Usermode/ld-acess - Added two more ARM relocation types
[tpg/acess2.git] / Usermode / Libraries / ld-acess.so_src / elf.c
1 /*
2  * Acess2 Dynamic Linker
3  * - By John Hodge (thePowersGang)
4  *
5  * elf.c
6  * - ELF32/ELF64 relocation
7  */
8 #define DEBUG   0
9
10 #include "common.h"
11 #include <stdint.h>
12 #include "elf32.h"
13 #include "elf64.h"
14
15 #if DEBUG
16 # define        DEBUGS(v...)    SysDebug("ld-acess - " v)
17 #else
18 # define        DEBUGS(...)     
19 #endif
20
21 //#if BITS > 32
22 # define SUPPORT_ELF64
23 //#endif
24
25 // === CONSTANTS ===
26 #if DEBUG
27 //static const char     *csaDT_NAMES[] = {"DT_NULL", "DT_NEEDED", "DT_PLTRELSZ", "DT_PLTGOT", "DT_HASH", "DT_STRTAB", "DT_SYMTAB", "DT_RELA", "DT_RELASZ", "DT_RELAENT", "DT_STRSZ", "DT_SYMENT", "DT_INIT", "DT_FINI", "DT_SONAME", "DT_RPATH", "DT_SYMBOLIC", "DT_REL", "DT_RELSZ", "DT_RELENT", "DT_PLTREL", "DT_DEBUG", "DT_TEXTREL", "DT_JMPREL"};
28 static const char       *csaR_NAMES[] = {"R_386_NONE", "R_386_32", "R_386_PC32", "R_386_GOT32", "R_386_PLT32", "R_386_COPY", "R_386_GLOB_DAT", "R_386_JMP_SLOT", "R_386_RELATIVE", "R_386_GOTOFF", "R_386_GOTPC", "R_386_LAST"};
29 #endif
30
31 // === PROTOTYPES ===
32 void    *ElfRelocate(void *Base, char **envp, const char *Filename);
33  int    ElfGetSymbol(void *Base, const char *Name, void **Ret, size_t *Size);
34 void    *Elf32Relocate(void *Base, char **envp, const char *Filename);
35  int    Elf32GetSymbol(void *Base, const char *Name, void **Ret, size_t *Size);
36 #ifdef SUPPORT_ELF64
37 void    *Elf64Relocate(void *Base, char **envp, const char *Filename);
38  int    Elf64GetSymbol(void *Base, const char *Name, void **Ret, size_t *Size);
39 #endif
40 uint32_t        ElfHashString(const char *name);
41
42 // === CODE ===
43 /**
44  * \fn int ElfRelocate(void *Base, char **envp, const char *Filename)
45  * \brief Relocates a loaded ELF Executable
46  */
47 void *ElfRelocate(void *Base, char **envp, const char *Filename)
48 {
49         Elf32_Ehdr      *hdr = Base;
50         
51         switch(hdr->e_ident[4])
52         {
53         case ELFCLASS32:
54                 return Elf32Relocate(Base, envp, Filename);
55 #ifdef SUPPORT_ELF64
56         case ELFCLASS64:
57                 return Elf64Relocate(Base, envp, Filename);
58 #endif
59         default:
60                 SysDebug("ld-acess - ElfRelocate: Unknown file class %i", hdr->e_ident[4]);
61                 return NULL;
62         }
63 }
64
65 /**
66  * \fn int ElfGetSymbol(Uint Base, const char *name, void **ret)
67  */
68 int ElfGetSymbol(void *Base, const char *Name, void **ret, size_t *Size)
69 {
70         Elf32_Ehdr      *hdr = Base;
71
72         switch(hdr->e_ident[4])
73         {
74         case ELFCLASS32:
75                 return Elf32GetSymbol(Base, Name, ret, Size);
76 #ifdef SUPPORT_ELF64
77         case ELFCLASS64:
78                 return Elf64GetSymbol(Base, Name, ret, Size);
79 #endif
80         default:
81                 SysDebug("ld-acess - ElfRelocate: Unknown file class %i", hdr->e_ident[4]);
82                 return 0;
83         }
84 }
85
86 void *Elf32Relocate(void *Base, char **envp, const char *Filename)
87 {
88         Elf32_Ehdr      *hdr = Base;
89         Elf32_Phdr      *phtab;
90          int    i, j;   // Counters
91         char    *libPath;
92         intptr_t        iRealBase = -1;
93         intptr_t        iBaseDiff;
94          int    iSegmentCount;
95 //       int    iSymCount;
96         Elf32_Rel       *rel = NULL;
97         Elf32_Rela      *rela = NULL;
98         void    *plt = NULL;
99          int    relSz=0, relEntSz=8;
100          int    relaSz=0, relaEntSz=8;
101          int    pltSz=0, pltType=0;
102         Elf32_Dyn       *dynamicTab = NULL;     // Dynamic Table Pointer
103         char    *dynstrtab = NULL;      // .dynamic String Table
104         Elf32_Sym       *dynsymtab;
105         void    (*do_relocate)(uint32_t t_info, uint32_t *ptr, Elf32_Addr addend, int Type, int bRela, const char *Sym);
106         
107         DEBUGS("ElfRelocate: (Base=0x%x)", Base);
108         
109         // Check magic header
110         
111         
112         // Parse Program Header to get Dynamic Table
113         phtab = Base + hdr->phoff;
114         iSegmentCount = hdr->phentcount;
115         for(i=0;i<iSegmentCount;i++)
116         {
117                 // Determine linked base address
118                 if(phtab[i].Type == PT_LOAD && iRealBase > phtab[i].VAddr)
119                         iRealBase = phtab[i].VAddr;
120                 
121                 // Find Dynamic Section
122                 if(phtab[i].Type == PT_DYNAMIC) {
123                         if(dynamicTab) {
124                                 DEBUGS(" WARNING - elf_relocate: Multiple PT_DYNAMIC segments");
125                                 continue;
126                         }
127                         dynamicTab = (void *) (intptr_t) phtab[i].VAddr;
128                         j = i;  // Save Dynamic Table ID
129                 }
130         }
131         
132         // Page Align real base
133         iRealBase &= ~0xFFF;
134         DEBUGS(" elf_relocate: True Base = 0x%x, Compiled Base = 0x%x", Base, iRealBase);
135         
136         // Adjust "Real" Base
137         iBaseDiff = (intptr_t)Base - iRealBase;
138         
139 //      hdr->entrypoint += iBaseDiff;   // Adjust Entrypoint
140         
141         // Check if a PT_DYNAMIC segement was found
142         if(!dynamicTab) {
143                 SysDebug(" elf_relocate: No PT_DYNAMIC segment in image %p, returning", Base);
144                 return (void *)(intptr_t)(hdr->entrypoint + iBaseDiff);
145         }
146         
147         // Adjust Dynamic Table
148         dynamicTab = (void *)( (intptr_t)dynamicTab + iBaseDiff );
149         
150         // === Get Symbol table and String Table ===
151         for( j = 0; dynamicTab[j].d_tag != DT_NULL; j++)
152         {
153                 switch(dynamicTab[j].d_tag)
154                 {
155                 // --- Symbol Table ---
156                 case DT_SYMTAB:
157                         DEBUGS(" elf_relocate: DYNAMIC Symbol Table 0x%x (0x%x)",
158                                 dynamicTab[j].d_val, dynamicTab[j].d_val + iBaseDiff);
159                         if(iBaseDiff != 0)      dynamicTab[j].d_val += iBaseDiff;
160                         dynsymtab = (void*)(intptr_t)dynamicTab[j].d_val;
161                         break;
162                 // --- String Table ---
163                 case DT_STRTAB:
164                         DEBUGS(" elf_relocate: DYNAMIC String Table 0x%x (0x%x)",
165                                 dynamicTab[j].d_val, dynamicTab[j].d_val + iBaseDiff);
166                         if(iBaseDiff != 0)      dynamicTab[j].d_val += iBaseDiff;
167                         dynstrtab = (void*)(intptr_t)dynamicTab[j].d_val;
168                         break;
169                 // --- Hash Table --
170                 case DT_HASH:
171                         if(iBaseDiff != 0)      dynamicTab[j].d_val += iBaseDiff;
172 //                      iSymCount = ((Elf32_Word*)(intptr_t)dynamicTab[j].d_val)[1];
173                         break;
174                 }
175         }
176
177         if(dynsymtab == NULL) {
178                 SysDebug("ld-acess.so - WARNING: No Dynamic Symbol table in %p, returning", hdr);
179                 return (void *)(intptr_t) (hdr->entrypoint + iBaseDiff);
180         }
181
182         // === Add to loaded list (can be imported now) ===
183         AddLoaded( Filename, Base );
184
185         // === Parse Relocation Data ===
186         DEBUGS(" elf_relocate: dynamicTab = 0x%x", dynamicTab);
187         for( j = 0; dynamicTab[j].d_tag != DT_NULL; j++)
188         {
189                 switch(dynamicTab[j].d_tag)
190                 {
191                 // --- Shared Library Name ---
192                 case DT_SONAME:
193                         DEBUGS(" elf_relocate: .so Name '%s'", dynstrtab+dynamicTab[j].d_val);
194                         break;
195                 // --- Needed Library ---
196                 case DT_NEEDED:
197                         libPath = dynstrtab + dynamicTab[j].d_val;
198                         DEBUGS(" Required Library '%s'", libPath);
199                         if(LoadLibrary(libPath, NULL, envp) == 0) {
200                                 #if DEBUG
201                                 DEBUGS(" elf_relocate: Unable to load '%s'", libPath);
202                                 #else
203                                 SysDebug("Unable to load required library '%s'", libPath);
204                                 #endif
205                                 return 0;
206                         }
207                         DEBUGS(" Lib loaded");
208                         break;
209                 // --- PLT/GOT ---
210 //              case DT_PLTGOT: pltgot = (void*)(iBaseDiff + dynamicTab[j].d_val);      break;
211                 case DT_JMPREL: plt = (void*)(iBaseDiff + dynamicTab[j].d_val); break;
212                 case DT_PLTREL: pltType = dynamicTab[j].d_val;  break;
213                 case DT_PLTRELSZ:       pltSz = dynamicTab[j].d_val;    break;
214                 
215                 // --- Relocation ---
216                 case DT_REL:    rel = (void*)(iBaseDiff + dynamicTab[j].d_val); break;
217                 case DT_RELSZ:  relSz = dynamicTab[j].d_val;    break;
218                 case DT_RELENT: relEntSz = dynamicTab[j].d_val; break;
219                 case DT_RELA:   rela = (void*)(iBaseDiff + dynamicTab[j].d_val);        break;
220                 case DT_RELASZ: relaSz = dynamicTab[j].d_val;   break;
221                 case DT_RELAENT:        relaEntSz = dynamicTab[j].d_val;        break;
222                 
223                 // --- Symbol Table ---
224                 case DT_SYMTAB:
225                 // --- Hash Table ---
226                 case DT_HASH:
227                 // --- String Table ---
228                 case DT_STRTAB:
229                         break;
230                 
231                 // --- Unknown ---
232                 default:
233                         if(dynamicTab[j].d_tag > DT_JMPREL)     continue;
234                         //DEBUGS(" elf_relocate: %i-%i = %s,0x%x",
235                         //      i,j, csaDT_NAMES[dynamicTab[j].d_tag],dynamicTab[j].d_val);
236                         break;
237                 }
238         }
239         
240         DEBUGS(" elf_relocate: Beginning Relocation");
241         
242         void elf_doRelocate_386(uint32_t r_info, uint32_t *ptr, Elf32_Addr addend, int type, int bRela, const char *Sym)
243         {
244                 intptr_t        val;
245                 switch( type )
246                 {
247                 // Standard 32 Bit Relocation (S+A)
248                 case R_386_32:
249                         val = (intptr_t) GetSymbol(Sym, NULL);
250                         DEBUGS(" elf_doRelocate: R_386_32 *0x%x += 0x%x('%s')",
251                                         ptr, val, Sym);
252                         *ptr = val + addend;
253                         break;
254                         
255                 // 32 Bit Relocation wrt. Offset (S+A-P)
256                 case R_386_PC32:
257                         DEBUGS(" elf_doRelocate: '%s'", Sym);
258                         val = (intptr_t) GetSymbol(Sym, NULL);
259                         DEBUGS(" elf_doRelocate: R_386_PC32 *0x%x = 0x%x + 0x%x - 0x%x",
260                                 ptr, *ptr, val, (intptr_t)ptr );
261                         *ptr = val + addend - (intptr_t)ptr;
262                         //*ptr = val + addend - ((Uint)ptr - iBaseDiff);
263                         break;
264         
265                 // Absolute Value of a symbol (S)
266                 case R_386_GLOB_DAT:
267                 case R_386_JMP_SLOT:
268                         DEBUGS(" elf_doRelocate: '%s'", Sym);
269                         val = (intptr_t) GetSymbol( Sym, NULL );
270                         DEBUGS(" elf_doRelocate: %s *0x%x = 0x%x", csaR_NAMES[type], ptr, val);
271                         *ptr = val;
272                         break;
273         
274                 // Base Address (B+A)
275                 case R_386_RELATIVE:
276                         DEBUGS(" elf_doRelocate: R_386_RELATIVE *0x%x = 0x%x + 0x%x", ptr, iBaseDiff, addend);
277                         *ptr = iBaseDiff + addend;
278                         break;
279         
280                 case R_386_COPY: {
281                         size_t  size;
282                         void    *src = GetSymbol(Sym, &size);
283                         DEBUGS(" elf_doRelocate_386: R_386_COPY (%p, %p, %i)", ptr, src, size);
284                         memcpy(ptr, src, size);
285                         break; }
286         
287                 default:
288                         SysDebug("elf_doRelocate_386: Unknown relocation %i", type);
289                         break;
290                 }
291         }
292
293         void elf_doRelocate_arm(uint32_t r_info, uint32_t *ptr, Elf32_Addr addend, int type, int bRela, const char *Sym)
294         {
295                 uint32_t        val;
296                 switch(type)
297                 {
298                 // (S + A) | T
299                 case R_ARM_ABS32:
300                         DEBUGS(" elf_doRelocate_arm: R_ARM_ABS32 %p (%s + %x)", ptr, Sym, addend);
301                         val = (intptr_t)GetSymbol(Sym, NULL);
302                         *ptr = val + addend;
303                         break;
304                 case R_ARM_GLOB_DAT:
305                         DEBUGS(" elf_doRelocate_arm: R_ARM_GLOB_DAT %p (%s + %x)", ptr, Sym, addend);
306                         val = (intptr_t)GetSymbol(Sym, NULL);
307                         *ptr = val + addend;
308                         break;
309                 case R_ARM_JUMP_SLOT:
310                         if(!bRela)      addend = 0;
311                         DEBUGS(" elf_doRelocate_arm: R_ARM_JUMP_SLOT %p (%s + %x)", ptr, Sym, addend);
312                         val = (intptr_t)GetSymbol(Sym, NULL);
313                         *ptr = val + addend;
314                         break;
315                 // Copy
316                 case R_ARM_COPY: {
317                         size_t  size;
318                         void    *src = GetSymbol(Sym, &size);
319                         DEBUGS(" elf_doRelocate_arm: R_ARM_COPY (%p, %p, %i)", ptr, src, size);
320                         memcpy(ptr, src, size);
321                         break; }
322                 // Delta between link and runtime locations + A
323                 case R_ARM_RELATIVE:
324                         if(Sym[0] != '\0') {
325                                 // TODO: Get delta for a symbol
326                                 SysDebug("elf_doRelocate_arm: TODO - Implment R_ARM_RELATIVE for symbols");
327                         }
328                         else {
329                                 *ptr = iBaseDiff + addend;
330                         }
331                         break;
332                 default:
333                         SysDebug("elf_doRelocate_arm: Unknown Relocation, %i", type);
334                         break;
335                 }
336         }
337
338         void _doRelocate(uint32_t r_info, uint32_t *ptr, int bRela, Elf32_Addr addend)
339         {
340                  int    type = ELF32_R_TYPE(r_info);
341                  int    sym = ELF32_R_SYM(r_info);
342                 const char      *symname = dynstrtab + dynsymtab[sym].nameOfs;
343                 do_relocate(r_info, ptr, addend, type, bRela, symname);
344         }
345
346         switch(hdr->machine)
347         {
348         case EM_386:
349                 do_relocate = elf_doRelocate_386;
350                 break;
351         case EM_ARM:
352                 do_relocate = elf_doRelocate_arm;
353                 break;
354         default:
355                 SysDebug("Elf32Relocate: Unknown machine type %i", hdr->machine);
356                 break;
357         }
358         
359         // Parse Relocation Entries
360         if(rel && relSz)
361         {
362                 Elf32_Word      *ptr;
363                 DEBUGS(" elf_relocate: rel=0x%x, relSz=0x%x, relEntSz=0x%x", rel, relSz, relEntSz);
364                 j = relSz / relEntSz;
365                 for( i = 0; i < j; i++ )
366                 {
367                         //DEBUGS("  Rel %i: 0x%x+0x%x", i, iBaseDiff, rel[i].r_offset);
368                         ptr = (void*)(iBaseDiff + rel[i].r_offset);
369                         _doRelocate(rel[i].r_info, ptr, 0, *ptr);
370                 }
371         }
372         // Parse Relocation Entries
373         if(rela && relaSz)
374         {
375                 Elf32_Word      *ptr;
376                 DEBUGS(" elf_relocate: rela=0x%x, relaSz=0x%x, relaEntSz=0x%x", rela, relaSz, relaEntSz);
377                 j = relaSz / relaEntSz;
378                 for( i = 0; i < j; i++ )
379                 {
380                         ptr = (void*)(iBaseDiff + rela[i].r_offset);
381                         _doRelocate(rel[i].r_info, ptr, 1, rela[i].r_addend);
382                 }
383         }
384         
385         // === Process PLT (Procedure Linkage Table) ===
386         if(plt && pltSz)
387         {
388                 Elf32_Word      *ptr;
389                 DEBUGS(" elf_relocate: Relocate PLT, plt=0x%x", plt);
390                 if(pltType == DT_REL)
391                 {
392                         Elf32_Rel       *pltRel = plt;
393                         j = pltSz / sizeof(Elf32_Rel);
394                         DEBUGS(" elf_relocate: PLT Reloc Type = Rel, %i entries", j);
395                         for(i=0;i<j;i++)
396                         {
397                                 ptr = (void*)(iBaseDiff + pltRel[i].r_offset);
398                                 _doRelocate(pltRel[i].r_info, ptr, 0, *ptr);
399                         }
400                 }
401                 else
402                 {
403                         Elf32_Rela      *pltRela = plt;
404                         j = pltSz / sizeof(Elf32_Rela);
405                         DEBUGS(" elf_relocate: PLT Reloc Type = Rela, %i entries", j);
406                         for(i=0;i<j;i++)
407                         {
408                                 ptr = (void*)(iRealBase + pltRela[i].r_offset);
409                                 _doRelocate(pltRela[i].r_info, ptr, 1, pltRela[i].r_addend);
410                         }
411                 }
412         }
413         
414         DEBUGS("ElfRelocate: RETURN 0x%x to %p", hdr->entrypoint + iBaseDiff, __builtin_return_address(0));
415         return (void*)(intptr_t)( hdr->entrypoint + iBaseDiff );
416 }
417
418 int Elf32GetSymbol(void *Base, const char *Name, void **ret, size_t *Size)
419 {
420         Elf32_Ehdr      *hdr = Base;
421         Elf32_Sym       *symtab;
422          int    nbuckets = 0;
423 //       int    iSymCount = 0;
424          int    i;
425         Elf32_Word      *pBuckets;
426         Elf32_Word      *pChains;
427         uint32_t        iNameHash;
428         const char      *dynstrtab;
429         uintptr_t       iBaseDiff = -1;
430         Elf32_Phdr      *phtab;
431         Elf32_Dyn       *dynTab = NULL;
432
433         // Locate the tables
434         phtab = (void*)( Base + hdr->phoff );
435         for( i = 0; i < hdr->phentcount; i ++ )
436         {
437                 if(phtab[i].Type == PT_LOAD && iBaseDiff > phtab[i].VAddr)
438                         iBaseDiff = phtab[i].VAddr;
439                 if( phtab[i].Type == PT_DYNAMIC ) {
440                         dynTab = (void*)(intptr_t)phtab[i].VAddr;
441                 }
442         }
443         if( !dynTab ) {
444                 SysDebug("ERROR - Unable to find DYNAMIC segment in %p", Base);
445                 return 0;
446         }
447         iBaseDiff = (intptr_t)Base - iBaseDiff; // Make iBaseDiff actually the diff
448         dynTab = (void*)( (intptr_t)dynTab + iBaseDiff );
449         for( i = 0; dynTab[i].d_tag != DT_NULL; i++)
450         {
451                 switch(dynTab[i].d_tag)
452                 {
453                 // --- Symbol Table ---
454                 case DT_SYMTAB:
455                         symtab = (void*)(intptr_t) dynTab[i].d_val;     // Rebased in Relocate
456                         break;
457                 case DT_STRTAB:
458                         dynstrtab = (void*)(intptr_t) dynTab[i].d_val;
459                         break;
460                 // --- Hash Table --
461                 case DT_HASH:
462                         pBuckets = (void*)(intptr_t) dynTab[i].d_val;
463                         break;
464                 }
465         }
466         
467         nbuckets = pBuckets[0];
468 //      iSymCount = pBuckets[1];
469         pBuckets = &pBuckets[2];
470         pChains = &pBuckets[ nbuckets ];
471         
472         // Get hash
473         iNameHash = ElfHashString(Name);
474         iNameHash %= nbuckets;
475
476         // Walk Chain
477         i = pBuckets[ iNameHash ];
478         if(symtab[i].shndx != SHN_UNDEF && strcmp(dynstrtab + symtab[i].nameOfs, Name) == 0) {
479                 *ret = (void*) (intptr_t) symtab[ i ].value + iBaseDiff;
480                 if(Size)        *Size = symtab[i].size;
481                 return 1;
482         }
483         
484         while(pChains[i] != STN_UNDEF)
485         {
486                 i = pChains[i];
487                 if(symtab[i].shndx != SHN_UNDEF && strcmp(dynstrtab + symtab[ i ].nameOfs, Name) == 0) {
488                         *ret = (void*)(intptr_t)symtab[ i ].value + iBaseDiff;
489                         if(Size)        *Size = symtab[i].size;
490                         return 1;
491                 }
492         }
493         
494         return 0;
495 }
496
497 #ifdef SUPPORT_ELF64
498 void *Elf64Relocate(void *Base, char **envp, const char *Filename)
499 {
500          int    i;
501         Elf64_Ehdr      *hdr = Base;
502         Elf64_Phdr      *phtab;
503         Elf64_Dyn       *dyntab;
504         Elf64_Addr      compiledBase = -1, baseDiff;
505         Elf64_Sym       *symtab = NULL;
506         char    *strtab = NULL;
507         Elf64_Word      *hashtab = NULL;
508         Elf64_Rel       *rel = NULL;
509          int    rel_count = 0;
510         Elf64_Rela      *rela = NULL;
511          int    rela_count = 0;
512         void    *pltrel = NULL;
513          int    plt_size = 0, plt_type = 0;
514
515         DEBUGS("Elf64Relocate: hdr = {");
516         DEBUGS("Elf64Relocate:  e_ident = '%.16s'", hdr->e_ident);
517         DEBUGS("Elf64Relocate:  e_type = 0x%x", hdr->e_type);
518         DEBUGS("Elf64Relocate:  e_machine = 0x%x", hdr->e_machine);
519         DEBUGS("Elf64Relocate:  e_version = 0x%x", hdr->e_version);
520         DEBUGS("Elf64Relocate:  e_entry = %p", hdr->e_entry);
521         DEBUGS("Elf64Relocate:  e_phoff = 0x%llx", hdr->e_phoff);
522         DEBUGS("Elf64Relocate:  e_shoff = 0x%llx", hdr->e_shoff);
523         DEBUGS("Elf64Relocate:  e_flags = 0x%x", hdr->e_flags);
524         DEBUGS("Elf64Relocate:  e_ehsize = 0x%x", hdr->e_ehsize);
525         DEBUGS("Elf64Relocate:  e_phentsize = 0x%x", hdr->e_phentsize);
526         DEBUGS("Elf64Relocate:  e_phnum = %i", hdr->e_phnum);
527
528         // Scan for the dynamic table (and find the compiled base)
529         phtab = Base + hdr->e_phoff;
530         for( i = 0; i < hdr->e_phnum; i ++ )
531         {
532                 if(phtab[i].p_type == PT_DYNAMIC)
533                         dyntab = (void *)(intptr_t)phtab[i].p_vaddr;
534                 if(phtab[i].p_type == PT_LOAD && compiledBase > phtab[i].p_vaddr)
535                         compiledBase = phtab[i].p_vaddr;
536         }
537
538         baseDiff = (uintptr_t)Base - compiledBase;
539
540         DEBUGS("baseDiff = %p", baseDiff);
541
542         if(dyntab == NULL) {
543                 SysDebug(" Elf64Relocate: No PT_DYNAMIC segment in image %p, returning", Base);
544                 return (void *)(uintptr_t)(hdr->e_entry + baseDiff);
545         }
546
547         dyntab = (void *)(uintptr_t)((uintptr_t)dyntab + baseDiff);
548
549         // Parse the dynamic table (first pass)
550         // - Search for String, Symbol and Hash tables
551         for(i = 0; dyntab[i].d_tag != DT_NULL; i ++)
552         {
553                 switch(dyntab[i].d_tag)
554                 {
555                 case DT_SYMTAB:
556                         dyntab[i].d_un.d_ptr += baseDiff;
557                         symtab = (void *)(uintptr_t)dyntab[i].d_un.d_ptr;
558                         break;
559                 case DT_STRTAB:
560                         dyntab[i].d_un.d_ptr += baseDiff;
561                         strtab = (void *)(uintptr_t)dyntab[i].d_un.d_ptr;
562                         break;
563                 case DT_HASH:
564                         dyntab[i].d_un.d_ptr += baseDiff;
565                         hashtab = (void *)(uintptr_t)dyntab[i].d_un.d_ptr;
566                         break;
567                 }
568         }
569
570         if( !symtab || !strtab || !hashtab ) {
571                 SysDebug("ld-acess - Elf64Relocate: Missing Symbol, string or hash table");
572                 return NULL;
573         }
574
575         // Ready for symbol use 
576         AddLoaded( Filename, Base );
577
578         // Second pass on dynamic table
579         for(i = 0; dyntab[i].d_tag != DT_NULL; i ++)
580         {
581                 DEBUGS("dyntab[%i].d_tag = %i", i, dyntab[i].d_tag);
582                 switch(dyntab[i].d_tag)
583                 {
584                 case DT_SONAME: break;
585
586                 case DT_NEEDED: {
587                         char *libPath = strtab + dyntab[i].d_un.d_val;
588                         DEBUGS("Elf64Relocate: libPath = '%s'", libPath);
589                         if(LoadLibrary(libPath, NULL, envp) == 0) {
590                                 SysDebug("ld-acess - Elf64Relocate: Unable to load '%s'", libPath);
591                                 return NULL;
592                         }
593                         } break;
594                 
595                 // Relocation entries
596                 case DT_REL:
597                         dyntab[i].d_un.d_ptr += baseDiff;
598                         rel = (void *)(uintptr_t)dyntab[i].d_un.d_ptr;
599                         break;
600                 case DT_RELSZ:
601                         rel_count = dyntab[i].d_un.d_val / sizeof(Elf64_Rel);
602                         break;
603                 case DT_RELENT:
604                         if( dyntab[i].d_un.d_val != sizeof(Elf64_Rel) ) {
605                                 SysDebug("ld-acess - Elf64Relocate: DT_RELENT(%i) != sizeof(Elf64_Rel)(%i)",
606                                         dyntab[i].d_un.d_val, sizeof(Elf64_Rel));
607                                 return NULL;
608                         }
609                         break;
610                 case DT_RELA:
611                         dyntab[i].d_un.d_ptr += baseDiff;
612                         rela = (void *)(uintptr_t)dyntab[i].d_un.d_ptr;
613                         break;
614                 case DT_RELASZ:
615                         rela_count = dyntab[i].d_un.d_val / sizeof(Elf64_Rela);
616                         break;
617                 case DT_RELAENT:
618                         if( dyntab[i].d_un.d_val != sizeof(Elf64_Rela) ) {
619                                 SysDebug("ld-acess - Elf64Relocate: DT_RELAENT(%i) != sizeof(Elf64_Rela)(%i)",
620                                         dyntab[i].d_un.d_val, sizeof(Elf64_Rela));
621                                 return NULL;
622                         }
623                         break;
624                 case DT_JMPREL:
625                         dyntab[i].d_un.d_ptr += baseDiff;
626                         pltrel = (void *)(uintptr_t)dyntab[i].d_un.d_ptr;
627                         break;
628                 case DT_PLTREL:
629                         plt_type = dyntab[i].d_un.d_val;
630                         break;
631                 case DT_PLTRELSZ:
632                         plt_size = dyntab[i].d_un.d_val;
633                         break;
634                 }
635         }
636
637         // Relocation function
638         void _Elf64DoReloc(Elf64_Xword r_info, void *ptr, Elf64_Sxword addend)
639         {
640                  int    sym = ELF64_R_SYM(r_info);
641                  int    type = ELF64_R_TYPE(r_info);
642                 const char      *symname = strtab + symtab[sym].st_name;
643                 switch( type )
644                 {
645                 case R_X86_64_NONE:
646                         break;
647                 case R_X86_64_64:
648                         *(uint64_t*)ptr = (uintptr_t)GetSymbol(symname, NULL) + addend;
649                         break;
650                 case R_X86_64_COPY: {
651                         size_t  size;
652                         void    *sym = GetSymbol(symname, &size);
653                         memcpy(ptr, sym, size);
654                         } break;
655                 case R_X86_64_GLOB_DAT:
656                         *(uint64_t*)ptr = (uintptr_t)GetSymbol(symname, NULL);
657                         break;
658                 case R_X86_64_JUMP_SLOT:
659                         *(uint64_t*)ptr = (uintptr_t)GetSymbol(symname, NULL);
660                         break;
661                 case R_X86_64_RELATIVE:
662                         *(uint64_t*)ptr = (uintptr_t)Base + addend;
663                         break;
664                 default:
665                         SysDebug("ld-acess - _Elf64DoReloc: Unknown relocation type %i", type);
666                         break;
667                 }
668         }
669
670         if( rel )
671         {
672                 DEBUGS("rel_count = %i", rel_count);
673                 for( i = 0; i < rel_count; i ++ )
674                 {
675                         uint64_t *ptr = (void *)(uintptr_t)( rel[i].r_offset + baseDiff );
676                         _Elf64DoReloc( rel[i].r_info, ptr, *ptr);
677                 }
678         }
679
680         if( rela )
681         {
682                 DEBUGS("rela_count = %i", rela_count);
683                 for( i = 0; i < rela_count; i ++ )
684                 {
685                         uint64_t *ptr = (void *)(uintptr_t)( rela[i].r_offset + baseDiff );
686                         _Elf64DoReloc( rela[i].r_info, ptr, rela[i].r_addend );
687                 }
688         }
689
690         if( pltrel && plt_type )
691         {
692                 if( plt_type == DT_REL ) {
693                         Elf64_Rel       *plt = pltrel;
694                          int    count = plt_size / sizeof(Elf64_Rel);
695                         DEBUGS("plt rel count = %i", count);
696                         for( i = 0; i < count; i ++ )
697                         {
698                                 uint64_t *ptr = (void *)(uintptr_t)( plt[i].r_offset + baseDiff );
699                                 _Elf64DoReloc( plt[i].r_info, ptr, *ptr);
700                         }
701                 }
702                 else {
703                         Elf64_Rela      *plt = pltrel;
704                          int    count = plt_size / sizeof(Elf64_Rela);
705                         DEBUGS("plt rela count = %i", count);
706                         for( i = 0; i < count; i ++ )
707                         {
708                                 uint64_t *ptr = (void *)(uintptr_t)( plt[i].r_offset + baseDiff );
709                                 _Elf64DoReloc( plt[i].r_info, ptr, plt[i].r_addend);
710                         }
711                 }
712         }
713
714         {
715         void *ret = (void *)(uintptr_t)(hdr->e_entry + baseDiff);
716         DEBUGS("Elf64Relocate: Relocations done, return %p", ret);
717         return ret;
718         }
719 }
720
721 int Elf64GetSymbol(void *Base, const char *Name, void **Ret, size_t *Size)
722 {
723         Elf64_Ehdr      *hdr = Base;
724         Elf64_Sym       *symtab;
725          int    nbuckets = 0;
726 //       int    iSymCount = 0;
727          int    i;
728         Elf64_Word      *pBuckets;
729         Elf64_Word      *pChains;
730         uint32_t        iNameHash;
731         const char      *dynstrtab;
732         uintptr_t       iBaseDiff = -1;
733
734         dynstrtab = NULL;
735         pBuckets = NULL;
736         symtab = NULL;
737
738         // Catch the current executable
739         if( !pBuckets )
740         {
741                 Elf64_Phdr      *phtab;
742                 Elf64_Dyn       *dynTab = NULL;
743                  int    j;
744                 
745                 // Locate the tables
746                 phtab = (void*)( Base + hdr->e_phoff );
747                 for( i = 0; i < hdr->e_phnum; i ++ )
748                 {
749                         if(phtab[i].p_type == PT_LOAD && iBaseDiff > phtab[i].p_vaddr)
750                                 iBaseDiff = phtab[i].p_vaddr;
751                         if( phtab[i].p_type == PT_DYNAMIC ) {
752                                 dynTab = (void*)(intptr_t)phtab[i].p_vaddr;
753                         }
754                 }
755                 if( !dynTab ) {
756                         SysDebug("ERROR - Unable to find DYNAMIC segment in %p", Base);
757                         return 0;
758                 }
759                 iBaseDiff = (intptr_t)Base - iBaseDiff; // Make iBaseDiff actually the diff
760                 dynTab = (void*)( (intptr_t)dynTab + iBaseDiff );
761                 
762                 for( j = 0; dynTab[j].d_tag != DT_NULL; j++)
763                 {
764                         switch(dynTab[j].d_tag)
765                         {
766                         // --- Symbol Table ---
767                         case DT_SYMTAB:
768                                 symtab = (void*)(intptr_t) dynTab[j].d_un.d_val;        // Rebased in Relocate
769                                 break;
770                         case DT_STRTAB:
771                                 dynstrtab = (void*)(intptr_t) dynTab[j].d_un.d_val;
772                                 break;
773                         // --- Hash Table --
774                         case DT_HASH:
775                                 pBuckets = (void*)(intptr_t) dynTab[j].d_un.d_val;
776                                 break;
777                         }
778                 }
779         }
780
781         nbuckets = pBuckets[0];
782 //      iSymCount = pBuckets[1];
783         pBuckets = &pBuckets[2];
784         pChains = &pBuckets[ nbuckets ];
785         
786         // Get hash
787         iNameHash = ElfHashString(Name);
788         iNameHash %= nbuckets;
789
790         // Walk Chain
791         i = pBuckets[ iNameHash ];
792         if(symtab[i].st_shndx != SHN_UNDEF && strcmp(dynstrtab + symtab[i].st_name, Name) == 0) {
793                 *Ret = (void*) (intptr_t) symtab[i].st_value + iBaseDiff;
794                 if(Size)        *Size = symtab[i].st_size;
795                 DEBUGS("%s = %p", Name, *Ret);
796                 return 1;
797         }
798         
799         while(pChains[i] != STN_UNDEF)
800         {
801                 i = pChains[i];
802                 if(symtab[i].st_shndx != SHN_UNDEF && strcmp(dynstrtab + symtab[i].st_name, Name) == 0) {
803                         *Ret = (void*)(intptr_t)symtab[i].st_value + iBaseDiff;
804                         if(Size)        *Size = symtab[i].st_size;
805                         DEBUGS("%s = %p", Name, *Ret);
806                         return 1;
807                 }
808         }
809         
810         return 0;
811 }
812 #endif
813
814
815 uint32_t ElfHashString(const char *name)
816 {
817         uint32_t        h = 0, g;
818         while(*name)
819         {
820                 h = (h << 4) + *(uint8_t*)name++;
821                 if( (g = h & 0xf0000000) )
822                         h ^= g >> 24;
823                 h &= ~g;
824         }
825         return h;
826 }
827

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