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-rw-r--r--src/rtl/coretest_hashes.v318
-rw-r--r--src/rtl/novena_fpga.v147
2 files changed, 465 insertions, 0 deletions
diff --git a/src/rtl/coretest_hashes.v b/src/rtl/coretest_hashes.v
new file mode 100644
index 0000000..5076047
--- /dev/null
+++ b/src/rtl/coretest_hashes.v
@@ -0,0 +1,318 @@
+//======================================================================
+//
+// coretest_hashes.v
+// -----------------
+// Top level wrapper that creates the Cryptech coretest system.
+// The wrapper contains instances of external interface, coretest
+// and the core to be tested. And if more than one core is
+// present the wrapper also includes address and data muxes.
+//
+//
+// Author: Joachim Strombergson
+// Copyright (c) 2014, SUNET
+// All rights reserved.
+//
+// Redistribution and use in source and binary forms, with or
+// without modification, are permitted provided that the following
+// conditions are met:
+//
+// 1. Redistributions of source code must retain the above copyright
+// notice, this list of conditions and the following disclaimer.
+//
+// 2. Redistributions in binary form must reproduce the above copyright
+// notice, this list of conditions and the following disclaimer in
+// the documentation and/or other materials provided with the
+// distribution.
+//
+// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
+// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
+// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
+// FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE
+// COPYRIGHT OWNER 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.
+//
+//======================================================================
+
+module coretest_hashes(
+ input wire clk,
+ input wire reset_n,
+
+ // External interface.
+ input wire SCL,
+ input wire SDA,
+ output wire SDA_pd,
+
+ output wire [7 : 0] debug
+ );
+
+
+ //----------------------------------------------------------------
+ // Internal constant and parameter definitions.
+ //----------------------------------------------------------------
+ parameter I2C_ADDR_PREFIX = 8'h00;
+ parameter SHA1_ADDR_PREFIX = 8'h10;
+ parameter SHA256_ADDR_PREFIX = 8'h20;
+ parameter SHA512_ADDR_PREFIX = 8'h30;
+
+
+ //----------------------------------------------------------------
+ // Wires.
+ //----------------------------------------------------------------
+ // Coretest connections.
+ wire coretest_reset_n;
+ wire coretest_cs;
+ wire coretest_we;
+ wire [15 : 0] coretest_address;
+ wire [31 : 0] coretest_write_data;
+ reg [31 : 0] coretest_read_data;
+ reg coretest_error;
+
+ // i2c connections
+ wire i2c_rxd_syn;
+ wire [7 : 0] i2c_rxd_data;
+ wire i2c_rxd_ack;
+ wire i2c_txd_syn;
+ wire [7 : 0] i2c_txd_data;
+ wire i2c_txd_ack;
+ reg i2c_cs;
+ reg i2c_we;
+ reg [7 : 0] i2c_address;
+ reg [31 : 0] i2c_write_data;
+ wire [31 : 0] i2c_read_data;
+ wire i2c_error;
+ wire [7 : 0] i2c_debug;
+
+ // sha1 connections.
+ reg sha1_cs;
+ reg sha1_we;
+ reg [7 : 0] sha1_address;
+ reg [31 : 0] sha1_write_data;
+ wire [31 : 0] sha1_read_data;
+ wire sha1_error;
+ wire [7 : 0] sha1_debug;
+
+ // sha256 connections.
+ reg sha256_cs;
+ reg sha256_we;
+ reg [7 : 0] sha256_address;
+ reg [31 : 0] sha256_write_data;
+ wire [31 : 0] sha256_read_data;
+ wire sha256_error;
+ wire [7 : 0] sha256_debug;
+
+ // sha512 connections.
+ reg sha512_cs;
+ reg sha512_we;
+ reg [7 : 0] sha512_address;
+ reg [31 : 0] sha512_write_data;
+ wire [31 : 0] sha512_read_data;
+ wire sha512_error;
+ wire [7 : 0] sha512_debug;
+
+
+ //----------------------------------------------------------------
+ // Concurrent assignment.
+ //----------------------------------------------------------------
+ assign debug = i2c_debug;
+
+
+ //----------------------------------------------------------------
+ // Core instantiations.
+ //----------------------------------------------------------------
+ coretest coretest(
+ .clk(clk),
+ .reset_n(reset_n),
+
+ .rx_syn(i2c_rxd_syn),
+ .rx_data(i2c_rxd_data),
+ .rx_ack(i2c_rxd_ack),
+
+ .tx_syn(i2c_txd_syn),
+ .tx_data(i2c_txd_data),
+ .tx_ack(i2c_txd_ack),
+
+ // Interface to the core being tested.
+ .core_reset_n(coretest_reset_n),
+ .core_cs(coretest_cs),
+ .core_we(coretest_we),
+ .core_address(coretest_address),
+ .core_write_data(coretest_write_data),
+ .core_read_data(coretest_read_data),
+ .core_error(coretest_error)
+ );
+
+
+ i2c i2c(
+ .clk(clk),
+ .reset_n(!reset_n), // active high
+
+ .SCL(SCL),
+ .SDA(SDA),
+ .SDA_pd(SDA_pd),
+ .i2c_device_addr(8'h1E),
+
+ .rxd_syn(i2c_rxd_syn),
+ .rxd_data(i2c_rxd_data),
+ .rxd_ack(i2c_rxd_ack),
+
+ .txd_syn(i2c_txd_syn),
+ .txd_data(i2c_txd_data),
+ .txd_ack(i2c_txd_ack),
+
+ .cs(i2c_cs),
+ .we(i2c_we),
+ .address(i2c_address),
+ .write_data(i2c_write_data),
+ .read_data(i2c_read_data),
+ .error(i2c_error),
+
+ .debug(i2c_debug)
+ );
+
+
+ sha1 sha1(
+ // Clock and reset.
+ .clk(clk),
+ .reset_n(reset_n),
+
+ // Control.
+ .cs(sha1_cs),
+ .we(sha1_we),
+
+ // Data ports.
+ .address(sha1_address),
+ .write_data(sha1_write_data),
+ .read_data(sha1_read_data),
+ .error(sha1_error)
+ );
+
+
+ sha256 sha256(
+ // Clock and reset.
+ .clk(clk),
+ .reset_n(reset_n),
+
+ // Control.
+ .cs(sha256_cs),
+ .we(sha256_we),
+
+ // Data ports.
+ .address(sha256_address),
+ .write_data(sha256_write_data),
+ .read_data(sha256_read_data),
+ .error(sha256_error)
+ );
+
+
+ sha512 sha512(
+ // Clock and reset.
+ .clk(clk),
+ .reset_n(reset_n),
+
+ // Control.
+ .cs(sha512_cs),
+ .we(sha512_we),
+
+ // Data ports.
+ .address(sha512_address),
+ .write_data(sha512_write_data),
+ .read_data(sha512_read_data),
+ .error(sha512_error)
+ );
+
+
+ //----------------------------------------------------------------
+ // address_mux
+ //
+ // Combinational data mux that handles addressing between
+ // cores using the 32-bit memory like interface.
+ //----------------------------------------------------------------
+ always @*
+ begin : address_mux
+ // Default assignments.
+ coretest_read_data = 32'h00000000;
+ coretest_error = 0;
+
+ i2c_cs = 0;
+ i2c_we = 0;
+ i2c_address = 8'h00;
+ i2c_write_data = 32'h00000000;
+
+ sha1_cs = 0;
+ sha1_we = 0;
+ sha1_address = 8'h00;
+ sha1_write_data = 32'h00000000;
+
+ sha256_cs = 0;
+ sha256_we = 0;
+ sha256_address = 8'h00;
+ sha256_write_data = 32'h00000000;
+
+ sha512_cs = 0;
+ sha512_we = 0;
+ sha512_address = 8'h00;
+ sha512_write_data = 32'h00000000;
+
+
+ case (coretest_address[15 : 8])
+ I2C_ADDR_PREFIX:
+ begin
+ i2c_cs = coretest_cs;
+ i2c_we = coretest_we;
+ i2c_address = coretest_address[7 : 0];
+ i2c_write_data = coretest_write_data;
+ coretest_read_data = i2c_read_data;
+ coretest_error = i2c_error;
+ end
+
+
+ SHA1_ADDR_PREFIX:
+ begin
+ sha1_cs = coretest_cs;
+ sha1_we = coretest_we;
+ sha1_address = coretest_address[7 : 0];
+ sha1_write_data = coretest_write_data;
+ coretest_read_data = sha1_read_data;
+ coretest_error = sha1_error;
+ end
+
+
+ SHA256_ADDR_PREFIX:
+ begin
+ sha256_cs = coretest_cs;
+ sha256_we = coretest_we;
+ sha256_address = coretest_address[7 : 0];
+ sha256_write_data = coretest_write_data;
+ coretest_read_data = sha256_read_data;
+ coretest_error = sha256_error;
+ end
+
+
+ SHA512_ADDR_PREFIX:
+ begin
+ sha512_cs = coretest_cs;
+ sha512_we = coretest_we;
+ sha512_address = coretest_address[7 : 0];
+ sha512_write_data = coretest_write_data;
+ coretest_read_data = sha512_read_data;
+ coretest_error = sha512_error;
+ end
+
+
+ default:
+ begin
+ end
+ endcase // case (coretest_address[15 : 8])
+ end // address_mux
+
+endmodule // coretest_hashes
+
+//======================================================================
+// EOF coretest_hashes.v
+//======================================================================
diff --git a/src/rtl/novena_fpga.v b/src/rtl/novena_fpga.v
new file mode 100644
index 0000000..fd0f667
--- /dev/null
+++ b/src/rtl/novena_fpga.v
@@ -0,0 +1,147 @@
+//////////////////////////////////////////////////////////////////////////////
+// Copyright (c) 2013, Andrew "bunnie" Huang
+//
+// See the NOTICE file distributed with this work for additional
+// information regarding copyright ownership. The copyright holder
+// 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,
+// code 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.
+//////////////////////////////////////////////////////////////////////////////
+
+/// note: must set "-g UnusedPin:Pullnone" to avoid conflicts with unused pins
+
+`timescale 1ns / 1ps
+
+module novena_fpga(
+ // CPU side mapping
+ input wire [15:0] EIM_DA,
+ output reg EIM_A16, // relay of the trigger output
+ output reg EIM_A17, // relay of the trigger data (read path)
+
+ // connector side mapping
+ //input wire F_LVDS_N3, // output of trigger
+ //input wire F_DX2, // output of trigger
+ //output wire F_LVDS_N5, // trigger reset
+ output wire F_LVDS_P4, // trigger reset
+ //inout wire F_LVDS_P5, // trigger data (bidir)
+ //input wire F_DX18, // trigger data in from sticker (DUT->CPU)
+ output wire F_LVDS_P11, // trigger data out to sticker (CPU->DUT)
+ //output wire F_LVDS_N8, // trigger clock
+ //output wire F_DX14, // trigger clock
+
+ output wire F_LVDS_N7, // drive TPI data line
+ output wire F_LVDS_P7, // drive TPI signal lines
+
+ output wire F_DX15, // 1 = drive 5V, 0 = drive 3V to DUT
+
+ output wire F_LVDS_CK1_N,
+ output wire F_LVDS_CK1_P,
+ output wire F_LVDS_N11,
+
+ output wire F_LVDS_N0,
+ output wire F_LVDS_P0,
+ output wire F_DX1,
+
+ output wire F_LVDS_N15,
+ output wire F_LVDS_P15,
+ output wire F_LVDS_NC,
+
+ //input wire F_DX11,
+ //input wire F_DX3,
+ //input wire F_DX0,
+
+ //input wire F_LVDS_CK0_P,
+ //input wire F_LVDS_CK0_N,
+ //input wire F_LVDS_P9,
+
+ //input wire [1:0] EIM_CS,
+ //input wire EIM_LBA,
+
+ input wire CLK2_N,
+ input wire CLK2_P,
+ output wire FPGA_LED2,
+
+ input wire I2C3_SCL,
+ inout wire I2C3_SDA,
+
+ input wire RESETBMCU,
+ output wire F_DX17, // dummy
+ output wire APOPTOSIS
+);
+ wire clk;
+
+ IBUFGDS clkibufgds(
+ .I(CLK2_P),
+ .IB(CLK2_N),
+ .O(clk)
+ );
+
+ assign FPGA_LED2 = 1'b1;
+
+ assign APOPTOSIS = 1'b0;
+ assign F_DX15 = 1'b1; //+5V P_DUT
+
+ // OE on bank to drive signals; signal not inverted in software
+ assign F_LVDS_P7 = !EIM_DA[3];
+ // OE on bank to drive the data; signal not inverted in software
+ assign F_LVDS_N7 = !EIM_DA[4];
+ assign F_LVDS_P4 = 1'b0;
+ assign F_LVDS_P11 = 1'b0;
+ assign F_LVDS_CK1_N = 1'b0;
+ assign F_LVDS_CK1_P = 1'b0;
+ assign F_LVDS_N11 = 1'b0;
+ assign F_LVDS_N0 = 1'b0;
+ assign F_LVDS_P0 = 1'b0;
+ assign F_DX1 = 1'b0;
+ assign F_LVDS_N15 = 1'b0;
+ assign F_LVDS_P15 = 1'b0;
+ assign F_LVDS_NC = 1'b0;
+
+ // reduction and of EIM_DA, dummy-map to keep compiler quiet
+ assign F_DX17 = &EIM_DA | RESETBMCU;
+
+ ////////////////////////////////////
+ ///// I2C register set
+ ////////////////////////////////////
+ wire SDA_pd;
+ wire SDA_int;
+ reg clk25;
+
+ initial begin
+ clk25 <= 1'b0;
+ end
+ always @ (posedge clk) begin
+ clk25 <= ~clk25;
+ EIM_A16 <= 1'b0;
+ EIM_A17 <= 1'b0;
+ end
+
+ IOBUF #(
+ .DRIVE(8),
+ .SLEW("SLOW")
+ ) IOBUF_sda (
+ .IO(I2C3_SDA),
+ .I(1'b0),
+ .T(!SDA_pd),
+ .O(SDA_int)
+ );
+
+ coretest_hashes top(
+ .clk(clk25),
+ .reset_n(1'b1),
+
+ .SCL(I2C3_SCL),
+ .SDA(SDA_int),
+ .SDA_pd(SDA_pd)
+ );
+
+endmodule