bench_ecmult: improve clarity of output
Previously "ecmult{,_multi} xg" meant multiplication with (x - 1) random points and base point G. Now - ecmult_{,multi_}xp means multiplication with x random points and - ecmult_{,multi_}xp_g means multiplication with x random points and G
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@ -124,7 +124,7 @@ static void bench_ecmult_const_teardown(void* arg, int iters) {
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bench_ecmult_teardown_helper(data, &data->offset1, &data->offset2, NULL, iters);
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}
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static void bench_ecmult_1(void* arg, int iters) {
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static void bench_ecmult_1p(void* arg, int iters) {
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bench_data* data = (bench_data*)arg;
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int i;
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@ -133,12 +133,12 @@ static void bench_ecmult_1(void* arg, int iters) {
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}
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}
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static void bench_ecmult_1_teardown(void* arg, int iters) {
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static void bench_ecmult_1p_teardown(void* arg, int iters) {
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bench_data* data = (bench_data*)arg;
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bench_ecmult_teardown_helper(data, &data->offset1, &data->offset2, NULL, iters);
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}
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static void bench_ecmult_1g(void* arg, int iters) {
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static void bench_ecmult_0p_g(void* arg, int iters) {
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bench_data* data = (bench_data*)arg;
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secp256k1_scalar zero;
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int i;
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@ -149,12 +149,12 @@ static void bench_ecmult_1g(void* arg, int iters) {
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}
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}
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static void bench_ecmult_1g_teardown(void* arg, int iters) {
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static void bench_ecmult_0p_g_teardown(void* arg, int iters) {
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bench_data* data = (bench_data*)arg;
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bench_ecmult_teardown_helper(data, NULL, NULL, &data->offset1, iters);
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}
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static void bench_ecmult_2g(void* arg, int iters) {
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static void bench_ecmult_1p_g(void* arg, int iters) {
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bench_data* data = (bench_data*)arg;
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int i;
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@ -163,7 +163,7 @@ static void bench_ecmult_2g(void* arg, int iters) {
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}
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}
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static void bench_ecmult_2g_teardown(void* arg, int iters) {
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static void bench_ecmult_1p_g_teardown(void* arg, int iters) {
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bench_data* data = (bench_data*)arg;
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bench_ecmult_teardown_helper(data, &data->offset1, &data->offset2, &data->offset1, iters/2);
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}
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@ -175,14 +175,14 @@ static void run_ecmult_bench(bench_data* data, int iters) {
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sprintf(str, "ecmult_const");
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run_benchmark(str, bench_ecmult_const, bench_ecmult_setup, bench_ecmult_const_teardown, data, 10, iters);
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/* ecmult with non generator point */
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sprintf(str, "ecmult 1");
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run_benchmark(str, bench_ecmult_1, bench_ecmult_setup, bench_ecmult_1_teardown, data, 10, iters);
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sprintf(str, "ecmult_1p");
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run_benchmark(str, bench_ecmult_1p, bench_ecmult_setup, bench_ecmult_1p_teardown, data, 10, iters);
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/* ecmult with generator point */
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sprintf(str, "ecmult 1g");
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run_benchmark(str, bench_ecmult_1g, bench_ecmult_setup, bench_ecmult_1g_teardown, data, 10, iters);
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sprintf(str, "ecmult_0p_g");
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run_benchmark(str, bench_ecmult_0p_g, bench_ecmult_setup, bench_ecmult_0p_g_teardown, data, 10, iters);
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/* ecmult with generator and non-generator point. The reported time is per point. */
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sprintf(str, "ecmult 2g");
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run_benchmark(str, bench_ecmult_2g, bench_ecmult_setup, bench_ecmult_2g_teardown, data, 10, 2*iters);
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sprintf(str, "ecmult_1p_g");
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run_benchmark(str, bench_ecmult_1p_g, bench_ecmult_setup, bench_ecmult_1p_g_teardown, data, 10, 2*iters);
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}
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static int bench_ecmult_multi_callback(secp256k1_scalar* sc, secp256k1_ge* ge, size_t idx, void* arg) {
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@ -270,7 +270,11 @@ static void run_ecmult_multi_bench(bench_data* data, size_t count, int includes_
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}
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/* Run the benchmark. */
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sprintf(str, includes_g ? "ecmult_multi %ig" : "ecmult_multi %i", (int)count);
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if (includes_g) {
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sprintf(str, "ecmult_multi_%ip_g", (int)count - 1);
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} else {
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sprintf(str, "ecmult_multi_%ip", (int)count);
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}
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run_benchmark(str, bench_ecmult_multi, bench_ecmult_multi_setup, bench_ecmult_multi_teardown, data, 10, count * iters);
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}
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