gen_linux.sh 11 KB

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  1. #!/bin/bash
  2. # This script is intended to run inside the go generate
  3. # working directory must be llm/generate/
  4. # First we build one or more CPU based LLM libraries
  5. #
  6. # Then if we detect CUDA, we build a CUDA dynamic library, and carry the required
  7. # library dependencies
  8. #
  9. # Then if we detect ROCm, we build a dynamically loaded ROCm lib. The ROCM
  10. # libraries are quite large, and also dynamically load data files at runtime
  11. # which in turn are large, so we don't attempt to cary them as payload
  12. set -ex
  13. set -o pipefail
  14. # See https://llvm.org/docs/AMDGPUUsage.html#processors for reference
  15. amdGPUs() {
  16. if [ -n "${AMDGPU_TARGETS}" ]; then
  17. echo "${AMDGPU_TARGETS}"
  18. return
  19. fi
  20. GPU_LIST=(
  21. "gfx900"
  22. "gfx906:xnack-"
  23. "gfx908:xnack-"
  24. "gfx90a:xnack+"
  25. "gfx90a:xnack-"
  26. "gfx940"
  27. "gfx941"
  28. "gfx942"
  29. "gfx1010"
  30. "gfx1012"
  31. "gfx1030"
  32. "gfx1100"
  33. "gfx1101"
  34. "gfx1102"
  35. )
  36. (
  37. IFS=$';'
  38. echo "'${GPU_LIST[*]}'"
  39. )
  40. }
  41. echo "Starting linux generate script"
  42. if [ -z "${CUDACXX}" ]; then
  43. if [ -x /usr/local/cuda/bin/nvcc ]; then
  44. export CUDACXX=/usr/local/cuda/bin/nvcc
  45. else
  46. # Try the default location in case it exists
  47. export CUDACXX=$(command -v nvcc)
  48. fi
  49. fi
  50. COMMON_CMAKE_DEFS="-DCMAKE_SKIP_RPATH=on -DBUILD_SHARED_LIBS=on -DCMAKE_POSITION_INDEPENDENT_CODE=on -DGGML_NATIVE=off -DGGML_AVX=on -DGGML_AVX2=off -DGGML_AVX512=off -DGGML_FMA=off -DGGML_F16C=off -DGGML_OPENMP=off"
  51. source $(dirname $0)/gen_common.sh
  52. init_vars
  53. git_module_setup
  54. apply_patches
  55. init_vars
  56. if [ -z "${OLLAMA_SKIP_STATIC_GENERATE}" -o "${OLLAMA_CPU_TARGET}" = "static" ]; then
  57. # Builds by default, allows skipping, forces build if OLLAMA_CPU_TARGET="static"
  58. # Enables optimized Dockerfile builds using a blanket skip and targeted overrides
  59. # Static build for linking into the Go binary
  60. init_vars
  61. CMAKE_TARGETS="--target llama --target ggml"
  62. CMAKE_DEFS="-DBUILD_SHARED_LIBS=off -DGGML_NATIVE=off -DGGML_AVX=off -DGGML_AVX2=off -DGGML_AVX512=off -DGGML_FMA=off -DGGML_F16C=off -DGGML_OPENMP=off ${CMAKE_DEFS}"
  63. BUILD_DIR="../build/linux/${ARCH}_static"
  64. echo "Building static library"
  65. build
  66. fi
  67. init_vars
  68. if [ -z "${OLLAMA_SKIP_CPU_GENERATE}" ]; then
  69. # Users building from source can tune the exact flags we pass to cmake for configuring
  70. # llama.cpp, and we'll build only 1 CPU variant in that case as the default.
  71. if [ -n "${OLLAMA_CUSTOM_CPU_DEFS}" ]; then
  72. init_vars
  73. echo "OLLAMA_CUSTOM_CPU_DEFS=\"${OLLAMA_CUSTOM_CPU_DEFS}\""
  74. CMAKE_DEFS="${OLLAMA_CUSTOM_CPU_DEFS} -DBUILD_SHARED_LIBS=on -DCMAKE_POSITION_INDEPENDENT_CODE=on ${CMAKE_DEFS}"
  75. BUILD_DIR="../build/linux/${ARCH}/cpu"
  76. echo "Building custom CPU"
  77. build
  78. install
  79. compress
  80. else
  81. # Darwin Rosetta x86 emulation does NOT support AVX, AVX2, AVX512
  82. # -DGGML_AVX -- 2011 Intel Sandy Bridge & AMD Bulldozer
  83. # -DGGML_F16C -- 2012 Intel Ivy Bridge & AMD 2011 Bulldozer (No significant improvement over just AVX)
  84. # -DGGML_AVX2 -- 2013 Intel Haswell & 2015 AMD Excavator / 2017 AMD Zen
  85. # -DGGML_FMA (FMA3) -- 2013 Intel Haswell & 2012 AMD Piledriver
  86. # Note: the following seem to yield slower results than AVX2 - ymmv
  87. # -DGGML_AVX512 -- 2017 Intel Skylake and High End DeskTop (HEDT)
  88. # -DGGML_AVX512_VBMI -- 2018 Intel Cannon Lake
  89. # -DGGML_AVX512_VNNI -- 2021 Intel Alder Lake
  90. COMMON_CPU_DEFS="-DBUILD_SHARED_LIBS=on -DCMAKE_POSITION_INDEPENDENT_CODE=on -DGGML_NATIVE=off -DGGML_OPENMP=off"
  91. if [ -z "${OLLAMA_CPU_TARGET}" -o "${OLLAMA_CPU_TARGET}" = "cpu" ]; then
  92. #
  93. # CPU first for the default library, set up as lowest common denominator for maximum compatibility (including Rosetta)
  94. #
  95. init_vars
  96. CMAKE_DEFS="${COMMON_CPU_DEFS} -DGGML_AVX=off -DGGML_AVX2=off -DGGML_AVX512=off -DGGML_FMA=off -DGGML_F16C=off ${CMAKE_DEFS}"
  97. BUILD_DIR="../build/linux/${ARCH}/cpu"
  98. echo "Building LCD CPU"
  99. build
  100. install
  101. compress
  102. fi
  103. if [ "${ARCH}" == "x86_64" ]; then
  104. #
  105. # ARM chips in M1/M2/M3-based MACs and NVidia Tegra devices do not currently support avx extensions.
  106. #
  107. if [ -z "${OLLAMA_CPU_TARGET}" -o "${OLLAMA_CPU_TARGET}" = "cpu_avx" ]; then
  108. #
  109. # ~2011 CPU Dynamic library with more capabilities turned on to optimize performance
  110. # Approximately 400% faster than LCD on same CPU
  111. #
  112. init_vars
  113. CMAKE_DEFS="${COMMON_CPU_DEFS} -DGGML_AVX=on -DGGML_AVX2=off -DGGML_AVX512=off -DGGML_FMA=off -DGGML_F16C=off ${CMAKE_DEFS}"
  114. BUILD_DIR="../build/linux/${ARCH}/cpu_avx"
  115. echo "Building AVX CPU"
  116. build
  117. install
  118. compress
  119. fi
  120. if [ -z "${OLLAMA_CPU_TARGET}" -o "${OLLAMA_CPU_TARGET}" = "cpu_avx2" ]; then
  121. #
  122. # ~2013 CPU Dynamic library
  123. # Approximately 10% faster than AVX on same CPU
  124. #
  125. init_vars
  126. CMAKE_DEFS="${COMMON_CPU_DEFS} -DGGML_AVX=on -DGGML_AVX2=on -DGGML_AVX512=off -DGGML_FMA=on -DGGML_F16C=on ${CMAKE_DEFS}"
  127. BUILD_DIR="../build/linux/${ARCH}/cpu_avx2"
  128. echo "Building AVX2 CPU"
  129. build
  130. install
  131. compress
  132. fi
  133. fi
  134. fi
  135. else
  136. echo "Skipping CPU generation step as requested"
  137. fi
  138. # If needed, look for the default CUDA toolkit location
  139. if [ -z "${CUDA_LIB_DIR}" ] && [ -d /usr/local/cuda/lib64 ]; then
  140. CUDA_LIB_DIR=/usr/local/cuda/lib64
  141. fi
  142. # If needed, look for CUDA on Arch Linux
  143. if [ -z "${CUDA_LIB_DIR}" ] && [ -d /opt/cuda/targets/x86_64-linux/lib ]; then
  144. CUDA_LIB_DIR=/opt/cuda/targets/x86_64-linux/lib
  145. fi
  146. # Allow override in case libcudart is in the wrong place
  147. if [ -z "${CUDART_LIB_DIR}" ]; then
  148. CUDART_LIB_DIR="${CUDA_LIB_DIR}"
  149. fi
  150. if [ -z "${OLLAMA_SKIP_CUDA_GENERATE}" -a -d "${CUDA_LIB_DIR}" ]; then
  151. echo "CUDA libraries detected - building dynamic CUDA library"
  152. init_vars
  153. CUDA_MAJOR=$(ls "${CUDA_LIB_DIR}"/libcudart.so.* | head -1 | cut -f3 -d. || true)
  154. if [ -n "${CUDA_MAJOR}" ]; then
  155. CUDA_VARIANT=_v${CUDA_MAJOR}
  156. fi
  157. if [ "${ARCH}" == "arm64" ]; then
  158. echo "ARM CPU detected - disabling unsupported AVX instructions"
  159. # ARM-based CPUs such as M1 and Tegra do not support AVX extensions.
  160. #
  161. # CUDA compute < 6.0 lacks proper FP16 support on ARM.
  162. # Disabling has minimal performance effect while maintaining compatibility.
  163. ARM64_DEFS="-DGGML_AVX=off -DGGML_AVX2=off -DGGML_AVX512=off -DGGML_CUDA_F16=off"
  164. fi
  165. # Users building from source can tune the exact flags we pass to cmake for configuring llama.cpp
  166. if [ -n "${OLLAMA_CUSTOM_CUDA_DEFS}" ]; then
  167. echo "OLLAMA_CUSTOM_CUDA_DEFS=\"${OLLAMA_CUSTOM_CUDA_DEFS}\""
  168. CMAKE_CUDA_DEFS="-DGGML_CUDA=on -DCMAKE_CUDA_ARCHITECTURES=${CMAKE_CUDA_ARCHITECTURES} ${OLLAMA_CUSTOM_CUDA_DEFS}"
  169. echo "Building custom CUDA GPU"
  170. else
  171. CMAKE_CUDA_DEFS="-DGGML_CUDA=on -DCMAKE_CUDA_ARCHITECTURES=${CMAKE_CUDA_ARCHITECTURES}"
  172. fi
  173. export CUDAFLAGS="-t8"
  174. CMAKE_DEFS="${COMMON_CMAKE_DEFS} ${CMAKE_DEFS} ${ARM64_DEFS} ${CMAKE_CUDA_DEFS} -DGGML_STATIC=off"
  175. BUILD_DIR="../build/linux/${ARCH}/cuda${CUDA_VARIANT}"
  176. export LLAMA_SERVER_LDFLAGS="-L${CUDA_LIB_DIR} -lcudart -lcublas -lcublasLt -lcuda"
  177. CUDA_DIST_DIR="${DIST_BASE}/ollama_libs"
  178. build
  179. install
  180. mkdir -p "${CUDA_DIST_DIR}"
  181. for lib in ${CUDA_LIB_DIR}/libcudart.so* ${CUDA_LIB_DIR}/libcublas.so* ${CUDA_LIB_DIR}/libcublasLt.so* ; do
  182. cp -a "${lib}" "${CUDA_DIST_DIR}"
  183. done
  184. compress
  185. fi
  186. if [ -z "${ONEAPI_ROOT}" ]; then
  187. # Try the default location in case it exists
  188. ONEAPI_ROOT=/opt/intel/oneapi
  189. fi
  190. if [ -z "${OLLAMA_SKIP_ONEAPI_GENERATE}" -a -d "${ONEAPI_ROOT}" ]; then
  191. echo "OneAPI libraries detected - building dynamic OneAPI library"
  192. init_vars
  193. source ${ONEAPI_ROOT}/setvars.sh --force # set up environment variables for oneAPI
  194. CC=icx
  195. CMAKE_DEFS="${COMMON_CMAKE_DEFS} ${CMAKE_DEFS} -DCMAKE_C_COMPILER=icx -DCMAKE_CXX_COMPILER=icpx -DGGML_SYCL=ON -DGGML_SYCL_F16=OFF"
  196. BUILD_DIR="../build/linux/${ARCH}/oneapi"
  197. ONEAPI_DIST_DIR="${DIST_BASE}/ollama_libs"
  198. export LLAMA_SERVER_LDFLAGS="-fsycl -lOpenCL -lmkl_core -lmkl_sycl_blas -lmkl_intel_ilp64 -lmkl_tbb_thread -ltbb"
  199. DEBUG_FLAGS="" # icx compiles with -O0 if we pass -g, so we must remove it
  200. build
  201. # copy oneAPI dependencies
  202. mkdir -p "${ONEAPI_DIST_DIR}"
  203. for dep in $(ldd "${BUILD_DIR}/bin/ollama_llama_server" | grep "=>" | cut -f2 -d= | cut -f2 -d' ' | grep -e sycl -e mkl -e tbb); do
  204. cp -a "${dep}" "${ONEAPI_DIST_DIR}"
  205. done
  206. cp "${ONEAPI_ROOT}/compiler/latest/lib/libOpenCL.so" "${ONEAPI_DIST_DIR}"
  207. cp "${ONEAPI_ROOT}/compiler/latest/lib/libimf.so" "${ONEAPI_DIST_DIR}"
  208. cp "${ONEAPI_ROOT}/compiler/latest/lib/libintlc.so.5" "${ONEAPI_DIST_DIR}"
  209. cp "${ONEAPI_ROOT}/compiler/latest/lib/libirng.so" "${ONEAPI_DIST_DIR}"
  210. cp "${ONEAPI_ROOT}/compiler/latest/lib/libpi_level_zero.so" "${ONEAPI_DIST_DIR}"
  211. cp "${ONEAPI_ROOT}/compiler/latest/lib/libsvml.so" "${ONEAPI_DIST_DIR}"
  212. cp "${ONEAPI_ROOT}/compiler/latest/lib/libur_loader.so.0" "${ONEAPI_DIST_DIR}"
  213. install
  214. compress
  215. fi
  216. if [ -z "${ROCM_PATH}" ]; then
  217. # Try the default location in case it exists
  218. ROCM_PATH=/opt/rocm
  219. fi
  220. if [ -z "${CLBlast_DIR}" ]; then
  221. # Try the default location in case it exists
  222. if [ -d /usr/lib/cmake/CLBlast ]; then
  223. export CLBlast_DIR=/usr/lib/cmake/CLBlast
  224. fi
  225. fi
  226. if [ -z "${OLLAMA_SKIP_ROCM_GENERATE}" -a -d "${ROCM_PATH}" ]; then
  227. echo "ROCm libraries detected - building dynamic ROCm library"
  228. if [ -f ${ROCM_PATH}/lib/librocblas.so.*.*.????? ]; then
  229. ROCM_VARIANT=_v$(ls ${ROCM_PATH}/lib/librocblas.so.*.*.????? | cut -f5 -d. || true)
  230. fi
  231. init_vars
  232. CMAKE_DEFS="${COMMON_CMAKE_DEFS} ${CMAKE_DEFS} -DGGML_HIPBLAS=on -DLLAMA_CUDA_NO_PEER_COPY=on -DCMAKE_C_COMPILER=$ROCM_PATH/llvm/bin/clang -DCMAKE_CXX_COMPILER=$ROCM_PATH/llvm/bin/clang++ -DAMDGPU_TARGETS=$(amdGPUs) -DGPU_TARGETS=$(amdGPUs)"
  233. # Users building from source can tune the exact flags we pass to cmake for configuring llama.cpp
  234. if [ -n "${OLLAMA_CUSTOM_ROCM_DEFS}" ]; then
  235. echo "OLLAMA_CUSTOM_ROCM_DEFS=\"${OLLAMA_CUSTOM_ROCM_DEFS}\""
  236. CMAKE_DEFS="${CMAKE_DEFS} ${OLLAMA_CUSTOM_ROCM_DEFS}"
  237. echo "Building custom ROCM GPU"
  238. fi
  239. BUILD_DIR="../build/linux/${ARCH}/rocm${ROCM_VARIANT}"
  240. ROCM_DIST_DIR="${DIST_BASE}/ollama_libs"
  241. # TODO figure out how to disable runpath (rpath)
  242. # export CMAKE_HIP_FLAGS="-fno-rtlib-add-rpath" # doesn't work
  243. export LLAMA_SERVER_LDFLAGS="-L${ROCM_PATH}/lib -L/opt/amdgpu/lib/x86_64-linux-gnu/ -lhipblas -lrocblas -lamdhip64 -lrocsolver -lamd_comgr -lhsa-runtime64 -lrocsparse -ldrm -ldrm_amdgpu"
  244. build
  245. # copy the ROCM dependencies
  246. mkdir -p "${ROCM_DIST_DIR}"
  247. for dep in $(ldd "${BUILD_DIR}/bin/ollama_llama_server" | grep "=>" | cut -f2 -d= | cut -f2 -d' ' | grep -v "${ARCH}/rocm${ROCM_VARIANT}" | grep -e rocm -e amdgpu -e libtinfo ); do
  248. cp -a "${dep}"* "${ROCM_DIST_DIR}"
  249. done
  250. install
  251. compress
  252. fi
  253. cleanup
  254. echo "go generate completed. LLM runners: $(cd ${BUILD_DIR}/..; echo *)"