Truncate Scores (#269)

* Fixed score truncation erasure, and centering for chips, mult, score and "temp score

* Added centering for money

* Added tests for truncate_uint_to_suffixed_str()

* Fixed u32 bug with get_digits

* Fixed score flames for large numbers

* Small change to update documentation

* Added 1 pixel on to score rect on the left to make room for full character tile + reset_top_left_panel_bottom_row() refactor

* Replaced directional defines with enums

* Updated ante_lut comment

---------

Co-authored-by: Copilot <175728472+Copilot@users.noreply.github.com>
This commit is contained in:
MeirGavish
2025-12-02 08:28:36 +02:00
committed by GitHub
co-authored by Copilot
parent 07cab81ba1
commit 43d837571e
14 changed files with 411 additions and 148 deletions
+16
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@@ -0,0 +1,16 @@
CC := gcc
CFLAGS := -I../../include -I. \
-g -O3 -Wall -Werror -Wno-format
SRC := util_test.c ../../source/util.c
OUT := build/util_test
$(OUT): $(SRC) | build
$(CC) $(CFLAGS) -o $@ $^
build:
mkdir -p build
clean:
rm -f $(OUT)
+133
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#include <util.h>
#include <assert.h>
#include <string.h>
#include <stdio.h>
void test_truncate_uint_to_suffixed_str()
{
/*
* I want to avoid testing the rounding so it can be easily changed
* so all tests are numbers that are rounded down regardless of rounding method.
* That way the function can be modified to round to nearest integer easily.
*/
char suffixed_str_buff[UINT_MAX_DIGITS + 1] = {'\0'};
truncate_uint_to_suffixed_str(100, 3, suffixed_str_buff);
assert(strcmp(suffixed_str_buff, "100") == 0);
suffixed_str_buff[0] = '\0';
truncate_uint_to_suffixed_str(1000, 3, suffixed_str_buff);
assert(strcmp(suffixed_str_buff, "1K") == 0);
suffixed_str_buff[0] = '\0';
truncate_uint_to_suffixed_str(1000, 2, suffixed_str_buff);
assert(strcmp(suffixed_str_buff, "1K") == 0);
suffixed_str_buff[0] = '\0';
truncate_uint_to_suffixed_str(1000, 4, suffixed_str_buff);
assert(strcmp(suffixed_str_buff, "1000") == 0);
suffixed_str_buff[0] = '\0';
truncate_uint_to_suffixed_str(1000, 5, suffixed_str_buff);
assert(strcmp(suffixed_str_buff, "1000") == 0);
suffixed_str_buff[0] = '\0';
truncate_uint_to_suffixed_str(12123, 4, suffixed_str_buff);
assert(strcmp(suffixed_str_buff, "12K") == 0);
suffixed_str_buff[0] = '\0';
truncate_uint_to_suffixed_str(123123, 4, suffixed_str_buff);
assert(strcmp(suffixed_str_buff, "123K") == 0);
suffixed_str_buff[0] = '\0';
truncate_uint_to_suffixed_str(123123, 5, suffixed_str_buff);
assert(strcmp(suffixed_str_buff, "123K") == 0);
suffixed_str_buff[0] = '\0';
truncate_uint_to_suffixed_str(123123, 6, suffixed_str_buff);
assert(strcmp(suffixed_str_buff, "123123") == 0);
suffixed_str_buff[0] = '\0';
truncate_uint_to_suffixed_str(123123, 7, suffixed_str_buff);
assert(strcmp(suffixed_str_buff, "123123") == 0);
suffixed_str_buff[0] = '\0';
truncate_uint_to_suffixed_str(12345123, 6, suffixed_str_buff);
assert(strcmp(suffixed_str_buff, "12345K") == 0);
suffixed_str_buff[0] = '\0';
truncate_uint_to_suffixed_str(12123123, 5, suffixed_str_buff);
assert(strcmp(suffixed_str_buff, "12M") == 0);
suffixed_str_buff[0] = '\0';
truncate_uint_to_suffixed_str(12123123, 4, suffixed_str_buff);
assert(strcmp(suffixed_str_buff, "12M") == 0);
suffixed_str_buff[0] = '\0';
truncate_uint_to_suffixed_str(54123123, 4, suffixed_str_buff);
assert(strcmp(suffixed_str_buff, "54M") == 0);
suffixed_str_buff[0] = '\0';
truncate_uint_to_suffixed_str(123123123, 4, suffixed_str_buff);
assert(strcmp(suffixed_str_buff, "123M") == 0);
suffixed_str_buff[0] = '\0';
truncate_uint_to_suffixed_str(123123123, 6, suffixed_str_buff);
assert(strcmp(suffixed_str_buff, "123M") == 0);
suffixed_str_buff[0] = '\0';
truncate_uint_to_suffixed_str(987123123, 6, suffixed_str_buff);
assert(strcmp(suffixed_str_buff, "987M") == 0);
suffixed_str_buff[0] = '\0';
truncate_uint_to_suffixed_str(123123123, 7, suffixed_str_buff);
assert(strcmp(suffixed_str_buff, "123123K") == 0);
suffixed_str_buff[0] = '\0';
truncate_uint_to_suffixed_str(1123123123, 4, suffixed_str_buff);
assert(strcmp(suffixed_str_buff, "1B") == 0);
suffixed_str_buff[0] = '\0';
truncate_uint_to_suffixed_str((uint32_t)3123123123, 4, suffixed_str_buff);
assert(strcmp(suffixed_str_buff, "3B") == 0);
suffixed_str_buff[0] = '\0';
truncate_uint_to_suffixed_str(1234123123, 5, suffixed_str_buff);
assert(strcmp(suffixed_str_buff, "1234M") == 0);
suffixed_str_buff[0] = '\0';
truncate_uint_to_suffixed_str(1123123123, 10, suffixed_str_buff);
assert(strcmp(suffixed_str_buff, "1123123123") == 0);
suffixed_str_buff[0] = '\0';
truncate_uint_to_suffixed_str(1123123123, UINT_MAX_DIGITS, suffixed_str_buff);
assert(strcmp(suffixed_str_buff, "1123123123") == 0);
suffixed_str_buff[0] = '\0';
truncate_uint_to_suffixed_str(1123123123, 100, suffixed_str_buff);
assert(strcmp(suffixed_str_buff, "1123123123") == 0);
suffixed_str_buff[0] = '\0';
truncate_uint_to_suffixed_str(UINT32_MAX, 4, suffixed_str_buff);
assert(strcmp(suffixed_str_buff, "4B") == 0);
// This is the only test that checks rounding down, don't add any more
suffixed_str_buff[0] = '\0';
truncate_uint_to_suffixed_str(UINT32_MAX, 5, suffixed_str_buff);
assert(strcmp(suffixed_str_buff, "4294M") == 0);
char max_uint_str_buff[UINT_MAX_DIGITS + 1] = {'\0'};
snprintf(max_uint_str_buff, sizeof(max_uint_str_buff), "%lu", UINT32_MAX);
suffixed_str_buff[0] = '\0';
truncate_uint_to_suffixed_str(UINT32_MAX, UINT_MAX_DIGITS, suffixed_str_buff);
assert(strcmp(suffixed_str_buff, max_uint_str_buff) == 0);
}
int main()
{
test_truncate_uint_to_suffixed_str();
return 0;
}