fpga: lib: Add initial value to ram_2port

Original-commit: da5c64bf4f631012b5969890a751084c998dd154
This commit is contained in:
Markus Schill
2025-04-09 13:50:17 -05:00
committed by Wade Fife
parent c9d2c066f3
commit 6386d90b35
2 changed files with 25 additions and 21 deletions
+15 -13
View File
@@ -5,7 +5,7 @@
// SPDX-License-Identifier: LGPL-3.0-or-later
//
// Description
// This code implements a parameterizable true dual port memory
// This code implements a parameterizable true dual port memory
// (both ports can read and write). If an enable is not necessary
// it may be tied off.
//
@@ -13,7 +13,7 @@
// This module requires the ram_2port_impl.vh header file. The
// header is included multiple times with different values of
// the RAM_DIRECTIVE macro to create different implementations of the
// RAM. An implementation is chosen in ram_2port based on the
// RAM. An implementation is chosen in ram_2port based on the
// user parameter for RAM_TYPE.
// Mode: AUTOMATIC
@@ -52,12 +52,14 @@
`undef RAM_DIRECTIVE
module ram_2port #(
parameter DWIDTH = 32, // Width of the memory block
parameter AWIDTH = 9, // log2 of the depth of the memory block
parameter RW_MODE = "READ-FIRST", // Read-write mode {READ-FIRST, WRITE-FIRST, NO-CHANGE, B-READ-ONLY}
parameter RAM_TYPE = "AUTOMATIC", // Type of RAM to infer {AUTOMATIC, REG, LUTRAM, BRAM, URAM}
parameter OUT_REG = 0, // Instantiate an output register? (+1 cycle of read latency)
parameter INIT_FILE = "" // Optionally initialize memory with this file
parameter DWIDTH = 32, // Width of the memory block
parameter AWIDTH = 9, // log2 of the depth of the memory block
parameter RW_MODE = "READ-FIRST", // Read-write mode {READ-FIRST, WRITE-FIRST, NO-CHANGE, B-READ-ONLY}
parameter RAM_TYPE = "AUTOMATIC", // Type of RAM to infer {AUTOMATIC, REG, LUTRAM, BRAM, URAM}
parameter OUT_REG = 0, // Instantiate an output register? (+1 cycle of read latency)
parameter INIT_FILE = "", // Optionally initialize memory with this file
parameter INIT_VAL = {DWIDTH{1'b0}} // Optionally initialize output registers with this value and
// memory will be filled with this value if INIT_FILE is empty
) (
input wire clka,
input wire ena,
@@ -78,7 +80,7 @@ module ram_2port #(
if (RAM_TYPE == "URAM")
ram_2port_impl_uram #(
.DWIDTH(DWIDTH), .AWIDTH(AWIDTH), .RW_MODE(RW_MODE),
.OUT_REG(OUT_REG), .INIT_FILE(INIT_FILE)
.OUT_REG(OUT_REG), .INIT_FILE(INIT_FILE), .INIT_VAL(INIT_VAL)
) impl (
.clka(clka), .ena(ena), .wea(wea), .addra(addra), .dia(dia), .doa(doa),
.clkb(clkb), .enb(enb), .web(web), .addrb(addrb), .dib(dib), .dob(dob)
@@ -86,7 +88,7 @@ module ram_2port #(
else if (RAM_TYPE == "BRAM")
ram_2port_impl_bram #(
.DWIDTH(DWIDTH), .AWIDTH(AWIDTH), .RW_MODE(RW_MODE),
.OUT_REG(OUT_REG), .INIT_FILE(INIT_FILE)
.OUT_REG(OUT_REG), .INIT_FILE(INIT_FILE), .INIT_VAL(INIT_VAL)
) impl (
.clka(clka), .ena(ena), .wea(wea), .addra(addra), .dia(dia), .doa(doa),
.clkb(clkb), .enb(enb), .web(web), .addrb(addrb), .dib(dib), .dob(dob)
@@ -94,7 +96,7 @@ module ram_2port #(
else if (RAM_TYPE == "LUTRAM")
ram_2port_impl_lutram #(
.DWIDTH(DWIDTH), .AWIDTH(AWIDTH), .RW_MODE(RW_MODE),
.OUT_REG(OUT_REG), .INIT_FILE(INIT_FILE)
.OUT_REG(OUT_REG), .INIT_FILE(INIT_FILE), .INIT_VAL(INIT_VAL)
) impl (
.clka(clka), .ena(ena), .wea(wea), .addra(addra), .dia(dia), .doa(doa),
.clkb(clkb), .enb(enb), .web(web), .addrb(addrb), .dib(dib), .dob(dob)
@@ -102,7 +104,7 @@ module ram_2port #(
else if (RAM_TYPE == "REG")
ram_2port_impl_reg #(
.DWIDTH(DWIDTH), .AWIDTH(AWIDTH), .RW_MODE(RW_MODE),
.OUT_REG(OUT_REG), .INIT_FILE(INIT_FILE)
.OUT_REG(OUT_REG), .INIT_FILE(INIT_FILE), .INIT_VAL(INIT_VAL)
) impl (
.clka(clka), .ena(ena), .wea(wea), .addra(addra), .dia(dia), .doa(doa),
.clkb(clkb), .enb(enb), .web(web), .addrb(addrb), .dib(dib), .dob(dob)
@@ -110,7 +112,7 @@ module ram_2port #(
else
ram_2port_impl_auto #(
.DWIDTH(DWIDTH), .AWIDTH(AWIDTH), .RW_MODE(RW_MODE),
.OUT_REG(OUT_REG), .INIT_FILE(INIT_FILE)
.OUT_REG(OUT_REG), .INIT_FILE(INIT_FILE), .INIT_VAL(INIT_VAL)
) impl (
.clka(clka), .ena(ena), .wea(wea), .addra(addra), .dia(dia), .doa(doa),
.clkb(clkb), .enb(enb), .web(web), .addrb(addrb), .dib(dib), .dob(dob)
+10 -8
View File
@@ -8,11 +8,13 @@
// Requires `RAM_MOD_NAME and `RAM_DIRECTIVE to be defined
module `RAM_MOD_NAME #(
parameter DWIDTH = 32, // Width of the memory block
parameter AWIDTH = 9, // log2 of the depth of the memory block
parameter RW_MODE = "READ-FIRST", // Read-write mode {READ-FIRST, WRITE-FIRST, NO-CHANGE, B-READ-ONLY}
parameter OUT_REG = 0, // Instantiate an output register? (+1 cycle of read latency)
parameter INIT_FILE = "" // Optionally initialize memory with this file
parameter DWIDTH = 32, // Width of the memory block
parameter AWIDTH = 9, // log2 of the depth of the memory block
parameter RW_MODE = "READ-FIRST", // Read-write mode {READ-FIRST, WRITE-FIRST, NO-CHANGE, B-READ-ONLY}
parameter OUT_REG = 0, // Instantiate an output register? (+1 cycle of read latency)
parameter INIT_FILE = "", // Optionally initialize memory with this file
parameter INIT_VAL = {DWIDTH{1'b0}} // Optionally initialize output registers with this value and
// memory will be filled with this value if INIT_FILE is empty
) (
input wire clka,
input wire ena,
@@ -40,15 +42,15 @@ module `RAM_MOD_NAME #(
integer i;
initial begin
for (i = 0; i < (1<<AWIDTH); i = i + 1) begin
ram[i] = {DWIDTH{1'b0}};
ram[i] = INIT_VAL;
end
end
end endgenerate
reg [DWIDTH-1:0] doa_r = 'h0, dob_r = 'h0;
reg [DWIDTH-1:0] doa_r = INIT_VAL, dob_r = INIT_VAL;
generate if (OUT_REG == 1) begin
// A 2 clock cycle read latency with improve clock-to-out timing
reg [DWIDTH-1:0] doa_rr = 'h0, dob_rr = 'h0;
reg [DWIDTH-1:0] doa_rr = INIT_VAL, dob_rr = INIT_VAL;
always @(posedge clka)
if (ena) begin