`timescale 1 ns / 1 ps `define ENABLE_REG_RW1_TEST "generated/log/reg_rw1_tc.log" //`define ENABLE_ENCRYPTION //`define ENABLE_DET1_TEST "generated/log/det1_tc.log" //`define ENABLE_DET2_TEST "generated/log/det2_tc.log" //`define ENABLE_SET_ADDR_TEST "generated/log/set_addr_tc.log" //`define ENABLE_INT_INIT_TEST "generated/log/int_init_tc.log" //`define ENABLE_DET_ERR1_TEST "generated/log/det_err1_tc.log" //`define ENABLE_SMx_SEND1_TEST "generated/log/sm_send1_tc.log" //`define ENABLE_SMx_SEND2_TEST "generated/log/sm_send2_tc.log" //`define ENABLE_SMx_SEND3_TEST "generated/log/sm_send3_tc.log" //`define ENABLE_ERR_PKT1_TEST "generated/log/err_pkt1_tc.log" //`define ENABLE_ERR_PKT2_TEST "generated/log/err_pkt2_tc.log" //`define ENABLE_ERR_PKT3_TEST "generated/log/err_pkt3_tc.log" //`define ENABLE_EXCHG_DATA_SEQ0_TEST "generated/log/exchg_data_seq0_tc.log" //`define ENABLE_EXCHG_DATA_SEQ1_TEST "generated/log/exchg_data_seq1_tc.log" //`define ENABLE_EXCHG_DATA_SEQ2_TEST "generated/log/exchg_data_seq2_tc.log" //`define ENABLE_EXCHG_DATA_SEQ3_TEST "generated/log/exchg_data_seq3_tc.log" //`define ENABLE_BC_R_TEST "generated/log/bc_r_tc.log" //`define ENABLE_BC_W_TEST "generated/log/bc_w_tc.log" //`define ENABLE_BC_RW_TEST "generated/log/bc_rw_tc.log" //`define ENABLE_SYNC_TEST "generated/log/sync_tc.log" //`define ENABLE_SYNC_SIG0_TEST "generated/log/sync_sig0_tc.log" //`define ENABLE_SYNC_SIG1_TEST "generated/log/sync_sig1_tc.log" //`define ENABLE_RESET_TEST "generated/log/reset_tc.log" //`define ENABLE_WD1_TEST "generated/log/wd1_tc.log" module ShinTopSpiTb( ); reg clock; reg reset; reg clk8x; reg [15:0] multiCLK; wire [3:0] dDat_w; wire [3:0] uDat_w; wire spi_sck; wire spi_mosi; wire [4:0] spi_miso; reg [14:0] spi_csn; wire qspi_sck; wire [3:0] qspi_mosi; wire [40-1:0] qspi_miso; integer spidata_file; integer c_line; integer _pos; integer _len; integer _t_start; integer _t_end; reg [63:0] _temp_time; reg _reset_deactive; wire [4:0] isSoftReset; wire [4:0] io_int_sig; reg latch0; reg latch1; ShinTop s_ShinTop_Mst( .clock(clock), .reset(reset | isSoftReset[0]), .io_multiCLK_0(multiCLK[0]), .io_multiCLK_1(multiCLK[1]), .io_multiCLK_2(multiCLK[2]), .io_multiCLK_3(multiCLK[3]), .io_multiCLK_4(multiCLK[4]), .io_multiCLK_5(multiCLK[5]), .io_multiCLK_6(multiCLK[6]), .io_multiCLK_7(multiCLK[7]), .io_multiCLK_8(multiCLK[8]), .io_multiCLK_9(multiCLK[9]), .io_multiCLK_10(multiCLK[10]), .io_multiCLK_11(multiCLK[11]), .io_multiCLK_12(multiCLK[12]), .io_multiCLK_13(multiCLK[13]), .io_multiCLK_14(multiCLK[14]), .io_multiCLK_15(multiCLK[15]), .io_dDatIn(1'b0), .io_dDatOut(dDat_w[0]), .io_uDatIn(uDat_w[0]), .io_uDatOut(), .io_iqspi_sck(qspi_sck), .io_iqspi_mosi(qspi_mosi), .io_iqspi_miso(qspi_miso[3:0]), .io_iqspi_isDirIn(), .io_iqspi_csn(spi_csn[0]), .io_ospi_sck (spi_sck), .io_ospi_mosi(spi_mosi), .io_ospi_miso(spi_miso[0]), .io_ospi_csn (spi_csn[5]), .io_oqspi_sck(qspi_sck), .io_oqspi_mosi(qspi_mosi), .io_oqspi_miso(qspi_miso[4*5+3:4*5]), .io_oqspi_isDirIn(), .io_oqspi_csn(spi_csn[10]), .io_isSoftReset(isSoftReset[0]), .io_interrupt(io_int_sig[0]), .io_latchPin_0(latch0), .io_latchPin_1(latch1), .io_hwSerial(0), .io_uniCode(0) ); ShinTop s_ShinTop_slv0( .clock(clock), .reset(reset | isSoftReset[1]), .io_multiCLK_0(multiCLK[0]), .io_multiCLK_1(multiCLK[1]), .io_multiCLK_2(multiCLK[2]), .io_multiCLK_3(multiCLK[3]), .io_multiCLK_4(multiCLK[4]), .io_multiCLK_5(multiCLK[5]), .io_multiCLK_6(multiCLK[6]), .io_multiCLK_7(multiCLK[7]), .io_multiCLK_8(multiCLK[8]), .io_multiCLK_9(multiCLK[9]), .io_multiCLK_10(multiCLK[10]), .io_multiCLK_11(multiCLK[11]), .io_multiCLK_12(multiCLK[12]), .io_multiCLK_13(multiCLK[13]), .io_multiCLK_14(multiCLK[14]), .io_multiCLK_15(multiCLK[15]), .io_dDatIn(dDat_w[0]), .io_dDatOut(dDat_w[1]), .io_uDatIn(uDat_w[1]), .io_uDatOut(uDat_w[0]), .io_iqspi_sck(qspi_sck), .io_iqspi_mosi(qspi_mosi), .io_iqspi_miso(qspi_miso[4*1+3:4*1]), .io_iqspi_isDirIn(), .io_iqspi_csn(spi_csn[1]), .io_ospi_sck (spi_sck), .io_ospi_mosi(spi_mosi), .io_ospi_miso(spi_miso[1]), .io_ospi_csn (spi_csn[6]), .io_oqspi_sck(qspi_sck), .io_oqspi_mosi(qspi_mosi), .io_oqspi_miso(qspi_miso[4*6+3:4*6]), .io_oqspi_isDirIn(), .io_oqspi_csn(spi_csn[11]), .io_isSoftReset(isSoftReset[1]), .io_interrupt(io_int_sig[1]), .io_latchPin_0(latch0), .io_latchPin_1(latch1), .io_hwSerial(0), .io_uniCode(0) ); ShinTop s_ShinTop_slv1( .clock(clock), .reset(reset | isSoftReset[2]), .io_multiCLK_0(multiCLK[0]), .io_multiCLK_1(multiCLK[1]), .io_multiCLK_2(multiCLK[2]), .io_multiCLK_3(multiCLK[3]), .io_multiCLK_4(multiCLK[4]), .io_multiCLK_5(multiCLK[5]), .io_multiCLK_6(multiCLK[6]), .io_multiCLK_7(multiCLK[7]), .io_multiCLK_8(multiCLK[8]), .io_multiCLK_9(multiCLK[9]), .io_multiCLK_10(multiCLK[10]), .io_multiCLK_11(multiCLK[11]), .io_multiCLK_12(multiCLK[12]), .io_multiCLK_13(multiCLK[13]), .io_multiCLK_14(multiCLK[14]), .io_multiCLK_15(multiCLK[15]), .io_dDatIn(dDat_w[1]), .io_dDatOut(dDat_w[2]), .io_uDatIn(uDat_w[2]), .io_uDatOut(uDat_w[1]), .io_iqspi_sck(qspi_sck), .io_iqspi_mosi(qspi_mosi), .io_iqspi_miso(qspi_miso[4*2+3:4*2]), .io_iqspi_isDirIn(), .io_iqspi_csn(spi_csn[2]), .io_ospi_sck (spi_sck), .io_ospi_mosi(spi_mosi), .io_ospi_miso(spi_miso[2]), .io_ospi_csn (spi_csn[7]), .io_oqspi_sck(qspi_sck), .io_oqspi_mosi(qspi_mosi), .io_oqspi_miso(qspi_miso[4*7+3:4*7]), .io_oqspi_isDirIn(), .io_oqspi_csn(spi_csn[12]), .io_isSoftReset(isSoftReset[2]), .io_interrupt(io_int_sig[2]), .io_latchPin_0(latch0), .io_latchPin_1(latch1), .io_hwSerial(0), .io_uniCode(0) ); ShinTop s_ShinTop_slv2( .clock(clock), .reset(reset | isSoftReset[3]), .io_multiCLK_0(multiCLK[0]), .io_multiCLK_1(multiCLK[1]), .io_multiCLK_2(multiCLK[2]), .io_multiCLK_3(multiCLK[3]), .io_multiCLK_4(multiCLK[4]), .io_multiCLK_5(multiCLK[5]), .io_multiCLK_6(multiCLK[6]), .io_multiCLK_7(multiCLK[7]), .io_multiCLK_8(multiCLK[8]), .io_multiCLK_9(multiCLK[9]), .io_multiCLK_10(multiCLK[10]), .io_multiCLK_11(multiCLK[11]), .io_multiCLK_12(multiCLK[12]), .io_multiCLK_13(multiCLK[13]), .io_multiCLK_14(multiCLK[14]), .io_multiCLK_15(multiCLK[15]), .io_dDatIn(dDat_w[2]), .io_dDatOut(dDat_w[3]), .io_uDatIn(uDat_w[3]), .io_uDatOut(uDat_w[2]), .io_iqspi_sck(qspi_sck), .io_iqspi_mosi(qspi_mosi), .io_iqspi_miso(qspi_miso[4*3+3:4*3]), .io_iqspi_isDirIn(), .io_iqspi_csn(spi_csn[3]), .io_ospi_sck (spi_sck), .io_ospi_mosi(spi_mosi), .io_ospi_miso(spi_miso[3]), .io_ospi_csn (spi_csn[8]), .io_oqspi_sck(qspi_sck), .io_oqspi_mosi(qspi_mosi), .io_oqspi_miso(qspi_miso[4*8+3:4*8]), .io_oqspi_isDirIn(), .io_oqspi_csn(spi_csn[13]), .io_isSoftReset(isSoftReset[3]), .io_interrupt(io_int_sig[3]), .io_latchPin_0(latch0), .io_latchPin_1(latch1), .io_hwSerial(0), .io_uniCode(0) ); ShinTop s_ShinTop_slv3( .clock(clock), .reset(reset | isSoftReset[4]), .io_multiCLK_0(multiCLK[0]), .io_multiCLK_1(multiCLK[1]), .io_multiCLK_2(multiCLK[2]), .io_multiCLK_3(multiCLK[3]), .io_multiCLK_4(multiCLK[4]), .io_multiCLK_5(multiCLK[5]), .io_multiCLK_6(multiCLK[6]), .io_multiCLK_7(multiCLK[7]), .io_multiCLK_8(multiCLK[8]), .io_multiCLK_9(multiCLK[9]), .io_multiCLK_10(multiCLK[10]), .io_multiCLK_11(multiCLK[11]), .io_multiCLK_12(multiCLK[12]), .io_multiCLK_13(multiCLK[13]), .io_multiCLK_14(multiCLK[14]), .io_multiCLK_15(multiCLK[15]), .io_dDatIn(dDat_w[3]), .io_dDatOut(), .io_uDatIn(1'b0), .io_uDatOut(uDat_w[3]), .io_iqspi_sck(qspi_sck), .io_iqspi_mosi(qspi_mosi), .io_iqspi_miso(qspi_miso[4*4+3:4*4]), .io_iqspi_isDirIn(), .io_iqspi_csn(spi_csn[4]), .io_ospi_sck (spi_sck), .io_ospi_mosi(spi_mosi), .io_ospi_miso(spi_miso[4]), .io_ospi_csn (spi_csn[9]), .io_oqspi_sck(qspi_sck), .io_oqspi_mosi(qspi_mosi), .io_oqspi_miso(qspi_miso[4*9+3:4*9]), .io_oqspi_isDirIn(), .io_oqspi_csn(spi_csn[14]), .io_isSoftReset(isSoftReset[4]), .io_interrupt(io_int_sig[4]), .io_latchPin_0(latch0), .io_latchPin_1(latch1), .io_hwSerial(0), .io_uniCode(0) ); initial begin clock = 0; clk8x = 0; reset = 1; latch0 = 0; latch1 = 0; _reset_deactive = 1'b0; $timeformat(-9, 2, " ns", 8); spi_csn = ~15'b0; #100 reset <= 1; #240 reset <= 0; //#20000000 #1000000000 //#5000000 $display("Time Out !!!"); $fclose(spidata_file); $stop; end initial begin forever begin #20 clk8x <= ~clk8x; end end initial begin forever begin #80 clock <= ~clock; end end generate for( genvar i = 0; i < 16; i = i + 1 ) begin initial begin multiCLK[i] = 0; for( integer j = 0; j < i; j = j + 1 ) begin #20 ; end forever begin #80 multiCLK[i] <= ~multiCLK[i]; end end end endgenerate initial begin spidata_file = $fopen("spi_trans_data.txt", "w"); if (!spidata_file) $display("文件打开失败"); $dumpfile("./tb/build/wave.vcd"); //生成的vcd文件名称 $dumpvars(0, ShinTopSpiTb);//tb模块名称 end always @(posedge reset) begin _reset_deactive <= 1'b0; end always @(negedge reset) begin _reset_deactive <= 1'b1; end `define SCKFRE #640 reg sck = 0; initial begin forever begin `SCKFRE sck <= ~sck; end end assign spi_sck = sck; assign qspi_sck = sck; reg [7:0] txBuf[0:2047]; reg [7:0] rxBuf[0:2047]; reg [7:0] exChangeRego; reg [7:0] exChangeRegi; assign spi_mosi = exChangeRego[7]; assign qspi_mosi = exChangeRego[7:4]; wire [3:0] qspi_mux_miso = ( qspi_miso[4*0+3:4*0] & ~{4{spi_csn[ 0]}}) | ( qspi_miso[4*1+3:4*1] & ~{4{spi_csn[ 1]}}) | ( qspi_miso[4*2+3:4*2] & ~{4{spi_csn[ 2]}}) | ( qspi_miso[4*3+3:4*3] & ~{4{spi_csn[ 3]}}) | ( qspi_miso[4*4+3:4*4] & ~{4{spi_csn[ 4]}}) | ( qspi_miso[4*5+3:4*5] & ~{4{spi_csn[10]}}) | ( qspi_miso[4*6+3:4*6] & ~{4{spi_csn[11]}}) | ( qspi_miso[4*7+3:4*7] & ~{4{spi_csn[12]}}) | ( qspi_miso[4*8+3:4*8] & ~{4{spi_csn[13]}}) | ( qspi_miso[4*9+3:4*9] & ~{4{spi_csn[14]}}); wire spi_mux_miso = ( spi_miso[0] & ~spi_csn[5] ) | ( spi_miso[1] & ~spi_csn[6] ) | ( spi_miso[2] & ~spi_csn[7] ) | ( spi_miso[3] & ~spi_csn[8] ) | ( spi_miso[4] & ~spi_csn[9] ); reg isReq = 0; reg isBusy = 0; reg [11:0] length; reg [7:0] idx; reg [11:0] transCnt; reg [11:0] byteCnt; reg [2:0] bitCnt; always @(posedge clock) begin if( isReq & sck == 0 ) begin isBusy <= #5 1'b1; transCnt <= #5 0; byteCnt <= #5 ~12'b0; bitCnt <= #5 ~3'b0; spi_csn[idx] <= #5 1'b0; exChangeRego <= txBuf[0]; end end wire isQspi = (idx >= 0 && idx <= 4) || idx >= 10; wire [11:0] nextByteCnt = byteCnt + 1; //输出 always @(negedge sck) begin if( isBusy ) begin if( &bitCnt ) begin exChangeRego <= txBuf[nextByteCnt]; end else begin exChangeRego <= isQspi ? exChangeRego << 4 : exChangeRego << 1; end end end //输入 always @(posedge sck) begin if( isBusy ) begin if( transCnt <= length ) begin if( isQspi ) begin bitCnt <= ~bitCnt; end else begin bitCnt <= bitCnt + 1; end if( &bitCnt ) begin byteCnt <= byteCnt +1; transCnt <= transCnt + 1; if( txBuf[2] === 1 & nextByteCnt >= 4) begin rxBuf[byteCnt] <= exChangeRegi; //$display("spi read out %x", exChangeRegi); end if( txBuf[2] === 1 & nextByteCnt >= 3) begin exChangeRegi <= isQspi ? {exChangeRegi[3:0], qspi_mux_miso} : {exChangeRegi[6:0], spi_mux_miso}; end else begin exChangeRegi <= 0; end end else begin exChangeRegi <= isQspi ? {exChangeRegi[3:0], qspi_mux_miso} : {exChangeRegi[6:0], spi_mux_miso}; end end else begin isBusy <= #5 1'b0; spi_csn[idx] <= #5 1'b1; end end end //mst slv0~slv3的 内部qspi调用即设置 //sidx为0~4;外部spi为5~9,外部qspi为10~15 task spi_trans( input [15:0] saddress, input [7:0] scmd, input [12:0] slength,input [7:0] sidx ); begin txBuf[0] <= saddress[15:8]; txBuf[1] <= saddress[7:0]; txBuf[2] <= scmd; length <= slength + 3; idx <= sidx; #5 @(negedge sck) isReq <= 1; @(posedge sck) #5 isReq <= 0; @( negedge isBusy) #1000 begin //$fwrite(spidata_file, "------------%5t------------\n", $realtime); $fwrite(spidata_file, "T:%t \tdev:%4d, addr:0x%02h%02h, %s, len:%4d\n", $realtime, ((sidx >= 5)? ((sidx >= 10)? (sidx - 10):(sidx - 5)):sidx), txBuf[0], txBuf[1], ((txBuf[2] == 0)? "Write":" Read"), slength); if ( ((saddress == 16'h0800) || (saddress == 16'h1000) || (saddress == 16'h1800) || (saddress == 16'h2000) || (saddress == 16'h2800) || (saddress == 16'h3000) || (saddress == 16'h3800) || (saddress == 16'h4000)) && ((sidx == 0) || (sidx == 5) || (sidx == 10))) begin _pos = 3; for (integer _k = 0; _k < 4; _k++) begin if (scmd == 0) begin $fwrite(spidata_file, "%02h ", txBuf[_k + _pos]); end else begin $fwrite(spidata_file, "%02h ", rxBuf[_k + _pos]); end end $fwrite(spidata_file, "\n"); _pos = 4 + _pos; for (; _pos < slength; ) begin for (integer _k = 0; _k < 6; _k++) begin if (scmd == 0) begin $fwrite(spidata_file, "%02h ", txBuf[_k + _pos]); _len = txBuf[_pos + 5] + (txBuf[_pos + 4] & 8'h0f) * 256; end else begin $fwrite(spidata_file, "%02h ", rxBuf[_k + _pos]); _len = rxBuf[_pos + 5] + (rxBuf[_pos + 4] & 8'h0f) * 256; end end begin:PRINT_PKT_COMMENT integer dev; integer addr_type; integer addr; integer cmd; integer len; if (scmd == 0) begin addr_type = txBuf[_pos + 1] & 8'h3; dev = (txBuf[_pos] >> 2) * 256 + ((txBuf[_pos + 1] >> 2) & 8'hff); addr = txBuf[_pos + 2] * 256 + (txBuf[_pos + 3] & 8'hff); cmd = (txBuf[_pos + 4] >> 4) & 8'h0f; len = (txBuf[_pos + 4] & 8'h0f) * 256 + (txBuf[_pos + 5] & 8'hff); end else begin addr_type = rxBuf[_pos + 1] & 8'h3; dev = (rxBuf[_pos] >> 2) * 256 + ((rxBuf[_pos + 1] >> 2) & 8'hff); addr = rxBuf[_pos + 2] * 256 + (rxBuf[_pos + 3] & 8'hff); cmd = (rxBuf[_pos + 4] >> 4) & 8'h0f; len = (rxBuf[_pos + 4] & 8'h0f) * 256 + (rxBuf[_pos + 5] & 8'hff); end if (addr_type == 0) $fwrite(spidata_file, "// type:%3d dev:%3d addr:0x%04x cmd:0x%1x len:%3d", addr_type, dev, addr[15:0], cmd[3:0], len); else begin addr = dev * 65536 + addr; $fwrite(spidata_file, "// type:%3d addr:0x%08x cmd:0x%1x len:%3d", addr_type, addr, cmd[3:0], len); end end $fwrite(spidata_file, "\n{{ "); _pos = _pos + 6; for (integer _k = 0; _k < _len; _k++) begin if (scmd == 0) begin $fwrite(spidata_file, "%02h ", txBuf[_k + _pos]); end else begin $fwrite(spidata_file, "%02h ", rxBuf[_k + _pos]); end c_line = 0; if ((_k + 2)%16 == 0) begin $fwrite(spidata_file, "\n"); c_line = 1; end end $fwrite(spidata_file, "}}\n"); _pos = _pos + _len; for (integer _k = 0; _k < 2; _k++) begin if (scmd == 0) begin $fwrite(spidata_file, "%02h ", txBuf[_k + _pos]); end else begin $fwrite(spidata_file, "%02h ", rxBuf[_k + _pos]); end end _pos = _pos + 2; $fwrite(spidata_file, "\n"); end end else begin for (integer i=0; i= 5000000.0) begin $display("comm timeout."); is_run = 0; end end end endtask initial begin #1000 `ifdef ENABLE_REG_RW1_TEST /*--------------------------------------------------------------------------------------------------------- 测试用例 1. 从IP中读取寄存器,上电后的寄存器期望值为0 ---------------------------------------------------------------------------------------------------------*/ begin:READ_REG_TESTCASE `BEGIN_TESTCASE(`ENABLE_REG_RW1_TEST); _t_start = $realtime; $fdisplay(spidata_file, "测试用例:从IP中读取寄存器,上电后的寄存器期望值为0"); `SPI_TRANS( (16'h00), (`SPI_READ), (64), (`IF_IQSPI(0)) ); `SPI_TRANS( (16'h00), (`SPI_READ), (64), (`IF_IQSPI(1)) ); `SPI_TRANS( (16'h00), (`SPI_READ), (64), (`IF_IQSPI(2)) ); `SPI_TRANS( (16'h00), (`SPI_READ), (64), (`IF_IQSPI(3)) ); `SPI_TRANS( (16'h00), (`SPI_READ), (64), (`IF_IQSPI(4)) ); _t_end = $realtime; $fdisplay(spidata_file, "该测试用例运行时间:%t\n", _t_end - _t_start); `END_TESTCASE(`ENABLE_REG_RW1_TEST); end `endif begin:SETTING_INTERFACE if ((`INTERFACE_IDX) == 5) begin $fdisplay(spidata_file, "\n\n从内部QSPI配置使用外部的SPI接口访问EasyBus"); txBuf[0+3] = 8'h01; spi_trans( (16'h09), (`SPI_WRITE), (1), (`IF_IQSPI(0)) ); spi_trans( (16'h09), (`SPI_WRITE), (1), (`IF_IQSPI(1)) ); spi_trans( (16'h09), (`SPI_WRITE), (1), (`IF_IQSPI(2)) ); spi_trans( (16'h09), (`SPI_WRITE), (1), (`IF_IQSPI(3)) ); spi_trans( (16'h09), (`SPI_WRITE), (1), (`IF_IQSPI(4)) ); end else if ((`INTERFACE_IDX) == 10) begin $fdisplay(spidata_file, "\n\n从内部QSPI配置使用外部的QSPI接口访问EasyBus"); txBuf[0+3] = 8'h02; spi_trans( (16'h09), (`SPI_WRITE), (1), (`IF_IQSPI(0)) ); spi_trans( (16'h09), (`SPI_WRITE), (1), (`IF_IQSPI(1)) ); spi_trans( (16'h09), (`SPI_WRITE), (1), (`IF_IQSPI(2)) ); spi_trans( (16'h09), (`SPI_WRITE), (1), (`IF_IQSPI(3)) ); spi_trans( (16'h09), (`SPI_WRITE), (1), (`IF_IQSPI(4)) ); end else begin $fdisplay(spidata_file, "\n\n从内部QSPI接口访问EasyBus"); end end `ifdef ENABLE_INT_INIT_TEST begin:CHECK_INTERRUPT_SIG $fdisplay(spidata_file, "\n\n测试用例:检查设备的INTERRUPT信号"); @(posedge clock) begin if (io_int_sig[0]) $fdisplay(spidata_file, "**MST Interrupt."); if (io_int_sig[1]) $fdisplay(spidata_file, "**SLV0 Interrupt."); if (io_int_sig[2]) $fdisplay(spidata_file, "**SLV1 Interrupt."); if (io_int_sig[3]) $fdisplay(spidata_file, "**SLV2 Interrupt."); if (io_int_sig[4]) $fdisplay(spidata_file, "**SLV3 Interrupt."); end $fdisplay(spidata_file, "-检查中断"); spi_trans( (16'h70), (`SPI_READ), (14), (`IF_IDX(0)) ); spi_trans( (16'h70), (`SPI_READ), (14), (`IF_IDX(1)) ); spi_trans( (16'h70), (`SPI_READ), (14), (`IF_IDX(2)) ); spi_trans( (16'h70), (`SPI_READ), (14), (`IF_IDX(3)) ); spi_trans( (16'h70), (`SPI_READ), (14), (`IF_IDX(4)) ); $fdisplay(spidata_file, "-清中断"); txBuf[0+3] = 8'h00; txBuf[1+3] = 8'h00; txBuf[2+3] = 8'h00; txBuf[3+3] = 8'h80; spi_trans( (16'h78), (`SPI_WRITE), (4), (`IF_IDX(0)) ); spi_trans( (16'h78), (`SPI_WRITE), (4), (`IF_IDX(1)) ); spi_trans( (16'h78), (`SPI_WRITE), (4), (`IF_IDX(2)) ); spi_trans( (16'h78), (`SPI_WRITE), (4), (`IF_IDX(3)) ); spi_trans( (16'h78), (`SPI_WRITE), (4), (`IF_IDX(4)) ); $fdisplay(spidata_file, "-检查中断"); spi_trans( (16'h70), (`SPI_READ), (14), (`IF_IDX(0)) ); spi_trans( (16'h70), (`SPI_READ), (14), (`IF_IDX(1)) ); spi_trans( (16'h70), (`SPI_READ), (14), (`IF_IDX(2)) ); spi_trans( (16'h70), (`SPI_READ), (14), (`IF_IDX(3)) ); spi_trans( (16'h70), (`SPI_READ), (14), (`IF_IDX(4)) ); end begin:CHECK_INTERRUPT_CFG_REG $fdisplay(spidata_file, "\n\n测试用例:检查设备的INTERRUPT信号设置寄存器"); $fdisplay(spidata_file, "-检查中断"); spi_trans( (16'h70), (`SPI_READ), (4), (`IF_IDX(0)) ); spi_trans( (16'h70), (`SPI_READ), (4), (`IF_IDX(1)) ); spi_trans( (16'h70), (`SPI_READ), (4), (`IF_IDX(2)) ); spi_trans( (16'h70), (`SPI_READ), (4), (`IF_IDX(3)) ); spi_trans( (16'h70), (`SPI_READ), (4), (`IF_IDX(4)) ); $fdisplay(spidata_file, "-设置中断"); txBuf[0+3] = 8'h00; txBuf[1+3] = 8'h00; txBuf[2+3] = 8'h00; txBuf[3+3] = 8'h00; spi_trans( (16'h70), (`SPI_WRITE), (4), (`IF_IDX(0)) ); spi_trans( (16'h70), (`SPI_WRITE), (4), (`IF_IDX(1)) ); spi_trans( (16'h70), (`SPI_WRITE), (4), (`IF_IDX(2)) ); spi_trans( (16'h70), (`SPI_WRITE), (4), (`IF_IDX(3)) ); spi_trans( (16'h70), (`SPI_WRITE), (4), (`IF_IDX(4)) ); $fdisplay(spidata_file, "-检查中断"); spi_trans( (16'h70), (`SPI_READ), (4), (`IF_IDX(0)) ); spi_trans( (16'h70), (`SPI_READ), (4), (`IF_IDX(1)) ); spi_trans( (16'h70), (`SPI_READ), (4), (`IF_IDX(2)) ); spi_trans( (16'h70), (`SPI_READ), (4), (`IF_IDX(3)) ); spi_trans( (16'h70), (`SPI_READ), (4), (`IF_IDX(4)) ); $fdisplay(spidata_file, "-设置中断"); txBuf[0+3] = 8'h0F; txBuf[1+3] = 8'h00; txBuf[2+3] = 8'h00; txBuf[3+3] = 8'h00; spi_trans( (16'h70), (`SPI_WRITE), (4), (`IF_IDX(0)) ); txBuf[0+3] = 8'h00; txBuf[1+3] = 8'hFF; txBuf[2+3] = 8'h00; txBuf[3+3] = 8'h00; spi_trans( (16'h70), (`SPI_WRITE), (4), (`IF_IDX(1)) ); spi_trans( (16'h70), (`SPI_WRITE), (4), (`IF_IDX(2)) ); spi_trans( (16'h70), (`SPI_WRITE), (4), (`IF_IDX(3)) ); spi_trans( (16'h70), (`SPI_WRITE), (4), (`IF_IDX(4)) ); $fdisplay(spidata_file, "-检查中断"); spi_trans( (16'h70), (`SPI_READ), (4), (`IF_IDX(0)) ); spi_trans( (16'h70), (`SPI_READ), (4), (`IF_IDX(1)) ); spi_trans( (16'h70), (`SPI_READ), (4), (`IF_IDX(2)) ); spi_trans( (16'h70), (`SPI_READ), (4), (`IF_IDX(3)) ); spi_trans( (16'h70), (`SPI_READ), (4), (`IF_IDX(4)) ); $fdisplay(spidata_file, "-中断改为脉冲模式"); txBuf[3] = 8'h10; txBuf[4] = 8'h8A; spi_trans( (16'h7c), (`SPI_WRITE), (2), (`IF_IDX(0)) ); spi_trans( (16'h7c), (`SPI_WRITE), (2), (`IF_IDX(1)) ); spi_trans( (16'h7c), (`SPI_WRITE), (2), (`IF_IDX(2)) ); spi_trans( (16'h7c), (`SPI_WRITE), (2), (`IF_IDX(3)) ); spi_trans( (16'h7c), (`SPI_WRITE), (2), (`IF_IDX(4)) ); end `endif `include "tc_runlist.vh" #1000000 $display("Testcase Finished! Time Out !!!"); $fclose(spidata_file); $stop; end endmodule