Morpheus ecosystem model
Morpheus has five emission pillars, a claim rate and a retention rate on each, a yield-funded buyback, a compute pool whose stipend formula sets what providers are paid, and a queue of MOR that is owed and not yet minted. This models all of it over the deployed schedule, to February 2040. Provider pay is not a dial here: the contract pays providers in proportion to the MOR users have staked for compute, so the pool damps pay on its own.
Start on the first panel, which follows a single day's issuance from what the schedule releases to what reaches the loose float. The other four take one question each. The retention and claim dials default to dated on-chain readings, and the marked value on each slider is that reading, so moving one reads as a departure from the evidence. The two staking dials are labelled assumptions: the model's only guesses, and it says so on each.
Of the 12,130 MOR the schedule releases on a day in 2026-08, 2,537 reaches the loose float. Providers are paid 807 MOR for serving roughly 976M tokens of inference that day, at the measured rate of 1.2M tokens per MOR (only 30% of payments report token counts).
Every node is somewhere MOR sits and every ribbon is MOR moving, at the width and the rate the model gives that flow. The five pillars are drawn apart because they behave nothing like each other: capital claims about half its pillar and stakes none of it, compute is paid the stock-model draw and posts back more than it is paid, and the protection fund is claimed in full by the protocol's own Safe, so it flows to treasuries rather than to the float. The buyback runs on its own track at the foot, because it is funded by capital-provider yield rather than by emission. Drag the month or press play and the whole system thins as the schedule decays.
Treasuries are the protocol's own balance: MOR minted to distributors and Safes that no end recipient has claimed yet, including the pre-minted reserve that pays providers. When recipients draw faster than the schedule mints, the difference is paid out of this balance, which falls but never goes below zero. The three buckets on the right are sized against the measured-default run, so moving a dial changes their fill rather than resizing the scale under you. And the model conserves MOR exactly, month by month:
Audit, 2026-08: 296k burned + 2.86M staked + 3.96M treasuries + 303k AMM inventory + 2.12M loose float = 9.54M MOR, against 9.54M modelled supply (the 42M cap at the measured 77.0% mint rate). The float is the residual of that identity, so MOR can never appear or vanish between buckets.
Every retention and claim default is a dated on-chain reading, not a choice. Compute retention sits above 100% because collateral grew faster than earnings, so MOR came into the pillar from outside it. One provider earns 70% of the pillar and sits at exactly 100%, because the contract caps a provider's annual earnings at its own posted stake and it has to top up to keep earning. Take that provider out and the rest of the field retains more, not less.
The two staking dials are the model's only assumptions. The growth in MOR staked for compute has no measured history yet: the series is too short and too concentrated to yield a rate, so 6x is an analogy to token growth, not a reading. The cut-off return has no basis in data by construction: staking is observed to continue at a 108% return and nothing below that has ever been seen. Retention cannot outrun the emission funding it, which is the point the whole model turns on.
Where the numbers come from
The emission series is the exact step sum of rewardPools(n) on the
deployed contract, identical across Ethereum, Base and Arbitrum. Claim rates,
retention, the claim lag and the lock-release curve are measured from chain over
dated windows. The model itself is a workbook checked against 21 contract reads, and
this page reproduces it: a check runs on every build asserting that the browser
engine returns the workbook's own answers at five points across the schedule, to a
millionth of a MOR. If it drifts, the build fails.
Two things to hold on to. No panel carries a price, market cap or valuation, so this says nothing about what MOR is worth. And it forecasts nothing: the growth in MOR staked for compute is the largest judgement call in it, and it is an assumption rather than a measurement, because its own history is too short and too concentrated to yield a rate. Treat the dials as a way to ask what would have to be true.
Every setting is linkable. Move the dials, use Copy link to these settings, and the URL carries the whole scenario.
The reasoning behind the model, and what it changed about our view of MOR, is in How MOR Actually Works. The project review is at Morpheus, and the live inference figures the compute panel starts from are at Morpheus inference activity.
Model built 2026-08-25 from the deployed contracts.