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1 /*
2 * QEMU/MIPS pseudo-board
3 *
4 * emulates a simple machine with ISA-like bus.
5 * ISA IO space mapped to the 0x14000000 (PHYS) and
6 * ISA memory at the 0x10000000 (PHYS, 16Mb in size).
7 * All peripherial devices are attached to this "bus" with
8 * the standard PC ISA addresses.
9 */
10 #include "hw.h"
11 #include "mips.h"
12 #include "pc.h"
13 #include "isa.h"
14 #include "net.h"
15 #include "sysemu.h"
16 #include "boards.h"
17 #include "flash.h"
18 #include "qemu-log.h"
19 #include "mips-bios.h"
20 #include "ide.h"
21
22 #define PHYS_TO_VIRT(x) ((x) | ~(target_ulong)0x7fffffff)
23
24 #define VIRT_TO_PHYS_ADDEND (-((int64_t)(int32_t)0x80000000))
25
26 #define MAX_IDE_BUS 2
27
28 static const int ide_iobase[2] = { 0x1f0, 0x170 };
29 static const int ide_iobase2[2] = { 0x3f6, 0x376 };
30 static const int ide_irq[2] = { 14, 15 };
31
32 static int serial_io[MAX_SERIAL_PORTS] = { 0x3f8, 0x2f8, 0x3e8, 0x2e8 };
33 static int serial_irq[MAX_SERIAL_PORTS] = { 4, 3, 4, 3 };
34
35 static PITState *pit; /* PIT i8254 */
36
37 /* i8254 PIT is attached to the IRQ0 at PIC i8259 */
38
39 static struct _loaderparams {
40 int ram_size;
41 const char *kernel_filename;
42 const char *kernel_cmdline;
43 const char *initrd_filename;
44 } loaderparams;
45
46 static void mips_qemu_writel (void *opaque, target_phys_addr_t addr,
47 uint32_t val)
48 {
49 if ((addr & 0xffff) == 0 && val == 42)
50 qemu_system_reset_request ();
51 else if ((addr & 0xffff) == 4 && val == 42)
52 qemu_system_shutdown_request ();
53 }
54
55 static uint32_t mips_qemu_readl (void *opaque, target_phys_addr_t addr)
56 {
57 return 0;
58 }
59
60 static CPUWriteMemoryFunc * const mips_qemu_write[] = {
61 &mips_qemu_writel,
62 &mips_qemu_writel,
63 &mips_qemu_writel,
64 };
65
66 static CPUReadMemoryFunc * const mips_qemu_read[] = {
67 &mips_qemu_readl,
68 &mips_qemu_readl,
69 &mips_qemu_readl,
70 };
71
72 static int mips_qemu_iomemtype = 0;
73
74 static void load_kernel (CPUState *env)
75 {
76 int64_t entry, kernel_low, kernel_high;
77 long kernel_size, initrd_size;
78 ram_addr_t initrd_offset;
79 int ret;
80
81 kernel_size = load_elf(loaderparams.kernel_filename, VIRT_TO_PHYS_ADDEND,
82 (uint64_t *)&entry, (uint64_t *)&kernel_low,
83 (uint64_t *)&kernel_high);
84 if (kernel_size >= 0) {
85 if ((entry & ~0x7fffffffULL) == 0x80000000)
86 entry = (int32_t)entry;
87 env->active_tc.PC = entry;
88 } else {
89 fprintf(stderr, "qemu: could not load kernel '%s'\n",
90 loaderparams.kernel_filename);
91 exit(1);
92 }
93
94 /* load initrd */
95 initrd_size = 0;
96 initrd_offset = 0;
97 if (loaderparams.initrd_filename) {
98 initrd_size = get_image_size (loaderparams.initrd_filename);
99 if (initrd_size > 0) {
100 initrd_offset = (kernel_high + ~TARGET_PAGE_MASK) & TARGET_PAGE_MASK;
101 if (initrd_offset + initrd_size > ram_size) {
102 fprintf(stderr,
103 "qemu: memory too small for initial ram disk '%s'\n",
104 loaderparams.initrd_filename);
105 exit(1);
106 }
107 initrd_size = load_image_targphys(loaderparams.initrd_filename,
108 initrd_offset,
109 ram_size - initrd_offset);
110 }
111 if (initrd_size == (target_ulong) -1) {
112 fprintf(stderr, "qemu: could not load initial ram disk '%s'\n",
113 loaderparams.initrd_filename);
114 exit(1);
115 }
116 }
117
118 /* Store command line. */
119 if (initrd_size > 0) {
120 char buf[64];
121 ret = snprintf(buf, 64, "rd_start=0x" TARGET_FMT_lx " rd_size=%li ",
122 PHYS_TO_VIRT((uint32_t)initrd_offset),
123 initrd_size);
124 cpu_physical_memory_write((16 << 20) - 256, (void *)buf, 64);
125 } else {
126 ret = 0;
127 }
128 pstrcpy_targphys((16 << 20) - 256 + ret, 256,
129 loaderparams.kernel_cmdline);
130
131 stl_phys((16 << 20) - 260, 0x12345678);
132 stl_phys((16 << 20) - 264, ram_size);
133 }
134
135 static void main_cpu_reset(void *opaque)
136 {
137 CPUState *env = opaque;
138 cpu_reset(env);
139
140 if (loaderparams.kernel_filename)
141 load_kernel (env);
142 }
143
144 static const int sector_len = 32 * 1024;
145 static
146 void mips_r4k_init (ram_addr_t ram_size,
147 const char *boot_device,
148 const char *kernel_filename, const char *kernel_cmdline,
149 const char *initrd_filename, const char *cpu_model)
150 {
151 char *filename;
152 ram_addr_t ram_offset;
153 ram_addr_t bios_offset;
154 int bios_size;
155 CPUState *env;
156 RTCState *rtc_state;
157 int i;
158 qemu_irq *i8259;
159 DriveInfo *hd[MAX_IDE_BUS * MAX_IDE_DEVS];
160 DriveInfo *dinfo;
161
162 /* init CPUs */
163 if (cpu_model == NULL) {
164 #ifdef TARGET_MIPS64
165 cpu_model = "R4000";
166 #else
167 cpu_model = "24Kf";
168 #endif
169 }
170 env = cpu_init(cpu_model);
171 if (!env) {
172 fprintf(stderr, "Unable to find CPU definition\n");
173 exit(1);
174 }
175 qemu_register_reset(main_cpu_reset, env);
176
177 /* allocate RAM */
178 if (ram_size > (256 << 20)) {
179 fprintf(stderr,
180 "qemu: Too much memory for this machine: %d MB, maximum 256 MB\n",
181 ((unsigned int)ram_size / (1 << 20)));
182 exit(1);
183 }
184 ram_offset = qemu_ram_alloc(ram_size);
185
186 cpu_register_physical_memory(0, ram_size, ram_offset | IO_MEM_RAM);
187
188 if (!mips_qemu_iomemtype) {
189 mips_qemu_iomemtype = cpu_register_io_memory(mips_qemu_read,
190 mips_qemu_write, NULL);
191 }
192 cpu_register_physical_memory(0x1fbf0000, 0x10000, mips_qemu_iomemtype);
193
194 /* Try to load a BIOS image. If this fails, we continue regardless,
195 but initialize the hardware ourselves. When a kernel gets
196 preloaded we also initialize the hardware, since the BIOS wasn't
197 run. */
198 if (bios_name == NULL)
199 bios_name = BIOS_FILENAME;
200 filename = qemu_find_file(QEMU_FILE_TYPE_BIOS, bios_name);
201 if (filename) {
202 bios_size = get_image_size(filename);
203 } else {
204 bios_size = -1;
205 }
206 if ((bios_size > 0) && (bios_size <= BIOS_SIZE)) {
207 bios_offset = qemu_ram_alloc(BIOS_SIZE);
208 cpu_register_physical_memory(0x1fc00000, BIOS_SIZE,
209 bios_offset | IO_MEM_ROM);
210
211 load_image_targphys(filename, 0x1fc00000, BIOS_SIZE);
212 } else if ((dinfo = drive_get(IF_PFLASH, 0, 0)) != NULL) {
213 uint32_t mips_rom = 0x00400000;
214 bios_offset = qemu_ram_alloc(mips_rom);
215 if (!pflash_cfi01_register(0x1fc00000, bios_offset,
216 dinfo->bdrv, sector_len, mips_rom / sector_len,
217 4, 0, 0, 0, 0)) {
218 fprintf(stderr, "qemu: Error registering flash memory.\n");
219 }
220 }
221 else {
222 /* not fatal */
223 fprintf(stderr, "qemu: Warning, could not load MIPS bios '%s'\n",
224 bios_name);
225 }
226 if (filename) {
227 qemu_free(filename);
228 }
229
230 if (kernel_filename) {
231 loaderparams.ram_size = ram_size;
232 loaderparams.kernel_filename = kernel_filename;
233 loaderparams.kernel_cmdline = kernel_cmdline;
234 loaderparams.initrd_filename = initrd_filename;
235 load_kernel (env);
236 }
237
238 /* Init CPU internal devices */
239 cpu_mips_irq_init_cpu(env);
240 cpu_mips_clock_init(env);
241
242 /* The PIC is attached to the MIPS CPU INT0 pin */
243 i8259 = i8259_init(env->irq[2]);
244
245 rtc_state = rtc_init(0x70, i8259[8], 2000);
246
247 /* Register 64 KB of ISA IO space at 0x14000000 */
248 isa_mmio_init(0x14000000, 0x00010000);
249 isa_mem_base = 0x10000000;
250
251 pit = pit_init(0x40, i8259[0]);
252
253 for(i = 0; i < MAX_SERIAL_PORTS; i++) {
254 if (serial_hds[i]) {
255 serial_init(serial_io[i], i8259[serial_irq[i]], 115200,
256 serial_hds[i]);
257 }
258 }
259
260 isa_vga_init();
261
262 if (nd_table[0].vlan)
263 isa_ne2000_init(0x300, 9, &nd_table[0]);
264
265 if (drive_get_max_bus(IF_IDE) >= MAX_IDE_BUS) {
266 fprintf(stderr, "qemu: too many IDE bus\n");
267 exit(1);
268 }
269
270 for(i = 0; i < MAX_IDE_BUS * MAX_IDE_DEVS; i++) {
271 hd[i] = drive_get(IF_IDE, i / MAX_IDE_DEVS, i % MAX_IDE_DEVS);
272 }
273
274 for(i = 0; i < MAX_IDE_BUS; i++)
275 isa_ide_init(ide_iobase[i], ide_iobase2[i], i8259[ide_irq[i]],
276 hd[MAX_IDE_DEVS * i],
277 hd[MAX_IDE_DEVS * i + 1]);
278
279 i8042_init(i8259[1], i8259[12], 0x60);
280 }
281
282 static QEMUMachine mips_machine = {
283 .name = "mips",
284 .desc = "mips r4k platform",
285 .init = mips_r4k_init,
286 };
287
288 static void mips_machine_init(void)
289 {
290 qemu_register_machine(&mips_machine);
291 }
292
293 machine_init(mips_machine_init);