xref: /petsc/src/sys/objects/device/impls/cupm/cupmdevice.cxx (revision d5b43468fb8780a8feea140ccd6fa3e6a50411cc)
1 #include <petsc/private/cpp/memory.hpp> // make_unique
2 
3 #include "cupmdevice.hpp"
4 
5 #include <algorithm>
6 #include <csetjmp> // for cuda mpi awareness
7 #include <csignal> // SIGSEGV
8 #include <iterator>
9 #include <type_traits>
10 
11 namespace Petsc
12 {
13 
14 namespace device
15 {
16 
17 namespace cupm
18 {
19 
20 // internal "impls" class for CUPMDevice. Each instance represents a single cupm device
21 template <DeviceType T>
22 class Device<T>::DeviceInternal {
23   const int        id_;
24   bool             devInitialized_ = false;
25   cupmDeviceProp_t dprop_{}; // cudaDeviceProp appears to be an actual struct, i.e. you can't
26                              // initialize it with nullptr or NULL (i've tried)
27 
28   PETSC_CXX_COMPAT_DECL(PetscErrorCode CUPMAwareMPI_(bool *));
29 
30 public:
31   // default constructor
32   explicit constexpr DeviceInternal(int dev) noexcept : id_(dev) { }
33 
34   // gather all relevant information for a particular device, a cupmDeviceProp_t is
35   // usually sufficient here
36   PETSC_NODISCARD PetscErrorCode initialize() noexcept;
37   PETSC_NODISCARD PetscErrorCode configure() noexcept;
38   PETSC_NODISCARD PetscErrorCode view(PetscViewer) const noexcept;
39   PETSC_NODISCARD PetscErrorCode getattribute(PetscDeviceAttribute, void *) const noexcept;
40 
41   PETSC_NODISCARD auto id() const -> decltype(id_) { return id_; }
42   PETSC_NODISCARD auto initialized() const -> decltype(devInitialized_) { return devInitialized_; }
43   PETSC_NODISCARD auto prop() const -> const decltype(dprop_) & { return dprop_; }
44 };
45 
46 // the goal here is simply to get the cupm backend to create its context, not to do any type of
47 // modification of it, or create objects (since these may be affected by subsequent
48 // configuration changes)
49 template <DeviceType T>
50 PetscErrorCode Device<T>::DeviceInternal::initialize() noexcept
51 {
52   PetscFunctionBegin;
53   if (initialized()) PetscFunctionReturn(0);
54   devInitialized_ = true;
55   // need to do this BEFORE device has been set, although if the user
56   // has already done this then we just ignore it
57   if (cupmSetDeviceFlags(cupmDeviceMapHost) == cupmErrorSetOnActiveProcess) {
58     // reset the error if it was cupmErrorSetOnActiveProcess
59     const auto PETSC_UNUSED unused = cupmGetLastError();
60   } else PetscCallCUPM(cupmGetLastError());
61   // cuda 5.0+ will create a context when cupmSetDevice is called
62   if (cupmSetDevice(id()) != cupmErrorDeviceAlreadyInUse) PetscCallCUPM(cupmGetLastError());
63   // and in case it doesn't, explicitly call init here
64   PetscCallCUPM(cupmInit(0));
65   // where is this variable defined and when is it set? who knows! but it is defined and set
66   // at this point. either way, each device must make this check since I guess MPI might not be
67   // aware of all of them?
68   if (use_gpu_aware_mpi) {
69     bool aware;
70 
71     PetscCall(CUPMAwareMPI_(&aware));
72     // For OpenMPI, we could do a compile time check with
73     // "defined(PETSC_HAVE_OMPI_MAJOR_VERSION) && defined(MPIX_CUDA_AWARE_SUPPORT) &&
74     // MPIX_CUDA_AWARE_SUPPORT" to see if it is CUDA-aware. However, recent versions of IBM
75     // Spectrum MPI (e.g., 10.3.1) on Summit meet above conditions, but one has to use jsrun
76     // --smpiargs=-gpu to really enable GPU-aware MPI. So we do the check at runtime with a
77     // code that works only with GPU-aware MPI.
78     if (PetscUnlikely(!aware)) {
79       (*PetscErrorPrintf)("PETSc is configured with GPU support, but your MPI is not GPU-aware. For better performance, please use a GPU-aware MPI.\n");
80       (*PetscErrorPrintf)("If you do not care, add option -use_gpu_aware_mpi 0. To not see the message again, add the option to your .petscrc, OR add it to the env var PETSC_OPTIONS.\n");
81       (*PetscErrorPrintf)("If you do care, for IBM Spectrum MPI on OLCF Summit, you may need jsrun --smpiargs=-gpu.\n");
82       (*PetscErrorPrintf)("For OpenMPI, you need to configure it --with-cuda (https://www.open-mpi.org/faq/?category=buildcuda)\n");
83       (*PetscErrorPrintf)("For MVAPICH2-GDR, you need to set MV2_USE_CUDA=1 (http://mvapich.cse.ohio-state.edu/userguide/gdr/)\n");
84       (*PetscErrorPrintf)("For Cray-MPICH, you need to set MPICH_RDMA_ENABLED_CUDA=1 (https://www.olcf.ornl.gov/tutorials/gpudirect-mpich-enabled-cuda/)\n");
85       PETSCABORT(PETSC_COMM_SELF, PETSC_ERR_LIB);
86     }
87   }
88   PetscFunctionReturn(0);
89 }
90 
91 template <DeviceType T>
92 PetscErrorCode Device<T>::DeviceInternal::configure() noexcept
93 {
94   PetscFunctionBegin;
95   PetscAssert(initialized(), PETSC_COMM_SELF, PETSC_ERR_COR, "Device %d being configured before it was initialized", id());
96   // why on EARTH nvidia insists on making otherwise informational states into
97   // fully-fledged error codes is beyond me. Why couldn't a pointer to bool argument have
98   // sufficed?!?!?!
99   if (cupmSetDevice(id_) != cupmErrorDeviceAlreadyInUse) PetscCallCUPM(cupmGetLastError());
100   // need to update the device properties
101   PetscCallCUPM(cupmGetDeviceProperties(&dprop_, id_));
102   PetscCall(PetscInfo(nullptr, "Configured device %d\n", id_));
103   PetscFunctionReturn(0);
104 }
105 
106 template <DeviceType T>
107 PetscErrorCode Device<T>::DeviceInternal::view(PetscViewer viewer) const noexcept
108 {
109   PetscBool iascii;
110 
111   PetscFunctionBegin;
112   PetscAssert(initialized(), PETSC_COMM_SELF, PETSC_ERR_COR, "Device %d being viewed before it was initialized or configured", id());
113   // we don't print device-specific info in CI-mode
114   if (PetscUnlikely(PetscCIEnabled)) PetscFunctionReturn(0);
115   PetscCall(PetscObjectTypeCompare(PetscObjectCast(viewer), PETSCVIEWERASCII, &iascii));
116   if (iascii) {
117     MPI_Comm    comm;
118     PetscMPIInt rank;
119     PetscViewer sviewer;
120 
121     PetscCall(PetscObjectGetComm(PetscObjectCast(viewer), &comm));
122     PetscCallMPI(MPI_Comm_rank(comm, &rank));
123     PetscCall(PetscViewerGetSubViewer(viewer, PETSC_COMM_SELF, &sviewer));
124     PetscCall(PetscViewerASCIIPrintf(sviewer, "[%d] name: %s\n", rank, dprop_.name));
125     PetscCall(PetscViewerASCIIPushTab(sviewer));
126     PetscCall(PetscViewerASCIIPrintf(sviewer, "Compute capability: %d.%d\n", dprop_.major, dprop_.minor));
127     PetscCall(PetscViewerASCIIPrintf(sviewer, "Multiprocessor Count: %d\n", dprop_.multiProcessorCount));
128     PetscCall(PetscViewerASCIIPrintf(sviewer, "Maximum Grid Dimensions: %d x %d x %d\n", dprop_.maxGridSize[0], dprop_.maxGridSize[1], dprop_.maxGridSize[2]));
129     PetscCall(PetscViewerASCIIPrintf(sviewer, "Maximum Block Dimensions: %d x %d x %d\n", dprop_.maxThreadsDim[0], dprop_.maxThreadsDim[1], dprop_.maxThreadsDim[2]));
130     PetscCall(PetscViewerASCIIPrintf(sviewer, "Maximum Threads Per Block: %d\n", dprop_.maxThreadsPerBlock));
131     PetscCall(PetscViewerASCIIPrintf(sviewer, "Warp Size: %d\n", dprop_.warpSize));
132     PetscCall(PetscViewerASCIIPrintf(sviewer, "Total Global Memory (bytes): %zu\n", dprop_.totalGlobalMem));
133     PetscCall(PetscViewerASCIIPrintf(sviewer, "Total Constant Memory (bytes): %zu\n", dprop_.totalConstMem));
134     PetscCall(PetscViewerASCIIPrintf(sviewer, "Shared Memory Per Block (bytes): %zu\n", dprop_.sharedMemPerBlock));
135     PetscCall(PetscViewerASCIIPrintf(sviewer, "Multiprocessor Clock Rate (KHz): %d\n", dprop_.clockRate));
136     PetscCall(PetscViewerASCIIPrintf(sviewer, "Memory Clock Rate (KHz): %d\n", dprop_.memoryClockRate));
137     PetscCall(PetscViewerASCIIPrintf(sviewer, "Memory Bus Width (bits): %d\n", dprop_.memoryBusWidth));
138     PetscCall(PetscViewerASCIIPrintf(sviewer, "Peak Memory Bandwidth (GB/s): %f\n", 2.0 * dprop_.memoryClockRate * (dprop_.memoryBusWidth / 8) / 1.0e6));
139     PetscCall(PetscViewerASCIIPrintf(sviewer, "Can map host memory: %s\n", dprop_.canMapHostMemory ? "PETSC_TRUE" : "PETSC_FALSE"));
140     PetscCall(PetscViewerASCIIPrintf(sviewer, "Can execute multiple kernels concurrently: %s\n", dprop_.concurrentKernels ? "PETSC_TRUE" : "PETSC_FALSE"));
141     PetscCall(PetscViewerASCIIPopTab(sviewer));
142     PetscCall(PetscViewerRestoreSubViewer(viewer, PETSC_COMM_SELF, &sviewer));
143     PetscCall(PetscViewerFlush(viewer));
144   }
145   PetscFunctionReturn(0);
146 }
147 
148 template <DeviceType T>
149 PetscErrorCode Device<T>::DeviceInternal::getattribute(PetscDeviceAttribute attr, void *value) const noexcept
150 {
151   PetscFunctionBegin;
152   PetscAssert(initialized(), PETSC_COMM_SELF, PETSC_ERR_COR, "Device %d was not initialized", id());
153   switch (attr) {
154   case PETSC_DEVICE_ATTR_SIZE_T_SHARED_MEM_PER_BLOCK:
155     *static_cast<std::size_t *>(value) = prop().sharedMemPerBlock;
156   case PETSC_DEVICE_ATTR_MAX:
157     break;
158   }
159   PetscFunctionReturn(0);
160 }
161 
162 static std::jmp_buf cupmMPIAwareJumpBuffer;
163 static bool         cupmMPIAwareJumpBufferSet;
164 
165 // godspeed to anyone that attempts to call this function
166 void SilenceVariableIsNotNeededAndWillNotBeEmittedWarning_ThisFunctionShouldNeverBeCalled()
167 {
168   PETSCABORT(MPI_COMM_NULL, INT_MAX);
169   if (cupmMPIAwareJumpBufferSet) (void)cupmMPIAwareJumpBuffer;
170 }
171 
172 template <DeviceType T>
173 PETSC_CXX_COMPAT_DEFN(PetscErrorCode Device<T>::DeviceInternal::CUPMAwareMPI_(bool *awareness))
174 {
175   constexpr int  bufSize           = 2;
176   constexpr int  hbuf[bufSize]     = {1, 0};
177   int           *dbuf              = nullptr;
178   constexpr auto bytes             = bufSize * sizeof(*dbuf);
179   const auto     cupmSignalHandler = [](int signal, void *ptr) -> PetscErrorCode {
180     if ((signal == SIGSEGV) && cupmMPIAwareJumpBufferSet) std::longjmp(cupmMPIAwareJumpBuffer, 1);
181     return PetscSignalHandlerDefault(signal, ptr);
182   };
183 
184   PetscFunctionBegin;
185   *awareness = false;
186   PetscCallCUPM(cupmMalloc(reinterpret_cast<void **>(&dbuf), bytes));
187   PetscCallCUPM(cupmMemcpy(dbuf, hbuf, bytes, cupmMemcpyHostToDevice));
188   PetscCallCUPM(cupmDeviceSynchronize());
189   PetscCall(PetscPushSignalHandler(cupmSignalHandler, nullptr));
190   cupmMPIAwareJumpBufferSet = true;
191   if (!setjmp(cupmMPIAwareJumpBuffer) && !MPI_Allreduce(dbuf, dbuf + 1, 1, MPI_INT, MPI_SUM, PETSC_COMM_SELF)) *awareness = true;
192   cupmMPIAwareJumpBufferSet = false;
193   PetscCall(PetscPopSignalHandler());
194   PetscCallCUPM(cupmFree(dbuf));
195   PetscFunctionReturn(0);
196 }
197 
198 template <DeviceType T>
199 PetscErrorCode Device<T>::finalize_() noexcept
200 {
201   PetscFunctionBegin;
202   if (PetscUnlikely(!initialized_)) PetscFunctionReturn(0);
203   for (auto &&device : devices_) device.reset();
204   defaultDevice_ = PETSC_CUPM_DEVICE_NONE; // disabled by default
205   initialized_   = false;
206   PetscFunctionReturn(0);
207 }
208 
209 template <DeviceType T>
210 PETSC_CXX_COMPAT_DECL(PETSC_CONSTEXPR_14 const char *CUPM_VISIBLE_DEVICES())
211 {
212   switch (T) {
213   case DeviceType::CUDA:
214     return "CUDA_VISIBLE_DEVICES";
215   case DeviceType::HIP:
216     return "HIP_VISIBLE_DEVICES";
217   }
218   PetscUnreachable();
219   return "PETSC_ERROR_PLIB";
220 }
221 
222 template <DeviceType T>
223 PetscErrorCode Device<T>::initialize(MPI_Comm comm, PetscInt *defaultDeviceId, PetscBool *defaultView, PetscDeviceInitType *defaultInitType) noexcept
224 {
225   auto initId   = std::make_pair(*defaultDeviceId, PETSC_FALSE);
226   auto initView = std::make_pair(*defaultView, PETSC_FALSE);
227   auto initType = std::make_pair(*defaultInitType, PETSC_FALSE);
228   int  ndev     = 0;
229 
230   PetscFunctionBegin;
231   if (initialized_) PetscFunctionReturn(0);
232   initialized_ = true;
233   PetscCall(PetscRegisterFinalize(finalize_));
234   PetscCall(base_type::PetscOptionDeviceAll(comm, initType, initId, initView));
235 
236   if (initType.first == PETSC_DEVICE_INIT_NONE) {
237     initId.first = PETSC_CUPM_DEVICE_NONE;
238   } else if (const auto cerr = cupmGetDeviceCount(&ndev)) {
239     auto PETSC_UNUSED ignored = cupmGetLastError();
240     // we won't be initializing anything anyways
241     initType.first = PETSC_DEVICE_INIT_NONE;
242     // save the error code for later
243     initId.first = -static_cast<decltype(initId.first)>(cerr);
244 
245     PetscCheck((initType.first != PETSC_DEVICE_INIT_EAGER) && !initView.first, comm, PETSC_ERR_USER_INPUT, "Cannot eagerly initialize %s, as doing so results in %s error %d (%s) : %s", cupmName(), cupmName(), static_cast<PetscErrorCode>(cerr), cupmGetErrorName(cerr), cupmGetErrorString(cerr));
246   }
247 
248   // check again for init type, since the device count may have changed it
249   if (initType.first == PETSC_DEVICE_INIT_NONE) {
250     // id < 0 (excluding PETSC_DECIDE) indicates an error has occurred during setup
251     if ((initId.first > 0) || (initId.first == PETSC_DECIDE)) initId.first = PETSC_CUPM_DEVICE_NONE;
252     // initType overrides initView
253     initView.first = PETSC_FALSE;
254   } else {
255     PetscCall(PetscDeviceCheckDeviceCount_Internal(ndev));
256     if (initId.first == PETSC_DECIDE) {
257       if (ndev) {
258         PetscMPIInt rank;
259 
260         PetscCallMPI(MPI_Comm_rank(comm, &rank));
261         initId.first = rank % ndev;
262       } else initId.first = 0;
263     }
264     if (initView.first) initType.first = PETSC_DEVICE_INIT_EAGER;
265   }
266 
267   static_assert(std::is_same<PetscMPIInt, decltype(defaultDevice_)>::value, "");
268   // initId.first is PetscInt, _defaultDevice is int
269   PetscCall(PetscMPIIntCast(initId.first, &defaultDevice_));
270   // record the results of the initialization
271   *defaultDeviceId = initId.first;
272   *defaultView     = initView.first;
273   *defaultInitType = initType.first;
274   PetscFunctionReturn(0);
275 }
276 
277 template <DeviceType T>
278 PetscErrorCode Device<T>::init_device_id_(PetscInt *inid) const noexcept
279 {
280   const auto id   = *inid == PETSC_DECIDE ? defaultDevice_ : *inid;
281   const auto cerr = static_cast<cupmError_t>(-defaultDevice_);
282 
283   PetscFunctionBegin;
284   PetscCheck(defaultDevice_ != PETSC_CUPM_DEVICE_NONE, PETSC_COMM_SELF, PETSC_ERR_ARG_WRONGSTATE, "Trying to retrieve a %s PetscDevice when it has been disabled", cupmName());
285   PetscCheck(defaultDevice_ >= 0, PETSC_COMM_SELF, PETSC_ERR_GPU, "Cannot lazily initialize PetscDevice: %s error %d (%s) : %s", cupmName(), static_cast<PetscErrorCode>(cerr), cupmGetErrorName(cerr), cupmGetErrorString(cerr));
286   PetscAssert(static_cast<decltype(devices_.size())>(id) < devices_.size(), PETSC_COMM_SELF, PETSC_ERR_ARG_OUTOFRANGE, "Only supports %zu number of devices but trying to get device with id %" PetscInt_FMT, devices_.size(), id);
287 
288   if (!devices_[id]) devices_[id] = util::make_unique<DeviceInternal>(id);
289   PetscAssert(id == devices_[id]->id(), PETSC_COMM_SELF, PETSC_ERR_PLIB, "Entry %" PetscInt_FMT " contains device with mismatching id %d", id, devices_[id]->id());
290   PetscCall(devices_[id]->initialize());
291   *inid = id;
292   PetscFunctionReturn(0);
293 }
294 
295 template <DeviceType T>
296 PetscErrorCode Device<T>::configure_device_(PetscDevice device) noexcept
297 {
298   PetscFunctionBegin;
299   PetscCall(devices_[device->deviceId]->configure());
300   PetscFunctionReturn(0);
301 }
302 
303 template <DeviceType T>
304 PetscErrorCode Device<T>::view_device_(PetscDevice device, PetscViewer viewer) noexcept
305 {
306   PetscFunctionBegin;
307   // now this __shouldn't__ reconfigure the device, but there is a petscinfo call to indicate
308   // it is being reconfigured
309   PetscCall(devices_[device->deviceId]->configure());
310   PetscCall(devices_[device->deviceId]->view(viewer));
311   PetscFunctionReturn(0);
312 }
313 
314 template <DeviceType T>
315 PetscErrorCode Device<T>::get_attribute_(PetscInt id, PetscDeviceAttribute attr, void *value) noexcept
316 {
317   PetscFunctionBegin;
318   PetscCall(devices_[id]->getattribute(attr, value));
319   PetscFunctionReturn(0);
320 }
321 
322 // explicitly instantiate the classes
323 #if PetscDefined(HAVE_CUDA)
324 template class Device<DeviceType::CUDA>;
325 #endif
326 #if PetscDefined(HAVE_HIP)
327 template class Device<DeviceType::HIP>;
328 #endif
329 
330 } // namespace cupm
331 
332 } // namespace device
333 
334 } // namespace Petsc
335