2 * QEMU HPPA hardware system emulator.
3 * Copyright 2018 Helge Deller <deller@gmx.de>
6 #include "qemu/osdep.h"
7 #include "qemu-common.h"
10 #include "hw/loader.h"
11 #include "hw/boards.h"
12 #include "qemu/error-report.h"
13 #include "sysemu/reset.h"
14 #include "sysemu/sysemu.h"
15 #include "hw/rtc/mc146818rtc.h"
17 #include "hw/timer/i8254.h"
18 #include "hw/char/serial.h"
19 #include "hw/net/lasi_82596.h"
21 #include "qemu/units.h"
22 #include "qapi/error.h"
29 static ISABus
*hppa_isa_bus(void)
33 MemoryRegion
*isa_region
;
35 isa_region
= g_new(MemoryRegion
, 1);
36 memory_region_init_io(isa_region
, NULL
, &hppa_pci_ignore_ops
,
37 NULL
, "isa-io", 0x800);
38 memory_region_add_subregion(get_system_memory(), IDE_HPA
,
41 isa_bus
= isa_bus_new(NULL
, get_system_memory(), isa_region
,
43 isa_irqs
= i8259_init(isa_bus
,
44 /* qemu_allocate_irq(dino_set_isa_irq, s, 0)); */
46 isa_bus_irqs(isa_bus
, isa_irqs
);
51 static uint64_t cpu_hppa_to_phys(void *opaque
, uint64_t addr
)
53 addr
&= (0x10000000 - 1);
57 static HPPACPU
*cpu
[HPPA_MAX_CPUS
];
58 static uint64_t firmware_entry
;
60 static void machine_hppa_init(MachineState
*machine
)
62 const char *kernel_filename
= machine
->kernel_filename
;
63 const char *kernel_cmdline
= machine
->kernel_cmdline
;
64 const char *initrd_filename
= machine
->initrd_filename
;
68 qemu_irq rtc_irq
, serial_irq
;
69 char *firmware_filename
;
70 uint64_t firmware_low
, firmware_high
;
72 uint64_t kernel_entry
= 0, kernel_low
, kernel_high
;
73 MemoryRegion
*addr_space
= get_system_memory();
74 MemoryRegion
*rom_region
;
75 MemoryRegion
*cpu_region
;
77 unsigned int smp_cpus
= machine
->smp
.cpus
;
81 for (i
= 0; i
< smp_cpus
; i
++) {
82 char *name
= g_strdup_printf("cpu%ld-io-eir", i
);
83 cpu
[i
] = HPPA_CPU(cpu_create(machine
->cpu_type
));
85 cpu_region
= g_new(MemoryRegion
, 1);
86 memory_region_init_io(cpu_region
, OBJECT(cpu
[i
]), &hppa_io_eir_ops
,
88 memory_region_add_subregion(addr_space
, CPU_HPA
+ i
* 0x1000,
93 /* Main memory region. */
94 if (machine
->ram_size
> 3 * GiB
) {
95 error_report("RAM size is currently restricted to 3GB");
98 memory_region_add_subregion_overlap(addr_space
, 0, machine
->ram
, -1);
102 lasi_init(addr_space
);
104 /* Init Dino (PCI host bus chip). */
105 pci_bus
= dino_init(addr_space
, &rtc_irq
, &serial_irq
);
108 /* Create ISA bus. */
109 isa_bus
= hppa_isa_bus();
112 /* Realtime clock, used by firmware for PDC_TOD call. */
113 mc146818_rtc_init(isa_bus
, 2000, rtc_irq
);
115 /* Serial code setup. */
117 uint32_t addr
= DINO_UART_HPA
+ 0x800;
118 serial_mm_init(addr_space
, addr
, 0, serial_irq
,
119 115200, serial_hd(0), DEVICE_BIG_ENDIAN
);
122 /* SCSI disk setup. */
123 dev
= DEVICE(pci_create_simple(pci_bus
, -1, "lsi53c895a"));
124 lsi53c8xx_handle_legacy_cmdline(dev
);
126 /* Graphics setup. */
127 if (machine
->enable_graphics
&& vga_interface_type
!= VGA_NONE
) {
128 dev
= qdev_create(NULL
, "artist");
129 qdev_init_nofail(dev
);
130 s
= SYS_BUS_DEVICE(dev
);
131 sysbus_mmio_map(s
, 0, LASI_GFX_HPA
);
132 sysbus_mmio_map(s
, 1, ARTIST_FB_ADDR
);
136 for (i
= 0; i
< nb_nics
; i
++) {
137 if (!enable_lasi_lan()) {
138 pci_nic_init_nofail(&nd_table
[i
], pci_bus
, "tulip", NULL
);
142 /* Load firmware. Given that this is not "real" firmware,
143 but one explicitly written for the emulation, we might as
144 well load it directly from an ELF image. */
145 firmware_filename
= qemu_find_file(QEMU_FILE_TYPE_BIOS
,
146 bios_name
? bios_name
:
147 "hppa-firmware.img");
148 if (firmware_filename
== NULL
) {
149 error_report("no firmware provided");
153 size
= load_elf(firmware_filename
, NULL
, NULL
, NULL
,
154 &firmware_entry
, &firmware_low
, &firmware_high
, NULL
,
155 true, EM_PARISC
, 0, 0);
157 /* Unfortunately, load_elf sign-extends reading elf32. */
158 firmware_entry
= (target_ureg
)firmware_entry
;
159 firmware_low
= (target_ureg
)firmware_low
;
160 firmware_high
= (target_ureg
)firmware_high
;
163 error_report("could not load firmware '%s'", firmware_filename
);
166 qemu_log_mask(CPU_LOG_PAGE
, "Firmware loaded at 0x%08" PRIx64
167 "-0x%08" PRIx64
", entry at 0x%08" PRIx64
".\n",
168 firmware_low
, firmware_high
, firmware_entry
);
169 if (firmware_low
< FIRMWARE_START
|| firmware_high
>= FIRMWARE_END
) {
170 error_report("Firmware overlaps with memory or IO space");
173 g_free(firmware_filename
);
175 rom_region
= g_new(MemoryRegion
, 1);
176 memory_region_init_ram(rom_region
, NULL
, "firmware",
177 (FIRMWARE_END
- FIRMWARE_START
), &error_fatal
);
178 memory_region_add_subregion(addr_space
, FIRMWARE_START
, rom_region
);
181 if (kernel_filename
) {
182 size
= load_elf(kernel_filename
, NULL
, &cpu_hppa_to_phys
,
183 NULL
, &kernel_entry
, &kernel_low
, &kernel_high
, NULL
,
184 true, EM_PARISC
, 0, 0);
186 /* Unfortunately, load_elf sign-extends reading elf32. */
187 kernel_entry
= (target_ureg
) cpu_hppa_to_phys(NULL
, kernel_entry
);
188 kernel_low
= (target_ureg
)kernel_low
;
189 kernel_high
= (target_ureg
)kernel_high
;
192 error_report("could not load kernel '%s'", kernel_filename
);
195 qemu_log_mask(CPU_LOG_PAGE
, "Kernel loaded at 0x%08" PRIx64
196 "-0x%08" PRIx64
", entry at 0x%08" PRIx64
197 ", size %" PRIu64
" kB\n",
198 kernel_low
, kernel_high
, kernel_entry
, size
/ KiB
);
200 if (kernel_cmdline
) {
201 cpu
[0]->env
.gr
[24] = 0x4000;
202 pstrcpy_targphys("cmdline", cpu
[0]->env
.gr
[24],
203 TARGET_PAGE_SIZE
, kernel_cmdline
);
206 if (initrd_filename
) {
207 ram_addr_t initrd_base
;
210 initrd_size
= get_image_size(initrd_filename
);
211 if (initrd_size
< 0) {
212 error_report("could not load initial ram disk '%s'",
217 /* Load the initrd image high in memory.
218 Mirror the algorithm used by palo:
219 (1) Due to sign-extension problems and PDC,
220 put the initrd no higher than 1G.
221 (2) Reserve 64k for stack. */
222 initrd_base
= MIN(ram_size
, 1 * GiB
);
223 initrd_base
= initrd_base
- 64 * KiB
;
224 initrd_base
= (initrd_base
- initrd_size
) & TARGET_PAGE_MASK
;
226 if (initrd_base
< kernel_high
) {
227 error_report("kernel and initial ram disk too large!");
231 load_image_targphys(initrd_filename
, initrd_base
, initrd_size
);
232 cpu
[0]->env
.gr
[23] = initrd_base
;
233 cpu
[0]->env
.gr
[22] = initrd_base
+ initrd_size
;
238 /* When booting via firmware, tell firmware if we want interactive
239 * mode (kernel_entry=1), and to boot from CD (gr[24]='d')
240 * or hard disc * (gr[24]='c').
242 kernel_entry
= boot_menu
? 1 : 0;
243 cpu
[0]->env
.gr
[24] = machine
->boot_order
[0];
246 /* We jump to the firmware entry routine and pass the
247 * various parameters in registers. After firmware initialization,
248 * firmware will start the Linux kernel with ramdisk and cmdline.
250 cpu
[0]->env
.gr
[26] = ram_size
;
251 cpu
[0]->env
.gr
[25] = kernel_entry
;
253 /* tell firmware how many SMP CPUs to present in inventory table */
254 cpu
[0]->env
.gr
[21] = smp_cpus
;
257 static void hppa_machine_reset(MachineState
*ms
)
259 unsigned int smp_cpus
= ms
->smp
.cpus
;
262 qemu_devices_reset();
264 /* Start all CPUs at the firmware entry point.
265 * Monarch CPU will initialize firmware, secondary CPUs
266 * will enter a small idle look and wait for rendevouz. */
267 for (i
= 0; i
< smp_cpus
; i
++) {
268 cpu_set_pc(CPU(cpu
[i
]), firmware_entry
);
269 cpu
[i
]->env
.gr
[5] = CPU_HPA
+ i
* 0x1000;
272 /* already initialized by machine_hppa_init()? */
273 if (cpu
[0]->env
.gr
[26] == ram_size
) {
277 cpu
[0]->env
.gr
[26] = ram_size
;
278 cpu
[0]->env
.gr
[25] = 0; /* no firmware boot menu */
279 cpu
[0]->env
.gr
[24] = 'c';
280 /* gr22/gr23 unused, no initrd while reboot. */
281 cpu
[0]->env
.gr
[21] = smp_cpus
;
285 static void machine_hppa_machine_init(MachineClass
*mc
)
287 mc
->desc
= "HPPA generic machine";
288 mc
->default_cpu_type
= TYPE_HPPA_CPU
;
289 mc
->init
= machine_hppa_init
;
290 mc
->reset
= hppa_machine_reset
;
291 mc
->block_default_type
= IF_SCSI
;
292 mc
->max_cpus
= HPPA_MAX_CPUS
;
293 mc
->default_cpus
= 1;
294 mc
->is_default
= true;
295 mc
->default_ram_size
= 512 * MiB
;
296 mc
->default_boot_order
= "cd";
297 mc
->default_ram_id
= "ram";
300 DEFINE_MACHINE("hppa", machine_hppa_machine_init
)