xref: /openbmc/qemu/hw/arm/realview.c (revision 2822c1b6)
1 /*
2  * ARM RealView Baseboard System emulation.
3  *
4  * Copyright (c) 2006-2007 CodeSourcery.
5  * Written by Paul Brook
6  *
7  * This code is licensed under the GPL.
8  */
9 
10 #include "hw/sysbus.h"
11 #include "hw/arm/arm.h"
12 #include "hw/arm/primecell.h"
13 #include "hw/devices.h"
14 #include "hw/pci/pci.h"
15 #include "net/net.h"
16 #include "sysemu/sysemu.h"
17 #include "hw/boards.h"
18 #include "hw/i2c/i2c.h"
19 #include "sysemu/block-backend.h"
20 #include "exec/address-spaces.h"
21 #include "qemu/error-report.h"
22 
23 #define SMP_BOOT_ADDR 0xe0000000
24 #define SMP_BOOTREG_ADDR 0x10000030
25 
26 /* Board init.  */
27 
28 static struct arm_boot_info realview_binfo = {
29     .smp_loader_start = SMP_BOOT_ADDR,
30     .smp_bootreg_addr = SMP_BOOTREG_ADDR,
31 };
32 
33 /* The following two lists must be consistent.  */
34 enum realview_board_type {
35     BOARD_EB,
36     BOARD_EB_MPCORE,
37     BOARD_PB_A8,
38     BOARD_PBX_A9,
39 };
40 
41 static const int realview_board_id[] = {
42     0x33b,
43     0x33b,
44     0x769,
45     0x76d
46 };
47 
48 static void realview_init(MachineState *machine,
49                           enum realview_board_type board_type)
50 {
51     ARMCPU *cpu = NULL;
52     CPUARMState *env;
53     ObjectClass *cpu_oc;
54     MemoryRegion *sysmem = get_system_memory();
55     MemoryRegion *ram_lo;
56     MemoryRegion *ram_hi = g_new(MemoryRegion, 1);
57     MemoryRegion *ram_alias = g_new(MemoryRegion, 1);
58     MemoryRegion *ram_hack = g_new(MemoryRegion, 1);
59     DeviceState *dev, *sysctl, *gpio2, *pl041;
60     SysBusDevice *busdev;
61     qemu_irq pic[64];
62     qemu_irq mmc_irq[2];
63     PCIBus *pci_bus = NULL;
64     NICInfo *nd;
65     I2CBus *i2c;
66     int n;
67     int done_nic = 0;
68     qemu_irq cpu_irq[4];
69     int is_mpcore = 0;
70     int is_pb = 0;
71     uint32_t proc_id = 0;
72     uint32_t sys_id;
73     ram_addr_t low_ram_size;
74     ram_addr_t ram_size = machine->ram_size;
75     hwaddr periphbase = 0;
76 
77     switch (board_type) {
78     case BOARD_EB:
79         break;
80     case BOARD_EB_MPCORE:
81         is_mpcore = 1;
82         periphbase = 0x10100000;
83         break;
84     case BOARD_PB_A8:
85         is_pb = 1;
86         break;
87     case BOARD_PBX_A9:
88         is_mpcore = 1;
89         is_pb = 1;
90         periphbase = 0x1f000000;
91         break;
92     }
93 
94     cpu_oc = cpu_class_by_name(TYPE_ARM_CPU, machine->cpu_model);
95     if (!cpu_oc) {
96         fprintf(stderr, "Unable to find CPU definition\n");
97         exit(1);
98     }
99 
100     for (n = 0; n < smp_cpus; n++) {
101         Object *cpuobj = object_new(object_class_get_name(cpu_oc));
102         Error *err = NULL;
103 
104         /* By default A9,A15 and ARM1176 CPUs have EL3 enabled.  This board
105          * does not currently support EL3 so the CPU EL3 property is disabled
106          * before realization.
107          */
108         if (object_property_find(cpuobj, "has_el3", NULL)) {
109             object_property_set_bool(cpuobj, false, "has_el3", &err);
110             if (err) {
111                 error_report("%s", error_get_pretty(err));
112                 exit(1);
113             }
114         }
115 
116         if (is_pb && is_mpcore) {
117             object_property_set_int(cpuobj, periphbase, "reset-cbar", &err);
118             if (err) {
119                 error_report("%s", error_get_pretty(err));
120                 exit(1);
121             }
122         }
123 
124         object_property_set_bool(cpuobj, true, "realized", &err);
125         if (err) {
126             error_report("%s", error_get_pretty(err));
127             exit(1);
128         }
129 
130         cpu_irq[n] = qdev_get_gpio_in(DEVICE(cpuobj), ARM_CPU_IRQ);
131     }
132     cpu = ARM_CPU(first_cpu);
133     env = &cpu->env;
134     if (arm_feature(env, ARM_FEATURE_V7)) {
135         if (is_mpcore) {
136             proc_id = 0x0c000000;
137         } else {
138             proc_id = 0x0e000000;
139         }
140     } else if (arm_feature(env, ARM_FEATURE_V6K)) {
141         proc_id = 0x06000000;
142     } else if (arm_feature(env, ARM_FEATURE_V6)) {
143         proc_id = 0x04000000;
144     } else {
145         proc_id = 0x02000000;
146     }
147 
148     if (is_pb && ram_size > 0x20000000) {
149         /* Core tile RAM.  */
150         ram_lo = g_new(MemoryRegion, 1);
151         low_ram_size = ram_size - 0x20000000;
152         ram_size = 0x20000000;
153         memory_region_init_ram(ram_lo, NULL, "realview.lowmem", low_ram_size,
154                                &error_abort);
155         vmstate_register_ram_global(ram_lo);
156         memory_region_add_subregion(sysmem, 0x20000000, ram_lo);
157     }
158 
159     memory_region_init_ram(ram_hi, NULL, "realview.highmem", ram_size,
160                            &error_abort);
161     vmstate_register_ram_global(ram_hi);
162     low_ram_size = ram_size;
163     if (low_ram_size > 0x10000000)
164       low_ram_size = 0x10000000;
165     /* SDRAM at address zero.  */
166     memory_region_init_alias(ram_alias, NULL, "realview.alias",
167                              ram_hi, 0, low_ram_size);
168     memory_region_add_subregion(sysmem, 0, ram_alias);
169     if (is_pb) {
170         /* And again at a high address.  */
171         memory_region_add_subregion(sysmem, 0x70000000, ram_hi);
172     } else {
173         ram_size = low_ram_size;
174     }
175 
176     sys_id = is_pb ? 0x01780500 : 0xc1400400;
177     sysctl = qdev_create(NULL, "realview_sysctl");
178     qdev_prop_set_uint32(sysctl, "sys_id", sys_id);
179     qdev_prop_set_uint32(sysctl, "proc_id", proc_id);
180     qdev_init_nofail(sysctl);
181     sysbus_mmio_map(SYS_BUS_DEVICE(sysctl), 0, 0x10000000);
182 
183     if (is_mpcore) {
184         dev = qdev_create(NULL, is_pb ? "a9mpcore_priv": "realview_mpcore");
185         qdev_prop_set_uint32(dev, "num-cpu", smp_cpus);
186         qdev_init_nofail(dev);
187         busdev = SYS_BUS_DEVICE(dev);
188         sysbus_mmio_map(busdev, 0, periphbase);
189         for (n = 0; n < smp_cpus; n++) {
190             sysbus_connect_irq(busdev, n, cpu_irq[n]);
191         }
192         sysbus_create_varargs("l2x0", periphbase + 0x2000, NULL);
193         /* Both A9 and 11MPCore put the GIC CPU i/f at base + 0x100 */
194         realview_binfo.gic_cpu_if_addr = periphbase + 0x100;
195     } else {
196         uint32_t gic_addr = is_pb ? 0x1e000000 : 0x10040000;
197         /* For now just create the nIRQ GIC, and ignore the others.  */
198         dev = sysbus_create_simple("realview_gic", gic_addr, cpu_irq[0]);
199     }
200     for (n = 0; n < 64; n++) {
201         pic[n] = qdev_get_gpio_in(dev, n);
202     }
203 
204     pl041 = qdev_create(NULL, "pl041");
205     qdev_prop_set_uint32(pl041, "nc_fifo_depth", 512);
206     qdev_init_nofail(pl041);
207     sysbus_mmio_map(SYS_BUS_DEVICE(pl041), 0, 0x10004000);
208     sysbus_connect_irq(SYS_BUS_DEVICE(pl041), 0, pic[19]);
209 
210     sysbus_create_simple("pl050_keyboard", 0x10006000, pic[20]);
211     sysbus_create_simple("pl050_mouse", 0x10007000, pic[21]);
212 
213     sysbus_create_simple("pl011", 0x10009000, pic[12]);
214     sysbus_create_simple("pl011", 0x1000a000, pic[13]);
215     sysbus_create_simple("pl011", 0x1000b000, pic[14]);
216     sysbus_create_simple("pl011", 0x1000c000, pic[15]);
217 
218     /* DMA controller is optional, apparently.  */
219     sysbus_create_simple("pl081", 0x10030000, pic[24]);
220 
221     sysbus_create_simple("sp804", 0x10011000, pic[4]);
222     sysbus_create_simple("sp804", 0x10012000, pic[5]);
223 
224     sysbus_create_simple("pl061", 0x10013000, pic[6]);
225     sysbus_create_simple("pl061", 0x10014000, pic[7]);
226     gpio2 = sysbus_create_simple("pl061", 0x10015000, pic[8]);
227 
228     sysbus_create_simple("pl111", 0x10020000, pic[23]);
229 
230     dev = sysbus_create_varargs("pl181", 0x10005000, pic[17], pic[18], NULL);
231     /* Wire up MMC card detect and read-only signals. These have
232      * to go to both the PL061 GPIO and the sysctl register.
233      * Note that the PL181 orders these lines (readonly,inserted)
234      * and the PL061 has them the other way about. Also the card
235      * detect line is inverted.
236      */
237     mmc_irq[0] = qemu_irq_split(
238         qdev_get_gpio_in(sysctl, ARM_SYSCTL_GPIO_MMC_WPROT),
239         qdev_get_gpio_in(gpio2, 1));
240     mmc_irq[1] = qemu_irq_split(
241         qdev_get_gpio_in(sysctl, ARM_SYSCTL_GPIO_MMC_CARDIN),
242         qemu_irq_invert(qdev_get_gpio_in(gpio2, 0)));
243     qdev_connect_gpio_out(dev, 0, mmc_irq[0]);
244     qdev_connect_gpio_out(dev, 1, mmc_irq[1]);
245 
246     sysbus_create_simple("pl031", 0x10017000, pic[10]);
247 
248     if (!is_pb) {
249         dev = qdev_create(NULL, "realview_pci");
250         busdev = SYS_BUS_DEVICE(dev);
251         qdev_init_nofail(dev);
252         sysbus_mmio_map(busdev, 0, 0x10019000); /* PCI controller registers */
253         sysbus_mmio_map(busdev, 1, 0x60000000); /* PCI self-config */
254         sysbus_mmio_map(busdev, 2, 0x61000000); /* PCI config */
255         sysbus_mmio_map(busdev, 3, 0x62000000); /* PCI I/O */
256         sysbus_mmio_map(busdev, 4, 0x63000000); /* PCI memory window 1 */
257         sysbus_mmio_map(busdev, 5, 0x64000000); /* PCI memory window 2 */
258         sysbus_mmio_map(busdev, 6, 0x68000000); /* PCI memory window 3 */
259         sysbus_connect_irq(busdev, 0, pic[48]);
260         sysbus_connect_irq(busdev, 1, pic[49]);
261         sysbus_connect_irq(busdev, 2, pic[50]);
262         sysbus_connect_irq(busdev, 3, pic[51]);
263         pci_bus = (PCIBus *)qdev_get_child_bus(dev, "pci");
264         if (usb_enabled()) {
265             pci_create_simple(pci_bus, -1, "pci-ohci");
266         }
267         n = drive_get_max_bus(IF_SCSI);
268         while (n >= 0) {
269             pci_create_simple(pci_bus, -1, "lsi53c895a");
270             n--;
271         }
272     }
273     for(n = 0; n < nb_nics; n++) {
274         nd = &nd_table[n];
275 
276         if (!done_nic && (!nd->model ||
277                     strcmp(nd->model, is_pb ? "lan9118" : "smc91c111") == 0)) {
278             if (is_pb) {
279                 lan9118_init(nd, 0x4e000000, pic[28]);
280             } else {
281                 smc91c111_init(nd, 0x4e000000, pic[28]);
282             }
283             done_nic = 1;
284         } else {
285             if (pci_bus) {
286                 pci_nic_init_nofail(nd, pci_bus, "rtl8139", NULL);
287             }
288         }
289     }
290 
291     dev = sysbus_create_simple("versatile_i2c", 0x10002000, NULL);
292     i2c = (I2CBus *)qdev_get_child_bus(dev, "i2c");
293     i2c_create_slave(i2c, "ds1338", 0x68);
294 
295     /* Memory map for RealView Emulation Baseboard:  */
296     /* 0x10000000 System registers.  */
297     /*  0x10001000 System controller.  */
298     /* 0x10002000 Two-Wire Serial Bus.  */
299     /* 0x10003000 Reserved.  */
300     /*  0x10004000 AACI.  */
301     /*  0x10005000 MCI.  */
302     /* 0x10006000 KMI0.  */
303     /* 0x10007000 KMI1.  */
304     /*  0x10008000 Character LCD. (EB) */
305     /* 0x10009000 UART0.  */
306     /* 0x1000a000 UART1.  */
307     /* 0x1000b000 UART2.  */
308     /* 0x1000c000 UART3.  */
309     /*  0x1000d000 SSPI.  */
310     /*  0x1000e000 SCI.  */
311     /* 0x1000f000 Reserved.  */
312     /*  0x10010000 Watchdog.  */
313     /* 0x10011000 Timer 0+1.  */
314     /* 0x10012000 Timer 2+3.  */
315     /*  0x10013000 GPIO 0.  */
316     /*  0x10014000 GPIO 1.  */
317     /*  0x10015000 GPIO 2.  */
318     /*  0x10002000 Two-Wire Serial Bus - DVI. (PB) */
319     /* 0x10017000 RTC.  */
320     /*  0x10018000 DMC.  */
321     /*  0x10019000 PCI controller config.  */
322     /*  0x10020000 CLCD.  */
323     /* 0x10030000 DMA Controller.  */
324     /* 0x10040000 GIC1. (EB) */
325     /*  0x10050000 GIC2. (EB) */
326     /*  0x10060000 GIC3. (EB) */
327     /*  0x10070000 GIC4. (EB) */
328     /*  0x10080000 SMC.  */
329     /* 0x1e000000 GIC1. (PB) */
330     /*  0x1e001000 GIC2. (PB) */
331     /*  0x1e002000 GIC3. (PB) */
332     /*  0x1e003000 GIC4. (PB) */
333     /*  0x40000000 NOR flash.  */
334     /*  0x44000000 DoC flash.  */
335     /*  0x48000000 SRAM.  */
336     /*  0x4c000000 Configuration flash.  */
337     /* 0x4e000000 Ethernet.  */
338     /*  0x4f000000 USB.  */
339     /*  0x50000000 PISMO.  */
340     /*  0x54000000 PISMO.  */
341     /*  0x58000000 PISMO.  */
342     /*  0x5c000000 PISMO.  */
343     /* 0x60000000 PCI.  */
344     /* 0x60000000 PCI Self Config.  */
345     /* 0x61000000 PCI Config.  */
346     /* 0x62000000 PCI IO.  */
347     /* 0x63000000 PCI mem 0.  */
348     /* 0x64000000 PCI mem 1.  */
349     /* 0x68000000 PCI mem 2.  */
350 
351     /* ??? Hack to map an additional page of ram for the secondary CPU
352        startup code.  I guess this works on real hardware because the
353        BootROM happens to be in ROM/flash or in memory that isn't clobbered
354        until after Linux boots the secondary CPUs.  */
355     memory_region_init_ram(ram_hack, NULL, "realview.hack", 0x1000,
356                            &error_abort);
357     vmstate_register_ram_global(ram_hack);
358     memory_region_add_subregion(sysmem, SMP_BOOT_ADDR, ram_hack);
359 
360     realview_binfo.ram_size = ram_size;
361     realview_binfo.kernel_filename = machine->kernel_filename;
362     realview_binfo.kernel_cmdline = machine->kernel_cmdline;
363     realview_binfo.initrd_filename = machine->initrd_filename;
364     realview_binfo.nb_cpus = smp_cpus;
365     realview_binfo.board_id = realview_board_id[board_type];
366     realview_binfo.loader_start = (board_type == BOARD_PB_A8 ? 0x70000000 : 0);
367     arm_load_kernel(ARM_CPU(first_cpu), &realview_binfo);
368 }
369 
370 static void realview_eb_init(MachineState *machine)
371 {
372     if (!machine->cpu_model) {
373         machine->cpu_model = "arm926";
374     }
375     realview_init(machine, BOARD_EB);
376 }
377 
378 static void realview_eb_mpcore_init(MachineState *machine)
379 {
380     if (!machine->cpu_model) {
381         machine->cpu_model = "arm11mpcore";
382     }
383     realview_init(machine, BOARD_EB_MPCORE);
384 }
385 
386 static void realview_pb_a8_init(MachineState *machine)
387 {
388     if (!machine->cpu_model) {
389         machine->cpu_model = "cortex-a8";
390     }
391     realview_init(machine, BOARD_PB_A8);
392 }
393 
394 static void realview_pbx_a9_init(MachineState *machine)
395 {
396     if (!machine->cpu_model) {
397         machine->cpu_model = "cortex-a9";
398     }
399     realview_init(machine, BOARD_PBX_A9);
400 }
401 
402 static QEMUMachine realview_eb_machine = {
403     .name = "realview-eb",
404     .desc = "ARM RealView Emulation Baseboard (ARM926EJ-S)",
405     .init = realview_eb_init,
406     .block_default_type = IF_SCSI,
407 };
408 
409 static QEMUMachine realview_eb_mpcore_machine = {
410     .name = "realview-eb-mpcore",
411     .desc = "ARM RealView Emulation Baseboard (ARM11MPCore)",
412     .init = realview_eb_mpcore_init,
413     .block_default_type = IF_SCSI,
414     .max_cpus = 4,
415 };
416 
417 static QEMUMachine realview_pb_a8_machine = {
418     .name = "realview-pb-a8",
419     .desc = "ARM RealView Platform Baseboard for Cortex-A8",
420     .init = realview_pb_a8_init,
421 };
422 
423 static QEMUMachine realview_pbx_a9_machine = {
424     .name = "realview-pbx-a9",
425     .desc = "ARM RealView Platform Baseboard Explore for Cortex-A9",
426     .init = realview_pbx_a9_init,
427     .block_default_type = IF_SCSI,
428     .max_cpus = 4,
429 };
430 
431 static void realview_machine_init(void)
432 {
433     qemu_register_machine(&realview_eb_machine);
434     qemu_register_machine(&realview_eb_mpcore_machine);
435     qemu_register_machine(&realview_pb_a8_machine);
436     qemu_register_machine(&realview_pbx_a9_machine);
437 }
438 
439 machine_init(realview_machine_init);
440