virt.c 15 KB

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  1. /*
  2. * SPDX-License-Identifier: GPL-2.0-or-later
  3. *
  4. * QEMU Virtual M68K Machine
  5. *
  6. * (c) 2020 Laurent Vivier <laurent@vivier.eu>
  7. *
  8. */
  9. #include "qemu/osdep.h"
  10. #include "qemu/units.h"
  11. #include "qemu/guest-random.h"
  12. #include "system/system.h"
  13. #include "cpu.h"
  14. #include "hw/boards.h"
  15. #include "hw/qdev-properties.h"
  16. #include "elf.h"
  17. #include "hw/loader.h"
  18. #include "ui/console.h"
  19. #include "hw/sysbus.h"
  20. #include "standard-headers/asm-m68k/bootinfo.h"
  21. #include "standard-headers/asm-m68k/bootinfo-virt.h"
  22. #include "bootinfo.h"
  23. #include "net/net.h"
  24. #include "qapi/error.h"
  25. #include "qemu/error-report.h"
  26. #include "system/qtest.h"
  27. #include "system/runstate.h"
  28. #include "system/reset.h"
  29. #include "hw/intc/m68k_irqc.h"
  30. #include "hw/misc/virt_ctrl.h"
  31. #include "hw/char/goldfish_tty.h"
  32. #include "hw/rtc/goldfish_rtc.h"
  33. #include "hw/intc/goldfish_pic.h"
  34. #include "hw/virtio/virtio-mmio.h"
  35. #include "hw/virtio/virtio-blk.h"
  36. /*
  37. * 6 goldfish-pic for CPU IRQ #1 to IRQ #6
  38. * CPU IRQ #1 -> PIC #1
  39. * IRQ #1 to IRQ #31 -> unused
  40. * IRQ #32 -> goldfish-tty
  41. * CPU IRQ #2 -> PIC #2
  42. * IRQ #1 to IRQ #32 -> virtio-mmio from 1 to 32
  43. * CPU IRQ #3 -> PIC #3
  44. * IRQ #1 to IRQ #32 -> virtio-mmio from 33 to 64
  45. * CPU IRQ #4 -> PIC #4
  46. * IRQ #1 to IRQ #32 -> virtio-mmio from 65 to 96
  47. * CPU IRQ #5 -> PIC #5
  48. * IRQ #1 to IRQ #32 -> virtio-mmio from 97 to 128
  49. * CPU IRQ #6 -> PIC #6
  50. * IRQ #1 -> goldfish-rtc
  51. * IRQ #2 to IRQ #32 -> unused
  52. * CPU IRQ #7 -> NMI
  53. */
  54. #define PIC_IRQ_BASE(num) (8 + (num - 1) * 32)
  55. #define PIC_IRQ(num, irq) (PIC_IRQ_BASE(num) + irq - 1)
  56. #define PIC_GPIO(pic_irq) (qdev_get_gpio_in(pic_dev[(pic_irq - 8) / 32], \
  57. (pic_irq - 8) % 32))
  58. #define VIRT_GF_PIC_MMIO_BASE 0xff000000 /* MMIO: 0xff000000 - 0xff005fff */
  59. #define VIRT_GF_PIC_IRQ_BASE 1 /* IRQ: #1 -> #6 */
  60. #define VIRT_GF_PIC_NB 6
  61. /* 2 goldfish-rtc (and timer) */
  62. #define VIRT_GF_RTC_MMIO_BASE 0xff006000 /* MMIO: 0xff006000 - 0xff007fff */
  63. #define VIRT_GF_RTC_IRQ_BASE PIC_IRQ(6, 1) /* PIC: #6, IRQ: #1 */
  64. #define VIRT_GF_RTC_NB 2
  65. /* 1 goldfish-tty */
  66. #define VIRT_GF_TTY_MMIO_BASE 0xff008000 /* MMIO: 0xff008000 - 0xff008fff */
  67. #define VIRT_GF_TTY_IRQ_BASE PIC_IRQ(1, 32) /* PIC: #1, IRQ: #32 */
  68. /* 1 virt-ctrl */
  69. #define VIRT_CTRL_MMIO_BASE 0xff009000 /* MMIO: 0xff009000 - 0xff009fff */
  70. #define VIRT_CTRL_IRQ_BASE PIC_IRQ(1, 1) /* PIC: #1, IRQ: #1 */
  71. /*
  72. * virtio-mmio size is 0x200 bytes
  73. * we use 4 goldfish-pic to attach them,
  74. * we can attach 32 virtio devices / goldfish-pic
  75. * -> we can manage 32 * 4 = 128 virtio devices
  76. */
  77. #define VIRT_VIRTIO_MMIO_BASE 0xff010000 /* MMIO: 0xff010000 - 0xff01ffff */
  78. #define VIRT_VIRTIO_IRQ_BASE PIC_IRQ(2, 1) /* PIC: 2, 3, 4, 5, IRQ: ALL */
  79. typedef struct {
  80. M68kCPU *cpu;
  81. hwaddr initial_pc;
  82. hwaddr initial_stack;
  83. } ResetInfo;
  84. static void main_cpu_reset(void *opaque)
  85. {
  86. ResetInfo *reset_info = opaque;
  87. M68kCPU *cpu = reset_info->cpu;
  88. CPUState *cs = CPU(cpu);
  89. cpu_reset(cs);
  90. cpu->env.aregs[7] = reset_info->initial_stack;
  91. cpu->env.pc = reset_info->initial_pc;
  92. }
  93. static void rerandomize_rng_seed(void *opaque)
  94. {
  95. struct bi_record *rng_seed = opaque;
  96. qemu_guest_getrandom_nofail((void *)rng_seed->data + 2,
  97. be16_to_cpu(*(uint16_t *)rng_seed->data));
  98. }
  99. static void virt_init(MachineState *machine)
  100. {
  101. M68kCPU *cpu = NULL;
  102. int32_t kernel_size;
  103. uint64_t elf_entry;
  104. ram_addr_t initrd_base;
  105. int32_t initrd_size;
  106. ram_addr_t ram_size = machine->ram_size;
  107. const char *kernel_filename = machine->kernel_filename;
  108. const char *initrd_filename = machine->initrd_filename;
  109. const char *kernel_cmdline = machine->kernel_cmdline;
  110. hwaddr parameters_base;
  111. DeviceState *dev;
  112. DeviceState *irqc_dev;
  113. DeviceState *pic_dev[VIRT_GF_PIC_NB];
  114. SysBusDevice *sysbus;
  115. hwaddr io_base;
  116. int i;
  117. ResetInfo *reset_info;
  118. uint8_t rng_seed[32];
  119. if (ram_size > 3399672 * KiB) {
  120. /*
  121. * The physical memory can be up to 4 GiB - 16 MiB, but linux
  122. * kernel crashes after this limit (~ 3.2 GiB)
  123. */
  124. error_report("Too much memory for this machine: %" PRId64 " KiB, "
  125. "maximum 3399672 KiB", ram_size / KiB);
  126. exit(1);
  127. }
  128. reset_info = g_new0(ResetInfo, 1);
  129. /* init CPUs */
  130. cpu = M68K_CPU(cpu_create(machine->cpu_type));
  131. reset_info->cpu = cpu;
  132. qemu_register_reset(main_cpu_reset, reset_info);
  133. /* RAM */
  134. memory_region_add_subregion(get_system_memory(), 0, machine->ram);
  135. /* IRQ Controller */
  136. irqc_dev = qdev_new(TYPE_M68K_IRQC);
  137. object_property_set_link(OBJECT(irqc_dev), "m68k-cpu",
  138. OBJECT(cpu), &error_abort);
  139. sysbus_realize_and_unref(SYS_BUS_DEVICE(irqc_dev), &error_fatal);
  140. /*
  141. * 6 goldfish-pic
  142. *
  143. * map: 0xff000000 - 0xff006fff = 28 KiB
  144. * IRQ: #1 (lower priority) -> #6 (higher priority)
  145. *
  146. */
  147. io_base = VIRT_GF_PIC_MMIO_BASE;
  148. for (i = 0; i < VIRT_GF_PIC_NB; i++) {
  149. pic_dev[i] = qdev_new(TYPE_GOLDFISH_PIC);
  150. sysbus = SYS_BUS_DEVICE(pic_dev[i]);
  151. qdev_prop_set_uint8(pic_dev[i], "index", i);
  152. sysbus_realize_and_unref(sysbus, &error_fatal);
  153. sysbus_mmio_map(sysbus, 0, io_base);
  154. sysbus_connect_irq(sysbus, 0, qdev_get_gpio_in(irqc_dev, i));
  155. io_base += 0x1000;
  156. }
  157. /* goldfish-rtc */
  158. io_base = VIRT_GF_RTC_MMIO_BASE;
  159. for (i = 0; i < VIRT_GF_RTC_NB; i++) {
  160. dev = qdev_new(TYPE_GOLDFISH_RTC);
  161. qdev_prop_set_bit(dev, "big-endian", true);
  162. sysbus = SYS_BUS_DEVICE(dev);
  163. sysbus_realize_and_unref(sysbus, &error_fatal);
  164. sysbus_mmio_map(sysbus, 0, io_base);
  165. sysbus_connect_irq(sysbus, 0, PIC_GPIO(VIRT_GF_RTC_IRQ_BASE + i));
  166. io_base += 0x1000;
  167. }
  168. /* goldfish-tty */
  169. dev = qdev_new(TYPE_GOLDFISH_TTY);
  170. sysbus = SYS_BUS_DEVICE(dev);
  171. qdev_prop_set_chr(dev, "chardev", serial_hd(0));
  172. sysbus_realize_and_unref(sysbus, &error_fatal);
  173. sysbus_mmio_map(sysbus, 0, VIRT_GF_TTY_MMIO_BASE);
  174. sysbus_connect_irq(sysbus, 0, PIC_GPIO(VIRT_GF_TTY_IRQ_BASE));
  175. /* virt controller */
  176. dev = sysbus_create_simple(TYPE_VIRT_CTRL, VIRT_CTRL_MMIO_BASE,
  177. PIC_GPIO(VIRT_CTRL_IRQ_BASE));
  178. /* virtio-mmio */
  179. io_base = VIRT_VIRTIO_MMIO_BASE;
  180. for (i = 0; i < 128; i++) {
  181. dev = qdev_new(TYPE_VIRTIO_MMIO);
  182. qdev_prop_set_bit(dev, "force-legacy", false);
  183. sysbus = SYS_BUS_DEVICE(dev);
  184. sysbus_realize_and_unref(sysbus, &error_fatal);
  185. sysbus_connect_irq(sysbus, 0, PIC_GPIO(VIRT_VIRTIO_IRQ_BASE + i));
  186. sysbus_mmio_map(sysbus, 0, io_base);
  187. io_base += 0x200;
  188. }
  189. if (kernel_filename) {
  190. CPUState *cs = CPU(cpu);
  191. uint64_t high;
  192. void *param_blob, *param_ptr, *param_rng_seed;
  193. if (kernel_cmdline) {
  194. param_blob = g_malloc(strlen(kernel_cmdline) + 1024);
  195. } else {
  196. param_blob = g_malloc(1024);
  197. }
  198. kernel_size = load_elf(kernel_filename, NULL, NULL, NULL,
  199. &elf_entry, NULL, &high, NULL, ELFDATA2MSB,
  200. EM_68K, 0, 0);
  201. if (kernel_size < 0) {
  202. error_report("could not load kernel '%s'", kernel_filename);
  203. exit(1);
  204. }
  205. reset_info->initial_pc = elf_entry;
  206. parameters_base = (high + 1) & ~1;
  207. param_ptr = param_blob;
  208. BOOTINFO1(param_ptr, BI_MACHTYPE, MACH_VIRT);
  209. if (m68k_feature(&cpu->env, M68K_FEATURE_M68020)) {
  210. BOOTINFO1(param_ptr, BI_CPUTYPE, CPU_68020);
  211. } else if (m68k_feature(&cpu->env, M68K_FEATURE_M68030)) {
  212. BOOTINFO1(param_ptr, BI_MMUTYPE, MMU_68030);
  213. BOOTINFO1(param_ptr, BI_CPUTYPE, CPU_68030);
  214. } else if (m68k_feature(&cpu->env, M68K_FEATURE_M68040)) {
  215. BOOTINFO1(param_ptr, BI_FPUTYPE, FPU_68040);
  216. BOOTINFO1(param_ptr, BI_MMUTYPE, MMU_68040);
  217. BOOTINFO1(param_ptr, BI_CPUTYPE, CPU_68040);
  218. } else if (m68k_feature(&cpu->env, M68K_FEATURE_M68060)) {
  219. BOOTINFO1(param_ptr, BI_FPUTYPE, FPU_68060);
  220. BOOTINFO1(param_ptr, BI_MMUTYPE, MMU_68060);
  221. BOOTINFO1(param_ptr, BI_CPUTYPE, CPU_68060);
  222. }
  223. BOOTINFO2(param_ptr, BI_MEMCHUNK, 0, ram_size);
  224. BOOTINFO1(param_ptr, BI_VIRT_QEMU_VERSION,
  225. ((QEMU_VERSION_MAJOR << 24) | (QEMU_VERSION_MINOR << 16) |
  226. (QEMU_VERSION_MICRO << 8)));
  227. BOOTINFO2(param_ptr, BI_VIRT_GF_PIC_BASE,
  228. VIRT_GF_PIC_MMIO_BASE, VIRT_GF_PIC_IRQ_BASE);
  229. BOOTINFO2(param_ptr, BI_VIRT_GF_RTC_BASE,
  230. VIRT_GF_RTC_MMIO_BASE, VIRT_GF_RTC_IRQ_BASE);
  231. BOOTINFO2(param_ptr, BI_VIRT_GF_TTY_BASE,
  232. VIRT_GF_TTY_MMIO_BASE, VIRT_GF_TTY_IRQ_BASE);
  233. BOOTINFO2(param_ptr, BI_VIRT_CTRL_BASE,
  234. VIRT_CTRL_MMIO_BASE, VIRT_CTRL_IRQ_BASE);
  235. BOOTINFO2(param_ptr, BI_VIRT_VIRTIO_BASE,
  236. VIRT_VIRTIO_MMIO_BASE, VIRT_VIRTIO_IRQ_BASE);
  237. if (kernel_cmdline) {
  238. BOOTINFOSTR(param_ptr, BI_COMMAND_LINE,
  239. kernel_cmdline);
  240. }
  241. /* Pass seed to RNG. */
  242. param_rng_seed = param_ptr;
  243. qemu_guest_getrandom_nofail(rng_seed, sizeof(rng_seed));
  244. BOOTINFODATA(param_ptr, BI_RNG_SEED,
  245. rng_seed, sizeof(rng_seed));
  246. /* load initrd */
  247. if (initrd_filename) {
  248. initrd_size = get_image_size(initrd_filename);
  249. if (initrd_size < 0) {
  250. error_report("could not load initial ram disk '%s'",
  251. initrd_filename);
  252. exit(1);
  253. }
  254. initrd_base = (ram_size - initrd_size) & TARGET_PAGE_MASK;
  255. load_image_targphys(initrd_filename, initrd_base,
  256. ram_size - initrd_base);
  257. BOOTINFO2(param_ptr, BI_RAMDISK, initrd_base,
  258. initrd_size);
  259. } else {
  260. initrd_base = 0;
  261. initrd_size = 0;
  262. }
  263. BOOTINFO0(param_ptr, BI_LAST);
  264. rom_add_blob_fixed_as("bootinfo", param_blob, param_ptr - param_blob,
  265. parameters_base, cs->as);
  266. qemu_register_reset_nosnapshotload(rerandomize_rng_seed,
  267. rom_ptr_for_as(cs->as, parameters_base,
  268. param_ptr - param_blob) +
  269. (param_rng_seed - param_blob));
  270. g_free(param_blob);
  271. }
  272. }
  273. static void virt_machine_class_init(ObjectClass *oc, void *data)
  274. {
  275. MachineClass *mc = MACHINE_CLASS(oc);
  276. mc->desc = "QEMU M68K Virtual Machine";
  277. mc->init = virt_init;
  278. mc->default_cpu_type = M68K_CPU_TYPE_NAME("m68040");
  279. mc->max_cpus = 1;
  280. mc->no_floppy = 1;
  281. mc->no_parallel = 1;
  282. mc->default_ram_id = "m68k_virt.ram";
  283. }
  284. static const TypeInfo virt_machine_info = {
  285. .name = MACHINE_TYPE_NAME("virt"),
  286. .parent = TYPE_MACHINE,
  287. .abstract = true,
  288. .class_init = virt_machine_class_init,
  289. };
  290. static void virt_machine_register_types(void)
  291. {
  292. type_register_static(&virt_machine_info);
  293. }
  294. type_init(virt_machine_register_types)
  295. #define DEFINE_VIRT_MACHINE_IMPL(latest, ...) \
  296. static void MACHINE_VER_SYM(class_init, virt, __VA_ARGS__)( \
  297. ObjectClass *oc, \
  298. void *data) \
  299. { \
  300. MachineClass *mc = MACHINE_CLASS(oc); \
  301. MACHINE_VER_SYM(options, virt, __VA_ARGS__)(mc); \
  302. mc->desc = "QEMU " MACHINE_VER_STR(__VA_ARGS__) " M68K Virtual Machine"; \
  303. MACHINE_VER_DEPRECATION(__VA_ARGS__); \
  304. if (latest) { \
  305. mc->alias = "virt"; \
  306. } \
  307. } \
  308. static const TypeInfo MACHINE_VER_SYM(info, virt, __VA_ARGS__) = \
  309. { \
  310. .name = MACHINE_VER_TYPE_NAME("virt", __VA_ARGS__), \
  311. .parent = MACHINE_TYPE_NAME("virt"), \
  312. .class_init = MACHINE_VER_SYM(class_init, virt, __VA_ARGS__), \
  313. }; \
  314. static void MACHINE_VER_SYM(register, virt, __VA_ARGS__)(void) \
  315. { \
  316. MACHINE_VER_DELETION(__VA_ARGS__); \
  317. type_register_static(&MACHINE_VER_SYM(info, virt, __VA_ARGS__)); \
  318. } \
  319. type_init(MACHINE_VER_SYM(register, virt, __VA_ARGS__));
  320. #define DEFINE_VIRT_MACHINE_AS_LATEST(major, minor) \
  321. DEFINE_VIRT_MACHINE_IMPL(true, major, minor)
  322. #define DEFINE_VIRT_MACHINE(major, minor) \
  323. DEFINE_VIRT_MACHINE_IMPL(false, major, minor)
  324. static void virt_machine_10_0_options(MachineClass *mc)
  325. {
  326. }
  327. DEFINE_VIRT_MACHINE_AS_LATEST(10, 0)
  328. static void virt_machine_9_2_options(MachineClass *mc)
  329. {
  330. virt_machine_10_0_options(mc);
  331. compat_props_add(mc->compat_props, hw_compat_9_2, hw_compat_9_2_len);
  332. }
  333. DEFINE_VIRT_MACHINE(9, 2)
  334. static void virt_machine_9_1_options(MachineClass *mc)
  335. {
  336. virt_machine_9_2_options(mc);
  337. compat_props_add(mc->compat_props, hw_compat_9_1, hw_compat_9_1_len);
  338. }
  339. DEFINE_VIRT_MACHINE(9, 1)
  340. static void virt_machine_9_0_options(MachineClass *mc)
  341. {
  342. virt_machine_9_1_options(mc);
  343. compat_props_add(mc->compat_props, hw_compat_9_0, hw_compat_9_0_len);
  344. }
  345. DEFINE_VIRT_MACHINE(9, 0)
  346. static void virt_machine_8_2_options(MachineClass *mc)
  347. {
  348. virt_machine_9_0_options(mc);
  349. compat_props_add(mc->compat_props, hw_compat_8_2, hw_compat_8_2_len);
  350. }
  351. DEFINE_VIRT_MACHINE(8, 2)
  352. static void virt_machine_8_1_options(MachineClass *mc)
  353. {
  354. virt_machine_8_2_options(mc);
  355. compat_props_add(mc->compat_props, hw_compat_8_1, hw_compat_8_1_len);
  356. }
  357. DEFINE_VIRT_MACHINE(8, 1)
  358. static void virt_machine_8_0_options(MachineClass *mc)
  359. {
  360. virt_machine_8_1_options(mc);
  361. compat_props_add(mc->compat_props, hw_compat_8_0, hw_compat_8_0_len);
  362. }
  363. DEFINE_VIRT_MACHINE(8, 0)
  364. static void virt_machine_7_2_options(MachineClass *mc)
  365. {
  366. virt_machine_8_0_options(mc);
  367. compat_props_add(mc->compat_props, hw_compat_7_2, hw_compat_7_2_len);
  368. }
  369. DEFINE_VIRT_MACHINE(7, 2)
  370. static void virt_machine_7_1_options(MachineClass *mc)
  371. {
  372. virt_machine_7_2_options(mc);
  373. compat_props_add(mc->compat_props, hw_compat_7_1, hw_compat_7_1_len);
  374. }
  375. DEFINE_VIRT_MACHINE(7, 1)
  376. static void virt_machine_7_0_options(MachineClass *mc)
  377. {
  378. virt_machine_7_1_options(mc);
  379. compat_props_add(mc->compat_props, hw_compat_7_0, hw_compat_7_0_len);
  380. }
  381. DEFINE_VIRT_MACHINE(7, 0)
  382. static void virt_machine_6_2_options(MachineClass *mc)
  383. {
  384. virt_machine_7_0_options(mc);
  385. compat_props_add(mc->compat_props, hw_compat_6_2, hw_compat_6_2_len);
  386. }
  387. DEFINE_VIRT_MACHINE(6, 2)
  388. static void virt_machine_6_1_options(MachineClass *mc)
  389. {
  390. virt_machine_6_2_options(mc);
  391. compat_props_add(mc->compat_props, hw_compat_6_1, hw_compat_6_1_len);
  392. }
  393. DEFINE_VIRT_MACHINE(6, 1)
  394. static void virt_machine_6_0_options(MachineClass *mc)
  395. {
  396. virt_machine_6_1_options(mc);
  397. compat_props_add(mc->compat_props, hw_compat_6_0, hw_compat_6_0_len);
  398. }
  399. DEFINE_VIRT_MACHINE(6, 0)