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[/] [minsoc/] [trunk/] [backend/] [spartan3e_starter_kit_eth/] [minsoc_defines.v] - Rev 139
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// // Define FPGA manufacturer // //`define GENERIC_FPGA //`define ALTERA_FPGA `define XILINX_FPGA // // Define Xilinx FPGA family // `ifdef XILINX_FPGA //`define SPARTAN2 //`define SPARTAN3 `define SPARTAN3E //`define SPARTAN3A //`define VIRTEX //`define VIRTEX2 //`define VIRTEX4 //`define VIRTEX5 // // Define Altera FPGA family // `elsif ALTERA_FPGA //`define ARRIA_GX //`define ARRIA_II_GX //`define CYCLONE_I //`define CYCLONE_II `define CYCLONE_III //`define CYCLONE_III_LS //`define CYCLONE_IV_E //`define CYCLONE_IV_GS //`define MAX_II //`define MAX_V //`define MAX3000A //`define MAX7000AE //`define MAX7000B //`define MAX7000S //`define STRATIX //`define STRATIX_II //`define STRATIX_II_GX //`define STRATIX_III `endif // // Memory // `define MEMORY_ADR_WIDTH 12 //MEMORY_ADR_WIDTH IS NOT ALLOWED TO BE LESS THAN 12, //memory is composed by blocks of address width 11 //Address width of memory -> select memory depth, //2 powers MEMORY_ADR_WIDTH defines the memory depth //the memory data width is 32 bit, //memory amount in Bytes = 4*memory depth // // Memory type (uncomment something if ASIC or generic memory) // //`define GENERIC_MEMORY //`define AVANT_ATP //`define VIRAGE_SSP //`define VIRTUALSILICON_SSP // // TAP selection // //`define GENERIC_TAP `define FPGA_TAP // // Clock Division selection // //`define NO_CLOCK_DIVISION //`define GENERIC_CLOCK_DIVISION `define FPGA_CLOCK_DIVISION // For Altera ALTPLL, only CYCLONE_III family has been tested. // // Define division // `define CLOCK_DIVISOR 5 //in case of GENERIC_CLOCK_DIVISION the real value will be rounded //down to an even value in FPGA case, check minsoc_clock_manager //for allowed divisors. //DO NOT USE CLOCK_DIVISOR = 1 COMMENT THE CLOCK DIVISION SELECTION //INSTEAD. // // Reset polarity // //`define NEGATIVE_RESET //rstn `define POSITIVE_RESET //rst // // Start-up circuit (only necessary later to load firmware automatically from SPI memory) // //`define START_UP // // Connected modules // `define UART `define ETHERNET // // Ethernet reset // `define ETH_RESET 1'b0 //`define ETH_RESET 1'b1 // // Interrupts // `define APP_INT_RES1 1:0 `define APP_INT_UART 2 `define APP_INT_RES2 3 `define APP_INT_ETH 4 `define APP_INT_PS2 5 `define APP_INT_RES3 19:6 // // Address map // `define APP_ADDR_DEC_W 8 `define APP_ADDR_SRAM `APP_ADDR_DEC_W'h00 `define APP_ADDR_FLASH `APP_ADDR_DEC_W'h04 `define APP_ADDR_DECP_W 4 `define APP_ADDR_PERIP `APP_ADDR_DECP_W'h9 `define APP_ADDR_SPI `APP_ADDR_DEC_W'h97 `define APP_ADDR_ETH `APP_ADDR_DEC_W'h92 `define APP_ADDR_AUDIO `APP_ADDR_DEC_W'h9d `define APP_ADDR_UART `APP_ADDR_DEC_W'h90 `define APP_ADDR_PS2 `APP_ADDR_DEC_W'h94 `define APP_ADDR_RES1 `APP_ADDR_DEC_W'h9e `define APP_ADDR_RES2 `APP_ADDR_DEC_W'h9f // // Set-up GENERIC_TAP, GENERIC_MEMORY if GENERIC_FPGA was chosen // and GENERIC_CLOCK_DIVISION if NO_CLOCK_DIVISION was not set // `ifdef GENERIC_FPGA `undef FPGA_TAP `undef FPGA_CLOCK_DIVISION `undef XILINX_FPGA `undef SPARTAN3E `define GENERIC_TAP `define GENERIC_MEMORY `ifndef NO_CLOCK_DIVISION `define GENERIC_CLOCK_DIVISION `endif `endif
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