2 * PXA270-based Zipit Z2 device
4 * Copyright (c) 2011 by Vasily Khoruzhick <anarsoul@gmail.com>
6 * Code is based on mainstone platform.
8 * This code is licensed under the GNU GPL v2.
10 * Contributions after 2012-01-13 are licensed under the terms of the
11 * GNU GPL, version 2 or (at your option) any later version.
14 #include "qemu/osdep.h"
16 #include "hw/arm/pxa.h"
17 #include "hw/arm/arm.h"
18 #include "hw/devices.h"
19 #include "hw/i2c/i2c.h"
20 #include "hw/ssi/ssi.h"
21 #include "hw/boards.h"
22 #include "sysemu/sysemu.h"
23 #include "hw/block/flash.h"
24 #include "ui/console.h"
25 #include "hw/audio/wm8750.h"
26 #include "audio/audio.h"
27 #include "exec/address-spaces.h"
28 #include "sysemu/qtest.h"
32 #define DPRINTF(fmt, ...) \
33 printf(fmt, ## __VA_ARGS__)
35 #define DPRINTF(fmt, ...)
38 static const struct keymap map
[0x100] = {
39 [0 ... 0xff] = { -1, -1 },
40 [0x3b] = {0, 0}, /* Option = F1 */
41 [0xc8] = {0, 1}, /* Up */
42 [0xd0] = {0, 2}, /* Down */
43 [0xcb] = {0, 3}, /* Left */
44 [0xcd] = {0, 4}, /* Right */
45 [0xcf] = {0, 5}, /* End */
46 [0x0d] = {0, 6}, /* KPPLUS */
47 [0xc7] = {1, 0}, /* Home */
48 [0x10] = {1, 1}, /* Q */
49 [0x17] = {1, 2}, /* I */
50 [0x22] = {1, 3}, /* G */
51 [0x2d] = {1, 4}, /* X */
52 [0x1c] = {1, 5}, /* Enter */
53 [0x0c] = {1, 6}, /* KPMINUS */
54 [0xc9] = {2, 0}, /* PageUp */
55 [0x11] = {2, 1}, /* W */
56 [0x18] = {2, 2}, /* O */
57 [0x23] = {2, 3}, /* H */
58 [0x2e] = {2, 4}, /* C */
59 [0x38] = {2, 5}, /* LeftAlt */
60 [0xd1] = {3, 0}, /* PageDown */
61 [0x12] = {3, 1}, /* E */
62 [0x19] = {3, 2}, /* P */
63 [0x24] = {3, 3}, /* J */
64 [0x2f] = {3, 4}, /* V */
65 [0x2a] = {3, 5}, /* LeftShift */
66 [0x01] = {4, 0}, /* Esc */
67 [0x13] = {4, 1}, /* R */
68 [0x1e] = {4, 2}, /* A */
69 [0x25] = {4, 3}, /* K */
70 [0x30] = {4, 4}, /* B */
71 [0x1d] = {4, 5}, /* LeftCtrl */
72 [0x0f] = {5, 0}, /* Tab */
73 [0x14] = {5, 1}, /* T */
74 [0x1f] = {5, 2}, /* S */
75 [0x26] = {5, 3}, /* L */
76 [0x31] = {5, 4}, /* N */
77 [0x39] = {5, 5}, /* Space */
78 [0x3c] = {6, 0}, /* Stop = F2 */
79 [0x15] = {6, 1}, /* Y */
80 [0x20] = {6, 2}, /* D */
81 [0x0e] = {6, 3}, /* Backspace */
82 [0x32] = {6, 4}, /* M */
83 [0x33] = {6, 5}, /* Comma */
84 [0x3d] = {7, 0}, /* Play = F3 */
85 [0x16] = {7, 1}, /* U */
86 [0x21] = {7, 2}, /* F */
87 [0x2c] = {7, 3}, /* Z */
88 [0x27] = {7, 4}, /* Semicolon */
89 [0x34] = {7, 5}, /* Dot */
92 #define Z2_RAM_SIZE 0x02000000
93 #define Z2_FLASH_BASE 0x00000000
94 #define Z2_FLASH_SIZE 0x00800000
96 static struct arm_boot_info z2_binfo
= {
97 .loader_start
= PXA2XX_SDRAM_BASE
,
98 .ram_size
= Z2_RAM_SIZE
,
101 #define Z2_GPIO_SD_DETECT 96
102 #define Z2_GPIO_AC_IN 0
103 #define Z2_GPIO_KEY_ON 1
104 #define Z2_GPIO_LCD_CS 88
115 static uint32_t zipit_lcd_transfer(SSISlave
*dev
, uint32_t value
)
117 ZipitLCD
*z
= FROM_SSI_SLAVE(ZipitLCD
, dev
);
120 z
->buf
[z
->pos
] = value
& 0xff;
126 DPRINTF("%s: reg: 0x%.2x\n", __func__
, z
->buf
[2]);
127 z
->cur_reg
= z
->buf
[2];
130 val
= z
->buf
[1] << 8 | z
->buf
[2];
131 DPRINTF("%s: value: 0x%.4x\n", __func__
, val
);
132 if (z
->cur_reg
== 0x22 && val
== 0x0000) {
134 printf("%s: LCD enabled\n", __func__
);
135 } else if (z
->cur_reg
== 0x10 && val
== 0x0000) {
137 printf("%s: LCD disabled\n", __func__
);
141 DPRINTF("%s: unknown command!\n", __func__
);
149 static void z2_lcd_cs(void *opaque
, int line
, int level
)
151 ZipitLCD
*z2_lcd
= opaque
;
152 z2_lcd
->selected
= !level
;
155 static void zipit_lcd_realize(SSISlave
*dev
, Error
**errp
)
157 ZipitLCD
*z
= FROM_SSI_SLAVE(ZipitLCD
, dev
);
163 static VMStateDescription vmstate_zipit_lcd_state
= {
166 .minimum_version_id
= 2,
167 .fields
= (VMStateField
[]) {
168 VMSTATE_SSI_SLAVE(ssidev
, ZipitLCD
),
169 VMSTATE_INT32(selected
, ZipitLCD
),
170 VMSTATE_INT32(enabled
, ZipitLCD
),
171 VMSTATE_BUFFER(buf
, ZipitLCD
),
172 VMSTATE_UINT32(cur_reg
, ZipitLCD
),
173 VMSTATE_INT32(pos
, ZipitLCD
),
174 VMSTATE_END_OF_LIST(),
178 static void zipit_lcd_class_init(ObjectClass
*klass
, void *data
)
180 DeviceClass
*dc
= DEVICE_CLASS(klass
);
181 SSISlaveClass
*k
= SSI_SLAVE_CLASS(klass
);
183 k
->realize
= zipit_lcd_realize
;
184 k
->transfer
= zipit_lcd_transfer
;
185 dc
->vmsd
= &vmstate_zipit_lcd_state
;
188 static const TypeInfo zipit_lcd_info
= {
190 .parent
= TYPE_SSI_SLAVE
,
191 .instance_size
= sizeof(ZipitLCD
),
192 .class_init
= zipit_lcd_class_init
,
195 #define TYPE_AER915 "aer915"
196 #define AER915(obj) OBJECT_CHECK(AER915State, (obj), TYPE_AER915)
198 typedef struct AER915State
{
205 static int aer915_send(I2CSlave
*i2c
, uint8_t data
)
207 AER915State
*s
= AER915(i2c
);
209 s
->buf
[s
->len
] = data
;
211 DPRINTF("%s: message too long (%i bytes)\n",
217 DPRINTF("%s: reg %d value 0x%02x\n", __func__
,
218 s
->buf
[0], s
->buf
[1]);
224 static int aer915_event(I2CSlave
*i2c
, enum i2c_event event
)
226 AER915State
*s
= AER915(i2c
);
234 DPRINTF("%s: short message!?\n", __func__
);
246 static int aer915_recv(I2CSlave
*slave
)
248 AER915State
*s
= AER915(slave
);
252 /* Return hardcoded battery voltage,
258 /* Return 0x00 for other regs,
259 * we don't know what they are for,
260 * anyway they return 0x00 on real hardware.
269 static VMStateDescription vmstate_aer915_state
= {
272 .minimum_version_id
= 1,
273 .fields
= (VMStateField
[]) {
274 VMSTATE_INT32(len
, AER915State
),
275 VMSTATE_BUFFER(buf
, AER915State
),
276 VMSTATE_END_OF_LIST(),
280 static void aer915_class_init(ObjectClass
*klass
, void *data
)
282 DeviceClass
*dc
= DEVICE_CLASS(klass
);
283 I2CSlaveClass
*k
= I2C_SLAVE_CLASS(klass
);
285 k
->event
= aer915_event
;
286 k
->recv
= aer915_recv
;
287 k
->send
= aer915_send
;
288 dc
->vmsd
= &vmstate_aer915_state
;
291 static const TypeInfo aer915_info
= {
293 .parent
= TYPE_I2C_SLAVE
,
294 .instance_size
= sizeof(AER915State
),
295 .class_init
= aer915_class_init
,
298 static void z2_init(MachineState
*machine
)
300 const char *kernel_filename
= machine
->kernel_filename
;
301 const char *kernel_cmdline
= machine
->kernel_cmdline
;
302 const char *initrd_filename
= machine
->initrd_filename
;
303 MemoryRegion
*address_space_mem
= get_system_memory();
304 uint32_t sector_len
= 0x10000;
312 /* Setup CPU & memory */
313 mpu
= pxa270_init(address_space_mem
, z2_binfo
.ram_size
, machine
->cpu_type
);
315 #ifdef TARGET_WORDS_BIGENDIAN
320 dinfo
= drive_get(IF_PFLASH
, 0, 0);
321 if (!dinfo
&& !qtest_enabled()) {
322 error_report("Flash image must be given with the "
323 "'pflash' parameter");
327 if (!pflash_cfi01_register(Z2_FLASH_BASE
,
328 NULL
, "z2.flash0", Z2_FLASH_SIZE
,
329 dinfo
? blk_by_legacy_dinfo(dinfo
) : NULL
,
330 sector_len
, Z2_FLASH_SIZE
/ sector_len
,
331 4, 0, 0, 0, 0, be
)) {
332 error_report("Error registering flash memory");
337 pxa27x_register_keypad(mpu
->kp
, map
, 0x100);
340 pxa2xx_mmci_handlers(mpu
->mmc
,
342 qdev_get_gpio_in(mpu
->gpio
, Z2_GPIO_SD_DETECT
));
344 type_register_static(&zipit_lcd_info
);
345 type_register_static(&aer915_info
);
346 z2_lcd
= ssi_create_slave(mpu
->ssp
[1], "zipit-lcd");
347 bus
= pxa2xx_i2c_bus(mpu
->i2c
[0]);
348 i2c_create_slave(bus
, TYPE_AER915
, 0x55);
349 wm
= i2c_create_slave(bus
, TYPE_WM8750
, 0x1b);
350 mpu
->i2s
->opaque
= wm
;
351 mpu
->i2s
->codec_out
= wm8750_dac_dat
;
352 mpu
->i2s
->codec_in
= wm8750_adc_dat
;
353 wm8750_data_req_set(wm
, mpu
->i2s
->data_req
, mpu
->i2s
);
355 qdev_connect_gpio_out(mpu
->gpio
, Z2_GPIO_LCD_CS
,
356 qemu_allocate_irq(z2_lcd_cs
, z2_lcd
, 0));
358 z2_binfo
.kernel_filename
= kernel_filename
;
359 z2_binfo
.kernel_cmdline
= kernel_cmdline
;
360 z2_binfo
.initrd_filename
= initrd_filename
;
361 z2_binfo
.board_id
= 0x6dd;
362 arm_load_kernel(mpu
->cpu
, &z2_binfo
);
365 static void z2_machine_init(MachineClass
*mc
)
367 mc
->desc
= "Zipit Z2 (PXA27x)";
369 mc
->ignore_memory_transaction_failures
= true;
370 mc
->default_cpu_type
= ARM_CPU_TYPE_NAME("pxa270-c5");
373 DEFINE_MACHINE("z2", z2_machine_init
)