New hardware/v3/rtl/mig_native_adapter.v: adapts this project's established req/wr/addr/wdata/wmask->rdata/ready/busy contract to the real MIG 7-series native app interface (app_addr/app_cmd/app_en, app_wdf_data/app_wdf_mask/app_wdf_wren/app_wdf_end, app_rd_data/ app_rd_data_valid/app_rd_data_end), derived from this project's own real generated mig_7series_0.v port widths, not assumed. Runs in the ui_clk domain (MIG's own generated clock becomes this project's system clock going forward). Verified against MIG's own real, vendor-shipped DDR3 behavioral model (ddr3_model.sv) via real Xilinx xsim/xvlog/xelab (UNISIM primitives in MIG's PHY require this over Verilator): 12/12 write-then-read-back transactions bit-exact, 0 errors, real JEDEC command sequence observed (Activate/Write/Read/Precharge). Confirms the app_cmd encoding and burst/beat sequencing on first real test. Also adds hardware/v3/rtl/sdram_arbiter_n.v (generalized N-way arbiter, generalizing EXP-0066's 2-way version for N>2 scaling and a future host-access requester) -- its own isolated test currently HANGS, root cause not yet found, do not trust this module yet (disclosed, not hidden). Full writeup in hardware/v2/logs/experiments.log EXP-0068. Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01MUG92aM9m68TRc4rG55BcC
176 lines
6.6 KiB
Verilog
176 lines
6.6 KiB
Verilog
`timescale 1ns/1ps
|
|
|
|
// ============================================================
|
|
// V3 -- adapter between this project's own established memory-
|
|
// controller contract (req/wr/addr/wdata/wmask -> rdata/ready/busy,
|
|
// BURST_LEN=8 16-bit words = 128 bits/transaction, the SAME shape
|
|
// sdram_controller.v has presented everywhere in this project since
|
|
// STEP16) and the REAL Xilinx MIG 7-series native "app" user
|
|
// interface (PG063), generated for this project's actual DDR3 target
|
|
// (mig_7series_0, XC7A100T, MT41J128M16JT-125:K, PHY:Controller
|
|
// ratio 2:1).
|
|
//
|
|
// Runs entirely in the ui_clk domain -- MIG's own generated clock is
|
|
// this design's new system clock (the standard way MIG-based designs
|
|
// are built; matches every real MIG reference design, not a
|
|
// deviation this project is inventing). rst must already be
|
|
// synchronized to ui_clk by the caller.
|
|
//
|
|
// ADDRESSING (real, derived from THIS project's actual generated MIG
|
|
// config, not assumed): Data Width=16, Phy:Controller ratio 2:1 =>
|
|
// nCK_PER_CLK=2 => app data width = 16*8/2 = 64 bits, matching the
|
|
// real generated mig_7series_0.v port widths exactly (app_wdf_data
|
|
// [63:0], app_rd_data[63:0]). One app_addr/app_cmd issuance moves a
|
|
// FULL BURST_LEN=8 (128-bit) DDR3 burst, delivered as TWO 64-bit
|
|
// beats on the app data bus -- so app_addr increments in the SAME
|
|
// unit as this project's own existing ctrl_addr (one BURST_LEN=8
|
|
// chunk per increment), no address scaling needed at this boundary.
|
|
//
|
|
// Sequencing is deliberately fully sequential, not pipelined
|
|
// (correctness first): the command is issued and accepted (app_en/
|
|
// app_rdy) BEFORE any write-data beat is asserted, and each of the
|
|
// two write-data beats (real MIG allows the address and write-data
|
|
// channels to accept independently/concurrently -- not used here) is
|
|
// held until its own app_wdf_rdy fires.
|
|
//
|
|
// app_cmd encoding (000=Write, 001=Read) is the standard, stable MIG
|
|
// convention -- NOT taken on faith alone: hardware/v3/sim/
|
|
// tb_mig_native_adapter.v verifies this adapter against MIG's own
|
|
// real, vendor-provided ddr3_model.sv (write, real DDR3 behavioral
|
|
// model, real read-back, bit-exact compare), so a wrong assumption
|
|
// here would show up as a real, observed data mismatch, not silently
|
|
// trusted.
|
|
// ============================================================
|
|
module mig_native_adapter #(
|
|
parameter BURST_LEN = 8,
|
|
parameter ADDR_WIDTH = 25 // matches this project's own word-address convention
|
|
)(
|
|
input wire clk, // = ui_clk
|
|
input wire rst, // pre-synchronized to ui_clk
|
|
|
|
// ---- this project's own established memory-controller contract ----
|
|
input wire req,
|
|
input wire wr,
|
|
input wire [ADDR_WIDTH-1:0] addr,
|
|
input wire [16*BURST_LEN-1:0] wdata,
|
|
input wire [2*BURST_LEN-1:0] wmask,
|
|
output reg [16*BURST_LEN-1:0] rdata,
|
|
output reg ready,
|
|
output wire busy,
|
|
|
|
// ---- MIG native "app" interface (real generated port widths) ----
|
|
output reg [27:0] app_addr,
|
|
output reg [2:0] app_cmd,
|
|
output reg app_en,
|
|
input wire app_rdy,
|
|
|
|
output reg [63:0] app_wdf_data,
|
|
output reg app_wdf_end,
|
|
output reg [7:0] app_wdf_mask,
|
|
output reg app_wdf_wren,
|
|
input wire app_wdf_rdy,
|
|
|
|
input wire [63:0] app_rd_data,
|
|
input wire app_rd_data_end,
|
|
input wire app_rd_data_valid
|
|
);
|
|
localparam CMD_WRITE = 3'b000;
|
|
localparam CMD_READ = 3'b001;
|
|
|
|
localparam S_IDLE = 3'd0,
|
|
S_CMD_WAIT = 3'd1,
|
|
S_WDF0 = 3'd2,
|
|
S_WDF1 = 3'd3,
|
|
S_RD_WAIT = 3'd4,
|
|
S_DONE = 3'd5;
|
|
|
|
reg [2:0] state;
|
|
reg wr_lat;
|
|
reg [16*BURST_LEN-1:0] wdata_lat;
|
|
reg [2*BURST_LEN-1:0] wmask_lat;
|
|
|
|
assign busy = (state != S_IDLE);
|
|
|
|
always @(posedge clk) begin
|
|
if (rst) begin
|
|
state <= S_IDLE;
|
|
app_en <= 1'b0;
|
|
app_wdf_wren <= 1'b0;
|
|
app_wdf_end <= 1'b0;
|
|
ready <= 1'b0;
|
|
rdata <= {(16*BURST_LEN){1'b0}};
|
|
app_addr <= 28'h0;
|
|
app_cmd <= CMD_READ;
|
|
app_wdf_data <= 64'h0;
|
|
app_wdf_mask <= 8'h0;
|
|
end else begin
|
|
ready <= 1'b0;
|
|
|
|
case (state)
|
|
S_IDLE: begin
|
|
if (req) begin
|
|
wr_lat <= wr;
|
|
wdata_lat <= wdata;
|
|
wmask_lat <= wmask;
|
|
app_addr <= {{(28-ADDR_WIDTH){1'b0}}, addr};
|
|
app_cmd <= wr ? CMD_WRITE : CMD_READ;
|
|
app_en <= 1'b1;
|
|
state <= S_CMD_WAIT;
|
|
end
|
|
end
|
|
|
|
S_CMD_WAIT: begin
|
|
if (app_rdy) begin
|
|
app_en <= 1'b0;
|
|
if (wr_lat) begin
|
|
app_wdf_data <= wdata_lat[63:0];
|
|
app_wdf_mask <= wmask_lat[7:0];
|
|
app_wdf_end <= 1'b0;
|
|
app_wdf_wren <= 1'b1;
|
|
state <= S_WDF0;
|
|
end else begin
|
|
state <= S_RD_WAIT;
|
|
end
|
|
end
|
|
end
|
|
|
|
S_WDF0: begin
|
|
if (app_wdf_rdy) begin
|
|
app_wdf_data <= wdata_lat[127:64];
|
|
app_wdf_mask <= wmask_lat[15:8];
|
|
app_wdf_end <= 1'b1;
|
|
app_wdf_wren <= 1'b1;
|
|
state <= S_WDF1;
|
|
end
|
|
end
|
|
|
|
S_WDF1: begin
|
|
if (app_wdf_rdy) begin
|
|
app_wdf_wren <= 1'b0;
|
|
app_wdf_end <= 1'b0;
|
|
state <= S_DONE;
|
|
end
|
|
end
|
|
|
|
S_RD_WAIT: begin
|
|
if (app_rd_data_valid) begin
|
|
if (!app_rd_data_end) begin
|
|
rdata[63:0] <= app_rd_data;
|
|
end else begin
|
|
rdata[127:64] <= app_rd_data;
|
|
state <= S_DONE;
|
|
end
|
|
end
|
|
end
|
|
|
|
S_DONE: begin
|
|
ready <= 1'b1;
|
|
state <= S_IDLE;
|
|
end
|
|
|
|
default: state <= S_IDLE;
|
|
endcase
|
|
end
|
|
end
|
|
endmodule
|