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[/] [openrisc/] [trunk/] [or1200/] [rtl/] [verilog/] [or1200_freeze.v] - Rev 848
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////////////////////////////////////////////////////////////////////// //// //// //// OR1200's Freeze logic //// //// //// //// This file is part of the OpenRISC 1200 project //// //// http://www.opencores.org/project,or1k //// //// //// //// Description //// //// Generates all freezes and stalls inside RISC //// //// //// //// To Do: //// //// - make it smaller and faster //// //// //// //// Author(s): //// //// - Damjan Lampret, lampret@opencores.org //// //// //// ////////////////////////////////////////////////////////////////////// //// //// //// Copyright (C) 2000 Authors and OPENCORES.ORG //// //// //// //// This source file may be used and distributed without //// //// restriction provided that this copyright statement is not //// //// removed from the file and that any derivative work contains //// //// the original copyright notice and the associated disclaimer. //// //// //// //// This source file is free software; you can redistribute it //// //// and/or modify it under the terms of the GNU Lesser General //// //// Public License as published by the Free Software Foundation; //// //// either version 2.1 of the License, or (at your option) any //// //// later version. //// //// //// //// This source is distributed in the hope that it will be //// //// useful, but WITHOUT ANY WARRANTY; without even the implied //// //// warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR //// //// PURPOSE. See the GNU Lesser General Public License for more //// //// details. //// //// //// //// You should have received a copy of the GNU Lesser General //// //// Public License along with this source; if not, download it //// //// from http://www.opencores.org/lgpl.shtml //// //// //// ////////////////////////////////////////////////////////////////////// // // $Log: or1200_freeze.v,v $ // Revision 2.0 2010/06/30 11:00:00 ORSoC // Minor update: // Bugs fixed. // // synopsys translate_off `include "timescale.v" // synopsys translate_on `include "or1200_defines.v" `define OR1200_NO_FREEZE 3'd0 `define OR1200_FREEZE_BYDC 3'd1 `define OR1200_FREEZE_BYMULTICYCLE 3'd2 `define OR1200_WAIT_LSU_TO_FINISH 3'd3 `define OR1200_WAIT_IC 3'd4 // // Freeze logic (stalls CPU pipeline, ifetcher etc.) // module or1200_freeze ( // Clock and reset clk, rst, // Internal i/f multicycle, wait_on, flushpipe, extend_flush, lsu_stall, if_stall, lsu_unstall, du_stall, mac_stall, force_dslot_fetch, abort_ex, genpc_freeze, if_freeze, id_freeze, ex_freeze, wb_freeze, saving_if_insn, fpu_done, mtspr_done, icpu_ack_i, icpu_err_i ); // // I/O // input clk; input rst; input [`OR1200_MULTICYCLE_WIDTH-1:0] multicycle; input [`OR1200_WAIT_ON_WIDTH-1:0] wait_on; input flushpipe; input extend_flush; input lsu_stall; input if_stall; input lsu_unstall; input force_dslot_fetch; input abort_ex; input du_stall; input mac_stall; output genpc_freeze; output if_freeze; output id_freeze; output ex_freeze; output wb_freeze; input saving_if_insn; input fpu_done; input mtspr_done; input icpu_ack_i; input icpu_err_i; // // Internal wires and regs // wire multicycle_freeze; reg [`OR1200_MULTICYCLE_WIDTH-1:0] multicycle_cnt; reg flushpipe_r; reg [`OR1200_WAIT_ON_WIDTH-1:0] waiting_on; // // Pipeline freeze // // Rules how to create freeze signals: // 1. Not overwriting pipeline stages: // Freeze signals at the beginning of pipeline (such as if_freeze) can be // asserted more often than freeze signals at the of pipeline (such as // wb_freeze). In other words, wb_freeze must never be asserted when ex_freeze // is not. ex_freeze must never be asserted when id_freeze is not etc. // // 2. Inserting NOPs in the middle of pipeline only if supported: // At this time, only ex_freeze (and wb_freeze) can be deassrted when id_freeze // (and if_freeze) are asserted. // This way NOP is asserted from stage ID into EX stage. // assign genpc_freeze = (du_stall & !saving_if_insn) | flushpipe_r; assign if_freeze = id_freeze | extend_flush; assign id_freeze = (lsu_stall | (~lsu_unstall & if_stall) | multicycle_freeze | (|waiting_on) | force_dslot_fetch) | du_stall; assign ex_freeze = wb_freeze; assign wb_freeze = (lsu_stall | (~lsu_unstall & if_stall) | multicycle_freeze | (|waiting_on)) | du_stall | abort_ex; // // registered flushpipe // always @(posedge clk or `OR1200_RST_EVENT rst) if (rst == `OR1200_RST_VALUE) flushpipe_r <= 1'b0; else if (icpu_ack_i | icpu_err_i) // else if (!if_stall) flushpipe_r <= flushpipe; else if (!flushpipe) flushpipe_r <= 1'b0; // // Multicycle freeze // assign multicycle_freeze = |multicycle_cnt; // // Multicycle counter // always @(posedge clk or `OR1200_RST_EVENT rst) if (rst == `OR1200_RST_VALUE) multicycle_cnt <= `OR1200_MULTICYCLE_WIDTH'd0; else if (|multicycle_cnt) multicycle_cnt <= multicycle_cnt - `OR1200_MULTICYCLE_WIDTH'd1; else if (|multicycle & !ex_freeze) multicycle_cnt <= multicycle; // // Waiting on generation // always @(posedge clk or `OR1200_RST_EVENT rst) if (rst == `OR1200_RST_VALUE) waiting_on <= 0; else if ((waiting_on == `OR1200_WAIT_ON_MULTMAC) & !mac_stall) waiting_on <= 0; else if ((waiting_on == `OR1200_WAIT_ON_FPU) & fpu_done) waiting_on <= 0; else if ((waiting_on == `OR1200_WAIT_ON_MTSPR) & mtspr_done) waiting_on <= 0; else if (!ex_freeze) waiting_on <= wait_on; endmodule
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