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sh_ddr.sv
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sh_ddr.sv
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// Amazon FPGA Hardware Development Kit
//
// Copyright 2016 Amazon.com, Inc. or its affiliates. All Rights Reserved.
//
// Licensed under the Amazon Software License (the "License"). You may not use
// this file except in compliance with the License. A copy of the License is
// located at
//
// http://aws.amazon.com/asl/
//
// or in the "license" file accompanying this file. This file is distributed on
// an "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, express or
// implied. See the License for the specific language governing permissions and
// limitations under the License.
// Restricted NDA Material
// =============================================================================
`ifdef ECC_DIRECT_EN
`ifndef ECC_ADDR_HI
`define ECC_ADDR_HI 5000
`endif
`ifndef ECC_ADDR_LO
`define ECC_ADDR_LO 4000
`endif
`endif
`ifdef RND_ECC_EN
`ifndef RND_ECC_WEIGHT
`define RND_ECC_WEIGHT 50
`endif
`endif
module sh_ddr #( parameter DDR_A_PRESENT = 1,
parameter DDR_B_PRESENT = 1,
parameter DDR_D_PRESENT = 1,
//NOTE TO CL DEVELOPERS:
// The below two parameters should not be changed.
// Changing these parameters will cause place errors for DDR_A and DDR_D pins.
// When set to 1, they will ensure that DDR_A/D IO buffers are correctly instanced
parameter DDR_A_IO = 1,
parameter DDR_D_IO = 1
)
(
//---------------------------
// Main clock/reset
//---------------------------
input clk,
input rst_n,
input stat_clk, //Stats interface clock
input stat_rst_n,
//--------------------------
// DDR Physical Interface
//--------------------------
// ------------------- DDR4 x72 RDIMM 2100 Interface A ----------------------------------
input CLK_300M_DIMM0_DP,
input CLK_300M_DIMM0_DN,
output logic M_A_ACT_N,
output logic[16:0] M_A_MA,
output logic[1:0] M_A_BA,
output logic[1:0] M_A_BG,
output logic[0:0] M_A_CKE,
output logic[0:0] M_A_ODT,
output logic[0:0] M_A_CS_N,
output logic[0:0] M_A_CLK_DN,
output logic[0:0] M_A_CLK_DP,
output logic M_A_PAR,
inout [63:0] M_A_DQ,
inout [7:0] M_A_ECC,
inout [17:0] M_A_DQS_DP,
inout [17:0] M_A_DQS_DN,
output logic cl_RST_DIMM_A_N,
// ------------------- DDR4 x72 RDIMM 2100 Interface B ----------------------------------
input CLK_300M_DIMM1_DP,
input CLK_300M_DIMM1_DN,
output logic M_B_ACT_N,
output logic[16:0] M_B_MA,
output logic[1:0] M_B_BA,
output logic[1:0] M_B_BG,
output logic[0:0] M_B_CKE,
output logic[0:0] M_B_ODT,
output logic[0:0] M_B_CS_N,
output logic[0:0] M_B_CLK_DN,
output logic[0:0] M_B_CLK_DP,
output logic M_B_PAR,
inout [63:0] M_B_DQ,
inout [7:0] M_B_ECC,
inout [17:0] M_B_DQS_DP,
inout [17:0] M_B_DQS_DN,
output logic cl_RST_DIMM_B_N,
// ------------------- DDR4 x72 RDIMM 2100 Interface D ----------------------------------
input CLK_300M_DIMM3_DP,
input CLK_300M_DIMM3_DN,
output logic M_D_ACT_N,
output logic[16:0] M_D_MA,
output logic[1:0] M_D_BA,
output logic[1:0] M_D_BG,
output logic[0:0] M_D_CKE,
output logic[0:0] M_D_ODT,
output logic[0:0] M_D_CS_N,
output logic[0:0] M_D_CLK_DN,
output logic[0:0] M_D_CLK_DP,
output logic M_D_PAR,
inout [63:0] M_D_DQ,
inout [7:0] M_D_ECC,
inout [17:0] M_D_DQS_DP,
inout [17:0] M_D_DQS_DN,
output logic cl_RST_DIMM_D_N,
//------------------------------------------------------
// DDR-4 Interface from CL (AXI-4)
//------------------------------------------------------
input[15:0] cl_sh_ddr_awid[2:0],
input[63:0] cl_sh_ddr_awaddr[2:0],
input[7:0] cl_sh_ddr_awlen[2:0],
input[2:0] cl_sh_ddr_awsize[2:0],
input[1:0] cl_sh_ddr_awburst[2:0], //Note only INCR/WRAP supported. If un-supported mode on this signal, will default to INCR
//input[10:0] cl_sh_ddr_awuser[2:0],
input cl_sh_ddr_awvalid[2:0],
output logic[2:0] sh_cl_ddr_awready,
input[15:0] cl_sh_ddr_wid[2:0],
input[511:0] cl_sh_ddr_wdata[2:0],
input[63:0] cl_sh_ddr_wstrb[2:0],
input[2:0] cl_sh_ddr_wlast,
input[2:0] cl_sh_ddr_wvalid,
output logic[2:0] sh_cl_ddr_wready,
output logic[15:0] sh_cl_ddr_bid[2:0],
output logic[1:0] sh_cl_ddr_bresp[2:0],
output logic[2:0] sh_cl_ddr_bvalid,
input[2:0] cl_sh_ddr_bready,
input[15:0] cl_sh_ddr_arid[2:0],
input[63:0] cl_sh_ddr_araddr[2:0],
input[7:0] cl_sh_ddr_arlen[2:0],
input[2:0] cl_sh_ddr_arsize[2:0],
//input[10:0] cl_sh_ddr_aruser[2:0],
input[1:0] cl_sh_ddr_arburst[2:0], //Note only INCR/WRAP supported. If un-supported mode on this signal, will default to INCR
input[2:0] cl_sh_ddr_arvalid,
output logic[2:0] sh_cl_ddr_arready,
output logic[15:0] sh_cl_ddr_rid[2:0],
output logic[511:0] sh_cl_ddr_rdata[2:0],
output logic[1:0] sh_cl_ddr_rresp[2:0],
output logic[2:0] sh_cl_ddr_rlast,
output logic[2:0] sh_cl_ddr_rvalid,
input[2:0] cl_sh_ddr_rready,
output logic[2:0] sh_cl_ddr_is_ready,
input[7:0] sh_ddr_stat_addr0,
input sh_ddr_stat_wr0,
input sh_ddr_stat_rd0,
input[31:0] sh_ddr_stat_wdata0,
output logic ddr_sh_stat_ack0,
output logic[31:0] ddr_sh_stat_rdata0,
output logic[7:0] ddr_sh_stat_int0,
input[7:0] sh_ddr_stat_addr1,
input sh_ddr_stat_wr1,
input sh_ddr_stat_rd1,
input[31:0] sh_ddr_stat_wdata1,
output logic ddr_sh_stat_ack1,
output logic[31:0] ddr_sh_stat_rdata1,
output logic[7:0] ddr_sh_stat_int1,
input[7:0] sh_ddr_stat_addr2,
input sh_ddr_stat_wr2,
input sh_ddr_stat_rd2,
input[31:0] sh_ddr_stat_wdata2,
output logic ddr_sh_stat_ack2,
output logic[31:0] ddr_sh_stat_rdata2,
output logic[7:0] ddr_sh_stat_int2
);
`pragma protect begin_protected
`pragma protect version = 1
`pragma protect encrypt_agent = "XILINX"
`pragma protect encrypt_agent_info = "Xilinx Encryption Tool 2015"
`pragma protect key_keyowner = "Xilinx", key_keyname = "xilinxt_2017_05", key_method = "rsa"
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