milestone 1.0.0 release readiness: user-facing fixes, security review, release procedure #388
@@ -45,6 +45,28 @@ but the review is broader than any of them.
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# Completed Steps
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- 2026-09-21: The network fee a transaction can commit is bounded by the product
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of the gas limit and the fee per gas, not by each field alone, and the
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wallet's own send is bounded the same way
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([#399](https://git.eeqj.de/sneak/AutistMask/issues/399)). The two per-field
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ceilings in `src/shared/approvalVerify.js` were checked independently, so a
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gas limit and a fee that were each under their own ceiling still multiplied to
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thousands of ETH — a fee a gas-consuming contract really collects — while the
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comment claimed the ceiling caught exactly that. `assertWithinCeilings` now
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also refuses a transaction whose gas limit times its fee per gas
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(`maxFeePerGas` for a type-2 transaction, `gasPrice` for a legacy or type-1
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one) exceeds `MAX_TOTAL_FEE`, a new constant of 1 ETH beside the existing
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ceilings, so both callers — where the dApp transaction is populated and where
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the signed artifact is verified — reject it with a full sentence naming the
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fee and the limit. The wallet's own send in `src/popup/views/confirmTx.js`
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pinned no fee fields, so ethers filled them from whatever the configured node
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answered with nothing bounding them; it now populates the transaction and runs
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the same check before signing, showing the same error in the confirmation
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screen's reserved errors box so nothing on screen moves. Deliberately out of
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scope: comparing a supplied fee against the node's own suggested fee, which
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the absolute bound already makes unnecessary for the balance-draining case. 1
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ETH is a plain constant, one line to change; the owner may prefer another
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figure.
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- 2026-09-21: The test recovery phrase no longer survives in a release bundle,
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and the committed-key guard matches by content
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([#351](https://git.eeqj.de/sneak/AutistMask/issues/351)). `DEBUG_MNEMONIC` in
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@@ -30,6 +30,7 @@ const {
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displayedDecimals,
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transferAmountUnits,
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} = require("../../shared/transferAmount");
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const { assertWithinCeilings } = require("../../shared/approvalVerify");
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const {
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CODES,
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FEE_PENDING,
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@@ -394,6 +395,46 @@ async function estimateGas(txInfo) {
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}
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}
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// Populate the transaction this send describes, enforce the fee bound against
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// the fees that were actually filled in, then sign and broadcast it. The send
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// pins no fee fields, so ethers fills maxFeePerGas and the gas limit from what
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// the configured RPC node answers, with nothing otherwise bounding what a
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// hostile node can set — the dApp path's ceilings never reached this one.
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// Populating before the check is what makes assertWithinCeilings() see the
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// same numbers that would be signed; it throws an ApprovalMismatchError when
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// the product gasLimit × maxFeePerGas is over the bound, which the caller
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// shows in the reserved error area rather than sending.
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async function populateVerifyAndSend(connectedSigner, tx) {
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let request;
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if (tx.token === "ETH") {
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request = { to: tx.to, value: parseEther(tx.amount) };
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} else {
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const contract = new Contract(tx.token, ERC20_ABI, connectedSigner);
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// The contract's decimals() is read to be COMPARED with the scale the
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// screen rendered this amount at, not to encode with: encoding from it
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// signs whatever the contract answers now, which is not what the user
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// read. A disagreement throws. See transferAmount.js.
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const amount = transferAmountUnits(
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tx.amount,
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tx.tokenDecimals,
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await contract.decimals(),
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);
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request = await contract.transfer.populateTransaction(tx.to, amount);
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}
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const populated = await connectedSigner.populateTransaction(request);
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assertWithinCeilings(populated);
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return connectedSigner.sendTransaction(populated);
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}
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// Show a full-sentence send failure in the reserved errors box, the same
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// element and markup renderValidation() uses for messages carrying the user's
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// own numbers, so it never moves anything on the screen.
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function showSendError(message) {
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const el = $("confirm-errors");
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el.innerHTML = `<div class="text-xs">${escapeHtml(message)}</div>`;
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el.style.visibility = "visible";
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}
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async function checkRecipientHistory(txInfo) {
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try {
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const provider = getProvider(state.rpcUrl, state.networkId);
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@@ -467,29 +508,7 @@ function init(_ctx) {
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const provider = getProvider(state.rpcUrl, state.networkId);
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const connectedSigner = signer.connect(provider);
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if (pendingTx.token === "ETH") {
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tx = await connectedSigner.sendTransaction({
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to: pendingTx.to,
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value: parseEther(pendingTx.amount),
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});
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} else {
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const contract = new Contract(
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pendingTx.token,
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ERC20_ABI,
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connectedSigner,
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);
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// The contract's decimals() is read to be COMPARED with the
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// scale the screen rendered this amount at, not to encode with:
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// encoding from it signs whatever the contract answers now,
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// which is not what the user read. A disagreement throws and is
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// reported on the error screen. See transferAmount.js.
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const amount = transferAmountUnits(
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pendingTx.amount,
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pendingTx.tokenDecimals,
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await contract.decimals(),
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);
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tx = await contract.transfer(pendingTx.to, amount);
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}
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tx = await populateVerifyAndSend(connectedSigner, pendingTx);
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// Best-effort: clear decrypted secret after use.
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// Note: JS strings are immutable; this nulls the reference but
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@@ -498,6 +517,14 @@ function init(_ctx) {
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txStatus.showWait(pendingTx, tx.hash);
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} catch (e) {
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decryptedSecret = null;
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// A fee over the bound is refused before anything is broadcast, so
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// there is no transaction that may have reached the network to warn
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// about: the message stays on the confirmation screen where the
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// user can go back, rather than routing to the sent/failed screen.
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if (e && e.approvalMismatch) {
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showSendError(e.message);
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return;
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}
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const hash = tx ? tx.hash : null;
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txStatus.showError(pendingTx, hash, e.shortMessage || e.message);
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} finally {
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@@ -511,4 +538,4 @@ function init(_ctx) {
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});
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}
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module.exports = { init, show, restore };
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module.exports = { init, show, restore, populateVerifyAndSend };
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@@ -51,6 +51,7 @@
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const {
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Transaction,
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accessListify,
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formatEther,
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getAddress,
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getBytes,
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verifyMessage,
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@@ -134,10 +135,19 @@ const FORBIDDEN_FIELDS = [
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const MAX_GAS_LIMIT = 100000000n;
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// 100,000 gwei per gas: orders of magnitude above the highest fee either
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// supported network has produced, and low enough to catch a fee that would
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// hand the validator the balance.
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// supported network has produced.
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const MAX_FEE_PER_GAS = 100000000000000n;
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// The largest total fee this wallet will sign, in wei. The two ceilings above
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// bound the gas limit and the price per gas each on its own, but the fee a
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// validator is actually paid is their product, and a gas limit and a price
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// that are each under their own ceiling still multiply to thousands of ETH —
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// 30,000,000 gas at 100,000 gwei is about 3,000 ETH. Bounding the product is
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// what catches a fee that would hand the validator the balance; the per-field
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// ceilings alone do not. A full 30,000,000-gas block at 33 gwei reaches this,
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// which no ordinary wallet transaction approaches.
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const MAX_TOTAL_FEE = 1000000000000000000n; // 1 ETH
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// A refusal to act on an artifact: it is not the thing that was approved, so
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// the approval it was offered against is spent and must not be retried. Every
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// throw in this module is one of these; the background distinguishes them from
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@@ -384,6 +394,28 @@ function assertWithinCeilings(tx) {
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);
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}
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}
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// The product: gasLimit × the most this transaction could pay per gas —
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// maxFeePerGas for a type-2 transaction, gasPrice for a legacy or type-1
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// one. This is the fee a gas-consuming contract can really extract, and it
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// is the bound the two per-field ceilings above cannot express.
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if (present(tx.gasLimit)) {
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const gasLimit = normalizeQuantity(tx.gasLimit, "gas limit");
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let price = null;
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if (present(tx.maxFeePerGas)) {
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price = normalizeQuantity(tx.maxFeePerGas, "maximum fee per gas");
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} else if (present(tx.gasPrice)) {
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price = normalizeQuantity(tx.gasPrice, "gas price");
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}
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if (price !== null && gasLimit * price > MAX_TOTAL_FEE) {
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throw refuse(
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"This transaction would allow a network fee of up to " +
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formatEther(gasLimit * price) +
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" ETH, which is more than the " +
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formatEther(MAX_TOTAL_FEE) +
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" ETH this wallet will sign for.",
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);
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}
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}
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}
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// Refuse a field only a transaction type this wallet does not sign can carry.
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@@ -775,4 +807,5 @@ module.exports = {
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TX_STAGE_NONCE,
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MAX_GAS_LIMIT,
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MAX_FEE_PER_GAS,
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MAX_TOTAL_FEE,
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};
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@@ -212,6 +212,24 @@ describe("prepareApprovalTx", () => {
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).rejects.toThrow(/gas limit no network this wallet supports/);
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});
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// The combined bound at population: a gas limit and a fee that are each
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// under their own ceiling but multiply to thousands of ETH is refused
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// before the approval window opens, so the user is never shown a
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// balance-draining fee to click past.
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test("refuses a fee whose product with the gas limit is over the bound", async () => {
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const gouging = providerWith({
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estimateGas: async () => 30000000n,
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getFeeData: async () => ({
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gasPrice: MAX_FEE_PER_GAS,
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maxFeePerGas: MAX_FEE_PER_GAS,
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maxPriorityFeePerGas: 1000000000n,
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}),
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});
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await expect(
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prepareApprovalTx(gouging, signer.address, TX_PARAMS),
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).rejects.toThrow(/network fee of up to/);
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});
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// No approval and no window: the failure goes back to the page the click
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// came from, in a sentence.
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test("reports a failed estimate as a full sentence", async () => {
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@@ -28,6 +28,7 @@ const {
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TX_STAGE_NONCE,
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MAX_GAS_LIMIT,
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MAX_FEE_PER_GAS,
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MAX_TOTAL_FEE,
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} = require("../src/shared/approvalVerify");
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const { prepareApprovalTx } = require("../src/shared/approvalTx");
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const { getSignerForAddress } = require("../src/shared/wallet");
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@@ -475,18 +476,131 @@ describe("verifySignedTx field comparison", () => {
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assertWithinCeilings({ [key]: MAX_FEE_PER_GAS + 1n }),
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).toThrow(/fee per gas far above any plausible value/);
|
||||
}
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||||
// Each field at its own ceiling multiplies to about 10,000 ETH, which
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// is exactly the combination the per-field ceilings cannot see and the
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||||
// product bound is for: it is refused, not accepted.
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||||
expect(() =>
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||||
assertWithinCeilings({
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||||
gasLimit: MAX_GAS_LIMIT,
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||||
maxFeePerGas: MAX_FEE_PER_GAS,
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||||
maxPriorityFeePerGas: MAX_FEE_PER_GAS,
|
||||
}),
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||||
).toThrow(/network fee of up to/);
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||||
// An ordinary transaction — a modest gas limit and a modest fee, each
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||||
// far under its ceiling and their product far under the bound — passes.
|
||||
expect(() =>
|
||||
assertWithinCeilings({
|
||||
gasLimit: 21000n,
|
||||
maxFeePerGas: 2000000000n,
|
||||
maxPriorityFeePerGas: 1000000000n,
|
||||
}),
|
||||
).not.toThrow();
|
||||
// Nothing to bound is not a failure: a type 2 approval carries no gas
|
||||
// price, and a bare object must not be refused for lacking one.
|
||||
expect(() => assertWithinCeilings({})).not.toThrow();
|
||||
});
|
||||
|
||||
// The defect this issue closes: gasLimit and maxFeePerGas each under their
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||||
// own ceiling, but their product — the fee a gas-consuming contract can
|
||||
// really extract — thousands of ETH. The per-field ceilings accept it; the
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||||
// product bound refuses it, on either side of the screen.
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||||
describe("the combined fee bound", () => {
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||||
// A gas limit and a fee that are each comfortably under their own
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||||
// ceiling but multiply to well over 1 ETH: 30,000,000 gas at 100,000
|
||||
// gwei is about 3,000 ETH.
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||||
const OVER = { gasLimit: 30000000n, maxFeePerGas: 100000000000000n };
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||||
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test("each field is under its own ceiling", () => {
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||||
expect(OVER.gasLimit).toBeLessThan(MAX_GAS_LIMIT);
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||||
expect(OVER.maxFeePerGas).toBeLessThanOrEqual(MAX_FEE_PER_GAS);
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||||
expect(OVER.gasLimit * OVER.maxFeePerGas).toBeGreaterThan(
|
||||
MAX_TOTAL_FEE,
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||||
);
|
||||
});
|
||||
|
||||
test("assertWithinCeilings refuses the product over the bound", () => {
|
||||
expect(() =>
|
||||
assertWithinCeilings({
|
||||
...OVER,
|
||||
maxPriorityFeePerGas: 1000000000n,
|
||||
}),
|
||||
).toThrow(/network fee of up to 3000\.0 ETH/);
|
||||
});
|
||||
|
||||
test("assertWithinCeilings bounds a legacy gasPrice the same way", () => {
|
||||
expect(() =>
|
||||
assertWithinCeilings({
|
||||
gasLimit: OVER.gasLimit,
|
||||
gasPrice: OVER.maxFeePerGas,
|
||||
}),
|
||||
).toThrow(/network fee of up to/);
|
||||
});
|
||||
|
||||
// The boundary itself, pinned rather than only some value well past
|
||||
// it. Both fields stay under their own ceilings, so it is the product
|
||||
// and nothing else that decides these two cases: a gas limit of 10,000
|
||||
// at the per-gas ceiling is exactly 1 ETH.
|
||||
test("assertWithinCeilings accepts a product exactly at the bound and refuses one wei over", () => {
|
||||
expect(MAX_FEE_PER_GAS * 10000n).toBe(MAX_TOTAL_FEE);
|
||||
expect(() =>
|
||||
assertWithinCeilings({
|
||||
gasLimit: 10000n,
|
||||
maxFeePerGas: MAX_FEE_PER_GAS,
|
||||
}),
|
||||
).not.toThrow();
|
||||
expect(() =>
|
||||
assertWithinCeilings({
|
||||
gasLimit: 10001n,
|
||||
maxFeePerGas: MAX_FEE_PER_GAS,
|
||||
}),
|
||||
).toThrow(/network fee of up to/);
|
||||
});
|
||||
|
||||
// The dApp path: an artifact whose fee is within each field's ceiling
|
||||
// but over the product bound, both displayed and signed, is refused at
|
||||
// verification just as it is at population.
|
||||
test("verifySignedTx refuses an over-bound product even when displayed", async () => {
|
||||
const raw = await signedWith(OVER);
|
||||
expect(() =>
|
||||
verifySignedTx(
|
||||
raw,
|
||||
approvedFor(TX_PARAMS, OVER),
|
||||
signer.address,
|
||||
SELECTED,
|
||||
),
|
||||
).toThrow(/network fee of up to/);
|
||||
});
|
||||
|
||||
test("verifySignedTx accepts a product just under the bound", async () => {
|
||||
// 21,000 gas at 40 gwei is 0.00084 ETH — an ordinary send.
|
||||
const under = { gasLimit: 21000n, maxFeePerGas: 40000000000n };
|
||||
expect(under.gasLimit * under.maxFeePerGas).toBeLessThan(
|
||||
MAX_TOTAL_FEE,
|
||||
);
|
||||
const raw = await signedWith(under);
|
||||
expect(() =>
|
||||
verifySignedTx(
|
||||
raw,
|
||||
approvedFor(TX_PARAMS, under),
|
||||
signer.address,
|
||||
SELECTED,
|
||||
),
|
||||
).not.toThrow();
|
||||
});
|
||||
|
||||
test("the refusal names the fee and the limit in a full sentence", () => {
|
||||
try {
|
||||
assertWithinCeilings(OVER);
|
||||
throw new Error("expected a rejection");
|
||||
} catch (e) {
|
||||
expect(e.approvalMismatch).toBe(true);
|
||||
expect(e.message).toMatch(/^[A-Z].*\.$/);
|
||||
expect(e.message).toContain("3000.0 ETH");
|
||||
expect(e.message).toContain("1.0 ETH");
|
||||
}
|
||||
});
|
||||
});
|
||||
|
||||
test("every field mismatch is a refusal, not a warning", async () => {
|
||||
const raw = await signedWith({ nonce: 8 });
|
||||
try {
|
||||
|
||||
@@ -0,0 +1,100 @@
|
||||
// The wallet's OWN send path enforces the same combined fee bound the dApp
|
||||
// path does (https://git.eeqj.de/sneak/AutistMask/issues/399).
|
||||
//
|
||||
// The send in src/popup/views/confirmTx.js pins no fee fields, so ethers fills
|
||||
// maxFeePerGas and the gas limit from whatever the configured RPC node
|
||||
// answers. Nothing bounded that: a hostile node could report a fee whose
|
||||
// product with the gas limit is thousands of ETH, and it would be both
|
||||
// displayed and signed. populateVerifyAndSend() populates the transaction and
|
||||
// runs assertWithinCeilings() on the populated fees before signing, so an
|
||||
// over-bound send is refused before anything is broadcast.
|
||||
//
|
||||
// The check is driven here with a fake connected signer rather than a real
|
||||
// one: populateTransaction() returns the fees the node would have produced,
|
||||
// and sendTransaction() records whether the send actually happened. The real
|
||||
// DOM path around it — reading the fee error into the reserved errors box — is
|
||||
// covered by the Chrome e2e suite.
|
||||
|
||||
globalThis.chrome = {
|
||||
storage: { local: { get: async () => ({}), set: async () => {} } },
|
||||
};
|
||||
|
||||
global.fetch = jest.fn(() => {
|
||||
throw new Error("tests must not perform network requests");
|
||||
});
|
||||
|
||||
const { populateVerifyAndSend } = require("../src/popup/views/confirmTx");
|
||||
const {
|
||||
MAX_FEE_PER_GAS,
|
||||
MAX_TOTAL_FEE,
|
||||
} = require("../src/shared/approvalVerify");
|
||||
|
||||
const RECIPIENT = "0x66133E8ea0f5D1d612D2502a968757D1048c214a";
|
||||
|
||||
// A signer whose populateTransaction() fills in the fees a node quoted and
|
||||
// whose sendTransaction() records the call, so a test can assert whether the
|
||||
// send was reached at all.
|
||||
function fakeSigner(fees) {
|
||||
const sent = [];
|
||||
return {
|
||||
sent,
|
||||
populateTransaction: async (request) => ({
|
||||
...request,
|
||||
from: RECIPIENT,
|
||||
nonce: 0,
|
||||
type: 2,
|
||||
chainId: 1n,
|
||||
gasLimit: fees.gasLimit,
|
||||
maxFeePerGas: fees.maxFeePerGas,
|
||||
maxPriorityFeePerGas: 1000000000n,
|
||||
}),
|
||||
sendTransaction: async (tx) => {
|
||||
sent.push(tx);
|
||||
return { hash: "0xabc" };
|
||||
},
|
||||
};
|
||||
}
|
||||
|
||||
const ETH_SEND = { token: "ETH", to: RECIPIENT, amount: "1.0" };
|
||||
|
||||
describe("populateVerifyAndSend enforces the combined fee bound", () => {
|
||||
// A gas limit and a fee that are each under their own field ceiling, but
|
||||
// multiply to about 3,000 ETH — the combination the per-field ceilings
|
||||
// cannot see.
|
||||
const OVER = { gasLimit: 30000000n, maxFeePerGas: MAX_FEE_PER_GAS };
|
||||
|
||||
test("each field is under its ceiling but the product is over the bound", () => {
|
||||
expect(OVER.maxFeePerGas).toBeLessThanOrEqual(MAX_FEE_PER_GAS);
|
||||
expect(OVER.gasLimit * OVER.maxFeePerGas).toBeGreaterThan(
|
||||
MAX_TOTAL_FEE,
|
||||
);
|
||||
});
|
||||
|
||||
test("refuses an over-bound send without broadcasting it", async () => {
|
||||
const signer = fakeSigner(OVER);
|
||||
let thrown;
|
||||
try {
|
||||
await populateVerifyAndSend(signer, ETH_SEND);
|
||||
} catch (e) {
|
||||
thrown = e;
|
||||
}
|
||||
expect(thrown).toBeDefined();
|
||||
expect(thrown.approvalMismatch).toBe(true);
|
||||
expect(thrown.message).toMatch(/^[A-Z].*\.$/);
|
||||
expect(thrown.message).toContain("3000.0 ETH");
|
||||
expect(thrown.message).toContain("1.0 ETH");
|
||||
// The one guarantee that matters: nothing was signed or sent.
|
||||
expect(signer.sent).toHaveLength(0);
|
||||
});
|
||||
|
||||
test("broadcasts a send whose product is just under the bound", async () => {
|
||||
// 21,000 gas at 40 gwei is 0.00084 ETH — an ordinary send.
|
||||
const under = { gasLimit: 21000n, maxFeePerGas: 40000000000n };
|
||||
expect(under.gasLimit * under.maxFeePerGas).toBeLessThan(MAX_TOTAL_FEE);
|
||||
const signer = fakeSigner(under);
|
||||
const tx = await populateVerifyAndSend(signer, ETH_SEND);
|
||||
expect(tx.hash).toBe("0xabc");
|
||||
expect(signer.sent).toHaveLength(1);
|
||||
expect(signer.sent[0].gasLimit).toBe(under.gasLimit);
|
||||
});
|
||||
});
|
||||
Reference in New Issue
Block a user