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// OpenSPARC T2 Processor File: mmu_mel_dp.v
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wire parity_err_for_htc_in;
output [1:0] mel_crit_parity;
output mel_htc_parity_err;
////////////////////////////////////////////////////////////////////////////////
assign pce_ov = tcu_pce_ov;
// Data is flopped, but parity is not... so flop here
mmu_mel_dp_msff_macro__width_4 ecc_lat (
.scan_in(ecc_lat_scanin),
.scan_out(ecc_lat_scanout),
parity_err_for_htc_in }),
assign mel_crit_parity[1:0] =
mmu_mel_dp_buff_macro__rep_1__width_2 parity_buf (
.dout (mel_parity [1:0] )
mmu_mel_dp_inv_macro__width_1 cerer_mrau_inv (
mmu_mel_dp_inv_macro__width_1 cerer_hwtwmu_inv (
.din (tlu_cerer_hwtwmu ),
mmu_mel_dp_nor_macro__ports_2__width_1 parity_err_inv_nor (
.din0 (med0_parity_err ),
.din1 (med1_parity_err ),
mmu_mel_dp_nor_macro__ports_2__width_1 mrau_in_nor (
mmu_mel_dp_nor_macro__ports_2__width_1 parity_err_for_htc_in_nor (
.dout (parity_err_for_htc_in )
assign mel_htc_parity_err =
supply0 vss; // <- port for ground
supply1 vdd; // <- port for power
assign ecc_lat_scanin = scan_in ;
assign scan_out = ecc_lat_scanout ;
// any PARAMS parms go into naming of macro
module mmu_mel_dp_msff_macro__width_4 (
module mmu_mel_dp_buff_macro__rep_1__width_2 (
module mmu_mel_dp_inv_macro__width_1 (
// nor macro for ports = 2,3
module mmu_mel_dp_nor_macro__ports_2__width_1 (