janet/src/core/tuple.c

168 lines
5.3 KiB
C

/*
* Copyright (c) 2018 Calvin Rose
*
* Permission is hereby granted, free of charge, to any person obtaining a copy
* of this software and associated documentation files (the "Software"), to
* deal in the Software without restriction, including without limitation the
* rights to use, copy, modify, merge, publish, distribute, sublicense, and/or
* sell copies of the Software, and to permit persons to whom the Software is
* furnished to do so, subject to the following conditions:
*
* The above copyright notice and this permission notice shall be included in
* all copies or substantial portions of the Software.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
* AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
* FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
* IN THE SOFTWARE.
*/
#include <janet/janet.h>
#include "symcache.h"
#include "gc.h"
#include "util.h"
/* Create a new empty tuple of the given size. This will return memory
* which should be filled with Janets. The memory will not be collected until
* janet_tuple_end is called. */
Janet *janet_tuple_begin(int32_t length) {
char *data = janet_gcalloc(JANET_MEMORY_TUPLE, 4 * sizeof(int32_t) + length * sizeof(Janet));
Janet *tuple = (Janet *)(data + (4 * sizeof(int32_t)));
janet_tuple_length(tuple) = length;
janet_tuple_sm_line(tuple) = 0;
janet_tuple_sm_col(tuple) = 0;
return tuple;
}
/* Finish building a tuple */
const Janet *janet_tuple_end(Janet *tuple) {
janet_tuple_hash(tuple) = janet_array_calchash(tuple, janet_tuple_length(tuple));
return (const Janet *)tuple;
}
/* Build a tuple with n values */
const Janet *janet_tuple_n(const Janet *values, int32_t n) {
Janet *t = janet_tuple_begin(n);
memcpy(t, values, sizeof(Janet) * n);
return janet_tuple_end(t);
}
/* Check if two tuples are equal */
int janet_tuple_equal(const Janet *lhs, const Janet *rhs) {
int32_t index;
int32_t llen = janet_tuple_length(lhs);
int32_t rlen = janet_tuple_length(rhs);
int32_t lhash = janet_tuple_hash(lhs);
int32_t rhash = janet_tuple_hash(rhs);
if (lhash == 0)
lhash = janet_tuple_hash(lhs) = janet_array_calchash(lhs, llen);
if (rhash == 0)
rhash = janet_tuple_hash(rhs) = janet_array_calchash(rhs, rlen);
if (lhash != rhash)
return 0;
if (llen != rlen)
return 0;
for (index = 0; index < llen; index++) {
if (!janet_equals(lhs[index], rhs[index]))
return 0;
}
return 1;
}
/* Compare tuples */
int janet_tuple_compare(const Janet *lhs, const Janet *rhs) {
int32_t i;
int32_t llen = janet_tuple_length(lhs);
int32_t rlen = janet_tuple_length(rhs);
int32_t count = llen < rlen ? llen : rlen;
for (i = 0; i < count; ++i) {
int comp = janet_compare(lhs[i], rhs[i]);
if (comp != 0) return comp;
}
if (llen < rlen)
return -1;
else if (llen > rlen)
return 1;
return 0;
}
/* C Functions */
static int cfun_slice(JanetArgs args) {
const Janet *vals;
int32_t len;
Janet *ret;
int32_t start, end;
JANET_MINARITY(args, 1);
if (!janet_indexed_view(args.v[0], &vals, &len)) JANET_THROW(args, "expected array/tuple");
/* Get start */
if (args.n < 2) {
start = 0;
} else if (janet_checktype(args.v[1], JANET_INTEGER)) {
start = janet_unwrap_integer(args.v[1]);
} else {
JANET_THROW(args, "expected integer");
}
/* Get end */
if (args.n < 3) {
end = -1;
} else if (janet_checktype(args.v[2], JANET_INTEGER)) {
end = janet_unwrap_integer(args.v[2]);
} else {
JANET_THROW(args, "expected integer");
}
if (start < 0) start = len + start;
if (end < 0) end = len + end + 1;
if (end >= start) {
int32_t i, j;
ret = janet_tuple_begin(end - start);
for (j = 0, i = start; i < end; j++, i++) {
ret[j] = vals[i];
}
} else {
ret = janet_tuple_begin(0);
}
JANET_RETURN_TUPLE(args, janet_tuple_end(ret));
}
static int cfun_prepend(JanetArgs args) {
const Janet *t;
int32_t len;
Janet *n;
JANET_FIXARITY(args, 2);
if (!janet_indexed_view(args.v[0], &t, &len)) JANET_THROW(args, "expected tuple/array");
n = janet_tuple_begin(len + 1);
memcpy(n + 1, t, sizeof(Janet) * len);
n[0] = args.v[1];
JANET_RETURN_TUPLE(args, janet_tuple_end(n));
}
static int cfun_append(JanetArgs args) {
const Janet *t;
int32_t len;
Janet *n;
JANET_FIXARITY(args, 2);
if (!janet_indexed_view(args.v[0], &t, &len)) JANET_THROW(args, "expected tuple/array");
n = janet_tuple_begin(len + 1);
memcpy(n, t, sizeof(Janet) * len);
n[len] = args.v[1];
JANET_RETURN_TUPLE(args, janet_tuple_end(n));
}
static const JanetReg cfuns[] = {
{"tuple.slice", cfun_slice},
{"tuple.append", cfun_append},
{"tuple.prepend", cfun_prepend},
{NULL, NULL}
};
/* Load the tuple module */
int janet_lib_tuple(JanetArgs args) {
JanetTable *env = janet_env(args);
janet_cfuns(env, NULL, cfuns);
return 0;
}