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2055283b PM |
1 | /* |
2 | * ARM Versatile Express emulation. | |
3 | * | |
4 | * Copyright (c) 2010 - 2011 B Labs Ltd. | |
5 | * Copyright (c) 2011 Linaro Limited | |
6 | * Written by Bahadir Balban, Amit Mahajan, Peter Maydell | |
7 | * | |
8 | * This program is free software; you can redistribute it and/or modify | |
9 | * it under the terms of the GNU General Public License version 2 as | |
10 | * published by the Free Software Foundation. | |
11 | * | |
12 | * This program is distributed in the hope that it will be useful, | |
13 | * but WITHOUT ANY WARRANTY; without even the implied warranty of | |
14 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the | |
15 | * GNU General Public License for more details. | |
16 | * | |
17 | * You should have received a copy of the GNU General Public License along | |
18 | * with this program; if not, see <http://www.gnu.org/licenses/>. | |
6b620ca3 PB |
19 | * |
20 | * Contributions after 2012-01-13 are licensed under the terms of the | |
21 | * GNU GPL, version 2 or (at your option) any later version. | |
2055283b PM |
22 | */ |
23 | ||
83c9f4ca | 24 | #include "hw/sysbus.h" |
bd2be150 | 25 | #include "hw/arm/arm.h" |
0d09e41a | 26 | #include "hw/arm/primecell.h" |
bd2be150 | 27 | #include "hw/devices.h" |
1422e32d | 28 | #include "net/net.h" |
9c17d615 | 29 | #include "sysemu/sysemu.h" |
83c9f4ca | 30 | #include "hw/boards.h" |
61e99241 | 31 | #include "hw/loader.h" |
022c62cb | 32 | #include "exec/address-spaces.h" |
fa1d36df | 33 | #include "sysemu/block-backend.h" |
0d09e41a | 34 | #include "hw/block/flash.h" |
c8a07b35 | 35 | #include "sysemu/device_tree.h" |
9948c38b | 36 | #include "qemu/error-report.h" |
c8a07b35 | 37 | #include <libfdt.h> |
2055283b | 38 | |
2055283b | 39 | #define VEXPRESS_BOARD_ID 0x8e0 |
3dc3e7dd FL |
40 | #define VEXPRESS_FLASH_SIZE (64 * 1024 * 1024) |
41 | #define VEXPRESS_FLASH_SECT_SIZE (256 * 1024) | |
2055283b | 42 | |
c8a07b35 PM |
43 | /* Number of virtio transports to create (0..8; limited by |
44 | * number of available IRQ lines). | |
45 | */ | |
46 | #define NUM_VIRTIO_TRANSPORTS 4 | |
47 | ||
2558e0a6 PM |
48 | /* Address maps for peripherals: |
49 | * the Versatile Express motherboard has two possible maps, | |
50 | * the "legacy" one (used for A9) and the "Cortex-A Series" | |
51 | * map (used for newer cores). | |
52 | * Individual daughterboards can also have different maps for | |
53 | * their peripherals. | |
54 | */ | |
55 | ||
56 | enum { | |
57 | VE_SYSREGS, | |
58 | VE_SP810, | |
59 | VE_SERIALPCI, | |
60 | VE_PL041, | |
61 | VE_MMCI, | |
62 | VE_KMI0, | |
63 | VE_KMI1, | |
64 | VE_UART0, | |
65 | VE_UART1, | |
66 | VE_UART2, | |
67 | VE_UART3, | |
68 | VE_WDT, | |
69 | VE_TIMER01, | |
70 | VE_TIMER23, | |
71 | VE_SERIALDVI, | |
72 | VE_RTC, | |
73 | VE_COMPACTFLASH, | |
74 | VE_CLCD, | |
75 | VE_NORFLASH0, | |
2558e0a6 | 76 | VE_NORFLASH1, |
8941d6ce | 77 | VE_NORFLASHALIAS, |
2558e0a6 PM |
78 | VE_SRAM, |
79 | VE_VIDEORAM, | |
80 | VE_ETHERNET, | |
81 | VE_USB, | |
82 | VE_DAPROM, | |
c8a07b35 | 83 | VE_VIRTIO, |
2558e0a6 PM |
84 | }; |
85 | ||
a8170e5e | 86 | static hwaddr motherboard_legacy_map[] = { |
6ec1588e | 87 | [VE_NORFLASHALIAS] = 0, |
2558e0a6 PM |
88 | /* CS7: 0x10000000 .. 0x10020000 */ |
89 | [VE_SYSREGS] = 0x10000000, | |
90 | [VE_SP810] = 0x10001000, | |
91 | [VE_SERIALPCI] = 0x10002000, | |
92 | [VE_PL041] = 0x10004000, | |
93 | [VE_MMCI] = 0x10005000, | |
94 | [VE_KMI0] = 0x10006000, | |
95 | [VE_KMI1] = 0x10007000, | |
96 | [VE_UART0] = 0x10009000, | |
97 | [VE_UART1] = 0x1000a000, | |
98 | [VE_UART2] = 0x1000b000, | |
99 | [VE_UART3] = 0x1000c000, | |
100 | [VE_WDT] = 0x1000f000, | |
101 | [VE_TIMER01] = 0x10011000, | |
102 | [VE_TIMER23] = 0x10012000, | |
c8a07b35 | 103 | [VE_VIRTIO] = 0x10013000, |
2558e0a6 PM |
104 | [VE_SERIALDVI] = 0x10016000, |
105 | [VE_RTC] = 0x10017000, | |
106 | [VE_COMPACTFLASH] = 0x1001a000, | |
107 | [VE_CLCD] = 0x1001f000, | |
108 | /* CS0: 0x40000000 .. 0x44000000 */ | |
109 | [VE_NORFLASH0] = 0x40000000, | |
110 | /* CS1: 0x44000000 .. 0x48000000 */ | |
111 | [VE_NORFLASH1] = 0x44000000, | |
112 | /* CS2: 0x48000000 .. 0x4a000000 */ | |
113 | [VE_SRAM] = 0x48000000, | |
114 | /* CS3: 0x4c000000 .. 0x50000000 */ | |
115 | [VE_VIDEORAM] = 0x4c000000, | |
116 | [VE_ETHERNET] = 0x4e000000, | |
117 | [VE_USB] = 0x4f000000, | |
2055283b PM |
118 | }; |
119 | ||
a8170e5e | 120 | static hwaddr motherboard_aseries_map[] = { |
8941d6ce | 121 | [VE_NORFLASHALIAS] = 0, |
661bafb3 FL |
122 | /* CS0: 0x08000000 .. 0x0c000000 */ |
123 | [VE_NORFLASH0] = 0x08000000, | |
961f195e PM |
124 | /* CS4: 0x0c000000 .. 0x10000000 */ |
125 | [VE_NORFLASH1] = 0x0c000000, | |
126 | /* CS5: 0x10000000 .. 0x14000000 */ | |
127 | /* CS1: 0x14000000 .. 0x18000000 */ | |
128 | [VE_SRAM] = 0x14000000, | |
129 | /* CS2: 0x18000000 .. 0x1c000000 */ | |
130 | [VE_VIDEORAM] = 0x18000000, | |
131 | [VE_ETHERNET] = 0x1a000000, | |
132 | [VE_USB] = 0x1b000000, | |
133 | /* CS3: 0x1c000000 .. 0x20000000 */ | |
134 | [VE_DAPROM] = 0x1c000000, | |
135 | [VE_SYSREGS] = 0x1c010000, | |
136 | [VE_SP810] = 0x1c020000, | |
137 | [VE_SERIALPCI] = 0x1c030000, | |
138 | [VE_PL041] = 0x1c040000, | |
139 | [VE_MMCI] = 0x1c050000, | |
140 | [VE_KMI0] = 0x1c060000, | |
141 | [VE_KMI1] = 0x1c070000, | |
142 | [VE_UART0] = 0x1c090000, | |
143 | [VE_UART1] = 0x1c0a0000, | |
144 | [VE_UART2] = 0x1c0b0000, | |
145 | [VE_UART3] = 0x1c0c0000, | |
146 | [VE_WDT] = 0x1c0f0000, | |
147 | [VE_TIMER01] = 0x1c110000, | |
148 | [VE_TIMER23] = 0x1c120000, | |
c8a07b35 | 149 | [VE_VIRTIO] = 0x1c130000, |
961f195e PM |
150 | [VE_SERIALDVI] = 0x1c160000, |
151 | [VE_RTC] = 0x1c170000, | |
152 | [VE_COMPACTFLASH] = 0x1c1a0000, | |
153 | [VE_CLCD] = 0x1c1f0000, | |
154 | }; | |
155 | ||
4c3b29b8 PM |
156 | /* Structure defining the peculiarities of a specific daughterboard */ |
157 | ||
158 | typedef struct VEDBoardInfo VEDBoardInfo; | |
159 | ||
7eb1dc7f GB |
160 | typedef struct { |
161 | MachineClass parent; | |
162 | VEDBoardInfo *daughterboard; | |
163 | } VexpressMachineClass; | |
164 | ||
165 | typedef struct { | |
166 | MachineState parent; | |
49021924 | 167 | bool secure; |
7eb1dc7f GB |
168 | } VexpressMachineState; |
169 | ||
170 | #define TYPE_VEXPRESS_MACHINE "vexpress" | |
9ee00ba8 GB |
171 | #define TYPE_VEXPRESS_A9_MACHINE "vexpress-a9" |
172 | #define TYPE_VEXPRESS_A15_MACHINE "vexpress-a15" | |
7eb1dc7f GB |
173 | #define VEXPRESS_MACHINE(obj) \ |
174 | OBJECT_CHECK(VexpressMachineState, (obj), TYPE_VEXPRESS_MACHINE) | |
175 | #define VEXPRESS_MACHINE_GET_CLASS(obj) \ | |
176 | OBJECT_GET_CLASS(VexpressMachineClass, obj, TYPE_VEXPRESS_MACHINE) | |
177 | #define VEXPRESS_MACHINE_CLASS(klass) \ | |
178 | OBJECT_CLASS_CHECK(VexpressMachineClass, klass, TYPE_VEXPRESS_MACHINE) | |
179 | ||
e364bab6 | 180 | typedef void DBoardInitFn(const VexpressMachineState *machine, |
4c3b29b8 PM |
181 | ram_addr_t ram_size, |
182 | const char *cpu_model, | |
cdef10bb | 183 | qemu_irq *pic); |
4c3b29b8 PM |
184 | |
185 | struct VEDBoardInfo { | |
cef04a26 | 186 | struct arm_boot_info bootinfo; |
a8170e5e AK |
187 | const hwaddr *motherboard_map; |
188 | hwaddr loader_start; | |
189 | const hwaddr gic_cpu_if_addr; | |
cdef10bb | 190 | uint32_t proc_id; |
31410948 PM |
191 | uint32_t num_voltage_sensors; |
192 | const uint32_t *voltages; | |
9c7d4893 PM |
193 | uint32_t num_clocks; |
194 | const uint32_t *clocks; | |
4c3b29b8 PM |
195 | DBoardInitFn *init; |
196 | }; | |
197 | ||
9948c38b | 198 | static void init_cpus(const char *cpu_model, const char *privdev, |
12d027f1 | 199 | hwaddr periphbase, qemu_irq *pic, bool secure) |
9948c38b PM |
200 | { |
201 | ObjectClass *cpu_oc = cpu_class_by_name(TYPE_ARM_CPU, cpu_model); | |
202 | DeviceState *dev; | |
203 | SysBusDevice *busdev; | |
204 | int n; | |
205 | ||
206 | if (!cpu_oc) { | |
207 | fprintf(stderr, "Unable to find CPU definition\n"); | |
208 | exit(1); | |
209 | } | |
210 | ||
211 | /* Create the actual CPUs */ | |
212 | for (n = 0; n < smp_cpus; n++) { | |
213 | Object *cpuobj = object_new(object_class_get_name(cpu_oc)); | |
214 | Error *err = NULL; | |
215 | ||
12d027f1 GB |
216 | if (!secure) { |
217 | object_property_set_bool(cpuobj, false, "has_el3", NULL); | |
218 | } | |
219 | ||
d097696e PM |
220 | if (object_property_find(cpuobj, "reset-cbar", NULL)) { |
221 | object_property_set_int(cpuobj, periphbase, | |
222 | "reset-cbar", &error_abort); | |
9948c38b PM |
223 | } |
224 | object_property_set_bool(cpuobj, true, "realized", &err); | |
225 | if (err) { | |
565f65d2 | 226 | error_report_err(err); |
9948c38b PM |
227 | exit(1); |
228 | } | |
229 | } | |
230 | ||
231 | /* Create the private peripheral devices (including the GIC); | |
232 | * this must happen after the CPUs are created because a15mpcore_priv | |
233 | * wires itself up to the CPU's generic_timer gpio out lines. | |
234 | */ | |
235 | dev = qdev_create(NULL, privdev); | |
236 | qdev_prop_set_uint32(dev, "num-cpu", smp_cpus); | |
237 | qdev_init_nofail(dev); | |
238 | busdev = SYS_BUS_DEVICE(dev); | |
239 | sysbus_mmio_map(busdev, 0, periphbase); | |
240 | ||
241 | /* Interrupts [42:0] are from the motherboard; | |
242 | * [47:43] are reserved; [63:48] are daughterboard | |
243 | * peripherals. Note that some documentation numbers | |
244 | * external interrupts starting from 32 (because there | |
245 | * are internal interrupts 0..31). | |
246 | */ | |
247 | for (n = 0; n < 64; n++) { | |
248 | pic[n] = qdev_get_gpio_in(dev, n); | |
249 | } | |
250 | ||
251 | /* Connect the CPUs to the GIC */ | |
252 | for (n = 0; n < smp_cpus; n++) { | |
253 | DeviceState *cpudev = DEVICE(qemu_get_cpu(n)); | |
254 | ||
255 | sysbus_connect_irq(busdev, n, qdev_get_gpio_in(cpudev, ARM_CPU_IRQ)); | |
256 | } | |
257 | } | |
258 | ||
e364bab6 | 259 | static void a9_daughterboard_init(const VexpressMachineState *vms, |
4c3b29b8 PM |
260 | ram_addr_t ram_size, |
261 | const char *cpu_model, | |
cdef10bb | 262 | qemu_irq *pic) |
2055283b | 263 | { |
e6d17b05 AK |
264 | MemoryRegion *sysmem = get_system_memory(); |
265 | MemoryRegion *ram = g_new(MemoryRegion, 1); | |
266 | MemoryRegion *lowram = g_new(MemoryRegion, 1); | |
4c3b29b8 | 267 | ram_addr_t low_ram_size; |
2055283b PM |
268 | |
269 | if (!cpu_model) { | |
270 | cpu_model = "cortex-a9"; | |
271 | } | |
272 | ||
2055283b PM |
273 | if (ram_size > 0x40000000) { |
274 | /* 1GB is the maximum the address space permits */ | |
4c3b29b8 | 275 | fprintf(stderr, "vexpress-a9: cannot model more than 1GB RAM\n"); |
2055283b PM |
276 | exit(1); |
277 | } | |
278 | ||
49946538 HT |
279 | memory_region_init_ram(ram, NULL, "vexpress.highmem", ram_size, |
280 | &error_abort); | |
c5705a77 | 281 | vmstate_register_ram_global(ram); |
2055283b PM |
282 | low_ram_size = ram_size; |
283 | if (low_ram_size > 0x4000000) { | |
284 | low_ram_size = 0x4000000; | |
285 | } | |
286 | /* RAM is from 0x60000000 upwards. The bottom 64MB of the | |
287 | * address space should in theory be remappable to various | |
288 | * things including ROM or RAM; we always map the RAM there. | |
289 | */ | |
2c9b15ca | 290 | memory_region_init_alias(lowram, NULL, "vexpress.lowmem", ram, 0, low_ram_size); |
e6d17b05 AK |
291 | memory_region_add_subregion(sysmem, 0x0, lowram); |
292 | memory_region_add_subregion(sysmem, 0x60000000, ram); | |
2055283b PM |
293 | |
294 | /* 0x1e000000 A9MPCore (SCU) private memory region */ | |
12d027f1 | 295 | init_cpus(cpu_model, "a9mpcore_priv", 0x1e000000, pic, vms->secure); |
2055283b | 296 | |
4c3b29b8 PM |
297 | /* Daughterboard peripherals : 0x10020000 .. 0x20000000 */ |
298 | ||
299 | /* 0x10020000 PL111 CLCD (daughterboard) */ | |
300 | sysbus_create_simple("pl111", 0x10020000, pic[44]); | |
301 | ||
302 | /* 0x10060000 AXI RAM */ | |
303 | /* 0x100e0000 PL341 Dynamic Memory Controller */ | |
304 | /* 0x100e1000 PL354 Static Memory Controller */ | |
305 | /* 0x100e2000 System Configuration Controller */ | |
306 | ||
307 | sysbus_create_simple("sp804", 0x100e4000, pic[48]); | |
308 | /* 0x100e5000 SP805 Watchdog module */ | |
309 | /* 0x100e6000 BP147 TrustZone Protection Controller */ | |
310 | /* 0x100e9000 PL301 'Fast' AXI matrix */ | |
311 | /* 0x100ea000 PL301 'Slow' AXI matrix */ | |
312 | /* 0x100ec000 TrustZone Address Space Controller */ | |
313 | /* 0x10200000 CoreSight debug APB */ | |
314 | /* 0x1e00a000 PL310 L2 Cache Controller */ | |
315 | sysbus_create_varargs("l2x0", 0x1e00a000, NULL); | |
316 | } | |
317 | ||
31410948 PM |
318 | /* Voltage values for SYS_CFG_VOLT daughterboard registers; |
319 | * values are in microvolts. | |
320 | */ | |
321 | static const uint32_t a9_voltages[] = { | |
322 | 1000000, /* VD10 : 1.0V : SoC internal logic voltage */ | |
323 | 1000000, /* VD10_S2 : 1.0V : PL310, L2 cache, RAM, non-PL310 logic */ | |
324 | 1000000, /* VD10_S3 : 1.0V : Cortex-A9, cores, MPEs, SCU, PL310 logic */ | |
325 | 1800000, /* VCC1V8 : 1.8V : DDR2 SDRAM, test chip DDR2 I/O supply */ | |
326 | 900000, /* DDR2VTT : 0.9V : DDR2 SDRAM VTT termination voltage */ | |
327 | 3300000, /* VCC3V3 : 3.3V : local board supply for misc external logic */ | |
328 | }; | |
329 | ||
9c7d4893 PM |
330 | /* Reset values for daughterboard oscillators (in Hz) */ |
331 | static const uint32_t a9_clocks[] = { | |
332 | 45000000, /* AMBA AXI ACLK: 45MHz */ | |
333 | 23750000, /* daughterboard CLCD clock: 23.75MHz */ | |
334 | 66670000, /* Test chip reference clock: 66.67MHz */ | |
335 | }; | |
336 | ||
cef04a26 | 337 | static VEDBoardInfo a9_daughterboard = { |
4c3b29b8 PM |
338 | .motherboard_map = motherboard_legacy_map, |
339 | .loader_start = 0x60000000, | |
96eacf64 | 340 | .gic_cpu_if_addr = 0x1e000100, |
cdef10bb | 341 | .proc_id = 0x0c000191, |
31410948 PM |
342 | .num_voltage_sensors = ARRAY_SIZE(a9_voltages), |
343 | .voltages = a9_voltages, | |
9c7d4893 PM |
344 | .num_clocks = ARRAY_SIZE(a9_clocks), |
345 | .clocks = a9_clocks, | |
4c3b29b8 PM |
346 | .init = a9_daughterboard_init, |
347 | }; | |
348 | ||
e364bab6 | 349 | static void a15_daughterboard_init(const VexpressMachineState *vms, |
961f195e PM |
350 | ram_addr_t ram_size, |
351 | const char *cpu_model, | |
cdef10bb | 352 | qemu_irq *pic) |
961f195e | 353 | { |
961f195e PM |
354 | MemoryRegion *sysmem = get_system_memory(); |
355 | MemoryRegion *ram = g_new(MemoryRegion, 1); | |
356 | MemoryRegion *sram = g_new(MemoryRegion, 1); | |
961f195e PM |
357 | |
358 | if (!cpu_model) { | |
359 | cpu_model = "cortex-a15"; | |
360 | } | |
361 | ||
25d71699 PM |
362 | { |
363 | /* We have to use a separate 64 bit variable here to avoid the gcc | |
364 | * "comparison is always false due to limited range of data type" | |
365 | * warning if we are on a host where ram_addr_t is 32 bits. | |
366 | */ | |
367 | uint64_t rsz = ram_size; | |
368 | if (rsz > (30ULL * 1024 * 1024 * 1024)) { | |
369 | fprintf(stderr, "vexpress-a15: cannot model more than 30GB RAM\n"); | |
370 | exit(1); | |
371 | } | |
961f195e PM |
372 | } |
373 | ||
49946538 HT |
374 | memory_region_init_ram(ram, NULL, "vexpress.highmem", ram_size, |
375 | &error_abort); | |
961f195e PM |
376 | vmstate_register_ram_global(ram); |
377 | /* RAM is from 0x80000000 upwards; there is no low-memory alias for it. */ | |
378 | memory_region_add_subregion(sysmem, 0x80000000, ram); | |
379 | ||
380 | /* 0x2c000000 A15MPCore private memory region (GIC) */ | |
12d027f1 | 381 | init_cpus(cpu_model, "a15mpcore_priv", 0x2c000000, pic, vms->secure); |
961f195e PM |
382 | |
383 | /* A15 daughterboard peripherals: */ | |
384 | ||
385 | /* 0x20000000: CoreSight interfaces: not modelled */ | |
386 | /* 0x2a000000: PL301 AXI interconnect: not modelled */ | |
387 | /* 0x2a420000: SCC: not modelled */ | |
388 | /* 0x2a430000: system counter: not modelled */ | |
389 | /* 0x2b000000: HDLCD controller: not modelled */ | |
390 | /* 0x2b060000: SP805 watchdog: not modelled */ | |
391 | /* 0x2b0a0000: PL341 dynamic memory controller: not modelled */ | |
392 | /* 0x2e000000: system SRAM */ | |
49946538 HT |
393 | memory_region_init_ram(sram, NULL, "vexpress.a15sram", 0x10000, |
394 | &error_abort); | |
961f195e PM |
395 | vmstate_register_ram_global(sram); |
396 | memory_region_add_subregion(sysmem, 0x2e000000, sram); | |
397 | ||
398 | /* 0x7ffb0000: DMA330 DMA controller: not modelled */ | |
399 | /* 0x7ffd0000: PL354 static memory controller: not modelled */ | |
400 | } | |
401 | ||
31410948 PM |
402 | static const uint32_t a15_voltages[] = { |
403 | 900000, /* Vcore: 0.9V : CPU core voltage */ | |
404 | }; | |
405 | ||
9c7d4893 PM |
406 | static const uint32_t a15_clocks[] = { |
407 | 60000000, /* OSCCLK0: 60MHz : CPU_CLK reference */ | |
408 | 0, /* OSCCLK1: reserved */ | |
409 | 0, /* OSCCLK2: reserved */ | |
410 | 0, /* OSCCLK3: reserved */ | |
411 | 40000000, /* OSCCLK4: 40MHz : external AXI master clock */ | |
412 | 23750000, /* OSCCLK5: 23.75MHz : HDLCD PLL reference */ | |
413 | 50000000, /* OSCCLK6: 50MHz : static memory controller clock */ | |
414 | 60000000, /* OSCCLK7: 60MHz : SYSCLK reference */ | |
415 | 40000000, /* OSCCLK8: 40MHz : DDR2 PLL reference */ | |
416 | }; | |
417 | ||
cef04a26 | 418 | static VEDBoardInfo a15_daughterboard = { |
961f195e PM |
419 | .motherboard_map = motherboard_aseries_map, |
420 | .loader_start = 0x80000000, | |
421 | .gic_cpu_if_addr = 0x2c002000, | |
cdef10bb | 422 | .proc_id = 0x14000237, |
31410948 PM |
423 | .num_voltage_sensors = ARRAY_SIZE(a15_voltages), |
424 | .voltages = a15_voltages, | |
9c7d4893 PM |
425 | .num_clocks = ARRAY_SIZE(a15_clocks), |
426 | .clocks = a15_clocks, | |
961f195e PM |
427 | .init = a15_daughterboard_init, |
428 | }; | |
429 | ||
c8a07b35 PM |
430 | static int add_virtio_mmio_node(void *fdt, uint32_t acells, uint32_t scells, |
431 | hwaddr addr, hwaddr size, uint32_t intc, | |
432 | int irq) | |
433 | { | |
434 | /* Add a virtio_mmio node to the device tree blob: | |
435 | * virtio_mmio@ADDRESS { | |
436 | * compatible = "virtio,mmio"; | |
437 | * reg = <ADDRESS, SIZE>; | |
438 | * interrupt-parent = <&intc>; | |
439 | * interrupts = <0, irq, 1>; | |
440 | * } | |
441 | * (Note that the format of the interrupts property is dependent on the | |
442 | * interrupt controller that interrupt-parent points to; these are for | |
443 | * the ARM GIC and indicate an SPI interrupt, rising-edge-triggered.) | |
444 | */ | |
445 | int rc; | |
446 | char *nodename = g_strdup_printf("/virtio_mmio@%" PRIx64, addr); | |
447 | ||
5a4348d1 PC |
448 | rc = qemu_fdt_add_subnode(fdt, nodename); |
449 | rc |= qemu_fdt_setprop_string(fdt, nodename, | |
450 | "compatible", "virtio,mmio"); | |
451 | rc |= qemu_fdt_setprop_sized_cells(fdt, nodename, "reg", | |
452 | acells, addr, scells, size); | |
453 | qemu_fdt_setprop_cells(fdt, nodename, "interrupt-parent", intc); | |
454 | qemu_fdt_setprop_cells(fdt, nodename, "interrupts", 0, irq, 1); | |
c8a07b35 PM |
455 | g_free(nodename); |
456 | if (rc) { | |
457 | return -1; | |
458 | } | |
459 | return 0; | |
460 | } | |
461 | ||
462 | static uint32_t find_int_controller(void *fdt) | |
463 | { | |
464 | /* Find the FDT node corresponding to the interrupt controller | |
465 | * for virtio-mmio devices. We do this by scanning the fdt for | |
466 | * a node with the right compatibility, since we know there is | |
467 | * only one GIC on a vexpress board. | |
468 | * We return the phandle of the node, or 0 if none was found. | |
469 | */ | |
470 | const char *compat = "arm,cortex-a9-gic"; | |
471 | int offset; | |
472 | ||
473 | offset = fdt_node_offset_by_compatible(fdt, -1, compat); | |
474 | if (offset >= 0) { | |
475 | return fdt_get_phandle(fdt, offset); | |
476 | } | |
477 | return 0; | |
478 | } | |
479 | ||
480 | static void vexpress_modify_dtb(const struct arm_boot_info *info, void *fdt) | |
481 | { | |
482 | uint32_t acells, scells, intc; | |
483 | const VEDBoardInfo *daughterboard = (const VEDBoardInfo *)info; | |
484 | ||
5a4348d1 PC |
485 | acells = qemu_fdt_getprop_cell(fdt, "/", "#address-cells"); |
486 | scells = qemu_fdt_getprop_cell(fdt, "/", "#size-cells"); | |
c8a07b35 PM |
487 | intc = find_int_controller(fdt); |
488 | if (!intc) { | |
489 | /* Not fatal, we just won't provide virtio. This will | |
490 | * happen with older device tree blobs. | |
491 | */ | |
492 | fprintf(stderr, "QEMU: warning: couldn't find interrupt controller in " | |
493 | "dtb; will not include virtio-mmio devices in the dtb.\n"); | |
494 | } else { | |
495 | int i; | |
496 | const hwaddr *map = daughterboard->motherboard_map; | |
497 | ||
498 | /* We iterate backwards here because adding nodes | |
499 | * to the dtb puts them in last-first. | |
500 | */ | |
501 | for (i = NUM_VIRTIO_TRANSPORTS - 1; i >= 0; i--) { | |
502 | add_virtio_mmio_node(fdt, acells, scells, | |
503 | map[VE_VIRTIO] + 0x200 * i, | |
504 | 0x200, intc, 40 + i); | |
505 | } | |
506 | } | |
507 | } | |
508 | ||
b8433303 RF |
509 | |
510 | /* Open code a private version of pflash registration since we | |
511 | * need to set non-default device width for VExpress platform. | |
512 | */ | |
513 | static pflash_t *ve_pflash_cfi01_register(hwaddr base, const char *name, | |
514 | DriveInfo *di) | |
515 | { | |
516 | DeviceState *dev = qdev_create(NULL, "cfi.pflash01"); | |
517 | ||
9b3d111a MA |
518 | if (di) { |
519 | qdev_prop_set_drive(dev, "drive", blk_by_legacy_dinfo(di), | |
520 | &error_abort); | |
b8433303 RF |
521 | } |
522 | ||
523 | qdev_prop_set_uint32(dev, "num-blocks", | |
524 | VEXPRESS_FLASH_SIZE / VEXPRESS_FLASH_SECT_SIZE); | |
525 | qdev_prop_set_uint64(dev, "sector-length", VEXPRESS_FLASH_SECT_SIZE); | |
526 | qdev_prop_set_uint8(dev, "width", 4); | |
527 | qdev_prop_set_uint8(dev, "device-width", 2); | |
528 | qdev_prop_set_uint8(dev, "big-endian", 0); | |
0163a2dc RF |
529 | qdev_prop_set_uint16(dev, "id0", 0x89); |
530 | qdev_prop_set_uint16(dev, "id1", 0x18); | |
b8433303 | 531 | qdev_prop_set_uint16(dev, "id2", 0x00); |
0163a2dc | 532 | qdev_prop_set_uint16(dev, "id3", 0x00); |
b8433303 RF |
533 | qdev_prop_set_string(dev, "name", name); |
534 | qdev_init_nofail(dev); | |
535 | ||
536 | sysbus_mmio_map(SYS_BUS_DEVICE(dev), 0, base); | |
537 | return OBJECT_CHECK(pflash_t, (dev), "cfi.pflash01"); | |
538 | } | |
539 | ||
af7c9f34 | 540 | static void vexpress_common_init(MachineState *machine) |
4c3b29b8 | 541 | { |
e364bab6 | 542 | VexpressMachineState *vms = VEXPRESS_MACHINE(machine); |
af7c9f34 GB |
543 | VexpressMachineClass *vmc = VEXPRESS_MACHINE_GET_CLASS(machine); |
544 | VEDBoardInfo *daughterboard = vmc->daughterboard;; | |
4c3b29b8 PM |
545 | DeviceState *dev, *sysctl, *pl041; |
546 | qemu_irq pic[64]; | |
4c3b29b8 | 547 | uint32_t sys_id; |
3dc3e7dd | 548 | DriveInfo *dinfo; |
8941d6ce | 549 | pflash_t *pflash0; |
4c3b29b8 PM |
550 | ram_addr_t vram_size, sram_size; |
551 | MemoryRegion *sysmem = get_system_memory(); | |
552 | MemoryRegion *vram = g_new(MemoryRegion, 1); | |
553 | MemoryRegion *sram = g_new(MemoryRegion, 1); | |
8941d6ce PM |
554 | MemoryRegion *flashalias = g_new(MemoryRegion, 1); |
555 | MemoryRegion *flash0mem; | |
a8170e5e | 556 | const hwaddr *map = daughterboard->motherboard_map; |
31410948 | 557 | int i; |
4c3b29b8 | 558 | |
e364bab6 | 559 | daughterboard->init(vms, machine->ram_size, machine->cpu_model, pic); |
4c3b29b8 | 560 | |
61e99241 GL |
561 | /* |
562 | * If a bios file was provided, attempt to map it into memory | |
563 | */ | |
564 | if (bios_name) { | |
476e75ab PM |
565 | const char *fn; |
566 | ||
567 | if (drive_get(IF_PFLASH, 0, 0)) { | |
568 | error_report("The contents of the first flash device may be " | |
569 | "specified with -bios or with -drive if=pflash... " | |
570 | "but you cannot use both options at once"); | |
571 | exit(1); | |
572 | } | |
573 | fn = qemu_find_file(QEMU_FILE_TYPE_BIOS, bios_name); | |
61e99241 GL |
574 | if (!fn || load_image_targphys(fn, map[VE_NORFLASH0], |
575 | VEXPRESS_FLASH_SIZE) < 0) { | |
576 | error_report("Could not load ROM image '%s'", bios_name); | |
577 | exit(1); | |
578 | } | |
579 | } | |
580 | ||
2558e0a6 PM |
581 | /* Motherboard peripherals: the wiring is the same but the |
582 | * addresses vary between the legacy and A-Series memory maps. | |
583 | */ | |
584 | ||
2055283b | 585 | sys_id = 0x1190f500; |
2055283b | 586 | |
2055283b PM |
587 | sysctl = qdev_create(NULL, "realview_sysctl"); |
588 | qdev_prop_set_uint32(sysctl, "sys_id", sys_id); | |
cdef10bb | 589 | qdev_prop_set_uint32(sysctl, "proc_id", daughterboard->proc_id); |
31410948 PM |
590 | qdev_prop_set_uint32(sysctl, "len-db-voltage", |
591 | daughterboard->num_voltage_sensors); | |
592 | for (i = 0; i < daughterboard->num_voltage_sensors; i++) { | |
593 | char *propname = g_strdup_printf("db-voltage[%d]", i); | |
594 | qdev_prop_set_uint32(sysctl, propname, daughterboard->voltages[i]); | |
595 | g_free(propname); | |
596 | } | |
9c7d4893 PM |
597 | qdev_prop_set_uint32(sysctl, "len-db-clock", |
598 | daughterboard->num_clocks); | |
599 | for (i = 0; i < daughterboard->num_clocks; i++) { | |
600 | char *propname = g_strdup_printf("db-clock[%d]", i); | |
601 | qdev_prop_set_uint32(sysctl, propname, daughterboard->clocks[i]); | |
602 | g_free(propname); | |
603 | } | |
7a65c8cc | 604 | qdev_init_nofail(sysctl); |
1356b98d | 605 | sysbus_mmio_map(SYS_BUS_DEVICE(sysctl), 0, map[VE_SYSREGS]); |
2558e0a6 PM |
606 | |
607 | /* VE_SP810: not modelled */ | |
608 | /* VE_SERIALPCI: not modelled */ | |
2055283b | 609 | |
03a0e944 PM |
610 | pl041 = qdev_create(NULL, "pl041"); |
611 | qdev_prop_set_uint32(pl041, "nc_fifo_depth", 512); | |
612 | qdev_init_nofail(pl041); | |
1356b98d AF |
613 | sysbus_mmio_map(SYS_BUS_DEVICE(pl041), 0, map[VE_PL041]); |
614 | sysbus_connect_irq(SYS_BUS_DEVICE(pl041), 0, pic[11]); | |
2055283b | 615 | |
2558e0a6 | 616 | dev = sysbus_create_varargs("pl181", map[VE_MMCI], pic[9], pic[10], NULL); |
2055283b PM |
617 | /* Wire up MMC card detect and read-only signals */ |
618 | qdev_connect_gpio_out(dev, 0, | |
619 | qdev_get_gpio_in(sysctl, ARM_SYSCTL_GPIO_MMC_WPROT)); | |
620 | qdev_connect_gpio_out(dev, 1, | |
621 | qdev_get_gpio_in(sysctl, ARM_SYSCTL_GPIO_MMC_CARDIN)); | |
622 | ||
2558e0a6 PM |
623 | sysbus_create_simple("pl050_keyboard", map[VE_KMI0], pic[12]); |
624 | sysbus_create_simple("pl050_mouse", map[VE_KMI1], pic[13]); | |
2055283b | 625 | |
2558e0a6 PM |
626 | sysbus_create_simple("pl011", map[VE_UART0], pic[5]); |
627 | sysbus_create_simple("pl011", map[VE_UART1], pic[6]); | |
628 | sysbus_create_simple("pl011", map[VE_UART2], pic[7]); | |
629 | sysbus_create_simple("pl011", map[VE_UART3], pic[8]); | |
2055283b | 630 | |
2558e0a6 PM |
631 | sysbus_create_simple("sp804", map[VE_TIMER01], pic[2]); |
632 | sysbus_create_simple("sp804", map[VE_TIMER23], pic[3]); | |
2055283b | 633 | |
2558e0a6 | 634 | /* VE_SERIALDVI: not modelled */ |
2055283b | 635 | |
2558e0a6 | 636 | sysbus_create_simple("pl031", map[VE_RTC], pic[4]); /* RTC */ |
2055283b | 637 | |
2558e0a6 | 638 | /* VE_COMPACTFLASH: not modelled */ |
2055283b | 639 | |
b7206878 | 640 | sysbus_create_simple("pl111", map[VE_CLCD], pic[14]); |
2055283b | 641 | |
3dc3e7dd | 642 | dinfo = drive_get_next(IF_PFLASH); |
b8433303 RF |
643 | pflash0 = ve_pflash_cfi01_register(map[VE_NORFLASH0], "vexpress.flash0", |
644 | dinfo); | |
8941d6ce | 645 | if (!pflash0) { |
3dc3e7dd FL |
646 | fprintf(stderr, "vexpress: error registering flash 0.\n"); |
647 | exit(1); | |
648 | } | |
649 | ||
8941d6ce PM |
650 | if (map[VE_NORFLASHALIAS] != -1) { |
651 | /* Map flash 0 as an alias into low memory */ | |
652 | flash0mem = sysbus_mmio_get_region(SYS_BUS_DEVICE(pflash0), 0); | |
653 | memory_region_init_alias(flashalias, NULL, "vexpress.flashalias", | |
654 | flash0mem, 0, VEXPRESS_FLASH_SIZE); | |
655 | memory_region_add_subregion(sysmem, map[VE_NORFLASHALIAS], flashalias); | |
656 | } | |
657 | ||
3dc3e7dd | 658 | dinfo = drive_get_next(IF_PFLASH); |
b8433303 RF |
659 | if (!ve_pflash_cfi01_register(map[VE_NORFLASH1], "vexpress.flash1", |
660 | dinfo)) { | |
3dc3e7dd FL |
661 | fprintf(stderr, "vexpress: error registering flash 1.\n"); |
662 | exit(1); | |
663 | } | |
2558e0a6 | 664 | |
2055283b | 665 | sram_size = 0x2000000; |
49946538 HT |
666 | memory_region_init_ram(sram, NULL, "vexpress.sram", sram_size, |
667 | &error_abort); | |
c5705a77 | 668 | vmstate_register_ram_global(sram); |
2558e0a6 | 669 | memory_region_add_subregion(sysmem, map[VE_SRAM], sram); |
2055283b | 670 | |
2055283b | 671 | vram_size = 0x800000; |
49946538 HT |
672 | memory_region_init_ram(vram, NULL, "vexpress.vram", vram_size, |
673 | &error_abort); | |
c5705a77 | 674 | vmstate_register_ram_global(vram); |
2558e0a6 | 675 | memory_region_add_subregion(sysmem, map[VE_VIDEORAM], vram); |
2055283b PM |
676 | |
677 | /* 0x4e000000 LAN9118 Ethernet */ | |
a005d073 | 678 | if (nd_table[0].used) { |
2558e0a6 | 679 | lan9118_init(&nd_table[0], map[VE_ETHERNET], pic[15]); |
2055283b PM |
680 | } |
681 | ||
2558e0a6 PM |
682 | /* VE_USB: not modelled */ |
683 | ||
684 | /* VE_DAPROM: not modelled */ | |
2055283b | 685 | |
c8a07b35 PM |
686 | /* Create mmio transports, so the user can create virtio backends |
687 | * (which will be automatically plugged in to the transports). If | |
688 | * no backend is created the transport will just sit harmlessly idle. | |
689 | */ | |
690 | for (i = 0; i < NUM_VIRTIO_TRANSPORTS; i++) { | |
691 | sysbus_create_simple("virtio-mmio", map[VE_VIRTIO] + 0x200 * i, | |
692 | pic[40 + i]); | |
693 | } | |
694 | ||
3ef96221 MA |
695 | daughterboard->bootinfo.ram_size = machine->ram_size; |
696 | daughterboard->bootinfo.kernel_filename = machine->kernel_filename; | |
697 | daughterboard->bootinfo.kernel_cmdline = machine->kernel_cmdline; | |
698 | daughterboard->bootinfo.initrd_filename = machine->initrd_filename; | |
cef04a26 PM |
699 | daughterboard->bootinfo.nb_cpus = smp_cpus; |
700 | daughterboard->bootinfo.board_id = VEXPRESS_BOARD_ID; | |
701 | daughterboard->bootinfo.loader_start = daughterboard->loader_start; | |
702 | daughterboard->bootinfo.smp_loader_start = map[VE_SRAM]; | |
703 | daughterboard->bootinfo.smp_bootreg_addr = map[VE_SYSREGS] + 0x30; | |
704 | daughterboard->bootinfo.gic_cpu_if_addr = daughterboard->gic_cpu_if_addr; | |
c8a07b35 | 705 | daughterboard->bootinfo.modify_dtb = vexpress_modify_dtb; |
12d027f1 GB |
706 | /* Indicate that when booting Linux we should be in secure state */ |
707 | daughterboard->bootinfo.secure_boot = true; | |
cef04a26 | 708 | arm_load_kernel(ARM_CPU(first_cpu), &daughterboard->bootinfo); |
2055283b PM |
709 | } |
710 | ||
49021924 GB |
711 | static bool vexpress_get_secure(Object *obj, Error **errp) |
712 | { | |
713 | VexpressMachineState *vms = VEXPRESS_MACHINE(obj); | |
714 | ||
715 | return vms->secure; | |
716 | } | |
717 | ||
718 | static void vexpress_set_secure(Object *obj, bool value, Error **errp) | |
719 | { | |
720 | VexpressMachineState *vms = VEXPRESS_MACHINE(obj); | |
721 | ||
722 | vms->secure = value; | |
723 | } | |
724 | ||
725 | static void vexpress_instance_init(Object *obj) | |
726 | { | |
727 | VexpressMachineState *vms = VEXPRESS_MACHINE(obj); | |
728 | ||
729 | /* EL3 is enabled by default on vexpress */ | |
730 | vms->secure = true; | |
731 | object_property_add_bool(obj, "secure", vexpress_get_secure, | |
732 | vexpress_set_secure, NULL); | |
733 | object_property_set_description(obj, "secure", | |
734 | "Set on/off to enable/disable the ARM " | |
735 | "Security Extensions (TrustZone)", | |
736 | NULL); | |
737 | } | |
738 | ||
7eb1dc7f GB |
739 | static void vexpress_class_init(ObjectClass *oc, void *data) |
740 | { | |
741 | MachineClass *mc = MACHINE_CLASS(oc); | |
742 | ||
743 | mc->name = TYPE_VEXPRESS_MACHINE; | |
744 | mc->desc = "ARM Versatile Express"; | |
af7c9f34 | 745 | mc->init = vexpress_common_init; |
7eb1dc7f GB |
746 | mc->block_default_type = IF_SCSI; |
747 | mc->max_cpus = 4; | |
748 | } | |
749 | ||
9ee00ba8 GB |
750 | static void vexpress_a9_class_init(ObjectClass *oc, void *data) |
751 | { | |
752 | MachineClass *mc = MACHINE_CLASS(oc); | |
753 | VexpressMachineClass *vmc = VEXPRESS_MACHINE_CLASS(oc); | |
754 | ||
755 | mc->name = TYPE_VEXPRESS_A9_MACHINE; | |
756 | mc->desc = "ARM Versatile Express for Cortex-A9"; | |
9ee00ba8 GB |
757 | |
758 | vmc->daughterboard = &a9_daughterboard;; | |
759 | } | |
760 | ||
761 | static void vexpress_a15_class_init(ObjectClass *oc, void *data) | |
762 | { | |
763 | MachineClass *mc = MACHINE_CLASS(oc); | |
764 | VexpressMachineClass *vmc = VEXPRESS_MACHINE_CLASS(oc); | |
765 | ||
766 | mc->name = TYPE_VEXPRESS_A15_MACHINE; | |
767 | mc->desc = "ARM Versatile Express for Cortex-A15"; | |
9ee00ba8 GB |
768 | |
769 | vmc->daughterboard = &a15_daughterboard; | |
770 | } | |
771 | ||
7eb1dc7f GB |
772 | static const TypeInfo vexpress_info = { |
773 | .name = TYPE_VEXPRESS_MACHINE, | |
774 | .parent = TYPE_MACHINE, | |
775 | .abstract = true, | |
776 | .instance_size = sizeof(VexpressMachineState), | |
49021924 | 777 | .instance_init = vexpress_instance_init, |
7eb1dc7f GB |
778 | .class_size = sizeof(VexpressMachineClass), |
779 | .class_init = vexpress_class_init, | |
780 | }; | |
781 | ||
9ee00ba8 GB |
782 | static const TypeInfo vexpress_a9_info = { |
783 | .name = TYPE_VEXPRESS_A9_MACHINE, | |
784 | .parent = TYPE_VEXPRESS_MACHINE, | |
785 | .class_init = vexpress_a9_class_init, | |
2055283b PM |
786 | }; |
787 | ||
9ee00ba8 GB |
788 | static const TypeInfo vexpress_a15_info = { |
789 | .name = TYPE_VEXPRESS_A15_MACHINE, | |
790 | .parent = TYPE_VEXPRESS_MACHINE, | |
791 | .class_init = vexpress_a15_class_init, | |
961f195e PM |
792 | }; |
793 | ||
2055283b PM |
794 | static void vexpress_machine_init(void) |
795 | { | |
7eb1dc7f | 796 | type_register_static(&vexpress_info); |
9ee00ba8 GB |
797 | type_register_static(&vexpress_a9_info); |
798 | type_register_static(&vexpress_a15_info); | |
2055283b PM |
799 | } |
800 | ||
801 | machine_init(vexpress_machine_init); |