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[/] [openmsp430/] [trunk/] [core/] [synthesis/] [xilinx/] [src/] [openMSP430_defines.v] - Rev 72
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//---------------------------------------------------------------------------- // Copyright (C) 2001 Authors // // 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, write to the Free Software Foundation, // Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA // //---------------------------------------------------------------------------- // // *File Name: openMSP430_defines.v // // *Module Description: // openMSP430 Configuration file // // *Author(s): // - Olivier Girard, olgirard@gmail.com // //---------------------------------------------------------------------------- // $Rev: 57 $ // $LastChangedBy: olivier.girard $ // $LastChangedDate: 2010-02-01 23:56:03 +0100 (Mon, 01 Feb 2010) $ //---------------------------------------------------------------------------- `include "openMSP430_undefines.v" //---------------------------------------------------------------------------- // SYSTEM CONFIGURATION //---------------------------------------------------------------------------- // Program Memory Size: // 9 -> 1 kB // 10 -> 2 kB // 11 -> 4 kB // 12 -> 8 kB // 13 -> 16 kB // 14 -> 32 kB `define PMEM_AWIDTH 12 // Data Memory Size: // 6 -> 128 B // 7 -> 256 B // 8 -> 512 B // 9 -> 1 kB // 10 -> 2 kB // 11 -> 4 kB // 12 -> 8 kB // 13 -> 16 kB // 14 -> 32 kB `define DMEM_AWIDTH 10 // Include/Exclude Hardware Multiplier `define MULTIPLIER //---------------------------------------------------------------------------- // REMOTE DEBUGGING INTERFACE CONFIGURATION //---------------------------------------------------------------------------- // Include Debug interface //`define DBG_EN // Debug interface selection // `define DBG_UART -> Enable UART (8N1) debug interface // `define DBG_JTAG -> DON'T UNCOMMENT, NOT SUPPORTED // `define DBG_UART //`define DBG_JTAG // Number of hardware breakpoints (each unit contains 2 hw address breakpoints) // `define DBG_HWBRK_0 -> Include hardware breakpoints unit 0 // `define DBG_HWBRK_1 -> Include hardware breakpoints unit 1 // `define DBG_HWBRK_2 -> Include hardware breakpoints unit 2 // `define DBG_HWBRK_3 -> Include hardware breakpoints unit 3 // //`define DBG_HWBRK_0 //`define DBG_HWBRK_1 //`define DBG_HWBRK_2 //`define DBG_HWBRK_3 //==========================================================================// //==========================================================================// //==========================================================================// //==========================================================================// //===== SYSTEM CONSTANTS --- !!!!!!!! DO NOT EDIT !!!!!!!! =====// //==========================================================================// //==========================================================================// //==========================================================================// //==========================================================================// // Program and Data Memory sizes `define PMEM_SIZE (2 << `PMEM_AWIDTH) `define DMEM_SIZE (2 << `DMEM_AWIDTH) // Data Memory Base Adresses `define DMEM_BASE 16'h0200 // Program & Data Memory most significant address bit (for 16 bit words) `define PMEM_MSB `PMEM_AWIDTH-1 `define DMEM_MSB `DMEM_AWIDTH-1 // Instructions type `define INST_SO 0 `define INST_JMP 1 `define INST_TO 2 // Single-operand arithmetic `define RRC 0 `define SWPB 1 `define RRA 2 `define SXT 3 `define PUSH 4 `define CALL 5 `define RETI 6 `define IRQ 7 // Conditional jump `define JNE 0 `define JEQ 1 `define JNC 2 `define JC 3 `define JN 4 `define JGE 5 `define JL 6 `define JMP 7 // Two-operand arithmetic `define MOV 0 `define ADD 1 `define ADDC 2 `define SUBC 3 `define SUB 4 `define CMP 5 `define DADD 6 `define BIT 7 `define BIC 8 `define BIS 9 `define XOR 10 `define AND 11 // Addressing modes `define DIR 0 `define IDX 1 `define INDIR 2 `define INDIR_I 3 `define SYMB 4 `define IMM 5 `define ABS 6 `define CONST 7 // Execution state machine `define E_IRQ_0 4'h0 `define E_IRQ_1 4'h1 `define E_IRQ_2 4'h2 `define E_IRQ_3 4'h3 `define E_IRQ_4 4'h4 `define E_SRC_AD 4'h5 `define E_SRC_RD 4'h6 `define E_SRC_WR 4'h7 `define E_DST_AD 4'h8 `define E_DST_RD 4'h9 `define E_DST_WR 4'hA `define E_EXEC 4'hB `define E_JUMP 4'hC `define E_IDLE 4'hD // ALU control signals `define ALU_SRC_INV 0 `define ALU_INC 1 `define ALU_INC_C 2 `define ALU_ADD 3 `define ALU_AND 4 `define ALU_OR 5 `define ALU_XOR 6 `define ALU_DADD 7 `define ALU_STAT_7 8 `define ALU_STAT_F 9 `define ALU_SHIFT 10 `define EXEC_NO_WR 11 // Debug interface `define DBG_UART_WR 18 `define DBG_UART_BW 17 `define DBG_UART_ADDR 16:11 // Debug interface CPU_CTL register `define HALT 0 `define RUN 1 `define ISTEP 2 `define SW_BRK_EN 3 `define FRZ_BRK_EN 4 `define RST_BRK_EN 5 `define CPU_RST 6 // Debug interface CPU_STAT register `define HALT_RUN 0 `define PUC_PND 1 `define SWBRK_PND 3 `define HWBRK0_PND 4 `define HWBRK1_PND 5 // Debug interface BRKx_CTL register `define BRK_MODE_RD 0 `define BRK_MODE_WR 1 `define BRK_MODE 1:0 `define BRK_EN 2 `define BRK_I_EN 3 `define BRK_RANGE 4 // Basic clock module: BCSCTL1 Control Register `define DIVAx 5:4 // Basic clock module: BCSCTL2 Control Register `define SELS 3 `define DIVSx 2:1 // Timer A: TACTL Control Register `define TASSELx 9:8 `define TAIDx 7:6 `define TAMCx 5:4 `define TACLR 2 `define TAIE 1 `define TAIFG 0 // Timer A: TACCTLx Capture/Compare Control Register `define TACMx 15:14 `define TACCISx 13:12 `define TASCS 11 `define TASCCI 10 `define TACAP 8 `define TAOUTMODx 7:5 `define TACCIE 4 `define TACCI 3 `define TAOUT 2 `define TACOV 1 `define TACCIFG 0 // // DEBUG INTERFACE EXTRA CONFIGURATION //====================================== // Debug interface: Software breakpoint opcode `define DBG_SWBRK_OP 16'h4343 // Debug interface ID `define DBG_ID 24'h4D5350 // Debug UART interface auto data synchronization // If the following define is commented out, then // the DBG_UART_BAUD and DBG_DCO_FREQ need to be properly // defined. `define DBG_UART_AUTO_SYNC // Debug UART interface data rate // In order to properly setup the UART debug interface, you // need to specify the DCO_CLK frequency (DBG_DCO_FREQ) and // the chosen BAUD rate from the UART interface. // //`define DBG_UART_BAUD 9600 //`define DBG_UART_BAUD 19200 //`define DBG_UART_BAUD 38400 //`define DBG_UART_BAUD 57600 //`define DBG_UART_BAUD 115200 //`define DBG_UART_BAUD 230400 //`define DBG_UART_BAUD 460800 //`define DBG_UART_BAUD 576000 //`define DBG_UART_BAUD 921600 `define DBG_UART_BAUD 2000000 `define DBG_DCO_FREQ 20000000 `define DBG_UART_CNT ((`DBG_DCO_FREQ/`DBG_UART_BAUD)-1) // Enable/Disable the hardware breakpoint RANGE mode `define HWBRK_RANGE 1'b0 // Check configuration `ifdef DBG_EN `ifdef DBG_UART `ifdef DBG_JTAG CONFIGURATION ERROR: JTAG AND UART DEBUG INTERFACE ARE BOTH ENABLED `endif `else `ifdef DBG_JTAG CONFIGURATION ERROR: JTAG INTERFACE NOT SUPPORTED `else CONFIGURATION ERROR: JTAG OR UART DEBUG INTERFACE SHOULD BE ENABLED `endif `endif `endif // // MULTIPLIER CONFIGURATION //====================================== // If uncommented, the following define selects // the 16x16 multiplier (1 cycle) instead of the // default 16x8 multplier (2 cycles) //`define MPY_16x16
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