xref: /qemu/hw/arm/npcm7xx_boards.c (revision a8b3ddde6c756059c00663224c1ad9835d30eae5)
1b773acf4SHavard Skinnemoen /*
2b773acf4SHavard Skinnemoen  * Machine definitions for boards featuring an NPCM7xx SoC.
3b773acf4SHavard Skinnemoen  *
4b773acf4SHavard Skinnemoen  * Copyright 2020 Google LLC
5b773acf4SHavard Skinnemoen  *
6b773acf4SHavard Skinnemoen  * This program is free software; you can redistribute it and/or modify it
7b773acf4SHavard Skinnemoen  * under the terms of the GNU General Public License as published by the
8b773acf4SHavard Skinnemoen  * Free Software Foundation; either version 2 of the License, or
9b773acf4SHavard Skinnemoen  * (at your option) any later version.
10b773acf4SHavard Skinnemoen  *
11b773acf4SHavard Skinnemoen  * This program is distributed in the hope that it will be useful, but WITHOUT
12b773acf4SHavard Skinnemoen  * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
13b773acf4SHavard Skinnemoen  * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
14b773acf4SHavard Skinnemoen  * for more details.
15b773acf4SHavard Skinnemoen  */
16b773acf4SHavard Skinnemoen 
17b773acf4SHavard Skinnemoen #include "qemu/osdep.h"
18b773acf4SHavard Skinnemoen 
19b773acf4SHavard Skinnemoen #include "hw/arm/npcm7xx.h"
20b773acf4SHavard Skinnemoen #include "hw/core/cpu.h"
212ef1e0d7SHao Wu #include "hw/i2c/smbus_eeprom.h"
224e89ccd6SHavard Skinnemoen #include "hw/loader.h"
23a9d3d7b1SHao Wu #include "hw/qdev-core.h"
240eb73f23SHavard Skinnemoen #include "hw/qdev-properties.h"
25b773acf4SHavard Skinnemoen #include "qapi/error.h"
264e89ccd6SHavard Skinnemoen #include "qemu-common.h"
272c65db5eSPaolo Bonzini #include "qemu/datadir.h"
28b773acf4SHavard Skinnemoen #include "qemu/units.h"
29b773acf4SHavard Skinnemoen 
30b773acf4SHavard Skinnemoen #define NPCM750_EVB_POWER_ON_STRAPS 0x00001ff7
31b773acf4SHavard Skinnemoen #define QUANTA_GSJ_POWER_ON_STRAPS 0x00001fff
32*a8b3dddeSPatrick Venture #define QUANTA_GBS_POWER_ON_STRAPS 0x000017ff
33b773acf4SHavard Skinnemoen 
344e89ccd6SHavard Skinnemoen static const char npcm7xx_default_bootrom[] = "npcm7xx_bootrom.bin";
354e89ccd6SHavard Skinnemoen 
364e89ccd6SHavard Skinnemoen static void npcm7xx_load_bootrom(MachineState *machine, NPCM7xxState *soc)
374e89ccd6SHavard Skinnemoen {
380ad3b5d3SPaolo Bonzini     const char *bios_name = machine->firmware ?: npcm7xx_default_bootrom;
394e89ccd6SHavard Skinnemoen     g_autofree char *filename = NULL;
404e89ccd6SHavard Skinnemoen     int ret;
414e89ccd6SHavard Skinnemoen 
424e89ccd6SHavard Skinnemoen     filename = qemu_find_file(QEMU_FILE_TYPE_BIOS, bios_name);
434e89ccd6SHavard Skinnemoen     if (!filename) {
444e89ccd6SHavard Skinnemoen         error_report("Could not find ROM image '%s'", bios_name);
454e89ccd6SHavard Skinnemoen         if (!machine->kernel_filename) {
464e89ccd6SHavard Skinnemoen             /* We can't boot without a bootrom or a kernel image. */
474e89ccd6SHavard Skinnemoen             exit(1);
484e89ccd6SHavard Skinnemoen         }
494e89ccd6SHavard Skinnemoen         return;
504e89ccd6SHavard Skinnemoen     }
514e89ccd6SHavard Skinnemoen     ret = load_image_mr(filename, &soc->irom);
524e89ccd6SHavard Skinnemoen     if (ret < 0) {
534e89ccd6SHavard Skinnemoen         error_report("Failed to load ROM image '%s'", filename);
544e89ccd6SHavard Skinnemoen         exit(1);
554e89ccd6SHavard Skinnemoen     }
564e89ccd6SHavard Skinnemoen }
574e89ccd6SHavard Skinnemoen 
580eb73f23SHavard Skinnemoen static void npcm7xx_connect_flash(NPCM7xxFIUState *fiu, int cs_no,
590eb73f23SHavard Skinnemoen                                   const char *flash_type, DriveInfo *dinfo)
600eb73f23SHavard Skinnemoen {
610eb73f23SHavard Skinnemoen     DeviceState *flash;
620eb73f23SHavard Skinnemoen     qemu_irq flash_cs;
630eb73f23SHavard Skinnemoen 
640eb73f23SHavard Skinnemoen     flash = qdev_new(flash_type);
650eb73f23SHavard Skinnemoen     if (dinfo) {
660eb73f23SHavard Skinnemoen         qdev_prop_set_drive(flash, "drive", blk_by_legacy_dinfo(dinfo));
670eb73f23SHavard Skinnemoen     }
680eb73f23SHavard Skinnemoen     qdev_realize_and_unref(flash, BUS(fiu->spi), &error_fatal);
690eb73f23SHavard Skinnemoen 
700eb73f23SHavard Skinnemoen     flash_cs = qdev_get_gpio_in_named(flash, SSI_GPIO_CS, 0);
710eb73f23SHavard Skinnemoen     qdev_connect_gpio_out_named(DEVICE(fiu), "cs", cs_no, flash_cs);
720eb73f23SHavard Skinnemoen }
730eb73f23SHavard Skinnemoen 
74b773acf4SHavard Skinnemoen static void npcm7xx_connect_dram(NPCM7xxState *soc, MemoryRegion *dram)
75b773acf4SHavard Skinnemoen {
76b773acf4SHavard Skinnemoen     memory_region_add_subregion(get_system_memory(), NPCM7XX_DRAM_BA, dram);
77b773acf4SHavard Skinnemoen 
78b773acf4SHavard Skinnemoen     object_property_set_link(OBJECT(soc), "dram-mr", OBJECT(dram),
79b773acf4SHavard Skinnemoen                              &error_abort);
80b773acf4SHavard Skinnemoen }
81b773acf4SHavard Skinnemoen 
82b773acf4SHavard Skinnemoen static NPCM7xxState *npcm7xx_create_soc(MachineState *machine,
83b773acf4SHavard Skinnemoen                                         uint32_t hw_straps)
84b773acf4SHavard Skinnemoen {
85b773acf4SHavard Skinnemoen     NPCM7xxMachineClass *nmc = NPCM7XX_MACHINE_GET_CLASS(machine);
86828d651cSHao Wu     MachineClass *mc = MACHINE_CLASS(nmc);
87b773acf4SHavard Skinnemoen     Object *obj;
88b773acf4SHavard Skinnemoen 
89b773acf4SHavard Skinnemoen     if (strcmp(machine->cpu_type, mc->default_cpu_type) != 0) {
90b773acf4SHavard Skinnemoen         error_report("This board can only be used with %s",
91b773acf4SHavard Skinnemoen                      mc->default_cpu_type);
92b773acf4SHavard Skinnemoen         exit(1);
93b773acf4SHavard Skinnemoen     }
94b773acf4SHavard Skinnemoen 
95b773acf4SHavard Skinnemoen     obj = object_new_with_props(nmc->soc_type, OBJECT(machine), "soc",
96b773acf4SHavard Skinnemoen                                 &error_abort, NULL);
97b773acf4SHavard Skinnemoen     object_property_set_uint(obj, "power-on-straps", hw_straps, &error_abort);
98b773acf4SHavard Skinnemoen 
99b773acf4SHavard Skinnemoen     return NPCM7XX(obj);
100b773acf4SHavard Skinnemoen }
101b773acf4SHavard Skinnemoen 
10286248f53SHao Wu static I2CBus *npcm7xx_i2c_get_bus(NPCM7xxState *soc, uint32_t num)
10386248f53SHao Wu {
10486248f53SHao Wu     g_assert(num < ARRAY_SIZE(soc->smbus));
10586248f53SHao Wu     return I2C_BUS(qdev_get_child_bus(DEVICE(&soc->smbus[num]), "i2c-bus"));
10686248f53SHao Wu }
10786248f53SHao Wu 
1082ef1e0d7SHao Wu static void at24c_eeprom_init(NPCM7xxState *soc, int bus, uint8_t addr,
1092ef1e0d7SHao Wu                               uint32_t rsize)
1102ef1e0d7SHao Wu {
1112ef1e0d7SHao Wu     I2CBus *i2c_bus = npcm7xx_i2c_get_bus(soc, bus);
1122ef1e0d7SHao Wu     I2CSlave *i2c_dev = i2c_slave_new("at24c-eeprom", addr);
1132ef1e0d7SHao Wu     DeviceState *dev = DEVICE(i2c_dev);
1142ef1e0d7SHao Wu 
1152ef1e0d7SHao Wu     qdev_prop_set_uint32(dev, "rom-size", rsize);
1162ef1e0d7SHao Wu     i2c_slave_realize_and_unref(i2c_dev, i2c_bus, &error_abort);
1172ef1e0d7SHao Wu }
1182ef1e0d7SHao Wu 
119a9d3d7b1SHao Wu static void npcm7xx_init_pwm_splitter(NPCM7xxMachine *machine,
120a9d3d7b1SHao Wu                                       NPCM7xxState *soc, const int *fan_counts)
121a9d3d7b1SHao Wu {
122a9d3d7b1SHao Wu     SplitIRQ *splitters = machine->fan_splitter;
123a9d3d7b1SHao Wu 
124a9d3d7b1SHao Wu     /*
125a9d3d7b1SHao Wu      * PWM 0~3 belong to module 0 output 0~3.
126a9d3d7b1SHao Wu      * PWM 4~7 belong to module 1 output 0~3.
127a9d3d7b1SHao Wu      */
128a9d3d7b1SHao Wu     for (int i = 0; i < NPCM7XX_NR_PWM_MODULES; ++i) {
129a9d3d7b1SHao Wu         for (int j = 0; j < NPCM7XX_PWM_PER_MODULE; ++j) {
130a9d3d7b1SHao Wu             int splitter_no = i * NPCM7XX_PWM_PER_MODULE + j;
131a9d3d7b1SHao Wu             DeviceState *splitter;
132a9d3d7b1SHao Wu 
133a9d3d7b1SHao Wu             if (fan_counts[splitter_no] < 1) {
134a9d3d7b1SHao Wu                 continue;
135a9d3d7b1SHao Wu             }
136a9d3d7b1SHao Wu             object_initialize_child(OBJECT(machine), "fan-splitter[*]",
137a9d3d7b1SHao Wu                                     &splitters[splitter_no], TYPE_SPLIT_IRQ);
138a9d3d7b1SHao Wu             splitter = DEVICE(&splitters[splitter_no]);
139a9d3d7b1SHao Wu             qdev_prop_set_uint16(splitter, "num-lines",
140a9d3d7b1SHao Wu                                  fan_counts[splitter_no]);
141a9d3d7b1SHao Wu             qdev_realize(splitter, NULL, &error_abort);
142a9d3d7b1SHao Wu             qdev_connect_gpio_out_named(DEVICE(&soc->pwm[i]), "duty-gpio-out",
143a9d3d7b1SHao Wu                                         j, qdev_get_gpio_in(splitter, 0));
144a9d3d7b1SHao Wu         }
145a9d3d7b1SHao Wu     }
146a9d3d7b1SHao Wu }
147a9d3d7b1SHao Wu 
148a9d3d7b1SHao Wu static void npcm7xx_connect_pwm_fan(NPCM7xxState *soc, SplitIRQ *splitter,
149a9d3d7b1SHao Wu                                     int fan_no, int output_no)
150a9d3d7b1SHao Wu {
151a9d3d7b1SHao Wu     DeviceState *fan;
152a9d3d7b1SHao Wu     int fan_input;
153a9d3d7b1SHao Wu     qemu_irq fan_duty_gpio;
154a9d3d7b1SHao Wu 
155a9d3d7b1SHao Wu     g_assert(fan_no >= 0 && fan_no <= NPCM7XX_MFT_MAX_FAN_INPUT);
156a9d3d7b1SHao Wu     /*
157a9d3d7b1SHao Wu      * Fan 0~1 belong to module 0 input 0~1.
158a9d3d7b1SHao Wu      * Fan 2~3 belong to module 1 input 0~1.
159a9d3d7b1SHao Wu      * ...
160a9d3d7b1SHao Wu      * Fan 14~15 belong to module 7 input 0~1.
161a9d3d7b1SHao Wu      * Fan 16~17 belong to module 0 input 2~3.
162a9d3d7b1SHao Wu      * Fan 18~19 belong to module 1 input 2~3.
163a9d3d7b1SHao Wu      */
164a9d3d7b1SHao Wu     if (fan_no < 16) {
165a9d3d7b1SHao Wu         fan = DEVICE(&soc->mft[fan_no / 2]);
166a9d3d7b1SHao Wu         fan_input = fan_no % 2;
167a9d3d7b1SHao Wu     } else {
168a9d3d7b1SHao Wu         fan = DEVICE(&soc->mft[(fan_no - 16) / 2]);
169a9d3d7b1SHao Wu         fan_input = fan_no % 2 + 2;
170a9d3d7b1SHao Wu     }
171a9d3d7b1SHao Wu 
172a9d3d7b1SHao Wu     /* Connect the Fan to PWM module */
173a9d3d7b1SHao Wu     fan_duty_gpio = qdev_get_gpio_in_named(fan, "duty", fan_input);
174a9d3d7b1SHao Wu     qdev_connect_gpio_out(DEVICE(splitter), output_no, fan_duty_gpio);
175a9d3d7b1SHao Wu }
176a9d3d7b1SHao Wu 
17786248f53SHao Wu static void npcm750_evb_i2c_init(NPCM7xxState *soc)
17886248f53SHao Wu {
17986248f53SHao Wu     /* lm75 temperature sensor on SVB, tmp105 is compatible */
18086248f53SHao Wu     i2c_slave_create_simple(npcm7xx_i2c_get_bus(soc, 0), "tmp105", 0x48);
18186248f53SHao Wu     /* lm75 temperature sensor on EB, tmp105 is compatible */
18286248f53SHao Wu     i2c_slave_create_simple(npcm7xx_i2c_get_bus(soc, 1), "tmp105", 0x48);
18386248f53SHao Wu     /* tmp100 temperature sensor on EB, tmp105 is compatible */
18486248f53SHao Wu     i2c_slave_create_simple(npcm7xx_i2c_get_bus(soc, 2), "tmp105", 0x48);
18586248f53SHao Wu     /* tmp100 temperature sensor on SVB, tmp105 is compatible */
18686248f53SHao Wu     i2c_slave_create_simple(npcm7xx_i2c_get_bus(soc, 6), "tmp105", 0x48);
18786248f53SHao Wu }
18886248f53SHao Wu 
189a9d3d7b1SHao Wu static void npcm750_evb_fan_init(NPCM7xxMachine *machine, NPCM7xxState *soc)
190a9d3d7b1SHao Wu {
191a9d3d7b1SHao Wu     SplitIRQ *splitter = machine->fan_splitter;
192a9d3d7b1SHao Wu     static const int fan_counts[] = {2, 2, 2, 2, 2, 2, 2, 2};
193a9d3d7b1SHao Wu 
194a9d3d7b1SHao Wu     npcm7xx_init_pwm_splitter(machine, soc, fan_counts);
195a9d3d7b1SHao Wu     npcm7xx_connect_pwm_fan(soc, &splitter[0], 0x00, 0);
196a9d3d7b1SHao Wu     npcm7xx_connect_pwm_fan(soc, &splitter[0], 0x01, 1);
197a9d3d7b1SHao Wu     npcm7xx_connect_pwm_fan(soc, &splitter[1], 0x02, 0);
198a9d3d7b1SHao Wu     npcm7xx_connect_pwm_fan(soc, &splitter[1], 0x03, 1);
199a9d3d7b1SHao Wu     npcm7xx_connect_pwm_fan(soc, &splitter[2], 0x04, 0);
200a9d3d7b1SHao Wu     npcm7xx_connect_pwm_fan(soc, &splitter[2], 0x05, 1);
201a9d3d7b1SHao Wu     npcm7xx_connect_pwm_fan(soc, &splitter[3], 0x06, 0);
202a9d3d7b1SHao Wu     npcm7xx_connect_pwm_fan(soc, &splitter[3], 0x07, 1);
203a9d3d7b1SHao Wu     npcm7xx_connect_pwm_fan(soc, &splitter[4], 0x08, 0);
204a9d3d7b1SHao Wu     npcm7xx_connect_pwm_fan(soc, &splitter[4], 0x09, 1);
205a9d3d7b1SHao Wu     npcm7xx_connect_pwm_fan(soc, &splitter[5], 0x0a, 0);
206a9d3d7b1SHao Wu     npcm7xx_connect_pwm_fan(soc, &splitter[5], 0x0b, 1);
207a9d3d7b1SHao Wu     npcm7xx_connect_pwm_fan(soc, &splitter[6], 0x0c, 0);
208a9d3d7b1SHao Wu     npcm7xx_connect_pwm_fan(soc, &splitter[6], 0x0d, 1);
209a9d3d7b1SHao Wu     npcm7xx_connect_pwm_fan(soc, &splitter[7], 0x0e, 0);
210a9d3d7b1SHao Wu     npcm7xx_connect_pwm_fan(soc, &splitter[7], 0x0f, 1);
211a9d3d7b1SHao Wu }
212a9d3d7b1SHao Wu 
2132ef1e0d7SHao Wu static void quanta_gsj_i2c_init(NPCM7xxState *soc)
2142ef1e0d7SHao Wu {
2152ef1e0d7SHao Wu     /* GSJ machine have 4 max31725 temperature sensors, tmp105 is compatible. */
2162ef1e0d7SHao Wu     i2c_slave_create_simple(npcm7xx_i2c_get_bus(soc, 1), "tmp105", 0x5c);
2172ef1e0d7SHao Wu     i2c_slave_create_simple(npcm7xx_i2c_get_bus(soc, 2), "tmp105", 0x5c);
2182ef1e0d7SHao Wu     i2c_slave_create_simple(npcm7xx_i2c_get_bus(soc, 3), "tmp105", 0x5c);
2192ef1e0d7SHao Wu     i2c_slave_create_simple(npcm7xx_i2c_get_bus(soc, 4), "tmp105", 0x5c);
2202ef1e0d7SHao Wu 
2212ef1e0d7SHao Wu     at24c_eeprom_init(soc, 9, 0x55, 8192);
2222ef1e0d7SHao Wu     at24c_eeprom_init(soc, 10, 0x55, 8192);
2232ef1e0d7SHao Wu 
2242ef1e0d7SHao Wu     /* TODO: Add additional i2c devices. */
2252ef1e0d7SHao Wu }
2262ef1e0d7SHao Wu 
227a9d3d7b1SHao Wu static void quanta_gsj_fan_init(NPCM7xxMachine *machine, NPCM7xxState *soc)
228a9d3d7b1SHao Wu {
229a9d3d7b1SHao Wu     SplitIRQ *splitter = machine->fan_splitter;
230a9d3d7b1SHao Wu     static const int fan_counts[] = {2, 2, 2, 0, 0, 0, 0, 0};
231a9d3d7b1SHao Wu 
232a9d3d7b1SHao Wu     npcm7xx_init_pwm_splitter(machine, soc, fan_counts);
233a9d3d7b1SHao Wu     npcm7xx_connect_pwm_fan(soc, &splitter[0], 0x00, 0);
234a9d3d7b1SHao Wu     npcm7xx_connect_pwm_fan(soc, &splitter[0], 0x01, 1);
235a9d3d7b1SHao Wu     npcm7xx_connect_pwm_fan(soc, &splitter[1], 0x02, 0);
236a9d3d7b1SHao Wu     npcm7xx_connect_pwm_fan(soc, &splitter[1], 0x03, 1);
237a9d3d7b1SHao Wu     npcm7xx_connect_pwm_fan(soc, &splitter[2], 0x04, 0);
238a9d3d7b1SHao Wu     npcm7xx_connect_pwm_fan(soc, &splitter[2], 0x05, 1);
239a9d3d7b1SHao Wu }
240a9d3d7b1SHao Wu 
241b773acf4SHavard Skinnemoen static void npcm750_evb_init(MachineState *machine)
242b773acf4SHavard Skinnemoen {
243b773acf4SHavard Skinnemoen     NPCM7xxState *soc;
244b773acf4SHavard Skinnemoen 
245b773acf4SHavard Skinnemoen     soc = npcm7xx_create_soc(machine, NPCM750_EVB_POWER_ON_STRAPS);
246b773acf4SHavard Skinnemoen     npcm7xx_connect_dram(soc, machine->ram);
247b773acf4SHavard Skinnemoen     qdev_realize(DEVICE(soc), NULL, &error_fatal);
248b773acf4SHavard Skinnemoen 
2494e89ccd6SHavard Skinnemoen     npcm7xx_load_bootrom(machine, soc);
2500eb73f23SHavard Skinnemoen     npcm7xx_connect_flash(&soc->fiu[0], 0, "w25q256", drive_get(IF_MTD, 0, 0));
25186248f53SHao Wu     npcm750_evb_i2c_init(soc);
252a9d3d7b1SHao Wu     npcm750_evb_fan_init(NPCM7XX_MACHINE(machine), soc);
253b773acf4SHavard Skinnemoen     npcm7xx_load_kernel(machine, soc);
254b773acf4SHavard Skinnemoen }
255b773acf4SHavard Skinnemoen 
256b773acf4SHavard Skinnemoen static void quanta_gsj_init(MachineState *machine)
257b773acf4SHavard Skinnemoen {
258b773acf4SHavard Skinnemoen     NPCM7xxState *soc;
259b773acf4SHavard Skinnemoen 
260b773acf4SHavard Skinnemoen     soc = npcm7xx_create_soc(machine, QUANTA_GSJ_POWER_ON_STRAPS);
261b773acf4SHavard Skinnemoen     npcm7xx_connect_dram(soc, machine->ram);
262b773acf4SHavard Skinnemoen     qdev_realize(DEVICE(soc), NULL, &error_fatal);
263b773acf4SHavard Skinnemoen 
2644e89ccd6SHavard Skinnemoen     npcm7xx_load_bootrom(machine, soc);
2650eb73f23SHavard Skinnemoen     npcm7xx_connect_flash(&soc->fiu[0], 0, "mx25l25635e",
2660eb73f23SHavard Skinnemoen                           drive_get(IF_MTD, 0, 0));
2672ef1e0d7SHao Wu     quanta_gsj_i2c_init(soc);
268a9d3d7b1SHao Wu     quanta_gsj_fan_init(NPCM7XX_MACHINE(machine), soc);
269b773acf4SHavard Skinnemoen     npcm7xx_load_kernel(machine, soc);
270b773acf4SHavard Skinnemoen }
271b773acf4SHavard Skinnemoen 
272*a8b3dddeSPatrick Venture static void quanta_gbs_init(MachineState *machine)
273*a8b3dddeSPatrick Venture {
274*a8b3dddeSPatrick Venture     NPCM7xxState *soc;
275*a8b3dddeSPatrick Venture 
276*a8b3dddeSPatrick Venture     soc = npcm7xx_create_soc(machine, QUANTA_GBS_POWER_ON_STRAPS);
277*a8b3dddeSPatrick Venture     npcm7xx_connect_dram(soc, machine->ram);
278*a8b3dddeSPatrick Venture     qdev_realize(DEVICE(soc), NULL, &error_fatal);
279*a8b3dddeSPatrick Venture 
280*a8b3dddeSPatrick Venture     npcm7xx_load_bootrom(machine, soc);
281*a8b3dddeSPatrick Venture 
282*a8b3dddeSPatrick Venture     npcm7xx_connect_flash(&soc->fiu[0], 0, "mx66u51235f",
283*a8b3dddeSPatrick Venture                           drive_get(IF_MTD, 0, 0));
284*a8b3dddeSPatrick Venture 
285*a8b3dddeSPatrick Venture     npcm7xx_load_kernel(machine, soc);
286*a8b3dddeSPatrick Venture }
287*a8b3dddeSPatrick Venture 
288b773acf4SHavard Skinnemoen static void npcm7xx_set_soc_type(NPCM7xxMachineClass *nmc, const char *type)
289b773acf4SHavard Skinnemoen {
290b773acf4SHavard Skinnemoen     NPCM7xxClass *sc = NPCM7XX_CLASS(object_class_by_name(type));
291b773acf4SHavard Skinnemoen     MachineClass *mc = MACHINE_CLASS(nmc);
292b773acf4SHavard Skinnemoen 
293b773acf4SHavard Skinnemoen     nmc->soc_type = type;
294b773acf4SHavard Skinnemoen     mc->default_cpus = mc->min_cpus = mc->max_cpus = sc->num_cpus;
295b773acf4SHavard Skinnemoen }
296b773acf4SHavard Skinnemoen 
297b773acf4SHavard Skinnemoen static void npcm7xx_machine_class_init(ObjectClass *oc, void *data)
298b773acf4SHavard Skinnemoen {
299b773acf4SHavard Skinnemoen     MachineClass *mc = MACHINE_CLASS(oc);
300b773acf4SHavard Skinnemoen 
301b773acf4SHavard Skinnemoen     mc->no_floppy = 1;
302b773acf4SHavard Skinnemoen     mc->no_cdrom = 1;
303b773acf4SHavard Skinnemoen     mc->no_parallel = 1;
304b773acf4SHavard Skinnemoen     mc->default_ram_id = "ram";
305b773acf4SHavard Skinnemoen     mc->default_cpu_type = ARM_CPU_TYPE_NAME("cortex-a9");
306b773acf4SHavard Skinnemoen }
307b773acf4SHavard Skinnemoen 
308b773acf4SHavard Skinnemoen /*
309b773acf4SHavard Skinnemoen  * Schematics:
310b773acf4SHavard Skinnemoen  * https://github.com/Nuvoton-Israel/nuvoton-info/blob/master/npcm7xx-poleg/evaluation-board/board_deliverables/NPCM750x_EB_ver.A1.1_COMPLETE.pdf
311b773acf4SHavard Skinnemoen  */
312b773acf4SHavard Skinnemoen static void npcm750_evb_machine_class_init(ObjectClass *oc, void *data)
313b773acf4SHavard Skinnemoen {
314b773acf4SHavard Skinnemoen     NPCM7xxMachineClass *nmc = NPCM7XX_MACHINE_CLASS(oc);
315b773acf4SHavard Skinnemoen     MachineClass *mc = MACHINE_CLASS(oc);
316b773acf4SHavard Skinnemoen 
317b773acf4SHavard Skinnemoen     npcm7xx_set_soc_type(nmc, TYPE_NPCM750);
318b773acf4SHavard Skinnemoen 
319f548f201SPeter Maydell     mc->desc = "Nuvoton NPCM750 Evaluation Board (Cortex-A9)";
320b773acf4SHavard Skinnemoen     mc->init = npcm750_evb_init;
321b773acf4SHavard Skinnemoen     mc->default_ram_size = 512 * MiB;
322b773acf4SHavard Skinnemoen };
323b773acf4SHavard Skinnemoen 
324b773acf4SHavard Skinnemoen static void gsj_machine_class_init(ObjectClass *oc, void *data)
325b773acf4SHavard Skinnemoen {
326b773acf4SHavard Skinnemoen     NPCM7xxMachineClass *nmc = NPCM7XX_MACHINE_CLASS(oc);
327b773acf4SHavard Skinnemoen     MachineClass *mc = MACHINE_CLASS(oc);
328b773acf4SHavard Skinnemoen 
329b773acf4SHavard Skinnemoen     npcm7xx_set_soc_type(nmc, TYPE_NPCM730);
330b773acf4SHavard Skinnemoen 
331f548f201SPeter Maydell     mc->desc = "Quanta GSJ (Cortex-A9)";
332b773acf4SHavard Skinnemoen     mc->init = quanta_gsj_init;
333b773acf4SHavard Skinnemoen     mc->default_ram_size = 512 * MiB;
334b773acf4SHavard Skinnemoen };
335b773acf4SHavard Skinnemoen 
336*a8b3dddeSPatrick Venture static void gbs_bmc_machine_class_init(ObjectClass *oc, void *data)
337*a8b3dddeSPatrick Venture {
338*a8b3dddeSPatrick Venture     NPCM7xxMachineClass *nmc = NPCM7XX_MACHINE_CLASS(oc);
339*a8b3dddeSPatrick Venture     MachineClass *mc = MACHINE_CLASS(oc);
340*a8b3dddeSPatrick Venture 
341*a8b3dddeSPatrick Venture     npcm7xx_set_soc_type(nmc, TYPE_NPCM730);
342*a8b3dddeSPatrick Venture 
343*a8b3dddeSPatrick Venture     mc->desc = "Quanta GBS (Cortex-A9)";
344*a8b3dddeSPatrick Venture     mc->init = quanta_gbs_init;
345*a8b3dddeSPatrick Venture     mc->default_ram_size = 1 * GiB;
346*a8b3dddeSPatrick Venture }
347*a8b3dddeSPatrick Venture 
348b773acf4SHavard Skinnemoen static const TypeInfo npcm7xx_machine_types[] = {
349b773acf4SHavard Skinnemoen     {
350b773acf4SHavard Skinnemoen         .name           = TYPE_NPCM7XX_MACHINE,
351b773acf4SHavard Skinnemoen         .parent         = TYPE_MACHINE,
352b773acf4SHavard Skinnemoen         .instance_size  = sizeof(NPCM7xxMachine),
353b773acf4SHavard Skinnemoen         .class_size     = sizeof(NPCM7xxMachineClass),
354b773acf4SHavard Skinnemoen         .class_init     = npcm7xx_machine_class_init,
355b773acf4SHavard Skinnemoen         .abstract       = true,
356b773acf4SHavard Skinnemoen     }, {
357b773acf4SHavard Skinnemoen         .name           = MACHINE_TYPE_NAME("npcm750-evb"),
358b773acf4SHavard Skinnemoen         .parent         = TYPE_NPCM7XX_MACHINE,
359b773acf4SHavard Skinnemoen         .class_init     = npcm750_evb_machine_class_init,
360b773acf4SHavard Skinnemoen     }, {
361b773acf4SHavard Skinnemoen         .name           = MACHINE_TYPE_NAME("quanta-gsj"),
362b773acf4SHavard Skinnemoen         .parent         = TYPE_NPCM7XX_MACHINE,
363b773acf4SHavard Skinnemoen         .class_init     = gsj_machine_class_init,
364*a8b3dddeSPatrick Venture     }, {
365*a8b3dddeSPatrick Venture         .name           = MACHINE_TYPE_NAME("quanta-gbs-bmc"),
366*a8b3dddeSPatrick Venture         .parent         = TYPE_NPCM7XX_MACHINE,
367*a8b3dddeSPatrick Venture         .class_init     = gbs_bmc_machine_class_init,
368b773acf4SHavard Skinnemoen     },
369b773acf4SHavard Skinnemoen };
370b773acf4SHavard Skinnemoen 
371b773acf4SHavard Skinnemoen DEFINE_TYPES(npcm7xx_machine_types)
372