9e62e066fe
V1 library will be supported as librocprofiler64.so and V2 will be supported as librocprofiler64v2.so and headers will be rocprofiler.h for V1 and v2/rocprofiler.h for v2 Change-Id: Ibe5bdbf2f79f0175342c648e917ae77918186604
521 lines
18 KiB
C++
521 lines
18 KiB
C++
/******************************************************************************
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MIT License
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Copyright (c) 2018 ROCm Core Technology
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Permission is hereby granted, free of charge, to any person obtaining a copy
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of this software and associated documentation files (the "Software"), to deal
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in the Software without restriction, including without limitation the rights
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to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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copies of the Software, and to permit persons to whom the Software is
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furnished to do so, subject to the following conditions:
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The above copyright notice and this permission notice shall be included in all
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copies or substantial portions of the Software.
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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SOFTWARE.
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*******************************************************************************/
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#ifndef _SRC_CORE_HSA_INTERCEPTOR_H
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#define _SRC_CORE_HSA_INTERCEPTOR_H
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#include <cxxabi.h>
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#include <hsa/hsa.h>
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#include <hsa/hsa_ext_amd.h>
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#include <hsa/hsa_ven_amd_loader.h>
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#include <atomic>
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#include <mutex>
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#include "rocprofiler.h"
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#include "util/exception.h"
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#include "util/hsa_rsrc_factory.h"
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#define HSA_RT(call) \
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do { \
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const hsa_status_t status = call; \
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if (status != HSA_STATUS_SUCCESS) EXC_ABORT(status, #call); \
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} while(0)
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#define IS_HSA_CALLBACK(ID) \
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const auto __id = ID; (void)__id; \
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void *__arg = arg_.load(); (void)__arg; \
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rocprofiler_hsa_callback_fun_t __callback = \
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(ID == ROCPROFILER_HSA_CB_ID_ALLOCATE) ? callbacks_.allocate: \
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(ID == ROCPROFILER_HSA_CB_ID_DEVICE) ? callbacks_.device: \
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(ID == ROCPROFILER_HSA_CB_ID_MEMCOPY) ? callbacks_.memcopy: \
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(ID == ROCPROFILER_HSA_CB_ID_SUBMIT) ? callbacks_.submit: \
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(ID == ROCPROFILER_HSA_CB_ID_KSYMBOL) ? callbacks_.ksymbol: \
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callbacks_.codeobj; \
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if ((__callback != NULL) && (recursion_ == false))
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#define DO_HSA_CALLBACK \
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do { \
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recursion_ = true; \
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__callback(__id, &data, __arg); \
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recursion_ = false; \
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} while (0)
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#define ISSUE_HSA_CALLBACK(ID) \
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do { IS_HSA_CALLBACK(ID) { DO_HSA_CALLBACK; } } while(0)
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// Demangle C++ symbol name
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static const char* cpp_demangle(const char* symname) {
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size_t size = 0;
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int status;
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const char* ret = abi::__cxa_demangle(symname, NULL, &size, &status);
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return (ret != 0) ? ret : strdup(symname);
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}
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namespace rocprofiler {
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extern decltype(hsa_memory_allocate)* hsa_memory_allocate_fn;
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extern decltype(hsa_memory_assign_agent)* hsa_memory_assign_agent_fn;
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extern decltype(hsa_memory_copy)* hsa_memory_copy_fn;
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extern decltype(hsa_amd_memory_pool_allocate)* hsa_amd_memory_pool_allocate_fn;
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extern decltype(hsa_amd_memory_pool_free)* hsa_amd_memory_pool_free_fn;
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extern decltype(hsa_amd_agents_allow_access)* hsa_amd_agents_allow_access_fn;
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extern decltype(hsa_amd_memory_async_copy)* hsa_amd_memory_async_copy_fn;
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extern decltype(hsa_executable_freeze)* hsa_executable_freeze_fn;
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extern decltype(hsa_executable_destroy)* hsa_executable_destroy_fn;
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class HsaInterceptor {
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public:
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typedef std::atomic<void*> arg_t;
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typedef std::mutex mutex_t;
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static void Enable(const bool& enable) { enable_ = enable; }
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static void HsaIntercept(HsaApiTable* table) {
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if (enable_) {
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// Fetching AMD Loader HSA extension API
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HSA_RT(hsa_system_get_major_extension_table(
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HSA_EXTENSION_AMD_LOADER,
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1,
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sizeof(hsa_ven_amd_loader_1_01_pfn_t),
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&LoaderApiTable));
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// Saving original API functions
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hsa_memory_allocate_fn = table->core_->hsa_memory_allocate_fn;
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hsa_memory_assign_agent_fn = table->core_->hsa_memory_assign_agent_fn;
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hsa_memory_copy_fn = table->core_->hsa_memory_copy_fn;
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hsa_amd_memory_pool_allocate_fn = table->amd_ext_->hsa_amd_memory_pool_allocate_fn;
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hsa_amd_memory_pool_free_fn = table->amd_ext_->hsa_amd_memory_pool_free_fn;
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hsa_amd_agents_allow_access_fn = table->amd_ext_->hsa_amd_agents_allow_access_fn;
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hsa_amd_memory_async_copy_fn = table->amd_ext_->hsa_amd_memory_async_copy_fn;
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hsa_executable_freeze_fn = table->core_->hsa_executable_freeze_fn;
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hsa_executable_destroy_fn = table->core_->hsa_executable_destroy_fn;
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// Intercepting HSA API
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table->core_->hsa_memory_allocate_fn = MemoryAllocate;
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table->core_->hsa_memory_assign_agent_fn = MemoryAssignAgent;
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table->core_->hsa_memory_copy_fn = MemoryCopy;
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table->amd_ext_->hsa_amd_memory_pool_allocate_fn = MemoryPoolAllocate;
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table->amd_ext_->hsa_amd_memory_pool_free_fn = MemoryPoolFree;
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table->amd_ext_->hsa_amd_agents_allow_access_fn = AgentsAllowAccess;
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table->amd_ext_->hsa_amd_memory_async_copy_fn = MemoryAsyncCopy;
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table->core_->hsa_executable_freeze_fn = ExecutableFreeze;
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table->core_->hsa_executable_destroy_fn = ExecutableDestroy;
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}
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}
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static void SetCallbacks(rocprofiler_hsa_callbacks_t callbacks, void* arg) {
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std::lock_guard<mutex_t> lck(mutex_);
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callbacks_ = callbacks;
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arg_.store(arg);
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}
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private:
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static hsa_status_t HSA_API MemoryAllocate(hsa_region_t region,
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size_t size,
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void** ptr)
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{
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hsa_status_t status = HSA_STATUS_SUCCESS;
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HSA_RT(hsa_memory_allocate_fn(region, size, ptr));
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IS_HSA_CALLBACK(ROCPROFILER_HSA_CB_ID_ALLOCATE) {
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rocprofiler_hsa_callback_data_t data{};
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data.allocate.ptr = *ptr;
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data.allocate.size = size;
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HSA_RT(hsa_region_get_info(region, HSA_REGION_INFO_SEGMENT, &data.allocate.segment));
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HSA_RT(hsa_region_get_info(region, HSA_REGION_INFO_GLOBAL_FLAGS, &data.allocate.global_flag));
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DO_HSA_CALLBACK;
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}
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return status;
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}
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static hsa_status_t MemoryAssignAgent(
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void *ptr,
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hsa_agent_t agent,
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hsa_access_permission_t access)
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{
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hsa_status_t status = HSA_STATUS_SUCCESS;
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HSA_RT(hsa_memory_assign_agent_fn(ptr, agent, access));
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IS_HSA_CALLBACK(ROCPROFILER_HSA_CB_ID_DEVICE) {
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rocprofiler_hsa_callback_data_t data{};
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data.device.ptr = ptr;
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HSA_RT(hsa_agent_get_info(agent, HSA_AGENT_INFO_DEVICE, &data.device.type));
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DO_HSA_CALLBACK;
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}
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return status;
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}
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// Spawn device allow access callback
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static void DeviceCallback(
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uint32_t num_agents,
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const hsa_agent_t* agents,
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const void* ptr)
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{
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for (const hsa_agent_t* agent_p = agents; agent_p < (agents + num_agents); ++agent_p) {
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hsa_agent_t agent = *agent_p;
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rocprofiler_hsa_callback_data_t data{};
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data.device.id = util::HsaRsrcFactory::Instance().GetAgentInfo(agent)->dev_index;
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data.device.agent = agent;
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data.device.ptr = ptr;
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HSA_RT(hsa_agent_get_info(agent, HSA_AGENT_INFO_DEVICE, &data.device.type));
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ISSUE_HSA_CALLBACK(ROCPROFILER_HSA_CB_ID_DEVICE);
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}
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}
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// Agent allow access callback 'hsa_amd_agents_allow_access'
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static hsa_status_t AgentsAllowAccess(
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uint32_t num_agents,
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const hsa_agent_t* agents,
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const uint32_t* flags,
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const void* ptr)
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{
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hsa_status_t status = HSA_STATUS_SUCCESS;
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HSA_RT(hsa_amd_agents_allow_access_fn(num_agents, agents, flags, ptr));
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IS_HSA_CALLBACK(ROCPROFILER_HSA_CB_ID_DEVICE) {
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DeviceCallback(num_agents, agents, ptr);
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}
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return status;
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}
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// Callback function to get available in the system agents
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struct agent_callback_data_t {
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hsa_amd_memory_pool_t pool;
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void* ptr;
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};
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static hsa_status_t AgentCallback(hsa_agent_t agent, void* data) {
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agent_callback_data_t* callback_data = reinterpret_cast<agent_callback_data_t*>(data);
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hsa_amd_agent_memory_pool_info_t attribute = HSA_AMD_AGENT_MEMORY_POOL_INFO_ACCESS;
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hsa_amd_memory_pool_access_t value;
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HSA_RT(hsa_amd_agent_memory_pool_get_info(agent, callback_data->pool, attribute, &value));
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if (value == HSA_AMD_MEMORY_POOL_ACCESS_ALLOWED_BY_DEFAULT) {
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DeviceCallback(1, &agent, callback_data->ptr);
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}
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return HSA_STATUS_SUCCESS;
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}
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static hsa_status_t MemoryPoolAllocate(
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hsa_amd_memory_pool_t pool,
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size_t size,
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uint32_t flags,
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void** ptr)
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{
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hsa_status_t status = HSA_STATUS_SUCCESS;
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HSA_RT(hsa_amd_memory_pool_allocate_fn(pool, size, flags, ptr));
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if (size != 0) {
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IS_HSA_CALLBACK(ROCPROFILER_HSA_CB_ID_ALLOCATE) {
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rocprofiler_hsa_callback_data_t data{};
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data.allocate.ptr = *ptr;
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data.allocate.size = size;
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HSA_RT(hsa_amd_memory_pool_get_info(pool, HSA_AMD_MEMORY_POOL_INFO_SEGMENT, &data.allocate.segment));
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HSA_RT(hsa_amd_memory_pool_get_info(pool, HSA_AMD_MEMORY_POOL_INFO_GLOBAL_FLAGS, &data.allocate.global_flag));
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DO_HSA_CALLBACK;
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IS_HSA_CALLBACK(ROCPROFILER_HSA_CB_ID_DEVICE) {
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// Scan the pool assigned devices
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agent_callback_data_t callback_data{pool, *ptr};
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hsa_iterate_agents(AgentCallback, &callback_data);
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}
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}
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}
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return status;
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}
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static hsa_status_t MemoryPoolFree(
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void* ptr)
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{
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hsa_status_t status = HSA_STATUS_SUCCESS;
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IS_HSA_CALLBACK(ROCPROFILER_HSA_CB_ID_ALLOCATE) {
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rocprofiler_hsa_callback_data_t data{};
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data.allocate.ptr = ptr;
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data.allocate.size = 0;
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DO_HSA_CALLBACK;
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}
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HSA_RT(hsa_amd_memory_pool_free_fn(ptr));
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return status;
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}
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static hsa_status_t MemoryCopy(
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void *dst,
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const void *src,
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size_t size)
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{
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hsa_status_t status = HSA_STATUS_SUCCESS;
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HSA_RT(hsa_memory_copy_fn(dst, src, size));
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IS_HSA_CALLBACK(ROCPROFILER_HSA_CB_ID_MEMCOPY) {
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rocprofiler_hsa_callback_data_t data{};
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data.memcopy.dst = dst;
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data.memcopy.src = src;
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data.memcopy.size = size;
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DO_HSA_CALLBACK;
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}
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return status;
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}
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static hsa_status_t MemoryAsyncCopy(
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void* dst, hsa_agent_t dst_agent, const void* src,
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hsa_agent_t src_agent, size_t size,
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uint32_t num_dep_signals,
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const hsa_signal_t* dep_signals,
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hsa_signal_t completion_signal)
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{
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hsa_status_t status = HSA_STATUS_SUCCESS;
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HSA_RT(hsa_amd_memory_async_copy_fn(
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dst, dst_agent, src, src_agent, size,
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num_dep_signals, dep_signals, completion_signal));
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IS_HSA_CALLBACK(ROCPROFILER_HSA_CB_ID_MEMCOPY) {
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rocprofiler_hsa_callback_data_t data{};
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data.memcopy.dst = dst;
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data.memcopy.src = src;
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data.memcopy.size = size;
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DO_HSA_CALLBACK;
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}
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return status;
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}
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static hsa_status_t CodeObjectCallback(
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hsa_executable_t executable,
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hsa_loaded_code_object_t loaded_code_object,
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void* arg)
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{
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const int free_flag = reinterpret_cast<long>(arg);
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hsa_ven_amd_loader_code_object_storage_type_t storage_type =
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HSA_VEN_AMD_LOADER_CODE_OBJECT_STORAGE_TYPE_NONE;
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int storage_fd = -1;
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uint64_t memory_base = 0;
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uint64_t memory_size = 0;
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uint64_t load_base = 0;
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uint64_t load_size = 0;
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uint64_t load_delta = 0;
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uint32_t uri_len = 0;
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char* uri_str = NULL;
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HSA_RT(LoaderApiTable.hsa_ven_amd_loader_loaded_code_object_get_info(
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loaded_code_object,
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HSA_VEN_AMD_LOADER_LOADED_CODE_OBJECT_INFO_CODE_OBJECT_STORAGE_TYPE,
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&storage_type));
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if (storage_type == HSA_VEN_AMD_LOADER_CODE_OBJECT_STORAGE_TYPE_FILE) {
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HSA_RT(LoaderApiTable.hsa_ven_amd_loader_loaded_code_object_get_info(
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loaded_code_object,
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HSA_VEN_AMD_LOADER_LOADED_CODE_OBJECT_INFO_CODE_OBJECT_STORAGE_FILE,
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&storage_fd));
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if (storage_fd == -1) {
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printf("CodeObjectCallback: fd == -1\n"); fflush(stdout);
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abort();
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}
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} else if (storage_type == HSA_VEN_AMD_LOADER_CODE_OBJECT_STORAGE_TYPE_MEMORY) {
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HSA_RT(LoaderApiTable.hsa_ven_amd_loader_loaded_code_object_get_info(
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loaded_code_object,
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HSA_VEN_AMD_LOADER_LOADED_CODE_OBJECT_INFO_CODE_OBJECT_STORAGE_MEMORY_BASE,
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&memory_base));
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HSA_RT(LoaderApiTable.hsa_ven_amd_loader_loaded_code_object_get_info(
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loaded_code_object,
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HSA_VEN_AMD_LOADER_LOADED_CODE_OBJECT_INFO_CODE_OBJECT_STORAGE_MEMORY_SIZE,
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&memory_size));
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}
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HSA_RT(LoaderApiTable.hsa_ven_amd_loader_loaded_code_object_get_info(
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loaded_code_object,
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HSA_VEN_AMD_LOADER_LOADED_CODE_OBJECT_INFO_LOAD_BASE,
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&load_base));
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HSA_RT(LoaderApiTable.hsa_ven_amd_loader_loaded_code_object_get_info(
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loaded_code_object,
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HSA_VEN_AMD_LOADER_LOADED_CODE_OBJECT_INFO_LOAD_SIZE,
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&load_size));
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HSA_RT(LoaderApiTable.hsa_ven_amd_loader_loaded_code_object_get_info(
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loaded_code_object,
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HSA_VEN_AMD_LOADER_LOADED_CODE_OBJECT_INFO_LOAD_DELTA,
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&load_delta));
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// Getting URI
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HSA_RT(LoaderApiTable.hsa_ven_amd_loader_loaded_code_object_get_info(
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loaded_code_object,
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HSA_VEN_AMD_LOADER_LOADED_CODE_OBJECT_INFO_URI_LENGTH,
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&uri_len));
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uri_str = (char*)calloc(uri_len + 1, sizeof(char));
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if (!uri_str) EXC_ABORT(HSA_STATUS_ERROR, "URI allocation");
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HSA_RT(LoaderApiTable.hsa_ven_amd_loader_loaded_code_object_get_info(
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loaded_code_object,
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HSA_VEN_AMD_LOADER_LOADED_CODE_OBJECT_INFO_URI,
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uri_str));
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if (storage_type != HSA_VEN_AMD_LOADER_CODE_OBJECT_STORAGE_TYPE_NONE) {
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IS_HSA_CALLBACK(ROCPROFILER_HSA_CB_ID_CODEOBJ) {
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rocprofiler_hsa_callback_data_t data{};
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data.codeobj.storage_type = storage_type;
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data.codeobj.storage_file = storage_fd;
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data.codeobj.memory_base = memory_base;
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data.codeobj.memory_size = memory_size;
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data.codeobj.load_base = load_base;
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data.codeobj.load_size = load_size;
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data.codeobj.load_delta = load_delta;
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data.codeobj.uri_length = uri_len;
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data.codeobj.uri = uri_str;
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data.codeobj.unload = free_flag;
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DO_HSA_CALLBACK;
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}
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}
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{
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IS_HSA_CALLBACK(ROCPROFILER_HSA_CB_ID_ALLOCATE) {
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// Local GPU memory
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// GLOBAL; FLAGS: COARSE GRAINED
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rocprofiler_hsa_callback_data_t data{};
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data.allocate.ptr = reinterpret_cast<void*>(load_base);
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data.allocate.size = (free_flag == 0) ? load_size : 0;
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data.allocate.segment = HSA_AMD_SEGMENT_GLOBAL;
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data.allocate.global_flag = HSA_AMD_MEMORY_POOL_GLOBAL_FLAG_COARSE_GRAINED;
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data.allocate.is_code = 1;
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DO_HSA_CALLBACK;
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}
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}
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if (free_flag != 0) {
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IS_HSA_CALLBACK(ROCPROFILER_HSA_CB_ID_DEVICE) {
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hsa_amd_pointer_info_t pointer_info{};
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uint32_t num_agents = 0;
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hsa_agent_t* agents = NULL;
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pointer_info.size = sizeof(hsa_amd_pointer_info_t);
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HSA_RT(hsa_amd_pointer_info(
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reinterpret_cast<void*>(load_base),
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&pointer_info,
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malloc,
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&num_agents,
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&agents));
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DeviceCallback(num_agents, agents, reinterpret_cast<void*>(load_base));
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}
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}
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return HSA_STATUS_SUCCESS;
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}
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static hsa_status_t KernelSymbolCallback(
|
|
hsa_executable_t executable,
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|
hsa_executable_symbol_t symbol,
|
|
void *arg)
|
|
{
|
|
const int free_flag = reinterpret_cast<long>(arg);
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|
hsa_symbol_kind_t kind = (hsa_symbol_kind_t)0;
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HSA_RT(hsa_executable_symbol_get_info(symbol, HSA_EXECUTABLE_SYMBOL_INFO_TYPE, &kind));
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|
|
|
if (kind == HSA_SYMBOL_KIND_KERNEL) {
|
|
const char* name = NULL;
|
|
uint32_t len = 0;
|
|
uint64_t obj = 0;
|
|
HSA_RT(hsa_executable_symbol_get_info(symbol, HSA_EXECUTABLE_SYMBOL_INFO_KERNEL_OBJECT, &obj));
|
|
if (free_flag == 0) {
|
|
HSA_RT(hsa_executable_symbol_get_info(symbol, HSA_EXECUTABLE_SYMBOL_INFO_NAME_LENGTH, &len));
|
|
char sym_name[len + 1];
|
|
HSA_RT(hsa_executable_symbol_get_info(symbol, HSA_EXECUTABLE_SYMBOL_INFO_NAME, sym_name));
|
|
name = cpp_demangle(sym_name);
|
|
}
|
|
|
|
rocprofiler_hsa_callback_data_t data{};
|
|
data.ksymbol.object = obj;
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|
data.ksymbol.name = name;
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|
data.ksymbol.name_length = len;
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|
data.ksymbol.unload = free_flag;
|
|
|
|
ISSUE_HSA_CALLBACK(ROCPROFILER_HSA_CB_ID_KSYMBOL);
|
|
}
|
|
|
|
return HSA_STATUS_SUCCESS;
|
|
}
|
|
|
|
static hsa_status_t ExecutableFreeze(
|
|
hsa_executable_t executable,
|
|
const char *options)
|
|
{
|
|
hsa_status_t status = HSA_STATUS_SUCCESS;
|
|
|
|
HSA_RT(hsa_executable_freeze_fn(executable, options));
|
|
|
|
unsigned is_codeobj_cb = 0;
|
|
{ IS_HSA_CALLBACK(ROCPROFILER_HSA_CB_ID_CODEOBJ) is_codeobj_cb |= 1; }
|
|
{ IS_HSA_CALLBACK(ROCPROFILER_HSA_CB_ID_ALLOCATE) is_codeobj_cb |= 1; }
|
|
if (is_codeobj_cb) {
|
|
LoaderApiTable.hsa_ven_amd_loader_executable_iterate_loaded_code_objects(
|
|
executable,
|
|
CodeObjectCallback,
|
|
reinterpret_cast<void*>(0));
|
|
}
|
|
|
|
IS_HSA_CALLBACK(ROCPROFILER_HSA_CB_ID_KSYMBOL) {
|
|
HSA_RT(hsa_executable_iterate_symbols(
|
|
executable,
|
|
KernelSymbolCallback,
|
|
reinterpret_cast<void*>(0)));
|
|
}
|
|
|
|
return status;
|
|
}
|
|
|
|
static hsa_status_t ExecutableDestroy(
|
|
hsa_executable_t executable)
|
|
{
|
|
hsa_status_t status = HSA_STATUS_SUCCESS;
|
|
|
|
IS_HSA_CALLBACK(ROCPROFILER_HSA_CB_ID_ALLOCATE) {
|
|
LoaderApiTable.hsa_ven_amd_loader_executable_iterate_loaded_code_objects(
|
|
executable,
|
|
CodeObjectCallback,
|
|
reinterpret_cast<void*>(1));
|
|
}
|
|
|
|
{
|
|
IS_HSA_CALLBACK(ROCPROFILER_HSA_CB_ID_KSYMBOL) {
|
|
HSA_RT(hsa_executable_iterate_symbols(
|
|
executable,
|
|
KernelSymbolCallback,
|
|
reinterpret_cast<void*>(1)));
|
|
}
|
|
}
|
|
|
|
HSA_RT(hsa_executable_destroy_fn(executable));
|
|
|
|
return status;
|
|
}
|
|
|
|
static bool enable_;
|
|
static thread_local bool recursion_;
|
|
static hsa_ven_amd_loader_1_01_pfn_t LoaderApiTable;
|
|
static rocprofiler_hsa_callbacks_t callbacks_;
|
|
static arg_t arg_;
|
|
static mutex_t mutex_;
|
|
};
|
|
|
|
} // namespace rocprofiler
|
|
|
|
#endif // _SRC_CORE_HSA_INTERCEPTOR_H
|