PSRAM page-mode read burst support in psram_controller.v: enables the ISSI IS66WVE4M16EBLL-70BLI's page mode via its configuration-register software-access sequence at boot (disabled by default on the real chip), then keeps CE#/OE# asserted after a read so a same-page continuation only pays tAPA (20ns) instead of a full tAA (70ns) random access, with automatic tCEM-safe session closing. Only a WRITE closes the page -- byte-enable changes do not, since int8_memory_access.v alternates them on nearly every access and an early implementation attempt that treated them as a close condition measured a real regression (53.25->61.25 cycles/edge) before being corrected (53.25->37.53 cycles/edge, +42% gather bandwidth). sim/psram_model.v gained independent tAPA/tAA and tCEM enforcement (with a real Verilog same-timestep event-ordering race found and fixed via a #0 sync) so the regression proves real timing compliance, not just data correctness. New sim/psram_page_mode_tb.v; full 26-file regression suite re-run clean. Real nextpnr-ecp5 Fmax re-measured on the full spi_neuron_top system: 75.73MHz (P2, up from 55.59MHz) and 65.13MHz (P8) -- still under the 80MHz target but not regressed, with the critical path confirmed (not assumed) to remain entirely inside neuron_parallel's accumulate chain, never psram_controller. Also includes this session's other already-validated work: the graph engine (Type #2 sparse-graph network: act_buffer, graph_engine, netasm host assembler), real CABGA381 pinout (.lpf, place&route verified) and physical IRQ_N/DATA_READY_N pins, and Phase 7 timing closure logs -- all previously uncommitted, documented in WORKLOG.md. Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01LH3jPeJ3eFMfF2v8SQhpkk
157 lines
5.0 KiB
Verilog
157 lines
5.0 KiB
Verilog
`timescale 1ns/1ps
|
|
|
|
// ================================================================
|
|
// ACT_BUFFER TESTBENCH (Phase G1)
|
|
//
|
|
// Verifies:
|
|
// TEST 1 - write then read back (id 0, low end of range).
|
|
// TEST 2 - write then read back (id N_TOTAL-1, high end of range).
|
|
// TEST 3 - negative (signed) value round-trip.
|
|
// TEST 4 - read is REGISTERED: rd_data must NOT show the new value
|
|
// on the same cycle rd_addr changes, only one cycle later.
|
|
// TEST 5 - independent ports: write to addr X while reading addr Y
|
|
// in the same cycle does not disturb the read.
|
|
// TEST 6 - a burst of writes to many ids, then read them all back
|
|
// in a different order (models graph_engine's out-of-
|
|
// order gather pattern).
|
|
// ================================================================
|
|
|
|
module tb;
|
|
|
|
localparam N_TOTAL = 4096;
|
|
localparam DATA_WIDTH = 8;
|
|
localparam ADDR_WIDTH = $clog2(N_TOTAL);
|
|
localparam CLK_PERIOD = 10.0;
|
|
|
|
reg clk;
|
|
initial begin
|
|
clk = 1'b0;
|
|
forever #(CLK_PERIOD / 2.0) clk = ~clk;
|
|
end
|
|
|
|
reg wr_en;
|
|
reg [ADDR_WIDTH-1:0] wr_addr;
|
|
reg signed [DATA_WIDTH-1:0] wr_data;
|
|
|
|
reg [ADDR_WIDTH-1:0] rd_addr;
|
|
wire signed [DATA_WIDTH-1:0] rd_data;
|
|
|
|
act_buffer #(
|
|
.N_TOTAL(N_TOTAL),
|
|
.DATA_WIDTH(DATA_WIDTH)
|
|
) dut (
|
|
.clk(clk),
|
|
.wr_en(wr_en), .wr_addr(wr_addr), .wr_data(wr_data),
|
|
.rd_addr(rd_addr), .rd_data(rd_data)
|
|
);
|
|
|
|
integer errors;
|
|
|
|
task write_id(input [ADDR_WIDTH-1:0] addr, input signed [DATA_WIDTH-1:0] data);
|
|
begin
|
|
@(negedge clk);
|
|
wr_en = 1'b1;
|
|
wr_addr = addr;
|
|
wr_data = data;
|
|
@(negedge clk);
|
|
wr_en = 1'b0;
|
|
end
|
|
endtask
|
|
|
|
task check_read(input [ADDR_WIDTH-1:0] addr, input signed [DATA_WIDTH-1:0] expected, input [255:0] name);
|
|
begin
|
|
@(negedge clk);
|
|
rd_addr = addr;
|
|
@(negedge clk); // rd_data now reflects the address set above
|
|
if (rd_data !== expected) begin
|
|
$display("FAIL %0s: addr=%0d expected=%0d got=%0d", name, addr, expected, rd_data);
|
|
errors = errors + 1;
|
|
end else begin
|
|
$display("PASS %0s: addr=%0d data=%0d", name, addr, rd_data);
|
|
end
|
|
end
|
|
endtask
|
|
|
|
integer i;
|
|
|
|
initial begin
|
|
errors = 0;
|
|
wr_en = 1'b0;
|
|
wr_addr = 0;
|
|
wr_data = 0;
|
|
rd_addr = 0;
|
|
|
|
@(negedge clk);
|
|
|
|
// TEST 1 - low end of range
|
|
write_id(0, 8'sd42);
|
|
check_read(0, 8'sd42, "TEST1 id0");
|
|
|
|
// TEST 2 - high end of range
|
|
write_id(N_TOTAL-1, 8'sd100);
|
|
check_read(N_TOTAL-1, 8'sd100, "TEST2 id_max");
|
|
|
|
// TEST 3 - negative value round-trip
|
|
write_id(10, -8'sd77);
|
|
check_read(10, -8'sd77, "TEST3 negative");
|
|
|
|
// TEST 4 - read is registered (1-cycle latency), not
|
|
// combinational: changing rd_addr must not show the new
|
|
// value until the NEXT clock edge.
|
|
@(negedge clk);
|
|
rd_addr = 0; // id0 = 42
|
|
@(negedge clk);
|
|
if (rd_data !== 8'sd42) begin
|
|
$display("FAIL TEST4 setup: expected 42 got %0d", rd_data);
|
|
errors = errors + 1;
|
|
end
|
|
rd_addr = 10; // id10 = -77, but rd_data must still show id0's value THIS cycle
|
|
if (rd_data !== 8'sd42) begin
|
|
$display("FAIL TEST4 latency: rd_data changed same-cycle as rd_addr (got %0d, expected still 42)", rd_data);
|
|
errors = errors + 1;
|
|
end else begin
|
|
$display("PASS TEST4 latency: rd_data still 42 same-cycle as rd_addr change");
|
|
end
|
|
@(negedge clk);
|
|
if (rd_data !== -8'sd77) begin
|
|
$display("FAIL TEST4 next-cycle: expected -77 got %0d", rd_data);
|
|
errors = errors + 1;
|
|
end else begin
|
|
$display("PASS TEST4 next-cycle: rd_data=-77 one cycle after rd_addr=10");
|
|
end
|
|
|
|
// TEST 5 - independent ports: write addr 20 while reading addr 10
|
|
@(negedge clk);
|
|
rd_addr = 10;
|
|
wr_en = 1'b1;
|
|
wr_addr = 20;
|
|
wr_data = 8'sd55;
|
|
@(negedge clk);
|
|
wr_en = 1'b0;
|
|
if (rd_data !== -8'sd77) begin
|
|
$display("FAIL TEST5: concurrent write disturbed read (expected -77 got %0d)", rd_data);
|
|
errors = errors + 1;
|
|
end else begin
|
|
$display("PASS TEST5: concurrent write to a different address did not disturb read");
|
|
end
|
|
check_read(20, 8'sd55, "TEST5 followup id20");
|
|
|
|
// TEST 6 - burst write many ids, read back out of order
|
|
for (i = 0; i < 16; i = i + 1) begin
|
|
write_id(100 + i, i[7:0]);
|
|
end
|
|
for (i = 15; i >= 0; i = i - 1) begin
|
|
check_read(100 + i, i[7:0], "TEST6 burst reverse-order");
|
|
end
|
|
|
|
if (errors == 0) begin
|
|
$display("ALL TESTS PASSED");
|
|
end else begin
|
|
$display("%0d TEST(S) FAILED", errors);
|
|
end
|
|
|
|
$finish;
|
|
end
|
|
|
|
endmodule
|