function_wrappers.h 7.5 KB

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  1. // Copyright 2014 Citra Emulator Project
  2. // Licensed under GPLv2 or any later version
  3. // Refer to the license.txt file included.
  4. #pragma once
  5. #include "common/common_types.h"
  6. #include "core/arm/arm_interface.h"
  7. #include "core/core.h"
  8. #include "core/hle/kernel/kernel.h"
  9. #include "core/hle/result.h"
  10. #include "core/hle/svc.h"
  11. #include "core/memory.h"
  12. namespace HLE {
  13. #define PARAM(n) Core::CPU().GetReg(n)
  14. /// An invalid result code that is meant to be overwritten when a thread resumes from waiting
  15. static const ResultCode RESULT_INVALID(0xDEADC0DE);
  16. /**
  17. * HLE a function return from the current ARM11 userland process
  18. * @param res Result to return
  19. */
  20. static inline void FuncReturn(u32 res) {
  21. Core::CPU().SetReg(0, res);
  22. }
  23. /**
  24. * HLE a function return (64-bit) from the current ARM11 userland process
  25. * @param res Result to return (64-bit)
  26. * @todo Verify that this function is correct
  27. */
  28. static inline void FuncReturn64(u64 res) {
  29. Core::CPU().SetReg(0, (u32)(res & 0xFFFFFFFF));
  30. Core::CPU().SetReg(1, (u32)((res >> 32) & 0xFFFFFFFF));
  31. }
  32. ////////////////////////////////////////////////////////////////////////////////////////////////////
  33. // Function wrappers that return type ResultCode
  34. template <ResultCode func(u32, u32, u32, u32)>
  35. void Wrap() {
  36. FuncReturn(func(PARAM(0), PARAM(1), PARAM(2), PARAM(3)).raw);
  37. }
  38. template <ResultCode func(u32*, u32, u32, u32, u32, u32)>
  39. void Wrap() {
  40. u32 param_1 = 0;
  41. u32 retval = func(&param_1, PARAM(0), PARAM(1), PARAM(2), PARAM(3), PARAM(4)).raw;
  42. Core::CPU().SetReg(1, param_1);
  43. FuncReturn(retval);
  44. }
  45. template <ResultCode func(u32*, u32, u32, u32, u32, s32)>
  46. void Wrap() {
  47. u32 param_1 = 0;
  48. u32 retval = func(&param_1, PARAM(0), PARAM(1), PARAM(2), PARAM(3), PARAM(4)).raw;
  49. Core::CPU().SetReg(1, param_1);
  50. FuncReturn(retval);
  51. }
  52. template <ResultCode func(s32*, u32*, s32, bool, s64)>
  53. void Wrap() {
  54. s32 param_1 = 0;
  55. s32 retval = func(&param_1, (Kernel::Handle*)Memory::GetPointer(PARAM(1)), (s32)PARAM(2),
  56. (PARAM(3) != 0), (((s64)PARAM(4) << 32) | PARAM(0)))
  57. .raw;
  58. if (retval != RESULT_INVALID.raw) {
  59. Core::CPU().SetReg(1, (u32)param_1);
  60. FuncReturn(retval);
  61. }
  62. }
  63. template <ResultCode func(u32, u32, u32, u32, s64)>
  64. void Wrap() {
  65. FuncReturn(
  66. func(PARAM(0), PARAM(1), PARAM(2), PARAM(3), (((s64)PARAM(5) << 32) | PARAM(4))).raw);
  67. }
  68. template <ResultCode func(u32*)>
  69. void Wrap() {
  70. u32 param_1 = 0;
  71. u32 retval = func(&param_1).raw;
  72. Core::CPU().SetReg(1, param_1);
  73. FuncReturn(retval);
  74. }
  75. template <ResultCode func(u32, s64)>
  76. void Wrap() {
  77. s32 retval = func(PARAM(0), (((s64)PARAM(3) << 32) | PARAM(2))).raw;
  78. if (retval != RESULT_INVALID.raw) {
  79. FuncReturn(retval);
  80. }
  81. }
  82. template <ResultCode func(MemoryInfo*, PageInfo*, u32)>
  83. void Wrap() {
  84. MemoryInfo memory_info = {};
  85. PageInfo page_info = {};
  86. u32 retval = func(&memory_info, &page_info, PARAM(2)).raw;
  87. Core::CPU().SetReg(1, memory_info.base_address);
  88. Core::CPU().SetReg(2, memory_info.size);
  89. Core::CPU().SetReg(3, memory_info.permission);
  90. Core::CPU().SetReg(4, memory_info.state);
  91. Core::CPU().SetReg(5, page_info.flags);
  92. FuncReturn(retval);
  93. }
  94. template <ResultCode func(MemoryInfo*, PageInfo*, Kernel::Handle, u32)>
  95. void Wrap() {
  96. MemoryInfo memory_info = {};
  97. PageInfo page_info = {};
  98. u32 retval = func(&memory_info, &page_info, PARAM(2), PARAM(3)).raw;
  99. Core::CPU().SetReg(1, memory_info.base_address);
  100. Core::CPU().SetReg(2, memory_info.size);
  101. Core::CPU().SetReg(3, memory_info.permission);
  102. Core::CPU().SetReg(4, memory_info.state);
  103. Core::CPU().SetReg(5, page_info.flags);
  104. FuncReturn(retval);
  105. }
  106. template <ResultCode func(s32*, u32)>
  107. void Wrap() {
  108. s32 param_1 = 0;
  109. u32 retval = func(&param_1, PARAM(1)).raw;
  110. Core::CPU().SetReg(1, param_1);
  111. FuncReturn(retval);
  112. }
  113. template <ResultCode func(u32, s32)>
  114. void Wrap() {
  115. FuncReturn(func(PARAM(0), (s32)PARAM(1)).raw);
  116. }
  117. template <ResultCode func(u32*, u32)>
  118. void Wrap() {
  119. u32 param_1 = 0;
  120. u32 retval = func(&param_1, PARAM(1)).raw;
  121. Core::CPU().SetReg(1, param_1);
  122. FuncReturn(retval);
  123. }
  124. template <ResultCode func(u32)>
  125. void Wrap() {
  126. FuncReturn(func(PARAM(0)).raw);
  127. }
  128. template <ResultCode func(s64*, u32, u32*, u32)>
  129. void Wrap() {
  130. FuncReturn(func((s64*)Memory::GetPointer(PARAM(0)), PARAM(1),
  131. (u32*)Memory::GetPointer(PARAM(2)), (s32)PARAM(3))
  132. .raw);
  133. }
  134. template <ResultCode func(u32*, const char*)>
  135. void Wrap() {
  136. u32 param_1 = 0;
  137. u32 retval = func(&param_1, (char*)Memory::GetPointer(PARAM(1))).raw;
  138. Core::CPU().SetReg(1, param_1);
  139. FuncReturn(retval);
  140. }
  141. template <ResultCode func(u32*, s32, s32)>
  142. void Wrap() {
  143. u32 param_1 = 0;
  144. u32 retval = func(&param_1, PARAM(1), PARAM(2)).raw;
  145. Core::CPU().SetReg(1, param_1);
  146. FuncReturn(retval);
  147. }
  148. template <ResultCode func(s32*, u32, s32)>
  149. void Wrap() {
  150. s32 param_1 = 0;
  151. u32 retval = func(&param_1, PARAM(1), PARAM(2)).raw;
  152. Core::CPU().SetReg(1, param_1);
  153. FuncReturn(retval);
  154. }
  155. template <ResultCode func(s64*, u32, s32)>
  156. void Wrap() {
  157. s64 param_1 = 0;
  158. u32 retval = func(&param_1, PARAM(1), PARAM(2)).raw;
  159. Core::CPU().SetReg(1, (u32)param_1);
  160. Core::CPU().SetReg(2, (u32)(param_1 >> 32));
  161. FuncReturn(retval);
  162. }
  163. template <ResultCode func(u32*, u32, u32, u32, u32)>
  164. void Wrap() {
  165. u32 param_1 = 0;
  166. // The last parameter is passed in R0 instead of R4
  167. u32 retval = func(&param_1, PARAM(1), PARAM(2), PARAM(3), PARAM(0)).raw;
  168. Core::CPU().SetReg(1, param_1);
  169. FuncReturn(retval);
  170. }
  171. template <ResultCode func(u32, s64, s64)>
  172. void Wrap() {
  173. s64 param1 = ((u64)PARAM(3) << 32) | PARAM(2);
  174. s64 param2 = ((u64)PARAM(4) << 32) | PARAM(1);
  175. FuncReturn(func(PARAM(0), param1, param2).raw);
  176. }
  177. template <ResultCode func(s64*, Kernel::Handle, u32)>
  178. void Wrap() {
  179. s64 param_1 = 0;
  180. u32 retval = func(&param_1, PARAM(1), PARAM(2)).raw;
  181. Core::CPU().SetReg(1, (u32)param_1);
  182. Core::CPU().SetReg(2, (u32)(param_1 >> 32));
  183. FuncReturn(retval);
  184. }
  185. template <ResultCode func(Kernel::Handle, u32)>
  186. void Wrap() {
  187. FuncReturn(func(PARAM(0), PARAM(1)).raw);
  188. }
  189. template <ResultCode func(Kernel::Handle*, Kernel::Handle*, const char*, u32)>
  190. void Wrap() {
  191. Kernel::Handle param_1 = 0;
  192. Kernel::Handle param_2 = 0;
  193. u32 retval = func(&param_1, &param_2,
  194. reinterpret_cast<const char*>(Memory::GetPointer(PARAM(2))), PARAM(3))
  195. .raw;
  196. // The first out parameter is moved into R2 and the second is moved into R1.
  197. Core::CPU().SetReg(1, param_2);
  198. Core::CPU().SetReg(2, param_1);
  199. FuncReturn(retval);
  200. }
  201. ////////////////////////////////////////////////////////////////////////////////////////////////////
  202. // Function wrappers that return type u32
  203. template <u32 func()>
  204. void Wrap() {
  205. FuncReturn(func());
  206. }
  207. ////////////////////////////////////////////////////////////////////////////////////////////////////
  208. // Function wrappers that return type s64
  209. template <s64 func()>
  210. void Wrap() {
  211. FuncReturn64(func());
  212. }
  213. ////////////////////////////////////////////////////////////////////////////////////////////////////
  214. /// Function wrappers that return type void
  215. template <void func(s64)>
  216. void Wrap() {
  217. func(((s64)PARAM(1) << 32) | PARAM(0));
  218. }
  219. template <void func(const char*, int len)>
  220. void Wrap() {
  221. func((char*)Memory::GetPointer(PARAM(0)), PARAM(1));
  222. }
  223. template <void func(u8)>
  224. void Wrap() {
  225. func((u8)PARAM(0));
  226. }
  227. #undef PARAM
  228. #undef FuncReturn
  229. } // namespace HLE