1 //===-- RenderScriptx86ABIFixups.cpp --------------------------------------===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 9 #include <set> 10 11 #include "llvm/ADT/StringRef.h" 12 #include "llvm/IR/BasicBlock.h" 13 #include "llvm/IR/Constants.h" 14 #include "llvm/IR/Function.h" 15 #include "llvm/IR/Instruction.h" 16 #include "llvm/IR/Instructions.h" 17 #include "llvm/IR/Module.h" 18 #include "llvm/IRReader/IRReader.h" 19 #include "llvm/Pass.h" 20 21 #include "lldb/Target/Process.h" 22 #include "lldb/Utility/LLDBLog.h" 23 #include "lldb/Utility/Log.h" 24 25 using namespace lldb_private; 26 27 static bool isRSAPICall(llvm::Module &module, llvm::CallInst *call_inst) { 28 // TODO get the list of renderscript modules from lldb and check if 29 // this llvm::Module calls into any of them. 30 (void)module; 31 const auto func_name = call_inst->getCalledFunction()->getName(); 32 if (func_name.startswith("llvm") || func_name.startswith("lldb")) 33 return false; 34 35 if (call_inst->getCalledFunction()->isIntrinsic()) 36 return false; 37 38 return true; 39 } 40 41 static bool isRSLargeReturnCall(llvm::Module &module, 42 llvm::CallInst *call_inst) { 43 // i686 and x86_64 returns for large vectors in the RenderScript API are not 44 // handled as normal register pairs, but as a hidden sret type. This is not 45 // reflected in the debug info or mangled symbol name, and the android ABI 46 // for x86 and x86_64, (as well as the emulators) specifies there is no AVX, 47 // so bcc generates an sret function because we cannot natively return 48 // 256 bit vectors. 49 // This function simply checks whether a function has a > 128bit return type. 50 // It is perhaps an unreliable heuristic, and relies on bcc not generating 51 // AVX code, so if the android ABI one day provides for AVX, this function 52 // may go out of fashion. 53 (void)module; 54 if (!call_inst || !call_inst->getCalledFunction()) 55 return false; 56 57 return call_inst->getCalledFunction() 58 ->getReturnType() 59 ->getPrimitiveSizeInBits() > 128; 60 } 61 62 static bool isRSAllocationPtrTy(const llvm::Type *type) { 63 if (!type->isPointerTy()) 64 return false; 65 auto ptr_type = type->getPointerElementType(); 66 67 return ptr_type->isStructTy() && 68 ptr_type->getStructName().startswith("struct.rs_allocation"); 69 } 70 71 static bool isRSAllocationTyCallSite(llvm::Module &module, 72 llvm::CallInst *call_inst) { 73 (void)module; 74 if (!call_inst->hasByValArgument()) 75 return false; 76 for (const auto *param : call_inst->operand_values()) 77 if (isRSAllocationPtrTy(param->getType())) 78 return true; 79 return false; 80 } 81 82 static llvm::FunctionType *cloneToStructRetFnTy(llvm::CallInst *call_inst) { 83 // on x86 StructReturn functions return a pointer to the return value, rather 84 // than the return value itself 85 // [ref](http://www.agner.org/optimize/calling_conventions.pdf section 6). We 86 // create a return type by getting the pointer type of the old return type, 87 // and inserting a new initial argument of pointer type of the original 88 // return type. 89 Log *log = GetLog(LLDBLog::Language | LLDBLog::Expressions); 90 91 assert(call_inst && "no CallInst"); 92 llvm::Function *orig = call_inst->getCalledFunction(); 93 assert(orig && "CallInst has no called function"); 94 llvm::FunctionType *orig_type = orig->getFunctionType(); 95 auto name = orig->getName(); 96 LLDB_LOGF(log, "%s - cloning to StructRet function for '%s'", __FUNCTION__, 97 name.str().c_str()); 98 99 unsigned num_params = orig_type->getNumParams(); 100 std::vector<llvm::Type *> new_params{num_params + 1, nullptr}; 101 std::vector<llvm::Type *> params{orig_type->param_begin(), 102 orig_type->param_end()}; 103 104 // This may not work if the function is somehow declared void as llvm is 105 // strongly typed and represents void* with i8* 106 assert(!orig_type->getReturnType()->isVoidTy() && 107 "Cannot add StructRet attribute to void function"); 108 llvm::PointerType *return_type_ptr_type = 109 llvm::PointerType::getUnqual(orig->getReturnType()); 110 assert(return_type_ptr_type && 111 "failed to get function return type PointerType"); 112 if (!return_type_ptr_type) 113 return nullptr; 114 115 LLDB_LOGF(log, 116 "%s - return type pointer type for StructRet clone @ '0x%p':\n", 117 __FUNCTION__, (void *)return_type_ptr_type); 118 // put the sret pointer argument in place at the beginning of the 119 // argument list. 120 params.emplace(params.begin(), return_type_ptr_type); 121 assert(params.size() == num_params + 1); 122 return llvm::FunctionType::get(return_type_ptr_type, params, 123 orig->isVarArg()); 124 } 125 126 static bool 127 findRSCallSites(llvm::Module &module, std::set<llvm::CallInst *> &rs_callsites, 128 bool (*predicate)(llvm::Module &, llvm::CallInst *)) { 129 bool found = false; 130 131 for (auto &func : module.getFunctionList()) 132 for (auto &block : func.getBasicBlockList()) 133 for (auto &inst : block) { 134 llvm::CallInst *call_inst = 135 llvm::dyn_cast_or_null<llvm::CallInst>(&inst); 136 if (!call_inst || !call_inst->getCalledFunction()) 137 // This is not the call-site you are looking for... 138 continue; 139 if (isRSAPICall(module, call_inst) && predicate(module, call_inst)) { 140 rs_callsites.insert(call_inst); 141 found = true; 142 } 143 } 144 return found; 145 } 146 147 static bool fixupX86StructRetCalls(llvm::Module &module) { 148 bool changed = false; 149 // changing a basic block while iterating over it seems to have some 150 // undefined behaviour going on so we find all RS callsites first, then fix 151 // them up after consuming the iterator. 152 std::set<llvm::CallInst *> rs_callsites; 153 if (!findRSCallSites(module, rs_callsites, isRSLargeReturnCall)) 154 return false; 155 156 for (auto call_inst : rs_callsites) { 157 llvm::FunctionType *new_func_type = cloneToStructRetFnTy(call_inst); 158 assert(new_func_type && 159 "failed to clone functionType for Renderscript ABI fixup"); 160 161 llvm::Function *func = call_inst->getCalledFunction(); 162 assert(func && "cannot resolve function in RenderScriptRuntime"); 163 // Copy the original call arguments 164 std::vector<llvm::Value *> new_call_args(call_inst->arg_begin(), 165 call_inst->arg_end()); 166 167 // Allocate enough space to store the return value of the original function 168 // we pass a pointer to this allocation as the StructRet param, and then 169 // copy its value into the lldb return value 170 const llvm::DataLayout &DL = module.getDataLayout(); 171 llvm::AllocaInst *return_value_alloc = new llvm::AllocaInst( 172 func->getReturnType(), DL.getAllocaAddrSpace(), "var_vector_return_alloc", 173 call_inst); 174 // use the new allocation as the new first argument 175 new_call_args.emplace(new_call_args.begin(), 176 llvm::cast<llvm::Value>(return_value_alloc)); 177 llvm::PointerType *new_func_ptr_type = 178 llvm::PointerType::get(new_func_type, 0); 179 // Create the type cast from the old function type to the new one 180 llvm::Constant *new_func_cast = llvm::ConstantExpr::getCast( 181 llvm::Instruction::BitCast, func, new_func_ptr_type); 182 // create an allocation for a new function pointer 183 llvm::AllocaInst *new_func_ptr = 184 new llvm::AllocaInst(new_func_ptr_type, DL.getAllocaAddrSpace(), 185 "new_func_ptr", call_inst); 186 // store the new_func_cast to the newly allocated space 187 (new llvm::StoreInst(new_func_cast, new_func_ptr, call_inst)) 188 ->setName("new_func_ptr_load_cast"); 189 // load the new function address ready for a jump 190 llvm::LoadInst *new_func_addr_load = new llvm::LoadInst( 191 new_func_ptr_type, new_func_ptr, "load_func_pointer", call_inst); 192 // and create a callinstruction from it 193 llvm::CallInst *new_call_inst = 194 llvm::CallInst::Create(new_func_type, new_func_addr_load, new_call_args, 195 "new_func_call", call_inst); 196 new_call_inst->setCallingConv(call_inst->getCallingConv()); 197 new_call_inst->setTailCall(call_inst->isTailCall()); 198 llvm::LoadInst *lldb_save_result_address = 199 new llvm::LoadInst(func->getReturnType(), return_value_alloc, 200 "save_return_val", call_inst); 201 202 // Now remove the old broken call 203 call_inst->replaceAllUsesWith(lldb_save_result_address); 204 call_inst->eraseFromParent(); 205 changed = true; 206 } 207 return changed; 208 } 209 210 static bool fixupRSAllocationStructByValCalls(llvm::Module &module) { 211 // On x86_64, calls to functions in the RS runtime that take an 212 // `rs_allocation` type argument are actually handled as by-ref params by 213 // bcc, but appear to be passed by value by lldb (the callsite all use 214 // `struct byval`). On x86_64 Linux, struct arguments are transferred in 215 // registers if the struct size is no bigger than 128bits 216 // [ref](http://www.agner.org/optimize/calling_conventions.pdf) section 7.1 217 // "Passing and returning objects" otherwise passed on the stack. an object 218 // of type `rs_allocation` is actually 256bits, so should be passed on the 219 // stack. However, code generated by bcc actually treats formal params of 220 // type `rs_allocation` as `rs_allocation *` so we need to convert the 221 // calling convention to pass by reference, and remove any hint of byval from 222 // formal parameters. 223 bool changed = false; 224 std::set<llvm::CallInst *> rs_callsites; 225 if (!findRSCallSites(module, rs_callsites, isRSAllocationTyCallSite)) 226 return false; 227 228 std::set<llvm::Function *> rs_functions; 229 230 // for all call instructions 231 for (auto call_inst : rs_callsites) { 232 // add the called function to a set so that we can strip its byval 233 // attributes in another pass 234 rs_functions.insert(call_inst->getCalledFunction()); 235 236 // get the function attributes 237 llvm::AttributeList call_attribs = call_inst->getAttributes(); 238 239 // iterate over the argument attributes 240 for (unsigned I : call_attribs.indexes()) { 241 // if this argument is passed by val 242 if (call_attribs.hasAttributeAtIndex(I, llvm::Attribute::ByVal)) { 243 // strip away the byval attribute 244 call_inst->removeAttributeAtIndex(I, llvm::Attribute::ByVal); 245 changed = true; 246 } 247 } 248 } 249 250 // for all called function decls 251 for (auto func : rs_functions) { 252 // inspect all of the arguments in the call 253 for (auto &arg : func->args()) { 254 if (arg.hasByValAttr()) { 255 arg.removeAttr(llvm::Attribute::ByVal); 256 changed = true; 257 } 258 } 259 } 260 return changed; 261 } 262 263 namespace lldb_private { 264 namespace lldb_renderscript { 265 266 bool fixupX86FunctionCalls(llvm::Module &module) { 267 return fixupX86StructRetCalls(module); 268 } 269 270 bool fixupX86_64FunctionCalls(llvm::Module &module) { 271 bool changed = false; 272 changed |= fixupX86StructRetCalls(module); 273 changed |= fixupRSAllocationStructByValCalls(module); 274 return changed; 275 } 276 277 } // end namespace lldb_renderscript 278 } // end namespace lldb_private 279