system-info.sh 20 KB

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  1. #!/usr/bin/env sh
  2. # -------------------------------------------------------------------------------------------------
  3. # detect the kernel
  4. KERNEL_NAME="$(uname -s)"
  5. KERNEL_VERSION="$(uname -r)"
  6. ARCHITECTURE="$(uname -m)"
  7. # -------------------------------------------------------------------------------------------------
  8. # detect the virtualization and possibly the container technology
  9. CONTAINER="unknown"
  10. CONT_DETECTION="none"
  11. CONTAINER_IS_OFFICIAL_IMAGE="${NETDATA_OFFICIAL_IMAGE:-false}"
  12. if [ -z "${VIRTUALIZATION}" ]; then
  13. VIRTUALIZATION="unknown"
  14. VIRT_DETECTION="none"
  15. if [ -n "$(command -v systemd-detect-virt 2> /dev/null)" ]; then
  16. VIRTUALIZATION="$(systemd-detect-virt -v)"
  17. VIRT_DETECTION="systemd-detect-virt"
  18. CONTAINER=${CONTAINER:-$(systemd-detect-virt -c)}
  19. CONT_DETECTION="systemd-detect-virt"
  20. else
  21. if grep -q "^flags.*hypervisor" /proc/cpuinfo 2> /dev/null; then
  22. VIRTUALIZATION="hypervisor"
  23. VIRT_DETECTION="/proc/cpuinfo"
  24. elif [ -n "$(command -v dmidecode)" ] && dmidecode -s system-product-name 2> /dev/null | grep -q "VMware\|Virtual\|KVM\|Bochs"; then
  25. VIRTUALIZATION="$(dmidecode -s system-product-name)"
  26. VIRT_DETECTION="dmidecode"
  27. else
  28. VIRTUALIZATION="none"
  29. fi
  30. fi
  31. if [ -z "${VIRTUALIZATION}" ]; then
  32. # Output from the command is outside of spec
  33. VIRTUALIZATION="unknown"
  34. fi
  35. else
  36. # Passed from outside - probably in docker run
  37. VIRT_DETECTION="provided"
  38. fi
  39. # -------------------------------------------------------------------------------------------------
  40. # detect containers with heuristics
  41. if [ "${CONTAINER}" = "unknown" ]; then
  42. if [ -f /proc/1/sched ]; then
  43. IFS='(, ' read -r process _ < /proc/1/sched
  44. if [ "${process}" = "netdata" ]; then
  45. CONTAINER="container"
  46. CONT_DETECTION="process"
  47. fi
  48. fi
  49. # ubuntu and debian supply /bin/running-in-container
  50. # https://www.apt-browse.org/browse/ubuntu/trusty/main/i386/upstart/1.12.1-0ubuntu4/file/bin/running-in-container
  51. if /bin/running-in-container > /dev/null 2>&1; then
  52. CONTAINER="container"
  53. CONT_DETECTION="/bin/running-in-container"
  54. fi
  55. # lxc sets environment variable 'container'
  56. #shellcheck disable=SC2154
  57. if [ -n "${container}" ]; then
  58. CONTAINER="lxc"
  59. CONT_DETECTION="containerenv"
  60. fi
  61. # docker creates /.dockerenv
  62. # http://stackoverflow.com/a/25518345
  63. if [ -f "/.dockerenv" ]; then
  64. CONTAINER="docker"
  65. CONT_DETECTION="dockerenv"
  66. fi
  67. fi
  68. # -------------------------------------------------------------------------------------------------
  69. # detect the operating system
  70. # Initially assume all OS detection values are for a container, these are moved later if we are bare-metal
  71. CONTAINER_OS_DETECTION="unknown"
  72. CONTAINER_NAME="unknown"
  73. CONTAINER_VERSION="unknown"
  74. CONTAINER_VERSION_ID="unknown"
  75. CONTAINER_ID="unknown"
  76. CONTAINER_ID_LIKE="unknown"
  77. if [ "${KERNEL_NAME}" = "Darwin" ]; then
  78. CONTAINER_ID=$(sw_vers -productName)
  79. CONTAINER_ID_LIKE="mac"
  80. CONTAINER_NAME="mac"
  81. CONTAINER_VERSION=$(sw_vers -productVersion)
  82. CONTAINER_OS_DETECTION="sw_vers"
  83. elif [ "${KERNEL_NAME}" = "FreeBSD" ]; then
  84. CONTAINER_ID="FreeBSD"
  85. CONTAINER_ID_LIKE="FreeBSD"
  86. CONTAINER_NAME="FreeBSD"
  87. CONTAINER_OS_DETECTION="uname"
  88. CONTAINER_VERSION=$(uname -r)
  89. KERNEL_VERSION=$(uname -K)
  90. else
  91. if [ -f "/etc/os-release" ]; then
  92. eval "$(grep -E "^(NAME|ID|ID_LIKE|VERSION|VERSION_ID)=" < /etc/os-release | sed 's/^/CONTAINER_/')"
  93. CONTAINER_OS_DETECTION="/etc/os-release"
  94. fi
  95. # shellcheck disable=SC2153
  96. if [ "${CONTAINER_NAME}" = "unknown" ] || [ "${CONTAINER_VERSION}" = "unknown" ] || [ "${CONTAINER_ID}" = "unknown" ]; then
  97. if [ -f "/etc/lsb-release" ]; then
  98. if [ "${CONTAINER_OS_DETECTION}" = "unknown" ]; then
  99. CONTAINER_OS_DETECTION="/etc/lsb-release"
  100. else
  101. CONTAINER_OS_DETECTION="Mixed"
  102. fi
  103. DISTRIB_ID="unknown"
  104. DISTRIB_RELEASE="unknown"
  105. DISTRIB_CODENAME="unknown"
  106. eval "$(grep -E "^(DISTRIB_ID|DISTRIB_RELEASE|DISTRIB_CODENAME)=" < /etc/lsb-release)"
  107. if [ "${CONTAINER_NAME}" = "unknown" ]; then CONTAINER_NAME="${DISTRIB_ID}"; fi
  108. if [ "${CONTAINER_VERSION}" = "unknown" ]; then CONTAINER_VERSION="${DISTRIB_RELEASE}"; fi
  109. if [ "${CONTAINER_ID}" = "unknown" ]; then CONTAINER_ID="${DISTRIB_CODENAME}"; fi
  110. fi
  111. if [ -n "$(command -v lsb_release 2> /dev/null)" ]; then
  112. if [ "${CONTAINER_OS_DETECTION}" = "unknown" ]; then
  113. CONTAINER_OS_DETECTION="lsb_release"
  114. else
  115. CONTAINER_OS_DETECTION="Mixed"
  116. fi
  117. if [ "${CONTAINER_NAME}" = "unknown" ]; then CONTAINER_NAME="$(lsb_release -is 2> /dev/null)"; fi
  118. if [ "${CONTAINER_VERSION}" = "unknown" ]; then CONTAINER_VERSION="$(lsb_release -rs 2> /dev/null)"; fi
  119. if [ "${CONTAINER_ID}" = "unknown" ]; then CONTAINER_ID="$(lsb_release -cs 2> /dev/null)"; fi
  120. fi
  121. fi
  122. fi
  123. # If Netdata is not running in a container then use the local detection as the host
  124. HOST_OS_DETECTION="unknown"
  125. HOST_NAME="unknown"
  126. HOST_VERSION="unknown"
  127. HOST_VERSION_ID="unknown"
  128. HOST_ID="unknown"
  129. HOST_ID_LIKE="unknown"
  130. # 'systemd-detect-virt' returns 'none' if there is no hardware/container virtualization.
  131. if [ "${CONTAINER}" = "unknown" ] || [ "${CONTAINER}" = "none" ]; then
  132. for v in NAME ID ID_LIKE VERSION VERSION_ID OS_DETECTION; do
  133. eval "HOST_$v=\$CONTAINER_$v; CONTAINER_$v=none"
  134. done
  135. else
  136. # Otherwise try and use a user-supplied bind-mount into the container to resolve the host details
  137. if [ -e "/host/etc/os-release" ]; then
  138. eval "$(grep -E "^(NAME|ID|ID_LIKE|VERSION|VERSION_ID)=" < /host/etc/os-release | sed 's/^/HOST_/')"
  139. HOST_OS_DETECTION="/host/etc/os-release"
  140. fi
  141. if [ "${HOST_NAME}" = "unknown" ] || [ "${HOST_VERSION}" = "unknown" ] || [ "${HOST_ID}" = "unknown" ]; then
  142. if [ -f "/host/etc/lsb-release" ]; then
  143. if [ "${HOST_OS_DETECTION}" = "unknown" ]; then
  144. HOST_OS_DETECTION="/etc/lsb-release"
  145. else
  146. HOST_OS_DETECTION="Mixed"
  147. fi
  148. DISTRIB_ID="unknown"
  149. DISTRIB_RELEASE="unknown"
  150. DISTRIB_CODENAME="unknown"
  151. eval "$(grep -E "^(DISTRIB_ID|DISTRIB_RELEASE|DISTRIB_CODENAME)=" < /etc/lsb-release)"
  152. if [ "${HOST_NAME}" = "unknown" ]; then HOST_NAME="${DISTRIB_ID}"; fi
  153. if [ "${HOST_VERSION}" = "unknown" ]; then HOST_VERSION="${DISTRIB_RELEASE}"; fi
  154. if [ "${HOST_ID}" = "unknown" ]; then HOST_ID="${DISTRIB_CODENAME}"; fi
  155. fi
  156. fi
  157. fi
  158. # -------------------------------------------------------------------------------------------------
  159. # Detect information about the CPU
  160. LCPU_COUNT="unknown"
  161. CPU_MODEL="unknown"
  162. CPU_VENDOR="unknown"
  163. CPU_FREQ="unknown"
  164. CPU_INFO_SOURCE="none"
  165. possible_cpu_freq=""
  166. nproc="$(command -v nproc)"
  167. lscpu="$(command -v lscpu)"
  168. lscpu_output=""
  169. dmidecode="$(command -v dmidecode)"
  170. dmidecode_output=""
  171. if [ -n "${lscpu}" ] && lscpu > /dev/null 2>&1; then
  172. lscpu_output="$(LC_NUMERIC=C ${lscpu} 2> /dev/null)"
  173. CPU_INFO_SOURCE="lscpu"
  174. LCPU_COUNT="$(echo "${lscpu_output}" | grep "^CPU(s):" | cut -f 2 -d ':' | sed -e 's/^[[:space:]]*//' -e 's/[[:space:]]*$//')"
  175. CPU_VENDOR="$(echo "${lscpu_output}" | grep "^Vendor ID:" | cut -f 2 -d ':' | sed -e 's/^[[:space:]]*//' -e 's/[[:space:]]*$//')"
  176. CPU_MODEL="$(echo "${lscpu_output}" | grep "^Model name:" | cut -f 2 -d ':' | sed -e 's/^[[:space:]]*//' -e 's/[[:space:]]*$//')"
  177. possible_cpu_freq="$(echo "${lscpu_output}" | grep -F "CPU max MHz:" | cut -f 2 -d ':' | sed -e 's/^[[:space:]]*//' -e 's/[[:space:]]*$//' | grep -o '^[0-9]*')"
  178. if [ -z "$possible_cpu_freq" ]; then
  179. possible_cpu_freq="$(echo "${lscpu_output}" | grep -F "CPU MHz:" | cut -f 2 -d ':' | sed -e 's/^[[:space:]]*//' -e 's/[[:space:]]*$//' | grep -o '^[0-9]*')"
  180. fi
  181. if [ -z "$possible_cpu_freq" ]; then
  182. possible_cpu_freq="$(echo "${lscpu_output}" | grep "^Model name:" | grep -Eo "[0-9\.]+GHz" | grep -o "^[0-9\.]*" | awk '{print int($0*1000)}')"
  183. fi
  184. [ -n "$possible_cpu_freq" ] && possible_cpu_freq="${possible_cpu_freq} MHz"
  185. elif [ -n "${dmidecode}" ] && dmidecode -t processor > /dev/null 2>&1; then
  186. dmidecode_output="$(${dmidecode} -t processor 2> /dev/null)"
  187. CPU_INFO_SOURCE="dmidecode"
  188. LCPU_COUNT="$(echo "${dmidecode_output}" | grep -F "Thread Count:" | cut -f 2 -d ':' | sed -e 's/^[[:space:]]*//' -e 's/[[:space:]]*$//')"
  189. CPU_VENDOR="$(echo "${dmidecode_output}" | grep -F "Manufacturer:" | cut -f 2 -d ':' | sed -e 's/^[[:space:]]*//' -e 's/[[:space:]]*$//')"
  190. CPU_MODEL="$(echo "${dmidecode_output}" | grep -F "Version:" | cut -f 2 -d ':' | sed -e 's/^[[:space:]]*//' -e 's/[[:space:]]*$//')"
  191. possible_cpu_freq="$(echo "${dmidecode_output}" | grep -F "Current Speed:" | cut -f 2 -d ':' | sed -e 's/^[[:space:]]*//' -e 's/[[:space:]]*$//')"
  192. else
  193. if [ -n "${nproc}" ]; then
  194. CPU_INFO_SOURCE="nproc"
  195. LCPU_COUNT="$(${nproc})"
  196. elif [ "${KERNEL_NAME}" = FreeBSD ]; then
  197. CPU_INFO_SOURCE="sysctl"
  198. LCPU_COUNT="$(sysctl -n kern.smp.cpus)"
  199. if ! possible_cpu_freq=$(sysctl -n machdep.tsc_freq 2> /dev/null); then
  200. possible_cpu_freq=$(sysctl -n hw.model 2> /dev/null | grep -Eo "[0-9\.]+GHz" | grep -o "^[0-9\.]*" | awk '{print int($0*1000)}')
  201. [ -n "$possible_cpu_freq" ] && possible_cpu_freq="${possible_cpu_freq} MHz"
  202. fi
  203. elif [ "${KERNEL_NAME}" = Darwin ]; then
  204. CPU_INFO_SOURCE="sysctl"
  205. LCPU_COUNT="$(sysctl -n hw.logicalcpu)"
  206. elif [ -d /sys/devices/system/cpu ]; then
  207. CPU_INFO_SOURCE="sysfs"
  208. # This is potentially more accurate than checking `/proc/cpuinfo`.
  209. LCPU_COUNT="$(find /sys/devices/system/cpu -mindepth 1 -maxdepth 1 -type d -name 'cpu*' | grep -cEv 'idle|freq')"
  210. elif [ -r /proc/cpuinfo ]; then
  211. CPU_INFO_SOURCE="procfs"
  212. LCPU_COUNT="$(grep -c ^processor /proc/cpuinfo)"
  213. fi
  214. if [ "${KERNEL_NAME}" = Darwin ]; then
  215. CPU_MODEL="$(sysctl -n machdep.cpu.brand_string)"
  216. if [ "${ARCHITECTURE}" = "x86_64" ]; then
  217. CPU_VENDOR="$(sysctl -n machdep.cpu.vendor)"
  218. else
  219. CPU_VENDOR="Apple"
  220. fi
  221. echo "${CPU_INFO_SOURCE}" | grep -qv sysctl && CPU_INFO_SOURCE="${CPU_INFO_SOURCE} sysctl"
  222. elif uname --version 2> /dev/null | grep -qF 'GNU coreutils'; then
  223. CPU_INFO_SOURCE="${CPU_INFO_SOURCE} uname"
  224. CPU_MODEL="$(uname -p)"
  225. CPU_VENDOR="$(uname -i)"
  226. elif [ "${KERNEL_NAME}" = FreeBSD ]; then
  227. if (echo "${CPU_INFO_SOURCE}" | grep -qv sysctl); then
  228. CPU_INFO_SOURCE="${CPU_INFO_SOURCE} sysctl"
  229. fi
  230. CPU_MODEL="$(sysctl -n hw.model)"
  231. elif [ -r /proc/cpuinfo ]; then
  232. if (echo "${CPU_INFO_SOURCE}" | grep -qv procfs); then
  233. CPU_INFO_SOURCE="${CPU_INFO_SOURCE} procfs"
  234. fi
  235. CPU_MODEL="$(grep -F "model name" /proc/cpuinfo | head -n 1 | cut -f 2 -d ':' | sed -e 's/^[[:space:]]*//' -e 's/[[:space:]]*$//')"
  236. CPU_VENDOR="$(grep -F "vendor_id" /proc/cpuinfo | head -n 1 | cut -f 2 -d ':' | sed -e 's/^[[:space:]]*//' -e 's/[[:space:]]*$//')"
  237. fi
  238. fi
  239. if [ "${KERNEL_NAME}" = Darwin ] && [ "${ARCHITECTURE}" = "x86_64" ]; then
  240. CPU_FREQ="$(sysctl -n hw.cpufrequency)"
  241. elif [ -r /sys/devices/system/cpu/cpu0/cpufreq/base_frequency ]; then
  242. if (echo "${CPU_INFO_SOURCE}" | grep -qv sysfs); then
  243. CPU_INFO_SOURCE="${CPU_INFO_SOURCE} sysfs"
  244. fi
  245. value="$(cat /sys/devices/system/cpu/cpu0/cpufreq/base_frequency)"
  246. CPU_FREQ="$((value * 1000))"
  247. elif [ -n "${possible_cpu_freq}" ]; then
  248. CPU_FREQ="${possible_cpu_freq}"
  249. elif [ -r /sys/devices/system/cpu/cpu0/cpufreq/cpuinfo_max_freq ]; then
  250. if (echo "${CPU_INFO_SOURCE}" | grep -qv sysfs); then
  251. CPU_INFO_SOURCE="${CPU_INFO_SOURCE} sysfs"
  252. fi
  253. value="$(cat /sys/devices/system/cpu/cpu0/cpufreq/cpuinfo_max_freq)"
  254. CPU_FREQ="$((value * 1000))"
  255. elif [ -r /proc/cpuinfo ]; then
  256. if (echo "${CPU_INFO_SOURCE}" | grep -qv procfs); then
  257. CPU_INFO_SOURCE="${CPU_INFO_SOURCE} procfs"
  258. fi
  259. value=$(grep "cpu MHz" /proc/cpuinfo 2>/dev/null | grep -o "[0-9]*" | head -n 1 | awk '{print int($0*1000000)}')
  260. [ -n "$value" ] && CPU_FREQ="$value"
  261. fi
  262. freq_units="$(echo "${CPU_FREQ}" | cut -f 2 -d ' ')"
  263. case "${freq_units}" in
  264. GHz)
  265. value="$(echo "${CPU_FREQ}" | cut -f 1 -d ' ')"
  266. CPU_FREQ="$((value * 1000 * 1000 * 1000))"
  267. ;;
  268. MHz)
  269. value="$(echo "${CPU_FREQ}" | cut -f 1 -d ' ')"
  270. CPU_FREQ="$((value * 1000 * 1000))"
  271. ;;
  272. KHz)
  273. value="$(echo "${CPU_FREQ}" | cut -f 1 -d ' ')"
  274. CPU_FREQ="$((value * 1000))"
  275. ;;
  276. *) ;;
  277. esac
  278. # -------------------------------------------------------------------------------------------------
  279. # Detect the total system RAM
  280. TOTAL_RAM="unknown"
  281. RAM_DETECTION="none"
  282. if [ "${KERNEL_NAME}" = FreeBSD ]; then
  283. RAM_DETECTION="sysctl"
  284. TOTAL_RAM="$(sysctl -n hw.physmem)"
  285. elif [ "${KERNEL_NAME}" = Darwin ]; then
  286. RAM_DETECTION="sysctl"
  287. TOTAL_RAM="$(sysctl -n hw.physmem)"
  288. elif [ -r /proc/meminfo ]; then
  289. RAM_DETECTION="procfs"
  290. TOTAL_RAM="$(grep -F MemTotal /proc/meminfo | cut -f 2 -d ':' | sed -e 's/^[[:space:]]*//' -e 's/[[:space:]]*$//' | cut -f 1 -d ' ')"
  291. TOTAL_RAM="$((TOTAL_RAM * 1024))"
  292. fi
  293. # -------------------------------------------------------------------------------------------------
  294. # Detect the total system disk space
  295. DISK_SIZE="unknown"
  296. DISK_DETECTION="none"
  297. if [ "${KERNEL_NAME}" = "Darwin" ]; then
  298. types='hfs'
  299. if (lsvfs | grep -q apfs); then
  300. types="${types},apfs"
  301. fi
  302. if (lsvfs | grep -q ufs); then
  303. types="${types},ufs"
  304. fi
  305. DISK_DETECTION="df"
  306. DISK_SIZE=$(($(/bin/df -k -t ${types} | tail -n +2 | sed -E 's/\/dev\/disk([[:digit:]]*)s[[:digit:]]*/\/dev\/disk\1/g' | sort -k 1 | awk -F ' ' '{s=$NF;for(i=NF-1;i>=1;i--)s=s FS $i;print s}' | uniq -f 9 | awk '{print $8}' | tr '\n' '+' | rev | cut -f 2- -d '+' | rev) * 1024))
  307. elif [ "${KERNEL_NAME}" = FreeBSD ]; then
  308. types='ufs'
  309. if (lsvfs | grep -q zfs); then
  310. types="${types},zfs"
  311. fi
  312. DISK_DETECTION="df"
  313. total="$(df -t ${types} -c -k | tail -n 1 | awk '{print $2}')"
  314. DISK_SIZE="$((total * 1024))"
  315. else
  316. if [ -d /sys/block ] && [ -r /proc/devices ]; then
  317. dev_major_whitelist=''
  318. # This is a list of device names used for block storage devices.
  319. # These translate to the prefixs of files in `/dev` indicating the device type.
  320. # They are sorted by lowest used device major number, with dynamically assigned ones at the end.
  321. # We use this to look up device major numbers in `/proc/devices`
  322. device_names='hd sd mfm ad ftl pd nftl dasd intfl mmcblk ub xvd rfd vbd nvme virtblk blkext'
  323. for name in ${device_names}; do
  324. if grep -qE " ${name}\$" /proc/devices; then
  325. dev_major_whitelist="${dev_major_whitelist}:$(grep -E "${name}\$" /proc/devices | sed -e 's/^[[:space:]]*//' | cut -f 1 -d ' ' | tr '\n' ':'):"
  326. fi
  327. done
  328. DISK_DETECTION="sysfs"
  329. DISK_SIZE="0"
  330. for disk in /sys/block/*; do
  331. if [ -r "${disk}/size" ] \
  332. && (echo "${dev_major_whitelist}" | grep -q ":$(cut -f 1 -d ':' "${disk}/dev"):") \
  333. && grep -qv 1 "${disk}/removable"; then
  334. size="$(($(cat "${disk}/size") * 512))"
  335. DISK_SIZE="$((DISK_SIZE + size))"
  336. fi
  337. done
  338. elif df --version 2> /dev/null | grep -qF "GNU coreutils"; then
  339. DISK_DETECTION="df"
  340. DISK_SIZE=$(($(df -x tmpfs -x devtmpfs -x squashfs -l -B1 --output=source,size | tail -n +2 | sort -u -k 1 | awk '{print $2}' | tr '\n' '+' | head -c -1)))
  341. else
  342. DISK_DETECTION="df"
  343. include_fs_types="ext*|btrfs|xfs|jfs|reiser*|zfs"
  344. DISK_SIZE=$(($(df -T -P | tail -n +2 | sort -u -k 1 | grep "${include_fs_types}" | awk '{print $3}' | tr '\n' '+' | head -c -1) * 1024))
  345. fi
  346. fi
  347. # -------------------------------------------------------------------------------------------------
  348. # Detect whether the node is kubernetes node
  349. HOST_IS_K8S_NODE="false"
  350. if [ -n "${KUBERNETES_SERVICE_HOST}" ] && [ -n "${KUBERNETES_SERVICE_PORT}" ]; then
  351. # These env vars are set for every container managed by k8s.
  352. HOST_IS_K8S_NODE="true"
  353. elif pgrep "kubelet"; then
  354. # The kubelet is the primary "node agent" that runs on each node.
  355. HOST_IS_K8S_NODE="true"
  356. fi
  357. # ------------------------------------------------------------------------------------------------
  358. # Detect instance metadata for VMs running on cloud providers
  359. CLOUD_TYPE="unknown"
  360. CLOUD_INSTANCE_TYPE="unknown"
  361. CLOUD_INSTANCE_REGION="unknown"
  362. if [ "${VIRTUALIZATION}" != "none" ] && command -v curl > /dev/null 2>&1; then
  363. # Try AWS IMDSv2
  364. if [ "${CLOUD_TYPE}" = "unknown" ]; then
  365. AWS_IMDS_TOKEN="$(curl --fail -s -m 5 --noproxy "*" -X PUT "http://169.254.169.254/latest/api/token" -H "X-aws-ec2-metadata-token-ttl-seconds: 21600")"
  366. if [ -n "${AWS_IMDS_TOKEN}" ]; then
  367. CLOUD_TYPE="AWS"
  368. CLOUD_INSTANCE_TYPE="$(curl --fail -s -m 5 --noproxy "*" -H "X-aws-ec2-metadata-token: $AWS_IMDS_TOKEN" -v "http://169.254.169.254/latest/meta-data/instance-type" 2> /dev/null)"
  369. CLOUD_INSTANCE_REGION="$(curl --fail -s -m 5 --noproxy "*" -H "X-aws-ec2-metadata-token: $AWS_IMDS_TOKEN" -v "http://169.254.169.254/latest/meta-data/placement/region" 2> /dev/null)"
  370. fi
  371. fi
  372. # Try GCE computeMetadata v1
  373. if [ "${CLOUD_TYPE}" = "unknown" ]; then
  374. if [ -n "$(curl --fail -s -m 5 --noproxy "*" -H "Metadata-Flavor: Google" "http://metadata.google.internal/computeMetadata/v1")" ]; then
  375. CLOUD_TYPE="GCP"
  376. CLOUD_INSTANCE_TYPE="$(curl --fail -s -m 5 --noproxy "*" -H "Metadata-Flavor: Google" "http://metadata.google.internal/computeMetadata/v1/instance/machine-type")"
  377. [ -n "$CLOUD_INSTANCE_TYPE" ] && CLOUD_INSTANCE_TYPE=$(basename "$CLOUD_INSTANCE_TYPE")
  378. CLOUD_INSTANCE_REGION="$(curl --fail -s -m 5 --noproxy "*" -H "Metadata-Flavor: Google" "http://metadata.google.internal/computeMetadata/v1/instance/zone")"
  379. [ -n "$CLOUD_INSTANCE_REGION" ] && CLOUD_INSTANCE_REGION=$(basename "$CLOUD_INSTANCE_REGION") && CLOUD_INSTANCE_REGION=${CLOUD_INSTANCE_REGION%-*}
  380. fi
  381. fi
  382. # TODO: needs to be tested in Microsoft Azure
  383. # Try Azure IMDS
  384. # if [ "${CLOUD_TYPE}" = "unknown" ]; then
  385. # AZURE_IMDS_DATA="$(curl --fail -s -m 5 -H "Metadata: true" --noproxy "*" "http://169.254.169.254/metadata/instance?version=2021-10-01")"
  386. # if [ -n "${AZURE_IMDS_DATA}" ]; then
  387. # CLOUD_TYPE="Azure"
  388. # CLOUD_INSTANCE_TYPE="$(curl --fail -s -m 5 -H "Metadata: true" --noproxy "*" "http://169.254.169.254/metadata/instance/compute/vmSize?version=2021-10-01&format=text")"
  389. # CLOUD_INSTANCE_REGION="$(curl --fail -s -m 5 -H "Metadata: true" --noproxy "*" "http://169.254.169.254/metadata/instance/compute/location?version=2021-10-01&format=text")"
  390. # fi
  391. # fi
  392. fi
  393. echo "NETDATA_CONTAINER_OS_NAME=${CONTAINER_NAME}"
  394. echo "NETDATA_CONTAINER_OS_ID=${CONTAINER_ID}"
  395. echo "NETDATA_CONTAINER_OS_ID_LIKE=${CONTAINER_ID_LIKE}"
  396. echo "NETDATA_CONTAINER_OS_VERSION=${CONTAINER_VERSION}"
  397. echo "NETDATA_CONTAINER_OS_VERSION_ID=${CONTAINER_VERSION_ID}"
  398. echo "NETDATA_CONTAINER_OS_DETECTION=${CONTAINER_OS_DETECTION}"
  399. echo "NETDATA_CONTAINER_IS_OFFICIAL_IMAGE=${CONTAINER_IS_OFFICIAL_IMAGE}"
  400. echo "NETDATA_HOST_OS_NAME=${HOST_NAME}"
  401. echo "NETDATA_HOST_OS_ID=${HOST_ID}"
  402. echo "NETDATA_HOST_OS_ID_LIKE=${HOST_ID_LIKE}"
  403. echo "NETDATA_HOST_OS_VERSION=${HOST_VERSION}"
  404. echo "NETDATA_HOST_OS_VERSION_ID=${HOST_VERSION_ID}"
  405. echo "NETDATA_HOST_OS_DETECTION=${HOST_OS_DETECTION}"
  406. echo "NETDATA_HOST_IS_K8S_NODE=${HOST_IS_K8S_NODE}"
  407. echo "NETDATA_SYSTEM_KERNEL_NAME=${KERNEL_NAME}"
  408. echo "NETDATA_SYSTEM_KERNEL_VERSION=${KERNEL_VERSION}"
  409. echo "NETDATA_SYSTEM_ARCHITECTURE=${ARCHITECTURE}"
  410. echo "NETDATA_SYSTEM_VIRTUALIZATION=${VIRTUALIZATION}"
  411. echo "NETDATA_SYSTEM_VIRT_DETECTION=${VIRT_DETECTION}"
  412. echo "NETDATA_SYSTEM_CONTAINER=${CONTAINER}"
  413. echo "NETDATA_SYSTEM_CONTAINER_DETECTION=${CONT_DETECTION}"
  414. echo "NETDATA_SYSTEM_CPU_LOGICAL_CPU_COUNT=${LCPU_COUNT}"
  415. echo "NETDATA_SYSTEM_CPU_VENDOR=${CPU_VENDOR}"
  416. echo "NETDATA_SYSTEM_CPU_MODEL=${CPU_MODEL}"
  417. echo "NETDATA_SYSTEM_CPU_FREQ=${CPU_FREQ}"
  418. echo "NETDATA_SYSTEM_CPU_DETECTION=${CPU_INFO_SOURCE}"
  419. echo "NETDATA_SYSTEM_TOTAL_RAM=${TOTAL_RAM}"
  420. echo "NETDATA_SYSTEM_RAM_DETECTION=${RAM_DETECTION}"
  421. echo "NETDATA_SYSTEM_TOTAL_DISK_SIZE=${DISK_SIZE}"
  422. echo "NETDATA_SYSTEM_DISK_DETECTION=${DISK_DETECTION}"
  423. echo "NETDATA_INSTANCE_CLOUD_TYPE=${CLOUD_TYPE}"
  424. echo "NETDATA_INSTANCE_CLOUD_INSTANCE_TYPE=${CLOUD_INSTANCE_TYPE}"
  425. echo "NETDATA_INSTANCE_CLOUD_INSTANCE_REGION=${CLOUD_INSTANCE_REGION}"