2 * QEMU RISC-V Host Target Interface (HTIF) Emulation
4 * Copyright (c) 2016-2017 Sagar Karandikar, sagark@eecs.berkeley.edu
5 * Copyright (c) 2017-2018 SiFive, Inc.
7 * This provides HTIF device emulation for QEMU. At the moment this allows
8 * for identical copies of bbl/linux to run on both spike and QEMU.
10 * This program is free software; you can redistribute it and/or modify it
11 * under the terms and conditions of the GNU General Public License,
12 * version 2 or later, as published by the Free Software Foundation.
14 * This program is distributed in the hope it will be useful, but WITHOUT
15 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
16 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
19 * You should have received a copy of the GNU General Public License along with
20 * this program. If not, see <http://www.gnu.org/licenses/>.
23 #include "qemu/osdep.h"
24 #include "qapi/error.h"
26 #include "hw/char/riscv_htif.h"
27 #include "hw/char/serial.h"
28 #include "chardev/char.h"
29 #include "chardev/char-fe.h"
30 #include "qemu/timer.h"
31 #include "qemu/error-report.h"
33 #define RISCV_DEBUG_HTIF 0
34 #define HTIF_DEBUG(fmt, ...) \
36 if (RISCV_DEBUG_HTIF) { \
37 qemu_log_mask(LOG_TRACE, "%s: " fmt "\n", __func__, ##__VA_ARGS__);\
41 #define HTIF_DEV_SHIFT 56
42 #define HTIF_CMD_SHIFT 48
44 #define HTIF_DEV_SYSTEM 0
45 #define HTIF_DEV_CONSOLE 1
47 #define HTIF_SYSTEM_CMD_SYSCALL 0
48 #define HTIF_CONSOLE_CMD_GETC 0
49 #define HTIF_CONSOLE_CMD_PUTC 1
51 /* PK system call number */
52 #define PK_SYS_WRITE 64
54 static uint64_t fromhost_addr
, tohost_addr
;
56 void htif_symbol_callback(const char *st_name
, int st_info
, uint64_t st_value
,
59 if (strcmp("fromhost", st_name
) == 0) {
60 fromhost_addr
= st_value
;
62 error_report("HTIF fromhost must be 8 bytes");
65 } else if (strcmp("tohost", st_name
) == 0) {
66 tohost_addr
= st_value
;
68 error_report("HTIF tohost must be 8 bytes");
75 * Called by the char dev to see if HTIF is ready to accept input.
77 static int htif_can_recv(void *opaque
)
83 * Called by the char dev to supply input to HTIF console.
84 * We assume that we will receive one character at a time.
86 static void htif_recv(void *opaque
, const uint8_t *buf
, int size
)
88 HTIFState
*s
= opaque
;
95 * TODO - we need to check whether mfromhost is zero which indicates
96 * the device is ready to receive. The current implementation
97 * will drop characters
100 uint64_t val_written
= s
->pending_read
;
101 uint64_t resp
= 0x100 | *buf
;
103 s
->fromhost
= (val_written
>> 48 << 48) | (resp
<< 16 >> 16);
107 * Called by the char dev to supply special events to the HTIF console.
110 static void htif_event(void *opaque
, QEMUChrEvent event
)
115 static int htif_be_change(void *opaque
)
117 HTIFState
*s
= opaque
;
119 qemu_chr_fe_set_handlers(&s
->chr
, htif_can_recv
, htif_recv
, htif_event
,
120 htif_be_change
, s
, NULL
, true);
126 * See below the tohost register format.
128 * Bits 63:56 indicate the "device".
129 * Bits 55:48 indicate the "command".
131 * Device 0 is the syscall device, which is used to emulate Unixy syscalls.
132 * It only implements command 0, which has two subfunctions:
133 * - If bit 0 is clear, then bits 47:0 represent a pointer to a struct
134 * describing the syscall.
135 * - If bit 1 is set, then bits 47:1 represent an exit code, with a zero
136 * value indicating success and other values indicating failure.
138 * Device 1 is the blocking character device.
139 * - Command 0 reads a character
140 * - Command 1 writes a character from the 8 LSBs of tohost
142 * For RV32, the tohost register is zero-extended, so only device=0 and
143 * command=0 (i.e. HTIF syscalls/exit codes) are supported.
145 static void htif_handle_tohost_write(HTIFState
*s
, uint64_t val_written
)
147 uint8_t device
= val_written
>> HTIF_DEV_SHIFT
;
148 uint8_t cmd
= val_written
>> HTIF_CMD_SHIFT
;
149 uint64_t payload
= val_written
& 0xFFFFFFFFFFFFULL
;
152 HTIF_DEBUG("mtohost write: device: %d cmd: %d what: %02" PRIx64
153 " -payload: %016" PRIx64
"\n", device
, cmd
, payload
& 0xFF, payload
);
156 * Currently, there is a fixed mapping of devices:
157 * 0: riscv-tests Pass/Fail Reporting Only (no syscall proxy)
160 if (unlikely(device
== HTIF_DEV_SYSTEM
)) {
161 /* frontend syscall handler, shutdown and exit code support */
162 if (cmd
== HTIF_SYSTEM_CMD_SYSCALL
) {
165 int exit_code
= payload
>> 1;
169 cpu_physical_memory_read(payload
, syscall
, sizeof(syscall
));
170 if (syscall
[0] == PK_SYS_WRITE
&&
171 syscall
[1] == HTIF_DEV_CONSOLE
&&
172 syscall
[3] == HTIF_CONSOLE_CMD_PUTC
) {
174 cpu_physical_memory_read(syscall
[2], &ch
, 1);
175 qemu_chr_fe_write(&s
->chr
, &ch
, 1);
176 resp
= 0x100 | (uint8_t)payload
;
178 qemu_log_mask(LOG_UNIMP
,
179 "pk syscall proxy not supported\n");
183 qemu_log("HTIF device %d: unknown command\n", device
);
185 } else if (likely(device
== HTIF_DEV_CONSOLE
)) {
187 if (cmd
== HTIF_CONSOLE_CMD_GETC
) {
188 /* this should be a queue, but not yet implemented as such */
189 s
->pending_read
= val_written
;
190 s
->tohost
= 0; /* clear to indicate we read */
192 } else if (cmd
== HTIF_CONSOLE_CMD_PUTC
) {
193 qemu_chr_fe_write(&s
->chr
, (uint8_t *)&payload
, 1);
194 resp
= 0x100 | (uint8_t)payload
;
196 qemu_log("HTIF device %d: unknown command\n", device
);
199 qemu_log("HTIF unknown device or command\n");
200 HTIF_DEBUG("device: %d cmd: %d what: %02" PRIx64
201 " payload: %016" PRIx64
, device
, cmd
, payload
& 0xFF, payload
);
204 * Latest bbl does not set fromhost to 0 if there is a value in tohost.
205 * With this code enabled, qemu hangs waiting for fromhost to go to 0.
206 * With this code disabled, qemu works with bbl priv v1.9.1 and v1.10.
207 * HTIF needs protocol documentation and a more complete state machine.
209 * while (!s->fromhost_inprogress &&
210 * s->fromhost != 0x0) {
213 s
->fromhost
= (val_written
>> 48 << 48) | (resp
<< 16 >> 16);
214 s
->tohost
= 0; /* clear to indicate we read */
217 #define TOHOST_OFFSET1 (s->tohost_offset)
218 #define TOHOST_OFFSET2 (s->tohost_offset + 4)
219 #define FROMHOST_OFFSET1 (s->fromhost_offset)
220 #define FROMHOST_OFFSET2 (s->fromhost_offset + 4)
222 /* CPU wants to read an HTIF register */
223 static uint64_t htif_mm_read(void *opaque
, hwaddr addr
, unsigned size
)
225 HTIFState
*s
= opaque
;
226 if (addr
== TOHOST_OFFSET1
) {
227 return s
->tohost
& 0xFFFFFFFF;
228 } else if (addr
== TOHOST_OFFSET2
) {
229 return (s
->tohost
>> 32) & 0xFFFFFFFF;
230 } else if (addr
== FROMHOST_OFFSET1
) {
231 return s
->fromhost
& 0xFFFFFFFF;
232 } else if (addr
== FROMHOST_OFFSET2
) {
233 return (s
->fromhost
>> 32) & 0xFFFFFFFF;
235 qemu_log("Invalid htif read: address %016" PRIx64
"\n",
241 /* CPU wrote to an HTIF register */
242 static void htif_mm_write(void *opaque
, hwaddr addr
,
243 uint64_t value
, unsigned size
)
245 HTIFState
*s
= opaque
;
246 if (addr
== TOHOST_OFFSET1
) {
247 if (s
->tohost
== 0x0) {
249 s
->tohost
= value
& 0xFFFFFFFF;
253 } else if (addr
== TOHOST_OFFSET2
) {
254 if (s
->allow_tohost
) {
255 s
->tohost
|= value
<< 32;
256 htif_handle_tohost_write(s
, s
->tohost
);
258 } else if (addr
== FROMHOST_OFFSET1
) {
259 s
->fromhost_inprogress
= 1;
260 s
->fromhost
= value
& 0xFFFFFFFF;
261 } else if (addr
== FROMHOST_OFFSET2
) {
262 s
->fromhost
|= value
<< 32;
263 s
->fromhost_inprogress
= 0;
265 qemu_log("Invalid htif write: address %016" PRIx64
"\n",
270 static const MemoryRegionOps htif_mm_ops
= {
271 .read
= htif_mm_read
,
272 .write
= htif_mm_write
,
275 HTIFState
*htif_mm_init(MemoryRegion
*address_space
, Chardev
*chr
,
276 uint64_t nonelf_base
, bool custom_base
)
278 uint64_t base
, size
, tohost_offset
, fromhost_offset
;
281 fromhost_addr
= nonelf_base
;
282 tohost_addr
= nonelf_base
+ 8;
284 if (!fromhost_addr
|| !tohost_addr
) {
285 error_report("Invalid HTIF fromhost or tohost address");
290 base
= MIN(tohost_addr
, fromhost_addr
);
291 size
= MAX(tohost_addr
+ 8, fromhost_addr
+ 8) - base
;
292 tohost_offset
= tohost_addr
- base
;
293 fromhost_offset
= fromhost_addr
- base
;
295 HTIFState
*s
= g_new0(HTIFState
, 1);
296 s
->tohost_offset
= tohost_offset
;
297 s
->fromhost_offset
= fromhost_offset
;
300 s
->fromhost_inprogress
= 0;
301 qemu_chr_fe_init(&s
->chr
, chr
, &error_abort
);
302 qemu_chr_fe_set_handlers(&s
->chr
, htif_can_recv
, htif_recv
, htif_event
,
303 htif_be_change
, s
, NULL
, true);
305 memory_region_init_io(&s
->mmio
, NULL
, &htif_mm_ops
, s
,
306 TYPE_HTIF_UART
, size
);
307 memory_region_add_subregion_overlap(address_space
, base
,