Module Definition
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Module : prim_mubi4_sender
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00

Source File(s) :
/workspaces/repo/scratch/os_regression_2024_09_23/clkmgr-sim-vcs/default/sim-vcs/../src/lowrisc_prim_mubi_0.1/rtl/prim_mubi4_sender.sv

Module self-instances :
NAMESCORELINECONDTOGGLEFSMBRANCHASSERT
tb.dut.u_clkmgr_byp.u_io_byp_req 100.00 100.00 100.00
tb.dut.u_clkmgr_byp.u_all_byp_req 100.00 100.00 100.00
tb.dut.u_clkmgr_byp.u_hi_speed_sel 100.00 100.00 100.00
tb.dut.u_prim_mubi4_sender_clk_io_div4_infra 100.00 100.00 100.00
tb.dut.u_prim_mubi4_sender_clk_main_infra 100.00 100.00 100.00
tb.dut.u_prim_mubi4_sender_clk_usb_infra 100.00 100.00 100.00
tb.dut.u_prim_mubi4_sender_clk_io_infra 100.00 100.00 100.00
tb.dut.u_prim_mubi4_sender_clk_io_div2_infra 100.00 100.00 100.00
tb.dut.u_prim_mubi4_sender_clk_io_div4_secure 100.00 100.00 100.00
tb.dut.u_prim_mubi4_sender_clk_main_secure 100.00 100.00 100.00
tb.dut.u_prim_mubi4_sender_clk_io_div4_timers 100.00 100.00 100.00
tb.dut.u_prim_mubi4_sender_clk_io_div4_peri 100.00 100.00 100.00
tb.dut.u_prim_mubi4_sender_clk_io_div2_peri 100.00 100.00 100.00
tb.dut.u_prim_mubi4_sender_clk_io_peri 100.00 100.00 100.00
tb.dut.u_prim_mubi4_sender_clk_usb_peri 100.00 100.00 100.00
tb.dut.u_clk_main_aes_trans.u_prim_mubi4_sender 100.00 100.00 100.00
tb.dut.u_clk_main_hmac_trans.u_prim_mubi4_sender 100.00 100.00 100.00
tb.dut.u_clk_main_kmac_trans.u_prim_mubi4_sender 100.00 100.00 100.00
tb.dut.u_clk_main_otbn_trans.u_prim_mubi4_sender 100.00 100.00 100.00



Module Instance : tb.dut.u_clkmgr_byp.u_io_byp_req

Instance :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00


Instance's subtree :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00 100.00


Parent :
SCORELINECONDTOGGLEFSMBRANCHASSERTNAME
100.00 100.00 u_clkmgr_byp


Subtrees :
NAMESCORELINECONDTOGGLEFSMBRANCHASSERT
gen_flops.u_prim_flop 100.00 100.00 100.00
gen_sec_buf.u_prim_sec_buf 100.00 100.00



Module Instance : tb.dut.u_clkmgr_byp.u_all_byp_req

Instance :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00


Instance's subtree :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00 100.00


Parent :
SCORELINECONDTOGGLEFSMBRANCHASSERTNAME
100.00 100.00 u_clkmgr_byp


Subtrees :
NAMESCORELINECONDTOGGLEFSMBRANCHASSERT
gen_flops.u_prim_flop 100.00 100.00 100.00
gen_sec_buf.u_prim_sec_buf 100.00 100.00



Module Instance : tb.dut.u_clkmgr_byp.u_hi_speed_sel

Instance :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00


Instance's subtree :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00 100.00


Parent :
SCORELINECONDTOGGLEFSMBRANCHASSERTNAME
100.00 100.00 u_clkmgr_byp


Subtrees :
NAMESCORELINECONDTOGGLEFSMBRANCHASSERT
gen_flops.u_prim_flop 100.00 100.00 100.00



Module Instance : tb.dut.u_prim_mubi4_sender_clk_io_div4_infra

Instance :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00


Instance's subtree :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00 100.00


Parent :
SCORELINECONDTOGGLEFSMBRANCHASSERTNAME
98.65 100.00 93.24 100.00 100.00 100.00 dut


Subtrees :
NAMESCORELINECONDTOGGLEFSMBRANCHASSERT
gen_flops.u_prim_flop 100.00 100.00 100.00



Module Instance : tb.dut.u_prim_mubi4_sender_clk_main_infra

Instance :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00


Instance's subtree :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00 100.00


Parent :
SCORELINECONDTOGGLEFSMBRANCHASSERTNAME
98.65 100.00 93.24 100.00 100.00 100.00 dut


Subtrees :
NAMESCORELINECONDTOGGLEFSMBRANCHASSERT
gen_flops.u_prim_flop 100.00 100.00 100.00



Module Instance : tb.dut.u_prim_mubi4_sender_clk_usb_infra

Instance :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00


Instance's subtree :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00 100.00


Parent :
SCORELINECONDTOGGLEFSMBRANCHASSERTNAME
98.65 100.00 93.24 100.00 100.00 100.00 dut


Subtrees :
NAMESCORELINECONDTOGGLEFSMBRANCHASSERT
gen_flops.u_prim_flop 100.00 100.00 100.00



Module Instance : tb.dut.u_prim_mubi4_sender_clk_io_infra

Instance :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00


Instance's subtree :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00 100.00


Parent :
SCORELINECONDTOGGLEFSMBRANCHASSERTNAME
98.65 100.00 93.24 100.00 100.00 100.00 dut


Subtrees :
NAMESCORELINECONDTOGGLEFSMBRANCHASSERT
gen_flops.u_prim_flop 100.00 100.00 100.00



Module Instance : tb.dut.u_prim_mubi4_sender_clk_io_div2_infra

Instance :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00


Instance's subtree :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00 100.00


Parent :
SCORELINECONDTOGGLEFSMBRANCHASSERTNAME
98.65 100.00 93.24 100.00 100.00 100.00 dut


Subtrees :
NAMESCORELINECONDTOGGLEFSMBRANCHASSERT
gen_flops.u_prim_flop 100.00 100.00 100.00



Module Instance : tb.dut.u_prim_mubi4_sender_clk_io_div4_secure

Instance :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00


Instance's subtree :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00 100.00


Parent :
SCORELINECONDTOGGLEFSMBRANCHASSERTNAME
98.65 100.00 93.24 100.00 100.00 100.00 dut


Subtrees :
NAMESCORELINECONDTOGGLEFSMBRANCHASSERT
gen_flops.u_prim_flop 100.00 100.00 100.00



Module Instance : tb.dut.u_prim_mubi4_sender_clk_main_secure

Instance :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00


Instance's subtree :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00 100.00


Parent :
SCORELINECONDTOGGLEFSMBRANCHASSERTNAME
98.65 100.00 93.24 100.00 100.00 100.00 dut


Subtrees :
NAMESCORELINECONDTOGGLEFSMBRANCHASSERT
gen_flops.u_prim_flop 100.00 100.00 100.00



Module Instance : tb.dut.u_prim_mubi4_sender_clk_io_div4_timers

Instance :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00


Instance's subtree :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00 100.00


Parent :
SCORELINECONDTOGGLEFSMBRANCHASSERTNAME
98.65 100.00 93.24 100.00 100.00 100.00 dut


Subtrees :
NAMESCORELINECONDTOGGLEFSMBRANCHASSERT
gen_flops.u_prim_flop 100.00 100.00 100.00



Module Instance : tb.dut.u_prim_mubi4_sender_clk_io_div4_peri

Instance :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00


Instance's subtree :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00 100.00


Parent :
SCORELINECONDTOGGLEFSMBRANCHASSERTNAME
98.65 100.00 93.24 100.00 100.00 100.00 dut


Subtrees :
NAMESCORELINECONDTOGGLEFSMBRANCHASSERT
gen_flops.u_prim_flop 100.00 100.00 100.00



Module Instance : tb.dut.u_prim_mubi4_sender_clk_io_div2_peri

Instance :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00


Instance's subtree :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00 100.00


Parent :
SCORELINECONDTOGGLEFSMBRANCHASSERTNAME
98.65 100.00 93.24 100.00 100.00 100.00 dut


Subtrees :
NAMESCORELINECONDTOGGLEFSMBRANCHASSERT
gen_flops.u_prim_flop 100.00 100.00 100.00



Module Instance : tb.dut.u_prim_mubi4_sender_clk_io_peri

Instance :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00


Instance's subtree :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00 100.00


Parent :
SCORELINECONDTOGGLEFSMBRANCHASSERTNAME
98.65 100.00 93.24 100.00 100.00 100.00 dut


Subtrees :
NAMESCORELINECONDTOGGLEFSMBRANCHASSERT
gen_flops.u_prim_flop 100.00 100.00 100.00



Module Instance : tb.dut.u_prim_mubi4_sender_clk_usb_peri

Instance :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00


Instance's subtree :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00 100.00


Parent :
SCORELINECONDTOGGLEFSMBRANCHASSERTNAME
98.65 100.00 93.24 100.00 100.00 100.00 dut


Subtrees :
NAMESCORELINECONDTOGGLEFSMBRANCHASSERT
gen_flops.u_prim_flop 100.00 100.00 100.00



Module Instance : tb.dut.u_clk_main_aes_trans.u_prim_mubi4_sender

Instance :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00


Instance's subtree :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00 100.00


Parent :
SCORELINECONDTOGGLEFSMBRANCHASSERTNAME
100.00 100.00 100.00 100.00 u_clk_main_aes_trans


Subtrees :
NAMESCORELINECONDTOGGLEFSMBRANCHASSERT
gen_flops.u_prim_flop 100.00 100.00 100.00



Module Instance : tb.dut.u_clk_main_hmac_trans.u_prim_mubi4_sender

Instance :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00


Instance's subtree :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00 100.00


Parent :
SCORELINECONDTOGGLEFSMBRANCHASSERTNAME
100.00 100.00 100.00 100.00 u_clk_main_hmac_trans


Subtrees :
NAMESCORELINECONDTOGGLEFSMBRANCHASSERT
gen_flops.u_prim_flop 100.00 100.00 100.00



Module Instance : tb.dut.u_clk_main_kmac_trans.u_prim_mubi4_sender

Instance :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00


Instance's subtree :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00 100.00


Parent :
SCORELINECONDTOGGLEFSMBRANCHASSERTNAME
100.00 100.00 100.00 100.00 u_clk_main_kmac_trans


Subtrees :
NAMESCORELINECONDTOGGLEFSMBRANCHASSERT
gen_flops.u_prim_flop 100.00 100.00 100.00



Module Instance : tb.dut.u_clk_main_otbn_trans.u_prim_mubi4_sender

Instance :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00


Instance's subtree :
SCORELINECONDTOGGLEFSMBRANCHASSERT
100.00 100.00 100.00 100.00


Parent :
SCORELINECONDTOGGLEFSMBRANCHASSERTNAME
100.00 100.00 100.00 100.00 u_clk_main_otbn_trans


Subtrees :
NAMESCORELINECONDTOGGLEFSMBRANCHASSERT
gen_flops.u_prim_flop 100.00 100.00 100.00

Line Coverage for Module : prim_mubi4_sender ( parameter AsyncOn=1,EnSecBuf=1,ResetValue=9 )
Line Coverage for Module self-instances :
SCORELINE
100.00 100.00
tb.dut.u_clkmgr_byp.u_io_byp_req

SCORELINE
100.00 100.00
tb.dut.u_clkmgr_byp.u_all_byp_req

Line No.TotalCoveredPercent
TOTAL22100.00
CONT_ASSIGN3411100.00
CONT_ASSIGN8511100.00

33 logic [MuBi4Width-1:0] mubi, mubi_int, mubi_out; 34 1/1 assign mubi = MuBi4Width'(mubi_i); Tests: T4 T6 T28  35 36 // first generation block decides whether a flop should be present 37 if (AsyncOn) begin : gen_flops 38 prim_flop #( 39 .Width(MuBi4Width), 40 .ResetValue(MuBi4Width'(ResetValue)) 41 ) u_prim_flop ( 42 .clk_i, 43 .rst_ni, 44 .d_i ( mubi ), 45 .q_o ( mubi_int ) 46 ); 47 end else begin : gen_no_flops 48 assign mubi_int = mubi; 49 50 // This unused companion logic helps remove lint errors 51 // for modules where clock and reset are used for assertions only 52 // This logic will be removed for sythesis since it is unloaded. 53 mubi4_t unused_logic; 54 always_ff @(posedge clk_i or negedge rst_ni) begin 55 if (!rst_ni) begin 56 unused_logic <= MuBi4False; 57 end else begin 58 unused_logic <= mubi_i; 59 end 60 end 61 end 62 63 // second generation block determines output buffer type 64 // 1. If EnSecBuf -> always leads to a sec buffer regardless of first block 65 // 2. If not EnSecBuf and not AsyncOn -> use normal buffer 66 // 3. If not EnSecBuf and AsyncOn -> feed through 67 if (EnSecBuf) begin : gen_sec_buf 68 prim_sec_anchor_buf #( 69 .Width(4) 70 ) u_prim_sec_buf ( 71 .in_i(mubi_int), 72 .out_o(mubi_out) 73 ); 74 end else if (!AsyncOn) begin : gen_prim_buf 75 prim_buf #( 76 .Width(4) 77 ) u_prim_buf ( 78 .in_i(mubi_int), 79 .out_o(mubi_out) 80 ); 81 end else begin : gen_feedthru 82 assign mubi_out = mubi_int; 83 end 84 85 1/1 assign mubi_o = mubi4_t'(mubi_out); Tests: T4 T6 T28 

Line Coverage for Module : prim_mubi4_sender ( parameter AsyncOn=1,EnSecBuf=0,ResetValue=6 )
Line Coverage for Module self-instances :
SCORELINE
100.00 100.00
tb.dut.u_clkmgr_byp.u_hi_speed_sel

SCORELINE
100.00 100.00
tb.dut.u_prim_mubi4_sender_clk_io_div4_infra

SCORELINE
100.00 100.00
tb.dut.u_prim_mubi4_sender_clk_main_infra

SCORELINE
100.00 100.00
tb.dut.u_prim_mubi4_sender_clk_usb_infra

SCORELINE
100.00 100.00
tb.dut.u_prim_mubi4_sender_clk_io_infra

SCORELINE
100.00 100.00
tb.dut.u_prim_mubi4_sender_clk_io_div2_infra

SCORELINE
100.00 100.00
tb.dut.u_prim_mubi4_sender_clk_io_div4_secure

SCORELINE
100.00 100.00
tb.dut.u_prim_mubi4_sender_clk_main_secure

SCORELINE
100.00 100.00
tb.dut.u_prim_mubi4_sender_clk_io_div4_timers

SCORELINE
100.00 100.00
tb.dut.u_prim_mubi4_sender_clk_io_div4_peri

SCORELINE
100.00 100.00
tb.dut.u_prim_mubi4_sender_clk_io_div2_peri

SCORELINE
100.00 100.00
tb.dut.u_prim_mubi4_sender_clk_io_peri

SCORELINE
100.00 100.00
tb.dut.u_prim_mubi4_sender_clk_usb_peri

SCORELINE
100.00 100.00
tb.dut.u_clk_main_aes_trans.u_prim_mubi4_sender

SCORELINE
100.00 100.00
tb.dut.u_clk_main_hmac_trans.u_prim_mubi4_sender

SCORELINE
100.00 100.00
tb.dut.u_clk_main_kmac_trans.u_prim_mubi4_sender

SCORELINE
100.00 100.00
tb.dut.u_clk_main_otbn_trans.u_prim_mubi4_sender

Line No.TotalCoveredPercent
TOTAL33100.00
CONT_ASSIGN3411100.00
CONT_ASSIGN8211100.00
CONT_ASSIGN8511100.00

33 logic [MuBi4Width-1:0] mubi, mubi_int, mubi_out; 34 1/1 assign mubi = MuBi4Width'(mubi_i); Tests: T4 T5 T6  35 36 // first generation block decides whether a flop should be present 37 if (AsyncOn) begin : gen_flops 38 prim_flop #( 39 .Width(MuBi4Width), 40 .ResetValue(MuBi4Width'(ResetValue)) 41 ) u_prim_flop ( 42 .clk_i, 43 .rst_ni, 44 .d_i ( mubi ), 45 .q_o ( mubi_int ) 46 ); 47 end else begin : gen_no_flops 48 assign mubi_int = mubi; 49 50 // This unused companion logic helps remove lint errors 51 // for modules where clock and reset are used for assertions only 52 // This logic will be removed for sythesis since it is unloaded. 53 mubi4_t unused_logic; 54 always_ff @(posedge clk_i or negedge rst_ni) begin 55 if (!rst_ni) begin 56 unused_logic <= MuBi4False; 57 end else begin 58 unused_logic <= mubi_i; 59 end 60 end 61 end 62 63 // second generation block determines output buffer type 64 // 1. If EnSecBuf -> always leads to a sec buffer regardless of first block 65 // 2. If not EnSecBuf and not AsyncOn -> use normal buffer 66 // 3. If not EnSecBuf and AsyncOn -> feed through 67 if (EnSecBuf) begin : gen_sec_buf 68 prim_sec_anchor_buf #( 69 .Width(4) 70 ) u_prim_sec_buf ( 71 .in_i(mubi_int), 72 .out_o(mubi_out) 73 ); 74 end else if (!AsyncOn) begin : gen_prim_buf 75 prim_buf #( 76 .Width(4) 77 ) u_prim_buf ( 78 .in_i(mubi_int), 79 .out_o(mubi_out) 80 ); 81 end else begin : gen_feedthru 82 1/1 assign mubi_out = mubi_int; Tests: T4 T5 T6  83 end 84 85 1/1 assign mubi_o = mubi4_t'(mubi_out); Tests: T4 T5 T6 

Assert Coverage for Module : prim_mubi4_sender
TotalAttemptedPercentSucceeded/MatchedPercent
Assertions 1 1 100.00 1 100.00
Cover properties 0 0 0
Cover sequences 0 0 0
Total 1 1 100.00 1 100.00




Assertion Details

NameAttemptsReal SuccessesFailuresIncomplete
OutputsKnown_A 1171074103 1124594691 0 0


OutputsKnown_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 1171074103 1124594691 0 0
T4 21608 19624 0 0
T5 29037 27309 0 0
T6 33098 31021 0 0
T28 29269 28191 0 0
T29 21266 18178 0 0
T30 21034 18768 0 0
T31 104712 102223 0 0
T32 30185 27751 0 0
T33 74563 72815 0 0
T34 112384 109587 0 0

Line Coverage for Instance : tb.dut.u_clkmgr_byp.u_io_byp_req
Line No.TotalCoveredPercent
TOTAL22100.00
CONT_ASSIGN3411100.00
CONT_ASSIGN8511100.00

33 logic [MuBi4Width-1:0] mubi, mubi_int, mubi_out; 34 1/1 assign mubi = MuBi4Width'(mubi_i); Tests: T4 T6 T28  35 36 // first generation block decides whether a flop should be present 37 if (AsyncOn) begin : gen_flops 38 prim_flop #( 39 .Width(MuBi4Width), 40 .ResetValue(MuBi4Width'(ResetValue)) 41 ) u_prim_flop ( 42 .clk_i, 43 .rst_ni, 44 .d_i ( mubi ), 45 .q_o ( mubi_int ) 46 ); 47 end else begin : gen_no_flops 48 assign mubi_int = mubi; 49 50 // This unused companion logic helps remove lint errors 51 // for modules where clock and reset are used for assertions only 52 // This logic will be removed for sythesis since it is unloaded. 53 mubi4_t unused_logic; 54 always_ff @(posedge clk_i or negedge rst_ni) begin 55 if (!rst_ni) begin 56 unused_logic <= MuBi4False; 57 end else begin 58 unused_logic <= mubi_i; 59 end 60 end 61 end 62 63 // second generation block determines output buffer type 64 // 1. If EnSecBuf -> always leads to a sec buffer regardless of first block 65 // 2. If not EnSecBuf and not AsyncOn -> use normal buffer 66 // 3. If not EnSecBuf and AsyncOn -> feed through 67 if (EnSecBuf) begin : gen_sec_buf 68 prim_sec_anchor_buf #( 69 .Width(4) 70 ) u_prim_sec_buf ( 71 .in_i(mubi_int), 72 .out_o(mubi_out) 73 ); 74 end else if (!AsyncOn) begin : gen_prim_buf 75 prim_buf #( 76 .Width(4) 77 ) u_prim_buf ( 78 .in_i(mubi_int), 79 .out_o(mubi_out) 80 ); 81 end else begin : gen_feedthru 82 assign mubi_out = mubi_int; 83 end 84 85 1/1 assign mubi_o = mubi4_t'(mubi_out); Tests: T4 T6 T28 

Assert Coverage for Instance : tb.dut.u_clkmgr_byp.u_io_byp_req
TotalAttemptedPercentSucceeded/MatchedPercent
Assertions 1 1 100.00 1 100.00
Cover properties 0 0 0
Cover sequences 0 0 0
Total 1 1 100.00 1 100.00




Assertion Details

NameAttemptsReal SuccessesFailuresIncomplete
OutputsKnown_A 39604799 37426865 0 0


OutputsKnown_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 39604799 37426865 0 0
T4 884 792 0 0
T5 2035 1901 0 0
T6 2314 2151 0 0
T28 2085 2001 0 0
T29 1524 1290 0 0
T30 1482 1318 0 0
T31 2102 2047 0 0
T32 2137 1947 0 0
T33 2381 2317 0 0
T34 1692 1647 0 0

Line Coverage for Instance : tb.dut.u_clkmgr_byp.u_all_byp_req
Line No.TotalCoveredPercent
TOTAL22100.00
CONT_ASSIGN3411100.00
CONT_ASSIGN8511100.00

33 logic [MuBi4Width-1:0] mubi, mubi_int, mubi_out; 34 1/1 assign mubi = MuBi4Width'(mubi_i); Tests: T4 T6 T28  35 36 // first generation block decides whether a flop should be present 37 if (AsyncOn) begin : gen_flops 38 prim_flop #( 39 .Width(MuBi4Width), 40 .ResetValue(MuBi4Width'(ResetValue)) 41 ) u_prim_flop ( 42 .clk_i, 43 .rst_ni, 44 .d_i ( mubi ), 45 .q_o ( mubi_int ) 46 ); 47 end else begin : gen_no_flops 48 assign mubi_int = mubi; 49 50 // This unused companion logic helps remove lint errors 51 // for modules where clock and reset are used for assertions only 52 // This logic will be removed for sythesis since it is unloaded. 53 mubi4_t unused_logic; 54 always_ff @(posedge clk_i or negedge rst_ni) begin 55 if (!rst_ni) begin 56 unused_logic <= MuBi4False; 57 end else begin 58 unused_logic <= mubi_i; 59 end 60 end 61 end 62 63 // second generation block determines output buffer type 64 // 1. If EnSecBuf -> always leads to a sec buffer regardless of first block 65 // 2. If not EnSecBuf and not AsyncOn -> use normal buffer 66 // 3. If not EnSecBuf and AsyncOn -> feed through 67 if (EnSecBuf) begin : gen_sec_buf 68 prim_sec_anchor_buf #( 69 .Width(4) 70 ) u_prim_sec_buf ( 71 .in_i(mubi_int), 72 .out_o(mubi_out) 73 ); 74 end else if (!AsyncOn) begin : gen_prim_buf 75 prim_buf #( 76 .Width(4) 77 ) u_prim_buf ( 78 .in_i(mubi_int), 79 .out_o(mubi_out) 80 ); 81 end else begin : gen_feedthru 82 assign mubi_out = mubi_int; 83 end 84 85 1/1 assign mubi_o = mubi4_t'(mubi_out); Tests: T4 T6 T28 

Assert Coverage for Instance : tb.dut.u_clkmgr_byp.u_all_byp_req
TotalAttemptedPercentSucceeded/MatchedPercent
Assertions 1 1 100.00 1 100.00
Cover properties 0 0 0
Cover sequences 0 0 0
Total 1 1 100.00 1 100.00




Assertion Details

NameAttemptsReal SuccessesFailuresIncomplete
OutputsKnown_A 39604799 37426865 0 0


OutputsKnown_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 39604799 37426865 0 0
T4 884 792 0 0
T5 2035 1901 0 0
T6 2314 2151 0 0
T28 2085 2001 0 0
T29 1524 1290 0 0
T30 1482 1318 0 0
T31 2102 2047 0 0
T32 2137 1947 0 0
T33 2381 2317 0 0
T34 1692 1647 0 0

Line Coverage for Instance : tb.dut.u_clkmgr_byp.u_hi_speed_sel
Line No.TotalCoveredPercent
TOTAL33100.00
CONT_ASSIGN3411100.00
CONT_ASSIGN8211100.00
CONT_ASSIGN8511100.00

33 logic [MuBi4Width-1:0] mubi, mubi_int, mubi_out; 34 1/1 assign mubi = MuBi4Width'(mubi_i); Tests: T4 T6 T28  35 36 // first generation block decides whether a flop should be present 37 if (AsyncOn) begin : gen_flops 38 prim_flop #( 39 .Width(MuBi4Width), 40 .ResetValue(MuBi4Width'(ResetValue)) 41 ) u_prim_flop ( 42 .clk_i, 43 .rst_ni, 44 .d_i ( mubi ), 45 .q_o ( mubi_int ) 46 ); 47 end else begin : gen_no_flops 48 assign mubi_int = mubi; 49 50 // This unused companion logic helps remove lint errors 51 // for modules where clock and reset are used for assertions only 52 // This logic will be removed for sythesis since it is unloaded. 53 mubi4_t unused_logic; 54 always_ff @(posedge clk_i or negedge rst_ni) begin 55 if (!rst_ni) begin 56 unused_logic <= MuBi4False; 57 end else begin 58 unused_logic <= mubi_i; 59 end 60 end 61 end 62 63 // second generation block determines output buffer type 64 // 1. If EnSecBuf -> always leads to a sec buffer regardless of first block 65 // 2. If not EnSecBuf and not AsyncOn -> use normal buffer 66 // 3. If not EnSecBuf and AsyncOn -> feed through 67 if (EnSecBuf) begin : gen_sec_buf 68 prim_sec_anchor_buf #( 69 .Width(4) 70 ) u_prim_sec_buf ( 71 .in_i(mubi_int), 72 .out_o(mubi_out) 73 ); 74 end else if (!AsyncOn) begin : gen_prim_buf 75 prim_buf #( 76 .Width(4) 77 ) u_prim_buf ( 78 .in_i(mubi_int), 79 .out_o(mubi_out) 80 ); 81 end else begin : gen_feedthru 82 1/1 assign mubi_out = mubi_int; Tests: T4 T5 T6  83 end 84 85 1/1 assign mubi_o = mubi4_t'(mubi_out); Tests: T4 T5 T6 

Assert Coverage for Instance : tb.dut.u_clkmgr_byp.u_hi_speed_sel
TotalAttemptedPercentSucceeded/MatchedPercent
Assertions 1 1 100.00 1 100.00
Cover properties 0 0 0
Cover sequences 0 0 0
Total 1 1 100.00 1 100.00




Assertion Details

NameAttemptsReal SuccessesFailuresIncomplete
OutputsKnown_A 39604799 37426865 0 0


OutputsKnown_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 39604799 37426865 0 0
T4 884 792 0 0
T5 2035 1901 0 0
T6 2314 2151 0 0
T28 2085 2001 0 0
T29 1524 1290 0 0
T30 1482 1318 0 0
T31 2102 2047 0 0
T32 2137 1947 0 0
T33 2381 2317 0 0
T34 1692 1647 0 0

Line Coverage for Instance : tb.dut.u_prim_mubi4_sender_clk_io_div4_infra
Line No.TotalCoveredPercent
TOTAL33100.00
CONT_ASSIGN3411100.00
CONT_ASSIGN8211100.00
CONT_ASSIGN8511100.00

33 logic [MuBi4Width-1:0] mubi, mubi_int, mubi_out; 34 1/1 assign mubi = MuBi4Width'(mubi_i); Tests: T4 T5 T6  35 36 // first generation block decides whether a flop should be present 37 if (AsyncOn) begin : gen_flops 38 prim_flop #( 39 .Width(MuBi4Width), 40 .ResetValue(MuBi4Width'(ResetValue)) 41 ) u_prim_flop ( 42 .clk_i, 43 .rst_ni, 44 .d_i ( mubi ), 45 .q_o ( mubi_int ) 46 ); 47 end else begin : gen_no_flops 48 assign mubi_int = mubi; 49 50 // This unused companion logic helps remove lint errors 51 // for modules where clock and reset are used for assertions only 52 // This logic will be removed for sythesis since it is unloaded. 53 mubi4_t unused_logic; 54 always_ff @(posedge clk_i or negedge rst_ni) begin 55 if (!rst_ni) begin 56 unused_logic <= MuBi4False; 57 end else begin 58 unused_logic <= mubi_i; 59 end 60 end 61 end 62 63 // second generation block determines output buffer type 64 // 1. If EnSecBuf -> always leads to a sec buffer regardless of first block 65 // 2. If not EnSecBuf and not AsyncOn -> use normal buffer 66 // 3. If not EnSecBuf and AsyncOn -> feed through 67 if (EnSecBuf) begin : gen_sec_buf 68 prim_sec_anchor_buf #( 69 .Width(4) 70 ) u_prim_sec_buf ( 71 .in_i(mubi_int), 72 .out_o(mubi_out) 73 ); 74 end else if (!AsyncOn) begin : gen_prim_buf 75 prim_buf #( 76 .Width(4) 77 ) u_prim_buf ( 78 .in_i(mubi_int), 79 .out_o(mubi_out) 80 ); 81 end else begin : gen_feedthru 82 1/1 assign mubi_out = mubi_int; Tests: T4 T5 T6  83 end 84 85 1/1 assign mubi_o = mubi4_t'(mubi_out); Tests: T4 T5 T6 

Assert Coverage for Instance : tb.dut.u_prim_mubi4_sender_clk_io_div4_infra
TotalAttemptedPercentSucceeded/MatchedPercent
Assertions 1 1 100.00 1 100.00
Cover properties 0 0 0
Cover sequences 0 0 0
Total 1 1 100.00 1 100.00




Assertion Details

NameAttemptsReal SuccessesFailuresIncomplete
OutputsKnown_A 22209072 21739665 0 0


OutputsKnown_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 22209072 21739665 0 0
T4 407 397 0 0
T5 490 480 0 0
T6 593 582 0 0
T28 562 552 0 0
T29 350 319 0 0
T30 377 343 0 0
T31 2159 2135 0 0
T32 501 487 0 0
T33 1471 1464 0 0
T34 2360 2326 0 0

Line Coverage for Instance : tb.dut.u_prim_mubi4_sender_clk_main_infra
Line No.TotalCoveredPercent
TOTAL33100.00
CONT_ASSIGN3411100.00
CONT_ASSIGN8211100.00
CONT_ASSIGN8511100.00

33 logic [MuBi4Width-1:0] mubi, mubi_int, mubi_out; 34 1/1 assign mubi = MuBi4Width'(mubi_i); Tests: T4 T5 T6  35 36 // first generation block decides whether a flop should be present 37 if (AsyncOn) begin : gen_flops 38 prim_flop #( 39 .Width(MuBi4Width), 40 .ResetValue(MuBi4Width'(ResetValue)) 41 ) u_prim_flop ( 42 .clk_i, 43 .rst_ni, 44 .d_i ( mubi ), 45 .q_o ( mubi_int ) 46 ); 47 end else begin : gen_no_flops 48 assign mubi_int = mubi; 49 50 // This unused companion logic helps remove lint errors 51 // for modules where clock and reset are used for assertions only 52 // This logic will be removed for sythesis since it is unloaded. 53 mubi4_t unused_logic; 54 always_ff @(posedge clk_i or negedge rst_ni) begin 55 if (!rst_ni) begin 56 unused_logic <= MuBi4False; 57 end else begin 58 unused_logic <= mubi_i; 59 end 60 end 61 end 62 63 // second generation block determines output buffer type 64 // 1. If EnSecBuf -> always leads to a sec buffer regardless of first block 65 // 2. If not EnSecBuf and not AsyncOn -> use normal buffer 66 // 3. If not EnSecBuf and AsyncOn -> feed through 67 if (EnSecBuf) begin : gen_sec_buf 68 prim_sec_anchor_buf #( 69 .Width(4) 70 ) u_prim_sec_buf ( 71 .in_i(mubi_int), 72 .out_o(mubi_out) 73 ); 74 end else if (!AsyncOn) begin : gen_prim_buf 75 prim_buf #( 76 .Width(4) 77 ) u_prim_buf ( 78 .in_i(mubi_int), 79 .out_o(mubi_out) 80 ); 81 end else begin : gen_feedthru 82 1/1 assign mubi_out = mubi_int; Tests: T4 T5 T6  83 end 84 85 1/1 assign mubi_o = mubi4_t'(mubi_out); Tests: T4 T5 T6 

Assert Coverage for Instance : tb.dut.u_prim_mubi4_sender_clk_main_infra
TotalAttemptedPercentSucceeded/MatchedPercent
Assertions 1 1 100.00 1 100.00
Cover properties 0 0 0
Cover sequences 0 0 0
Total 1 1 100.00 1 100.00




Assertion Details

NameAttemptsReal SuccessesFailuresIncomplete
OutputsKnown_A 99737448 95639350 0 0


OutputsKnown_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 99737448 95639350 0 0
T4 1768 1585 0 0
T5 2141 2001 0 0
T6 2411 2242 0 0
T28 2085 2001 0 0
T29 1562 1321 0 0
T30 1528 1359 0 0
T31 9137 8897 0 0
T32 2226 2029 0 0
T33 6267 6098 0 0
T34 9958 9689 0 0

Line Coverage for Instance : tb.dut.u_prim_mubi4_sender_clk_usb_infra
Line No.TotalCoveredPercent
TOTAL33100.00
CONT_ASSIGN3411100.00
CONT_ASSIGN8211100.00
CONT_ASSIGN8511100.00

33 logic [MuBi4Width-1:0] mubi, mubi_int, mubi_out; 34 1/1 assign mubi = MuBi4Width'(mubi_i); Tests: T4 T5 T6  35 36 // first generation block decides whether a flop should be present 37 if (AsyncOn) begin : gen_flops 38 prim_flop #( 39 .Width(MuBi4Width), 40 .ResetValue(MuBi4Width'(ResetValue)) 41 ) u_prim_flop ( 42 .clk_i, 43 .rst_ni, 44 .d_i ( mubi ), 45 .q_o ( mubi_int ) 46 ); 47 end else begin : gen_no_flops 48 assign mubi_int = mubi; 49 50 // This unused companion logic helps remove lint errors 51 // for modules where clock and reset are used for assertions only 52 // This logic will be removed for sythesis since it is unloaded. 53 mubi4_t unused_logic; 54 always_ff @(posedge clk_i or negedge rst_ni) begin 55 if (!rst_ni) begin 56 unused_logic <= MuBi4False; 57 end else begin 58 unused_logic <= mubi_i; 59 end 60 end 61 end 62 63 // second generation block determines output buffer type 64 // 1. If EnSecBuf -> always leads to a sec buffer regardless of first block 65 // 2. If not EnSecBuf and not AsyncOn -> use normal buffer 66 // 3. If not EnSecBuf and AsyncOn -> feed through 67 if (EnSecBuf) begin : gen_sec_buf 68 prim_sec_anchor_buf #( 69 .Width(4) 70 ) u_prim_sec_buf ( 71 .in_i(mubi_int), 72 .out_o(mubi_out) 73 ); 74 end else if (!AsyncOn) begin : gen_prim_buf 75 prim_buf #( 76 .Width(4) 77 ) u_prim_buf ( 78 .in_i(mubi_int), 79 .out_o(mubi_out) 80 ); 81 end else begin : gen_feedthru 82 1/1 assign mubi_out = mubi_int; Tests: T4 T5 T6  83 end 84 85 1/1 assign mubi_o = mubi4_t'(mubi_out); Tests: T4 T5 T6 

Assert Coverage for Instance : tb.dut.u_prim_mubi4_sender_clk_usb_infra
TotalAttemptedPercentSucceeded/MatchedPercent
Assertions 1 1 100.00 1 100.00
Cover properties 0 0 0
Cover sequences 0 0 0
Total 1 1 100.00 1 100.00




Assertion Details

NameAttemptsReal SuccessesFailuresIncomplete
OutputsKnown_A 47836459 45879502 0 0


OutputsKnown_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 47836459 45879502 0 0
T4 849 761 0 0
T5 1027 960 0 0
T6 1157 1076 0 0
T28 1001 961 0 0
T29 753 638 0 0
T30 733 652 0 0
T31 4385 4270 0 0
T32 1069 974 0 0
T33 3009 2928 0 0
T34 4780 4651 0 0

Line Coverage for Instance : tb.dut.u_prim_mubi4_sender_clk_io_infra
Line No.TotalCoveredPercent
TOTAL33100.00
CONT_ASSIGN3411100.00
CONT_ASSIGN8211100.00
CONT_ASSIGN8511100.00

33 logic [MuBi4Width-1:0] mubi, mubi_int, mubi_out; 34 1/1 assign mubi = MuBi4Width'(mubi_i); Tests: T4 T5 T6  35 36 // first generation block decides whether a flop should be present 37 if (AsyncOn) begin : gen_flops 38 prim_flop #( 39 .Width(MuBi4Width), 40 .ResetValue(MuBi4Width'(ResetValue)) 41 ) u_prim_flop ( 42 .clk_i, 43 .rst_ni, 44 .d_i ( mubi ), 45 .q_o ( mubi_int ) 46 ); 47 end else begin : gen_no_flops 48 assign mubi_int = mubi; 49 50 // This unused companion logic helps remove lint errors 51 // for modules where clock and reset are used for assertions only 52 // This logic will be removed for sythesis since it is unloaded. 53 mubi4_t unused_logic; 54 always_ff @(posedge clk_i or negedge rst_ni) begin 55 if (!rst_ni) begin 56 unused_logic <= MuBi4False; 57 end else begin 58 unused_logic <= mubi_i; 59 end 60 end 61 end 62 63 // second generation block determines output buffer type 64 // 1. If EnSecBuf -> always leads to a sec buffer regardless of first block 65 // 2. If not EnSecBuf and not AsyncOn -> use normal buffer 66 // 3. If not EnSecBuf and AsyncOn -> feed through 67 if (EnSecBuf) begin : gen_sec_buf 68 prim_sec_anchor_buf #( 69 .Width(4) 70 ) u_prim_sec_buf ( 71 .in_i(mubi_int), 72 .out_o(mubi_out) 73 ); 74 end else if (!AsyncOn) begin : gen_prim_buf 75 prim_buf #( 76 .Width(4) 77 ) u_prim_buf ( 78 .in_i(mubi_int), 79 .out_o(mubi_out) 80 ); 81 end else begin : gen_feedthru 82 1/1 assign mubi_out = mubi_int; Tests: T4 T5 T6  83 end 84 85 1/1 assign mubi_o = mubi4_t'(mubi_out); Tests: T4 T5 T6 

Assert Coverage for Instance : tb.dut.u_prim_mubi4_sender_clk_io_infra
TotalAttemptedPercentSucceeded/MatchedPercent
Assertions 1 1 100.00 1 100.00
Cover properties 0 0 0
Cover sequences 0 0 0
Total 1 1 100.00 1 100.00




Assertion Details

NameAttemptsReal SuccessesFailuresIncomplete
OutputsKnown_A 90243933 86400155 0 0


OutputsKnown_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 90243933 86400155 0 0
T4 1698 1522 0 0
T5 2055 1920 0 0
T6 2314 2151 0 0
T28 2002 1922 0 0
T29 1508 1277 0 0
T30 1467 1305 0 0
T31 8771 8540 0 0
T32 2137 1947 0 0
T33 6017 5855 0 0
T34 9560 9302 0 0

Line Coverage for Instance : tb.dut.u_prim_mubi4_sender_clk_io_div2_infra
Line No.TotalCoveredPercent
TOTAL33100.00
CONT_ASSIGN3411100.00
CONT_ASSIGN8211100.00
CONT_ASSIGN8511100.00

33 logic [MuBi4Width-1:0] mubi, mubi_int, mubi_out; 34 1/1 assign mubi = MuBi4Width'(mubi_i); Tests: T4 T5 T6  35 36 // first generation block decides whether a flop should be present 37 if (AsyncOn) begin : gen_flops 38 prim_flop #( 39 .Width(MuBi4Width), 40 .ResetValue(MuBi4Width'(ResetValue)) 41 ) u_prim_flop ( 42 .clk_i, 43 .rst_ni, 44 .d_i ( mubi ), 45 .q_o ( mubi_int ) 46 ); 47 end else begin : gen_no_flops 48 assign mubi_int = mubi; 49 50 // This unused companion logic helps remove lint errors 51 // for modules where clock and reset are used for assertions only 52 // This logic will be removed for sythesis since it is unloaded. 53 mubi4_t unused_logic; 54 always_ff @(posedge clk_i or negedge rst_ni) begin 55 if (!rst_ni) begin 56 unused_logic <= MuBi4False; 57 end else begin 58 unused_logic <= mubi_i; 59 end 60 end 61 end 62 63 // second generation block determines output buffer type 64 // 1. If EnSecBuf -> always leads to a sec buffer regardless of first block 65 // 2. If not EnSecBuf and not AsyncOn -> use normal buffer 66 // 3. If not EnSecBuf and AsyncOn -> feed through 67 if (EnSecBuf) begin : gen_sec_buf 68 prim_sec_anchor_buf #( 69 .Width(4) 70 ) u_prim_sec_buf ( 71 .in_i(mubi_int), 72 .out_o(mubi_out) 73 ); 74 end else if (!AsyncOn) begin : gen_prim_buf 75 prim_buf #( 76 .Width(4) 77 ) u_prim_buf ( 78 .in_i(mubi_int), 79 .out_o(mubi_out) 80 ); 81 end else begin : gen_feedthru 82 1/1 assign mubi_out = mubi_int; Tests: T4 T5 T6  83 end 84 85 1/1 assign mubi_o = mubi4_t'(mubi_out); Tests: T4 T5 T6 

Assert Coverage for Instance : tb.dut.u_prim_mubi4_sender_clk_io_div2_infra
TotalAttemptedPercentSucceeded/MatchedPercent
Assertions 1 1 100.00 1 100.00
Cover properties 0 0 0
Cover sequences 0 0 0
Total 1 1 100.00 1 100.00




Assertion Details

NameAttemptsReal SuccessesFailuresIncomplete
OutputsKnown_A 44418973 43480011 0 0


OutputsKnown_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 44418973 43480011 0 0
T4 813 792 0 0
T5 981 960 0 0
T6 1188 1167 0 0
T28 1125 1104 0 0
T29 700 638 0 0
T30 756 687 0 0
T31 4318 4270 0 0
T32 1001 973 0 0
T33 2941 2927 0 0
T34 4720 4651 0 0

Line Coverage for Instance : tb.dut.u_prim_mubi4_sender_clk_io_div4_secure
Line No.TotalCoveredPercent
TOTAL33100.00
CONT_ASSIGN3411100.00
CONT_ASSIGN8211100.00
CONT_ASSIGN8511100.00

33 logic [MuBi4Width-1:0] mubi, mubi_int, mubi_out; 34 1/1 assign mubi = MuBi4Width'(mubi_i); Tests: T4 T5 T6  35 36 // first generation block decides whether a flop should be present 37 if (AsyncOn) begin : gen_flops 38 prim_flop #( 39 .Width(MuBi4Width), 40 .ResetValue(MuBi4Width'(ResetValue)) 41 ) u_prim_flop ( 42 .clk_i, 43 .rst_ni, 44 .d_i ( mubi ), 45 .q_o ( mubi_int ) 46 ); 47 end else begin : gen_no_flops 48 assign mubi_int = mubi; 49 50 // This unused companion logic helps remove lint errors 51 // for modules where clock and reset are used for assertions only 52 // This logic will be removed for sythesis since it is unloaded. 53 mubi4_t unused_logic; 54 always_ff @(posedge clk_i or negedge rst_ni) begin 55 if (!rst_ni) begin 56 unused_logic <= MuBi4False; 57 end else begin 58 unused_logic <= mubi_i; 59 end 60 end 61 end 62 63 // second generation block determines output buffer type 64 // 1. If EnSecBuf -> always leads to a sec buffer regardless of first block 65 // 2. If not EnSecBuf and not AsyncOn -> use normal buffer 66 // 3. If not EnSecBuf and AsyncOn -> feed through 67 if (EnSecBuf) begin : gen_sec_buf 68 prim_sec_anchor_buf #( 69 .Width(4) 70 ) u_prim_sec_buf ( 71 .in_i(mubi_int), 72 .out_o(mubi_out) 73 ); 74 end else if (!AsyncOn) begin : gen_prim_buf 75 prim_buf #( 76 .Width(4) 77 ) u_prim_buf ( 78 .in_i(mubi_int), 79 .out_o(mubi_out) 80 ); 81 end else begin : gen_feedthru 82 1/1 assign mubi_out = mubi_int; Tests: T4 T5 T6  83 end 84 85 1/1 assign mubi_o = mubi4_t'(mubi_out); Tests: T4 T5 T6 

Assert Coverage for Instance : tb.dut.u_prim_mubi4_sender_clk_io_div4_secure
TotalAttemptedPercentSucceeded/MatchedPercent
Assertions 1 1 100.00 1 100.00
Cover properties 0 0 0
Cover sequences 0 0 0
Total 1 1 100.00 1 100.00




Assertion Details

NameAttemptsReal SuccessesFailuresIncomplete
OutputsKnown_A 22209072 21739665 0 0


OutputsKnown_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 22209072 21739665 0 0
T4 407 397 0 0
T5 490 480 0 0
T6 593 582 0 0
T28 562 552 0 0
T29 350 319 0 0
T30 377 343 0 0
T31 2159 2135 0 0
T32 501 487 0 0
T33 1471 1464 0 0
T34 2360 2326 0 0

Line Coverage for Instance : tb.dut.u_prim_mubi4_sender_clk_main_secure
Line No.TotalCoveredPercent
TOTAL33100.00
CONT_ASSIGN3411100.00
CONT_ASSIGN8211100.00
CONT_ASSIGN8511100.00

33 logic [MuBi4Width-1:0] mubi, mubi_int, mubi_out; 34 1/1 assign mubi = MuBi4Width'(mubi_i); Tests: T4 T5 T6  35 36 // first generation block decides whether a flop should be present 37 if (AsyncOn) begin : gen_flops 38 prim_flop #( 39 .Width(MuBi4Width), 40 .ResetValue(MuBi4Width'(ResetValue)) 41 ) u_prim_flop ( 42 .clk_i, 43 .rst_ni, 44 .d_i ( mubi ), 45 .q_o ( mubi_int ) 46 ); 47 end else begin : gen_no_flops 48 assign mubi_int = mubi; 49 50 // This unused companion logic helps remove lint errors 51 // for modules where clock and reset are used for assertions only 52 // This logic will be removed for sythesis since it is unloaded. 53 mubi4_t unused_logic; 54 always_ff @(posedge clk_i or negedge rst_ni) begin 55 if (!rst_ni) begin 56 unused_logic <= MuBi4False; 57 end else begin 58 unused_logic <= mubi_i; 59 end 60 end 61 end 62 63 // second generation block determines output buffer type 64 // 1. If EnSecBuf -> always leads to a sec buffer regardless of first block 65 // 2. If not EnSecBuf and not AsyncOn -> use normal buffer 66 // 3. If not EnSecBuf and AsyncOn -> feed through 67 if (EnSecBuf) begin : gen_sec_buf 68 prim_sec_anchor_buf #( 69 .Width(4) 70 ) u_prim_sec_buf ( 71 .in_i(mubi_int), 72 .out_o(mubi_out) 73 ); 74 end else if (!AsyncOn) begin : gen_prim_buf 75 prim_buf #( 76 .Width(4) 77 ) u_prim_buf ( 78 .in_i(mubi_int), 79 .out_o(mubi_out) 80 ); 81 end else begin : gen_feedthru 82 1/1 assign mubi_out = mubi_int; Tests: T4 T5 T6  83 end 84 85 1/1 assign mubi_o = mubi4_t'(mubi_out); Tests: T4 T5 T6 

Assert Coverage for Instance : tb.dut.u_prim_mubi4_sender_clk_main_secure
TotalAttemptedPercentSucceeded/MatchedPercent
Assertions 1 1 100.00 1 100.00
Cover properties 0 0 0
Cover sequences 0 0 0
Total 1 1 100.00 1 100.00




Assertion Details

NameAttemptsReal SuccessesFailuresIncomplete
OutputsKnown_A 99737448 95639350 0 0


OutputsKnown_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 99737448 95639350 0 0
T4 1768 1585 0 0
T5 2141 2001 0 0
T6 2411 2242 0 0
T28 2085 2001 0 0
T29 1562 1321 0 0
T30 1528 1359 0 0
T31 9137 8897 0 0
T32 2226 2029 0 0
T33 6267 6098 0 0
T34 9958 9689 0 0

Line Coverage for Instance : tb.dut.u_prim_mubi4_sender_clk_io_div4_timers
Line No.TotalCoveredPercent
TOTAL33100.00
CONT_ASSIGN3411100.00
CONT_ASSIGN8211100.00
CONT_ASSIGN8511100.00

33 logic [MuBi4Width-1:0] mubi, mubi_int, mubi_out; 34 1/1 assign mubi = MuBi4Width'(mubi_i); Tests: T4 T5 T6  35 36 // first generation block decides whether a flop should be present 37 if (AsyncOn) begin : gen_flops 38 prim_flop #( 39 .Width(MuBi4Width), 40 .ResetValue(MuBi4Width'(ResetValue)) 41 ) u_prim_flop ( 42 .clk_i, 43 .rst_ni, 44 .d_i ( mubi ), 45 .q_o ( mubi_int ) 46 ); 47 end else begin : gen_no_flops 48 assign mubi_int = mubi; 49 50 // This unused companion logic helps remove lint errors 51 // for modules where clock and reset are used for assertions only 52 // This logic will be removed for sythesis since it is unloaded. 53 mubi4_t unused_logic; 54 always_ff @(posedge clk_i or negedge rst_ni) begin 55 if (!rst_ni) begin 56 unused_logic <= MuBi4False; 57 end else begin 58 unused_logic <= mubi_i; 59 end 60 end 61 end 62 63 // second generation block determines output buffer type 64 // 1. If EnSecBuf -> always leads to a sec buffer regardless of first block 65 // 2. If not EnSecBuf and not AsyncOn -> use normal buffer 66 // 3. If not EnSecBuf and AsyncOn -> feed through 67 if (EnSecBuf) begin : gen_sec_buf 68 prim_sec_anchor_buf #( 69 .Width(4) 70 ) u_prim_sec_buf ( 71 .in_i(mubi_int), 72 .out_o(mubi_out) 73 ); 74 end else if (!AsyncOn) begin : gen_prim_buf 75 prim_buf #( 76 .Width(4) 77 ) u_prim_buf ( 78 .in_i(mubi_int), 79 .out_o(mubi_out) 80 ); 81 end else begin : gen_feedthru 82 1/1 assign mubi_out = mubi_int; Tests: T4 T5 T6  83 end 84 85 1/1 assign mubi_o = mubi4_t'(mubi_out); Tests: T4 T5 T6 

Assert Coverage for Instance : tb.dut.u_prim_mubi4_sender_clk_io_div4_timers
TotalAttemptedPercentSucceeded/MatchedPercent
Assertions 1 1 100.00 1 100.00
Cover properties 0 0 0
Cover sequences 0 0 0
Total 1 1 100.00 1 100.00




Assertion Details

NameAttemptsReal SuccessesFailuresIncomplete
OutputsKnown_A 22209072 21739665 0 0


OutputsKnown_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 22209072 21739665 0 0
T4 407 397 0 0
T5 490 480 0 0
T6 593 582 0 0
T28 562 552 0 0
T29 350 319 0 0
T30 377 343 0 0
T31 2159 2135 0 0
T32 501 487 0 0
T33 1471 1464 0 0
T34 2360 2326 0 0

Line Coverage for Instance : tb.dut.u_prim_mubi4_sender_clk_io_div4_peri
Line No.TotalCoveredPercent
TOTAL33100.00
CONT_ASSIGN3411100.00
CONT_ASSIGN8211100.00
CONT_ASSIGN8511100.00

33 logic [MuBi4Width-1:0] mubi, mubi_int, mubi_out; 34 1/1 assign mubi = MuBi4Width'(mubi_i); Tests: T4 T5 T6  35 36 // first generation block decides whether a flop should be present 37 if (AsyncOn) begin : gen_flops 38 prim_flop #( 39 .Width(MuBi4Width), 40 .ResetValue(MuBi4Width'(ResetValue)) 41 ) u_prim_flop ( 42 .clk_i, 43 .rst_ni, 44 .d_i ( mubi ), 45 .q_o ( mubi_int ) 46 ); 47 end else begin : gen_no_flops 48 assign mubi_int = mubi; 49 50 // This unused companion logic helps remove lint errors 51 // for modules where clock and reset are used for assertions only 52 // This logic will be removed for sythesis since it is unloaded. 53 mubi4_t unused_logic; 54 always_ff @(posedge clk_i or negedge rst_ni) begin 55 if (!rst_ni) begin 56 unused_logic <= MuBi4False; 57 end else begin 58 unused_logic <= mubi_i; 59 end 60 end 61 end 62 63 // second generation block determines output buffer type 64 // 1. If EnSecBuf -> always leads to a sec buffer regardless of first block 65 // 2. If not EnSecBuf and not AsyncOn -> use normal buffer 66 // 3. If not EnSecBuf and AsyncOn -> feed through 67 if (EnSecBuf) begin : gen_sec_buf 68 prim_sec_anchor_buf #( 69 .Width(4) 70 ) u_prim_sec_buf ( 71 .in_i(mubi_int), 72 .out_o(mubi_out) 73 ); 74 end else if (!AsyncOn) begin : gen_prim_buf 75 prim_buf #( 76 .Width(4) 77 ) u_prim_buf ( 78 .in_i(mubi_int), 79 .out_o(mubi_out) 80 ); 81 end else begin : gen_feedthru 82 1/1 assign mubi_out = mubi_int; Tests: T4 T5 T6  83 end 84 85 1/1 assign mubi_o = mubi4_t'(mubi_out); Tests: T4 T5 T6 

Assert Coverage for Instance : tb.dut.u_prim_mubi4_sender_clk_io_div4_peri
TotalAttemptedPercentSucceeded/MatchedPercent
Assertions 1 1 100.00 1 100.00
Cover properties 0 0 0
Cover sequences 0 0 0
Total 1 1 100.00 1 100.00




Assertion Details

NameAttemptsReal SuccessesFailuresIncomplete
OutputsKnown_A 22209072 21739665 0 0


OutputsKnown_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 22209072 21739665 0 0
T4 407 397 0 0
T5 490 480 0 0
T6 593 582 0 0
T28 562 552 0 0
T29 350 319 0 0
T30 377 343 0 0
T31 2159 2135 0 0
T32 501 487 0 0
T33 1471 1464 0 0
T34 2360 2326 0 0

Line Coverage for Instance : tb.dut.u_prim_mubi4_sender_clk_io_div2_peri
Line No.TotalCoveredPercent
TOTAL33100.00
CONT_ASSIGN3411100.00
CONT_ASSIGN8211100.00
CONT_ASSIGN8511100.00

33 logic [MuBi4Width-1:0] mubi, mubi_int, mubi_out; 34 1/1 assign mubi = MuBi4Width'(mubi_i); Tests: T4 T5 T6  35 36 // first generation block decides whether a flop should be present 37 if (AsyncOn) begin : gen_flops 38 prim_flop #( 39 .Width(MuBi4Width), 40 .ResetValue(MuBi4Width'(ResetValue)) 41 ) u_prim_flop ( 42 .clk_i, 43 .rst_ni, 44 .d_i ( mubi ), 45 .q_o ( mubi_int ) 46 ); 47 end else begin : gen_no_flops 48 assign mubi_int = mubi; 49 50 // This unused companion logic helps remove lint errors 51 // for modules where clock and reset are used for assertions only 52 // This logic will be removed for sythesis since it is unloaded. 53 mubi4_t unused_logic; 54 always_ff @(posedge clk_i or negedge rst_ni) begin 55 if (!rst_ni) begin 56 unused_logic <= MuBi4False; 57 end else begin 58 unused_logic <= mubi_i; 59 end 60 end 61 end 62 63 // second generation block determines output buffer type 64 // 1. If EnSecBuf -> always leads to a sec buffer regardless of first block 65 // 2. If not EnSecBuf and not AsyncOn -> use normal buffer 66 // 3. If not EnSecBuf and AsyncOn -> feed through 67 if (EnSecBuf) begin : gen_sec_buf 68 prim_sec_anchor_buf #( 69 .Width(4) 70 ) u_prim_sec_buf ( 71 .in_i(mubi_int), 72 .out_o(mubi_out) 73 ); 74 end else if (!AsyncOn) begin : gen_prim_buf 75 prim_buf #( 76 .Width(4) 77 ) u_prim_buf ( 78 .in_i(mubi_int), 79 .out_o(mubi_out) 80 ); 81 end else begin : gen_feedthru 82 1/1 assign mubi_out = mubi_int; Tests: T4 T5 T6  83 end 84 85 1/1 assign mubi_o = mubi4_t'(mubi_out); Tests: T4 T5 T6 

Assert Coverage for Instance : tb.dut.u_prim_mubi4_sender_clk_io_div2_peri
TotalAttemptedPercentSucceeded/MatchedPercent
Assertions 1 1 100.00 1 100.00
Cover properties 0 0 0
Cover sequences 0 0 0
Total 1 1 100.00 1 100.00




Assertion Details

NameAttemptsReal SuccessesFailuresIncomplete
OutputsKnown_A 44418973 43480011 0 0


OutputsKnown_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 44418973 43480011 0 0
T4 813 792 0 0
T5 981 960 0 0
T6 1188 1167 0 0
T28 1125 1104 0 0
T29 700 638 0 0
T30 756 687 0 0
T31 4318 4270 0 0
T32 1001 973 0 0
T33 2941 2927 0 0
T34 4720 4651 0 0

Line Coverage for Instance : tb.dut.u_prim_mubi4_sender_clk_io_peri
Line No.TotalCoveredPercent
TOTAL33100.00
CONT_ASSIGN3411100.00
CONT_ASSIGN8211100.00
CONT_ASSIGN8511100.00

33 logic [MuBi4Width-1:0] mubi, mubi_int, mubi_out; 34 1/1 assign mubi = MuBi4Width'(mubi_i); Tests: T4 T5 T6  35 36 // first generation block decides whether a flop should be present 37 if (AsyncOn) begin : gen_flops 38 prim_flop #( 39 .Width(MuBi4Width), 40 .ResetValue(MuBi4Width'(ResetValue)) 41 ) u_prim_flop ( 42 .clk_i, 43 .rst_ni, 44 .d_i ( mubi ), 45 .q_o ( mubi_int ) 46 ); 47 end else begin : gen_no_flops 48 assign mubi_int = mubi; 49 50 // This unused companion logic helps remove lint errors 51 // for modules where clock and reset are used for assertions only 52 // This logic will be removed for sythesis since it is unloaded. 53 mubi4_t unused_logic; 54 always_ff @(posedge clk_i or negedge rst_ni) begin 55 if (!rst_ni) begin 56 unused_logic <= MuBi4False; 57 end else begin 58 unused_logic <= mubi_i; 59 end 60 end 61 end 62 63 // second generation block determines output buffer type 64 // 1. If EnSecBuf -> always leads to a sec buffer regardless of first block 65 // 2. If not EnSecBuf and not AsyncOn -> use normal buffer 66 // 3. If not EnSecBuf and AsyncOn -> feed through 67 if (EnSecBuf) begin : gen_sec_buf 68 prim_sec_anchor_buf #( 69 .Width(4) 70 ) u_prim_sec_buf ( 71 .in_i(mubi_int), 72 .out_o(mubi_out) 73 ); 74 end else if (!AsyncOn) begin : gen_prim_buf 75 prim_buf #( 76 .Width(4) 77 ) u_prim_buf ( 78 .in_i(mubi_int), 79 .out_o(mubi_out) 80 ); 81 end else begin : gen_feedthru 82 1/1 assign mubi_out = mubi_int; Tests: T4 T5 T6  83 end 84 85 1/1 assign mubi_o = mubi4_t'(mubi_out); Tests: T4 T5 T6 

Assert Coverage for Instance : tb.dut.u_prim_mubi4_sender_clk_io_peri
TotalAttemptedPercentSucceeded/MatchedPercent
Assertions 1 1 100.00 1 100.00
Cover properties 0 0 0
Cover sequences 0 0 0
Total 1 1 100.00 1 100.00




Assertion Details

NameAttemptsReal SuccessesFailuresIncomplete
OutputsKnown_A 90243933 86400155 0 0


OutputsKnown_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 90243933 86400155 0 0
T4 1698 1522 0 0
T5 2055 1920 0 0
T6 2314 2151 0 0
T28 2002 1922 0 0
T29 1508 1277 0 0
T30 1467 1305 0 0
T31 8771 8540 0 0
T32 2137 1947 0 0
T33 6017 5855 0 0
T34 9560 9302 0 0

Line Coverage for Instance : tb.dut.u_prim_mubi4_sender_clk_usb_peri
Line No.TotalCoveredPercent
TOTAL33100.00
CONT_ASSIGN3411100.00
CONT_ASSIGN8211100.00
CONT_ASSIGN8511100.00

33 logic [MuBi4Width-1:0] mubi, mubi_int, mubi_out; 34 1/1 assign mubi = MuBi4Width'(mubi_i); Tests: T4 T5 T6  35 36 // first generation block decides whether a flop should be present 37 if (AsyncOn) begin : gen_flops 38 prim_flop #( 39 .Width(MuBi4Width), 40 .ResetValue(MuBi4Width'(ResetValue)) 41 ) u_prim_flop ( 42 .clk_i, 43 .rst_ni, 44 .d_i ( mubi ), 45 .q_o ( mubi_int ) 46 ); 47 end else begin : gen_no_flops 48 assign mubi_int = mubi; 49 50 // This unused companion logic helps remove lint errors 51 // for modules where clock and reset are used for assertions only 52 // This logic will be removed for sythesis since it is unloaded. 53 mubi4_t unused_logic; 54 always_ff @(posedge clk_i or negedge rst_ni) begin 55 if (!rst_ni) begin 56 unused_logic <= MuBi4False; 57 end else begin 58 unused_logic <= mubi_i; 59 end 60 end 61 end 62 63 // second generation block determines output buffer type 64 // 1. If EnSecBuf -> always leads to a sec buffer regardless of first block 65 // 2. If not EnSecBuf and not AsyncOn -> use normal buffer 66 // 3. If not EnSecBuf and AsyncOn -> feed through 67 if (EnSecBuf) begin : gen_sec_buf 68 prim_sec_anchor_buf #( 69 .Width(4) 70 ) u_prim_sec_buf ( 71 .in_i(mubi_int), 72 .out_o(mubi_out) 73 ); 74 end else if (!AsyncOn) begin : gen_prim_buf 75 prim_buf #( 76 .Width(4) 77 ) u_prim_buf ( 78 .in_i(mubi_int), 79 .out_o(mubi_out) 80 ); 81 end else begin : gen_feedthru 82 1/1 assign mubi_out = mubi_int; Tests: T4 T5 T6  83 end 84 85 1/1 assign mubi_o = mubi4_t'(mubi_out); Tests: T4 T5 T6 

Assert Coverage for Instance : tb.dut.u_prim_mubi4_sender_clk_usb_peri
TotalAttemptedPercentSucceeded/MatchedPercent
Assertions 1 1 100.00 1 100.00
Cover properties 0 0 0
Cover sequences 0 0 0
Total 1 1 100.00 1 100.00




Assertion Details

NameAttemptsReal SuccessesFailuresIncomplete
OutputsKnown_A 47836459 45879502 0 0


OutputsKnown_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 47836459 45879502 0 0
T4 849 761 0 0
T5 1027 960 0 0
T6 1157 1076 0 0
T28 1001 961 0 0
T29 753 638 0 0
T30 733 652 0 0
T31 4385 4270 0 0
T32 1069 974 0 0
T33 3009 2928 0 0
T34 4780 4651 0 0

Line Coverage for Instance : tb.dut.u_clk_main_aes_trans.u_prim_mubi4_sender
Line No.TotalCoveredPercent
TOTAL33100.00
CONT_ASSIGN3411100.00
CONT_ASSIGN8211100.00
CONT_ASSIGN8511100.00

33 logic [MuBi4Width-1:0] mubi, mubi_int, mubi_out; 34 1/1 assign mubi = MuBi4Width'(mubi_i); Tests: T4 T5 T6  35 36 // first generation block decides whether a flop should be present 37 if (AsyncOn) begin : gen_flops 38 prim_flop #( 39 .Width(MuBi4Width), 40 .ResetValue(MuBi4Width'(ResetValue)) 41 ) u_prim_flop ( 42 .clk_i, 43 .rst_ni, 44 .d_i ( mubi ), 45 .q_o ( mubi_int ) 46 ); 47 end else begin : gen_no_flops 48 assign mubi_int = mubi; 49 50 // This unused companion logic helps remove lint errors 51 // for modules where clock and reset are used for assertions only 52 // This logic will be removed for sythesis since it is unloaded. 53 mubi4_t unused_logic; 54 always_ff @(posedge clk_i or negedge rst_ni) begin 55 if (!rst_ni) begin 56 unused_logic <= MuBi4False; 57 end else begin 58 unused_logic <= mubi_i; 59 end 60 end 61 end 62 63 // second generation block determines output buffer type 64 // 1. If EnSecBuf -> always leads to a sec buffer regardless of first block 65 // 2. If not EnSecBuf and not AsyncOn -> use normal buffer 66 // 3. If not EnSecBuf and AsyncOn -> feed through 67 if (EnSecBuf) begin : gen_sec_buf 68 prim_sec_anchor_buf #( 69 .Width(4) 70 ) u_prim_sec_buf ( 71 .in_i(mubi_int), 72 .out_o(mubi_out) 73 ); 74 end else if (!AsyncOn) begin : gen_prim_buf 75 prim_buf #( 76 .Width(4) 77 ) u_prim_buf ( 78 .in_i(mubi_int), 79 .out_o(mubi_out) 80 ); 81 end else begin : gen_feedthru 82 1/1 assign mubi_out = mubi_int; Tests: T4 T5 T6  83 end 84 85 1/1 assign mubi_o = mubi4_t'(mubi_out); Tests: T4 T5 T6 

Assert Coverage for Instance : tb.dut.u_clk_main_aes_trans.u_prim_mubi4_sender
TotalAttemptedPercentSucceeded/MatchedPercent
Assertions 1 1 100.00 1 100.00
Cover properties 0 0 0
Cover sequences 0 0 0
Total 1 1 100.00 1 100.00




Assertion Details

NameAttemptsReal SuccessesFailuresIncomplete
OutputsKnown_A 99737448 95639350 0 0


OutputsKnown_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 99737448 95639350 0 0
T4 1768 1585 0 0
T5 2141 2001 0 0
T6 2411 2242 0 0
T28 2085 2001 0 0
T29 1562 1321 0 0
T30 1528 1359 0 0
T31 9137 8897 0 0
T32 2226 2029 0 0
T33 6267 6098 0 0
T34 9958 9689 0 0

Line Coverage for Instance : tb.dut.u_clk_main_hmac_trans.u_prim_mubi4_sender
Line No.TotalCoveredPercent
TOTAL33100.00
CONT_ASSIGN3411100.00
CONT_ASSIGN8211100.00
CONT_ASSIGN8511100.00

33 logic [MuBi4Width-1:0] mubi, mubi_int, mubi_out; 34 1/1 assign mubi = MuBi4Width'(mubi_i); Tests: T4 T5 T6  35 36 // first generation block decides whether a flop should be present 37 if (AsyncOn) begin : gen_flops 38 prim_flop #( 39 .Width(MuBi4Width), 40 .ResetValue(MuBi4Width'(ResetValue)) 41 ) u_prim_flop ( 42 .clk_i, 43 .rst_ni, 44 .d_i ( mubi ), 45 .q_o ( mubi_int ) 46 ); 47 end else begin : gen_no_flops 48 assign mubi_int = mubi; 49 50 // This unused companion logic helps remove lint errors 51 // for modules where clock and reset are used for assertions only 52 // This logic will be removed for sythesis since it is unloaded. 53 mubi4_t unused_logic; 54 always_ff @(posedge clk_i or negedge rst_ni) begin 55 if (!rst_ni) begin 56 unused_logic <= MuBi4False; 57 end else begin 58 unused_logic <= mubi_i; 59 end 60 end 61 end 62 63 // second generation block determines output buffer type 64 // 1. If EnSecBuf -> always leads to a sec buffer regardless of first block 65 // 2. If not EnSecBuf and not AsyncOn -> use normal buffer 66 // 3. If not EnSecBuf and AsyncOn -> feed through 67 if (EnSecBuf) begin : gen_sec_buf 68 prim_sec_anchor_buf #( 69 .Width(4) 70 ) u_prim_sec_buf ( 71 .in_i(mubi_int), 72 .out_o(mubi_out) 73 ); 74 end else if (!AsyncOn) begin : gen_prim_buf 75 prim_buf #( 76 .Width(4) 77 ) u_prim_buf ( 78 .in_i(mubi_int), 79 .out_o(mubi_out) 80 ); 81 end else begin : gen_feedthru 82 1/1 assign mubi_out = mubi_int; Tests: T4 T5 T6  83 end 84 85 1/1 assign mubi_o = mubi4_t'(mubi_out); Tests: T4 T5 T6 

Assert Coverage for Instance : tb.dut.u_clk_main_hmac_trans.u_prim_mubi4_sender
TotalAttemptedPercentSucceeded/MatchedPercent
Assertions 1 1 100.00 1 100.00
Cover properties 0 0 0
Cover sequences 0 0 0
Total 1 1 100.00 1 100.00




Assertion Details

NameAttemptsReal SuccessesFailuresIncomplete
OutputsKnown_A 99737448 95639350 0 0


OutputsKnown_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 99737448 95639350 0 0
T4 1768 1585 0 0
T5 2141 2001 0 0
T6 2411 2242 0 0
T28 2085 2001 0 0
T29 1562 1321 0 0
T30 1528 1359 0 0
T31 9137 8897 0 0
T32 2226 2029 0 0
T33 6267 6098 0 0
T34 9958 9689 0 0

Line Coverage for Instance : tb.dut.u_clk_main_kmac_trans.u_prim_mubi4_sender
Line No.TotalCoveredPercent
TOTAL33100.00
CONT_ASSIGN3411100.00
CONT_ASSIGN8211100.00
CONT_ASSIGN8511100.00

33 logic [MuBi4Width-1:0] mubi, mubi_int, mubi_out; 34 1/1 assign mubi = MuBi4Width'(mubi_i); Tests: T4 T5 T6  35 36 // first generation block decides whether a flop should be present 37 if (AsyncOn) begin : gen_flops 38 prim_flop #( 39 .Width(MuBi4Width), 40 .ResetValue(MuBi4Width'(ResetValue)) 41 ) u_prim_flop ( 42 .clk_i, 43 .rst_ni, 44 .d_i ( mubi ), 45 .q_o ( mubi_int ) 46 ); 47 end else begin : gen_no_flops 48 assign mubi_int = mubi; 49 50 // This unused companion logic helps remove lint errors 51 // for modules where clock and reset are used for assertions only 52 // This logic will be removed for sythesis since it is unloaded. 53 mubi4_t unused_logic; 54 always_ff @(posedge clk_i or negedge rst_ni) begin 55 if (!rst_ni) begin 56 unused_logic <= MuBi4False; 57 end else begin 58 unused_logic <= mubi_i; 59 end 60 end 61 end 62 63 // second generation block determines output buffer type 64 // 1. If EnSecBuf -> always leads to a sec buffer regardless of first block 65 // 2. If not EnSecBuf and not AsyncOn -> use normal buffer 66 // 3. If not EnSecBuf and AsyncOn -> feed through 67 if (EnSecBuf) begin : gen_sec_buf 68 prim_sec_anchor_buf #( 69 .Width(4) 70 ) u_prim_sec_buf ( 71 .in_i(mubi_int), 72 .out_o(mubi_out) 73 ); 74 end else if (!AsyncOn) begin : gen_prim_buf 75 prim_buf #( 76 .Width(4) 77 ) u_prim_buf ( 78 .in_i(mubi_int), 79 .out_o(mubi_out) 80 ); 81 end else begin : gen_feedthru 82 1/1 assign mubi_out = mubi_int; Tests: T4 T5 T6  83 end 84 85 1/1 assign mubi_o = mubi4_t'(mubi_out); Tests: T4 T5 T6 

Assert Coverage for Instance : tb.dut.u_clk_main_kmac_trans.u_prim_mubi4_sender
TotalAttemptedPercentSucceeded/MatchedPercent
Assertions 1 1 100.00 1 100.00
Cover properties 0 0 0
Cover sequences 0 0 0
Total 1 1 100.00 1 100.00




Assertion Details

NameAttemptsReal SuccessesFailuresIncomplete
OutputsKnown_A 99737448 95639350 0 0


OutputsKnown_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 99737448 95639350 0 0
T4 1768 1585 0 0
T5 2141 2001 0 0
T6 2411 2242 0 0
T28 2085 2001 0 0
T29 1562 1321 0 0
T30 1528 1359 0 0
T31 9137 8897 0 0
T32 2226 2029 0 0
T33 6267 6098 0 0
T34 9958 9689 0 0

Line Coverage for Instance : tb.dut.u_clk_main_otbn_trans.u_prim_mubi4_sender
Line No.TotalCoveredPercent
TOTAL33100.00
CONT_ASSIGN3411100.00
CONT_ASSIGN8211100.00
CONT_ASSIGN8511100.00

33 logic [MuBi4Width-1:0] mubi, mubi_int, mubi_out; 34 1/1 assign mubi = MuBi4Width'(mubi_i); Tests: T4 T5 T6  35 36 // first generation block decides whether a flop should be present 37 if (AsyncOn) begin : gen_flops 38 prim_flop #( 39 .Width(MuBi4Width), 40 .ResetValue(MuBi4Width'(ResetValue)) 41 ) u_prim_flop ( 42 .clk_i, 43 .rst_ni, 44 .d_i ( mubi ), 45 .q_o ( mubi_int ) 46 ); 47 end else begin : gen_no_flops 48 assign mubi_int = mubi; 49 50 // This unused companion logic helps remove lint errors 51 // for modules where clock and reset are used for assertions only 52 // This logic will be removed for sythesis since it is unloaded. 53 mubi4_t unused_logic; 54 always_ff @(posedge clk_i or negedge rst_ni) begin 55 if (!rst_ni) begin 56 unused_logic <= MuBi4False; 57 end else begin 58 unused_logic <= mubi_i; 59 end 60 end 61 end 62 63 // second generation block determines output buffer type 64 // 1. If EnSecBuf -> always leads to a sec buffer regardless of first block 65 // 2. If not EnSecBuf and not AsyncOn -> use normal buffer 66 // 3. If not EnSecBuf and AsyncOn -> feed through 67 if (EnSecBuf) begin : gen_sec_buf 68 prim_sec_anchor_buf #( 69 .Width(4) 70 ) u_prim_sec_buf ( 71 .in_i(mubi_int), 72 .out_o(mubi_out) 73 ); 74 end else if (!AsyncOn) begin : gen_prim_buf 75 prim_buf #( 76 .Width(4) 77 ) u_prim_buf ( 78 .in_i(mubi_int), 79 .out_o(mubi_out) 80 ); 81 end else begin : gen_feedthru 82 1/1 assign mubi_out = mubi_int; Tests: T4 T5 T6  83 end 84 85 1/1 assign mubi_o = mubi4_t'(mubi_out); Tests: T4 T5 T6 

Assert Coverage for Instance : tb.dut.u_clk_main_otbn_trans.u_prim_mubi4_sender
TotalAttemptedPercentSucceeded/MatchedPercent
Assertions 1 1 100.00 1 100.00
Cover properties 0 0 0
Cover sequences 0 0 0
Total 1 1 100.00 1 100.00




Assertion Details

NameAttemptsReal SuccessesFailuresIncomplete
OutputsKnown_A 99737448 95639350 0 0


OutputsKnown_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 99737448 95639350 0 0
T4 1768 1585 0 0
T5 2141 2001 0 0
T6 2411 2242 0 0
T28 2085 2001 0 0
T29 1562 1321 0 0
T30 1528 1359 0 0
T31 9137 8897 0 0
T32 2226 2029 0 0
T33 6267 6098 0 0
T34 9958 9689 0 0

0% 10% 20% 30% 40% 50% 60% 70% 80% 90% 100%