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Module Instance : tb.dut.u_otp_arb

Instance :
SCORELINECONDTOGGLEFSMBRANCHASSERT
97.25 98.07 97.16 100.00 93.75


Instance's subtree :
SCORELINECONDTOGGLEFSMBRANCHASSERT
97.25 98.07 97.16 100.00 93.75


Parent :
SCORELINECONDTOGGLEFSMBRANCHASSERTNAME
96.18 94.16 96.15 97.00 96.43 97.18 dut


Subtrees :
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Module Instances:
tb.dut.u_otp_arb
Line Coverage for Instance : tb.dut.u_otp_arb
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61 logic unused_req_chk; 62 1/1 assign unused_req_chk = req_chk_i; Tests: T1 T2 T3  63 64 `ASSERT_INIT(CheckNGreaterZero_A, N > 0) 65 66 // this case is basically just a bypass 67 if (N == 1) begin : gen_degenerate_case 68 69 assign valid_o = req_i[0]; 70 assign data_o = data_i[0]; 71 assign gnt_o[0] = valid_o & ready_i; 72 assign idx_o = '0; 73 74 end else begin : gen_normal_case 75 76 // align to powers of 2 for simplicity 77 // a full binary tree with N levels has 2**N + 2**N-1 nodes 78 logic [2**(IdxW+1)-2:0] req_tree; 79 logic [2**(IdxW+1)-2:0] prio_tree; 80 logic [2**(IdxW+1)-2:0] sel_tree; 81 logic [2**(IdxW+1)-2:0] mask_tree; 82 logic [2**(IdxW+1)-2:0][IdxW-1:0] idx_tree; 83 logic [2**(IdxW+1)-2:0][DW-1:0] data_tree; 84 logic [N-1:0] prio_mask_d, prio_mask_q; 85 86 for (genvar level = 0; level < IdxW+1; level++) begin : gen_tree 87 // 88 // level+1 C0 C1 <- "Base1" points to the first node on "level+1", 89 // \ / these nodes are the children of the nodes one level below 90 // level Pa <- "Base0", points to the first node on "level", 91 // these nodes are the parents of the nodes one level above 92 // 93 // hence we have the following indices for the Pa, C0, C1 nodes: 94 // Pa = 2**level - 1 + offset = Base0 + offset 95 // C0 = 2**(level+1) - 1 + 2*offset = Base1 + 2*offset 96 // C1 = 2**(level+1) - 1 + 2*offset + 1 = Base1 + 2*offset + 1 97 // 98 localparam int Base0 = (2**level)-1; 99 localparam int Base1 = (2**(level+1))-1; 100 101 for (genvar offset = 0; offset < 2**level; offset++) begin : gen_level 102 localparam int Pa = Base0 + offset; 103 localparam int C0 = Base1 + 2*offset; 104 localparam int C1 = Base1 + 2*offset + 1; 105 106 // this assigns the gated interrupt source signals, their 107 // corresponding IDs and priorities to the tree leafs 108 if (level == IdxW) begin : gen_leafs 109 if (offset < N) begin : gen_assign 110 // forward path (requests and data) 111 // all requests inputs are assigned to the request tree 112 13/14 ==> assign req_tree[Pa] = req_i[offset]; Tests: T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  113 // we basically split the incoming request vector into two halves with the following 114 // priority assignment. the prio_mask_q register contains a prefix sum that has been 115 // computed using the last winning index, and hence masks out all requests at offsets 116 // lower or equal the previously granted index. hence, all higher indices are considered 117 // first in the arbitration tree nodes below, before considering the lower indices. 118 14/14 assign prio_tree[Pa] = req_i[offset] & prio_mask_q[offset]; Tests: T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  119 // input for the index muxes (used to compute the winner index) 120 assign idx_tree[Pa] = offset; 121 // input for the data muxes 122 13/14 ==> assign data_tree[Pa] = data_i[offset]; Tests: T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  123 124 // backward path (grants and prefix sum) 125 // grant if selected, ready and request asserted 126 14/14 assign gnt_o[offset] = req_i[offset] & sel_tree[Pa] & ready_i; Tests: T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  127 // only update mask if there is a valid request 128 14/14 assign prio_mask_d[offset] = (|req_i) ? Tests: T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  129 mask_tree[Pa] | sel_tree[Pa] & ~ready_i : 130 prio_mask_q[offset]; 131 end else begin : gen_tie_off 132 // forward path 133 assign req_tree[Pa] = '0; 134 assign prio_tree[Pa] = '0; 135 assign idx_tree[Pa] = '0; 136 assign data_tree[Pa] = '0; 137 logic unused_sigs; 138 2/2 assign unused_sigs = ^{mask_tree[Pa], Tests: T1 T2 T3  | T1 T2 T3  139 sel_tree[Pa]}; 140 end 141 // this creates the node assignments 142 end else begin : gen_nodes 143 // local helper variable 144 logic sel; 145 146 // forward path (requests and data) 147 // each node looks at its two children, and selects the one with higher priority 148 14/14(1 unreachable) assign sel = ~req_tree[C0] | ~prio_tree[C0] & prio_tree[C1]; Tests: T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  149 // propagate requests 150 14/14(1 unreachable) assign req_tree[Pa] = req_tree[C0] | req_tree[C1]; Tests: T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  151 14/14(1 unreachable) assign prio_tree[Pa] = prio_tree[C1] | prio_tree[C0]; Tests: T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  152 // data and index muxes 153 // Note: these ternaries have triggered a synthesis bug in Vivado versions older 154 // than 2020.2. If the problem resurfaces again, have a look at issue #1408. 155 14/15 ==> assign idx_tree[Pa] = (sel) ? idx_tree[C1] : idx_tree[C0]; Tests: T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  156 14/15 ==> assign data_tree[Pa] = (sel) ? data_tree[C1] : data_tree[C0]; Tests: T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  157 158 // backward path (grants and prefix sum) 159 // this propagates the selction index back and computes a hot one mask 160 14/14(1 unreachable) assign sel_tree[C0] = sel_tree[Pa] & ~sel; Tests: T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  161 15/15 assign sel_tree[C1] = sel_tree[Pa] & sel; Tests: T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  162 // this performs a prefix sum for masking the input requests in the next cycle 163 11/11(4 unreachable) assign mask_tree[C0] = mask_tree[Pa]; Tests: T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  164 15/15 assign mask_tree[C1] = mask_tree[Pa] | sel_tree[C0]; Tests: T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  | T1 T2 T3  165 end 166 end : gen_level 167 end : gen_tree 168 169 // the results can be found at the tree root 170 if (EnDataPort) begin : gen_data_port 171 1/1 assign data_o = data_tree[0]; Tests: T1 T2 T3  172 end else begin : gen_no_dataport 173 logic [DW-1:0] unused_data; 174 assign unused_data = data_tree[0]; 175 assign data_o = '1; 176 end 177 178 // This index is unused. 179 logic unused_prio_tree; 180 1/1 assign unused_prio_tree = prio_tree[0]; Tests: T1 T2 T3  181 182 1/1 assign idx_o = idx_tree[0]; Tests: T1 T2 T3  183 1/1 assign valid_o = req_tree[0]; Tests: T1 T2 T3  184 185 // the select tree computes a hot one signal that indicates which request is currently selected 186 assign sel_tree[0] = 1'b1; 187 // the mask tree is basically a prefix sum of the hot one select signal computed above 188 assign mask_tree[0] = 1'b0; 189 190 always_ff @(posedge clk_i or negedge rst_ni) begin : p_mask_reg 191 1/1 if (!rst_ni) begin Tests: T1 T2 T3  192 1/1 prio_mask_q <= '0; Tests: T1 T2 T3  193 end else begin 194 1/1 prio_mask_q <= prio_mask_d; Tests: T1 T2 T3 

Cond Coverage for Instance : tb.dut.u_otp_arb
TotalCoveredPercent
Conditions52951497.16
Logical52951497.16
Non-Logical00
Event00

This module contains a very large number of conditions, so the report has been split into multiple pages, by source line number. Click on the line number range in the table below to see the condition coverage for that section of the module.
Line numbersPercent
118-15095.97
150-16498.70

Branch Coverage for Instance : tb.dut.u_otp_arb
Line No.TotalCoveredPercent
Branches 88 88 100.00
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IF 191 2 2 100.00


155 assign idx_tree[Pa] = (sel) ? idx_tree[C1] : idx_tree[C0]; -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


156 assign data_tree[Pa] = (sel) ? data_tree[C1] : data_tree[C0]; -1- ==> ==>

Branches:
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1 Covered T1,T2,T3
0 Covered T1,T2,T3


155 assign idx_tree[Pa] = (sel) ? idx_tree[C1] : idx_tree[C0]; -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


156 assign data_tree[Pa] = (sel) ? data_tree[C1] : data_tree[C0]; -1- ==> ==>

Branches:
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1 Covered T1,T2,T3
0 Covered T1,T2,T3


155 assign idx_tree[Pa] = (sel) ? idx_tree[C1] : idx_tree[C0]; -1- ==> ==>

Branches:
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1 Covered T1,T2,T3
0 Covered T1,T2,T3


156 assign data_tree[Pa] = (sel) ? data_tree[C1] : data_tree[C0]; -1- ==> ==>

Branches:
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1 Covered T1,T2,T3
0 Covered T1,T2,T3


155 assign idx_tree[Pa] = (sel) ? idx_tree[C1] : idx_tree[C0]; -1- ==> ==>

Branches:
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1 Covered T1,T2,T3
0 Covered T1,T2,T3


156 assign data_tree[Pa] = (sel) ? data_tree[C1] : data_tree[C0]; -1- ==> ==>

Branches:
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1 Covered T1,T2,T3
0 Covered T1,T2,T3


155 assign idx_tree[Pa] = (sel) ? idx_tree[C1] : idx_tree[C0]; -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


156 assign data_tree[Pa] = (sel) ? data_tree[C1] : data_tree[C0]; -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


155 assign idx_tree[Pa] = (sel) ? idx_tree[C1] : idx_tree[C0]; -1- ==> ==>

Branches:
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1 Covered T1,T2,T3
0 Covered T1,T2,T3


156 assign data_tree[Pa] = (sel) ? data_tree[C1] : data_tree[C0]; -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


155 assign idx_tree[Pa] = (sel) ? idx_tree[C1] : idx_tree[C0]; -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T3,T12,T13


156 assign data_tree[Pa] = (sel) ? data_tree[C1] : data_tree[C0]; -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T3,T12,T13


155 assign idx_tree[Pa] = (sel) ? idx_tree[C1] : idx_tree[C0]; -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


156 assign data_tree[Pa] = (sel) ? data_tree[C1] : data_tree[C0]; -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


155 assign idx_tree[Pa] = (sel) ? idx_tree[C1] : idx_tree[C0]; -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


156 assign data_tree[Pa] = (sel) ? data_tree[C1] : data_tree[C0]; -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


155 assign idx_tree[Pa] = (sel) ? idx_tree[C1] : idx_tree[C0]; -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


156 assign data_tree[Pa] = (sel) ? data_tree[C1] : data_tree[C0]; -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


155 assign idx_tree[Pa] = (sel) ? idx_tree[C1] : idx_tree[C0]; -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


156 assign data_tree[Pa] = (sel) ? data_tree[C1] : data_tree[C0]; -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


155 assign idx_tree[Pa] = (sel) ? idx_tree[C1] : idx_tree[C0]; -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


156 assign data_tree[Pa] = (sel) ? data_tree[C1] : data_tree[C0]; -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


155 assign idx_tree[Pa] = (sel) ? idx_tree[C1] : idx_tree[C0]; -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


156 assign data_tree[Pa] = (sel) ? data_tree[C1] : data_tree[C0]; -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


155 assign idx_tree[Pa] = (sel) ? idx_tree[C1] : idx_tree[C0]; -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T3,T12,T13


156 assign data_tree[Pa] = (sel) ? data_tree[C1] : data_tree[C0]; -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T3,T12,T13


155 assign idx_tree[Pa] = (sel) ? idx_tree[C1] : idx_tree[C0]; -1- ==> ==> (Unreachable)

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Unreachable


156 assign data_tree[Pa] = (sel) ? data_tree[C1] : data_tree[C0]; -1- ==> ==> (Unreachable)

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Unreachable


128 assign prio_mask_d[offset] = (|req_i) ? -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


128 assign prio_mask_d[offset] = (|req_i) ? -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


128 assign prio_mask_d[offset] = (|req_i) ? -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


128 assign prio_mask_d[offset] = (|req_i) ? -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


128 assign prio_mask_d[offset] = (|req_i) ? -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


128 assign prio_mask_d[offset] = (|req_i) ? -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


128 assign prio_mask_d[offset] = (|req_i) ? -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


128 assign prio_mask_d[offset] = (|req_i) ? -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


128 assign prio_mask_d[offset] = (|req_i) ? -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


128 assign prio_mask_d[offset] = (|req_i) ? -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


128 assign prio_mask_d[offset] = (|req_i) ? -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


128 assign prio_mask_d[offset] = (|req_i) ? -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


128 assign prio_mask_d[offset] = (|req_i) ? -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


128 assign prio_mask_d[offset] = (|req_i) ? -1- ==> ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


191 if (!rst_ni) begin -1- 192 prio_mask_q <= '0; ==> 193 end else begin 194 prio_mask_q <= prio_mask_d; ==>

Branches:
-1-StatusTests
1 Covered T1,T2,T3
0 Covered T1,T2,T3


Assert Coverage for Instance : tb.dut.u_otp_arb
TotalAttemptedPercentSucceeded/MatchedPercent
Assertions 16 16 100.00 15 93.75
Cover properties 0 0 0
Cover sequences 0 0 0
Total 16 16 100.00 15 93.75




Assertion Details

NameAttemptsReal SuccessesFailuresIncomplete
CheckHotOne_A 88289748 87463934 0 0
CheckNGreaterZero_A 1126 1126 0 0
GntImpliesReady_A 88289748 1270022 0 0
GntImpliesValid_A 88289748 1270022 0 0
GrantKnown_A 88289748 87463934 0 0
IdxKnown_A 88289748 87463934 0 0
IndexIsCorrect_A 88289748 1270022 0 0
LockArbDecision_A 88289748 6417386 0 0
NoReadyValidNoGrant_A 88289748 6911606 0 0
ReadyAndValidImplyGrant_A 88289748 1270022 0 0
ReqAndReadyImplyGrant_A 88289748 1270022 0 0
ReqImpliesValid_A 88289748 7688812 0 0
ReqStaysHighUntilGranted0_M 88289748 6417386 0 0
RoundRobin_A 88289748 0 0 1117
ValidKnown_A 88289748 87463934 0 0
gen_data_port_assertion.DataFlow_A 88289748 1270022 0 0


CheckHotOne_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 88289748 87463934 0 0
T1 4656 4583 0 0
T2 10141 9965 0 0
T3 15504 15304 0 0
T4 12189 11866 0 0
T5 17675 17237 0 0
T6 21031 20747 0 0
T10 7207 7152 0 0
T11 38076 38012 0 0
T12 45463 44631 0 0
T13 13068 12633 0 0

CheckNGreaterZero_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 1126 1126 0 0
T1 1 1 0 0
T2 1 1 0 0
T3 1 1 0 0
T4 1 1 0 0
T5 1 1 0 0
T6 1 1 0 0
T10 1 1 0 0
T11 1 1 0 0
T12 1 1 0 0
T13 1 1 0 0

GntImpliesReady_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 88289748 1270022 0 0
T1 4656 111 0 0
T2 10141 126 0 0
T3 15504 274 0 0
T4 12189 200 0 0
T5 17675 297 0 0
T6 21031 232 0 0
T10 7207 55 0 0
T11 38076 949 0 0
T12 45463 1876 0 0
T13 13068 513 0 0

GntImpliesValid_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 88289748 1270022 0 0
T1 4656 111 0 0
T2 10141 126 0 0
T3 15504 274 0 0
T4 12189 200 0 0
T5 17675 297 0 0
T6 21031 232 0 0
T10 7207 55 0 0
T11 38076 949 0 0
T12 45463 1876 0 0
T13 13068 513 0 0

GrantKnown_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 88289748 87463934 0 0
T1 4656 4583 0 0
T2 10141 9965 0 0
T3 15504 15304 0 0
T4 12189 11866 0 0
T5 17675 17237 0 0
T6 21031 20747 0 0
T10 7207 7152 0 0
T11 38076 38012 0 0
T12 45463 44631 0 0
T13 13068 12633 0 0

IdxKnown_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 88289748 87463934 0 0
T1 4656 4583 0 0
T2 10141 9965 0 0
T3 15504 15304 0 0
T4 12189 11866 0 0
T5 17675 17237 0 0
T6 21031 20747 0 0
T10 7207 7152 0 0
T11 38076 38012 0 0
T12 45463 44631 0 0
T13 13068 12633 0 0

IndexIsCorrect_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 88289748 1270022 0 0
T1 4656 111 0 0
T2 10141 126 0 0
T3 15504 274 0 0
T4 12189 200 0 0
T5 17675 297 0 0
T6 21031 232 0 0
T10 7207 55 0 0
T11 38076 949 0 0
T12 45463 1876 0 0
T13 13068 513 0 0

LockArbDecision_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 88289748 6417386 0 0
T1 4656 624 0 0
T2 10141 644 0 0
T3 15504 1968 0 0
T4 12189 1929 0 0
T5 17675 3444 0 0
T6 21031 1872 0 0
T10 7207 624 0 0
T11 38076 624 0 0
T12 45463 8855 0 0
T13 13068 3180 0 0

NoReadyValidNoGrant_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 88289748 6911606 0 0
T1 4656 768 0 0
T2 10141 935 0 0
T3 15504 1788 0 0
T4 12189 1079 0 0
T5 17675 1132 0 0
T6 21031 1469 0 0
T10 7207 242 0 0
T11 38076 7938 0 0
T12 45463 8165 0 0
T13 13068 2136 0 0

ReadyAndValidImplyGrant_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 88289748 1270022 0 0
T1 4656 111 0 0
T2 10141 126 0 0
T3 15504 274 0 0
T4 12189 200 0 0
T5 17675 297 0 0
T6 21031 232 0 0
T10 7207 55 0 0
T11 38076 949 0 0
T12 45463 1876 0 0
T13 13068 513 0 0

ReqAndReadyImplyGrant_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 88289748 1270022 0 0
T1 4656 111 0 0
T2 10141 126 0 0
T3 15504 274 0 0
T4 12189 200 0 0
T5 17675 297 0 0
T6 21031 232 0 0
T10 7207 55 0 0
T11 38076 949 0 0
T12 45463 1876 0 0
T13 13068 513 0 0

ReqImpliesValid_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 88289748 7688812 0 0
T1 4656 735 0 0
T2 10141 772 0 0
T3 15504 2242 0 0
T4 12189 2132 0 0
T5 17675 3742 0 0
T6 21031 2104 0 0
T10 7207 679 0 0
T11 38076 1573 0 0
T12 45463 10731 0 0
T13 13068 3696 0 0

ReqStaysHighUntilGranted0_M
NameAttemptsReal SuccessesFailuresIncomplete
Total 88289748 6417386 0 0
T1 4656 624 0 0
T2 10141 644 0 0
T3 15504 1968 0 0
T4 12189 1929 0 0
T5 17675 3444 0 0
T6 21031 1872 0 0
T10 7207 624 0 0
T11 38076 624 0 0
T12 45463 8855 0 0
T13 13068 3180 0 0

RoundRobin_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 88289748 0 0 1117

ValidKnown_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 88289748 87463934 0 0
T1 4656 4583 0 0
T2 10141 9965 0 0
T3 15504 15304 0 0
T4 12189 11866 0 0
T5 17675 17237 0 0
T6 21031 20747 0 0
T10 7207 7152 0 0
T11 38076 38012 0 0
T12 45463 44631 0 0
T13 13068 12633 0 0

gen_data_port_assertion.DataFlow_A
NameAttemptsReal SuccessesFailuresIncomplete
Total 88289748 1270022 0 0
T1 4656 111 0 0
T2 10141 126 0 0
T3 15504 274 0 0
T4 12189 200 0 0
T5 17675 297 0 0
T6 21031 232 0 0
T10 7207 55 0 0
T11 38076 949 0 0
T12 45463 1876 0 0
T13 13068 513 0 0

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