SAIFIINDUSTRIES's picture
Add Batch 8 with 10 repos
7df9186 verified
Raw
History Blame
3.02 kB
`timescale 1ns / 1ns
module spi_master #(
parameter TSCKHALF=10,
parameter ADDR_WIDTH=16,
parameter DATA_WIDTH=8,
parameter SCKCNT_WIDTH = clog2(ADDR_WIDTH+DATA_WIDTH+1),
parameter TSCKW= clog2(TSCKHALF)+1, // tsck is 2^5 time ts
parameter SCK_RISING_SHIFT=1
) (
input clk,
input spi_start,
output spi_busy, // High while SPI transaction in flight
input spi_read,
input [ADDR_WIDTH-1:0] spi_addr,
input [DATA_WIDTH-1:0] spi_data,
output cs,
output sck,
output sdi,
input sdo,
output reg [ADDR_WIDTH-1:0] sdo_addr,
output reg [DATA_WIDTH-1:0] spi_rdbk,
output spi_ready,
output sdio_as_sdo
);
function integer clog2;
input integer value;
integer local_value;
begin
local_value = value-1;
for (clog2=0; local_value>0; clog2=clog2+1)
local_value = local_value>>1;
end
endfunction
reg cs_r=0,cs_r_d=0;
reg sck_r=0, sck_r_d=0, sck_r_d2=0;
reg [TSCKW-1:0] tckcnt=0;
reg [SCKCNT_WIDTH-1:0] sck_cnt=0;
reg spi_read_r=0, spi_start_r=0;
reg [ADDR_WIDTH-1:0] sdi_addr=0;
always @(posedge clk) begin
tckcnt <= (tckcnt==0) ? TSCKHALF : tckcnt-1'b1;
if (tckcnt==0 || (spi_start & ~cs_r)) sck_r <= cs_r ? ~sck_r : 1'b0 ;
sck_r_d <= sck_r;
sck_r_d2 <= sck_r_d;
spi_start_r <= spi_start;
if (spi_start & ~spi_start_r)
cs_r <= 1'b1;
else if (sck_cnt==ADDR_WIDTH+DATA_WIDTH & ~|tckcnt & ~sck_r )
cs_r <= 1'b0;
if (spi_start & ~spi_start_r) begin
spi_read_r <= spi_read;
sdi_addr <= spi_addr;
end
if (sck_r & ~sck_r_d) begin
sck_cnt <= sck_cnt+cs_r ;
end else begin
sck_cnt <= cs_r ? sck_cnt : 1'b0;
end
cs_r_d <= cs_r;
end
wire sck_in_cs=sck_r_d2&cs_r_d;
assign cs = ~cs_r_d;
assign sck = SCK_RISING_SHIFT ? sck_in_cs : ~sck_in_cs;
wire cs_falling_edge = ~cs_r & cs_r_d;
reg [ADDR_WIDTH+DATA_WIDTH-1:0] sdi_value=0;
reg [DATA_WIDTH-1:0] sdo_rdbk_sr=0;
always @(posedge clk) begin
if (cs_r & ~cs_r_d) begin
sdi_value <= {spi_addr, spi_data};
end else begin
if (sck_r & ~sck_r_d & |sck_cnt) begin
sdi_value <= {sdi_value[ADDR_WIDTH+DATA_WIDTH-2:0], 1'b0};
end
end
end
reg [3:0] sr_switch=0;
assign sdio_as_sdo = sr_switch[0];
always @(posedge clk) begin
if (~sck_r & sck_r_d) begin
if (sck_cnt >= ADDR_WIDTH & sck_cnt <= ADDR_WIDTH+DATA_WIDTH) begin
sdo_rdbk_sr <= {sdo_rdbk_sr[DATA_WIDTH-2:0], sdo};
end
end
end
always @(posedge clk) begin
if (sck_cnt >= ADDR_WIDTH & sck_cnt <= ADDR_WIDTH+DATA_WIDTH) begin
if (sck_r_d & ~sck_r) begin
sr_switch <= {sr_switch[2:0], spi_read_r};
end
end
else begin
sr_switch <= {sr_switch[2:0],1'b0};
end
end
reg spi_ready_r=0;
always @(posedge clk) begin
if (cs_falling_edge & spi_read_r) begin
sdo_addr <= sdi_addr;
spi_rdbk <= sdo_rdbk_sr;
spi_ready_r <= 1;
end
else
spi_ready_r <=0;
end
assign sdi = sdi_value[ADDR_WIDTH+DATA_WIDTH-1];
assign spi_ready = spi_ready_r;
assign spi_busy = cs_r | ~cs | sck_r;
endmodule