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595 lines
14 KiB
595 lines
14 KiB
#include "config.h"
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#include "../json.c"
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#include "../json_escaped.c"
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#include "../json_tok.c"
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#include "../param.c"
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#include <ccan/array_size/array_size.h>
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#include <ccan/err/err.h>
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#include <common/json.h>
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#include <setjmp.h>
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#include <signal.h>
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#include <unistd.h>
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char *fail_msg = NULL;
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bool failed = false;
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static bool check_fail(void) {
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if (!failed)
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return false;
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failed = false;
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return true;
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}
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struct command *cmd;
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struct command_result {
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};
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static struct command_result cmd_failed;
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struct command_result *command_fail(struct command *cmd,
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int code, const char *fmt, ...)
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{
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failed = true;
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va_list ap;
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va_start(ap, fmt);
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fail_msg = tal_vfmt(cmd, fmt, ap);
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va_end(ap);
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return &cmd_failed;
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}
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/* AUTOGENERATED MOCKS START */
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/* AUTOGENERATED MOCKS END */
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/* We do this lightningd-style: */
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enum command_mode {
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CMD_NORMAL,
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CMD_USAGE,
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CMD_CHECK
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};
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struct command {
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enum command_mode mode;
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const char *usage;
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};
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void command_set_usage(struct command *cmd, const char *usage)
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{
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cmd->usage = usage;
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}
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bool command_usage_only(const struct command *cmd)
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{
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return cmd->mode == CMD_USAGE;
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}
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bool command_check_only(const struct command *cmd)
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{
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return cmd->mode == CMD_CHECK;
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}
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struct json {
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jsmntok_t *toks;
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char *buffer;
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};
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static void convert_quotes(char *first)
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{
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while (*first != '\0') {
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if (*first == '\'')
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*first = '"';
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first++;
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}
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}
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static struct json *json_parse(const tal_t * ctx, const char *str)
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{
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struct json *j = tal(ctx, struct json);
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j->buffer = tal_strdup(j, str);
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convert_quotes(j->buffer);
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j->toks = tal_arr(j, jsmntok_t, 50);
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assert(j->toks);
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jsmn_parser parser;
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again:
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jsmn_init(&parser);
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int ret = jsmn_parse(&parser, j->buffer, strlen(j->buffer), j->toks,
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tal_count(j->toks));
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if (ret == JSMN_ERROR_NOMEM) {
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tal_resize(&j->toks, tal_count(j->toks) * 2);
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goto again;
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}
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if (ret <= 0) {
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assert(0);
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}
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return j;
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}
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static void zero_params(void)
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{
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struct json *j = json_parse(cmd, "{}");
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assert(param(cmd, j->buffer, j->toks, NULL));
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j = json_parse(cmd, "[]");
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assert(param(cmd, j->buffer, j->toks, NULL));
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}
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struct sanity {
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char *str;
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bool failed;
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int ival;
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double dval;
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char *fail_str;
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};
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struct sanity buffers[] = {
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// pass
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{"['42', '3.15']", false, 42, 3.15, NULL},
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{"{ 'u64' : '42', 'double' : '3.15' }", false, 42, 3.15, NULL},
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// fail
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{"{'u64':'42', 'double':'3.15', 'extra':'stuff'}", true, 0, 0,
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"unknown parameter"},
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{"['42', '3.15', 'stuff']", true, 0, 0, "too many"},
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{"['42', '3.15', 'null']", true, 0, 0, "too many"},
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// not enough
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{"{'u64':'42'}", true, 0, 0, "missing required"},
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{"['42']", true, 0, 0, "missing required"},
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// fail wrong type
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{"{'u64':'hello', 'double':'3.15'}", true, 0, 0, "be an unsigned 64"},
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{"['3.15', '3.15', 'stuff']", true, 0, 0, "integer"},
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};
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static void stest(const struct json *j, struct sanity *b)
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{
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u64 *ival;
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double *dval;
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if (!param(cmd, j->buffer, j->toks,
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p_req("u64", param_u64, &ival),
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p_req("double", param_double, &dval), NULL)) {
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assert(check_fail());
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assert(b->failed == true);
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if (!strstr(fail_msg, b->fail_str)) {
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printf("%s != %s\n", fail_msg, b->fail_str);
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assert(false);
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}
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} else {
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assert(!check_fail());
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assert(b->failed == false);
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assert(*ival == 42);
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assert(*dval > 3.1499 && b->dval < 3.1501);
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}
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}
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static void sanity(void)
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{
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for (int i = 0; i < ARRAY_SIZE(buffers); ++i) {
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struct json *j = json_parse(cmd, buffers[i].str);
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assert(j->toks->type == JSMN_OBJECT
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|| j->toks->type == JSMN_ARRAY);
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stest(j, &buffers[i]);
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}
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}
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/*
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* Make sure toks are passed through correctly, and also make sure
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* optional missing toks are set to NULL.
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*/
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static void tok_tok(void)
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{
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{
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unsigned int n;
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const jsmntok_t *tok = NULL;
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struct json *j = json_parse(cmd, "{ 'satoshi': '546' }");
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assert(param(cmd, j->buffer, j->toks,
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p_req("satoshi", param_tok, &tok), NULL));
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assert(tok);
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assert(json_to_number(j->buffer, tok, &n));
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assert(n == 546);
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}
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// again with missing optional parameter
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{
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/* make sure it is *not* NULL */
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const jsmntok_t *tok = (const jsmntok_t *) 65535;
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struct json *j = json_parse(cmd, "{}");
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assert(param(cmd, j->buffer, j->toks,
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p_opt("satoshi", param_tok, &tok), NULL));
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/* make sure it *is* NULL */
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assert(tok == NULL);
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}
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}
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/* check for valid but duplicate json name-value pairs */
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static void dup_names(void)
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{
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struct json *j =
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json_parse(cmd,
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"{ 'u64' : '42', 'u64' : '43', 'double' : '3.15' }");
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u64 *i;
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double *d;
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assert(!param(cmd, j->buffer, j->toks,
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p_req("u64", param_u64, &i),
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p_req("double", param_double, &d), NULL));
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}
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static void null_params(void)
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{
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uint64_t **intptrs = tal_arr(cmd, uint64_t *, 7);
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/* no null params */
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struct json *j =
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json_parse(cmd, "[ '10', '11', '12', '13', '14', '15', '16']");
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assert(param(cmd, j->buffer, j->toks,
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p_req("0", param_u64, &intptrs[0]),
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p_req("1", param_u64, &intptrs[1]),
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p_req("2", param_u64, &intptrs[2]),
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p_req("3", param_u64, &intptrs[3]),
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p_opt_def("4", param_u64, &intptrs[4], 999),
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p_opt("5", param_u64, &intptrs[5]),
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p_opt("6", param_u64, &intptrs[6]),
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NULL));
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for (int i = 0; i < tal_count(intptrs); ++i) {
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assert(intptrs[i]);
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assert(*intptrs[i] == i + 10);
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}
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/* missing at end */
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j = json_parse(cmd, "[ '10', '11', '12', '13', '14']");
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assert(param(cmd, j->buffer, j->toks,
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p_req("0", param_u64, &intptrs[0]),
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p_req("1", param_u64, &intptrs[1]),
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p_req("2", param_u64, &intptrs[2]),
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p_req("3", param_u64, &intptrs[3]),
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p_opt("4", param_u64, &intptrs[4]),
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p_opt("5", param_u64, &intptrs[5]),
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p_opt_def("6", param_u64, &intptrs[6], 888),
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NULL));
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assert(*intptrs[0] == 10);
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assert(*intptrs[1] == 11);
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assert(*intptrs[2] == 12);
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assert(*intptrs[3] == 13);
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assert(*intptrs[4] == 14);
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assert(!intptrs[5]);
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assert(*intptrs[6] == 888);
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}
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static void no_params(void)
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{
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struct json *j = json_parse(cmd, "[]");
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assert(param(cmd, j->buffer, j->toks, NULL));
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j = json_parse(cmd, "[ 'unexpected' ]");
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assert(!param(cmd, j->buffer, j->toks, NULL));
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}
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#if DEVELOPER
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/*
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* Check to make sure there are no programming mistakes.
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*/
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static void bad_programmer(void)
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{
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u64 *ival;
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u64 *ival2;
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double *dval;
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struct json *j = json_parse(cmd, "[ '25', '546', '26' ]");
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/* check for repeated names */
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assert(!param(cmd, j->buffer, j->toks,
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p_req("repeat", param_u64, &ival),
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p_req("double", param_double, &dval),
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p_req("repeat", param_u64, &ival2), NULL));
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assert(check_fail());
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assert(strstr(fail_msg, "developer error"));
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assert(!param(cmd, j->buffer, j->toks,
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p_req("repeat", param_u64, &ival),
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p_req("double", param_double, &dval),
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p_req("repeat", param_u64, &ival), NULL));
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assert(check_fail());
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assert(strstr(fail_msg, "developer error"));
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assert(!param(cmd, j->buffer, j->toks,
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p_req("u64", param_u64, &ival),
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p_req("repeat", param_double, &dval),
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p_req("repeat", param_double, &dval), NULL));
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assert(check_fail());
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assert(strstr(fail_msg, "developer error"));
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/* check for repeated arguments */
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assert(!param(cmd, j->buffer, j->toks,
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p_req("u64", param_u64, &ival),
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p_req("repeated-arg", param_u64, &ival), NULL));
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assert(check_fail());
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assert(strstr(fail_msg, "developer error"));
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assert(!param(cmd, j->buffer, j->toks,
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p_req("u64", (param_cbx) NULL, NULL), NULL));
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assert(check_fail());
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assert(strstr(fail_msg, "developer error"));
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/* Add required param after optional */
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j = json_parse(cmd, "[ '25', '546', '26', '1.1' ]");
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unsigned int *msatoshi;
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double *riskfactor;
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assert(!param(cmd, j->buffer, j->toks,
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p_req("u64", param_u64, &ival),
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p_req("double", param_double, &dval),
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p_opt_def("msatoshi", param_number, &msatoshi, 100),
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p_req("riskfactor", param_double, &riskfactor), NULL));
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assert(*msatoshi);
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assert(*msatoshi == 100);
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assert(check_fail());
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assert(strstr(fail_msg, "developer error"));
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}
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#endif
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static void add_members(struct param **params,
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char **obj,
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char **arr, unsigned int **ints)
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{
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for (int i = 0; i < tal_count(ints); ++i) {
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const char *name = tal_fmt(*params, "%i", i);
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if (i != 0) {
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tal_append_fmt(obj, ", ");
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tal_append_fmt(arr, ", ");
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}
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tal_append_fmt(obj, "\"%i\" : %i", i, i);
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tal_append_fmt(arr, "%i", i);
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param_add(params, name, true,
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typesafe_cb_preargs(struct command_result *, void **,
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param_number,
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&ints[i],
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struct command *,
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const char *,
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const char *,
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const jsmntok_t *),
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&ints[i]);
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}
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}
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/*
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* A roundabout way of initializing an array of ints to:
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* ints[0] = 0, ints[1] = 1, ... ints[499] = 499
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*/
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static void five_hundred_params(void)
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{
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struct param *params = tal_arr(NULL, struct param, 0);
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unsigned int **ints = tal_arr(params, unsigned int*, 500);
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char *obj = tal_fmt(params, "{ ");
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char *arr = tal_fmt(params, "[ ");
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add_members(¶ms, &obj, &arr, ints);
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tal_append_fmt(&obj, "}");
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tal_append_fmt(&arr, "]");
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/* first test object version */
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struct json *j = json_parse(params, obj);
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assert(param_arr(cmd, j->buffer, j->toks, params, false) == NULL);
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for (int i = 0; i < tal_count(ints); ++i) {
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assert(ints[i]);
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assert(*ints[i] == i);
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*ints[i] = 65535;
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}
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/* now test array */
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j = json_parse(params, arr);
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assert(param_arr(cmd, j->buffer, j->toks, params, false) == NULL);
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for (int i = 0; i < tal_count(ints); ++i) {
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assert(*ints[i] == i);
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}
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tal_free(params);
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}
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static void sendpay(void)
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{
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struct json *j = json_parse(cmd, "[ 'A', '123', 'hello there' '547']");
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const jsmntok_t *routetok, *note;
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u64 *msatoshi;
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unsigned *cltv;
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if (!param(cmd, j->buffer, j->toks,
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p_req("route", param_tok, &routetok),
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p_req("cltv", param_number, &cltv),
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p_opt("note", param_tok, ¬e),
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p_opt("msatoshi", param_u64, &msatoshi),
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NULL))
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assert(false);
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assert(note);
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assert(!strncmp("hello there", j->buffer + note->start,
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note->end - note->start));
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assert(msatoshi);
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assert(*msatoshi == 547);
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}
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static void sendpay_nulltok(void)
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{
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struct json *j = json_parse(cmd, "[ 'A', '123']");
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const jsmntok_t *routetok, *note = (void *) 65535;
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u64 *msatoshi;
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unsigned *cltv;
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if (!param(cmd, j->buffer, j->toks,
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p_req("route", param_tok, &routetok),
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p_req("cltv", param_number, &cltv),
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p_opt("note", param_tok, ¬e),
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p_opt("msatoshi", param_u64, &msatoshi),
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NULL))
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assert(false);
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assert(note == NULL);
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assert(msatoshi == NULL);
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}
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static void advanced(void)
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{
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{
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struct json *j = json_parse(cmd, "[ 'lightning', 24, 'tok', 543 ]");
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struct json_escaped *label;
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u64 *msat;
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u64 *msat_opt1, *msat_opt2;
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const jsmntok_t *tok;
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assert(param(cmd, j->buffer, j->toks,
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p_req("description", param_label, &label),
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p_req("msat", param_msat, &msat),
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p_req("tok", param_tok, &tok),
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p_opt("msat_opt1", param_msat, &msat_opt1),
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p_opt("msat_opt2", param_msat, &msat_opt2),
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NULL));
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assert(label != NULL);
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assert(streq(label->s, "lightning"));
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assert(*msat == 24);
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assert(tok);
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assert(msat_opt1);
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assert(*msat_opt1 == 543);
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assert(msat_opt2 == NULL);
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}
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{
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struct json *j = json_parse(cmd, "[ 3, 'foo' ]");
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struct json_escaped *label, *foo;
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assert(param(cmd, j->buffer, j->toks,
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p_req("label", param_label, &label),
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p_opt("foo", param_label, &foo),
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NULL));
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assert(streq(label->s, "3"));
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assert(streq(foo->s, "foo"));
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}
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{
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u64 *msat;
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u64 *msat2;
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struct json *j = json_parse(cmd, "[ 3 ]");
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assert(param(cmd, j->buffer, j->toks,
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p_opt_def("msat", param_msat, &msat, 23),
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p_opt_def("msat2", param_msat, &msat2, 53),
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NULL));
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assert(*msat == 3);
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assert(msat2);
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assert(*msat2 == 53);
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}
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}
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static void advanced_fail(void)
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{
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{
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struct json *j = json_parse(cmd, "[ 'anyx' ]");
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u64 *msat;
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assert(!param(cmd, j->buffer, j->toks,
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p_req("msat", param_msat, &msat),
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NULL));
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assert(check_fail());
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assert(strstr(fail_msg, "'msat' should be a positive"
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" number or 'any', not 'anyx'"));
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}
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}
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#define test_cb(cb, T, json_, value, pass) \
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{ \
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struct json *j = json_parse(cmd, json_); \
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T *v; \
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struct command_result *ret = cb(cmd, "name", j->buffer, j->toks + 1, &v); \
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assert((ret == NULL) == pass); \
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if (ret == NULL) { \
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assert(v); \
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assert(*v == value); \
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} \
|
|
}
|
|
|
|
static void param_tests(void)
|
|
{
|
|
test_cb(param_bool, bool, "[ true ]", true, true);
|
|
test_cb(param_bool, bool, "[ false ]", false, true);
|
|
test_cb(param_bool, bool, "[ tru ]", false, false);
|
|
test_cb(param_bool, bool, "[ 1 ]", false, false);
|
|
|
|
test_cb(param_percent, double, "[ -0.01 ]", 0, false);
|
|
test_cb(param_percent, double, "[ 0.00 ]", 0, true);
|
|
test_cb(param_percent, double, "[ 1 ]", 1, true);
|
|
test_cb(param_percent, double, "[ 1.1 ]", 1.1, true);
|
|
test_cb(param_percent, double, "[ 1.01 ]", 1.01, true);
|
|
test_cb(param_percent, double, "[ 99.99 ]", 99.99, true);
|
|
test_cb(param_percent, double, "[ 100.0 ]", 100, true);
|
|
test_cb(param_percent, double, "[ 100.001 ]", 100.001, true);
|
|
test_cb(param_percent, double, "[ 1000 ]", 1000, true);
|
|
test_cb(param_percent, double, "[ 'wow' ]", 0, false);
|
|
}
|
|
|
|
static void test_invoice(struct command *cmd,
|
|
const char *buffer,
|
|
const jsmntok_t *obj UNNEEDED,
|
|
const jsmntok_t *params)
|
|
{
|
|
u64 *msatoshi_val;
|
|
struct json_escaped *label_val;
|
|
const char *desc_val;
|
|
u64 *expiry;
|
|
const jsmntok_t *fallbacks;
|
|
const jsmntok_t *preimagetok;
|
|
|
|
assert(cmd->mode == CMD_USAGE);
|
|
if(!param(cmd, buffer, params,
|
|
p_req("msatoshi", param_msat, &msatoshi_val),
|
|
p_req("label", param_label, &label_val),
|
|
p_req("description", param_escaped_string, &desc_val),
|
|
p_opt("expiry", param_u64, &expiry),
|
|
p_opt("fallbacks", param_array, &fallbacks),
|
|
p_opt("preimage", param_tok, &preimagetok), NULL))
|
|
return;
|
|
|
|
/* should not be here since we are in the mode of CMD_USAGE
|
|
* and it always returns false. */
|
|
abort();
|
|
}
|
|
|
|
static void usage(void)
|
|
{
|
|
cmd->mode = CMD_USAGE;
|
|
|
|
test_invoice(cmd, NULL, NULL, NULL);
|
|
assert(streq(cmd->usage,
|
|
"msatoshi label description "
|
|
"[expiry] [fallbacks] [preimage]"));
|
|
|
|
cmd->mode = CMD_NORMAL;
|
|
}
|
|
|
|
int main(void)
|
|
{
|
|
setup_locale();
|
|
setup_tmpctx();
|
|
cmd = tal(tmpctx, struct command);
|
|
cmd->mode = CMD_NORMAL;
|
|
fail_msg = tal_arr(cmd, char, 10000);
|
|
|
|
zero_params();
|
|
sanity();
|
|
tok_tok();
|
|
null_params();
|
|
no_params();
|
|
#if DEVELOPER
|
|
bad_programmer();
|
|
#endif
|
|
dup_names();
|
|
five_hundred_params();
|
|
sendpay();
|
|
sendpay_nulltok();
|
|
advanced();
|
|
advanced_fail();
|
|
param_tests();
|
|
usage();
|
|
|
|
tal_free(tmpctx);
|
|
printf("run-params ok\n");
|
|
}
|
|
|