Charge every TLV a held segment carries against the reassembly cap
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+17
-10
@@ -1805,7 +1805,7 @@ describe('reassembly bounds', () => {
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assert.deepEqual(lost, [], 'the peer holds the only segment there was, so nothing was lost');
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});
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// The two addresses are 22 octets, so only the 14 the TLV carries can overrun a cap of 30.
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// The two addresses and the TLV's object are 222 octets, so only the 14 it carries can overrun a cap of 230.
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test('counts a body carried in message_payload against the octet cap', () => {
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function collectPayload(maxOctets: number): Collected {
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const reassembler = new Reassembler({
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@@ -1820,12 +1820,12 @@ describe('reassembly bounds', () => {
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return collectPdu(reassembler, payloadSegment(9, 1, 2));
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}
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assert.equal(collectPayload(30).kept, false, 'a TLV body the cap cannot hold is refused, not dropped later');
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assert.equal(collectPayload(40).kept, true);
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assert.equal(collectPayload(230).kept, false, 'a TLV body the cap cannot hold is refused, not dropped later');
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assert.equal(collectPayload(240).kept, true);
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});
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test('counts every occurrence of a repeatable TLV against the octet cap, empty ones included', () => {
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function collectCallbacks(maxOctets: number, tagValue: Buffer[]): Collected {
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test('counts every TLV and every occurrence of a repeatable one against the octet cap, empty ones included', () => {
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function collectTlvs(maxOctets: number, tlvs: PduObject['tlvs']): Collected {
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const reassembler = new Reassembler({
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log: silentLog,
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max: 10,
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@@ -1834,11 +1834,17 @@ describe('reassembly bounds', () => {
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onLost: () => undefined,
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timeout: 60_000,
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});
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const carried = segment(9, 1, 2);
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return collectPdu(reassembler, { ...carried, tlvs: { callback_num: { tagId: 0x0381, tagName: 'callback_num', tagValue } } });
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return collectPdu(reassembler, { ...segment(9, 1, 2), tlvs });
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}
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function collectCallbacks(maxOctets: number, tagValue: Buffer[]): Collected {
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return collectTlvs(maxOctets, { callback_num: { tagId: 0x0381, tagName: 'callback_num', tagValue } });
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}
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const unknownTags = Object.fromEntries(Array.from({ length: 10_000 }, (_, i) => {
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const tagId = 0x4000 + i;
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return [String(tagId), { tagId, tagName: undefined, tagValue: Buffer.alloc(0) }];
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}));
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const numbers = [Buffer.alloc(10_000, 0x31), Buffer.alloc(10_000, 0x32)];
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assert.equal(collectCallbacks(20_000, numbers).kept, false);
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@@ -1848,6 +1854,7 @@ describe('reassembly bounds', () => {
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false,
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'an empty occurrence still holds an object',
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);
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assert.equal(collectTlvs(30_000, unknownTags).kept, false, 'an empty tag still holds an object');
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});
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// The segments before it were answered ESME_ROK, so dropping those is not the same as refusing one.
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@@ -1921,9 +1928,9 @@ describe('reassembly bounds', () => {
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assert.equal(counted.size, 1, 'the second group evicted the first, as a UDH group would');
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counted.clear();
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// A sar_* segment is the two 11-octet addresses plus an 8-octet body, with no UDH to carry.
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assert.equal(collectSar(capped(20), 3, 1, 2).kept, false);
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assert.equal(collectSar(capped(30), 3, 1, 2).kept, true);
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// A sar_* segment is the two 11-octet addresses, an 8-octet body and three 200-octet TLV objects.
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assert.equal(collectSar(capped(620), 3, 1, 2).kept, false);
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assert.equal(collectSar(capped(630), 3, 1, 2).kept, true);
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});
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// Nothing else says a message the peer has already been answered for was thrown away.
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