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@@ -32,10 +32,10 @@ fn bench_compressed_snark(c: &mut Criterion) {
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let num_samples = 10;
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let num_samples = 10;
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// we vary the number of constraints in the step circuit
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// we vary the number of constraints in the step circuit
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for &log_num_cons_in_step_circuit in [0, 15, 16, 17, 18, 19, 20].iter() {
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for &log_num_cons_in_step_circuit in [0, 14, 15, 16, 17, 18, 19, 20].iter() {
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let num_cons = 1 << log_num_cons_in_step_circuit;
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let num_cons = 1 << log_num_cons_in_step_circuit;
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let mut group = c.benchmark_group(format!("RecursiveSNARK-StepCircuitSize-{}", num_cons));
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let mut group = c.benchmark_group(format!("CompressedSNARK-StepCircuitSize-{}", num_cons));
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group.sample_size(num_samples);
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group.sample_size(num_samples);
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// Produce public parameters
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// Produce public parameters
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@@ -28,7 +28,7 @@ criterion_main!(recursive_snark);
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fn bench_recursive_snark(c: &mut Criterion) {
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fn bench_recursive_snark(c: &mut Criterion) {
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// we vary the number of constraints in the step circuit
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// we vary the number of constraints in the step circuit
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for &log_num_cons_in_step_circuit in [0, 15, 16, 17, 18, 19, 20].iter() {
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for &log_num_cons_in_step_circuit in [0, 14, 15, 16, 17, 18, 19, 20].iter() {
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let num_cons = 1 << log_num_cons_in_step_circuit;
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let num_cons = 1 << log_num_cons_in_step_circuit;
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let mut group = c.benchmark_group(format!("RecursiveSNARK-StepCircuitSize-{}", num_cons));
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let mut group = c.benchmark_group(format!("RecursiveSNARK-StepCircuitSize-{}", num_cons));
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