5:0] R_out,
|
||||
output [5:0] G_out,
|
||||
output [5:0] B_out
|
||||
);
|
||||
|
||||
parameter OSD_X_OFFSET = 10'd0;
|
||||
parameter OSD_Y_OFFSET = 10'd0;
|
||||
parameter OSD_COLOR = 3'd0;
|
||||
|
||||
localparam OSD_WIDTH = 10'd256;
|
||||
localparam OSD_HEIGHT = 10'd128;
|
||||
|
||||
// *********************************************************************************
|
||||
// spi client
|
||||
// *********************************************************************************
|
||||
|
||||
// this core supports only the display related OSD commands
|
||||
// of the minimig
|
||||
reg osd_enable;
|
||||
(* ramstyle = "no_rw_check" *) reg [7:0] osd_buffer[2047:0]; // the OSD buffer itself
|
||||
|
||||
// the OSD has its own SPI interface to the io controller
|
||||
always@(posedge SPI_SCK, posedge SPI_SS3) begin
|
||||
reg [4:0] cnt;
|
||||
reg [10:0] bcnt;
|
||||
reg [7:0] sbuf;
|
||||
reg [7:0] cmd;
|
||||
|
||||
if(SPI_SS3) begin
|
||||
cnt <= 0;
|
||||
bcnt <= 0;
|
||||
end else begin
|
||||
sbuf <= {sbuf[6:0], SPI_DI};
|
||||
|
||||
// 0:7 is command, rest payload
|
||||
if(cnt < 15) cnt <= cnt + 1'd1;
|
||||
else cnt <= 8;
|
||||
|
||||
if(cnt == 7) begin
|
||||
cmd <= {sbuf[6:0], SPI_DI};
|
||||
|
||||
// lower three command bits are line address
|
||||
bcnt <= {sbuf[1:0], SPI_DI, 8'h00};
|
||||
|
||||
// command 0x40: OSDCMDENABLE, OSDCMDDISABLE
|
||||
if(sbuf[6:3] == 4'b0100) osd_enable <= SPI_DI;
|
||||
end
|
||||
|
||||
// command 0x20: OSDCMDWRITE
|
||||
if((cmd[7:3] == 5'b00100) && (cnt == 15)) begin
|
||||
osd_buffer[bcnt] <= {sbuf[6:0], SPI_DI};
|
||||
bcnt <= bcnt + 1'd1;
|
||||
end
|
||||
end
|
||||
end
|
||||
|
||||
// *********************************************************************************
|
||||
// video timing and sync polarity anaylsis
|
||||
// *********************************************************************************
|
||||
|
||||
// horizontal counter
|
||||
reg [9:0] h_cnt;
|
||||
reg [9:0] hs_low, hs_high;
|
||||
wire hs_pol = hs_high < hs_low;
|
||||
wire [9:0] dsp_width = hs_pol ? hs_low : hs_high;
|
||||
|
||||
// vertical counter
|
||||
reg [9:0] v_cnt;
|
||||
reg [9:0] vs_low, vs_high;
|
||||
wire vs_pol = vs_high < vs_low;
|
||||
wire [9:0] dsp_height = vs_pol ? vs_low : vs_high;
|
||||
|
||||
wire doublescan = (dsp_height>350);
|
||||
|
||||
reg ce_pix;
|
||||
always @(negedge clk_sys) begin
|
||||
integer cnt = 0;
|
||||
integer pixsz, pixcnt;
|
||||
reg hs;
|
||||
|
||||
cnt <= cnt + 1;
|
||||
hs <= HSync;
|
||||
|
||||
pixcnt <= pixcnt + 1;
|
||||
if(pixcnt == pixsz) pixcnt <= 0;
|
||||
ce_pix <= !pixcnt;
|
||||
|
||||
if(hs && ~HSync) begin
|
||||
cnt <= 0;
|
||||
pixsz <= (cnt >> 9) - 1;
|
||||
pixcnt <= 0;
|
||||
ce_pix <= 1;
|
||||
end
|
||||
end
|
||||
|
||||
always @(posedge clk_sys) begin
|
||||
reg hsD, hsD2;
|
||||
reg vsD, vsD2;
|
||||
|
||||
if(ce_pix) begin
|
||||
// bring hsync into local clock domain
|
||||
hsD <= HSync;
|
||||
hsD2 <= hsD;
|
||||
|
||||
// falling edge of HSync
|
||||
if(!hsD && hsD2) begin
|
||||
h_cnt <= 0;
|
||||
hs_high <= h_cnt;
|
||||
end
|
||||
|
||||
// rising edge of HSync
|
||||
else if(hsD && !hsD2) begin
|
||||
h_cnt <= 0;
|
||||
hs_low <= h_cnt;
|
||||
v_cnt <= v_cnt + 1'd1;
|
||||
end else begin
|
||||
h_cnt <= h_cnt + 1'd1;
|
||||
end
|
||||
|
||||
vsD <= VSync;
|
||||
vsD2 <= vsD;
|
||||
|
||||
// falling edge of VSync
|
||||
if(!vsD && vsD2) begin
|
||||
v_cnt <= 0;
|
||||
vs_high <= v_cnt;
|
||||
end
|
||||
|
||||
// rising edge of VSync
|
||||
else if(vsD && !vsD2) begin
|
||||
v_cnt <= 0;
|
||||
vs_low <= v_cnt;
|
||||
end
|
||||
end
|
||||
end
|
||||
|
||||
// area in which OSD is being displayed
|
||||
wire [9:0] h_osd_start = ((dsp_width - OSD_WIDTH)>> 1) + OSD_X_OFFSET;
|
||||
wire [9:0] h_osd_end = h_osd_start + OSD_WIDTH;
|
||||
wire [9:0] v_osd_start = ((dsp_height- (OSD_HEIGHT<<doublescan))>> 1) + OSD_Y_OFFSET;
|
||||
wire [9:0] v_osd_end = v_osd_start + (OSD_HEIGHT<<doublescan);
|
||||
reg [9:0] osd_hcnt;
|
||||
reg [9:0] osd_vcnt;
|
||||
|
||||
wire osd_de = osd_enable &&
|
||||
(HSync != hs_pol) && (h_cnt >= h_osd_start) && (h_cnt < h_osd_end) &&
|
||||
(VSync != vs_pol) && (v_cnt >= v_osd_start) && (v_cnt < v_osd_end);
|
||||
|
||||
reg [7:0] osd_byte;
|
||||
always @(posedge clk_sys) if(ce_pix) begin
|
||||
osd_hcnt <= h_cnt - h_osd_start + 2'd2; // 1+1 pixel offset for osd_byte register
|
||||
osd_vcnt <= v_cnt - v_osd_start;
|
||||
osd_byte <= osd_buffer[{doublescan ? osd_vcnt[7:5] : osd_vcnt[6:4], osd_hcnt[7:0]}];
|
||||
end
|
||||
|
||||
wire osd_pixel = osd_byte[doublescan ? osd_vcnt[4:2] : osd_vcnt[3:1]];
|
||||
|
||||
assign R_out = !osd_de ? R_in : {osd_pixel, osd_pixel, OSD_COLOR[2], R_in[5:3]};
|
||||
assign G_out = !osd_de ? G_in : {osd_pixel, osd_pixel, OSD_COLOR[1], G_in[5:3]};
|
||||
assign B_out = !osd_de ? B_in : {osd_pixel, osd_pixel, OSD_COLOR[0], B_in[5:3]};
|
||||
|
||||
endmodule
|
||||
@@ -1,55 +0,0 @@
|
||||
module rgb2ypbpr (
|
||||
input [5:0] red,
|
||||
input [5:0] green,
|
||||
input [5:0] blue,
|
||||
|
||||
output [5:0] y,
|
||||
output [5:0] pb,
|
||||
output [5:0] pr
|
||||
);
|
||||
|
||||
wire [5:0] yuv_full[225] = '{
|
||||
6'd0, 6'd0, 6'd0, 6'd0, 6'd1, 6'd1, 6'd1, 6'd1,
|
||||
6'd2, 6'd2, 6'd2, 6'd3, 6'd3, 6'd3, 6'd3, 6'd4,
|
||||
6'd4, 6'd4, 6'd5, 6'd5, 6'd5, 6'd5, 6'd6, 6'd6,
|
||||
6'd6, 6'd7, 6'd7, 6'd7, 6'd7, 6'd8, 6'd8, 6'd8,
|
||||
6'd9, 6'd9, 6'd9, 6'd9, 6'd10, 6'd10, 6'd10, 6'd11,
|
||||
6'd11, 6'd11, 6'd11, 6'd12, 6'd12, 6'd12, 6'd13, 6'd13,
|
||||
6'd13, 6'd13, 6'd14, 6'd14, 6'd14, 6'd15, 6'd15, 6'd15,
|
||||
6'd15, 6'd16, 6'd16, 6'd16, 6'd17, 6'd17, 6'd17, 6'd17,
|
||||
6'd18, 6'd18, 6'd18, 6'd19, 6'd19, 6'd19, 6'd19, 6'd20,
|
||||
6'd20, 6'd20, 6'd21, 6'd21, 6'd21, 6'd21, 6'd22, 6'd22,
|
||||
6'd22, 6'd23, 6'd23, 6'd23, 6'd23, 6'd24, 6'd24, 6'd24,
|
||||
6'd25, 6'd25, 6'd25, 6'd25, 6'd26, 6'd26, 6'd26, 6'd27,
|
||||
6'd27, 6'd27, 6'd27, 6'd28, 6'd28, 6'd28, 6'd29, 6'd29,
|
||||
6'd29, 6'd29, 6'd30, 6'd30, 6'd30, 6'd31, 6'd31, 6'd31,
|
||||
6'd31, 6'd32, 6'd32, 6'd32, 6'd33, 6'd33, 6'd33, 6'd33,
|
||||
6'd34, 6'd34, 6'd34, 6'd35, 6'd35, 6'd35, 6'd35, 6'd36,
|
||||
6'd36, 6'd36, 6'd36, 6'd37, 6'd37, 6'd37, 6'd38, 6'd38,
|
||||
6'd38, 6'd38, 6'd39, 6'd39, 6'd39, 6'd40, 6'd40, 6'd40,
|
||||
6'd40, 6'd41, 6'd41, 6'd41, 6'd42, 6'd42, 6'd42, 6'd42,
|
||||
6'd43, 6'd43, 6'd43, 6'd44, 6'd44, 6'd44, 6'd44, 6'd45,
|
||||
6'd45, 6'd45, 6'd46, 6'd46, 6'd46, 6'd46, 6'd47, 6'd47,
|
||||
6'd47, 6'd48, 6'd48, 6'd48, 6'd48, 6'd49, 6'd49, 6'd49,
|
||||
6'd50, 6'd50, 6'd50, 6'd50, 6'd51, 6'd51, 6'd51, 6'd52,
|
||||
6'd52, 6'd52, 6'd52, 6'd53, 6'd53, 6'd53, 6'd54, 6'd54,
|
||||
6'd54, 6'd54, 6'd55, 6'd55, 6'd55, 6'd56, 6'd56, 6'd56,
|
||||
6'd56, 6'd57, 6'd57, 6'd57, 6'd58, 6'd58, 6'd58, 6'd58,
|
||||
6'd59, 6'd59, 6'd59, 6'd60, 6'd60, 6'd60, 6'd60, 6'd61,
|
||||
6'd61, 6'd61, 6'd62, 6'd62, 6'd62, 6'd62, 6'd63, 6'd63,
|
||||
6'd63
|
||||
};
|
||||
|
||||
wire [18:0] y_8 = 19'd04096 + ({red, 8'd0} + {red, 3'd0}) + ({green, 9'd0} + {green, 2'd0}) + ({blue, 6'd0} + {blue, 5'd0} + {blue, 2'd0});
|
||||
wire [18:0] pb_8 = 19'd32768 - ({red, 7'd0} + {red, 4'd0} + {red, 3'd0}) - ({green, 8'd0} + {green, 5'd0} + {green, 3'd0}) + ({blue, 8'd0} + {blue, 7'd0} + {blue, 6'd0});
|
||||
wire [18:0] pr_8 = 19'd32768 + ({red, 8'd0} + {red, 7'd0} + {red, 6'd0}) - ({green, 8'd0} + {green, 6'd0} + {green, 5'd0} + {green, 4'd0} + {green, 3'd0}) - ({blue, 6'd0} + {blue , 3'd0});
|
||||
|
||||
wire [7:0] y_i = ( y_8[17:8] < 16) ? 8'd16 : ( y_8[17:8] > 235) ? 8'd235 : y_8[15:8];
|
||||
wire [7:0] pb_i = (pb_8[17:8] < 16) ? 8'd16 : (pb_8[17:8] > 240) ? 8'd240 : pb_8[15:8];
|
||||
wire [7:0] pr_i = (pr_8[17:8] < 16) ? 8'd16 : (pr_8[17:8] > 240) ? 8'd240 : pr_8[15:8];
|
||||
|
||||
assign pr = yuv_full[pr_i - 8'd16];
|
||||
assign y = yuv_full[y_i - 8'd16];
|
||||
assign pb = yuv_full[pb_i - 8'd16];
|
||||
|
||||
endmodule
|
||||
@@ -183,55 +183,35 @@ assign r = status[2] & frame_line ? 4'h4 : blankn ? rr : 4'd0;
|
||||
assign g = status[2] & frame_line ? 4'h0 : blankn ? gg : 4'd0;
|
||||
assign b = status[2] & frame_line ? 4'h0 : blankn ? bb : 4'd0;
|
||||
|
||||
wire csync_out = ~(hs ^ vs);
|
||||
|
||||
assign VGA_HS = ypbpr ? csync_out : hs;
|
||||
assign VGA_VS = ypbpr ? 1'b1 : vs;
|
||||
|
||||
wire [5:0] osd_r_o, osd_g_o, osd_b_o;
|
||||
|
||||
osd osd
|
||||
mist_video #(.COLOR_DEPTH(4)) mist_video
|
||||
(
|
||||
.clk_sys(clk_24),
|
||||
.SPI_DI(SPI_DI),
|
||||
.SPI_SCK(SPI_SCK),
|
||||
.SPI_SS3(SPI_SS3),
|
||||
.R_in({r, 2'b00}),
|
||||
.G_in({g, 2'b00}),
|
||||
.B_in({b, 2'b00}),
|
||||
.scandoubler_disable(1),
|
||||
.rotate(2'b00),
|
||||
.ypbpr(ypbpr),
|
||||
.HSync(hs),
|
||||
.VSync(vs),
|
||||
.R_out(osd_r_o),
|
||||
.G_out(osd_g_o),
|
||||
.B_out(osd_b_o)
|
||||
.R(r),
|
||||
.G(g),
|
||||
.B(b),
|
||||
.VGA_HS(VGA_HS),
|
||||
.VGA_VS(VGS_VS),
|
||||
.VGA_R(VGA_R),
|
||||
.VGA_G(VGA_G),
|
||||
.VGA_B(VGA_B)
|
||||
);
|
||||
|
||||
wire [5:0] y, pb, pr;
|
||||
|
||||
rgb2ypbpr rgb2ypbpr
|
||||
(
|
||||
.red ( osd_r_o ),
|
||||
.green ( osd_g_o ),
|
||||
.blue ( osd_b_o ),
|
||||
.y ( y ),
|
||||
.pb ( pb ),
|
||||
.pr ( pr )
|
||||
);
|
||||
|
||||
assign VGA_R = ypbpr?pr:osd_r_o;
|
||||
assign VGA_G = ypbpr? y:osd_g_o;
|
||||
assign VGA_B = ypbpr?pb:osd_b_o;
|
||||
|
||||
////////////////////////////////////////////
|
||||
|
||||
mist_io #(.STRLEN(($size(CONF_STR)>>3))) mist_io (
|
||||
user_io #(.STRLEN(($size(CONF_STR)>>3))) user_io (
|
||||
.clk_sys ( clk_24 ),
|
||||
.conf_str ( CONF_STR ),
|
||||
.SPI_SCK ( SPI_SCK ),
|
||||
.CONF_DATA0 ( CONF_DATA0 ),
|
||||
.SPI_SS2 ( SPI_SS2 ),
|
||||
.SPI_DO ( SPI_DO ),
|
||||
.SPI_DI ( SPI_DI ),
|
||||
.SPI_CLK ( SPI_SCK ),
|
||||
.SPI_SS_IO ( CONF_DATA0 ),
|
||||
.SPI_MISO ( SPI_DO ),
|
||||
.SPI_MOSI ( SPI_DI ),
|
||||
.buttons ( buttons ),
|
||||
.switches ( switches ),
|
||||
.ypbpr ( ypbpr ),
|
||||
@@ -241,7 +221,14 @@ mist_io #(.STRLEN(($size(CONF_STR)>>3))) mist_io (
|
||||
.joystick_1 ( joystick_1 ),
|
||||
.joystick_analog_0( joy_ana_0 ),
|
||||
.joystick_analog_1( joy_ana_1 ),
|
||||
.status ( status ),
|
||||
.status ( status )
|
||||
);
|
||||
|
||||
data_io data_io (
|
||||
.clk_sys ( clk_24 ),
|
||||
.SPI_SCK ( SPI_SCK ),
|
||||
.SPI_SS2 ( SPI_SS2 ),
|
||||
.SPI_DI ( SPI_DI ),
|
||||
.ioctl_download( ioctl_downl ),
|
||||
.ioctl_index ( ioctl_index ),
|
||||
.ioctl_wr ( ioctl_wr ),
|
||||
|
||||
@@ -344,6 +344,7 @@ set_global_assignment -name PHYSICAL_SYNTHESIS_MAP_LOGIC_TO_MEMORY_FOR_AREA ON
|
||||
set_global_assignment -name ALLOW_ANY_RAM_SIZE_FOR_RECOGNITION ON
|
||||
set_global_assignment -name ALLOW_ANY_ROM_SIZE_FOR_RECOGNITION ON
|
||||
set_global_assignment -name USE_SIGNALTAP_FILE output_files/sdram.stp
|
||||
set_global_assignment -name QIP_FILE ../../common/mist/mist.qip
|
||||
set_global_assignment -name SDC_FILE vectrex_MiST.out.sdc
|
||||
set_global_assignment -name SYSTEMVERILOG_FILE rtl/vectrex_mist.sv
|
||||
set_global_assignment -name SYSTEMVERILOG_FILE rtl/sdram.sv
|
||||
@@ -353,7 +354,6 @@ set_global_assignment -name VHDL_FILE rtl/m6522a.vhd
|
||||
set_global_assignment -name VHDL_FILE rtl/gen_ram.vhd
|
||||
set_global_assignment -name VHDL_FILE rtl/cpu09l_128a.vhd
|
||||
set_global_assignment -name VHDL_FILE rtl/dac.vhd
|
||||
set_global_assignment -name VERILOG_FILE rtl/mist_io.v
|
||||
set_global_assignment -name VERILOG_FILE rtl/pll.v
|
||||
set_global_assignment -name VERILOG_FILE rtl/mc6809is.v
|
||||
set_global_assignment -name VERILOG_FILE rtl/mc6809.v
|
||||
@@ -361,7 +361,5 @@ set_global_assignment -name VHDL_FILE rtl/sp0256.vhd
|
||||
set_global_assignment -name VHDL_FILE rtl/sp0256_al2_decoded.vhd
|
||||
set_global_assignment -name VHDL_FILE rtl/vectrex_speakjet.vhd
|
||||
set_global_assignment -name SYSTEMVERILOG_FILE rtl/YM2149.sv
|
||||
set_global_assignment -name VERILOG_FILE rtl/osd.v
|
||||
set_global_assignment -name SYSTEMVERILOG_FILE rtl/rgb2ypbpr.sv
|
||||
set_global_assignment -name SIGNALTAP_FILE output_files/sdram.stp
|
||||
set_instance_assignment -name PARTITION_HIERARCHY root_partition -to | -section_id Top
|
||||
Reference in New Issue
Block a user