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rocm-systems/src/misc/utils.cc
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/*************************************************************************
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* Copyright (c) 2016-2019, NVIDIA CORPORATION. All rights reserved.
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*
* See LICENSE.txt for license information
************************************************************************/
#include "utils.h"
#include "debug.h"
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#include "nccl_net.h"
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#include <unistd.h>
#include <string.h>
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#include <stdarg.h>
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#include "nvmlwrap.h"
#include "core.h"
// Convert a logical cudaDev index to the NVML device minor number
ncclResult_t getNvmlDevice(int cudaDev, int *nvmlDev) {
char busId[NVML_DEVICE_PCI_BUS_ID_BUFFER_SIZE];
nvmlDevice_t nvmlDevice;
unsigned int dev;
*nvmlDev = -1;
CUDACHECK(cudaDeviceGetPCIBusId(busId, NVML_DEVICE_PCI_BUS_ID_BUFFER_SIZE, cudaDev));
NCCLCHECK(wrapNvmlDeviceGetHandleByPciBusId(busId, &nvmlDevice));
NCCLCHECK(wrapNvmlDeviceGetMinorNumber(nvmlDevice, &dev));
*nvmlDev = dev;
return ncclSuccess;
}
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ncclResult_t getHostName(char* hostname, int maxlen, const char delim) {
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if (gethostname(hostname, maxlen) != 0) {
strncpy(hostname, "unknown", maxlen);
return ncclSystemError;
}
int i = 0;
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while ((hostname[i] != delim) && (hostname[i] != '\0') && (i < maxlen-1)) i++;
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hostname[i] = '\0';
return ncclSuccess;
}
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/* Common logging function used by the INFO, WARN and TRACE macros
* Also exported to the dynamically loadable Net transport modules so
* they can share the debugging mechanisms and output files
*/
void ncclDebugLog(ncclDebugLogLevel level, unsigned long flags, const char *filefunc, int line, const char *fmt, ...) {
if (ncclDebugLevel <= NCCL_LOG_NONE) return;
char hostname[1024];
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getHostName(hostname, 1024, '.');
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int cudaDev;
cudaGetDevice(&cudaDev);
char buffer[1024];
size_t len = 0;
pthread_mutex_lock(&ncclDebugOutputLock);
if (level == NCCL_LOG_WARN && ncclDebugLevel >= NCCL_LOG_WARN)
len = snprintf(buffer, sizeof(buffer),
"\n%s:%d:%d [%d] %s:%d NCCL WARN ", hostname, getpid(), gettid(), cudaDev, filefunc, line);
else if (level == NCCL_LOG_INFO && ncclDebugLevel >= NCCL_LOG_INFO && (flags & ncclDebugMask))
len = snprintf(buffer, sizeof(buffer),
"%s:%d:%d [%d] NCCL INFO ", hostname, getpid(), gettid(), cudaDev);
#ifdef ENABLE_TRACE
else if (level == NCCL_LOG_TRACE && ncclDebugLevel >= NCCL_LOG_TRACE && (flags & ncclDebugMask)) {
auto delta = std::chrono::high_resolution_clock::now() - ncclEpoch;
double timestamp = std::chrono::duration_cast<std::chrono::duration<double>>(delta).count()*1000;
len = snprintf(buffer, sizeof(buffer),
"%s:%d:%d [%d] %f %s:%d NCCL TRACE ", hostname, getpid(), gettid(), cudaDev, timestamp, filefunc, line);
}
#endif
if (len) {
va_list vargs;
va_start(vargs, fmt);
(void) vsnprintf(buffer+len, sizeof(buffer)-len, fmt, vargs);
va_end(vargs);
fprintf(ncclDebugFile,"%s\n", buffer);
fflush(ncclDebugFile);
}
pthread_mutex_unlock(&ncclDebugOutputLock);
// If ncclDebugLevel == NCCL_LOG_ABORT then WARN() will also call abort()
if (level == NCCL_LOG_WARN && ncclDebugLevel == NCCL_LOG_ABORT) {
fprintf(stderr,"\n%s:%d:%d [%d] %s:%d NCCL ABORT\n",
hostname, getpid(), gettid(), cudaDev, filefunc, line);
abort();
}
}
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uint64_t getHash(const char* string) {
// Based on DJB2, result = result * 33 + char
uint64_t result = 5381;
for (int c = 0; string[c] != '\0'; c++) {
result = ((result << 5) + result) + string[c];
}
return result;
}
/* Generate a hash of the unique identifying string for this host
* that will be unique for both bare-metal and container instances
* Equivalent of a hash of;
*
* $(hostname) $(readlink /proc/self/ns/uts) $(readlink /proc/self/ns/mnt)
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*/
uint64_t getHostHash(void) {
char uname[1024];
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// Start off with the full hostname
(void) getHostName(uname, sizeof(uname), '\0');
int offset = strlen(uname);
int len;
// $(readlink /proc/self/ns/uts)
len = readlink("/proc/self/ns/uts", uname+offset, sizeof(uname)-1-offset);
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if (len < 0) len = 0;
offset += len;
// $(readlink /proc/self/ns/mnt)
len = readlink("/proc/self/ns/mnt", uname+offset, sizeof(uname)-1-offset);
if (len < 0) len = 0;
offset += len;
// Trailing '\0'
uname[offset]='\0';
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TRACE(NCCL_INIT,"unique hostname '%s'", uname);
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return getHash(uname);
}
/* Generate a hash of the unique identifying string for this process
* that will be unique for both bare-metal and container instances
* Equivalent of a hash of;
*
* $$ $(readlink /proc/self/ns/pid)
*/
uint64_t getPidHash(void) {
char pname[1024];
// Start off with our pid ($$)
sprintf(pname, "%ld", (long) getpid());
int plen = strlen(pname);
int len = readlink("/proc/self/ns/pid", pname+plen, sizeof(pname)-1-plen);
if (len < 0) len = 0;
pname[plen+len]='\0';
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TRACE(NCCL_INIT,"unique PID '%s'", pname);
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return getHash(pname);
}
int parseStringList(const char* string, struct netIf* ifList, int maxList) {
if (!string) return 0;
const char* ptr = string;
// Ignore "^" prefix, will be detected outside of this function
if (ptr[0] == '^') ptr++;
int ifNum = 0;
int ifC = 0;
char c;
do {
c = *ptr;
if (c == ':') {
if (ifC > 0) {
ifList[ifNum].prefix[ifC] = '\0';
ifList[ifNum].port = atoi(ptr+1);
ifNum++; ifC = 0;
}
while (c != ',' && c != '\0') c = *(++ptr);
} else if (c == ',' || c == '\0') {
if (ifC > 0) {
ifList[ifNum].prefix[ifC] = '\0';
ifList[ifNum].port = -1;
ifNum++; ifC = 0;
}
} else {
ifList[ifNum].prefix[ifC] = c;
ifC++;
}
ptr++;
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} while (ifNum < maxList && c);
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return ifNum;
}
static bool matchPrefix(const char* string, const char* prefix) {
return (strncmp(string, prefix, strlen(prefix)) == 0);
}
static bool matchPort(const int port1, const int port2) {
if (port1 == -1) return true;
if (port2 == -1) return true;
if (port1 == port2) return true;
return false;
}
bool matchIfList(const char* string, int port, struct netIf* ifList, int listSize) {
// Make an exception for the case where no user list is defined
if (listSize == 0) return true;
for (int i=0; i<listSize; i++) {
if (matchPrefix(string, ifList[i].prefix)
&& matchPort(port, ifList[i].port)) {
return true;
}
}
return false;
}