138760f75c
"Failed: 9000" although the delete executed: the RAM helpers sent `sp-spi2` - the base SPI2 select, whose default is "00 - No PoR" - so the card answered the envelope 9000 with no PoR and the verdict treated the missing PoR as a failure. `cardsApplyFields` also set `sp-spi2-hex` from the preset and then `updateSp()` recomputed it from the selects (which the preset never updated), clobbering the preset byte for anything reading it. - `getRamSpParams()` reads the computed `sp-spi2-hex`; `cardsApplyFields` syncs the SPI2 selects from the preset byte (base = low 5 bits, bit 0x20 = PoR via SMS-SUBMIT, dynamic option for unlisted bases) and the base select gains the missing cipher + RC/CC/DS combinations (15/19/1D). - a missing PoR is no longer a failure (the SPI may request none, and the card sometimes refuses one): `OK` with the SW, or `OK (no PoR)`. - a successful delete drops the object from the Explore result locally (no re-explore): an applet row goes away; a cascade package delete also drops the applets whose AID starts with the package AID. The consumed counter is still saved. - tests: ramRemoveFromExplorer (app/cascade/prefix), the no-PoR flow, the SPI2 source guard, and the updated delete-flow stubs. 641 frontend / 496 Python green; version 3.6.13; sw simple-v286.
545 lines
24 KiB
JavaScript
545 lines
24 KiB
JavaScript
const { test } = require('node:test');
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const assert = require('node:assert');
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const fs = require('node:fs');
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const path = require('node:path');
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const html = fs.readFileSync(path.join(__dirname, '..', 'index.html'), 'utf8');
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function extractFunc(src, name) {
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const re = new RegExp('(?:async\\s+)?function\\s+' + name + '\\s*\\([^)]*\\)\\s*\\{');
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const m = re.exec(src);
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if (!m) throw new Error('function ' + name + ' not found');
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let i = m.index + m[0].length - 1;
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let depth = 0;
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for (; i < src.length; i++) {
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if (src[i] === '{') depth++;
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else if (src[i] === '}') {
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depth--;
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if (depth === 0) break;
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}
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}
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return src.slice(m.index, i + 1);
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}
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// Extract chain builder functions and dependencies
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const FNS = ['berLenStr', 'buildApdu', 'escHtml', 'esc', 'chainInit', 'chainRamBuildRowHex', 'ramFmtLifecycle', 'ramFmtPrivileges', 'ramRenderExploreHtml', 'ramStepLine', 'ramGetStatusApdu', 'ramDeleteApdu',
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'stkParamsBuild', 'ramRemoteSwOk', 'spPorAccepted', 'ramIncrementCntr', 'ramDeleteFromExplorer', 'ramListingSpi2', 'ramRemoveFromExplorer',
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'_parseRawElfEntry', '_parseRawAppEntry', 'ramParseElfStatus', 'ramParseAppStatus', 'parseTLV', '_parseE3Entry',
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'ramCardIdxAfterRemove', 'ramClearResults', 'ramHideProgress', 'ramOpChanged', 'ramRender', 'ramApplyCard', 'ramExecute',
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'jcAidNorm', 'jcAidName', 'jcAidSuffix', 'jcAidHtml'];
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let code = '';
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for (const f of FNS) {
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code += extractFunc(html, f) + '\n';
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}
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const m = html.match(/const _chains = \{\};/);
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if (m) code += m[0].replace(/^const /, 'var ') + '\n';
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const lc = html.match(/const RAM_LIFECYCLE = \{[\s\S]*?\n\};/);
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if (lc) code += lc[0].replace(/^const /, 'var ') + '\n';
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const an = html.match(/const JC_AID_NAMES = \{[\s\S]*?\n\};/);
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if (an) code += an[0].replace(/^const /, 'var ') + '\n';
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const ar = html.match(/const JC_AID_RIDS = \{[\s\S]*?\n\};/);
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if (ar) code += ar[0].replace(/^const /, 'var ') + '\n';
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eval(code);
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code += 'var _ramCardIdx = null;\nvar _ramOpLast = null;\nvar _ramExplorerData = null;\n';
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eval(code);
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const els = {};
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const doc = { getElementById: (id) => { if (!els[id]) els[id] = {value:''}; return els[id]; } };
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global.document = doc;
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// ramApplyCard/ramExecute delegate to the SP-form helpers; their real
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// behaviour (and the preset re-read before an operation) is covered by
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// cards_counter.test.js, so keep them as global stubs here.
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globalThis.cardsApply = () => {};
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globalThis.spRefreshFromPreset = () => '';
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function reset() { for (const id of Object.keys(els)) delete els[id]; }
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function genRamResult(fields) {
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const row = { cmd: fields.cmd, fields: fields };
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return chainRamBuildRowHex(0, row);
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}
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function genRamApdu() {
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return genRamResult({
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cmd: 'install-install',
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aid: 'A000000151000000',
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elfAid: '',
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modAid: '',
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priv: '00',
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tkEnabled: true,
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tkMode: 'ea',
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tkPriority: '0',
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tkTimers: '0',
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tkTextlen: '0',
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tkMenus: '2',
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tkFirstpos: '1',
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tkFirstid: '01',
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tkLastpos: '2',
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tkLastid: '02',
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tkChannels: '0',
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tkMsl: '16',
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tkTar: 'AF4D01',
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tkAd: '',
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tkServices: '0',
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});
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}
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test('UICC toolkit nested inside EA (m=2, services 0)', () => {
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const apdu = genRamApdu();
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assert.ok(apdu.includes('EA13801100000002010102020002011603AF4D0100'), apdu);
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});
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test('UICC m=1 emits single pair', () => {
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const apdu = genRamResult({
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cmd: 'install-install', aid: 'A000000151000000', priv: '00',
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tkEnabled: true, tkMode: 'ea', tkPriority: '0', tkTimers: '0', tkTextlen: '0',
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tkMenus: '1', tkFirstpos: '1', tkFirstid: '01', tkLastpos: '0', tkLastid: '00',
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tkChannels: '0', tkMsl: '16', tkTar: 'AF4D01', tkAd: '', tkServices: '0',
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});
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assert.ok(apdu.includes('EA11800F0000000101010002011603AF4D0100'), apdu);
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});
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test('UICC m=3 fills middle pair with 0000', () => {
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const apdu = genRamResult({
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cmd: 'install-install', aid: 'A000000151000000', priv: '00',
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tkEnabled: true, tkMode: 'ea', tkPriority: '0', tkTimers: '0', tkTextlen: '0',
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tkMenus: '3', tkFirstpos: '1', tkFirstid: '01', tkLastpos: '3', tkLastid: '03',
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tkChannels: '0', tkMsl: '16', tkTar: 'AF4D01', tkAd: '', tkServices: '0',
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});
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assert.ok(apdu.includes('EA158013000000030101000003030002011603AF4D0100'), apdu);
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});
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test('UICC services 7 appended as final byte', () => {
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const apdu = genRamResult({
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cmd: 'install-install', aid: 'A000000151000000', priv: '00',
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tkEnabled: true, tkMode: 'ea', tkPriority: '0', tkTimers: '0', tkTextlen: '0',
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tkMenus: '2', tkFirstpos: '1', tkFirstid: '01', tkLastpos: '2', tkLastid: '02',
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tkChannels: '0', tkMsl: '16', tkTar: 'AF4D01', tkAd: '', tkServices: '7',
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});
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assert.ok(apdu.includes('EA13801100000002010102020002011603AF4D0107'), apdu);
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});
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test('SIM (CA) access domain FIRST, no services byte', () => {
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const apdu = genRamResult({
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cmd: 'install-install', aid: 'A000000151000000', priv: '00',
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tkEnabled: true, tkMode: 'ca', tkPriority: '0', tkTimers: '0', tkTextlen: '0',
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tkMenus: '2', tkFirstpos: '1', tkFirstid: '01', tkLastpos: '2', tkLastid: '02',
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tkChannels: '0', tkMsl: '16', tkTar: 'AF4D01', tkAd: '5A', tkServices: '0',
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});
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assert.ok(apdu.includes('EF14CA12015A00000002010102020002011603AF4D01'), apdu);
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});
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test('SIM (CA) blank access domain emits length byte 00', () => {
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const apdu = genRamResult({
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cmd: 'install-install', aid: 'A000000151000000', priv: '00',
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tkEnabled: true, tkMode: 'ca', tkPriority: '0', tkTimers: '0', tkTextlen: '0',
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tkMenus: '2', tkFirstpos: '1', tkFirstid: '01', tkLastpos: '2', tkLastid: '02',
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tkChannels: '0', tkMsl: '16', tkTar: 'AF4D01', tkAd: '', tkServices: '0',
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});
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assert.ok(apdu.includes('EF13CA110000000002010102020002011603AF4D01'), apdu);
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});
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test('SIM (CA) m=3, no TAR, blank access domain', () => {
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const apdu = genRamResult({
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cmd: 'install-install', aid: 'A000000151000000', priv: '00',
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tkEnabled: true, tkMode: 'ca', tkPriority: '0', tkTimers: '0', tkTextlen: '0',
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tkMenus: '3', tkFirstpos: '1', tkFirstid: '01', tkLastpos: '3', tkLastid: '03',
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tkChannels: '0', tkMsl: '16', tkTar: '', tkAd: '', tkServices: '0',
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});
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assert.ok(apdu.includes('EF12CA1000000000030101000003030002011600'), apdu);
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});
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test('UICC m=60 uses long-form BER lengths (EA 81 87 / inner 81 84)', () => {
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const apdu = genRamResult({
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cmd: 'install-install', aid: 'A000000151000000', priv: '00',
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tkEnabled: true, tkMode: 'ea', tkPriority: '0', tkTimers: '0', tkTextlen: '0',
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tkMenus: '60', tkFirstpos: '1', tkFirstid: '01', tkLastpos: '60', tkLastid: '3C',
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tkChannels: '0', tkMsl: '16', tkTar: 'AF4D01', tkAd: '', tkServices: '0',
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});
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assert.ok(apdu.includes('EA8188808185'), apdu);
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});
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test('LOAD P1 fixed to 80 (last block)', () => {
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const apdu = genRamResult({ cmd: 'load', data: 'AABBCC', block: '0' });
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assert.ok(apdu.startsWith('80E88000'), apdu);
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});
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test('DELETE: P1=00, mode in P2', () => {
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let apdu = genRamResult({ cmd: 'delete', aid: 'AA1902BC225501', delMode: '00' });
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assert.ok(apdu.startsWith('80E40000'), apdu);
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apdu = genRamResult({ cmd: 'delete', aid: 'AA1902BC225501', delMode: '80' });
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assert.ok(apdu.startsWith('80E40080'), apdu);
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});
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test('STORE DATA ram-enc P1 values 00/40/80/C0/E0', () => {
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for (const [enc, p1] of [['00','00'],['40','40'],['80','80'],['C0','C0'],['E0','E0']]) {
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const apdu = genRamResult({ cmd: 'store-data', data: 'AABB', enc: enc, block: '0' });
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assert.ok(apdu.startsWith('80E2' + p1 + '00'), enc + ' -> P1 ' + p1);
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}
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});
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test('ramRenderExploreHtml localizes every label and button', () => {
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const seen = [];
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global.t = s => { seen.push(s); return 'XX' + s; };
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const out = ramRenderExploreHtml(
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{ appCount: 5, freeNV: 100, freeV: 50 },
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[{ aid: 'A000000151000000', lifecycle: '07', privileges: '', sdAid: 'A000000151000000' }],
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[{ aid: 'A1130001180001', lifecycle: '07', privileges: '80', implicitSel: '00', elfAid: 'ELF1' }],
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[{ aid: 'ELF1', lifecycle: '01', version: '1.0', moduleAids: ['M1'], sdAid: null }]
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);
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delete global.t;
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assert.ok(out.includes('XXDelete'), out);
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assert.ok(out.includes('XXDelete All'), out);
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assert.ok(out.includes('XXApplications:'), out);
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assert.ok(out.includes('XXFree NV:'), out);
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assert.ok(out.includes('XXFree Volatile:'), out);
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assert.ok(out.includes('XXAID:'), out);
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assert.ok(out.includes('XXLifecycle:'), out);
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assert.ok(out.includes('XXPrivileges:'), out);
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assert.ok(out.includes('XXSD AID:'), out);
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assert.ok(out.includes('XXImplicit sel:'), out);
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assert.ok(out.includes('XXVersion:'), out);
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assert.ok(seen.includes('Application / Instance AID:'));
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assert.ok(seen.includes('Load File AID / Package AID:'));
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assert.ok(seen.includes('Executable Module AIDs / Applet Class AIDs:'));
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assert.ok(!out.includes('data-l10n'), out);
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// the well-known ISD AID is annotated (GP Card Spec v2.3.1 H.1.3)
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assert.ok(out.includes('A000000151000000 <span class="text-gray-400 dark:text-slate-500">(GlobalPlatform Issuer Security Domain)</span>'), out);
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});
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test('ramRenderExploreHtml annotates standard package AIDs, vendor AIDs stay bare', () => {
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global.t = s => s;
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const out = ramRenderExploreHtml(null, [], [], [
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{ aid: 'A0000000871005FFFFFFFF8913200000', lifecycle: '01', version: '1.0',
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moduleAids: ['A000000062010101'], sdAid: 'A0000001515350' },
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]);
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delete global.t;
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assert.ok(out.includes('(uicc.usim.toolkit)'), out);
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assert.ok(out.includes('(javacard.framework.service)'), out);
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assert.ok(out.includes('(GlobalPlatform RID)'), out);
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});
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test('ramFmtPrivileges uses the translated (none) placeholder', () => {
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global.t = s => 'XX' + s;
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assert.strictEqual(ramFmtPrivileges(''), 'XX(none)');
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assert.strictEqual(ramFmtPrivileges('00'), 'XX(none)');
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delete global.t;
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});
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function fakeClassList() {
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const set = new Set();
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return {
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add: (...cs) => cs.forEach(c => set.add(c)),
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remove: (...cs) => cs.forEach(c => set.delete(c)),
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contains: c => set.has(c),
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toggle: (c, on) => { if (on === undefined ? !set.has(c) : on) set.add(c); else set.delete(c); },
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};
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}
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function fakeEl(id) {
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return {
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id,
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value: '',
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innerHTML: '',
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textContent: '',
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classList: fakeClassList(),
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options: [],
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appendChild(opt) { this.options.push(opt); },
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};
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}
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function fakeRamDocument(ids) {
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const els = {};
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for (const id of ids) els[id] = fakeEl(id);
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const sel = els['ram-card-sel'];
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if (sel) {
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Object.defineProperty(sel, 'innerHTML', {
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get() { return this._html || ''; },
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set(v) { this._html = v; this.value = ''; },
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});
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}
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globalThis.document = {
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getElementById: id => els[id] || null,
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createElement: () => fakeEl('option'),
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};
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return els;
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}
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test('ramGetStatusApdu builds the compact chain, never the expanded form', () => {
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// GP 11.4.2.2: compact listings (P2.b2=0) carry the chained GET RESPONSE
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assert.strictEqual(ramGetStatusApdu('80', '00'), '80F28000024F0000C0000000');
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assert.strictEqual(ramGetStatusApdu('20', '01'), '80F22001024F0000C0000000');
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// the expanded TLV form (P2=02/03) takes no GET RESPONSE and is not built:
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// its GET STATUS bytes would be `80F2<P1>02 04 4F00 5C.. 00`
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assert.ok(!ramGetStatusApdu('20', '01').startsWith('80F2200204'),
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'expanded form must not be generated by this builder');
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assert.ok(!html.includes("for (const p2Init of ['02', '00'])"),
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'the P2=02 attempt must be gone');
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// the ISD-only query is a single occurrence: no next-occurrence paging
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assert.ok(/if \(p1 === '80'\) break;/.test(html), 'ISD next-occurrence guard missing');
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});
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test('ramStepLine shows the PoR verdict and the remote status word', () => {
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globalThis.t = s => s;
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globalThis.lookupSw = (a, b) => (a + b === '6700' ? 'Wrong length in Lc' : '');
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const okLine = ramStepLine({ name: 'INSTALL [for load]', por_status: 'por_ok',
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por_sw: '9000', sw: '9000', bytes: 50, segments: 1 }, 0);
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assert.ok(okLine.startsWith('\u2705'), okLine);
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assert.ok(okLine.includes('PoR ok'), okLine);
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assert.ok(okLine.includes('remote SW 9000'), okLine);
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assert.ok(okLine.includes('50 bytes / 1 SMS'), okLine);
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const badLine = ramStepLine({ name: 'LOAD (1/9)', por_status: 'por_ok', por_sw: '6700',
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por_error: 'remote SW 6700', sw: '9000', bytes: 274, segments: 3 }, 1);
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assert.ok(badLine.startsWith('\u274c'), badLine);
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assert.ok(badLine.includes('remote SW 6700 (Wrong length in Lc)'), badLine);
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const porLine = ramStepLine({ name: 'LOAD', por_status: 'por_error_cntr_low' }, 2);
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assert.ok(porLine.includes('PoR error cntr_low'), porLine);
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const noPor = ramStepLine({ name: 'LOAD', por_status: 'no_por' }, 3);
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assert.ok(noPor.startsWith('\u2705') && noPor.includes('no PoR'), noPor);
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});
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test('ramOpChanged clears the executed status only on a real op change', () => {
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const els = fakeRamDocument(['ram-op', 'ram-install-params', 'ram-result', 'ram-explorer', 'ram-steps', 'ram-progress']);
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_ramOpLast = null;
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els['ram-op'].value = 'explore';
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ramOpChanged();
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assert.ok(!els['ram-result'].classList.contains('hidden'));
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els['ram-result'].classList.remove('hidden');
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els['ram-steps'].classList.remove('hidden');
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ramOpChanged();
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assert.ok(!els['ram-result'].classList.contains('hidden'), 'same op must keep the result');
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els['ram-op'].value = 'install-cap';
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ramOpChanged();
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assert.ok(els['ram-result'].classList.contains('hidden'));
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assert.ok(els['ram-steps'].classList.contains('hidden'));
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assert.ok(els['ram-explorer'].classList.contains('hidden'));
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assert.ok(els['ram-progress'].classList.contains('hidden'));
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assert.ok(!els['ram-install-params'].classList.contains('hidden'));
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});
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test('ramRender keeps the selected card preset across rebuilds', () => {
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const els = fakeRamDocument(['ram-card-sel', 'ram-op', 'ram-install-params', 'ram-result', 'ram-explorer', 'ram-steps', 'ram-progress']);
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globalThis.cards = [{ name: 'A' }, { name: 'B' }, { name: 'C' }];
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_ramCardIdx = null;
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_ramOpLast = 'explore';
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els['ram-op'].value = 'explore';
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ramRender();
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assert.strictEqual(els['ram-card-sel'].value, '');
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els['ram-card-sel'].value = '1';
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ramRender();
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assert.strictEqual(els['ram-card-sel'].value, '1');
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els['ram-card-sel'].value = '';
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_ramCardIdx = 2;
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ramRender();
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assert.strictEqual(els['ram-card-sel'].value, '2');
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globalThis.cards = [{ name: 'A' }];
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_ramCardIdx = 2;
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ramRender();
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assert.strictEqual(els['ram-card-sel'].value, '');
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delete globalThis.cards;
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});
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test('ramApplyCard remembers a valid picked preset', () => {
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globalThis.cards = [{ name: 'A' }, { name: 'B' }];
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let applied = null;
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globalThis.cardsApply = i => { applied = i; };
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_ramCardIdx = null;
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ramApplyCard('1');
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assert.strictEqual(_ramCardIdx, 1);
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assert.strictEqual(applied, '1');
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ramApplyCard('');
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assert.strictEqual(_ramCardIdx, 1, 'invalid pick must not forget the preset');
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delete globalThis.cards;
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globalThis.cardsApply = () => {};
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delete globalThis.cards;
|
|
});
|
|
|
|
test('ramExecute commits the dropdown selection before running', async () => {
|
|
const els = fakeRamDocument(['ram-card-sel', 'ram-op', 'ram-install-params', 'ram-result', 'ram-explorer', 'ram-steps', 'ram-progress']);
|
|
globalThis.cards = [{ name: 'A' }];
|
|
globalThis.getRamSpParams = () => ({ kicKey: '11', kidKey: '22' });
|
|
let explored = false;
|
|
globalThis.ramExplore = async () => { explored = true; };
|
|
globalThis.alert = () => {};
|
|
_ramCardIdx = null;
|
|
els['ram-card-sel'].value = '0';
|
|
els['ram-op'].value = 'explore';
|
|
await ramExecute();
|
|
assert.strictEqual(_ramCardIdx, 0);
|
|
assert.ok(explored);
|
|
delete globalThis.cards;
|
|
delete globalThis.getRamSpParams;
|
|
delete globalThis.ramExplore;
|
|
delete globalThis.alert;
|
|
});
|
|
|
|
test('ramCardIdxAfterRemove keeps the remembered index aligned', () => {
|
|
assert.strictEqual(ramCardIdxAfterRemove(2, 0), 1);
|
|
assert.strictEqual(ramCardIdxAfterRemove(0, 0), null);
|
|
assert.strictEqual(ramCardIdxAfterRemove(0, 2), 0);
|
|
assert.strictEqual(ramCardIdxAfterRemove(null, 1), null);
|
|
});
|
|
|
|
test('ramParseElfStatus lists the compact ELF and module listings (F0414C46416101)', () => {
|
|
// Exact bytes from a live RAM Explore: the P1=20 ELF page and the P1=10
|
|
// (ELF+modules) page. The old 0x10-scan walk dropped everything after the
|
|
// first entry; the deterministic AID walk lists them all.
|
|
const elfPage = '10A0000000090005FFFFFFFF8911000000010010A0000000871005FFFFFFFF8913100000010010A0000000871005FFFFFFFF8914100000010010A0000000090005FFFFFFFF8912000000010010A0000000871005FFFFFFFF8913200000010010A0000000090005FFFFFFFF8913000000010010A0000000090005FFFFFFFF8911010000010010D2760001180002FF49100A89AA060F00010010A1130001180001FFFFFFFF89A1003900010010A1130001180002FFF7100E8904000200010007F0414C464161010100';
|
|
const elfs = ramParseElfStatus(elfPage);
|
|
const f041 = elfs.find(r => r.aid === 'F0414C46416101');
|
|
assert.ok(f041, JSON.stringify(elfs.map(r => r.aid)));
|
|
assert.strictEqual(f041.lifecycle, '01');
|
|
assert.ok(elfs.some(r => r.aid === 'A1130001180002FFF7100E8904000200'), 'A113 ELF missing');
|
|
assert.ok(elfs.some(r => r.aid === 'A0000000090005FFFFFFFF8912000000'), 'uicc.toolkit ELF missing');
|
|
|
|
const modulesPage = '10A1130001180001FFFFFFFF89A100390001000110A1130001180001FFFFFFFF89A100390810A1130001180002FFF7100E890400020001000210A1130001180002FFF7100E890400020810A1130001180002FFF7100E89494D450807F0414C4641610101000108F0414C4641610101';
|
|
const mods = ramParseElfStatus(modulesPage, true);
|
|
const f041Row = mods.find(r => r.aid === 'F0414C46416101');
|
|
assert.ok(f041Row, JSON.stringify(mods.map(r => r.aid)));
|
|
assert.deepStrictEqual(f041Row.moduleAids, ['F0414C4641610101']);
|
|
});
|
|
|
|
test('ramParseAppStatus keeps 16-byte AIDs (no rawLen-1 truncation)', () => {
|
|
const page = '08D276000005AA3F010704'
|
|
+ '0FD276000005AA060200000000B000000700'
|
|
+ '0FD276000005AA060200000000B00001070010A1130001180001FFFFFFFF89A10039080700'
|
|
+ '10A1130001180002FFF7100E8904000208070010A1130001180002FFF7100E89494D45080700';
|
|
const apps = ramParseAppStatus(page);
|
|
assert.deepStrictEqual(apps.map(r => r.aid), [
|
|
'D276000005AA3F01', 'D276000005AA060200000000B00000',
|
|
'D276000005AA060200000000B00001',
|
|
'A1130001180001FFFFFFFF89A1003908', 'A1130001180002FFF7100E8904000208',
|
|
'A1130001180002FFF7100E89494D4508',
|
|
]);
|
|
assert.strictEqual(apps[3].lifecycle, '07');
|
|
});
|
|
|
|
test('ramDeleteApdu builds the GP DELETE with the 4F AID TLV and Le (F0414C46416101)', () => {
|
|
// GP Card Spec v2.3.1 Table 11-20/23: P1=00, P2.b8 = object / object+related,
|
|
// data = '4F' AID TLV, Le=00. The old handler called an undefined helper
|
|
// and no APDU was ever sent.
|
|
assert.strictEqual(ramDeleteApdu('F0414C46416101', false),
|
|
'80E40000094F07F0414C4641610100');
|
|
assert.strictEqual(ramDeleteApdu('F0414C46416101', true),
|
|
'80E40080094F07F0414C4641610100');
|
|
assert.strictEqual(ramDeleteApdu('A1130001180002FFF7100E8904000200', true),
|
|
'80E40080124F10A1130001180002FFF7100E890400020000');
|
|
assert.strictEqual(ramDeleteApdu('', false), '');
|
|
// the dead helper reference must not come back
|
|
assert.ok(!html.includes('_ber_len('), 'undefined _ber_len() call is back');
|
|
});
|
|
|
|
test('ramRemoteSwOk mirrors the server success set', () => {
|
|
for (const sw of ['9000', '6113', '62F1', '6310', 'CAFE']) {
|
|
assert.ok(ramRemoteSwOk(sw), sw);
|
|
}
|
|
for (const sw of ['6700', '6F00', '6A88', '', null]) {
|
|
assert.ok(!ramRemoteSwOk(sw), String(sw));
|
|
}
|
|
});
|
|
|
|
test('ramRemoveFromExplorer drops the object locally (cascade drops its applets)', () => {
|
|
let renders = 0;
|
|
globalThis.ramRenderExplorer = () => { renders++; };
|
|
_ramExplorerData = {
|
|
apps: [{ aid: 'F0414C4641610101' }, { aid: 'F0414C4641610199' },
|
|
{ aid: 'A1130001180001FFFFFFFF89A1003908' }],
|
|
elfs: [{ aid: 'F0414C46416101' }, { aid: 'A1130001180001FFFFFFFF89A1003900' }],
|
|
};
|
|
assert.strictEqual(ramRemoveFromExplorer('f0414c4641610101', false), true);
|
|
assert.deepStrictEqual(_ramExplorerData.apps.map(a => a.aid),
|
|
['F0414C4641610199', 'A1130001180001FFFFFFFF89A1003908']);
|
|
assert.strictEqual(renders, 1);
|
|
assert.strictEqual(ramRemoveFromExplorer('F0414C46416101', true), true);
|
|
assert.deepStrictEqual(_ramExplorerData.elfs.map(e => e.aid),
|
|
['A1130001180001FFFFFFFF89A1003900']);
|
|
assert.deepStrictEqual(_ramExplorerData.apps.map(a => a.aid),
|
|
['A1130001180001FFFFFFFF89A1003908'], 'an unrelated applet stays');
|
|
assert.strictEqual(renders, 2);
|
|
assert.strictEqual(ramRemoveFromExplorer('DEADBEEF', false), false);
|
|
delete globalThis.ramRenderExplorer;
|
|
});
|
|
|
|
test('getRamSpParams reads the computed SPI2 byte, not the base select', () => {
|
|
const fn = extractFunc(html, 'getRamSpParams');
|
|
assert.ok(/spi2: document\.getElementById\('sp-spi2-hex'\)/.test(fn), fn);
|
|
});
|
|
|
|
test('ramListingSpi2 requests the SMS-submit PoR for the listing queries', () => {
|
|
// Apps (40) and ELF (20/10) listings can exceed the ENVELOPE response;
|
|
// with SPI2=0x01 the card answers actual_response_sms_submit and the data
|
|
// never arrives (the live "Partial - Apps" bug).
|
|
for (const p1 of ['40', '20', '10']) assert.strictEqual(ramListingSpi2(p1), '21', p1);
|
|
for (const p1 of ['80', '00', 'FF']) assert.strictEqual(ramListingSpi2(p1), '01', p1);
|
|
});
|
|
|
|
function stubDeleteEnv(sendResult) {
|
|
// ramShowProgress/ramHideProgress are the real extracted helpers
|
|
const els = fakeRamDocument(['ram-result', 'ram-steps', 'ram-progress', 'ram-progress-text']);
|
|
const calls = { refresh: [], saved: [], sent: [], explored: null, removed: null };
|
|
globalThis.t = s => s;
|
|
globalThis.spRefreshFromPreset = sel => { calls.refresh.push(sel); };
|
|
globalThis.getRamSpParams = () => ({ cntr: '0000000005', kicKey: 'AA', kidKey: 'BB' });
|
|
globalThis.confirm = () => true;
|
|
globalThis.alert = () => {};
|
|
globalThis.ramShowProgress = () => {}; // not part of the extracted FNS
|
|
globalThis.ramSendOta = async (apdu, sp) => {
|
|
calls.sent.push({ apdu: apdu, cntr: sp.cntr });
|
|
return sendResult;
|
|
};
|
|
globalThis.ramSaveCntr = c => { calls.saved.push(c); };
|
|
globalThis.ramExplore = async sp => { calls.explored = sp.cntr; };
|
|
return { els, calls };
|
|
}
|
|
|
|
function unstubDeleteEnv() {
|
|
for (const k of ['getRamSpParams', 'confirm', 'alert', 'ramShowProgress',
|
|
'ramSendOta', 'ramSaveCntr', 'ramExplore']) {
|
|
delete globalThis[k];
|
|
}
|
|
globalThis.spRefreshFromPreset = () => ''; // the top-level stub
|
|
}
|
|
|
|
test('ramDeleteFromExplorer refreshes the preset and drops the record locally', async () => {
|
|
const { els, calls } = stubDeleteEnv({ success: true,
|
|
por: { response_status: 'por_ok', decoded: { last_status_word: '9000' } } });
|
|
_ramExplorerData = { apps: [{ aid: 'F0414C4641610101' }], elfs: [{ aid: 'F0414C46416101' }] };
|
|
globalThis.ramRenderExplorer = () => {};
|
|
await ramDeleteFromExplorer('F0414C46416101', true);
|
|
delete globalThis.ramRenderExplorer;
|
|
assert.deepStrictEqual(calls.refresh, ['ram-card-sel'],
|
|
'the preset must be re-read before the operation');
|
|
assert.strictEqual(calls.sent.length, 1);
|
|
assert.ok(calls.sent[0].apdu.startsWith('80E40080'), calls.sent[0].apdu);
|
|
assert.strictEqual(calls.sent[0].cntr, '0000000005');
|
|
assert.deepStrictEqual(calls.saved, ['0000000006'],
|
|
'the accepted packet advances the saved counter');
|
|
assert.deepStrictEqual(_ramExplorerData.elfs, [],
|
|
'a successful cascade delete drops the package from the Explore result');
|
|
assert.deepStrictEqual(_ramExplorerData.apps, [],
|
|
'and the package applets (AID prefix) with it');
|
|
assert.strictEqual(calls.explored, null, 'no re-explore is run');
|
|
assert.strictEqual(els['ram-result'].textContent, 'OK');
|
|
unstubDeleteEnv();
|
|
});
|
|
|
|
test('ramDeleteFromExplorer leaves the counter untouched on a rejected packet', async () => {
|
|
const { calls } = stubDeleteEnv({ success: true, por: { response_status: 'cntr_low' } });
|
|
await ramDeleteFromExplorer('F0414C46416101', false);
|
|
assert.deepStrictEqual(calls.saved, [], 'a rejected packet must not advance the counter');
|
|
assert.strictEqual(calls.explored, null, 'no re-explore after a rejected delete');
|
|
unstubDeleteEnv();
|
|
});
|
|
|
|
test('ramDeleteFromExplorer advances but does not re-explore on a failed remote command', async () => {
|
|
const { calls } = stubDeleteEnv({ success: true,
|
|
por: { response_status: 'por_ok', decoded: { last_status_word: '6A88' } } });
|
|
await ramDeleteFromExplorer('F0414C46416101', false);
|
|
assert.deepStrictEqual(calls.saved, ['0000000006'],
|
|
'the card consumed the packet, so the counter still advances');
|
|
assert.strictEqual(calls.explored, null, 'a failed DELETE must not re-explore');
|
|
unstubDeleteEnv();
|
|
});
|