ios NSString format 保留小数点 float double
self.orderCost.text = [NSStringstringWithFormat:@"%.1f元",self.order.cost.floatValue];
%.1f 表示小数点一位,%.2f 表示小数点2位,依次类推
格式定义
The format specifiers supported by the NSString formatting methods and CFString formatting functions follow the IEEE printf specification; the specifiers are summarized in Table 1. Note that you can also use the “n$” positional specifiers such as %1$@ %2$s. For more details, see the IEEE printf specification. You can also use these format specifiers with the NSLog function.
定义 | 说明 |
%@ | Objective-C object, printed as the string returned by descriptionWithLocale: if available, or description otherwise. Also works with CFTypeRef objects, returning the result of the CFCopyDescription function. |
%% | ‘%’ character |
%d, %D, %i | Signed 32-bit integer (int) |
%u, %U | Unsigned 32-bit integer (unsigned int) |
%hi | Signed 16-bit integer (short) |
%hu | Unsigned 16-bit integer (unsigned short) |
%qi | Signed 64-bit integer (long long) |
%qu | Unsigned 64-bit integer (unsigned long long) |
%x | Unsigned 32-bit integer (unsigned int), printed in hexadecimal using the digits 0–9 and lowercase a–f |
%X | Unsigned 32-bit integer (unsigned int), printed in hexadecimal using the digits 0–9 and uppercase A–F |
%qx | Unsigned 64-bit integer (unsigned long long), printed in hexadecimal using the digits 0–9 and lowercase a–f |
%qX | Unsigned 64-bit integer (unsigned long long), printed in hexadecimal using the digits 0–9 and uppercase A–F |
%o, %O | Unsigned 32-bit integer (unsigned int), printed in octal |
%f | 64-bit floating-point number (double) |
%e | 64-bit floating-point number (double), printed in scientific notation using a lowercase e to introduce the exponent |
%E | 64-bit floating-point number (double), printed in scientific notation using an uppercase E to introduce the exponent |
%g | 64-bit floating-point number (double), printed in the style of %e if the exponent is less than –4 or greater than or equal to the precision, in the style of %f otherwise |
%G | 64-bit floating-point number (double), printed in the style of %E if the exponent is less than –4 or greater than or equal to the precision, in the style of %f otherwise |
%c | 8-bit unsigned character (unsigned char), printed by NSLog() as an ASCII character, or, if not an ASCII character, in the octal format \\ddd or the Unicode hexadecimal format \\udddd, where d is a digit |
%C | 16-bit Unicode character (unichar), printed by NSLog() as an ASCII character, or, if not an ASCII character, in the octal format \\ddd or the Unicode hexadecimal format \\udddd, where d is a digit |
%s | Null-terminated array of 8-bit unsigned characters. %s interprets its input in the system encoding rather than, for example, UTF-8. |
%S | Null-terminated array of 16-bit Unicode characters |
%p | Void pointer (void *), printed in hexadecimal with the digits 0–9 and lowercase a–f, with a leading 0x |
%L | Length modifier specifying that a following a, A, e, E, f, F, g, or G conversion specifier applies to a long double argument |
%a | 64-bit floating-point number (double), printed in scientific notation with a leading 0x and one hexadecimal digit before the decimal point using a lowercase p to introduce the exponent |
%A | 64-bit floating-point number (double), printed in scientific notation with a leading 0X and one hexadecimal digit before the decimal point using a uppercase P to introduce the exponent |
%F | 64-bit floating-point number (double), printed in decimal notation |
%z | Length modifier specifying that a following d, i, o, u, x, or X conversion specifier applies to a size_t or the corresponding signed integer type argument |
%t | Length modifier specifying that a following d, i, o, u, x, or X conversion specifier applies to a ptrdiff_t or the corresponding unsigned integer type argument |
%j | Length modifier specifying that a following d, i, o, u, x, or X conversion specifier applies to a intmax_t or uintmax_t argument |
平台依赖
Mac OS X uses several data types—NSInteger, NSUInteger,CGFloat, and CFIndex—to provide a consistent means of representing values in 32- and 64-bit environments. In a 32-bit environment, NSInteger and NSUInteger are defined as int and unsigned int, respectively. In 64-bit environments, NSInteger and NSUInteger are defined as long and unsigned long, respectively. To avoid the need to use different printf-style type specifiers depending on the platform, you can use the specifiers shown in Table 2. Note that in some cases you may have to cast the value.
类型 | 定义 | 建议 |
NSInteger | %ld or %lx | Cast the value to long |
NSUInteger | %lu or %lx | Cast the value to unsigned long |
CGFloat | %f or %g | %f works for floats and doubles when formatting; but see below warning when scanning |
CFIndex | %ld or %lx | The same as NSInteger |
pointer | %p | %p adds 0x to the beginning of the output. If you don’t want that, use %lx and cast to long. |
long long | %lld or %llx | long long is 64-bit on both 32- and 64-bit platforms |
unsigned long long | %llu or %llx | unsigned long long is 64-bit on both 32- and 64-bit platforms |
The following example illustrates the use of %ld to format an NSInteger and the use of a cast.
1 2 |
NSInteger i = 42;
printf("%ld\n", (long)i); |
In addition to the considerations mentioned in Table 2, there is one extra case with scanning: you must distinguish the types for float and double. You should use %f for float, %lf for double. If you need to use scanf (or a variant thereof) with CGFloat, switch to double instead, and copy the double to CGFloat.
1 2 3 4 |
CGFloat imageWidth;
double tmp; sscanf (str, "%lf", &tmp); imageWidth = tmp; |
It is important to remember that %lf does not represent CGFloat correctly on either 32- or 64-bit platforms. This is unlike %ld, which works for long in all cases.
ios NSString format 保留小数点 float double的更多相关文章
- 【iOS】stringWithFormat 保留小数点位数 float double
以前就见过,如下: text = [NSString stringWithFormat:@"%.1f", percentageCompleted]; 但一直没在意.刚一时好奇,查了 ...
- JAVA保留小数点位数
/** * java 如何保留指定位数的小数 * @author Administrator * */ public class Test04 { public static void main(St ...
- C# Double保留小数点后面位数
C# Double保留小数点后面位数 有的时候我们要对一些数据进行百分比的操作.一般的数据我们只要用 .ToString("P")就可以得到小数点后2位的百分比.而且是自动 加上% ...
- [C++] string与int, float, double相互转换
参考:http://blog.csdn.net/candadition/article/details/7342380 将string类型转换为int, float, double类型 主要通过以下几 ...
- java保留小数点的几个方法
方法一: String类自带的方法 String.format("%.2f", 1.2548); "%.2f"其中的数字决定保留几位方法二: 格式化的方法 pr ...
- MySQL中Decimal类型和Float Double的区别 & BigDecimal与Double使用场景
MySQL中存在float,double等非标准数据类型,也有decimal这种标准数据类型. 其区别在于,float,double等非标准类型,在DB中保存的是近似值,而Decimal则以字符串的形 ...
- float double 如何存储计算2 (这个写的也不错)
目前java遵照IEEE制定的浮点数表示法来进行float,double运算.这种结构是一种科学计数法,用符号.指数和尾数来表示,底数定为2——即把一个浮点数表示为尾数乘以2的指数次方再添上符号. 我 ...
- python实现float/double的0x转化
1. 问题引出 最近遇到了一个小问题,即: 读取文本文件的内容,然后将文件中出现的数字(包括double, int, float等)转化为16进制0x存储 原本以为非常简单的内容,然后就着手去写了py ...
- Objective-C中NSString与int和float的相互转换
NSString *tempA = @"123"; NSString *tempB = @"456"; 1,字符串拼接 NSString *newString ...
随机推荐
- 交叉编译OpenWrt 定制固件
在Centos7上交叉编译生成OpenWrt固件 安装ss-* 获取最新的ss, 当前是 wget https://github.com/shadowsocks/shadowsocks-libev/a ...
- R语言-查找满足条件的数并获取索引
1.在R语言中,怎样找到满足条件的数呢? 比如给定一个向量c2.要求找到数值大于0的数: > c2 [1] 0.00 0.00 0.00 0.00 0.00 0.00 0.06 0.09 0. ...
- 深入了解MyBatis参数
参考1 参考2 参考3
- [转载][转]修改/proc目录下的参数优化网络性能
原文地址:[转]修改/proc目录下的参数优化网络性能作者:雪人 网络优化 注意: 1. 参数值带有速度(rate)的参数不能在loopback接口上工作. 2.因为内核是以HZ为单位的内部时钟来定义 ...
- Fork me on GitHub
<a href="https://github.com/yadongliang"><img style="position: absolute; top ...
- Python 的 pandas 实践
Python 的 pandas 实践: # !/usr/bin/env python # encoding: utf-8 __author__ = 'Administrator' import pan ...
- C# 采用钩子捕获键盘和鼠标事件-验证是否处于无人操作状态
原文地址:https://www.cnblogs.com/gc2013/p/4036414.html 全局抽象类定义 using System; using System.Collections.Ge ...
- 【jQuery】JQuery-ui autocomplete与strtus2结合使用
汉字搜索效果图: 拼音首字母搜索效果图: 1)数据库表及函数(SQL Server 2008) 先来建立数据库表City,它包含两个字段CityID,CityName. CREATE TABLE C ...
- exec系列函数和system函数
一.exec替换进程映象 在进程的创建上Unix采用了一个独特的方法,它将进程创建与加载一个新进程映象分离.这样的好处是有更多的余地对两种操作进行管理.当我们创建 了一个进程之后,通常将子进程替换成新 ...
- Linux内存初始化(一)
一.前言 一直以来,我都非常着迷于两种电影拍摄手法:一种是慢镜头,将每一个细节全方位的展现给观众.另外一种就是快镜头,多半是反应一个时代的变迁,从非常长的时间段中,截取几个典型的snapshot,合成 ...