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sbc-bench v0.9.4 Rockchip RK3288 Asus Tinker Board S (Sat, 07 May 2022 00:34:54 +0000)
Distributor ID: Debian
Description: Debian GNU/Linux 10 (buster)
Release: 10
Codename: buster
Armbian release info:
BOARD=tinkerboard
BOARD_NAME="Tinkerboard"
BOARDFAMILY=rockchip
BUILD_REPOSITORY_URL=https://github.com/armbian/build
BUILD_REPOSITORY_COMMIT=92a1c729d-dirty
VERSION=22.02.1
LINUXFAMILY=rockchip
ARCH=arm
IMAGE_TYPE=stable
BOARD_TYPE=conf
INITRD_ARCH=arm
KERNEL_IMAGE_TYPE=Image
BRANCH=current
/usr/bin/gcc (Debian 8.3.0-6) 8.3.0
Uptime: 00:34:55 up 9 min, 1 user, load average: 0.22, 0.09, 0.05
Linux 5.10.60-rockchip (tinkerboard) 05/07/22 _armv7l_ (4 CPU)
avg-cpu: %user %nice %system %iowait %steal %idle
2.03 0.02 1.96 0.28 0.00 95.71
Device tps kB_read/s kB_wrtn/s kB_read kB_wrtn
mmcblk0 21.23 1681.92 69.45 931093 38448
zram0 1.00 4.00 0.01 2216 4
zram1 0.45 0.82 5.17 456 2864
total used free shared buff/cache available
Mem: 2.0Gi 85Mi 1.8Gi 2.0Mi 84Mi 1.8Gi
Swap: 1.0Gi 0B 1.0Gi
Filename Type Size Used Priority
/dev/zram0 partition 1024252 0 5
##########################################################################
Checking cpufreq OPP (Cortex-A17):
Cpufreq OPP: 1992 Measured: 1800 (1798.667/1795.965/1791.540)
Cpufreq OPP: 1920 Measured: 1795 (1794.328/1789.752/1781.358)
Cpufreq OPP: 1896 Measured: 1800 (1797.866/1796.065/1794.288)
Cpufreq OPP: 1800 Measured: 1800 (1796.205/1795.965/1794.308)
Cpufreq OPP: 1704 Measured: 1700 (1699.757/1699.005/1692.325)
Cpufreq OPP: 1608 Measured: 1670 (1667.789/1603.046/1601.774)
Cpufreq OPP: 1512 Measured: 1510 (1509.587/1507.842/1507.772)
Cpufreq OPP: 1416 Measured: 1415 (1414.782/1408.686/1398.237)
Cpufreq OPP: 1200 Measured: 1200 (1196.163/1195.955/1139.329)
Cpufreq OPP: 1008 Measured: 1010 (1005.945/1004.307/1004.209)
Cpufreq OPP: 816 Measured: 815 (813.971/812.361/811.952)
Cpufreq OPP: 696 Measured: 695 (692.453/691.598/690.897)
Cpufreq OPP: 600 Measured: 600 (597.924/596.112/596.044)
Cpufreq OPP: 408 Measured: 410 (405.661/404.440/404.063)
Cpufreq OPP: 312 Measured: 310 (309.802/308.696/308.447)
Cpufreq OPP: 216 Measured: 215 (212.447/207.073/202.281)
Cpufreq OPP: 126 Measured: 125 (121.931/121.231/118.673)
##########################################################################
Executing benchmark on cpu0 (Cortex-A17):
tinymembench v0.4.9 (simple benchmark for memory throughput and latency)
==========================================================================
== Memory bandwidth tests ==
== ==
== Note 1: 1MB = 1000000 bytes ==
== Note 2: Results for 'copy' tests show how many bytes can be ==
== copied per second (adding together read and writen ==
== bytes would have provided twice higher numbers) ==
== Note 3: 2-pass copy means that we are using a small temporary buffer ==
== to first fetch data into it, and only then write it to the ==
== destination (source -> L1 cache, L1 cache -> destination) ==
== Note 4: If sample standard deviation exceeds 0.1%, it is shown in ==
== brackets ==
==========================================================================
C copy backwards : 2792.9 MB/s (14.6%)
C copy backwards (32 byte blocks) : 2789.6 MB/s
C copy backwards (64 byte blocks) : 2788.1 MB/s (14.0%)
C copy : 2640.8 MB/s (3.1%)
C copy prefetched (32 bytes step) : 1857.0 MB/s
C copy prefetched (64 bytes step) : 1865.2 MB/s (0.3%)
C 2-pass copy : 1368.1 MB/s (0.3%)
C 2-pass copy prefetched (32 bytes step) : 1166.2 MB/s
C 2-pass copy prefetched (64 bytes step) : 1201.0 MB/s (0.1%)
C fill : 4106.7 MB/s (0.4%)
C fill (shuffle within 16 byte blocks) : 4105.3 MB/s (0.4%)
C fill (shuffle within 32 byte blocks) : 4106.6 MB/s (0.2%)
C fill (shuffle within 64 byte blocks) : 4108.3 MB/s (0.2%)
---
standard memcpy : 1539.6 MB/s (0.3%)
standard memset : 4108.9 MB/s (0.2%)
---
NEON read : 5608.8 MB/s (0.2%)
NEON read prefetched (32 bytes step) : 4689.0 MB/s (0.2%)
NEON read prefetched (64 bytes step) : 5051.8 MB/s (0.3%)
NEON read 2 data streams : 4845.0 MB/s (0.4%)
NEON read 2 data streams prefetched (32 bytes step) : 3958.8 MB/s
NEON read 2 data streams prefetched (64 bytes step) : 3993.4 MB/s (0.3%)
NEON copy : 2614.5 MB/s (0.3%)
NEON copy prefetched (32 bytes step) : 2080.2 MB/s (0.4%)
NEON copy prefetched (64 bytes step) : 1964.5 MB/s (0.4%)
NEON unrolled copy : 2612.0 MB/s (0.3%)
NEON unrolled copy prefetched (32 bytes step) : 2228.3 MB/s (0.5%)
NEON unrolled copy prefetched (64 bytes step) : 2570.6 MB/s (0.2%)
NEON copy backwards : 2799.5 MB/s (0.3%)
NEON copy backwards prefetched (32 bytes step) : 2246.3 MB/s (0.6%)
NEON copy backwards prefetched (64 bytes step) : 1964.0 MB/s
NEON 2-pass copy : 1349.7 MB/s
NEON 2-pass copy prefetched (32 bytes step) : 1314.7 MB/s
NEON 2-pass copy prefetched (64 bytes step) : 1179.1 MB/s (0.2%)
NEON unrolled 2-pass copy : 1356.7 MB/s (0.1%)
NEON unrolled 2-pass copy prefetched (32 bytes step) : 1321.3 MB/s
NEON unrolled 2-pass copy prefetched (64 bytes step) : 1370.9 MB/s
NEON fill : 4112.3 MB/s (0.3%)
NEON fill backwards : 4104.4 MB/s (0.2%)
VFP copy : 2609.2 MB/s (0.3%)
VFP 2-pass copy : 1350.8 MB/s (0.2%)
ARM fill (STRD) : 4110.3 MB/s
ARM fill (STM with 8 registers) : 4101.7 MB/s
ARM fill (STM with 4 registers) : 4109.8 MB/s (0.3%)
ARM copy prefetched (incr pld) : 2398.6 MB/s (0.2%)
ARM copy prefetched (wrap pld) : 2348.7 MB/s (0.3%)
ARM 2-pass copy prefetched (incr pld) : 1344.6 MB/s
ARM 2-pass copy prefetched (wrap pld) : 1331.2 MB/s
==========================================================================
== Memory latency test ==
== ==
== Average time is measured for random memory accesses in the buffers ==
== of different sizes. The larger is the buffer, the more significant ==
== are relative contributions of TLB, L1/L2 cache misses and SDRAM ==
== accesses. For extremely large buffer sizes we are expecting to see ==
== page table walk with several requests to SDRAM for almost every ==
== memory access (though 64MiB is not nearly large enough to experience ==
== this effect to its fullest). ==
== ==
== Note 1: All the numbers are representing extra time, which needs to ==
== be added to L1 cache latency. The cycle timings for L1 cache ==
== latency can be usually found in the processor documentation. ==
== Note 2: Dual random read means that we are simultaneously performing ==
== two independent memory accesses at a time. In the case if ==
== the memory subsystem can't handle multiple outstanding ==
== requests, dual random read has the same timings as two ==
== single reads performed one after another. ==
==========================================================================
block size : single random read / dual random read
1024 : 0.0 ns / 0.0 ns
2048 : 0.0 ns / 0.0 ns
4096 : 0.0 ns / 0.0 ns
8192 : 0.0 ns / 0.0 ns
16384 : 0.0 ns / 0.0 ns
32768 : 0.0 ns / 0.0 ns
65536 : 6.2 ns / 10.6 ns
131072 : 9.3 ns / 14.6 ns
262144 : 12.5 ns / 17.9 ns
524288 : 14.2 ns / 19.5 ns
1048576 : 18.5 ns / 23.8 ns
2097152 : 71.1 ns / 107.3 ns
4194304 : 99.0 ns / 135.7 ns
8388608 : 117.6 ns / 150.5 ns
16777216 : 128.5 ns / 158.9 ns
33554432 : 136.5 ns / 166.6 ns
67108864 : 144.5 ns / 176.7 ns
##########################################################################
Executing benchmark twice on cluster 0 (Cortex-A17)
OpenSSL 1.1.1n, built on 15 Mar 2022
type 16 bytes 64 bytes 256 bytes 1024 bytes 8192 bytes 16384 bytes
aes-128-cbc 64016.23k 80670.36k 87415.13k 89379.84k 89961.81k 89953.62k
aes-128-cbc 64193.13k 80759.42k 87556.52k 89494.87k 90032.81k 89790.85k
aes-192-cbc 57035.55k 70061.67k 75136.85k 76486.31k 76881.92k 76944.73k
aes-192-cbc 56993.38k 69177.05k 75121.32k 76522.84k 76682.58k 76955.65k
aes-256-cbc 51073.14k 61628.12k 65627.48k 66741.25k 66988.71k 67065.17k
aes-256-cbc 51115.58k 61068.18k 65650.94k 66606.76k 66767.53k 67065.17k
##########################################################################
Executing benchmark single-threaded on cpu0 (Cortex-A17)
7-Zip (a) [32] 16.02 : Copyright (c) 1999-2016 Igor Pavlov : 2016-05-21
p7zip Version 16.02 (locale=C,Utf16=off,HugeFiles=on,32 bits,4 CPUs LE)
LE
CPU Freq: 1789 1781 1797 1797 1794 1796 1796 1793 1796
RAM size: 2000 MB, # CPU hardware threads: 4
RAM usage: 435 MB, # Benchmark threads: 1
Compressing | Decompressing
Dict Speed Usage R/U Rating | Speed Usage R/U Rating
KiB/s % MIPS MIPS | KiB/s % MIPS MIPS
22: 1345 100 1312 1309 | 24612 99 2122 2101
23: 1307 100 1334 1332 | 24331 100 2109 2106
24: 1259 100 1357 1354 | 23677 100 2082 2079
25: 1209 100 1383 1381 | 22971 100 2047 2045
---------------------------------- | ------------------------------
Avr: 100 1346 1344 | 100 2090 2083
Tot: 100 1718 1713
##########################################################################
Executing benchmark 3 times multi-threaded
7-Zip (a) [32] 16.02 : Copyright (c) 1999-2016 Igor Pavlov : 2016-05-21
p7zip Version 16.02 (locale=C,Utf16=off,HugeFiles=on,32 bits,4 CPUs LE)
LE
CPU Freq: 1789 1779 1792 1797 1797 1797 1797 1797 1797
RAM size: 2000 MB, # CPU hardware threads: 4
RAM usage: 882 MB, # Benchmark threads: 4
Compressing | Decompressing
Dict Speed Usage R/U Rating | Speed Usage R/U Rating
KiB/s % MIPS MIPS | KiB/s % MIPS MIPS
22: 3109 297 1019 3025 | 95943 398 2055 8185
23: 3557 359 1011 3624 | 93550 398 2036 8094
24: 3222 335 1033 3464 | 90774 398 2004 7969
25: 3271 364 1027 3735 | 87618 396 1968 7798
---------------------------------- | ------------------------------
Avr: 339 1022 3462 | 397 2016 8012
Tot: 368 1519 5737
7-Zip (a) [32] 16.02 : Copyright (c) 1999-2016 Igor Pavlov : 2016-05-21
p7zip Version 16.02 (locale=C,Utf16=off,HugeFiles=on,32 bits,4 CPUs LE)
LE
CPU Freq: 1796 1797 1797 1798 1797 1796 1796 1797 1797
RAM size: 2000 MB, # CPU hardware threads: 4
RAM usage: 882 MB, # Benchmark threads: 4
Compressing | Decompressing
Dict Speed Usage R/U Rating | Speed Usage R/U Rating
KiB/s % MIPS MIPS | KiB/s % MIPS MIPS
22: 3563 347 999 3466 | 95623 398 2051 8158
23: 3528 356 1009 3595 | 92705 396 2026 8021
24: 3475 365 1024 3736 | 90420 397 2000 7938
25: 3283 366 1023 3749 | 87062 396 1957 7748
---------------------------------- | ------------------------------
Avr: 359 1014 3637 | 397 2008 7966
Tot: 378 1511 5802
7-Zip (a) [32] 16.02 : Copyright (c) 1999-2016 Igor Pavlov : 2016-05-21
p7zip Version 16.02 (locale=C,Utf16=off,HugeFiles=on,32 bits,4 CPUs LE)
LE
CPU Freq: 1796 1797 1797 1794 1797 1797 1797 1797 1797
RAM size: 2000 MB, # CPU hardware threads: 4
RAM usage: 882 MB, # Benchmark threads: 4
Compressing | Decompressing
Dict Speed Usage R/U Rating | Speed Usage R/U Rating
KiB/s % MIPS MIPS | KiB/s % MIPS MIPS
22: 3414 334 994 3321 | 95569 398 2051 8154
23: 3505 356 1004 3571 | 93018 396 2032 8048
24: 3380 358 1015 3635 | 90762 398 2002 7968
25: 3274 365 1025 3739 | 86977 396 1956 7741
---------------------------------- | ------------------------------
Avr: 353 1010 3567 | 397 2010 7978
Tot: 375 1510 5772
Compression: 3462,3637,3567
Decompression: 8012,7966,7978
Total: 5737,5802,5772
##########################################################################
Testing clockspeeds again. System health now:
Time CPU load %cpu %sys %usr %nice %io %irq Temp
00:49:10: 1800MHz 3.48 93% 2% 90% 0% 0% 0% 52.5°C
Checking cpufreq OPP (Cortex-A17):
Cpufreq OPP: 1992 Measured: 1800 (1796.525/1796.305/1776.104)
Cpufreq OPP: 1920 Measured: 1805 (1800.754/1798.327/1796.285)
Cpufreq OPP: 1896 Measured: 1800 (1798.607/1795.226/1792.137)
Cpufreq OPP: 1800 Measured: 1790 (1787.691/1544.983/1004.309)
Cpufreq OPP: 1704 Measured: 1700 (1696.808/1693.870/1693.089)
Cpufreq OPP: 1608 Measured: 860 (858.244/819.795/818.010)
Cpufreq OPP: 1512 Measured: 1510 (1505.750/1503.856/1491.885)
Cpufreq OPP: 1416 Measured: 1415 (1413.157/1010.878/1010.309)
Cpufreq OPP: 1200 Measured: 1180 (1176.974/934.903/718.595)
Cpufreq OPP: 1008 Measured: 1010 (1005.328/998.213/482.956)
Cpufreq OPP: 816 Measured: 815 (813.836/807.478/807.165)
Cpufreq OPP: 696 Measured: 830 (829.369/425.573/382.354)
Cpufreq OPP: 600 Measured: 600 (596.159/592.377/592.377)
Cpufreq OPP: 408 Measured: 410 (406.086/256.714/245.779)
Cpufreq OPP: 312 Measured: 315 (310.111/308.609/271.070)
Cpufreq OPP: 216 Measured: 190 (185.373/183.434/145.624)
Cpufreq OPP: 126 Measured: 65 (64.484/64.323/55.553)
##########################################################################
Thermal source: /sys/class/hwmon/hwmon0/ (cpu_thermal)
System health while running tinymembench:
Time CPU load %cpu %sys %usr %nice %io %irq Temp
00:35:08: 1800MHz 0.48 4% 1% 2% 0% 0% 0% 40.0°C
00:35:48: 1800MHz 0.84 26% 1% 24% 0% 0% 0% 42.7°C
00:36:28: 1800MHz 0.92 25% 0% 25% 0% 0% 0% 45.0°C
00:37:08: 1800MHz 0.96 25% 0% 25% 0% 0% 0% 46.4°C
00:37:48: 1800MHz 1.04 25% 0% 24% 0% 0% 0% 47.7°C
00:38:28: 1800MHz 1.02 25% 0% 25% 0% 0% 0% 48.6°C
00:39:09: 1800MHz 1.01 25% 0% 24% 0% 0% 0% 49.5°C
00:39:49: 1800MHz 1.00 25% 0% 24% 0% 0% 0% 50.4°C
00:40:29: 1800MHz 1.05 25% 0% 24% 0% 0% 0% 50.4°C
00:41:09: 1800MHz 1.02 25% 0% 24% 0% 0% 0% 51.2°C
00:41:49: 1800MHz 1.01 25% 0% 25% 0% 0% 0% 50.4°C
00:42:29: 1800MHz 1.08 25% 0% 24% 0% 0% 0% 50.4°C
00:43:09: 1800MHz 1.04 25% 0% 24% 0% 0% 0% 51.2°C
System health while running OpenSSL benchmark:
Time CPU load %cpu %sys %usr %nice %io %irq Temp
00:43:34: 1800MHz 1.02 14% 1% 13% 0% 0% 0% 51.2°C
00:43:50: 1800MHz 1.02 25% 0% 24% 0% 0% 0% 52.9°C
00:44:06: 1800MHz 1.01 25% 0% 25% 0% 0% 0% 53.3°C
00:44:23: 1800MHz 1.01 25% 0% 25% 0% 0% 0% 54.2°C
00:44:39: 1800MHz 1.01 25% 0% 24% 0% 0% 0% 56.8°C
00:44:55: 1800MHz 1.00 25% 0% 25% 0% 0% 0% 55.9°C
00:45:11: 1800MHz 1.00 25% 0% 25% 0% 0% 0% 55.5°C
System health while running 7-zip single core benchmark:
Time CPU load %cpu %sys %usr %nice %io %irq Temp
00:45:23: 1800MHz 1.00 15% 1% 14% 0% 0% 0% 56.4°C
00:45:31: 1800MHz 1.00 25% 0% 24% 0% 0% 0% 54.6°C
00:45:39: 1800MHz 1.00 25% 0% 24% 0% 0% 0% 54.6°C
00:45:47: 1800MHz 1.00 25% 0% 24% 0% 0% 0% 55.0°C
00:45:55: 1800MHz 1.00 25% 0% 24% 0% 0% 0% 54.6°C
00:46:03: 1800MHz 1.00 25% 0% 24% 0% 0% 0% 55.0°C
00:46:11: 1800MHz 1.00 25% 0% 24% 0% 0% 0% 55.0°C
00:46:19: 1800MHz 1.00 25% 0% 24% 0% 0% 0% 55.5°C
00:46:27: 1800MHz 1.00 25% 0% 24% 0% 0% 0% 55.9°C
System health while running 7-zip multi core benchmark:
Time CPU load %cpu %sys %usr %nice %io %irq Temp
00:46:28: 1800MHz 1.00 15% 1% 14% 0% 0% 0% 56.4°C
00:46:45: 1800MHz 1.75 81% 1% 79% 0% 0% 0% 60.4°C
00:47:02: 1800MHz 2.25 82% 2% 79% 0% 0% 0% 62.1°C
00:47:19: 1800MHz 2.87 92% 2% 90% 0% 0% 0% 62.9°C
00:47:39: 1800MHz 2.89 83% 1% 81% 0% 0% 0% 62.1°C
00:47:56: 1800MHz 2.96 87% 2% 85% 0% 0% 0% 55.9°C
00:48:16: 1800MHz 3.34 93% 2% 90% 0% 0% 0% 54.2°C
00:48:33: 1800MHz 3.41 83% 1% 81% 0% 0% 0% 50.0°C
00:48:50: 1800MHz 3.31 85% 2% 83% 0% 0% 0% 49.1°C
00:49:10: 1800MHz 3.48 93% 2% 90% 0% 0% 0% 52.5°C
##########################################################################
Linux 5.10.60-rockchip (tinkerboard) 05/07/22 _armv7l_ (4 CPU)
avg-cpu: %user %nice %system %iowait %steal %idle
23.38 0.01 1.26 0.11 0.00 75.24
Device tps kB_read/s kB_wrtn/s kB_read kB_wrtn
mmcblk0 8.55 657.29 49.13 935285 69908
zram0 0.39 1.56 0.00 2216 4
zram1 0.19 0.33 2.09 468 2980
total used free shared buff/cache available
Mem: 2.0Gi 119Mi 1.7Gi 3.0Mi 89Mi 1.8Gi
Swap: 1.0Gi 0B 1.0Gi
Filename Type Size Used Priority
/dev/zram0 partition 1024252 0 5
CPU sysfs topology (clusters, cpufreq members, clockspeeds)
cpufreq min max
CPU cluster policy speed speed core type
0 5 0 126 1704 Cortex-A17 / r0p1
1 5 0 126 1704 Cortex-A17 / r0p1
2 5 0 126 1704 Cortex-A17 / r0p1
3 5 0 126 1704 Cortex-A17 / r0p1
Architecture: armv7l
Byte Order: Little Endian
CPU(s): 4
On-line CPU(s) list: 0-3
Thread(s) per core: 1
Core(s) per socket: 4
Socket(s): 1
Vendor ID: ARM
Model: 1
Model name: Cortex-A17
Stepping: r0p1
CPU max MHz: 1800.0000
CPU min MHz: 126.0000
BogoMIPS: 172.80
Flags: half thumb fastmult vfp edsp thumbee neon vfpv3 tls vfpv4 idiva idivt vfpd32 lpae evtstrm
SoC guess: Rockchip RK3288
Compiler: /usr/bin/gcc (Debian 8.3.0-6/arm-linux-gnueabihf)
Userland: armhf
Kernel: 5.10.60-rockchip/armv7l
CONFIG_HZ=250
CONFIG_HZ_250=y
CONFIG_HZ_FIXED=0
CONFIG_PREEMPTION=y
CONFIG_PREEMPT=y
CONFIG_PREEMPT_COUNT=y
CONFIG_PREEMPT_RCU=y
raid6: neonx8 gen() 981 MB/s
raid6: neonx8 xor() 612 MB/s
raid6: neonx4 gen() 1105 MB/s
raid6: neonx4 xor() 748 MB/s
raid6: neonx2 gen() 1075 MB/s
raid6: neonx2 xor() 832 MB/s
raid6: neonx1 gen() 769 MB/s
raid6: neonx1 xor() 710 MB/s
raid6: int32x8 gen() 236 MB/s
raid6: int32x8 xor() 133 MB/s
raid6: int32x4 gen() 247 MB/s
raid6: int32x4 xor() 150 MB/s
raid6: int32x2 gen() 250 MB/s
raid6: int32x2 xor() 119 MB/s
raid6: int32x1 gen() 240 MB/s
raid6: int32x1 xor() 92 MB/s
raid6: using algorithm neonx4 gen() 1105 MB/s
raid6: .... xor() 748 MB/s, rmw enabled
raid6: using neon recovery algorithm
xor: measuring software checksum speed
xor: using function: neon (1480 MB/sec)
| Rockchip RK3288 Asus Tinker Board S | 1800 MHz | 5.10 | Buster armhf | 5770 | 64100 | 67060 | 1540 | 4110 | - |