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Cloud Cost Ledger

A source-backed ledger of compute, block storage, object storage, egress, commitments, break-even points, and long-run bill composition.

Cloud bills are not one price. They are a stack of resource meters, topology, activity, time commitments, and commercial terms. The ledger makes that stack visible and then asks where the money actually goes.

Important

Price snapshot: 2026-08-22 · Research completed: 2026-08-24 · Primary regions: AWS us-east-1, Alibaba Cloud cn-hangzhou · FX: 1 USD = 6.7817 CNY · Month: 730 hours. All amounts below are dated public-price or scenario values, not live quotes or enterprise net prices.

The bill in one formula

Effective cost=(usage×unit price×topology×term)+activity+network+support+taxcredits \begin{aligned} \text{Effective cost} ={}& \sum(\text{usage} \times \text{unit price} \times \text{topology} \times \text{term}) \\ &+ \text{activity} + \text{network} + \text{support} + \text{tax} \\ &- \text{credits} \end{aligned}

The denominator matters just as much:

Effective unit cost=cash billuseful business output \text{Effective unit cost} = \frac{\text{cash bill}}{\text{useful business output}}

A 50% commitment used at only 60% coverage has an effective price of 0.50 / 0.60 = 83.3% of on-demand—not 50%. Discounts can lower the invoice while raising stranded-value and exit risk.

Six findings that survive the details

Finding Audited number What it establishes What it does not establish
Compute scales linearly inside a family AWS c7i/m7i/r7i same-vCPU price factors are about 0.885 / 1 / 1.313; Alibaba c9i/g9i/r9i about 0.779 / 1 / 1.330 Larger shapes do not automatically buy cheaper cores Equal vCPU labels mean equal workload performance
Elasticity has a visible premium Alibaba g9i.large PAYG at 730 hours is 1.521× its monthly price; time-only crossing is 65.8% utilization PAYG and monthly are different risk products Monthly is always cheaper after workload and commitment risk
Block-storage rankings flip with performance 200 GiB baseline: gp3 ¥108.51, AutoPL ¥200; at 11.8K IOPS / 220 MiB/s: gp3 ¥432.67, AutoPL ¥200 Capacity-only comparisons can reverse the answer Either service is performance-equivalent for every instance or latency profile
Object capacity rates have converged S3 Standard ¥0.156/GB-month; OSS Standard LRS ¥0.120 Capacity alone is no longer the whole bill Requests, retrieval, minimum duration, small objects, or egress are equivalent
Reliable topology sets the self-host threshold Versus OSS one-year package: 8-node single site 199 TB; dual site 536 TB; three-site durable crossing 1,223 TB Object-storage break-even is a topology question A single-site pool equals S3’s service level
Mature bills decline slower than compute AWS capacity basket 2008→2026: -63.0%; Alibaba monthly basket 2016→2026: -4.8% Flat storage/egress meters dilute compute gains The two baskets are performance- or SLA-equivalent

Three bill surfaces

Compute: price the useful core

Instance size mostly changes the number of objects you operate, not the price per vCPU inside a family. Architecture, memory ratio, region, generation, and purchase term change it materially. The compute ledger publishes current reference shapes, regional factors, commitment crossings, and the discrete self-hosted scale curve.

Block storage: price capacity and performance together

For gp3, capacity, IOPS, and throughput are separate meters. For ESSD AutoPL, capacity carries a rising baseline and performance can add further meters. The block-storage ledger shows the same three scenarios at equal capacity and requested performance, plus the instance-channel ceiling that can make paid IOPS unusable.

Object storage: price activity and exit, not just TB

The object bill is storage class + billable object size + minimum duration + requests + retrieval + replication + transfer. The object-storage ledger adds the self-hosted minimum reliable topology, so 100 TB, 500 TB, and 1 PB are not treated as the same engineering problem.

The long-run insight

Cloud prices fell quickly in early competition, then many core marginal rates plateaued. AWS S3 Standard has stayed at $0.023/GB-month since 2016; AWS internet egress at $0.09/GB since 2014; Alibaba ESSD PL1 capacity at ¥1/GiB-month and ECS egress at ¥0.8/GB across the report’s 2016–2026 anchors. Compute kept improving, but users usually had to migrate generation, architecture, or purchase model to capture it.

Read Cloud price history for the full index and bill baskets.

Decision rule

  1. Build a 90–180 day workload fingerprint: hourly compute, capacity, IOPS, throughput, object sizes, requests, retrieval, and every network path.
  2. Separate stable floor, predictable peak, interruptible work, and stateful data.
  3. Match topology and useful performance before comparing prices.
  4. Price commitment utilization and stranded value, not the advertised discount.
  5. Compare public price, actual invoice, and self-hosted procurement as three separate layers.
  6. Use a break-even point as permission to start engineering evaluation—not as an automatic migration order.

Released data

DatasetCoverageSource windowStatus
Cloud build-versus-buy model
build-vs-buy-2026
Compute, PostgreSQL RDS-like services, object storage, egress, break-even points, and sensitivity. 2026-08-22—2026-08-24 released-snapshot
AWS and Alibaba Cloud pricing model
cloud-pricing-2026
EC2/ECS, RDS, block storage, object storage, traffic, commitments, and time value. 2026-08-22—2026-08-24 released-snapshot
Cloud price-history model
cloud-price-history-2026
Long-run compute, storage, and egress price anchors with physical-input and inflation context. 2006—2026; reviewed 2026-08-24 released-snapshot

“Released snapshot” means the files ship with the site together with sources, methodology, schema, and checksums. It is still not a live provider quote.

Each release contains the full report, source ledger, CSV/JSON tables, methodology, schema summary, and SHA-256 checksums. The highlighted pages link directly to their exact source tables.

The common accounting frame for comparing metered services with owned or colocated infrastructure.

Current EC2/ECS reference prices, family and region factors, commitment economics, and the discrete break-even curve for stable owned compute.

Capacity, IOPS, throughput, commitment, snapshots, and instance-channel limits for AWS EBS gp3 and Alibaba ESSD.

Storage class, small-object tax, minimum duration, requests, retrieval, egress, resource packages, and reliable-topology break-even for object storage.

Internet transfer, cross-AZ traffic, NAT processing, free allowances, CDN paths, fixed bandwidth, and the per-GB versus port break-even.

Separate resource cost from the value and price of operations supplied by a managed service.

Twenty years of AWS and Alibaba Cloud compute, block storage, object storage, and egress prices—fast early cuts, later plateaus, and slower full bills.

Versioned cloud-price, build-versus-buy, and price-history snapshots with reports, source ledgers, full tables, methodology, schemas, and checksums.