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446h.txt
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sbc-bench v0.9.8 PHYTIUM LTD D2000 (Mon, 11 Jul 2022 16:54:35 -0400)
Distributor ID: Ubuntu
Description: Ubuntu 22.04 LTS
Release: 22.04
Codename: jammy
Armbian info: uefi-arm64, uefi-arm64, arm64, 22.08.0-trunk, [email protected]:armbian/build.git
Device Info:
Manufacturer: PHYTIUM LTD
Product Name: D2000
Family: D2000
BIOS/UEFI:
Vendor: PHYTIUM LTD
Version: <BAD INDEX>
Release Date: <BAD INDEX>
/usr/bin/gcc (Ubuntu 11.2.0-19ubuntu1) 11.2.0
Uptime: 16:54:35 up 7 min, 2 users, load average: 0.16, 0.09, 0.05, 47.9°C
Linux 5.19.0-rc5-arm64 (limp-phytium) 07/11/22 _aarch64_ (8 CPU)
avg-cpu: %user %nice %system %iowait %steal %idle
0.66 0.00 0.65 0.04 0.00 98.64
Device tps kB_read/s kB_wrtn/s kB_dscd/s kB_read kB_wrtn kB_dscd
nvme0n1 15.58 671.58 10.04 0.00 314979 4709 0
zram0 1.28 5.10 0.01 0.00 2392 4 0
zram1 0.90 1.01 18.84 0.00 472 8836 0
total used free shared buff/cache available
Mem: 31Gi 372Mi 30Gi 9.0Mi 85Mi 30Gi
Swap: 15Gi 0B 15Gi
Filename Type Size Used Priority
/dev/zram0 partition 16372648 0 5
##########################################################################
Checking cpufreq OPP (Phytium FTC663):
No cpufreq support available. Measured on cpu1: 2298 MHz (2298.798/2298.798/2298.772)
##########################################################################
Hardware sensors:
nvme-pci-0400
Composite: +47.9 C (low = -273.1 C, high = +82.8 C)
(crit = +84.8 C)
amdgpu-pci-0100
vddgfx: 781.00 mV
fan1: N/A (min = 0 RPM, max = 6900 RPM)
edge: +54.0 C (crit = +97.0 C, hyst = -273.1 C)
PPT: 24.21 W (cap = 25.00 W)
/dev/nvme0n1: 48°C
##########################################################################
Executing benchmark on cpu0 (Phytium FTC663):
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 : 3259.6 MB/s
C copy backwards (32 byte blocks) : 3256.5 MB/s
C copy backwards (64 byte blocks) : 3271.0 MB/s
C copy : 3415.7 MB/s
C copy prefetched (32 bytes step) : 3699.3 MB/s
C copy prefetched (64 bytes step) : 3699.5 MB/s
C 2-pass copy : 3010.3 MB/s
C 2-pass copy prefetched (32 bytes step) : 3097.1 MB/s
C 2-pass copy prefetched (64 bytes step) : 3139.3 MB/s
C fill : 16137.2 MB/s (3.1%)
C fill (shuffle within 16 byte blocks) : 14692.8 MB/s
C fill (shuffle within 32 byte blocks) : 14693.7 MB/s
C fill (shuffle within 64 byte blocks) : 14709.9 MB/s (0.2%)
---
standard memcpy : 3476.9 MB/s
standard memset : 16114.8 MB/s (3.3%)
---
NEON LDP/STP copy : 3447.4 MB/s
NEON LDP/STP copy pldl2strm (32 bytes step) : 1761.2 MB/s
NEON LDP/STP copy pldl2strm (64 bytes step) : 1760.3 MB/s
NEON LDP/STP copy pldl1keep (32 bytes step) : 3823.2 MB/s
NEON LDP/STP copy pldl1keep (64 bytes step) : 3821.3 MB/s
NEON LD1/ST1 copy : 3464.8 MB/s
NEON STP fill : 16126.2 MB/s (3.2%)
NEON STNP fill : 14957.6 MB/s (1.4%)
ARM LDP/STP copy : 3447.9 MB/s
ARM STP fill : 16144.9 MB/s (3.3%)
ARM STNP fill : 14575.3 MB/s (0.7%)
==========================================================================
== 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 : 3.9 ns / 6.1 ns
131072 : 5.9 ns / 8.1 ns
262144 : 8.4 ns / 10.7 ns
524288 : 9.8 ns / 12.2 ns
1048576 : 10.5 ns / 13.1 ns
2097152 : 13.3 ns / 16.3 ns
4194304 : 22.4 ns / 27.9 ns
8388608 : 73.3 ns / 115.2 ns
16777216 : 127.3 ns / 179.7 ns
33554432 : 155.1 ns / 202.8 ns
67108864 : 175.2 ns / 222.6 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 : 3.9 ns / 6.1 ns
131072 : 5.9 ns / 8.1 ns
262144 : 6.9 ns / 8.8 ns
524288 : 7.5 ns / 9.1 ns
1048576 : 7.9 ns / 9.2 ns
2097152 : 8.8 ns / 10.0 ns
4194304 : 17.5 ns / 23.6 ns
8388608 : 62.6 ns / 95.2 ns
16777216 : 111.9 ns / 152.6 ns
33554432 : 138.4 ns / 170.6 ns
67108864 : 152.5 ns / 177.9 ns
##########################################################################
Executing ramlat on cpu0 (Phytium FTC663), results in ns:
size: 1x32 2x32 1x64 2x64 1xPTR 2xPTR 4xPTR 8xPTR
4k: 2.176 2.177 2.176 2.176 1.741 1.740 1.741 3.481
8k: 2.176 2.176 2.176 2.176 1.742 1.741 1.780 3.481
16k: 2.176 2.176 2.176 2.176 1.741 1.741 2.860 3.483
32k: 7.263 7.302 7.263 7.308 6.854 6.876 10.23 20.11
64k: 9.413 9.437 9.418 9.441 9.030 9.055 13.89 26.07
128k: 10.01 10.02 10.01 10.01 9.579 9.731 15.68 31.54
256k: 13.82 13.82 13.82 13.82 13.38 13.48 16.12 31.56
512k: 13.81 13.78 13.77 13.78 13.33 13.43 16.13 31.53
1024k: 13.82 13.83 13.82 13.82 13.36 13.46 16.20 31.52
2048k: 17.53 16.80 17.40 16.79 17.41 16.84 19.84 37.64
4096k: 31.18 30.07 30.13 30.04 33.40 30.32 35.08 61.24
8192k: 128.0 118.9 127.3 118.8 126.9 118.6 113.2 146.1
16384k: 182.6 176.8 182.0 176.8 181.7 177.6 172.7 204.5
##########################################################################
Executing benchmark twice on cluster 0 (Phytium FTC663)
OpenSSL 3.0.2, built on 15 Mar 2022 (Library: OpenSSL 3.0.2 15 Mar 2022)
type 16 bytes 64 bytes 256 bytes 1024 bytes 8192 bytes 16384 bytes
aes-128-cbc 427450.97k 819763.50k 1063736.06k 1140328.11k 1175609.34k 1173504.00k
aes-128-cbc 427523.00k 819794.47k 1063761.92k 1140201.47k 1171180.20k 1173880.83k
aes-192-cbc 394799.51k 714081.47k 896950.78k 949121.02k 974323.71k 974181.72k
aes-192-cbc 394890.38k 714095.85k 896963.67k 950193.15k 972608.85k 975459.67k
aes-256-cbc 375082.21k 637189.18k 771880.70k 810140.67k 827809.79k 828041.90k
aes-256-cbc 375184.30k 637172.59k 771880.02k 809320.45k 827643.22k 828211.20k
##########################################################################
Executing benchmark single-threaded on cpu0 (Phytium FTC663)
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: 31977 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: 2201 100 2142 2141 | 28483 100 2432 2432
23: 2016 100 2055 2054 | 28101 100 2433 2432
24: 1908 100 2052 2052 | 27607 100 2424 2424
25: 1822 100 2081 2081 | 26965 100 2400 2400
---------------------------------- | ------------------------------
Avr: 100 2082 2082 | 100 2422 2422
Tot: 100 2252 2252
##########################################################################
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: 31977 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: 15334 728 2049 14918 | 218207 786 2368 18612
23: 14738 747 2011 15017 | 213032 783 2355 18435
24: 14019 749 2012 15074 | 208584 785 2333 18307
25: 13516 768 2011 15433 | 204026 788 2305 18158
---------------------------------- | ------------------------------
Avr: 748 2021 15110 | 785 2340 18378
Tot: 767 2180 16744
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: 31977 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: 15130 723 2036 14719 | 217167 785 2360 18523
23: 15119 759 2030 15405 | 212486 785 2342 18388
24: 13854 743 2005 14897 | 208081 786 2325 18263
25: 13133 747 2007 14996 | 202706 786 2296 18040
---------------------------------- | ------------------------------
Avr: 743 2019 15004 | 785 2331 18304
Tot: 764 2175 16654
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: 31977 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: 14917 709 2047 14512 | 217372 782 2370 18541
23: 14487 747 1976 14761 | 212679 782 2354 18405
24: 14073 756 2001 15132 | 207496 780 2334 18212
25: 13294 760 1997 15179 | 203247 784 2306 18088
---------------------------------- | ------------------------------
Avr: 743 2005 14896 | 782 2341 18311
Tot: 763 2173 16604
Compression: 15110,15004,14896
Decompression: 18378,18304,18311
Total: 16744,16654,16604
##########################################################################
Testing maximum cpufreq again, still under full load. System health now:
Time CPU n/a load %cpu %sys %usr %nice %io %irq Temp
17:05:15: --- 7.69 90% 2% 87% 0% 0% 0% 47.9°C
Checking cpufreq OPP (Phytium FTC663):
No cpufreq support available. Measured on cpu1: 2298 MHz (2298.746/2298.615/2298.353)
##########################################################################
Hardware sensors:
nvme-pci-0400
Composite: +47.9 C (low = -273.1 C, high = +82.8 C)
(crit = +84.8 C)
amdgpu-pci-0100
vddgfx: 793.00 mV
fan1: N/A (min = 0 RPM, max = 6900 RPM)
edge: +59.0 C (crit = +97.0 C, hyst = -273.1 C)
PPT: 24.21 W (cap = 25.00 W)
/dev/nvme0n1: 48°C
##########################################################################
Wrong thermal source: /etc/armbianmonitor/datasources/soctemp (nvme)
System health while running tinymembench:
Time CPU n/a load %cpu %sys %usr %nice %io %irq Temp
16:54:38: --- 0.23 1% 0% 0% 0% 0% 0% 47.9°C
16:55:18: --- 0.60 12% 0% 12% 0% 0% 0% 47.9°C
16:55:58: --- 0.80 12% 0% 12% 0% 0% 0% 47.9°C
16:56:38: --- 0.90 12% 0% 12% 0% 0% 0% 47.9°C
16:57:18: --- 0.95 12% 0% 12% 0% 0% 0% 47.9°C
16:57:58: --- 1.05 12% 0% 12% 0% 0% 0% 47.9°C
16:58:38: --- 1.10 12% 0% 12% 0% 0% 0% 47.9°C
16:59:18: --- 1.05 12% 0% 12% 0% 0% 0% 47.9°C
System health while running ramlat:
Time CPU n/a load %cpu %sys %usr %nice %io %irq Temp
16:59:34: --- 1.11 5% 0% 5% 0% 0% 0% 47.9°C
16:59:37: --- 1.10 12% 0% 12% 0% 0% 0% 47.9°C
16:59:40: --- 1.10 12% 0% 12% 0% 0% 0% 47.9°C
16:59:44: --- 1.09 12% 0% 12% 0% 0% 0% 47.9°C
16:59:47: --- 1.09 12% 0% 12% 0% 0% 0% 47.9°C
16:59:50: --- 1.08 12% 0% 12% 0% 0% 0% 47.9°C
16:59:53: --- 1.08 12% 0% 12% 0% 0% 0% 47.9°C
16:59:56: --- 1.08 12% 0% 12% 0% 0% 0% 47.9°C
System health while running OpenSSL benchmark:
Time CPU n/a load %cpu %sys %usr %nice %io %irq Temp
16:59:58: --- 1.07 5% 0% 5% 0% 0% 0% 47.9°C
17:00:15: --- 1.05 12% 0% 12% 0% 0% 0% 47.9°C
17:00:31: --- 1.04 12% 0% 12% 0% 0% 0% 47.9°C
17:00:47: --- 1.03 12% 0% 12% 0% 0% 0% 47.9°C
17:01:03: --- 1.02 12% 0% 12% 0% 0% 0% 47.9°C
17:01:19: --- 1.02 12% 0% 12% 0% 0% 0% 47.9°C
17:01:35: --- 1.01 12% 0% 12% 0% 0% 0% 47.9°C
System health while running 7-zip single core benchmark:
Time CPU n/a load %cpu %sys %usr %nice %io %irq Temp
17:01:47: --- 1.01 6% 0% 6% 0% 0% 0% 47.9°C
17:01:52: --- 1.01 12% 0% 12% 0% 0% 0% 47.9°C
17:01:57: --- 1.01 12% 0% 12% 0% 0% 0% 47.9°C
17:02:02: --- 1.01 12% 0% 12% 0% 0% 0% 47.9°C
17:02:07: --- 1.01 12% 0% 12% 0% 0% 0% 47.9°C
17:02:12: --- 1.01 12% 0% 12% 0% 0% 0% 47.9°C
17:02:17: --- 1.00 12% 0% 12% 0% 0% 0% 47.9°C
17:02:22: --- 1.00 12% 0% 12% 0% 0% 0% 47.9°C
17:02:27: --- 1.00 12% 0% 12% 0% 0% 0% 47.9°C
17:02:32: --- 1.00 12% 0% 12% 0% 0% 0% 47.9°C
17:02:37: --- 1.00 12% 0% 12% 0% 0% 0% 47.9°C
17:02:42: --- 1.08 12% 0% 12% 0% 0% 0% 47.9°C
17:02:47: --- 1.07 12% 0% 12% 0% 0% 0% 47.9°C
System health while running 7-zip multi core benchmark:
Time CPU n/a load %cpu %sys %usr %nice %io %irq Temp
17:02:50: --- 1.07 7% 0% 6% 0% 0% 0% 47.9°C
17:03:01: --- 2.14 96% 0% 95% 0% 0% 0% 47.9°C
17:03:11: --- 3.11 94% 0% 93% 0% 0% 0% 47.9°C
17:03:23: --- 3.79 92% 1% 90% 0% 0% 0% 47.9°C
17:03:34: --- 4.79 87% 2% 85% 0% 0% 0% 47.9°C
17:03:44: --- 5.20 94% 1% 92% 0% 0% 0% 47.9°C
17:03:54: --- 5.56 94% 0% 93% 0% 0% 0% 47.9°C
17:04:04: --- 5.61 92% 0% 91% 0% 0% 0% 47.9°C
17:04:14: --- 5.98 91% 0% 90% 0% 0% 0% 47.9°C
17:04:24: --- 6.44 91% 2% 88% 0% 0% 0% 47.9°C
17:04:34: --- 6.68 92% 1% 90% 0% 0% 0% 47.9°C
17:04:45: --- 6.89 93% 0% 92% 0% 0% 0% 47.9°C
17:04:55: --- 7.06 91% 0% 90% 0% 0% 0% 47.9°C
17:05:05: --- 7.28 93% 0% 92% 0% 0% 0% 47.9°C
17:05:15: --- 7.69 90% 2% 87% 0% 0% 0% 47.9°C
##########################################################################
dmesg output while running the benchmarks:
[ 616.342485] stmmaceth PHYT0004:00 enaphyt4i0: validation of gmii with support 00000000,00000000,00006280 and advertisement 00000000,00000000,00006280 failed: -EINVAL
[ 616.342732] stmmaceth PHYT0004:00 enaphyt4i0: stmmac_open: Cannot attach to PHY (error: -22)
[ 616.407490] stmmaceth PHYT0004:01 enaphyt4i1: validation of gmii with support 00000000,00000200,000062ef and advertisement 00000000,00000200,000062ef failed: -EINVAL
[ 616.407930] stmmaceth PHYT0004:01 enaphyt4i1: stmmac_open: Cannot attach to PHY (error: -22)
[ 616.413086] stmmaceth PHYT0004:00 enaphyt4i0: validation of gmii with support 00000000,00000000,00006280 and advertisement 00000000,00000000,00006280 failed: -EINVAL
[ 616.413343] stmmaceth PHYT0004:00 enaphyt4i0: stmmac_open: Cannot attach to PHY (error: -22)
[ 616.475485] stmmaceth PHYT0004:01 enaphyt4i1: validation of gmii with support 00000000,00000200,000062ef and advertisement 00000000,00000200,000062ef failed: -EINVAL
[ 616.475922] stmmaceth PHYT0004:01 enaphyt4i1: stmmac_open: Cannot attach to PHY (error: -22)
[ 616.480805] stmmaceth PHYT0004:00 enaphyt4i0: validation of gmii with support 00000000,00000000,00006280 and advertisement 00000000,00000000,00006280 failed: -EINVAL
[ 616.481051] stmmaceth PHYT0004:00 enaphyt4i0: stmmac_open: Cannot attach to PHY (error: -22)
[ 616.543484] stmmaceth PHYT0004:01 enaphyt4i1: validation of gmii with support 00000000,00000200,000062ef and advertisement 00000000,00000200,000062ef failed: -EINVAL
[ 616.543917] stmmaceth PHYT0004:01 enaphyt4i1: stmmac_open: Cannot attach to PHY (error: -22)
[ 616.548657] stmmaceth PHYT0004:00 enaphyt4i0: validation of gmii with support 00000000,00000000,00006280 and advertisement 00000000,00000000,00006280 failed: -EINVAL
[ 616.548904] stmmaceth PHYT0004:00 enaphyt4i0: stmmac_open: Cannot attach to PHY (error: -22)
[ 616.599484] stmmaceth PHYT0004:01 enaphyt4i1: validation of gmii with support 00000000,00000200,000062ef and advertisement 00000000,00000200,000062ef failed: -EINVAL
[ 616.599924] stmmaceth PHYT0004:01 enaphyt4i1: stmmac_open: Cannot attach to PHY (error: -22)
[ 916.339468] stmmaceth PHYT0004:00 enaphyt4i0: validation of gmii with support 00000000,00000000,00006280 and advertisement 00000000,00000000,00006280 failed: -EINVAL
[ 916.339718] stmmaceth PHYT0004:00 enaphyt4i0: stmmac_open: Cannot attach to PHY (error: -22)
[ 916.403998] stmmaceth PHYT0004:01 enaphyt4i1: validation of gmii with support 00000000,00000200,000062ef and advertisement 00000000,00000200,000062ef failed: -EINVAL
[ 916.404437] stmmaceth PHYT0004:01 enaphyt4i1: stmmac_open: Cannot attach to PHY (error: -22)
[ 916.409449] stmmaceth PHYT0004:00 enaphyt4i0: validation of gmii with support 00000000,00000000,00006280 and advertisement 00000000,00000000,00006280 failed: -EINVAL
[ 916.409695] stmmaceth PHYT0004:00 enaphyt4i0: stmmac_open: Cannot attach to PHY (error: -22)
[ 916.471994] stmmaceth PHYT0004:01 enaphyt4i1: validation of gmii with support 00000000,00000200,000062ef and advertisement 00000000,00000200,000062ef failed: -EINVAL
[ 916.472427] stmmaceth PHYT0004:01 enaphyt4i1: stmmac_open: Cannot attach to PHY (error: -22)
[ 916.477253] stmmaceth PHYT0004:00 enaphyt4i0: validation of gmii with support 00000000,00000000,00006280 and advertisement 00000000,00000000,00006280 failed: -EINVAL
[ 916.477497] stmmaceth PHYT0004:00 enaphyt4i0: stmmac_open: Cannot attach to PHY (error: -22)
[ 916.539990] stmmaceth PHYT0004:01 enaphyt4i1: validation of gmii with support 00000000,00000200,000062ef and advertisement 00000000,00000200,000062ef failed: -EINVAL
[ 916.540424] stmmaceth PHYT0004:01 enaphyt4i1: stmmac_open: Cannot attach to PHY (error: -22)
[ 916.545083] stmmaceth PHYT0004:00 enaphyt4i0: validation of gmii with support 00000000,00000000,00006280 and advertisement 00000000,00000000,00006280 failed: -EINVAL
[ 916.545324] stmmaceth PHYT0004:00 enaphyt4i0: stmmac_open: Cannot attach to PHY (error: -22)
[ 916.611998] stmmaceth PHYT0004:01 enaphyt4i1: validation of gmii with support 00000000,00000200,000062ef and advertisement 00000000,00000200,000062ef failed: -EINVAL
[ 916.612442] stmmaceth PHYT0004:01 enaphyt4i1: stmmac_open: Cannot attach to PHY (error: -22)
##########################################################################
Linux 5.19.0-rc5-arm64 (limp-phytium) 07/11/22 _aarch64_ (8 CPU)
avg-cpu: %user %nice %system %iowait %steal %idle
18.23 0.00 0.49 0.02 0.00 81.25
Device tps kB_read/s kB_wrtn/s kB_dscd/s kB_read kB_wrtn kB_dscd
nvme0n1 7.11 290.48 8.05 0.00 325043 9005 0
zram0 0.54 2.14 0.00 0.00 2392 4 0
zram1 0.76 0.49 9.40 0.00 552 10524 0
total used free shared buff/cache available
Mem: 31Gi 374Mi 30Gi 9.0Mi 96Mi 30Gi
Swap: 15Gi 0B 15Gi
Filename Type Size Used Priority
/dev/zram0 partition 16372648 0 5
CPU sysfs topology (clusters, cpufreq members, clockspeeds)
cpufreq min max
CPU cluster policy speed speed core type
0 36 0 - - Phytium FTC663 / r1p3
1 36 0 - - Phytium FTC663 / r1p3
2 36 0 - - Phytium FTC663 / r1p3
3 36 0 - - Phytium FTC663 / r1p3
4 36 0 - - Phytium FTC663 / r1p3
5 36 0 - - Phytium FTC663 / r1p3
6 36 0 - - Phytium FTC663 / r1p3
7 36 0 - - Phytium FTC663 / r1p3
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
Model name: S2500
Model: 3
Thread(s) per core: 1
Core(s) per socket: 8
Socket(s): 1
Stepping: 0x1
BogoMIPS: 96.00
Flags: fp asimd evtstrm aes pmull sha1 sha2 crc32 cpuid
L1d cache: 256 KiB (8 instances)
L1i cache: 256 KiB (8 instances)
L2 cache: 8 MiB (4 instances)
L3 cache: 4 MiB (1 instance)
NUMA node(s): 1
NUMA node0 CPU(s): 0-7
Vulnerability Itlb multihit: Not affected
Vulnerability L1tf: Not affected
Vulnerability Mds: Not affected
Vulnerability Meltdown: Mitigation; PTI
Vulnerability Mmio stale data: 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
Processor Information
Socket Designation: Phytium D2000/8
Type: Central Processor
Family: ARMv8
Manufacturer: PHYTIUM LTD
ID: 33 66 1F 70 00 00 00 00
Signature: Implementor 0x70, Variant 0x1, Architecture 15, Part 0x663, Revision 3
Version: Phytium D2000/ E8C
Voltage: 0.9 V
External Clock: 48 MHz
Max Speed: 2600 MHz
Current Speed: 2300 MHz
Status: Populated, Enabled
L1 Cache Handle: 0x1002
L2 Cache Handle: 0x1003
L3 Cache Handle: 0x1004
Core Count: 8
Core Enabled: 8
Thread Count: 1
Characteristics:
64-bit capable
Multi-Core
Execute Protection
Enhanced Virtualization
Power/Performance Control
SoC guess: Phytium D2000
Compiler: /usr/bin/gcc (Ubuntu 11.2.0-19ubuntu1) 11.2.0 / aarch64-linux-gnu
Userland: arm64
Kernel: 5.19.0-rc5-arm64/aarch64
CONFIG_HZ=250
CONFIG_HZ_250=y
CONFIG_PREEMPT_NOTIFIERS=y
CONFIG_PREEMPT_VOLUNTARY=y
CONFIG_PREEMPT_VOLUNTARY_BUILD=y
raid6: neonx8 gen() 7111 MB/s
raid6: neonx4 gen() 7229 MB/s
raid6: neonx2 gen() 6150 MB/s
raid6: neonx1 gen() 4717 MB/s
raid6: int64x8 gen() 3969 MB/s
raid6: int64x4 gen() 4076 MB/s
raid6: int64x2 gen() 3778 MB/s
raid6: int64x1 gen() 2832 MB/s
raid6: using algorithm neonx4 gen() 7229 MB/s
raid6: .... xor() 5709 MB/s, rmw enabled
raid6: using neon recovery algorithm
xor: measuring software checksum speed
xor: using function: 32regs (10554 MB/sec)
DIMM configuration:
*-bank:0
description: DIMM DDR4 Synchronous 2400 MHz (0.4 ns)
product: Not Set
vendor: Micron
physical id: 0
slot: SOCKET 0 CHANNEL 0 DIMM 0
size: 16GiB
width: 64 bits
clock: 2400MHz (0.4ns)
*-bank:1
description: DIMM DDR4 Synchronous 2400 MHz (0.4 ns)
product: Not Set
vendor: Micron
physical id: 1
slot: SOCKET 0 CHANNEL 1 DIMM 0
size: 16GiB
width: 64 bits
clock: 2400MHz (0.4ns)
| PHYTIUM LTD D2000 | ~2300 MHz | 5.19 | Armbian 22.08.0-trunk Jammy arm64 | 16670 | 427490 | 828130 | 3480 | 16110 | - |