xref: /openbmc/qemu/hw/ppc/ppc405_boards.c (revision 407ba084)
1 /*
2  * QEMU PowerPC 405 evaluation boards emulation
3  *
4  * Copyright (c) 2007 Jocelyn Mayer
5  *
6  * Permission is hereby granted, free of charge, to any person obtaining a copy
7  * of this software and associated documentation files (the "Software"), to deal
8  * in the Software without restriction, including without limitation the rights
9  * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
10  * copies of the Software, and to permit persons to whom the Software is
11  * furnished to do so, subject to the following conditions:
12  *
13  * The above copyright notice and this permission notice shall be included in
14  * all copies or substantial portions of the Software.
15  *
16  * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17  * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18  * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
19  * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
20  * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
21  * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
22  * THE SOFTWARE.
23  */
24 #include "hw/hw.h"
25 #include "hw/ppc/ppc.h"
26 #include "ppc405.h"
27 #include "hw/timer/m48t59.h"
28 #include "hw/block/flash.h"
29 #include "sysemu/sysemu.h"
30 #include "sysemu/qtest.h"
31 #include "block/block.h"
32 #include "hw/boards.h"
33 #include "qemu/log.h"
34 #include "qemu/error-report.h"
35 #include "hw/loader.h"
36 #include "sysemu/blockdev.h"
37 #include "exec/address-spaces.h"
38 
39 #define BIOS_FILENAME "ppc405_rom.bin"
40 #define BIOS_SIZE (2048 * 1024)
41 
42 #define KERNEL_LOAD_ADDR 0x00000000
43 #define INITRD_LOAD_ADDR 0x01800000
44 
45 #define USE_FLASH_BIOS
46 
47 //#define DEBUG_BOARD_INIT
48 
49 /*****************************************************************************/
50 /* PPC405EP reference board (IBM) */
51 /* Standalone board with:
52  * - PowerPC 405EP CPU
53  * - SDRAM (0x00000000)
54  * - Flash (0xFFF80000)
55  * - SRAM  (0xFFF00000)
56  * - NVRAM (0xF0000000)
57  * - FPGA  (0xF0300000)
58  */
59 typedef struct ref405ep_fpga_t ref405ep_fpga_t;
60 struct ref405ep_fpga_t {
61     uint8_t reg0;
62     uint8_t reg1;
63 };
64 
65 static uint32_t ref405ep_fpga_readb (void *opaque, hwaddr addr)
66 {
67     ref405ep_fpga_t *fpga;
68     uint32_t ret;
69 
70     fpga = opaque;
71     switch (addr) {
72     case 0x0:
73         ret = fpga->reg0;
74         break;
75     case 0x1:
76         ret = fpga->reg1;
77         break;
78     default:
79         ret = 0;
80         break;
81     }
82 
83     return ret;
84 }
85 
86 static void ref405ep_fpga_writeb (void *opaque,
87                                   hwaddr addr, uint32_t value)
88 {
89     ref405ep_fpga_t *fpga;
90 
91     fpga = opaque;
92     switch (addr) {
93     case 0x0:
94         /* Read only */
95         break;
96     case 0x1:
97         fpga->reg1 = value;
98         break;
99     default:
100         break;
101     }
102 }
103 
104 static uint32_t ref405ep_fpga_readw (void *opaque, hwaddr addr)
105 {
106     uint32_t ret;
107 
108     ret = ref405ep_fpga_readb(opaque, addr) << 8;
109     ret |= ref405ep_fpga_readb(opaque, addr + 1);
110 
111     return ret;
112 }
113 
114 static void ref405ep_fpga_writew (void *opaque,
115                                   hwaddr addr, uint32_t value)
116 {
117     ref405ep_fpga_writeb(opaque, addr, (value >> 8) & 0xFF);
118     ref405ep_fpga_writeb(opaque, addr + 1, value & 0xFF);
119 }
120 
121 static uint32_t ref405ep_fpga_readl (void *opaque, hwaddr addr)
122 {
123     uint32_t ret;
124 
125     ret = ref405ep_fpga_readb(opaque, addr) << 24;
126     ret |= ref405ep_fpga_readb(opaque, addr + 1) << 16;
127     ret |= ref405ep_fpga_readb(opaque, addr + 2) << 8;
128     ret |= ref405ep_fpga_readb(opaque, addr + 3);
129 
130     return ret;
131 }
132 
133 static void ref405ep_fpga_writel (void *opaque,
134                                   hwaddr addr, uint32_t value)
135 {
136     ref405ep_fpga_writeb(opaque, addr, (value >> 24) & 0xFF);
137     ref405ep_fpga_writeb(opaque, addr + 1, (value >> 16) & 0xFF);
138     ref405ep_fpga_writeb(opaque, addr + 2, (value >> 8) & 0xFF);
139     ref405ep_fpga_writeb(opaque, addr + 3, value & 0xFF);
140 }
141 
142 static const MemoryRegionOps ref405ep_fpga_ops = {
143     .old_mmio = {
144         .read = {
145             ref405ep_fpga_readb, ref405ep_fpga_readw, ref405ep_fpga_readl,
146         },
147         .write = {
148             ref405ep_fpga_writeb, ref405ep_fpga_writew, ref405ep_fpga_writel,
149         },
150     },
151     .endianness = DEVICE_NATIVE_ENDIAN,
152 };
153 
154 static void ref405ep_fpga_reset (void *opaque)
155 {
156     ref405ep_fpga_t *fpga;
157 
158     fpga = opaque;
159     fpga->reg0 = 0x00;
160     fpga->reg1 = 0x0F;
161 }
162 
163 static void ref405ep_fpga_init(MemoryRegion *sysmem, uint32_t base)
164 {
165     ref405ep_fpga_t *fpga;
166     MemoryRegion *fpga_memory = g_new(MemoryRegion, 1);
167 
168     fpga = g_malloc0(sizeof(ref405ep_fpga_t));
169     memory_region_init_io(fpga_memory, NULL, &ref405ep_fpga_ops, fpga,
170                           "fpga", 0x00000100);
171     memory_region_add_subregion(sysmem, base, fpga_memory);
172     qemu_register_reset(&ref405ep_fpga_reset, fpga);
173 }
174 
175 static void ref405ep_init(MachineState *machine)
176 {
177     ram_addr_t ram_size = machine->ram_size;
178     const char *kernel_filename = machine->kernel_filename;
179     const char *kernel_cmdline = machine->kernel_cmdline;
180     const char *initrd_filename = machine->initrd_filename;
181     char *filename;
182     ppc4xx_bd_info_t bd;
183     CPUPPCState *env;
184     qemu_irq *pic;
185     MemoryRegion *bios;
186     MemoryRegion *sram = g_new(MemoryRegion, 1);
187     ram_addr_t bdloc;
188     MemoryRegion *ram_memories = g_malloc(2 * sizeof(*ram_memories));
189     hwaddr ram_bases[2], ram_sizes[2];
190     target_ulong sram_size;
191     long bios_size;
192     //int phy_addr = 0;
193     //static int phy_addr = 1;
194     target_ulong kernel_base, initrd_base;
195     long kernel_size, initrd_size;
196     int linux_boot;
197     int fl_idx, fl_sectors, len;
198     DriveInfo *dinfo;
199     MemoryRegion *sysmem = get_system_memory();
200 
201     /* XXX: fix this */
202     memory_region_allocate_system_memory(&ram_memories[0], NULL, "ef405ep.ram",
203                                          0x08000000);
204     ram_bases[0] = 0;
205     ram_sizes[0] = 0x08000000;
206     memory_region_init(&ram_memories[1], NULL, "ef405ep.ram1", 0);
207     ram_bases[1] = 0x00000000;
208     ram_sizes[1] = 0x00000000;
209     ram_size = 128 * 1024 * 1024;
210 #ifdef DEBUG_BOARD_INIT
211     printf("%s: register cpu\n", __func__);
212 #endif
213     env = ppc405ep_init(sysmem, ram_memories, ram_bases, ram_sizes,
214                         33333333, &pic, kernel_filename == NULL ? 0 : 1);
215     /* allocate SRAM */
216     sram_size = 512 * 1024;
217     memory_region_init_ram(sram, NULL, "ef405ep.sram", sram_size, &error_abort);
218     vmstate_register_ram_global(sram);
219     memory_region_add_subregion(sysmem, 0xFFF00000, sram);
220     /* allocate and load BIOS */
221 #ifdef DEBUG_BOARD_INIT
222     printf("%s: register BIOS\n", __func__);
223 #endif
224     fl_idx = 0;
225 #ifdef USE_FLASH_BIOS
226     dinfo = drive_get(IF_PFLASH, 0, fl_idx);
227     if (dinfo) {
228         bios_size = bdrv_getlength(dinfo->bdrv);
229         fl_sectors = (bios_size + 65535) >> 16;
230 #ifdef DEBUG_BOARD_INIT
231         printf("Register parallel flash %d size %lx"
232                " at addr %lx '%s' %d\n",
233                fl_idx, bios_size, -bios_size,
234                bdrv_get_device_name(dinfo->bdrv), fl_sectors);
235 #endif
236         pflash_cfi02_register((uint32_t)(-bios_size),
237                               NULL, "ef405ep.bios", bios_size,
238                               dinfo->bdrv, 65536, fl_sectors, 1,
239                               2, 0x0001, 0x22DA, 0x0000, 0x0000, 0x555, 0x2AA,
240                               1);
241         fl_idx++;
242     } else
243 #endif
244     {
245 #ifdef DEBUG_BOARD_INIT
246         printf("Load BIOS from file\n");
247 #endif
248         bios = g_new(MemoryRegion, 1);
249         memory_region_init_ram(bios, NULL, "ef405ep.bios", BIOS_SIZE,
250                                &error_abort);
251         vmstate_register_ram_global(bios);
252 
253         if (bios_name == NULL)
254             bios_name = BIOS_FILENAME;
255         filename = qemu_find_file(QEMU_FILE_TYPE_BIOS, bios_name);
256         if (filename) {
257             bios_size = load_image(filename, memory_region_get_ram_ptr(bios));
258             g_free(filename);
259             if (bios_size < 0 || bios_size > BIOS_SIZE) {
260                 error_report("Could not load PowerPC BIOS '%s'", bios_name);
261                 exit(1);
262             }
263             bios_size = (bios_size + 0xfff) & ~0xfff;
264             memory_region_add_subregion(sysmem, (uint32_t)(-bios_size), bios);
265         } else if (!qtest_enabled() || kernel_filename != NULL) {
266             error_report("Could not load PowerPC BIOS '%s'", bios_name);
267             exit(1);
268         } else {
269             /* Avoid an uninitialized variable warning */
270             bios_size = -1;
271         }
272         memory_region_set_readonly(bios, true);
273     }
274     /* Register FPGA */
275 #ifdef DEBUG_BOARD_INIT
276     printf("%s: register FPGA\n", __func__);
277 #endif
278     ref405ep_fpga_init(sysmem, 0xF0300000);
279     /* Register NVRAM */
280 #ifdef DEBUG_BOARD_INIT
281     printf("%s: register NVRAM\n", __func__);
282 #endif
283     m48t59_init(NULL, 0xF0000000, 0, 8192, 8);
284     /* Load kernel */
285     linux_boot = (kernel_filename != NULL);
286     if (linux_boot) {
287 #ifdef DEBUG_BOARD_INIT
288         printf("%s: load kernel\n", __func__);
289 #endif
290         memset(&bd, 0, sizeof(bd));
291         bd.bi_memstart = 0x00000000;
292         bd.bi_memsize = ram_size;
293         bd.bi_flashstart = -bios_size;
294         bd.bi_flashsize = -bios_size;
295         bd.bi_flashoffset = 0;
296         bd.bi_sramstart = 0xFFF00000;
297         bd.bi_sramsize = sram_size;
298         bd.bi_bootflags = 0;
299         bd.bi_intfreq = 133333333;
300         bd.bi_busfreq = 33333333;
301         bd.bi_baudrate = 115200;
302         bd.bi_s_version[0] = 'Q';
303         bd.bi_s_version[1] = 'M';
304         bd.bi_s_version[2] = 'U';
305         bd.bi_s_version[3] = '\0';
306         bd.bi_r_version[0] = 'Q';
307         bd.bi_r_version[1] = 'E';
308         bd.bi_r_version[2] = 'M';
309         bd.bi_r_version[3] = 'U';
310         bd.bi_r_version[4] = '\0';
311         bd.bi_procfreq = 133333333;
312         bd.bi_plb_busfreq = 33333333;
313         bd.bi_pci_busfreq = 33333333;
314         bd.bi_opbfreq = 33333333;
315         bdloc = ppc405_set_bootinfo(env, &bd, 0x00000001);
316         env->gpr[3] = bdloc;
317         kernel_base = KERNEL_LOAD_ADDR;
318         /* now we can load the kernel */
319         kernel_size = load_image_targphys(kernel_filename, kernel_base,
320                                           ram_size - kernel_base);
321         if (kernel_size < 0) {
322             fprintf(stderr, "qemu: could not load kernel '%s'\n",
323                     kernel_filename);
324             exit(1);
325         }
326         printf("Load kernel size %ld at " TARGET_FMT_lx,
327                kernel_size, kernel_base);
328         /* load initrd */
329         if (initrd_filename) {
330             initrd_base = INITRD_LOAD_ADDR;
331             initrd_size = load_image_targphys(initrd_filename, initrd_base,
332                                               ram_size - initrd_base);
333             if (initrd_size < 0) {
334                 fprintf(stderr, "qemu: could not load initial ram disk '%s'\n",
335                         initrd_filename);
336                 exit(1);
337             }
338         } else {
339             initrd_base = 0;
340             initrd_size = 0;
341         }
342         env->gpr[4] = initrd_base;
343         env->gpr[5] = initrd_size;
344         if (kernel_cmdline != NULL) {
345             len = strlen(kernel_cmdline);
346             bdloc -= ((len + 255) & ~255);
347             cpu_physical_memory_write(bdloc, kernel_cmdline, len + 1);
348             env->gpr[6] = bdloc;
349             env->gpr[7] = bdloc + len;
350         } else {
351             env->gpr[6] = 0;
352             env->gpr[7] = 0;
353         }
354         env->nip = KERNEL_LOAD_ADDR;
355     } else {
356         kernel_base = 0;
357         kernel_size = 0;
358         initrd_base = 0;
359         initrd_size = 0;
360         bdloc = 0;
361     }
362 #ifdef DEBUG_BOARD_INIT
363     printf("bdloc " RAM_ADDR_FMT "\n", bdloc);
364     printf("%s: Done\n", __func__);
365 #endif
366 }
367 
368 static QEMUMachine ref405ep_machine = {
369     .name = "ref405ep",
370     .desc = "ref405ep",
371     .init = ref405ep_init,
372 };
373 
374 /*****************************************************************************/
375 /* AMCC Taihu evaluation board */
376 /* - PowerPC 405EP processor
377  * - SDRAM               128 MB at 0x00000000
378  * - Boot flash          2 MB   at 0xFFE00000
379  * - Application flash   32 MB  at 0xFC000000
380  * - 2 serial ports
381  * - 2 ethernet PHY
382  * - 1 USB 1.1 device    0x50000000
383  * - 1 LCD display       0x50100000
384  * - 1 CPLD              0x50100000
385  * - 1 I2C EEPROM
386  * - 1 I2C thermal sensor
387  * - a set of LEDs
388  * - bit-bang SPI port using GPIOs
389  * - 1 EBC interface connector 0 0x50200000
390  * - 1 cardbus controller + expansion slot.
391  * - 1 PCI expansion slot.
392  */
393 typedef struct taihu_cpld_t taihu_cpld_t;
394 struct taihu_cpld_t {
395     uint8_t reg0;
396     uint8_t reg1;
397 };
398 
399 static uint32_t taihu_cpld_readb (void *opaque, hwaddr addr)
400 {
401     taihu_cpld_t *cpld;
402     uint32_t ret;
403 
404     cpld = opaque;
405     switch (addr) {
406     case 0x0:
407         ret = cpld->reg0;
408         break;
409     case 0x1:
410         ret = cpld->reg1;
411         break;
412     default:
413         ret = 0;
414         break;
415     }
416 
417     return ret;
418 }
419 
420 static void taihu_cpld_writeb (void *opaque,
421                                hwaddr addr, uint32_t value)
422 {
423     taihu_cpld_t *cpld;
424 
425     cpld = opaque;
426     switch (addr) {
427     case 0x0:
428         /* Read only */
429         break;
430     case 0x1:
431         cpld->reg1 = value;
432         break;
433     default:
434         break;
435     }
436 }
437 
438 static uint32_t taihu_cpld_readw (void *opaque, hwaddr addr)
439 {
440     uint32_t ret;
441 
442     ret = taihu_cpld_readb(opaque, addr) << 8;
443     ret |= taihu_cpld_readb(opaque, addr + 1);
444 
445     return ret;
446 }
447 
448 static void taihu_cpld_writew (void *opaque,
449                                hwaddr addr, uint32_t value)
450 {
451     taihu_cpld_writeb(opaque, addr, (value >> 8) & 0xFF);
452     taihu_cpld_writeb(opaque, addr + 1, value & 0xFF);
453 }
454 
455 static uint32_t taihu_cpld_readl (void *opaque, hwaddr addr)
456 {
457     uint32_t ret;
458 
459     ret = taihu_cpld_readb(opaque, addr) << 24;
460     ret |= taihu_cpld_readb(opaque, addr + 1) << 16;
461     ret |= taihu_cpld_readb(opaque, addr + 2) << 8;
462     ret |= taihu_cpld_readb(opaque, addr + 3);
463 
464     return ret;
465 }
466 
467 static void taihu_cpld_writel (void *opaque,
468                                hwaddr addr, uint32_t value)
469 {
470     taihu_cpld_writel(opaque, addr, (value >> 24) & 0xFF);
471     taihu_cpld_writel(opaque, addr + 1, (value >> 16) & 0xFF);
472     taihu_cpld_writel(opaque, addr + 2, (value >> 8) & 0xFF);
473     taihu_cpld_writeb(opaque, addr + 3, value & 0xFF);
474 }
475 
476 static const MemoryRegionOps taihu_cpld_ops = {
477     .old_mmio = {
478         .read = { taihu_cpld_readb, taihu_cpld_readw, taihu_cpld_readl, },
479         .write = { taihu_cpld_writeb, taihu_cpld_writew, taihu_cpld_writel, },
480     },
481     .endianness = DEVICE_NATIVE_ENDIAN,
482 };
483 
484 static void taihu_cpld_reset (void *opaque)
485 {
486     taihu_cpld_t *cpld;
487 
488     cpld = opaque;
489     cpld->reg0 = 0x01;
490     cpld->reg1 = 0x80;
491 }
492 
493 static void taihu_cpld_init(MemoryRegion *sysmem, uint32_t base)
494 {
495     taihu_cpld_t *cpld;
496     MemoryRegion *cpld_memory = g_new(MemoryRegion, 1);
497 
498     cpld = g_malloc0(sizeof(taihu_cpld_t));
499     memory_region_init_io(cpld_memory, NULL, &taihu_cpld_ops, cpld, "cpld", 0x100);
500     memory_region_add_subregion(sysmem, base, cpld_memory);
501     qemu_register_reset(&taihu_cpld_reset, cpld);
502 }
503 
504 static void taihu_405ep_init(MachineState *machine)
505 {
506     ram_addr_t ram_size = machine->ram_size;
507     const char *kernel_filename = machine->kernel_filename;
508     const char *initrd_filename = machine->initrd_filename;
509     char *filename;
510     qemu_irq *pic;
511     MemoryRegion *sysmem = get_system_memory();
512     MemoryRegion *bios;
513     MemoryRegion *ram_memories = g_malloc(2 * sizeof(*ram_memories));
514     MemoryRegion *ram = g_malloc0(sizeof(*ram));
515     hwaddr ram_bases[2], ram_sizes[2];
516     long bios_size;
517     target_ulong kernel_base, initrd_base;
518     long kernel_size, initrd_size;
519     int linux_boot;
520     int fl_idx, fl_sectors;
521     DriveInfo *dinfo;
522 
523     /* RAM is soldered to the board so the size cannot be changed */
524     ram_size = 0x08000000;
525     memory_region_allocate_system_memory(ram, NULL, "taihu_405ep.ram",
526                                          ram_size);
527 
528     ram_bases[0] = 0;
529     ram_sizes[0] = 0x04000000;
530     memory_region_init_alias(&ram_memories[0], NULL,
531                              "taihu_405ep.ram-0", ram, ram_bases[0],
532                              ram_sizes[0]);
533     ram_bases[1] = 0x04000000;
534     ram_sizes[1] = 0x04000000;
535     memory_region_init_alias(&ram_memories[1], NULL,
536                              "taihu_405ep.ram-1", ram, ram_bases[1],
537                              ram_sizes[1]);
538 #ifdef DEBUG_BOARD_INIT
539     printf("%s: register cpu\n", __func__);
540 #endif
541     ppc405ep_init(sysmem, ram_memories, ram_bases, ram_sizes,
542                   33333333, &pic, kernel_filename == NULL ? 0 : 1);
543     /* allocate and load BIOS */
544 #ifdef DEBUG_BOARD_INIT
545     printf("%s: register BIOS\n", __func__);
546 #endif
547     fl_idx = 0;
548 #if defined(USE_FLASH_BIOS)
549     dinfo = drive_get(IF_PFLASH, 0, fl_idx);
550     if (dinfo) {
551         bios_size = bdrv_getlength(dinfo->bdrv);
552         /* XXX: should check that size is 2MB */
553         //        bios_size = 2 * 1024 * 1024;
554         fl_sectors = (bios_size + 65535) >> 16;
555 #ifdef DEBUG_BOARD_INIT
556         printf("Register parallel flash %d size %lx"
557                " at addr %lx '%s' %d\n",
558                fl_idx, bios_size, -bios_size,
559                bdrv_get_device_name(dinfo->bdrv), fl_sectors);
560 #endif
561         pflash_cfi02_register((uint32_t)(-bios_size),
562                               NULL, "taihu_405ep.bios", bios_size,
563                               dinfo->bdrv, 65536, fl_sectors, 1,
564                               4, 0x0001, 0x22DA, 0x0000, 0x0000, 0x555, 0x2AA,
565                               1);
566         fl_idx++;
567     } else
568 #endif
569     {
570 #ifdef DEBUG_BOARD_INIT
571         printf("Load BIOS from file\n");
572 #endif
573         if (bios_name == NULL)
574             bios_name = BIOS_FILENAME;
575         bios = g_new(MemoryRegion, 1);
576         memory_region_init_ram(bios, NULL, "taihu_405ep.bios", BIOS_SIZE,
577                                &error_abort);
578         vmstate_register_ram_global(bios);
579         filename = qemu_find_file(QEMU_FILE_TYPE_BIOS, bios_name);
580         if (filename) {
581             bios_size = load_image(filename, memory_region_get_ram_ptr(bios));
582             g_free(filename);
583             if (bios_size < 0 || bios_size > BIOS_SIZE) {
584                 error_report("Could not load PowerPC BIOS '%s'", bios_name);
585                 exit(1);
586             }
587             bios_size = (bios_size + 0xfff) & ~0xfff;
588             memory_region_add_subregion(sysmem, (uint32_t)(-bios_size), bios);
589         } else if (!qtest_enabled()) {
590             error_report("Could not load PowerPC BIOS '%s'", bios_name);
591             exit(1);
592         }
593         memory_region_set_readonly(bios, true);
594     }
595     /* Register Linux flash */
596     dinfo = drive_get(IF_PFLASH, 0, fl_idx);
597     if (dinfo) {
598         bios_size = bdrv_getlength(dinfo->bdrv);
599         /* XXX: should check that size is 32MB */
600         bios_size = 32 * 1024 * 1024;
601         fl_sectors = (bios_size + 65535) >> 16;
602 #ifdef DEBUG_BOARD_INIT
603         printf("Register parallel flash %d size %lx"
604                " at addr " TARGET_FMT_lx " '%s'\n",
605                fl_idx, bios_size, (target_ulong)0xfc000000,
606                bdrv_get_device_name(dinfo->bdrv));
607 #endif
608         pflash_cfi02_register(0xfc000000, NULL, "taihu_405ep.flash", bios_size,
609                               dinfo->bdrv, 65536, fl_sectors, 1,
610                               4, 0x0001, 0x22DA, 0x0000, 0x0000, 0x555, 0x2AA,
611                               1);
612         fl_idx++;
613     }
614     /* Register CLPD & LCD display */
615 #ifdef DEBUG_BOARD_INIT
616     printf("%s: register CPLD\n", __func__);
617 #endif
618     taihu_cpld_init(sysmem, 0x50100000);
619     /* Load kernel */
620     linux_boot = (kernel_filename != NULL);
621     if (linux_boot) {
622 #ifdef DEBUG_BOARD_INIT
623         printf("%s: load kernel\n", __func__);
624 #endif
625         kernel_base = KERNEL_LOAD_ADDR;
626         /* now we can load the kernel */
627         kernel_size = load_image_targphys(kernel_filename, kernel_base,
628                                           ram_size - kernel_base);
629         if (kernel_size < 0) {
630             fprintf(stderr, "qemu: could not load kernel '%s'\n",
631                     kernel_filename);
632             exit(1);
633         }
634         /* load initrd */
635         if (initrd_filename) {
636             initrd_base = INITRD_LOAD_ADDR;
637             initrd_size = load_image_targphys(initrd_filename, initrd_base,
638                                               ram_size - initrd_base);
639             if (initrd_size < 0) {
640                 fprintf(stderr,
641                         "qemu: could not load initial ram disk '%s'\n",
642                         initrd_filename);
643                 exit(1);
644             }
645         } else {
646             initrd_base = 0;
647             initrd_size = 0;
648         }
649     } else {
650         kernel_base = 0;
651         kernel_size = 0;
652         initrd_base = 0;
653         initrd_size = 0;
654     }
655 #ifdef DEBUG_BOARD_INIT
656     printf("%s: Done\n", __func__);
657 #endif
658 }
659 
660 static QEMUMachine taihu_machine = {
661     .name = "taihu",
662     .desc = "taihu",
663     .init = taihu_405ep_init,
664 };
665 
666 static void ppc405_machine_init(void)
667 {
668     qemu_register_machine(&ref405ep_machine);
669     qemu_register_machine(&taihu_machine);
670 }
671 
672 machine_init(ppc405_machine_init);
673