UpdateConfig let the admin rewrite token_program_id and
twap_oracle_program_id in place. Both are immutable deployment
parameters — twap_oracle_program_id derives the current-tick PDA and
every price-observation/price account PDA, and token_program_id is the
program the AMM issues its vault transfers to — so changing either
after any pool exists would orphan every derived account and vault. A
genuine change requires redeploying the AMM, never an in-place edit.
- Instruction::UpdateConfig now carries a single required field,
new_authority; the two program-id fields are removed.
- update_config assigns the new authority directly (no Option/if-let);
PDA + admin + signature preconditions unchanged.
- Guest handler and IDL updated to match.
- Drop the integration test that mutated token_program_id (it
exercised the vulnerability); keep reject-non-admin and
authority-handoff, and assert program ids survive a transfer.
BREAKING CHANGE: the UpdateConfig instruction ABI changed — the
token_program_id and twap_oracle_program_id fields are removed and
new_authority is now required (was Option). Any client constructing
UpdateConfig must be updated. The instruction enum change also alters
the program ImageID: redeploy and update every ImageID-derived value
(deployed program ids, client/config files, PDA-derived addresses,
AMM/ATA program-id inputs) before submitting
After the amm_module refactor, this crate is linked only by the module (the
UI delegates to modules().amm_module and links nothing), so its home under
apps/amm/ and the name "client" were both misnomers: it's the AMM business
logic the module wraps, reached across an FFI boundary — the same relationship
logos_execution_zone has with wallet_ffi. Co-locate it with the module that
owns it and name it for that role.
The FFI surface is unchanged — the exported functions are already amm_* (not
amm_client_*) — so only the crate, directory, generated header, dylib, and
package names move. The module's call sites are untouched; it just includes the
renamed header.
- apps/amm/client → modules/amm/ffi (git-tracked rename; history preserved)
- crate amm_client → amm_ffi: package name, include/amm_ffi.h, libamm_ffi.dylib,
AMM_FFI_H guard, build.rs output path, tests/public_api.rs import
- workspace member path + Cargo.lock
- flake.nix: pname, -p, header-copy path, dylib install_name, packages.amm_ffi,
ammModuleOutputs externalLibInputs, DYLD wrapper
- modules/amm: metadata external_libraries, CMakeLists EXTERNAL_LIBS, impl
#include + comments, README, flake note
- apps/amm/flake.nix: drop the now-dead amm_client external-lib input (the UI
links no external lib of its own)
Resulting layout:
modules/amm/
src/ # C++ module (amm_module_impl.{h,cpp})
ffi/ # Rust crate amm_ffi (Cargo.toml, src/, include/amm_ffi.h)
The add-liquidity flow stamped a `new-position.v1` schema tag on every
request and response and validated it across all three layers — the QML
plugin, the amm_module core module, and the amm_client Rust crate. It was a
cross-version compatibility guard, but these artifacts always ship together,
so the contract is honored implicitly, and the swap view already works fine
without one. Dropping it makes the liquidity view consistent with swap and
removes a layer of ceremony.
- amm_client: remove PositionRequest.schema and the unsupported_schema check
in compute_quote; drop QuoteCommitment.schema (changes quoteHash, which is
internal-only) and every "schema" response stamp; delete the SCHEMA /
NEW_POSITION_SCHEMA constants and the public export.
- amm_module: remove the SCHEMA constant and its four response stamps.
- AmmUiBackend: remove its local NEW_POSITION_SCHEMA and the stamps in
loadingContext() / newPositionError().
- QML: drop the "schema" fields from the request/envelope builders and relax
the validity gates to check status / canSubmit instead (the sole check in
NewPositionFlow now guards on a missing `status`); strip the now-dead
schema fields from the liquidity QML test fixtures.
- Also removes the last stale comment references to the deleted *Runtime
classes.
Introduce modules/amm — the AMM business logic as a universal core Logos module,
consumed identically by the QML UI (via modules().amm_module) and headlessly
(logoscore call amm_module ...). The module is a thin transport adapter: the
domain math lives in the Rust amm_client crate (the transport-independent JSON
FFI), and the module sequences those pure ops with chain I/O delegated to the
logos_execution_zone wallet module. It reaches the same shared wallet instance
the UI opened (Basecamp loads core modules as singletons; standalone the
LogosAPI client cache dedups the connection), so it never opens a second wallet.
The module owns the full AMM surface — not just swaps:
- resolvePool / swapExactInput / tokenList (the swap path)
- newPositionContext / quoteNewPosition / submitNewPosition (add-liquidity)
apps/amm: delete the app-side orchestration (SwapRuntime, NewPositionRuntime,
AmmClient/BundledAmmClient) and the amm_client link. AmmUiBackend now owns only
wallet-session lifecycle and forwards every AMM slot to modules().amm_module.
The one wallet-keyset mutation add-liquidity needs — creating a fresh LP holding
— stays in the backend (via its wallet provider, keeping the account model and
on-disk storage coherent): the module returns "requires_fresh_lp" without
submitting, the backend creates the account and resubmits with its id.
flake.nix / CMakeLists / metadata: the module links the amm_client crate; the UI
links no external lib and depends on amm_module (injected into the UI builder's
flakeInputs so the dependency resolves).
- amounts/deadline declared nlohmann::json so the generated dispatch accepts a
JSON number (bare small ints on the CLI) or a string (exact u128 from the UI,
or a quote-wrapped big value on the CLI); JSON floats are rejected rather than
submit a silently-rounded amount.
- AMM_DEBUG-gated tracing for the swap path.
- Drop tests/cpp/NewPositionRuntimeTest.cpp with the class it covered
(module-level tests to follow).
- modules/amm/README.md: architecture, headless prerequisites, logoscore recipe.
The AMM host FFI was split across two crates with two ABI styles: the
typed-C `amm_client_ffi` (swap primitives, under programs/) and the
JSON/wire `amm_client` (new-position flow, under apps/). Fold both into a
single `amm_client` crate exposing one JSON C ABI, and delete
`programs/amm/client-ffi`.
Rust:
- Re-express the swap path as `api/swap.rs` operations on the existing
`call::<T>` dispatch — swap_pair, resolve_pool, swap_plan, program_id —
reusing `pair::derive_pair` (no more duplicated PDA derivation) and
`risc0_zkvm::serde` for the SwapExactInput words (the same encoding the
guest decodes). The account list and signer flags stay byte-identical
to the old typed path.
- Generate a single header (`include/amm_client.h`) covering all ops via
cbindgen; bump cbindgen 0.27 -> 0.28 for `#[unsafe(no_mangle)]` support.
C++:
- Extend the `AmmClient` wrapper with the four swap ops.
- Add `SwapRuntime` (mirrors `NewPositionRuntime`): reads accounts through
the wallet, drives the swap ops, submits the transaction.
- `AmmUiBackend` swap methods now delegate to `SwapRuntime`, dropping ~390
lines of typed-FFI and byte-twiddling. `program_id` becomes a JSON op,
and the swap clock is derived via `derive_pair` (clock_core::CLOCK_01)
instead of a hardcoded base58 literal — same account, verified.
networkSnapshot() rebuilt the new-position network context on every call —
deriving ammProgramId from $AMM_PROGRAM_BIN and resolving the $TOKENS_CONFIG
token ids, which run tokenList()'s remote account_id_from_base58 conversions.
It is called on the quote hot path (every keystroke) and, critically, from
inside runtime reply callbacks: after a create-pool submit, pool activation
runs refreshContext() from within a quoteNewPosition reply, so the nested
synchronous remote calls reentered the module connection and hung the reply.
refreshNewPositionContext never completed, contextLoading never cleared, and
the token selectors (gated on !contextLoading) stayed disabled — the view
became unusable after creating a pool.
$AMM_PROGRAM_BIN and $TOKENS_CONFIG are fixed for the process lifetime, so
resolve ammProgramId and the token ids once and cache them; networkSnapshot()
now returns the cached values with no per-call remote work. (Still gated to
"loading" until wallet state resolves, so the one-time resolve happens at
startup, not inside a callback.)
LogosWalletProvider::submitPublicTransaction passed the RISC0 instruction
words to send_generic_public_transaction as a QVariantList<u32>. That param
is a byte string (bstr): the module's QtRO glue mangles a list-of-u32 crossing
the module process boundary, so the guest deserialized a corrupted Instruction
variant and panicked, e.g.
Guest panicked: called `Result::unwrap()` on an `Err` value:
Custom("invalid value: integer `53765`, expected variant index 0 <= i < 10")
(53765 = 0x0000D205 — the guest read a 4-byte word where 0x05, the AddLiquidity
variant, is a single byte.) This broke every submit through the shared provider,
including the new-position / add-liquidity flow.
Send the little-endian bytes of the u32 words as a QByteArray instead — the same
encoding the AMM swap path already uses (it calls the module directly and never
went through this provider). signingRequirements stays a QVariantList<bool>;
only the instruction needed the bstr encoding.
The create-pool / new-position flow carried its own network layer:
AMM_UI_NETWORK + AMM_UI_DEVNET_FILE (a devnet.json) or a bundled
config/networks.json supplied the AMM program id and token set, and a
JSON-RPC channel/checkpoint "identity probe" gated the flow to a verified
network. Main already exposes all of this the way the Swap view consumes it,
so collapse onto those sources instead of a parallel system:
- ammProgramId <- $AMM_PROGRAM_BIN (derived like swapExactInput's program id;
doubles as the quote's network fingerprint so a quote can't
be replayed against a different deployment)
- tokenIds <- $TOKENS_CONFIG (amm-tokens.json), same as the Swap picker
- sequencer <- the wallet config (already surfaced via syncWalletState)
networkSnapshot() builds the ActiveNetworkSnapshot from those; status is
"ready"/"config_missing", gated to "loading" until wallet state resolves so no
module reads happen during construction. The channel probe is gone — submit
needs no channelId (the wallet module supplies the channel via
submitPublicTransaction), so the whole verification apparatus was overhead.
Removes: AMM_UI_NETWORK / AMM_UI_DEVNET_FILE, devnet.json / networks.json, the
ActiveNetwork class (+ its test) and its QNetwork channel probe, and Qt6Network.
ActiveNetwork.h keeps only the ActiveNetworkSnapshot struct. Run command drops
the AMM_UI_* vars:
```
LEE_WALLET_HOME_DIR=… AMM_PROGRAM_BIN=… TOKENS_CONFIG=… nix run .#amm-ui
```
Keep wallet assets as token choices without automatically selecting a pair. Keep pool-probe amounts internal so active-pool quotes do not populate the form before user input.
Add a "Create Pool" flow to the AMM app that lets a user open a new
liquidity position — seeding a pool's initial liquidity — from token
selection and amount entry, through a confirmation dialog, to on-chain
submission.
- client crate (apps/amm/client): pure, testable protocol logic — account
decoding, pair/position modelling, and quote/plan computation — exposed to
the app over a C ABI (config/networks.json drives network selection).
- C++ runtime + backend: AmmClient, ActiveNetwork, and NewPositionRuntime,
wired into AmmUiBackend (new resolve/quote/submit slots).
- QML flow: NewPositionForm, NewPositionFlow state, NewPositionConfirmation-
Dialog, TokenSelectorModal, and reusable Amm* presentational components
(theme, surfaces, buttons) + AmountMath.js.
- tests: C++ (NewPositionRuntimeTest, ActiveNetworkTest) and QML
(tst_NewPositionForm, tst_LiquidityPage, tst_TokenAmountInput, …).
The Logos.Wallet QML plugin was installed with an ELF "$ORIGIN" rpath.
macOS dyld does not expand "$ORIGIN", so loading the plugin failed with
Cannot load library liblogos_wallet_qmlplugin.dylib:
Library not loaded: @rpath/liblogos_wallet_qml.dylib
even though liblogos_wallet_qml.dylib sits in the same directory. Select
the rpath per platform: @loader_path on Apple, $ORIGIN elsewhere, so
@rpath/liblogos_wallet_qml.dylib resolves to the sibling library.
Replace the `token_definition_id_in` argument with a role-based account
interface: swaps now take a `user_input_holding` and a `user_output_holding`
instead of positional token-A/token-B holdings. Direction is derived from the
input holding's own token definition, and the input slot is a framework-level
`#[account(signer)]` so authorization is enforced before execution rather than
delegated solely to the downstream token transfer. The output holding only
receives and needs no signature.
This removes the ambiguity the previous arg-based model carried (the arg could
disagree with the signed holding) and makes the IDL express the signing rule:
`user_input_holding` is `signer: true`, `user_output_holding` is `signer: false`.
The two user-holding post-states are echoed in the guest's declared slot order
(input, then output); the framework matches post-states to accounts by
position, so the internal A/B mapping used for reserve bookkeeping must not leak
into the returned order.
BREAKING CHANGE: The AMM swap instruction interface changed and the guest
ImageID/ProgramId changes as a result.
Move the spel-framework dependency from the 0x-r4bbit/spel fork
(v0.5.0 @ 91023c9, the refactor/lez-v020-compat branch) to the released
logos-co/spel tag v0.6.0.
spel v0.6.0 is built against the final logos-execution-zone v0.2.0, not
the v0.2.0-rc6 this repo pinned. The two must match: with rc6, the guest
ELF build fails because spel's lee_core::program::ValidityWindow and the
repo's own copy are distinct types the #[lez_program] macro can't unify.
So this also bumps every logos-execution-zone pin (lee/lee_core aliased
as nssa/nssa_core, plus clock_core) from v0.2.0-rc6 to the final v0.2.0.
- 10 Cargo.toml switched to logos-co/spel tag v0.6.0
- 24 logos-execution-zone pins across 18 Cargo.toml moved rc6 -> v0.2.0
- All 7 Cargo.lock files re-resolved (root + 5 guest workspaces +
benchmark); pulls in lee_core v0.1.0 (v0.2.0) as a spel transitive dep
Guest ImageIDs change as a result: the ID hashes the whole guest ELF,
which links the updated spel-framework and lee_core object code, even
though the program sources are unchanged. Update any ImageID-derived
values (deployed program IDs, PDA addresses, AMM/ATA program-id inputs)
before submitting transactions.
The AMM guest lockfile had drifted to enum-ordinalize 4.4.1 (and
enum-ordinalize-derive 4.4.1), both of which require rustc 1.89. The
RISC Zero guest toolchain is 1.88.0-dev, so `cargo +risc0 build
--locked` failed the "build programs" CI task:
error: rustc 1.88.0-dev is not supported by the following packages:
enum-ordinalize@4.4.1 requires rustc 1.89
enum-ordinalize-derive@4.4.1 requires rustc 1.89
enum-ordinalize is pulled in transitively via educe 0.6.0 (^4.3), so
4.3.2 satisfies the requirement and matches what every other guest
lockfile already resolves to. Pin both crates back to 4.3.2.
The host workspace Cargo.lock keeps 4.4.1 — it builds on 1.94.0 per
rust-toolchain.toml and is unaffected.
Add an optional mint authority to fungible tokens for controlled supply:
create with a designated minter, mint additional supply, rotate the
authority to a new key, or permanently revoke it to fix the supply.
The authority is stored inline on `TokenDefinition::Fungible` as
`authority: Option<AccountId>` (`Some(id)` = mintable by `id`, `None` =
fixed supply). Keeping it a plain `Option<AccountId>` rather than a custom
wrapper type leaves account state decodable by `spel inspect`; the
require/rotate/revoke guard logic lives inline in the handlers.
LEZ rejects a transaction that lists the same account id twice, so one
instruction cannot statically express both "the definition account is the
authority and signs" (self/PDA authority) and "a distinct rotated account
signs" (external authority) — they need opposite signer markers. Each
privileged operation is therefore split into a self and an external
variant:
- `Mint` / `SetAuthority` — the definition account is the signer.
- `MintWithAuthority` / `SetAuthorityWithAuthority` — a distinct authority
account is the signer; the definition account does not sign.
Creation via `NewFungibleDefinition { mint_authority, .. }`; an all-zero
authority id is rejected. The AMM's LP token uses self/PDA authority — its
stored authority is the LP definition PDA, minted only by the pool via
chained calls.
Covered by token unit tests and zkVM integration tests: creation with and
without an authority, self- and external-authority mint, rotation, and
external rotate/revoke. IDLs regenerated.
Turns the dummy-data AMM UI into a real client of the on-chain LEZ wallet.
Adds a hand-written ui_qml C++ backend (src/AmmUi*) over the core
logos_execution_zone module: create/open a local wallet, create and list
public/private accounts, and a navbar Connect / Connected + account-selector
+ Disconnect flow. Onboarding is password-only (no path picking) with a
per-app wallet at ~/.lee/amm-wallet (override: AMM_WALLET_HOME_DIR);
standalone gets its own wallet, Basecamp shares accounts via adopt-on-start.
Requires Nix with flakes; macOS also needs `sandbox = false` (the default).
The logos_execution_zone input is pinned to a module rev whose LEZ (lssa)
already includes the macOS Metal-build fix, so no `--override-input` is
needed — plain `nix run .` works:
cd apps/amm
nix run .
- create_new now returns the new wallet's BIP39 mnemonic (not an int status);
the app currently discards it, so the wallet can't yet be recovered. Surfacing
it in onboarding (+ restore_storage) is a follow-up.
- The wallet password is currently a no-op upstream (storage.rs: "TODO: use
password for storage encryption"); storage.json is plaintext. So Disconnect
is a UI-level lock and reconnect does not (cannot yet) re-prompt for it.
- wallet-ffi requires explicit config/storage paths; a *_default() FFI would
let the app drop its path handling.
- Bundled network config: connects to whatever WalletConfig::default() points
at; real testnet endpoints still TBD.