15ec532a9SColin Riley //===-- RenderScriptRuntime.cpp ---------------------------------*- C++ -*-===// 25ec532a9SColin Riley // 35ec532a9SColin Riley // The LLVM Compiler Infrastructure 45ec532a9SColin Riley // 55ec532a9SColin Riley // This file is distributed under the University of Illinois Open Source 65ec532a9SColin Riley // License. See LICENSE.TXT for details. 75ec532a9SColin Riley // 85ec532a9SColin Riley //===----------------------------------------------------------------------===// 95ec532a9SColin Riley 10222b937cSEugene Zelenko // C Includes 11222b937cSEugene Zelenko // C++ Includes 12222b937cSEugene Zelenko // Other libraries and framework includes 13222b937cSEugene Zelenko // Project includes 145ec532a9SColin Riley #include "RenderScriptRuntime.h" 155ec532a9SColin Riley 16b3f7f69dSAidan Dodds #include "lldb/Breakpoint/StoppointCallbackContext.h" 175ec532a9SColin Riley #include "lldb/Core/ConstString.h" 185ec532a9SColin Riley #include "lldb/Core/Debugger.h" 195ec532a9SColin Riley #include "lldb/Core/Error.h" 205ec532a9SColin Riley #include "lldb/Core/Log.h" 215ec532a9SColin Riley #include "lldb/Core/PluginManager.h" 22018f5a7eSEwan Crawford #include "lldb/Core/RegularExpression.h" 23b3f7f69dSAidan Dodds #include "lldb/Core/ValueObjectVariable.h" 248b244e21SEwan Crawford #include "lldb/DataFormatters/DumpValueObjectOptions.h" 25b3f7f69dSAidan Dodds #include "lldb/Expression/UserExpression.h" 26a0f08674SEwan Crawford #include "lldb/Host/StringConvert.h" 27b3f7f69dSAidan Dodds #include "lldb/Interpreter/Args.h" 28b3f7f69dSAidan Dodds #include "lldb/Interpreter/CommandInterpreter.h" 29b3f7f69dSAidan Dodds #include "lldb/Interpreter/CommandObjectMultiword.h" 30b3f7f69dSAidan Dodds #include "lldb/Interpreter/CommandReturnObject.h" 31b3f7f69dSAidan Dodds #include "lldb/Interpreter/Options.h" 325ec532a9SColin Riley #include "lldb/Symbol/Symbol.h" 334640cde1SColin Riley #include "lldb/Symbol/Type.h" 34b3f7f69dSAidan Dodds #include "lldb/Symbol/VariableList.h" 355ec532a9SColin Riley #include "lldb/Target/Process.h" 36b3f7f69dSAidan Dodds #include "lldb/Target/RegisterContext.h" 375ec532a9SColin Riley #include "lldb/Target/Target.h" 38018f5a7eSEwan Crawford #include "lldb/Target/Thread.h" 395ec532a9SColin Riley 405ec532a9SColin Riley using namespace lldb; 415ec532a9SColin Riley using namespace lldb_private; 4298156583SEwan Crawford using namespace lldb_renderscript; 435ec532a9SColin Riley 44b3f7f69dSAidan Dodds namespace 45b3f7f69dSAidan Dodds { 4678f339d1SEwan Crawford 4778f339d1SEwan Crawford // The empirical_type adds a basic level of validation to arbitrary data 4878f339d1SEwan Crawford // allowing us to track if data has been discovered and stored or not. 4978f339d1SEwan Crawford // An empirical_type will be marked as valid only if it has been explicitly assigned to. 50b3f7f69dSAidan Dodds template <typename type_t> class empirical_type 5178f339d1SEwan Crawford { 5278f339d1SEwan Crawford public: 5378f339d1SEwan Crawford // Ctor. Contents is invalid when constructed. 54b3f7f69dSAidan Dodds empirical_type() : valid(false) {} 5578f339d1SEwan Crawford 5678f339d1SEwan Crawford // Return true and copy contents to out if valid, else return false. 57b3f7f69dSAidan Dodds bool 58b3f7f69dSAidan Dodds get(type_t &out) const 5978f339d1SEwan Crawford { 6078f339d1SEwan Crawford if (valid) 6178f339d1SEwan Crawford out = data; 6278f339d1SEwan Crawford return valid; 6378f339d1SEwan Crawford } 6478f339d1SEwan Crawford 6578f339d1SEwan Crawford // Return a pointer to the contents or nullptr if it was not valid. 66b3f7f69dSAidan Dodds const type_t * 67b3f7f69dSAidan Dodds get() const 6878f339d1SEwan Crawford { 6978f339d1SEwan Crawford return valid ? &data : nullptr; 7078f339d1SEwan Crawford } 7178f339d1SEwan Crawford 7278f339d1SEwan Crawford // Assign data explicitly. 73b3f7f69dSAidan Dodds void 74b3f7f69dSAidan Dodds set(const type_t in) 7578f339d1SEwan Crawford { 7678f339d1SEwan Crawford data = in; 7778f339d1SEwan Crawford valid = true; 7878f339d1SEwan Crawford } 7978f339d1SEwan Crawford 8078f339d1SEwan Crawford // Mark contents as invalid. 81b3f7f69dSAidan Dodds void 82b3f7f69dSAidan Dodds invalidate() 8378f339d1SEwan Crawford { 8478f339d1SEwan Crawford valid = false; 8578f339d1SEwan Crawford } 8678f339d1SEwan Crawford 8778f339d1SEwan Crawford // Returns true if this type contains valid data. 88b3f7f69dSAidan Dodds bool 89b3f7f69dSAidan Dodds isValid() const 9078f339d1SEwan Crawford { 9178f339d1SEwan Crawford return valid; 9278f339d1SEwan Crawford } 9378f339d1SEwan Crawford 9478f339d1SEwan Crawford // Assignment operator. 95b3f7f69dSAidan Dodds empirical_type<type_t> & 96b3f7f69dSAidan Dodds operator=(const type_t in) 9778f339d1SEwan Crawford { 9878f339d1SEwan Crawford set(in); 9978f339d1SEwan Crawford return *this; 10078f339d1SEwan Crawford } 10178f339d1SEwan Crawford 10278f339d1SEwan Crawford // Dereference operator returns contents. 10378f339d1SEwan Crawford // Warning: Will assert if not valid so use only when you know data is valid. 10478f339d1SEwan Crawford const type_t &operator*() const 10578f339d1SEwan Crawford { 10678f339d1SEwan Crawford assert(valid); 10778f339d1SEwan Crawford return data; 10878f339d1SEwan Crawford } 10978f339d1SEwan Crawford 11078f339d1SEwan Crawford protected: 11178f339d1SEwan Crawford bool valid; 11278f339d1SEwan Crawford type_t data; 11378f339d1SEwan Crawford }; 11478f339d1SEwan Crawford 115f4786785SAidan Dodds // ArgItem is used by the GetArgs() function when reading function arguments from the target. 116f4786785SAidan Dodds struct ArgItem 117f4786785SAidan Dodds { 118f4786785SAidan Dodds enum 119f4786785SAidan Dodds { 120f4786785SAidan Dodds ePointer, 121f4786785SAidan Dodds eInt32, 122f4786785SAidan Dodds eInt64, 123f4786785SAidan Dodds eLong, 124f4786785SAidan Dodds eBool 125f4786785SAidan Dodds } type; 126f4786785SAidan Dodds 127f4786785SAidan Dodds uint64_t value; 128f4786785SAidan Dodds 129f4786785SAidan Dodds explicit operator uint64_t() const { return value; } 130f4786785SAidan Dodds }; 131f4786785SAidan Dodds 132f4786785SAidan Dodds // Context structure to be passed into GetArgsXXX(), argument reading functions below. 133f4786785SAidan Dodds struct GetArgsCtx 134f4786785SAidan Dodds { 135f4786785SAidan Dodds RegisterContext *reg_ctx; 136f4786785SAidan Dodds Process *process; 137f4786785SAidan Dodds }; 138f4786785SAidan Dodds 139f4786785SAidan Dodds bool 140f4786785SAidan Dodds GetArgsX86(const GetArgsCtx &ctx, ArgItem *arg_list, size_t num_args) 141f4786785SAidan Dodds { 142f4786785SAidan Dodds Log *log = GetLogIfAllCategoriesSet(LIBLLDB_LOG_LANGUAGE); 143f4786785SAidan Dodds 144f4786785SAidan Dodds // get the current stack pointer 145f4786785SAidan Dodds uint64_t sp = ctx.reg_ctx->GetSP(); 146f4786785SAidan Dodds 147f4786785SAidan Dodds for (size_t i = 0; i < num_args; ++i) 148f4786785SAidan Dodds { 149f4786785SAidan Dodds ArgItem &arg = arg_list[i]; 150f4786785SAidan Dodds // advance up the stack by one argument 151f4786785SAidan Dodds sp += sizeof(uint32_t); 152f4786785SAidan Dodds // get the argument type size 153f4786785SAidan Dodds size_t arg_size = sizeof(uint32_t); 154f4786785SAidan Dodds // read the argument from memory 155f4786785SAidan Dodds arg.value = 0; 156f4786785SAidan Dodds Error error; 157f4786785SAidan Dodds size_t read = ctx.process->ReadMemory(sp, &arg.value, sizeof(uint32_t), error); 158f4786785SAidan Dodds if (read != arg_size || !error.Success()) 159f4786785SAidan Dodds { 160f4786785SAidan Dodds if (log) 161f4786785SAidan Dodds log->Printf("%s - error reading argument: %" PRIu64 " '%s'", __FUNCTION__, uint64_t(i), 162f4786785SAidan Dodds error.AsCString()); 163f4786785SAidan Dodds return false; 164f4786785SAidan Dodds } 165f4786785SAidan Dodds } 166f4786785SAidan Dodds return true; 167f4786785SAidan Dodds } 168f4786785SAidan Dodds 169f4786785SAidan Dodds bool 170f4786785SAidan Dodds GetArgsX86_64(GetArgsCtx &ctx, ArgItem *arg_list, size_t num_args) 171f4786785SAidan Dodds { 172f4786785SAidan Dodds Log *log = GetLogIfAllCategoriesSet(LIBLLDB_LOG_LANGUAGE); 173f4786785SAidan Dodds 174f4786785SAidan Dodds // number of arguments passed in registers 175f4786785SAidan Dodds static const uint32_t c_args_in_reg = 6; 176f4786785SAidan Dodds // register passing order 1771ee07253SSaleem Abdulrasool static const std::array<const char *, c_args_in_reg> c_reg_names{{"rdi", "rsi", "rdx", "rcx", "r8", "r9"}}; 178f4786785SAidan Dodds // argument type to size mapping 1791ee07253SSaleem Abdulrasool static const std::array<size_t, 5> arg_size{{ 180f4786785SAidan Dodds 8, // ePointer, 181f4786785SAidan Dodds 4, // eInt32, 182f4786785SAidan Dodds 8, // eInt64, 183f4786785SAidan Dodds 8, // eLong, 184f4786785SAidan Dodds 4, // eBool, 1851ee07253SSaleem Abdulrasool }}; 186f4786785SAidan Dodds 187*17e07c0aSAidan Dodds Error error; 188*17e07c0aSAidan Dodds 189f4786785SAidan Dodds // get the current stack pointer 190f4786785SAidan Dodds uint64_t sp = ctx.reg_ctx->GetSP(); 191f4786785SAidan Dodds // step over the return address 192f4786785SAidan Dodds sp += sizeof(uint64_t); 193f4786785SAidan Dodds 194f4786785SAidan Dodds // check the stack alignment was correct (16 byte aligned) 195f4786785SAidan Dodds if ((sp & 0xf) != 0x0) 196f4786785SAidan Dodds { 197f4786785SAidan Dodds if (log) 198f4786785SAidan Dodds log->Printf("%s - stack misaligned", __FUNCTION__); 199f4786785SAidan Dodds return false; 200f4786785SAidan Dodds } 201f4786785SAidan Dodds 202f4786785SAidan Dodds // find the start of arguments on the stack 203f4786785SAidan Dodds uint64_t sp_offset = 0; 204f4786785SAidan Dodds for (uint32_t i = c_args_in_reg; i < num_args; ++i) 205f4786785SAidan Dodds { 206f4786785SAidan Dodds sp_offset += arg_size[arg_list[i].type]; 207f4786785SAidan Dodds } 208f4786785SAidan Dodds // round up to multiple of 16 209f4786785SAidan Dodds sp_offset = (sp_offset + 0xf) & 0xf; 210f4786785SAidan Dodds sp += sp_offset; 211f4786785SAidan Dodds 212f4786785SAidan Dodds for (size_t i = 0; i < num_args; ++i) 213f4786785SAidan Dodds { 214f4786785SAidan Dodds bool success = false; 215f4786785SAidan Dodds ArgItem &arg = arg_list[i]; 216f4786785SAidan Dodds // arguments passed in registers 217f4786785SAidan Dodds if (i < c_args_in_reg) 218f4786785SAidan Dodds { 219f4786785SAidan Dodds const RegisterInfo *rArg = ctx.reg_ctx->GetRegisterInfoByName(c_reg_names[i]); 220f4786785SAidan Dodds RegisterValue rVal; 221f4786785SAidan Dodds if (ctx.reg_ctx->ReadRegister(rArg, rVal)) 222f4786785SAidan Dodds arg.value = rVal.GetAsUInt64(0, &success); 223f4786785SAidan Dodds } 224f4786785SAidan Dodds // arguments passed on the stack 225f4786785SAidan Dodds else 226f4786785SAidan Dodds { 227f4786785SAidan Dodds // get the argument type size 228f4786785SAidan Dodds const size_t size = arg_size[arg_list[i].type]; 229f4786785SAidan Dodds // read the argument from memory 230f4786785SAidan Dodds arg.value = 0; 231f4786785SAidan Dodds // note: due to little endian layout reading 4 or 8 bytes will give the correct value. 232f4786785SAidan Dodds size_t read = ctx.process->ReadMemory(sp, &arg.value, size, error); 233f4786785SAidan Dodds success = (error.Success() && read==size); 234f4786785SAidan Dodds // advance past this argument 235f4786785SAidan Dodds sp -= size; 236f4786785SAidan Dodds } 237f4786785SAidan Dodds // fail if we couldn't read this argument 238f4786785SAidan Dodds if (!success) 239f4786785SAidan Dodds { 240f4786785SAidan Dodds if (log) 241*17e07c0aSAidan Dodds log->Printf("%s - error reading argument: %" PRIu64", reason: %s", 242*17e07c0aSAidan Dodds __FUNCTION__, uint64_t(i), error.AsCString("n/a")); 243f4786785SAidan Dodds return false; 244f4786785SAidan Dodds } 245f4786785SAidan Dodds } 246f4786785SAidan Dodds return true; 247f4786785SAidan Dodds } 248f4786785SAidan Dodds 249f4786785SAidan Dodds bool 250f4786785SAidan Dodds GetArgsArm(GetArgsCtx &ctx, ArgItem *arg_list, size_t num_args) 251f4786785SAidan Dodds { 252f4786785SAidan Dodds // number of arguments passed in registers 253f4786785SAidan Dodds static const uint32_t c_args_in_reg = 4; 254f4786785SAidan Dodds 255f4786785SAidan Dodds Log *log = GetLogIfAllCategoriesSet(LIBLLDB_LOG_LANGUAGE); 256f4786785SAidan Dodds 257*17e07c0aSAidan Dodds Error error; 258*17e07c0aSAidan Dodds 259f4786785SAidan Dodds // get the current stack pointer 260f4786785SAidan Dodds uint64_t sp = ctx.reg_ctx->GetSP(); 261f4786785SAidan Dodds 262f4786785SAidan Dodds for (size_t i = 0; i < num_args; ++i) 263f4786785SAidan Dodds { 264f4786785SAidan Dodds bool success = false; 265f4786785SAidan Dodds ArgItem &arg = arg_list[i]; 266f4786785SAidan Dodds // arguments passed in registers 267f4786785SAidan Dodds if (i < c_args_in_reg) 268f4786785SAidan Dodds { 269f4786785SAidan Dodds const RegisterInfo *rArg = ctx.reg_ctx->GetRegisterInfoAtIndex(i); 270f4786785SAidan Dodds RegisterValue rVal; 271f4786785SAidan Dodds if (ctx.reg_ctx->ReadRegister(rArg, rVal)) 272f4786785SAidan Dodds arg.value = rVal.GetAsUInt32(0, &success); 273f4786785SAidan Dodds } 274f4786785SAidan Dodds // arguments passed on the stack 275f4786785SAidan Dodds else 276f4786785SAidan Dodds { 277f4786785SAidan Dodds // get the argument type size 278f4786785SAidan Dodds const size_t arg_size = sizeof(uint32_t); 279f4786785SAidan Dodds // clear all 64bits 280f4786785SAidan Dodds arg.value = 0; 281f4786785SAidan Dodds // read this argument from memory 282f4786785SAidan Dodds size_t bytes_read = ctx.process->ReadMemory(sp, &arg.value, arg_size, error); 283f4786785SAidan Dodds success = (error.Success() && bytes_read == arg_size); 284f4786785SAidan Dodds // advance the stack pointer 285f4786785SAidan Dodds sp += sizeof(uint32_t); 286f4786785SAidan Dodds } 287f4786785SAidan Dodds // fail if we couldn't read this argument 288f4786785SAidan Dodds if (!success) 289f4786785SAidan Dodds { 290f4786785SAidan Dodds if (log) 291*17e07c0aSAidan Dodds log->Printf("%s - error reading argument: %" PRIu64", reason: %s", 292*17e07c0aSAidan Dodds __FUNCTION__, uint64_t(i), error.AsCString("n/a")); 293f4786785SAidan Dodds return false; 294f4786785SAidan Dodds } 295f4786785SAidan Dodds } 296f4786785SAidan Dodds return true; 297f4786785SAidan Dodds } 298f4786785SAidan Dodds 299f4786785SAidan Dodds bool 300f4786785SAidan Dodds GetArgsAarch64(GetArgsCtx &ctx, ArgItem *arg_list, size_t num_args) 301f4786785SAidan Dodds { 302f4786785SAidan Dodds // number of arguments passed in registers 303f4786785SAidan Dodds static const uint32_t c_args_in_reg = 8; 304f4786785SAidan Dodds 305f4786785SAidan Dodds Log *log = GetLogIfAllCategoriesSet(LIBLLDB_LOG_LANGUAGE); 306f4786785SAidan Dodds 307f4786785SAidan Dodds for (size_t i = 0; i < num_args; ++i) 308f4786785SAidan Dodds { 309f4786785SAidan Dodds bool success = false; 310f4786785SAidan Dodds ArgItem &arg = arg_list[i]; 311f4786785SAidan Dodds // arguments passed in registers 312f4786785SAidan Dodds if (i < c_args_in_reg) 313f4786785SAidan Dodds { 314f4786785SAidan Dodds const RegisterInfo *rArg = ctx.reg_ctx->GetRegisterInfoAtIndex(i); 315f4786785SAidan Dodds RegisterValue rVal; 316f4786785SAidan Dodds if (ctx.reg_ctx->ReadRegister(rArg, rVal)) 317f4786785SAidan Dodds arg.value = rVal.GetAsUInt64(0, &success); 318f4786785SAidan Dodds } 319f4786785SAidan Dodds // arguments passed on the stack 320f4786785SAidan Dodds else 321f4786785SAidan Dodds { 322f4786785SAidan Dodds if (log) 323f4786785SAidan Dodds log->Printf("%s - reading arguments spilled to stack not implemented", __FUNCTION__); 324f4786785SAidan Dodds } 325f4786785SAidan Dodds // fail if we couldn't read this argument 326f4786785SAidan Dodds if (!success) 327f4786785SAidan Dodds { 328f4786785SAidan Dodds if (log) 329f4786785SAidan Dodds log->Printf("%s - error reading argument: %" PRIu64, __FUNCTION__, 330f4786785SAidan Dodds uint64_t(i)); 331f4786785SAidan Dodds return false; 332f4786785SAidan Dodds } 333f4786785SAidan Dodds } 334f4786785SAidan Dodds return true; 335f4786785SAidan Dodds } 336f4786785SAidan Dodds 337f4786785SAidan Dodds bool 338f4786785SAidan Dodds GetArgsMipsel(GetArgsCtx &ctx, ArgItem *arg_list, size_t num_args) 339f4786785SAidan Dodds { 340f4786785SAidan Dodds // number of arguments passed in registers 341f4786785SAidan Dodds static const uint32_t c_args_in_reg = 4; 342f4786785SAidan Dodds // register file offset to first argument 343f4786785SAidan Dodds static const uint32_t c_reg_offset = 4; 344f4786785SAidan Dodds 345f4786785SAidan Dodds Log *log = GetLogIfAllCategoriesSet(LIBLLDB_LOG_LANGUAGE); 346f4786785SAidan Dodds 347*17e07c0aSAidan Dodds Error error; 348*17e07c0aSAidan Dodds 349*17e07c0aSAidan Dodds // find offset to arguments on the stack (+16 to skip over a0-a3 shadow space) 350*17e07c0aSAidan Dodds uint64_t sp = ctx.reg_ctx->GetSP() + 16; 351*17e07c0aSAidan Dodds 352f4786785SAidan Dodds for (size_t i = 0; i < num_args; ++i) 353f4786785SAidan Dodds { 354f4786785SAidan Dodds bool success = false; 355f4786785SAidan Dodds ArgItem &arg = arg_list[i]; 356f4786785SAidan Dodds // arguments passed in registers 357f4786785SAidan Dodds if (i < c_args_in_reg) 358f4786785SAidan Dodds { 359f4786785SAidan Dodds const RegisterInfo *rArg = ctx.reg_ctx->GetRegisterInfoAtIndex(i + c_reg_offset); 360f4786785SAidan Dodds RegisterValue rVal; 361f4786785SAidan Dodds if (ctx.reg_ctx->ReadRegister(rArg, rVal)) 362f4786785SAidan Dodds arg.value = rVal.GetAsUInt64(0, &success); 363f4786785SAidan Dodds } 364f4786785SAidan Dodds // arguments passed on the stack 365f4786785SAidan Dodds else 366f4786785SAidan Dodds { 367f4786785SAidan Dodds if (log) 368f4786785SAidan Dodds log->Printf("%s - reading arguments spilled to stack not implemented.", __FUNCTION__); 369f4786785SAidan Dodds } 370f4786785SAidan Dodds // fail if we couldn't read this argument 371f4786785SAidan Dodds if (!success) 372f4786785SAidan Dodds { 373f4786785SAidan Dodds if (log) 374f4786785SAidan Dodds log->Printf("%s - error reading argument: %" PRIu64, __FUNCTION__, uint64_t(i)); 375f4786785SAidan Dodds return false; 376f4786785SAidan Dodds } 377f4786785SAidan Dodds } 378f4786785SAidan Dodds return true; 379f4786785SAidan Dodds } 380f4786785SAidan Dodds 381f4786785SAidan Dodds bool 382f4786785SAidan Dodds GetArgsMips64el(GetArgsCtx &ctx, ArgItem *arg_list, size_t num_args) 383f4786785SAidan Dodds { 384f4786785SAidan Dodds // number of arguments passed in registers 385f4786785SAidan Dodds static const uint32_t c_args_in_reg = 8; 386f4786785SAidan Dodds // register file offset to first argument 387f4786785SAidan Dodds static const uint32_t c_reg_offset = 4; 388f4786785SAidan Dodds 389f4786785SAidan Dodds Log *log = GetLogIfAllCategoriesSet(LIBLLDB_LOG_LANGUAGE); 390f4786785SAidan Dodds 391*17e07c0aSAidan Dodds Error error; 392*17e07c0aSAidan Dodds 393f4786785SAidan Dodds // get the current stack pointer 394f4786785SAidan Dodds uint64_t sp = ctx.reg_ctx->GetSP(); 395f4786785SAidan Dodds 396f4786785SAidan Dodds for (size_t i = 0; i < num_args; ++i) 397f4786785SAidan Dodds { 398f4786785SAidan Dodds bool success = false; 399f4786785SAidan Dodds ArgItem &arg = arg_list[i]; 400f4786785SAidan Dodds // arguments passed in registers 401f4786785SAidan Dodds if (i < c_args_in_reg) 402f4786785SAidan Dodds { 403f4786785SAidan Dodds const RegisterInfo *rArg = ctx.reg_ctx->GetRegisterInfoAtIndex(i + c_reg_offset); 404f4786785SAidan Dodds RegisterValue rVal; 405f4786785SAidan Dodds if (ctx.reg_ctx->ReadRegister(rArg, rVal)) 40672f77525SAidan Dodds arg.value = rVal.GetAsUInt64(0, &success); 407f4786785SAidan Dodds } 408f4786785SAidan Dodds // arguments passed on the stack 409f4786785SAidan Dodds else 410f4786785SAidan Dodds { 411f4786785SAidan Dodds // get the argument type size 412f4786785SAidan Dodds const size_t arg_size = sizeof(uint64_t); 413f4786785SAidan Dodds // clear all 64bits 414f4786785SAidan Dodds arg.value = 0; 415f4786785SAidan Dodds // read this argument from memory 416f4786785SAidan Dodds size_t bytes_read = ctx.process->ReadMemory(sp, &arg.value, arg_size, error); 417f4786785SAidan Dodds success = (error.Success() && bytes_read == arg_size); 418f4786785SAidan Dodds // advance the stack pointer 419f4786785SAidan Dodds sp += arg_size; 420f4786785SAidan Dodds } 421f4786785SAidan Dodds // fail if we couldn't read this argument 422f4786785SAidan Dodds if (!success) 423f4786785SAidan Dodds { 424f4786785SAidan Dodds if (log) 425*17e07c0aSAidan Dodds log->Printf("%s - error reading argument: %" PRIu64", reason: %s", 426*17e07c0aSAidan Dodds __FUNCTION__, uint64_t(i), error.AsCString("n/a")); 427f4786785SAidan Dodds return false; 428f4786785SAidan Dodds } 429f4786785SAidan Dodds } 430f4786785SAidan Dodds return true; 431f4786785SAidan Dodds } 432f4786785SAidan Dodds 433f4786785SAidan Dodds bool 434f4786785SAidan Dodds GetArgs(ExecutionContext &context, ArgItem *arg_list, size_t num_args) 435f4786785SAidan Dodds { 436f4786785SAidan Dodds Log *log = GetLogIfAllCategoriesSet(LIBLLDB_LOG_LANGUAGE); 437f4786785SAidan Dodds 438f4786785SAidan Dodds // verify that we have a target 439f4786785SAidan Dodds if (!context.GetTargetPtr()) 440f4786785SAidan Dodds { 441f4786785SAidan Dodds if (log) 442f4786785SAidan Dodds log->Printf("%s - invalid target", __FUNCTION__); 443f4786785SAidan Dodds return false; 444f4786785SAidan Dodds } 445f4786785SAidan Dodds 446f4786785SAidan Dodds GetArgsCtx ctx = {context.GetRegisterContext(), context.GetProcessPtr()}; 447f4786785SAidan Dodds assert(ctx.reg_ctx && ctx.process); 448f4786785SAidan Dodds 449f4786785SAidan Dodds // dispatch based on architecture 450f4786785SAidan Dodds switch (context.GetTargetPtr()->GetArchitecture().GetMachine()) 451f4786785SAidan Dodds { 452f4786785SAidan Dodds case llvm::Triple::ArchType::x86: 453f4786785SAidan Dodds return GetArgsX86(ctx, arg_list, num_args); 454f4786785SAidan Dodds 455f4786785SAidan Dodds case llvm::Triple::ArchType::x86_64: 456f4786785SAidan Dodds return GetArgsX86_64(ctx, arg_list, num_args); 457f4786785SAidan Dodds 458f4786785SAidan Dodds case llvm::Triple::ArchType::arm: 459f4786785SAidan Dodds return GetArgsArm(ctx, arg_list, num_args); 460f4786785SAidan Dodds 461f4786785SAidan Dodds case llvm::Triple::ArchType::aarch64: 462f4786785SAidan Dodds return GetArgsAarch64(ctx, arg_list, num_args); 463f4786785SAidan Dodds 464f4786785SAidan Dodds case llvm::Triple::ArchType::mipsel: 465f4786785SAidan Dodds return GetArgsMipsel(ctx, arg_list, num_args); 466f4786785SAidan Dodds 467f4786785SAidan Dodds case llvm::Triple::ArchType::mips64el: 468f4786785SAidan Dodds return GetArgsMips64el(ctx, arg_list, num_args); 469f4786785SAidan Dodds 470f4786785SAidan Dodds default: 471f4786785SAidan Dodds // unsupported architecture 472f4786785SAidan Dodds if (log) 473f4786785SAidan Dodds { 474f4786785SAidan Dodds log->Printf("%s - architecture not supported: '%s'", __FUNCTION__, 475f4786785SAidan Dodds context.GetTargetRef().GetArchitecture().GetArchitectureName()); 476f4786785SAidan Dodds } 477f4786785SAidan Dodds return false; 478f4786785SAidan Dodds } 479f4786785SAidan Dodds } 480222b937cSEugene Zelenko } // anonymous namespace 48178f339d1SEwan Crawford 48278f339d1SEwan Crawford // The ScriptDetails class collects data associated with a single script instance. 48378f339d1SEwan Crawford struct RenderScriptRuntime::ScriptDetails 48478f339d1SEwan Crawford { 485222b937cSEugene Zelenko ~ScriptDetails() = default; 48678f339d1SEwan Crawford 48778f339d1SEwan Crawford enum ScriptType 48878f339d1SEwan Crawford { 48978f339d1SEwan Crawford eScript, 49078f339d1SEwan Crawford eScriptC 49178f339d1SEwan Crawford }; 49278f339d1SEwan Crawford 49378f339d1SEwan Crawford // The derived type of the script. 49478f339d1SEwan Crawford empirical_type<ScriptType> type; 49578f339d1SEwan Crawford // The name of the original source file. 49678f339d1SEwan Crawford empirical_type<std::string> resName; 49778f339d1SEwan Crawford // Path to script .so file on the device. 49878f339d1SEwan Crawford empirical_type<std::string> scriptDyLib; 49978f339d1SEwan Crawford // Directory where kernel objects are cached on device. 50078f339d1SEwan Crawford empirical_type<std::string> cacheDir; 50178f339d1SEwan Crawford // Pointer to the context which owns this script. 50278f339d1SEwan Crawford empirical_type<lldb::addr_t> context; 50378f339d1SEwan Crawford // Pointer to the script object itself. 50478f339d1SEwan Crawford empirical_type<lldb::addr_t> script; 50578f339d1SEwan Crawford }; 50678f339d1SEwan Crawford 5078b244e21SEwan Crawford // This Element class represents the Element object in RS, 5088b244e21SEwan Crawford // defining the type associated with an Allocation. 5098b244e21SEwan Crawford struct RenderScriptRuntime::Element 51078f339d1SEwan Crawford { 51115f2bd95SEwan Crawford // Taken from rsDefines.h 51215f2bd95SEwan Crawford enum DataKind 51315f2bd95SEwan Crawford { 51415f2bd95SEwan Crawford RS_KIND_USER, 51515f2bd95SEwan Crawford RS_KIND_PIXEL_L = 7, 51615f2bd95SEwan Crawford RS_KIND_PIXEL_A, 51715f2bd95SEwan Crawford RS_KIND_PIXEL_LA, 51815f2bd95SEwan Crawford RS_KIND_PIXEL_RGB, 51915f2bd95SEwan Crawford RS_KIND_PIXEL_RGBA, 52015f2bd95SEwan Crawford RS_KIND_PIXEL_DEPTH, 52115f2bd95SEwan Crawford RS_KIND_PIXEL_YUV, 52215f2bd95SEwan Crawford RS_KIND_INVALID = 100 52315f2bd95SEwan Crawford }; 52478f339d1SEwan Crawford 52515f2bd95SEwan Crawford // Taken from rsDefines.h 52678f339d1SEwan Crawford enum DataType 52778f339d1SEwan Crawford { 52815f2bd95SEwan Crawford RS_TYPE_NONE = 0, 52915f2bd95SEwan Crawford RS_TYPE_FLOAT_16, 53015f2bd95SEwan Crawford RS_TYPE_FLOAT_32, 53115f2bd95SEwan Crawford RS_TYPE_FLOAT_64, 53215f2bd95SEwan Crawford RS_TYPE_SIGNED_8, 53315f2bd95SEwan Crawford RS_TYPE_SIGNED_16, 53415f2bd95SEwan Crawford RS_TYPE_SIGNED_32, 53515f2bd95SEwan Crawford RS_TYPE_SIGNED_64, 53615f2bd95SEwan Crawford RS_TYPE_UNSIGNED_8, 53715f2bd95SEwan Crawford RS_TYPE_UNSIGNED_16, 53815f2bd95SEwan Crawford RS_TYPE_UNSIGNED_32, 53915f2bd95SEwan Crawford RS_TYPE_UNSIGNED_64, 5402e920715SEwan Crawford RS_TYPE_BOOLEAN, 5412e920715SEwan Crawford 5422e920715SEwan Crawford RS_TYPE_UNSIGNED_5_6_5, 5432e920715SEwan Crawford RS_TYPE_UNSIGNED_5_5_5_1, 5442e920715SEwan Crawford RS_TYPE_UNSIGNED_4_4_4_4, 5452e920715SEwan Crawford 5462e920715SEwan Crawford RS_TYPE_MATRIX_4X4, 5472e920715SEwan Crawford RS_TYPE_MATRIX_3X3, 5482e920715SEwan Crawford RS_TYPE_MATRIX_2X2, 5492e920715SEwan Crawford 5502e920715SEwan Crawford RS_TYPE_ELEMENT = 1000, 5512e920715SEwan Crawford RS_TYPE_TYPE, 5522e920715SEwan Crawford RS_TYPE_ALLOCATION, 5532e920715SEwan Crawford RS_TYPE_SAMPLER, 5542e920715SEwan Crawford RS_TYPE_SCRIPT, 5552e920715SEwan Crawford RS_TYPE_MESH, 5562e920715SEwan Crawford RS_TYPE_PROGRAM_FRAGMENT, 5572e920715SEwan Crawford RS_TYPE_PROGRAM_VERTEX, 5582e920715SEwan Crawford RS_TYPE_PROGRAM_RASTER, 5592e920715SEwan Crawford RS_TYPE_PROGRAM_STORE, 5602e920715SEwan Crawford RS_TYPE_FONT, 5612e920715SEwan Crawford 5622e920715SEwan Crawford RS_TYPE_INVALID = 10000 56378f339d1SEwan Crawford }; 56478f339d1SEwan Crawford 5658b244e21SEwan Crawford std::vector<Element> children; // Child Element fields for structs 5668b244e21SEwan Crawford empirical_type<lldb::addr_t> element_ptr; // Pointer to the RS Element of the Type 5678b244e21SEwan Crawford empirical_type<DataType> type; // Type of each data pointer stored by the allocation 5688b244e21SEwan Crawford empirical_type<DataKind> type_kind; // Defines pixel type if Allocation is created from an image 5698b244e21SEwan Crawford empirical_type<uint32_t> type_vec_size; // Vector size of each data point, e.g '4' for uchar4 5708b244e21SEwan Crawford empirical_type<uint32_t> field_count; // Number of Subelements 5718b244e21SEwan Crawford empirical_type<uint32_t> datum_size; // Size of a single Element with padding 5728b244e21SEwan Crawford empirical_type<uint32_t> padding; // Number of padding bytes 5738b244e21SEwan Crawford empirical_type<uint32_t> array_size; // Number of items in array, only needed for strucrs 5748b244e21SEwan Crawford ConstString type_name; // Name of type, only needed for structs 5758b244e21SEwan Crawford 576b3f7f69dSAidan Dodds static const ConstString & 577b3f7f69dSAidan Dodds GetFallbackStructName(); // Print this as the type name of a struct Element 5788b244e21SEwan Crawford // If we can't resolve the actual struct name 5798b59062aSEwan Crawford 580b3f7f69dSAidan Dodds bool 581b3f7f69dSAidan Dodds shouldRefresh() const 5828b59062aSEwan Crawford { 5838b59062aSEwan Crawford const bool valid_ptr = element_ptr.isValid() && *element_ptr.get() != 0x0; 5848b59062aSEwan Crawford const bool valid_type = type.isValid() && type_vec_size.isValid() && type_kind.isValid(); 5858b59062aSEwan Crawford return !valid_ptr || !valid_type || !datum_size.isValid(); 5868b59062aSEwan Crawford } 5878b244e21SEwan Crawford }; 5888b244e21SEwan Crawford 5898b244e21SEwan Crawford // This AllocationDetails class collects data associated with a single 5908b244e21SEwan Crawford // allocation instance. 5918b244e21SEwan Crawford struct RenderScriptRuntime::AllocationDetails 5928b244e21SEwan Crawford { 59315f2bd95SEwan Crawford struct Dimension 59478f339d1SEwan Crawford { 59515f2bd95SEwan Crawford uint32_t dim_1; 59615f2bd95SEwan Crawford uint32_t dim_2; 59715f2bd95SEwan Crawford uint32_t dim_3; 59815f2bd95SEwan Crawford uint32_t cubeMap; 59915f2bd95SEwan Crawford 60015f2bd95SEwan Crawford Dimension() 60115f2bd95SEwan Crawford { 60215f2bd95SEwan Crawford dim_1 = 0; 60315f2bd95SEwan Crawford dim_2 = 0; 60415f2bd95SEwan Crawford dim_3 = 0; 60515f2bd95SEwan Crawford cubeMap = 0; 60615f2bd95SEwan Crawford } 60778f339d1SEwan Crawford }; 60878f339d1SEwan Crawford 60926e52a70SEwan Crawford // The FileHeader struct specifies the header we use for writing allocations to a binary file. 61026e52a70SEwan Crawford // Our format begins with the ASCII characters "RSAD", identifying the file as an allocation dump. 61126e52a70SEwan Crawford // Member variables dims and hdr_size are then written consecutively, immediately followed by an instance of 61226e52a70SEwan Crawford // the ElementHeader struct. Because Elements can contain subelements, there may be more than one instance 61326e52a70SEwan Crawford // of the ElementHeader struct. With this first instance being the root element, and the other instances being 61426e52a70SEwan Crawford // the root's descendants. To identify which instances are an ElementHeader's children, each struct 61526e52a70SEwan Crawford // is immediately followed by a sequence of consecutive offsets to the start of its child structs. 61626e52a70SEwan Crawford // These offsets are 4 bytes in size, and the 0 offset signifies no more children. 61755232f09SEwan Crawford struct FileHeader 61855232f09SEwan Crawford { 61955232f09SEwan Crawford uint8_t ident[4]; // ASCII 'RSAD' identifying the file 62026e52a70SEwan Crawford uint32_t dims[3]; // Dimensions 62126e52a70SEwan Crawford uint16_t hdr_size; // Header size in bytes, including all element headers 62226e52a70SEwan Crawford }; 62326e52a70SEwan Crawford 62426e52a70SEwan Crawford struct ElementHeader 62526e52a70SEwan Crawford { 62655232f09SEwan Crawford uint16_t type; // DataType enum 62755232f09SEwan Crawford uint32_t kind; // DataKind enum 62855232f09SEwan Crawford uint32_t element_size; // Size of a single element, including padding 62926e52a70SEwan Crawford uint16_t vector_size; // Vector width 63026e52a70SEwan Crawford uint32_t array_size; // Number of elements in array 63155232f09SEwan Crawford }; 63255232f09SEwan Crawford 63315f2bd95SEwan Crawford // Monotonically increasing from 1 634b3f7f69dSAidan Dodds static uint32_t ID; 63515f2bd95SEwan Crawford 63615f2bd95SEwan Crawford // Maps Allocation DataType enum and vector size to printable strings 63715f2bd95SEwan Crawford // using mapping from RenderScript numerical types summary documentation 63815f2bd95SEwan Crawford static const char *RsDataTypeToString[][4]; 63915f2bd95SEwan Crawford 64015f2bd95SEwan Crawford // Maps Allocation DataKind enum to printable strings 64115f2bd95SEwan Crawford static const char *RsDataKindToString[]; 64215f2bd95SEwan Crawford 643a0f08674SEwan Crawford // Maps allocation types to format sizes for printing. 644b3f7f69dSAidan Dodds static const uint32_t RSTypeToFormat[][3]; 645a0f08674SEwan Crawford 64615f2bd95SEwan Crawford // Give each allocation an ID as a way 64715f2bd95SEwan Crawford // for commands to reference it. 648b3f7f69dSAidan Dodds const uint32_t id; 64915f2bd95SEwan Crawford 6508b244e21SEwan Crawford RenderScriptRuntime::Element element; // Allocation Element type 65115f2bd95SEwan Crawford empirical_type<Dimension> dimension; // Dimensions of the Allocation 65215f2bd95SEwan Crawford empirical_type<lldb::addr_t> address; // Pointer to address of the RS Allocation 65315f2bd95SEwan Crawford empirical_type<lldb::addr_t> data_ptr; // Pointer to the data held by the Allocation 65415f2bd95SEwan Crawford empirical_type<lldb::addr_t> type_ptr; // Pointer to the RS Type of the Allocation 65515f2bd95SEwan Crawford empirical_type<lldb::addr_t> context; // Pointer to the RS Context of the Allocation 656a0f08674SEwan Crawford empirical_type<uint32_t> size; // Size of the allocation 657a0f08674SEwan Crawford empirical_type<uint32_t> stride; // Stride between rows of the allocation 65815f2bd95SEwan Crawford 65915f2bd95SEwan Crawford // Give each allocation an id, so we can reference it in user commands. 660b3f7f69dSAidan Dodds AllocationDetails() : id(ID++) {} 6618b59062aSEwan Crawford 662b3f7f69dSAidan Dodds bool 663b3f7f69dSAidan Dodds shouldRefresh() const 6648b59062aSEwan Crawford { 6658b59062aSEwan Crawford bool valid_ptrs = data_ptr.isValid() && *data_ptr.get() != 0x0; 6668b59062aSEwan Crawford valid_ptrs = valid_ptrs && type_ptr.isValid() && *type_ptr.get() != 0x0; 6678b59062aSEwan Crawford return !valid_ptrs || !dimension.isValid() || !size.isValid() || element.shouldRefresh(); 6688b59062aSEwan Crawford } 66915f2bd95SEwan Crawford }; 67015f2bd95SEwan Crawford 671fe06b5adSAdrian McCarthy const ConstString & 672fe06b5adSAdrian McCarthy RenderScriptRuntime::Element::GetFallbackStructName() 673fe06b5adSAdrian McCarthy { 674fe06b5adSAdrian McCarthy static const ConstString FallbackStructName("struct"); 675fe06b5adSAdrian McCarthy return FallbackStructName; 676fe06b5adSAdrian McCarthy } 6778b244e21SEwan Crawford 678b3f7f69dSAidan Dodds uint32_t RenderScriptRuntime::AllocationDetails::ID = 1; 67915f2bd95SEwan Crawford 680b3f7f69dSAidan Dodds const char *RenderScriptRuntime::AllocationDetails::RsDataKindToString[] = { 68115f2bd95SEwan Crawford "User", 682b3f7f69dSAidan Dodds "Undefined", "Undefined", "Undefined", "Undefined", "Undefined", "Undefined", // Enum jumps from 0 to 7 683b3f7f69dSAidan Dodds "L Pixel", "A Pixel", "LA Pixel", "RGB Pixel", 684b3f7f69dSAidan Dodds "RGBA Pixel", "Pixel Depth", "YUV Pixel"}; 68515f2bd95SEwan Crawford 686b3f7f69dSAidan Dodds const char *RenderScriptRuntime::AllocationDetails::RsDataTypeToString[][4] = { 68715f2bd95SEwan Crawford {"None", "None", "None", "None"}, 68815f2bd95SEwan Crawford {"half", "half2", "half3", "half4"}, 68915f2bd95SEwan Crawford {"float", "float2", "float3", "float4"}, 69015f2bd95SEwan Crawford {"double", "double2", "double3", "double4"}, 69115f2bd95SEwan Crawford {"char", "char2", "char3", "char4"}, 69215f2bd95SEwan Crawford {"short", "short2", "short3", "short4"}, 69315f2bd95SEwan Crawford {"int", "int2", "int3", "int4"}, 69415f2bd95SEwan Crawford {"long", "long2", "long3", "long4"}, 69515f2bd95SEwan Crawford {"uchar", "uchar2", "uchar3", "uchar4"}, 69615f2bd95SEwan Crawford {"ushort", "ushort2", "ushort3", "ushort4"}, 69715f2bd95SEwan Crawford {"uint", "uint2", "uint3", "uint4"}, 69815f2bd95SEwan Crawford {"ulong", "ulong2", "ulong3", "ulong4"}, 6992e920715SEwan Crawford {"bool", "bool2", "bool3", "bool4"}, 7002e920715SEwan Crawford {"packed_565", "packed_565", "packed_565", "packed_565"}, 7012e920715SEwan Crawford {"packed_5551", "packed_5551", "packed_5551", "packed_5551"}, 7022e920715SEwan Crawford {"packed_4444", "packed_4444", "packed_4444", "packed_4444"}, 7032e920715SEwan Crawford {"rs_matrix4x4", "rs_matrix4x4", "rs_matrix4x4", "rs_matrix4x4"}, 7042e920715SEwan Crawford {"rs_matrix3x3", "rs_matrix3x3", "rs_matrix3x3", "rs_matrix3x3"}, 7052e920715SEwan Crawford {"rs_matrix2x2", "rs_matrix2x2", "rs_matrix2x2", "rs_matrix2x2"}, 7062e920715SEwan Crawford 7072e920715SEwan Crawford // Handlers 7082e920715SEwan Crawford {"RS Element", "RS Element", "RS Element", "RS Element"}, 7092e920715SEwan Crawford {"RS Type", "RS Type", "RS Type", "RS Type"}, 7102e920715SEwan Crawford {"RS Allocation", "RS Allocation", "RS Allocation", "RS Allocation"}, 7112e920715SEwan Crawford {"RS Sampler", "RS Sampler", "RS Sampler", "RS Sampler"}, 7122e920715SEwan Crawford {"RS Script", "RS Script", "RS Script", "RS Script"}, 7132e920715SEwan Crawford 7142e920715SEwan Crawford // Deprecated 7152e920715SEwan Crawford {"RS Mesh", "RS Mesh", "RS Mesh", "RS Mesh"}, 7162e920715SEwan Crawford {"RS Program Fragment", "RS Program Fragment", "RS Program Fragment", "RS Program Fragment"}, 7172e920715SEwan Crawford {"RS Program Vertex", "RS Program Vertex", "RS Program Vertex", "RS Program Vertex"}, 7182e920715SEwan Crawford {"RS Program Raster", "RS Program Raster", "RS Program Raster", "RS Program Raster"}, 7192e920715SEwan Crawford {"RS Program Store", "RS Program Store", "RS Program Store", "RS Program Store"}, 720b3f7f69dSAidan Dodds {"RS Font", "RS Font", "RS Font", "RS Font"}}; 72178f339d1SEwan Crawford 722a0f08674SEwan Crawford // Used as an index into the RSTypeToFormat array elements 723b3f7f69dSAidan Dodds enum TypeToFormatIndex 724b3f7f69dSAidan Dodds { 725a0f08674SEwan Crawford eFormatSingle = 0, 726a0f08674SEwan Crawford eFormatVector, 727a0f08674SEwan Crawford eElementSize 728a0f08674SEwan Crawford }; 729a0f08674SEwan Crawford 730a0f08674SEwan Crawford // { format enum of single element, format enum of element vector, size of element} 731b3f7f69dSAidan Dodds const uint32_t RenderScriptRuntime::AllocationDetails::RSTypeToFormat[][3] = { 732a0f08674SEwan Crawford {eFormatHex, eFormatHex, 1}, // RS_TYPE_NONE 733a0f08674SEwan Crawford {eFormatFloat, eFormatVectorOfFloat16, 2}, // RS_TYPE_FLOAT_16 734a0f08674SEwan Crawford {eFormatFloat, eFormatVectorOfFloat32, sizeof(float)}, // RS_TYPE_FLOAT_32 735a0f08674SEwan Crawford {eFormatFloat, eFormatVectorOfFloat64, sizeof(double)}, // RS_TYPE_FLOAT_64 736a0f08674SEwan Crawford {eFormatDecimal, eFormatVectorOfSInt8, sizeof(int8_t)}, // RS_TYPE_SIGNED_8 737a0f08674SEwan Crawford {eFormatDecimal, eFormatVectorOfSInt16, sizeof(int16_t)}, // RS_TYPE_SIGNED_16 738a0f08674SEwan Crawford {eFormatDecimal, eFormatVectorOfSInt32, sizeof(int32_t)}, // RS_TYPE_SIGNED_32 739a0f08674SEwan Crawford {eFormatDecimal, eFormatVectorOfSInt64, sizeof(int64_t)}, // RS_TYPE_SIGNED_64 740a0f08674SEwan Crawford {eFormatDecimal, eFormatVectorOfUInt8, sizeof(uint8_t)}, // RS_TYPE_UNSIGNED_8 741a0f08674SEwan Crawford {eFormatDecimal, eFormatVectorOfUInt16, sizeof(uint16_t)}, // RS_TYPE_UNSIGNED_16 742a0f08674SEwan Crawford {eFormatDecimal, eFormatVectorOfUInt32, sizeof(uint32_t)}, // RS_TYPE_UNSIGNED_32 743a0f08674SEwan Crawford {eFormatDecimal, eFormatVectorOfUInt64, sizeof(uint64_t)}, // RS_TYPE_UNSIGNED_64 7442e920715SEwan Crawford {eFormatBoolean, eFormatBoolean, 1}, // RS_TYPE_BOOL 7452e920715SEwan Crawford {eFormatHex, eFormatHex, sizeof(uint16_t)}, // RS_TYPE_UNSIGNED_5_6_5 7462e920715SEwan Crawford {eFormatHex, eFormatHex, sizeof(uint16_t)}, // RS_TYPE_UNSIGNED_5_5_5_1 7472e920715SEwan Crawford {eFormatHex, eFormatHex, sizeof(uint16_t)}, // RS_TYPE_UNSIGNED_4_4_4_4 7482e920715SEwan Crawford {eFormatVectorOfFloat32, eFormatVectorOfFloat32, sizeof(float) * 16}, // RS_TYPE_MATRIX_4X4 7492e920715SEwan Crawford {eFormatVectorOfFloat32, eFormatVectorOfFloat32, sizeof(float) * 9}, // RS_TYPE_MATRIX_3X3 7502e920715SEwan Crawford {eFormatVectorOfFloat32, eFormatVectorOfFloat32, sizeof(float) * 4} // RS_TYPE_MATRIX_2X2 751a0f08674SEwan Crawford }; 752a0f08674SEwan Crawford 7534f8817c2SEwan Crawford const std::string RenderScriptRuntime::s_runtimeExpandSuffix(".expand"); 754a9759599SPavel Labath const std::array<const char *, 3> RenderScriptRuntime::s_runtimeCoordVars{{"rsIndex", "p->current.y", "p->current.z"}}; 7555ec532a9SColin Riley //------------------------------------------------------------------ 7565ec532a9SColin Riley // Static Functions 7575ec532a9SColin Riley //------------------------------------------------------------------ 7585ec532a9SColin Riley LanguageRuntime * 7595ec532a9SColin Riley RenderScriptRuntime::CreateInstance(Process *process, lldb::LanguageType language) 7605ec532a9SColin Riley { 7615ec532a9SColin Riley 7625ec532a9SColin Riley if (language == eLanguageTypeExtRenderScript) 7635ec532a9SColin Riley return new RenderScriptRuntime(process); 7645ec532a9SColin Riley else 765b3f7f69dSAidan Dodds return nullptr; 7665ec532a9SColin Riley } 7675ec532a9SColin Riley 76898156583SEwan Crawford // Callback with a module to search for matching symbols. 76998156583SEwan Crawford // We first check that the module contains RS kernels. 77098156583SEwan Crawford // Then look for a symbol which matches our kernel name. 77198156583SEwan Crawford // The breakpoint address is finally set using the address of this symbol. 77298156583SEwan Crawford Searcher::CallbackReturn 773b3f7f69dSAidan Dodds RSBreakpointResolver::SearchCallback(SearchFilter &filter, SymbolContext &context, Address *, bool) 77498156583SEwan Crawford { 77598156583SEwan Crawford ModuleSP module = context.module_sp; 77698156583SEwan Crawford 77798156583SEwan Crawford if (!module) 77898156583SEwan Crawford return Searcher::eCallbackReturnContinue; 77998156583SEwan Crawford 78098156583SEwan Crawford // Is this a module containing renderscript kernels? 78198156583SEwan Crawford if (nullptr == module->FindFirstSymbolWithNameAndType(ConstString(".rs.info"), eSymbolTypeData)) 78298156583SEwan Crawford return Searcher::eCallbackReturnContinue; 78398156583SEwan Crawford 78498156583SEwan Crawford // Attempt to set a breakpoint on the kernel name symbol within the module library. 78598156583SEwan Crawford // If it's not found, it's likely debug info is unavailable - try to set a 78698156583SEwan Crawford // breakpoint on <name>.expand. 78798156583SEwan Crawford 78898156583SEwan Crawford const Symbol *kernel_sym = module->FindFirstSymbolWithNameAndType(m_kernel_name, eSymbolTypeCode); 78998156583SEwan Crawford if (!kernel_sym) 79098156583SEwan Crawford { 79198156583SEwan Crawford std::string kernel_name_expanded(m_kernel_name.AsCString()); 79298156583SEwan Crawford kernel_name_expanded.append(".expand"); 79398156583SEwan Crawford kernel_sym = module->FindFirstSymbolWithNameAndType(ConstString(kernel_name_expanded.c_str()), eSymbolTypeCode); 79498156583SEwan Crawford } 79598156583SEwan Crawford 79698156583SEwan Crawford if (kernel_sym) 79798156583SEwan Crawford { 79898156583SEwan Crawford Address bp_addr = kernel_sym->GetAddress(); 79998156583SEwan Crawford if (filter.AddressPasses(bp_addr)) 80098156583SEwan Crawford m_breakpoint->AddLocation(bp_addr); 80198156583SEwan Crawford } 80298156583SEwan Crawford 80398156583SEwan Crawford return Searcher::eCallbackReturnContinue; 80498156583SEwan Crawford } 80598156583SEwan Crawford 8065ec532a9SColin Riley void 8075ec532a9SColin Riley RenderScriptRuntime::Initialize() 8085ec532a9SColin Riley { 809b3f7f69dSAidan Dodds PluginManager::RegisterPlugin(GetPluginNameStatic(), "RenderScript language support", CreateInstance, 810b3f7f69dSAidan Dodds GetCommandObject); 8115ec532a9SColin Riley } 8125ec532a9SColin Riley 8135ec532a9SColin Riley void 8145ec532a9SColin Riley RenderScriptRuntime::Terminate() 8155ec532a9SColin Riley { 8165ec532a9SColin Riley PluginManager::UnregisterPlugin(CreateInstance); 8175ec532a9SColin Riley } 8185ec532a9SColin Riley 8195ec532a9SColin Riley lldb_private::ConstString 8205ec532a9SColin Riley RenderScriptRuntime::GetPluginNameStatic() 8215ec532a9SColin Riley { 8225ec532a9SColin Riley static ConstString g_name("renderscript"); 8235ec532a9SColin Riley return g_name; 8245ec532a9SColin Riley } 8255ec532a9SColin Riley 826ef20b08fSColin Riley RenderScriptRuntime::ModuleKind 827ef20b08fSColin Riley RenderScriptRuntime::GetModuleKind(const lldb::ModuleSP &module_sp) 828ef20b08fSColin Riley { 829ef20b08fSColin Riley if (module_sp) 830ef20b08fSColin Riley { 831ef20b08fSColin Riley // Is this a module containing renderscript kernels? 832ef20b08fSColin Riley const Symbol *info_sym = module_sp->FindFirstSymbolWithNameAndType(ConstString(".rs.info"), eSymbolTypeData); 833ef20b08fSColin Riley if (info_sym) 834ef20b08fSColin Riley { 835ef20b08fSColin Riley return eModuleKindKernelObj; 836ef20b08fSColin Riley } 8374640cde1SColin Riley 8384640cde1SColin Riley // Is this the main RS runtime library 8394640cde1SColin Riley const ConstString rs_lib("libRS.so"); 8404640cde1SColin Riley if (module_sp->GetFileSpec().GetFilename() == rs_lib) 8414640cde1SColin Riley { 8424640cde1SColin Riley return eModuleKindLibRS; 8434640cde1SColin Riley } 8444640cde1SColin Riley 8454640cde1SColin Riley const ConstString rs_driverlib("libRSDriver.so"); 8464640cde1SColin Riley if (module_sp->GetFileSpec().GetFilename() == rs_driverlib) 8474640cde1SColin Riley { 8484640cde1SColin Riley return eModuleKindDriver; 8494640cde1SColin Riley } 8504640cde1SColin Riley 85115f2bd95SEwan Crawford const ConstString rs_cpureflib("libRSCpuRef.so"); 8524640cde1SColin Riley if (module_sp->GetFileSpec().GetFilename() == rs_cpureflib) 8534640cde1SColin Riley { 8544640cde1SColin Riley return eModuleKindImpl; 8554640cde1SColin Riley } 856ef20b08fSColin Riley } 857ef20b08fSColin Riley return eModuleKindIgnored; 858ef20b08fSColin Riley } 859ef20b08fSColin Riley 860ef20b08fSColin Riley bool 861ef20b08fSColin Riley RenderScriptRuntime::IsRenderScriptModule(const lldb::ModuleSP &module_sp) 862ef20b08fSColin Riley { 863ef20b08fSColin Riley return GetModuleKind(module_sp) != eModuleKindIgnored; 864ef20b08fSColin Riley } 865ef20b08fSColin Riley 866ef20b08fSColin Riley void 867ef20b08fSColin Riley RenderScriptRuntime::ModulesDidLoad(const ModuleList &module_list) 868ef20b08fSColin Riley { 869ef20b08fSColin Riley Mutex::Locker locker(module_list.GetMutex()); 870ef20b08fSColin Riley 871ef20b08fSColin Riley size_t num_modules = module_list.GetSize(); 872ef20b08fSColin Riley for (size_t i = 0; i < num_modules; i++) 873ef20b08fSColin Riley { 874ef20b08fSColin Riley auto mod = module_list.GetModuleAtIndex(i); 875ef20b08fSColin Riley if (IsRenderScriptModule(mod)) 876ef20b08fSColin Riley { 877ef20b08fSColin Riley LoadModule(mod); 878ef20b08fSColin Riley } 879ef20b08fSColin Riley } 880ef20b08fSColin Riley } 881ef20b08fSColin Riley 8825ec532a9SColin Riley //------------------------------------------------------------------ 8835ec532a9SColin Riley // PluginInterface protocol 8845ec532a9SColin Riley //------------------------------------------------------------------ 8855ec532a9SColin Riley lldb_private::ConstString 8865ec532a9SColin Riley RenderScriptRuntime::GetPluginName() 8875ec532a9SColin Riley { 8885ec532a9SColin Riley return GetPluginNameStatic(); 8895ec532a9SColin Riley } 8905ec532a9SColin Riley 8915ec532a9SColin Riley uint32_t 8925ec532a9SColin Riley RenderScriptRuntime::GetPluginVersion() 8935ec532a9SColin Riley { 8945ec532a9SColin Riley return 1; 8955ec532a9SColin Riley } 8965ec532a9SColin Riley 8975ec532a9SColin Riley bool 8985ec532a9SColin Riley RenderScriptRuntime::IsVTableName(const char *name) 8995ec532a9SColin Riley { 9005ec532a9SColin Riley return false; 9015ec532a9SColin Riley } 9025ec532a9SColin Riley 9035ec532a9SColin Riley bool 9045ec532a9SColin Riley RenderScriptRuntime::GetDynamicTypeAndAddress(ValueObject &in_value, lldb::DynamicValueType use_dynamic, 9050b6003f3SEnrico Granata TypeAndOrName &class_type_or_name, Address &address, 9060b6003f3SEnrico Granata Value::ValueType &value_type) 9075ec532a9SColin Riley { 9085ec532a9SColin Riley return false; 9095ec532a9SColin Riley } 9105ec532a9SColin Riley 911c74275bcSEnrico Granata TypeAndOrName 912b3f7f69dSAidan Dodds RenderScriptRuntime::FixUpDynamicType(const TypeAndOrName &type_and_or_name, ValueObject &static_value) 913c74275bcSEnrico Granata { 914c74275bcSEnrico Granata return type_and_or_name; 915c74275bcSEnrico Granata } 916c74275bcSEnrico Granata 9175ec532a9SColin Riley bool 9185ec532a9SColin Riley RenderScriptRuntime::CouldHaveDynamicValue(ValueObject &in_value) 9195ec532a9SColin Riley { 9205ec532a9SColin Riley return false; 9215ec532a9SColin Riley } 9225ec532a9SColin Riley 9235ec532a9SColin Riley lldb::BreakpointResolverSP 9245ec532a9SColin Riley RenderScriptRuntime::CreateExceptionResolver(Breakpoint *bkpt, bool catch_bp, bool throw_bp) 9255ec532a9SColin Riley { 9265ec532a9SColin Riley BreakpointResolverSP resolver_sp; 9275ec532a9SColin Riley return resolver_sp; 9285ec532a9SColin Riley } 9295ec532a9SColin Riley 930b3f7f69dSAidan Dodds const RenderScriptRuntime::HookDefn RenderScriptRuntime::s_runtimeHookDefns[] = { 9314640cde1SColin Riley // rsdScript 93282780287SAidan Dodds { 933b3f7f69dSAidan Dodds "rsdScriptInit", 934b3f7f69dSAidan Dodds "_Z13rsdScriptInitPKN7android12renderscript7ContextEPNS0_7ScriptCEPKcS7_PKhjj", 935b3f7f69dSAidan Dodds "_Z13rsdScriptInitPKN7android12renderscript7ContextEPNS0_7ScriptCEPKcS7_PKhmj", 936b3f7f69dSAidan Dodds 0, 937b3f7f69dSAidan Dodds RenderScriptRuntime::eModuleKindDriver, 938b3f7f69dSAidan Dodds &lldb_private::RenderScriptRuntime::CaptureScriptInit 93982780287SAidan Dodds }, 94082780287SAidan Dodds { 941b3f7f69dSAidan Dodds "rsdScriptInvokeForEachMulti", 942b3f7f69dSAidan Dodds "_Z27rsdScriptInvokeForEachMultiPKN7android12renderscript7ContextEPNS0_6ScriptEjPPKNS0_10AllocationEjPS6_PKvjPK12RsScriptCall", 943b3f7f69dSAidan Dodds "_Z27rsdScriptInvokeForEachMultiPKN7android12renderscript7ContextEPNS0_6ScriptEjPPKNS0_10AllocationEmPS6_PKvmPK12RsScriptCall", 944b3f7f69dSAidan Dodds 0, 945b3f7f69dSAidan Dodds RenderScriptRuntime::eModuleKindDriver, 946b3f7f69dSAidan Dodds &lldb_private::RenderScriptRuntime::CaptureScriptInvokeForEachMulti 94782780287SAidan Dodds }, 94882780287SAidan Dodds { 949b3f7f69dSAidan Dodds "rsdScriptSetGlobalVar", 950b3f7f69dSAidan Dodds "_Z21rsdScriptSetGlobalVarPKN7android12renderscript7ContextEPKNS0_6ScriptEjPvj", 951b3f7f69dSAidan Dodds "_Z21rsdScriptSetGlobalVarPKN7android12renderscript7ContextEPKNS0_6ScriptEjPvm", 952b3f7f69dSAidan Dodds 0, 953b3f7f69dSAidan Dodds RenderScriptRuntime::eModuleKindDriver, 954b3f7f69dSAidan Dodds &lldb_private::RenderScriptRuntime::CaptureSetGlobalVar 95582780287SAidan Dodds }, 9564640cde1SColin Riley 9574640cde1SColin Riley // rsdAllocation 95882780287SAidan Dodds { 959b3f7f69dSAidan Dodds "rsdAllocationInit", 960b3f7f69dSAidan Dodds "_Z17rsdAllocationInitPKN7android12renderscript7ContextEPNS0_10AllocationEb", 961b3f7f69dSAidan Dodds "_Z17rsdAllocationInitPKN7android12renderscript7ContextEPNS0_10AllocationEb", 962b3f7f69dSAidan Dodds 0, 963b3f7f69dSAidan Dodds RenderScriptRuntime::eModuleKindDriver, 964b3f7f69dSAidan Dodds &lldb_private::RenderScriptRuntime::CaptureAllocationInit 96582780287SAidan Dodds }, 96682780287SAidan Dodds { 967b3f7f69dSAidan Dodds "rsdAllocationRead2D", 968b3f7f69dSAidan Dodds "_Z19rsdAllocationRead2DPKN7android12renderscript7ContextEPKNS0_10AllocationEjjj23RsAllocationCubemapFacejjPvjj", 969b3f7f69dSAidan Dodds "_Z19rsdAllocationRead2DPKN7android12renderscript7ContextEPKNS0_10AllocationEjjj23RsAllocationCubemapFacejjPvmm", 970b3f7f69dSAidan Dodds 0, 971b3f7f69dSAidan Dodds RenderScriptRuntime::eModuleKindDriver, 972b3f7f69dSAidan Dodds nullptr 97382780287SAidan Dodds }, 974e69df382SEwan Crawford { 975b3f7f69dSAidan Dodds "rsdAllocationDestroy", 976b3f7f69dSAidan Dodds "_Z20rsdAllocationDestroyPKN7android12renderscript7ContextEPNS0_10AllocationE", 977b3f7f69dSAidan Dodds "_Z20rsdAllocationDestroyPKN7android12renderscript7ContextEPNS0_10AllocationE", 978b3f7f69dSAidan Dodds 0, 979b3f7f69dSAidan Dodds RenderScriptRuntime::eModuleKindDriver, 980b3f7f69dSAidan Dodds &lldb_private::RenderScriptRuntime::CaptureAllocationDestroy 981e69df382SEwan Crawford }, 9824640cde1SColin Riley }; 9834640cde1SColin Riley 984222b937cSEugene Zelenko const size_t RenderScriptRuntime::s_runtimeHookCount = sizeof(s_runtimeHookDefns) / sizeof(s_runtimeHookDefns[0]); 9854640cde1SColin Riley 9864640cde1SColin Riley bool 987b3f7f69dSAidan Dodds RenderScriptRuntime::HookCallback(void *baton, StoppointCallbackContext *ctx, lldb::user_id_t break_id, 988b3f7f69dSAidan Dodds lldb::user_id_t break_loc_id) 9894640cde1SColin Riley { 9904640cde1SColin Riley RuntimeHook *hook_info = (RuntimeHook *)baton; 9914640cde1SColin Riley ExecutionContext context(ctx->exe_ctx_ref); 9924640cde1SColin Riley 993b3f7f69dSAidan Dodds RenderScriptRuntime *lang_rt = 994b3f7f69dSAidan Dodds (RenderScriptRuntime *)context.GetProcessPtr()->GetLanguageRuntime(eLanguageTypeExtRenderScript); 9954640cde1SColin Riley 9964640cde1SColin Riley lang_rt->HookCallback(hook_info, context); 9974640cde1SColin Riley 9984640cde1SColin Riley return false; 9994640cde1SColin Riley } 10004640cde1SColin Riley 10014640cde1SColin Riley void 10024640cde1SColin Riley RenderScriptRuntime::HookCallback(RuntimeHook *hook_info, ExecutionContext &context) 10034640cde1SColin Riley { 10044640cde1SColin Riley Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_LANGUAGE)); 10054640cde1SColin Riley 10064640cde1SColin Riley if (log) 1007b3f7f69dSAidan Dodds log->Printf("%s - '%s'", __FUNCTION__, hook_info->defn->name); 10084640cde1SColin Riley 10094640cde1SColin Riley if (hook_info->defn->grabber) 10104640cde1SColin Riley { 10114640cde1SColin Riley (this->*(hook_info->defn->grabber))(hook_info, context); 10124640cde1SColin Riley } 10134640cde1SColin Riley } 10144640cde1SColin Riley 10154640cde1SColin Riley void 1016e09c44b6SAidan Dodds RenderScriptRuntime::CaptureScriptInvokeForEachMulti(RuntimeHook* hook_info, 1017e09c44b6SAidan Dodds ExecutionContext& context) 1018e09c44b6SAidan Dodds { 1019e09c44b6SAidan Dodds Log* log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_LANGUAGE)); 1020e09c44b6SAidan Dodds 1021f4786785SAidan Dodds enum 1022e09c44b6SAidan Dodds { 1023f4786785SAidan Dodds eRsContext = 0, 1024f4786785SAidan Dodds eRsScript, 1025f4786785SAidan Dodds eRsSlot, 1026f4786785SAidan Dodds eRsAIns, 1027f4786785SAidan Dodds eRsInLen, 1028f4786785SAidan Dodds eRsAOut, 1029f4786785SAidan Dodds eRsUsr, 1030f4786785SAidan Dodds eRsUsrLen, 1031f4786785SAidan Dodds eRsSc, 1032f4786785SAidan Dodds }; 1033e09c44b6SAidan Dodds 10341ee07253SSaleem Abdulrasool std::array<ArgItem, 9> args{{ 1035f4786785SAidan Dodds ArgItem{ArgItem::ePointer, 0}, // const Context *rsc 1036f4786785SAidan Dodds ArgItem{ArgItem::ePointer, 0}, // Script *s 1037f4786785SAidan Dodds ArgItem{ArgItem::eInt32, 0}, // uint32_t slot 1038f4786785SAidan Dodds ArgItem{ArgItem::ePointer, 0}, // const Allocation **aIns 1039f4786785SAidan Dodds ArgItem{ArgItem::eInt32, 0}, // size_t inLen 1040f4786785SAidan Dodds ArgItem{ArgItem::ePointer, 0}, // Allocation *aout 1041f4786785SAidan Dodds ArgItem{ArgItem::ePointer, 0}, // const void *usr 1042f4786785SAidan Dodds ArgItem{ArgItem::eInt32, 0}, // size_t usrLen 1043f4786785SAidan Dodds ArgItem{ArgItem::ePointer, 0}, // const RsScriptCall *sc 10441ee07253SSaleem Abdulrasool }}; 1045e09c44b6SAidan Dodds 1046f4786785SAidan Dodds bool success = GetArgs(context, &args[0], args.size()); 1047e09c44b6SAidan Dodds if (!success) 1048e09c44b6SAidan Dodds { 1049e09c44b6SAidan Dodds if (log) 1050b3f7f69dSAidan Dodds log->Printf("%s - Error while reading the function parameters", __FUNCTION__); 1051e09c44b6SAidan Dodds return; 1052e09c44b6SAidan Dodds } 1053e09c44b6SAidan Dodds 1054e09c44b6SAidan Dodds const uint32_t target_ptr_size = m_process->GetAddressByteSize(); 1055e09c44b6SAidan Dodds Error error; 1056e09c44b6SAidan Dodds std::vector<uint64_t> allocs; 1057e09c44b6SAidan Dodds 1058e09c44b6SAidan Dodds // traverse allocation list 1059f4786785SAidan Dodds for (uint64_t i = 0; i < uint64_t(args[eRsInLen]); ++i) 1060e09c44b6SAidan Dodds { 1061e09c44b6SAidan Dodds // calculate offest to allocation pointer 1062f4786785SAidan Dodds const addr_t addr = addr_t(args[eRsAIns]) + i * target_ptr_size; 1063e09c44b6SAidan Dodds 1064e09c44b6SAidan Dodds // Note: due to little endian layout, reading 32bits or 64bits into res64 will 1065e09c44b6SAidan Dodds // give the correct results. 1066e09c44b6SAidan Dodds 1067e09c44b6SAidan Dodds uint64_t res64 = 0; 1068e09c44b6SAidan Dodds size_t read = m_process->ReadMemory(addr, &res64, target_ptr_size, error); 1069e09c44b6SAidan Dodds if (read != target_ptr_size || !error.Success()) 1070e09c44b6SAidan Dodds { 1071e09c44b6SAidan Dodds if (log) 1072f4786785SAidan Dodds log->Printf("%s - Error while reading allocation list argument %" PRIu64, __FUNCTION__, i); 1073e09c44b6SAidan Dodds } 1074e09c44b6SAidan Dodds else 1075e09c44b6SAidan Dodds { 1076e09c44b6SAidan Dodds allocs.push_back(res64); 1077e09c44b6SAidan Dodds } 1078e09c44b6SAidan Dodds } 1079e09c44b6SAidan Dodds 1080e09c44b6SAidan Dodds // if there is an output allocation track it 1081f4786785SAidan Dodds if (uint64_t aOut = uint64_t(args[eRsAOut])) 1082e09c44b6SAidan Dodds { 1083f4786785SAidan Dodds allocs.push_back(aOut); 1084e09c44b6SAidan Dodds } 1085e09c44b6SAidan Dodds 1086e09c44b6SAidan Dodds // for all allocations we have found 1087e09c44b6SAidan Dodds for (const uint64_t alloc_addr : allocs) 1088e09c44b6SAidan Dodds { 1089e09c44b6SAidan Dodds AllocationDetails* alloc = LookUpAllocation(alloc_addr, true); 1090e09c44b6SAidan Dodds if (alloc) 1091e09c44b6SAidan Dodds { 1092e09c44b6SAidan Dodds // save the allocation address 1093e09c44b6SAidan Dodds if (alloc->address.isValid()) 1094e09c44b6SAidan Dodds { 1095e09c44b6SAidan Dodds // check the allocation address we already have matches 1096e09c44b6SAidan Dodds assert(*alloc->address.get() == alloc_addr); 1097e09c44b6SAidan Dodds } 1098e09c44b6SAidan Dodds else 1099e09c44b6SAidan Dodds { 1100e09c44b6SAidan Dodds alloc->address = alloc_addr; 1101e09c44b6SAidan Dodds } 1102e09c44b6SAidan Dodds 1103e09c44b6SAidan Dodds // save the context 1104e09c44b6SAidan Dodds if (log) 1105e09c44b6SAidan Dodds { 1106f4786785SAidan Dodds if (alloc->context.isValid() && *alloc->context.get() != addr_t(args[eRsContext])) 1107b3f7f69dSAidan Dodds log->Printf("%s - Allocation used by multiple contexts", __FUNCTION__); 1108e09c44b6SAidan Dodds } 1109f4786785SAidan Dodds alloc->context = addr_t(args[eRsContext]); 1110e09c44b6SAidan Dodds } 1111e09c44b6SAidan Dodds } 1112e09c44b6SAidan Dodds 1113e09c44b6SAidan Dodds // make sure we track this script object 1114f4786785SAidan Dodds if (lldb_private::RenderScriptRuntime::ScriptDetails *script = LookUpScript(addr_t(args[eRsScript]), true)) 1115e09c44b6SAidan Dodds { 1116e09c44b6SAidan Dodds if (log) 1117e09c44b6SAidan Dodds { 1118f4786785SAidan Dodds if (script->context.isValid() && *script->context.get() != addr_t(args[eRsContext])) 1119b3f7f69dSAidan Dodds log->Printf("%s - Script used by multiple contexts", __FUNCTION__); 1120e09c44b6SAidan Dodds } 1121f4786785SAidan Dodds script->context = addr_t(args[eRsContext]); 1122e09c44b6SAidan Dodds } 1123e09c44b6SAidan Dodds } 1124e09c44b6SAidan Dodds 1125e09c44b6SAidan Dodds void 1126b3f7f69dSAidan Dodds RenderScriptRuntime::CaptureSetGlobalVar(RuntimeHook *hook_info, ExecutionContext &context) 11274640cde1SColin Riley { 11284640cde1SColin Riley Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_LANGUAGE)); 11294640cde1SColin Riley 1130f4786785SAidan Dodds enum 1131f4786785SAidan Dodds { 1132f4786785SAidan Dodds eRsContext, 1133f4786785SAidan Dodds eRsScript, 1134f4786785SAidan Dodds eRsId, 1135f4786785SAidan Dodds eRsData, 1136f4786785SAidan Dodds eRsLength, 1137f4786785SAidan Dodds }; 11384640cde1SColin Riley 11391ee07253SSaleem Abdulrasool std::array<ArgItem, 5> args{{ 1140f4786785SAidan Dodds ArgItem{ArgItem::ePointer, 0}, // eRsContext 1141f4786785SAidan Dodds ArgItem{ArgItem::ePointer, 0}, // eRsScript 1142f4786785SAidan Dodds ArgItem{ArgItem::eInt32, 0}, // eRsId 1143f4786785SAidan Dodds ArgItem{ArgItem::ePointer, 0}, // eRsData 1144f4786785SAidan Dodds ArgItem{ArgItem::eInt32, 0}, // eRsLength 11451ee07253SSaleem Abdulrasool }}; 11464640cde1SColin Riley 1147f4786785SAidan Dodds bool success = GetArgs(context, &args[0], args.size()); 114882780287SAidan Dodds if (!success) 114982780287SAidan Dodds { 115082780287SAidan Dodds if (log) 1151b3f7f69dSAidan Dodds log->Printf("%s - error reading the function parameters.", __FUNCTION__); 115282780287SAidan Dodds return; 115382780287SAidan Dodds } 11544640cde1SColin Riley 11554640cde1SColin Riley if (log) 11564640cde1SColin Riley { 1157f4786785SAidan Dodds log->Printf("%s - 0x%" PRIx64 ",0x%" PRIx64 " slot %" PRIu64 " = 0x%" PRIx64 ":%" PRIu64 "bytes.", __FUNCTION__, 1158f4786785SAidan Dodds uint64_t(args[eRsContext]), uint64_t(args[eRsScript]), uint64_t(args[eRsId]), 1159f4786785SAidan Dodds uint64_t(args[eRsData]), uint64_t(args[eRsLength])); 11604640cde1SColin Riley 1161f4786785SAidan Dodds addr_t script_addr = addr_t(args[eRsScript]); 11624640cde1SColin Riley if (m_scriptMappings.find(script_addr) != m_scriptMappings.end()) 11634640cde1SColin Riley { 11644640cde1SColin Riley auto rsm = m_scriptMappings[script_addr]; 1165f4786785SAidan Dodds if (uint64_t(args[eRsId]) < rsm->m_globals.size()) 11664640cde1SColin Riley { 1167f4786785SAidan Dodds auto rsg = rsm->m_globals[uint64_t(args[eRsId])]; 1168f4786785SAidan Dodds log->Printf("%s - Setting of '%s' within '%s' inferred", __FUNCTION__, rsg.m_name.AsCString(), 1169f4786785SAidan Dodds rsm->m_module->GetFileSpec().GetFilename().AsCString()); 11704640cde1SColin Riley } 11714640cde1SColin Riley } 11724640cde1SColin Riley } 11734640cde1SColin Riley } 11744640cde1SColin Riley 11754640cde1SColin Riley void 1176b3f7f69dSAidan Dodds RenderScriptRuntime::CaptureAllocationInit(RuntimeHook *hook_info, ExecutionContext &context) 11774640cde1SColin Riley { 11784640cde1SColin Riley Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_LANGUAGE)); 11794640cde1SColin Riley 1180f4786785SAidan Dodds enum 1181f4786785SAidan Dodds { 1182f4786785SAidan Dodds eRsContext, 1183f4786785SAidan Dodds eRsAlloc, 1184f4786785SAidan Dodds eRsForceZero 1185f4786785SAidan Dodds }; 11864640cde1SColin Riley 11871ee07253SSaleem Abdulrasool std::array<ArgItem, 3> args{{ 1188f4786785SAidan Dodds ArgItem{ArgItem::ePointer, 0}, // eRsContext 1189f4786785SAidan Dodds ArgItem{ArgItem::ePointer, 0}, // eRsAlloc 1190f4786785SAidan Dodds ArgItem{ArgItem::eBool, 0}, // eRsForceZero 11911ee07253SSaleem Abdulrasool }}; 11924640cde1SColin Riley 1193f4786785SAidan Dodds bool success = GetArgs(context, &args[0], args.size()); 119482780287SAidan Dodds if (!success) // error case 119582780287SAidan Dodds { 119682780287SAidan Dodds if (log) 1197b3f7f69dSAidan Dodds log->Printf("%s - error while reading the function parameters", __FUNCTION__); 119882780287SAidan Dodds return; // abort 119982780287SAidan Dodds } 12004640cde1SColin Riley 12014640cde1SColin Riley if (log) 1202f4786785SAidan Dodds log->Printf("%s - 0x%" PRIx64 ",0x%" PRIx64 ",0x%" PRIx64 " .", __FUNCTION__, uint64_t(args[eRsContext]), 1203f4786785SAidan Dodds uint64_t(args[eRsAlloc]), uint64_t(args[eRsForceZero])); 120478f339d1SEwan Crawford 1205f4786785SAidan Dodds AllocationDetails *alloc = LookUpAllocation(uint64_t(args[eRsAlloc]), true); 120678f339d1SEwan Crawford if (alloc) 1207f4786785SAidan Dodds alloc->context = uint64_t(args[eRsContext]); 12084640cde1SColin Riley } 12094640cde1SColin Riley 12104640cde1SColin Riley void 1211e69df382SEwan Crawford RenderScriptRuntime::CaptureAllocationDestroy(RuntimeHook *hook_info, ExecutionContext &context) 1212e69df382SEwan Crawford { 1213e69df382SEwan Crawford Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_LANGUAGE)); 1214e69df382SEwan Crawford 1215f4786785SAidan Dodds enum 1216f4786785SAidan Dodds { 1217f4786785SAidan Dodds eRsContext, 1218f4786785SAidan Dodds eRsAlloc, 1219f4786785SAidan Dodds }; 1220e69df382SEwan Crawford 12211ee07253SSaleem Abdulrasool std::array<ArgItem, 2> args{{ 1222f4786785SAidan Dodds ArgItem{ArgItem::ePointer, 0}, // eRsContext 1223f4786785SAidan Dodds ArgItem{ArgItem::ePointer, 0}, // eRsAlloc 12241ee07253SSaleem Abdulrasool }}; 1225f4786785SAidan Dodds 1226f4786785SAidan Dodds bool success = GetArgs(context, &args[0], args.size()); 1227b3f7f69dSAidan Dodds if (!success) 1228e69df382SEwan Crawford { 1229e69df382SEwan Crawford if (log) 1230b3f7f69dSAidan Dodds log->Printf("%s - error while reading the function parameters.", __FUNCTION__); 1231b3f7f69dSAidan Dodds return; 1232e69df382SEwan Crawford } 1233e69df382SEwan Crawford 1234e69df382SEwan Crawford if (log) 1235f4786785SAidan Dodds log->Printf("%s - 0x%" PRIx64 ", 0x%" PRIx64 ".", __FUNCTION__, uint64_t(args[eRsContext]), 1236f4786785SAidan Dodds uint64_t(args[eRsAlloc])); 1237e69df382SEwan Crawford 1238e69df382SEwan Crawford for (auto iter = m_allocations.begin(); iter != m_allocations.end(); ++iter) 1239e69df382SEwan Crawford { 1240e69df382SEwan Crawford auto &allocation_ap = *iter; // get the unique pointer 1241f4786785SAidan Dodds if (allocation_ap->address.isValid() && *allocation_ap->address.get() == addr_t(args[eRsAlloc])) 1242e69df382SEwan Crawford { 1243e69df382SEwan Crawford m_allocations.erase(iter); 1244e69df382SEwan Crawford if (log) 1245b3f7f69dSAidan Dodds log->Printf("%s - deleted allocation entry.", __FUNCTION__); 1246e69df382SEwan Crawford return; 1247e69df382SEwan Crawford } 1248e69df382SEwan Crawford } 1249e69df382SEwan Crawford 1250e69df382SEwan Crawford if (log) 1251b3f7f69dSAidan Dodds log->Printf("%s - couldn't find destroyed allocation.", __FUNCTION__); 1252e69df382SEwan Crawford } 1253e69df382SEwan Crawford 1254e69df382SEwan Crawford void 1255b3f7f69dSAidan Dodds RenderScriptRuntime::CaptureScriptInit(RuntimeHook *hook_info, ExecutionContext &context) 12564640cde1SColin Riley { 12574640cde1SColin Riley Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_LANGUAGE)); 12584640cde1SColin Riley 12594640cde1SColin Riley Error error; 12604640cde1SColin Riley Process *process = context.GetProcessPtr(); 12614640cde1SColin Riley 1262f4786785SAidan Dodds enum 1263f4786785SAidan Dodds { 1264f4786785SAidan Dodds eRsContext, 1265f4786785SAidan Dodds eRsScript, 1266f4786785SAidan Dodds eRsResNamePtr, 1267f4786785SAidan Dodds eRsCachedDirPtr 1268f4786785SAidan Dodds }; 12694640cde1SColin Riley 12701ee07253SSaleem Abdulrasool std::array<ArgItem, 4> args{{ArgItem{ArgItem::ePointer, 0}, ArgItem{ArgItem::ePointer, 0}, 12711ee07253SSaleem Abdulrasool ArgItem{ArgItem::ePointer, 0}, ArgItem{ArgItem::ePointer, 0}}}; 1272f4786785SAidan Dodds bool success = GetArgs(context, &args[0], args.size()); 127382780287SAidan Dodds if (!success) 127482780287SAidan Dodds { 127582780287SAidan Dodds if (log) 1276b3f7f69dSAidan Dodds log->Printf("%s - error while reading the function parameters.", __FUNCTION__); 127782780287SAidan Dodds return; 127882780287SAidan Dodds } 127982780287SAidan Dodds 1280f4786785SAidan Dodds std::string resname; 1281f4786785SAidan Dodds process->ReadCStringFromMemory(addr_t(args[eRsResNamePtr]), resname, error); 12824640cde1SColin Riley if (error.Fail()) 12834640cde1SColin Riley { 12844640cde1SColin Riley if (log) 1285b3f7f69dSAidan Dodds log->Printf("%s - error reading resname: %s.", __FUNCTION__, error.AsCString()); 12864640cde1SColin Riley } 12874640cde1SColin Riley 1288f4786785SAidan Dodds std::string cachedir; 1289f4786785SAidan Dodds process->ReadCStringFromMemory(addr_t(args[eRsCachedDirPtr]), cachedir, error); 12904640cde1SColin Riley if (error.Fail()) 12914640cde1SColin Riley { 12924640cde1SColin Riley if (log) 1293b3f7f69dSAidan Dodds log->Printf("%s - error reading cachedir: %s.", __FUNCTION__, error.AsCString()); 12944640cde1SColin Riley } 12954640cde1SColin Riley 12964640cde1SColin Riley if (log) 1297f4786785SAidan Dodds log->Printf("%s - 0x%" PRIx64 ",0x%" PRIx64 " => '%s' at '%s' .", __FUNCTION__, uint64_t(args[eRsContext]), 1298f4786785SAidan Dodds uint64_t(args[eRsScript]), resname.c_str(), cachedir.c_str()); 12994640cde1SColin Riley 13004640cde1SColin Riley if (resname.size() > 0) 13014640cde1SColin Riley { 13024640cde1SColin Riley StreamString strm; 13034640cde1SColin Riley strm.Printf("librs.%s.so", resname.c_str()); 13044640cde1SColin Riley 1305f4786785SAidan Dodds ScriptDetails *script = LookUpScript(addr_t(args[eRsScript]), true); 130678f339d1SEwan Crawford if (script) 130778f339d1SEwan Crawford { 130878f339d1SEwan Crawford script->type = ScriptDetails::eScriptC; 130978f339d1SEwan Crawford script->cacheDir = cachedir; 131078f339d1SEwan Crawford script->resName = resname; 131178f339d1SEwan Crawford script->scriptDyLib = strm.GetData(); 1312f4786785SAidan Dodds script->context = addr_t(args[eRsContext]); 131378f339d1SEwan Crawford } 13144640cde1SColin Riley 13154640cde1SColin Riley if (log) 1316f4786785SAidan Dodds log->Printf("%s - '%s' tagged with context 0x%" PRIx64 " and script 0x%" PRIx64 ".", __FUNCTION__, 1317f4786785SAidan Dodds strm.GetData(), uint64_t(args[eRsContext]), uint64_t(args[eRsScript])); 13184640cde1SColin Riley } 13194640cde1SColin Riley else if (log) 13204640cde1SColin Riley { 1321b3f7f69dSAidan Dodds log->Printf("%s - resource name invalid, Script not tagged.", __FUNCTION__); 13224640cde1SColin Riley } 13234640cde1SColin Riley } 13244640cde1SColin Riley 13254640cde1SColin Riley void 13264640cde1SColin Riley RenderScriptRuntime::LoadRuntimeHooks(lldb::ModuleSP module, ModuleKind kind) 13274640cde1SColin Riley { 13284640cde1SColin Riley Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_LANGUAGE)); 13294640cde1SColin Riley 13304640cde1SColin Riley if (!module) 13314640cde1SColin Riley { 13324640cde1SColin Riley return; 13334640cde1SColin Riley } 13344640cde1SColin Riley 133582780287SAidan Dodds Target &target = GetProcess()->GetTarget(); 133682780287SAidan Dodds llvm::Triple::ArchType targetArchType = target.GetArchitecture().GetMachine(); 133782780287SAidan Dodds 1338b3f7f69dSAidan Dodds if (targetArchType != llvm::Triple::ArchType::x86 && 1339b3f7f69dSAidan Dodds targetArchType != llvm::Triple::ArchType::arm && 1340b3f7f69dSAidan Dodds targetArchType != llvm::Triple::ArchType::aarch64 && 1341b3f7f69dSAidan Dodds targetArchType != llvm::Triple::ArchType::mipsel && 1342b3f7f69dSAidan Dodds targetArchType != llvm::Triple::ArchType::mips64el && 1343b3f7f69dSAidan Dodds targetArchType != llvm::Triple::ArchType::x86_64) 13444640cde1SColin Riley { 13454640cde1SColin Riley if (log) 1346b3f7f69dSAidan Dodds log->Printf("%s - unable to hook runtime functions.", __FUNCTION__); 13474640cde1SColin Riley return; 13484640cde1SColin Riley } 13494640cde1SColin Riley 135082780287SAidan Dodds uint32_t archByteSize = target.GetArchitecture().GetAddressByteSize(); 13514640cde1SColin Riley 13524640cde1SColin Riley for (size_t idx = 0; idx < s_runtimeHookCount; idx++) 13534640cde1SColin Riley { 13544640cde1SColin Riley const HookDefn *hook_defn = &s_runtimeHookDefns[idx]; 1355b3f7f69dSAidan Dodds if (hook_defn->kind != kind) 1356b3f7f69dSAidan Dodds { 13574640cde1SColin Riley continue; 13584640cde1SColin Riley } 13594640cde1SColin Riley 136082780287SAidan Dodds const char *symbol_name = (archByteSize == 4) ? hook_defn->symbol_name_m32 : hook_defn->symbol_name_m64; 136182780287SAidan Dodds 136282780287SAidan Dodds const Symbol *sym = module->FindFirstSymbolWithNameAndType(ConstString(symbol_name), eSymbolTypeCode); 1363b3f7f69dSAidan Dodds if (!sym) 1364b3f7f69dSAidan Dodds { 1365b3f7f69dSAidan Dodds if (log) 1366b3f7f69dSAidan Dodds { 1367b3f7f69dSAidan Dodds log->Printf("%s - symbol '%s' related to the function %s not found", 1368b3f7f69dSAidan Dodds __FUNCTION__, symbol_name, hook_defn->name); 136982780287SAidan Dodds } 137082780287SAidan Dodds continue; 137182780287SAidan Dodds } 13724640cde1SColin Riley 1373358cf1eaSGreg Clayton addr_t addr = sym->GetLoadAddress(&target); 13744640cde1SColin Riley if (addr == LLDB_INVALID_ADDRESS) 13754640cde1SColin Riley { 13764640cde1SColin Riley if (log) 1377b3f7f69dSAidan Dodds log->Printf("%s - unable to resolve the address of hook function '%s' with symbol '%s'.", 1378b3f7f69dSAidan Dodds __FUNCTION__, hook_defn->name, symbol_name); 13794640cde1SColin Riley continue; 13804640cde1SColin Riley } 138182780287SAidan Dodds else 138282780287SAidan Dodds { 138382780287SAidan Dodds if (log) 1384b3f7f69dSAidan Dodds log->Printf("%s - function %s, address resolved at 0x%" PRIx64, 1385b3f7f69dSAidan Dodds __FUNCTION__, hook_defn->name, addr); 138682780287SAidan Dodds } 13874640cde1SColin Riley 13884640cde1SColin Riley RuntimeHookSP hook(new RuntimeHook()); 13894640cde1SColin Riley hook->address = addr; 13904640cde1SColin Riley hook->defn = hook_defn; 13914640cde1SColin Riley hook->bp_sp = target.CreateBreakpoint(addr, true, false); 13924640cde1SColin Riley hook->bp_sp->SetCallback(HookCallback, hook.get(), true); 13934640cde1SColin Riley m_runtimeHooks[addr] = hook; 13944640cde1SColin Riley if (log) 13954640cde1SColin Riley { 1396b3f7f69dSAidan Dodds log->Printf("%s - successfully hooked '%s' in '%s' version %" PRIu64 " at 0x%" PRIx64 ".", 1397b3f7f69dSAidan Dodds __FUNCTION__, hook_defn->name, module->GetFileSpec().GetFilename().AsCString(), 1398b3f7f69dSAidan Dodds (uint64_t)hook_defn->version, (uint64_t)addr); 13994640cde1SColin Riley } 14004640cde1SColin Riley } 14014640cde1SColin Riley } 14024640cde1SColin Riley 14034640cde1SColin Riley void 14044640cde1SColin Riley RenderScriptRuntime::FixupScriptDetails(RSModuleDescriptorSP rsmodule_sp) 14054640cde1SColin Riley { 14064640cde1SColin Riley if (!rsmodule_sp) 14074640cde1SColin Riley return; 14084640cde1SColin Riley 14094640cde1SColin Riley Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_LANGUAGE)); 14104640cde1SColin Riley 14114640cde1SColin Riley const ModuleSP module = rsmodule_sp->m_module; 14124640cde1SColin Riley const FileSpec &file = module->GetPlatformFileSpec(); 14134640cde1SColin Riley 141478f339d1SEwan Crawford // Iterate over all of the scripts that we currently know of. 141578f339d1SEwan Crawford // Note: We cant push or pop to m_scripts here or it may invalidate rs_script. 14164640cde1SColin Riley for (const auto &rs_script : m_scripts) 14174640cde1SColin Riley { 141878f339d1SEwan Crawford // Extract the expected .so file path for this script. 141978f339d1SEwan Crawford std::string dylib; 142078f339d1SEwan Crawford if (!rs_script->scriptDyLib.get(dylib)) 142178f339d1SEwan Crawford continue; 142278f339d1SEwan Crawford 142378f339d1SEwan Crawford // Only proceed if the module that has loaded corresponds to this script. 142478f339d1SEwan Crawford if (file.GetFilename() != ConstString(dylib.c_str())) 142578f339d1SEwan Crawford continue; 142678f339d1SEwan Crawford 142778f339d1SEwan Crawford // Obtain the script address which we use as a key. 142878f339d1SEwan Crawford lldb::addr_t script; 142978f339d1SEwan Crawford if (!rs_script->script.get(script)) 143078f339d1SEwan Crawford continue; 143178f339d1SEwan Crawford 143278f339d1SEwan Crawford // If we have a script mapping for the current script. 143378f339d1SEwan Crawford if (m_scriptMappings.find(script) != m_scriptMappings.end()) 14344640cde1SColin Riley { 143578f339d1SEwan Crawford // if the module we have stored is different to the one we just received. 143678f339d1SEwan Crawford if (m_scriptMappings[script] != rsmodule_sp) 14374640cde1SColin Riley { 14384640cde1SColin Riley if (log) 1439b3f7f69dSAidan Dodds log->Printf("%s - script %" PRIx64 " wants reassigned to new rsmodule '%s'.", __FUNCTION__, 144078f339d1SEwan Crawford (uint64_t)script, rsmodule_sp->m_module->GetFileSpec().GetFilename().AsCString()); 14414640cde1SColin Riley } 14424640cde1SColin Riley } 144378f339d1SEwan Crawford // We don't have a script mapping for the current script. 14444640cde1SColin Riley else 14454640cde1SColin Riley { 144678f339d1SEwan Crawford // Obtain the script resource name. 144778f339d1SEwan Crawford std::string resName; 144878f339d1SEwan Crawford if (rs_script->resName.get(resName)) 144978f339d1SEwan Crawford // Set the modules resource name. 145078f339d1SEwan Crawford rsmodule_sp->m_resname = resName; 145178f339d1SEwan Crawford // Add Script/Module pair to map. 145278f339d1SEwan Crawford m_scriptMappings[script] = rsmodule_sp; 14534640cde1SColin Riley if (log) 1454b3f7f69dSAidan Dodds log->Printf("%s - script %" PRIx64 " associated with rsmodule '%s'.", __FUNCTION__, 145578f339d1SEwan Crawford (uint64_t)script, rsmodule_sp->m_module->GetFileSpec().GetFilename().AsCString()); 14564640cde1SColin Riley } 14574640cde1SColin Riley } 14584640cde1SColin Riley } 14594640cde1SColin Riley 146015f2bd95SEwan Crawford // Uses the Target API to evaluate the expression passed as a parameter to the function 146115f2bd95SEwan Crawford // The result of that expression is returned an unsigned 64 bit int, via the result* paramter. 146215f2bd95SEwan Crawford // Function returns true on success, and false on failure 146315f2bd95SEwan Crawford bool 146415f2bd95SEwan Crawford RenderScriptRuntime::EvalRSExpression(const char *expression, StackFrame *frame_ptr, uint64_t *result) 146515f2bd95SEwan Crawford { 146615f2bd95SEwan Crawford Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_LANGUAGE)); 146715f2bd95SEwan Crawford if (log) 1468b3f7f69dSAidan Dodds log->Printf("%s(%s)", __FUNCTION__, expression); 146915f2bd95SEwan Crawford 147015f2bd95SEwan Crawford ValueObjectSP expr_result; 14718433fdbeSAidan Dodds EvaluateExpressionOptions options; 14728433fdbeSAidan Dodds options.SetLanguage(lldb::eLanguageTypeC_plus_plus); 147315f2bd95SEwan Crawford // Perform the actual expression evaluation 14748433fdbeSAidan Dodds GetProcess()->GetTarget().EvaluateExpression(expression, frame_ptr, expr_result, options); 147515f2bd95SEwan Crawford 147615f2bd95SEwan Crawford if (!expr_result) 147715f2bd95SEwan Crawford { 147815f2bd95SEwan Crawford if (log) 1479b3f7f69dSAidan Dodds log->Printf("%s: couldn't evaluate expression.", __FUNCTION__); 148015f2bd95SEwan Crawford return false; 148115f2bd95SEwan Crawford } 148215f2bd95SEwan Crawford 148315f2bd95SEwan Crawford // The result of the expression is invalid 148415f2bd95SEwan Crawford if (!expr_result->GetError().Success()) 148515f2bd95SEwan Crawford { 148615f2bd95SEwan Crawford Error err = expr_result->GetError(); 148715f2bd95SEwan Crawford if (err.GetError() == UserExpression::kNoResult) // Expression returned void, so this is actually a success 148815f2bd95SEwan Crawford { 148915f2bd95SEwan Crawford if (log) 1490b3f7f69dSAidan Dodds log->Printf("%s - expression returned void.", __FUNCTION__); 149115f2bd95SEwan Crawford 149215f2bd95SEwan Crawford result = nullptr; 149315f2bd95SEwan Crawford return true; 149415f2bd95SEwan Crawford } 149515f2bd95SEwan Crawford 149615f2bd95SEwan Crawford if (log) 1497b3f7f69dSAidan Dodds log->Printf("%s - error evaluating expression result: %s", __FUNCTION__, 1498b3f7f69dSAidan Dodds err.AsCString()); 149915f2bd95SEwan Crawford return false; 150015f2bd95SEwan Crawford } 150115f2bd95SEwan Crawford 150215f2bd95SEwan Crawford bool success = false; 1503b3f7f69dSAidan Dodds *result = expr_result->GetValueAsUnsigned(0, &success); // We only read the result as an uint32_t. 150415f2bd95SEwan Crawford 150515f2bd95SEwan Crawford if (!success) 150615f2bd95SEwan Crawford { 150715f2bd95SEwan Crawford if (log) 1508b3f7f69dSAidan Dodds log->Printf("%s - couldn't convert expression result to uint32_t", __FUNCTION__); 150915f2bd95SEwan Crawford return false; 151015f2bd95SEwan Crawford } 151115f2bd95SEwan Crawford 151215f2bd95SEwan Crawford return true; 151315f2bd95SEwan Crawford } 151415f2bd95SEwan Crawford 1515ea0636b5SEwan Crawford namespace 1516ea0636b5SEwan Crawford { 1517836d9651SEwan Crawford // Used to index expression format strings 1518836d9651SEwan Crawford enum ExpressionStrings 151915f2bd95SEwan Crawford { 1520836d9651SEwan Crawford eExprGetOffsetPtr = 0, 1521836d9651SEwan Crawford eExprAllocGetType, 1522836d9651SEwan Crawford eExprTypeDimX, 1523836d9651SEwan Crawford eExprTypeDimY, 1524836d9651SEwan Crawford eExprTypeDimZ, 1525836d9651SEwan Crawford eExprTypeElemPtr, 1526836d9651SEwan Crawford eExprElementType, 1527836d9651SEwan Crawford eExprElementKind, 1528836d9651SEwan Crawford eExprElementVec, 1529836d9651SEwan Crawford eExprElementFieldCount, 1530836d9651SEwan Crawford eExprSubelementsId, 1531836d9651SEwan Crawford eExprSubelementsName, 1532ea0636b5SEwan Crawford eExprSubelementsArrSize, 1533ea0636b5SEwan Crawford 1534ea0636b5SEwan Crawford _eExprLast // keep at the end, implicit size of the array runtimeExpressions 1535836d9651SEwan Crawford }; 153615f2bd95SEwan Crawford 1537ea0636b5SEwan Crawford // max length of an expanded expression 1538ea0636b5SEwan Crawford const int jit_max_expr_size = 512; 1539ea0636b5SEwan Crawford 1540ea0636b5SEwan Crawford // Retrieve the string to JIT for the given expression 1541ea0636b5SEwan Crawford const char* 1542ea0636b5SEwan Crawford JITTemplate(ExpressionStrings e) 154315f2bd95SEwan Crawford { 1544ea0636b5SEwan Crawford // Format strings containing the expressions we may need to evaluate. 1545ea0636b5SEwan Crawford static std::array<const char*, _eExprLast> runtimeExpressions = {{ 154615f2bd95SEwan Crawford // Mangled GetOffsetPointer(Allocation*, xoff, yoff, zoff, lod, cubemap) 1547577570b4SAidan Dodds "(int*)_Z12GetOffsetPtrPKN7android12renderscript10AllocationEjjjj23RsAllocationCubemapFace" 1548577570b4SAidan Dodds "(0x%" PRIx64 ", %" PRIu32 ", %" PRIu32 ", %" PRIu32 ", 0, 0)", 154915f2bd95SEwan Crawford 155015f2bd95SEwan Crawford // Type* rsaAllocationGetType(Context*, Allocation*) 1551577570b4SAidan Dodds "(void*)rsaAllocationGetType(0x%" PRIx64 ", 0x%" PRIx64 ")", 155215f2bd95SEwan Crawford 155315f2bd95SEwan Crawford // rsaTypeGetNativeData(Context*, Type*, void* typeData, size) 155415f2bd95SEwan Crawford // Pack the data in the following way mHal.state.dimX; mHal.state.dimY; mHal.state.dimZ; 155515f2bd95SEwan Crawford // mHal.state.lodCount; mHal.state.faces; mElement; into typeData 155615f2bd95SEwan Crawford // Need to specify 32 or 64 bit for uint_t since this differs between devices 1557577570b4SAidan Dodds "uint%" PRIu32 "_t data[6]; (void*)rsaTypeGetNativeData(0x%" PRIx64 ", 0x%" PRIx64 ", data, 6); data[0]", // X dim 1558577570b4SAidan Dodds "uint%" PRIu32 "_t data[6]; (void*)rsaTypeGetNativeData(0x%" PRIx64 ", 0x%" PRIx64 ", data, 6); data[1]", // Y dim 1559577570b4SAidan Dodds "uint%" PRIu32 "_t data[6]; (void*)rsaTypeGetNativeData(0x%" PRIx64 ", 0x%" PRIx64 ", data, 6); data[2]", // Z dim 1560577570b4SAidan Dodds "uint%" PRIu32 "_t data[6]; (void*)rsaTypeGetNativeData(0x%" PRIx64 ", 0x%" PRIx64 ", data, 6); data[5]", // Element ptr 156115f2bd95SEwan Crawford 156215f2bd95SEwan Crawford // rsaElementGetNativeData(Context*, Element*, uint32_t* elemData,size) 156315f2bd95SEwan Crawford // Pack mType; mKind; mNormalized; mVectorSize; NumSubElements into elemData 1564577570b4SAidan Dodds "uint32_t data[5]; (void*)rsaElementGetNativeData(0x%" PRIx64 ", 0x%" PRIx64 ", data, 5); data[0]", // Type 1565577570b4SAidan Dodds "uint32_t data[5]; (void*)rsaElementGetNativeData(0x%" PRIx64 ", 0x%" PRIx64 ", data, 5); data[1]", // Kind 1566577570b4SAidan Dodds "uint32_t data[5]; (void*)rsaElementGetNativeData(0x%" PRIx64 ", 0x%" PRIx64 ", data, 5); data[3]", // Vector Size 1567577570b4SAidan Dodds "uint32_t data[5]; (void*)rsaElementGetNativeData(0x%" PRIx64 ", 0x%" PRIx64 ", data, 5); data[4]", // Field Count 15688b244e21SEwan Crawford 15698b244e21SEwan Crawford // rsaElementGetSubElements(RsContext con, RsElement elem, uintptr_t *ids, const char **names, 15708b244e21SEwan Crawford // size_t *arraySizes, uint32_t dataSize) 15718b244e21SEwan Crawford // Needed for Allocations of structs to gather details about fields/Subelements 1572577570b4SAidan Dodds // Element* of field 1573577570b4SAidan Dodds "void* ids[%" PRIu32 "]; const char* names[%" PRIu32 "]; size_t arr_size[%" PRIu32 "];" 1574577570b4SAidan Dodds "(void*)rsaElementGetSubElements(0x%" PRIx64 ", 0x%" PRIx64 ", ids, names, arr_size, %" PRIu32 "); ids[%" PRIu32 "]", 15758b244e21SEwan Crawford 1576577570b4SAidan Dodds // Name of field 1577577570b4SAidan Dodds "void* ids[%" PRIu32 "]; const char* names[%" PRIu32 "]; size_t arr_size[%" PRIu32 "];" 1578577570b4SAidan Dodds "(void*)rsaElementGetSubElements(0x%" PRIx64 ", 0x%" PRIx64 ", ids, names, arr_size, %" PRIu32 "); names[%" PRIu32 "]", 15798b244e21SEwan Crawford 1580577570b4SAidan Dodds // Array size of field 1581577570b4SAidan Dodds "void* ids[%" PRIu32 "]; const char* names[%" PRIu32 "]; size_t arr_size[%" PRIu32 "];" 1582577570b4SAidan Dodds "(void*)rsaElementGetSubElements(0x%" PRIx64 ", 0x%" PRIx64 ", ids, names, arr_size, %" PRIu32 "); arr_size[%" PRIu32 "]" 1583ea0636b5SEwan Crawford }}; 1584ea0636b5SEwan Crawford 1585ea0636b5SEwan Crawford return runtimeExpressions[e]; 1586ea0636b5SEwan Crawford } 1587ea0636b5SEwan Crawford } // end of the anonymous namespace 1588ea0636b5SEwan Crawford 158915f2bd95SEwan Crawford 159015f2bd95SEwan Crawford // JITs the RS runtime for the internal data pointer of an allocation. 159115f2bd95SEwan Crawford // Is passed x,y,z coordinates for the pointer to a specific element. 159215f2bd95SEwan Crawford // Then sets the data_ptr member in Allocation with the result. 159315f2bd95SEwan Crawford // Returns true on success, false otherwise 159415f2bd95SEwan Crawford bool 1595b3f7f69dSAidan Dodds RenderScriptRuntime::JITDataPointer(AllocationDetails *allocation, StackFrame *frame_ptr, uint32_t x, 1596b3f7f69dSAidan Dodds uint32_t y, uint32_t z) 159715f2bd95SEwan Crawford { 159815f2bd95SEwan Crawford Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_LANGUAGE)); 159915f2bd95SEwan Crawford 160015f2bd95SEwan Crawford if (!allocation->address.isValid()) 160115f2bd95SEwan Crawford { 160215f2bd95SEwan Crawford if (log) 1603b3f7f69dSAidan Dodds log->Printf("%s - failed to find allocation details.", __FUNCTION__); 160415f2bd95SEwan Crawford return false; 160515f2bd95SEwan Crawford } 160615f2bd95SEwan Crawford 1607ea0636b5SEwan Crawford const char *expr_cstr = JITTemplate(eExprGetOffsetPtr); 1608ea0636b5SEwan Crawford char buffer[jit_max_expr_size]; 160915f2bd95SEwan Crawford 1610ea0636b5SEwan Crawford int chars_written = snprintf(buffer, jit_max_expr_size, expr_cstr, *allocation->address.get(), x, y, z); 161115f2bd95SEwan Crawford if (chars_written < 0) 161215f2bd95SEwan Crawford { 161315f2bd95SEwan Crawford if (log) 1614b3f7f69dSAidan Dodds log->Printf("%s - encoding error in snprintf().", __FUNCTION__); 161515f2bd95SEwan Crawford return false; 161615f2bd95SEwan Crawford } 1617ea0636b5SEwan Crawford else if (chars_written >= jit_max_expr_size) 161815f2bd95SEwan Crawford { 161915f2bd95SEwan Crawford if (log) 1620b3f7f69dSAidan Dodds log->Printf("%s - expression too long.", __FUNCTION__); 162115f2bd95SEwan Crawford return false; 162215f2bd95SEwan Crawford } 162315f2bd95SEwan Crawford 162415f2bd95SEwan Crawford uint64_t result = 0; 162515f2bd95SEwan Crawford if (!EvalRSExpression(buffer, frame_ptr, &result)) 162615f2bd95SEwan Crawford return false; 162715f2bd95SEwan Crawford 162815f2bd95SEwan Crawford addr_t mem_ptr = static_cast<lldb::addr_t>(result); 162915f2bd95SEwan Crawford allocation->data_ptr = mem_ptr; 163015f2bd95SEwan Crawford 163115f2bd95SEwan Crawford return true; 163215f2bd95SEwan Crawford } 163315f2bd95SEwan Crawford 163415f2bd95SEwan Crawford // JITs the RS runtime for the internal pointer to the RS Type of an allocation 163515f2bd95SEwan Crawford // Then sets the type_ptr member in Allocation with the result. 163615f2bd95SEwan Crawford // Returns true on success, false otherwise 163715f2bd95SEwan Crawford bool 163815f2bd95SEwan Crawford RenderScriptRuntime::JITTypePointer(AllocationDetails *allocation, StackFrame *frame_ptr) 163915f2bd95SEwan Crawford { 164015f2bd95SEwan Crawford Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_LANGUAGE)); 164115f2bd95SEwan Crawford 164215f2bd95SEwan Crawford if (!allocation->address.isValid() || !allocation->context.isValid()) 164315f2bd95SEwan Crawford { 164415f2bd95SEwan Crawford if (log) 1645b3f7f69dSAidan Dodds log->Printf("%s - failed to find allocation details.", __FUNCTION__); 164615f2bd95SEwan Crawford return false; 164715f2bd95SEwan Crawford } 164815f2bd95SEwan Crawford 1649ea0636b5SEwan Crawford const char *expr_cstr = JITTemplate(eExprAllocGetType); 1650ea0636b5SEwan Crawford char buffer[jit_max_expr_size]; 165115f2bd95SEwan Crawford 1652ea0636b5SEwan Crawford int chars_written = 1653ea0636b5SEwan Crawford snprintf(buffer, jit_max_expr_size, expr_cstr, *allocation->context.get(), *allocation->address.get()); 165415f2bd95SEwan Crawford if (chars_written < 0) 165515f2bd95SEwan Crawford { 165615f2bd95SEwan Crawford if (log) 1657b3f7f69dSAidan Dodds log->Printf("%s - encoding error in snprintf().", __FUNCTION__); 165815f2bd95SEwan Crawford return false; 165915f2bd95SEwan Crawford } 1660ea0636b5SEwan Crawford else if (chars_written >= jit_max_expr_size) 166115f2bd95SEwan Crawford { 166215f2bd95SEwan Crawford if (log) 1663b3f7f69dSAidan Dodds log->Printf("%s - expression too long.", __FUNCTION__); 166415f2bd95SEwan Crawford return false; 166515f2bd95SEwan Crawford } 166615f2bd95SEwan Crawford 166715f2bd95SEwan Crawford uint64_t result = 0; 166815f2bd95SEwan Crawford if (!EvalRSExpression(buffer, frame_ptr, &result)) 166915f2bd95SEwan Crawford return false; 167015f2bd95SEwan Crawford 167115f2bd95SEwan Crawford addr_t type_ptr = static_cast<lldb::addr_t>(result); 167215f2bd95SEwan Crawford allocation->type_ptr = type_ptr; 167315f2bd95SEwan Crawford 167415f2bd95SEwan Crawford return true; 167515f2bd95SEwan Crawford } 167615f2bd95SEwan Crawford 167715f2bd95SEwan Crawford // JITs the RS runtime for information about the dimensions and type of an allocation 167815f2bd95SEwan Crawford // Then sets dimension and element_ptr members in Allocation with the result. 167915f2bd95SEwan Crawford // Returns true on success, false otherwise 168015f2bd95SEwan Crawford bool 168115f2bd95SEwan Crawford RenderScriptRuntime::JITTypePacked(AllocationDetails *allocation, StackFrame *frame_ptr) 168215f2bd95SEwan Crawford { 168315f2bd95SEwan Crawford Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_LANGUAGE)); 168415f2bd95SEwan Crawford 168515f2bd95SEwan Crawford if (!allocation->type_ptr.isValid() || !allocation->context.isValid()) 168615f2bd95SEwan Crawford { 168715f2bd95SEwan Crawford if (log) 1688b3f7f69dSAidan Dodds log->Printf("%s - Failed to find allocation details.", __FUNCTION__); 168915f2bd95SEwan Crawford return false; 169015f2bd95SEwan Crawford } 169115f2bd95SEwan Crawford 169215f2bd95SEwan Crawford // Expression is different depending on if device is 32 or 64 bit 169315f2bd95SEwan Crawford uint32_t archByteSize = GetProcess()->GetTarget().GetArchitecture().GetAddressByteSize(); 1694b3f7f69dSAidan Dodds const uint32_t bits = archByteSize == 4 ? 32 : 64; 169515f2bd95SEwan Crawford 169615f2bd95SEwan Crawford // We want 4 elements from packed data 1697b3f7f69dSAidan Dodds const uint32_t num_exprs = 4; 169815f2bd95SEwan Crawford assert(num_exprs == (eExprTypeElemPtr - eExprTypeDimX + 1) && "Invalid number of expressions"); 169915f2bd95SEwan Crawford 1700ea0636b5SEwan Crawford char buffer[num_exprs][jit_max_expr_size]; 170115f2bd95SEwan Crawford uint64_t results[num_exprs]; 170215f2bd95SEwan Crawford 1703b3f7f69dSAidan Dodds for (uint32_t i = 0; i < num_exprs; ++i) 170415f2bd95SEwan Crawford { 1705ea0636b5SEwan Crawford const char *expr_cstr = JITTemplate(ExpressionStrings(eExprTypeDimX + i)); 1706ea0636b5SEwan Crawford int chars_written = snprintf(buffer[i], jit_max_expr_size, expr_cstr, bits, *allocation->context.get(), 1707ea0636b5SEwan Crawford *allocation->type_ptr.get()); 170815f2bd95SEwan Crawford if (chars_written < 0) 170915f2bd95SEwan Crawford { 171015f2bd95SEwan Crawford if (log) 1711b3f7f69dSAidan Dodds log->Printf("%s - encoding error in snprintf().", __FUNCTION__); 171215f2bd95SEwan Crawford return false; 171315f2bd95SEwan Crawford } 1714ea0636b5SEwan Crawford else if (chars_written >= jit_max_expr_size) 171515f2bd95SEwan Crawford { 171615f2bd95SEwan Crawford if (log) 1717b3f7f69dSAidan Dodds log->Printf("%s - expression too long.", __FUNCTION__); 171815f2bd95SEwan Crawford return false; 171915f2bd95SEwan Crawford } 172015f2bd95SEwan Crawford 172115f2bd95SEwan Crawford // Perform expression evaluation 172215f2bd95SEwan Crawford if (!EvalRSExpression(buffer[i], frame_ptr, &results[i])) 172315f2bd95SEwan Crawford return false; 172415f2bd95SEwan Crawford } 172515f2bd95SEwan Crawford 172615f2bd95SEwan Crawford // Assign results to allocation members 172715f2bd95SEwan Crawford AllocationDetails::Dimension dims; 172815f2bd95SEwan Crawford dims.dim_1 = static_cast<uint32_t>(results[0]); 172915f2bd95SEwan Crawford dims.dim_2 = static_cast<uint32_t>(results[1]); 173015f2bd95SEwan Crawford dims.dim_3 = static_cast<uint32_t>(results[2]); 173115f2bd95SEwan Crawford allocation->dimension = dims; 173215f2bd95SEwan Crawford 173315f2bd95SEwan Crawford addr_t elem_ptr = static_cast<lldb::addr_t>(results[3]); 17348b244e21SEwan Crawford allocation->element.element_ptr = elem_ptr; 173515f2bd95SEwan Crawford 173615f2bd95SEwan Crawford if (log) 1737b3f7f69dSAidan Dodds log->Printf("%s - dims (%" PRIu32 ", %" PRIu32 ", %" PRIu32 ") Element*: 0x%" PRIx64 ".", __FUNCTION__, 173815f2bd95SEwan Crawford dims.dim_1, dims.dim_2, dims.dim_3, elem_ptr); 173915f2bd95SEwan Crawford 174015f2bd95SEwan Crawford return true; 174115f2bd95SEwan Crawford } 174215f2bd95SEwan Crawford 174315f2bd95SEwan Crawford // JITs the RS runtime for information about the Element of an allocation 17448b244e21SEwan Crawford // Then sets type, type_vec_size, field_count and type_kind members in Element with the result. 174515f2bd95SEwan Crawford // Returns true on success, false otherwise 174615f2bd95SEwan Crawford bool 17478b244e21SEwan Crawford RenderScriptRuntime::JITElementPacked(Element &elem, const lldb::addr_t context, StackFrame *frame_ptr) 174815f2bd95SEwan Crawford { 174915f2bd95SEwan Crawford Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_LANGUAGE)); 175015f2bd95SEwan Crawford 17518b244e21SEwan Crawford if (!elem.element_ptr.isValid()) 175215f2bd95SEwan Crawford { 175315f2bd95SEwan Crawford if (log) 1754b3f7f69dSAidan Dodds log->Printf("%s - failed to find allocation details.", __FUNCTION__); 175515f2bd95SEwan Crawford return false; 175615f2bd95SEwan Crawford } 175715f2bd95SEwan Crawford 17588b244e21SEwan Crawford // We want 4 elements from packed data 1759b3f7f69dSAidan Dodds const uint32_t num_exprs = 4; 17608b244e21SEwan Crawford assert(num_exprs == (eExprElementFieldCount - eExprElementType + 1) && "Invalid number of expressions"); 176115f2bd95SEwan Crawford 1762ea0636b5SEwan Crawford char buffer[num_exprs][jit_max_expr_size]; 176315f2bd95SEwan Crawford uint64_t results[num_exprs]; 176415f2bd95SEwan Crawford 1765b3f7f69dSAidan Dodds for (uint32_t i = 0; i < num_exprs; i++) 176615f2bd95SEwan Crawford { 1767ea0636b5SEwan Crawford const char *expr_cstr = JITTemplate(ExpressionStrings(eExprElementType + i)); 1768ea0636b5SEwan Crawford int chars_written = snprintf(buffer[i], jit_max_expr_size, expr_cstr, context, *elem.element_ptr.get()); 176915f2bd95SEwan Crawford if (chars_written < 0) 177015f2bd95SEwan Crawford { 177115f2bd95SEwan Crawford if (log) 1772b3f7f69dSAidan Dodds log->Printf("%s - encoding error in snprintf().", __FUNCTION__); 177315f2bd95SEwan Crawford return false; 177415f2bd95SEwan Crawford } 1775ea0636b5SEwan Crawford else if (chars_written >= jit_max_expr_size) 177615f2bd95SEwan Crawford { 177715f2bd95SEwan Crawford if (log) 1778b3f7f69dSAidan Dodds log->Printf("%s - expression too long.", __FUNCTION__); 177915f2bd95SEwan Crawford return false; 178015f2bd95SEwan Crawford } 178115f2bd95SEwan Crawford 178215f2bd95SEwan Crawford // Perform expression evaluation 178315f2bd95SEwan Crawford if (!EvalRSExpression(buffer[i], frame_ptr, &results[i])) 178415f2bd95SEwan Crawford return false; 178515f2bd95SEwan Crawford } 178615f2bd95SEwan Crawford 178715f2bd95SEwan Crawford // Assign results to allocation members 17888b244e21SEwan Crawford elem.type = static_cast<RenderScriptRuntime::Element::DataType>(results[0]); 17898b244e21SEwan Crawford elem.type_kind = static_cast<RenderScriptRuntime::Element::DataKind>(results[1]); 17908b244e21SEwan Crawford elem.type_vec_size = static_cast<uint32_t>(results[2]); 17918b244e21SEwan Crawford elem.field_count = static_cast<uint32_t>(results[3]); 179215f2bd95SEwan Crawford 179315f2bd95SEwan Crawford if (log) 1794b3f7f69dSAidan Dodds log->Printf("%s - data type %" PRIu32 ", pixel type %" PRIu32 ", vector size %" PRIu32 ", field count %" PRIu32, 1795b3f7f69dSAidan Dodds __FUNCTION__, *elem.type.get(), *elem.type_kind.get(), *elem.type_vec_size.get(), *elem.field_count.get()); 17968b244e21SEwan Crawford 17978b244e21SEwan Crawford // If this Element has subelements then JIT rsaElementGetSubElements() for details about its fields 17988b244e21SEwan Crawford if (*elem.field_count.get() > 0 && !JITSubelements(elem, context, frame_ptr)) 17998b244e21SEwan Crawford return false; 18008b244e21SEwan Crawford 18018b244e21SEwan Crawford return true; 18028b244e21SEwan Crawford } 18038b244e21SEwan Crawford 18048b244e21SEwan Crawford // JITs the RS runtime for information about the subelements/fields of a struct allocation 18058b244e21SEwan Crawford // This is necessary for infering the struct type so we can pretty print the allocation's contents. 18068b244e21SEwan Crawford // Returns true on success, false otherwise 18078b244e21SEwan Crawford bool 18088b244e21SEwan Crawford RenderScriptRuntime::JITSubelements(Element &elem, const lldb::addr_t context, StackFrame *frame_ptr) 18098b244e21SEwan Crawford { 18108b244e21SEwan Crawford Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_LANGUAGE)); 18118b244e21SEwan Crawford 18128b244e21SEwan Crawford if (!elem.element_ptr.isValid() || !elem.field_count.isValid()) 18138b244e21SEwan Crawford { 18148b244e21SEwan Crawford if (log) 1815b3f7f69dSAidan Dodds log->Printf("%s - failed to find allocation details.", __FUNCTION__); 18168b244e21SEwan Crawford return false; 18178b244e21SEwan Crawford } 18188b244e21SEwan Crawford 18198b244e21SEwan Crawford const short num_exprs = 3; 18208b244e21SEwan Crawford assert(num_exprs == (eExprSubelementsArrSize - eExprSubelementsId + 1) && "Invalid number of expressions"); 18218b244e21SEwan Crawford 1822ea0636b5SEwan Crawford char expr_buffer[jit_max_expr_size]; 18238b244e21SEwan Crawford uint64_t results; 18248b244e21SEwan Crawford 18258b244e21SEwan Crawford // Iterate over struct fields. 18268b244e21SEwan Crawford const uint32_t field_count = *elem.field_count.get(); 1827b3f7f69dSAidan Dodds for (uint32_t field_index = 0; field_index < field_count; ++field_index) 18288b244e21SEwan Crawford { 18298b244e21SEwan Crawford Element child; 1830b3f7f69dSAidan Dodds for (uint32_t expr_index = 0; expr_index < num_exprs; ++expr_index) 18318b244e21SEwan Crawford { 1832ea0636b5SEwan Crawford const char *expr_cstr = JITTemplate(ExpressionStrings(eExprSubelementsId + expr_index)); 1833ea0636b5SEwan Crawford int chars_written = snprintf(expr_buffer, jit_max_expr_size, expr_cstr, 18348b244e21SEwan Crawford field_count, field_count, field_count, 18358b244e21SEwan Crawford context, *elem.element_ptr.get(), field_count, field_index); 18368b244e21SEwan Crawford if (chars_written < 0) 18378b244e21SEwan Crawford { 18388b244e21SEwan Crawford if (log) 1839b3f7f69dSAidan Dodds log->Printf("%s - encoding error in snprintf().", __FUNCTION__); 18408b244e21SEwan Crawford return false; 18418b244e21SEwan Crawford } 1842ea0636b5SEwan Crawford else if (chars_written >= jit_max_expr_size) 18438b244e21SEwan Crawford { 18448b244e21SEwan Crawford if (log) 1845b3f7f69dSAidan Dodds log->Printf("%s - expression too long.", __FUNCTION__); 18468b244e21SEwan Crawford return false; 18478b244e21SEwan Crawford } 18488b244e21SEwan Crawford 18498b244e21SEwan Crawford // Perform expression evaluation 18508b244e21SEwan Crawford if (!EvalRSExpression(expr_buffer, frame_ptr, &results)) 18518b244e21SEwan Crawford return false; 18528b244e21SEwan Crawford 18538b244e21SEwan Crawford if (log) 1854b3f7f69dSAidan Dodds log->Printf("%s - expr result 0x%" PRIx64 ".", __FUNCTION__, results); 18558b244e21SEwan Crawford 18568b244e21SEwan Crawford switch (expr_index) 18578b244e21SEwan Crawford { 18588b244e21SEwan Crawford case 0: // Element* of child 18598b244e21SEwan Crawford child.element_ptr = static_cast<addr_t>(results); 18608b244e21SEwan Crawford break; 18618b244e21SEwan Crawford case 1: // Name of child 18628b244e21SEwan Crawford { 18638b244e21SEwan Crawford lldb::addr_t address = static_cast<addr_t>(results); 18648b244e21SEwan Crawford Error err; 18658b244e21SEwan Crawford std::string name; 18668b244e21SEwan Crawford GetProcess()->ReadCStringFromMemory(address, name, err); 18678b244e21SEwan Crawford if (!err.Fail()) 18688b244e21SEwan Crawford child.type_name = ConstString(name); 18698b244e21SEwan Crawford else 18708b244e21SEwan Crawford { 18718b244e21SEwan Crawford if (log) 1872b3f7f69dSAidan Dodds log->Printf("%s - warning: Couldn't read field name.", __FUNCTION__); 18738b244e21SEwan Crawford } 18748b244e21SEwan Crawford break; 18758b244e21SEwan Crawford } 18768b244e21SEwan Crawford case 2: // Array size of child 18778b244e21SEwan Crawford child.array_size = static_cast<uint32_t>(results); 18788b244e21SEwan Crawford break; 18798b244e21SEwan Crawford } 18808b244e21SEwan Crawford } 18818b244e21SEwan Crawford 18828b244e21SEwan Crawford // We need to recursively JIT each Element field of the struct since 18838b244e21SEwan Crawford // structs can be nested inside structs. 18848b244e21SEwan Crawford if (!JITElementPacked(child, context, frame_ptr)) 18858b244e21SEwan Crawford return false; 18868b244e21SEwan Crawford elem.children.push_back(child); 18878b244e21SEwan Crawford } 18888b244e21SEwan Crawford 18898b244e21SEwan Crawford // Try to infer the name of the struct type so we can pretty print the allocation contents. 18908b244e21SEwan Crawford FindStructTypeName(elem, frame_ptr); 189115f2bd95SEwan Crawford 189215f2bd95SEwan Crawford return true; 189315f2bd95SEwan Crawford } 189415f2bd95SEwan Crawford 1895a0f08674SEwan Crawford // JITs the RS runtime for the address of the last element in the allocation. 1896a0f08674SEwan Crawford // The `elem_size` paramter represents the size of a single element, including padding. 1897a0f08674SEwan Crawford // Which is needed as an offset from the last element pointer. 1898a0f08674SEwan Crawford // Using this offset minus the starting address we can calculate the size of the allocation. 1899a0f08674SEwan Crawford // Returns true on success, false otherwise 1900a0f08674SEwan Crawford bool 19018b244e21SEwan Crawford RenderScriptRuntime::JITAllocationSize(AllocationDetails *allocation, StackFrame *frame_ptr) 1902a0f08674SEwan Crawford { 1903a0f08674SEwan Crawford Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_LANGUAGE)); 1904a0f08674SEwan Crawford 1905b3f7f69dSAidan Dodds if (!allocation->address.isValid() || !allocation->dimension.isValid() || !allocation->data_ptr.isValid() || 1906b3f7f69dSAidan Dodds !allocation->element.datum_size.isValid()) 1907a0f08674SEwan Crawford { 1908a0f08674SEwan Crawford if (log) 1909b3f7f69dSAidan Dodds log->Printf("%s - failed to find allocation details.", __FUNCTION__); 1910a0f08674SEwan Crawford return false; 1911a0f08674SEwan Crawford } 1912a0f08674SEwan Crawford 1913a0f08674SEwan Crawford // Find dimensions 1914b3f7f69dSAidan Dodds uint32_t dim_x = allocation->dimension.get()->dim_1; 1915b3f7f69dSAidan Dodds uint32_t dim_y = allocation->dimension.get()->dim_2; 1916b3f7f69dSAidan Dodds uint32_t dim_z = allocation->dimension.get()->dim_3; 1917a0f08674SEwan Crawford 19188b244e21SEwan Crawford // Our plan of jitting the last element address doesn't seem to work for struct Allocations 19198b244e21SEwan Crawford // Instead try to infer the size ourselves without any inter element padding. 19208b244e21SEwan Crawford if (allocation->element.children.size() > 0) 19218b244e21SEwan Crawford { 19228b244e21SEwan Crawford if (dim_x == 0) dim_x = 1; 19238b244e21SEwan Crawford if (dim_y == 0) dim_y = 1; 19248b244e21SEwan Crawford if (dim_z == 0) dim_z = 1; 19258b244e21SEwan Crawford 19268b244e21SEwan Crawford allocation->size = dim_x * dim_y * dim_z * *allocation->element.datum_size.get(); 19278b244e21SEwan Crawford 19288b244e21SEwan Crawford if (log) 1929b3f7f69dSAidan Dodds log->Printf("%s - infered size of struct allocation %" PRIu32 ".", __FUNCTION__, 1930b3f7f69dSAidan Dodds *allocation->size.get()); 19318b244e21SEwan Crawford return true; 19328b244e21SEwan Crawford } 19338b244e21SEwan Crawford 1934ea0636b5SEwan Crawford const char *expr_cstr = JITTemplate(eExprGetOffsetPtr); 1935ea0636b5SEwan Crawford char buffer[jit_max_expr_size]; 19368b244e21SEwan Crawford 1937a0f08674SEwan Crawford // Calculate last element 1938a0f08674SEwan Crawford dim_x = dim_x == 0 ? 0 : dim_x - 1; 1939a0f08674SEwan Crawford dim_y = dim_y == 0 ? 0 : dim_y - 1; 1940a0f08674SEwan Crawford dim_z = dim_z == 0 ? 0 : dim_z - 1; 1941a0f08674SEwan Crawford 1942ea0636b5SEwan Crawford int chars_written = snprintf(buffer, jit_max_expr_size, expr_cstr, *allocation->address.get(), dim_x, dim_y, dim_z); 1943a0f08674SEwan Crawford if (chars_written < 0) 1944a0f08674SEwan Crawford { 1945a0f08674SEwan Crawford if (log) 1946b3f7f69dSAidan Dodds log->Printf("%s - encoding error in snprintf().", __FUNCTION__); 1947a0f08674SEwan Crawford return false; 1948a0f08674SEwan Crawford } 1949ea0636b5SEwan Crawford else if (chars_written >= jit_max_expr_size) 1950a0f08674SEwan Crawford { 1951a0f08674SEwan Crawford if (log) 1952b3f7f69dSAidan Dodds log->Printf("%s - expression too long.", __FUNCTION__); 1953a0f08674SEwan Crawford return false; 1954a0f08674SEwan Crawford } 1955a0f08674SEwan Crawford 1956a0f08674SEwan Crawford uint64_t result = 0; 1957a0f08674SEwan Crawford if (!EvalRSExpression(buffer, frame_ptr, &result)) 1958a0f08674SEwan Crawford return false; 1959a0f08674SEwan Crawford 1960a0f08674SEwan Crawford addr_t mem_ptr = static_cast<lldb::addr_t>(result); 1961a0f08674SEwan Crawford // Find pointer to last element and add on size of an element 1962b3f7f69dSAidan Dodds allocation->size = 1963b3f7f69dSAidan Dodds static_cast<uint32_t>(mem_ptr - *allocation->data_ptr.get()) + *allocation->element.datum_size.get(); 1964a0f08674SEwan Crawford 1965a0f08674SEwan Crawford return true; 1966a0f08674SEwan Crawford } 1967a0f08674SEwan Crawford 1968a0f08674SEwan Crawford // JITs the RS runtime for information about the stride between rows in the allocation. 1969a0f08674SEwan Crawford // This is done to detect padding, since allocated memory is 16-byte aligned. 1970a0f08674SEwan Crawford // Returns true on success, false otherwise 1971a0f08674SEwan Crawford bool 1972a0f08674SEwan Crawford RenderScriptRuntime::JITAllocationStride(AllocationDetails *allocation, StackFrame *frame_ptr) 1973a0f08674SEwan Crawford { 1974a0f08674SEwan Crawford Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_LANGUAGE)); 1975a0f08674SEwan Crawford 1976a0f08674SEwan Crawford if (!allocation->address.isValid() || !allocation->data_ptr.isValid()) 1977a0f08674SEwan Crawford { 1978a0f08674SEwan Crawford if (log) 1979b3f7f69dSAidan Dodds log->Printf("%s - failed to find allocation details.", __FUNCTION__); 1980a0f08674SEwan Crawford return false; 1981a0f08674SEwan Crawford } 1982a0f08674SEwan Crawford 1983ea0636b5SEwan Crawford const char *expr_cstr = JITTemplate(eExprGetOffsetPtr); 1984ea0636b5SEwan Crawford char buffer[jit_max_expr_size]; 1985a0f08674SEwan Crawford 1986ea0636b5SEwan Crawford int chars_written = snprintf(buffer, jit_max_expr_size, expr_cstr, *allocation->address.get(), 0, 1, 0); 1987a0f08674SEwan Crawford if (chars_written < 0) 1988a0f08674SEwan Crawford { 1989a0f08674SEwan Crawford if (log) 1990b3f7f69dSAidan Dodds log->Printf("%s - encoding error in snprintf().", __FUNCTION__); 1991a0f08674SEwan Crawford return false; 1992a0f08674SEwan Crawford } 1993ea0636b5SEwan Crawford else if (chars_written >= jit_max_expr_size) 1994a0f08674SEwan Crawford { 1995a0f08674SEwan Crawford if (log) 1996b3f7f69dSAidan Dodds log->Printf("%s - expression too long.", __FUNCTION__); 1997a0f08674SEwan Crawford return false; 1998a0f08674SEwan Crawford } 1999a0f08674SEwan Crawford 2000a0f08674SEwan Crawford uint64_t result = 0; 2001a0f08674SEwan Crawford if (!EvalRSExpression(buffer, frame_ptr, &result)) 2002a0f08674SEwan Crawford return false; 2003a0f08674SEwan Crawford 2004a0f08674SEwan Crawford addr_t mem_ptr = static_cast<lldb::addr_t>(result); 2005a0f08674SEwan Crawford allocation->stride = static_cast<uint32_t>(mem_ptr - *allocation->data_ptr.get()); 2006a0f08674SEwan Crawford 2007a0f08674SEwan Crawford return true; 2008a0f08674SEwan Crawford } 2009a0f08674SEwan Crawford 201015f2bd95SEwan Crawford // JIT all the current runtime info regarding an allocation 201115f2bd95SEwan Crawford bool 201215f2bd95SEwan Crawford RenderScriptRuntime::RefreshAllocation(AllocationDetails *allocation, StackFrame *frame_ptr) 201315f2bd95SEwan Crawford { 201415f2bd95SEwan Crawford // GetOffsetPointer() 201515f2bd95SEwan Crawford if (!JITDataPointer(allocation, frame_ptr)) 201615f2bd95SEwan Crawford return false; 201715f2bd95SEwan Crawford 201815f2bd95SEwan Crawford // rsaAllocationGetType() 201915f2bd95SEwan Crawford if (!JITTypePointer(allocation, frame_ptr)) 202015f2bd95SEwan Crawford return false; 202115f2bd95SEwan Crawford 202215f2bd95SEwan Crawford // rsaTypeGetNativeData() 202315f2bd95SEwan Crawford if (!JITTypePacked(allocation, frame_ptr)) 202415f2bd95SEwan Crawford return false; 202515f2bd95SEwan Crawford 202615f2bd95SEwan Crawford // rsaElementGetNativeData() 20278b244e21SEwan Crawford if (!JITElementPacked(allocation->element, *allocation->context.get(), frame_ptr)) 202815f2bd95SEwan Crawford return false; 202915f2bd95SEwan Crawford 20308b244e21SEwan Crawford // Sets the datum_size member in Element 20318b244e21SEwan Crawford SetElementSize(allocation->element); 20328b244e21SEwan Crawford 203355232f09SEwan Crawford // Use GetOffsetPointer() to infer size of the allocation 20348b244e21SEwan Crawford if (!JITAllocationSize(allocation, frame_ptr)) 203555232f09SEwan Crawford return false; 203655232f09SEwan Crawford 203755232f09SEwan Crawford return true; 203855232f09SEwan Crawford } 203955232f09SEwan Crawford 20408b244e21SEwan Crawford // Function attempts to set the type_name member of the paramaterised Element object. 20418b244e21SEwan Crawford // This string should be the name of the struct type the Element represents. 20428b244e21SEwan Crawford // We need this string for pretty printing the Element to users. 20438b244e21SEwan Crawford void 20448b244e21SEwan Crawford RenderScriptRuntime::FindStructTypeName(Element &elem, StackFrame *frame_ptr) 204555232f09SEwan Crawford { 20468b244e21SEwan Crawford Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_LANGUAGE)); 20478b244e21SEwan Crawford 20488b244e21SEwan Crawford if (!elem.type_name.IsEmpty()) // Name already set 20498b244e21SEwan Crawford return; 20508b244e21SEwan Crawford else 2051fe06b5adSAdrian McCarthy elem.type_name = Element::GetFallbackStructName(); // Default type name if we don't succeed 20528b244e21SEwan Crawford 20538b244e21SEwan Crawford // Find all the global variables from the script rs modules 20548b244e21SEwan Crawford VariableList variable_list; 20558b244e21SEwan Crawford for (auto module_sp : m_rsmodules) 20568b244e21SEwan Crawford module_sp->m_module->FindGlobalVariables(RegularExpression("."), true, UINT32_MAX, variable_list); 20578b244e21SEwan Crawford 20588b244e21SEwan Crawford // Iterate over all the global variables looking for one with a matching type to the Element. 20598b244e21SEwan Crawford // We make the assumption a match exists since there needs to be a global variable to reflect the 20608b244e21SEwan Crawford // struct type back into java host code. 20618b244e21SEwan Crawford for (uint32_t var_index = 0; var_index < variable_list.GetSize(); ++var_index) 20628b244e21SEwan Crawford { 20638b244e21SEwan Crawford const VariableSP var_sp(variable_list.GetVariableAtIndex(var_index)); 20648b244e21SEwan Crawford if (!var_sp) 20658b244e21SEwan Crawford continue; 20668b244e21SEwan Crawford 20678b244e21SEwan Crawford ValueObjectSP valobj_sp = ValueObjectVariable::Create(frame_ptr, var_sp); 20688b244e21SEwan Crawford if (!valobj_sp) 20698b244e21SEwan Crawford continue; 20708b244e21SEwan Crawford 20718b244e21SEwan Crawford // Find the number of variable fields. 20728b244e21SEwan Crawford // If it has no fields, or more fields than our Element, then it can't be the struct we're looking for. 20738b244e21SEwan Crawford // Don't check for equality since RS can add extra struct members for padding. 20748b244e21SEwan Crawford size_t num_children = valobj_sp->GetNumChildren(); 20758b244e21SEwan Crawford if (num_children > elem.children.size() || num_children == 0) 20768b244e21SEwan Crawford continue; 20778b244e21SEwan Crawford 20788b244e21SEwan Crawford // Iterate over children looking for members with matching field names. 20798b244e21SEwan Crawford // If all the field names match, this is likely the struct we want. 20808b244e21SEwan Crawford // 20818b244e21SEwan Crawford // TODO: This could be made more robust by also checking children data sizes, or array size 20828b244e21SEwan Crawford bool found = true; 20838b244e21SEwan Crawford for (size_t child_index = 0; child_index < num_children; ++child_index) 20848b244e21SEwan Crawford { 20858b244e21SEwan Crawford ValueObjectSP child = valobj_sp->GetChildAtIndex(child_index, true); 20868b244e21SEwan Crawford if (!child || (child->GetName() != elem.children[child_index].type_name)) 20878b244e21SEwan Crawford { 20888b244e21SEwan Crawford found = false; 20898b244e21SEwan Crawford break; 20908b244e21SEwan Crawford } 20918b244e21SEwan Crawford } 20928b244e21SEwan Crawford 20938b244e21SEwan Crawford // RS can add extra struct members for padding in the format '#rs_padding_[0-9]+' 20948b244e21SEwan Crawford if (found && num_children < elem.children.size()) 20958b244e21SEwan Crawford { 2096b3f7f69dSAidan Dodds const uint32_t size_diff = elem.children.size() - num_children; 20978b244e21SEwan Crawford if (log) 2098b3f7f69dSAidan Dodds log->Printf("%s - %" PRIu32 " padding struct entries", __FUNCTION__, size_diff); 20998b244e21SEwan Crawford 2100b3f7f69dSAidan Dodds for (uint32_t padding_index = 0; padding_index < size_diff; ++padding_index) 21018b244e21SEwan Crawford { 21028b244e21SEwan Crawford const ConstString &name = elem.children[num_children + padding_index].type_name; 21038b244e21SEwan Crawford if (strcmp(name.AsCString(), "#rs_padding") < 0) 21048b244e21SEwan Crawford found = false; 21058b244e21SEwan Crawford } 21068b244e21SEwan Crawford } 21078b244e21SEwan Crawford 21088b244e21SEwan Crawford // We've found a global var with matching type 21098b244e21SEwan Crawford if (found) 21108b244e21SEwan Crawford { 21118b244e21SEwan Crawford // Dereference since our Element type isn't a pointer. 21128b244e21SEwan Crawford if (valobj_sp->IsPointerType()) 21138b244e21SEwan Crawford { 21148b244e21SEwan Crawford Error err; 21158b244e21SEwan Crawford ValueObjectSP deref_valobj = valobj_sp->Dereference(err); 21168b244e21SEwan Crawford if (!err.Fail()) 21178b244e21SEwan Crawford valobj_sp = deref_valobj; 21188b244e21SEwan Crawford } 21198b244e21SEwan Crawford 21208b244e21SEwan Crawford // Save name of variable in Element. 21218b244e21SEwan Crawford elem.type_name = valobj_sp->GetTypeName(); 21228b244e21SEwan Crawford if (log) 2123b3f7f69dSAidan Dodds log->Printf("%s - element name set to %s", __FUNCTION__, elem.type_name.AsCString()); 21248b244e21SEwan Crawford 21258b244e21SEwan Crawford return; 21268b244e21SEwan Crawford } 21278b244e21SEwan Crawford } 21288b244e21SEwan Crawford } 21298b244e21SEwan Crawford 21308b244e21SEwan Crawford // Function sets the datum_size member of Element. Representing the size of a single instance including padding. 21318b244e21SEwan Crawford // Assumes the relevant allocation information has already been jitted. 21328b244e21SEwan Crawford void 21338b244e21SEwan Crawford RenderScriptRuntime::SetElementSize(Element &elem) 21348b244e21SEwan Crawford { 21358b244e21SEwan Crawford Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_LANGUAGE)); 21368b244e21SEwan Crawford const Element::DataType type = *elem.type.get(); 2137b3f7f69dSAidan Dodds assert(type >= Element::RS_TYPE_NONE && type <= Element::RS_TYPE_FONT && "Invalid allocation type"); 213855232f09SEwan Crawford 2139b3f7f69dSAidan Dodds const uint32_t vec_size = *elem.type_vec_size.get(); 2140b3f7f69dSAidan Dodds uint32_t data_size = 0; 2141b3f7f69dSAidan Dodds uint32_t padding = 0; 214255232f09SEwan Crawford 21438b244e21SEwan Crawford // Element is of a struct type, calculate size recursively. 21448b244e21SEwan Crawford if ((type == Element::RS_TYPE_NONE) && (elem.children.size() > 0)) 21458b244e21SEwan Crawford { 21468b244e21SEwan Crawford for (Element &child : elem.children) 21478b244e21SEwan Crawford { 21488b244e21SEwan Crawford SetElementSize(child); 2149b3f7f69dSAidan Dodds const uint32_t array_size = child.array_size.isValid() ? *child.array_size.get() : 1; 21508b244e21SEwan Crawford data_size += *child.datum_size.get() * array_size; 21518b244e21SEwan Crawford } 21528b244e21SEwan Crawford } 2153b3f7f69dSAidan Dodds // These have been packed already 2154b3f7f69dSAidan Dodds else if (type == Element::RS_TYPE_UNSIGNED_5_6_5 || 2155b3f7f69dSAidan Dodds type == Element::RS_TYPE_UNSIGNED_5_5_5_1 || 2156b3f7f69dSAidan Dodds type == Element::RS_TYPE_UNSIGNED_4_4_4_4) 21572e920715SEwan Crawford { 21582e920715SEwan Crawford data_size = AllocationDetails::RSTypeToFormat[type][eElementSize]; 21592e920715SEwan Crawford } 21602e920715SEwan Crawford else if (type < Element::RS_TYPE_ELEMENT) 21612e920715SEwan Crawford { 21628b244e21SEwan Crawford data_size = vec_size * AllocationDetails::RSTypeToFormat[type][eElementSize]; 21632e920715SEwan Crawford if (vec_size == 3) 21642e920715SEwan Crawford padding = AllocationDetails::RSTypeToFormat[type][eElementSize]; 21652e920715SEwan Crawford } 21662e920715SEwan Crawford else 21672e920715SEwan Crawford data_size = GetProcess()->GetTarget().GetArchitecture().GetAddressByteSize(); 21688b244e21SEwan Crawford 21698b244e21SEwan Crawford elem.padding = padding; 21708b244e21SEwan Crawford elem.datum_size = data_size + padding; 21718b244e21SEwan Crawford if (log) 2172b3f7f69dSAidan Dodds log->Printf("%s - element size set to %" PRIu32, __FUNCTION__, data_size + padding); 217355232f09SEwan Crawford } 217455232f09SEwan Crawford 217555232f09SEwan Crawford // Given an allocation, this function copies the allocation contents from device into a buffer on the heap. 217655232f09SEwan Crawford // Returning a shared pointer to the buffer containing the data. 217755232f09SEwan Crawford std::shared_ptr<uint8_t> 217855232f09SEwan Crawford RenderScriptRuntime::GetAllocationData(AllocationDetails *allocation, StackFrame *frame_ptr) 217955232f09SEwan Crawford { 218055232f09SEwan Crawford Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_LANGUAGE)); 218155232f09SEwan Crawford 218255232f09SEwan Crawford // JIT all the allocation details 21838b59062aSEwan Crawford if (allocation->shouldRefresh()) 218455232f09SEwan Crawford { 218555232f09SEwan Crawford if (log) 2186b3f7f69dSAidan Dodds log->Printf("%s - allocation details not calculated yet, jitting info", __FUNCTION__); 218755232f09SEwan Crawford 218855232f09SEwan Crawford if (!RefreshAllocation(allocation, frame_ptr)) 218955232f09SEwan Crawford { 219055232f09SEwan Crawford if (log) 2191b3f7f69dSAidan Dodds log->Printf("%s - couldn't JIT allocation details", __FUNCTION__); 219255232f09SEwan Crawford return nullptr; 219355232f09SEwan Crawford } 219455232f09SEwan Crawford } 219555232f09SEwan Crawford 2196b3f7f69dSAidan Dodds assert(allocation->data_ptr.isValid() && allocation->element.type.isValid() && 2197b3f7f69dSAidan Dodds allocation->element.type_vec_size.isValid() && allocation->size.isValid() && 2198b3f7f69dSAidan Dodds "Allocation information not available"); 219955232f09SEwan Crawford 220055232f09SEwan Crawford // Allocate a buffer to copy data into 2201b3f7f69dSAidan Dodds const uint32_t size = *allocation->size.get(); 220255232f09SEwan Crawford std::shared_ptr<uint8_t> buffer(new uint8_t[size]); 220355232f09SEwan Crawford if (!buffer) 220455232f09SEwan Crawford { 220555232f09SEwan Crawford if (log) 2206b3f7f69dSAidan Dodds log->Printf("%s - couldn't allocate a %" PRIu32 " byte buffer", __FUNCTION__, size); 220755232f09SEwan Crawford return nullptr; 220855232f09SEwan Crawford } 220955232f09SEwan Crawford 221055232f09SEwan Crawford // Read the inferior memory 221155232f09SEwan Crawford Error error; 221255232f09SEwan Crawford lldb::addr_t data_ptr = *allocation->data_ptr.get(); 221355232f09SEwan Crawford GetProcess()->ReadMemory(data_ptr, buffer.get(), size, error); 221455232f09SEwan Crawford if (error.Fail()) 221555232f09SEwan Crawford { 221655232f09SEwan Crawford if (log) 2217b3f7f69dSAidan Dodds log->Printf("%s - '%s' Couldn't read %" PRIu32 " bytes of allocation data from 0x%" PRIx64, 2218b3f7f69dSAidan Dodds __FUNCTION__, error.AsCString(), size, data_ptr); 221955232f09SEwan Crawford return nullptr; 222055232f09SEwan Crawford } 222155232f09SEwan Crawford 222255232f09SEwan Crawford return buffer; 222355232f09SEwan Crawford } 222455232f09SEwan Crawford 222555232f09SEwan Crawford // Function copies data from a binary file into an allocation. 222655232f09SEwan Crawford // There is a header at the start of the file, FileHeader, before the data content itself. 222755232f09SEwan Crawford // Information from this header is used to display warnings to the user about incompatabilities 222855232f09SEwan Crawford bool 222955232f09SEwan Crawford RenderScriptRuntime::LoadAllocation(Stream &strm, const uint32_t alloc_id, const char *filename, StackFrame *frame_ptr) 223055232f09SEwan Crawford { 223155232f09SEwan Crawford Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_LANGUAGE)); 223255232f09SEwan Crawford 223355232f09SEwan Crawford // Find allocation with the given id 223455232f09SEwan Crawford AllocationDetails *alloc = FindAllocByID(strm, alloc_id); 223555232f09SEwan Crawford if (!alloc) 223655232f09SEwan Crawford return false; 223755232f09SEwan Crawford 223855232f09SEwan Crawford if (log) 2239b3f7f69dSAidan Dodds log->Printf("%s - found allocation 0x%" PRIx64, __FUNCTION__, *alloc->address.get()); 224055232f09SEwan Crawford 224155232f09SEwan Crawford // JIT all the allocation details 22428b59062aSEwan Crawford if (alloc->shouldRefresh()) 224355232f09SEwan Crawford { 224455232f09SEwan Crawford if (log) 2245b3f7f69dSAidan Dodds log->Printf("%s - allocation details not calculated yet, jitting info.", __FUNCTION__); 224655232f09SEwan Crawford 224755232f09SEwan Crawford if (!RefreshAllocation(alloc, frame_ptr)) 224855232f09SEwan Crawford { 224955232f09SEwan Crawford if (log) 2250b3f7f69dSAidan Dodds log->Printf("%s - couldn't JIT allocation details", __FUNCTION__); 22514cfc9198SSylvestre Ledru return false; 225255232f09SEwan Crawford } 225355232f09SEwan Crawford } 225455232f09SEwan Crawford 2255b3f7f69dSAidan Dodds assert(alloc->data_ptr.isValid() && alloc->element.type.isValid() && alloc->element.type_vec_size.isValid() && 2256b3f7f69dSAidan Dodds alloc->size.isValid() && alloc->element.datum_size.isValid() && "Allocation information not available"); 225755232f09SEwan Crawford 225855232f09SEwan Crawford // Check we can read from file 225955232f09SEwan Crawford FileSpec file(filename, true); 226055232f09SEwan Crawford if (!file.Exists()) 226155232f09SEwan Crawford { 226255232f09SEwan Crawford strm.Printf("Error: File %s does not exist", filename); 226355232f09SEwan Crawford strm.EOL(); 226455232f09SEwan Crawford return false; 226555232f09SEwan Crawford } 226655232f09SEwan Crawford 226755232f09SEwan Crawford if (!file.Readable()) 226855232f09SEwan Crawford { 226955232f09SEwan Crawford strm.Printf("Error: File %s does not have readable permissions", filename); 227055232f09SEwan Crawford strm.EOL(); 227155232f09SEwan Crawford return false; 227255232f09SEwan Crawford } 227355232f09SEwan Crawford 227455232f09SEwan Crawford // Read file into data buffer 227555232f09SEwan Crawford DataBufferSP data_sp(file.ReadFileContents()); 227655232f09SEwan Crawford 227755232f09SEwan Crawford // Cast start of buffer to FileHeader and use pointer to read metadata 227855232f09SEwan Crawford void *file_buffer = data_sp->GetBytes(); 2279b3f7f69dSAidan Dodds if (file_buffer == nullptr || 2280b3f7f69dSAidan Dodds data_sp->GetByteSize() < (sizeof(AllocationDetails::FileHeader) + sizeof(AllocationDetails::ElementHeader))) 228126e52a70SEwan Crawford { 228226e52a70SEwan Crawford strm.Printf("Error: File %s does not contain enough data for header", filename); 228326e52a70SEwan Crawford strm.EOL(); 228426e52a70SEwan Crawford return false; 228526e52a70SEwan Crawford } 228626e52a70SEwan Crawford const AllocationDetails::FileHeader *file_header = static_cast<AllocationDetails::FileHeader *>(file_buffer); 228755232f09SEwan Crawford 228826e52a70SEwan Crawford // Check file starts with ascii characters "RSAD" 2289b3f7f69dSAidan Dodds if (memcmp(file_header->ident, "RSAD", 4)) 229026e52a70SEwan Crawford { 229126e52a70SEwan Crawford strm.Printf("Error: File doesn't contain identifier for an RS allocation dump. Are you sure this is the correct file?"); 229226e52a70SEwan Crawford strm.EOL(); 229326e52a70SEwan Crawford return false; 229426e52a70SEwan Crawford } 229526e52a70SEwan Crawford 229626e52a70SEwan Crawford // Look at the type of the root element in the header 229726e52a70SEwan Crawford AllocationDetails::ElementHeader root_element_header; 229826e52a70SEwan Crawford memcpy(&root_element_header, static_cast<uint8_t *>(file_buffer) + sizeof(AllocationDetails::FileHeader), 229926e52a70SEwan Crawford sizeof(AllocationDetails::ElementHeader)); 230055232f09SEwan Crawford 230155232f09SEwan Crawford if (log) 2302b3f7f69dSAidan Dodds log->Printf("%s - header type %" PRIu32 ", element size %" PRIu32, __FUNCTION__, 230326e52a70SEwan Crawford root_element_header.type, root_element_header.element_size); 230455232f09SEwan Crawford 230555232f09SEwan Crawford // Check if the target allocation and file both have the same number of bytes for an Element 230626e52a70SEwan Crawford if (*alloc->element.datum_size.get() != root_element_header.element_size) 230755232f09SEwan Crawford { 2308b3f7f69dSAidan Dodds strm.Printf("Warning: Mismatched Element sizes - file %" PRIu32 " bytes, allocation %" PRIu32 " bytes", 230926e52a70SEwan Crawford root_element_header.element_size, *alloc->element.datum_size.get()); 231055232f09SEwan Crawford strm.EOL(); 231155232f09SEwan Crawford } 231255232f09SEwan Crawford 231326e52a70SEwan Crawford // Check if the target allocation and file both have the same type 2314b3f7f69dSAidan Dodds const uint32_t alloc_type = static_cast<uint32_t>(*alloc->element.type.get()); 2315b3f7f69dSAidan Dodds const uint32_t file_type = root_element_header.type; 231626e52a70SEwan Crawford 231726e52a70SEwan Crawford if (file_type > Element::RS_TYPE_FONT) 231826e52a70SEwan Crawford { 231926e52a70SEwan Crawford strm.Printf("Warning: File has unknown allocation type"); 232026e52a70SEwan Crawford strm.EOL(); 232126e52a70SEwan Crawford } 232226e52a70SEwan Crawford else if (alloc_type != file_type) 232355232f09SEwan Crawford { 23242e920715SEwan Crawford // Enum value isn't monotonous, so doesn't always index RsDataTypeToString array 2325b3f7f69dSAidan Dodds uint32_t printable_target_type_index = alloc_type; 2326b3f7f69dSAidan Dodds uint32_t printable_head_type_index = file_type; 232726e52a70SEwan Crawford if (alloc_type >= Element::RS_TYPE_ELEMENT && alloc_type <= Element::RS_TYPE_FONT) 2328b3f7f69dSAidan Dodds printable_target_type_index = static_cast<Element::DataType>((alloc_type - Element::RS_TYPE_ELEMENT) + 2329b3f7f69dSAidan Dodds Element::RS_TYPE_MATRIX_2X2 + 1); 23302e920715SEwan Crawford 233126e52a70SEwan Crawford if (file_type >= Element::RS_TYPE_ELEMENT && file_type <= Element::RS_TYPE_FONT) 2332b3f7f69dSAidan Dodds printable_head_type_index = static_cast<Element::DataType>((file_type - Element::RS_TYPE_ELEMENT) + 2333b3f7f69dSAidan Dodds Element::RS_TYPE_MATRIX_2X2 + 1); 23342e920715SEwan Crawford 23352e920715SEwan Crawford const char *file_type_cstr = AllocationDetails::RsDataTypeToString[printable_head_type_index][0]; 23362e920715SEwan Crawford const char *target_type_cstr = AllocationDetails::RsDataTypeToString[printable_target_type_index][0]; 233755232f09SEwan Crawford 2338b3f7f69dSAidan Dodds strm.Printf("Warning: Mismatched Types - file '%s' type, allocation '%s' type", file_type_cstr, 2339b3f7f69dSAidan Dodds target_type_cstr); 234055232f09SEwan Crawford strm.EOL(); 234155232f09SEwan Crawford } 234255232f09SEwan Crawford 234326e52a70SEwan Crawford // Advance buffer past header 234426e52a70SEwan Crawford file_buffer = static_cast<uint8_t *>(file_buffer) + file_header->hdr_size; 234526e52a70SEwan Crawford 234655232f09SEwan Crawford // Calculate size of allocation data in file 234726e52a70SEwan Crawford size_t length = data_sp->GetByteSize() - file_header->hdr_size; 234855232f09SEwan Crawford 234955232f09SEwan Crawford // Check if the target allocation and file both have the same total data size. 2350b3f7f69dSAidan Dodds const uint32_t alloc_size = *alloc->size.get(); 235155232f09SEwan Crawford if (alloc_size != length) 235255232f09SEwan Crawford { 2353b3f7f69dSAidan Dodds strm.Printf("Warning: Mismatched allocation sizes - file 0x%" PRIx64 " bytes, allocation 0x%" PRIx32 " bytes", 2354eba832beSJason Molenda (uint64_t)length, alloc_size); 235555232f09SEwan Crawford strm.EOL(); 235655232f09SEwan Crawford length = alloc_size < length ? alloc_size : length; // Set length to copy to minimum 235755232f09SEwan Crawford } 235855232f09SEwan Crawford 235955232f09SEwan Crawford // Copy file data from our buffer into the target allocation. 236055232f09SEwan Crawford lldb::addr_t alloc_data = *alloc->data_ptr.get(); 236155232f09SEwan Crawford Error error; 236255232f09SEwan Crawford size_t bytes_written = GetProcess()->WriteMemory(alloc_data, file_buffer, length, error); 236355232f09SEwan Crawford if (!error.Success() || bytes_written != length) 236455232f09SEwan Crawford { 236555232f09SEwan Crawford strm.Printf("Error: Couldn't write data to allocation %s", error.AsCString()); 236655232f09SEwan Crawford strm.EOL(); 236755232f09SEwan Crawford return false; 236855232f09SEwan Crawford } 236955232f09SEwan Crawford 2370b3f7f69dSAidan Dodds strm.Printf("Contents of file '%s' read into allocation %" PRIu32, filename, alloc->id); 237155232f09SEwan Crawford strm.EOL(); 237255232f09SEwan Crawford 237355232f09SEwan Crawford return true; 237455232f09SEwan Crawford } 237555232f09SEwan Crawford 237626e52a70SEwan Crawford // Function takes as parameters a byte buffer, which will eventually be written to file as the element header, 237726e52a70SEwan Crawford // an offset into that buffer, and an Element that will be saved into the buffer at the parametrised offset. 237826e52a70SEwan Crawford // Return value is the new offset after writing the element into the buffer. 2379b3f7f69dSAidan Dodds // Elements are saved to the file as the ElementHeader struct followed by offsets to the structs of all the element's 2380b3f7f69dSAidan Dodds // children. 238126e52a70SEwan Crawford size_t 2382b3f7f69dSAidan Dodds RenderScriptRuntime::PopulateElementHeaders(const std::shared_ptr<uint8_t> header_buffer, size_t offset, 2383b3f7f69dSAidan Dodds const Element &elem) 238426e52a70SEwan Crawford { 238526e52a70SEwan Crawford // File struct for an element header with all the relevant details copied from elem. 238626e52a70SEwan Crawford // We assume members are valid already. 238726e52a70SEwan Crawford AllocationDetails::ElementHeader elem_header; 238826e52a70SEwan Crawford elem_header.type = *elem.type.get(); 238926e52a70SEwan Crawford elem_header.kind = *elem.type_kind.get(); 239026e52a70SEwan Crawford elem_header.element_size = *elem.datum_size.get(); 239126e52a70SEwan Crawford elem_header.vector_size = *elem.type_vec_size.get(); 239226e52a70SEwan Crawford elem_header.array_size = elem.array_size.isValid() ? *elem.array_size.get() : 0; 239326e52a70SEwan Crawford const size_t elem_header_size = sizeof(AllocationDetails::ElementHeader); 239426e52a70SEwan Crawford 239526e52a70SEwan Crawford // Copy struct into buffer and advance offset 2396b3f7f69dSAidan Dodds // We assume that header_buffer has been checked for nullptr before this method is called 239726e52a70SEwan Crawford memcpy(header_buffer.get() + offset, &elem_header, elem_header_size); 239826e52a70SEwan Crawford offset += elem_header_size; 239926e52a70SEwan Crawford 240026e52a70SEwan Crawford // Starting offset of child ElementHeader struct 240126e52a70SEwan Crawford size_t child_offset = offset + ((elem.children.size() + 1) * sizeof(uint32_t)); 240226e52a70SEwan Crawford for (const RenderScriptRuntime::Element &child : elem.children) 240326e52a70SEwan Crawford { 240426e52a70SEwan Crawford // Recursively populate the buffer with the element header structs of children. 240526e52a70SEwan Crawford // Then save the offsets where they were set after the parent element header. 240626e52a70SEwan Crawford memcpy(header_buffer.get() + offset, &child_offset, sizeof(uint32_t)); 240726e52a70SEwan Crawford offset += sizeof(uint32_t); 240826e52a70SEwan Crawford 240926e52a70SEwan Crawford child_offset = PopulateElementHeaders(header_buffer, child_offset, child); 241026e52a70SEwan Crawford } 241126e52a70SEwan Crawford 241226e52a70SEwan Crawford // Zero indicates no more children 241326e52a70SEwan Crawford memset(header_buffer.get() + offset, 0, sizeof(uint32_t)); 241426e52a70SEwan Crawford 241526e52a70SEwan Crawford return child_offset; 241626e52a70SEwan Crawford } 241726e52a70SEwan Crawford 2418b3f7f69dSAidan Dodds // Given an Element object this function returns the total size needed in the file header to store the element's 2419b3f7f69dSAidan Dodds // details. 242026e52a70SEwan Crawford // Taking into account the size of the element header struct, plus the offsets to all the element's children. 242126e52a70SEwan Crawford // Function is recursive so that the size of all ancestors is taken into account. 242226e52a70SEwan Crawford size_t 242326e52a70SEwan Crawford RenderScriptRuntime::CalculateElementHeaderSize(const Element &elem) 242426e52a70SEwan Crawford { 242526e52a70SEwan Crawford size_t size = (elem.children.size() + 1) * sizeof(uint32_t); // Offsets to children plus zero terminator 242626e52a70SEwan Crawford size += sizeof(AllocationDetails::ElementHeader); // Size of header struct with type details 242726e52a70SEwan Crawford 242826e52a70SEwan Crawford // Calculate recursively for all descendants 242926e52a70SEwan Crawford for (const Element &child : elem.children) 243026e52a70SEwan Crawford size += CalculateElementHeaderSize(child); 243126e52a70SEwan Crawford 243226e52a70SEwan Crawford return size; 243326e52a70SEwan Crawford } 243426e52a70SEwan Crawford 243555232f09SEwan Crawford // Function copies allocation contents into a binary file. 243655232f09SEwan Crawford // This file can then be loaded later into a different allocation. 243755232f09SEwan Crawford // There is a header, FileHeader, before the allocation data containing meta-data. 243855232f09SEwan Crawford bool 243955232f09SEwan Crawford RenderScriptRuntime::SaveAllocation(Stream &strm, const uint32_t alloc_id, const char *filename, StackFrame *frame_ptr) 244055232f09SEwan Crawford { 244155232f09SEwan Crawford Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_LANGUAGE)); 244255232f09SEwan Crawford 244355232f09SEwan Crawford // Find allocation with the given id 244455232f09SEwan Crawford AllocationDetails *alloc = FindAllocByID(strm, alloc_id); 244555232f09SEwan Crawford if (!alloc) 244655232f09SEwan Crawford return false; 244755232f09SEwan Crawford 244855232f09SEwan Crawford if (log) 2449b3f7f69dSAidan Dodds log->Printf("%s - found allocation 0x%" PRIx64 ".", __FUNCTION__, *alloc->address.get()); 245055232f09SEwan Crawford 245155232f09SEwan Crawford // JIT all the allocation details 24528b59062aSEwan Crawford if (alloc->shouldRefresh()) 245355232f09SEwan Crawford { 245455232f09SEwan Crawford if (log) 2455b3f7f69dSAidan Dodds log->Printf("%s - allocation details not calculated yet, jitting info.", __FUNCTION__); 245655232f09SEwan Crawford 245755232f09SEwan Crawford if (!RefreshAllocation(alloc, frame_ptr)) 245855232f09SEwan Crawford { 245955232f09SEwan Crawford if (log) 2460b3f7f69dSAidan Dodds log->Printf("%s - couldn't JIT allocation details.", __FUNCTION__); 24614cfc9198SSylvestre Ledru return false; 246255232f09SEwan Crawford } 246355232f09SEwan Crawford } 246455232f09SEwan Crawford 2465b3f7f69dSAidan Dodds assert(alloc->data_ptr.isValid() && alloc->element.type.isValid() && alloc->element.type_vec_size.isValid() && 2466b3f7f69dSAidan Dodds alloc->element.datum_size.get() && alloc->element.type_kind.isValid() && alloc->dimension.isValid() && 2467b3f7f69dSAidan Dodds "Allocation information not available"); 246855232f09SEwan Crawford 246955232f09SEwan Crawford // Check we can create writable file 247055232f09SEwan Crawford FileSpec file_spec(filename, true); 247155232f09SEwan Crawford File file(file_spec, File::eOpenOptionWrite | File::eOpenOptionCanCreate | File::eOpenOptionTruncate); 247255232f09SEwan Crawford if (!file) 247355232f09SEwan Crawford { 247455232f09SEwan Crawford strm.Printf("Error: Failed to open '%s' for writing", filename); 247555232f09SEwan Crawford strm.EOL(); 247655232f09SEwan Crawford return false; 247755232f09SEwan Crawford } 247855232f09SEwan Crawford 247955232f09SEwan Crawford // Read allocation into buffer of heap memory 248055232f09SEwan Crawford const std::shared_ptr<uint8_t> buffer = GetAllocationData(alloc, frame_ptr); 248155232f09SEwan Crawford if (!buffer) 248255232f09SEwan Crawford { 248355232f09SEwan Crawford strm.Printf("Error: Couldn't read allocation data into buffer"); 248455232f09SEwan Crawford strm.EOL(); 248555232f09SEwan Crawford return false; 248655232f09SEwan Crawford } 248755232f09SEwan Crawford 248855232f09SEwan Crawford // Create the file header 248955232f09SEwan Crawford AllocationDetails::FileHeader head; 2490b3f7f69dSAidan Dodds memcpy(head.ident, "RSAD", 4); 24912d62328aSEwan Crawford head.dims[0] = static_cast<uint32_t>(alloc->dimension.get()->dim_1); 24922d62328aSEwan Crawford head.dims[1] = static_cast<uint32_t>(alloc->dimension.get()->dim_2); 24932d62328aSEwan Crawford head.dims[2] = static_cast<uint32_t>(alloc->dimension.get()->dim_3); 249426e52a70SEwan Crawford 249526e52a70SEwan Crawford const size_t element_header_size = CalculateElementHeaderSize(alloc->element); 249626e52a70SEwan Crawford assert((sizeof(AllocationDetails::FileHeader) + element_header_size) < UINT16_MAX && "Element header too large"); 249726e52a70SEwan Crawford head.hdr_size = static_cast<uint16_t>(sizeof(AllocationDetails::FileHeader) + element_header_size); 249855232f09SEwan Crawford 249955232f09SEwan Crawford // Write the file header 250055232f09SEwan Crawford size_t num_bytes = sizeof(AllocationDetails::FileHeader); 250126e52a70SEwan Crawford if (log) 2502cec91ef9SGreg Clayton log->Printf("%s - writing File Header, 0x%" PRIx64 " bytes", __FUNCTION__, (uint64_t)num_bytes); 250326e52a70SEwan Crawford 250426e52a70SEwan Crawford Error err = file.Write(&head, num_bytes); 250526e52a70SEwan Crawford if (!err.Success()) 250626e52a70SEwan Crawford { 250726e52a70SEwan Crawford strm.Printf("Error: '%s' when writing to file '%s'", err.AsCString(), filename); 250826e52a70SEwan Crawford strm.EOL(); 250926e52a70SEwan Crawford return false; 251026e52a70SEwan Crawford } 251126e52a70SEwan Crawford 251226e52a70SEwan Crawford // Create the headers describing the element type of the allocation. 251326e52a70SEwan Crawford std::shared_ptr<uint8_t> element_header_buffer(new uint8_t[element_header_size]); 251426e52a70SEwan Crawford if (element_header_buffer == nullptr) 251526e52a70SEwan Crawford { 2516cec91ef9SGreg Clayton strm.Printf("Internal Error: Couldn't allocate %" PRIu64 " bytes on the heap", (uint64_t)element_header_size); 251726e52a70SEwan Crawford strm.EOL(); 251826e52a70SEwan Crawford return false; 251926e52a70SEwan Crawford } 252026e52a70SEwan Crawford 252126e52a70SEwan Crawford PopulateElementHeaders(element_header_buffer, 0, alloc->element); 252226e52a70SEwan Crawford 252326e52a70SEwan Crawford // Write headers for allocation element type to file 252426e52a70SEwan Crawford num_bytes = element_header_size; 252526e52a70SEwan Crawford if (log) 2526cec91ef9SGreg Clayton log->Printf("%s - writing element headers, 0x%" PRIx64 " bytes.", __FUNCTION__, (uint64_t)num_bytes); 252726e52a70SEwan Crawford 252826e52a70SEwan Crawford err = file.Write(element_header_buffer.get(), num_bytes); 252955232f09SEwan Crawford if (!err.Success()) 253055232f09SEwan Crawford { 253155232f09SEwan Crawford strm.Printf("Error: '%s' when writing to file '%s'", err.AsCString(), filename); 253255232f09SEwan Crawford strm.EOL(); 253355232f09SEwan Crawford return false; 253455232f09SEwan Crawford } 253555232f09SEwan Crawford 253655232f09SEwan Crawford // Write allocation data to file 253755232f09SEwan Crawford num_bytes = static_cast<size_t>(*alloc->size.get()); 253855232f09SEwan Crawford if (log) 2539cec91ef9SGreg Clayton log->Printf("%s - writing 0x%" PRIx64 " bytes", __FUNCTION__, (uint64_t)num_bytes); 254055232f09SEwan Crawford 254155232f09SEwan Crawford err = file.Write(buffer.get(), num_bytes); 254255232f09SEwan Crawford if (!err.Success()) 254355232f09SEwan Crawford { 254455232f09SEwan Crawford strm.Printf("Error: '%s' when writing to file '%s'", err.AsCString(), filename); 254555232f09SEwan Crawford strm.EOL(); 254655232f09SEwan Crawford return false; 254755232f09SEwan Crawford } 254855232f09SEwan Crawford 254955232f09SEwan Crawford strm.Printf("Allocation written to file '%s'", filename); 255055232f09SEwan Crawford strm.EOL(); 255115f2bd95SEwan Crawford return true; 255215f2bd95SEwan Crawford } 255315f2bd95SEwan Crawford 25545ec532a9SColin Riley bool 25555ec532a9SColin Riley RenderScriptRuntime::LoadModule(const lldb::ModuleSP &module_sp) 25565ec532a9SColin Riley { 25574640cde1SColin Riley Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_LANGUAGE)); 25584640cde1SColin Riley 25595ec532a9SColin Riley if (module_sp) 25605ec532a9SColin Riley { 25615ec532a9SColin Riley for (const auto &rs_module : m_rsmodules) 25625ec532a9SColin Riley { 25634640cde1SColin Riley if (rs_module->m_module == module_sp) 25647dc7771cSEwan Crawford { 25657dc7771cSEwan Crawford // Check if the user has enabled automatically breaking on 25667dc7771cSEwan Crawford // all RS kernels. 25677dc7771cSEwan Crawford if (m_breakAllKernels) 25687dc7771cSEwan Crawford BreakOnModuleKernels(rs_module); 25697dc7771cSEwan Crawford 25705ec532a9SColin Riley return false; 25715ec532a9SColin Riley } 25727dc7771cSEwan Crawford } 2573ef20b08fSColin Riley bool module_loaded = false; 2574ef20b08fSColin Riley switch (GetModuleKind(module_sp)) 2575ef20b08fSColin Riley { 2576ef20b08fSColin Riley case eModuleKindKernelObj: 2577ef20b08fSColin Riley { 25784640cde1SColin Riley RSModuleDescriptorSP module_desc; 25794640cde1SColin Riley module_desc.reset(new RSModuleDescriptor(module_sp)); 25804640cde1SColin Riley if (module_desc->ParseRSInfo()) 25815ec532a9SColin Riley { 25825ec532a9SColin Riley m_rsmodules.push_back(module_desc); 2583ef20b08fSColin Riley module_loaded = true; 25845ec532a9SColin Riley } 25854640cde1SColin Riley if (module_loaded) 25864640cde1SColin Riley { 25874640cde1SColin Riley FixupScriptDetails(module_desc); 25884640cde1SColin Riley } 2589ef20b08fSColin Riley break; 2590ef20b08fSColin Riley } 2591ef20b08fSColin Riley case eModuleKindDriver: 25924640cde1SColin Riley { 25934640cde1SColin Riley if (!m_libRSDriver) 25944640cde1SColin Riley { 25954640cde1SColin Riley m_libRSDriver = module_sp; 25964640cde1SColin Riley LoadRuntimeHooks(m_libRSDriver, RenderScriptRuntime::eModuleKindDriver); 25974640cde1SColin Riley } 25984640cde1SColin Riley break; 25994640cde1SColin Riley } 2600ef20b08fSColin Riley case eModuleKindImpl: 26014640cde1SColin Riley { 26024640cde1SColin Riley m_libRSCpuRef = module_sp; 26034640cde1SColin Riley break; 26044640cde1SColin Riley } 2605ef20b08fSColin Riley case eModuleKindLibRS: 26064640cde1SColin Riley { 26074640cde1SColin Riley if (!m_libRS) 26084640cde1SColin Riley { 26094640cde1SColin Riley m_libRS = module_sp; 26104640cde1SColin Riley static ConstString gDbgPresentStr("gDebuggerPresent"); 2611b3f7f69dSAidan Dodds const Symbol *debug_present = 2612b3f7f69dSAidan Dodds m_libRS->FindFirstSymbolWithNameAndType(gDbgPresentStr, eSymbolTypeData); 26134640cde1SColin Riley if (debug_present) 26144640cde1SColin Riley { 26154640cde1SColin Riley Error error; 26164640cde1SColin Riley uint32_t flag = 0x00000001U; 26174640cde1SColin Riley Target &target = GetProcess()->GetTarget(); 2618358cf1eaSGreg Clayton addr_t addr = debug_present->GetLoadAddress(&target); 26194640cde1SColin Riley GetProcess()->WriteMemory(addr, &flag, sizeof(flag), error); 26204640cde1SColin Riley if (error.Success()) 26214640cde1SColin Riley { 26224640cde1SColin Riley if (log) 2623b3f7f69dSAidan Dodds log->Printf("%s - debugger present flag set on debugee.", __FUNCTION__); 26244640cde1SColin Riley 26254640cde1SColin Riley m_debuggerPresentFlagged = true; 26264640cde1SColin Riley } 26274640cde1SColin Riley else if (log) 26284640cde1SColin Riley { 2629b3f7f69dSAidan Dodds log->Printf("%s - error writing debugger present flags '%s' ", __FUNCTION__, 2630b3f7f69dSAidan Dodds error.AsCString()); 26314640cde1SColin Riley } 26324640cde1SColin Riley } 26334640cde1SColin Riley else if (log) 26344640cde1SColin Riley { 2635b3f7f69dSAidan Dodds log->Printf("%s - error writing debugger present flags - symbol not found", __FUNCTION__); 26364640cde1SColin Riley } 26374640cde1SColin Riley } 26384640cde1SColin Riley break; 26394640cde1SColin Riley } 2640ef20b08fSColin Riley default: 2641ef20b08fSColin Riley break; 2642ef20b08fSColin Riley } 2643ef20b08fSColin Riley if (module_loaded) 2644ef20b08fSColin Riley Update(); 2645ef20b08fSColin Riley return module_loaded; 26465ec532a9SColin Riley } 26475ec532a9SColin Riley return false; 26485ec532a9SColin Riley } 26495ec532a9SColin Riley 2650ef20b08fSColin Riley void 2651ef20b08fSColin Riley RenderScriptRuntime::Update() 2652ef20b08fSColin Riley { 2653ef20b08fSColin Riley if (m_rsmodules.size() > 0) 2654ef20b08fSColin Riley { 2655ef20b08fSColin Riley if (!m_initiated) 2656ef20b08fSColin Riley { 2657ef20b08fSColin Riley Initiate(); 2658ef20b08fSColin Riley } 2659ef20b08fSColin Riley } 2660ef20b08fSColin Riley } 2661ef20b08fSColin Riley 26625ec532a9SColin Riley // The maximum line length of an .rs.info packet 26635ec532a9SColin Riley #define MAXLINE 500 2664b0be30f7SAidan Dodds #define STRINGIFY(x) #x 2665b0be30f7SAidan Dodds #define MAXLINESTR_(x) "%" STRINGIFY(x) "s" 2666b0be30f7SAidan Dodds #define MAXLINESTR MAXLINESTR_(MAXLINE) 26675ec532a9SColin Riley 26685ec532a9SColin Riley // The .rs.info symbol in renderscript modules contains a string which needs to be parsed. 26695ec532a9SColin Riley // The string is basic and is parsed on a line by line basis. 26705ec532a9SColin Riley bool 26715ec532a9SColin Riley RSModuleDescriptor::ParseRSInfo() 26725ec532a9SColin Riley { 2673b0be30f7SAidan Dodds assert(m_module); 26745ec532a9SColin Riley const Symbol *info_sym = m_module->FindFirstSymbolWithNameAndType(ConstString(".rs.info"), eSymbolTypeData); 2675b0be30f7SAidan Dodds if (!info_sym) 2676b0be30f7SAidan Dodds return false; 2677b0be30f7SAidan Dodds 2678358cf1eaSGreg Clayton const addr_t addr = info_sym->GetAddressRef().GetFileAddress(); 2679b0be30f7SAidan Dodds if (addr == LLDB_INVALID_ADDRESS) 2680b0be30f7SAidan Dodds return false; 2681b0be30f7SAidan Dodds 26825ec532a9SColin Riley const addr_t size = info_sym->GetByteSize(); 26835ec532a9SColin Riley const FileSpec fs = m_module->GetFileSpec(); 26845ec532a9SColin Riley 2685b0be30f7SAidan Dodds const DataBufferSP buffer = fs.ReadFileContents(addr, size); 26865ec532a9SColin Riley if (!buffer) 26875ec532a9SColin Riley return false; 26885ec532a9SColin Riley 2689b0be30f7SAidan Dodds // split rs.info. contents into lines 26905ec532a9SColin Riley std::vector<std::string> info_lines; 26915ec532a9SColin Riley { 2692b0be30f7SAidan Dodds const std::string info((const char *)buffer->GetBytes()); 2693b0be30f7SAidan Dodds for (size_t tail = 0; tail < info.size();) 2694b0be30f7SAidan Dodds { 2695b0be30f7SAidan Dodds // find next new line or end of string 2696b0be30f7SAidan Dodds size_t head = info.find('\n', tail); 2697b0be30f7SAidan Dodds head = (head == std::string::npos) ? info.size() : head; 2698b0be30f7SAidan Dodds std::string line = info.substr(tail, head - tail); 2699b0be30f7SAidan Dodds // add to line list 2700b0be30f7SAidan Dodds info_lines.push_back(line); 2701b0be30f7SAidan Dodds tail = head + 1; 27025ec532a9SColin Riley } 2703b0be30f7SAidan Dodds } 2704b0be30f7SAidan Dodds 27057ccf1373SSaleem Abdulrasool std::array<char, MAXLINE> name{{'\0'}}; 27067ccf1373SSaleem Abdulrasool std::array<char, MAXLINE> value{{'\0'}}; 2707b0be30f7SAidan Dodds 2708b0be30f7SAidan Dodds // parse all text lines of .rs.info 2709b0be30f7SAidan Dodds for (auto line = info_lines.begin(); line != info_lines.end(); ++line) 27105ec532a9SColin Riley { 27115ec532a9SColin Riley uint32_t numDefns = 0; 2712b0be30f7SAidan Dodds if (sscanf(line->c_str(), "exportVarCount: %" PRIu32 "", &numDefns) == 1) 27135ec532a9SColin Riley { 27145ec532a9SColin Riley while (numDefns--) 2715b0be30f7SAidan Dodds m_globals.push_back(RSGlobalDescriptor(this, (++line)->c_str())); 27165ec532a9SColin Riley } 2717b0be30f7SAidan Dodds else if (sscanf(line->c_str(), "exportForEachCount: %" PRIu32 "", &numDefns) == 1) 27185ec532a9SColin Riley { 27195ec532a9SColin Riley while (numDefns--) 27205ec532a9SColin Riley { 27215ec532a9SColin Riley uint32_t slot = 0; 27225ec532a9SColin Riley name[0] = '\0'; 2723b0be30f7SAidan Dodds static const char *fmt_s = "%" PRIu32 " - " MAXLINESTR; 2724b0be30f7SAidan Dodds if (sscanf((++line)->c_str(), fmt_s, &slot, name.data()) == 2) 27255ec532a9SColin Riley { 2726b0be30f7SAidan Dodds if (name[0] != '\0') 2727b0be30f7SAidan Dodds m_kernels.push_back(RSKernelDescriptor(this, name.data(), slot)); 27284640cde1SColin Riley } 27294640cde1SColin Riley } 27304640cde1SColin Riley } 2731b0be30f7SAidan Dodds else if (sscanf(line->c_str(), "pragmaCount: %" PRIu32 "", &numDefns) == 1) 27324640cde1SColin Riley { 27334640cde1SColin Riley while (numDefns--) 27344640cde1SColin Riley { 2735b0be30f7SAidan Dodds name[0] = value[0] = '\0'; 2736b0be30f7SAidan Dodds static const char *fmt_s = MAXLINESTR " - " MAXLINESTR; 2737b0be30f7SAidan Dodds if (sscanf((++line)->c_str(), fmt_s, name.data(), value.data()) != 0) 27384640cde1SColin Riley { 2739b0be30f7SAidan Dodds if (name[0] != '\0') 2740b0be30f7SAidan Dodds m_pragmas[std::string(name.data())] = value.data(); 27415ec532a9SColin Riley } 27425ec532a9SColin Riley } 27435ec532a9SColin Riley } 2744b0be30f7SAidan Dodds else 27455ec532a9SColin Riley { 2746b0be30f7SAidan Dodds Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_LANGUAGE)); 2747b0be30f7SAidan Dodds if (log) 2748b0be30f7SAidan Dodds { 2749b0be30f7SAidan Dodds log->Printf("%s - skipping .rs.info field '%s'", __FUNCTION__, line->c_str()); 2750b0be30f7SAidan Dodds } 2751b0be30f7SAidan Dodds } 27525ec532a9SColin Riley } 27535ec532a9SColin Riley 2754b0be30f7SAidan Dodds // 'root' kernel should always be present 27555ec532a9SColin Riley return m_kernels.size() > 0; 27565ec532a9SColin Riley } 27575ec532a9SColin Riley 27585ec532a9SColin Riley void 27594640cde1SColin Riley RenderScriptRuntime::Status(Stream &strm) const 27604640cde1SColin Riley { 27614640cde1SColin Riley if (m_libRS) 27624640cde1SColin Riley { 27634640cde1SColin Riley strm.Printf("Runtime Library discovered."); 27644640cde1SColin Riley strm.EOL(); 27654640cde1SColin Riley } 27664640cde1SColin Riley if (m_libRSDriver) 27674640cde1SColin Riley { 27684640cde1SColin Riley strm.Printf("Runtime Driver discovered."); 27694640cde1SColin Riley strm.EOL(); 27704640cde1SColin Riley } 27714640cde1SColin Riley if (m_libRSCpuRef) 27724640cde1SColin Riley { 27734640cde1SColin Riley strm.Printf("CPU Reference Implementation discovered."); 27744640cde1SColin Riley strm.EOL(); 27754640cde1SColin Riley } 27764640cde1SColin Riley 27774640cde1SColin Riley if (m_runtimeHooks.size()) 27784640cde1SColin Riley { 27794640cde1SColin Riley strm.Printf("Runtime functions hooked:"); 27804640cde1SColin Riley strm.EOL(); 27814640cde1SColin Riley for (auto b : m_runtimeHooks) 27824640cde1SColin Riley { 27834640cde1SColin Riley strm.Indent(b.second->defn->name); 27844640cde1SColin Riley strm.EOL(); 27854640cde1SColin Riley } 27864640cde1SColin Riley } 27874640cde1SColin Riley else 27884640cde1SColin Riley { 27894640cde1SColin Riley strm.Printf("Runtime is not hooked."); 27904640cde1SColin Riley strm.EOL(); 27914640cde1SColin Riley } 27924640cde1SColin Riley } 27934640cde1SColin Riley 27944640cde1SColin Riley void 27954640cde1SColin Riley RenderScriptRuntime::DumpContexts(Stream &strm) const 27964640cde1SColin Riley { 27974640cde1SColin Riley strm.Printf("Inferred RenderScript Contexts:"); 27984640cde1SColin Riley strm.EOL(); 27994640cde1SColin Riley strm.IndentMore(); 28004640cde1SColin Riley 28014640cde1SColin Riley std::map<addr_t, uint64_t> contextReferences; 28024640cde1SColin Riley 280378f339d1SEwan Crawford // Iterate over all of the currently discovered scripts. 280478f339d1SEwan Crawford // Note: We cant push or pop from m_scripts inside this loop or it may invalidate script. 28054640cde1SColin Riley for (const auto &script : m_scripts) 28064640cde1SColin Riley { 280778f339d1SEwan Crawford if (!script->context.isValid()) 280878f339d1SEwan Crawford continue; 280978f339d1SEwan Crawford lldb::addr_t context = *script->context; 281078f339d1SEwan Crawford 281178f339d1SEwan Crawford if (contextReferences.find(context) != contextReferences.end()) 28124640cde1SColin Riley { 281378f339d1SEwan Crawford contextReferences[context]++; 28144640cde1SColin Riley } 28154640cde1SColin Riley else 28164640cde1SColin Riley { 281778f339d1SEwan Crawford contextReferences[context] = 1; 28184640cde1SColin Riley } 28194640cde1SColin Riley } 28204640cde1SColin Riley 28214640cde1SColin Riley for (const auto &cRef : contextReferences) 28224640cde1SColin Riley { 28234640cde1SColin Riley strm.Printf("Context 0x%" PRIx64 ": %" PRIu64 " script instances", cRef.first, cRef.second); 28244640cde1SColin Riley strm.EOL(); 28254640cde1SColin Riley } 28264640cde1SColin Riley strm.IndentLess(); 28274640cde1SColin Riley } 28284640cde1SColin Riley 28294640cde1SColin Riley void 28304640cde1SColin Riley RenderScriptRuntime::DumpKernels(Stream &strm) const 28314640cde1SColin Riley { 28324640cde1SColin Riley strm.Printf("RenderScript Kernels:"); 28334640cde1SColin Riley strm.EOL(); 28344640cde1SColin Riley strm.IndentMore(); 28354640cde1SColin Riley for (const auto &module : m_rsmodules) 28364640cde1SColin Riley { 28374640cde1SColin Riley strm.Printf("Resource '%s':", module->m_resname.c_str()); 28384640cde1SColin Riley strm.EOL(); 28394640cde1SColin Riley for (const auto &kernel : module->m_kernels) 28404640cde1SColin Riley { 28414640cde1SColin Riley strm.Indent(kernel.m_name.AsCString()); 28424640cde1SColin Riley strm.EOL(); 28434640cde1SColin Riley } 28444640cde1SColin Riley } 28454640cde1SColin Riley strm.IndentLess(); 28464640cde1SColin Riley } 28474640cde1SColin Riley 2848a0f08674SEwan Crawford RenderScriptRuntime::AllocationDetails * 2849a0f08674SEwan Crawford RenderScriptRuntime::FindAllocByID(Stream &strm, const uint32_t alloc_id) 2850a0f08674SEwan Crawford { 2851a0f08674SEwan Crawford AllocationDetails *alloc = nullptr; 2852a0f08674SEwan Crawford 2853a0f08674SEwan Crawford // See if we can find allocation using id as an index; 2854b3f7f69dSAidan Dodds if (alloc_id <= m_allocations.size() && alloc_id != 0 && m_allocations[alloc_id - 1]->id == alloc_id) 2855a0f08674SEwan Crawford { 2856a0f08674SEwan Crawford alloc = m_allocations[alloc_id - 1].get(); 2857a0f08674SEwan Crawford return alloc; 2858a0f08674SEwan Crawford } 2859a0f08674SEwan Crawford 2860a0f08674SEwan Crawford // Fallback to searching 2861a0f08674SEwan Crawford for (const auto &a : m_allocations) 2862a0f08674SEwan Crawford { 2863a0f08674SEwan Crawford if (a->id == alloc_id) 2864a0f08674SEwan Crawford { 2865a0f08674SEwan Crawford alloc = a.get(); 2866a0f08674SEwan Crawford break; 2867a0f08674SEwan Crawford } 2868a0f08674SEwan Crawford } 2869a0f08674SEwan Crawford 2870a0f08674SEwan Crawford if (alloc == nullptr) 2871a0f08674SEwan Crawford { 2872b3f7f69dSAidan Dodds strm.Printf("Error: Couldn't find allocation with id matching %" PRIu32, alloc_id); 2873a0f08674SEwan Crawford strm.EOL(); 2874a0f08674SEwan Crawford } 2875a0f08674SEwan Crawford 2876a0f08674SEwan Crawford return alloc; 2877a0f08674SEwan Crawford } 2878a0f08674SEwan Crawford 2879a0f08674SEwan Crawford // Prints the contents of an allocation to the output stream, which may be a file 2880a0f08674SEwan Crawford bool 2881a0f08674SEwan Crawford RenderScriptRuntime::DumpAllocation(Stream &strm, StackFrame *frame_ptr, const uint32_t id) 2882a0f08674SEwan Crawford { 2883a0f08674SEwan Crawford Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_LANGUAGE)); 2884a0f08674SEwan Crawford 2885a0f08674SEwan Crawford // Check we can find the desired allocation 2886a0f08674SEwan Crawford AllocationDetails *alloc = FindAllocByID(strm, id); 2887a0f08674SEwan Crawford if (!alloc) 2888a0f08674SEwan Crawford return false; // FindAllocByID() will print error message for us here 2889a0f08674SEwan Crawford 2890a0f08674SEwan Crawford if (log) 2891b3f7f69dSAidan Dodds log->Printf("%s - found allocation 0x%" PRIx64, __FUNCTION__, *alloc->address.get()); 2892a0f08674SEwan Crawford 2893a0f08674SEwan Crawford // Check we have information about the allocation, if not calculate it 28948b59062aSEwan Crawford if (alloc->shouldRefresh()) 2895a0f08674SEwan Crawford { 2896a0f08674SEwan Crawford if (log) 2897b3f7f69dSAidan Dodds log->Printf("%s - allocation details not calculated yet, jitting info.", __FUNCTION__); 2898a0f08674SEwan Crawford 2899a0f08674SEwan Crawford // JIT all the allocation information 2900a0f08674SEwan Crawford if (!RefreshAllocation(alloc, frame_ptr)) 2901a0f08674SEwan Crawford { 2902a0f08674SEwan Crawford strm.Printf("Error: Couldn't JIT allocation details"); 2903a0f08674SEwan Crawford strm.EOL(); 2904a0f08674SEwan Crawford return false; 2905a0f08674SEwan Crawford } 2906a0f08674SEwan Crawford } 2907a0f08674SEwan Crawford 2908a0f08674SEwan Crawford // Establish format and size of each data element 2909b3f7f69dSAidan Dodds const uint32_t vec_size = *alloc->element.type_vec_size.get(); 29108b244e21SEwan Crawford const Element::DataType type = *alloc->element.type.get(); 2911a0f08674SEwan Crawford 2912b3f7f69dSAidan Dodds assert(type >= Element::RS_TYPE_NONE && type <= Element::RS_TYPE_FONT && "Invalid allocation type"); 2913a0f08674SEwan Crawford 29142e920715SEwan Crawford lldb::Format format; 29152e920715SEwan Crawford if (type >= Element::RS_TYPE_ELEMENT) 29162e920715SEwan Crawford format = eFormatHex; 29172e920715SEwan Crawford else 29182e920715SEwan Crawford format = vec_size == 1 ? static_cast<lldb::Format>(AllocationDetails::RSTypeToFormat[type][eFormatSingle]) 2919a0f08674SEwan Crawford : static_cast<lldb::Format>(AllocationDetails::RSTypeToFormat[type][eFormatVector]); 2920a0f08674SEwan Crawford 2921b3f7f69dSAidan Dodds const uint32_t data_size = *alloc->element.datum_size.get(); 2922a0f08674SEwan Crawford 2923a0f08674SEwan Crawford if (log) 2924b3f7f69dSAidan Dodds log->Printf("%s - element size %" PRIu32 " bytes, including padding", __FUNCTION__, data_size); 2925a0f08674SEwan Crawford 292655232f09SEwan Crawford // Allocate a buffer to copy data into 292755232f09SEwan Crawford std::shared_ptr<uint8_t> buffer = GetAllocationData(alloc, frame_ptr); 292855232f09SEwan Crawford if (!buffer) 292955232f09SEwan Crawford { 29302e920715SEwan Crawford strm.Printf("Error: Couldn't read allocation data"); 293155232f09SEwan Crawford strm.EOL(); 293255232f09SEwan Crawford return false; 293355232f09SEwan Crawford } 293455232f09SEwan Crawford 2935a0f08674SEwan Crawford // Calculate stride between rows as there may be padding at end of rows since 2936a0f08674SEwan Crawford // allocated memory is 16-byte aligned 2937a0f08674SEwan Crawford if (!alloc->stride.isValid()) 2938a0f08674SEwan Crawford { 2939a0f08674SEwan Crawford if (alloc->dimension.get()->dim_2 == 0) // We only have one dimension 2940a0f08674SEwan Crawford alloc->stride = 0; 2941a0f08674SEwan Crawford else if (!JITAllocationStride(alloc, frame_ptr)) 2942a0f08674SEwan Crawford { 2943a0f08674SEwan Crawford strm.Printf("Error: Couldn't calculate allocation row stride"); 2944a0f08674SEwan Crawford strm.EOL(); 2945a0f08674SEwan Crawford return false; 2946a0f08674SEwan Crawford } 2947a0f08674SEwan Crawford } 2948b3f7f69dSAidan Dodds const uint32_t stride = *alloc->stride.get(); 2949b3f7f69dSAidan Dodds const uint32_t size = *alloc->size.get(); // Size of whole allocation 2950b3f7f69dSAidan Dodds const uint32_t padding = alloc->element.padding.isValid() ? *alloc->element.padding.get() : 0; 2951a0f08674SEwan Crawford if (log) 2952b3f7f69dSAidan Dodds log->Printf("%s - stride %" PRIu32 " bytes, size %" PRIu32 " bytes, padding %" PRIu32, 2953b3f7f69dSAidan Dodds __FUNCTION__, stride, size, padding); 2954a0f08674SEwan Crawford 2955a0f08674SEwan Crawford // Find dimensions used to index loops, so need to be non-zero 2956b3f7f69dSAidan Dodds uint32_t dim_x = alloc->dimension.get()->dim_1; 2957a0f08674SEwan Crawford dim_x = dim_x == 0 ? 1 : dim_x; 2958a0f08674SEwan Crawford 2959b3f7f69dSAidan Dodds uint32_t dim_y = alloc->dimension.get()->dim_2; 2960a0f08674SEwan Crawford dim_y = dim_y == 0 ? 1 : dim_y; 2961a0f08674SEwan Crawford 2962b3f7f69dSAidan Dodds uint32_t dim_z = alloc->dimension.get()->dim_3; 2963a0f08674SEwan Crawford dim_z = dim_z == 0 ? 1 : dim_z; 2964a0f08674SEwan Crawford 296555232f09SEwan Crawford // Use data extractor to format output 296655232f09SEwan Crawford const uint32_t archByteSize = GetProcess()->GetTarget().GetArchitecture().GetAddressByteSize(); 296755232f09SEwan Crawford DataExtractor alloc_data(buffer.get(), size, GetProcess()->GetByteOrder(), archByteSize); 296855232f09SEwan Crawford 2969b3f7f69dSAidan Dodds uint32_t offset = 0; // Offset in buffer to next element to be printed 2970b3f7f69dSAidan Dodds uint32_t prev_row = 0; // Offset to the start of the previous row 2971a0f08674SEwan Crawford 2972a0f08674SEwan Crawford // Iterate over allocation dimensions, printing results to user 2973a0f08674SEwan Crawford strm.Printf("Data (X, Y, Z):"); 2974b3f7f69dSAidan Dodds for (uint32_t z = 0; z < dim_z; ++z) 2975a0f08674SEwan Crawford { 2976b3f7f69dSAidan Dodds for (uint32_t y = 0; y < dim_y; ++y) 2977a0f08674SEwan Crawford { 2978a0f08674SEwan Crawford // Use stride to index start of next row. 2979a0f08674SEwan Crawford if (!(y == 0 && z == 0)) 2980a0f08674SEwan Crawford offset = prev_row + stride; 2981a0f08674SEwan Crawford prev_row = offset; 2982a0f08674SEwan Crawford 2983a0f08674SEwan Crawford // Print each element in the row individually 2984b3f7f69dSAidan Dodds for (uint32_t x = 0; x < dim_x; ++x) 2985a0f08674SEwan Crawford { 2986b3f7f69dSAidan Dodds strm.Printf("\n(%" PRIu32 ", %" PRIu32 ", %" PRIu32 ") = ", x, y, z); 29878b244e21SEwan Crawford if ((type == Element::RS_TYPE_NONE) && (alloc->element.children.size() > 0) && 2988fe06b5adSAdrian McCarthy (alloc->element.type_name != Element::GetFallbackStructName())) 29898b244e21SEwan Crawford { 29908b244e21SEwan Crawford // Here we are dumping an Element of struct type. 29918b244e21SEwan Crawford // This is done using expression evaluation with the name of the struct type and pointer to element. 29928b244e21SEwan Crawford 29938b244e21SEwan Crawford // Don't print the name of the resulting expression, since this will be '$[0-9]+' 29948b244e21SEwan Crawford DumpValueObjectOptions expr_options; 29958b244e21SEwan Crawford expr_options.SetHideName(true); 29968b244e21SEwan Crawford 29978b244e21SEwan Crawford // Setup expression as derefrencing a pointer cast to element address. 2998ea0636b5SEwan Crawford char expr_char_buffer[jit_max_expr_size]; 2999ea0636b5SEwan Crawford int chars_written = snprintf(expr_char_buffer, jit_max_expr_size, "*(%s*) 0x%" PRIx64, 30008b244e21SEwan Crawford alloc->element.type_name.AsCString(), *alloc->data_ptr.get() + offset); 30018b244e21SEwan Crawford 3002ea0636b5SEwan Crawford if (chars_written < 0 || chars_written >= jit_max_expr_size) 30038b244e21SEwan Crawford { 30048b244e21SEwan Crawford if (log) 3005b3f7f69dSAidan Dodds log->Printf("%s - error in snprintf().", __FUNCTION__); 30068b244e21SEwan Crawford continue; 30078b244e21SEwan Crawford } 30088b244e21SEwan Crawford 30098b244e21SEwan Crawford // Evaluate expression 30108b244e21SEwan Crawford ValueObjectSP expr_result; 30118b244e21SEwan Crawford GetProcess()->GetTarget().EvaluateExpression(expr_char_buffer, frame_ptr, expr_result); 30128b244e21SEwan Crawford 30138b244e21SEwan Crawford // Print the results to our stream. 30148b244e21SEwan Crawford expr_result->Dump(strm, expr_options); 30158b244e21SEwan Crawford } 30168b244e21SEwan Crawford else 30178b244e21SEwan Crawford { 30188b244e21SEwan Crawford alloc_data.Dump(&strm, offset, format, data_size - padding, 1, 1, LLDB_INVALID_ADDRESS, 0, 0); 30198b244e21SEwan Crawford } 30208b244e21SEwan Crawford offset += data_size; 3021a0f08674SEwan Crawford } 3022a0f08674SEwan Crawford } 3023a0f08674SEwan Crawford } 3024a0f08674SEwan Crawford strm.EOL(); 3025a0f08674SEwan Crawford 3026a0f08674SEwan Crawford return true; 3027a0f08674SEwan Crawford } 3028a0f08674SEwan Crawford 30290d2bfcfbSEwan Crawford // Function recalculates all our cached information about allocations by jitting the 30300d2bfcfbSEwan Crawford // RS runtime regarding each allocation we know about. 30310d2bfcfbSEwan Crawford // Returns true if all allocations could be recomputed, false otherwise. 30320d2bfcfbSEwan Crawford bool 30330d2bfcfbSEwan Crawford RenderScriptRuntime::RecomputeAllAllocations(Stream &strm, StackFrame *frame_ptr) 30340d2bfcfbSEwan Crawford { 30350d2bfcfbSEwan Crawford bool success = true; 30360d2bfcfbSEwan Crawford for (auto &alloc : m_allocations) 30370d2bfcfbSEwan Crawford { 30380d2bfcfbSEwan Crawford // JIT current allocation information 30390d2bfcfbSEwan Crawford if (!RefreshAllocation(alloc.get(), frame_ptr)) 30400d2bfcfbSEwan Crawford { 30410d2bfcfbSEwan Crawford strm.Printf("Error: Couldn't evaluate details for allocation %" PRIu32 "\n", alloc->id); 30420d2bfcfbSEwan Crawford success = false; 30430d2bfcfbSEwan Crawford } 30440d2bfcfbSEwan Crawford } 30450d2bfcfbSEwan Crawford 30460d2bfcfbSEwan Crawford if (success) 30470d2bfcfbSEwan Crawford strm.Printf("All allocations successfully recomputed"); 30480d2bfcfbSEwan Crawford strm.EOL(); 30490d2bfcfbSEwan Crawford 30500d2bfcfbSEwan Crawford return success; 30510d2bfcfbSEwan Crawford } 30520d2bfcfbSEwan Crawford 3053b649b005SEwan Crawford // Prints information regarding currently loaded allocations. 305415f2bd95SEwan Crawford // These details are gathered by jitting the runtime, which has as latency. 3055b649b005SEwan Crawford // Index parameter specifies a single allocation ID to print, or a zero value to print them all 305615f2bd95SEwan Crawford void 3057b649b005SEwan Crawford RenderScriptRuntime::ListAllocations(Stream &strm, StackFrame *frame_ptr, const uint32_t index) 305815f2bd95SEwan Crawford { 305915f2bd95SEwan Crawford strm.Printf("RenderScript Allocations:"); 306015f2bd95SEwan Crawford strm.EOL(); 306115f2bd95SEwan Crawford strm.IndentMore(); 306215f2bd95SEwan Crawford 306315f2bd95SEwan Crawford for (auto &alloc : m_allocations) 306415f2bd95SEwan Crawford { 3065b649b005SEwan Crawford // index will only be zero if we want to print all allocations 3066b649b005SEwan Crawford if (index != 0 && index != alloc->id) 3067b649b005SEwan Crawford continue; 306815f2bd95SEwan Crawford 306915f2bd95SEwan Crawford // JIT current allocation information 3070b649b005SEwan Crawford if (alloc->shouldRefresh() && !RefreshAllocation(alloc.get(), frame_ptr)) 307115f2bd95SEwan Crawford { 3072b3f7f69dSAidan Dodds strm.Printf("Error: Couldn't evaluate details for allocation %" PRIu32, alloc->id); 3073b3f7f69dSAidan Dodds strm.EOL(); 307415f2bd95SEwan Crawford continue; 307515f2bd95SEwan Crawford } 307615f2bd95SEwan Crawford 3077b3f7f69dSAidan Dodds strm.Printf("%" PRIu32 ":", alloc->id); 3078b3f7f69dSAidan Dodds strm.EOL(); 307915f2bd95SEwan Crawford strm.IndentMore(); 308015f2bd95SEwan Crawford 308115f2bd95SEwan Crawford strm.Indent("Context: "); 308215f2bd95SEwan Crawford if (!alloc->context.isValid()) 308315f2bd95SEwan Crawford strm.Printf("unknown\n"); 308415f2bd95SEwan Crawford else 308515f2bd95SEwan Crawford strm.Printf("0x%" PRIx64 "\n", *alloc->context.get()); 308615f2bd95SEwan Crawford 308715f2bd95SEwan Crawford strm.Indent("Address: "); 308815f2bd95SEwan Crawford if (!alloc->address.isValid()) 308915f2bd95SEwan Crawford strm.Printf("unknown\n"); 309015f2bd95SEwan Crawford else 309115f2bd95SEwan Crawford strm.Printf("0x%" PRIx64 "\n", *alloc->address.get()); 309215f2bd95SEwan Crawford 309315f2bd95SEwan Crawford strm.Indent("Data pointer: "); 309415f2bd95SEwan Crawford if (!alloc->data_ptr.isValid()) 309515f2bd95SEwan Crawford strm.Printf("unknown\n"); 309615f2bd95SEwan Crawford else 309715f2bd95SEwan Crawford strm.Printf("0x%" PRIx64 "\n", *alloc->data_ptr.get()); 309815f2bd95SEwan Crawford 309915f2bd95SEwan Crawford strm.Indent("Dimensions: "); 310015f2bd95SEwan Crawford if (!alloc->dimension.isValid()) 310115f2bd95SEwan Crawford strm.Printf("unknown\n"); 310215f2bd95SEwan Crawford else 3103b3f7f69dSAidan Dodds strm.Printf("(%" PRId32 ", %" PRId32 ", %" PRId32 ")\n", 3104b3f7f69dSAidan Dodds alloc->dimension.get()->dim_1, alloc->dimension.get()->dim_2, alloc->dimension.get()->dim_3); 310515f2bd95SEwan Crawford 310615f2bd95SEwan Crawford strm.Indent("Data Type: "); 31078b244e21SEwan Crawford if (!alloc->element.type.isValid() || !alloc->element.type_vec_size.isValid()) 310815f2bd95SEwan Crawford strm.Printf("unknown\n"); 310915f2bd95SEwan Crawford else 311015f2bd95SEwan Crawford { 31118b244e21SEwan Crawford const int vector_size = *alloc->element.type_vec_size.get(); 31122e920715SEwan Crawford Element::DataType type = *alloc->element.type.get(); 311315f2bd95SEwan Crawford 31148b244e21SEwan Crawford if (!alloc->element.type_name.IsEmpty()) 31158b244e21SEwan Crawford strm.Printf("%s\n", alloc->element.type_name.AsCString()); 31162e920715SEwan Crawford else 31172e920715SEwan Crawford { 31182e920715SEwan Crawford // Enum value isn't monotonous, so doesn't always index RsDataTypeToString array 31192e920715SEwan Crawford if (type >= Element::RS_TYPE_ELEMENT && type <= Element::RS_TYPE_FONT) 3120b3f7f69dSAidan Dodds type = static_cast<Element::DataType>((type - Element::RS_TYPE_ELEMENT) + 3121b3f7f69dSAidan Dodds Element::RS_TYPE_MATRIX_2X2 + 1); 31222e920715SEwan Crawford 3123b3f7f69dSAidan Dodds if (type >= (sizeof(AllocationDetails::RsDataTypeToString) / 3124b3f7f69dSAidan Dodds sizeof(AllocationDetails::RsDataTypeToString[0])) || 3125b3f7f69dSAidan Dodds vector_size > 4 || vector_size < 1) 312615f2bd95SEwan Crawford strm.Printf("invalid type\n"); 312715f2bd95SEwan Crawford else 3128b3f7f69dSAidan Dodds strm.Printf("%s\n", AllocationDetails::RsDataTypeToString[static_cast<uint32_t>(type)] 3129b3f7f69dSAidan Dodds [vector_size - 1]); 313015f2bd95SEwan Crawford } 31312e920715SEwan Crawford } 313215f2bd95SEwan Crawford 313315f2bd95SEwan Crawford strm.Indent("Data Kind: "); 31348b244e21SEwan Crawford if (!alloc->element.type_kind.isValid()) 313515f2bd95SEwan Crawford strm.Printf("unknown\n"); 313615f2bd95SEwan Crawford else 313715f2bd95SEwan Crawford { 31388b244e21SEwan Crawford const Element::DataKind kind = *alloc->element.type_kind.get(); 31398b244e21SEwan Crawford if (kind < Element::RS_KIND_USER || kind > Element::RS_KIND_PIXEL_YUV) 314015f2bd95SEwan Crawford strm.Printf("invalid kind\n"); 314115f2bd95SEwan Crawford else 3142b3f7f69dSAidan Dodds strm.Printf("%s\n", AllocationDetails::RsDataKindToString[static_cast<uint32_t>(kind)]); 314315f2bd95SEwan Crawford } 314415f2bd95SEwan Crawford 314515f2bd95SEwan Crawford strm.EOL(); 314615f2bd95SEwan Crawford strm.IndentLess(); 314715f2bd95SEwan Crawford } 314815f2bd95SEwan Crawford strm.IndentLess(); 314915f2bd95SEwan Crawford } 315015f2bd95SEwan Crawford 31517dc7771cSEwan Crawford // Set breakpoints on every kernel found in RS module 31527dc7771cSEwan Crawford void 31537dc7771cSEwan Crawford RenderScriptRuntime::BreakOnModuleKernels(const RSModuleDescriptorSP rsmodule_sp) 31547dc7771cSEwan Crawford { 31557dc7771cSEwan Crawford for (const auto &kernel : rsmodule_sp->m_kernels) 31567dc7771cSEwan Crawford { 31577dc7771cSEwan Crawford // Don't set breakpoint on 'root' kernel 31587dc7771cSEwan Crawford if (strcmp(kernel.m_name.AsCString(), "root") == 0) 31597dc7771cSEwan Crawford continue; 31607dc7771cSEwan Crawford 31617dc7771cSEwan Crawford CreateKernelBreakpoint(kernel.m_name); 31627dc7771cSEwan Crawford } 31637dc7771cSEwan Crawford } 31647dc7771cSEwan Crawford 31657dc7771cSEwan Crawford // Method is internally called by the 'kernel breakpoint all' command to 31667dc7771cSEwan Crawford // enable or disable breaking on all kernels. 31677dc7771cSEwan Crawford // 31687dc7771cSEwan Crawford // When do_break is true we want to enable this functionality. 31697dc7771cSEwan Crawford // When do_break is false we want to disable it. 31707dc7771cSEwan Crawford void 31717dc7771cSEwan Crawford RenderScriptRuntime::SetBreakAllKernels(bool do_break, TargetSP target) 31727dc7771cSEwan Crawford { 317354782db7SEwan Crawford Log *log(GetLogIfAnyCategoriesSet(LIBLLDB_LOG_LANGUAGE | LIBLLDB_LOG_BREAKPOINTS)); 31747dc7771cSEwan Crawford 31757dc7771cSEwan Crawford InitSearchFilter(target); 31767dc7771cSEwan Crawford 31777dc7771cSEwan Crawford // Set breakpoints on all the kernels 31787dc7771cSEwan Crawford if (do_break && !m_breakAllKernels) 31797dc7771cSEwan Crawford { 31807dc7771cSEwan Crawford m_breakAllKernels = true; 31817dc7771cSEwan Crawford 31827dc7771cSEwan Crawford for (const auto &module : m_rsmodules) 31837dc7771cSEwan Crawford BreakOnModuleKernels(module); 31847dc7771cSEwan Crawford 31857dc7771cSEwan Crawford if (log) 3186b3f7f69dSAidan Dodds log->Printf("%s(True) - breakpoints set on all currently loaded kernels.", __FUNCTION__); 31877dc7771cSEwan Crawford } 31887dc7771cSEwan Crawford else if (!do_break && m_breakAllKernels) // Breakpoints won't be set on any new kernels. 31897dc7771cSEwan Crawford { 31907dc7771cSEwan Crawford m_breakAllKernels = false; 31917dc7771cSEwan Crawford 31927dc7771cSEwan Crawford if (log) 3193b3f7f69dSAidan Dodds log->Printf("%s(False) - breakpoints no longer automatically set.", __FUNCTION__); 31947dc7771cSEwan Crawford } 31957dc7771cSEwan Crawford } 31967dc7771cSEwan Crawford 31977dc7771cSEwan Crawford // Given the name of a kernel this function creates a breakpoint using our 31987dc7771cSEwan Crawford // own breakpoint resolver, and returns the Breakpoint shared pointer. 31997dc7771cSEwan Crawford BreakpointSP 32007dc7771cSEwan Crawford RenderScriptRuntime::CreateKernelBreakpoint(const ConstString &name) 32017dc7771cSEwan Crawford { 320254782db7SEwan Crawford Log *log(GetLogIfAnyCategoriesSet(LIBLLDB_LOG_LANGUAGE | LIBLLDB_LOG_BREAKPOINTS)); 32037dc7771cSEwan Crawford 32047dc7771cSEwan Crawford if (!m_filtersp) 32057dc7771cSEwan Crawford { 32067dc7771cSEwan Crawford if (log) 3207b3f7f69dSAidan Dodds log->Printf("%s - error, no breakpoint search filter set.", __FUNCTION__); 32087dc7771cSEwan Crawford return nullptr; 32097dc7771cSEwan Crawford } 32107dc7771cSEwan Crawford 32117dc7771cSEwan Crawford BreakpointResolverSP resolver_sp(new RSBreakpointResolver(nullptr, name)); 32127dc7771cSEwan Crawford BreakpointSP bp = GetProcess()->GetTarget().CreateBreakpoint(m_filtersp, resolver_sp, false, false, false); 32137dc7771cSEwan Crawford 321454782db7SEwan Crawford // Give RS breakpoints a specific name, so the user can manipulate them as a group. 321554782db7SEwan Crawford Error err; 321654782db7SEwan Crawford if (!bp->AddName("RenderScriptKernel", err) && log) 3217b3f7f69dSAidan Dodds log->Printf("%s - error setting break name, '%s'.", __FUNCTION__, err.AsCString()); 321854782db7SEwan Crawford 32197dc7771cSEwan Crawford return bp; 32207dc7771cSEwan Crawford } 32217dc7771cSEwan Crawford 3222018f5a7eSEwan Crawford // Given an expression for a variable this function tries to calculate the variable's value. 3223018f5a7eSEwan Crawford // If this is possible it returns true and sets the uint64_t parameter to the variables unsigned value. 3224018f5a7eSEwan Crawford // Otherwise function returns false. 3225018f5a7eSEwan Crawford bool 3226018f5a7eSEwan Crawford RenderScriptRuntime::GetFrameVarAsUnsigned(const StackFrameSP frame_sp, const char *var_name, uint64_t &val) 3227018f5a7eSEwan Crawford { 3228018f5a7eSEwan Crawford Log *log(GetLogIfAnyCategoriesSet(LIBLLDB_LOG_LANGUAGE)); 3229018f5a7eSEwan Crawford Error error; 3230018f5a7eSEwan Crawford VariableSP var_sp; 3231018f5a7eSEwan Crawford 3232018f5a7eSEwan Crawford // Find variable in stack frame 3233b3f7f69dSAidan Dodds ValueObjectSP value_sp(frame_sp->GetValueForVariableExpressionPath( 3234b3f7f69dSAidan Dodds var_name, eNoDynamicValues, 3235b3f7f69dSAidan Dodds StackFrame::eExpressionPathOptionCheckPtrVsMember | StackFrame::eExpressionPathOptionsAllowDirectIVarAccess, 3236b3f7f69dSAidan Dodds var_sp, error)); 3237018f5a7eSEwan Crawford if (!error.Success()) 3238018f5a7eSEwan Crawford { 3239018f5a7eSEwan Crawford if (log) 3240b3f7f69dSAidan Dodds log->Printf("%s - error, couldn't find '%s' in frame", __FUNCTION__, var_name); 3241018f5a7eSEwan Crawford return false; 3242018f5a7eSEwan Crawford } 3243018f5a7eSEwan Crawford 3244b3f7f69dSAidan Dodds // Find the uint32_t value for the variable 3245018f5a7eSEwan Crawford bool success = false; 3246018f5a7eSEwan Crawford val = value_sp->GetValueAsUnsigned(0, &success); 3247018f5a7eSEwan Crawford if (!success) 3248018f5a7eSEwan Crawford { 3249018f5a7eSEwan Crawford if (log) 3250b3f7f69dSAidan Dodds log->Printf("%s - error, couldn't parse '%s' as an uint32_t.", __FUNCTION__, var_name); 3251018f5a7eSEwan Crawford return false; 3252018f5a7eSEwan Crawford } 3253018f5a7eSEwan Crawford 3254018f5a7eSEwan Crawford return true; 3255018f5a7eSEwan Crawford } 3256018f5a7eSEwan Crawford 32574f8817c2SEwan Crawford // Function attempts to find the current coordinate of a kernel invocation by investigating the 32584f8817c2SEwan Crawford // values of frame variables in the .expand function. These coordinates are returned via the coord 32594f8817c2SEwan Crawford // array reference parameter. Returns true if the coordinates could be found, and false otherwise. 32604f8817c2SEwan Crawford bool 32614f8817c2SEwan Crawford RenderScriptRuntime::GetKernelCoordinate(RSCoordinate &coord, Thread *thread_ptr) 32624f8817c2SEwan Crawford { 32634f8817c2SEwan Crawford Log *log(GetLogIfAnyCategoriesSet(LIBLLDB_LOG_LANGUAGE)); 32644f8817c2SEwan Crawford 32654f8817c2SEwan Crawford if (!thread_ptr) 32664f8817c2SEwan Crawford { 32674f8817c2SEwan Crawford if (log) 32684f8817c2SEwan Crawford log->Printf("%s - Error, No thread pointer", __FUNCTION__); 32694f8817c2SEwan Crawford 32704f8817c2SEwan Crawford return false; 32714f8817c2SEwan Crawford } 32724f8817c2SEwan Crawford 32734f8817c2SEwan Crawford // Walk the call stack looking for a function whose name has the suffix '.expand' 32744f8817c2SEwan Crawford // and contains the variables we're looking for. 32754f8817c2SEwan Crawford for (uint32_t i = 0; i < thread_ptr->GetStackFrameCount(); ++i) 32764f8817c2SEwan Crawford { 32774f8817c2SEwan Crawford if (!thread_ptr->SetSelectedFrameByIndex(i)) 32784f8817c2SEwan Crawford continue; 32794f8817c2SEwan Crawford 32804f8817c2SEwan Crawford StackFrameSP frame_sp = thread_ptr->GetSelectedFrame(); 32814f8817c2SEwan Crawford if (!frame_sp) 32824f8817c2SEwan Crawford continue; 32834f8817c2SEwan Crawford 32844f8817c2SEwan Crawford // Find the function name 32854f8817c2SEwan Crawford const SymbolContext sym_ctx = frame_sp->GetSymbolContext(false); 32864f8817c2SEwan Crawford const char *func_name_cstr = sym_ctx.GetFunctionName().AsCString(); 32874f8817c2SEwan Crawford if (!func_name_cstr) 32884f8817c2SEwan Crawford continue; 32894f8817c2SEwan Crawford 32904f8817c2SEwan Crawford if (log) 32914f8817c2SEwan Crawford log->Printf("%s - Inspecting function '%s'", __FUNCTION__, func_name_cstr); 32924f8817c2SEwan Crawford 32934f8817c2SEwan Crawford // Check if function name has .expand suffix 32944f8817c2SEwan Crawford std::string func_name(func_name_cstr); 32954f8817c2SEwan Crawford const int length_difference = func_name.length() - RenderScriptRuntime::s_runtimeExpandSuffix.length(); 32964f8817c2SEwan Crawford if (length_difference <= 0) 32974f8817c2SEwan Crawford continue; 32984f8817c2SEwan Crawford 32994f8817c2SEwan Crawford const int32_t has_expand_suffix = func_name.compare(length_difference, 33004f8817c2SEwan Crawford RenderScriptRuntime::s_runtimeExpandSuffix.length(), 33014f8817c2SEwan Crawford RenderScriptRuntime::s_runtimeExpandSuffix); 33024f8817c2SEwan Crawford 33034f8817c2SEwan Crawford if (has_expand_suffix != 0) 33044f8817c2SEwan Crawford continue; 33054f8817c2SEwan Crawford 33064f8817c2SEwan Crawford if (log) 33074f8817c2SEwan Crawford log->Printf("%s - Found .expand function '%s'", __FUNCTION__, func_name_cstr); 33084f8817c2SEwan Crawford 33094f8817c2SEwan Crawford // Get values for variables in .expand frame that tell us the current kernel invocation 33104f8817c2SEwan Crawford bool found_coord_variables = true; 33114f8817c2SEwan Crawford assert(RenderScriptRuntime::s_runtimeCoordVars.size() == coord.size()); 33124f8817c2SEwan Crawford 33134f8817c2SEwan Crawford for (uint32_t i = 0; i < coord.size(); ++i) 33144f8817c2SEwan Crawford { 33154f8817c2SEwan Crawford uint64_t value = 0; 33164f8817c2SEwan Crawford if (!GetFrameVarAsUnsigned(frame_sp, RenderScriptRuntime::s_runtimeCoordVars[i], value)) 33174f8817c2SEwan Crawford { 33184f8817c2SEwan Crawford found_coord_variables = false; 33194f8817c2SEwan Crawford break; 33204f8817c2SEwan Crawford } 33214f8817c2SEwan Crawford coord[i] = value; 33224f8817c2SEwan Crawford } 33234f8817c2SEwan Crawford 33244f8817c2SEwan Crawford if (found_coord_variables) 33254f8817c2SEwan Crawford return true; 33264f8817c2SEwan Crawford } 33274f8817c2SEwan Crawford return false; 33284f8817c2SEwan Crawford } 33294f8817c2SEwan Crawford 3330018f5a7eSEwan Crawford // Callback when a kernel breakpoint hits and we're looking for a specific coordinate. 3331018f5a7eSEwan Crawford // Baton parameter contains a pointer to the target coordinate we want to break on. 3332018f5a7eSEwan Crawford // Function then checks the .expand frame for the current coordinate and breaks to user if it matches. 3333018f5a7eSEwan Crawford // Parameter 'break_id' is the id of the Breakpoint which made the callback. 3334018f5a7eSEwan Crawford // Parameter 'break_loc_id' is the id for the BreakpointLocation which was hit, 3335018f5a7eSEwan Crawford // a single logical breakpoint can have multiple addresses. 3336018f5a7eSEwan Crawford bool 3337b3f7f69dSAidan Dodds RenderScriptRuntime::KernelBreakpointHit(void *baton, StoppointCallbackContext *ctx, user_id_t break_id, 3338b3f7f69dSAidan Dodds user_id_t break_loc_id) 3339018f5a7eSEwan Crawford { 3340018f5a7eSEwan Crawford Log *log(GetLogIfAnyCategoriesSet(LIBLLDB_LOG_LANGUAGE | LIBLLDB_LOG_BREAKPOINTS)); 3341018f5a7eSEwan Crawford 3342018f5a7eSEwan Crawford assert(baton && "Error: null baton in conditional kernel breakpoint callback"); 3343018f5a7eSEwan Crawford 3344018f5a7eSEwan Crawford // Coordinate we want to stop on 33454f8817c2SEwan Crawford const uint32_t *target_coord = static_cast<const uint32_t *>(baton); 3346018f5a7eSEwan Crawford 3347018f5a7eSEwan Crawford if (log) 33484f8817c2SEwan Crawford log->Printf("%s - Break ID %" PRIu64 ", (%" PRIu32 ", %" PRIu32 ", %" PRIu32 ")", __FUNCTION__, break_id, 33494f8817c2SEwan Crawford target_coord[0], target_coord[1], target_coord[2]); 3350018f5a7eSEwan Crawford 33514f8817c2SEwan Crawford // Select current thread 3352018f5a7eSEwan Crawford ExecutionContext context(ctx->exe_ctx_ref); 33534f8817c2SEwan Crawford Thread *thread_ptr = context.GetThreadPtr(); 33544f8817c2SEwan Crawford assert(thread_ptr && "Null thread pointer"); 33554f8817c2SEwan Crawford 33564f8817c2SEwan Crawford // Find current kernel invocation from .expand frame variables 33574f8817c2SEwan Crawford RSCoordinate current_coord{}; // Zero initialise array 33584f8817c2SEwan Crawford if (!GetKernelCoordinate(current_coord, thread_ptr)) 3359018f5a7eSEwan Crawford { 3360018f5a7eSEwan Crawford if (log) 33614f8817c2SEwan Crawford log->Printf("%s - Error, couldn't select .expand stack frame", __FUNCTION__); 3362018f5a7eSEwan Crawford return false; 3363018f5a7eSEwan Crawford } 3364018f5a7eSEwan Crawford 3365018f5a7eSEwan Crawford if (log) 33664f8817c2SEwan Crawford log->Printf("%s - (%" PRIu32 ",%" PRIu32 ",%" PRIu32 ")", __FUNCTION__, current_coord[0], current_coord[1], 33674f8817c2SEwan Crawford current_coord[2]); 3368018f5a7eSEwan Crawford 3369018f5a7eSEwan Crawford // Check if the current kernel invocation coordinate matches our target coordinate 3370b3f7f69dSAidan Dodds if (current_coord[0] == target_coord[0] && 3371b3f7f69dSAidan Dodds current_coord[1] == target_coord[1] && 33724f8817c2SEwan Crawford current_coord[2] == target_coord[2]) 3373018f5a7eSEwan Crawford { 3374018f5a7eSEwan Crawford if (log) 33754f8817c2SEwan Crawford log->Printf("%s, BREAKING (%" PRIu32 ",%" PRIu32 ",%" PRIu32 ")", __FUNCTION__, current_coord[0], 33764f8817c2SEwan Crawford current_coord[1], current_coord[2]); 3377018f5a7eSEwan Crawford 3378018f5a7eSEwan Crawford BreakpointSP breakpoint_sp = context.GetTargetPtr()->GetBreakpointByID(break_id); 3379018f5a7eSEwan Crawford assert(breakpoint_sp != nullptr && "Error: Couldn't find breakpoint matching break id for callback"); 3380018f5a7eSEwan Crawford breakpoint_sp->SetEnabled(false); // Optimise since conditional breakpoint should only be hit once. 3381018f5a7eSEwan Crawford return true; 3382018f5a7eSEwan Crawford } 3383018f5a7eSEwan Crawford 3384018f5a7eSEwan Crawford // No match on coordinate 3385018f5a7eSEwan Crawford return false; 3386018f5a7eSEwan Crawford } 3387018f5a7eSEwan Crawford 3388018f5a7eSEwan Crawford // Tries to set a breakpoint on the start of a kernel, resolved using the kernel name. 3389018f5a7eSEwan Crawford // Argument 'coords', represents a three dimensional coordinate which can be used to specify 3390018f5a7eSEwan Crawford // a single kernel instance to break on. If this is set then we add a callback to the breakpoint. 33914640cde1SColin Riley void 3392018f5a7eSEwan Crawford RenderScriptRuntime::PlaceBreakpointOnKernel(Stream &strm, const char *name, const std::array<int, 3> coords, 3393018f5a7eSEwan Crawford Error &error, TargetSP target) 33944640cde1SColin Riley { 33954640cde1SColin Riley if (!name) 33964640cde1SColin Riley { 33974640cde1SColin Riley error.SetErrorString("invalid kernel name"); 33984640cde1SColin Riley return; 33994640cde1SColin Riley } 34004640cde1SColin Riley 34017dc7771cSEwan Crawford InitSearchFilter(target); 340298156583SEwan Crawford 34034640cde1SColin Riley ConstString kernel_name(name); 34047dc7771cSEwan Crawford BreakpointSP bp = CreateKernelBreakpoint(kernel_name); 3405018f5a7eSEwan Crawford 3406018f5a7eSEwan Crawford // We have a conditional breakpoint on a specific coordinate 3407018f5a7eSEwan Crawford if (coords[0] != -1) 3408018f5a7eSEwan Crawford { 3409b3f7f69dSAidan Dodds strm.Printf("Conditional kernel breakpoint on coordinate %" PRId32 ", %" PRId32 ", %" PRId32, 3410b3f7f69dSAidan Dodds coords[0], coords[1], coords[2]); 3411018f5a7eSEwan Crawford strm.EOL(); 3412018f5a7eSEwan Crawford 3413018f5a7eSEwan Crawford // Allocate memory for the baton, and copy over coordinate 34144f8817c2SEwan Crawford uint32_t *baton = new uint32_t[coords.size()]; 3415018f5a7eSEwan Crawford baton[0] = coords[0]; baton[1] = coords[1]; baton[2] = coords[2]; 3416018f5a7eSEwan Crawford 3417018f5a7eSEwan Crawford // Create a callback that will be invoked everytime the breakpoint is hit. 3418018f5a7eSEwan Crawford // The baton object passed to the handler is the target coordinate we want to break on. 3419018f5a7eSEwan Crawford bp->SetCallback(KernelBreakpointHit, baton, true); 3420018f5a7eSEwan Crawford 3421018f5a7eSEwan Crawford // Store a shared pointer to the baton, so the memory will eventually be cleaned up after destruction 34224f8817c2SEwan Crawford m_conditional_breaks[bp->GetID()] = std::shared_ptr<uint32_t>(baton); 3423018f5a7eSEwan Crawford } 3424018f5a7eSEwan Crawford 342598156583SEwan Crawford if (bp) 342698156583SEwan Crawford bp->GetDescription(&strm, lldb::eDescriptionLevelInitial, false); 34274640cde1SColin Riley } 34284640cde1SColin Riley 34294640cde1SColin Riley void 34305ec532a9SColin Riley RenderScriptRuntime::DumpModules(Stream &strm) const 34315ec532a9SColin Riley { 34325ec532a9SColin Riley strm.Printf("RenderScript Modules:"); 34335ec532a9SColin Riley strm.EOL(); 34345ec532a9SColin Riley strm.IndentMore(); 34355ec532a9SColin Riley for (const auto &module : m_rsmodules) 34365ec532a9SColin Riley { 34374640cde1SColin Riley module->Dump(strm); 34385ec532a9SColin Riley } 34395ec532a9SColin Riley strm.IndentLess(); 34405ec532a9SColin Riley } 34415ec532a9SColin Riley 344278f339d1SEwan Crawford RenderScriptRuntime::ScriptDetails * 344378f339d1SEwan Crawford RenderScriptRuntime::LookUpScript(addr_t address, bool create) 344478f339d1SEwan Crawford { 344578f339d1SEwan Crawford for (const auto &s : m_scripts) 344678f339d1SEwan Crawford { 344778f339d1SEwan Crawford if (s->script.isValid()) 344878f339d1SEwan Crawford if (*s->script == address) 344978f339d1SEwan Crawford return s.get(); 345078f339d1SEwan Crawford } 345178f339d1SEwan Crawford if (create) 345278f339d1SEwan Crawford { 345378f339d1SEwan Crawford std::unique_ptr<ScriptDetails> s(new ScriptDetails); 345478f339d1SEwan Crawford s->script = address; 345578f339d1SEwan Crawford m_scripts.push_back(std::move(s)); 3456d10ca9deSEwan Crawford return m_scripts.back().get(); 345778f339d1SEwan Crawford } 345878f339d1SEwan Crawford return nullptr; 345978f339d1SEwan Crawford } 346078f339d1SEwan Crawford 346178f339d1SEwan Crawford RenderScriptRuntime::AllocationDetails * 346278f339d1SEwan Crawford RenderScriptRuntime::LookUpAllocation(addr_t address, bool create) 346378f339d1SEwan Crawford { 346478f339d1SEwan Crawford for (const auto &a : m_allocations) 346578f339d1SEwan Crawford { 346678f339d1SEwan Crawford if (a->address.isValid()) 346778f339d1SEwan Crawford if (*a->address == address) 346878f339d1SEwan Crawford return a.get(); 346978f339d1SEwan Crawford } 347078f339d1SEwan Crawford if (create) 347178f339d1SEwan Crawford { 347278f339d1SEwan Crawford std::unique_ptr<AllocationDetails> a(new AllocationDetails); 347378f339d1SEwan Crawford a->address = address; 347478f339d1SEwan Crawford m_allocations.push_back(std::move(a)); 3475d10ca9deSEwan Crawford return m_allocations.back().get(); 347678f339d1SEwan Crawford } 347778f339d1SEwan Crawford return nullptr; 347878f339d1SEwan Crawford } 347978f339d1SEwan Crawford 34805ec532a9SColin Riley void 34815ec532a9SColin Riley RSModuleDescriptor::Dump(Stream &strm) const 34825ec532a9SColin Riley { 34835ec532a9SColin Riley strm.Indent(); 34845ec532a9SColin Riley m_module->GetFileSpec().Dump(&strm); 34854640cde1SColin Riley if (m_module->GetNumCompileUnits()) 34864640cde1SColin Riley { 34874640cde1SColin Riley strm.Indent("Debug info loaded."); 34884640cde1SColin Riley } 34894640cde1SColin Riley else 34904640cde1SColin Riley { 34914640cde1SColin Riley strm.Indent("Debug info does not exist."); 34924640cde1SColin Riley } 34935ec532a9SColin Riley strm.EOL(); 34945ec532a9SColin Riley strm.IndentMore(); 34955ec532a9SColin Riley strm.Indent(); 3496189598edSColin Riley strm.Printf("Globals: %" PRIu64, static_cast<uint64_t>(m_globals.size())); 34975ec532a9SColin Riley strm.EOL(); 34985ec532a9SColin Riley strm.IndentMore(); 34995ec532a9SColin Riley for (const auto &global : m_globals) 35005ec532a9SColin Riley { 35015ec532a9SColin Riley global.Dump(strm); 35025ec532a9SColin Riley } 35035ec532a9SColin Riley strm.IndentLess(); 35045ec532a9SColin Riley strm.Indent(); 3505189598edSColin Riley strm.Printf("Kernels: %" PRIu64, static_cast<uint64_t>(m_kernels.size())); 35065ec532a9SColin Riley strm.EOL(); 35075ec532a9SColin Riley strm.IndentMore(); 35085ec532a9SColin Riley for (const auto &kernel : m_kernels) 35095ec532a9SColin Riley { 35105ec532a9SColin Riley kernel.Dump(strm); 35115ec532a9SColin Riley } 35124640cde1SColin Riley strm.Printf("Pragmas: %" PRIu64, static_cast<uint64_t>(m_pragmas.size())); 35134640cde1SColin Riley strm.EOL(); 35144640cde1SColin Riley strm.IndentMore(); 35154640cde1SColin Riley for (const auto &key_val : m_pragmas) 35164640cde1SColin Riley { 35174640cde1SColin Riley strm.Printf("%s: %s", key_val.first.c_str(), key_val.second.c_str()); 35184640cde1SColin Riley strm.EOL(); 35194640cde1SColin Riley } 35205ec532a9SColin Riley strm.IndentLess(4); 35215ec532a9SColin Riley } 35225ec532a9SColin Riley 35235ec532a9SColin Riley void 35245ec532a9SColin Riley RSGlobalDescriptor::Dump(Stream &strm) const 35255ec532a9SColin Riley { 35265ec532a9SColin Riley strm.Indent(m_name.AsCString()); 35274640cde1SColin Riley VariableList var_list; 35284640cde1SColin Riley m_module->m_module->FindGlobalVariables(m_name, nullptr, true, 1U, var_list); 35294640cde1SColin Riley if (var_list.GetSize() == 1) 35304640cde1SColin Riley { 35314640cde1SColin Riley auto var = var_list.GetVariableAtIndex(0); 35324640cde1SColin Riley auto type = var->GetType(); 35334640cde1SColin Riley if (type) 35344640cde1SColin Riley { 35354640cde1SColin Riley strm.Printf(" - "); 35364640cde1SColin Riley type->DumpTypeName(&strm); 35374640cde1SColin Riley } 35384640cde1SColin Riley else 35394640cde1SColin Riley { 35404640cde1SColin Riley strm.Printf(" - Unknown Type"); 35414640cde1SColin Riley } 35424640cde1SColin Riley } 35434640cde1SColin Riley else 35444640cde1SColin Riley { 35454640cde1SColin Riley strm.Printf(" - variable identified, but not found in binary"); 35464640cde1SColin Riley const Symbol *s = m_module->m_module->FindFirstSymbolWithNameAndType(m_name, eSymbolTypeData); 35474640cde1SColin Riley if (s) 35484640cde1SColin Riley { 35494640cde1SColin Riley strm.Printf(" (symbol exists) "); 35504640cde1SColin Riley } 35514640cde1SColin Riley } 35524640cde1SColin Riley 35535ec532a9SColin Riley strm.EOL(); 35545ec532a9SColin Riley } 35555ec532a9SColin Riley 35565ec532a9SColin Riley void 35575ec532a9SColin Riley RSKernelDescriptor::Dump(Stream &strm) const 35585ec532a9SColin Riley { 35595ec532a9SColin Riley strm.Indent(m_name.AsCString()); 35605ec532a9SColin Riley strm.EOL(); 35615ec532a9SColin Riley } 35625ec532a9SColin Riley 35635ec532a9SColin Riley class CommandObjectRenderScriptRuntimeModuleDump : public CommandObjectParsed 35645ec532a9SColin Riley { 35655ec532a9SColin Riley public: 35665ec532a9SColin Riley CommandObjectRenderScriptRuntimeModuleDump(CommandInterpreter &interpreter) 35675ec532a9SColin Riley : CommandObjectParsed(interpreter, "renderscript module dump", 35685ec532a9SColin Riley "Dumps renderscript specific information for all modules.", "renderscript module dump", 3569e87764f2SEnrico Granata eCommandRequiresProcess | eCommandProcessMustBeLaunched) 35705ec532a9SColin Riley { 35715ec532a9SColin Riley } 35725ec532a9SColin Riley 3573222b937cSEugene Zelenko ~CommandObjectRenderScriptRuntimeModuleDump() override = default; 35745ec532a9SColin Riley 35755ec532a9SColin Riley bool 3576222b937cSEugene Zelenko DoExecute(Args &command, CommandReturnObject &result) override 35775ec532a9SColin Riley { 35785ec532a9SColin Riley RenderScriptRuntime *runtime = 35795ec532a9SColin Riley (RenderScriptRuntime *)m_exe_ctx.GetProcessPtr()->GetLanguageRuntime(eLanguageTypeExtRenderScript); 35805ec532a9SColin Riley runtime->DumpModules(result.GetOutputStream()); 35815ec532a9SColin Riley result.SetStatus(eReturnStatusSuccessFinishResult); 35825ec532a9SColin Riley return true; 35835ec532a9SColin Riley } 35845ec532a9SColin Riley }; 35855ec532a9SColin Riley 35865ec532a9SColin Riley class CommandObjectRenderScriptRuntimeModule : public CommandObjectMultiword 35875ec532a9SColin Riley { 35885ec532a9SColin Riley public: 35895ec532a9SColin Riley CommandObjectRenderScriptRuntimeModule(CommandInterpreter &interpreter) 35905ec532a9SColin Riley : CommandObjectMultiword(interpreter, "renderscript module", "Commands that deal with renderscript modules.", 3591b3f7f69dSAidan Dodds nullptr) 35925ec532a9SColin Riley { 35935ec532a9SColin Riley LoadSubCommand("dump", CommandObjectSP(new CommandObjectRenderScriptRuntimeModuleDump(interpreter))); 35945ec532a9SColin Riley } 35955ec532a9SColin Riley 3596222b937cSEugene Zelenko ~CommandObjectRenderScriptRuntimeModule() override = default; 35975ec532a9SColin Riley }; 35985ec532a9SColin Riley 35994640cde1SColin Riley class CommandObjectRenderScriptRuntimeKernelList : public CommandObjectParsed 36004640cde1SColin Riley { 36014640cde1SColin Riley public: 36024640cde1SColin Riley CommandObjectRenderScriptRuntimeKernelList(CommandInterpreter &interpreter) 36034640cde1SColin Riley : CommandObjectParsed(interpreter, "renderscript kernel list", 3604b3f7f69dSAidan Dodds "Lists renderscript kernel names and associated script resources.", 3605b3f7f69dSAidan Dodds "renderscript kernel list", eCommandRequiresProcess | eCommandProcessMustBeLaunched) 36064640cde1SColin Riley { 36074640cde1SColin Riley } 36084640cde1SColin Riley 3609222b937cSEugene Zelenko ~CommandObjectRenderScriptRuntimeKernelList() override = default; 36104640cde1SColin Riley 36114640cde1SColin Riley bool 3612222b937cSEugene Zelenko DoExecute(Args &command, CommandReturnObject &result) override 36134640cde1SColin Riley { 36144640cde1SColin Riley RenderScriptRuntime *runtime = 36154640cde1SColin Riley (RenderScriptRuntime *)m_exe_ctx.GetProcessPtr()->GetLanguageRuntime(eLanguageTypeExtRenderScript); 36164640cde1SColin Riley runtime->DumpKernels(result.GetOutputStream()); 36174640cde1SColin Riley result.SetStatus(eReturnStatusSuccessFinishResult); 36184640cde1SColin Riley return true; 36194640cde1SColin Riley } 36204640cde1SColin Riley }; 36214640cde1SColin Riley 36227dc7771cSEwan Crawford class CommandObjectRenderScriptRuntimeKernelBreakpointSet : public CommandObjectParsed 36234640cde1SColin Riley { 36244640cde1SColin Riley public: 36257dc7771cSEwan Crawford CommandObjectRenderScriptRuntimeKernelBreakpointSet(CommandInterpreter &interpreter) 36267dc7771cSEwan Crawford : CommandObjectParsed(interpreter, "renderscript kernel breakpoint set", 3627b3f7f69dSAidan Dodds "Sets a breakpoint on a renderscript kernel.", 3628b3f7f69dSAidan Dodds "renderscript kernel breakpoint set <kernel_name> [-c x,y,z]", 3629b3f7f69dSAidan Dodds eCommandRequiresProcess | eCommandProcessMustBeLaunched | eCommandProcessMustBePaused), 3630b3f7f69dSAidan Dodds m_options(interpreter) 36314640cde1SColin Riley { 36324640cde1SColin Riley } 36334640cde1SColin Riley 3634222b937cSEugene Zelenko ~CommandObjectRenderScriptRuntimeKernelBreakpointSet() override = default; 3635222b937cSEugene Zelenko 3636222b937cSEugene Zelenko Options * 3637222b937cSEugene Zelenko GetOptions() override 3638018f5a7eSEwan Crawford { 3639018f5a7eSEwan Crawford return &m_options; 3640018f5a7eSEwan Crawford } 3641018f5a7eSEwan Crawford 3642018f5a7eSEwan Crawford class CommandOptions : public Options 3643018f5a7eSEwan Crawford { 3644018f5a7eSEwan Crawford public: 3645b3f7f69dSAidan Dodds CommandOptions(CommandInterpreter &interpreter) : Options(interpreter) {} 3646018f5a7eSEwan Crawford 3647222b937cSEugene Zelenko ~CommandOptions() override = default; 3648018f5a7eSEwan Crawford 3649222b937cSEugene Zelenko Error 3650222b937cSEugene Zelenko SetOptionValue(uint32_t option_idx, const char *option_arg) override 3651018f5a7eSEwan Crawford { 3652018f5a7eSEwan Crawford Error error; 3653018f5a7eSEwan Crawford const int short_option = m_getopt_table[option_idx].val; 3654018f5a7eSEwan Crawford 3655018f5a7eSEwan Crawford switch (short_option) 3656018f5a7eSEwan Crawford { 3657018f5a7eSEwan Crawford case 'c': 3658018f5a7eSEwan Crawford if (!ParseCoordinate(option_arg)) 3659b3f7f69dSAidan Dodds error.SetErrorStringWithFormat("Couldn't parse coordinate '%s', should be in format 'x,y,z'.", 3660b3f7f69dSAidan Dodds option_arg); 3661018f5a7eSEwan Crawford break; 3662018f5a7eSEwan Crawford default: 3663018f5a7eSEwan Crawford error.SetErrorStringWithFormat("unrecognized option '%c'", short_option); 3664018f5a7eSEwan Crawford break; 3665018f5a7eSEwan Crawford } 3666018f5a7eSEwan Crawford return error; 3667018f5a7eSEwan Crawford } 3668018f5a7eSEwan Crawford 3669018f5a7eSEwan Crawford // -c takes an argument of the form 'num[,num][,num]'. 3670018f5a7eSEwan Crawford // Where 'id_cstr' is this argument with the whitespace trimmed. 3671018f5a7eSEwan Crawford // Missing coordinates are defaulted to zero. 3672018f5a7eSEwan Crawford bool 3673018f5a7eSEwan Crawford ParseCoordinate(const char *id_cstr) 3674018f5a7eSEwan Crawford { 3675018f5a7eSEwan Crawford RegularExpression regex; 3676018f5a7eSEwan Crawford RegularExpression::Match regex_match(3); 3677018f5a7eSEwan Crawford 3678018f5a7eSEwan Crawford bool matched = false; 3679018f5a7eSEwan Crawford if (regex.Compile("^([0-9]+),([0-9]+),([0-9]+)$") && regex.Execute(id_cstr, ®ex_match)) 3680018f5a7eSEwan Crawford matched = true; 3681018f5a7eSEwan Crawford else if (regex.Compile("^([0-9]+),([0-9]+)$") && regex.Execute(id_cstr, ®ex_match)) 3682018f5a7eSEwan Crawford matched = true; 3683018f5a7eSEwan Crawford else if (regex.Compile("^([0-9]+)$") && regex.Execute(id_cstr, ®ex_match)) 3684018f5a7eSEwan Crawford matched = true; 3685018f5a7eSEwan Crawford for (uint32_t i = 0; i < 3; i++) 3686018f5a7eSEwan Crawford { 3687018f5a7eSEwan Crawford std::string group; 3688018f5a7eSEwan Crawford if (regex_match.GetMatchAtIndex(id_cstr, i + 1, group)) 3689b3f7f69dSAidan Dodds m_coord[i] = (uint32_t)strtoul(group.c_str(), nullptr, 0); 3690018f5a7eSEwan Crawford else 3691018f5a7eSEwan Crawford m_coord[i] = 0; 3692018f5a7eSEwan Crawford } 3693018f5a7eSEwan Crawford return matched; 3694018f5a7eSEwan Crawford } 3695018f5a7eSEwan Crawford 3696018f5a7eSEwan Crawford void 3697222b937cSEugene Zelenko OptionParsingStarting() override 3698018f5a7eSEwan Crawford { 3699018f5a7eSEwan Crawford // -1 means the -c option hasn't been set 3700018f5a7eSEwan Crawford m_coord[0] = -1; 3701018f5a7eSEwan Crawford m_coord[1] = -1; 3702018f5a7eSEwan Crawford m_coord[2] = -1; 3703018f5a7eSEwan Crawford } 3704018f5a7eSEwan Crawford 3705018f5a7eSEwan Crawford const OptionDefinition * 3706222b937cSEugene Zelenko GetDefinitions() override 3707018f5a7eSEwan Crawford { 3708018f5a7eSEwan Crawford return g_option_table; 3709018f5a7eSEwan Crawford } 3710018f5a7eSEwan Crawford 3711018f5a7eSEwan Crawford static OptionDefinition g_option_table[]; 3712018f5a7eSEwan Crawford std::array<int, 3> m_coord; 3713018f5a7eSEwan Crawford }; 3714018f5a7eSEwan Crawford 37154640cde1SColin Riley bool 3716222b937cSEugene Zelenko DoExecute(Args &command, CommandReturnObject &result) override 37174640cde1SColin Riley { 37184640cde1SColin Riley const size_t argc = command.GetArgumentCount(); 3719018f5a7eSEwan Crawford if (argc < 1) 37204640cde1SColin Riley { 3721b3f7f69dSAidan Dodds result.AppendErrorWithFormat("'%s' takes 1 argument of kernel name, and an optional coordinate.", 3722b3f7f69dSAidan Dodds m_cmd_name.c_str()); 3723018f5a7eSEwan Crawford result.SetStatus(eReturnStatusFailed); 3724018f5a7eSEwan Crawford return false; 3725018f5a7eSEwan Crawford } 3726018f5a7eSEwan Crawford 37274640cde1SColin Riley RenderScriptRuntime *runtime = 37284640cde1SColin Riley (RenderScriptRuntime *)m_exe_ctx.GetProcessPtr()->GetLanguageRuntime(eLanguageTypeExtRenderScript); 37294640cde1SColin Riley 37304640cde1SColin Riley Error error; 3731018f5a7eSEwan Crawford runtime->PlaceBreakpointOnKernel(result.GetOutputStream(), command.GetArgumentAtIndex(0), m_options.m_coord, 373298156583SEwan Crawford error, m_exe_ctx.GetTargetSP()); 37334640cde1SColin Riley 37344640cde1SColin Riley if (error.Success()) 37354640cde1SColin Riley { 37364640cde1SColin Riley result.AppendMessage("Breakpoint(s) created"); 37374640cde1SColin Riley result.SetStatus(eReturnStatusSuccessFinishResult); 37384640cde1SColin Riley return true; 37394640cde1SColin Riley } 37404640cde1SColin Riley result.SetStatus(eReturnStatusFailed); 37414640cde1SColin Riley result.AppendErrorWithFormat("Error: %s", error.AsCString()); 37424640cde1SColin Riley return false; 37434640cde1SColin Riley } 37444640cde1SColin Riley 3745018f5a7eSEwan Crawford private: 3746018f5a7eSEwan Crawford CommandOptions m_options; 37474640cde1SColin Riley }; 37484640cde1SColin Riley 3749b3f7f69dSAidan Dodds OptionDefinition CommandObjectRenderScriptRuntimeKernelBreakpointSet::CommandOptions::g_option_table[] = { 3750b3f7f69dSAidan Dodds {LLDB_OPT_SET_1, false, "coordinate", 'c', OptionParser::eRequiredArgument, nullptr, nullptr, 0, eArgTypeValue, 3751018f5a7eSEwan Crawford "Set a breakpoint on a single invocation of the kernel with specified coordinate.\n" 3752018f5a7eSEwan Crawford "Coordinate takes the form 'x[,y][,z] where x,y,z are positive integers representing kernel dimensions. " 3753018f5a7eSEwan Crawford "Any unset dimensions will be defaulted to zero."}, 3754b3f7f69dSAidan Dodds {0, false, nullptr, 0, 0, nullptr, nullptr, 0, eArgTypeNone, nullptr}}; 3755018f5a7eSEwan Crawford 37567dc7771cSEwan Crawford class CommandObjectRenderScriptRuntimeKernelBreakpointAll : public CommandObjectParsed 37577dc7771cSEwan Crawford { 37587dc7771cSEwan Crawford public: 37597dc7771cSEwan Crawford CommandObjectRenderScriptRuntimeKernelBreakpointAll(CommandInterpreter &interpreter) 3760b3f7f69dSAidan Dodds : CommandObjectParsed( 3761b3f7f69dSAidan Dodds interpreter, "renderscript kernel breakpoint all", 37627dc7771cSEwan Crawford "Automatically sets a breakpoint on all renderscript kernels that are or will be loaded.\n" 37637dc7771cSEwan Crawford "Disabling option means breakpoints will no longer be set on any kernels loaded in the future, " 37647dc7771cSEwan Crawford "but does not remove currently set breakpoints.", 37657dc7771cSEwan Crawford "renderscript kernel breakpoint all <enable/disable>", 37667dc7771cSEwan Crawford eCommandRequiresProcess | eCommandProcessMustBeLaunched | eCommandProcessMustBePaused) 37677dc7771cSEwan Crawford { 37687dc7771cSEwan Crawford } 37697dc7771cSEwan Crawford 3770222b937cSEugene Zelenko ~CommandObjectRenderScriptRuntimeKernelBreakpointAll() override = default; 37717dc7771cSEwan Crawford 37727dc7771cSEwan Crawford bool 3773222b937cSEugene Zelenko DoExecute(Args &command, CommandReturnObject &result) override 37747dc7771cSEwan Crawford { 37757dc7771cSEwan Crawford const size_t argc = command.GetArgumentCount(); 37767dc7771cSEwan Crawford if (argc != 1) 37777dc7771cSEwan Crawford { 37787dc7771cSEwan Crawford result.AppendErrorWithFormat("'%s' takes 1 argument of 'enable' or 'disable'", m_cmd_name.c_str()); 37797dc7771cSEwan Crawford result.SetStatus(eReturnStatusFailed); 37807dc7771cSEwan Crawford return false; 37817dc7771cSEwan Crawford } 37827dc7771cSEwan Crawford 3783b3f7f69dSAidan Dodds RenderScriptRuntime *runtime = static_cast<RenderScriptRuntime *>( 3784b3f7f69dSAidan Dodds m_exe_ctx.GetProcessPtr()->GetLanguageRuntime(eLanguageTypeExtRenderScript)); 37857dc7771cSEwan Crawford 37867dc7771cSEwan Crawford bool do_break = false; 37877dc7771cSEwan Crawford const char *argument = command.GetArgumentAtIndex(0); 37887dc7771cSEwan Crawford if (strcmp(argument, "enable") == 0) 37897dc7771cSEwan Crawford { 37907dc7771cSEwan Crawford do_break = true; 37917dc7771cSEwan Crawford result.AppendMessage("Breakpoints will be set on all kernels."); 37927dc7771cSEwan Crawford } 37937dc7771cSEwan Crawford else if (strcmp(argument, "disable") == 0) 37947dc7771cSEwan Crawford { 37957dc7771cSEwan Crawford do_break = false; 37967dc7771cSEwan Crawford result.AppendMessage("Breakpoints will not be set on any new kernels."); 37977dc7771cSEwan Crawford } 37987dc7771cSEwan Crawford else 37997dc7771cSEwan Crawford { 38007dc7771cSEwan Crawford result.AppendErrorWithFormat("Argument must be either 'enable' or 'disable'"); 38017dc7771cSEwan Crawford result.SetStatus(eReturnStatusFailed); 38027dc7771cSEwan Crawford return false; 38037dc7771cSEwan Crawford } 38047dc7771cSEwan Crawford 38057dc7771cSEwan Crawford runtime->SetBreakAllKernels(do_break, m_exe_ctx.GetTargetSP()); 38067dc7771cSEwan Crawford 38077dc7771cSEwan Crawford result.SetStatus(eReturnStatusSuccessFinishResult); 38087dc7771cSEwan Crawford return true; 38097dc7771cSEwan Crawford } 38107dc7771cSEwan Crawford }; 38117dc7771cSEwan Crawford 38124f8817c2SEwan Crawford class CommandObjectRenderScriptRuntimeKernelCoordinate : public CommandObjectParsed 38134f8817c2SEwan Crawford { 38144f8817c2SEwan Crawford public: 38154f8817c2SEwan Crawford CommandObjectRenderScriptRuntimeKernelCoordinate(CommandInterpreter &interpreter) 38164f8817c2SEwan Crawford : CommandObjectParsed(interpreter, "renderscript kernel coordinate", 38174f8817c2SEwan Crawford "Shows the (x,y,z) coordinate of the current kernel invocation.", 38184f8817c2SEwan Crawford "renderscript kernel coordinate", 38194f8817c2SEwan Crawford eCommandRequiresProcess | eCommandProcessMustBeLaunched | eCommandProcessMustBePaused) 38204f8817c2SEwan Crawford { 38214f8817c2SEwan Crawford } 38224f8817c2SEwan Crawford 38234f8817c2SEwan Crawford ~CommandObjectRenderScriptRuntimeKernelCoordinate() override = default; 38244f8817c2SEwan Crawford 38254f8817c2SEwan Crawford bool 38264f8817c2SEwan Crawford DoExecute(Args &command, CommandReturnObject &result) override 38274f8817c2SEwan Crawford { 38284f8817c2SEwan Crawford RSCoordinate coord{}; // Zero initialize array 38294f8817c2SEwan Crawford bool success = RenderScriptRuntime::GetKernelCoordinate(coord, m_exe_ctx.GetThreadPtr()); 38304f8817c2SEwan Crawford Stream &stream = result.GetOutputStream(); 38314f8817c2SEwan Crawford 38324f8817c2SEwan Crawford if (success) 38334f8817c2SEwan Crawford { 38344f8817c2SEwan Crawford stream.Printf("Coordinate: (%" PRIu32 ", %" PRIu32 ", %" PRIu32 ")", coord[0], coord[1], coord[2]); 38354f8817c2SEwan Crawford stream.EOL(); 38364f8817c2SEwan Crawford result.SetStatus(eReturnStatusSuccessFinishResult); 38374f8817c2SEwan Crawford } 38384f8817c2SEwan Crawford else 38394f8817c2SEwan Crawford { 38404f8817c2SEwan Crawford stream.Printf("Error: Coordinate could not be found."); 38414f8817c2SEwan Crawford stream.EOL(); 38424f8817c2SEwan Crawford result.SetStatus(eReturnStatusFailed); 38434f8817c2SEwan Crawford } 38444f8817c2SEwan Crawford return true; 38454f8817c2SEwan Crawford } 38464f8817c2SEwan Crawford }; 38474f8817c2SEwan Crawford 38487dc7771cSEwan Crawford class CommandObjectRenderScriptRuntimeKernelBreakpoint : public CommandObjectMultiword 38497dc7771cSEwan Crawford { 38507dc7771cSEwan Crawford public: 38517dc7771cSEwan Crawford CommandObjectRenderScriptRuntimeKernelBreakpoint(CommandInterpreter &interpreter) 3852b3f7f69dSAidan Dodds : CommandObjectMultiword(interpreter, "renderscript kernel", 3853b3f7f69dSAidan Dodds "Commands that generate breakpoints on renderscript kernels.", nullptr) 38547dc7771cSEwan Crawford { 38557dc7771cSEwan Crawford LoadSubCommand("set", CommandObjectSP(new CommandObjectRenderScriptRuntimeKernelBreakpointSet(interpreter))); 38567dc7771cSEwan Crawford LoadSubCommand("all", CommandObjectSP(new CommandObjectRenderScriptRuntimeKernelBreakpointAll(interpreter))); 38577dc7771cSEwan Crawford } 38587dc7771cSEwan Crawford 3859222b937cSEugene Zelenko ~CommandObjectRenderScriptRuntimeKernelBreakpoint() override = default; 38607dc7771cSEwan Crawford }; 38617dc7771cSEwan Crawford 38624640cde1SColin Riley class CommandObjectRenderScriptRuntimeKernel : public CommandObjectMultiword 38634640cde1SColin Riley { 38644640cde1SColin Riley public: 38654640cde1SColin Riley CommandObjectRenderScriptRuntimeKernel(CommandInterpreter &interpreter) 38664640cde1SColin Riley : CommandObjectMultiword(interpreter, "renderscript kernel", "Commands that deal with renderscript kernels.", 3867b3f7f69dSAidan Dodds nullptr) 38684640cde1SColin Riley { 38694640cde1SColin Riley LoadSubCommand("list", CommandObjectSP(new CommandObjectRenderScriptRuntimeKernelList(interpreter))); 387036175cc0SEwan Crawford LoadSubCommand("coordinate", 387136175cc0SEwan Crawford CommandObjectSP(new CommandObjectRenderScriptRuntimeKernelCoordinate(interpreter))); 3872b3f7f69dSAidan Dodds LoadSubCommand("breakpoint", 3873b3f7f69dSAidan Dodds CommandObjectSP(new CommandObjectRenderScriptRuntimeKernelBreakpoint(interpreter))); 38744640cde1SColin Riley } 38754640cde1SColin Riley 3876222b937cSEugene Zelenko ~CommandObjectRenderScriptRuntimeKernel() override = default; 38774640cde1SColin Riley }; 38784640cde1SColin Riley 38794640cde1SColin Riley class CommandObjectRenderScriptRuntimeContextDump : public CommandObjectParsed 38804640cde1SColin Riley { 38814640cde1SColin Riley public: 38824640cde1SColin Riley CommandObjectRenderScriptRuntimeContextDump(CommandInterpreter &interpreter) 3883b3f7f69dSAidan Dodds : CommandObjectParsed(interpreter, "renderscript context dump", "Dumps renderscript context information.", 3884b3f7f69dSAidan Dodds "renderscript context dump", eCommandRequiresProcess | eCommandProcessMustBeLaunched) 38854640cde1SColin Riley { 38864640cde1SColin Riley } 38874640cde1SColin Riley 3888222b937cSEugene Zelenko ~CommandObjectRenderScriptRuntimeContextDump() override = default; 38894640cde1SColin Riley 38904640cde1SColin Riley bool 3891222b937cSEugene Zelenko DoExecute(Args &command, CommandReturnObject &result) override 38924640cde1SColin Riley { 38934640cde1SColin Riley RenderScriptRuntime *runtime = 38944640cde1SColin Riley (RenderScriptRuntime *)m_exe_ctx.GetProcessPtr()->GetLanguageRuntime(eLanguageTypeExtRenderScript); 38954640cde1SColin Riley runtime->DumpContexts(result.GetOutputStream()); 38964640cde1SColin Riley result.SetStatus(eReturnStatusSuccessFinishResult); 38974640cde1SColin Riley return true; 38984640cde1SColin Riley } 38994640cde1SColin Riley }; 39004640cde1SColin Riley 39014640cde1SColin Riley class CommandObjectRenderScriptRuntimeContext : public CommandObjectMultiword 39024640cde1SColin Riley { 39034640cde1SColin Riley public: 39044640cde1SColin Riley CommandObjectRenderScriptRuntimeContext(CommandInterpreter &interpreter) 39054640cde1SColin Riley : CommandObjectMultiword(interpreter, "renderscript context", "Commands that deal with renderscript contexts.", 3906b3f7f69dSAidan Dodds nullptr) 39074640cde1SColin Riley { 39084640cde1SColin Riley LoadSubCommand("dump", CommandObjectSP(new CommandObjectRenderScriptRuntimeContextDump(interpreter))); 39094640cde1SColin Riley } 39104640cde1SColin Riley 3911222b937cSEugene Zelenko ~CommandObjectRenderScriptRuntimeContext() override = default; 39124640cde1SColin Riley }; 39134640cde1SColin Riley 3914a0f08674SEwan Crawford class CommandObjectRenderScriptRuntimeAllocationDump : public CommandObjectParsed 3915a0f08674SEwan Crawford { 3916a0f08674SEwan Crawford public: 3917a0f08674SEwan Crawford CommandObjectRenderScriptRuntimeAllocationDump(CommandInterpreter &interpreter) 3918a0f08674SEwan Crawford : CommandObjectParsed(interpreter, "renderscript allocation dump", 3919a0f08674SEwan Crawford "Displays the contents of a particular allocation", "renderscript allocation dump <ID>", 3920b3f7f69dSAidan Dodds eCommandRequiresProcess | eCommandProcessMustBeLaunched), 3921b3f7f69dSAidan Dodds m_options(interpreter) 3922a0f08674SEwan Crawford { 3923a0f08674SEwan Crawford } 3924a0f08674SEwan Crawford 3925222b937cSEugene Zelenko ~CommandObjectRenderScriptRuntimeAllocationDump() override = default; 3926222b937cSEugene Zelenko 3927222b937cSEugene Zelenko Options * 3928222b937cSEugene Zelenko GetOptions() override 3929a0f08674SEwan Crawford { 3930a0f08674SEwan Crawford return &m_options; 3931a0f08674SEwan Crawford } 3932a0f08674SEwan Crawford 3933a0f08674SEwan Crawford class CommandOptions : public Options 3934a0f08674SEwan Crawford { 3935a0f08674SEwan Crawford public: 3936b3f7f69dSAidan Dodds CommandOptions(CommandInterpreter &interpreter) : Options(interpreter) {} 3937a0f08674SEwan Crawford 3938222b937cSEugene Zelenko ~CommandOptions() override = default; 3939a0f08674SEwan Crawford 3940222b937cSEugene Zelenko Error 3941222b937cSEugene Zelenko SetOptionValue(uint32_t option_idx, const char *option_arg) override 3942a0f08674SEwan Crawford { 3943a0f08674SEwan Crawford Error error; 3944a0f08674SEwan Crawford const int short_option = m_getopt_table[option_idx].val; 3945a0f08674SEwan Crawford 3946a0f08674SEwan Crawford switch (short_option) 3947a0f08674SEwan Crawford { 3948a0f08674SEwan Crawford case 'f': 3949a0f08674SEwan Crawford m_outfile.SetFile(option_arg, true); 3950a0f08674SEwan Crawford if (m_outfile.Exists()) 3951a0f08674SEwan Crawford { 3952a0f08674SEwan Crawford m_outfile.Clear(); 3953a0f08674SEwan Crawford error.SetErrorStringWithFormat("file already exists: '%s'", option_arg); 3954a0f08674SEwan Crawford } 3955a0f08674SEwan Crawford break; 3956a0f08674SEwan Crawford default: 3957a0f08674SEwan Crawford error.SetErrorStringWithFormat("unrecognized option '%c'", short_option); 3958a0f08674SEwan Crawford break; 3959a0f08674SEwan Crawford } 3960a0f08674SEwan Crawford return error; 3961a0f08674SEwan Crawford } 3962a0f08674SEwan Crawford 3963a0f08674SEwan Crawford void 3964222b937cSEugene Zelenko OptionParsingStarting() override 3965a0f08674SEwan Crawford { 3966a0f08674SEwan Crawford m_outfile.Clear(); 3967a0f08674SEwan Crawford } 3968a0f08674SEwan Crawford 3969a0f08674SEwan Crawford const OptionDefinition * 3970222b937cSEugene Zelenko GetDefinitions() override 3971a0f08674SEwan Crawford { 3972a0f08674SEwan Crawford return g_option_table; 3973a0f08674SEwan Crawford } 3974a0f08674SEwan Crawford 3975a0f08674SEwan Crawford static OptionDefinition g_option_table[]; 3976a0f08674SEwan Crawford FileSpec m_outfile; 3977a0f08674SEwan Crawford }; 3978a0f08674SEwan Crawford 3979a0f08674SEwan Crawford bool 3980222b937cSEugene Zelenko DoExecute(Args &command, CommandReturnObject &result) override 3981a0f08674SEwan Crawford { 3982a0f08674SEwan Crawford const size_t argc = command.GetArgumentCount(); 3983a0f08674SEwan Crawford if (argc < 1) 3984a0f08674SEwan Crawford { 3985a0f08674SEwan Crawford result.AppendErrorWithFormat("'%s' takes 1 argument, an allocation ID. As well as an optional -f argument", 3986a0f08674SEwan Crawford m_cmd_name.c_str()); 3987a0f08674SEwan Crawford result.SetStatus(eReturnStatusFailed); 3988a0f08674SEwan Crawford return false; 3989a0f08674SEwan Crawford } 3990a0f08674SEwan Crawford 3991b3f7f69dSAidan Dodds RenderScriptRuntime *runtime = static_cast<RenderScriptRuntime *>( 3992b3f7f69dSAidan Dodds m_exe_ctx.GetProcessPtr()->GetLanguageRuntime(eLanguageTypeExtRenderScript)); 3993a0f08674SEwan Crawford 3994a0f08674SEwan Crawford const char *id_cstr = command.GetArgumentAtIndex(0); 3995a0f08674SEwan Crawford bool convert_complete = false; 3996a0f08674SEwan Crawford const uint32_t id = StringConvert::ToUInt32(id_cstr, UINT32_MAX, 0, &convert_complete); 3997a0f08674SEwan Crawford if (!convert_complete) 3998a0f08674SEwan Crawford { 3999a0f08674SEwan Crawford result.AppendErrorWithFormat("invalid allocation id argument '%s'", id_cstr); 4000a0f08674SEwan Crawford result.SetStatus(eReturnStatusFailed); 4001a0f08674SEwan Crawford return false; 4002a0f08674SEwan Crawford } 4003a0f08674SEwan Crawford 4004a0f08674SEwan Crawford Stream *output_strm = nullptr; 4005a0f08674SEwan Crawford StreamFile outfile_stream; 4006a0f08674SEwan Crawford const FileSpec &outfile_spec = m_options.m_outfile; // Dump allocation to file instead 4007a0f08674SEwan Crawford if (outfile_spec) 4008a0f08674SEwan Crawford { 4009a0f08674SEwan Crawford // Open output file 4010a0f08674SEwan Crawford char path[256]; 4011a0f08674SEwan Crawford outfile_spec.GetPath(path, sizeof(path)); 4012a0f08674SEwan Crawford if (outfile_stream.GetFile().Open(path, File::eOpenOptionWrite | File::eOpenOptionCanCreate).Success()) 4013a0f08674SEwan Crawford { 4014a0f08674SEwan Crawford output_strm = &outfile_stream; 4015a0f08674SEwan Crawford result.GetOutputStream().Printf("Results written to '%s'", path); 4016a0f08674SEwan Crawford result.GetOutputStream().EOL(); 4017a0f08674SEwan Crawford } 4018a0f08674SEwan Crawford else 4019a0f08674SEwan Crawford { 4020a0f08674SEwan Crawford result.AppendErrorWithFormat("Couldn't open file '%s'", path); 4021a0f08674SEwan Crawford result.SetStatus(eReturnStatusFailed); 4022a0f08674SEwan Crawford return false; 4023a0f08674SEwan Crawford } 4024a0f08674SEwan Crawford } 4025a0f08674SEwan Crawford else 4026a0f08674SEwan Crawford output_strm = &result.GetOutputStream(); 4027a0f08674SEwan Crawford 4028a0f08674SEwan Crawford assert(output_strm != nullptr); 4029a0f08674SEwan Crawford bool success = runtime->DumpAllocation(*output_strm, m_exe_ctx.GetFramePtr(), id); 4030a0f08674SEwan Crawford 4031a0f08674SEwan Crawford if (success) 4032a0f08674SEwan Crawford result.SetStatus(eReturnStatusSuccessFinishResult); 4033a0f08674SEwan Crawford else 4034a0f08674SEwan Crawford result.SetStatus(eReturnStatusFailed); 4035a0f08674SEwan Crawford 4036a0f08674SEwan Crawford return true; 4037a0f08674SEwan Crawford } 4038a0f08674SEwan Crawford 4039a0f08674SEwan Crawford private: 4040a0f08674SEwan Crawford CommandOptions m_options; 4041a0f08674SEwan Crawford }; 4042a0f08674SEwan Crawford 4043b3f7f69dSAidan Dodds OptionDefinition CommandObjectRenderScriptRuntimeAllocationDump::CommandOptions::g_option_table[] = { 4044b3f7f69dSAidan Dodds {LLDB_OPT_SET_1, false, "file", 'f', OptionParser::eRequiredArgument, nullptr, nullptr, 0, eArgTypeFilename, 4045a0f08674SEwan Crawford "Print results to specified file instead of command line."}, 4046b3f7f69dSAidan Dodds {0, false, nullptr, 0, 0, nullptr, nullptr, 0, eArgTypeNone, nullptr}}; 4047a0f08674SEwan Crawford 404815f2bd95SEwan Crawford class CommandObjectRenderScriptRuntimeAllocationList : public CommandObjectParsed 404915f2bd95SEwan Crawford { 405015f2bd95SEwan Crawford public: 405115f2bd95SEwan Crawford CommandObjectRenderScriptRuntimeAllocationList(CommandInterpreter &interpreter) 405215f2bd95SEwan Crawford : CommandObjectParsed(interpreter, "renderscript allocation list", 405315f2bd95SEwan Crawford "List renderscript allocations and their information.", "renderscript allocation list", 4054b3f7f69dSAidan Dodds eCommandRequiresProcess | eCommandProcessMustBeLaunched), 4055b3f7f69dSAidan Dodds m_options(interpreter) 405615f2bd95SEwan Crawford { 405715f2bd95SEwan Crawford } 405815f2bd95SEwan Crawford 4059222b937cSEugene Zelenko ~CommandObjectRenderScriptRuntimeAllocationList() override = default; 4060222b937cSEugene Zelenko 4061222b937cSEugene Zelenko Options * 4062222b937cSEugene Zelenko GetOptions() override 406315f2bd95SEwan Crawford { 406415f2bd95SEwan Crawford return &m_options; 406515f2bd95SEwan Crawford } 406615f2bd95SEwan Crawford 406715f2bd95SEwan Crawford class CommandOptions : public Options 406815f2bd95SEwan Crawford { 406915f2bd95SEwan Crawford public: 4070b649b005SEwan Crawford CommandOptions(CommandInterpreter &interpreter) : Options(interpreter), m_id(0) {} 407115f2bd95SEwan Crawford 4072222b937cSEugene Zelenko ~CommandOptions() override = default; 407315f2bd95SEwan Crawford 4074222b937cSEugene Zelenko Error 4075222b937cSEugene Zelenko SetOptionValue(uint32_t option_idx, const char *option_arg) override 407615f2bd95SEwan Crawford { 407715f2bd95SEwan Crawford Error error; 407815f2bd95SEwan Crawford const int short_option = m_getopt_table[option_idx].val; 407915f2bd95SEwan Crawford 408015f2bd95SEwan Crawford switch (short_option) 408115f2bd95SEwan Crawford { 4082b649b005SEwan Crawford case 'i': 4083b649b005SEwan Crawford bool success; 4084b649b005SEwan Crawford m_id = StringConvert::ToUInt32(option_arg, 0, 0, &success); 4085b649b005SEwan Crawford if (!success) 4086b649b005SEwan Crawford error.SetErrorStringWithFormat("invalid integer value for option '%c'", short_option); 408715f2bd95SEwan Crawford break; 408815f2bd95SEwan Crawford default: 408915f2bd95SEwan Crawford error.SetErrorStringWithFormat("unrecognized option '%c'", short_option); 409015f2bd95SEwan Crawford break; 409115f2bd95SEwan Crawford } 409215f2bd95SEwan Crawford return error; 409315f2bd95SEwan Crawford } 409415f2bd95SEwan Crawford 409515f2bd95SEwan Crawford void 4096222b937cSEugene Zelenko OptionParsingStarting() override 409715f2bd95SEwan Crawford { 4098b649b005SEwan Crawford m_id = 0; 409915f2bd95SEwan Crawford } 410015f2bd95SEwan Crawford 410115f2bd95SEwan Crawford const OptionDefinition * 4102222b937cSEugene Zelenko GetDefinitions() override 410315f2bd95SEwan Crawford { 410415f2bd95SEwan Crawford return g_option_table; 410515f2bd95SEwan Crawford } 410615f2bd95SEwan Crawford 410715f2bd95SEwan Crawford static OptionDefinition g_option_table[]; 4108b649b005SEwan Crawford uint32_t m_id; 410915f2bd95SEwan Crawford }; 411015f2bd95SEwan Crawford 411115f2bd95SEwan Crawford bool 4112222b937cSEugene Zelenko DoExecute(Args &command, CommandReturnObject &result) override 411315f2bd95SEwan Crawford { 4114b3f7f69dSAidan Dodds RenderScriptRuntime *runtime = static_cast<RenderScriptRuntime *>( 4115b3f7f69dSAidan Dodds m_exe_ctx.GetProcessPtr()->GetLanguageRuntime(eLanguageTypeExtRenderScript)); 4116b649b005SEwan Crawford runtime->ListAllocations(result.GetOutputStream(), m_exe_ctx.GetFramePtr(), m_options.m_id); 411715f2bd95SEwan Crawford result.SetStatus(eReturnStatusSuccessFinishResult); 411815f2bd95SEwan Crawford return true; 411915f2bd95SEwan Crawford } 412015f2bd95SEwan Crawford 412115f2bd95SEwan Crawford private: 412215f2bd95SEwan Crawford CommandOptions m_options; 412315f2bd95SEwan Crawford }; 412415f2bd95SEwan Crawford 4125b649b005SEwan Crawford OptionDefinition CommandObjectRenderScriptRuntimeAllocationList::CommandOptions::g_option_table[] = { 4126b3f7f69dSAidan Dodds {LLDB_OPT_SET_1, false, "id", 'i', OptionParser::eRequiredArgument, nullptr, nullptr, 0, eArgTypeIndex, 4127b649b005SEwan Crawford "Only show details of a single allocation with specified id."}, 4128b3f7f69dSAidan Dodds {0, false, nullptr, 0, 0, nullptr, nullptr, 0, eArgTypeNone, nullptr}}; 412915f2bd95SEwan Crawford 413055232f09SEwan Crawford class CommandObjectRenderScriptRuntimeAllocationLoad : public CommandObjectParsed 413155232f09SEwan Crawford { 413255232f09SEwan Crawford public: 413355232f09SEwan Crawford CommandObjectRenderScriptRuntimeAllocationLoad(CommandInterpreter &interpreter) 4134b3f7f69dSAidan Dodds : CommandObjectParsed( 4135b3f7f69dSAidan Dodds interpreter, "renderscript allocation load", "Loads renderscript allocation contents from a file.", 4136b3f7f69dSAidan Dodds "renderscript allocation load <ID> <filename>", eCommandRequiresProcess | eCommandProcessMustBeLaunched) 413755232f09SEwan Crawford { 413855232f09SEwan Crawford } 413955232f09SEwan Crawford 4140222b937cSEugene Zelenko ~CommandObjectRenderScriptRuntimeAllocationLoad() override = default; 414155232f09SEwan Crawford 414255232f09SEwan Crawford bool 4143222b937cSEugene Zelenko DoExecute(Args &command, CommandReturnObject &result) override 414455232f09SEwan Crawford { 414555232f09SEwan Crawford const size_t argc = command.GetArgumentCount(); 414655232f09SEwan Crawford if (argc != 2) 414755232f09SEwan Crawford { 4148b3f7f69dSAidan Dodds result.AppendErrorWithFormat("'%s' takes 2 arguments, an allocation ID and filename to read from.", 4149b3f7f69dSAidan Dodds m_cmd_name.c_str()); 415055232f09SEwan Crawford result.SetStatus(eReturnStatusFailed); 415155232f09SEwan Crawford return false; 415255232f09SEwan Crawford } 415355232f09SEwan Crawford 4154b3f7f69dSAidan Dodds RenderScriptRuntime *runtime = static_cast<RenderScriptRuntime *>( 4155b3f7f69dSAidan Dodds m_exe_ctx.GetProcessPtr()->GetLanguageRuntime(eLanguageTypeExtRenderScript)); 415655232f09SEwan Crawford 415755232f09SEwan Crawford const char *id_cstr = command.GetArgumentAtIndex(0); 415855232f09SEwan Crawford bool convert_complete = false; 415955232f09SEwan Crawford const uint32_t id = StringConvert::ToUInt32(id_cstr, UINT32_MAX, 0, &convert_complete); 416055232f09SEwan Crawford if (!convert_complete) 416155232f09SEwan Crawford { 416255232f09SEwan Crawford result.AppendErrorWithFormat("invalid allocation id argument '%s'", id_cstr); 416355232f09SEwan Crawford result.SetStatus(eReturnStatusFailed); 416455232f09SEwan Crawford return false; 416555232f09SEwan Crawford } 416655232f09SEwan Crawford 416755232f09SEwan Crawford const char *filename = command.GetArgumentAtIndex(1); 416855232f09SEwan Crawford bool success = runtime->LoadAllocation(result.GetOutputStream(), id, filename, m_exe_ctx.GetFramePtr()); 416955232f09SEwan Crawford 417055232f09SEwan Crawford if (success) 417155232f09SEwan Crawford result.SetStatus(eReturnStatusSuccessFinishResult); 417255232f09SEwan Crawford else 417355232f09SEwan Crawford result.SetStatus(eReturnStatusFailed); 417455232f09SEwan Crawford 417555232f09SEwan Crawford return true; 417655232f09SEwan Crawford } 417755232f09SEwan Crawford }; 417855232f09SEwan Crawford 417955232f09SEwan Crawford class CommandObjectRenderScriptRuntimeAllocationSave : public CommandObjectParsed 418055232f09SEwan Crawford { 418155232f09SEwan Crawford public: 418255232f09SEwan Crawford CommandObjectRenderScriptRuntimeAllocationSave(CommandInterpreter &interpreter) 4183b3f7f69dSAidan Dodds : CommandObjectParsed( 4184b3f7f69dSAidan Dodds interpreter, "renderscript allocation save", "Write renderscript allocation contents to a file.", 4185b3f7f69dSAidan Dodds "renderscript allocation save <ID> <filename>", eCommandRequiresProcess | eCommandProcessMustBeLaunched) 418655232f09SEwan Crawford { 418755232f09SEwan Crawford } 418855232f09SEwan Crawford 4189222b937cSEugene Zelenko ~CommandObjectRenderScriptRuntimeAllocationSave() override = default; 419055232f09SEwan Crawford 419155232f09SEwan Crawford bool 4192222b937cSEugene Zelenko DoExecute(Args &command, CommandReturnObject &result) override 419355232f09SEwan Crawford { 419455232f09SEwan Crawford const size_t argc = command.GetArgumentCount(); 419555232f09SEwan Crawford if (argc != 2) 419655232f09SEwan Crawford { 4197b3f7f69dSAidan Dodds result.AppendErrorWithFormat("'%s' takes 2 arguments, an allocation ID and filename to read from.", 4198b3f7f69dSAidan Dodds m_cmd_name.c_str()); 419955232f09SEwan Crawford result.SetStatus(eReturnStatusFailed); 420055232f09SEwan Crawford return false; 420155232f09SEwan Crawford } 420255232f09SEwan Crawford 4203b3f7f69dSAidan Dodds RenderScriptRuntime *runtime = static_cast<RenderScriptRuntime *>( 4204b3f7f69dSAidan Dodds m_exe_ctx.GetProcessPtr()->GetLanguageRuntime(eLanguageTypeExtRenderScript)); 420555232f09SEwan Crawford 420655232f09SEwan Crawford const char *id_cstr = command.GetArgumentAtIndex(0); 420755232f09SEwan Crawford bool convert_complete = false; 420855232f09SEwan Crawford const uint32_t id = StringConvert::ToUInt32(id_cstr, UINT32_MAX, 0, &convert_complete); 420955232f09SEwan Crawford if (!convert_complete) 421055232f09SEwan Crawford { 421155232f09SEwan Crawford result.AppendErrorWithFormat("invalid allocation id argument '%s'", id_cstr); 421255232f09SEwan Crawford result.SetStatus(eReturnStatusFailed); 421355232f09SEwan Crawford return false; 421455232f09SEwan Crawford } 421555232f09SEwan Crawford 421655232f09SEwan Crawford const char *filename = command.GetArgumentAtIndex(1); 421755232f09SEwan Crawford bool success = runtime->SaveAllocation(result.GetOutputStream(), id, filename, m_exe_ctx.GetFramePtr()); 421855232f09SEwan Crawford 421955232f09SEwan Crawford if (success) 422055232f09SEwan Crawford result.SetStatus(eReturnStatusSuccessFinishResult); 422155232f09SEwan Crawford else 422255232f09SEwan Crawford result.SetStatus(eReturnStatusFailed); 422355232f09SEwan Crawford 422455232f09SEwan Crawford return true; 422555232f09SEwan Crawford } 422655232f09SEwan Crawford }; 422755232f09SEwan Crawford 42280d2bfcfbSEwan Crawford class CommandObjectRenderScriptRuntimeAllocationRefresh : public CommandObjectParsed 42290d2bfcfbSEwan Crawford { 42300d2bfcfbSEwan Crawford public: 42310d2bfcfbSEwan Crawford CommandObjectRenderScriptRuntimeAllocationRefresh(CommandInterpreter &interpreter) 42320d2bfcfbSEwan Crawford : CommandObjectParsed(interpreter, "renderscript allocation refresh", 42330d2bfcfbSEwan Crawford "Recomputes the details of all allocations.", "renderscript allocation refresh", 42340d2bfcfbSEwan Crawford eCommandRequiresProcess | eCommandProcessMustBeLaunched) 42350d2bfcfbSEwan Crawford { 42360d2bfcfbSEwan Crawford } 42370d2bfcfbSEwan Crawford 42380d2bfcfbSEwan Crawford ~CommandObjectRenderScriptRuntimeAllocationRefresh() override = default; 42390d2bfcfbSEwan Crawford 42400d2bfcfbSEwan Crawford bool 42410d2bfcfbSEwan Crawford DoExecute(Args &command, CommandReturnObject &result) override 42420d2bfcfbSEwan Crawford { 42430d2bfcfbSEwan Crawford RenderScriptRuntime *runtime = static_cast<RenderScriptRuntime *>( 42440d2bfcfbSEwan Crawford m_exe_ctx.GetProcessPtr()->GetLanguageRuntime(eLanguageTypeExtRenderScript)); 42450d2bfcfbSEwan Crawford 42460d2bfcfbSEwan Crawford bool success = runtime->RecomputeAllAllocations(result.GetOutputStream(), m_exe_ctx.GetFramePtr()); 42470d2bfcfbSEwan Crawford 42480d2bfcfbSEwan Crawford if (success) 42490d2bfcfbSEwan Crawford { 42500d2bfcfbSEwan Crawford result.SetStatus(eReturnStatusSuccessFinishResult); 42510d2bfcfbSEwan Crawford return true; 42520d2bfcfbSEwan Crawford } 42530d2bfcfbSEwan Crawford else 42540d2bfcfbSEwan Crawford { 42550d2bfcfbSEwan Crawford result.SetStatus(eReturnStatusFailed); 42560d2bfcfbSEwan Crawford return false; 42570d2bfcfbSEwan Crawford } 42580d2bfcfbSEwan Crawford } 42590d2bfcfbSEwan Crawford }; 42600d2bfcfbSEwan Crawford 426115f2bd95SEwan Crawford class CommandObjectRenderScriptRuntimeAllocation : public CommandObjectMultiword 426215f2bd95SEwan Crawford { 426315f2bd95SEwan Crawford public: 426415f2bd95SEwan Crawford CommandObjectRenderScriptRuntimeAllocation(CommandInterpreter &interpreter) 4265b3f7f69dSAidan Dodds : CommandObjectMultiword(interpreter, "renderscript allocation", 4266b3f7f69dSAidan Dodds "Commands that deal with renderscript allocations.", nullptr) 426715f2bd95SEwan Crawford { 426815f2bd95SEwan Crawford LoadSubCommand("list", CommandObjectSP(new CommandObjectRenderScriptRuntimeAllocationList(interpreter))); 4269a0f08674SEwan Crawford LoadSubCommand("dump", CommandObjectSP(new CommandObjectRenderScriptRuntimeAllocationDump(interpreter))); 427055232f09SEwan Crawford LoadSubCommand("save", CommandObjectSP(new CommandObjectRenderScriptRuntimeAllocationSave(interpreter))); 427155232f09SEwan Crawford LoadSubCommand("load", CommandObjectSP(new CommandObjectRenderScriptRuntimeAllocationLoad(interpreter))); 42720d2bfcfbSEwan Crawford LoadSubCommand("refresh", CommandObjectSP(new CommandObjectRenderScriptRuntimeAllocationRefresh(interpreter))); 427315f2bd95SEwan Crawford } 427415f2bd95SEwan Crawford 4275222b937cSEugene Zelenko ~CommandObjectRenderScriptRuntimeAllocation() override = default; 427615f2bd95SEwan Crawford }; 427715f2bd95SEwan Crawford 42784640cde1SColin Riley class CommandObjectRenderScriptRuntimeStatus : public CommandObjectParsed 42794640cde1SColin Riley { 42804640cde1SColin Riley public: 42814640cde1SColin Riley CommandObjectRenderScriptRuntimeStatus(CommandInterpreter &interpreter) 4282b3f7f69dSAidan Dodds : CommandObjectParsed(interpreter, "renderscript status", "Displays current renderscript runtime status.", 4283b3f7f69dSAidan Dodds "renderscript status", eCommandRequiresProcess | eCommandProcessMustBeLaunched) 42844640cde1SColin Riley { 42854640cde1SColin Riley } 42864640cde1SColin Riley 4287222b937cSEugene Zelenko ~CommandObjectRenderScriptRuntimeStatus() override = default; 42884640cde1SColin Riley 42894640cde1SColin Riley bool 4290222b937cSEugene Zelenko DoExecute(Args &command, CommandReturnObject &result) override 42914640cde1SColin Riley { 42924640cde1SColin Riley RenderScriptRuntime *runtime = 42934640cde1SColin Riley (RenderScriptRuntime *)m_exe_ctx.GetProcessPtr()->GetLanguageRuntime(eLanguageTypeExtRenderScript); 42944640cde1SColin Riley runtime->Status(result.GetOutputStream()); 42954640cde1SColin Riley result.SetStatus(eReturnStatusSuccessFinishResult); 42964640cde1SColin Riley return true; 42974640cde1SColin Riley } 42984640cde1SColin Riley }; 42994640cde1SColin Riley 43005ec532a9SColin Riley class CommandObjectRenderScriptRuntime : public CommandObjectMultiword 43015ec532a9SColin Riley { 43025ec532a9SColin Riley public: 43035ec532a9SColin Riley CommandObjectRenderScriptRuntime(CommandInterpreter &interpreter) 43045ec532a9SColin Riley : CommandObjectMultiword(interpreter, "renderscript", "A set of commands for operating on renderscript.", 43055ec532a9SColin Riley "renderscript <subcommand> [<subcommand-options>]") 43065ec532a9SColin Riley { 43075ec532a9SColin Riley LoadSubCommand("module", CommandObjectSP(new CommandObjectRenderScriptRuntimeModule(interpreter))); 43084640cde1SColin Riley LoadSubCommand("status", CommandObjectSP(new CommandObjectRenderScriptRuntimeStatus(interpreter))); 43094640cde1SColin Riley LoadSubCommand("kernel", CommandObjectSP(new CommandObjectRenderScriptRuntimeKernel(interpreter))); 43104640cde1SColin Riley LoadSubCommand("context", CommandObjectSP(new CommandObjectRenderScriptRuntimeContext(interpreter))); 431115f2bd95SEwan Crawford LoadSubCommand("allocation", CommandObjectSP(new CommandObjectRenderScriptRuntimeAllocation(interpreter))); 43125ec532a9SColin Riley } 43135ec532a9SColin Riley 4314222b937cSEugene Zelenko ~CommandObjectRenderScriptRuntime() override = default; 43155ec532a9SColin Riley }; 4316ef20b08fSColin Riley 4317ef20b08fSColin Riley void 4318ef20b08fSColin Riley RenderScriptRuntime::Initiate() 43195ec532a9SColin Riley { 4320ef20b08fSColin Riley assert(!m_initiated); 43215ec532a9SColin Riley } 4322ef20b08fSColin Riley 4323ef20b08fSColin Riley RenderScriptRuntime::RenderScriptRuntime(Process *process) 4324b3f7f69dSAidan Dodds : lldb_private::CPPLanguageRuntime(process), 4325b3f7f69dSAidan Dodds m_initiated(false), 4326b3f7f69dSAidan Dodds m_debuggerPresentFlagged(false), 43277dc7771cSEwan Crawford m_breakAllKernels(false) 4328ef20b08fSColin Riley { 43294640cde1SColin Riley ModulesDidLoad(process->GetTarget().GetImages()); 4330ef20b08fSColin Riley } 43314640cde1SColin Riley 43324640cde1SColin Riley lldb::CommandObjectSP 43334640cde1SColin Riley RenderScriptRuntime::GetCommandObject(lldb_private::CommandInterpreter &interpreter) 43344640cde1SColin Riley { 43350a66e2f1SEnrico Granata return CommandObjectSP(new CommandObjectRenderScriptRuntime(interpreter)); 43364640cde1SColin Riley } 43374640cde1SColin Riley 433878f339d1SEwan Crawford RenderScriptRuntime::~RenderScriptRuntime() = default; 4339