142 lines
4.7 KiB
C
142 lines
4.7 KiB
C
#include "solo5.h"
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#include <caml/bigarray.h>
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#include <caml/memory.h>
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#include <caml/callback.h>
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#include <string.h>
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/* We currently have no need for these functions. They consist of releasing the
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* GC lock when we do operations with Solo5 with bigstrings, because of the
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* quality of bigstrings, we can execute these operations after informing OCaml
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* that it can do the work it wants on the GC in parallel. However, we don't
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* have parallelism with Solo5. This comment is to explain why we don't use
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* them when we could. */
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extern void caml_enter_blocking_section(void);
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extern void caml_leave_blocking_section(void);
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/* Note between solo5_handle_t and intnat. Currently, solo5_handle_t is an
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* integer 64, but Solo5 cannot manage more than 64 devices at the same time.
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* More practically, it would be difficult to make a unikernel that needed 64
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* or even 63 different devices. We can afford to lose one bit for both
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* solo5_handle_t (which represents our file-descriptors) and
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* solo5_handle_set_t, which can only contain file-descriptors with a value
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* between 0 and 63. */
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value miou_solo5_block_acquire(value vname, value vhandle, value vlen, value vpage) {
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CAMLparam4(vname, vhandle, vlen, vpage);
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solo5_result_t result;
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solo5_handle_t handle;
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struct solo5_block_info bi;
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result = solo5_block_acquire(String_val(vname), &handle, &bi);
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if (result == SOLO5_R_OK) {
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memcpy(Bytes_val(vhandle), (uint64_t *) &handle, sizeof(uint64_t));
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memcpy(Bytes_val(vlen), (uint64_t *) &bi.capacity, sizeof(uint64_t));
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memcpy(Bytes_val(vpage), (uint64_t *) &bi.block_size, sizeof(uint64_t));
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}
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CAMLreturn(Val_long(result));
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}
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intnat miou_solo5_block_read(intnat fd, intnat off, intnat len, value vbstr) {
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solo5_handle_t handle = fd;
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solo5_off_t offset = off;
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size_t size = len;
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solo5_result_t result;
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uint8_t *buf = (uint8_t *)Caml_ba_data_val(vbstr);
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result = solo5_block_read(handle, off, buf, size);
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return result;
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}
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intnat miou_solo5_block_write(intnat fd, intnat off, intnat len, value vbstr) {
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solo5_handle_t handle = fd;
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solo5_off_t offset = off;
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size_t size = len;
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solo5_result_t result;
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const uint8_t *buf = (uint8_t *)Caml_ba_data_val(vbstr);
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result = solo5_block_write(handle, offset, buf, size);
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return result;
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}
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value miou_solo5_net_acquire(value vname, value vhandle, value vmac, value vmtu) {
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CAMLparam3(vname, vmac, vmtu);
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solo5_result_t result;
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solo5_handle_t handle;
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struct solo5_net_info ni;
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result = solo5_net_acquire(String_val(vname), &handle, &ni);
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if (result == SOLO5_R_OK) {
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memcpy(Bytes_val(vhandle), (uint64_t *) &handle, sizeof(uint64_t));
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memcpy(Bytes_val(vmac), ni.mac_address, SOLO5_NET_ALEN);
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memcpy(Bytes_val(vmtu), (uint64_t *) &ni.mtu, sizeof(uint64_t));
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}
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CAMLreturn(Val_long(result));
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}
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/* Instead of passing the [read_size] result in data that would be allocated on
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* the C side, the OCaml side allocates a small buffer of 8 bytes to store the
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* number of bytes that Solo5 was able to read. memcpy saves our result in this
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* small buffer and, on the OCaml side, we just need to read it. It's a bit
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* like the poor man's C-style reference passage in OCaml. */
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value miou_solo5_net_read(intnat fd, intnat off, intnat len, value vread_size,
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value vbstr) {
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CAMLparam1(vread_size);
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solo5_handle_t handle = fd;
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size_t size = len;
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size_t read_size;
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solo5_result_t result;
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uint8_t *buf = (uint8_t *)Caml_ba_data_val(vbstr) + off;
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result = solo5_net_read(handle, buf, size, &read_size);
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memcpy(Bytes_val(vread_size), (uint64_t *)&read_size, sizeof(uint64_t));
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CAMLreturn(Val_long(result));
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}
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intnat miou_solo5_net_write(intnat fd, intnat off, intnat len, value vbstr) {
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solo5_handle_t handle = fd;
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size_t size = len;
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solo5_result_t result;
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uint8_t *buf = (uint8_t *)Caml_ba_data_val(vbstr) + off;
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result = solo5_net_write(handle, buf, size);
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return result;
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}
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intnat miou_solo5_yield(intnat ts) {
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solo5_time_t deadline = ts;
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solo5_handle_set_t handles;
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solo5_yield(deadline, &handles);
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return handles;
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}
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#ifndef __unused
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# if defined(_MSC_VER) && _MSC_VER >= 1500
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# define __unused(x) __pragma( warning (push) ) \
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__pragma( warning (disable:4189 ) ) \
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x \
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__pragma( warning (pop))
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# else
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# define __unused(x) x __attribute__((unused))
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# endif
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#endif
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#define __unit() value __unused(unit)
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intnat miou_solo5_clock_monotonic(__unit ()) {
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return (solo5_clock_monotonic());
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}
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intnat miou_solo5_clock_wall(__unit ()) {
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return (solo5_clock_wall());
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}
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extern void _nolibc_init(uintptr_t, size_t);
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static char *unused_argv[] = { "uniker.ml", NULL };
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int solo5_app_main(const struct solo5_start_info *si) {
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_nolibc_init(si->heap_start, si->heap_size);
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caml_startup(unused_argv);
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return (0);
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}
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