compressed-plt-1-o32-mips16-got.rd 8.1 KB

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  1. Dynamic section .*
  2. #...
  3. 0x00000003 \(PLTGOT\) 0x10201000
  4. #...
  5. 0x70000013 \(MIPS_GOTSYM\) 0x1f
  6. 0x00000014 \(PLTREL\) REL
  7. 0x00000017 \(JMPREL\) 0x10004000
  8. 0x00000002 \(PLTRELSZ\) 224 \(bytes\)
  9. 0x70000032 \(MIPS_PLTGOT\) 0x10200000
  10. #...
  11. Relocation section '\.rel\.plt' .*
  12. Offset Info Type Sym\.Value Sym\. Name
  13. 10200008 [^ ]+ R_MIPS_JUMP_SLOT 10100020 f_lo_iu
  14. 1020000c [^ ]+ R_MIPS_JUMP_SLOT 10100030 f_lo_iu_du_dc
  15. 10200010 [^ ]+ R_MIPS_JUMP_SLOT 10100040 f_lo_du_ic_dc
  16. 10200014 [^ ]+ R_MIPS_JUMP_SLOT 10100050 f_du_dc
  17. 10200018 [^ ]+ R_MIPS_JUMP_SLOT 10100191 f_lo_iu_dc
  18. 1020001c [^ ]+ R_MIPS_JUMP_SLOT 10100060 f_iu_du_ic
  19. 10200020 [^ ]+ R_MIPS_JUMP_SLOT 10100070 f_lo_du_ic
  20. 10200024 [^ ]+ R_MIPS_JUMP_SLOT 101001a1 f_iu_dc
  21. 10200028 [^ ]+ R_MIPS_JUMP_SLOT 10100080 f_lo_iu_ic
  22. 1020002c [^ ]+ R_MIPS_JUMP_SLOT 10100090 f_lo_ic
  23. 10200030 [^ ]+ R_MIPS_JUMP_SLOT 101000a0 f_lo_du_dc
  24. 10200034 [^ ]+ R_MIPS_JUMP_SLOT 101000b0 f_du
  25. 10200038 [^ ]+ R_MIPS_JUMP_SLOT 101000c0 f_du_ic_dc
  26. 1020003c [^ ]+ R_MIPS_JUMP_SLOT 101000d0 f_du_ic
  27. 10200040 [^ ]+ R_MIPS_JUMP_SLOT 101000e0 f_iu_du_dc
  28. 10200044 [^ ]+ R_MIPS_JUMP_SLOT 101001e1 f_lo_dc
  29. 10200048 [^ ]+ R_MIPS_JUMP_SLOT 101000f0 f_iu_du
  30. 1020004c [^ ]+ R_MIPS_JUMP_SLOT 10100100 f_lo_iu_du
  31. 10200050 [^ ]+ R_MIPS_JUMP_SLOT 101001f1 f_dc
  32. 10200054 [^ ]+ R_MIPS_JUMP_SLOT 10100201 f_ic_dc
  33. 10200058 [^ ]+ R_MIPS_JUMP_SLOT 10100110 f_lo_du
  34. 1020005c [^ ]+ R_MIPS_JUMP_SLOT 10100211 f_iu_ic_dc
  35. 10200060 [^ ]+ R_MIPS_JUMP_SLOT 10100120 f_iu_du_ic_dc
  36. 10200064 [^ ]+ R_MIPS_JUMP_SLOT 10100231 f_lo_iu_ic_dc
  37. 10200068 [^ ]+ R_MIPS_JUMP_SLOT 10100130 f_lo_iu_du_ic
  38. 1020006c [^ ]+ R_MIPS_JUMP_SLOT 10100140 f_lo_iu_du_ic_dc
  39. 10200070 [^ ]+ R_MIPS_JUMP_SLOT 10100251 f_lo_ic_dc
  40. 10200074 [^ ]+ R_MIPS_JUMP_SLOT 10100150 f_lo
  41. Symbol table '\.dynsym' .*
  42. Num: Value Size Type Bind Vis Ndx Name
  43. 0: 00000000 0 NOTYPE LOCAL DEFAULT UND
  44. # All symbols have their address taken, so PLT symbols need to have a nonzero
  45. # value. They must also have STO_MIPS_PLT in order to distinguish them from
  46. # old-style lazy-binding stubs).
  47. #
  48. # A MIPS16 PLT should only be used as the symbol value if the function has
  49. # a direct MIPS16 caller (dc) and no direct MIPS caller (du).
  50. .*: 10100020 0 FUNC GLOBAL DEFAULT \[MIPS PLT\] UND f_lo_iu
  51. .*: 10100030 0 FUNC GLOBAL DEFAULT \[MIPS PLT\] UND f_lo_iu_du_dc
  52. #...
  53. .*: 10100040 0 FUNC GLOBAL DEFAULT \[MIPS PLT\] UND f_lo_du_ic_dc
  54. .*: 10100050 0 FUNC GLOBAL DEFAULT \[MIPS PLT\] UND f_du_dc
  55. .*: 10100191 0 FUNC GLOBAL DEFAULT \[MIPS PLT\] UND f_lo_iu_dc
  56. .*: 10100060 0 FUNC GLOBAL DEFAULT \[MIPS PLT\] UND f_iu_du_ic
  57. .*: 10100070 0 FUNC GLOBAL DEFAULT \[MIPS PLT\] UND f_lo_du_ic
  58. .*: 101001a1 0 FUNC GLOBAL DEFAULT \[MIPS PLT\] UND f_iu_dc
  59. .*: 10100080 0 FUNC GLOBAL DEFAULT \[MIPS PLT\] UND f_lo_iu_ic
  60. .*: 10100090 0 FUNC GLOBAL DEFAULT \[MIPS PLT\] UND f_lo_ic
  61. .*: 101000a0 0 FUNC GLOBAL DEFAULT \[MIPS PLT\] UND f_lo_du_dc
  62. .*: 101000b0 0 FUNC GLOBAL DEFAULT \[MIPS PLT\] UND f_du
  63. .*: 101000c0 0 FUNC GLOBAL DEFAULT \[MIPS PLT\] UND f_du_ic_dc
  64. .*: 101000d0 0 FUNC GLOBAL DEFAULT \[MIPS PLT\] UND f_du_ic
  65. .*: 101000e0 0 FUNC GLOBAL DEFAULT \[MIPS PLT\] UND f_iu_du_dc
  66. .*: 101001e1 0 FUNC GLOBAL DEFAULT \[MIPS PLT\] UND f_lo_dc
  67. .*: 101000f0 0 FUNC GLOBAL DEFAULT \[MIPS PLT\] UND f_iu_du
  68. .*: 10100100 0 FUNC GLOBAL DEFAULT \[MIPS PLT\] UND f_lo_iu_du
  69. .*: 101001f1 0 FUNC GLOBAL DEFAULT \[MIPS PLT\] UND f_dc
  70. .*: 10100201 0 FUNC GLOBAL DEFAULT \[MIPS PLT\] UND f_ic_dc
  71. .*: 10100110 0 FUNC GLOBAL DEFAULT \[MIPS PLT\] UND f_lo_du
  72. .*: 10100211 0 FUNC GLOBAL DEFAULT \[MIPS PLT\] UND f_iu_ic_dc
  73. .*: 10100120 0 FUNC GLOBAL DEFAULT \[MIPS PLT\] UND f_iu_du_ic_dc
  74. #...
  75. .*: 10100231 0 FUNC GLOBAL DEFAULT \[MIPS PLT\] UND f_lo_iu_ic_dc
  76. .*: 10100130 0 FUNC GLOBAL DEFAULT \[MIPS PLT\] UND f_lo_iu_du_ic
  77. .*: 10100140 0 FUNC GLOBAL DEFAULT \[MIPS PLT\] UND f_lo_iu_du_ic_dc
  78. .*: 10100251 0 FUNC GLOBAL DEFAULT \[MIPS PLT\] UND f_lo_ic_dc
  79. .*: 10100150 0 FUNC GLOBAL DEFAULT \[MIPS PLT\] UND f_lo
  80. # The start of the GOT-mapped area. This should only contain functions that
  81. # are accessed purely via the traditional psABI scheme. Since the functions
  82. # have their addresses taken, they cannot use a lazy-binding stub.
  83. # The symbol values are therefore all zero.
  84. 31: 00000000 0 FUNC GLOBAL DEFAULT UND f_iu_ic
  85. 32: 00000000 0 FUNC GLOBAL DEFAULT UND f_ic
  86. 33: 00000000 0 FUNC GLOBAL DEFAULT UND f_iu
  87. 34: 00000000 0 FUNC GLOBAL DEFAULT UND f
  88. Symbol table '\.symtab' .*
  89. #...
  90. Primary GOT:
  91. Canonical gp value: 10208ff0
  92. Reserved entries:
  93. Address Access Initial Purpose
  94. 10201000 -32752\(gp\) 00000000 Lazy resolver
  95. 10201004 -32748\(gp\) 80000000 Module pointer \(GNU extension\)
  96. # See the disassembly output for the meaning of each entry.
  97. Local entries:
  98. Address Access Initial
  99. 10201008 -32744\(gp\) 10100201
  100. 1020100c -32740\(gp\) 101000d0
  101. 10201010 -32736\(gp\) 101000c0
  102. 10201014 -32732\(gp\) 10100211
  103. 10201018 -32728\(gp\) 10100060
  104. 1020101c -32724\(gp\) 10100120
  105. 10201020 -32720\(gp\) 10100090
  106. 10201024 -32716\(gp\) 10100251
  107. 10201028 -32712\(gp\) 10100070
  108. 1020102c -32708\(gp\) 10100040
  109. 10201030 -32704\(gp\) 10100080
  110. 10201034 -32700\(gp\) 10100231
  111. 10201038 -32696\(gp\) 10100130
  112. 1020103c -32692\(gp\) 10100140
  113. 10201040 -32688\(gp\) 101001a1
  114. 10201044 -32684\(gp\) 101000f0
  115. 10201048 -32680\(gp\) 101000e0
  116. 1020104c -32676\(gp\) 10100020
  117. 10201050 -32672\(gp\) 10100191
  118. 10201054 -32668\(gp\) 10100100
  119. 10201058 -32664\(gp\) 10100030
  120. 1020105c -32660\(gp\) 101001f1
  121. 10201060 -32656\(gp\) 101000b0
  122. 10201064 -32652\(gp\) 10100050
  123. 10201068 -32648\(gp\) 10100150
  124. 1020106c -32644\(gp\) 101001e1
  125. 10201070 -32640\(gp\) 10100110
  126. 10201074 -32636\(gp\) 101000a0
  127. Global entries:
  128. Address Access Initial Sym\.Val\. Type Ndx Name
  129. 10201078 -32632\(gp\) 00000000 00000000 FUNC UND f_iu_ic
  130. 1020107c -32628\(gp\) 00000000 00000000 FUNC UND f_ic
  131. 10201080 -32624\(gp\) 00000000 00000000 FUNC UND f_iu
  132. 10201084 -32620\(gp\) 00000000 00000000 FUNC UND f
  133. PLT GOT:
  134. Reserved entries:
  135. Address Initial Purpose
  136. 10200000 00000000 PLT lazy resolver
  137. 10200004 00000000 Module pointer
  138. Entries:
  139. Address Initial Sym\.Val\. Type Ndx Name
  140. 10200008 10100000 10100020 FUNC UND f_lo_iu
  141. 1020000c 10100000 10100030 FUNC UND f_lo_iu_du_dc
  142. 10200010 10100000 10100040 FUNC UND f_lo_du_ic_dc
  143. 10200014 10100000 10100050 FUNC UND f_du_dc
  144. 10200018 10100000 10100191 FUNC UND f_lo_iu_dc
  145. 1020001c 10100000 10100060 FUNC UND f_iu_du_ic
  146. 10200020 10100000 10100070 FUNC UND f_lo_du_ic
  147. 10200024 10100000 101001a1 FUNC UND f_iu_dc
  148. 10200028 10100000 10100080 FUNC UND f_lo_iu_ic
  149. 1020002c 10100000 10100090 FUNC UND f_lo_ic
  150. 10200030 10100000 101000a0 FUNC UND f_lo_du_dc
  151. 10200034 10100000 101000b0 FUNC UND f_du
  152. 10200038 10100000 101000c0 FUNC UND f_du_ic_dc
  153. 1020003c 10100000 101000d0 FUNC UND f_du_ic
  154. 10200040 10100000 101000e0 FUNC UND f_iu_du_dc
  155. 10200044 10100000 101001e1 FUNC UND f_lo_dc
  156. 10200048 10100000 101000f0 FUNC UND f_iu_du
  157. 1020004c 10100000 10100100 FUNC UND f_lo_iu_du
  158. 10200050 10100000 101001f1 FUNC UND f_dc
  159. 10200054 10100000 10100201 FUNC UND f_ic_dc
  160. 10200058 10100000 10100110 FUNC UND f_lo_du
  161. 1020005c 10100000 10100211 FUNC UND f_iu_ic_dc
  162. 10200060 10100000 10100120 FUNC UND f_iu_du_ic_dc
  163. 10200064 10100000 10100231 FUNC UND f_lo_iu_ic_dc
  164. 10200068 10100000 10100130 FUNC UND f_lo_iu_du_ic
  165. 1020006c 10100000 10100140 FUNC UND f_lo_iu_du_ic_dc
  166. 10200070 10100000 10100251 FUNC UND f_lo_ic_dc
  167. 10200074 10100000 10100150 FUNC UND f_lo