]> git.proxmox.com Git - mirror_qemu.git/blame - hw/riscv/sifive_u.c
qom: Drop object_property_set_description() parameter @errp
[mirror_qemu.git] / hw / riscv / sifive_u.c
CommitLineData
a7240d1e
MC
1/*
2 * QEMU RISC-V Board Compatible with SiFive Freedom U SDK
3 *
4 * Copyright (c) 2016-2017 Sagar Karandikar, sagark@eecs.berkeley.edu
5 * Copyright (c) 2017 SiFive, Inc.
7b6bb66f 6 * Copyright (c) 2019 Bin Meng <bmeng.cn@gmail.com>
a7240d1e
MC
7 *
8 * Provides a board compatible with the SiFive Freedom U SDK:
9 *
10 * 0) UART
11 * 1) CLINT (Core Level Interruptor)
12 * 2) PLIC (Platform Level Interrupt Controller)
af14c840 13 * 3) PRCI (Power, Reset, Clock, Interrupt)
5461c4fe 14 * 4) OTP (One-Time Programmable) memory with stored serial number
7b6bb66f 15 * 5) GEM (Gigabit Ethernet Controller) and management block
a7240d1e 16 *
f3d47d58 17 * This board currently generates devicetree dynamically that indicates at least
ecdfe393 18 * two harts and up to five harts.
a7240d1e
MC
19 *
20 * This program is free software; you can redistribute it and/or modify it
21 * under the terms and conditions of the GNU General Public License,
22 * version 2 or later, as published by the Free Software Foundation.
23 *
24 * This program is distributed in the hope it will be useful, but WITHOUT
25 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
26 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
27 * more details.
28 *
29 * You should have received a copy of the GNU General Public License along with
30 * this program. If not, see <http://www.gnu.org/licenses/>.
31 */
32
33#include "qemu/osdep.h"
34#include "qemu/log.h"
35#include "qemu/error-report.h"
36#include "qapi/error.h"
3ca109c3 37#include "qapi/visitor.h"
a7240d1e
MC
38#include "hw/boards.h"
39#include "hw/loader.h"
40#include "hw/sysbus.h"
41#include "hw/char/serial.h"
ecdfe393 42#include "hw/cpu/cluster.h"
7b6bb66f 43#include "hw/misc/unimp.h"
a7240d1e
MC
44#include "target/riscv/cpu.h"
45#include "hw/riscv/riscv_hart.h"
46#include "hw/riscv/sifive_plic.h"
47#include "hw/riscv/sifive_clint.h"
48#include "hw/riscv/sifive_uart.h"
a7240d1e 49#include "hw/riscv/sifive_u.h"
0ac24d56 50#include "hw/riscv/boot.h"
a7240d1e 51#include "chardev/char.h"
7b6bb66f 52#include "net/eth.h"
a7240d1e
MC
53#include "sysemu/arch_init.h"
54#include "sysemu/device_tree.h"
46517dd4 55#include "sysemu/sysemu.h"
a7240d1e 56#include "exec/address-spaces.h"
a7240d1e 57
5aec3247
MC
58#include <libfdt.h>
59
b78c3296
BM
60#if defined(TARGET_RISCV32)
61# define BIOS_FILENAME "opensbi-riscv32-sifive_u-fw_jump.bin"
62#else
63# define BIOS_FILENAME "opensbi-riscv64-sifive_u-fw_jump.bin"
64#endif
fdd1bda4 65
a7240d1e
MC
66static const struct MemmapEntry {
67 hwaddr base;
68 hwaddr size;
69} sifive_u_memmap[] = {
70 [SIFIVE_U_DEBUG] = { 0x0, 0x100 },
5aec3247 71 [SIFIVE_U_MROM] = { 0x1000, 0x11000 },
a7240d1e 72 [SIFIVE_U_CLINT] = { 0x2000000, 0x10000 },
a6902ef0 73 [SIFIVE_U_L2LIM] = { 0x8000000, 0x2000000 },
a7240d1e 74 [SIFIVE_U_PLIC] = { 0xc000000, 0x4000000 },
af14c840 75 [SIFIVE_U_PRCI] = { 0x10000000, 0x1000 },
4b55bc2b
BM
76 [SIFIVE_U_UART0] = { 0x10010000, 0x1000 },
77 [SIFIVE_U_UART1] = { 0x10011000, 0x1000 },
5461c4fe 78 [SIFIVE_U_OTP] = { 0x10070000, 0x1000 },
1b3a2308 79 [SIFIVE_U_FLASH0] = { 0x20000000, 0x10000000 },
a7240d1e 80 [SIFIVE_U_DRAM] = { 0x80000000, 0x0 },
7b6bb66f
BM
81 [SIFIVE_U_GEM] = { 0x10090000, 0x2000 },
82 [SIFIVE_U_GEM_MGMT] = { 0x100a0000, 0x1000 },
a7240d1e
MC
83};
84
5461c4fe 85#define OTP_SERIAL 1
5a7f76a3
AF
86#define GEM_REVISION 0x10070109
87
9f79638e 88static void create_fdt(SiFiveUState *s, const struct MemmapEntry *memmap,
a7240d1e
MC
89 uint64_t mem_size, const char *cmdline)
90{
ecdfe393 91 MachineState *ms = MACHINE(qdev_get_machine());
a7240d1e
MC
92 void *fdt;
93 int cpu;
94 uint32_t *cells;
95 char *nodename;
806c64b7 96 char ethclk_names[] = "pclk\0hclk";
81e94379 97 uint32_t plic_phandle, prci_phandle, phandle = 1;
7b6bb66f 98 uint32_t hfclk_phandle, rtcclk_phandle, phy_phandle;
a7240d1e
MC
99
100 fdt = s->fdt = create_device_tree(&s->fdt_size);
101 if (!fdt) {
102 error_report("create_device_tree() failed");
103 exit(1);
104 }
105
d372e748
BM
106 qemu_fdt_setprop_string(fdt, "/", "model", "SiFive HiFive Unleashed A00");
107 qemu_fdt_setprop_string(fdt, "/", "compatible",
108 "sifive,hifive-unleashed-a00");
a7240d1e
MC
109 qemu_fdt_setprop_cell(fdt, "/", "#size-cells", 0x2);
110 qemu_fdt_setprop_cell(fdt, "/", "#address-cells", 0x2);
111
112 qemu_fdt_add_subnode(fdt, "/soc");
113 qemu_fdt_setprop(fdt, "/soc", "ranges", NULL, 0);
2a1a6f6d 114 qemu_fdt_setprop_string(fdt, "/soc", "compatible", "simple-bus");
a7240d1e
MC
115 qemu_fdt_setprop_cell(fdt, "/soc", "#size-cells", 0x2);
116 qemu_fdt_setprop_cell(fdt, "/soc", "#address-cells", 0x2);
117
e1724d09
BM
118 hfclk_phandle = phandle++;
119 nodename = g_strdup_printf("/hfclk");
120 qemu_fdt_add_subnode(fdt, nodename);
121 qemu_fdt_setprop_cell(fdt, nodename, "phandle", hfclk_phandle);
122 qemu_fdt_setprop_string(fdt, nodename, "clock-output-names", "hfclk");
123 qemu_fdt_setprop_cell(fdt, nodename, "clock-frequency",
124 SIFIVE_U_HFCLK_FREQ);
125 qemu_fdt_setprop_string(fdt, nodename, "compatible", "fixed-clock");
126 qemu_fdt_setprop_cell(fdt, nodename, "#clock-cells", 0x0);
127 g_free(nodename);
128
129 rtcclk_phandle = phandle++;
130 nodename = g_strdup_printf("/rtcclk");
131 qemu_fdt_add_subnode(fdt, nodename);
132 qemu_fdt_setprop_cell(fdt, nodename, "phandle", rtcclk_phandle);
133 qemu_fdt_setprop_string(fdt, nodename, "clock-output-names", "rtcclk");
134 qemu_fdt_setprop_cell(fdt, nodename, "clock-frequency",
135 SIFIVE_U_RTCCLK_FREQ);
136 qemu_fdt_setprop_string(fdt, nodename, "compatible", "fixed-clock");
137 qemu_fdt_setprop_cell(fdt, nodename, "#clock-cells", 0x0);
138 g_free(nodename);
139
a7240d1e
MC
140 nodename = g_strdup_printf("/memory@%lx",
141 (long)memmap[SIFIVE_U_DRAM].base);
142 qemu_fdt_add_subnode(fdt, nodename);
143 qemu_fdt_setprop_cells(fdt, nodename, "reg",
144 memmap[SIFIVE_U_DRAM].base >> 32, memmap[SIFIVE_U_DRAM].base,
145 mem_size >> 32, mem_size);
146 qemu_fdt_setprop_string(fdt, nodename, "device_type", "memory");
147 g_free(nodename);
148
149 qemu_fdt_add_subnode(fdt, "/cpus");
2a8756ed
MC
150 qemu_fdt_setprop_cell(fdt, "/cpus", "timebase-frequency",
151 SIFIVE_CLINT_TIMEBASE_FREQ);
a7240d1e
MC
152 qemu_fdt_setprop_cell(fdt, "/cpus", "#size-cells", 0x0);
153 qemu_fdt_setprop_cell(fdt, "/cpus", "#address-cells", 0x1);
154
ecdfe393 155 for (cpu = ms->smp.cpus - 1; cpu >= 0; cpu--) {
382cb439 156 int cpu_phandle = phandle++;
a7240d1e
MC
157 nodename = g_strdup_printf("/cpus/cpu@%d", cpu);
158 char *intc = g_strdup_printf("/cpus/cpu@%d/interrupt-controller", cpu);
ecdfe393 159 char *isa;
a7240d1e 160 qemu_fdt_add_subnode(fdt, nodename);
ecdfe393
BM
161 /* cpu 0 is the management hart that does not have mmu */
162 if (cpu != 0) {
e883e992
BM
163#if defined(TARGET_RISCV32)
164 qemu_fdt_setprop_string(fdt, nodename, "mmu-type", "riscv,sv32");
165#else
ecdfe393 166 qemu_fdt_setprop_string(fdt, nodename, "mmu-type", "riscv,sv48");
e883e992 167#endif
ecdfe393
BM
168 isa = riscv_isa_string(&s->soc.u_cpus.harts[cpu - 1]);
169 } else {
170 isa = riscv_isa_string(&s->soc.e_cpus.harts[0]);
171 }
a7240d1e
MC
172 qemu_fdt_setprop_string(fdt, nodename, "riscv,isa", isa);
173 qemu_fdt_setprop_string(fdt, nodename, "compatible", "riscv");
174 qemu_fdt_setprop_string(fdt, nodename, "status", "okay");
175 qemu_fdt_setprop_cell(fdt, nodename, "reg", cpu);
176 qemu_fdt_setprop_string(fdt, nodename, "device_type", "cpu");
177 qemu_fdt_add_subnode(fdt, intc);
382cb439 178 qemu_fdt_setprop_cell(fdt, intc, "phandle", cpu_phandle);
a7240d1e
MC
179 qemu_fdt_setprop_string(fdt, intc, "compatible", "riscv,cpu-intc");
180 qemu_fdt_setprop(fdt, intc, "interrupt-controller", NULL, 0);
181 qemu_fdt_setprop_cell(fdt, intc, "#interrupt-cells", 1);
182 g_free(isa);
183 g_free(intc);
184 g_free(nodename);
185 }
186
ecdfe393
BM
187 cells = g_new0(uint32_t, ms->smp.cpus * 4);
188 for (cpu = 0; cpu < ms->smp.cpus; cpu++) {
a7240d1e
MC
189 nodename =
190 g_strdup_printf("/cpus/cpu@%d/interrupt-controller", cpu);
191 uint32_t intc_phandle = qemu_fdt_get_phandle(fdt, nodename);
192 cells[cpu * 4 + 0] = cpu_to_be32(intc_phandle);
193 cells[cpu * 4 + 1] = cpu_to_be32(IRQ_M_SOFT);
194 cells[cpu * 4 + 2] = cpu_to_be32(intc_phandle);
195 cells[cpu * 4 + 3] = cpu_to_be32(IRQ_M_TIMER);
196 g_free(nodename);
197 }
198 nodename = g_strdup_printf("/soc/clint@%lx",
199 (long)memmap[SIFIVE_U_CLINT].base);
200 qemu_fdt_add_subnode(fdt, nodename);
201 qemu_fdt_setprop_string(fdt, nodename, "compatible", "riscv,clint0");
202 qemu_fdt_setprop_cells(fdt, nodename, "reg",
203 0x0, memmap[SIFIVE_U_CLINT].base,
204 0x0, memmap[SIFIVE_U_CLINT].size);
205 qemu_fdt_setprop(fdt, nodename, "interrupts-extended",
ecdfe393 206 cells, ms->smp.cpus * sizeof(uint32_t) * 4);
a7240d1e
MC
207 g_free(cells);
208 g_free(nodename);
209
af14c840
BM
210 prci_phandle = phandle++;
211 nodename = g_strdup_printf("/soc/clock-controller@%lx",
212 (long)memmap[SIFIVE_U_PRCI].base);
213 qemu_fdt_add_subnode(fdt, nodename);
214 qemu_fdt_setprop_cell(fdt, nodename, "phandle", prci_phandle);
215 qemu_fdt_setprop_cell(fdt, nodename, "#clock-cells", 0x1);
216 qemu_fdt_setprop_cells(fdt, nodename, "clocks",
217 hfclk_phandle, rtcclk_phandle);
218 qemu_fdt_setprop_cells(fdt, nodename, "reg",
219 0x0, memmap[SIFIVE_U_PRCI].base,
220 0x0, memmap[SIFIVE_U_PRCI].size);
221 qemu_fdt_setprop_string(fdt, nodename, "compatible",
222 "sifive,fu540-c000-prci");
223 g_free(nodename);
224
382cb439 225 plic_phandle = phandle++;
ecdfe393
BM
226 cells = g_new0(uint32_t, ms->smp.cpus * 4 - 2);
227 for (cpu = 0; cpu < ms->smp.cpus; cpu++) {
a7240d1e
MC
228 nodename =
229 g_strdup_printf("/cpus/cpu@%d/interrupt-controller", cpu);
230 uint32_t intc_phandle = qemu_fdt_get_phandle(fdt, nodename);
ecdfe393
BM
231 /* cpu 0 is the management hart that does not have S-mode */
232 if (cpu == 0) {
233 cells[0] = cpu_to_be32(intc_phandle);
234 cells[1] = cpu_to_be32(IRQ_M_EXT);
235 } else {
236 cells[cpu * 4 - 2] = cpu_to_be32(intc_phandle);
237 cells[cpu * 4 - 1] = cpu_to_be32(IRQ_M_EXT);
238 cells[cpu * 4 + 0] = cpu_to_be32(intc_phandle);
239 cells[cpu * 4 + 1] = cpu_to_be32(IRQ_S_EXT);
240 }
a7240d1e
MC
241 g_free(nodename);
242 }
243 nodename = g_strdup_printf("/soc/interrupt-controller@%lx",
244 (long)memmap[SIFIVE_U_PLIC].base);
245 qemu_fdt_add_subnode(fdt, nodename);
246 qemu_fdt_setprop_cell(fdt, nodename, "#interrupt-cells", 1);
247 qemu_fdt_setprop_string(fdt, nodename, "compatible", "riscv,plic0");
248 qemu_fdt_setprop(fdt, nodename, "interrupt-controller", NULL, 0);
249 qemu_fdt_setprop(fdt, nodename, "interrupts-extended",
ecdfe393 250 cells, (ms->smp.cpus * 4 - 2) * sizeof(uint32_t));
a7240d1e
MC
251 qemu_fdt_setprop_cells(fdt, nodename, "reg",
252 0x0, memmap[SIFIVE_U_PLIC].base,
253 0x0, memmap[SIFIVE_U_PLIC].size);
98ceee7f 254 qemu_fdt_setprop_cell(fdt, nodename, "riscv,ndev", 0x35);
04e7edd1 255 qemu_fdt_setprop_cell(fdt, nodename, "phandle", plic_phandle);
a7240d1e
MC
256 plic_phandle = qemu_fdt_get_phandle(fdt, nodename);
257 g_free(cells);
258 g_free(nodename);
259
7b6bb66f 260 phy_phandle = phandle++;
5a7f76a3
AF
261 nodename = g_strdup_printf("/soc/ethernet@%lx",
262 (long)memmap[SIFIVE_U_GEM].base);
263 qemu_fdt_add_subnode(fdt, nodename);
7b6bb66f
BM
264 qemu_fdt_setprop_string(fdt, nodename, "compatible",
265 "sifive,fu540-c000-gem");
5a7f76a3
AF
266 qemu_fdt_setprop_cells(fdt, nodename, "reg",
267 0x0, memmap[SIFIVE_U_GEM].base,
7b6bb66f
BM
268 0x0, memmap[SIFIVE_U_GEM].size,
269 0x0, memmap[SIFIVE_U_GEM_MGMT].base,
270 0x0, memmap[SIFIVE_U_GEM_MGMT].size);
5a7f76a3
AF
271 qemu_fdt_setprop_string(fdt, nodename, "reg-names", "control");
272 qemu_fdt_setprop_string(fdt, nodename, "phy-mode", "gmii");
7b6bb66f 273 qemu_fdt_setprop_cell(fdt, nodename, "phy-handle", phy_phandle);
04e7edd1
BM
274 qemu_fdt_setprop_cell(fdt, nodename, "interrupt-parent", plic_phandle);
275 qemu_fdt_setprop_cell(fdt, nodename, "interrupts", SIFIVE_U_GEM_IRQ);
fe93582c 276 qemu_fdt_setprop_cells(fdt, nodename, "clocks",
806c64b7 277 prci_phandle, PRCI_CLK_GEMGXLPLL, prci_phandle, PRCI_CLK_GEMGXLPLL);
04ece4f8 278 qemu_fdt_setprop(fdt, nodename, "clock-names", ethclk_names,
fe93582c 279 sizeof(ethclk_names));
7b6bb66f
BM
280 qemu_fdt_setprop(fdt, nodename, "local-mac-address",
281 s->soc.gem.conf.macaddr.a, ETH_ALEN);
04e7edd1
BM
282 qemu_fdt_setprop_cell(fdt, nodename, "#address-cells", 1);
283 qemu_fdt_setprop_cell(fdt, nodename, "#size-cells", 0);
c3a28b5d
BM
284
285 qemu_fdt_add_subnode(fdt, "/aliases");
286 qemu_fdt_setprop_string(fdt, "/aliases", "ethernet0", nodename);
287
5a7f76a3
AF
288 g_free(nodename);
289
290 nodename = g_strdup_printf("/soc/ethernet@%lx/ethernet-phy@0",
291 (long)memmap[SIFIVE_U_GEM].base);
292 qemu_fdt_add_subnode(fdt, nodename);
7b6bb66f 293 qemu_fdt_setprop_cell(fdt, nodename, "phandle", phy_phandle);
04e7edd1 294 qemu_fdt_setprop_cell(fdt, nodename, "reg", 0x0);
5a7f76a3
AF
295 g_free(nodename);
296
5f7134d3 297 nodename = g_strdup_printf("/soc/serial@%lx",
a7240d1e
MC
298 (long)memmap[SIFIVE_U_UART0].base);
299 qemu_fdt_add_subnode(fdt, nodename);
300 qemu_fdt_setprop_string(fdt, nodename, "compatible", "sifive,uart0");
301 qemu_fdt_setprop_cells(fdt, nodename, "reg",
302 0x0, memmap[SIFIVE_U_UART0].base,
303 0x0, memmap[SIFIVE_U_UART0].size);
806c64b7
BM
304 qemu_fdt_setprop_cells(fdt, nodename, "clocks",
305 prci_phandle, PRCI_CLK_TLCLK);
04e7edd1
BM
306 qemu_fdt_setprop_cell(fdt, nodename, "interrupt-parent", plic_phandle);
307 qemu_fdt_setprop_cell(fdt, nodename, "interrupts", SIFIVE_U_UART0_IRQ);
a7240d1e
MC
308
309 qemu_fdt_add_subnode(fdt, "/chosen");
310 qemu_fdt_setprop_string(fdt, "/chosen", "stdout-path", nodename);
7c28f4da
MC
311 if (cmdline) {
312 qemu_fdt_setprop_string(fdt, "/chosen", "bootargs", cmdline);
313 }
44e6dcd3 314
44e6dcd3
GR
315 qemu_fdt_setprop_string(fdt, "/aliases", "serial0", nodename);
316
a7240d1e
MC
317 g_free(nodename);
318}
319
523e3464 320static void sifive_u_machine_init(MachineState *machine)
a7240d1e
MC
321{
322 const struct MemmapEntry *memmap = sifive_u_memmap;
687caef1 323 SiFiveUState *s = RISCV_U_MACHINE(machine);
5aec3247 324 MemoryRegion *system_memory = get_system_memory();
a7240d1e 325 MemoryRegion *main_mem = g_new(MemoryRegion, 1);
1b3a2308 326 MemoryRegion *flash0 = g_new(MemoryRegion, 1);
fc41ae23 327 target_ulong start_addr = memmap[SIFIVE_U_DRAM].base;
5aec3247 328 int i;
a7240d1e 329
2308092b 330 /* Initialize SoC */
4eea9d7d
AF
331 object_initialize_child(OBJECT(machine), "soc", &s->soc,
332 sizeof(s->soc), TYPE_RISCV_U_SOC,
333 &error_abort, NULL);
3ca109c3
BM
334 object_property_set_uint(OBJECT(&s->soc), s->serial, "serial",
335 &error_abort);
a7240d1e
MC
336 object_property_set_bool(OBJECT(&s->soc), true, "realized",
337 &error_abort);
338
339 /* register RAM */
340 memory_region_init_ram(main_mem, NULL, "riscv.sifive.u.ram",
341 machine->ram_size, &error_fatal);
5aec3247 342 memory_region_add_subregion(system_memory, memmap[SIFIVE_U_DRAM].base,
2308092b 343 main_mem);
a7240d1e 344
1b3a2308
AF
345 /* register QSPI0 Flash */
346 memory_region_init_ram(flash0, NULL, "riscv.sifive.u.flash0",
347 memmap[SIFIVE_U_FLASH0].size, &error_fatal);
348 memory_region_add_subregion(system_memory, memmap[SIFIVE_U_FLASH0].base,
349 flash0);
350
a7240d1e 351 /* create device tree */
9f79638e 352 create_fdt(s, memmap, machine->ram_size, machine->kernel_cmdline);
a7240d1e 353
fdd1bda4 354 riscv_find_and_load_firmware(machine, BIOS_FILENAME,
02777ac3 355 memmap[SIFIVE_U_DRAM].base, NULL);
b3042223 356
a7240d1e 357 if (machine->kernel_filename) {
6478dd74
ZSDKN
358 uint64_t kernel_entry = riscv_load_kernel(machine->kernel_filename,
359 NULL);
0f8d4462
GR
360
361 if (machine->initrd_filename) {
362 hwaddr start;
363 hwaddr end = riscv_load_initrd(machine->initrd_filename,
364 machine->ram_size, kernel_entry,
365 &start);
9f79638e 366 qemu_fdt_setprop_cell(s->fdt, "/chosen",
0f8d4462 367 "linux,initrd-start", start);
9f79638e 368 qemu_fdt_setprop_cell(s->fdt, "/chosen", "linux,initrd-end",
0f8d4462
GR
369 end);
370 }
a7240d1e
MC
371 }
372
fc41ae23
AF
373 if (s->start_in_flash) {
374 start_addr = memmap[SIFIVE_U_FLASH0].base;
375 }
376
a7240d1e
MC
377 /* reset vector */
378 uint32_t reset_vec[8] = {
379 0x00000297, /* 1: auipc t0, %pcrel_hi(dtb) */
380 0x02028593, /* addi a1, t0, %pcrel_lo(1b) */
381 0xf1402573, /* csrr a0, mhartid */
382#if defined(TARGET_RISCV32)
383 0x0182a283, /* lw t0, 24(t0) */
384#elif defined(TARGET_RISCV64)
385 0x0182b283, /* ld t0, 24(t0) */
386#endif
387 0x00028067, /* jr t0 */
388 0x00000000,
fc41ae23 389 start_addr, /* start: .dword */
a7240d1e
MC
390 0x00000000,
391 /* dtb: */
392 };
393
5aec3247
MC
394 /* copy in the reset vector in little_endian byte order */
395 for (i = 0; i < sizeof(reset_vec) >> 2; i++) {
396 reset_vec[i] = cpu_to_le32(reset_vec[i]);
397 }
398 rom_add_blob_fixed_as("mrom.reset", reset_vec, sizeof(reset_vec),
399 memmap[SIFIVE_U_MROM].base, &address_space_memory);
a7240d1e
MC
400
401 /* copy in the device tree */
5aec3247
MC
402 if (fdt_pack(s->fdt) || fdt_totalsize(s->fdt) >
403 memmap[SIFIVE_U_MROM].size - sizeof(reset_vec)) {
404 error_report("not enough space to store device-tree");
405 exit(1);
406 }
407 qemu_fdt_dumpdtb(s->fdt, fdt_totalsize(s->fdt));
408 rom_add_blob_fixed_as("mrom.fdt", s->fdt, fdt_totalsize(s->fdt),
409 memmap[SIFIVE_U_MROM].base + sizeof(reset_vec),
410 &address_space_memory);
2308092b
AF
411}
412
523e3464
AF
413static bool sifive_u_machine_get_start_in_flash(Object *obj, Error **errp)
414{
415 SiFiveUState *s = RISCV_U_MACHINE(obj);
416
417 return s->start_in_flash;
418}
419
420static void sifive_u_machine_set_start_in_flash(Object *obj, bool value, Error **errp)
421{
422 SiFiveUState *s = RISCV_U_MACHINE(obj);
423
424 s->start_in_flash = value;
425}
426
3ca109c3
BM
427static void sifive_u_machine_get_serial(Object *obj, Visitor *v, const char *name,
428 void *opaque, Error **errp)
429{
430 visit_type_uint32(v, name, (uint32_t *)opaque, errp);
431}
432
433static void sifive_u_machine_set_serial(Object *obj, Visitor *v, const char *name,
434 void *opaque, Error **errp)
435{
436 visit_type_uint32(v, name, (uint32_t *)opaque, errp);
437}
438
523e3464
AF
439static void sifive_u_machine_instance_init(Object *obj)
440{
441 SiFiveUState *s = RISCV_U_MACHINE(obj);
442
443 s->start_in_flash = false;
444 object_property_add_bool(obj, "start-in-flash", sifive_u_machine_get_start_in_flash,
445 sifive_u_machine_set_start_in_flash, NULL);
446 object_property_set_description(obj, "start-in-flash",
447 "Set on to tell QEMU's ROM to jump to "
7eecec7d 448 "flash. Otherwise QEMU will jump to DRAM");
3ca109c3
BM
449
450 s->serial = OTP_SERIAL;
451 object_property_add(obj, "serial", "uint32", sifive_u_machine_get_serial,
452 sifive_u_machine_set_serial, NULL, &s->serial, NULL);
7eecec7d 453 object_property_set_description(obj, "serial", "Board serial number");
523e3464
AF
454}
455
456static void sifive_u_machine_class_init(ObjectClass *oc, void *data)
457{
458 MachineClass *mc = MACHINE_CLASS(oc);
459
460 mc->desc = "RISC-V Board compatible with SiFive U SDK";
461 mc->init = sifive_u_machine_init;
462 mc->max_cpus = SIFIVE_U_MANAGEMENT_CPU_COUNT + SIFIVE_U_COMPUTE_CPU_COUNT;
463 mc->min_cpus = SIFIVE_U_MANAGEMENT_CPU_COUNT + 1;
464 mc->default_cpus = mc->min_cpus;
465}
466
467static const TypeInfo sifive_u_machine_typeinfo = {
468 .name = MACHINE_TYPE_NAME("sifive_u"),
469 .parent = TYPE_MACHINE,
470 .class_init = sifive_u_machine_class_init,
471 .instance_init = sifive_u_machine_instance_init,
472 .instance_size = sizeof(SiFiveUState),
473};
474
475static void sifive_u_machine_init_register_types(void)
476{
477 type_register_static(&sifive_u_machine_typeinfo);
478}
479
480type_init(sifive_u_machine_init_register_types)
481
2308092b
AF
482static void riscv_sifive_u_soc_init(Object *obj)
483{
c4473127 484 MachineState *ms = MACHINE(qdev_get_machine());
2308092b
AF
485 SiFiveUSoCState *s = RISCV_U_SOC(obj);
486
ecdfe393
BM
487 object_initialize_child(obj, "e-cluster", &s->e_cluster,
488 sizeof(s->e_cluster), TYPE_CPU_CLUSTER,
489 &error_abort, NULL);
490 qdev_prop_set_uint32(DEVICE(&s->e_cluster), "cluster-id", 0);
491
492 object_initialize_child(OBJECT(&s->e_cluster), "e-cpus",
493 &s->e_cpus, sizeof(s->e_cpus),
494 TYPE_RISCV_HART_ARRAY, &error_abort,
495 NULL);
496 qdev_prop_set_uint32(DEVICE(&s->e_cpus), "num-harts", 1);
497 qdev_prop_set_uint32(DEVICE(&s->e_cpus), "hartid-base", 0);
498 qdev_prop_set_string(DEVICE(&s->e_cpus), "cpu-type", SIFIVE_E_CPU);
499
500 object_initialize_child(obj, "u-cluster", &s->u_cluster,
501 sizeof(s->u_cluster), TYPE_CPU_CLUSTER,
502 &error_abort, NULL);
503 qdev_prop_set_uint32(DEVICE(&s->u_cluster), "cluster-id", 1);
504
505 object_initialize_child(OBJECT(&s->u_cluster), "u-cpus",
506 &s->u_cpus, sizeof(s->u_cpus),
507 TYPE_RISCV_HART_ARRAY, &error_abort,
508 NULL);
509 qdev_prop_set_uint32(DEVICE(&s->u_cpus), "num-harts", ms->smp.cpus - 1);
510 qdev_prop_set_uint32(DEVICE(&s->u_cpus), "hartid-base", 1);
511 qdev_prop_set_string(DEVICE(&s->u_cpus), "cpu-type", SIFIVE_U_CPU);
5a7f76a3 512
af14c840
BM
513 sysbus_init_child_obj(obj, "prci", &s->prci, sizeof(s->prci),
514 TYPE_SIFIVE_U_PRCI);
5461c4fe
BM
515 sysbus_init_child_obj(obj, "otp", &s->otp, sizeof(s->otp),
516 TYPE_SIFIVE_U_OTP);
4eea9d7d
AF
517 sysbus_init_child_obj(obj, "gem", &s->gem, sizeof(s->gem),
518 TYPE_CADENCE_GEM);
2308092b
AF
519}
520
521static void riscv_sifive_u_soc_realize(DeviceState *dev, Error **errp)
522{
c4473127 523 MachineState *ms = MACHINE(qdev_get_machine());
2308092b
AF
524 SiFiveUSoCState *s = RISCV_U_SOC(dev);
525 const struct MemmapEntry *memmap = sifive_u_memmap;
526 MemoryRegion *system_memory = get_system_memory();
527 MemoryRegion *mask_rom = g_new(MemoryRegion, 1);
a6902ef0 528 MemoryRegion *l2lim_mem = g_new(MemoryRegion, 1);
5a7f76a3 529 qemu_irq plic_gpios[SIFIVE_U_PLIC_NUM_SOURCES];
05446f41
BM
530 char *plic_hart_config;
531 size_t plic_hart_config_len;
5a7f76a3
AF
532 int i;
533 Error *err = NULL;
534 NICInfo *nd = &nd_table[0];
2308092b 535
ecdfe393
BM
536 object_property_set_bool(OBJECT(&s->e_cpus), true, "realized",
537 &error_abort);
538 object_property_set_bool(OBJECT(&s->u_cpus), true, "realized",
539 &error_abort);
540 /*
541 * The cluster must be realized after the RISC-V hart array container,
542 * as the container's CPU object is only created on realize, and the
543 * CPU must exist and have been parented into the cluster before the
544 * cluster is realized.
545 */
546 object_property_set_bool(OBJECT(&s->e_cluster), true, "realized",
547 &error_abort);
548 object_property_set_bool(OBJECT(&s->u_cluster), true, "realized",
2308092b
AF
549 &error_abort);
550
551 /* boot rom */
414c47d2 552 memory_region_init_rom(mask_rom, OBJECT(dev), "riscv.sifive.u.mrom",
2308092b
AF
553 memmap[SIFIVE_U_MROM].size, &error_fatal);
554 memory_region_add_subregion(system_memory, memmap[SIFIVE_U_MROM].base,
555 mask_rom);
a7240d1e 556
a6902ef0
AF
557 /*
558 * Add L2-LIM at reset size.
559 * This should be reduced in size as the L2 Cache Controller WayEnable
560 * register is incremented. Unfortunately I don't see a nice (or any) way
561 * to handle reducing or blocking out the L2 LIM while still allowing it
562 * be re returned to all enabled after a reset. For the time being, just
563 * leave it enabled all the time. This won't break anything, but will be
564 * too generous to misbehaving guests.
565 */
566 memory_region_init_ram(l2lim_mem, NULL, "riscv.sifive.u.l2lim",
567 memmap[SIFIVE_U_L2LIM].size, &error_fatal);
568 memory_region_add_subregion(system_memory, memmap[SIFIVE_U_L2LIM].base,
569 l2lim_mem);
570
05446f41 571 /* create PLIC hart topology configuration string */
c4473127
LX
572 plic_hart_config_len = (strlen(SIFIVE_U_PLIC_HART_CONFIG) + 1) *
573 ms->smp.cpus;
05446f41 574 plic_hart_config = g_malloc0(plic_hart_config_len);
c4473127 575 for (i = 0; i < ms->smp.cpus; i++) {
05446f41 576 if (i != 0) {
ef965ce2
BM
577 strncat(plic_hart_config, "," SIFIVE_U_PLIC_HART_CONFIG,
578 plic_hart_config_len);
579 } else {
580 strncat(plic_hart_config, "M", plic_hart_config_len);
05446f41 581 }
05446f41
BM
582 plic_hart_config_len -= (strlen(SIFIVE_U_PLIC_HART_CONFIG) + 1);
583 }
584
a7240d1e
MC
585 /* MMIO */
586 s->plic = sifive_plic_create(memmap[SIFIVE_U_PLIC].base,
05446f41 587 plic_hart_config,
a7240d1e
MC
588 SIFIVE_U_PLIC_NUM_SOURCES,
589 SIFIVE_U_PLIC_NUM_PRIORITIES,
590 SIFIVE_U_PLIC_PRIORITY_BASE,
591 SIFIVE_U_PLIC_PENDING_BASE,
592 SIFIVE_U_PLIC_ENABLE_BASE,
593 SIFIVE_U_PLIC_ENABLE_STRIDE,
594 SIFIVE_U_PLIC_CONTEXT_BASE,
595 SIFIVE_U_PLIC_CONTEXT_STRIDE,
596 memmap[SIFIVE_U_PLIC].size);
bb8136df 597 g_free(plic_hart_config);
5aec3247 598 sifive_uart_create(system_memory, memmap[SIFIVE_U_UART0].base,
647a70a1 599 serial_hd(0), qdev_get_gpio_in(DEVICE(s->plic), SIFIVE_U_UART0_IRQ));
194eef09
MC
600 sifive_uart_create(system_memory, memmap[SIFIVE_U_UART1].base,
601 serial_hd(1), qdev_get_gpio_in(DEVICE(s->plic), SIFIVE_U_UART1_IRQ));
a7240d1e 602 sifive_clint_create(memmap[SIFIVE_U_CLINT].base,
c4473127 603 memmap[SIFIVE_U_CLINT].size, ms->smp.cpus,
5f3616cc 604 SIFIVE_SIP_BASE, SIFIVE_TIMECMP_BASE, SIFIVE_TIME_BASE, false);
5a7f76a3 605
af14c840
BM
606 object_property_set_bool(OBJECT(&s->prci), true, "realized", &err);
607 sysbus_mmio_map(SYS_BUS_DEVICE(&s->prci), 0, memmap[SIFIVE_U_PRCI].base);
608
fda5b000 609 qdev_prop_set_uint32(DEVICE(&s->otp), "serial", s->serial);
5461c4fe
BM
610 object_property_set_bool(OBJECT(&s->otp), true, "realized", &err);
611 sysbus_mmio_map(SYS_BUS_DEVICE(&s->otp), 0, memmap[SIFIVE_U_OTP].base);
612
5a7f76a3
AF
613 for (i = 0; i < SIFIVE_U_PLIC_NUM_SOURCES; i++) {
614 plic_gpios[i] = qdev_get_gpio_in(DEVICE(s->plic), i);
615 }
616
617 if (nd->used) {
618 qemu_check_nic_model(nd, TYPE_CADENCE_GEM);
619 qdev_set_nic_properties(DEVICE(&s->gem), nd);
620 }
621 object_property_set_int(OBJECT(&s->gem), GEM_REVISION, "revision",
622 &error_abort);
623 object_property_set_bool(OBJECT(&s->gem), true, "realized", &err);
624 if (err) {
625 error_propagate(errp, err);
626 return;
627 }
628 sysbus_mmio_map(SYS_BUS_DEVICE(&s->gem), 0, memmap[SIFIVE_U_GEM].base);
629 sysbus_connect_irq(SYS_BUS_DEVICE(&s->gem), 0,
630 plic_gpios[SIFIVE_U_GEM_IRQ]);
7b6bb66f
BM
631
632 create_unimplemented_device("riscv.sifive.u.gem-mgmt",
633 memmap[SIFIVE_U_GEM_MGMT].base, memmap[SIFIVE_U_GEM_MGMT].size);
a7240d1e
MC
634}
635
fda5b000
AF
636static Property riscv_sifive_u_soc_props[] = {
637 DEFINE_PROP_UINT32("serial", SiFiveUSoCState, serial, OTP_SERIAL),
638 DEFINE_PROP_END_OF_LIST()
639};
640
2308092b
AF
641static void riscv_sifive_u_soc_class_init(ObjectClass *oc, void *data)
642{
643 DeviceClass *dc = DEVICE_CLASS(oc);
644
fda5b000 645 device_class_set_props(dc, riscv_sifive_u_soc_props);
2308092b
AF
646 dc->realize = riscv_sifive_u_soc_realize;
647 /* Reason: Uses serial_hds in realize function, thus can't be used twice */
648 dc->user_creatable = false;
649}
650
651static const TypeInfo riscv_sifive_u_soc_type_info = {
652 .name = TYPE_RISCV_U_SOC,
653 .parent = TYPE_DEVICE,
654 .instance_size = sizeof(SiFiveUSoCState),
655 .instance_init = riscv_sifive_u_soc_init,
656 .class_init = riscv_sifive_u_soc_class_init,
657};
658
659static void riscv_sifive_u_soc_register_types(void)
660{
661 type_register_static(&riscv_sifive_u_soc_type_info);
662}
663
664type_init(riscv_sifive_u_soc_register_types)