run-qemu.sh 8.3 KB

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  1. # From tools/run-qemu.sh, mainly remove the sudo for container environment
  2. #
  3. # REFERENCE:
  4. # qemu-system-riscv64 -machine virt -kernel ../bin/${ARCH}/kernel/kernel.elf -m {mem} -nographic -smp {smp} -bios default -drive file={fs},if=none,format=raw,id=x0 \
  5. # -device virtio-blk-device,drive=x0,bus=virtio-mmio-bus.0 -no-reboot -device virtio-net-device,netdev=net -netdev user,id=net \
  6. # -rtc base=utc \
  7. # -drive file=disk.img,if=none,format=raw,id=x1 -device virtio-blk-device,drive=x1,bus=virtio-mmio-bus.1
  8. check_dependencies()
  9. {
  10. # Check if qemu is installed
  11. if [ -z "$(which qemu-system-x86_64)" ]; then
  12. echo "Please install qemu first!"
  13. exit 1
  14. fi
  15. # Check if brctl is installed
  16. if [ -z "$(which brctl)" ]; then
  17. echo "Please install bridge-utils first!"
  18. exit 1
  19. fi
  20. # Check if dnsmasq is installed
  21. if [ -z "$(which dnsmasq)" ]; then
  22. echo "Please install dnsmasq first!"
  23. exit 1
  24. fi
  25. # Check if iptable is installed
  26. if [ -z "$(which iptables)" ]; then
  27. echo "Please install iptables first!"
  28. exit 1
  29. fi
  30. }
  31. check_dependencies
  32. # 进行启动前检查
  33. flag_can_run=1
  34. ARGS=`getopt -o p -l bios:,display: -- "$@"`
  35. eval set -- "${ARGS}"
  36. echo "$@"
  37. allflags=
  38. # allflags=$(qemu-system-x86_64 -cpu help | awk '/flags/ {y=1; getline}; y {print}' | tr ' ' '\n' | grep -Ev "^$" | sed -r 's|^|+|' | tr '\n' ',' | sed -r "s|,$||")
  39. # 设置ARCH环境变量,如果没有设置,就默认为x86_64
  40. export ARCH=${ARCH:=x86_64}
  41. echo "ARCH=${ARCH}"
  42. #ARCH="i386"
  43. # 请根据自己的需要,在-d 后方加入所需的 trace 事件
  44. # 标准的trace events
  45. qemu_trace_std=cpu_reset,guest_errors,trace:virtio*,trace:e1000e_rx*,trace:e1000e_tx*,trace:e1000e_irq*
  46. # 调试usb的trace
  47. qemu_trace_usb=trace:usb_xhci_reset,trace:usb_xhci_run,trace:usb_xhci_stop,trace:usb_xhci_irq_msi,trace:usb_xhci_irq_msix,trace:usb_xhci_port_reset,trace:msix_write_config,trace:usb_xhci_irq_msix,trace:usb_xhci_irq_msix_use,trace:usb_xhci_irq_msix_unuse,trace:usb_xhci_irq_msi,trace:usb_xhci_*
  48. # 根据架构设置qemu的加速方式
  49. if [ ${ARCH} == "i386" ] || [ ${ARCH} == "x86_64" ]; then
  50. qemu_accel="kvm"
  51. if [ $(uname) == Darwin ]; then
  52. qemu_accel=hvf
  53. else
  54. # 判断系统kvm模块是否加载
  55. if [ ! -e /dev/kvm ]; then
  56. # kvm模块未加载,使用tcg加速
  57. qemu_accel="tcg"
  58. fi
  59. fi
  60. fi
  61. # uboot版本
  62. UBOOT_VERSION="v2023.10"
  63. RISCV64_UBOOT_PATH="../tools/arch/riscv64/u-boot-${UBOOT_VERSION}-riscv64"
  64. QEMU=qemu-system-${ARCH}
  65. QEMU_DISK_IMAGE="../bin/${ARCH}/disk.img"
  66. QEMU_MEMORY="512M"
  67. QEMU_MEMORY_BACKEND="dragonos-qemu-shm.ram"
  68. QEMU_MEMORY_BACKEND_PATH_PREFIX="/dev/shm"
  69. QEMU_SHM_OBJECT="-object memory-backend-file,size=${QEMU_MEMORY},id=${QEMU_MEMORY_BACKEND},mem-path=${QEMU_MEMORY_BACKEND_PATH_PREFIX}/${QEMU_MEMORY_BACKEND},share=on "
  70. QEMU_SMP="2,cores=2,threads=1,sockets=1"
  71. QEMU_MONITOR="-monitor stdio"
  72. QEMU_TRACE="${qemu_trace_std}"
  73. QEMU_CPU_FEATURES=""
  74. QEMU_RTC_CLOCK=""
  75. QEMU_SERIAL_LOG_FILE="../serial_opt.txt"
  76. QEMU_SERIAL="-serial file:${QEMU_SERIAL_LOG_FILE}"
  77. QEMU_DRIVE="id=disk,file=${QEMU_DISK_IMAGE},if=none"
  78. QEMU_ACCELARATE=""
  79. QEMU_ARGUMENT=""
  80. QEMU_DEVICES=""
  81. BIOS_TYPE=""
  82. #这个变量为true则使用virtio磁盘
  83. VIRTIO_BLK_DEVICE=false
  84. # 如果qemu_accel不为空
  85. if [ -n "${qemu_accel}" ]; then
  86. QEMU_ACCELARATE=" -machine accel=${qemu_accel} "
  87. if [ "${qemu_accel}" == "kvm" ]; then
  88. QEMU_ACCELARATE+=" -enable-kvm "
  89. fi
  90. fi
  91. if [ ${ARCH} == "i386" ] || [ ${ARCH} == "x86_64" ]; then
  92. QEMU_MACHINE=" -machine q35,memory-backend=${QEMU_MEMORY_BACKEND} "
  93. QEMU_CPU_FEATURES+="-cpu IvyBridge,apic,x2apic,+fpu,check,+vmx,${allflags}"
  94. QEMU_RTC_CLOCK+=" -rtc clock=host,base=localtime"
  95. if [ ${VIRTIO_BLK_DEVICE} == false ]; then
  96. QEMU_DEVICES_DISK+="-device ahci,id=ahci -device ide-hd,drive=disk,bus=ahci.0 "
  97. else
  98. QEMU_DEVICES_DISK="-device virtio-blk-pci,drive=disk -device pci-bridge,chassis_nr=1,id=pci.1 -device pcie-root-port "
  99. fi
  100. else
  101. QEMU_MACHINE=" -machine virt,memory-backend=${QEMU_MEMORY_BACKEND} -cpu sifive-u54 "
  102. QEMU_DEVICES_DISK="-device virtio-blk-device,drive=disk "
  103. fi
  104. if [ ${ARCH} == "riscv64" ]; then
  105. # 如果是riscv64架构,就不需要图形界面
  106. QEMU_ARGUMENT+=" --nographic "
  107. # 从控制台显示
  108. QEMU_MONITOR=""
  109. QEMU_SERIAL=""
  110. fi
  111. while true;do
  112. case "$1" in
  113. --bios)
  114. case "$2" in
  115. uefi) #uefi启动新增ovmf.fd固件
  116. BIOS_TYPE=uefi
  117. ;;
  118. legacy)
  119. BIOS_TYPE=legacy
  120. ;;
  121. esac;shift 2;;
  122. --display)
  123. case "$2" in
  124. vnc)
  125. QEMU_ARGUMENT+=" -display vnc=:00 "
  126. ;;
  127. window)
  128. ;;
  129. nographic)
  130. QEMU_SERIAL=" -serial chardev:mux -monitor chardev:mux -chardev stdio,id=mux,mux=on,signal=off,logfile=${QEMU_SERIAL_LOG_FILE} "
  131. QEMU_MONITOR=""
  132. QEMU_ARGUMENT+=" --nographic "
  133. QEMU_ARGUMENT+=" -kernel ../bin/${ARCH}/kernel/kernel.elf "
  134. ;;
  135. esac;shift 2;;
  136. *) break
  137. esac
  138. done
  139. # ps: 下面这条使用tap的方式,无法dhcp获取到ip,暂时不知道为什么
  140. # QEMU_DEVICES="-device ahci,id=ahci -device ide-hd,drive=disk,bus=ahci.0 -net nic,netdev=nic0 -netdev tap,id=nic0,model=virtio-net-pci,script=qemu/ifup-nat,downscript=qemu/ifdown-nat -usb -device qemu-xhci,id=xhci,p2=8,p3=4 "
  141. QEMU_DEVICES+="${QEMU_DEVICES_DISK} "
  142. QEMU_DEVICES+=" -netdev user,id=hostnet0,hostfwd=tcp::12580-:12580 -device virtio-net-pci,vectors=5,netdev=hostnet0,id=net0 -usb -device qemu-xhci,id=xhci,p2=8,p3=4 "
  143. # E1000E
  144. # QEMU_DEVICES="-device ahci,id=ahci -device ide-hd,drive=disk,bus=ahci.0 -netdev user,id=hostnet0,hostfwd=tcp::12580-:12580 -net nic,model=e1000e,netdev=hostnet0,id=net0 -netdev user,id=hostnet1,hostfwd=tcp::12581-:12581 -device virtio-net-pci,vectors=5,netdev=hostnet1,id=net1 -usb -device qemu-xhci,id=xhci,p2=8,p3=4 "
  145. QEMU_ARGUMENT+="-d ${QEMU_DISK_IMAGE} -m ${QEMU_MEMORY} -smp ${QEMU_SMP} -boot order=d ${QEMU_MONITOR} -d ${qemu_trace_std} "
  146. QEMU_ARGUMENT+="-s ${QEMU_MACHINE} ${QEMU_CPU_FEATURES} ${QEMU_RTC_CLOCK} ${QEMU_SERIAL} -drive ${QEMU_DRIVE} ${QEMU_DEVICES} "
  147. QEMU_ARGUMENT+=" ${QEMU_SHM_OBJECT} "
  148. QEMU_ARGUMENT+=" ${QEMU_ACCELARATE} "
  149. # 安装riscv64的uboot
  150. install_riscv_uboot()
  151. {
  152. if [ ! -d ${RISCV64_UBOOT_PATH} ]; then
  153. echo "正在下载u-boot..."
  154. uboot_tar_name="u-boot-${UBOOT_VERSION}-riscv64.tar.xz"
  155. uboot_parent_path=$(dirname ${RISCV64_UBOOT_PATH}) || (echo "获取riscv u-boot 版本 ${UBOOT_VERSION} 的父目录失败" && exit 1)
  156. if [ ! -f ${uboot_tar_name} ]; then
  157. wget https://mirrors.dragonos.org.cn/pub/third_party/u-boot/${uboot_tar_name} || (echo "下载riscv u-boot 版本 ${UBOOT_VERSION} 失败" && exit 1)
  158. fi
  159. echo "下载完成"
  160. echo "正在解压u-boot到 '$uboot_parent_path'..."
  161. mkdir -p $uboot_parent_path
  162. tar xvf u-boot-${UBOOT_VERSION}-riscv64.tar.xz -C ${uboot_parent_path} || (echo "解压riscv u-boot 版本 ${UBOOT_VERSION} 失败" && exit 1)
  163. echo "解压完成"
  164. rm -rf u-boot-${UBOOT_VERSION}-riscv64.tar.xz
  165. fi
  166. echo "riscv u-boot 版本 ${UBOOT_VERSION} 已经安装"
  167. }
  168. if [ $flag_can_run -eq 1 ]; then
  169. # 删除共享内存
  170. rm -rf ${QEMU_MEMORY_BACKEND_PATH_PREFIX}/${QEMU_MEMORY_BACKEND}
  171. if [ ${BIOS_TYPE} == uefi ] ;then
  172. if [ ${ARCH} == x86_64 ] ;then
  173. ${QEMU} -bios arch/x86_64/efi/OVMF-pure-efi.fd ${QEMU_ARGUMENT}
  174. elif [ ${ARCH} == i386 ] ;then
  175. ${QEMU} -bios arch/i386/efi/OVMF-pure-efi.fd ${QEMU_ARGUMENT}
  176. elif [ ${ARCH} == riscv64 ] ;then
  177. install_riscv_uboot
  178. ${QEMU} -kernel ${RISCV64_UBOOT_PATH}/u-boot.bin ${QEMU_ARGUMENT}
  179. else
  180. echo "不支持的架构: ${ARCH}"
  181. fi
  182. else
  183. # 如果是i386架构或者x86_64架构,就直接启动
  184. if [ ${ARCH} == x86_64 ] || [ ${ARCH} == i386 ] ;then
  185. echo "${QEMU} ${QEMU_ARGUMENT}"
  186. elif [ ${ARCH} == riscv64 ] ;then
  187. # 如果是riscv64架构,就与efi启动一样
  188. install_riscv_uboot
  189. ${QEMU} -kernel ${RISCV64_UBOOT_PATH}/u-boot.bin ${QEMU_ARGUMENT}
  190. else
  191. echo "不支持的架构: ${ARCH}"
  192. fi
  193. fi
  194. # 删除共享内存
  195. rm -rf ${QEMU_MEMORY_BACKEND_PATH_PREFIX}/${QEMU_MEMORY_BACKEND}
  196. else
  197. echo "不满足运行条件"
  198. fi