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Linux Kernel panic freezes at low load or idle AMD R5 3600
Since the last month i have daily linux kernel panics. The problem started around 2 weeks after i started using my new PC. Latest BIOS 2006 from ASUS website. I did no changes in hardware or software at that time.
The panics occur at very low load, watching a video or browsing web, or idle.
I do not believe the PSU is the cause because the real load is around 90W idle. I googled for and tried for very long but i am out of solutions.
No overclocking. Memtest pass OK. Mprime (prime95) small FFT ran for 6 hours without problem.
No crashes,panics or freezes experienced under any heavy load (ffmpeg x265 / lrzip / zfs scrub on ssd).
How to prevent the freezes? Any suggestions? Thank you very much.
EDIT: upping the CPU voltage by +0.05V reduced the freezes to reboots about once per 2 days
EDIT: Solved by CPU RMA
I tried the following, no effect:
- kernel parameter processor.max_cstate=5
- kernel parameter processor.max_cstate=1
- kernel parameter rcu_nocbs=0-11
- kernel parameter noapic
- kernel parameter iommu=soft
- kernel parameter idle=nomwait
- disabling C6 via zenstates.py , output below
- BIOS - Power supply idle control - typical current idle
- BIOS - Global C-State control - disabled
- BIOS - CPPC - disabled
- BIOS - increased the VDDCR voltage by +0.00625
- BIOS - iommu - disabled
- BIOS - SRV-IOV - disabled
- setting cpu governor to performance
- changing out the PSU , currently i have a Seasonic S12II-620 , real load is around 100W measured . before that i had SSP-350GT
- Ubuntu 19.10 (19.04 same problem)
- Ryzen R5 3600
- ASUS PRIME B450-PLUS
- 4x16GB 2666MHz. CL13 HyperX Predator Black Kingston XMP
- AMD HD7850 (yes i know it's old)
- PSU Seasonic S12II-620
- NVMe SSD INTEL SSDPEKNW512G8
- i think the kernel panics are more probable after resume from sleep, still i had freezes from normal boot.
- maybe it takes longer to panic on cpu governor performance.
BOOT_IMAGE=/boot/vmlinuz-5.3.0-23-generic root=/dev/mappenvm1-michal--ubuntu--mate--system ro debug ignore_loglevel mitigations=off radeon.dpm=0 radeon.audio=0 pcie_aspm=off processor.max_cstate=1 rcu_nocbs=0-11 idle=nomwait iommu=softZenstates.py
P0 - Enabled - FID = 90 - DID = 8 - VID = 48 - Ratio = 36.00 - vCore = 1.10000 P1 - Enabled - FID = 8C - DID = A - VID = 58 - Ratio = 28.00 - vCore = 1.00000 P2 - Enabled - FID = 84 - DID = C - VID = 68 - Ratio = 22.00 - vCore = 0.90000 P3 - Disabled P4 - Disabled P5 - Disabled P6 - Disabled P7 - Disabled C6 State - Package - Disabled C6 State - Core - Disabledexample panic netconsole:
[12652.028650] BUG: unable to handle page fault for address: 000003d0a289ec50 [12652.028657] #PF: supervisor instruction fetch in kernel mode [12652.028658] #PF: error_code(0x0010) - not-present page [12652.028660] PGD df7ab5067 P4D df7ab5067 PUD 0 [12652.028663] Oops: 0010 [#1] SMP NOPTI [12652.028666] CPU: 10 PID: 0 Comm: swappe10 Tainted: P OE 5.3.0-23-generic #25-Ubuntu [12652.028667] Hardware name: System manufacturer System Product Name/PRIME B450-PLUS, BIOS 1823 10/15/2019 [12652.028670] RIP: 0010:0x3d0a289ec50 [12652.028673] Code: Bad RIP value. [12652.028674] RSP: 0018:ffff97d3c00f3e78 EFLAGS: 00010246 [12652.028676] RAX: ffffffffa289ec30 RBX: 000000000000000a RCX: 0000000000000001 [12652.028677] RDX: 0000000001ae78c2 RSI: ffff97d3c00f3e30 RDI: 00000b81b1dd1169 [12652.028734] RBP: ffff97d3c00f3e90 R08: 00000b81c74da491 R09: 0000000000000001 [12652.028735] R10: ffff89a85e8973c8 R11: 0000000000000000 R12: 000000000000000a [12652.028737] R13: ffff89a8582cdc00 R14: 0000000000000000 R15: 0000000000000000 [12652.028738] FS: 0000000000000000(0000) GS:ffff89a85e880000(0000) knlGS:0000000000000000 [12652.028740] CS: 0010 DS: 0000 ES: 0000 CR0: 0000000080050033 [12652.028794] CR2: 000003d0a289ec26 CR3: 0000000dfe912000 CR4: 0000000000340ee0 [12652.028849] Call Trace: [12652.028854] arch_cpu_idle+0x15/0x20 [12652.028857] default_idle_call+0x23/0x30 [12652.028860] do_idle+0x1fb/0x270 [12652.028862] cpu_startup_entry+0x20/0x30 [12652.028864] start_secondary+0x168/0x1c0 [12652.028920] secondary_startup_64+0xa4/0xb0 [12652.028922] Modules linked in: hwmon_vid dm_crypt xt_CHECKSUM xt_MASQUERADE xt_conntrack ipt_REJECT nf_reject_ipv4 xt_tcpudp ip6table_mangle ip6table_nat iptable_mangle iptable_nat nf_nat nf_conntrack nf_defrag_ipv6 nf_defrag_ipv4 ebtable_filter ebtables ip6table_filter ip6_tables iptable_filter bpfilter bridge stp llc zfs(POE) zunicode(POE) zavl(POE) icp(POE) zlua(POE) zcommon(POE) znvpair(POE) spl(OE) edac_mce_amd kvm_amd sch_fq_codel snd_hda_codec_realtek snd_hda_codec_generic ledtrig_audio snd_hda_codec_hdmi snd_hda_intel snd_usb_audio snd_hda_codec snd_usbmidi_lib snd_hda_core snd_hwdep snd_pcm snd_seq_midi snd_seq_midi_event uvcvideo kvm snd_rawmidi videobuf2_vmalloc snd_seq videobuf2_memops videobuf2_v4l2 snd_seq_device snd_timer irqbypass videobuf2_common eeepc_wmi snd asus_wmi videodev sparse_keymap video wmi_bmof joydev mc input_leds k10temp ccp soundcore mac_hid netconsole parport_pc ppdev lp parport ip_tables x_tables autofs4 raid10 raid456 async_raid6_recov async_memcpy [12652.028948] async_pq async_xor async_tx xor raid6_pq libcrc32c raid0 multipath linear hid_generic usbhid hid amdgpu amd_iommu_v2 gpu_sched raid1 radeon crct10dif_pclmul crc32_pclmul ghash_clmulni_intel i2c_algo_bit ttm drm_kms_helper aesni_intel syscopyarea aes_x86_64 crypto_simd sysfillrect cryptd sysimgblt glue_helper fb_sys_fops drm r8169 nvme i2c_piix4 ahci realtek nvme_core libahci wmi gpio_amdpt gpio_generic [last unloaded: cpuid] [12652.029071] CR2: 000003d0a289ec50 [12652.029077] ---[ end trace 2de9825a9b0c400f ]--- [12652.029079] RIP: 0010:0x3d0a289ec50 [12652.029081] Code: Bad RIP value. [12652.029082] RSP: 0018:ffff97d3c00f3e78 EFLAGS: 00010246 [12652.029137] RAX: ffffffffa289ec30 RBX: 000000000000000a RCX: 0000000000000001 [12652.029138] RDX: 0000000001ae78c2 RSI: ffff97d3c00f3e30 RDI: 00000b81b1dd1169 [12652.029139] RBP: ffff97d3c00f3e90 R08: 00000b81c74da491 R09: 0000000000000001 [12652.029140] R10: ffff89a85e8973c8 R11: 0000000000000000 R12: 000000000000000a [12652.029141] R13: ffff89a8582cdc00 R14: 0000000000000000 R15: 0000000000000000 [12652.029143] FS: 0000000000000000(0000) GS:ffff89a85e880000(0000) knlGS:0000000000000000 [12652.029144] CS: 0010 DS: 0000 ES: 0000 CR0: 0000000080050033 [12652.029145] CR2: 000003d0a289ec26 CR3: 0000000dfe912000 CR4: 0000000000340ee0 [12652.029147] Kernel panic - not syncing: Attempted to kill the idle task! [12652.029307] Kernel Offset: 0x20e00000 from 0xffffffff81000000 (relocation range: 0xffffffff80000000-0xffffffffbfffffff) [12652.029318] ---[ end Kernel panic - not syncing: Attempted to kill the idle task! ]---BUG: soft lockup
[12860.718853] watchdog: BUG: soft lockup - CPU#5 stuck for 22s! [Thread-841:24978] [12860.718857] Modules linked in: dm_crypt xt_CHECKSUM xt_MASQUERADE xt_conntrack ipt_REJECT nf_reject_ipv4 xt_tcpudp ip6table_mangle ip6table_nat iptable_mangle iptable_nat nf_nat nf_conntrack nf_defrag_ipv6 nf_defrag_ipv4 ebtable_filter ebtables ip6table_filter ip6_tables iptable_filter bpfilter bridge stp llc sch_fq_codel zfs(POE) zunicode(POE) zavl(POE) icp(POE) zlua(POE) zcommon(POE) znvpair(POE) spl(OE) snd_hda_codec_realtek snd_hda_codec_generic ledtrig_audio snd_hda_codec_hdmi snd_hda_intel snd_usb_audio snd_hda_codec snd_usbmidi_lib snd_hda_core snd_hwdep snd_seq_midi snd_seq_midi_event snd_rawmidi snd_seq edac_mce_amd snd_pcm uvcvideo videobuf2_vmalloc videobuf2_memops videobuf2_v4l2 snd_seq_device kvm_amd videobuf2_common videodev kvm snd_timer eeepc_wmi mc asus_wmi joydev irqbypass sparse_keymap snd input_leds k10temp wmi_bmof video soundcore ccp mac_hid netconsole parport_pc ppdev lp parport ip_tables x_tables autofs4 raid10 raid456 async_raid6_recov async_memcpy async_pq [12860.718880] async_xor async_tx xor raid6_pq libcrc32c raid0 multipath linear hid_generic usbhid hid amdgpu amd_iommu_v2 gpu_sched raid1 crct10dif_pclmul crc32_pclmul ghash_clmulni_intel radeon i2c_algo_bit ttm aesni_intel drm_kms_helper aes_x86_64 crypto_simd syscopyarea sysfillrect cryptd sysimgblt glue_helper fb_sys_fops drm i2c_piix4 r8169 nvme ahci realtek nvme_core libahci wmi gpio_amdpt gpio_generic [12860.718897] CPU: 5 PID: 24978 Comm: Thread-841 Tainted: P OEL 5.3.0-23-generic #25-Ubuntu [12860.718900] Hardware name: System manufacturer System Product Name/PRIME B450-PLUS, BIOS 2006 11/13/2019 [12860.718904] RIP: 0010:smp_call_function_single+0xdc/0x110 [12860.718907] Code: 8b 4c 24 38 65 48 33 0c 25 28 00 00 00 75 3b c9 c3 4c 89 c2 4c 89 c9 48 89 e6 e8 3f fe ff ff 8b 54 24 18 83 e2 01 74 0b f3 90 <8b> 54 24 18 83 e2 01 75 f5 eb ca 8b 05 53 c6 a3 01 85 c0 75 80 0f [12860.718910] RSP: 0018:ffffa01d52353ba0 EFLAGS: 00000202 ORIG_RAX: ffffffffffffff13 [12860.718917] RAX: 0000000000000000 RBX: 0000000000000009 RCX: 0000000000000000 [12860.718919] RDX: 0000000000000001 RSI: 00000000000000fb RDI: 0000000000000202 [12860.718922] RBP: ffffa01d52353bf8 R08: ffffffffad887fc0 R09: ffff8a281e76a080 [12860.718924] R10: ffff8a27d64d01d8 R11: 0000000000007b4a R12: ffffffffad887fc0 [12860.718927] R13: ffff8a281e76a080 R14: 0000000000000001 R15: ffff8a27d64d01d8 [12860.718930] FS: 00007f5240fd1700(0000) GS:ffff8a281e740000(0000) knlGS:0000000000000000 [12860.718933] CS: 0010 DS: 0000 ES: 0000 CR0: 0000000080050033 [12860.718936] CR2: 00007f5288158000 CR3: 0000000f66682000 CR4: 0000000000340ee0 [12860.719006] Call Trace: [12860.719010] ? flush_tlb_func_common.constprop.0+0x220/0x220 [12860.719013] ? __dec_node_page_state+0x1d/0x20 [12860.719016] ? cpumask_next_and+0x1e/0x20 [12860.719020] smp_call_function_many+0x23b/0x270 [12860.719023] ? flush_tlb_func_common.constprop.0+0x220/0x220 [12860.719030] on_each_cpu_mask+0x29/0x70 [12860.719033] ? x86_configure_nx+0x50/0x50 [12860.719037] on_each_cpu_cond_mask+0xa8/0x130 [12860.719041] native_flush_tlb_others+0xc7/0x130 [12860.719044] flush_tlb_mm_range+0xb4/0xe0 [12860.719047] tlb_flush_mmu+0xb0/0x140 [12860.719051] tlb_finish_mmu+0x42/0x80 [12860.719054] zap_page_range+0x125/0x180 [12860.719059] __do_sys_madvise+0x691/0x900 [12860.719063] __x64_sys_madvise+0x1a/0x20 [12860.719067] ? __x64_sys_madvise+0x1a/0x20 [12860.719070] do_syscall_64+0x5a/0x130 [12860.719074] entry_SYSCALL_64_after_hwframe+0x44/0xa9 [12860.719077] RIP: 0033:0x7f5288026c8b [12860.719080] Code: c3 48 8b 15 07 e2 0c 00 f7 d8 64 89 02 b8 ff ff ff ff eb c2 66 2e 0f 1f 84 00 00 00 00 00 90 f3 0f 1e fa b8 1c 00 00 00 0f 05 <48> 3d 01 f0 ff ff 73 01 c3 48 8b 0d d5 e1 0c 00 f7 d8 64 89 01 48 [12860.719083] RSP: 002b:00007f5240fd0ef8 EFLAGS: 00000206 ORIG_RAX: 000000000000001c [12860.719086] RAX: ffffffffffffffda RBX: 00007f5240fd1700 RCX: 00007f5288026c8b [12860.719089] RDX: 0000000000000004 RSI: 00000000000fb000 RDI: 00007f5240ed1000 [12860.719091] RBP: 00007f5240ed1000 R08: 0000000000000000 R09: 0000000000000001 [12860.719094] R10: 0000000000000008 R11: 0000000000000206 R12: 00007f51354f427e [12860.719096] R13: 00007f51354f427f R14: 00007f51354f4310 R15: 00007f5240fd0fc0another one:
[ 2981.639030] general protection fault: 0000 [#1] SMP NOPTI [ 2981.639038] CPU: 4 PID: 7600 Comm: Xorg:rcs0 Tainted: P OE 5.3.0-23-generic #25-Ubuntu [ 2981.639040] Hardware name: System manufacturer System Product Name/PRIME B450-PLUS, BIOS 2006 11/13/2019 [ 2981.639045] RIP: 0010:ww_mutex_lock_interruptible+0x25/0x90 [ 2981.639047] Code: 00 00 00 00 00 0f 1f 44 00 00 55 48 89 e5 41 56 41 55 49 89 f5 41 54 49 89 fc e8 26 e4 ff ff 31 c0 65 48 8b 14 25 c0 6b 01 00
49 0f b1 14 24 74 13 4c 89 ee 4c 89 e7 e8 a8 ff ff ff 41 5c 41 [ 2981.639048] RSP: 0018:ffffa8935828b6f8 EFLAGS: 00010246 [ 2981.639051] RAX: 0000000000000000 RBX: ffffa8935828bae8 RCX: ffff8a8b51d51701 [ 2981.639052] RDX: ffff8a8b51d51700 RSI: ffffa8935828bc90 RDI: 5d8b49ec99373be8 [ 2981.639054] RBP: ffffa8935828b710 R08: 0000000000000000 R09: ffff8a8a21ff0988 [ 2981.639055] R10: ffff8a8a21ff0000 R11: 000000000000000a R12: 5d8b49ec99373be8 [ 2981.639057] R13: ffffa8935828bc90 R14: ffffa8935828ba50 R15: ffff8a8a21ff0708 [ 2981.639059] FS: 00007fee1050a700(0000) GS:ffff8a8b9e700000(0000) knlGS:0000000000000000 [ 2981.639060] CS: 0010 DS: 0000 ES: 0000 CR0: 0000000080050033 [ 2981.639062] CR2: 000030f4ef38f000 CR3: 0000000f908b2000 CR4: 0000000000340ee0 [ 2981.639063] Call Trace: [ 2981.639070] ? ttm_eu_reserve_buffers+0x160/0x2f0 [ttm] [ 2981.639073] ttm_eu_reserve_buffers+0x160/0x2f0 [ttm] [ 2981.639088] radeon_bo_list_validate+0xc5/0x280 [radeon] [ 2981.639092] ? radix_tree_lookup+0xd/0x10 [ 2981.639104] radeon_cs_parser_relocs+0x2bb/0x420 [radeon] [ 2981.639116] radeon_cs_ioctl+0x229/0x7f0 [radeon] [ 2981.639127] ? radeon_cs_parser_init+0x30/0x30 [radeon] [ 2981.639135] drm_ioctl_kernel+0xae/0xf0 [drm] [ 2981.639139] ? native_smp_send_reschedule+0x2a/0x40 [ 2981.639146] drm_ioctl+0x234/0x3d0 [drm] [ 2981.639156] ? radeon_cs_parser_init+0x30/0x30 [radeon] [ 2981.639159] ? try_to_wake_up+0x224/0x6a0 [ 2981.639169] radeon_drm_ioctl+0x4e/0x80 [radeon] [ 2981.639172] do_vfs_ioctl+0x407/0x670 [ 2981.639175] ? do_futex+0x160/0x1e0 [ 2981.639177] ksys_ioctl+0x67/0x90 [ 2981.639179] __x64_sys_ioctl+0x1a/0x20 [ 2981.639182] do_syscall_64+0x5a/0x130 [ 2981.639185] entry_SYSCALL_64_after_hwframe+0x44/0xa9 [ 2981.639187] RIP: 0033:0x7fee167c267b [ 2981.639189] Code: 0f 1e fa 48 8b 05 15 28 0d 00 64 c7 00 26 00 00 00 48 c7 c0 ff ff ff ff c3 66 0f 1f 44 00 00 f3 0f 1e fa b8 10 00 00 00 0f 05 <48> 3d 01 f0 ff ff 73 01 c3 48 8b 0d e5 27 0d 00 f7 d8 64 89 01 48 [ 2981.639190] RSP: 002b:00007fee10509ab8 EFLAGS: 00000246 ORIG_RAX: 0000000000000010 [ 2981.639192] RAX: ffffffffffffffda RBX: 00007fee0c10f108 RCX: 00007fee167c267b [ 2981.639194] RDX: 00007fee0c10f108 RSI: 00000000c0206466 RDI: 0000000000000010 [ 2981.639195] RBP: 00000000c0206466 R08: 0000000000000000 R09: 0000000000000000 [ 2981.639197] R10: 0000000000000000 R11: 0000000000000246 R12: 0000555c005bbe18 [ 2981.639256] R13: 0000000000000010 R14: 00007fee0c1131d0 R15: 0000555c005bbdb8 [ 2981.639258] Modules linked in: vhost_net vhost macvtap macvlan tap msr dm_crypt xt_CHECKSUM xt_MASQUERADE xt_conntrack ipt_REJECT nf_reject_ipv4 xt_tcpudp ip6table_mangle ip6table_nat iptable_mangle iptable_nat nf_nat nf_conntrack nf_defrag_ipv6 nf_defrag_ipv4 ebtable_filter ebtables ip6table_filter ip6_tables iptable_filter bpfilter bridge stp llc sch_fq_codel zfs(POE) zunicode(POE) zavl(POE) icp(POE) zlua(POE) zcommon(POE) znvpair(POE) spl(OE) snd_hda_codec_realtek snd_hda_codec_generic ledtrig_audio snd_hda_codec_hdmi snd_hda_intel snd_usb_audio snd_hda_codec snd_hda_core snd_usbmidi_lib snd_hwdep snd_pcm snd_seq_midi snd_seq_midi_event snd_rawmidi snd_seq uvcvideo videobuf2_vmalloc edac_mce_amd videobuf2_memops snd_seq_device videobuf2_v4l2 snd_timer videobuf2_common videodev kvm_amd mc eeepc_wmi snd kvm asus_wmi irqbypass sparse_keymap video wmi_bmof k10temp joydev input_leds soundcore ccp mac_hid netconsole parport_pc ppdev lp parport ip_tables x_tables autofs4 raid10 raid456 [ 2981.639284] async_raid6_recov async_memcpy async_pq async_xor async_tx xor raid6_pq libcrc32c raid0 multipath linear hid_generic usbhid hid amdgpu amd_iommu_v2 gpu_sched raid1 crct10dif_pclmul crc32_pclmul radeon ghash_clmulni_intel i2c_algo_bit aesni_intel ttm drm_kms_helper aes_x86_64 syscopyarea crypto_simd sysfillrect sysimgblt cryptd glue_helper fb_sys_fops drm r8169 i2c_piix4 nvme ahci realtek nvme_core libahci wmi gpio_amdpt gpio_generic [ 2981.639352] ---[ end trace 525b831e029c19c7 ]--- [ 2981.639354] RIP: 0010:ww_mutex_lock_interruptible+0x25/0x90 [ 2981.639355] Code: 00 00 00 00 00 0f 1f 44 00 00 55 48 89 e5 41 56 41 55 49 89 f5 41 54 49 89 fc e8 26 e4 ff ff 31 c0 65 48 8b 14 25 c0 6b 01 00 49 0f b1 14 24 74 13 4c 89 ee 4c 89 e7 e8 a8 ff ff ff 41 5c 41 [ 2981.639357] RSP: 0018:ffffa8935828b6f8 EFLAGS: 00010246 [ 2981.639358] RAX: 0000000000000000 RBX: ffffa8935828bae8 RCX: ffff8a8b51d51701 [ 2981.639360] RDX: ffff8a8b51d51700 RSI: ffffa8935828bc90 RDI: 5d8b49ec99373be8 [ 2981.639361] RBP: ffffa8935828b710 R08: 0000000000000000 R09: ffff8a8a21ff0988 [ 2981.639362] R10: ffff8a8a21ff0000 R11: 000000000000000a R12: 5d8b49ec99373be8 [ 2981.639363] R13: ffffa8935828bc90 R14: ffffa8935828ba50 R15: ffff8a8a21ff0708 [ 2981.639365] FS: 00007fee1050a700(0000) GS:ffff8a8b9e700000(0000) knlGS:0000000000000000 [ 2981.639366] CS: 0010 DS: 0000 ES: 0000 CR0: 0000000080050033 [ 2981.639368] CR2: 000030f4ef38f000 CR3: 0000000f908b2000 CR4: 0000000000340ee0
Mega Nests: where did they come from and what can be done about them?
In order to explore the intricacies of what the community has come to term “mega nests”, it is important to first understand the basics behind Pokémon GO’s nest feature.
Some of the key facts to know about nests are:
- Niantic does not use the term “nest” in official contexts. Instead they will make statements along the lines of “different Pokémon may appear in parks around you” when referring to aspects of the feature .
- Nests are locations in Pokémon GO where a particular species is more likely to appear. It is generally accepted that around 25% of all spawns at a nest will be the nesting species.
- Nests are associated with certain mapped areas from Open Street Map (OSM). Each nesting area will have a single nesting species. Spawn points that occur within these areas display nesting properties.
- In order for an OSM area to be a nest in Pokémon GO, it must have a nesting tag associated with it. Tags are used in OSM in order to designate and identify what map features are. For example, tags are used help mark features such as houses, parks, trees, forests, rivers and roads.
- It is possible to have a nest within a nest, or nested nests if you will. This commonly occurs in situations such as a playground being mapped within a park or a pitch being marked within a recreation ground.
- A nesting area being present on OSM does not guarantee that it will contain spawn points. This means Pokémon do not always spawn in all potential nesting areas.
- Niantic does not use live OSM data in Pokémon GO. Currently, nesting areas are based on OSM map data from the 9th of April, 2018.
- While some nests appear on the game map as dark green, the visual data used by Pokémon Go is from a different date. Additionally, only a select handful of nesting tags show as dark green (parks, golf courses and recreation grounds).
- Nests migrate once every two weeks, and also after certain updates.
- Unlike EX raid gyms, nests support OSM relations. This means more areas can be nests.
Over the past years, the Pokémon GO community has identified a number of tags that can cause nests. Some of these tags are only used a handful of times around the globe. It is possible that this list is not complete, with some niche nesting tags left undiscovered:
"leisure"="golfcourse", "leisure"="park", "landuse"="farmland", "landuse"="farmyard", "leisure"="garden", "landuse"="grass", "landuse"="meadow", "landuse"="orchard", "landuse"="recreation_ground", "leisure"="recreation_ground", "landuse"="vineyard", "leisure"="pitch", "leisure"="playground", "natural"="grassland", "natural"="heath", "natural"="scrub", "natural"="plateau", "natural"="moor" and "landuse"="greenfield"
These tags are broadly associated with natural, agricultural and leisure land uses. Though, there are some notably absent tags in this list. One missing tag is “natural”=”wetland”, which is known to completely block spawns. Another absent tag is “leisure”=”nature_reserve”, which has suggested to have nesting properties in some Niantic communications, but does not actually nest on its own.
What is a mega nest?:
The term mega nest is commonly used by the Pokémon Go community to describe very large nests. For the sake of this post, we will define a mega nest as the following:
A very large nest that encompasses a large number of distinct and unrelated land uses over a significant geographic area.
Why are mega nests a problem?:
There are two primary complaints regarding mega nests:
- The current nesting pool is made up of a significant number of generally uninspiring Pokémon species. As nests override approximately a quarter of all spawns, areas covered by mega nests are flooded by these Pokémon for weeks at a time.
- Mega nests appear to override event spawns in certain contexts, such as the otherwise increased Psyduck spawns from the global component of the Porto Alegre Safari Zone event. Trainers living deep within mega nests have to travel significant distances to make the most out of events.
There are two major cities that overlap well known mega nests, however, both have different causes and potentially different solutions. We are able to apply our understanding of nests to explore how these mega nests function and why they exist.
Long Island landmass, New York:
The entirety of the Long Island landmass is a mega nest. In this case, the nest is the result of a mapper assigning the “natural”=”scrub” tag to the island while attempting to map bird habitats. While it was an unintentional edit that was quickly corrected, Niantic’s nest data was sourced before it was fixed. The Long Island mega nest came into being with the April 2018 map update. This update saw nests, spawns and blocked areas changed to reflect OSM data from earlier that same month.
Of the cities most impacted by mega nests, New York is likely the easier of the two to fix. There are a number of ways this could be done:
- Update nesting data to a more current version of the OSM map. The offending natural=scrub tag was only present for a matter of hours. Updating to practically any other map version would remove this nest.
- Manually remove the natural=scrub tag from the Long Island landmass’s relation in the existing map version that Niantic is using.
Affected area: Relation 3955977 (Long Island)
Scrub Changeset: #57926221
Scrub Removed Changeset: #57928718
Glien, Nauener, Teltow, Barnim and Lebus Plateaus, Berlin:
Berlin was one of (if not the) first cities to be influenced by mega nests. In this case, they are linked to a series of large “natural”=”plateau” areas mapped in and around Berlin.
Unlike the case of Long Island, the Berlin mega nests are technically the result of valid OSM edits and should not be removed*. Updating to a new version of OSM data will not fix the Berlin mega nests as they are still present on the OSM map.
*At this time, one plateau has been modified. This is possibly an undiscussed change and there’s a chance it will be reverted.
- Remove “natural”=”plateau” from the list of nesting tags. This tag is only used a small handful of times globally. Outside of Berlin, the tag typically occurs in very remote locations. Several of the current uses of the tag appear to have been applied incorrectly, which lowers the number of valid uses of the tag even further.
- Manually disable the nests linked to the 5 plateaus around Berlin.
Affected areas: Relation 2218269 (Barnim), Relation 2218272 (Lebus), Relation 2218275 (Teltow), Relation 2218273 (Nauener Platte), and Relation 2218271 (Glien)
In their own right, mega nests have led to a number of important insights into otherwise hidden game mechanics for the Pokémon Go community. But, for everything we can learn by observing these locations, they impact far too many trainers to be something that is left ignored.
Some have said that other trainers such as those who live in rural locations may have things worse. This is probably true, however, fixing one issue does not have to come at the cost of fixing others.
The causes and problems associated with mega nests have been clearly identified by the community for some time. Hopefully, Nianic has also come to similar findings either through their own efforts or following along with community discussions, and we will see solutions to these issues in the near future.
Mandatory link to Tips for new (Pokemon Go) mappers: https://wiki.openstreetmap.org/wiki/Tips_for_new_(Pokemon_Go)_mappers)