xref: /openbmc/qemu/hw/hppa/machine.c (revision b7746b1194c8b15d8a31ba0cc308175bcb4b96f8)
1813dff13SHelge Deller /*
2813dff13SHelge Deller  * QEMU HPPA hardware system emulator.
3813dff13SHelge Deller  * Copyright 2018 Helge Deller <deller@gmx.de>
4813dff13SHelge Deller  */
5813dff13SHelge Deller 
6813dff13SHelge Deller #include "qemu/osdep.h"
7813dff13SHelge Deller #include "qemu-common.h"
8813dff13SHelge Deller #include "cpu.h"
9813dff13SHelge Deller #include "elf.h"
10813dff13SHelge Deller #include "hw/loader.h"
11813dff13SHelge Deller #include "hw/boards.h"
12813dff13SHelge Deller #include "qemu/error-report.h"
1371e8a915SMarkus Armbruster #include "sysemu/reset.h"
14813dff13SHelge Deller #include "sysemu/sysemu.h"
15bcdb9064SPhilippe Mathieu-Daudé #include "hw/rtc/mc146818rtc.h"
16813dff13SHelge Deller #include "hw/ide.h"
17813dff13SHelge Deller #include "hw/timer/i8254.h"
18813dff13SHelge Deller #include "hw/char/serial.h"
19376b8519SHelge Deller #include "hw/net/lasi_82596.h"
20070e9a1eSMichael S. Tsirkin #include "hppa_sys.h"
21c108cc59SPhilippe Mathieu-Daudé #include "qemu/units.h"
22813dff13SHelge Deller #include "qapi/error.h"
23852c27e2SPaolo Bonzini #include "net/net.h"
24691cbbadSRichard Henderson #include "qemu/log.h"
25813dff13SHelge Deller 
26a72bd606SHelge Deller #define MAX_IDE_BUS 2
27a72bd606SHelge Deller 
28a72bd606SHelge Deller static ISABus *hppa_isa_bus(void)
29a72bd606SHelge Deller {
30a72bd606SHelge Deller     ISABus *isa_bus;
31a72bd606SHelge Deller     qemu_irq *isa_irqs;
32a72bd606SHelge Deller     MemoryRegion *isa_region;
33a72bd606SHelge Deller 
34a72bd606SHelge Deller     isa_region = g_new(MemoryRegion, 1);
35a72bd606SHelge Deller     memory_region_init_io(isa_region, NULL, &hppa_pci_ignore_ops,
36a72bd606SHelge Deller                           NULL, "isa-io", 0x800);
37a72bd606SHelge Deller     memory_region_add_subregion(get_system_memory(), IDE_HPA,
38a72bd606SHelge Deller                                 isa_region);
39a72bd606SHelge Deller 
40a72bd606SHelge Deller     isa_bus = isa_bus_new(NULL, get_system_memory(), isa_region,
41a72bd606SHelge Deller                           &error_abort);
42a72bd606SHelge Deller     isa_irqs = i8259_init(isa_bus,
43a72bd606SHelge Deller                           /* qemu_allocate_irq(dino_set_isa_irq, s, 0)); */
44a72bd606SHelge Deller                           NULL);
45a72bd606SHelge Deller     isa_bus_irqs(isa_bus, isa_irqs);
46a72bd606SHelge Deller 
47a72bd606SHelge Deller     return isa_bus;
48a72bd606SHelge Deller }
49a72bd606SHelge Deller 
50a72bd606SHelge Deller static uint64_t cpu_hppa_to_phys(void *opaque, uint64_t addr)
51a72bd606SHelge Deller {
52a72bd606SHelge Deller     addr &= (0x10000000 - 1);
53a72bd606SHelge Deller     return addr;
54a72bd606SHelge Deller }
55a72bd606SHelge Deller 
56a72bd606SHelge Deller static HPPACPU *cpu[HPPA_MAX_CPUS];
57a72bd606SHelge Deller static uint64_t firmware_entry;
58813dff13SHelge Deller 
59813dff13SHelge Deller static void machine_hppa_init(MachineState *machine)
60813dff13SHelge Deller {
61a72bd606SHelge Deller     const char *kernel_filename = machine->kernel_filename;
62a72bd606SHelge Deller     const char *kernel_cmdline = machine->kernel_cmdline;
63a72bd606SHelge Deller     const char *initrd_filename = machine->initrd_filename;
64877eb21dSMark Cave-Ayland     DeviceState *dev;
65a72bd606SHelge Deller     PCIBus *pci_bus;
66a72bd606SHelge Deller     ISABus *isa_bus;
67a72bd606SHelge Deller     qemu_irq rtc_irq, serial_irq;
68a72bd606SHelge Deller     char *firmware_filename;
69a72bd606SHelge Deller     uint64_t firmware_low, firmware_high;
70a72bd606SHelge Deller     long size;
71a72bd606SHelge Deller     uint64_t kernel_entry = 0, kernel_low, kernel_high;
72a72bd606SHelge Deller     MemoryRegion *addr_space = get_system_memory();
73a72bd606SHelge Deller     MemoryRegion *rom_region;
74a72bd606SHelge Deller     MemoryRegion *ram_region;
75a72bd606SHelge Deller     MemoryRegion *cpu_region;
76a72bd606SHelge Deller     long i;
7733decbd2SLike Xu     unsigned int smp_cpus = machine->smp.cpus;
784765384cSSven Schnelle     SysBusDevice *s;
79a72bd606SHelge Deller 
80a72bd606SHelge Deller     ram_size = machine->ram_size;
81a72bd606SHelge Deller 
82a72bd606SHelge Deller     /* Create CPUs.  */
83a72bd606SHelge Deller     for (i = 0; i < smp_cpus; i++) {
84266a880eSPaolo Bonzini         char *name = g_strdup_printf("cpu%ld-io-eir", i);
85a72bd606SHelge Deller         cpu[i] = HPPA_CPU(cpu_create(machine->cpu_type));
86a72bd606SHelge Deller 
87a72bd606SHelge Deller         cpu_region = g_new(MemoryRegion, 1);
88a72bd606SHelge Deller         memory_region_init_io(cpu_region, OBJECT(cpu[i]), &hppa_io_eir_ops,
89266a880eSPaolo Bonzini                               cpu[i], name, 4);
90a72bd606SHelge Deller         memory_region_add_subregion(addr_space, CPU_HPA + i * 0x1000,
91a72bd606SHelge Deller                                     cpu_region);
92266a880eSPaolo Bonzini         g_free(name);
93813dff13SHelge Deller     }
94813dff13SHelge Deller 
95a72bd606SHelge Deller     /* Main memory region. */
96*b7746b11SPhilippe Mathieu-Daudé     if (machine->ram_size > 3 * GiB) {
97*b7746b11SPhilippe Mathieu-Daudé         error_report("RAM size is currently restricted to 3GB");
98*b7746b11SPhilippe Mathieu-Daudé         exit(EXIT_FAILURE);
99*b7746b11SPhilippe Mathieu-Daudé     }
100a72bd606SHelge Deller     ram_region = g_new(MemoryRegion, 1);
101a72bd606SHelge Deller     memory_region_allocate_system_memory(ram_region, OBJECT(machine),
102a72bd606SHelge Deller                                          "ram", ram_size);
103a72bd606SHelge Deller     memory_region_add_subregion(addr_space, 0, ram_region);
104a72bd606SHelge Deller 
105376b8519SHelge Deller     /* Init Lasi chip */
106376b8519SHelge Deller     lasi_init(addr_space);
107376b8519SHelge Deller 
108a72bd606SHelge Deller     /* Init Dino (PCI host bus chip).  */
109a72bd606SHelge Deller     pci_bus = dino_init(addr_space, &rtc_irq, &serial_irq);
110a72bd606SHelge Deller     assert(pci_bus);
111a72bd606SHelge Deller 
112a72bd606SHelge Deller     /* Create ISA bus. */
113a72bd606SHelge Deller     isa_bus = hppa_isa_bus();
114a72bd606SHelge Deller     assert(isa_bus);
115a72bd606SHelge Deller 
116a72bd606SHelge Deller     /* Realtime clock, used by firmware for PDC_TOD call. */
117a72bd606SHelge Deller     mc146818_rtc_init(isa_bus, 2000, rtc_irq);
118a72bd606SHelge Deller 
119a72bd606SHelge Deller     /* Serial code setup.  */
1209bca0edbSPeter Maydell     if (serial_hd(0)) {
121a72bd606SHelge Deller         uint32_t addr = DINO_UART_HPA + 0x800;
122a72bd606SHelge Deller         serial_mm_init(addr_space, addr, 0, serial_irq,
1239bca0edbSPeter Maydell                        115200, serial_hd(0), DEVICE_BIG_ENDIAN);
124a72bd606SHelge Deller     }
125a72bd606SHelge Deller 
126a72bd606SHelge Deller     /* SCSI disk setup. */
127877eb21dSMark Cave-Ayland     dev = DEVICE(pci_create_simple(pci_bus, -1, "lsi53c895a"));
128877eb21dSMark Cave-Ayland     lsi53c8xx_handle_legacy_cmdline(dev);
129a72bd606SHelge Deller 
1304765384cSSven Schnelle     /* Graphics setup. */
1314765384cSSven Schnelle     if (machine->enable_graphics && vga_interface_type != VGA_NONE) {
1324765384cSSven Schnelle         dev = qdev_create(NULL, "artist");
1334765384cSSven Schnelle         qdev_init_nofail(dev);
1344765384cSSven Schnelle         s = SYS_BUS_DEVICE(dev);
1354765384cSSven Schnelle         sysbus_mmio_map(s, 0, LASI_GFX_HPA);
1364765384cSSven Schnelle         sysbus_mmio_map(s, 1, ARTIST_FB_ADDR);
1374765384cSSven Schnelle     }
1384765384cSSven Schnelle 
1390e6de551SHelge Deller     /* Network setup. */
140a72bd606SHelge Deller     for (i = 0; i < nb_nics; i++) {
141376b8519SHelge Deller         if (!enable_lasi_lan()) {
1420e6de551SHelge Deller             pci_nic_init_nofail(&nd_table[i], pci_bus, "tulip", NULL);
143a72bd606SHelge Deller         }
144376b8519SHelge Deller     }
145a72bd606SHelge Deller 
146a72bd606SHelge Deller     /* Load firmware.  Given that this is not "real" firmware,
147a72bd606SHelge Deller        but one explicitly written for the emulation, we might as
148a72bd606SHelge Deller        well load it directly from an ELF image.  */
149a72bd606SHelge Deller     firmware_filename = qemu_find_file(QEMU_FILE_TYPE_BIOS,
150a72bd606SHelge Deller                                        bios_name ? bios_name :
151a72bd606SHelge Deller                                        "hppa-firmware.img");
152a72bd606SHelge Deller     if (firmware_filename == NULL) {
153a72bd606SHelge Deller         error_report("no firmware provided");
154a72bd606SHelge Deller         exit(1);
155a72bd606SHelge Deller     }
156a72bd606SHelge Deller 
1574366e1dbSLiam Merwick     size = load_elf(firmware_filename, NULL, NULL, NULL,
1584366e1dbSLiam Merwick                     &firmware_entry, &firmware_low, &firmware_high,
159a72bd606SHelge Deller                     true, EM_PARISC, 0, 0);
160a72bd606SHelge Deller 
161a72bd606SHelge Deller     /* Unfortunately, load_elf sign-extends reading elf32.  */
162a72bd606SHelge Deller     firmware_entry = (target_ureg)firmware_entry;
163a72bd606SHelge Deller     firmware_low = (target_ureg)firmware_low;
164a72bd606SHelge Deller     firmware_high = (target_ureg)firmware_high;
165a72bd606SHelge Deller 
166a72bd606SHelge Deller     if (size < 0) {
167a72bd606SHelge Deller         error_report("could not load firmware '%s'", firmware_filename);
168a72bd606SHelge Deller         exit(1);
169a72bd606SHelge Deller     }
170691cbbadSRichard Henderson     qemu_log_mask(CPU_LOG_PAGE, "Firmware loaded at 0x%08" PRIx64
171691cbbadSRichard Henderson                   "-0x%08" PRIx64 ", entry at 0x%08" PRIx64 ".\n",
172a72bd606SHelge Deller                   firmware_low, firmware_high, firmware_entry);
1738262863dSPhilippe Mathieu-Daudé     if (firmware_low < FIRMWARE_START || firmware_high >= FIRMWARE_END) {
174a72bd606SHelge Deller         error_report("Firmware overlaps with memory or IO space");
175a72bd606SHelge Deller         exit(1);
176a72bd606SHelge Deller     }
177a72bd606SHelge Deller     g_free(firmware_filename);
178a72bd606SHelge Deller 
179a72bd606SHelge Deller     rom_region = g_new(MemoryRegion, 1);
1806a3a2e82SIgor Mammedov     memory_region_init_ram(rom_region, NULL, "firmware",
1816a3a2e82SIgor Mammedov                            (FIRMWARE_END - FIRMWARE_START), &error_fatal);
182a72bd606SHelge Deller     memory_region_add_subregion(addr_space, FIRMWARE_START, rom_region);
183a72bd606SHelge Deller 
184a72bd606SHelge Deller     /* Load kernel */
185a72bd606SHelge Deller     if (kernel_filename) {
1864366e1dbSLiam Merwick         size = load_elf(kernel_filename, NULL, &cpu_hppa_to_phys,
187a72bd606SHelge Deller                         NULL, &kernel_entry, &kernel_low, &kernel_high,
188a72bd606SHelge Deller                         true, EM_PARISC, 0, 0);
189a72bd606SHelge Deller 
190a72bd606SHelge Deller         /* Unfortunately, load_elf sign-extends reading elf32.  */
191a72bd606SHelge Deller         kernel_entry = (target_ureg) cpu_hppa_to_phys(NULL, kernel_entry);
192a72bd606SHelge Deller         kernel_low = (target_ureg)kernel_low;
193a72bd606SHelge Deller         kernel_high = (target_ureg)kernel_high;
194a72bd606SHelge Deller 
195a72bd606SHelge Deller         if (size < 0) {
196a72bd606SHelge Deller             error_report("could not load kernel '%s'", kernel_filename);
197a72bd606SHelge Deller             exit(1);
198a72bd606SHelge Deller         }
199691cbbadSRichard Henderson         qemu_log_mask(CPU_LOG_PAGE, "Kernel loaded at 0x%08" PRIx64
200691cbbadSRichard Henderson                       "-0x%08" PRIx64 ", entry at 0x%08" PRIx64
201c108cc59SPhilippe Mathieu-Daudé                       ", size %" PRIu64 " kB\n",
202c108cc59SPhilippe Mathieu-Daudé                       kernel_low, kernel_high, kernel_entry, size / KiB);
203a72bd606SHelge Deller 
204a72bd606SHelge Deller         if (kernel_cmdline) {
205a72bd606SHelge Deller             cpu[0]->env.gr[24] = 0x4000;
206a72bd606SHelge Deller             pstrcpy_targphys("cmdline", cpu[0]->env.gr[24],
207a72bd606SHelge Deller                              TARGET_PAGE_SIZE, kernel_cmdline);
208a72bd606SHelge Deller         }
209a72bd606SHelge Deller 
210a72bd606SHelge Deller         if (initrd_filename) {
211a72bd606SHelge Deller             ram_addr_t initrd_base;
212f3839fdaSLi Zhijian             int64_t initrd_size;
213a72bd606SHelge Deller 
214a72bd606SHelge Deller             initrd_size = get_image_size(initrd_filename);
215a72bd606SHelge Deller             if (initrd_size < 0) {
216a72bd606SHelge Deller                 error_report("could not load initial ram disk '%s'",
217a72bd606SHelge Deller                              initrd_filename);
218a72bd606SHelge Deller                 exit(1);
219a72bd606SHelge Deller             }
220a72bd606SHelge Deller 
221a72bd606SHelge Deller             /* Load the initrd image high in memory.
222a72bd606SHelge Deller                Mirror the algorithm used by palo:
223a72bd606SHelge Deller                (1) Due to sign-extension problems and PDC,
224a72bd606SHelge Deller                put the initrd no higher than 1G.
225a72bd606SHelge Deller                (2) Reserve 64k for stack.  */
226c108cc59SPhilippe Mathieu-Daudé             initrd_base = MIN(ram_size, 1 * GiB);
227c108cc59SPhilippe Mathieu-Daudé             initrd_base = initrd_base - 64 * KiB;
228a72bd606SHelge Deller             initrd_base = (initrd_base - initrd_size) & TARGET_PAGE_MASK;
229a72bd606SHelge Deller 
230a72bd606SHelge Deller             if (initrd_base < kernel_high) {
231a72bd606SHelge Deller                 error_report("kernel and initial ram disk too large!");
232a72bd606SHelge Deller                 exit(1);
233a72bd606SHelge Deller             }
234a72bd606SHelge Deller 
235a72bd606SHelge Deller             load_image_targphys(initrd_filename, initrd_base, initrd_size);
236a72bd606SHelge Deller             cpu[0]->env.gr[23] = initrd_base;
237a72bd606SHelge Deller             cpu[0]->env.gr[22] = initrd_base + initrd_size;
238a72bd606SHelge Deller         }
239a72bd606SHelge Deller     }
240a72bd606SHelge Deller 
241a72bd606SHelge Deller     if (!kernel_entry) {
242a72bd606SHelge Deller         /* When booting via firmware, tell firmware if we want interactive
243a72bd606SHelge Deller          * mode (kernel_entry=1), and to boot from CD (gr[24]='d')
244a72bd606SHelge Deller          * or hard disc * (gr[24]='c').
245a72bd606SHelge Deller          */
246a72bd606SHelge Deller         kernel_entry = boot_menu ? 1 : 0;
247a72bd606SHelge Deller         cpu[0]->env.gr[24] = machine->boot_order[0];
248a72bd606SHelge Deller     }
249a72bd606SHelge Deller 
250a72bd606SHelge Deller     /* We jump to the firmware entry routine and pass the
251a72bd606SHelge Deller      * various parameters in registers. After firmware initialization,
252a72bd606SHelge Deller      * firmware will start the Linux kernel with ramdisk and cmdline.
253a72bd606SHelge Deller      */
254a72bd606SHelge Deller     cpu[0]->env.gr[26] = ram_size;
255a72bd606SHelge Deller     cpu[0]->env.gr[25] = kernel_entry;
256a72bd606SHelge Deller 
257a72bd606SHelge Deller     /* tell firmware how many SMP CPUs to present in inventory table */
258a72bd606SHelge Deller     cpu[0]->env.gr[21] = smp_cpus;
259a72bd606SHelge Deller }
260a72bd606SHelge Deller 
261a0628599SLike Xu static void hppa_machine_reset(MachineState *ms)
262a72bd606SHelge Deller {
26333decbd2SLike Xu     unsigned int smp_cpus = ms->smp.cpus;
264a72bd606SHelge Deller     int i;
265a72bd606SHelge Deller 
266a72bd606SHelge Deller     qemu_devices_reset();
267a72bd606SHelge Deller 
268a72bd606SHelge Deller     /* Start all CPUs at the firmware entry point.
269a72bd606SHelge Deller      *  Monarch CPU will initialize firmware, secondary CPUs
270a72bd606SHelge Deller      *  will enter a small idle look and wait for rendevouz. */
271a72bd606SHelge Deller     for (i = 0; i < smp_cpus; i++) {
272a72bd606SHelge Deller         cpu_set_pc(CPU(cpu[i]), firmware_entry);
273a72bd606SHelge Deller         cpu[i]->env.gr[5] = CPU_HPA + i * 0x1000;
274a72bd606SHelge Deller     }
275a72bd606SHelge Deller 
276a72bd606SHelge Deller     /* already initialized by machine_hppa_init()? */
277a72bd606SHelge Deller     if (cpu[0]->env.gr[26] == ram_size) {
278a72bd606SHelge Deller         return;
279a72bd606SHelge Deller     }
280a72bd606SHelge Deller 
281a72bd606SHelge Deller     cpu[0]->env.gr[26] = ram_size;
282a72bd606SHelge Deller     cpu[0]->env.gr[25] = 0; /* no firmware boot menu */
283a72bd606SHelge Deller     cpu[0]->env.gr[24] = 'c';
284a72bd606SHelge Deller     /* gr22/gr23 unused, no initrd while reboot. */
285a72bd606SHelge Deller     cpu[0]->env.gr[21] = smp_cpus;
286a72bd606SHelge Deller }
287a72bd606SHelge Deller 
288a72bd606SHelge Deller 
289813dff13SHelge Deller static void machine_hppa_machine_init(MachineClass *mc)
290813dff13SHelge Deller {
291813dff13SHelge Deller     mc->desc = "HPPA generic machine";
292a72bd606SHelge Deller     mc->default_cpu_type = TYPE_HPPA_CPU;
293813dff13SHelge Deller     mc->init = machine_hppa_init;
294a72bd606SHelge Deller     mc->reset = hppa_machine_reset;
295813dff13SHelge Deller     mc->block_default_type = IF_SCSI;
296a72bd606SHelge Deller     mc->max_cpus = HPPA_MAX_CPUS;
297a72bd606SHelge Deller     mc->default_cpus = 1;
298813dff13SHelge Deller     mc->is_default = 1;
299d23b6caaSPhilippe Mathieu-Daudé     mc->default_ram_size = 512 * MiB;
300813dff13SHelge Deller     mc->default_boot_order = "cd";
301813dff13SHelge Deller }
302813dff13SHelge Deller 
303813dff13SHelge Deller DEFINE_MACHINE("hppa", machine_hppa_machine_init)
304