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[/] [rtf8088/] [trunk/] [rtl/] [verilog/] [INT.v] - Rev 3
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// ============================================================================ // INT.v // - Interrupt handling // // // 2009-2012 Robert Finch // robfinch[remove]@opencores.org // Stratford // // 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 3 of the License, or // (at your option) any later version. // // This source file 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 General Public License for more details. // // You should have received a copy of the GNU General Public License // along with this program. If not, see <http://www.gnu.org/licenses/>. // // // Verilog // // - bus is locked if immediate value is unaligned in memory // - immediate values are the last operand to be fetched, hence // the state machine can transition into the EXECUTE state. // - we also know the immediate value can't be the target of an // operation. // ============================================================================ // // Fetch interrupt number from instruction stream // INT: begin `INITIATE_CODE_READ lock_o <= 1'b1; sp <= sp_dec; // pre-decrement state <= INT1; end INT1: if (ack_i) begin `PAUSE_CODE_READ int_num <= dat_i; state <= INT2; end INT2: begin cyc_type <= `CT_RDMEM; lock_o <= 1'b1; cyc_o <= 1'b1; stb_o <= 1'b1; we_o <= 1'b0; adr_o <= {int_num,2'b00}; state <= INT3; end INT3: if (ack_i) begin cyc_type <= `CT_PASSIVE; stb_o <= 1'b0; offset[7:0] <= dat_i; state <= INT4; end INT4: begin cyc_type <= `CT_RDMEM; stb_o <= 1'b1; adr_o <= adr_o_inc; state <= INT5; end INT5: if (ack_i) begin cyc_type <= `CT_PASSIVE; stb_o <= 1'b0; offset[15:8] <= dat_i; state <= INT6; end INT6: if (!stb_o) begin cyc_type <= `CT_RDMEM; stb_o <= 1'b1; adr_o <= adr_o_inc; end else if (ack_i) begin cyc_type <= `CT_PASSIVE; stb_o <= 1'b0; state <= INT7; selector[7:0] <= dat_i; end INT7: if (!stb_o) begin cyc_type <= `CT_RDMEM; stb_o <= 1'b1; adr_o <= adr_o_inc; end else if (ack_i) begin cyc_type <= `CT_PASSIVE; lock_o <= 1'b0; cyc_o <= 1'b0; stb_o <= 1'b0; state <= INT8; selector[15:8] <= dat_i; end INT8: if (!cyc_o) begin `INITIATE_STACK_WRITE lock_o <= 1'b1; dat_o <= flags[15:8]; end else if (ack_i) begin cyc_type <= `CT_PASSIVE; sp <= sp_dec; state <= INT9; stb_o <= 1'b0; we_o <= 1'b0; end INT9: if (!stb_o) begin cyc_type <= `CT_WRMEM; stb_o <= 1'b1; we_o <= 1'b1; adr_o <= sssp; dat_o <= flags[7:0]; end else if (ack_i) begin cyc_type <= `CT_PASSIVE; sp <= sp_dec; state <= INT10; stb_o <= 1'b0; we_o <= 1'b0; ie <= 1'b0; tf <= 1'b0; end INT10: if (!stb_o) begin cyc_type <= `CT_WRMEM; stb_o <= 1'b1; we_o <= 1'b1; adr_o <= sssp; dat_o <= cs[15:8]; end else if (ack_i) begin cyc_type <= `CT_PASSIVE; sp <= sp_dec; state <= INT11; stb_o <= 1'b0; we_o <= 1'b0; end INT11: if (!stb_o) begin cyc_type <= `CT_WRMEM; stb_o <= 1'b1; we_o <= 1'b1; adr_o <= sssp; dat_o <= cs[7:0]; end else if (ack_i) begin cyc_type <= `CT_PASSIVE; sp <= sp_dec; state <= INT12; stb_o <= 1'b0; we_o <= 1'b0; end INT12: if (!stb_o) begin cyc_type <= `CT_WRMEM; stb_o <= 1'b1; we_o <= 1'b1; adr_o <= sssp; dat_o <= ir_ip[15:8]; end else if (ack_i) begin cyc_type <= `CT_PASSIVE; sp <= sp_dec; state <= INT13; stb_o <= 1'b0; we_o <= 1'b0; end INT13: if (!stb_o) begin cyc_type <= `CT_WRMEM; stb_o <= 1'b1; we_o <= 1'b1; adr_o <= sssp; dat_o <= ir_ip[7:0]; end else if (ack_i) begin cyc_type <= `CT_PASSIVE; state <= IFETCH; lock_o <= 1'b0; cyc_o <= 1'b0; stb_o <= 1'b0; we_o <= 1'b0; cs <= selector; ip <= offset; end
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