# đŸ–„ïž Hypervisory a virtualizačnĂ­ platformy ## Typy hypervisorĆŻ | Typ | Popis | Pƙíklady | |-----|-------|----------| | **Type 1** (bare-metal) | BÄ›ĆŸĂ­ pƙímo na hardware | VMware ESXi, Microsoft Hyper-V, KVM, Xen | | **Type 2** (hosted) | BÄ›ĆŸĂ­ nad OS hostitele | VirtualBox, VMware Workstation, Parallels | ## Pƙehled platforem | Platforma | Hypervisor | Licence | PoznĂĄmka | |-----------|-----------|---------|----------| | **VMware vSphere** | ESXi | Proprietary (Subscription od 2024) | TrĆŸnĂ­ lĂ­dr, ĆĄirokĂĄ adopce. Po akvizici Broadcomem (2023) pƙeĆĄlo na per-core subscription, ukončen perpetual license | | **Microsoft Hyper-V** | Hyper-V | Windows Server / standalone | Integrace s Azure, SCVMM | | **Proxmox VE** | KVM + LXC | Open source | Debian-based, web UI, levnĂœ | | **Red Hat OpenStack / oVirt** | KVM | Open source | OtevƙenĂĄ alternativa, komplexnĂ­ | | **Nutanix AHV** | KVM (fork) | Součást Nutanix | IntegrovanĂ© HCI ƙeĆĄenĂ­ | | **XCP-ng / Xen Server** | Xen | Open source | NĂĄstupce Citrix Hypervisor | | **Oracle VM** | Xen | Proprietary | Oracle ekosystĂ©m | ## KlíčovĂ© koncepty - **VM — Virtual Machine** — plnĂĄ virtualizace, vlastnĂ­ kernel - **Container** — sdĂ­lenĂœ kernel hostitele, lehčí (Docker, LXC) - **Paravirtualizace** — guest OS vĂ­, ĆŸe bÄ›ĆŸĂ­ ve VM (lepĆĄĂ­ vĂœkon I/O) - **NUMA** — Non-Uniform Memory Access, optimalizace pƙidělovĂĄnĂ­ CPU/memory (viz [SERVER-HW.md](SERVER-HW.md#numa)) - **Overcommit** — pƙidělenĂ­ vĂ­ce vCPU/RAM neĆŸ je fyzicky (ƙízenĂ­ poměru) - **Live Migration** — pƙesun bÄ›ĆŸĂ­cĂ­ VM mezi hosty (vSphere vMotion, Hyper-V Live Migration) - **HA (High Availability)** — restart VM na jinĂ©m hostu pƙi selhĂĄnĂ­ - **DRS / Load Balancing** — automatickĂĄ distribuce VM podle vytĂ­ĆŸenĂ­ ## VMware vSphere ### VMware licensing (post-Broadcom 2024+) Od roku 2024 VMware prodĂĄvĂĄ pouze subscription license, perpetual + SnS (Support & Subscription) byly ukončeny. | Produkt | Metrika | Cena (orientačnĂ­) | Co obsahuje | |---------|---------|-------------------|-------------| | **vSphere Standard** | Per core (min 16 cores/CPU) | ~$140/core/rok | ESXi, vCenter, vMotion, HA, DRS basic | | **vSphere Enterprise Plus** | Per core | ~$220/core/rok | VĆĄe vĂœĆĄe + DRS advanced, SIOC, NIOC, Big Data Extensions | | **vSphere Foundation** | Per core (balíček) | ~$350/core/rok | VSphere Enterprise Plus + Aria Operations, Aria Operations for Logs, Aria Automation | | **VMware Cloud Foundation (VCF)** | Per core (balíček) | ~$700/core/rok | VSphere + vSAN + NSX + Aria celĂĄ sada. VyĆŸadovĂĄno pro vSAN a NSX od 2025 | | **vSAN** | Per core (pouze jako součást VCF od 2025) | JiĆŸ nenĂ­ standalone | Storage virtualization, dedup, compression, encryption | | **NSX** | Per core (pouze jako součást VCF od 2025) | JiĆŸ nenĂ­ standalone | SDN, micro-segmentace, firewall, load balancing | **KlíčovĂ© změny po Broadcom akvizici**: - Ukončen prodej perpetual licencĂ­ (květen 2024) - Ukončeny samostatnĂ© produkty: vSAN a NSX jiĆŸ nelze koupit standalone (pouze v rĂĄmci VCF) - ZruĆĄeny desktopovĂ© a ROBO varianty (migrovĂĄno na VCF) - PrĆŻměrnĂœ nĂĄrĆŻst nĂĄkladĆŻ: 2-5× oproti pƙedchozĂ­mu modelu (zĂĄvisĂ­ na velikosti a produktovĂ©m mixu) - **Dopad**: Mnoho zĂĄkaznĂ­kĆŻ migruje na Proxmox VE, Nutanix AHV nebo Hyper-V **Per-core kalkulace**: ```text Server: 2× EPYC 9654 (96C each) = 192 cores vSphere Standard: 192 × $140 = $26 880/rok VCF: 192 × $700 = $134 400/rok (vč. vSAN a NSX) Pro srovnĂĄnĂ­: dƙíve perpetual + SnS ≈ $15 000 jednorĂĄzově + $3 000/rok ``` ### Exit strategie z VMware (post-Broadcom 2024+) #### Kontext Po akvizici VMware společnostĂ­ Broadcom (dokončeno listopad 2023) doĆĄlo k největĆĄĂ­mu otƙesu na trhu virtualizace v historii. Změny zahrnujĂ­: - **UkončenĂ­ perpetual licencĂ­** (Ășnor 2024) — povinnĂœ subscription model - **Forced bundling** — 8000+ SKU zredukovĂĄno na 4 balíčky (VCF, VVF, vSphere Standard/Foundation) - **MinimĂĄlnĂ­ zĂĄvazek 72 cores** (od dubna 2025) — nelze licencovat malĂ© servery - **20% penalizace za pozdnĂ­ obnovu** — ĆŸĂĄdnĂĄ tolerance - **CenovĂœ nĂĄrĆŻst 150–1500 %** dle velikosti a produktovĂ©ho mixu - **ZĂĄnik samostatnĂœch produktĆŻ** — vSAN a NSX pouze v rĂĄmci VCF - **Kolaps partnerskĂ©ho ekosystĂ©mu** — z 4500+ partnerĆŻ na ~300 Premier Dle Foundry/CIO.com prĆŻzkumu (2025): **56 %** organizacĂ­ plĂĄnuje snĂ­ĆŸit vyuĆŸitĂ­ VMware, **71 %** aktivně hledĂĄ on-premise alternativy. Gartner predikuje ztrĂĄtu ~35 % workloadĆŻ do 3 let. #### Tƙi strategie | Strategie | Popis | VhodnĂ© pro | |-----------|-------|------------| | **Stay** | Pƙijmout novĂ© ceny, obnovit VCF/VVF pƙedplatnĂ© | VelkĂ© organizace s hlubokou integracĂ­, kde migrace stojĂ­ vĂ­c neĆŸ novĂ© licence | | **Reduce** | SnĂ­ĆŸit VMware footprint, migrovat část workloadĆŻ na alternativy, zbytek optimalizovat | StƙednĂ­ a velkĂ© firmy s heterogennĂ­m prostƙedĂ­m | | **Exit** | KompletnĂ­ migrace na alternativnĂ­ platformu | SME, organizace s rostoucĂ­mi nĂĄklady 3-6×, greenfield projekty | #### CĂ­lovĂ© platformy — srovnĂĄnĂ­ | KritĂ©rium | Proxmox VE | Nutanix AHV | Microsoft Hyper-V | Red Hat OpenShift Virtualization | |-----------|-----------|-------------|-------------------|----------------------------------| | **Hypervisor** | KVM + LXC | KVM (fork) | Hyper-V | KVM (KubeVirt) | | **Licence** | Open source (free), support ~€500/host/rok | Per node subscription (30–60 % savings oproti VCF) | Windows Server license (Standard/Datacenter) | OpenShift subscription (core-based) | | **Live Migration** | Live Migration (Proxmox 8+) | AHV Live Migration | Live Migration (SMB/RDMA) | KubeVirt (VMI live migration) | | **HA** | Proxmox HA (watchdog, fencing) | Built-in HA (Prism) | Hyper-V HA (WS Failover Cluster) | OpenShift HA (self-healing) | | **Storage** | ZFS, Ceph, LVM | AOS (hybrid/SSD, erasure coding) | S2D, CSV, ReFS | OCS, Ceph, LSO | | **Backup** | Proxmox Backup Server (free) | Native snapshot + DR | Windows Server Backup / Veeam | OpenShift APIs + OADP | | **Cena (3 roky, 3 hosty)** | $0 + support $1 500 | ~$45 000–60 000 | $0 (Hyper-V Server zdarma) nebo Windows Server lic. | ~$90 000+ (OpenShift) | | **Cena (3 roky, 10 hostĆŻ)** | $0 + support $5 000 | ~$150 000–200 000 | Windows Server Datacenter pro neomezenĂ© VM | ~$300 000+ (OpenShift) | | **NĂĄročnost migrace** | StƙednĂ­ (VMDK → QCOW2, VirtIO drivery) | NĂ­zkĂĄ (Nutanix Move tool) | StƙednĂ­ (V2V converter, SCVMM) | VysokĂĄ (Kubernetes learning curve) | | **Linux podpora** | VĂœbornĂĄ (nativnĂ­ KVM) | VĂœbornĂĄ (KVM-based) | DobrĂĄ (LIS drivers) | VĂœbornĂĄ (KVM + OpenShift) | | **Windows podpora** | DobrĂĄ (VirtIO drivers) | VĂœbornĂĄ (ALAS drivers, svpd) | VĂœbornĂĄ (nativnĂ­) | DobrĂĄ (KubeVirt + VirtIO) | | **GPU passthrough** | VFIO (vĂœbornĂĄ) | GPU passthrough | DDA (Direct Device Assignment) | VFIO + GPU Operator | #### MigračnĂ­ nĂĄstroje | NĂĄstroj | ZdrojovĂĄ platforma | CĂ­lovĂĄ platforma | Metoda | |---------|-------------------|-------------------|--------| | **Proxmox VMware Import Wizard** | VMware ESXi | Proxmox VE | Web GUI import pƙes NFS/ESXi API. OmezenĂ­: nutnĂ© ukončit snapshoty, nepodporuje UEFI do Proxmox 8.1 | | **Nutanix Move** | VMware ESXi, Hyper-V | Nutanix AHV | VirtuĂĄlnĂ­ appliance, automatizovanĂĄ migrace s minimĂĄlnĂ­m downtime, podpora UEFI, moĆŸnost retain IP/MAC | | **Veeam Backup & Replication v12.2+** | VMware ESXi | Proxmox VE | Backup/restore pƙes Veeam, hot migration, podpora Proxmox od v12.2 | | **StarWind V2V Converter** | VMware ESXi | Proxmox, Hyper-V, XCP-ng | Free GUI tool, VMDK → QCOW2/raw/VHDX, CLI support, hot migrations | | **virt-v2v** | VMware ESXi, Xen, Hyper-V | KVM (libvirt) | Open source CLI nĂĄstroj, konverze diskĆŻ + driverĆŻ (virtio), vhodnĂœ pro hromadnou migraci | | **Windows Admin Center VM Conversion Extension** | VMware ESXi | Hyper-V | Microsoft WAC extension, free, GUI-based, hromadnĂĄ migrace | | **Platform9 vJailbreak** | VMware ESXi | OpenStack / KVM | In-place migration (bez swing gear), open source | #### TCO srovnĂĄnĂ­ — pƙíklad: 3 hosty (2× 20C CPU), 50 VM | Platforma | 1. rok | 3 roky celkem | PoznĂĄmka | |-----------|--------|---------------|----------| | **VMware VVF** (1-year rate) | $22 800 | $68 400 | 120 cores × $190/core/rok | | **VMware VCF** | $42 000 | $126 000 | 120 cores × $350/core/rok | | **Proxmox VE** (support) | $1 500 | $4 500 | 3× €500/host/rok | | **Nutanix AHV** (prĆŻměr) | ~$18 000 | ~$54 000 | Per node subscription, odhad | | **Hyper-V** (Windows Server Datacenter) | $12 400 | $37 200 | JednorĂĄzovĂĄ licence per core, bez SA | | **Hyper-V** (Azure Stack HCI) | ~$7 200 | ~$21 600 | ~$10/core/měsĂ­c, 120 cores | **ReĂĄlnĂœ pƙíklad ze Spiceworks (2026)**: UĆŸivatel hlĂĄsĂ­ navĂœĆĄenĂ­ VMware Essentials+ z $1 900/rok na $14 000/rok (VVF) — nĂĄrĆŻst 7.4×. #### RozhodovacĂ­ rĂĄmec ``` 1. Proveď audit VMware prostƙedĂ­ ├─ Počet hostĆŻ, core count, vyuĆŸitĂ­ ├─ Feature dependency (vSAN, NSX, SRM) ├─ Workload profile (Windows vs Linux, DB, GPU) └─ Hardware refresh cycle 2. Spočítej TCO pro VMware renewal (3 roky) ├─ VVF vs VCF vs aktuĂĄlnĂ­ model └─ Zahrƈ audit risk, late renewal penalty 3. Vyber cĂ­lovou platformu (1-2 kandidĂĄty) ├─ Proxmox: nejniĆŸĆĄĂ­ TCO, Linux-heavy shops ├─ Nutanix: enterprise HCI, nĂ­zkĂĄ nĂĄročnost migrace ├─ Hyper-V: Windows-centric, Azure hybrid └─ OpenShift: Kubernetes-first, platform engineering 4. NaplĂĄnuj migračnĂ­ fĂĄze ├─ Wave 1: non-critical (dev/test, 1-2 měsĂ­ce) ├─ Wave 2: standard production (3-6 měsĂ­cĆŻ) ├─ Wave 3: mission-critical (6-12 měsĂ­cĆŻ) └─ Coexistence: VMware + cĂ­l bÄ›ĆŸĂ­ paralelně 5. Počítej s 18-48 měsĂ­ci na kompletnĂ­ exit (Gartner) ``` #### ReĂĄlnĂ© case studies | Organizace | VĂœchozĂ­ | CĂ­l | Rozsah | VĂœsledek | |-----------|---------|-----|--------|----------| | **Stanford University** | VMware (60+ nodĆŻ) | Proxmox VE (6 clusterĆŻ) | 1 500 VM | Dokončeno 2025, zvĂœĆĄenĂĄ automatizace, niĆŸĆĄĂ­ nĂĄklady | | **Michelin** | VMware | Platform9 + OpenStack | DesĂ­tky nodĆŻ | Platform engineering tĂœm, migrace vĂœrobnĂ­ch workloadĆŻ | | **ČeskĂœ podnik (50-100 serverĆŻ)** | VMware | Proxmox VE | ~100 VM | RočnĂ­ Ășspora ~340 000–500 000 CZK na licencĂ­ch | #### NačasovĂĄnĂ­ — klíčovĂ© deadline | UdĂĄlost | Datum | Dopad | |---------|-------|-------| | **UkončenĂ­ perpetual licencĂ­** | Únor 2024 | JiĆŸ proběhlo | | **72-core minimum** | Duben 2025 | Small server licensing zdraĆŸeno | | **vSphere 7 EOS** | Duben 2025 | Nutnost upgrade na 8.x | | **ESXi 8.0 EOS** | Ƙíjen 2027 | PoslednĂ­ supported verze, migračnĂ­ deadline | | **Windows Server 2025 Hyper-V** | Prosinec 2025 | 64 hostĆŻ cluster, 2 048 vCPU per VM | | **Proxmox VE 9 + Datacenter Manager** | 2026 | Enterprise features, vCenter alternativa | #### DoporučenĂ­ | ScĂ©náƙ | Akce | |--------|------| | **MalĂĄ firma (< 10 hostĆŻ), Linux workloady** | Migrovat na Proxmox VE — okamĆŸitĂĄ Ășspora 100 % licencĂ­ | | **StƙednĂ­ firma (10-50 hostĆŻ), smĂ­ĆĄenĂ© workloady** | Vyhodnotit Nutanix AHV (snadnĂĄ migrace) nebo Proxmox (niĆŸĆĄĂ­ TCO) | | **Enterprise (50+ hostĆŻ), hlubokĂĄ VMware integrace** | Reduce strategie: optimalizovat stĂĄvajĂ­cĂ­ VMware + migrovat vybranĂ© workloady na OpenShift / Hyper-V | | **Microsoft shop** | Hyper-V / Azure Stack HCI — native Azure hybrid, ĆŸĂĄdnĂ© dodatečnĂ© licence na hypervisor | | **Kubernetes-native tĂœm** | OpenShift Virtualization / KubeVirt — sjednotit VM a container management | | **MSP / poskytovatel hostingu** | Nutanix nebo OpenStack — multi-tenancy, vCloud Director alternativa | #### Cluster design - **Max velikost clusteru**: 64 hostĆŻ (vSphere 8/9), 96 hostĆŻ (vSphere 8 + enhanced) - **Datastore limits**: max 256 datastorĆŻ na host, max 65 TB na VMFS-6 datastore - **vSAN ready capacity**: doporučeno max 60-64 hostĆŻ na vSAN cluster - **Fault domains** — rozdělenĂ­ clusteru do skupin hostĆŻ (rack awareness), min 3 fault domains pro stetch cluster - **Admission control** — rezervace resource pro HA failover: - **Host failures cluster tolerates** — nejčastějĆĄĂ­ (1-4 hosty) - **Percentage of cluster resources** — rezervace % CPU/memory - **Dedicated failover hosts** — vyhrazenĂœ host(y) pro HA - **Cluster limits (vSphere 8/9)**: - 960 VMs per host (vSphere 9 max) - 15 000 VMs per cluster (vCenter max) - 300 hosts per cluster (vSphere 8/9, hardware vMotion) ### Microsoft Hyper-V licensing | Varianta | Metrika | Cena | Co obsahuje | |----------|---------|------|-------------| | **Windows Server Standard** | Per core (min 16 licencĂ­/server) + CAL | ~$1 000/core (jednorĂĄzově) + $200/CAL | 2 VM licence (kaĆŸdĂĄ s plnou Windows Server licencĂ­) | | **Windows Server Datacenter** | Per core (min 16 licencĂ­/server) + CAL | ~$6 200/core (jednorĂĄzově) + $200/CAL | NeomezenĂ© VM, Storage Spaces Direct, Shielded VMs | | **Azure Stack HCI** | Per core (měsíčně) | ~$10-20/core/měsĂ­c (Azure hybrid benefit) | Hyper-V + S2D + Azure management, součást Azure subscription | | **Hyper-V Server** | Zdarma | $0 | SamostatnĂœ hypervisor (bez managementu, bez GUI, omezenĂĄ podpora) — od 2025 jiĆŸ nenĂ­ distribuovĂĄn | **DĆŻleĆŸitĂ©**: - Windows Server Standard = 2 VM na kaĆŸdou licenci. Pokud potƙebujete 3 VM na 2-socket serveru, potƙebujete 2× Standard license (4 VM) nebo Datacenter - **Azure Hybrid Benefit** — pokud mĂĄte Windows Server s SA (Software Assurance), mĆŻĆŸete pouĆŸĂ­t license v Azure bez dodatečnĂœch nĂĄkladĆŻ - **CAL (Client Access License)** — kaĆŸdĂœ uĆŸivatel nebo zaƙízenĂ­ pƙistupujĂ­cĂ­ k Windows Serveru musĂ­ mĂ­t CAL (kromě Azure Hybrid Benefit) ## Microsoft Hyper-V | Vlastnost | Hyper-V | PoznĂĄmka | |-----------|---------|----------| | **Max hostĆŻ v clusteru** | 64 (Windows Server 2025) | Shared Nothing Live Migration | | **Max VM na host** | 1024 (WS 2022+) | Generace 2 VM | | **Max vCPU per VM** | 240 (WS 2022+) | 64 hostĆŻ cluster | | **Max RAM per VM** | 12 TB (WS 2022+) | DynamickĂĄ paměƄ | | **Live Migration** | SMB, CSV, RDMA | Compressed nebo RDMA | | **Storage** | CSV (Cluster Shared Volumes), ReFS | S2D pro HCI | | **Nested Virtualization** | Ano | Intel VT-x / AMD-V | | **SCVMM** | System Center VMM | Enterprise management, fabric, P2V | ### Hyper-V vs VMware srovnĂĄnĂ­ | Vlastnost | VMware vSphere | Microsoft Hyper-V | |-----------|---------------|-------------------| | **OS** | VMware ESXi (VMkernel) | Windows Server / Hyper-V Server | | **Licence** | Per CPU (subscription) | Windows Server license / Datacenter | | **Storage** | VMFS, NFS, vSAN, HCI | NTFS, ReFS, SMB, S2D | | **Live Migration** | vMotion (cross-vSwitch, long distance) | Live Migration (SMB/RDMA) | | **Storage Migration** | Storage vMotion (online) | Shared Nothing (datovĂœ disk) | | **Replication** | vSphere Replication | Hyper-V Replica (ASR) | | **Management** | vCenter, vSphere Client | SCVMM, Hyper-V Manager, Admin Center | | **Linux support** | VĂœbornĂœ (open-vm-tools) | DobrĂœ (Linux Integration Services) | | **TCO** | VyĆĄĆĄĂ­ | NiĆŸĆĄĂ­ (s Windows licencĂ­) | ## KVM ### Architektura ``` Hardware ──> QEMU (emulace I/O) + KVM (kernel module, virtualization) │ libvirt (API + management) │ ┌───────┌───────────┐ virt-manager virsh openstack/proxmox ``` ### LaděnĂ­ - **CPU pinning** — `virsh vcpupin vm1 0 2` (vCPU 0 → physical core 2), zamezuje pƙepĂ­nĂĄnĂ­ kontextu - **Huge pages** — 2 MB / 1 GB strĂĄnky mĂ­sto 4 KB, snĂ­ĆŸenĂ­ vĂœpadkĆŻ TLB (VM s velkou RAM): `echo 2048 > /proc/sys/vm/nr_hugepages` - **NUMA affinity** — VM pinned na jeden NUMA node (minimalizace cross-NUMA memory access) - `numactl --cpunodebind=0 --membind=0` - `virsh numatune vm1 --nodeset 0` - **VirtIO** — paravirtualizovanĂ© I/O (virtio-net, virtio-blk, virtio-scsi) pro lepĆĄĂ­ vĂœkon - **IO threads** — dedikovanĂĄ vlĂĄkna pro I/O emulaci QEMU ### KVM tuning checklist - Ověƙit HW virtualizaci: `lscpu | grep Virtualization` - NaloĆŸit KVM moduly: `kvm`, `kvm_intel`/`kvm_amd`, `vfio-pci` - Optimalizovat storage: raw/LVM (vyhnout se qcow2 u vĂœkonovĂœch workloadĆŻ) ## Storage v hypervizorech Viz takĂ©: [STORAGE.md](STORAGE.md) — detailnĂ­ pƙehled storage protokolĆŻ a konfiguracĂ­. | Typ | Popis | Protokoly | |-----|-------|-----------| | **Local storage** | Disky pƙímo v serveru | SATA, SAS, NVMe | | **Shared storage** | SAN / NAS pƙístupnĂ© vĆĄem hostĆŻm | Fibre Channel, iSCSI, NFS, SMB | | **vSAN / HCI** | HyperkonvergovanĂ© ĂșloĆŸiĆĄtě (disky serverĆŻ = jedinĂœ pool) | VMware vSAN, Nutanix, StarWind | | **Software-Defined** | SDS odděluje storage software od hardware | Ceph, GlusterFS, MinIO | ## HCI detail | Vlastnost | Nutanix (AOS + AHV) | VMware vSAN | Azure Stack HCI | |-----------|--------------------|-------------|----------------| | **Hypervisor** | AHV (KVM fork), ESXi optional | ESXi (required) | Hyper-V | | **Min. nodĆŻ** | 3 | 2 (witness) | 2 (witness) | | **Max nodĆŻ** | 80+ | 64 | 16 (typical) | | **Replikace** | 2 nebo 3 kopie + erasure coding | Mirroring (RAID 1), erasure coding | Mirroring + parity | | **Deduplication** | Na Ășrovni clusteru (post-process) | Na Ășrovni disku (capacity tier) | ReFS (real-time) | | **Compression** | Inline (AOS 6+) | Dedup + compression combined | ReFS | | **Management** | Prism (web UI) | vCenter + vSAN UI | Windows Admin Center | | **LicencovĂĄnĂ­** | Per node subscription | Per CPU subscription | Per core subscription | | **EkosystĂ©m** | Built-in DR, backup, security | Broad ISV ecosystem | Azure integration | | **Use case** | Enterprise VDI, general VM | VMware-centric shops | Azure hybrid, branch offices | ## VirtualizačnĂ­ platformy — srovnĂĄnĂ­ | Schopnost | VMware vSphere | Microsoft Hyper-V | Proxmox VE | Nutanix AHV | |-----------|---------------|-------------------|------------|-------------| | Live Migration | vMotion | Live Migration | Live Migration | Live Migration | | HA | vSphere HA | Hyper-V HA | Proxmox HA | Built-in | | DRS/balancovĂĄnĂ­ | DRS | SCVMM / AKS | HA skupiny | Built-in | | Storage vMotion | ano | pƙi vypnutĂ© VM | ZFS send/recv | Built-in | | Snapshoty | ano | ano | ano | ano | | Backup API | CBT (Changed Block Tracking) | Hyper-V WMI / RCT | Proxmox Backup Server | Native | | GPU passthrough | vGPU (NVIDIA Grid) | DDA | VFIO passthrough | GPU passthrough | | LicencovĂĄnĂ­ | Per CPU / subscription | Windows Server licence | Open source (free) | Per node subscription | ## OpenStack - **Distribuce**: Red Hat OpenStack, Canonical Charmed OpenStack - **SluĆŸby**: Nova (compute), Cinder (block), Neutron (networking), Glance (images), Swift (object) - **Use case**: Telco, velkĂ© private cloudy, MNO (MANO, NFVI) - **NĂĄročnost**: VysokĂĄ — komplexnĂ­ nasazenĂ­ a ĂșdrĆŸba --- ## VariantnĂ­ konfigurace hypervizorĆŻ podle velikosti a typu storage ### Volba platformy podle use case | Use case | PrimĂĄrnĂ­ volba | Alternativa | ZdĆŻvodněnĂ­ | |----------|---------------|-------------|------------| | **VMware shop, enterprise** | vSphere 8/9 | Hyper-V | NejobsĂĄhlejĆĄĂ­ ekosystĂ©m, vSAN, SRM, nejĆĄirĆĄĂ­ ISV podpora | | **Microsoft shop, Azure hybrid** | Hyper-V / Azure Stack HCI | vSphere | Windows Server CAL uĆŸ je, S2D, Azure Arc, native Hyper-V Replica | | **SME / nĂ­zkĂœ budget** | Proxmox VE | XCP-ng / Hyper-V (free) | Open source, vestavěnĂœ Ceph, ZFS, PBS, ĆŸĂĄdnĂ© licenčnĂ­ nĂĄklady | | **HCI greenfield** | Nutanix AHV | VMware vSAN | All-in-one, jednoduchĂĄ sprĂĄva, vestavěnĂœ DR a backup | | **Hyperscale / telco** | OpenStack (RHOSP) | — | Multi-tenancy, NFVI, MANO, Neutron SDN, Ceph integrace | ### Varianta A: MalĂ© nasazenĂ­ (2-3 hosty, lokĂĄlnĂ­ storage) Pro malĂ© firmy, pobočky, edge, dev/test. ĆœĂĄdnĂ© sdĂ­lenĂ© storage — HA zajiĆĄtěna aplikačně nebo replikacĂ­ VM. | Parametr | Proxmox VE | VMware vSphere | Hyper-V | |----------|-----------|---------------|---------| | **CPU** | 1× EPYC 9124-9224 / Xeon 4410Y (8-16C) | 1× EPYC 9124-9224 / Xeon 4410Y | 1× Xeon 4410Y / EPYC 9124 | | **RAM** | 64-128 GB (DDR5-4800, 1DPC) | 64-128 GB | 64-128 GB | | **OS disk** | 2× SATA SSD RAID1 (240-480 GB) | 2× SATA SSD RAID1 | 2× SATA SSD RAID1 | | **VM storage** | ZFS RAID10 (4-6× NVMe/SATA SSD) | VMFS local (4-6× SSD RAID5/10) | ReFS CSV (4-6× SSD RAID10) | | **Network** | 2× 10/25 GbE LACP | 2× 10/25 GbE LACP + management | 2× 10/25 GbE LACP | | **Management** | Proxmox web UI (1× node) | vCSA / vCenter (1× appliance) | Windows Admin Center / SCVMM | | **HA** | Proxmox HA (watchdog, fencing) | vSphere HA (1 host failure) | Hyper-V HA (WS Failover Cluster) | | **Backup** | Proxmox Backup Server | Veeam B&R (Community) | Windows Server Backup / Veeam | | **Licence** | Zdarma (support ~€500/host/rok) | vSphere Essentials (~$600/3 hosts) | Windows Server Standard (2 VMs) | **Use case**: Startup, pobočka, dev/test, < 200 VM, bez SAN, minimĂĄlnĂ­ budget. **VĂœhody**: NĂ­zkĂĄ cena, jednoduchĂĄ sprĂĄva. **NevĂœhody**: OmezenĂĄ ĆĄkĂĄlovatelnost, vĂœpadek hostu = nedostupnost VM. ### Varianta B: StƙednĂ­ HCI (3-6 hostĆŻ, vSAN / Ceph) HyperkonvergovanĂĄ infrastruktura — storage bÄ›ĆŸĂ­ na stejnĂœch hostech jako VM. | Parametr | VMware vSAN | Proxmox + Ceph | Nutanix AHV | |----------|------------|----------------|-------------| | **CPU** | 1-2× EPYC 9334-9654 (16-32C) | 1-2× EPYC 9224-9334 (12-24C) | 1-2× EPYC 9334-9654 | | **RAM** | 256-512 GB | 128-256 GB | 256-512 GB | | **Cache tier** | 1-2× NVMe cache (write buffer) | — (Ceph pouĆŸĂ­vĂĄ RAM/OSD) | 1-2× NVMe (oplog) | | **Capacity tier** | 4-8× SSD (SAS/SATA) | 4-8× HBA NVMe/SSD (OSD) | 4-6× SSD (extent store) | | **Network** | 4× 25 GbE (vSAN + VM + mgmt) | 4× 25 GbE (Ceph public + cluster) | 4× 25 GbE (storage + VM) | | **Fault domain** | Rack awareness (3 racks min) | CRUSH rack level | Rack awareness | | **Replication** | RAID-1 mirroring (FTT=1) | 3× replikace / EC 8+3 | 2× kopie + EC | | **Dedupe/Compress** | Dedup + compression (capacity) | ZFS / Ceph compression (inline) | Inline compression | | **HA limit** | 1-3 host failures | 1-2 host failures (replication) | 1-2 host failures | | **Min. hostĆŻ** | 2 + witness | 3 (MON + OSD) | 3 | **Use case**: StƙednĂ­ firma, VDI, general virtualizace, 50-500 VM. **DoporučenĂ­**: Pro vSAN → min. 4 hosty pro FTT=1 s erasure coding. Pro Ceph → min. 3 hosty, ideĂĄlně 5+, kaĆŸdĂœ OSD host = 1 OSD na NVMe pro maximĂĄlnĂ­ IOPS. ### Varianta C: Enterprise FC SAN (6+ hostĆŻ) KlasickĂĄ 3-tier architektura — compute (hosty) + storage (SAN) + network oddělenĂ©. | Parametr | VMware vSphere | Hyper-V | |----------|---------------|---------| | **CPU** | 2× EPYC 9654-9965 (32-64C) | 2× EPYC 9654-9965 / Xeon 8592+ | | **RAM** | 512-2048 GB (DDR5) | 512-2048 GB | | **OS disk** | 2× SATA SSD RAID1 (480 GB) | 2× SATA SSD RAID1 | | **Storage** | FC SAN LUN (2× FC HBA 32/64G) | FC SAN LUN nebo CSV over SMB | | **App network** | 2-4× 25/100 GbE LACP | 2-4× 25/100 GbE LACP | | **Storage network** | 2× FC 32/64G (multipath) | 2× FC 32/64G nebo SMB Multichannel | | **vMotion / Live Migration** | 2× 25 GbE dedikovanĂ© (vMotion) | 2× 25 GbE dedikovanĂ© (SMB/RDMA) | | **Management** | vCenter (VCSA), NSX, Aria | SCVMM, Azure Arc | | **Cluster max** | 64-96 hostĆŻ (vSphere 8/9) | 64 hostĆŻ (WS 2025) | | **Admission control** | 1-4 host failures | Nodes reserve | | **Drs / BalancovĂĄnĂ­** | DRS (fully automated) | SCVMM / AKS load balancing | **Use case**: Enterprise, databĂĄze, kritickĂ© aplikace, 500-5000 VM. **Varianty storage**: FC SAN (nejniĆŸĆĄĂ­ latence), iSCSI (niĆŸĆĄĂ­ CAPEX), NFS (jednoduĆĄĆĄĂ­ management). **FC SAN topologie**: ``` ┌─────────────────────────────────────┐ │ FC Fabric │ │ ┌─────────┐ ┌─────────┐ │ │ │ Switch 1│ │ Switch 2│ │ │ └────┬────┘ └────┬────┘ │ └────────┌─────────────────┌──────────┘ ┌─────┮─────┐ ┌─────┮─────┐ ┌──── FC HBA 1 ├─┐ ┌── FC HBA 2 ├───┐ │ └───────────┘ │ │ └───────────┘ │ ┌──┮──┐ ┌──┮──┮──┐ ┌──┮──┐ │Host1│ │Host2 │ │Host3│ ... └─────┘ └────────┘ └─────┘ ``` ### Varianta D: Hyperscale OpenStack (20+ hostĆŻ) Pro telco, velkĂ© private cloudy, MANO/NFVI prostƙedĂ­. | Parametr | Red Hat OpenStack | Canonical Charmed OpenStack | |----------|-------------------|-----------------------------| | **Compute** | Nova + KVM | Nova + KVM | | **Storage** | Ceph (Cinder/RBD) + Swift | Ceph + Swift | | **Network** | Neutron + OVN/OVS + DPDK | Neutron + OVN/OVS | | **CPU per host** | 2× EPYC 9654-9965 (64-128C) | 2× EPYC 9654-9965 | | **RAM per host** | 512-1024 GB | 512-1024 GB | | **Storage per host** | Ceph OSD (4-12× NVMe/SSD) | Ceph OSD | | **Network per host** | 4-8× 100 GbE (DPDK/VPP) | 4× 100 GbE | | **Control plane** | 3-9× kontrolnĂ­ nod (HA) | 3-7× kontrolnĂ­ node | | **Orchestrace** | TripleO / OpenStack Kolla | Juju + charms | | **SDN** | OVN, OpenDaylight | OVN | | **NFVI ready** | Yes (SR-IOV, NUMA, huge pages) | Yes | | **Min. velikost** | 9 nodeĆŻ (3 ctl + 3 compute + 3 ceph) | 7 nodeĆŻ | **Use case**: Telco (5G UPF, MNO), hyperscale private cloud, > 5000 VM. ### Connectivity summary podle platformy | Platforma | App / VM sĂ­Ć„ | Storage sĂ­Ć„ | Replikace / HA | Management | |-----------|-------------|-------------|----------------|------------| | **Proxmox malĂœ** | 2× 10/25 GbE LACP | — (lokĂĄlnĂ­ ZFS) | — | 1× 1 GbE | | **vSAN (3-6)** | 2× 25 GbE LACP | 2× 25 GbE (vSAN) | vSAN traffic | 1× 1 GbE | | **Proxmox Ceph (3-6)** | 2× 25 GbE | 2× 25 GbE (Ceph public) | 2× 25 GbE (Ceph cluster) | 1× 1 GbE | | **Nutanix (3-6)** | 2× 25 GbE | DedikovanĂ© storage VLAN | Replication traffic | 1× 1 GbE | | **vSphere FC SAN (6+)** | 2-4× 25/100 GbE LACP | 2× FC 32/64G multipath | 2× 25 GbE (vMotion) | 1× 1 GbE + SAN mgmt | | **Hyper-V FC SAN (6+)** | 2-4× 25/100 GbE LACP | 2× FC 32/64G nebo SMB | 2× 25 GbE (Live Migration) | 1× 1 GbE | | **OpenStack (20+)** | 2-4× 100 GbE | 2× 100 GbE (Ceph) | 2× 100 GbE (OVN) | 1× 1 GbE | ## Zdroje Odkazy, knihy a standardy: [sources/infrastructure/sources.md](sources/infrastructure/sources.md) ### DoporučenĂĄ literatura | Kniha | Autoƙi | ISBN | Popis | |-------|--------|------|-------| | Virtualization Essentials (3rd ed., 2023) | Matthew Portnoy | 978-1119481513 | PraktickĂœ prĆŻvodce virtualizacĂ­: od zĂĄkladĆŻ hypervisorĆŻ (Type 1/Type 2), konfigurace VM (CPU, memory, storage, networking) aĆŸ po cloud computing a DevOps. "Learning-by-doing" pƙístup s tutorialy. Autor je Senior System Engineer u VMware/Splunk. | | VMware vSphere Design (2nd ed.) | Guthrie, Lowe, Coleman | 978-1119130312 | KomplexnĂ­ prĆŻvodce nĂĄvrhem vSphere infrastruktury: hardware selection, network layout, security, storage a hypervisory. Popisuje framework pro design, analĂœzu rozhodnutĂ­ a best practices od zkuĆĄenĂœch VMware architectĆŻ. | *PoslednĂ­ revize: 2026-06-04*