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FPGA: Add system reset API
Add API address to trigger system reset. When written to will send system_reset signal to the reset generator, which then perform a complete reset cycle of the FPGA system. Signed-off-by: Joachim Strömbergson <joachim@assured.se>
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c6105a3f769c0846a9619e194ed3bc171467612b9fef9edc1aaeda4941316ff5 application_fpga.bin
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24e642b0dc78a7dbf4cd87c223dd26eefb1ad444c96858e1c2b373f35701ccc0 application_fpga.bin
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@ -248,6 +248,32 @@ see the datasheet:
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https://www.mouser.se/datasheet/2/949/w25q80dv_dl_revh_10022015-1489677.pdf
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## System Reset
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The TK1 includes an ability for FW and applications to trigger a
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hardware reset of the FPGA by writing to an API address.
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The hardware reset will force all registers that are in the Tkey FPGA
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design reset circuit to be reset to their default values. Basically
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this is all registers in the Tkey FPGA design.
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The reset will not clear the RAM. However since the CPU program
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counter is reset to its reset vector, the CPU will unconditionally
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start executing the FW. As part of the device initialization, the FW
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will fill the RAM with random data, overwriting any app and
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data present in the RAM before the reset was triggered.
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The hardware reset will not force the FPGA to read its
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configuration. That requires a power cycle of the Tkey device.
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The reset is controlled by the following API address. Note that
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any value written to the address will trigger the reset.
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```
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localparam ADDR_SYSTEM_RESET = 8'h70;
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```
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## Implementation
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The core is implemented as a single module. Future versions will
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@ -24,6 +24,7 @@ module tk1(
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input wire cpu_instr,
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input wire cpu_valid,
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output wire force_trap,
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output system_reset,
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output wire [14 : 0] ram_addr_rand,
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output wire [31 : 0] ram_data_rand,
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@ -93,6 +94,8 @@ module tk1(
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localparam ADDR_CPU_MON_FIRST = 8'h61;
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localparam ADDR_CPU_MON_LAST = 8'h62;
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localparam ADDR_SYSTEM_RESET = 8'h70;
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`ifdef INCLUDE_SPI_MASTER
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localparam ADDR_SPI_EN = 8'h80;
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localparam ADDR_SPI_XFER = 8'h81;
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@ -146,6 +149,9 @@ module tk1(
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reg [31 : 0] ram_data_rand_reg;
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reg ram_data_rand_we;
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reg system_reset_reg;
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reg system_reset_new;
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reg cpu_mon_en_reg;
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reg cpu_mon_en_we;
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reg [31 : 0] cpu_mon_first_reg;
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@ -196,6 +202,8 @@ module tk1(
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assign ram_addr_rand = ram_addr_rand_reg;
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assign ram_data_rand = ram_data_rand_reg;
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assign system_reset = system_reset_reg;
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//----------------------------------------------------------------
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// Module instance.
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@ -276,11 +284,14 @@ module tk1(
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ram_addr_rand_reg <= 15'h0;
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ram_data_rand_reg <= 32'h0;
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force_trap_reg <= 1'h0;
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system_reset_reg <= 1'h0;
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end
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else begin
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cpu_trap_ctr_reg <= cpu_trap_ctr_new;
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system_reset_reg <= system_reset_new;
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gpio1_reg[0] <= gpio1;
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gpio1_reg[1] <= gpio1_reg[0];
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@ -429,6 +440,7 @@ module tk1(
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cdi_mem_we = 1'h0;
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ram_addr_rand_we = 1'h0;
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ram_data_rand_we = 1'h0;
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system_reset_new = 1'h0;
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cpu_mon_en_we = 1'h0;
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cpu_mon_first_we = 1'h0;
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cpu_mon_last_we = 1'h0;
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@ -473,6 +485,10 @@ module tk1(
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end
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end
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if (address == ADDR_SYSTEM_RESET) begin
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system_reset_new = 1'h1;
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end
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if (address == ADDR_BLAKE2S) begin
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if (!switch_app_reg) begin
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blake2s_addr_we = 1'h1;
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@ -144,6 +144,8 @@
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#define TK1_MMIO_TK1_CPU_MON_FIRST 0xff000184
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#define TK1_MMIO_TK1_CPU_MON_LAST 0xff000188
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#define TK1_MMIO_TK1_SYSTEM_RESET 0xff0001C0
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#define TK1_MMIO_TK1_SPI_EN 0xff000200
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#define TK1_MMIO_TK1_SPI_XFER 0xff000204
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#define TK1_MMIO_TK1_SPI_DATA 0xff000208
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@ -148,6 +148,7 @@ module application_fpga(
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wire force_trap;
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wire [14 : 0] ram_addr_rand;
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wire [31 : 0] ram_data_rand;
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wire tk1_system_reset;
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/* verilator lint_on UNOPTFLAT */
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@ -155,7 +156,11 @@ module application_fpga(
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// Module instantiations.
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//----------------------------------------------------------------
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clk_reset_gen #(.RESET_CYCLES(200))
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reset_gen_inst(.clk(clk), .rst_n(reset_n));
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reset_gen_inst(
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.sys_reset(tk1_system_reset),
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.clk(clk),
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.rst_n(reset_n)
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);
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picorv32 #(
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@ -321,6 +326,8 @@ module application_fpga(
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.cpu_trap(cpu_trap),
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.force_trap(force_trap),
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.system_reset(tk1_system_reset),
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.ram_addr_rand(ram_addr_rand),
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.ram_data_rand(ram_data_rand),
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@ -18,6 +18,8 @@
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module clk_reset_gen #(parameter RESET_CYCLES = 200)
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(
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input wire sys_reset,
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output wire clk,
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output wire rst_n
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);
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@ -33,6 +35,12 @@ module clk_reset_gen #(parameter RESET_CYCLES = 200)
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reg rst_n_reg = 1'h0;
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reg rst_n_new;
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reg sys_reset_reg;
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//----------------------------------------------------------------
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// Wires.
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//----------------------------------------------------------------
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wire hfosc_clk;
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wire pll_clk;
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@ -94,6 +102,7 @@ module clk_reset_gen #(parameter RESET_CYCLES = 200)
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always @(posedge clk)
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begin : reg_update
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rst_n_reg <= rst_n_new;
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sys_reset_reg <= sys_reset;
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if (rst_ctr_we)
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rst_ctr_reg <= rst_ctr_new;
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@ -109,7 +118,12 @@ module clk_reset_gen #(parameter RESET_CYCLES = 200)
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rst_ctr_new = 8'h0;
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rst_ctr_we = 1'h0;
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if (rst_ctr_reg < RESET_CYCLES) begin
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if (sys_reset_reg) begin
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rst_ctr_new = 8'h0;
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rst_ctr_we = 1'h1;
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end
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else if (rst_ctr_reg < RESET_CYCLES) begin
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rst_n_new = 1'h0;
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rst_ctr_new = rst_ctr_reg + 1'h1;
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rst_ctr_we = 1'h1;
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