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sbc-bench v0.9.71 phytium D3000 unattended (Mon, 05 May 2025 00:04:40 +1000)
Distributor ID: Deepin
Description: Deepin 23.1
Release: 23.1
Codename: beige
Device Info:
Manufacturer: phytium
Product Name: D3000
Family: Phytium
BIOS/UEFI:
Vendor: Peach Platform
Version: v1.4.1-1-gb1dab957-dirty
Release Date: 09/05/2024
BIOS Revision: 0.0
Firmware Revision: 0.0
/usr/bin/gcc (Deepin 12.3.0-17deepin12) 12.3.0
Uptime: 00:04:40 up 7:01, 2 users, load average: 0.24, 0.14, 0.04, 29.0°C, 53319710
Linux 6.6.84-arm64-desktop-hwe (d3k) 05/05/25 _aarch64_ (8 CPU)
avg-cpu: %user %nice %system %iowait %steal %idle
1.68 0.01 0.04 0.00 0.00 98.27
Device tps kB_read/s kB_wrtn/s kB_dscd/s kB_read kB_wrtn kB_dscd
nvme0n1 3.70 61.78 34.26 0.00 1561219 865629 0
total used free shared buff/cache available
Mem: 31Gi 906Mi 30Gi 7.7Mi 247Mi 30Gi
Swap: 15Gi 0B 15Gi
Filename Type Size Used Priority
/dev/nvme0n1p3 partition 16469992 0 -2
##########################################################################
Checking cpufreq OPP (Phytium FTC862):
Cpufreq OPP: 2500 Measured: 2498 (2499.161/2499.067/2498.630)
Cpufreq OPP: 625 Measured: 624 (624.181/624.079/623.970)
##########################################################################
Hardware sensors:
nvme-pci-0200
Composite: +39.9 C (low = -40.1 C, high = +83.8 C)
(crit = +87.8 C)
Sensor 1: +60.9 C (low = -273.1 C, high = +65261.8 C)
Sensor 2: +32.9 C (low = -273.1 C, high = +65261.8 C)
acpitz-acpi-0
temp1: +29.0 C
amdgpu-pci-0900
vddgfx: 6.00 mV
fan1: 0 RPM (min = 0 RPM, max = 3000 RPM)
edge: +30.0 C (crit = +100.0 C, hyst = -273.1 C)
(emerg = +105.0 C)
junction: +31.0 C (crit = +110.0 C, hyst = -273.1 C)
(emerg = +115.0 C)
mem: +30.0 C (crit = +100.0 C, hyst = -273.1 C)
(emerg = +105.0 C)
PPT: 8.00 W (cap = 272.00 W)
/dev/nvme0: 40°C
##########################################################################
Executing benchmark on cpu0 (Phytium FTC862):
tinymembench v0.4.9-nuumio (simple benchmark for memory throughput and latency)
CFLAGS:
bandwidth test min repeats (-b): 2
bandwidth test max repeats (-B): 3
bandwidth test mem realloc (-M): no (-m for realloc)
latency test repeats (-l): 3
latency test count (-c): 1000000
==========================================================================
== Memory bandwidth tests ==
== ==
== Note 1: 1MB = 1000000 bytes ==
== Note 2: Test result is the best of repeated runs. Number of repeats ==
== is shown in brackets ==
== Note 3: 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 4: 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 5: If sample standard deviation exceeds 0.1%, it is shown in ==
== brackets ==
==========================================================================
C copy backwards : 13459.0 MB/s (3, 1.5%)
C copy backwards (32 byte blocks) : 13363.8 MB/s (2)
C copy backwards (64 byte blocks) : 13380.9 MB/s (2)
C copy : 13650.3 MB/s (3, 0.1%)
C copy prefetched (32 bytes step) : 14538.9 MB/s (3, 0.2%)
C copy prefetched (64 bytes step) : 14585.2 MB/s (2)
C 2-pass copy : 4366.1 MB/s (2)
C 2-pass copy prefetched (32 bytes step) : 6916.1 MB/s (3, 0.6%)
C 2-pass copy prefetched (64 bytes step) : 7824.6 MB/s (3, 0.7%)
C scan 8 : 1244.2 MB/s (2)
C scan 16 : 2488.8 MB/s (2)
C scan 32 : 4977.4 MB/s (2)
C scan 64 : 9674.2 MB/s (2)
C fill : 39089.9 MB/s (2)
C fill (shuffle within 16 byte blocks) : 39086.5 MB/s (2)
C fill (shuffle within 32 byte blocks) : 39079.8 MB/s (2)
C fill (shuffle within 64 byte blocks) : 37896.2 MB/s (2)
---
libc memcpy copy : 15094.1 MB/s (2)
libc memchr scan : 19059.1 MB/s (3)
libc memset fill : 39814.3 MB/s (2)
---
NEON LDP/STP copy : 15135.7 MB/s (2)
NEON LDP/STP copy pldl2strm (32 bytes step) : 14833.5 MB/s (3, 0.3%)
NEON LDP/STP copy pldl2strm (64 bytes step) : 14932.2 MB/s (2)
NEON LDP/STP copy pldl1keep (32 bytes step) : 15133.6 MB/s (2)
NEON LDP/STP copy pldl1keep (64 bytes step) : 15122.2 MB/s (3, 0.1%)
NEON LD1/ST1 copy : 15078.6 MB/s (2)
NEON LDP load : 22725.0 MB/s (3, 0.1%)
NEON LDNP load : 21989.4 MB/s (3)
NEON STP fill : 39762.1 MB/s (2)
NEON STNP fill : 39865.7 MB/s (2)
ARM LDP/STP copy : 14833.4 MB/s (3, 0.1%)
ARM LDP load : 21834.6 MB/s (3)
ARM LDNP load : 20909.1 MB/s (2)
ARM STP fill : 39866.3 MB/s (2)
ARM STNP fill : 39864.0 MB/s (2)
==========================================================================
== Framebuffer read tests. ==
== ==
== Many ARM devices use a part of the system memory as the framebuffer, ==
== typically mapped as uncached but with write-combining enabled. ==
== Writes to such framebuffers are quite fast, but reads are much ==
== slower and very sensitive to the alignment and the selection of ==
== CPU instructions which are used for accessing memory. ==
== ==
== Many x86 systems allocate the framebuffer in the GPU memory, ==
== accessible for the CPU via a relatively slow PCI-E bus. Moreover, ==
== PCI-E is asymmetric and handles reads a lot worse than writes. ==
== ==
== If uncached framebuffer reads are reasonably fast (at least 100 MB/s ==
== or preferably >300 MB/s), then using the shadow framebuffer layer ==
== is not necessary in Xorg DDX drivers, resulting in a nice overall ==
== performance improvement. For example, the xf86-video-fbturbo DDX ==
== uses this trick. ==
==========================================================================
NEON LDP/STP copy (from framebuffer) : 16879.5 MB/s (3, 0.3%)
NEON LDP/STP 2-pass copy (from framebuffer) : 10264.2 MB/s (2)
NEON LD1/ST1 copy (from framebuffer) : 17266.2 MB/s (3, 1.0%)
NEON LD1/ST1 2-pass copy (from framebuffer) : 9166.8 MB/s (2)
ARM LDP/STP copy (from framebuffer) : 17015.1 MB/s (3, 0.6%)
ARM LDP/STP 2-pass copy (from framebuffer) : 9456.7 MB/s (3)
==========================================================================
== 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, [MADV_NOHUGEPAGE]
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 : 0.1 ns / 0.0 ns
131072 : 1.2 ns / 1.4 ns
262144 : 2.4 ns / 2.6 ns
524288 : 4.1 ns / 4.8 ns
1048576 : 8.7 ns / 9.8 ns
2097152 : 13.4 ns / 11.6 ns
4194304 : 14.8 ns / 13.9 ns
8388608 : 36.3 ns / 28.4 ns
16777216 : 67.6 ns / 75.8 ns
33554432 : 95.2 ns / 117.2 ns
67108864 : 107.7 ns / 132.3 ns
block size : single random read / dual random read, [MADV_HUGEPAGE]
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 : 0.1 ns / 0.0 ns
131072 : 1.2 ns / 1.4 ns
262144 : 1.9 ns / 1.9 ns
524288 : 2.3 ns / 2.1 ns
1048576 : 7.5 ns / 8.0 ns
2097152 : 11.7 ns / 9.7 ns
4194304 : 14.5 ns / 10.2 ns
8388608 : 32.0 ns / 22.5 ns
16777216 : 49.9 ns / 67.3 ns
33554432 : 82.8 ns / 109.2 ns
67108864 : 100.0 ns / 122.6 ns
##########################################################################
Executing ramlat on cpu0 (Phytium FTC862), results in ns:
size: 1x32 2x32 1x64 2x64 1xPTR 2xPTR 4xPTR 8xPTR
4k: 1.616 1.609 1.609 1.608 1.609 1.609 1.608 3.062
8k: 1.609 1.609 1.609 1.609 1.609 1.609 1.609 3.138
16k: 1.610 1.609 1.609 1.609 1.609 1.609 1.609 3.139
32k: 1.609 1.609 1.609 1.609 1.609 1.610 1.610 3.141
64k: 1.610 1.610 1.610 1.610 1.610 1.610 1.611 3.142
128k: 4.829 4.830 4.830 4.832 4.838 5.532 6.779 12.18
256k: 5.649 5.677 5.647 5.681 5.632 5.654 7.061 12.15
512k: 7.909 7.703 7.863 7.701 7.902 8.042 9.490 15.57
1024k: 14.97 14.76 14.97 14.76 14.97 15.58 17.23 26.89
2048k: 15.26 15.54 15.08 15.59 15.11 17.16 18.91 27.59
4096k: 17.44 16.52 17.04 16.52 17.04 17.88 20.16 27.60
8192k: 28.59 24.57 27.77 24.13 27.38 25.65 26.55 30.92
16384k: 83.53 62.56 83.15 63.14 82.37 65.65 67.93 76.58
32768k: 125.5 120.3 131.7 121.2 131.7 122.6 119.9 123.7
65536k: 133.8 132.8 134.2 132.5 134.2 132.0 130.1 131.4
131072k: 135.9 135.3 135.9 135.2 135.9 134.8 135.4 139.9
##########################################################################
Executing benchmark twice on cluster 0 (Phytium FTC862)
OpenSSL 3.2.4, built on 11 Feb 2025 (Library: OpenSSL 3.2.4 11 Feb 2025)
type 16 bytes 64 bytes 256 bytes 1024 bytes 8192 bytes 16384 bytes
aes-256-cbc 587227.48k 1174792.36k 1353980.67k 1406049.28k 1423706.79k 1425118.55k
aes-256-cbc 587950.56k 1175944.49k 1355359.32k 1407310.17k 1425055.74k 1426522.11k
##########################################################################
Executing benchmark single-threaded on cpu0 (Phytium FTC862)
7-Zip (a) [64] 16.02 : Copyright (c) 1999-2016 Igor Pavlov : 2016-05-21
p7zip Version 16.02 (locale=C,Utf16=off,HugeFiles=on,64 bits,8 CPUs LE)
LE
CPU Freq: - - - - - - - - -
RAM size: 31954 MB, # CPU hardware threads: 8
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: 4011 100 3918 3903 | 41692 100 3573 3560
23: 3562 100 3648 3629 | 41350 100 3595 3579
24: 3305 100 3572 3554 | 40722 99 3595 3575
25: 3121 99 3584 3563 | 40111 100 3585 3570
---------------------------------- | ------------------------------
Avr: 100 3680 3662 | 100 3587 3571
Tot: 100 3634 3617
##########################################################################
Executing benchmark 3 times multi-threaded on CPUs 0-7
7-Zip (a) [64] 16.02 : Copyright (c) 1999-2016 Igor Pavlov : 2016-05-21
p7zip Version 16.02 (locale=C,Utf16=off,HugeFiles=on,64 bits,8 CPUs LE)
LE
CPU Freq: - - - - - - - - -
RAM size: 31954 MB, # CPU hardware threads: 8
RAM usage: 1765 MB, # Benchmark threads: 8
Compressing | Decompressing
Dict Speed Usage R/U Rating | Speed Usage R/U Rating
KiB/s % MIPS MIPS | KiB/s % MIPS MIPS
22: 27631 690 3895 26880 | 330147 796 3537 28160
23: 27110 712 3878 27622 | 323946 795 3527 28033
24: 26730 732 3926 28740 | 317654 795 3506 27880
25: 25885 743 3979 29555 | 309773 794 3471 27569
---------------------------------- | ------------------------------
Avr: 719 3919 28199 | 795 3510 27911
Tot: 757 3715 28055
7-Zip (a) [64] 16.02 : Copyright (c) 1999-2016 Igor Pavlov : 2016-05-21
p7zip Version 16.02 (locale=C,Utf16=off,HugeFiles=on,64 bits,8 CPUs LE)
LE
CPU Freq: - - - - - - - - -
RAM size: 31954 MB, # CPU hardware threads: 8
RAM usage: 1765 MB, # Benchmark threads: 8
Compressing | Decompressing
Dict Speed Usage R/U Rating | Speed Usage R/U Rating
KiB/s % MIPS MIPS | KiB/s % MIPS MIPS
22: 27805 690 3919 27049 | 329599 795 3538 28113
23: 27023 711 3874 27534 | 322876 792 3527 27941
24: 26810 734 3930 28826 | 318019 797 3504 27912
25: 25905 744 3974 29578 | 310128 795 3472 27600
---------------------------------- | ------------------------------
Avr: 720 3924 28247 | 795 3510 27892
Tot: 757 3717 28069
7-Zip (a) [64] 16.02 : Copyright (c) 1999-2016 Igor Pavlov : 2016-05-21
p7zip Version 16.02 (locale=C,Utf16=off,HugeFiles=on,64 bits,8 CPUs LE)
LE
CPU Freq: - - - - - - - - 2048000000
RAM size: 31954 MB, # CPU hardware threads: 8
RAM usage: 1765 MB, # Benchmark threads: 8
Compressing | Decompressing
Dict Speed Usage R/U Rating | Speed Usage R/U Rating
KiB/s % MIPS MIPS | KiB/s % MIPS MIPS
22: 28116 695 3936 27352 | 328820 793 3537 28047
23: 27086 712 3878 27598 | 322947 793 3526 27947
24: 26654 731 3923 28659 | 318000 796 3507 27910
25: 25897 744 3973 29568 | 310227 795 3471 27609
---------------------------------- | ------------------------------
Avr: 720 3928 28294 | 794 3510 27878
Tot: 757 3719 28086
Compression: 28199,28247,28294
Decompression: 27911,27892,27878
Total: 28055,28069,28086
##########################################################################
** cpuminer-multi 1.3.7 by tpruvot@github **
BTC donation address: 1FhDPLPpw18X4srecguG3MxJYe4a1JsZnd (tpruvot)
[2025-05-05 00:09:24] 8 miner threads started, using 'scrypt' algorithm.
[2025-05-05 00:09:24] CPU #3: 4.09 kH/s
[2025-05-05 00:09:24] CPU #0: 4.02 kH/s
[2025-05-05 00:09:24] CPU #2: 4.01 kH/s
[2025-05-05 00:09:24] CPU #6: 4.07 kH/s
[2025-05-05 00:09:24] CPU #5: 4.03 kH/s
[2025-05-05 00:09:24] CPU #7: 4.06 kH/s
[2025-05-05 00:09:24] CPU #1: 3.67 kH/s
[2025-05-05 00:09:24] CPU #4: 3.60 kH/s
[2025-05-05 00:09:29] Total: 32.72 kH/s
[2025-05-05 00:09:34] CPU #4: 4.13 kH/s
[2025-05-05 00:09:34] CPU #1: 4.13 kH/s
[2025-05-05 00:09:34] CPU #2: 4.13 kH/s
[2025-05-05 00:09:34] CPU #5: 4.13 kH/s
[2025-05-05 00:09:34] CPU #0: 4.11 kH/s
[2025-05-05 00:09:34] CPU #7: 4.13 kH/s
[2025-05-05 00:09:34] Total: 32.97 kH/s
[2025-05-05 00:09:34] CPU #6: 4.13 kH/s
[2025-05-05 00:09:34] CPU #3: 4.13 kH/s
[2025-05-05 00:09:39] Total: 33.02 kH/s
[2025-05-05 00:09:44] CPU #4: 4.13 kH/s
[2025-05-05 00:09:44] CPU #1: 4.13 kH/s
[2025-05-05 00:09:44] CPU #2: 4.13 kH/s
[2025-05-05 00:09:44] CPU #5: 4.13 kH/s
[2025-05-05 00:09:44] CPU #0: 4.11 kH/s
[2025-05-05 00:09:44] CPU #7: 4.13 kH/s
[2025-05-05 00:09:44] Total: 33.03 kH/s
[2025-05-05 00:09:44] CPU #6: 4.13 kH/s
[2025-05-05 00:09:44] CPU #3: 4.13 kH/s
[2025-05-05 00:09:49] Total: 33.04 kH/s
[2025-05-05 00:09:54] CPU #4: 4.13 kH/s
[2025-05-05 00:09:54] CPU #1: 4.13 kH/s
[2025-05-05 00:09:54] CPU #2: 4.13 kH/s
[2025-05-05 00:09:54] CPU #0: 4.12 kH/s
[2025-05-05 00:09:54] CPU #5: 4.13 kH/s
[2025-05-05 00:09:54] CPU #7: 4.13 kH/s
[2025-05-05 00:09:54] Total: 33.04 kH/s
[2025-05-05 00:09:54] CPU #6: 4.13 kH/s
[2025-05-05 00:09:54] CPU #3: 4.13 kH/s
[2025-05-05 00:09:59] Total: 33.04 kH/s
[2025-05-05 00:10:04] CPU #4: 4.13 kH/s
[2025-05-05 00:10:04] CPU #1: 4.13 kH/s
[2025-05-05 00:10:04] CPU #2: 4.13 kH/s
[2025-05-05 00:10:04] CPU #5: 4.13 kH/s
[2025-05-05 00:10:04] CPU #0: 4.12 kH/s
[2025-05-05 00:10:04] CPU #7: 4.13 kH/s
[2025-05-05 00:10:04] Total: 33.03 kH/s
[2025-05-05 00:10:04] CPU #6: 4.13 kH/s
[2025-05-05 00:10:04] CPU #3: 4.13 kH/s
[2025-05-05 00:10:09] Total: 33.02 kH/s
[2025-05-05 00:10:14] CPU #4: 4.13 kH/s
[2025-05-05 00:10:14] CPU #1: 4.13 kH/s
[2025-05-05 00:10:14] CPU #2: 4.13 kH/s
[2025-05-05 00:10:14] CPU #5: 4.13 kH/s
[2025-05-05 00:10:14] CPU #0: 4.11 kH/s
[2025-05-05 00:10:14] CPU #7: 4.13 kH/s
[2025-05-05 00:10:14] Total: 33.03 kH/s
[2025-05-05 00:10:14] CPU #6: 4.13 kH/s
[2025-05-05 00:10:14] CPU #3: 4.13 kH/s
[2025-05-05 00:10:19] Total: 33.03 kH/s
[2025-05-05 00:10:24] CPU #4: 4.13 kH/s
[2025-05-05 00:10:24] CPU #1: 4.13 kH/s
[2025-05-05 00:10:24] CPU #2: 4.13 kH/s
[2025-05-05 00:10:24] CPU #5: 4.13 kH/s
[2025-05-05 00:10:24] CPU #0: 4.11 kH/s
[2025-05-05 00:10:24] CPU #7: 4.13 kH/s
[2025-05-05 00:10:24] Total: 33.03 kH/s
[2025-05-05 00:10:24] CPU #6: 4.13 kH/s
[2025-05-05 00:10:24] CPU #3: 4.13 kH/s
[2025-05-05 00:10:29] Total: 33.03 kH/s
[2025-05-05 00:10:34] CPU #4: 4.13 kH/s
[2025-05-05 00:10:34] CPU #1: 4.13 kH/s
[2025-05-05 00:10:34] CPU #2: 4.13 kH/s
[2025-05-05 00:10:34] CPU #5: 4.13 kH/s
[2025-05-05 00:10:34] CPU #0: 4.12 kH/s
[2025-05-05 00:10:34] CPU #7: 4.13 kH/s
[2025-05-05 00:10:34] Total: 33.04 kH/s
[2025-05-05 00:10:34] CPU #6: 4.13 kH/s
[2025-05-05 00:10:34] CPU #3: 4.13 kH/s
[2025-05-05 00:10:39] Total: 33.04 kH/s
[2025-05-05 00:10:44] CPU #4: 4.13 kH/s
[2025-05-05 00:10:44] CPU #1: 4.13 kH/s
[2025-05-05 00:10:44] CPU #2: 4.13 kH/s
[2025-05-05 00:10:44] CPU #5: 4.13 kH/s
[2025-05-05 00:10:44] CPU #0: 4.12 kH/s
[2025-05-05 00:10:44] CPU #7: 4.13 kH/s
[2025-05-05 00:10:44] Total: 33.04 kH/s
[2025-05-05 00:10:44] CPU #6: 4.13 kH/s
[2025-05-05 00:10:44] CPU #3: 4.12 kH/s
[2025-05-05 00:10:49] Total: 33.01 kH/s
[2025-05-05 00:10:54] CPU #4: 4.13 kH/s
[2025-05-05 00:10:54] CPU #1: 4.13 kH/s
[2025-05-05 00:10:54] CPU #2: 4.13 kH/s
[2025-05-05 00:10:54] CPU #5: 4.13 kH/s
[2025-05-05 00:10:54] CPU #0: 4.11 kH/s
[2025-05-05 00:10:54] CPU #7: 4.13 kH/s
[2025-05-05 00:10:54] Total: 33.03 kH/s
[2025-05-05 00:10:54] CPU #6: 4.13 kH/s
[2025-05-05 00:10:54] CPU #3: 4.13 kH/s
[2025-05-05 00:10:59] Total: 33.03 kH/s
[2025-05-05 00:11:04] CPU #4: 4.13 kH/s
[2025-05-05 00:11:04] CPU #1: 4.13 kH/s
[2025-05-05 00:11:04] CPU #2: 4.12 kH/s
[2025-05-05 00:11:04] CPU #5: 4.13 kH/s
[2025-05-05 00:11:04] CPU #0: 4.11 kH/s
[2025-05-05 00:11:04] CPU #7: 4.13 kH/s
[2025-05-05 00:11:04] Total: 33.01 kH/s
[2025-05-05 00:11:04] CPU #6: 4.13 kH/s
[2025-05-05 00:11:04] CPU #3: 4.13 kH/s
[2025-05-05 00:11:09] Total: 33.02 kH/s
[2025-05-05 00:11:14] CPU #4: 4.13 kH/s
[2025-05-05 00:11:14] CPU #1: 4.13 kH/s
[2025-05-05 00:11:14] CPU #2: 4.13 kH/s
[2025-05-05 00:11:14] CPU #0: 4.12 kH/s
[2025-05-05 00:11:14] CPU #5: 4.13 kH/s
[2025-05-05 00:11:14] CPU #7: 4.13 kH/s
[2025-05-05 00:11:14] Total: 33.04 kH/s
[2025-05-05 00:11:14] CPU #6: 4.13 kH/s
[2025-05-05 00:11:14] CPU #3: 4.13 kH/s
[2025-05-05 00:11:19] Total: 33.04 kH/s
[2025-05-05 00:11:24] CPU #4: 4.13 kH/s
[2025-05-05 00:11:24] CPU #1: 4.13 kH/s
[2025-05-05 00:11:24] CPU #2: 4.13 kH/s
[2025-05-05 00:11:24] CPU #0: 4.12 kH/s
[2025-05-05 00:11:24] CPU #5: 4.13 kH/s
[2025-05-05 00:11:24] CPU #7: 4.13 kH/s
[2025-05-05 00:11:24] Total: 33.03 kH/s
[2025-05-05 00:11:24] CPU #6: 4.13 kH/s
[2025-05-05 00:11:24] CPU #3: 4.13 kH/s
[2025-05-05 00:11:29] Total: 33.02 kH/s
[2025-05-05 00:11:34] CPU #4: 4.13 kH/s
[2025-05-05 00:11:34] CPU #1: 4.13 kH/s
[2025-05-05 00:11:34] CPU #2: 4.13 kH/s
[2025-05-05 00:11:34] CPU #5: 4.13 kH/s
[2025-05-05 00:11:34] CPU #0: 4.11 kH/s
[2025-05-05 00:11:34] CPU #7: 4.13 kH/s
[2025-05-05 00:11:34] Total: 33.03 kH/s
[2025-05-05 00:11:34] CPU #6: 4.13 kH/s
[2025-05-05 00:11:34] CPU #3: 4.13 kH/s
[2025-05-05 00:11:39] Total: 33.03 kH/s
[2025-05-05 00:11:44] CPU #4: 4.13 kH/s
[2025-05-05 00:11:44] CPU #1: 4.13 kH/s
[2025-05-05 00:11:44] CPU #2: 4.13 kH/s
[2025-05-05 00:11:44] CPU #5: 4.13 kH/s
[2025-05-05 00:11:44] CPU #0: 4.11 kH/s
[2025-05-05 00:11:44] CPU #7: 4.13 kH/s
[2025-05-05 00:11:44] Total: 33.03 kH/s
[2025-05-05 00:11:44] CPU #6: 4.13 kH/s
[2025-05-05 00:11:44] CPU #3: 4.13 kH/s
[2025-05-05 00:11:49] Total: 33.02 kH/s
[2025-05-05 00:11:54] CPU #4: 4.13 kH/s
[2025-05-05 00:11:54] CPU #1: 4.13 kH/s
[2025-05-05 00:11:54] CPU #2: 4.13 kH/s
[2025-05-05 00:11:54] CPU #0: 4.12 kH/s
[2025-05-05 00:11:54] CPU #5: 4.13 kH/s
[2025-05-05 00:11:54] CPU #7: 4.13 kH/s
[2025-05-05 00:11:54] Total: 33.04 kH/s
[2025-05-05 00:11:54] CPU #6: 4.13 kH/s
[2025-05-05 00:11:54] CPU #3: 4.13 kH/s
[2025-05-05 00:11:59] Total: 33.04 kH/s
[2025-05-05 00:12:04] CPU #4: 4.13 kH/s
[2025-05-05 00:12:04] CPU #1: 4.13 kH/s
[2025-05-05 00:12:04] CPU #2: 4.13 kH/s
[2025-05-05 00:12:04] CPU #5: 4.13 kH/s
[2025-05-05 00:12:04] CPU #0: 4.12 kH/s
[2025-05-05 00:12:04] CPU #7: 4.13 kH/s
[2025-05-05 00:12:04] Total: 33.04 kH/s
[2025-05-05 00:12:04] CPU #6: 4.13 kH/s
[2025-05-05 00:12:04] CPU #3: 4.13 kH/s
[2025-05-05 00:12:09] Total: 33.03 kH/s
[2025-05-05 00:12:14] CPU #4: 4.13 kH/s
[2025-05-05 00:12:14] CPU #1: 4.13 kH/s
[2025-05-05 00:12:14] CPU #2: 4.13 kH/s
[2025-05-05 00:12:14] CPU #5: 4.13 kH/s
[2025-05-05 00:12:14] CPU #0: 4.11 kH/s
[2025-05-05 00:12:14] CPU #7: 4.13 kH/s
[2025-05-05 00:12:14] Total: 33.02 kH/s
[2025-05-05 00:12:14] CPU #6: 4.13 kH/s
[2025-05-05 00:12:14] CPU #3: 4.13 kH/s
[2025-05-05 00:12:19] Total: 33.03 kH/s
[2025-05-05 00:12:24] CPU #4: 4.13 kH/s
[2025-05-05 00:12:24] CPU #1: 4.13 kH/s
[2025-05-05 00:12:24] CPU #2: 4.13 kH/s
[2025-05-05 00:12:24] CPU #5: 4.13 kH/s
[2025-05-05 00:12:24] CPU #0: 4.11 kH/s
[2025-05-05 00:12:24] CPU #7: 4.13 kH/s
[2025-05-05 00:12:24] Total: 33.03 kH/s
[2025-05-05 00:12:24] CPU #6: 4.13 kH/s
[2025-05-05 00:12:24] CPU #3: 4.13 kH/s
[2025-05-05 00:12:29] Total: 33.02 kH/s
[2025-05-05 00:12:34] CPU #4: 4.13 kH/s
[2025-05-05 00:12:34] CPU #1: 4.13 kH/s
[2025-05-05 00:12:34] CPU #2: 4.13 kH/s
[2025-05-05 00:12:34] CPU #5: 4.13 kH/s
[2025-05-05 00:12:34] CPU #0: 4.11 kH/s
[2025-05-05 00:12:34] CPU #7: 4.13 kH/s
[2025-05-05 00:12:34] Total: 33.03 kH/s
[2025-05-05 00:12:34] CPU #6: 4.13 kH/s
[2025-05-05 00:12:34] CPU #3: 4.13 kH/s
[2025-05-05 00:12:39] Total: 33.03 kH/s
[2025-05-05 00:12:44] CPU #4: 4.12 kH/s
[2025-05-05 00:12:44] CPU #1: 4.01 kH/s
[2025-05-05 00:12:44] CPU #2: 4.06 kH/s
[2025-05-05 00:12:44] CPU #0: 4.04 kH/s
[2025-05-05 00:12:44] CPU #5: 4.05 kH/s
[2025-05-05 00:12:44] CPU #7: 4.08 kH/s
[2025-05-05 00:12:44] Total: 32.56 kH/s
[2025-05-05 00:12:44] CPU #6: 4.08 kH/s
[2025-05-05 00:12:44] CPU #3: 4.06 kH/s
[2025-05-05 00:12:49] Total: 32.90 kH/s
[2025-05-05 00:12:54] CPU #4: 4.13 kH/s
[2025-05-05 00:12:54] CPU #1: 4.13 kH/s
[2025-05-05 00:12:54] CPU #2: 4.13 kH/s
[2025-05-05 00:12:54] CPU #0: 4.11 kH/s
[2025-05-05 00:12:54] CPU #5: 4.13 kH/s
[2025-05-05 00:12:54] CPU #6: 4.13 kH/s
[2025-05-05 00:12:54] CPU #7: 4.13 kH/s
[2025-05-05 00:12:54] Total: 33.02 kH/s
[2025-05-05 00:12:54] CPU #3: 4.13 kH/s
[2025-05-05 00:12:59] Total: 33.03 kH/s
[2025-05-05 00:13:04] CPU #4: 4.13 kH/s
[2025-05-05 00:13:04] CPU #1: 4.13 kH/s
[2025-05-05 00:13:04] CPU #2: 4.12 kH/s
[2025-05-05 00:13:04] CPU #5: 4.13 kH/s
[2025-05-05 00:13:04] CPU #0: 4.11 kH/s
[2025-05-05 00:13:04] CPU #7: 4.13 kH/s
[2025-05-05 00:13:04] Total: 33.01 kH/s
[2025-05-05 00:13:04] CPU #3: 4.13 kH/s
[2025-05-05 00:13:04] CPU #6: 4.11 kH/s
[2025-05-05 00:13:09] Total: 33.00 kH/s
[2025-05-05 00:13:14] CPU #4: 4.13 kH/s
[2025-05-05 00:13:14] CPU #1: 4.13 kH/s
[2025-05-05 00:13:14] CPU #2: 4.13 kH/s
[2025-05-05 00:13:14] CPU #5: 4.13 kH/s
[2025-05-05 00:13:14] CPU #0: 4.11 kH/s
[2025-05-05 00:13:14] CPU #7: 4.13 kH/s
[2025-05-05 00:13:14] Total: 33.01 kH/s
[2025-05-05 00:13:14] CPU #6: 4.13 kH/s
[2025-05-05 00:13:14] CPU #3: 4.12 kH/s
[2025-05-05 00:13:19] Total: 33.02 kH/s
[2025-05-05 00:13:24] CPU #4: 4.13 kH/s
[2025-05-05 00:13:24] CPU #1: 4.13 kH/s
[2025-05-05 00:13:24] CPU #2: 4.13 kH/s
[2025-05-05 00:13:24] CPU #0: 4.12 kH/s
[2025-05-05 00:13:24] CPU #5: 4.13 kH/s
[2025-05-05 00:13:24] CPU #7: 4.13 kH/s
[2025-05-05 00:13:24] Total: 33.04 kH/s
[2025-05-05 00:13:24] CPU #6: 4.13 kH/s
[2025-05-05 00:13:24] CPU #3: 4.13 kH/s
[2025-05-05 00:13:29] Total: 33.04 kH/s
[2025-05-05 00:13:34] CPU #4: 4.13 kH/s
[2025-05-05 00:13:34] CPU #1: 4.13 kH/s
[2025-05-05 00:13:34] CPU #2: 4.13 kH/s
[2025-05-05 00:13:34] CPU #0: 4.12 kH/s
[2025-05-05 00:13:34] CPU #5: 4.13 kH/s
[2025-05-05 00:13:34] CPU #7: 4.13 kH/s
[2025-05-05 00:13:34] Total: 33.02 kH/s
[2025-05-05 00:13:34] CPU #6: 4.13 kH/s
[2025-05-05 00:13:34] CPU #3: 4.13 kH/s
[2025-05-05 00:13:39] Total: 33.03 kH/s
[2025-05-05 00:13:44] CPU #4: 4.13 kH/s
[2025-05-05 00:13:44] CPU #1: 4.13 kH/s
[2025-05-05 00:13:44] CPU #2: 4.13 kH/s
[2025-05-05 00:13:44] CPU #5: 4.13 kH/s
[2025-05-05 00:13:44] CPU #0: 4.11 kH/s
[2025-05-05 00:13:44] CPU #7: 4.13 kH/s
[2025-05-05 00:13:44] Total: 33.03 kH/s
[2025-05-05 00:13:44] CPU #6: 4.13 kH/s
[2025-05-05 00:13:44] CPU #3: 4.13 kH/s
[2025-05-05 00:13:49] Total: 33.02 kH/s
[2025-05-05 00:13:54] CPU #4: 4.13 kH/s
[2025-05-05 00:13:54] CPU #1: 4.13 kH/s
[2025-05-05 00:13:54] CPU #2: 4.13 kH/s
[2025-05-05 00:13:54] CPU #5: 4.13 kH/s
[2025-05-05 00:13:54] CPU #0: 4.11 kH/s
[2025-05-05 00:13:54] CPU #7: 4.13 kH/s
[2025-05-05 00:13:54] Total: 33.03 kH/s
[2025-05-05 00:13:54] CPU #6: 4.13 kH/s
[2025-05-05 00:13:54] CPU #3: 4.13 kH/s
[2025-05-05 00:13:59] Total: 33.03 kH/s
[2025-05-05 00:14:04] CPU #4: 4.13 kH/s
[2025-05-05 00:14:04] CPU #1: 4.13 kH/s
[2025-05-05 00:14:04] CPU #2: 4.13 kH/s
[2025-05-05 00:14:04] CPU #0: 4.12 kH/s
[2025-05-05 00:14:04] CPU #5: 4.13 kH/s
[2025-05-05 00:14:04] CPU #7: 4.13 kH/s
[2025-05-05 00:14:04] Total: 33.04 kH/s
[2025-05-05 00:14:04] CPU #6: 4.13 kH/s
[2025-05-05 00:14:04] CPU #3: 4.13 kH/s
[2025-05-05 00:14:09] Total: 33.03 kH/s
[2025-05-05 00:14:14] CPU #4: 4.13 kH/s
[2025-05-05 00:14:14] CPU #1: 4.13 kH/s
[2025-05-05 00:14:14] CPU #2: 4.13 kH/s
[2025-05-05 00:14:14] CPU #0: 4.11 kH/s
[2025-05-05 00:14:14] CPU #5: 4.13 kH/s
[2025-05-05 00:14:14] CPU #7: 4.13 kH/s
[2025-05-05 00:14:14] Total: 33.02 kH/s
[2025-05-05 00:14:14] CPU #6: 4.13 kH/s
[2025-05-05 00:14:14] CPU #3: 4.13 kH/s
[2025-05-05 00:14:19] Total: 33.03 kH/s
[2025-05-05 00:14:24] CPU #4: 4.13 kH/s
[2025-05-05 00:14:24] CPU #1: 4.13 kH/s
[2025-05-05 00:14:24] CPU #2: 4.13 kH/s
[2025-05-05 00:14:24] CPU #5: 4.13 kH/s
[2025-05-05 00:14:24] CPU #0: 4.11 kH/s
[2025-05-05 00:14:24] CPU #7: 4.13 kH/s
[2025-05-05 00:14:24] Total: 33.03 kH/s
[2025-05-05 00:14:24] CPU #6: 4.13 kH/s
[2025-05-05 00:14:24] CPU #3: 4.13 kH/s
Total Scores: 33.04,33.03,33.02,33.01,33.00,32.90,32.56
##########################################################################
Testing maximum cpufreq again, still under full load. System health now:
Time CPU load %cpu %sys %usr %nice %io %irq Temp
00:14:12: 2500MHz 8.16 100% 0% 99% 0% 0% 0% 35.0°C
Checking cpufreq OPP (Phytium FTC862):
Cpufreq OPP: 2500 Measured: 2498 (2499.167/2498.980/2498.824)
##########################################################################
Hardware sensors:
nvme-pci-0200
Composite: +40.9 C (low = -40.1 C, high = +83.8 C)
(crit = +87.8 C)
Sensor 1: +61.9 C (low = -273.1 C, high = +65261.8 C)
Sensor 2: +32.9 C (low = -273.1 C, high = +65261.8 C)
acpitz-acpi-0
temp1: +32.0 C
amdgpu-pci-0900
vddgfx: 6.00 mV
fan1: 0 RPM (min = 0 RPM, max = 3000 RPM)
edge: +31.0 C (crit = +100.0 C, hyst = -273.1 C)
(emerg = +105.0 C)
junction: +31.0 C (crit = +110.0 C, hyst = -273.1 C)
(emerg = +115.0 C)
mem: +30.0 C (crit = +100.0 C, hyst = -273.1 C)
(emerg = +105.0 C)
PPT: 8.00 W (cap = 272.00 W)
/dev/nvme0: 41°C
##########################################################################
Thermal source: /sys/class/hwmon/hwmon3/ (acpitz)
System health while running tinymembench:
Time CPU load %cpu %sys %usr %nice %io %irq Temp
00:04:50: 2500MHz 0.36 1% 0% 1% 0% 0% 0% 31.0°C
00:05:00: 2500MHz 0.45 12% 0% 12% 0% 0% 0% 31.0°C
00:05:10: 2500MHz 0.61 13% 0% 12% 0% 0% 0% 32.0°C
00:05:20: 2500MHz 0.67 12% 0% 12% 0% 0% 0% 32.0°C
00:05:30: 2500MHz 0.72 12% 0% 12% 0% 0% 0% 32.0°C
00:05:40: 2500MHz 0.77 12% 0% 12% 0% 0% 0% 32.0°C
00:05:50: 2500MHz 0.80 12% 0% 12% 0% 0% 0% 33.0°C
00:06:00: 2500MHz 0.83 12% 0% 12% 0% 0% 0% 33.0°C
System health while running ramlat:
Time CPU load %cpu %sys %usr %nice %io %irq Temp
00:06:07: 2500MHz 0.86 1% 0% 1% 0% 0% 0% 31.0°C
00:06:10: 2500MHz 0.86 12% 0% 12% 0% 0% 0% 31.0°C
00:06:13: 2500MHz 0.87 12% 0% 12% 0% 0% 0% 31.0°C
00:06:16: 2500MHz 0.88 12% 0% 12% 0% 0% 0% 31.0°C
00:06:19: 2500MHz 0.88 12% 0% 12% 0% 0% 0% 31.0°C
00:06:23: 2500MHz 0.89 12% 0% 12% 0% 0% 0% 31.0°C
00:06:26: 2500MHz 0.89 12% 0% 12% 0% 0% 0% 31.0°C
00:06:29: 2500MHz 0.90 12% 0% 12% 0% 0% 0% 31.0°C
00:06:32: 2500MHz 0.99 12% 0% 12% 0% 0% 0% 31.0°C
00:06:35: 2500MHz 0.99 12% 0% 12% 0% 0% 0% 31.0°C
System health while running OpenSSL benchmark:
Time CPU load %cpu %sys %usr %nice %io %irq Temp
00:06:36: 2500MHz 0.99 1% 0% 1% 0% 0% 0% 31.0°C
00:06:53: 2500MHz 1.07 12% 0% 12% 0% 0% 0% 30.0°C
00:07:09: 2500MHz 1.06 12% 0% 12% 0% 0% 0% 30.0°C
System health while running 7-zip single core benchmark:
Time CPU load %cpu %sys %usr %nice %io %irq Temp
00:07:12: 2500MHz 1.05 1% 0% 1% 0% 0% 0% 32.0°C
00:07:18: 2500MHz 1.05 12% 0% 12% 0% 0% 0% 32.0°C
00:07:23: 2500MHz 1.04 12% 0% 12% 0% 0% 0% 32.0°C
00:07:28: 2500MHz 1.04 12% 0% 12% 0% 0% 0% 32.0°C
00:07:33: 2500MHz 1.04 12% 0% 12% 0% 0% 0% 32.0°C
00:07:38: 2500MHz 1.03 12% 0% 12% 0% 0% 0% 32.0°C
00:07:43: 2500MHz 1.03 12% 0% 12% 0% 0% 0% 32.0°C
00:07:48: 2500MHz 1.03 12% 0% 12% 0% 0% 0% 32.0°C
System health while running 7-zip multi core benchmark:
Time CPU load %cpu %sys %usr %nice %io %irq Temp
00:07:52: 2500MHz 1.02 1% 0% 1% 0% 0% 0% 33.0°C
00:08:03: 2500MHz 2.10 95% 0% 94% 0% 0% 0% 34.0°C
00:08:13: 2500MHz 2.93 86% 0% 86% 0% 0% 0% 33.0°C
00:08:23: 2500MHz 3.79 94% 1% 93% 0% 0% 0% 34.0°C
00:08:35: 2500MHz 4.43 95% 0% 95% 0% 0% 0% 35.0°C
00:08:45: 2500MHz 4.83 85% 0% 85% 0% 0% 0% 35.0°C
00:08:55: 2500MHz 5.32 89% 0% 88% 0% 0% 0% 34.0°C
00:09:06: 2500MHz 5.49 95% 0% 95% 0% 0% 0% 35.0°C
00:09:16: 2500MHz 5.96 85% 0% 85% 0% 0% 0% 35.0°C
System health while running cpuminer:
Time CPU load %cpu %sys %usr %nice %io %irq Temp
00:09:26: 2500MHz 6.12 2% 0% 2% 0% 0% 0% 35.0°C
00:10:07: 2500MHz 7.20 100% 0% 99% 0% 0% 0% 35.0°C
00:10:48: 2500MHz 7.59 100% 0% 99% 0% 0% 0% 35.0°C
00:11:29: 2500MHz 7.79 100% 0% 99% 0% 0% 0% 35.0°C
00:12:10: 2500MHz 7.89 100% 0% 99% 0% 0% 0% 35.0°C
00:12:51: 2500MHz 8.01 100% 0% 99% 0% 0% 0% 35.0°C
00:13:31: 2500MHz 8.00 100% 0% 99% 0% 0% 0% 35.0°C
00:14:12: 2500MHz 8.16 100% 0% 99% 0% 0% 0% 35.0°C
##########################################################################
Linux 6.6.84-arm64-desktop-hwe (d3k) 05/05/25 _aarch64_ (8 CPU)
avg-cpu: %user %nice %system %iowait %steal %idle
3.23 0.01 0.04 0.00 0.00 96.72
Device tps kB_read/s kB_wrtn/s kB_dscd/s kB_read kB_wrtn kB_dscd
nvme0n1 3.72 64.31 33.71 0.00 1663059 871613 0
total used free shared buff/cache available
Mem: 31Gi 985Mi 30Gi 7.7Mi 348Mi 30Gi
Swap: 15Gi 0B 15Gi
Filename Type Size Used Priority
/dev/nvme0n1p3 partition 16469992 0 -2
CPU sysfs topology (clusters, cpufreq members, clockspeeds)
cpufreq min max
CPU cluster policy speed speed core type
0 36 0 625 2500 Phytium FTC862 / r0p0
1 36 1 625 2500 Phytium FTC862 / r0p0
2 36 2 625 2500 Phytium FTC862 / r0p0
3 36 3 625 2500 Phytium FTC862 / r0p0
4 36 4 625 2500 Phytium FTC862 / r0p0
5 36 5 625 2500 Phytium FTC862 / r0p0
6 36 6 625 2500 Phytium FTC862 / r0p0
7 36 7 625 2500 Phytium FTC862 / r0p0
Architecture: aarch64
CPU op-mode(s): 32-bit, 64-bit
Byte Order: Little Endian
CPU(s): 8
On-line CPU(s) list: 0-7
Vendor ID: Phytium
BIOS Vendor ID: PHYTIUM LTD
Model name: FTC862
BIOS Model name: Phytium D3000 EN8-C Not Set CPU @ 2.5GHz
BIOS CPU family: 280
Model: 0
Thread(s) per core: 1
Core(s) per socket: 8
Socket(s): 1
Stepping: 0x0
Frequency boost: disabled
CPU(s) scaling MHz: 100%
CPU max MHz: 2500.0000
CPU min MHz: 625.0000
BogoMIPS: 100.00
Flags: fp asimd evtstrm aes pmull sha1 sha2 crc32 atomics fphp asimdhp cpuid asimdrdm lrcpc dcpop sha3 sm3 sm4 asimddp sha512
L1d cache: 512 KiB (8 instances)
L1i cache: 512 KiB (8 instances)
L2 cache: 4 MiB (8 instances)
L3 cache: 8 MiB (2 instances)
L4 cache: 8 MiB (1 instance)
NUMA node(s): 1
NUMA node0 CPU(s): 0-7
Vulnerability Gather data sampling: Not affected
Vulnerability Itlb multihit: Not affected
Vulnerability L1tf: Not affected
Vulnerability Mds: Not affected
Vulnerability Meltdown: Not affected
Vulnerability Mmio stale data: Not affected
Vulnerability Reg file data sampling: Not affected
Vulnerability Retbleed: Not affected
Vulnerability Spec rstack overflow: Not affected
Vulnerability Spec store bypass: Not affected
Vulnerability Spectre v1: Mitigation; __user pointer sanitization
Vulnerability Spectre v2: Not affected
Vulnerability Srbds: Not affected
Vulnerability Tsx async abort: Not affected
cpuinfo: http://0x0.st/84IC.txt
Processor Information
Socket Designation: Phtium D3000
Type: Central Processor
Family: ARM
Manufacturer: PHYTIUM LTD
ID: FF FF FF FF FF FF FF FF
Signature: Implementor 0xff, Variant 0xf, Architecture 15, Part 0xfff, Revision 15
Version: Phytium D3000 EN8-C
Voltage: 0.9 V
External Clock: 48 MHz
Max Speed: 2500 MHz
Current Speed: 2500 MHz
Status: Populated, Enabled
L1 Cache Handle: 0x0005
L2 Cache Handle: 0x0006
L3 Cache Handle: 0x0007
Core Count: 8
Core Enabled: 8
Thread Count: 8
Characteristics:
64-bit capable
Multi-Core
Execute Protection
Enhanced Virtualization
SoC guess: Phytium D3000/8
Compiler: /usr/bin/gcc (Deepin 12.3.0-17deepin12) 12.3.0 / aarch64-linux-gnu
Userland: arm64
Kernel: 6.6.84-arm64-desktop-hwe/aarch64
CONFIG_HZ=250
CONFIG_HZ_250=y
CONFIG_PREEMPTION=y
CONFIG_PREEMPT=y
CONFIG_PREEMPT_BUILD=y
CONFIG_PREEMPT_COUNT=y
CONFIG_PREEMPT_NOTIFIERS=y
CONFIG_PREEMPT_RCU=y
##########################################################################
RAM configuration:
*-bank:0
description: DIMM Synchronous Unbuffered (Unregistered) 4800 MHz (0.2 ns)
product: 6400 Series
vendor: Unknown
physical id: 0
slot: DIMM 0
size: 16GiB
width: 64 bits
clock: 505MHz (2.0ns)
*-bank:1
description: DIMM Synchronous Unbuffered (Unregistered) 4800 MHz (0.2 ns)
product: 6400 Series
vendor: Unknown
physical id: 1
slot: DIMM 0
size: 16GiB
width: 64 bits
clock: 505MHz (2.0ns)
##########################################################################
Results validation:
* Measured clockspeed not lower than advertised max CPU clockspeed
* No swapping
* Background activity (%system) OK
Status of performance related policies found below /sys:
* /sys/module/pcie_aspm/parameters/policy: default [performance] powersave powersupersave
##########################################################################
# phytium D3000
Tested with sbc-bench v0.9.71 on Mon, 05 May 2025 00:14:30 +1000.
### General information:
Phytium D3000/8, Kernel: aarch64, Userland: arm64
CPU sysfs topology (clusters, cpufreq members, clockspeeds)
cpufreq min max
CPU cluster policy speed speed core type
0 36 0 625 2500 Phytium FTC862 / r0p0
1 36 1 625 2500 Phytium FTC862 / r0p0
2 36 2 625 2500 Phytium FTC862 / r0p0
3 36 3 625 2500 Phytium FTC862 / r0p0
4 36 4 625 2500 Phytium FTC862 / r0p0
5 36 5 625 2500 Phytium FTC862 / r0p0
6 36 6 625 2500 Phytium FTC862 / r0p0
7 36 7 625 2500 Phytium FTC862 / r0p0
31954 KB available RAM
### Governors/policies (performance vs. idle consumption):
Original governor settings:
cpufreq-policy0: performance / 2500 MHz (conservative ondemand powersave userspace performance schedutil)
cpufreq-policy1: performance / 2500 MHz (conservative ondemand powersave userspace performance schedutil)
cpufreq-policy2: performance / 2500 MHz (conservative ondemand powersave userspace performance schedutil)
cpufreq-policy3: performance / 2500 MHz (conservative ondemand powersave userspace performance schedutil)
cpufreq-policy4: performance / 2500 MHz (conservative ondemand powersave userspace performance schedutil)
cpufreq-policy5: performance / 2500 MHz (conservative ondemand powersave userspace performance schedutil)
cpufreq-policy6: performance / 2500 MHz (conservative ondemand powersave userspace performance schedutil)
cpufreq-policy7: performance / 2500 MHz (conservative ondemand powersave userspace performance schedutil)
Tuned governor settings:
cpufreq-policy0: performance / 2500 MHz
cpufreq-policy1: performance / 2500 MHz
cpufreq-policy2: performance / 2500 MHz
cpufreq-policy3: performance / 2500 MHz
cpufreq-policy4: performance / 2500 MHz
cpufreq-policy5: performance / 2500 MHz
cpufreq-policy6: performance / 2500 MHz
cpufreq-policy7: performance / 2500 MHz
Status of performance related policies found below /sys:
/sys/module/pcie_aspm/parameters/policy: default [performance] powersave powersupersave
### Clockspeeds (idle vs. heated up):
Before at 29.0°C:
cpu0 (Phytium FTC862): OPP: 2500, Measured: 2498
After at 34.0°C:
cpu0 (Phytium FTC862): OPP: 2500, Measured: 2498
### Performance baseline
* memcpy: 15094.1 MB/s, memchr: 19059.1 MB/s, memset: 39814.3 MB/s
* 16M latency: 83.53 62.56 83.15 63.14 82.37 65.65 67.93 76.58
* 128M latency: 135.9 135.3 135.9 135.2 135.9 134.8 135.4 139.9
* 7-zip MIPS (3 consecutive runs): 28055, 28069, 28086 (28070 avg), single-threaded: 3617
* `aes-256-cbc 587227.48k 1174792.36k 1353980.67k 1406049.28k 1423706.79k 1425118.55k`
* `aes-256-cbc 587950.56k 1175944.49k 1355359.32k 1407310.17k 1425055.74k 1426522.11k`
### PCIe and storage devices:
* Renesas uPD720201 USB 3.0 Host: Speed 5GT/s, Width x1, driver in use: xhci_hcd, ASPM Disabled
* AMD Navi 21 [Radeon RX 6800/6800 XT / 6900 XT]: Speed 16GT/s, Width x16, driver in use: amdgpu, ASPM Disabled