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📄 system1.map.eqn

📁 用VHDL语言实现的控制DS18B20构成测温仪表的程序
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--ramdata[2] is ramdata[2]
--operation mode is normal

ramdata[2]_lut_out = \Reset1:buf[2];
ramdata[2] = DFFEA(ramdata[2]_lut_out, clk_1u, , , allstate.rstop, , );

--A1L203Q is ramdata[2]~15
--operation mode is normal

A1L203Q = ramdata[2];


--H1_temp2[0] is led_convertor:display_component|convertor:my_convert|temp2[0]
--operation mode is up_dn_cntr

H1_temp2[0]_lut_out = ramdata[2] $ H1_temp2[0];
H1_temp2[0] = DFFEA(H1_temp2[0]_lut_out, C1_enb, !C1_clr, , , , );

--H1L156Q is led_convertor:display_component|convertor:my_convert|temp2[0]~160
--operation mode is up_dn_cntr

H1L156Q = H1_temp2[0];

--G11_cout[0] is led_convertor:display_component|convertor:my_convert|lpm_add_sub:add_rtl_3|addcore:adder|a_csnbuffer:result_node|cout[0]
--operation mode is up_dn_cntr

G11_cout[0] = CARRY(H1_temp2[0]);


--C1_enb is led_convertor:display_component|enb
--operation mode is normal

C1_enb_lut_out = C1_\myled:temp0[2] # C1_\myled:temp0[1] # !C1_\myled:temp0[0];
C1_enb = DFFEA(C1_enb_lut_out, C1_clk_1k, , , C1_state.enable, , );

--C1L60Q is led_convertor:display_component|enb~5
--operation mode is normal

C1L60Q = C1_enb;


--H1_temp1[0] is led_convertor:display_component|convertor:my_convert|temp1[0]
--operation mode is up_dn_cntr

H1_temp1[0]_lut_out = ramdata[1] $ H1_temp1[0];
H1_temp1[0] = DFFEA(H1_temp1[0]_lut_out, C1_enb, !C1_clr, , , , );

--H1L147Q is led_convertor:display_component|convertor:my_convert|temp1[0]~34
--operation mode is up_dn_cntr

H1L147Q = H1_temp1[0];

--G14_cout[0] is led_convertor:display_component|convertor:my_convert|lpm_add_sub:add_rtl_4|addcore:adder|a_csnbuffer:result_node|cout[0]
--operation mode is up_dn_cntr

G14_cout[0] = CARRY(H1_temp1[0]);


--ramdata[1] is ramdata[1]
--operation mode is normal

ramdata[1]_lut_out = \Reset1:buf[1];
ramdata[1] = DFFEA(ramdata[1]_lut_out, clk_1u, , , allstate.rstop, , );

--A1L201Q is ramdata[1]~16
--operation mode is normal

A1L201Q = ramdata[1];


--H1_temp3[0] is led_convertor:display_component|convertor:my_convert|temp3[0]
--operation mode is up_dn_cntr

H1_temp3[0]_lut_out = ramdata[3] $ H1_temp3[0];
H1_temp3[0] = DFFEA(H1_temp3[0]_lut_out, C1_enb, !C1_clr, , , , );

--H1L169Q is led_convertor:display_component|convertor:my_convert|temp3[0]~1285
--operation mode is up_dn_cntr

H1L169Q = H1_temp3[0];

--G20_cout[0] is led_convertor:display_component|convertor:my_convert|lpm_add_sub:add_rtl_6|addcore:adder|a_csnbuffer:result_node|cout[0]
--operation mode is up_dn_cntr

G20_cout[0] = CARRY(H1_temp3[0]);


--ramdata[3] is ramdata[3]
--operation mode is normal

ramdata[3]_lut_out = \Reset1:buf[3];
ramdata[3] = DFFEA(ramdata[3]_lut_out, clk_1u, , , allstate.rstop, , );

--A1L205Q is ramdata[3]~17
--operation mode is normal

A1L205Q = ramdata[3];


--ramdata[11] is ramdata[11]
--operation mode is normal

ramdata[11]_lut_out = \Reset1:buf[11];
ramdata[11] = DFFEA(ramdata[11]_lut_out, clk_1u, , , allstate.rstop, , );

--A1L221Q is ramdata[11]~18
--operation mode is normal

A1L221Q = ramdata[11];


--G35_cs_buffer[0] is led_convertor:display_component|convertor:my_convert|lpm_add_sub:add_rtl_11|addcore:adder|a_csnbuffer:result_node|cs_buffer[0]
--operation mode is arithmetic

G35_cs_buffer[0] = H1L302 $ H1L135;

--G35L8 is led_convertor:display_component|convertor:my_convert|lpm_add_sub:add_rtl_11|addcore:adder|a_csnbuffer:result_node|cs_buffer[0]~85
--operation mode is arithmetic

G35L8 = H1L302 $ H1L135;

--G35_cout[0] is led_convertor:display_component|convertor:my_convert|lpm_add_sub:add_rtl_11|addcore:adder|a_csnbuffer:result_node|cout[0]
--operation mode is arithmetic

G35_cout[0] = CARRY(H1L302 & !H1L135);


--ramdata[5] is ramdata[5]
--operation mode is normal

ramdata[5]_lut_out = \Reset1:buf[5];
ramdata[5] = DFFEA(ramdata[5]_lut_out, clk_1u, , , allstate.rstop, , );

--A1L209Q is ramdata[5]~19
--operation mode is normal

A1L209Q = ramdata[5];


--H1_temp5[0] is led_convertor:display_component|convertor:my_convert|temp5[0]
--operation mode is normal

H1_temp5[0]_lut_out = ramdata[5] $ H1_temp5[0];
H1_temp5[0] = DFFEA(H1_temp5[0]_lut_out, C1_enb, !C1_clr, , , , );

--H1L231Q is led_convertor:display_component|convertor:my_convert|temp5[0]~1344
--operation mode is normal

H1L231Q = H1_temp5[0];


--ramdata[4] is ramdata[4]
--operation mode is normal

ramdata[4]_lut_out = \Reset1:buf[4];
ramdata[4] = DFFEA(ramdata[4]_lut_out, clk_1u, , , allstate.rstop, , );

--A1L207Q is ramdata[4]~20
--operation mode is normal

A1L207Q = ramdata[4];


--G23_cs_buffer[0] is led_convertor:display_component|convertor:my_convert|lpm_add_sub:add_rtl_7|addcore:adder|a_csnbuffer:result_node|cs_buffer[0]
--operation mode is arithmetic

G23_cs_buffer[0] = H1L207 # H1L215;

--G23L7 is led_convertor:display_component|convertor:my_convert|lpm_add_sub:add_rtl_7|addcore:adder|a_csnbuffer:result_node|cs_buffer[0]~54
--operation mode is arithmetic

G23L7 = H1L207 # H1L215;

--G23_cout[0] is led_convertor:display_component|convertor:my_convert|lpm_add_sub:add_rtl_7|addcore:adder|a_csnbuffer:result_node|cout[0]
--operation mode is arithmetic

G23_cout[0] = CARRY(H1L207 # H1L215);


--G14_cs_buffer[1] is led_convertor:display_component|convertor:my_convert|lpm_add_sub:add_rtl_4|addcore:adder|a_csnbuffer:result_node|cs_buffer[1]
--operation mode is arithmetic

G14_cs_buffer[1] = H1_temp1[1] $ (G14_cout[0]);

--G14L7 is led_convertor:display_component|convertor:my_convert|lpm_add_sub:add_rtl_4|addcore:adder|a_csnbuffer:result_node|cs_buffer[1]~39
--operation mode is arithmetic

G14L7 = H1_temp1[1] $ (G14_cout[0]);

--G14_cout[1] is led_convertor:display_component|convertor:my_convert|lpm_add_sub:add_rtl_4|addcore:adder|a_csnbuffer:result_node|cout[1]
--operation mode is arithmetic

G14_cout[1] = CARRY(H1_temp1[1] & (G14_cout[0]));


--H1_temp1[1] is led_convertor:display_component|convertor:my_convert|temp1[1]
--operation mode is normal

H1_temp1[1]_lut_out = ramdata[1] & G14_cs_buffer[1] # !ramdata[1] & (H1_temp1[1]);
H1_temp1[1] = DFFEA(H1_temp1[1]_lut_out, C1_enb, !C1_clr, , , , );

--H1L149Q is led_convertor:display_component|convertor:my_convert|temp1[1]~35
--operation mode is normal

H1L149Q = H1_temp1[1];


--G23_cs_buffer[1] is led_convertor:display_component|convertor:my_convert|lpm_add_sub:add_rtl_7|addcore:adder|a_csnbuffer:result_node|cs_buffer[1]
--operation mode is arithmetic

G23_cs_buffer[1] = G23_cout[0] $ (H1L216 # H1L217);

--G23L9 is led_convertor:display_component|convertor:my_convert|lpm_add_sub:add_rtl_7|addcore:adder|a_csnbuffer:result_node|cs_buffer[1]~55
--operation mode is arithmetic

G23L9 = G23_cout[0] $ (H1L216 # H1L217);

--G23_cout[1] is led_convertor:display_component|convertor:my_convert|lpm_add_sub:add_rtl_7|addcore:adder|a_csnbuffer:result_node|cout[1]
--operation mode is arithmetic

G23_cout[1] = CARRY(G23_cout[0] & (H1L216 # H1L217));


--H1_temp1[2] is led_convertor:display_component|convertor:my_convert|temp1[2]
--operation mode is normal

H1_temp1[2]_lut_out = ramdata[1] & (!G14_cs_buffer[2]) # !ramdata[1] & H1_temp1[2];
H1_temp1[2] = DFFEA(H1_temp1[2]_lut_out, C1_enb, !C1_clr, , , , );

--H1L151Q is led_convertor:display_component|convertor:my_convert|temp1[2]~36
--operation mode is normal

H1L151Q = H1_temp1[2];


--G14_cs_buffer[2] is led_convertor:display_component|convertor:my_convert|lpm_add_sub:add_rtl_4|addcore:adder|a_csnbuffer:result_node|cs_buffer[2]
--operation mode is arithmetic

G14_cs_buffer[2] = H1_temp1[2] $ (G14_cout[1]);

--G14L9 is led_convertor:display_component|convertor:my_convert|lpm_add_sub:add_rtl_4|addcore:adder|a_csnbuffer:result_node|cs_buffer[2]~40
--operation mode is arithmetic

G14L9 = H1_temp1[2] $ (G14_cout[1]);

--G14_cout[2] is led_convertor:display_component|convertor:my_convert|lpm_add_sub:add_rtl_4|addcore:adder|a_csnbuffer:result_node|cout[2]
--operation mode is arithmetic

G14_cout[2] = CARRY(H1_temp1[2] # G14_cout[1]);


--H1_temp1[3] is led_convertor:display_component|convertor:my_convert|temp1[3]
--operation mode is normal

H1_temp1[3]_lut_out = ramdata[1] & E5_unreg_res_node[3] # !ramdata[1] & (H1_temp1[3]);
H1_temp1[3] = DFFEA(H1_temp1[3]_lut_out, C1_enb, !C1_clr, , , , );

--H1L153Q is led_convertor:display_component|convertor:my_convert|temp1[3]~37
--operation mode is normal

H1L153Q = H1_temp1[3];


--C1_\mydivider:temp0[1] is led_convertor:display_component|\mydivider:temp0[1]
--operation mode is normal

C1_\mydivider:temp0[1]_lut_out = G8_cs_buffer[1] & (!A1L259);
C1_\mydivider:temp0[1] = DFFEA(C1_\mydivider:temp0[1]_lut_out, clk_1u, , , , , );

--C1L4Q is led_convertor:display_component|\mydivider:temp0[1]~1
--operation mode is normal

C1L4Q = C1_\mydivider:temp0[1];


--C1_\mydivider:temp0[7] is led_convertor:display_component|\mydivider:temp0[7]
--operation mode is normal

C1_\mydivider:temp0[7]_lut_out = E3_unreg_res_node[7] & (!A1L259);
C1_\mydivider:temp0[7] = DFFEA(C1_\mydivider:temp0[7]_lut_out, clk_1u, , , , , );

--C1L16Q is led_convertor:display_component|\mydivider:temp0[7]~4
--operation mode is normal

C1L16Q = C1_\mydivider:temp0[7];


--C1_\mydivider:temp0[2] is led_convertor:display_component|\mydivider:temp0[2]
--operation mode is normal

C1_\mydivider:temp0[2]_lut_out = G8_cs_buffer[2];
C1_\mydivider:temp0[2] = DFFEA(C1_\mydivider:temp0[2]_lut_out, clk_1u, , , , , );

--C1L6Q is led_convertor:display_component|\mydivider:temp0[2]~2
--operation mode is normal

C1L6Q = C1_\mydivider:temp0[2];


--C1_\mydivider:temp0[0] is led_convertor:display_component|\mydivider:temp0[0]
--operation mode is arithmetic

C1_\mydivider:temp0[0]_lut_out = !C1_\mydivider:temp0[0] & !A1L259;
C1_\mydivider:temp0[0] = DFFEA(C1_\mydivider:temp0[0]_lut_out, clk_1u, , , , , );

--C1L2Q is led_convertor:display_component|\mydivider:temp0[0]~6
--operation mode is arithmetic

C1L2Q = C1_\mydivider:temp0[0];

--G8_cout[0] is led_convertor:display_component|lpm_add_sub:add_rtl_2|addcore:adder|a_csnbuffer:result_node|cout[0]
--operation mode is arithmetic

G8_cout[0] = CARRY(C1_\mydivider:temp0[0]);


--A1L251 is rtl~859
--operation mode is normal

A1L251 = C1_\mydivider:temp0[1] & C1_\mydivider:temp0[7] & !C1_\mydivider:temp0[2] & !C1_\mydivider:temp0[0];

--A1L276 is rtl~886
--operation mode is normal

A1L276 = C1_\mydivider:temp0[1] & C1_\mydivider:temp0[7] & !C1_\mydivider:temp0[2] & !C1_\mydivider:temp0[0];

--A1L277 is rtl~887
--operation mode is normal

A1L277 = C1_\mydivider:temp0[1] & C1_\mydivider:temp0[7] & !C1_\mydivider:temp0[2] & !C1_\mydivider:temp0[0];


--C1_\mydivider:temp0[6] is led_convertor:display_component|\mydivider:temp0[6]
--operation mode is normal

C1_\mydivider:temp0[6]_lut_out = G8_cs_buffer[6] & (!A1L259);
C1_\mydivider:temp0[6] = DFFEA(C1_\mydivider:temp0[6]_lut_out, clk_1u, , , , , );

--C1L14Q is led_convertor:display_component|\mydivider:temp0[6]~1
--operation mode is normal

C1L14Q = C1_\mydivider:temp0[6];


--C1_\mydivider:temp0[5] is led_convertor:display_component|\mydivider:temp0[5]
--operation mode is normal

C1_\mydivider:temp0[5]_lut_out = G8_cs_buffer[5] & (!A1L259);
C1_\mydivider:temp0[5] = DFFEA(C1_\mydivider:temp0[5]_lut_out, clk_1u, , , , , );

--C1L12Q is led_convertor:display_component|\mydivider:temp0[5]~1
--operation mode is normal

C1L12Q = C1_\mydivider:temp0[5];


--C1_\mydivider:temp0[4] is led_convertor:display_component|\mydivider:temp0[4]
--operation mode is normal

C1_\mydivider:temp0[4]_lut_out = G8_cs_buffer[4] & (!A1L259);
C1_\mydivider:temp0[4] = DFFEA(C1_\mydivider:temp0[4]_lut_out, clk_1u, , , , , );

--C1L10Q is led_convertor:display_component|\mydivider:temp0[4]~1
--operation mode is normal

C1L10Q = C1_\mydivider:temp0[4];


--C1_\mydivider:temp0[3] is led_convertor:display_component|\mydivider:temp0[3]
--operation mode is normal

C1_\mydivider:temp0[3]_lut_out = G8_cs_buffer[3] & (!A1L259);
C1_\mydivider:temp0[3] = DFFEA(C1_\mydivider:temp0[3]_lut_out, clk_1u, , , , , );

--C1L8Q is led_convertor:display_component|\mydivider:temp0[3]~1
--operation mode is normal

C1L8Q = C1_\mydivider:temp0[3];


--A1L259 is rtl~868
--operation mode is normal

A1L259 = (C1_\mydivider:temp0[6] & C1_\mydivider:temp0[5] & C1_\mydivider:temp0[4] & C1_\mydivider:temp0[3]) & CASCADE(A1L277);

--A1L278 is rtl~888
--operation mode is normal

A1L278 = (C1_\mydivider:temp0[6] & C1_\mydivider:temp0[5] & C1_\mydivider:temp0[4] & C1_\mydivider:temp0[3]) & CASCADE(A1L277);


--C1_state.enable is led_convertor:display_component|state.enable
--operation mode is normal

C1_state.enable_lut_out = C1L59 & (!C1_state.clear) # !C1L59 & C1_state.enable;
C1_state.enable = DFFEA(C1_state.enable_lut_out, C1_clk_1k, , , , , );

--C1L110Q is led_convertor:display_component|state.enable~9
--operation mode is normal

C1L110Q = C1_state.enable;


--allstate.wstop2 is allstate.wstop2
--operation mode is normal

allstate.wstop2_lut_out = allstate.wmaster2 & A1L234;
allstate.wstop2 = DFFEA(allstate.wstop2_lut_out, clk_1u, , , , , );

--A1L138Q is allstate.wstop2~21
--operation mode is normal

A1L138Q = allstate.wstop2;


--A1L237 is rtl~10
--operation mode is normal

A1L237 = A1L250 & \Reset1:temp0[1] & \Reset1:temp0[0] & !\Reset1:temp0[3];

--A1L279 is rtl~889
--operation mode is normal

A1L279 = A1L250 & \Reset1:temp0[1] & \Reset1:temp0[0] & !\Reset1:temp0[3];


--G5_cs_buffer[1] is lpm_add_sub:add_rtl_1|addcore:adder|a_csnbuffer:result_node|cs_buffer[1]
--operation mode is arithmetic

G5_cs_buffer[1] = \Reset1:cnter[1] $ (G5_cout[0]);

--G5L8 is lpm_add_sub:add_rtl_1|addcore:adder|a_csnbuffer:result_node|cs_buffer[1]~46
--operation mode is arithmetic

G5L8 = \Reset1:cnter[1] $ (G5_cout[0]);

--G5_cout[1] is lpm_add_sub:add_rtl_

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