*
*/
+#include "qemu/osdep.h"
+#include "qapi/error.h"
+#include "qemu-common.h"
+#include "cpu.h"
#include "sysemu/qtest.h"
#include "hw/qdev.h"
#include "sysemu/char.h"
#include "exec/ioport.h"
#include "exec/memory.h"
#include "hw/irq.h"
+#include "sysemu/accel.h"
#include "sysemu/sysemu.h"
#include "sysemu/cpus.h"
+#include "qemu/config-file.h"
+#include "qemu/option.h"
+#include "qemu/error-report.h"
+#include "qemu/cutils.h"
+#ifdef TARGET_PPC64
+#include "hw/ppc/spapr_rtas.h"
+#endif
#define MAX_IRQ 256
static DeviceState *irq_intercept_dev;
static FILE *qtest_log_fp;
-static CharDriverState *qtest_chr;
+static CharBackend qtest_chr;
static GString *inbuf;
static int irq_levels[MAX_IRQ];
static qemu_timeval start_time;
* > write ADDR SIZE DATA
* < OK
*
+ * > b64read ADDR SIZE
+ * < OK B64_DATA
+ *
+ * > b64write ADDR SIZE B64_DATA
+ * < OK
+ *
+ * > memset ADDR SIZE VALUE
+ * < OK
+ *
* ADDR, SIZE, VALUE are all integers parsed with strtoul() with a base of 0.
+ * For 'memset' a zero size is permitted and does nothing.
*
* DATA is an arbitrarily long hex number prefixed with '0x'. If it's smaller
* than the expected size, the value will be zero filled at the end of the data
* sequence.
*
+ * B64_DATA is an arbitrarily long base64 encoded string.
+ * If the sizes do not match, the data will be truncated.
+ *
* IRQ management:
*
* > irq_intercept_in QOM-PATH
} else if (ch >= 'a' && ch <= 'f') {
return 10 + (ch - 'a');
} else if (ch >= 'A' && ch <= 'F') {
- return 10 + (ch - 'a');
+ return 10 + (ch - 'A');
} else {
return -1;
}
}
}
-static void qtest_send_prefix(CharDriverState *chr)
+static void qtest_send_prefix(CharBackend *chr)
{
qemu_timeval tv;
(long) tv.tv_sec, (long) tv.tv_usec);
}
-static void GCC_FMT_ATTR(2, 3) qtest_send(CharDriverState *chr,
- const char *fmt, ...)
+static void GCC_FMT_ATTR(1, 2) qtest_log_send(const char *fmt, ...)
{
va_list ap;
- char buffer[1024];
- size_t len;
+
+ if (!qtest_log_fp || !qtest_opened) {
+ return;
+ }
+
+ qtest_send_prefix(NULL);
va_start(ap, fmt);
- len = vsnprintf(buffer, sizeof(buffer), fmt, ap);
+ vfprintf(qtest_log_fp, fmt, ap);
va_end(ap);
+}
- qemu_chr_fe_write_all(chr, (uint8_t *)buffer, len);
+static void do_qtest_send(CharBackend *chr, const char *str, size_t len)
+{
+ qemu_chr_fe_write_all(chr, (uint8_t *)str, len);
if (qtest_log_fp && qtest_opened) {
- fprintf(qtest_log_fp, "%s", buffer);
+ fprintf(qtest_log_fp, "%s", str);
}
}
+static void qtest_send(CharBackend *chr, const char *str)
+{
+ do_qtest_send(chr, str, strlen(str));
+}
+
+static void GCC_FMT_ATTR(2, 3) qtest_sendf(CharBackend *chr,
+ const char *fmt, ...)
+{
+ va_list ap;
+ gchar *buffer;
+
+ va_start(ap, fmt);
+ buffer = g_strdup_vprintf(fmt, ap);
+ qtest_send(chr, buffer);
+ va_end(ap);
+}
+
static void qtest_irq_handler(void *opaque, int n, int level)
{
- qemu_irq *old_irqs = opaque;
- qemu_set_irq(old_irqs[n], level);
+ qemu_irq old_irq = *(qemu_irq *)opaque;
+ qemu_set_irq(old_irq, level);
if (irq_levels[n] != level) {
- CharDriverState *chr = qtest_chr;
+ CharBackend *chr = &qtest_chr;
irq_levels[n] = level;
qtest_send_prefix(chr);
- qtest_send(chr, "IRQ %s %d\n",
- level ? "raise" : "lower", n);
+ qtest_sendf(chr, "IRQ %s %d\n",
+ level ? "raise" : "lower", n);
}
}
-static void qtest_process_command(CharDriverState *chr, gchar **words)
+static void qtest_process_command(CharBackend *chr, gchar **words)
{
const gchar *command;
g_assert(command);
if (strcmp(words[0], "irq_intercept_out") == 0
|| strcmp(words[0], "irq_intercept_in") == 0) {
- DeviceState *dev;
+ DeviceState *dev;
+ NamedGPIOList *ngl;
g_assert(words[1]);
dev = DEVICE(object_resolve_path(words[1], NULL));
return;
}
- if (words[0][14] == 'o') {
- qemu_irq_intercept_out(&dev->gpio_out, qtest_irq_handler, dev->num_gpio_out);
- } else {
- qemu_irq_intercept_in(dev->gpio_in, qtest_irq_handler, dev->num_gpio_in);
+ QLIST_FOREACH(ngl, &dev->gpios, node) {
+ /* We don't support intercept of named GPIOs yet */
+ if (ngl->name) {
+ continue;
+ }
+ if (words[0][14] == 'o') {
+ int i;
+ for (i = 0; i < ngl->num_out; ++i) {
+ qemu_irq *disconnected = g_new0(qemu_irq, 1);
+ qemu_irq icpt = qemu_allocate_irq(qtest_irq_handler,
+ disconnected, i);
+
+ *disconnected = qdev_intercept_gpio_out(dev, icpt,
+ ngl->name, i);
+ }
+ } else {
+ qemu_irq_intercept_in(ngl->in, qtest_irq_handler,
+ ngl->num_in);
+ }
}
irq_intercept_dev = dev;
qtest_send_prefix(chr);
} else if (strcmp(words[0], "outb") == 0 ||
strcmp(words[0], "outw") == 0 ||
strcmp(words[0], "outl") == 0) {
- uint16_t addr;
- uint32_t value;
+ unsigned long addr;
+ unsigned long value;
g_assert(words[1] && words[2]);
- addr = strtoul(words[1], NULL, 0);
- value = strtoul(words[2], NULL, 0);
+ g_assert(qemu_strtoul(words[1], NULL, 0, &addr) == 0);
+ g_assert(qemu_strtoul(words[2], NULL, 0, &value) == 0);
+ g_assert(addr <= 0xffff);
if (words[0][3] == 'b') {
cpu_outb(addr, value);
} else if (strcmp(words[0], "inb") == 0 ||
strcmp(words[0], "inw") == 0 ||
strcmp(words[0], "inl") == 0) {
- uint16_t addr;
+ unsigned long addr;
uint32_t value = -1U;
g_assert(words[1]);
- addr = strtoul(words[1], NULL, 0);
+ g_assert(qemu_strtoul(words[1], NULL, 0, &addr) == 0);
+ g_assert(addr <= 0xffff);
if (words[0][2] == 'b') {
value = cpu_inb(addr);
value = cpu_inl(addr);
}
qtest_send_prefix(chr);
- qtest_send(chr, "OK 0x%04x\n", value);
+ qtest_sendf(chr, "OK 0x%04x\n", value);
} else if (strcmp(words[0], "writeb") == 0 ||
strcmp(words[0], "writew") == 0 ||
strcmp(words[0], "writel") == 0 ||
uint64_t value;
g_assert(words[1] && words[2]);
- addr = strtoull(words[1], NULL, 0);
- value = strtoull(words[2], NULL, 0);
+ g_assert(qemu_strtoull(words[1], NULL, 0, &addr) == 0);
+ g_assert(qemu_strtoull(words[2], NULL, 0, &value) == 0);
if (words[0][5] == 'b') {
uint8_t data = value;
uint64_t value = UINT64_C(-1);
g_assert(words[1]);
- addr = strtoull(words[1], NULL, 0);
+ g_assert(qemu_strtoull(words[1], NULL, 0, &addr) == 0);
if (words[0][4] == 'b') {
uint8_t data;
tswap64s(&value);
}
qtest_send_prefix(chr);
- qtest_send(chr, "OK 0x%016" PRIx64 "\n", value);
+ qtest_sendf(chr, "OK 0x%016" PRIx64 "\n", value);
} else if (strcmp(words[0], "read") == 0) {
uint64_t addr, len, i;
uint8_t *data;
+ char *enc;
g_assert(words[1] && words[2]);
- addr = strtoull(words[1], NULL, 0);
- len = strtoull(words[2], NULL, 0);
+ g_assert(qemu_strtoull(words[1], NULL, 0, &addr) == 0);
+ g_assert(qemu_strtoull(words[2], NULL, 0, &len) == 0);
data = g_malloc(len);
cpu_physical_memory_read(addr, data, len);
- qtest_send_prefix(chr);
- qtest_send(chr, "OK 0x");
+ enc = g_malloc(2 * len + 1);
for (i = 0; i < len; i++) {
- qtest_send(chr, "%02x", data[i]);
+ sprintf(&enc[i * 2], "%02x", data[i]);
}
- qtest_send(chr, "\n");
+
+ qtest_send_prefix(chr);
+ qtest_sendf(chr, "OK 0x%s\n", enc);
g_free(data);
+ g_free(enc);
+ } else if (strcmp(words[0], "b64read") == 0) {
+ uint64_t addr, len;
+ uint8_t *data;
+ gchar *b64_data;
+
+ g_assert(words[1] && words[2]);
+ g_assert(qemu_strtoull(words[1], NULL, 0, &addr) == 0);
+ g_assert(qemu_strtoull(words[2], NULL, 0, &len) == 0);
+
+ data = g_malloc(len);
+ cpu_physical_memory_read(addr, data, len);
+ b64_data = g_base64_encode(data, len);
+ qtest_send_prefix(chr);
+ qtest_sendf(chr, "OK %s\n", b64_data);
+
+ g_free(data);
+ g_free(b64_data);
} else if (strcmp(words[0], "write") == 0) {
uint64_t addr, len, i;
uint8_t *data;
size_t data_len;
g_assert(words[1] && words[2] && words[3]);
- addr = strtoull(words[1], NULL, 0);
- len = strtoull(words[2], NULL, 0);
+ g_assert(qemu_strtoull(words[1], NULL, 0, &addr) == 0);
+ g_assert(qemu_strtoull(words[2], NULL, 0, &len) == 0);
data_len = strlen(words[3]);
if (data_len < 3) {
qtest_send_prefix(chr);
qtest_send(chr, "OK\n");
+ } else if (strcmp(words[0], "memset") == 0) {
+ uint64_t addr, len;
+ uint8_t *data;
+ unsigned long pattern;
+
+ g_assert(words[1] && words[2] && words[3]);
+ g_assert(qemu_strtoull(words[1], NULL, 0, &addr) == 0);
+ g_assert(qemu_strtoull(words[2], NULL, 0, &len) == 0);
+ g_assert(qemu_strtoul(words[3], NULL, 0, &pattern) == 0);
+
+ if (len) {
+ data = g_malloc(len);
+ memset(data, pattern, len);
+ cpu_physical_memory_write(addr, data, len);
+ g_free(data);
+ }
+
+ qtest_send_prefix(chr);
+ qtest_send(chr, "OK\n");
+ } else if (strcmp(words[0], "b64write") == 0) {
+ uint64_t addr, len;
+ uint8_t *data;
+ size_t data_len;
+ gsize out_len;
+
+ g_assert(words[1] && words[2] && words[3]);
+ g_assert(qemu_strtoull(words[1], NULL, 0, &addr) == 0);
+ g_assert(qemu_strtoull(words[2], NULL, 0, &len) == 0);
+
+ data_len = strlen(words[3]);
+ if (data_len < 3) {
+ qtest_send(chr, "ERR invalid argument size\n");
+ return;
+ }
+
+ data = g_base64_decode_inplace(words[3], &out_len);
+ if (out_len != len) {
+ qtest_log_send("b64write: data length mismatch (told %"PRIu64", "
+ "found %zu)\n",
+ len, out_len);
+ out_len = MIN(out_len, len);
+ }
+
+ cpu_physical_memory_write(addr, data, out_len);
+
+ qtest_send_prefix(chr);
+ qtest_send(chr, "OK\n");
+ } else if (strcmp(words[0], "endianness") == 0) {
+ qtest_send_prefix(chr);
+#if defined(TARGET_WORDS_BIGENDIAN)
+ qtest_sendf(chr, "OK big\n");
+#else
+ qtest_sendf(chr, "OK little\n");
+#endif
+#ifdef TARGET_PPC64
+ } else if (strcmp(words[0], "rtas") == 0) {
+ uint64_t res, args, ret;
+ unsigned long nargs, nret;
+
+ g_assert(qemu_strtoul(words[2], NULL, 0, &nargs) == 0);
+ g_assert(qemu_strtoull(words[3], NULL, 0, &args) == 0);
+ g_assert(qemu_strtoul(words[4], NULL, 0, &nret) == 0);
+ g_assert(qemu_strtoull(words[5], NULL, 0, &ret) == 0);
+ res = qtest_rtas_call(words[1], nargs, args, nret, ret);
+
+ qtest_send_prefix(chr);
+ qtest_sendf(chr, "OK %"PRIu64"\n", res);
+#endif
} else if (qtest_enabled() && strcmp(words[0], "clock_step") == 0) {
int64_t ns;
if (words[1]) {
- ns = strtoll(words[1], NULL, 0);
+ g_assert(qemu_strtoll(words[1], NULL, 0, &ns) == 0);
} else {
ns = qemu_clock_deadline_ns_all(QEMU_CLOCK_VIRTUAL);
}
qtest_clock_warp(qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL) + ns);
qtest_send_prefix(chr);
- qtest_send(chr, "OK %"PRIi64"\n", (int64_t)qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL));
+ qtest_sendf(chr, "OK %"PRIi64"\n",
+ (int64_t)qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL));
} else if (qtest_enabled() && strcmp(words[0], "clock_set") == 0) {
int64_t ns;
g_assert(words[1]);
- ns = strtoll(words[1], NULL, 0);
+ g_assert(qemu_strtoll(words[1], NULL, 0, &ns) == 0);
qtest_clock_warp(ns);
qtest_send_prefix(chr);
- qtest_send(chr, "OK %"PRIi64"\n", (int64_t)qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL));
+ qtest_sendf(chr, "OK %"PRIi64"\n",
+ (int64_t)qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL));
} else {
qtest_send_prefix(chr);
- qtest_send(chr, "FAIL Unknown command `%s'\n", words[0]);
+ qtest_sendf(chr, "FAIL Unknown command '%s'\n", words[0]);
}
}
-static void qtest_process_inbuf(CharDriverState *chr, GString *inbuf)
+static void qtest_process_inbuf(CharBackend *chr, GString *inbuf)
{
char *end;
static void qtest_read(void *opaque, const uint8_t *buf, int size)
{
- CharDriverState *chr = opaque;
+ CharBackend *chr = opaque;
g_string_append_len(inbuf, (const gchar *)buf, size);
qtest_process_inbuf(chr, inbuf);
}
}
-int qtest_init_accel(QEMUMachine *machine)
+static int qtest_init_accel(MachineState *ms)
{
- configure_icount("0");
-
+ QemuOpts *opts = qemu_opts_create(qemu_find_opts("icount"), NULL, 0,
+ &error_abort);
+ qemu_opt_set(opts, "shift", "0", &error_abort);
+ configure_icount(opts, &error_abort);
+ qemu_opts_del(opts);
return 0;
}
{
CharDriverState *chr;
- chr = qemu_chr_new("qtest", qtest_chrdev, NULL);
+ chr = qemu_chr_new("qtest", qtest_chrdev);
if (chr == NULL) {
error_setg(errp, "Failed to initialize device for qtest: \"%s\"",
return;
}
- qemu_chr_add_handlers(chr, qtest_can_read, qtest_read, qtest_event, chr);
- qemu_chr_fe_set_echo(chr, true);
-
- inbuf = g_string_new("");
-
if (qtest_log) {
if (strcmp(qtest_log, "none") != 0) {
qtest_log_fp = fopen(qtest_log, "w+");
qtest_log_fp = stderr;
}
- qtest_chr = chr;
+ qemu_chr_fe_init(&qtest_chr, chr, errp);
+ qemu_chr_fe_set_handlers(&qtest_chr, qtest_can_read, qtest_read,
+ qtest_event, &qtest_chr, NULL, true);
+ qemu_chr_fe_set_echo(&qtest_chr, true);
+
+ inbuf = g_string_new("");
}
bool qtest_driver(void)
{
- return qtest_chr;
+ return qtest_chr.chr != NULL;
+}
+
+static void qtest_accel_class_init(ObjectClass *oc, void *data)
+{
+ AccelClass *ac = ACCEL_CLASS(oc);
+ ac->name = "QTest";
+ ac->available = qtest_available;
+ ac->init_machine = qtest_init_accel;
+ ac->allowed = &qtest_allowed;
+}
+
+#define TYPE_QTEST_ACCEL ACCEL_CLASS_NAME("qtest")
+
+static const TypeInfo qtest_accel_type = {
+ .name = TYPE_QTEST_ACCEL,
+ .parent = TYPE_ACCEL,
+ .class_init = qtest_accel_class_init,
+};
+
+static void qtest_type_init(void)
+{
+ type_register_static(&qtest_accel_type);
}
+
+type_init(qtest_type_init);